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alpinejs

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The rugged, minimal JavaScript framework

5,748 lines 184 kB
var __create = Object.create;
var __defProp = Object.defineProperty;
var __getOwnPropDesc = Object.getOwnPropertyDescriptor;
var __getOwnPropNames = Object.getOwnPropertyNames;
var __getProtoOf = Object.getPrototypeOf;
var __hasOwnProp = Object.prototype.hasOwnProperty;
var __commonJS = (cb, mod) => function __require() {
  return mod || (0, cb[__getOwnPropNames(cb)[0]])((mod = { exports: {} }).exports, mod), mod.exports;
};
var __export = (target, all) => {
  for (var name in all)
    __defProp(target, name, { get: all[name], enumerable: true });
};
var __copyProps = (to, from, except, desc) => {
  if (from && typeof from === "object" || typeof from === "function") {
    for (let key of __getOwnPropNames(from))
      if (!__hasOwnProp.call(to, key) && key !== except)
        __defProp(to, key, { get: () => from[key], enumerable: !(desc = __getOwnPropDesc(from, key)) || desc.enumerable });
  }
  return to;
};
var __toESM = (mod, isNodeMode, target) => (target = mod != null ? __create(__getProtoOf(mod)) : {}, __copyProps(
  // If the importer is in node compatibility mode or this is not an ESM
  // file that has been converted to a CommonJS file using a Babel-
  // compatible transform (i.e. "__esModule" has not been set), then set
  // "default" to the CommonJS "module.exports" for node compatibility.
  isNodeMode || !mod || !mod.__esModule ? __defProp(target, "default", { value: mod, enumerable: true }) : target,
  mod
));
var __toCommonJS = (mod) => __copyProps(__defProp({}, "__esModule", { value: true }), mod);

// node_modules/@vue/shared/dist/shared.cjs.js
var require_shared_cjs = __commonJS({
  "node_modules/@vue/shared/dist/shared.cjs.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    function makeMap(str) {
      const map = /* @__PURE__ */ Object.create(null);
      for (const key of str.split(","))
        map[key] = 1;
      return (val) => val in map;
    }
    var EMPTY_OBJ = Object.freeze({});
    var EMPTY_ARR = Object.freeze([]);
    var NOOP = () => {
    };
    var NO = () => false;
    var isOn = (key) => key.charCodeAt(0) === 111 && key.charCodeAt(1) === 110 && // uppercase letter
    (key.charCodeAt(2) > 122 || key.charCodeAt(2) < 97);
    var isModelListener = (key) => key.startsWith("onUpdate:");
    var extend = Object.assign;
    var remove = (arr, el) => {
      const i = arr.indexOf(el);
      if (i > -1) {
        arr.splice(i, 1);
      }
    };
    var hasOwnProperty = Object.prototype.hasOwnProperty;
    var hasOwn = (val, key) => hasOwnProperty.call(val, key);
    var isArray = Array.isArray;
    var isMap = (val) => toTypeString(val) === "[object Map]";
    var isSet = (val) => toTypeString(val) === "[object Set]";
    var isDate = (val) => toTypeString(val) === "[object Date]";
    var isRegExp = (val) => toTypeString(val) === "[object RegExp]";
    var isFunction = (val) => typeof val === "function";
    var isString = (val) => typeof val === "string";
    var isSymbol = (val) => typeof val === "symbol";
    var isObject2 = (val) => val !== null && typeof val === "object";
    var isPromise = (val) => {
      return (isObject2(val) || isFunction(val)) && isFunction(val.then) && isFunction(val.catch);
    };
    var objectToString = Object.prototype.toString;
    var toTypeString = (value) => objectToString.call(value);
    var toRawType = (value) => {
      return toTypeString(value).slice(8, -1);
    };
    var isPlainObject = (val) => toTypeString(val) === "[object Object]";
    var isIntegerKey = (key) => isString(key) && key !== "NaN" && key[0] !== "-" && "" + parseInt(key, 10) === key;
    var 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"
    );
    var isBuiltInDirective = /* @__PURE__ */ makeMap(
      "bind,cloak,else-if,else,for,html,if,model,on,once,pre,show,slot,text,memo"
    );
    var cacheStringFunction = (fn) => {
      const cache = /* @__PURE__ */ Object.create(null);
      return (str) => {
        const hit = cache[str];
        return hit || (cache[str] = fn(str));
      };
    };
    var camelizeRE = /-\w/g;
    var camelize = cacheStringFunction(
      (str) => {
        return str.replace(camelizeRE, (c) => c.slice(1).toUpperCase());
      }
    );
    var hyphenateRE = /\B([A-Z])/g;
    var hyphenate = cacheStringFunction(
      (str) => str.replace(hyphenateRE, "-$1").toLowerCase()
    );
    var capitalize = cacheStringFunction((str) => {
      return str.charAt(0).toUpperCase() + str.slice(1);
    });
    var toHandlerKey = cacheStringFunction(
      (str) => {
        const s = str ? `on${capitalize(str)}` : ``;
        return s;
      }
    );
    var hasChanged = (value, oldValue) => !Object.is(value, oldValue);
    var invokeArrayFns = (fns, ...arg) => {
      for (let i = 0; i < fns.length; i++) {
        fns[i](...arg);
      }
    };
    var def = (obj, key, value, writable = false) => {
      Object.defineProperty(obj, key, {
        configurable: true,
        enumerable: false,
        writable,
        value
      });
    };
    var looseToNumber = (val) => {
      const n = parseFloat(val);
      return isNaN(n) ? val : n;
    };
    var toNumber = (val) => {
      const n = isString(val) ? Number(val) : NaN;
      return isNaN(n) ? val : n;
    };
    var _globalThis;
    var getGlobalThis = () => {
      return _globalThis || (_globalThis = typeof globalThis !== "undefined" ? globalThis : typeof self !== "undefined" ? self : typeof window !== "undefined" ? window : typeof global !== "undefined" ? global : {});
    };
    var identRE = /^[_$a-zA-Z\xA0-\uFFFF][_$a-zA-Z0-9\xA0-\uFFFF]*$/;
    function genPropsAccessExp(name) {
      return identRE.test(name) ? `__props.${name}` : `__props[${JSON.stringify(name)}]`;
    }
    function genCacheKey(source, options) {
      return source + JSON.stringify(
        options,
        (_, val) => typeof val === "function" ? val.toString() : val
      );
    }
    var PatchFlags = {
      "TEXT": 1,
      "1": "TEXT",
      "CLASS": 2,
      "2": "CLASS",
      "STYLE": 4,
      "4": "STYLE",
      "PROPS": 8,
      "8": "PROPS",
      "FULL_PROPS": 16,
      "16": "FULL_PROPS",
      "NEED_HYDRATION": 32,
      "32": "NEED_HYDRATION",
      "STABLE_FRAGMENT": 64,
      "64": "STABLE_FRAGMENT",
      "KEYED_FRAGMENT": 128,
      "128": "KEYED_FRAGMENT",
      "UNKEYED_FRAGMENT": 256,
      "256": "UNKEYED_FRAGMENT",
      "NEED_PATCH": 512,
      "512": "NEED_PATCH",
      "DYNAMIC_SLOTS": 1024,
      "1024": "DYNAMIC_SLOTS",
      "DEV_ROOT_FRAGMENT": 2048,
      "2048": "DEV_ROOT_FRAGMENT",
      "CACHED": -1,
      "-1": "CACHED",
      "BAIL": -2,
      "-2": "BAIL"
    };
    var PatchFlagNames = {
      [1]: `TEXT`,
      [2]: `CLASS`,
      [4]: `STYLE`,
      [8]: `PROPS`,
      [16]: `FULL_PROPS`,
      [32]: `NEED_HYDRATION`,
      [64]: `STABLE_FRAGMENT`,
      [128]: `KEYED_FRAGMENT`,
      [256]: `UNKEYED_FRAGMENT`,
      [512]: `NEED_PATCH`,
      [1024]: `DYNAMIC_SLOTS`,
      [2048]: `DEV_ROOT_FRAGMENT`,
      [-1]: `CACHED`,
      [-2]: `BAIL`
    };
    var ShapeFlags = {
      "ELEMENT": 1,
      "1": "ELEMENT",
      "FUNCTIONAL_COMPONENT": 2,
      "2": "FUNCTIONAL_COMPONENT",
      "STATEFUL_COMPONENT": 4,
      "4": "STATEFUL_COMPONENT",
      "TEXT_CHILDREN": 8,
      "8": "TEXT_CHILDREN",
      "ARRAY_CHILDREN": 16,
      "16": "ARRAY_CHILDREN",
      "SLOTS_CHILDREN": 32,
      "32": "SLOTS_CHILDREN",
      "TELEPORT": 64,
      "64": "TELEPORT",
      "SUSPENSE": 128,
      "128": "SUSPENSE",
      "COMPONENT_SHOULD_KEEP_ALIVE": 256,
      "256": "COMPONENT_SHOULD_KEEP_ALIVE",
      "COMPONENT_KEPT_ALIVE": 512,
      "512": "COMPONENT_KEPT_ALIVE",
      "COMPONENT": 6,
      "6": "COMPONENT"
    };
    var SlotFlags = {
      "STABLE": 1,
      "1": "STABLE",
      "DYNAMIC": 2,
      "2": "DYNAMIC",
      "FORWARDED": 3,
      "3": "FORWARDED"
    };
    var slotFlagsText = {
      [1]: "STABLE",
      [2]: "DYNAMIC",
      [3]: "FORWARDED"
    };
    var GLOBALS_ALLOWED = "Infinity,undefined,NaN,isFinite,isNaN,parseFloat,parseInt,decodeURI,decodeURIComponent,encodeURI,encodeURIComponent,Math,Number,Date,Array,Object,Boolean,String,RegExp,Map,Set,JSON,Intl,BigInt,console,Error,Symbol";
    var isGloballyAllowed = /* @__PURE__ */ makeMap(GLOBALS_ALLOWED);
    var isGloballyWhitelisted = isGloballyAllowed;
    var range = 2;
    function generateCodeFrame(source, start2 = 0, end = source.length) {
      start2 = Math.max(0, Math.min(start2, source.length));
      end = Math.max(0, Math.min(end, source.length));
      if (start2 > end)
        return "";
      let lines = source.split(/(\r?\n)/);
      const newlineSequences = lines.filter((_, idx) => idx % 2 === 1);
      lines = lines.filter((_, idx) => idx % 2 === 0);
      let count = 0;
      const res = [];
      for (let i = 0; i < lines.length; i++) {
        count += lines[i].length + (newlineSequences[i] && newlineSequences[i].length || 0);
        if (count >= start2) {
          for (let j = i - range; j <= i + range || end > count; j++) {
            if (j < 0 || j >= lines.length)
              continue;
            const line = j + 1;
            res.push(
              `${line}${" ".repeat(Math.max(3 - String(line).length, 0))}|  ${lines[j]}`
            );
            const lineLength = lines[j].length;
            const newLineSeqLength = newlineSequences[j] && newlineSequences[j].length || 0;
            if (j === i) {
              const pad = start2 - (count - (lineLength + newLineSeqLength));
              const length = Math.max(
                1,
                end > count ? lineLength - pad : end - start2
              );
              res.push(`   |  ` + " ".repeat(pad) + "^".repeat(length));
            } else if (j > i) {
              if (end > count) {
                const length = Math.max(Math.min(end - count, lineLength), 1);
                res.push(`   |  ` + "^".repeat(length));
              }
              count += lineLength + newLineSeqLength;
            }
          }
          break;
        }
      }
      return res.join("\n");
    }
    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) || isObject2(value)) {
        return value;
      }
    }
    var listDelimiterRE = /;(?![^(]*\))/g;
    var propertyDelimiterRE = /:([^]+)/;
    var 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 (isObject2(value)) {
        for (const name in value) {
          if (value[name]) {
            res += name + " ";
          }
        }
      }
      return res.trim();
    }
    function normalizeProps(props) {
      if (!props)
        return null;
      let { class: klass, style } = props;
      if (klass && !isString(klass)) {
        props.class = normalizeClass(klass);
      }
      if (style) {
        props.style = normalizeStyle(style);
      }
      return props;
    }
    var HTML_TAGS = "html,body,base,head,link,meta,style,title,address,article,aside,footer,header,hgroup,h1,h2,h3,h4,h5,h6,nav,section,div,dd,dl,dt,figcaption,figure,picture,hr,img,li,main,ol,p,pre,ul,a,b,abbr,bdi,bdo,br,cite,code,data,dfn,em,i,kbd,mark,q,rp,rt,ruby,s,samp,small,span,strong,sub,sup,time,u,var,wbr,area,audio,map,track,video,embed,object,param,source,canvas,script,noscript,del,ins,caption,col,colgroup,table,thead,tbody,td,th,tr,button,datalist,fieldset,form,input,label,legend,meter,optgroup,option,output,progress,select,textarea,details,dialog,menu,summary,template,blockquote,iframe,tfoot";
    var SVG_TAGS = "svg,animate,animateMotion,animateTransform,circle,clipPath,color-profile,defs,desc,discard,ellipse,feBlend,feColorMatrix,feComponentTransfer,feComposite,feConvolveMatrix,feDiffuseLighting,feDisplacementMap,feDistantLight,feDropShadow,feFlood,feFuncA,feFuncB,feFuncG,feFuncR,feGaussianBlur,feImage,feMerge,feMergeNode,feMorphology,feOffset,fePointLight,feSpecularLighting,feSpotLight,feTile,feTurbulence,filter,foreignObject,g,hatch,hatchpath,image,line,linearGradient,marker,mask,mesh,meshgradient,meshpatch,meshrow,metadata,mpath,path,pattern,polygon,polyline,radialGradient,rect,set,solidcolor,stop,switch,symbol,text,textPath,title,tspan,unknown,use,view";
    var MATH_TAGS = "annotation,annotation-xml,maction,maligngroup,malignmark,math,menclose,merror,mfenced,mfrac,mfraction,mglyph,mi,mlabeledtr,mlongdiv,mmultiscripts,mn,mo,mover,mpadded,mphantom,mprescripts,mroot,mrow,ms,mscarries,mscarry,msgroup,msline,mspace,msqrt,msrow,mstack,mstyle,msub,msubsup,msup,mtable,mtd,mtext,mtr,munder,munderover,none,semantics";
    var VOID_TAGS = "area,base,br,col,embed,hr,img,input,link,meta,param,source,track,wbr";
    var isHTMLTag = /* @__PURE__ */ makeMap(HTML_TAGS);
    var isSVGTag = /* @__PURE__ */ makeMap(SVG_TAGS);
    var isMathMLTag = /* @__PURE__ */ makeMap(MATH_TAGS);
    var isVoidTag = /* @__PURE__ */ makeMap(VOID_TAGS);
    var specialBooleanAttrs = `itemscope,allowfullscreen,formnovalidate,ismap,nomodule,novalidate,readonly`;
    var isSpecialBooleanAttr = /* @__PURE__ */ makeMap(specialBooleanAttrs);
    var isBooleanAttr2 = /* @__PURE__ */ makeMap(
      specialBooleanAttrs + `,async,autofocus,autoplay,controls,default,defer,disabled,inert,loop,open,required,reversed,scoped,seamless,checked,muted,multiple,selected`
    );
    function includeBooleanAttr(value) {
      return !!value || value === "";
    }
    var unsafeAttrCharRE = /[>/="'\u0009\u000a\u000c\u0020]/;
    var attrValidationCache = {};
    function isSSRSafeAttrName(name) {
      if (attrValidationCache.hasOwnProperty(name)) {
        return attrValidationCache[name];
      }
      const isUnsafe = unsafeAttrCharRE.test(name);
      if (isUnsafe) {
        console.error(`unsafe attribute name: ${name}`);
      }
      return attrValidationCache[name] = !isUnsafe;
    }
    var propsToAttrMap = {
      acceptCharset: "accept-charset",
      className: "class",
      htmlFor: "for",
      httpEquiv: "http-equiv"
    };
    var 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`
    );
    var 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`
    );
    var isKnownMathMLAttr = /* @__PURE__ */ makeMap(
      `accent,accentunder,actiontype,align,alignmentscope,altimg,altimg-height,altimg-valign,altimg-width,alttext,bevelled,close,columnsalign,columnlines,columnspan,denomalign,depth,dir,display,displaystyle,encoding,equalcolumns,equalrows,fence,fontstyle,fontweight,form,frame,framespacing,groupalign,height,href,id,indentalign,indentalignfirst,indentalignlast,indentshift,indentshiftfirst,indentshiftlast,indextype,justify,largetop,largeop,lquote,lspace,mathbackground,mathcolor,mathsize,mathvariant,maxsize,minlabelspacing,mode,other,overflow,position,rowalign,rowlines,rowspan,rquote,rspace,scriptlevel,scriptminsize,scriptsizemultiplier,selection,separator,separators,shift,side,src,stackalign,stretchy,subscriptshift,superscriptshift,symmetric,voffset,width,widths,xlink:href,xlink:show,xlink:type,xmlns`
    );
    function isRenderableAttrValue(value) {
      if (value == null) {
        return false;
      }
      const type = typeof value;
      return type === "string" || type === "number" || type === "boolean";
    }
    var escapeRE = /["'&<>]/;
    function escapeHtml(string) {
      const str = "" + string;
      const match = escapeRE.exec(str);
      if (!match) {
        return str;
      }
      let html = "";
      let escaped;
      let index;
      let lastIndex = 0;
      for (index = match.index; index < str.length; index++) {
        switch (str.charCodeAt(index)) {
          case 34:
            escaped = "&quot;";
            break;
          case 38:
            escaped = "&amp;";
            break;
          case 39:
            escaped = "&#39;";
            break;
          case 60:
            escaped = "&lt;";
            break;
          case 62:
            escaped = "&gt;";
            break;
          default:
            continue;
        }
        if (lastIndex !== index) {
          html += str.slice(lastIndex, index);
        }
        lastIndex = index + 1;
        html += escaped;
      }
      return lastIndex !== index ? html + str.slice(lastIndex, index) : html;
    }
    var commentStripRE = /^(?:-?>)+|<!--|-->|--!>|<!-$/g;
    function escapeHtmlComment(src) {
      let prev;
      do {
        prev = src;
        src = src.replace(commentStripRE, "");
      } while (src !== prev);
      return src;
    }
    var cssVarNameEscapeSymbolsRE = /[ !"#$%&'()*+,./:;<=>?@[\\\]^`{|}~]/g;
    function getEscapedCssVarName(key, doubleEscape) {
      return key.replace(
        cssVarNameEscapeSymbolsRE,
        (s) => doubleEscape ? s === '"' ? '\\\\\\"' : `\\\\${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 = isObject2(a);
      bValidType = isObject2(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);
    }
    function looseIndexOf(arr, val) {
      return arr.findIndex((item) => looseEqual(item, val));
    }
    var isRef = (val) => {
      return !!(val && val["__v_isRef"] === true);
    };
    var toDisplayString = (val) => {
      return isString(val) ? val : val == null ? "" : isArray(val) || isObject2(val) && (val.toString === objectToString || !isFunction(val.toString)) ? isRef(val) ? toDisplayString(val.value) : JSON.stringify(val, replacer, 2) : String(val);
    };
    var replacer = (_key, val) => {
      if (isRef(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 (isObject2(val) && !isArray(val) && !isPlainObject(val)) {
        return String(val);
      }
      return val;
    };
    var 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;
      }
      if (typeof value !== "number" || !Number.isFinite(value)) {
        {
          console.warn(
            "[Vue warn] Invalid value used for CSS binding. Expected a string or a finite number but received:",
            value
          );
        }
      }
      return String(value);
    }
    exports.EMPTY_ARR = EMPTY_ARR;
    exports.EMPTY_OBJ = EMPTY_OBJ;
    exports.NO = NO;
    exports.NOOP = NOOP;
    exports.PatchFlagNames = PatchFlagNames;
    exports.PatchFlags = PatchFlags;
    exports.ShapeFlags = ShapeFlags;
    exports.SlotFlags = SlotFlags;
    exports.camelize = camelize;
    exports.capitalize = capitalize;
    exports.cssVarNameEscapeSymbolsRE = cssVarNameEscapeSymbolsRE;
    exports.def = def;
    exports.escapeHtml = escapeHtml;
    exports.escapeHtmlComment = escapeHtmlComment;
    exports.extend = extend;
    exports.genCacheKey = genCacheKey;
    exports.genPropsAccessExp = genPropsAccessExp;
    exports.generateCodeFrame = generateCodeFrame;
    exports.getEscapedCssVarName = getEscapedCssVarName;
    exports.getGlobalThis = getGlobalThis;
    exports.hasChanged = hasChanged;
    exports.hasOwn = hasOwn;
    exports.hyphenate = hyphenate;
    exports.includeBooleanAttr = includeBooleanAttr;
    exports.invokeArrayFns = invokeArrayFns;
    exports.isArray = isArray;
    exports.isBooleanAttr = isBooleanAttr2;
    exports.isBuiltInDirective = isBuiltInDirective;
    exports.isDate = isDate;
    exports.isFunction = isFunction;
    exports.isGloballyAllowed = isGloballyAllowed;
    exports.isGloballyWhitelisted = isGloballyWhitelisted;
    exports.isHTMLTag = isHTMLTag;
    exports.isIntegerKey = isIntegerKey;
    exports.isKnownHtmlAttr = isKnownHtmlAttr;
    exports.isKnownMathMLAttr = isKnownMathMLAttr;
    exports.isKnownSvgAttr = isKnownSvgAttr;
    exports.isMap = isMap;
    exports.isMathMLTag = isMathMLTag;
    exports.isModelListener = isModelListener;
    exports.isObject = isObject2;
    exports.isOn = isOn;
    exports.isPlainObject = isPlainObject;
    exports.isPromise = isPromise;
    exports.isRegExp = isRegExp;
    exports.isRenderableAttrValue = isRenderableAttrValue;
    exports.isReservedProp = isReservedProp;
    exports.isSSRSafeAttrName = isSSRSafeAttrName;
    exports.isSVGTag = isSVGTag;
    exports.isSet = isSet;
    exports.isSpecialBooleanAttr = isSpecialBooleanAttr;
    exports.isString = isString;
    exports.isSymbol = isSymbol;
    exports.isVoidTag = isVoidTag;
    exports.looseEqual = looseEqual;
    exports.looseIndexOf = looseIndexOf;
    exports.looseToNumber = looseToNumber;
    exports.makeMap = makeMap;
    exports.normalizeClass = normalizeClass;
    exports.normalizeCssVarValue = normalizeCssVarValue;
    exports.normalizeProps = normalizeProps;
    exports.normalizeStyle = normalizeStyle;
    exports.objectToString = objectToString;
    exports.parseStringStyle = parseStringStyle;
    exports.propsToAttrMap = propsToAttrMap;
    exports.remove = remove;
    exports.slotFlagsText = slotFlagsText;
    exports.stringifyStyle = stringifyStyle;
    exports.toDisplayString = toDisplayString;
    exports.toHandlerKey = toHandlerKey;
    exports.toNumber = toNumber;
    exports.toRawType = toRawType;
    exports.toTypeString = toTypeString;
  }
});

// node_modules/@vue/shared/index.js
var require_shared = __commonJS({
  "node_modules/@vue/shared/index.js"(exports, module2) {
    "use strict";
    if (false) {
      module2.exports = null;
    } else {
      module2.exports = require_shared_cjs();
    }
  }
});

// node_modules/@vue/reactivity/dist/reactivity.cjs.js
var require_reactivity_cjs = __commonJS({
  "node_modules/@vue/reactivity/dist/reactivity.cjs.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var shared = require_shared();
    function warn2(msg, ...args) {
      console.warn(`[Vue warn] ${msg}`, ...args);
    }
    var activeEffectScope;
    var EffectScope = class {
      // TODO isolatedDeclarations "__v_skip"
      constructor(detached = false) {
        this.detached = detached;
        this._active = true;
        this._on = 0;
        this.effects = [];
        this.cleanups = [];
        this._isPaused = false;
        this._warnOnRun = true;
        this.__v_skip = true;
        if (!detached && activeEffectScope) {
          if (activeEffectScope.active) {
            this.parent = activeEffectScope;
            this.index = (activeEffectScope.scopes || (activeEffectScope.scopes = [])).push(
              this
            ) - 1;
          } else {
            this._active = false;
            this._warnOnRun = false;
          }
        }
      }
      get active() {
        return this._active;
      }
      pause() {
        if (this._active) {
          this._isPaused = true;
          let i, l;
          if (this.scopes) {
            const scopes = this.scopes.slice();
            for (i = 0, l = scopes.length; i < l; i++) {
              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) {
              const scopes = this.scopes.slice();
              for (i = 0, l = scopes.length; i < l; i++) {
                scopes[i].resume();
              }
            }
            const effects = this.effects.slice();
            for (i = 0, l = effects.length; i < l; i++) {
              effects[i].resume();
            }
          }
        }
      }
      run(fn) {
        if (this._active) {
          const currentEffectScope = activeEffectScope;
          try {
            activeEffectScope = this;
            return fn();
          } finally {
            activeEffectScope = currentEffectScope;
          }
        } else if (this._warnOnRun) {
          warn2(`cannot run an inactive effect scope.`);
        }
      }
      /**
       * 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) {
          if (activeEffectScope === this) {
            activeEffectScope = this.prevScope;
          } else {
            let current = activeEffectScope;
            while (current) {
              if (current.prevScope === this) {
                current.prevScope = this.prevScope;
                break;
              }
              current = current.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) {
            const scopes = this.scopes.slice();
            for (i = 0, l = scopes.length; i < l; i++) {
              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 effectScope(detached) {
      return new EffectScope(detached);
    }
    function getCurrentScope() {
      return activeEffectScope;
    }
    function onScopeDispose(fn, failSilently = false) {
      if (activeEffectScope) {
        activeEffectScope.cleanups.push(fn);
      } else if (!failSilently) {
        warn2(
          `onScopeDispose() is called when there is no active effect scope to be associated with.`
        );
      }
    }
    var activeSub;
    var EffectFlags = {
      "ACTIVE": 1,
      "1": "ACTIVE",
      "RUNNING": 2,
      "2": "RUNNING",
      "TRACKING": 4,
      "4": "TRACKING",
      "NOTIFIED": 8,
      "8": "NOTIFIED",
      "DIRTY": 16,
      "16": "DIRTY",
      "ALLOW_RECURSE": 32,
      "32": "ALLOW_RECURSE",
      "PAUSED": 64,
      "64": "PAUSED",
      "EVALUATED": 128,
      "128": "EVALUATED"
    };
    var pausedQueueEffects = /* @__PURE__ */ new WeakSet();
    var ReactiveEffect = class {
      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) {
          if (activeEffectScope.active) {
            activeEffectScope.effects.push(this);
          } else {
            this.flags &= -2;
          }
        }
      }
      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 {
          if (activeSub !== this) {
            warn2(
              "Active effect was not restored correctly - this is likely a Vue internal bug."
            );
          }
          cleanupDeps(this);
          activeSub = prevEffect;
          shouldTrack = prevShouldTrack;
          this.flags &= -3;
        }
      }
      stop() {
        if (this.flags & 1) {
          for (let link = this.deps; link; link = link.nextDep) {
            removeSub(link);
          }
          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);
      }
    };
    var batchDepth = 0;
    var batchedSub;
    var 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 error2;
      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 (!error2)
                error2 = err;
            }
          }
          e = next;
        }
      }
      if (error2)
        throw error2;
    }
    function prepareDeps(sub) {
      for (let link = sub.deps; link; link = link.nextDep) {
        link.version = -1;
        link.prevActiveLink = link.dep.activeLink;
        link.dep.activeLink = link;
      }
    }
    function cleanupDeps(sub) {
      let head;
      let tail = sub.depsTail;
      let link = tail;
      while (link) {
        const prev = link.prevDep;
        if (link.version === -1) {
          if (link === tail)
            tail = prev;
          removeSub(link);
          removeDep(link);
        } else {
          head = link;
        }
        link.dep.activeLink = link.prevActiveLink;
        link.prevActiveLink = void 0;
        link = prev;
      }
      sub.deps = head;
      sub.depsTail = tail;
    }
    function isDirty(sub) {
      for (let link = sub.deps; link; link = link.nextDep) {
        if (link.dep.version !== link.version || link.dep.computed && (refreshComputed(link.dep.computed) || link.dep.version !== link.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 || shared.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(link, soft = false) {
      const { dep, prevSub, nextSub } = link;
      if (prevSub) {
        prevSub.nextSub = nextSub;
        link.prevSub = void 0;
      }
      if (nextSub) {
        nextSub.prevSub = prevSub;
        link.nextSub = void 0;
      }
      if (dep.subsHead === link) {
        dep.subsHead = nextSub;
      }
      if (dep.subs === link) {
        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(link) {
      const { prevDep, nextDep } = link;
      if (prevDep) {
        prevDep.nextDep = nextDep;
        link.prevDep = void 0;
      }
      if (nextDep) {
        nextDep.prevDep = prevDep;
        link.nextDep = void 0;
      }
    }
    function effect3(fn, options) {
      if (fn.effect instanceof ReactiveEffect) {
        fn = fn.effect.fn;
      }
      const e = new ReactiveEffect(fn);
      if (options) {
        shared.extend(e, options);
      }
      try {
        e.run();
      } catch (err) {
        e.stop();
        throw err;
      }
      const runner = e.run.bind(e);
      runner.effect = e;
      return runner;
    }
    function stop2(runner) {
      runner.effect.stop();
    }
    var shouldTrack = true;
    var trackStack = [];
    function pauseTracking() {
      trackStack.push(shouldTrack);
      shouldTrack = false;
    }
    function enableTracking() {
      trackStack.push(shouldTrack);
      shouldTrack = true;
    }
    function resetTracking() {
      const last = trackStack.pop();
      shouldTrack = last === void 0 ? true : last;
    }
    function onEffectCleanup(fn, failSilently = false) {
      if (activeSub instanceof ReactiveEffect) {
        activeSub.cleanup = fn;
      } else if (!failSilently) {
        warn2(
          `onEffectCleanup() was called when there was no active effect to associate with.`
        );
      }
    }
    function cleanupEffect(e) {
      const { cleanup } = e;
      e.cleanup = void 0;
      if (cleanup) {
        const prevSub = activeSub;
        activeSub = void 0;
        try {
          cleanup();
        } finally {
          activeSub = prevSub;
        }
      }
    }
    var globalVersion = 0;
    var Link = class {
      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;
      }
    };
    var Dep = class {
      // 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;
        {
          this.subsHead = void 0;
        }
      }
      track(debugInfo) {
        if (!activeSub || !shouldTrack || activeSub === this.computed) {
          return;
        }
        let link = this.activeLink;
        if (link === void 0 || link.sub !== activeSub) {
          link = this.activeLink = new Link(activeSub, this);
          if (!activeSub.deps) {
            activeSub.deps = activeSub.depsTail = link;
          } else {
            link.prevDep = activeSub.depsTail;
            activeSub.depsTail.nextDep = link;
            activeSub.depsTail = link;
          }
          addSub(link);
        } else if (link.version === -1) {
          link.version = this.version;
          if (link.nextDep) {
            const next = link.nextDep;
            next.prevDep = link.prevDep;
            if (link.prevDep) {
              link.prevDep.nextDep = next;
            }
            link.prevDep = activeSub.depsTail;
            link.nextDep = void 0;
            activeSub.depsTail.nextDep = link;
            activeSub.depsTail = link;
            if (activeSub.deps === link) {
              activeSub.deps = next;
            }
          }
        }
        if (activeSub.onTrack) {
          activeSub.onTrack(
            shared.extend(
              {
                effect: activeSub
              },
              debugInfo
            )
          );
        }
        return link;
      }
      trigger(debugInfo) {
        this.version++;
        globalVersion++;
        this.notify(debugInfo);
      }
      notify(debugInfo) {
        startBatch();
        try {
          if (true) {
            for (let head = this.subsHead; head; head = head.nextSub) {
              if (head.sub.onTrigger && !(head.sub.flags & 8)) {
                head.sub.onTrigger(
                  shared.extend(
                    {
                      effect: head.sub
                    },
                    debugInfo
                  )
                );
              }
            }
          }
          for (let link = this.subs; link; link = link.prevSub) {
            if (link.sub.notify()) {
              ;
              link.sub.dep.notify();
            }
          }
        } finally {
          endBatch();
        }
      }
    };
    function addSub(link) {
      link.dep.sc++;
      if (link.sub.flags & 4) {
        const computed2 = link.dep.computed;
        if (computed2 && !link.dep.subs) {
          computed2.flags |= 4 | 16;
          for (let l = computed2.deps; l; l = l.nextDep) {
            addSub(l);
          }
        }
        const currentTail = link.dep.subs;
        if (currentTail !== link) {
          link.prevSub = currentTail;
          if (currentTail)
            currentTail.nextSub = link;
        }
        if (link.dep.subsHead === void 0) {
          link.dep.subsHead = link;
        }
        link.dep.subs = link;
      }
    }
    var targetMap = /* @__PURE__ */ new WeakMap();
    var ITERATE_KEY = /* @__PURE__ */ Symbol(
      "Object iterate"
    );
    var MAP_KEY_ITERATE_KEY = /* @__PURE__ */ Symbol(
      "Map keys iterate"
    );
    var ARRAY_ITERATE_KEY = /* @__PURE__ */ Symbol(
      "Array iterate"
    );
    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({
            target,
            type,
            key
          });
        }
      }
    }
    function trigger(target, type, key, newValue, oldValue, oldTarget) {
      const depsMap = targetMap.get(target);
      if (!depsMap) {
        globalVersion++;
        return;
      }
      const run = (dep) => {
        if (dep) {
          {
            dep.trigger({
              target,
              type,
              key,
              newValue,
              oldValue,
              oldTarget
            });
          }
        }
      };
      startBatch();
      if (type === "clear") {
        depsMap.forEach(run);
      } else {
        const targetIsArray = shared.isArray(target);
        const isArrayIndex = targetIsArray && shared.isIntegerKey(key);
        if (targetIsArray && key === "length") {
          const newLength = Number(newValue);
          depsMap.forEach((dep, key2) => {
            if (key2 === "length" || key2 === ARRAY_ITERATE_KEY || !shared.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 (shared.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 (shared.isMap(target)) {
                  run(depsMap.get(MAP_KEY_ITERATE_KEY));
                }
              }
              break;
            case "set":
              if (shared.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 raw2 = toRaw2(array);
      if (raw2 === array)
        return raw2;
      track(raw2, "iterate", ARRAY_ITERATE_KEY);
      return isShallow(array) ? raw2 : raw2.map(toReactive);
    }
    function shallowReadArray(arr) {
      track(arr = toRaw2(arr), "iterate", ARRAY_ITERATE_KEY);
      return arr;
    }
    function toWrapped(target, item) {
      if (isReadonly(target)) {
        return isReactive2(target) ? toReadonly(toReactive(item)) : toReadonly(item);
      }
      return toReactive(item);
    }
    var arrayInstrumentations = {
      __proto__: null,
      [Symbol.iterator]() {
        return iterator(this, Symbol.iterator, (item) => toWrapped(this, item));
      },
      concat(...args) {
        return reactiveReadArray(this).concat(
          ...args.map((x) => shared.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 && !isShallow(self2)) {
        iter._next = iter.next;
        iter.next = () => {
          const result = iter._next();
          if (!result.done) {
            result.value = wrapValue(result.value);
          }
          return result;
        };
      }
      return iter;
    }
    var arrayProto = Array.prototype;
    function apply(self2, method, fn, thisArg, wrappedRetFn, args) {
      const arr = shallowReadArray(self2);
      const needsWrap = arr !== self2 && !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 && !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 = toRaw2(self2);
      track(arr, "iterate", ARRAY_ITERATE_KEY);
      const res = arr[method](...args);
      if ((res === -1 || res === false) && isProxy(args[0])) {
        args[0] = toRaw2(args[0]);
        return arr[method](...args);
      }
      return res;
    }
    function noTracking(self2, method, args = []) {
      pauseTracking();
      startBatch();
      const res = toRaw2(self2)[method].apply(self2, args);
      endBatch();
      resetTracking();
      return res;
    }
    var isNonTrackableKeys = /* @__PURE__ */ shared.makeMap(`__proto__,__v_isRef,__isVue`);
    var builtInSymbols = new Set(
      /* @__PURE__ */ Object.getOwnPropertyNames(Symbol).filter((key) => key !== "arguments" && key !== "caller").map((key) => Symbol[key]).filter(shared.isSymbol)
    );
    function hasOwnProperty(key) {
      if (!shared.isSymbol(key))
        key = String(key);
      const obj = toRaw2(this);
      track(obj, "has", key);
      return obj.hasOwnProperty(key);
    }
    var BaseReactiveHandler = class {
      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 = shared.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
          isRef(target) ? target : receiver
        );
        if (shared.isSymbol(key) ? builtInSymbols.has(key) : isNonTrackableKeys(key)) {
          return res;
        }
        if (!isReadonly2) {
          track(target, "get", key);
        }
        if (isShallow2) {
          return res;
        }
        if (isRef(res)) {
          const value = targetIsArray && shared.isIntegerKey(key) ? res : res.value;
          return isReadonly2 && shared.isObject(value) ? readonly(value) : value;
        }
        if (shared.isObject(res)) {
          return isReadonly2 ? readonly(res) : reactive3(res);
        }
        return res;
      }
    };
    var MutableReactiveHandler = class extends BaseReactiveHandler {
      constructor(isShallow2 = false) {
        super(false, isShallow2);
      }
      set(target, key, value, receiver) {
        let oldValue = target[key];
        const isArrayWithIntegerKey = shared.isArray(target) && shared.isIntegerKey(key);
        if (!this._isShallow) {
          const isOldValueReadonly = isReadonly(oldValue);
          if (!isShallow(value) && !isReadonly(value)) {
            oldValue = toRaw2(oldValue);
            value = toRaw2(value);
          }
          if (!isArrayWithIntegerKey && isRef(oldValue) && !isRef(value)) {
            if (isOldValueReadonly) {
              {
                warn2(
                  `Set operation on key "${String(key)}" failed: target is readonly.`,
                  target[key]
                );
              }
              return true;
            } else {
              oldValue.value = value;
              return true;
            }
          }
        }
        const hadKey = isArrayWithIntegerKey ? Number(key) < target.length : shared.hasOwn(target, key);
        const result = Reflect.set(
          target,
          key,
          value,
          isRef(target) ? target : receiver
        );
        if (target === toRaw2(receiver) && result) {
          if (!hadKey) {
            trigger(target, "add", key, value);
          } else if (shared.hasChanged(value, oldValue)) {
            trigger(target, "set", key, value, oldValue);
          }
        }
        return result;
      }
      deleteProperty(target, key) {
        const hadKey = shared.hasOwn(target, key);
        const oldValue = target[key];
        const result = Reflect.deleteProperty(target, key);
        if (result && hadKey) {
          trigger(target, "delete", key, void 0, oldValue);
        }
        return result;
      }
      has(target, key) {
        const result = Reflect.has(target, key);
        if (!shared.isSymbol(key) || !builtInSymbols.has(key)) {
          track(target, "has", key);
        }
        return result;
      }
      ownKeys(target) {
        track(
          target,
          "iterate",
          shared.isArray(target) ? "length" : ITERATE_KEY
        );
        return Reflect.ownKeys(target);
      }
    };
    var ReadonlyReactiveHandler = class extends BaseReactiveHandler {
      constructor(isShallow2 = false) {
        super(true, isShallow2);
      }
      set(target, key) {
        {
          warn2(
            `Set operation on key "${String(key)}" failed: target is readonly.`,
            target
          );
        }
        return true;
      }
      deleteProperty(target, key) {
        {
          warn2(
            `Delete operation on key "${String(key)}" failed: target is readonly.`,
            target
          );
        }
        return true;
      }
    };
    var mutableHandlers = /* @__PURE__ */ new MutableReactiveHandler();
    var readonlyHandlers = /* @__PURE__ */ new ReadonlyReactiveHandler();
    var shallowReactiveHandlers = /* @__PURE__ */ new MutableReactiveHandler(true);
    var shallowReadonlyHandlers = /* @__PURE__ */ new ReadonlyReactiveHandler(true);
    var toShallow = (value) => value;
    var getProto = (v) => Reflect.getPrototypeOf(v);
    function createIterableMethod(method, isReadonly2, isShallow2) {
      return function(...args) {
        const target = this["__v_raw"];
        const rawTarget = toRaw2(target);
        const targetIsMap = shared.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 shared.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) {
        {
          const key = args[0] ? `on key "${args[0]}" ` : ``;
          warn2(
            `${shared.capitalize(type)} operation ${key}failed: target is readonly.`,
            toRaw2(this)
          );
        }
        return type === "delete" ? false : type === "clear" ? void 0 : this;
      };
    }
    function createInstrumentations(readonly2, shallow) {
      const instrumentations = {
        get(key) {
          const target = this["__v_raw"];
          const rawTarget = toRaw2(target);
          const rawKey = toRaw2(key);
          if (!readonly2) {
            if (shared.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(toRaw2(target), "iterate", ITERATE_KEY);
          return target.size;
        },
        has(key) {
          const target = this["__v_raw"];
          const rawTarget = toRaw2(target);
          const rawKey = toRaw2(key);
          if (!readonly2) {
            if (shared.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 = toRaw2(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);
          });
        }
      };
      shared.extend(
        instrumentations,
        readonly2 ? {
          add: createReadonlyMethod("add"),
          set: createReadonlyMethod("set"),
          delete: createReadonlyMethod("delete"),
          clear: createReadonlyMethod("clear")
        } : {
          add(value) {
            const target = toRaw2(this);
            const proto = getProto(target);
            const rawValue = toRaw2(value);
            const valueToAdd = !shallow && !isShallow(value) && !isReadonly(value) ? rawValue : value;
            const hadKey = proto.has.call(target, valueToAdd) || shared.hasChanged(value, valueToAdd) && proto.has.call(target, value) || shared.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 && !isShallow(value) && !isReadonly(value)) {
              value = toRaw2(value);
            }
            const target = toRaw2(this);
            const { has, get: get2 } = getProto(target);
            let hadKey = has.call(target, key);
            if (!hadKey) {
              key = toRaw2(key);
              hadKey = has.call(target, key);
            } else {
              checkIdentityKeys(target, has, key);
            }
            const oldValue = get2.call(target, key);
            target.set(key, value);
            if (!hadKey) {
              trigger(target, "add", key, value);
            } else if (shared.hasChanged(value, oldValue)) {
              trigger(target, "set", key, value, oldValue);
            }
            return this;
          },
          delete(key) {
            const target = toRaw2(this);
            const { has, get: get2 } = getProto(target);
            let hadKey = has.call(target, key);
            if (!hadKey) {
              key = toRaw2(key);
              hadKey = has.call(target, key);
            } else {
              checkIdentityKeys(target, has, key);
            }
            const oldValue = get2 ? get2.call(target, key) : void 0;
            const result = target.delete(key);
            if (hadKey) {
              trigger(target, "delete", key, void 0, oldValue);
            }
            return result;
          },
          clear() {
            const target = toRaw2(this);
            const hadItems = target.size !== 0;
            const oldTarget = shared.isMap(target) ? new Map(target) : new Set(target);
            const result = target.clear();
            if (hadItems) {
              trigger(
                target,
                "clear",
                void 0,
                void 0,
                oldTarget
              );
            }
            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(
          shared.hasOwn(instrumentations, key) && key in target ? instrumentations : target,
          key,
          receiver
        );
      };
    }
    var mutableCollectionHandlers = {
      get: /* @__PURE__ */ createInstrumentationGetter(false, false)
    };
    var shallowCollectionHandlers = {
      get: /* @__PURE__ */ createInstrumentationGetter(false, true)
    };
    var readonlyCollectionHandlers = {
      get: /* @__PURE__ */ createInstrumentationGetter(true, false)
    };
    var shallowReadonlyCollectionHandlers = {
      get: /* @__PURE__ */ createInstrumentationGetter(true, true)
    };
    function checkIdentityKeys(target, has, key) {
      const rawKey = toRaw2(key);
      if (rawKey !== key && has.call(target, rawKey)) {
        const type = shared.toRawType(target);
        warn2(
          `Reactive ${type} contains both the raw and reactive versions of the same object${type === `Map` ? ` as keys` : ``}, which can lead to inconsistencies. Avoid differentiating between the raw and reactive versions of an object and only use the reactive version if possible.`
        );
      }
    }
    var reactiveMap = /* @__PURE__ */ new WeakMap();
    var shallowReactiveMap = /* @__PURE__ */ new WeakMap();
    var readonlyMap = /* @__PURE__ */ new WeakMap();
    var 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 reactive3(target) {
      if (/* @__PURE__ */ isReadonly(target)) {
        return target;
      }
      return createReactiveObject(
        target,
        false,
        mutableHandlers,
        mutableCollectionHandlers,
        reactiveMap
      );
    }
    function shallowReactive(target) {
      return createReactiveObject(
        target,
        false,
        shallowReactiveHandlers,
        shallowCollectionHandlers,
        shallowReactiveMap
      );
    }
    function readonly(target) {
      return createReactiveObject(
        target,
        true,
        readonlyHandlers,
        readonlyCollectionHandlers,
        readonlyMap
      );
    }
    function shallowReadonly(target) {
      return createReactiveObject(
        target,
        true,
        shallowReadonlyHandlers,
        shallowReadonlyCollectionHandlers,
        shallowReadonlyMap
      );
    }
    function createReactiveObject(target, isReadonly2, baseHandlers, collectionHandlers, proxyMap) {
      if (!shared.isObject(target)) {
        {
          warn2(
            `value cannot be made ${isReadonly2 ? "readonly" : "reactive"}: ${String(
              target
            )}`
          );
        }
        return target;
      }
      if (target["__v_raw"] && !(isReadonly2 && target["__v_isReactive"])) {
        return target;
      }
      if (target["__v_skip"] || !Object.isExtensible(target)) {
        return target;
      }
      const existingProxy = proxyMap.get(target);
      if (existingProxy) {
        return existingProxy;
      }
      const targetType = targetTypeMap(shared.toRawType(target));
      if (targetType === 0) {
        return target;
      }
      const proxy = new Proxy(
        target,
        targetType === 2 ? collectionHandlers : baseHandlers
      );
      proxyMap.set(target, proxy);
      return proxy;
    }
    function isReactive2(value) {
      if (/* @__PURE__ */ isReadonly(value)) {
        return /* @__PURE__ */ isReactive2(value["__v_raw"]);
      }
      return !!(value && value["__v_isReactive"]);
    }
    function isReadonly(value) {
      return !!(value && value["__v_isReadonly"]);
    }
    function isShallow(value) {
      return !!(value && value["__v_isShallow"]);
    }
    function isProxy(value) {
      return value ? !!value["__v_raw"] : false;
    }
    function toRaw2(observed) {
      const raw2 = observed && observed["__v_raw"];
      return raw2 ? /* @__PURE__ */ toRaw2(raw2) : observed;
    }
    function markRaw(value) {
      if (!shared.hasOwn(value, "__v_skip") && Object.isExtensible(value)) {
        shared.def(value, "__v_skip", true);
      }
      return value;
    }
    var toReactive = (value) => shared.isObject(value) ? /* @__PURE__ */ reactive3(value) : value;
    var toReadonly = (value) => shared.isObject(value) ? /* @__PURE__ */ readonly(value) : value;
    function isRef(r) {
      return r ? r["__v_isRef"] === true : false;
    }
    function ref(value) {
      return createRef(value, false);
    }
    function shallowRef(value) {
      return createRef(value, true);
    }
    function createRef(rawValue, shallow) {
      if (/* @__PURE__ */ isRef(rawValue)) {
        return rawValue;
      }
      return new RefImpl(rawValue, shallow);
    }
    var RefImpl = class {
      constructor(value, isShallow2) {
        this.dep = new Dep();
        this["__v_isRef"] = true;
        this["__v_isShallow"] = false;
        this._rawValue = isShallow2 ? value : toRaw2(value);
        this._value = isShallow2 ? value : toReactive(value);
        this["__v_isShallow"] = isShallow2;
      }
      get value() {
        {
          this.dep.track({
            target: this,
            type: "get",
            key: "value"
          });
        }
        return this._value;
      }
      set value(newValue) {
        const oldValue = this._rawValue;
        const useDirectValue = this["__v_isShallow"] || isShallow(newValue) || isReadonly(newValue);
        newValue = useDirectValue ? newValue : toRaw2(newValue);
        if (shared.hasChanged(newValue, oldValue)) {
          this._rawValue = newValue;
          this._value = useDirectValue ? newValue : toReactive(newValue);
          {
            this.dep.trigger({
              target: this,
              type: "set",
              key: "value",
              newValue,
              oldValue
            });
          }
        }
      }
    };
    function triggerRef(ref2) {
      if (ref2.dep) {
        {
          ref2.dep.trigger({
            target: ref2,
            type: "set",
            key: "value",
            newValue: ref2._value
          });
        }
      }
    }
    function unref(ref2) {
      return /* @__PURE__ */ isRef(ref2) ? ref2.value : ref2;
    }
    function toValue(source) {
      return shared.isFunction(source) ? source() : unref(source);
    }
    var 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 isReactive2(objectWithRefs) ? objectWithRefs : new Proxy(objectWithRefs, shallowUnwrapHandlers);
    }
    var CustomRefImpl = class {
      constructor(factory) {
        this["__v_isRef"] = true;
        this._value = void 0;
        const dep = this.dep = new Dep();
        const { get: get2, set: set2 } = factory(dep.track.bind(dep), dep.trigger.bind(dep));
        this._get = get2;
        this._set = set2;
      }
      get value() {
        return this._value = this._get();
      }
      set value(newVal) {
        this._set(newVal);
      }
    };
    function customRef(factory) {
      return new CustomRefImpl(factory);
    }
    function toRefs(object) {
      if (!isProxy(object)) {
        warn2(`toRefs() expects a reactive object but received a plain one.`);
      }
      const ret = shared.isArray(object) ? new Array(object.length) : {};
      for (const key in object) {
        ret[key] = propertyToRef(object, key);
      }
      return ret;
    }
    var ObjectRefImpl = class {
      constructor(_object, key, _defaultValue) {
        this._object = _object;
        this._defaultValue = _defaultValue;
        this["__v_isRef"] = true;
        this._value = void 0;
        this._key = shared.isSymbol(key) ? key : String(key);
        this._raw = toRaw2(_object);
        let shallow = true;
        let obj = _object;
        if (!shared.isArray(_object) || shared.isSymbol(this._key) || !shared.isIntegerKey(this._key)) {
          do {
            shallow = !isProxy(obj) || 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);
      }
    };
    var GetterRefImpl = class {
      constructor(_getter) {
        this._getter = _getter;
        this["__v_isRef"] = true;
        this["__v_isReadonly"] = true;
        this._value = void 0;
      }
      get value() {
        return this._value = this._getter();
      }
    };
    function toRef(source, key, defaultValue) {
      if (/* @__PURE__ */ isRef(source)) {
        return source;
      } else if (shared.isFunction(source)) {
        return new GetterRefImpl(source);
      } else if (shared.isObject(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);
    }
    var ComputedRefImpl = class {
      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 link = this.dep.track({
          target: this,
          type: "get",
          key: "value"
        });
        refreshComputed(this);
        if (link) {
          link.version = this.dep.version;
        }
        return this._value;
      }
      set value(newValue) {
        if (this.setter) {
          this.setter(newValue);
        } else {
          warn2("Write operation failed: computed value is readonly");
        }
      }
    };
    function computed(getterOrOptions, debugOptions, isSSR = false) {
      let getter;
      let setter;
      if (shared.isFunction(getterOrOptions)) {
        getter = getterOrOptions;
      } else {
        getter = getterOrOptions.get;
        setter = getterOrOptions.set;
      }
      const cRef = new ComputedRefImpl(getter, setter, isSSR);
      if (debugOptions && !isSSR) {
        cRef.onTrack = debugOptions.onTrack;
        cRef.onTrigger = debugOptions.onTrigger;
      }
      return cRef;
    }
    var TrackOpTypes = {
      "GET": "get",
      "HAS": "has",
      "ITERATE": "iterate"
    };
    var TriggerOpTypes = {
      "SET": "set",
      "ADD": "add",
      "DELETE": "delete",
      "CLEAR": "clear"
    };
    var ReactiveFlags = {
      "SKIP": "__v_skip",
      "IS_REACTIVE": "__v_isReactive",
      "IS_READONLY": "__v_isReadonly",
      "IS_SHALLOW": "__v_isShallow",
      "RAW": "__v_raw",
      "IS_REF": "__v_isRef"
    };
    var WatchErrorCodes = {
      "WATCH_GETTER": 2,
      "2": "WATCH_GETTER",
      "WATCH_CALLBACK": 3,
      "3": "WATCH_CALLBACK",
      "WATCH_CLEANUP": 4,
      "4": "WATCH_CLEANUP"
    };
    var INITIAL_WATCHER_VALUE = {};
    var cleanupMap = /* @__PURE__ */ new WeakMap();
    var activeWatcher = void 0;
    function getCurrentWatcher() {
      return activeWatcher;
    }
    function onWatcherCleanup(cleanupFn, failSilently = false, owner = activeWatcher) {
      if (owner) {
        let cleanups = cleanupMap.get(owner);
        if (!cleanups)
          cleanupMap.set(owner, cleanups = []);
        cleanups.push(cleanupFn);
      } else if (!failSilently) {
        warn2(
          `onWatcherCleanup() was called when there was no active watcher to associate with.`
        );
      }
    }
    function watch2(source, cb, options = shared.EMPTY_OBJ) {
      const { immediate, deep, once: once2, scheduler: scheduler2, augmentJob, call } = options;
      const warnInvalidSource = (s) => {
        (options.onWarn || warn2)(
          `Invalid watch source: `,
          s,
          `A watch source can only be a getter/effect function, a ref, a reactive object, or an array of these types.`
        );
      };
      const reactiveGetter = (source2) => {
        if (deep)
          return source2;
        if (isShallow(source2) || deep === false || deep === 0)
          return traverse(source2, 1);
        return traverse(source2);
      };
      let effect4;
      let getter;
      let cleanup;
      let boundCleanup;
      let forceTrigger = false;
      let isMultiSource = false;
      if (isRef(source)) {
        getter = () => source.value;
        forceTrigger = isShallow(source);
      } else if (isReactive2(source)) {
        getter = () => reactiveGetter(source);
        forceTrigger = true;
      } else if (shared.isArray(source)) {
        isMultiSource = true;
        forceTrigger = source.some((s) => isReactive2(s) || isShallow(s));
        getter = () => source.map((s) => {
          if (isRef(s)) {
            return s.value;
          } else if (isReactive2(s)) {
            return reactiveGetter(s);
          } else if (shared.isFunction(s)) {
            return call ? call(s, 2) : s();
          } else {
            warnInvalidSource(s);
          }
        });
      } else if (shared.isFunction(source)) {
        if (cb) {
          getter = call ? () => call(source, 2) : source;
        } else {
          getter = () => {
            if (cleanup) {
              pauseTracking();
              try {
                cleanup();
              } finally {
                resetTracking();
              }
            }
            const currentEffect = activeWatcher;
            activeWatcher = effect4;
            try {
              return call ? call(source, 3, [boundCleanup]) : source(boundCleanup);
            } finally {
              activeWatcher = currentEffect;
            }
          };
        }
      } else {
        getter = shared.NOOP;
        warnInvalidSource(source);
      }
      if (cb && deep) {
        const baseGetter = getter;
        const depth = deep === true ? Infinity : deep;
        getter = () => traverse(baseGetter(), depth);
      }
      const scope2 = getCurrentScope();
      const watchHandle = () => {
        effect4.stop();
        if (scope2 && scope2.active) {
          shared.remove(scope2.effects, effect4);
        }
      };
      if (once2 && cb) {
        const _cb = cb;
        cb = (...args) => {
          const res = _cb(...args);
          watchHandle();
          return res;
        };
      }
      let oldValue = isMultiSource ? new Array(source.length).fill(INITIAL_WATCHER_VALUE) : INITIAL_WATCHER_VALUE;
      const job = (immediateFirstRun) => {
        if (!(effect4.flags & 1) || !effect4.dirty && !immediateFirstRun) {
          return;
        }
        if (cb) {
          const newValue = effect4.run();
          if (immediateFirstRun || deep || forceTrigger || (isMultiSource ? newValue.some((v, i) => shared.hasChanged(v, oldValue[i])) : shared.hasChanged(newValue, oldValue))) {
            if (cleanup) {
              cleanup();
            }
            const currentWatcher = activeWatcher;
            activeWatcher = effect4;
            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 {
          effect4.run();
        }
      };
      if (augmentJob) {
        augmentJob(job);
      }
      effect4 = new ReactiveEffect(getter);
      effect4.scheduler = scheduler2 ? () => scheduler2(job, false) : job;
      boundCleanup = (fn) => onWatcherCleanup(fn, false, effect4);
      cleanup = effect4.onStop = () => {
        const cleanups = cleanupMap.get(effect4);
        if (cleanups) {
          if (call) {
            call(cleanups, 4);
          } else {
            for (const cleanup2 of cleanups)
              cleanup2();
          }
          cleanupMap.delete(effect4);
        }
      };
      {
        effect4.onTrack = options.onTrack;
        effect4.onTrigger = options.onTrigger;
      }
      if (cb) {
        if (immediate) {
          job(true);
        } else {
          oldValue = effect4.run();
        }
      } else if (scheduler2) {
        scheduler2(job.bind(null, true), true);
      } else {
        effect4.run();
      }
      watchHandle.pause = effect4.pause.bind(effect4);
      watchHandle.resume = effect4.resume.bind(effect4);
      watchHandle.stop = watchHandle;
      return watchHandle;
    }
    function traverse(value, depth = Infinity, seen) {
      if (depth <= 0 || !shared.isObject(value) || value["__v_skip"]) {
        return value;
      }
      seen = seen || /* @__PURE__ */ new Map();
      if ((seen.get(value) || 0) >= depth) {
        return value;
      }
      seen.set(value, depth);
      depth--;
      if (isRef(value)) {
        traverse(value.value, depth, seen);
      } else if (shared.isArray(value)) {
        for (let i = 0; i < value.length; i++) {
          traverse(value[i], depth, seen);
        }
      } else if (shared.isSet(value) || shared.isMap(value)) {
        value.forEach((v) => {
          traverse(v, depth, seen);
        });
      } else if (shared.isPlainObject(value)) {
        for (const key in value) {
          traverse(value[key], depth, seen);
        }
        for (const key of Object.getOwnPropertySymbols(value)) {
          if (Object.prototype.propertyIsEnumerable.call(value, key)) {
            traverse(value[key], depth, seen);
          }
        }
      }
      return value;
    }
    exports.ARRAY_ITERATE_KEY = ARRAY_ITERATE_KEY;
    exports.EffectFlags = EffectFlags;
    exports.EffectScope = EffectScope;
    exports.ITERATE_KEY = ITERATE_KEY;
    exports.MAP_KEY_ITERATE_KEY = MAP_KEY_ITERATE_KEY;
    exports.ReactiveEffect = ReactiveEffect;
    exports.ReactiveFlags = ReactiveFlags;
    exports.TrackOpTypes = TrackOpTypes;
    exports.TriggerOpTypes = TriggerOpTypes;
    exports.WatchErrorCodes = WatchErrorCodes;
    exports.computed = computed;
    exports.customRef = customRef;
    exports.effect = effect3;
    exports.effectScope = effectScope;
    exports.enableTracking = enableTracking;
    exports.getCurrentScope = getCurrentScope;
    exports.getCurrentWatcher = getCurrentWatcher;
    exports.isProxy = isProxy;
    exports.isReactive = isReactive2;
    exports.isReadonly = isReadonly;
    exports.isRef = isRef;
    exports.isShallow = isShallow;
    exports.markRaw = markRaw;
    exports.onEffectCleanup = onEffectCleanup;
    exports.onScopeDispose = onScopeDispose;
    exports.onWatcherCleanup = onWatcherCleanup;
    exports.pauseTracking = pauseTracking;
    exports.proxyRefs = proxyRefs;
    exports.reactive = reactive3;
    exports.reactiveReadArray = reactiveReadArray;
    exports.readonly = readonly;
    exports.ref = ref;
    exports.resetTracking = resetTracking;
    exports.shallowReactive = shallowReactive;
    exports.shallowReadArray = shallowReadArray;
    exports.shallowReadonly = shallowReadonly;
    exports.shallowRef = shallowRef;
    exports.stop = stop2;
    exports.toRaw = toRaw2;
    exports.toReactive = toReactive;
    exports.toReadonly = toReadonly;
    exports.toRef = toRef;
    exports.toRefs = toRefs;
    exports.toValue = toValue;
    exports.track = track;
    exports.traverse = traverse;
    exports.trigger = trigger;
    exports.triggerRef = triggerRef;
    exports.unref = unref;
    exports.watch = watch2;
  }
});

// node_modules/@vue/reactivity/index.js
var require_reactivity = __commonJS({
  "node_modules/@vue/reactivity/index.js"(exports, module2) {
    "use strict";
    if (false) {
      module2.exports = null;
    } else {
      module2.exports = require_reactivity_cjs();
    }
  }
});

// packages/alpinejs/builds/module.js
var module_exports = {};
__export(module_exports, {
  Alpine: () => src_default,
  default: () => module_default
});
module.exports = __toCommonJS(module_exports);

// packages/alpinejs/src/scheduler.js
var flushPending = false;
var flushing = false;
var queue = [];
var lastFlushedIndex = -1;
var queueNeedsSort = false;
var transactionActive = false;
function scheduler(callback) {
  queueJob(callback);
}
function startTransaction() {
  transactionActive = true;
}
function commitTransaction() {
  transactionActive = false;
  queueFlush();
}
function queueJob(job) {
  if (!queue.includes(job)) {
    queue.push(job);
    if (job._x_schedulerPriority !== void 0)
      queueNeedsSort = true;
  }
  queueFlush();
}
function dequeueJob(job) {
  let index = queue.indexOf(job);
  if (index !== -1 && index > lastFlushedIndex)
    queue.splice(index, 1);
}
function queueFlush() {
  if (!flushing && !flushPending) {
    if (transactionActive)
      return;
    flushPending = true;
    queueMicrotask(flushJobs);
  }
}
function flushJobs() {
  flushPending = false;
  flushing = true;
  for (let i = 0; i < queue.length; i++) {
    if (queueNeedsSort)
      sortPendingJobs(i);
    queue[i]();
    lastFlushedIndex = i;
  }
  queue.length = 0;
  lastFlushedIndex = -1;
  queueNeedsSort = false;
  flushing = false;
}
function sortPendingJobs(start2) {
  let depths = /* @__PURE__ */ new Map();
  let sorted = queue.slice(start2).sort((a, b) => compareJobs(a, b, depths));
  for (let i = 0; i < sorted.length; i++) {
    queue[start2 + i] = sorted[i];
  }
  queueNeedsSort = false;
}
function compareJobs(a, b, depths) {
  if (!isStructural(a))
    return isStructural(b) ? 1 : 0;
  if (!isStructural(b))
    return -1;
  let depthDifference = getElementDepth(a._x_schedulerPriority.el, depths) - getElementDepth(b._x_schedulerPriority.el, depths);
  return depthDifference || a._x_schedulerPriority.order - b._x_schedulerPriority.order;
}
function isStructural(job) {
  return job._x_schedulerPriority !== void 0;
}
function getElementDepth(el, depths) {
  if (depths.has(el))
    return depths.get(el);
  let depth = 0;
  let owner = el;
  while (el) {
    depth++;
    if (el._x_teleportBack) {
      el = el._x_teleportBack;
    } else if (typeof ShadowRoot === "function" && el.parentNode instanceof ShadowRoot) {
      el = el.parentNode.host;
    } else {
      el = el.parentElement;
    }
  }
  depths.set(owner, depth);
  return depth;
}

// packages/alpinejs/src/reactivity.js
var reactive;
var effect;
var release;
var raw;
var nextStructuralEffectOrder = 0;
var shouldSchedule = true;
function disableEffectScheduling(callback) {
  shouldSchedule = false;
  callback();
  shouldSchedule = true;
}
function setReactivityEngine(engine) {
  reactive = engine.reactive;
  release = engine.release;
  effect = (callback) => engine.effect(callback, { scheduler: (task) => {
    if (shouldSchedule) {
      scheduler(task);
    } else {
      task();
    }
  } });
  raw = engine.raw;
}
function overrideEffect(override) {
  effect = override;
}
function elementBoundEffect(el) {
  let cleanup = () => {
  };
  let wrappedEffect = (callback, options) => {
    let priority = (options == null ? void 0 : options.priority) === "structural" ? nextStructuralEffectOrder++ : void 0;
    let effectReference = effect(callback);
    if (priority !== void 0 && effectReference !== void 0) {
      effectReference._x_schedulerPriority = { el, order: priority };
    }
    if (!el._x_effects) {
      el._x_effects = /* @__PURE__ */ new Set();
      el._x_runEffects = () => {
        el._x_effects.forEach((i) => i());
      };
    }
    el._x_effects.add(effectReference);
    cleanup = () => {
      if (effectReference === void 0)
        return;
      el._x_effects.delete(effectReference);
      release(effectReference);
    };
    return effectReference;
  };
  return [wrappedEffect, () => {
    cleanup();
  }];
}
function watch(getter, callback) {
  let firstTime = true;
  let oldValue;
  let oldValueJSON;
  let effectReference = effect(() => {
    let value = getter();
    let newJSON = JSON.stringify(value);
    if (!firstTime) {
      if (typeof value === "object" || value !== oldValue) {
        let previousValue = typeof oldValue === "object" ? JSON.parse(oldValueJSON) : oldValue;
        queueMicrotask(() => {
          callback(value, previousValue);
        });
      }
    }
    oldValue = value;
    oldValueJSON = newJSON;
    firstTime = false;
  });
  return () => {
    dequeueJob(effectReference);
    release(effectReference);
  };
}
async function transaction(callback) {
  startTransaction();
  try {
    await callback();
    await Promise.resolve();
  } finally {
    commitTransaction();
  }
}

// packages/alpinejs/src/mutation.js
var onAttributeAddeds = [];
var onElRemoveds = [];
var onElAddeds = [];
function onElAdded(callback) {
  onElAddeds.push(callback);
}
function onElRemoved(el, callback) {
  if (typeof callback === "function") {
    if (!el._x_cleanups)
      el._x_cleanups = [];
    el._x_cleanups.push(callback);
  } else {
    callback = el;
    onElRemoveds.push(callback);
  }
}
function onAttributesAdded(callback) {
  onAttributeAddeds.push(callback);
}
function onAttributeRemoved(el, name, callback) {
  if (!el._x_attributeCleanups)
    el._x_attributeCleanups = {};
  if (!el._x_attributeCleanups[name])
    el._x_attributeCleanups[name] = [];
  el._x_attributeCleanups[name].push(callback);
}
function cleanupAttributes(el, names) {
  if (!el._x_attributeCleanups)
    return;
  Object.entries(el._x_attributeCleanups).forEach(([name, value]) => {
    if (names === void 0 || names.includes(name)) {
      value.forEach((i) => i());
      delete el._x_attributeCleanups[name];
    }
  });
}
function cleanupElement(el) {
  var _a, _b;
  (_a = el._x_effects) == null ? void 0 : _a.forEach(dequeueJob);
  while ((_b = el._x_cleanups) == null ? void 0 : _b.length)
    el._x_cleanups.pop()();
}
var observer = new MutationObserver(onMutate);
var currentlyObserving = false;
function startObservingMutations() {
  observer.observe(document, { subtree: true, childList: true, attributes: true, attributeOldValue: true });
  currentlyObserving = true;
}
function stopObservingMutations() {
  flushObserver();
  observer.disconnect();
  currentlyObserving = false;
}
var queuedMutations = [];
function flushObserver() {
  let records = observer.takeRecords();
  queuedMutations.push(() => records.length > 0 && onMutate(records));
  let queueLengthWhenTriggered = queuedMutations.length;
  queueMicrotask(() => {
    if (queuedMutations.length === queueLengthWhenTriggered) {
      while (queuedMutations.length > 0)
        queuedMutations.shift()();
    }
  });
}
function flushPendingMutations() {
  while (queuedMutations.length > 0)
    queuedMutations.shift()();
  let records = observer.takeRecords();
  if (records.length > 0)
    onMutate(records);
}
function mutateDom(callback) {
  if (!currentlyObserving)
    return callback();
  stopObservingMutations();
  let result = callback();
  startObservingMutations();
  return result;
}
var isCollecting = false;
var deferredMutations = [];
function deferMutations() {
  isCollecting = true;
}
function flushAndStopDeferringMutations() {
  isCollecting = false;
  onMutate(deferredMutations);
  deferredMutations = [];
}
function onMutate(mutations) {
  if (isCollecting) {
    deferredMutations = deferredMutations.concat(mutations);
    return;
  }
  let addedNodes = [];
  let removedNodes = /* @__PURE__ */ new Set();
  let addedAttributes = /* @__PURE__ */ new Map();
  let removedAttributes = /* @__PURE__ */ new Map();
  for (let i = 0; i < mutations.length; i++) {
    if (mutations[i].target._x_ignoreMutationObserver)
      continue;
    if (mutations[i].type === "childList") {
      mutations[i].removedNodes.forEach((node) => {
        if (node.nodeType !== 1)
          return;
        if (!node._x_marker)
          return;
        removedNodes.add(node);
      });
      mutations[i].addedNodes.forEach((node) => {
        if (node.nodeType !== 1)
          return;
        if (removedNodes.has(node)) {
          removedNodes.delete(node);
          return;
        }
        if (node._x_marker)
          return;
        addedNodes.push(node);
      });
    }
    if (mutations[i].type === "attributes") {
      let el = mutations[i].target;
      let name = mutations[i].attributeName;
      let oldValue = mutations[i].oldValue;
      let add = () => {
        if (!addedAttributes.has(el))
          addedAttributes.set(el, []);
        addedAttributes.get(el).push({ name, value: el.getAttribute(name) });
      };
      let remove = () => {
        if (!removedAttributes.has(el))
          removedAttributes.set(el, []);
        removedAttributes.get(el).push(name);
      };
      if (el.hasAttribute(name) && oldValue === null) {
        add();
      } else if (el.hasAttribute(name)) {
        remove();
        add();
      } else {
        remove();
      }
    }
  }
  removedAttributes.forEach((attrs, el) => {
    cleanupAttributes(el, attrs);
  });
  addedAttributes.forEach((attrs, el) => {
    onAttributeAddeds.forEach((i) => i(el, attrs));
  });
  for (let node of removedNodes) {
    if (addedNodes.some((i) => i.contains(node)))
      continue;
    onElRemoveds.forEach((i) => i(node));
  }
  for (let node of addedNodes) {
    if (!node.isConnected)
      continue;
    onElAddeds.forEach((i) => i(node));
  }
  addedNodes = null;
  removedNodes = null;
  addedAttributes = null;
  removedAttributes = null;
}

// packages/alpinejs/src/scope.js
function scope(node) {
  return mergeProxies(closestDataStack(node));
}
function addScopeToNode(node, data2, referenceNode) {
  node._x_dataStack = [data2, ...closestDataStack(referenceNode || node)];
  return () => {
    node._x_dataStack = node._x_dataStack.filter((i) => i !== data2);
  };
}
function closestDataStack(node) {
  if (node._x_dataStack)
    return node._x_dataStack;
  if (typeof ShadowRoot === "function" && node instanceof ShadowRoot) {
    return closestDataStack(node.host);
  }
  if (!node.parentNode) {
    return [];
  }
  return closestDataStack(node.parentNode);
}
function mergeProxies(objects) {
  return new Proxy({ objects }, mergeProxyTrap);
}
function keyInPrototypeChain(obj, key) {
  if (obj === null || obj === Object.prototype)
    return null;
  if (Object.prototype.hasOwnProperty.call(obj, key))
    return obj;
  return keyInPrototypeChain(Object.getPrototypeOf(obj), key);
}
var mergeProxyTrap = {
  ownKeys({ objects }) {
    return Array.from(
      new Set(objects.flatMap((i) => Object.keys(i)))
    );
  },
  has({ objects }, name) {
    if (name == Symbol.unscopables)
      return false;
    return objects.some(
      (obj) => Object.prototype.hasOwnProperty.call(obj, name) || Reflect.has(obj, name)
    );
  },
  get({ objects }, name, thisProxy) {
    if (name == "toJSON")
      return collapseProxies;
    return Reflect.get(
      objects.find(
        (obj) => Reflect.has(obj, name)
      ) || {},
      name,
      thisProxy
    );
  },
  set({ objects }, name, value, thisProxy) {
    let target;
    for (const obj of objects) {
      target = keyInPrototypeChain(obj, name);
      if (target)
        break;
    }
    if (!target)
      target = objects[objects.length - 1];
    const descriptor = Object.getOwnPropertyDescriptor(target, name);
    if ((descriptor == null ? void 0 : descriptor.set) && (descriptor == null ? void 0 : descriptor.get))
      return descriptor.set.call(thisProxy, value) || true;
    return Reflect.set(target, name, value);
  }
};
function collapseProxies() {
  let keys = Reflect.ownKeys(this);
  return keys.reduce((acc, key) => {
    acc[key] = Reflect.get(this, key);
    return acc;
  }, {});
}

// packages/alpinejs/src/interceptor.js
function initInterceptors(data2, cleanup = () => {
}) {
  let isObject2 = (val) => typeof val === "object" && !Array.isArray(val) && val !== null;
  let recurse = (obj, basePath = "") => {
    Object.entries(Object.getOwnPropertyDescriptors(obj)).forEach(([key, { value, enumerable }]) => {
      if (enumerable === false || value === void 0)
        return;
      if (typeof value === "object" && value !== null && value.__v_skip)
        return;
      let path = basePath === "" ? key : `${basePath}.${key}`;
      if (typeof value === "object" && value !== null && value._x_interceptor) {
        obj[key] = value.initialize(data2, path, key, cleanup);
      } else {
        if (isObject2(value) && value !== obj && !(value instanceof Element)) {
          recurse(value, path);
        }
      }
    });
  };
  return recurse(data2);
}
function interceptor(callback, mutateObj = () => {
}) {
  let obj = {
    initialValue: void 0,
    _x_interceptor: true,
    initialize(data2, path, key, cleanup) {
      return callback(this.initialValue, () => get(data2, path), (value) => set(data2, path, value), path, key, cleanup);
    }
  };
  mutateObj(obj);
  return (initialValue) => {
    if (typeof initialValue === "object" && initialValue !== null && initialValue._x_interceptor) {
      let initialize = obj.initialize.bind(obj);
      obj.initialize = (data2, path, key, cleanup) => {
        let innerValue = initialValue.initialize(data2, path, key, cleanup);
        obj.initialValue = innerValue;
        return initialize(data2, path, key, cleanup);
      };
    } else {
      obj.initialValue = initialValue;
    }
    return obj;
  };
}
function get(obj, path) {
  return path.split(".").reduce((carry, segment) => carry[segment], obj);
}
function set(obj, path, value) {
  if (typeof path === "string")
    path = path.split(".");
  if (path.length === 1)
    obj[path[0]] = value;
  else if (path.length === 0)
    throw error;
  else {
    if (obj[path[0]])
      return set(obj[path[0]], path.slice(1), value);
    else {
      obj[path[0]] = {};
      return set(obj[path[0]], path.slice(1), value);
    }
  }
}

// packages/alpinejs/src/magics.js
var magics = {};
function magic(name, callback) {
  magics[name] = callback;
}
function injectMagics(obj, el) {
  let memoizedUtilities = getUtilities(el);
  Object.entries(magics).forEach(([name, callback]) => {
    Object.defineProperty(obj, `$${name}`, {
      get() {
        return callback(el, memoizedUtilities);
      },
      enumerable: false
    });
  });
  return obj;
}
function getUtilities(el) {
  let [utilities, cleanup] = getElementBoundUtilities(el);
  let utils = { interceptor, ...utilities };
  onElRemoved(el, cleanup);
  return utils;
}

// packages/alpinejs/src/utils/error.js
function tryCatch(el, expression, callback, ...args) {
  try {
    return callback(...args);
  } catch (e) {
    handleError(e, el, expression);
  }
}
function handleError(...args) {
  return errorHandler(...args);
}
var errorHandler = normalErrorHandler;
function setErrorHandler(handler4) {
  errorHandler = handler4;
}
function normalErrorHandler(error2, el, expression = void 0) {
  error2 = Object.assign(
    error2 != null ? error2 : { message: "No error message given." },
    { el, expression }
  );
  console.warn(`Alpine Expression Error: ${error2.message}

${expression ? 'Expression: "' + expression + '"\n\n' : ""}`, el);
  setTimeout(() => {
    throw error2;
  }, 0);
}

// packages/alpinejs/src/evaluator.js
var shouldAutoEvaluateFunctions = true;
function dontAutoEvaluateFunctions(callback) {
  let cache = shouldAutoEvaluateFunctions;
  shouldAutoEvaluateFunctions = false;
  let result = callback();
  shouldAutoEvaluateFunctions = cache;
  return result;
}
function evaluate(el, expression, extras = {}) {
  let result;
  evaluateLater(el, expression)((value) => result = value, extras);
  return result;
}
function evaluateLater(...args) {
  return theEvaluatorFunction(...args);
}
var theEvaluatorFunction = () => {
};
function setEvaluator(newEvaluator) {
  theEvaluatorFunction = newEvaluator;
}
var theRawEvaluatorFunction;
function setRawEvaluator(newEvaluator) {
  theRawEvaluatorFunction = newEvaluator;
}
function normalEvaluator(el, expression) {
  let overriddenMagics = {};
  injectMagics(overriddenMagics, el);
  let dataStack = [overriddenMagics, ...closestDataStack(el)];
  let evaluator = typeof expression === "function" ? generateEvaluatorFromFunction(dataStack, expression) : generateEvaluatorFromString(dataStack, expression, el);
  return tryCatch.bind(null, el, expression, evaluator);
}
function generateEvaluatorFromFunction(dataStack, func) {
  return (receiver = () => {
  }, { scope: scope2 = {}, params = [], context } = {}) => {
    if (!shouldAutoEvaluateFunctions) {
      runIfTypeOfFunction(receiver, func, mergeProxies([scope2, ...dataStack]), params);
      return;
    }
    let result = func.apply(mergeProxies([scope2, ...dataStack]), params);
    runIfTypeOfFunction(receiver, result);
  };
}
var evaluatorMemo = {};
function generateFunctionFromString(expression, el) {
  if (evaluatorMemo[expression]) {
    return evaluatorMemo[expression];
  }
  let AsyncFunction = Object.getPrototypeOf(async function() {
  }).constructor;
  let rightSideSafeExpression = /^[\n\s]*if.*\(.*\)/.test(expression.trim()) || /^(let|const)\s/.test(expression.trim()) ? `(async()=>{ ${expression} })()` : expression;
  const safeAsyncFunction = () => {
    try {
      let func2 = new AsyncFunction(
        ["__self", "scope"],
        `with (scope) { __self.result = ${rightSideSafeExpression} }; __self.finished = true; return __self.result;`
      );
      Object.defineProperty(func2, "name", {
        value: `[Alpine] ${expression}`
      });
      return func2;
    } catch (error2) {
      handleError(error2, el, expression);
      return Promise.resolve();
    }
  };
  let func = safeAsyncFunction();
  evaluatorMemo[expression] = func;
  return func;
}
function generateEvaluatorFromString(dataStack, expression, el) {
  let func = generateFunctionFromString(expression, el);
  return (receiver = () => {
  }, { scope: scope2 = {}, params = [], context } = {}) => {
    func.result = void 0;
    func.finished = false;
    let completeScope = mergeProxies([scope2, ...dataStack]);
    if (typeof func === "function") {
      let promise = func.call(context, func, completeScope).catch((error2) => handleError(error2, el, expression));
      if (func.finished) {
        runIfTypeOfFunction(receiver, func.result, completeScope, params, el);
        func.result = void 0;
      } else {
        promise.then((result) => {
          runIfTypeOfFunction(receiver, result, completeScope, params, el);
        }).catch((error2) => handleError(error2, el, expression)).finally(() => func.result = void 0);
      }
    }
  };
}
function runIfTypeOfFunction(receiver, value, scope2, params, el) {
  if (shouldAutoEvaluateFunctions && typeof value === "function") {
    let result = value.apply(scope2, params);
    if (result instanceof Promise) {
      result.then((i) => runIfTypeOfFunction(receiver, i, scope2, params)).catch((error2) => handleError(error2, el, value));
    } else {
      receiver(result);
    }
  } else if (typeof value === "object" && value instanceof Promise) {
    value.then((i) => receiver(i));
  } else {
    receiver(value);
  }
}
function evaluateRaw(...args) {
  return theRawEvaluatorFunction(...args);
}
function normalRawEvaluator(el, expression, extras = {}) {
  var _a, _b;
  let overriddenMagics = {};
  injectMagics(overriddenMagics, el);
  let dataStack = [overriddenMagics, ...closestDataStack(el)];
  let scope2 = mergeProxies([(_a = extras.scope) != null ? _a : {}, ...dataStack]);
  let params = (_b = extras.params) != null ? _b : [];
  if (expression.includes("await")) {
    let AsyncFunction = Object.getPrototypeOf(async function() {
    }).constructor;
    let rightSideSafeExpression = /^[\n\s]*if.*\(.*\)/.test(expression.trim()) || /^(let|const)\s/.test(expression.trim()) ? `(async()=>{ ${expression} })()` : expression;
    let func = new AsyncFunction(
      ["scope"],
      `with (scope) { let __result = ${rightSideSafeExpression}; return __result }`
    );
    let result = func.call(extras.context, scope2);
    return result;
  } else {
    let rightSideSafeExpression = /^[\n\s]*if.*\(.*\)/.test(expression.trim()) || /^(let|const)\s/.test(expression.trim()) ? `(()=>{ ${expression} })()` : expression;
    let func = new Function(
      ["scope"],
      `with (scope) { let __result = ${rightSideSafeExpression}; return __result }`
    );
    let result = func.call(extras.context, scope2);
    if (typeof result === "function" && shouldAutoEvaluateFunctions) {
      return result.apply(scope2, params);
    }
    return result;
  }
}

// packages/alpinejs/src/directives.js
var prefixAsString = "x-";
function prefix(subject = "") {
  return prefixAsString + subject;
}
function setPrefix(newPrefix) {
  prefixAsString = newPrefix;
}
var directiveHandlers = {};
function directive(name, callback) {
  directiveHandlers[name] = callback;
  return {
    before(directive2) {
      if (!directiveHandlers[directive2]) {
        console.warn(String.raw`Cannot find directive \`${directive2}\`. \`${name}\` will use the default order of execution`);
        return;
      }
      const pos = directiveOrder.indexOf(directive2);
      directiveOrder.splice(pos >= 0 ? pos : directiveOrder.indexOf("DEFAULT"), 0, name);
    }
  };
}
function directiveExists(name) {
  return Object.keys(directiveHandlers).includes(name);
}
function directives(el, attributes, originalAttributeOverride) {
  attributes = Array.from(attributes);
  if (el._x_virtualDirectives) {
    let vAttributes = Object.entries(el._x_virtualDirectives).map(([name, value]) => ({ name, value }));
    let staticAttributes = attributesOnly(vAttributes);
    vAttributes = vAttributes.map((attribute) => {
      if (staticAttributes.find((attr) => attr.name === attribute.name)) {
        return {
          name: `x-bind:${attribute.name}`,
          value: `"${attribute.value}"`
        };
      }
      return attribute;
    });
    attributes = attributes.concat(vAttributes);
  }
  let transformedAttributeMap = {};
  let directives2 = attributes.map(toTransformedAttributes((newName, oldName) => transformedAttributeMap[newName] = oldName)).filter(outNonAlpineAttributes).map(toParsedDirectives(transformedAttributeMap, originalAttributeOverride)).sort(byPriority);
  return directives2.map((directive2) => {
    return getDirectiveHandler(el, directive2);
  });
}
function attributesOnly(attributes) {
  return Array.from(attributes).map(toTransformedAttributes()).filter((attr) => !outNonAlpineAttributes(attr));
}
var isDeferringHandlers = false;
var directiveHandlerStacks = /* @__PURE__ */ new Map();
var currentHandlerStackKey = Symbol();
function deferHandlingDirectives(callback) {
  isDeferringHandlers = true;
  let key = Symbol();
  currentHandlerStackKey = key;
  directiveHandlerStacks.set(key, []);
  let flushHandlers = () => {
    while (directiveHandlerStacks.get(key).length)
      directiveHandlerStacks.get(key).shift()();
    directiveHandlerStacks.delete(key);
  };
  let stopDeferring = () => {
    isDeferringHandlers = false;
    flushHandlers();
  };
  callback(flushHandlers);
  stopDeferring();
}
function getElementBoundUtilities(el) {
  let cleanups = [];
  let cleanup = (callback) => cleanups.push(callback);
  let [effect3, cleanupEffect] = elementBoundEffect(el);
  cleanups.push(cleanupEffect);
  let utilities = {
    Alpine: alpine_default,
    effect: effect3,
    cleanup,
    evaluateLater: evaluateLater.bind(evaluateLater, el),
    evaluate: evaluate.bind(evaluate, el)
  };
  let doCleanup = () => cleanups.forEach((i) => i());
  return [utilities, doCleanup];
}
function getDirectiveHandler(el, directive2) {
  let noop = () => {
  };
  let handler4 = directiveHandlers[directive2.type] || noop;
  let [utilities, cleanup] = getElementBoundUtilities(el);
  onAttributeRemoved(el, directive2.original, cleanup);
  let fullHandler = () => {
    if (el._x_ignore || el._x_ignoreSelf)
      return;
    handler4.inline && handler4.inline(el, directive2, utilities);
    handler4 = handler4.bind(handler4, el, directive2, utilities);
    isDeferringHandlers ? directiveHandlerStacks.get(currentHandlerStackKey).push(handler4) : handler4();
  };
  fullHandler.runCleanups = cleanup;
  return fullHandler;
}
var startingWith = (subject, replacement) => ({ name, value }) => {
  if (name.startsWith(subject))
    name = name.replace(subject, replacement);
  return { name, value };
};
var into = (i) => i;
function toTransformedAttributes(callback = () => {
}) {
  return ({ name, value }) => {
    let { name: newName, value: newValue } = attributeTransformers.reduce((carry, transform) => {
      return transform(carry);
    }, { name, value });
    if (newName !== name)
      callback(newName, name);
    return { name: newName, value: newValue };
  };
}
var attributeTransformers = [];
function mapAttributes(callback) {
  attributeTransformers.push(callback);
}
function outNonAlpineAttributes({ name }) {
  return alpineAttributeRegex().test(name);
}
var alpineAttributeRegex = () => new RegExp(`^${prefixAsString}([^:^.]+)\\b`);
function toParsedDirectives(transformedAttributeMap, originalAttributeOverride) {
  return ({ name, value }) => {
    if (name === value)
      value = "";
    let typeMatch = name.match(alpineAttributeRegex());
    let valueMatch = name.match(/:([a-zA-Z0-9\-_:]+)/);
    let modifiers = name.match(/\.[^.\]]+(?=[^\]]*$)/g) || [];
    let original = originalAttributeOverride || transformedAttributeMap[name] || name;
    return {
      type: typeMatch ? typeMatch[1] : null,
      value: valueMatch ? valueMatch[1] : null,
      modifiers: modifiers.map((i) => i.replace(".", "")),
      expression: value,
      original
    };
  };
}
var DEFAULT = "DEFAULT";
var directiveOrder = [
  "ignore",
  "ref",
  "id",
  "data",
  "anchor",
  "bind",
  "init",
  "for",
  "model",
  "modelable",
  "transition",
  "show",
  "if",
  DEFAULT,
  "teleport"
];
function byPriority(a, b) {
  let typeA = directiveOrder.indexOf(a.type) === -1 ? DEFAULT : a.type;
  let typeB = directiveOrder.indexOf(b.type) === -1 ? DEFAULT : b.type;
  return directiveOrder.indexOf(typeA) - directiveOrder.indexOf(typeB);
}

// packages/alpinejs/src/utils/walk.js
function walk(el, callback) {
  if (typeof ShadowRoot === "function" && el instanceof ShadowRoot) {
    Array.from(el.children).forEach((el2) => walk(el2, callback));
    return;
  }
  let skip = false;
  callback(el, () => skip = true);
  if (skip)
    return;
  let node = el.firstElementChild;
  while (node) {
    walk(node, callback, false);
    node = node.nextElementSibling;
  }
}

// packages/alpinejs/src/clone.js
var isCloning = false;
function skipDuringClone(callback, fallback = () => {
}) {
  return (...args) => isCloning ? fallback(...args) : callback(...args);
}
function onlyDuringClone(callback) {
  return (...args) => isCloning && callback(...args);
}
var interceptors = [];
function interceptClone(callback) {
  interceptors.push(callback);
}
function cloneNode(from, to) {
  interceptors.forEach((i) => i(from, to));
  isCloning = true;
  dontRegisterReactiveSideEffects(() => {
    initTree(to, (el, callback) => {
      callback(el, () => {
      });
    });
  });
  isCloning = false;
}
var isCloningLegacy = false;
function clone(oldEl, newEl) {
  if (!newEl._x_dataStack)
    newEl._x_dataStack = oldEl._x_dataStack;
  isCloning = true;
  isCloningLegacy = true;
  dontRegisterReactiveSideEffects(() => {
    cloneTree(newEl);
  });
  isCloning = false;
  isCloningLegacy = false;
}
function cloneTree(el) {
  let hasRunThroughFirstEl = false;
  let shallowWalker = (el2, callback) => {
    walk(el2, (el3, skip) => {
      if (hasRunThroughFirstEl && isRoot(el3))
        return skip();
      hasRunThroughFirstEl = true;
      callback(el3, skip);
    });
  };
  initTree(el, shallowWalker);
}
function dontRegisterReactiveSideEffects(callback) {
  let cache = effect;
  overrideEffect((callback2, el) => {
    let storedEffect = cache(callback2);
    release(storedEffect);
    return () => {
    };
  });
  callback();
  overrideEffect(cache);
}

// packages/alpinejs/src/deferInit.js
var activeDefers = 0;
function deferInit(el, promise) {
  let record = el._x_deferInit;
  if (!record) {
    record = el._x_deferInit = {
      pending: 0,
      ownsIgnore: !el._x_ignore,
      queuedAttributes: /* @__PURE__ */ new Map()
    };
    if (record.ownsIgnore)
      el._x_ignore = true;
    activeDefers++;
  }
  record.pending++;
  Promise.resolve(promise).catch((error2) => {
    try {
      handleError(error2, el);
    } catch (error3) {
      setTimeout(() => {
        throw error3;
      }, 0);
    }
  }).then(() => settle(el, record));
}
function settle(el, record) {
  record.pending--;
  if (record.pending > 0)
    return;
  flushPendingMutations();
  if (record.pending > 0)
    return;
  if (el._x_deferInit !== record)
    return;
  delete el._x_deferInit;
  if (record.ownsIgnore)
    delete el._x_ignore;
  activeDefers--;
  if (!el.isConnected)
    return;
  replayQueuedAttributes(record);
  initTree(el);
}
function queueAttributesForDeferredTree(el, attrs) {
  if (activeDefers === 0)
    return false;
  let root = findClosest(el, (i) => i._x_deferInit);
  if (!root)
    return false;
  queueInto(root._x_deferInit, el, attrs.map(({ name }) => name));
  return true;
}
function queueInto(record, el, names) {
  let entry = record.queuedAttributes.get(el);
  if (!entry || entry.marker !== el._x_marker) {
    entry = { marker: el._x_marker, names: /* @__PURE__ */ new Set() };
    record.queuedAttributes.set(el, entry);
  }
  names.forEach((name) => entry.names.add(name));
}
function replayQueuedAttributes(record) {
  record.queuedAttributes.forEach((entry, el) => {
    if (!el.isConnected)
      return;
    if (!el._x_marker)
      return;
    if (el._x_marker !== entry.marker)
      return;
    let suspendedAncestor = findClosest(el, (i) => i._x_deferInit);
    if (suspendedAncestor) {
      queueInto(suspendedAncestor._x_deferInit, el, Array.from(entry.names));
      return;
    }
    let attrs = Array.from(entry.names).filter((name) => el.hasAttribute(name)).map((name) => ({ name, value: el.getAttribute(name) }));
    if (attrs.length === 0)
      return;
    directives(el, attrs).forEach((handle) => handle());
  });
}
interceptClone((from, to) => {
  if (activeDefers === 0)
    return;
  if (!from || from.nodeType !== 1 || !to || to.nodeType !== 1)
    return;
  if (findClosest(from, (i) => i._x_deferInit))
    to._x_ignore = true;
});

// packages/alpinejs/src/utils/dispatch.js
function dispatch(el, name, detail = {}, options = {}) {
  return el.dispatchEvent(
    new CustomEvent(name, {
      detail,
      bubbles: true,
      // Allows events to pass the shadow DOM barrier.
      composed: true,
      cancelable: true,
      // Allows overriding the default event options.
      ...options
    })
  );
}

// packages/alpinejs/src/utils/warn.js
function warn(message, ...args) {
  console.warn(`Alpine Warning: ${message}`, ...args);
}

// packages/alpinejs/src/lifecycle.js
var started = false;
function start() {
  if (started)
    warn("Alpine has already been initialized on this page. Calling Alpine.start() more than once can cause problems.");
  started = true;
  if (!document.body)
    warn("Unable to initialize. Trying to load Alpine before `<body>` is available. Did you forget to add `defer` in Alpine's `<script>` tag?");
  dispatch(document, "alpine:init");
  dispatch(document, "alpine:initializing");
  startObservingMutations();
  onElAdded((el) => initTree(el, walk));
  onElRemoved((el) => destroyTree(el));
  onAttributesAdded((el, attrs) => {
    if (queueAttributesForDeferredTree(el, attrs))
      return;
    directives(el, attrs).forEach((handle) => handle());
  });
  let outNestedComponents = (el) => !closestRoot(el.parentElement, true);
  Array.from(document.querySelectorAll(allSelectors().join(","))).filter(outNestedComponents).forEach((el) => {
    initTree(el);
  });
  dispatch(document, "alpine:initialized");
  setTimeout(() => {
    warnAboutMissingPlugins();
  });
}
var rootSelectorCallbacks = [];
var initSelectorCallbacks = [];
function rootSelectors() {
  return rootSelectorCallbacks.map((fn) => fn());
}
function allSelectors() {
  return rootSelectorCallbacks.concat(initSelectorCallbacks).map((fn) => fn());
}
function addRootSelector(selectorCallback) {
  rootSelectorCallbacks.push(selectorCallback);
}
function addInitSelector(selectorCallback) {
  initSelectorCallbacks.push(selectorCallback);
}
function closestRoot(el, includeInitSelectors = false) {
  return findClosest(el, (element) => {
    const selectors = includeInitSelectors ? allSelectors() : rootSelectors();
    if (selectors.some((selector) => element.matches(selector)))
      return true;
  });
}
function findClosest(el, callback) {
  if (!el)
    return;
  if (callback(el))
    return el;
  if (el._x_teleportBack)
    return findClosest(el._x_teleportBack, callback);
  if (el.parentNode instanceof ShadowRoot) {
    return findClosest(el.parentNode.host, callback);
  }
  if (!el.parentElement)
    return;
  return findClosest(el.parentElement, callback);
}
function isRoot(el) {
  return rootSelectors().some((selector) => el.matches(selector));
}
var initInterceptors2 = [];
function interceptInit(callback) {
  initInterceptors2.push(callback);
}
var markerDispenser = 1;
function initTree(el, walker = walk, intercept = () => {
}) {
  if (findClosest(el, (i) => i._x_ignore))
    return;
  deferHandlingDirectives(() => {
    walker(el, (el2, skip) => {
      if (el2._x_marker)
        return;
      intercept(el2, skip);
      initInterceptors2.forEach((i) => i(el2, skip));
      directives(el2, el2.attributes).forEach((handle) => handle());
      if (!el2._x_ignore)
        el2._x_marker = markerDispenser++;
      el2._x_ignore && skip();
    });
  });
}
function destroyTree(root, walker = walk) {
  walker(root, (el) => {
    cleanupElement(el);
    cleanupAttributes(el);
    delete el._x_marker;
  });
}
function warnAboutMissingPlugins() {
  let pluginDirectives = [
    ["ui", "dialog", ["[x-dialog], [x-popover]"]],
    ["anchor", "anchor", ["[x-anchor]"]],
    ["sort", "sort", ["[x-sort]"]]
  ];
  pluginDirectives.forEach(([plugin2, directive2, selectors]) => {
    if (directiveExists(directive2))
      return;
    selectors.some((selector) => {
      if (document.querySelector(selector)) {
        warn(`found "${selector}", but missing ${plugin2} plugin`);
        return true;
      }
    });
  });
}

// packages/alpinejs/src/nextTick.js
var tickStack = [];
var isHolding = false;
function nextTick(callback = () => {
}) {
  queueMicrotask(() => {
    isHolding || setTimeout(() => {
      releaseNextTicks();
    });
  });
  return new Promise((res) => {
    tickStack.push(() => {
      callback();
      res();
    });
  });
}
function releaseNextTicks() {
  isHolding = false;
  while (tickStack.length)
    tickStack.shift()();
}
function holdNextTicks() {
  isHolding = true;
}

// packages/alpinejs/src/utils/classes.js
function setClasses(el, value) {
  if (Array.isArray(value)) {
    return setClassesFromString(el, value.join(" "));
  } else if (typeof value === "object" && value !== null) {
    return setClassesFromObject(el, value);
  } else if (typeof value === "function") {
    return setClasses(el, value());
  }
  return setClassesFromString(el, value);
}
function splitClasses(classString) {
  return classString.split(/\s/).filter(Boolean);
}
function setClassesFromString(el, classString) {
  let missingClasses = (classString2) => splitClasses(classString2).filter((i) => !el.classList.contains(i)).filter(Boolean);
  let addClassesAndReturnUndo = (classes) => {
    el.classList.add(...classes);
    return () => {
      el.classList.remove(...classes);
    };
  };
  classString = classString === true ? classString = "" : classString || "";
  return addClassesAndReturnUndo(missingClasses(classString));
}
function setClassesFromObject(el, classObject) {
  let forAdd = Object.entries(classObject).flatMap(([classString, bool]) => bool ? splitClasses(classString) : false).filter(Boolean);
  let forRemove = Object.entries(classObject).flatMap(([classString, bool]) => !bool ? splitClasses(classString) : false).filter(Boolean);
  let added = [];
  let removed = [];
  forRemove.forEach((i) => {
    if (el.classList.contains(i)) {
      el.classList.remove(i);
      removed.push(i);
    }
  });
  forAdd.forEach((i) => {
    if (!el.classList.contains(i)) {
      el.classList.add(i);
      added.push(i);
    }
  });
  return () => {
    removed.forEach((i) => el.classList.add(i));
    added.forEach((i) => el.classList.remove(i));
  };
}

// packages/alpinejs/src/utils/styles.js
function setStyles(el, value) {
  if (typeof value === "object" && value !== null) {
    return setStylesFromObject(el, value);
  }
  return setStylesFromString(el, value);
}
function setStylesFromObject(el, value) {
  let previousStyles = {};
  Object.entries(value).forEach(([key, value2]) => {
    previousStyles[key] = el.style[key];
    if (!key.startsWith("--")) {
      key = kebabCase(key);
    }
    el.style.setProperty(key, value2);
  });
  setTimeout(() => {
    if (el.style.length === 0) {
      el.removeAttribute("style");
    }
  });
  return () => {
    setStyles(el, previousStyles);
  };
}
function setStylesFromString(el, value) {
  let cache = el.getAttribute("style", value);
  el.setAttribute("style", value);
  return () => {
    el.setAttribute("style", cache || "");
  };
}
function kebabCase(subject) {
  return subject.replace(/([a-z])([A-Z])/g, "$1-$2").toLowerCase();
}

// packages/alpinejs/src/utils/once.js
function once(callback, fallback = () => {
}) {
  let called = false;
  return function() {
    if (!called) {
      called = true;
      callback.apply(this, arguments);
    } else {
      fallback.apply(this, arguments);
    }
  };
}

// packages/alpinejs/src/directives/x-transition.js
directive("transition", (el, { value, modifiers, expression }, { evaluate: evaluate2 }) => {
  if (typeof expression === "function")
    expression = evaluate2(expression);
  if (expression === false)
    return;
  if (!expression || typeof expression === "boolean") {
    registerTransitionsFromHelper(el, modifiers, value);
  } else {
    registerTransitionsFromClassString(el, expression, value);
  }
});
function registerTransitionsFromClassString(el, classString, stage) {
  registerTransitionObject(el, setClasses, "");
  let directiveStorageMap = {
    "enter": (classes) => {
      el._x_transition.enter.during = classes;
    },
    "enter-start": (classes) => {
      el._x_transition.enter.start = classes;
    },
    "enter-end": (classes) => {
      el._x_transition.enter.end = classes;
    },
    "leave": (classes) => {
      el._x_transition.leave.during = classes;
    },
    "leave-start": (classes) => {
      el._x_transition.leave.start = classes;
    },
    "leave-end": (classes) => {
      el._x_transition.leave.end = classes;
    }
  };
  directiveStorageMap[stage](classString);
}
function registerTransitionsFromHelper(el, modifiers, stage) {
  registerTransitionObject(el, setStyles);
  let doesntSpecify = !modifiers.includes("in") && !modifiers.includes("out") && !stage;
  let transitioningIn = doesntSpecify || modifiers.includes("in") || ["enter"].includes(stage);
  let transitioningOut = doesntSpecify || modifiers.includes("out") || ["leave"].includes(stage);
  if (modifiers.includes("in") && !doesntSpecify) {
    modifiers = modifiers.filter((i, index) => index < modifiers.indexOf("out"));
  }
  if (modifiers.includes("out") && !doesntSpecify) {
    modifiers = modifiers.filter((i, index) => index > modifiers.indexOf("out"));
  }
  let wantsAll = !modifiers.includes("opacity") && !modifiers.includes("scale");
  let wantsOpacity = wantsAll || modifiers.includes("opacity");
  let wantsScale = wantsAll || modifiers.includes("scale");
  let opacityValue = wantsOpacity ? 0 : 1;
  let scaleValue = wantsScale ? modifierValue(modifiers, "scale", 95) / 100 : 1;
  let delay = modifierValue(modifiers, "delay", 0) / 1e3;
  let origin = modifierValue(modifiers, "origin", "center");
  let property = "opacity, transform";
  let durationIn = modifierValue(modifiers, "duration", 150) / 1e3;
  let durationOut = modifierValue(modifiers, "duration", 75) / 1e3;
  let easing = `cubic-bezier(0.4, 0.0, 0.2, 1)`;
  if (transitioningIn) {
    el._x_transition.enter.during = {
      transformOrigin: origin,
      transitionDelay: `${delay}s`,
      transitionProperty: property,
      transitionDuration: `${durationIn}s`,
      transitionTimingFunction: easing
    };
    el._x_transition.enter.start = {
      opacity: opacityValue,
      transform: `scale(${scaleValue})`
    };
    el._x_transition.enter.end = {
      opacity: 1,
      transform: `scale(1)`
    };
  }
  if (transitioningOut) {
    el._x_transition.leave.during = {
      transformOrigin: origin,
      transitionDelay: `${delay}s`,
      transitionProperty: property,
      transitionDuration: `${durationOut}s`,
      transitionTimingFunction: easing
    };
    el._x_transition.leave.start = {
      opacity: 1,
      transform: `scale(1)`
    };
    el._x_transition.leave.end = {
      opacity: opacityValue,
      transform: `scale(${scaleValue})`
    };
  }
}
function registerTransitionObject(el, setFunction, defaultValue = {}) {
  if (!el._x_transition)
    el._x_transition = {
      enter: { during: defaultValue, start: defaultValue, end: defaultValue },
      leave: { during: defaultValue, start: defaultValue, end: defaultValue },
      in(before = () => {
      }, after = () => {
      }) {
        transition(el, setFunction, {
          during: this.enter.during,
          start: this.enter.start,
          end: this.enter.end
        }, before, after);
      },
      out(before = () => {
      }, after = () => {
      }) {
        transition(el, setFunction, {
          during: this.leave.during,
          start: this.leave.start,
          end: this.leave.end
        }, before, after);
      }
    };
}
window.Element.prototype._x_toggleAndCascadeWithTransitions = function(el, value, show, hide) {
  const nextTick2 = document.visibilityState === "visible" ? requestAnimationFrame : setTimeout;
  let clickAwayCompatibleShow = () => nextTick2(show);
  if (value) {
    if (el._x_transition && (el._x_transition.enter || el._x_transition.leave)) {
      el._x_transition.enter && (Object.entries(el._x_transition.enter.during).length || Object.entries(el._x_transition.enter.start).length || Object.entries(el._x_transition.enter.end).length) ? el._x_transition.in(show) : clickAwayCompatibleShow();
    } else {
      el._x_transition ? el._x_transition.in(show) : clickAwayCompatibleShow();
    }
    return;
  }
  el._x_hidePromise = el._x_transition ? new Promise((resolve, reject) => {
    el._x_transition.out(() => {
    }, () => resolve(hide));
    el._x_transitioning && el._x_transitioning.beforeCancel(() => reject({ isFromCancelledTransition: true }));
  }) : Promise.resolve(hide);
  queueMicrotask(() => {
    let closest = closestHide(el);
    if (closest) {
      if (!closest._x_hideChildren)
        closest._x_hideChildren = [];
      closest._x_hideChildren.push(el);
    } else {
      nextTick2(() => {
        let hideAfterChildren = (el2) => {
          let carry = Promise.all([
            el2._x_hidePromise,
            ...(el2._x_hideChildren || []).map(hideAfterChildren)
          ]).then(([i]) => i == null ? void 0 : i());
          delete el2._x_hidePromise;
          delete el2._x_hideChildren;
          return carry;
        };
        hideAfterChildren(el).catch((e) => {
          if (!e.isFromCancelledTransition)
            throw e;
        });
      });
    }
  });
};
function closestHide(el) {
  let parent = el.parentNode;
  if (!parent)
    return;
  return parent._x_hidePromise ? parent : closestHide(parent);
}
function transition(el, setFunction, { during, start: start2, end } = {}, before = () => {
}, after = () => {
}) {
  if (el._x_transitioning)
    el._x_transitioning.cancel();
  if (Object.keys(during).length === 0 && Object.keys(start2).length === 0 && Object.keys(end).length === 0) {
    before();
    after();
    return;
  }
  let undoStart, undoDuring, undoEnd;
  performTransition(el, {
    start() {
      undoStart = setFunction(el, start2);
    },
    during() {
      undoDuring = setFunction(el, during);
    },
    before,
    end() {
      undoStart();
      undoEnd = setFunction(el, end);
    },
    after,
    cleanup() {
      undoDuring();
      undoEnd();
    }
  });
}
function performTransition(el, stages) {
  let interrupted, reachedBefore, reachedEnd;
  let finish = once(() => {
    mutateDom(() => {
      interrupted = true;
      if (!reachedBefore)
        stages.before();
      if (!reachedEnd) {
        stages.end();
        releaseNextTicks();
      }
      stages.after();
      if (el.isConnected)
        stages.cleanup();
      delete el._x_transitioning;
    });
  });
  el._x_transitioning = {
    beforeCancels: [],
    beforeCancel(callback) {
      this.beforeCancels.push(callback);
    },
    cancel: once(function() {
      while (this.beforeCancels.length) {
        this.beforeCancels.shift()();
      }
      ;
      finish();
    }),
    finish
  };
  mutateDom(() => {
    stages.start();
    stages.during();
  });
  holdNextTicks();
  requestAnimationFrame(() => {
    if (interrupted)
      return;
    let duration = Number(getComputedStyle(el).transitionDuration.replace(/,.*/, "").replace("s", "")) * 1e3;
    let delay = Number(getComputedStyle(el).transitionDelay.replace(/,.*/, "").replace("s", "")) * 1e3;
    if (duration === 0)
      duration = Number(getComputedStyle(el).animationDuration.replace("s", "")) * 1e3;
    mutateDom(() => {
      stages.before();
    });
    reachedBefore = true;
    requestAnimationFrame(() => {
      if (interrupted)
        return;
      mutateDom(() => {
        stages.end();
      });
      releaseNextTicks();
      setTimeout(el._x_transitioning.finish, duration + delay);
      reachedEnd = true;
    });
  });
}
function modifierValue(modifiers, key, fallback) {
  if (modifiers.indexOf(key) === -1)
    return fallback;
  const rawValue = modifiers[modifiers.indexOf(key) + 1];
  if (!rawValue)
    return fallback;
  if (key === "scale") {
    if (isNaN(rawValue))
      return fallback;
  }
  if (key === "duration" || key === "delay") {
    let match = rawValue.match(/([0-9]+)ms/);
    if (match)
      return match[1];
  }
  if (key === "origin") {
    if (["top", "right", "left", "center", "bottom"].includes(modifiers[modifiers.indexOf(key) + 2])) {
      return [rawValue, modifiers[modifiers.indexOf(key) + 2]].join(" ");
    }
  }
  return rawValue;
}

// packages/alpinejs/src/utils/bind.js
function bind(el, name, value, modifiers = []) {
  if (!el._x_bindings)
    el._x_bindings = reactive({});
  el._x_bindings[name] = value;
  name = modifiers.includes("camel") ? camelCase(name) : name;
  switch (name) {
    case "value":
      bindInputValue(el, value);
      break;
    case "style":
      bindStyles(el, value);
      break;
    case "class":
      bindClasses(el, value);
      break;
    case "selected":
    case "checked":
      bindAttributeAndProperty(el, name, value);
      break;
    default:
      bindAttribute(el, name, value);
      break;
  }
}
function bindInputValue(el, value) {
  if (isRadio(el)) {
    if (el.attributes.value === void 0) {
      el.value = value;
    }
  } else if (isCheckbox(el)) {
    if (Number.isInteger(value)) {
      el.value = value;
    } else if (!Array.isArray(value) && typeof value !== "boolean" && ![null, void 0].includes(value)) {
      el.value = String(value);
    } else {
      if (Array.isArray(value)) {
        el.checked = value.some((val) => checkedAttrLooseCompare(val, el.value));
      } else {
        el.checked = !!value;
      }
    }
  } else if (el.tagName === "SELECT") {
    updateSelect(el, value);
  } else if (el.tagName === "OPTION") {
    bindAttribute(el, "value", value);
  } else {
    if (el.value === value && (typeof value !== "object" || value === null))
      return;
    el.value = value === void 0 ? "" : value;
  }
}
function bindClasses(el, value) {
  if (el._x_undoAddedClasses)
    el._x_undoAddedClasses();
  el._x_undoAddedClasses = setClasses(el, value);
}
function bindStyles(el, value) {
  if (el._x_undoAddedStyles)
    el._x_undoAddedStyles();
  el._x_undoAddedStyles = setStyles(el, value);
}
function bindAttributeAndProperty(el, name, value) {
  bindAttribute(el, name, value);
  setPropertyIfChanged(el, name, value);
}
function bindAttribute(el, name, value) {
  if ([null, void 0, false].includes(value) && attributeShouldntBePreservedIfFalsy(name)) {
    el.removeAttribute(name);
  } else {
    if (isBooleanAttr(name))
      value = name;
    if (isObjectAttr(value))
      value = JSON.stringify(value);
    setIfChanged(el, name, value);
  }
}
function setIfChanged(el, attrName, value) {
  if (el.getAttribute(attrName) != value) {
    el.setAttribute(attrName, value);
  }
}
function setPropertyIfChanged(el, propName, value) {
  if (el[propName] !== value) {
    el[propName] = value;
  }
}
function updateSelect(el, value) {
  const arrayWrappedValue = [].concat(value).map((value2) => {
    return value2 + "";
  });
  Array.from(el.options).forEach((option) => {
    option.selected = arrayWrappedValue.includes(option.value);
  });
}
function camelCase(subject) {
  return subject.toLowerCase().replace(/-(\w)/g, (match, char) => char.toUpperCase());
}
function checkedAttrLooseCompare(valueA, valueB) {
  return valueA == valueB;
}
function safeParseBoolean(rawValue) {
  if ([1, "1", "true", "on", "yes", true].includes(rawValue)) {
    return true;
  }
  if ([0, "0", "false", "off", "no", false].includes(rawValue)) {
    return false;
  }
  return rawValue ? Boolean(rawValue) : null;
}
var booleanAttributes = /* @__PURE__ */ new Set([
  "allowfullscreen",
  "async",
  "autofocus",
  "autoplay",
  "checked",
  "controls",
  "default",
  "defer",
  "disabled",
  "formnovalidate",
  "inert",
  "ismap",
  "itemscope",
  "loop",
  "multiple",
  "muted",
  "nomodule",
  "novalidate",
  "open",
  "playsinline",
  "readonly",
  "required",
  "reversed",
  "selected",
  "shadowrootclonable",
  "shadowrootdelegatesfocus",
  "shadowrootserializable"
]);
function isBooleanAttr(attrName) {
  return booleanAttributes.has(attrName);
}
function attributeShouldntBePreservedIfFalsy(name) {
  return !["aria-pressed", "aria-checked", "aria-expanded", "aria-selected"].includes(name);
}
function isObjectAttr(value) {
  return typeof value === "object" && value !== null;
}
function getBinding(el, name, fallback) {
  if (el._x_bindings && el._x_bindings[name] !== void 0)
    return el._x_bindings[name];
  return getAttributeBinding(el, name, fallback);
}
function extractProp(el, name, fallback, extract = true) {
  if (el._x_bindings && el._x_bindings[name] !== void 0)
    return el._x_bindings[name];
  if (el._x_inlineBindings && el._x_inlineBindings[name] !== void 0) {
    let binding = el._x_inlineBindings[name];
    binding.extract = extract;
    return dontAutoEvaluateFunctions(() => {
      return evaluate(el, binding.expression);
    });
  }
  return getAttributeBinding(el, name, fallback);
}
function getAttributeBinding(el, name, fallback) {
  let attr = el.getAttribute(name);
  if (attr === null)
    return typeof fallback === "function" ? fallback() : fallback;
  if (attr === "")
    return true;
  if (isBooleanAttr(name)) {
    return !![name, "true"].includes(attr);
  }
  return attr;
}
function isCheckbox(el) {
  return el.type === "checkbox" || el.localName === "ui-checkbox" || el.localName === "ui-switch";
}
function isRadio(el) {
  return el.type === "radio" || el.localName === "ui-radio";
}

// packages/alpinejs/src/utils/debounce.js
function debounce(func, wait) {
  let timeout;
  return function() {
    const context = this, args = arguments;
    const later = function() {
      timeout = null;
      func.apply(context, args);
    };
    clearTimeout(timeout);
    timeout = setTimeout(later, wait);
  };
}

// packages/alpinejs/src/utils/throttle.js
function throttle(func, limit) {
  let inThrottle;
  return function() {
    let context = this, args = arguments;
    if (!inThrottle) {
      func.apply(context, args);
      inThrottle = true;
      setTimeout(() => inThrottle = false, limit);
    }
  };
}

// packages/alpinejs/src/entangle.js
function entangle({ get: outerGet, set: outerSet }, { get: innerGet, set: innerSet }) {
  let firstRun = true;
  let outerHash;
  let innerHash;
  let reference = effect(() => {
    let outer = outerGet();
    let inner = innerGet();
    if (firstRun) {
      innerSet(cloneIfObject(outer));
      firstRun = false;
    } else {
      let outerHashLatest = JSON.stringify(outer);
      let innerHashLatest = JSON.stringify(inner);
      if (outerHashLatest !== outerHash) {
        innerSet(cloneIfObject(outer));
      } else if (outerHashLatest !== innerHashLatest) {
        outerSet(cloneIfObject(inner));
      } else {
      }
    }
    outerHash = JSON.stringify(outerGet());
    innerHash = JSON.stringify(innerGet());
  });
  return () => {
    dequeueJob(reference);
    release(reference);
  };
}
function cloneIfObject(value) {
  return typeof value === "object" ? JSON.parse(JSON.stringify(value)) : value;
}

// packages/alpinejs/src/plugin.js
function plugin(callback) {
  let callbacks = Array.isArray(callback) ? callback : [callback];
  callbacks.forEach((i) => i(alpine_default));
}

// packages/alpinejs/src/store.js
var stores = {};
var isReactive = false;
function store(name, value) {
  if (!isReactive) {
    stores = reactive(stores);
    isReactive = true;
  }
  if (value === void 0) {
    return stores[name];
  }
  stores[name] = value;
  if (typeof value === "object" && value !== null && value._x_interceptor) {
    stores[name] = value.initialize(stores, name, name, () => {
    });
  } else {
    initInterceptors(stores[name]);
  }
  if (typeof value === "object" && value !== null && value.hasOwnProperty("init") && typeof value.init === "function") {
    stores[name].init();
  }
}
function getStores() {
  return stores;
}

// packages/alpinejs/src/binds.js
var binds = {};
function bind2(name, bindings) {
  let getBindings = typeof bindings !== "function" ? () => bindings : bindings;
  if (name instanceof Element) {
    return applyBindingsObject(name, getBindings());
  } else {
    binds[name] = getBindings;
  }
  return () => {
  };
}
function injectBindingProviders(obj) {
  Object.entries(binds).forEach(([name, callback]) => {
    Object.defineProperty(obj, name, {
      get() {
        return (...args) => {
          return callback(...args);
        };
      }
    });
  });
  return obj;
}
function applyBindingsObject(el, obj, original) {
  let cleanupRunners = [];
  while (cleanupRunners.length)
    cleanupRunners.pop()();
  let attributes = Object.entries(obj).map(([name, value]) => ({ name, value }));
  let staticAttributes = attributesOnly(attributes);
  attributes = attributes.map((attribute) => {
    if (staticAttributes.find((attr) => attr.name === attribute.name)) {
      return {
        name: `x-bind:${attribute.name}`,
        value: `"${attribute.value}"`
      };
    }
    return attribute;
  });
  directives(el, attributes, original).map((handle) => {
    cleanupRunners.push(handle.runCleanups);
    handle();
  });
  return () => {
    while (cleanupRunners.length)
      cleanupRunners.pop()();
  };
}

// packages/alpinejs/src/datas.js
var datas = {};
function data(name, callback) {
  datas[name] = callback;
}
function injectDataProviders(obj, context) {
  Object.entries(datas).forEach(([name, callback]) => {
    Object.defineProperty(obj, name, {
      get() {
        return (...args) => {
          return callback.bind(context)(...args);
        };
      },
      enumerable: false
    });
  });
  return obj;
}

// packages/alpinejs/src/alpine.js
var Alpine = {
  get reactive() {
    return reactive;
  },
  get release() {
    return release;
  },
  get effect() {
    return effect;
  },
  get raw() {
    return raw;
  },
  get transaction() {
    return transaction;
  },
  version: "3.17.3",
  flushAndStopDeferringMutations,
  dontAutoEvaluateFunctions,
  disableEffectScheduling,
  startObservingMutations,
  stopObservingMutations,
  setReactivityEngine,
  onAttributeRemoved,
  onAttributesAdded,
  closestDataStack,
  skipDuringClone,
  onlyDuringClone,
  addRootSelector,
  addInitSelector,
  setErrorHandler,
  interceptClone,
  addScopeToNode,
  deferMutations,
  mapAttributes,
  evaluateLater,
  interceptInit,
  initInterceptors,
  injectMagics,
  setEvaluator,
  setRawEvaluator,
  mergeProxies,
  extractProp,
  findClosest,
  onElRemoved,
  closestRoot,
  destroyTree,
  interceptor,
  // INTERNAL: not public API and is subject to change without major release.
  transition,
  // INTERNAL
  setStyles,
  // INTERNAL
  mutateDom,
  deferInit,
  directive,
  entangle,
  throttle,
  debounce,
  evaluate,
  evaluateRaw,
  initTree,
  nextTick,
  prefixed: prefix,
  prefix: setPrefix,
  plugin,
  magic,
  store,
  start,
  clone,
  // INTERNAL
  cloneNode,
  // INTERNAL
  bound: getBinding,
  $data: scope,
  watch,
  walk,
  data,
  bind: bind2
};
var alpine_default = Alpine;

// packages/alpinejs/src/index.js
var import_reactivity10 = __toESM(require_reactivity());

// packages/alpinejs/src/magics/$nextTick.js
magic("nextTick", () => nextTick);

// packages/alpinejs/src/magics/$dispatch.js
magic("dispatch", (el) => dispatch.bind(dispatch, el));

// packages/alpinejs/src/magics/$watch.js
magic("watch", (el, { evaluateLater: evaluateLater2, cleanup }) => (key, callback) => {
  let evaluate2 = evaluateLater2(key);
  let getter = () => {
    let value;
    evaluate2((i) => value = i);
    return value;
  };
  let unwatch = watch(getter, callback);
  cleanup(unwatch);
});

// packages/alpinejs/src/magics/$store.js
magic("store", getStores);

// packages/alpinejs/src/magics/$data.js
magic("data", (el) => scope(el));

// packages/alpinejs/src/magics/$root.js
magic("root", (el) => closestRoot(el));

// packages/alpinejs/src/magics/$refs.js
magic("refs", (el) => {
  if (el._x_refs_proxy)
    return el._x_refs_proxy;
  el._x_refs_proxy = mergeProxies(getArrayOfRefObject(el));
  return el._x_refs_proxy;
});
function getArrayOfRefObject(el) {
  let refObjects = [];
  findClosest(el, (i) => {
    if (i._x_refs)
      refObjects.push(i._x_refs);
  });
  return refObjects;
}

// packages/alpinejs/src/ids.js
var globalIdMemo = {};
function findAndIncrementId(name) {
  if (!globalIdMemo[name])
    globalIdMemo[name] = 0;
  return ++globalIdMemo[name];
}
function closestIdRoot(el, name) {
  return findClosest(el, (element) => {
    if (element._x_ids && element._x_ids[name])
      return true;
  });
}
function setIdRoot(el, name) {
  if (!el._x_ids)
    el._x_ids = {};
  if (!el._x_ids[name])
    el._x_ids[name] = findAndIncrementId(name);
}

// packages/alpinejs/src/magics/$id.js
magic("id", (el, { cleanup }) => (name, key = null) => {
  let cacheKey = `${name}${key ? `-${key}` : ""}`;
  return cacheIdByNameOnElement(el, cacheKey, cleanup, () => {
    let root = closestIdRoot(el, name);
    let id = root ? root._x_ids[name] : findAndIncrementId(name);
    return key ? `${name}-${id}-${key}` : `${name}-${id}`;
  });
});
interceptClone((from, to) => {
  if (from._x_id) {
    to._x_id = from._x_id;
  }
});
function cacheIdByNameOnElement(el, cacheKey, cleanup, callback) {
  if (!el._x_id)
    el._x_id = {};
  if (el._x_id[cacheKey])
    return el._x_id[cacheKey];
  let output = callback();
  el._x_id[cacheKey] = output;
  cleanup(() => {
    delete el._x_id[cacheKey];
  });
  return output;
}

// packages/alpinejs/src/magics/$el.js
magic("el", (el) => el);

// packages/alpinejs/src/magics/index.js
warnMissingPluginMagic("Focus", "focus", "focus");
warnMissingPluginMagic("Persist", "persist", "persist");
function warnMissingPluginMagic(name, magicName, slug) {
  magic(magicName, (el) => warn(`You can't use [$${magicName}] without first installing the "${name}" plugin here: https://alpinejs.dev/plugins/${slug}`, el));
}

// packages/alpinejs/src/directives/x-modelable.js
directive("modelable", (el, { expression }, { effect: effect3, evaluateLater: evaluateLater2, cleanup }) => {
  let func = evaluateLater2(expression);
  let innerGet = () => {
    let result;
    func((i) => result = i);
    return result;
  };
  let evaluateInnerSet = evaluateLater2(`${expression} = __placeholder`);
  let innerSet = (val) => evaluateInnerSet(() => {
  }, { scope: { "__placeholder": val } });
  let initialValue = innerGet();
  innerSet(initialValue);
  queueMicrotask(() => {
    if (!el._x_model)
      return;
    el._x_removeModelListeners["default"]();
    let outerGet = el._x_model.get;
    let outerSet = el._x_model.setWithModifiers;
    let releaseEntanglement = entangle(
      {
        get() {
          return outerGet();
        },
        set(value) {
          outerSet(value);
        }
      },
      {
        get() {
          return innerGet();
        },
        set(value) {
          innerSet(value);
        }
      }
    );
    cleanup(releaseEntanglement);
  });
});

// packages/alpinejs/src/directives/x-teleport.js
directive("teleport", (el, { modifiers, expression }, { cleanup }) => {
  if (el.tagName.toLowerCase() !== "template")
    warn("x-teleport can only be used on a <template> tag", el);
  let target = getTarget(expression);
  let clone2 = el.content.cloneNode(true).firstElementChild;
  el._x_teleport = clone2;
  clone2._x_teleportBack = el;
  el.setAttribute("data-teleport-template", true);
  clone2.setAttribute("data-teleport-target", true);
  if (el._x_forwardEvents) {
    el._x_forwardEvents.forEach((eventName) => {
      clone2.addEventListener(eventName, (e) => {
        e.stopPropagation();
        el.dispatchEvent(new e.constructor(e.type, e));
      });
    });
  }
  addScopeToNode(clone2, {}, el);
  let placeInDom = (clone3, target2, modifiers2) => {
    if (modifiers2.includes("prepend")) {
      target2.parentNode.insertBefore(clone3, target2);
    } else if (modifiers2.includes("append")) {
      target2.parentNode.insertBefore(clone3, target2.nextSibling);
    } else {
      target2.appendChild(clone3);
    }
  };
  mutateDom(() => {
    skipDuringClone(() => {
      placeInDom(clone2, target, modifiers);
      initTree(clone2);
    })();
  });
  el._x_teleportPutBack = () => {
    let target2 = getTarget(expression);
    mutateDom(() => {
      placeInDom(el._x_teleport, target2, modifiers);
    });
  };
  cleanup(
    () => mutateDom(() => {
      clone2.remove();
      destroyTree(clone2);
    })
  );
});
var teleportContainerDuringClone = document.createElement("div");
function getTarget(expression) {
  let target = skipDuringClone(() => {
    return document.querySelector(expression);
  }, () => {
    return teleportContainerDuringClone;
  })();
  if (!target)
    warn(`Cannot find x-teleport element for selector: "${expression}"`);
  return target;
}

// packages/alpinejs/src/directives/x-ignore.js
var handler = () => {
};
handler.inline = (el, { modifiers }, { cleanup }) => {
  modifiers.includes("self") ? el._x_ignoreSelf = true : el._x_ignore = true;
  cleanup(() => {
    modifiers.includes("self") ? delete el._x_ignoreSelf : delete el._x_ignore;
  });
};
directive("ignore", handler);

// packages/alpinejs/src/directives/x-effect.js
directive("effect", skipDuringClone((el, { expression }, { effect: effect3 }) => {
  effect3(evaluateLater(el, expression));
}));

// packages/alpinejs/src/utils/on.js
function on(el, event, modifiers, callback) {
  let listenerTarget = el;
  let handler4 = (e) => callback(e);
  let options = {};
  let wrapHandler = (callback2, wrapper) => (e) => wrapper(callback2, e);
  if (modifiers.includes("dot"))
    event = dotSyntax(event);
  if (modifiers.includes("camel"))
    event = camelCase2(event);
  if (modifiers.includes("capture"))
    options.capture = true;
  if (modifiers.includes("window"))
    listenerTarget = window;
  if (modifiers.includes("document"))
    listenerTarget = document;
  if (modifiers.includes("passive")) {
    options.passive = modifiers[modifiers.indexOf("passive") + 1] !== "false";
  }
  handler4 = addDebounceOrThrottle(modifiers, handler4);
  if (modifiers.includes("prevent"))
    handler4 = wrapHandler(handler4, (next, e) => {
      e.preventDefault();
      next(e);
    });
  if (modifiers.includes("stop"))
    handler4 = wrapHandler(handler4, (next, e) => {
      e.stopPropagation();
      next(e);
    });
  if (modifiers.includes("once")) {
    handler4 = wrapHandler(handler4, (next, e) => {
      next(e);
      listenerTarget.removeEventListener(event, handler4, options);
    });
  }
  if (modifiers.includes("away") || modifiers.includes("outside")) {
    listenerTarget = document;
    handler4 = wrapHandler(handler4, (next, e) => {
      if (el.contains(e.target))
        return;
      if (e.target.isConnected === false)
        return;
      if (el.offsetWidth < 1 && el.offsetHeight < 1)
        return;
      if (el._x_isShown === false)
        return;
      next(e);
    });
  }
  if (modifiers.includes("self"))
    handler4 = wrapHandler(handler4, (next, e) => {
      e.target === el && next(e);
    });
  if (event === "submit") {
    handler4 = wrapHandler(handler4, (next, e) => {
      if (e.target._x_pendingModelUpdates) {
        e.target._x_pendingModelUpdates.forEach((fn) => fn());
      }
      next(e);
    });
  }
  if (isKeyEvent(event) || isClickEvent(event)) {
    handler4 = wrapHandler(handler4, (next, e) => {
      if (isListeningForASpecificKeyThatHasntBeenPressed(e, modifiers)) {
        return;
      }
      next(e);
    });
  }
  listenerTarget.addEventListener(event, handler4, options);
  return () => {
    listenerTarget.removeEventListener(event, handler4, options);
  };
}
function addDebounceOrThrottle(modifiers, handler4) {
  if (modifiers.includes("debounce")) {
    let nextModifier = modifiers[modifiers.indexOf("debounce") + 1] || "invalid-wait";
    let wait = isNumeric(nextModifier.split("ms")[0]) ? Number(nextModifier.split("ms")[0]) : 250;
    handler4 = debounce(handler4, wait);
  }
  if (modifiers.includes("throttle")) {
    let nextModifier = modifiers[modifiers.indexOf("throttle") + 1] || "invalid-wait";
    let wait = isNumeric(nextModifier.split("ms")[0]) ? Number(nextModifier.split("ms")[0]) : 250;
    handler4 = throttle(handler4, wait);
  }
  return handler4;
}
function dotSyntax(subject) {
  return subject.replace(/-/g, ".");
}
function camelCase2(subject) {
  return subject.toLowerCase().replace(/-(\w)/g, (match, char) => char.toUpperCase());
}
function isNumeric(subject) {
  return !Array.isArray(subject) && !isNaN(subject);
}
function kebabCase2(subject) {
  if ([" ", "_"].includes(
    subject
  ))
    return subject;
  return subject.replace(/([a-z])([A-Z])/g, "$1-$2").replace(/[_\s]/, "-").toLowerCase();
}
function isKeyEvent(event) {
  return ["keydown", "keyup"].includes(event);
}
function isClickEvent(event) {
  return ["contextmenu", "click", "mouse"].some((i) => event.includes(i));
}
var nonKeyModifiers = [
  // x-on's own modifiers:
  "window",
  "document",
  "prevent",
  "stop",
  "once",
  "capture",
  "self",
  "away",
  "outside",
  "passive",
  "dot",
  "camel",
  "preserve-scroll",
  // x-model's own modifiers:
  "blur",
  "change",
  "lazy",
  "number",
  "boolean",
  "trim",
  "fill",
  "unintrusive",
  "parent"
];
function isListeningForASpecificKeyThatHasntBeenPressed(e, modifiers) {
  let keyModifiers = modifiers.filter((modifier, index) => {
    if (modifier === "false" && modifiers[index - 1] === "passive")
      return false;
    return !nonKeyModifiers.includes(modifier);
  });
  if (keyModifiers.includes("debounce")) {
    let debounceIndex = keyModifiers.indexOf("debounce");
    keyModifiers.splice(debounceIndex, isNumeric((keyModifiers[debounceIndex + 1] || "invalid-wait").split("ms")[0]) ? 2 : 1);
  }
  if (keyModifiers.includes("throttle")) {
    let debounceIndex = keyModifiers.indexOf("throttle");
    keyModifiers.splice(debounceIndex, isNumeric((keyModifiers[debounceIndex + 1] || "invalid-wait").split("ms")[0]) ? 2 : 1);
  }
  if (keyModifiers.length === 0)
    return false;
  if (keyModifiers.length === 1 && keyToModifiers(e.key).includes(keyModifiers[0]))
    return false;
  const systemKeyModifiers = ["ctrl", "shift", "alt", "meta", "cmd", "super"];
  const selectedSystemKeyModifiers = systemKeyModifiers.filter((modifier) => keyModifiers.includes(modifier));
  keyModifiers = keyModifiers.filter((i) => !selectedSystemKeyModifiers.includes(i));
  if (selectedSystemKeyModifiers.length > 0) {
    const activelyPressedKeyModifiers = selectedSystemKeyModifiers.filter((modifier) => {
      if (modifier === "cmd" || modifier === "super")
        modifier = "meta";
      return e[`${modifier}Key`];
    });
    if (activelyPressedKeyModifiers.length === selectedSystemKeyModifiers.length) {
      if (isClickEvent(e.type))
        return false;
      if (keyToModifiers(e.key).includes(keyModifiers[0]))
        return false;
    }
  }
  return true;
}
function keyToModifiers(key) {
  if (!key)
    return [];
  key = kebabCase2(key);
  let modifierToKeyMap = {
    "ctrl": "control",
    "slash": "/",
    "space": " ",
    "spacebar": " ",
    "cmd": "meta",
    "esc": "escape",
    "up": "arrow-up",
    "down": "arrow-down",
    "left": "arrow-left",
    "right": "arrow-right",
    "period": ".",
    "comma": ",",
    "equal": "=",
    "minus": "-",
    "underscore": "_"
  };
  modifierToKeyMap[key] = key;
  return Object.keys(modifierToKeyMap).map((modifier) => {
    if (modifierToKeyMap[modifier] === key)
      return modifier;
  }).filter((modifier) => modifier);
}

// packages/alpinejs/src/directives/x-model.js
directive("model", (el, { modifiers, expression }, { effect: effect3, cleanup }) => {
  let scopeTarget = el;
  if (modifiers.includes("parent")) {
    scopeTarget = findClosest(el, (element) => element !== el);
  }
  let evaluateGet = evaluateLater(scopeTarget, expression);
  let evaluateSet;
  if (typeof expression === "string") {
    evaluateSet = evaluateLater(scopeTarget, `${expression} = __placeholder`);
  } else if (typeof expression === "function" && typeof expression() === "string") {
    evaluateSet = evaluateLater(scopeTarget, `${expression()} = __placeholder`);
  } else {
    evaluateSet = () => {
    };
  }
  let getValue = () => {
    let result;
    evaluateGet((value) => result = value);
    return isGetterSetter(result) ? result.get() : result;
  };
  let setValue = (value) => {
    let result;
    evaluateGet((value2) => result = value2);
    if (isGetterSetter(result)) {
      result.set(value);
    } else {
      evaluateSet(() => {
      }, {
        scope: { "__placeholder": value }
      });
    }
  };
  if (typeof expression === "string" && el.type === "radio") {
    mutateDom(() => {
      if (!el.hasAttribute("name"))
        el.setAttribute("name", expression);
    });
  }
  let hasChangeModifier = modifiers.includes("change") || modifiers.includes("lazy");
  let hasBlurModifier = modifiers.includes("blur");
  let hasEnterModifier = modifiers.includes("enter");
  let hasExplicitEventModifiers = hasChangeModifier || hasBlurModifier || hasEnterModifier;
  let removeListener;
  if (isCloning) {
    removeListener = () => {
    };
  } else if (hasExplicitEventModifiers) {
    let listeners = [];
    let syncValue = (e) => setValue(getInputValue(el, modifiers, e, getValue()));
    if (hasChangeModifier) {
      listeners.push(on(el, "change", modifiers, syncValue));
    }
    if (hasBlurModifier) {
      listeners.push(on(el, "blur", modifiers, syncValue));
      if (el.form) {
        let form = el.form;
        let syncCallback = () => syncValue({ target: el });
        if (!form._x_pendingModelUpdates)
          form._x_pendingModelUpdates = [];
        form._x_pendingModelUpdates.push(syncCallback);
        cleanup(() => {
          if (form._x_pendingModelUpdates) {
            form._x_pendingModelUpdates.splice(form._x_pendingModelUpdates.indexOf(syncCallback), 1);
          }
        });
      }
    }
    if (hasEnterModifier) {
      listeners.push(on(el, "keydown", modifiers, (e) => {
        if (e.key === "Enter")
          syncValue(e);
      }));
    }
    removeListener = () => listeners.forEach((remove) => remove());
  } else {
    let event = el.tagName.toLowerCase() === "select" || ["checkbox", "radio"].includes(el.type) ? "change" : "input";
    removeListener = on(el, event, modifiers, (e) => {
      setValue(getInputValue(el, modifiers, e, getValue()));
    });
  }
  if (modifiers.includes("fill")) {
    if ([void 0, null, ""].includes(getValue()) || isCheckbox(el) && Array.isArray(getValue()) || el.tagName.toLowerCase() === "select" && el.multiple) {
      setValue(
        getInputValue(el, modifiers, { target: el }, getValue())
      );
    }
  }
  if (!el._x_removeModelListeners)
    el._x_removeModelListeners = {};
  el._x_removeModelListeners["default"] = removeListener;
  cleanup(() => el._x_removeModelListeners["default"]());
  if (el.form) {
    let removeResetListener = on(el.form, "reset", [], (e) => {
      nextTick(() => el._x_model && el._x_model.set(getInputValue(el, modifiers, { target: el }, getValue())));
    });
    cleanup(() => removeResetListener());
  }
  el._x_model = {
    get() {
      return getValue();
    },
    set(value) {
      setValue(value);
    },
    setWithModifiers: addDebounceOrThrottle(modifiers, setValue)
  };
  el._x_forceModelUpdate = (value) => {
    if (value === void 0 && typeof expression === "string" && expression.match(/\./))
      value = "";
    mutateDom(() => {
      if (isCheckbox(el)) {
        if (Array.isArray(value)) {
          el.checked = value.some((val) => val == el.value);
        } else {
          el.checked = !!value;
        }
      } else if (isRadio(el)) {
        if (typeof value === "boolean") {
          el.checked = safeParseBoolean(el.value) === value;
        } else {
          el.checked = el.value == value;
        }
      } else {
        bind(el, "value", value);
      }
    });
  };
  if (el.tagName === "SELECT") {
    let observer2 = new MutationObserver(() => {
      el._x_forceModelUpdate(getValue());
    });
    observer2.observe(el, { childList: true });
    cleanup(() => observer2.disconnect());
  }
  effect3(() => {
    let value = getValue();
    if (modifiers.includes("unintrusive") && document.activeElement.isSameNode(el))
      return;
    el._x_forceModelUpdate(value);
  });
});
function getInputValue(el, modifiers, event, currentValue) {
  return mutateDom(() => {
    if (event instanceof CustomEvent && event.detail !== void 0)
      return event.detail !== null && event.detail !== void 0 ? event.detail : event.target.value;
    else if (isCheckbox(el)) {
      if (Array.isArray(currentValue)) {
        let newValue = null;
        if (modifiers.includes("number")) {
          newValue = safeParseNumber(event.target.value);
        } else if (modifiers.includes("boolean")) {
          newValue = safeParseBoolean(event.target.value);
        } else {
          newValue = event.target.value;
        }
        return event.target.checked ? currentValue.includes(newValue) ? currentValue : currentValue.concat([newValue]) : currentValue.filter((el2) => !checkedAttrLooseCompare2(el2, newValue));
      } else {
        return event.target.checked;
      }
    } else if (el.tagName.toLowerCase() === "select" && el.multiple) {
      if (modifiers.includes("number")) {
        return Array.from(event.target.selectedOptions).map((option) => {
          let rawValue = option.value || option.text;
          return safeParseNumber(rawValue);
        });
      } else if (modifiers.includes("boolean")) {
        return Array.from(event.target.selectedOptions).map((option) => {
          let rawValue = option.value || option.text;
          return safeParseBoolean(rawValue);
        });
      }
      return Array.from(event.target.selectedOptions).map((option) => {
        return option.value || option.text;
      });
    } else {
      let newValue;
      if (isRadio(el)) {
        if (event.target.checked) {
          newValue = event.target.value;
        } else {
          newValue = currentValue;
        }
      } else {
        newValue = event.target.value;
      }
      if (modifiers.includes("number")) {
        return safeParseNumber(newValue);
      } else if (modifiers.includes("boolean")) {
        return safeParseBoolean(newValue);
      } else if (modifiers.includes("trim")) {
        return newValue.trim();
      } else {
        return newValue;
      }
    }
  });
}
function safeParseNumber(rawValue) {
  let number = rawValue ? parseFloat(rawValue) : null;
  return isNumeric2(number) ? number : rawValue;
}
function checkedAttrLooseCompare2(valueA, valueB) {
  return valueA == valueB;
}
function isNumeric2(subject) {
  return !Array.isArray(subject) && !isNaN(subject);
}
function isGetterSetter(value) {
  return value !== null && typeof value === "object" && typeof value.get === "function" && typeof value.set === "function";
}

// packages/alpinejs/src/directives/x-cloak.js
directive("cloak", (el) => queueMicrotask(() => mutateDom(() => el.removeAttribute(prefix("cloak")))));

// packages/alpinejs/src/directives/x-init.js
addInitSelector(() => `[${prefix("init")}]`);
directive("init", skipDuringClone((el, { expression }, { evaluate: evaluate2 }) => {
  if (typeof expression === "string") {
    return !!expression.trim() && evaluate2(expression, {}, false);
  }
  return evaluate2(expression, {}, false);
}));

// packages/alpinejs/src/directives/x-text.js
directive("text", (el, { expression }, { effect: effect3, evaluateLater: evaluateLater2 }) => {
  let evaluate2 = evaluateLater2(expression);
  effect3(() => {
    evaluate2((value) => {
      mutateDom(() => {
        el.textContent = value;
      });
    });
  });
});

// packages/alpinejs/src/directives/x-html.js
directive("html", (el, { expression }, { effect: effect3, evaluateLater: evaluateLater2 }) => {
  let evaluate2 = evaluateLater2(expression);
  effect3(() => {
    evaluate2((value) => {
      mutateDom(() => {
        Array.from(el.children).forEach((child) => destroyTree(child));
        el.innerHTML = value != null ? value : "";
        el._x_ignoreSelf = true;
        initTree(el);
        delete el._x_ignoreSelf;
      });
    });
  }, { priority: "structural" });
});

// packages/alpinejs/src/directives/x-bind.js
mapAttributes(startingWith(":", into(prefix("bind:"))));
var handler2 = (el, { value, modifiers, expression, original }, { effect: effect3, cleanup }) => {
  if (!value) {
    let bindingProviders = {};
    injectBindingProviders(bindingProviders);
    let getBindings = evaluateLater(el, expression);
    getBindings((bindings) => {
      applyBindingsObject(el, bindings, original);
    }, { scope: bindingProviders });
    return;
  }
  if (value === "key")
    return storeKeyForXFor(el, expression);
  if (el._x_inlineBindings && el._x_inlineBindings[value] && el._x_inlineBindings[value].extract) {
    return;
  }
  let evaluate2 = evaluateLater(el, expression);
  effect3(() => evaluate2((result) => {
    if (result === void 0 && typeof expression === "string" && expression.match(/\./)) {
      result = "";
    }
    mutateDom(() => bind(el, value, result, modifiers));
  }));
  cleanup(() => {
    el._x_undoAddedClasses && el._x_undoAddedClasses();
    el._x_undoAddedStyles && el._x_undoAddedStyles();
  });
};
handler2.inline = (el, { value, modifiers, expression }) => {
  if (!value)
    return;
  if (!el._x_inlineBindings)
    el._x_inlineBindings = {};
  el._x_inlineBindings[value] = { expression, extract: false };
};
directive("bind", handler2);
function storeKeyForXFor(el, expression) {
  el._x_keyExpression = expression;
}

// packages/alpinejs/src/directives/x-data.js
addRootSelector(() => `[${prefix("data")}]`);
var dataForReconciliation = Symbol();
directive("data", (el, { expression }, { cleanup }) => {
  if (shouldSkipRegisteringDataDuringClone(el))
    return;
  let dataToReconcile = el[dataForReconciliation];
  if ((dataToReconcile == null ? void 0 : dataToReconcile.expression) === expression)
    return;
  expression = expression === "" ? "{}" : expression;
  let magicContext = {};
  injectMagics(magicContext, el);
  let dataProviderContext = {};
  injectDataProviders(dataProviderContext, magicContext);
  let data2 = evaluate(el, expression, { scope: dataProviderContext });
  if (data2 === void 0 || data2 === true)
    data2 = {};
  injectMagics(data2, el);
  let reactiveData;
  if (dataToReconcile == null ? void 0 : dataToReconcile.reactiveData) {
    reactiveData = dataToReconcile.reactiveData;
    reconcileData(reactiveData, data2);
    let initialized = { expression };
    el[dataForReconciliation] = initialized;
    queueMicrotask(() => {
      if (el[dataForReconciliation] === initialized) {
        delete el[dataForReconciliation];
      }
    });
  } else {
    reactiveData = reactive(data2);
  }
  initInterceptors(reactiveData, cleanup);
  let undo = addScopeToNode(el, reactiveData);
  skipDuringClone(() => {
    reactiveData["init"] && evaluate(el, reactiveData["init"]);
  })();
  cleanup(() => {
    reactiveData["destroy"] && evaluate(el, reactiveData["destroy"]);
    undo();
    let removed = { reactiveData };
    el[dataForReconciliation] = removed;
    queueMicrotask(() => {
      if (el[dataForReconciliation] === removed) {
        delete el[dataForReconciliation];
      }
    });
  });
});
function reconcileData(target, source) {
  Object.keys(source).forEach((key) => {
    let descriptor = Object.getOwnPropertyDescriptor(source, key);
    let existingDescriptor = Object.getOwnPropertyDescriptor(target, key);
    if (descriptor.get || descriptor.set || (existingDescriptor == null ? void 0 : existingDescriptor.get) || (existingDescriptor == null ? void 0 : existingDescriptor.set)) {
      if (existingDescriptor)
        delete target[key];
      if (!existingDescriptor)
        target[key] = void 0;
      descriptor.get || descriptor.set ? Object.defineProperty(target, key, descriptor) : target[key] = source[key];
    } else {
      target[key] = source[key];
    }
  });
  Object.keys(target).filter((key) => !Object.prototype.hasOwnProperty.call(source, key)).forEach((key) => delete target[key]);
}
interceptClone((from, to) => {
  if (from._x_dataStack) {
    to._x_dataStack = from._x_dataStack;
    to.setAttribute("data-has-alpine-state", true);
  }
});
function shouldSkipRegisteringDataDuringClone(el) {
  if (!isCloning)
    return false;
  if (isCloningLegacy)
    return true;
  return el.hasAttribute("data-has-alpine-state");
}

// packages/alpinejs/src/directives/x-show.js
directive("show", (el, { modifiers, expression }, { effect: effect3 }) => {
  let evaluate2 = evaluateLater(el, expression);
  if (!el._x_doHide)
    el._x_doHide = () => {
      mutateDom(() => {
        el.style.setProperty("display", "none", modifiers.includes("important") ? "important" : void 0);
      });
    };
  if (!el._x_doShow)
    el._x_doShow = () => {
      mutateDom(() => {
        if (el.style.length === 1 && el.style.display === "none") {
          el.removeAttribute("style");
        } else {
          el.style.removeProperty("display");
        }
      });
    };
  let hide = () => {
    el._x_doHide();
    el._x_isShown = false;
  };
  let show = () => {
    el._x_doShow();
    el._x_isShown = true;
  };
  let clickAwayCompatibleShow = () => setTimeout(show);
  let toggle = once(
    (value) => value ? show() : hide(),
    (value) => {
      if (typeof el._x_toggleAndCascadeWithTransitions === "function") {
        el._x_toggleAndCascadeWithTransitions(el, value, show, hide);
      } else {
        value ? clickAwayCompatibleShow() : hide();
      }
    }
  );
  let oldValue;
  let firstTime = true;
  effect3(() => evaluate2((value) => {
    if (!firstTime && value === oldValue)
      return;
    if (modifiers.includes("immediate"))
      value ? clickAwayCompatibleShow() : hide();
    toggle(value);
    oldValue = value;
    firstTime = false;
  }));
});

// packages/alpinejs/src/directives/x-for.js
directive("for", skipDuringClone((el, { expression }, { effect: effect3, cleanup }) => {
  let iteratorNames = parseForExpression(expression);
  let evaluateItems = evaluateLater(el, iteratorNames.items);
  let evaluateKey = evaluateLater(
    el,
    // the x-bind:key expression is stored for our use instead of evaluated.
    el._x_keyExpression || "index"
  );
  el._x_lookup = /* @__PURE__ */ new Map();
  effect3(() => loop(el, iteratorNames, evaluateItems, evaluateKey), { priority: "structural" });
  cleanup(() => {
    el._x_lookup.forEach(
      (el2) => mutateDom(() => {
        destroyTree(el2);
        el2.remove();
      })
    );
    delete el._x_lookup;
    delete el._x_lastRenderedEl;
  });
}));
function refreshScope(scope2) {
  return (newScope) => {
    Object.entries(newScope).forEach(([key, value]) => {
      scope2[key] = value;
    });
  };
}
function loop(templateEl, iteratorNames, evaluateItems, evaluateKey) {
  evaluateItems((items) => {
    if (isNumeric3(items))
      items = Array.from({ length: items }, (_, i) => i + 1);
    if (items === void 0 || items === null)
      items = [];
    if (items instanceof Set)
      items = Array.from(items);
    if (items instanceof Map)
      items = Array.from(items);
    let oldLookup = templateEl._x_lookup;
    let lookup = /* @__PURE__ */ new Map();
    templateEl._x_lookup = lookup;
    let hasStringKeys = isObject(items);
    let scopeEntries = Object.entries(items).map(([index, item]) => {
      if (!hasStringKeys)
        index = parseInt(index);
      let scope2 = getIterationScopeVariables(iteratorNames, item, index, items);
      let key;
      evaluateKey((innerKey) => {
        if (typeof innerKey === "object")
          warn("x-for key cannot be an object, it must be a string or an integer", templateEl);
        if (oldLookup.has(innerKey)) {
          lookup.set(innerKey, oldLookup.get(innerKey));
          oldLookup.delete(innerKey);
        }
        key = innerKey;
      }, { scope: { index, ...scope2 } });
      return [key, scope2];
    });
    mutateDom(() => {
      oldLookup.forEach((el) => {
        destroyTree(el);
        el.remove();
      });
      let added = /* @__PURE__ */ new Set();
      let prev = templateEl;
      scopeEntries.forEach(([key, scope2]) => {
        if (lookup.has(key)) {
          let el = lookup.get(key);
          el._x_refreshXForScope(scope2);
          if (prev.nextElementSibling !== el) {
            if (prev.nextElementSibling)
              el.replaceWith(prev.nextElementSibling);
            prev.after(el);
          }
          prev = el;
          if (el._x_currentIfEl) {
            if (el.nextElementSibling !== el._x_currentIfEl)
              prev.after(el._x_currentIfEl);
            prev = el._x_currentIfEl;
          }
          return;
        }
        if (templateEl.content.children.length > 1)
          warn("x-for templates require a single root element, additional elements will be ignored.", templateEl);
        let clone2 = document.importNode(templateEl.content, true).firstElementChild;
        let reactiveScope = reactive(scope2);
        addScopeToNode(clone2, reactiveScope, templateEl);
        clone2._x_refreshXForScope = refreshScope(reactiveScope);
        lookup.set(key, clone2);
        added.add(clone2);
        prev.after(clone2);
        prev = clone2;
      });
      added.forEach((clone2) => initTree(clone2));
      if (prev !== templateEl) {
        templateEl._x_lastRenderedEl = prev;
      } else {
        delete templateEl._x_lastRenderedEl;
      }
    });
  });
}
function parseForExpression(expression) {
  let forIteratorRE = /,([^,\}\]]*)(?:,([^,\}\]]*))?$/;
  let stripParensRE = /^\s*\(|\)\s*$/g;
  let forAliasRE = /([\s\S]*?)\b(?:in|of)\b([\s\S]*)/;
  let inMatch = expression.match(forAliasRE);
  if (!inMatch)
    return;
  let res = {};
  res.items = inMatch[2].trim();
  let item = inMatch[1].replace(stripParensRE, "").trim();
  let iteratorMatch = item.match(forIteratorRE);
  if (iteratorMatch) {
    res.item = item.replace(forIteratorRE, "").trim();
    res.index = iteratorMatch[1].trim();
    if (iteratorMatch[2]) {
      res.collection = iteratorMatch[2].trim();
    }
  } else {
    res.item = item;
  }
  return res;
}
function getIterationScopeVariables(iteratorNames, item, index, items) {
  let scopeVariables = {};
  if (/^\[.*\]$/.test(iteratorNames.item) && Array.isArray(item)) {
    let names = iteratorNames.item.replace("[", "").replace("]", "").split(",").map((i) => i.trim());
    names.forEach((name, i) => {
      scopeVariables[name] = item[i];
    });
  } else if (/^\{.*\}$/.test(iteratorNames.item) && !Array.isArray(item) && typeof item === "object") {
    let names = iteratorNames.item.replace("{", "").replace("}", "").split(",").map((i) => i.trim());
    names.forEach((name) => {
      scopeVariables[name] = item[name];
    });
  } else {
    scopeVariables[iteratorNames.item] = item;
  }
  if (iteratorNames.index)
    scopeVariables[iteratorNames.index] = index;
  if (iteratorNames.collection)
    scopeVariables[iteratorNames.collection] = items;
  return scopeVariables;
}
function isNumeric3(subject) {
  return typeof subject !== "object" && !isNaN(subject);
}
function isObject(subject) {
  return typeof subject === "object" && !Array.isArray(subject);
}

// packages/alpinejs/src/directives/x-ref.js
function handler3() {
}
handler3.inline = (el, { expression }, { cleanup }) => {
  let root = closestRoot(el);
  if (!root)
    return;
  if (!root._x_refs)
    root._x_refs = {};
  root._x_refs[expression] = el;
  cleanup(() => delete root._x_refs[expression]);
};
directive("ref", handler3);

// packages/alpinejs/src/directives/x-if.js
directive("if", skipDuringClone((el, { expression }, { effect: effect3, cleanup }) => {
  if (el.tagName.toLowerCase() !== "template")
    warn("x-if can only be used on a <template> tag", el);
  let evaluate2 = evaluateLater(el, expression);
  let show = () => {
    if (el._x_currentIfEl)
      return el._x_currentIfEl;
    let clone2 = el.content.cloneNode(true).firstElementChild;
    addScopeToNode(clone2, {}, el);
    mutateDom(() => {
      el.after(clone2);
      initTree(clone2);
    });
    el._x_currentIfEl = clone2;
    el._x_lastRenderedEl = clone2;
    el._x_undoIf = () => {
      mutateDom(() => {
        destroyTree(clone2);
        clone2.remove();
      });
      delete el._x_currentIfEl;
      delete el._x_lastRenderedEl;
    };
    return clone2;
  };
  let hide = () => {
    if (!el._x_undoIf)
      return;
    el._x_undoIf();
    delete el._x_undoIf;
  };
  effect3(() => evaluate2((value) => {
    value ? show() : hide();
  }), { priority: "structural" });
  cleanup(() => el._x_undoIf && el._x_undoIf());
}));

// packages/alpinejs/src/directives/x-id.js
directive("id", (el, { expression }, { evaluate: evaluate2 }) => {
  let names = evaluate2(expression);
  names.forEach((name) => setIdRoot(el, name));
});
interceptClone((from, to) => {
  if (from._x_ids) {
    to._x_ids = from._x_ids;
  }
});

// packages/alpinejs/src/directives/x-on.js
mapAttributes(startingWith("@", into(prefix("on:"))));
directive("on", skipDuringClone((el, { value, modifiers, expression }, { cleanup }) => {
  let evaluate2 = expression ? evaluateLater(el, expression) : () => {
  };
  if (el.tagName.toLowerCase() === "template") {
    if (!el._x_forwardEvents)
      el._x_forwardEvents = [];
    if (!el._x_forwardEvents.includes(value))
      el._x_forwardEvents.push(value);
  }
  let removeListener = on(el, value, modifiers, (e) => {
    evaluate2(() => {
    }, { scope: { "$event": e }, params: [e] });
  });
  cleanup(() => removeListener());
}));

// packages/alpinejs/src/directives/index.js
warnMissingPluginDirective("Collapse", "collapse", "collapse");
warnMissingPluginDirective("Intersect", "intersect", "intersect");
warnMissingPluginDirective("Focus", "trap", "focus");
warnMissingPluginDirective("Mask", "mask", "mask");
function warnMissingPluginDirective(name, directiveName, slug) {
  directive(directiveName, (el) => warn(`You can't use [x-${directiveName}] without first installing the "${name}" plugin here: https://alpinejs.dev/plugins/${slug}`, el));
}

// packages/alpinejs/src/index.js
alpine_default.setEvaluator(normalEvaluator);
alpine_default.setRawEvaluator(normalRawEvaluator);
alpine_default.setReactivityEngine({
  reactive: import_reactivity10.reactive,
  // Since Vue 3.2, the scheduler is called with no arguments, so we wrap
  // the effect to hand Alpine's scheduler the runner it expects to queue.
  effect: (callback, options = {}) => {
    let runner;
    runner = (0, import_reactivity10.effect)(callback, {
      scheduler: () => {
        if (!runner)
          return;
        options.scheduler ? options.scheduler(runner) : runner();
      }
    });
    return runner;
  },
  release: import_reactivity10.stop,
  raw: import_reactivity10.toRaw
});
var src_default = alpine_default;

// packages/alpinejs/builds/module.js
var module_default = src_default;
// Annotate the CommonJS export names for ESM import in node:
0 && (module.exports = {
  Alpine
});
/*! Bundled license information:

@vue/shared/dist/shared.cjs.js:
  (**
  * @vue/shared v3.5.41
  * (c) 2018-present Yuxi (Evan) You and Vue contributors
  * @license MIT
  **)

@vue/reactivity/dist/reactivity.cjs.js:
  (**
  * @vue/reactivity v3.5.41
  * (c) 2018-present Yuxi (Evan) You and Vue contributors
  * @license MIT
  **)
*/