UNPKG

mcp-remote

Version:

Remote proxy for Model Context Protocol, allowing local-only clients to connect to remote servers using oAuth

20,014 lines 712 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
));

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/codegen/code.js
var require_code = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/codegen/code.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.regexpCode = exports.getEsmExportName = exports.getProperty = exports.safeStringify = exports.stringify = exports.strConcat = exports.addCodeArg = exports.str = exports._ = exports.nil = exports._Code = exports.Name = exports.IDENTIFIER = exports._CodeOrName = void 0;
    var _CodeOrName = class {
    };
    exports._CodeOrName = _CodeOrName;
    exports.IDENTIFIER = /^[a-z$_][a-z$_0-9]*$/i;
    var Name = class extends _CodeOrName {
      constructor(s) {
        super();
        if (!exports.IDENTIFIER.test(s))
          throw new Error("CodeGen: name must be a valid identifier");
        this.str = s;
      }
      toString() {
        return this.str;
      }
      emptyStr() {
        return false;
      }
      get names() {
        return { [this.str]: 1 };
      }
    };
    exports.Name = Name;
    var _Code = class extends _CodeOrName {
      constructor(code) {
        super();
        this._items = typeof code === "string" ? [code] : code;
      }
      toString() {
        return this.str;
      }
      emptyStr() {
        if (this._items.length > 1)
          return false;
        const item = this._items[0];
        return item === "" || item === '""';
      }
      get str() {
        var _a2;
        return (_a2 = this._str) !== null && _a2 !== void 0 ? _a2 : this._str = this._items.reduce((s, c) => `${s}${c}`, "");
      }
      get names() {
        var _a2;
        return (_a2 = this._names) !== null && _a2 !== void 0 ? _a2 : this._names = this._items.reduce((names, c) => {
          if (c instanceof Name)
            names[c.str] = (names[c.str] || 0) + 1;
          return names;
        }, {});
      }
    };
    exports._Code = _Code;
    exports.nil = new _Code("");
    function _(strs, ...args) {
      const code = [strs[0]];
      let i = 0;
      while (i < args.length) {
        addCodeArg(code, args[i]);
        code.push(strs[++i]);
      }
      return new _Code(code);
    }
    exports._ = _;
    var plus = new _Code("+");
    function str(strs, ...args) {
      const expr = [safeStringify(strs[0])];
      let i = 0;
      while (i < args.length) {
        expr.push(plus);
        addCodeArg(expr, args[i]);
        expr.push(plus, safeStringify(strs[++i]));
      }
      optimize(expr);
      return new _Code(expr);
    }
    exports.str = str;
    function addCodeArg(code, arg) {
      if (arg instanceof _Code)
        code.push(...arg._items);
      else if (arg instanceof Name)
        code.push(arg);
      else
        code.push(interpolate(arg));
    }
    exports.addCodeArg = addCodeArg;
    function optimize(expr) {
      let i = 1;
      while (i < expr.length - 1) {
        if (expr[i] === plus) {
          const res = mergeExprItems(expr[i - 1], expr[i + 1]);
          if (res !== void 0) {
            expr.splice(i - 1, 3, res);
            continue;
          }
          expr[i++] = "+";
        }
        i++;
      }
    }
    function mergeExprItems(a, b) {
      if (b === '""')
        return a;
      if (a === '""')
        return b;
      if (typeof a == "string") {
        if (b instanceof Name || a[a.length - 1] !== '"')
          return;
        if (typeof b != "string")
          return `${a.slice(0, -1)}${b}"`;
        if (b[0] === '"')
          return a.slice(0, -1) + b.slice(1);
        return;
      }
      if (typeof b == "string" && b[0] === '"' && !(a instanceof Name))
        return `"${a}${b.slice(1)}`;
      return;
    }
    function strConcat(c1, c2) {
      return c2.emptyStr() ? c1 : c1.emptyStr() ? c2 : str`${c1}${c2}`;
    }
    exports.strConcat = strConcat;
    function interpolate(x) {
      return typeof x == "number" || typeof x == "boolean" || x === null ? x : safeStringify(Array.isArray(x) ? x.join(",") : x);
    }
    function stringify(x) {
      return new _Code(safeStringify(x));
    }
    exports.stringify = stringify;
    function safeStringify(x) {
      return JSON.stringify(x).replace(/\u2028/g, "\\u2028").replace(/\u2029/g, "\\u2029");
    }
    exports.safeStringify = safeStringify;
    function getProperty(key) {
      return typeof key == "string" && exports.IDENTIFIER.test(key) ? new _Code(`.${key}`) : _`[${key}]`;
    }
    exports.getProperty = getProperty;
    function getEsmExportName(key) {
      if (typeof key == "string" && exports.IDENTIFIER.test(key)) {
        return new _Code(`${key}`);
      }
      throw new Error(`CodeGen: invalid export name: ${key}, use explicit $id name mapping`);
    }
    exports.getEsmExportName = getEsmExportName;
    function regexpCode(rx) {
      return new _Code(rx.toString());
    }
    exports.regexpCode = regexpCode;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/codegen/scope.js
var require_scope = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/codegen/scope.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.ValueScope = exports.ValueScopeName = exports.Scope = exports.varKinds = exports.UsedValueState = void 0;
    var code_1 = require_code();
    var ValueError = class extends Error {
      constructor(name) {
        super(`CodeGen: "code" for ${name} not defined`);
        this.value = name.value;
      }
    };
    var UsedValueState;
    (function(UsedValueState2) {
      UsedValueState2[UsedValueState2["Started"] = 0] = "Started";
      UsedValueState2[UsedValueState2["Completed"] = 1] = "Completed";
    })(UsedValueState || (exports.UsedValueState = UsedValueState = {}));
    exports.varKinds = {
      const: new code_1.Name("const"),
      let: new code_1.Name("let"),
      var: new code_1.Name("var")
    };
    var Scope = class {
      constructor({ prefixes, parent } = {}) {
        this._names = {};
        this._prefixes = prefixes;
        this._parent = parent;
      }
      toName(nameOrPrefix) {
        return nameOrPrefix instanceof code_1.Name ? nameOrPrefix : this.name(nameOrPrefix);
      }
      name(prefix) {
        return new code_1.Name(this._newName(prefix));
      }
      _newName(prefix) {
        const ng = this._names[prefix] || this._nameGroup(prefix);
        return `${prefix}${ng.index++}`;
      }
      _nameGroup(prefix) {
        var _a2, _b;
        if (((_b = (_a2 = this._parent) === null || _a2 === void 0 ? void 0 : _a2._prefixes) === null || _b === void 0 ? void 0 : _b.has(prefix)) || this._prefixes && !this._prefixes.has(prefix)) {
          throw new Error(`CodeGen: prefix "${prefix}" is not allowed in this scope`);
        }
        return this._names[prefix] = { prefix, index: 0 };
      }
    };
    exports.Scope = Scope;
    var ValueScopeName = class extends code_1.Name {
      constructor(prefix, nameStr) {
        super(nameStr);
        this.prefix = prefix;
      }
      setValue(value, { property, itemIndex }) {
        this.value = value;
        this.scopePath = (0, code_1._)`.${new code_1.Name(property)}[${itemIndex}]`;
      }
    };
    exports.ValueScopeName = ValueScopeName;
    var line = (0, code_1._)`\n`;
    var ValueScope = class extends Scope {
      constructor(opts) {
        super(opts);
        this._values = {};
        this._scope = opts.scope;
        this.opts = { ...opts, _n: opts.lines ? line : code_1.nil };
      }
      get() {
        return this._scope;
      }
      name(prefix) {
        return new ValueScopeName(prefix, this._newName(prefix));
      }
      value(nameOrPrefix, value) {
        var _a2;
        if (value.ref === void 0)
          throw new Error("CodeGen: ref must be passed in value");
        const name = this.toName(nameOrPrefix);
        const { prefix } = name;
        const valueKey = (_a2 = value.key) !== null && _a2 !== void 0 ? _a2 : value.ref;
        let vs = this._values[prefix];
        if (vs) {
          const _name = vs.get(valueKey);
          if (_name)
            return _name;
        } else {
          vs = this._values[prefix] = /* @__PURE__ */ new Map();
        }
        vs.set(valueKey, name);
        const s = this._scope[prefix] || (this._scope[prefix] = []);
        const itemIndex = s.length;
        s[itemIndex] = value.ref;
        name.setValue(value, { property: prefix, itemIndex });
        return name;
      }
      getValue(prefix, keyOrRef) {
        const vs = this._values[prefix];
        if (!vs)
          return;
        return vs.get(keyOrRef);
      }
      scopeRefs(scopeName, values = this._values) {
        return this._reduceValues(values, (name) => {
          if (name.scopePath === void 0)
            throw new Error(`CodeGen: name "${name}" has no value`);
          return (0, code_1._)`${scopeName}${name.scopePath}`;
        });
      }
      scopeCode(values = this._values, usedValues, getCode) {
        return this._reduceValues(values, (name) => {
          if (name.value === void 0)
            throw new Error(`CodeGen: name "${name}" has no value`);
          return name.value.code;
        }, usedValues, getCode);
      }
      _reduceValues(values, valueCode, usedValues = {}, getCode) {
        let code = code_1.nil;
        for (const prefix in values) {
          const vs = values[prefix];
          if (!vs)
            continue;
          const nameSet = usedValues[prefix] = usedValues[prefix] || /* @__PURE__ */ new Map();
          vs.forEach((name) => {
            if (nameSet.has(name))
              return;
            nameSet.set(name, UsedValueState.Started);
            let c = valueCode(name);
            if (c) {
              const def = this.opts.es5 ? exports.varKinds.var : exports.varKinds.const;
              code = (0, code_1._)`${code}${def} ${name} = ${c};${this.opts._n}`;
            } else if (c = getCode === null || getCode === void 0 ? void 0 : getCode(name)) {
              code = (0, code_1._)`${code}${c}${this.opts._n}`;
            } else {
              throw new ValueError(name);
            }
            nameSet.set(name, UsedValueState.Completed);
          });
        }
        return code;
      }
    };
    exports.ValueScope = ValueScope;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/codegen/index.js
var require_codegen = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/codegen/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.or = exports.and = exports.not = exports.CodeGen = exports.operators = exports.varKinds = exports.ValueScopeName = exports.ValueScope = exports.Scope = exports.Name = exports.regexpCode = exports.stringify = exports.getProperty = exports.nil = exports.strConcat = exports.str = exports._ = void 0;
    var code_1 = require_code();
    var scope_1 = require_scope();
    var code_2 = require_code();
    Object.defineProperty(exports, "_", { enumerable: true, get: function() {
      return code_2._;
    } });
    Object.defineProperty(exports, "str", { enumerable: true, get: function() {
      return code_2.str;
    } });
    Object.defineProperty(exports, "strConcat", { enumerable: true, get: function() {
      return code_2.strConcat;
    } });
    Object.defineProperty(exports, "nil", { enumerable: true, get: function() {
      return code_2.nil;
    } });
    Object.defineProperty(exports, "getProperty", { enumerable: true, get: function() {
      return code_2.getProperty;
    } });
    Object.defineProperty(exports, "stringify", { enumerable: true, get: function() {
      return code_2.stringify;
    } });
    Object.defineProperty(exports, "regexpCode", { enumerable: true, get: function() {
      return code_2.regexpCode;
    } });
    Object.defineProperty(exports, "Name", { enumerable: true, get: function() {
      return code_2.Name;
    } });
    var scope_2 = require_scope();
    Object.defineProperty(exports, "Scope", { enumerable: true, get: function() {
      return scope_2.Scope;
    } });
    Object.defineProperty(exports, "ValueScope", { enumerable: true, get: function() {
      return scope_2.ValueScope;
    } });
    Object.defineProperty(exports, "ValueScopeName", { enumerable: true, get: function() {
      return scope_2.ValueScopeName;
    } });
    Object.defineProperty(exports, "varKinds", { enumerable: true, get: function() {
      return scope_2.varKinds;
    } });
    exports.operators = {
      GT: new code_1._Code(">"),
      GTE: new code_1._Code(">="),
      LT: new code_1._Code("<"),
      LTE: new code_1._Code("<="),
      EQ: new code_1._Code("==="),
      NEQ: new code_1._Code("!=="),
      NOT: new code_1._Code("!"),
      OR: new code_1._Code("||"),
      AND: new code_1._Code("&&"),
      ADD: new code_1._Code("+")
    };
    var Node = class {
      optimizeNodes() {
        return this;
      }
      optimizeNames(_names, _constants) {
        return this;
      }
    };
    var Def = class extends Node {
      constructor(varKind, name, rhs) {
        super();
        this.varKind = varKind;
        this.name = name;
        this.rhs = rhs;
      }
      render({ es5, _n }) {
        const varKind = es5 ? scope_1.varKinds.var : this.varKind;
        const rhs = this.rhs === void 0 ? "" : ` = ${this.rhs}`;
        return `${varKind} ${this.name}${rhs};` + _n;
      }
      optimizeNames(names, constants) {
        if (!names[this.name.str])
          return;
        if (this.rhs)
          this.rhs = optimizeExpr(this.rhs, names, constants);
        return this;
      }
      get names() {
        return this.rhs instanceof code_1._CodeOrName ? this.rhs.names : {};
      }
    };
    var Assign = class extends Node {
      constructor(lhs, rhs, sideEffects) {
        super();
        this.lhs = lhs;
        this.rhs = rhs;
        this.sideEffects = sideEffects;
      }
      render({ _n }) {
        return `${this.lhs} = ${this.rhs};` + _n;
      }
      optimizeNames(names, constants) {
        if (this.lhs instanceof code_1.Name && !names[this.lhs.str] && !this.sideEffects)
          return;
        this.rhs = optimizeExpr(this.rhs, names, constants);
        return this;
      }
      get names() {
        const names = this.lhs instanceof code_1.Name ? {} : { ...this.lhs.names };
        return addExprNames(names, this.rhs);
      }
    };
    var AssignOp = class extends Assign {
      constructor(lhs, op, rhs, sideEffects) {
        super(lhs, rhs, sideEffects);
        this.op = op;
      }
      render({ _n }) {
        return `${this.lhs} ${this.op}= ${this.rhs};` + _n;
      }
    };
    var Label = class extends Node {
      constructor(label) {
        super();
        this.label = label;
        this.names = {};
      }
      render({ _n }) {
        return `${this.label}:` + _n;
      }
    };
    var Break = class extends Node {
      constructor(label) {
        super();
        this.label = label;
        this.names = {};
      }
      render({ _n }) {
        const label = this.label ? ` ${this.label}` : "";
        return `break${label};` + _n;
      }
    };
    var Throw = class extends Node {
      constructor(error2) {
        super();
        this.error = error2;
      }
      render({ _n }) {
        return `throw ${this.error};` + _n;
      }
      get names() {
        return this.error.names;
      }
    };
    var AnyCode = class extends Node {
      constructor(code) {
        super();
        this.code = code;
      }
      render({ _n }) {
        return `${this.code};` + _n;
      }
      optimizeNodes() {
        return `${this.code}` ? this : void 0;
      }
      optimizeNames(names, constants) {
        this.code = optimizeExpr(this.code, names, constants);
        return this;
      }
      get names() {
        return this.code instanceof code_1._CodeOrName ? this.code.names : {};
      }
    };
    var ParentNode = class extends Node {
      constructor(nodes = []) {
        super();
        this.nodes = nodes;
      }
      render(opts) {
        return this.nodes.reduce((code, n) => code + n.render(opts), "");
      }
      optimizeNodes() {
        const { nodes } = this;
        let i = nodes.length;
        while (i--) {
          const n = nodes[i].optimizeNodes();
          if (Array.isArray(n))
            nodes.splice(i, 1, ...n);
          else if (n)
            nodes[i] = n;
          else
            nodes.splice(i, 1);
        }
        return nodes.length > 0 ? this : void 0;
      }
      optimizeNames(names, constants) {
        const { nodes } = this;
        let i = nodes.length;
        while (i--) {
          const n = nodes[i];
          if (n.optimizeNames(names, constants))
            continue;
          subtractNames(names, n.names);
          nodes.splice(i, 1);
        }
        return nodes.length > 0 ? this : void 0;
      }
      get names() {
        return this.nodes.reduce((names, n) => addNames(names, n.names), {});
      }
    };
    var BlockNode = class extends ParentNode {
      render(opts) {
        return "{" + opts._n + super.render(opts) + "}" + opts._n;
      }
    };
    var Root = class extends ParentNode {
    };
    var Else = class extends BlockNode {
    };
    Else.kind = "else";
    var If = class _If extends BlockNode {
      constructor(condition, nodes) {
        super(nodes);
        this.condition = condition;
      }
      render(opts) {
        let code = `if(${this.condition})` + super.render(opts);
        if (this.else)
          code += "else " + this.else.render(opts);
        return code;
      }
      optimizeNodes() {
        super.optimizeNodes();
        const cond = this.condition;
        if (cond === true)
          return this.nodes;
        let e = this.else;
        if (e) {
          const ns = e.optimizeNodes();
          e = this.else = Array.isArray(ns) ? new Else(ns) : ns;
        }
        if (e) {
          if (cond === false)
            return e instanceof _If ? e : e.nodes;
          if (this.nodes.length)
            return this;
          return new _If(not(cond), e instanceof _If ? [e] : e.nodes);
        }
        if (cond === false || !this.nodes.length)
          return void 0;
        return this;
      }
      optimizeNames(names, constants) {
        var _a2;
        this.else = (_a2 = this.else) === null || _a2 === void 0 ? void 0 : _a2.optimizeNames(names, constants);
        if (!(super.optimizeNames(names, constants) || this.else))
          return;
        this.condition = optimizeExpr(this.condition, names, constants);
        return this;
      }
      get names() {
        const names = super.names;
        addExprNames(names, this.condition);
        if (this.else)
          addNames(names, this.else.names);
        return names;
      }
    };
    If.kind = "if";
    var For = class extends BlockNode {
    };
    For.kind = "for";
    var ForLoop = class extends For {
      constructor(iteration) {
        super();
        this.iteration = iteration;
      }
      render(opts) {
        return `for(${this.iteration})` + super.render(opts);
      }
      optimizeNames(names, constants) {
        if (!super.optimizeNames(names, constants))
          return;
        this.iteration = optimizeExpr(this.iteration, names, constants);
        return this;
      }
      get names() {
        return addNames(super.names, this.iteration.names);
      }
    };
    var ForRange = class extends For {
      constructor(varKind, name, from, to) {
        super();
        this.varKind = varKind;
        this.name = name;
        this.from = from;
        this.to = to;
      }
      render(opts) {
        const varKind = opts.es5 ? scope_1.varKinds.var : this.varKind;
        const { name, from, to } = this;
        return `for(${varKind} ${name}=${from}; ${name}<${to}; ${name}++)` + super.render(opts);
      }
      get names() {
        const names = addExprNames(super.names, this.from);
        return addExprNames(names, this.to);
      }
    };
    var ForIter = class extends For {
      constructor(loop, varKind, name, iterable) {
        super();
        this.loop = loop;
        this.varKind = varKind;
        this.name = name;
        this.iterable = iterable;
      }
      render(opts) {
        return `for(${this.varKind} ${this.name} ${this.loop} ${this.iterable})` + super.render(opts);
      }
      optimizeNames(names, constants) {
        if (!super.optimizeNames(names, constants))
          return;
        this.iterable = optimizeExpr(this.iterable, names, constants);
        return this;
      }
      get names() {
        return addNames(super.names, this.iterable.names);
      }
    };
    var Func = class extends BlockNode {
      constructor(name, args, async) {
        super();
        this.name = name;
        this.args = args;
        this.async = async;
      }
      render(opts) {
        const _async = this.async ? "async " : "";
        return `${_async}function ${this.name}(${this.args})` + super.render(opts);
      }
    };
    Func.kind = "func";
    var Return = class extends ParentNode {
      render(opts) {
        return "return " + super.render(opts);
      }
    };
    Return.kind = "return";
    var Try = class extends BlockNode {
      render(opts) {
        let code = "try" + super.render(opts);
        if (this.catch)
          code += this.catch.render(opts);
        if (this.finally)
          code += this.finally.render(opts);
        return code;
      }
      optimizeNodes() {
        var _a2, _b;
        super.optimizeNodes();
        (_a2 = this.catch) === null || _a2 === void 0 ? void 0 : _a2.optimizeNodes();
        (_b = this.finally) === null || _b === void 0 ? void 0 : _b.optimizeNodes();
        return this;
      }
      optimizeNames(names, constants) {
        var _a2, _b;
        super.optimizeNames(names, constants);
        (_a2 = this.catch) === null || _a2 === void 0 ? void 0 : _a2.optimizeNames(names, constants);
        (_b = this.finally) === null || _b === void 0 ? void 0 : _b.optimizeNames(names, constants);
        return this;
      }
      get names() {
        const names = super.names;
        if (this.catch)
          addNames(names, this.catch.names);
        if (this.finally)
          addNames(names, this.finally.names);
        return names;
      }
    };
    var Catch = class extends BlockNode {
      constructor(error2) {
        super();
        this.error = error2;
      }
      render(opts) {
        return `catch(${this.error})` + super.render(opts);
      }
    };
    Catch.kind = "catch";
    var Finally = class extends BlockNode {
      render(opts) {
        return "finally" + super.render(opts);
      }
    };
    Finally.kind = "finally";
    var CodeGen = class {
      constructor(extScope, opts = {}) {
        this._values = {};
        this._blockStarts = [];
        this._constants = {};
        this.opts = { ...opts, _n: opts.lines ? "\n" : "" };
        this._extScope = extScope;
        this._scope = new scope_1.Scope({ parent: extScope });
        this._nodes = [new Root()];
      }
      toString() {
        return this._root.render(this.opts);
      }
      // returns unique name in the internal scope
      name(prefix) {
        return this._scope.name(prefix);
      }
      // reserves unique name in the external scope
      scopeName(prefix) {
        return this._extScope.name(prefix);
      }
      // reserves unique name in the external scope and assigns value to it
      scopeValue(prefixOrName, value) {
        const name = this._extScope.value(prefixOrName, value);
        const vs = this._values[name.prefix] || (this._values[name.prefix] = /* @__PURE__ */ new Set());
        vs.add(name);
        return name;
      }
      getScopeValue(prefix, keyOrRef) {
        return this._extScope.getValue(prefix, keyOrRef);
      }
      // return code that assigns values in the external scope to the names that are used internally
      // (same names that were returned by gen.scopeName or gen.scopeValue)
      scopeRefs(scopeName) {
        return this._extScope.scopeRefs(scopeName, this._values);
      }
      scopeCode() {
        return this._extScope.scopeCode(this._values);
      }
      _def(varKind, nameOrPrefix, rhs, constant) {
        const name = this._scope.toName(nameOrPrefix);
        if (rhs !== void 0 && constant)
          this._constants[name.str] = rhs;
        this._leafNode(new Def(varKind, name, rhs));
        return name;
      }
      // `const` declaration (`var` in es5 mode)
      const(nameOrPrefix, rhs, _constant) {
        return this._def(scope_1.varKinds.const, nameOrPrefix, rhs, _constant);
      }
      // `let` declaration with optional assignment (`var` in es5 mode)
      let(nameOrPrefix, rhs, _constant) {
        return this._def(scope_1.varKinds.let, nameOrPrefix, rhs, _constant);
      }
      // `var` declaration with optional assignment
      var(nameOrPrefix, rhs, _constant) {
        return this._def(scope_1.varKinds.var, nameOrPrefix, rhs, _constant);
      }
      // assignment code
      assign(lhs, rhs, sideEffects) {
        return this._leafNode(new Assign(lhs, rhs, sideEffects));
      }
      // `+=` code
      add(lhs, rhs) {
        return this._leafNode(new AssignOp(lhs, exports.operators.ADD, rhs));
      }
      // appends passed SafeExpr to code or executes Block
      code(c) {
        if (typeof c == "function")
          c();
        else if (c !== code_1.nil)
          this._leafNode(new AnyCode(c));
        return this;
      }
      // returns code for object literal for the passed argument list of key-value pairs
      object(...keyValues) {
        const code = ["{"];
        for (const [key, value] of keyValues) {
          if (code.length > 1)
            code.push(",");
          code.push(key);
          if (key !== value || this.opts.es5) {
            code.push(":");
            (0, code_1.addCodeArg)(code, value);
          }
        }
        code.push("}");
        return new code_1._Code(code);
      }
      // `if` clause (or statement if `thenBody` and, optionally, `elseBody` are passed)
      if(condition, thenBody, elseBody) {
        this._blockNode(new If(condition));
        if (thenBody && elseBody) {
          this.code(thenBody).else().code(elseBody).endIf();
        } else if (thenBody) {
          this.code(thenBody).endIf();
        } else if (elseBody) {
          throw new Error('CodeGen: "else" body without "then" body');
        }
        return this;
      }
      // `else if` clause - invalid without `if` or after `else` clauses
      elseIf(condition) {
        return this._elseNode(new If(condition));
      }
      // `else` clause - only valid after `if` or `else if` clauses
      else() {
        return this._elseNode(new Else());
      }
      // end `if` statement (needed if gen.if was used only with condition)
      endIf() {
        return this._endBlockNode(If, Else);
      }
      _for(node, forBody) {
        this._blockNode(node);
        if (forBody)
          this.code(forBody).endFor();
        return this;
      }
      // a generic `for` clause (or statement if `forBody` is passed)
      for(iteration, forBody) {
        return this._for(new ForLoop(iteration), forBody);
      }
      // `for` statement for a range of values
      forRange(nameOrPrefix, from, to, forBody, varKind = this.opts.es5 ? scope_1.varKinds.var : scope_1.varKinds.let) {
        const name = this._scope.toName(nameOrPrefix);
        return this._for(new ForRange(varKind, name, from, to), () => forBody(name));
      }
      // `for-of` statement (in es5 mode replace with a normal for loop)
      forOf(nameOrPrefix, iterable, forBody, varKind = scope_1.varKinds.const) {
        const name = this._scope.toName(nameOrPrefix);
        if (this.opts.es5) {
          const arr = iterable instanceof code_1.Name ? iterable : this.var("_arr", iterable);
          return this.forRange("_i", 0, (0, code_1._)`${arr}.length`, (i) => {
            this.var(name, (0, code_1._)`${arr}[${i}]`);
            forBody(name);
          });
        }
        return this._for(new ForIter("of", varKind, name, iterable), () => forBody(name));
      }
      // `for-in` statement.
      // With option `ownProperties` replaced with a `for-of` loop for object keys
      forIn(nameOrPrefix, obj, forBody, varKind = this.opts.es5 ? scope_1.varKinds.var : scope_1.varKinds.const) {
        if (this.opts.ownProperties) {
          return this.forOf(nameOrPrefix, (0, code_1._)`Object.keys(${obj})`, forBody);
        }
        const name = this._scope.toName(nameOrPrefix);
        return this._for(new ForIter("in", varKind, name, obj), () => forBody(name));
      }
      // end `for` loop
      endFor() {
        return this._endBlockNode(For);
      }
      // `label` statement
      label(label) {
        return this._leafNode(new Label(label));
      }
      // `break` statement
      break(label) {
        return this._leafNode(new Break(label));
      }
      // `return` statement
      return(value) {
        const node = new Return();
        this._blockNode(node);
        this.code(value);
        if (node.nodes.length !== 1)
          throw new Error('CodeGen: "return" should have one node');
        return this._endBlockNode(Return);
      }
      // `try` statement
      try(tryBody, catchCode, finallyCode) {
        if (!catchCode && !finallyCode)
          throw new Error('CodeGen: "try" without "catch" and "finally"');
        const node = new Try();
        this._blockNode(node);
        this.code(tryBody);
        if (catchCode) {
          const error2 = this.name("e");
          this._currNode = node.catch = new Catch(error2);
          catchCode(error2);
        }
        if (finallyCode) {
          this._currNode = node.finally = new Finally();
          this.code(finallyCode);
        }
        return this._endBlockNode(Catch, Finally);
      }
      // `throw` statement
      throw(error2) {
        return this._leafNode(new Throw(error2));
      }
      // start self-balancing block
      block(body, nodeCount) {
        this._blockStarts.push(this._nodes.length);
        if (body)
          this.code(body).endBlock(nodeCount);
        return this;
      }
      // end the current self-balancing block
      endBlock(nodeCount) {
        const len = this._blockStarts.pop();
        if (len === void 0)
          throw new Error("CodeGen: not in self-balancing block");
        const toClose = this._nodes.length - len;
        if (toClose < 0 || nodeCount !== void 0 && toClose !== nodeCount) {
          throw new Error(`CodeGen: wrong number of nodes: ${toClose} vs ${nodeCount} expected`);
        }
        this._nodes.length = len;
        return this;
      }
      // `function` heading (or definition if funcBody is passed)
      func(name, args = code_1.nil, async, funcBody) {
        this._blockNode(new Func(name, args, async));
        if (funcBody)
          this.code(funcBody).endFunc();
        return this;
      }
      // end function definition
      endFunc() {
        return this._endBlockNode(Func);
      }
      optimize(n = 1) {
        while (n-- > 0) {
          this._root.optimizeNodes();
          this._root.optimizeNames(this._root.names, this._constants);
        }
      }
      _leafNode(node) {
        this._currNode.nodes.push(node);
        return this;
      }
      _blockNode(node) {
        this._currNode.nodes.push(node);
        this._nodes.push(node);
      }
      _endBlockNode(N1, N2) {
        const n = this._currNode;
        if (n instanceof N1 || N2 && n instanceof N2) {
          this._nodes.pop();
          return this;
        }
        throw new Error(`CodeGen: not in block "${N2 ? `${N1.kind}/${N2.kind}` : N1.kind}"`);
      }
      _elseNode(node) {
        const n = this._currNode;
        if (!(n instanceof If)) {
          throw new Error('CodeGen: "else" without "if"');
        }
        this._currNode = n.else = node;
        return this;
      }
      get _root() {
        return this._nodes[0];
      }
      get _currNode() {
        const ns = this._nodes;
        return ns[ns.length - 1];
      }
      set _currNode(node) {
        const ns = this._nodes;
        ns[ns.length - 1] = node;
      }
    };
    exports.CodeGen = CodeGen;
    function addNames(names, from) {
      for (const n in from)
        names[n] = (names[n] || 0) + (from[n] || 0);
      return names;
    }
    function addExprNames(names, from) {
      return from instanceof code_1._CodeOrName ? addNames(names, from.names) : names;
    }
    function optimizeExpr(expr, names, constants) {
      if (expr instanceof code_1.Name)
        return replaceName(expr);
      if (!canOptimize(expr))
        return expr;
      return new code_1._Code(expr._items.reduce((items, c) => {
        if (c instanceof code_1.Name)
          c = replaceName(c);
        if (c instanceof code_1._Code)
          items.push(...c._items);
        else
          items.push(c);
        return items;
      }, []));
      function replaceName(n) {
        const c = constants[n.str];
        if (c === void 0 || names[n.str] !== 1)
          return n;
        delete names[n.str];
        return c;
      }
      function canOptimize(e) {
        return e instanceof code_1._Code && e._items.some((c) => c instanceof code_1.Name && names[c.str] === 1 && constants[c.str] !== void 0);
      }
    }
    function subtractNames(names, from) {
      for (const n in from)
        names[n] = (names[n] || 0) - (from[n] || 0);
    }
    function not(x) {
      return typeof x == "boolean" || typeof x == "number" || x === null ? !x : (0, code_1._)`!${par(x)}`;
    }
    exports.not = not;
    var andCode = mappend(exports.operators.AND);
    function and(...args) {
      return args.reduce(andCode);
    }
    exports.and = and;
    var orCode = mappend(exports.operators.OR);
    function or(...args) {
      return args.reduce(orCode);
    }
    exports.or = or;
    function mappend(op) {
      return (x, y) => x === code_1.nil ? y : y === code_1.nil ? x : (0, code_1._)`${par(x)} ${op} ${par(y)}`;
    }
    function par(x) {
      return x instanceof code_1.Name ? x : (0, code_1._)`(${x})`;
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/util.js
var require_util = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/util.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.checkStrictMode = exports.getErrorPath = exports.Type = exports.useFunc = exports.setEvaluated = exports.evaluatedPropsToName = exports.mergeEvaluated = exports.eachItem = exports.unescapeJsonPointer = exports.escapeJsonPointer = exports.escapeFragment = exports.unescapeFragment = exports.schemaRefOrVal = exports.schemaHasRulesButRef = exports.schemaHasRules = exports.checkUnknownRules = exports.alwaysValidSchema = exports.toHash = void 0;
    var codegen_1 = require_codegen();
    var code_1 = require_code();
    function toHash(arr) {
      const hash = {};
      for (const item of arr)
        hash[item] = true;
      return hash;
    }
    exports.toHash = toHash;
    function alwaysValidSchema(it, schema) {
      if (typeof schema == "boolean")
        return schema;
      if (Object.keys(schema).length === 0)
        return true;
      checkUnknownRules(it, schema);
      return !schemaHasRules(schema, it.self.RULES.all);
    }
    exports.alwaysValidSchema = alwaysValidSchema;
    function checkUnknownRules(it, schema = it.schema) {
      const { opts, self } = it;
      if (!opts.strictSchema)
        return;
      if (typeof schema === "boolean")
        return;
      const rules = self.RULES.keywords;
      for (const key in schema) {
        if (!rules[key])
          checkStrictMode(it, `unknown keyword: "${key}"`);
      }
    }
    exports.checkUnknownRules = checkUnknownRules;
    function schemaHasRules(schema, rules) {
      if (typeof schema == "boolean")
        return !schema;
      for (const key in schema)
        if (rules[key])
          return true;
      return false;
    }
    exports.schemaHasRules = schemaHasRules;
    function schemaHasRulesButRef(schema, RULES) {
      if (typeof schema == "boolean")
        return !schema;
      for (const key in schema)
        if (key !== "$ref" && RULES.all[key])
          return true;
      return false;
    }
    exports.schemaHasRulesButRef = schemaHasRulesButRef;
    function schemaRefOrVal({ topSchemaRef, schemaPath }, schema, keyword, $data) {
      if (!$data) {
        if (typeof schema == "number" || typeof schema == "boolean")
          return schema;
        if (typeof schema == "string")
          return (0, codegen_1._)`${schema}`;
      }
      return (0, codegen_1._)`${topSchemaRef}${schemaPath}${(0, codegen_1.getProperty)(keyword)}`;
    }
    exports.schemaRefOrVal = schemaRefOrVal;
    function unescapeFragment(str) {
      return unescapeJsonPointer(decodeURIComponent(str));
    }
    exports.unescapeFragment = unescapeFragment;
    function escapeFragment(str) {
      return encodeURIComponent(escapeJsonPointer(str));
    }
    exports.escapeFragment = escapeFragment;
    function escapeJsonPointer(str) {
      if (typeof str == "number")
        return `${str}`;
      return str.replace(/~/g, "~0").replace(/\//g, "~1");
    }
    exports.escapeJsonPointer = escapeJsonPointer;
    function unescapeJsonPointer(str) {
      return str.replace(/~1/g, "/").replace(/~0/g, "~");
    }
    exports.unescapeJsonPointer = unescapeJsonPointer;
    function eachItem(xs, f) {
      if (Array.isArray(xs)) {
        for (const x of xs)
          f(x);
      } else {
        f(xs);
      }
    }
    exports.eachItem = eachItem;
    function makeMergeEvaluated({ mergeNames, mergeToName, mergeValues: mergeValues3, resultToName }) {
      return (gen, from, to, toName) => {
        const res = to === void 0 ? from : to instanceof codegen_1.Name ? (from instanceof codegen_1.Name ? mergeNames(gen, from, to) : mergeToName(gen, from, to), to) : from instanceof codegen_1.Name ? (mergeToName(gen, to, from), from) : mergeValues3(from, to);
        return toName === codegen_1.Name && !(res instanceof codegen_1.Name) ? resultToName(gen, res) : res;
      };
    }
    exports.mergeEvaluated = {
      props: makeMergeEvaluated({
        mergeNames: (gen, from, to) => gen.if((0, codegen_1._)`${to} !== true && ${from} !== undefined`, () => {
          gen.if((0, codegen_1._)`${from} === true`, () => gen.assign(to, true), () => gen.assign(to, (0, codegen_1._)`${to} || {}`).code((0, codegen_1._)`Object.assign(${to}, ${from})`));
        }),
        mergeToName: (gen, from, to) => gen.if((0, codegen_1._)`${to} !== true`, () => {
          if (from === true) {
            gen.assign(to, true);
          } else {
            gen.assign(to, (0, codegen_1._)`${to} || {}`);
            setEvaluated(gen, to, from);
          }
        }),
        mergeValues: (from, to) => from === true ? true : { ...from, ...to },
        resultToName: evaluatedPropsToName
      }),
      items: makeMergeEvaluated({
        mergeNames: (gen, from, to) => gen.if((0, codegen_1._)`${to} !== true && ${from} !== undefined`, () => gen.assign(to, (0, codegen_1._)`${from} === true ? true : ${to} > ${from} ? ${to} : ${from}`)),
        mergeToName: (gen, from, to) => gen.if((0, codegen_1._)`${to} !== true`, () => gen.assign(to, from === true ? true : (0, codegen_1._)`${to} > ${from} ? ${to} : ${from}`)),
        mergeValues: (from, to) => from === true ? true : Math.max(from, to),
        resultToName: (gen, items) => gen.var("items", items)
      })
    };
    function evaluatedPropsToName(gen, ps) {
      if (ps === true)
        return gen.var("props", true);
      const props = gen.var("props", (0, codegen_1._)`{}`);
      if (ps !== void 0)
        setEvaluated(gen, props, ps);
      return props;
    }
    exports.evaluatedPropsToName = evaluatedPropsToName;
    function setEvaluated(gen, props, ps) {
      Object.keys(ps).forEach((p) => gen.assign((0, codegen_1._)`${props}${(0, codegen_1.getProperty)(p)}`, true));
    }
    exports.setEvaluated = setEvaluated;
    var snippets = {};
    function useFunc(gen, f) {
      return gen.scopeValue("func", {
        ref: f,
        code: snippets[f.code] || (snippets[f.code] = new code_1._Code(f.code))
      });
    }
    exports.useFunc = useFunc;
    var Type;
    (function(Type2) {
      Type2[Type2["Num"] = 0] = "Num";
      Type2[Type2["Str"] = 1] = "Str";
    })(Type || (exports.Type = Type = {}));
    function getErrorPath(dataProp, dataPropType, jsPropertySyntax) {
      if (dataProp instanceof codegen_1.Name) {
        const isNumber = dataPropType === Type.Num;
        return jsPropertySyntax ? isNumber ? (0, codegen_1._)`"[" + ${dataProp} + "]"` : (0, codegen_1._)`"['" + ${dataProp} + "']"` : isNumber ? (0, codegen_1._)`"/" + ${dataProp}` : (0, codegen_1._)`"/" + ${dataProp}.replace(/~/g, "~0").replace(/\\//g, "~1")`;
      }
      return jsPropertySyntax ? (0, codegen_1.getProperty)(dataProp).toString() : "/" + escapeJsonPointer(dataProp);
    }
    exports.getErrorPath = getErrorPath;
    function checkStrictMode(it, msg, mode = it.opts.strictSchema) {
      if (!mode)
        return;
      msg = `strict mode: ${msg}`;
      if (mode === true)
        throw new Error(msg);
      it.self.logger.warn(msg);
    }
    exports.checkStrictMode = checkStrictMode;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/names.js
var require_names = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/names.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var names = {
      // validation function arguments
      data: new codegen_1.Name("data"),
      // data passed to validation function
      // args passed from referencing schema
      valCxt: new codegen_1.Name("valCxt"),
      // validation/data context - should not be used directly, it is destructured to the names below
      instancePath: new codegen_1.Name("instancePath"),
      parentData: new codegen_1.Name("parentData"),
      parentDataProperty: new codegen_1.Name("parentDataProperty"),
      rootData: new codegen_1.Name("rootData"),
      // root data - same as the data passed to the first/top validation function
      dynamicAnchors: new codegen_1.Name("dynamicAnchors"),
      // used to support recursiveRef and dynamicRef
      // function scoped variables
      vErrors: new codegen_1.Name("vErrors"),
      // null or array of validation errors
      errors: new codegen_1.Name("errors"),
      // counter of validation errors
      this: new codegen_1.Name("this"),
      // "globals"
      self: new codegen_1.Name("self"),
      scope: new codegen_1.Name("scope"),
      // JTD serialize/parse name for JSON string and position
      json: new codegen_1.Name("json"),
      jsonPos: new codegen_1.Name("jsonPos"),
      jsonLen: new codegen_1.Name("jsonLen"),
      jsonPart: new codegen_1.Name("jsonPart")
    };
    exports.default = names;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/errors.js
var require_errors = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/errors.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.extendErrors = exports.resetErrorsCount = exports.reportExtraError = exports.reportError = exports.keyword$DataError = exports.keywordError = void 0;
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var names_1 = require_names();
    exports.keywordError = {
      message: ({ keyword }) => (0, codegen_1.str)`must pass "${keyword}" keyword validation`
    };
    exports.keyword$DataError = {
      message: ({ keyword, schemaType }) => schemaType ? (0, codegen_1.str)`"${keyword}" keyword must be ${schemaType} ($data)` : (0, codegen_1.str)`"${keyword}" keyword is invalid ($data)`
    };
    function reportError(cxt, error2 = exports.keywordError, errorPaths, overrideAllErrors) {
      const { it } = cxt;
      const { gen, compositeRule, allErrors } = it;
      const errObj = errorObjectCode(cxt, error2, errorPaths);
      if (overrideAllErrors !== null && overrideAllErrors !== void 0 ? overrideAllErrors : compositeRule || allErrors) {
        addError(gen, errObj);
      } else {
        returnErrors(it, (0, codegen_1._)`[${errObj}]`);
      }
    }
    exports.reportError = reportError;
    function reportExtraError(cxt, error2 = exports.keywordError, errorPaths) {
      const { it } = cxt;
      const { gen, compositeRule, allErrors } = it;
      const errObj = errorObjectCode(cxt, error2, errorPaths);
      addError(gen, errObj);
      if (!(compositeRule || allErrors)) {
        returnErrors(it, names_1.default.vErrors);
      }
    }
    exports.reportExtraError = reportExtraError;
    function resetErrorsCount(gen, errsCount) {
      gen.assign(names_1.default.errors, errsCount);
      gen.if((0, codegen_1._)`${names_1.default.vErrors} !== null`, () => gen.if(errsCount, () => gen.assign((0, codegen_1._)`${names_1.default.vErrors}.length`, errsCount), () => gen.assign(names_1.default.vErrors, null)));
    }
    exports.resetErrorsCount = resetErrorsCount;
    function extendErrors({ gen, keyword, schemaValue, data, errsCount, it }) {
      if (errsCount === void 0)
        throw new Error("ajv implementation error");
      const err = gen.name("err");
      gen.forRange("i", errsCount, names_1.default.errors, (i) => {
        gen.const(err, (0, codegen_1._)`${names_1.default.vErrors}[${i}]`);
        gen.if((0, codegen_1._)`${err}.instancePath === undefined`, () => gen.assign((0, codegen_1._)`${err}.instancePath`, (0, codegen_1.strConcat)(names_1.default.instancePath, it.errorPath)));
        gen.assign((0, codegen_1._)`${err}.schemaPath`, (0, codegen_1.str)`${it.errSchemaPath}/${keyword}`);
        if (it.opts.verbose) {
          gen.assign((0, codegen_1._)`${err}.schema`, schemaValue);
          gen.assign((0, codegen_1._)`${err}.data`, data);
        }
      });
    }
    exports.extendErrors = extendErrors;
    function addError(gen, errObj) {
      const err = gen.const("err", errObj);
      gen.if((0, codegen_1._)`${names_1.default.vErrors} === null`, () => gen.assign(names_1.default.vErrors, (0, codegen_1._)`[${err}]`), (0, codegen_1._)`${names_1.default.vErrors}.push(${err})`);
      gen.code((0, codegen_1._)`${names_1.default.errors}++`);
    }
    function returnErrors(it, errs) {
      const { gen, validateName, schemaEnv } = it;
      if (schemaEnv.$async) {
        gen.throw((0, codegen_1._)`new ${it.ValidationError}(${errs})`);
      } else {
        gen.assign((0, codegen_1._)`${validateName}.errors`, errs);
        gen.return(false);
      }
    }
    var E = {
      keyword: new codegen_1.Name("keyword"),
      schemaPath: new codegen_1.Name("schemaPath"),
      // also used in JTD errors
      params: new codegen_1.Name("params"),
      propertyName: new codegen_1.Name("propertyName"),
      message: new codegen_1.Name("message"),
      schema: new codegen_1.Name("schema"),
      parentSchema: new codegen_1.Name("parentSchema")
    };
    function errorObjectCode(cxt, error2, errorPaths) {
      const { createErrors } = cxt.it;
      if (createErrors === false)
        return (0, codegen_1._)`{}`;
      return errorObject(cxt, error2, errorPaths);
    }
    function errorObject(cxt, error2, errorPaths = {}) {
      const { gen, it } = cxt;
      const keyValues = [
        errorInstancePath(it, errorPaths),
        errorSchemaPath(cxt, errorPaths)
      ];
      extraErrorProps(cxt, error2, keyValues);
      return gen.object(...keyValues);
    }
    function errorInstancePath({ errorPath }, { instancePath }) {
      const instPath = instancePath ? (0, codegen_1.str)`${errorPath}${(0, util_1.getErrorPath)(instancePath, util_1.Type.Str)}` : errorPath;
      return [names_1.default.instancePath, (0, codegen_1.strConcat)(names_1.default.instancePath, instPath)];
    }
    function errorSchemaPath({ keyword, it: { errSchemaPath } }, { schemaPath, parentSchema }) {
      let schPath = parentSchema ? errSchemaPath : (0, codegen_1.str)`${errSchemaPath}/${keyword}`;
      if (schemaPath) {
        schPath = (0, codegen_1.str)`${schPath}${(0, util_1.getErrorPath)(schemaPath, util_1.Type.Str)}`;
      }
      return [E.schemaPath, schPath];
    }
    function extraErrorProps(cxt, { params, message }, keyValues) {
      const { keyword, data, schemaValue, it } = cxt;
      const { opts, propertyName, topSchemaRef, schemaPath } = it;
      keyValues.push([E.keyword, keyword], [E.params, typeof params == "function" ? params(cxt) : params || (0, codegen_1._)`{}`]);
      if (opts.messages) {
        keyValues.push([E.message, typeof message == "function" ? message(cxt) : message]);
      }
      if (opts.verbose) {
        keyValues.push([E.schema, schemaValue], [E.parentSchema, (0, codegen_1._)`${topSchemaRef}${schemaPath}`], [names_1.default.data, data]);
      }
      if (propertyName)
        keyValues.push([E.propertyName, propertyName]);
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/boolSchema.js
var require_boolSchema = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/boolSchema.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.boolOrEmptySchema = exports.topBoolOrEmptySchema = void 0;
    var errors_1 = require_errors();
    var codegen_1 = require_codegen();
    var names_1 = require_names();
    var boolError = {
      message: "boolean schema is false"
    };
    function topBoolOrEmptySchema(it) {
      const { gen, schema, validateName } = it;
      if (schema === false) {
        falseSchemaError(it, false);
      } else if (typeof schema == "object" && schema.$async === true) {
        gen.return(names_1.default.data);
      } else {
        gen.assign((0, codegen_1._)`${validateName}.errors`, null);
        gen.return(true);
      }
    }
    exports.topBoolOrEmptySchema = topBoolOrEmptySchema;
    function boolOrEmptySchema(it, valid) {
      const { gen, schema } = it;
      if (schema === false) {
        gen.var(valid, false);
        falseSchemaError(it);
      } else {
        gen.var(valid, true);
      }
    }
    exports.boolOrEmptySchema = boolOrEmptySchema;
    function falseSchemaError(it, overrideAllErrors) {
      const { gen, data } = it;
      const cxt = {
        gen,
        keyword: "false schema",
        data,
        schema: false,
        schemaCode: false,
        schemaValue: false,
        params: {},
        it
      };
      (0, errors_1.reportError)(cxt, boolError, void 0, overrideAllErrors);
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/rules.js
var require_rules = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/rules.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.getRules = exports.isJSONType = void 0;
    var _jsonTypes = ["string", "number", "integer", "boolean", "null", "object", "array"];
    var jsonTypes = new Set(_jsonTypes);
    function isJSONType(x) {
      return typeof x == "string" && jsonTypes.has(x);
    }
    exports.isJSONType = isJSONType;
    function getRules() {
      const groups = {
        number: { type: "number", rules: [] },
        string: { type: "string", rules: [] },
        array: { type: "array", rules: [] },
        object: { type: "object", rules: [] }
      };
      return {
        types: { ...groups, integer: true, boolean: true, null: true },
        rules: [{ rules: [] }, groups.number, groups.string, groups.array, groups.object],
        post: { rules: [] },
        all: {},
        keywords: {}
      };
    }
    exports.getRules = getRules;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/applicability.js
var require_applicability = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/applicability.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.shouldUseRule = exports.shouldUseGroup = exports.schemaHasRulesForType = void 0;
    function schemaHasRulesForType({ schema, self }, type) {
      const group = self.RULES.types[type];
      return group && group !== true && shouldUseGroup(schema, group);
    }
    exports.schemaHasRulesForType = schemaHasRulesForType;
    function shouldUseGroup(schema, group) {
      return group.rules.some((rule) => shouldUseRule(schema, rule));
    }
    exports.shouldUseGroup = shouldUseGroup;
    function shouldUseRule(schema, rule) {
      var _a2;
      return schema[rule.keyword] !== void 0 || ((_a2 = rule.definition.implements) === null || _a2 === void 0 ? void 0 : _a2.some((kwd) => schema[kwd] !== void 0));
    }
    exports.shouldUseRule = shouldUseRule;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/dataType.js
var require_dataType = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/dataType.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.reportTypeError = exports.checkDataTypes = exports.checkDataType = exports.coerceAndCheckDataType = exports.getJSONTypes = exports.getSchemaTypes = exports.DataType = void 0;
    var rules_1 = require_rules();
    var applicability_1 = require_applicability();
    var errors_1 = require_errors();
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var DataType;
    (function(DataType2) {
      DataType2[DataType2["Correct"] = 0] = "Correct";
      DataType2[DataType2["Wrong"] = 1] = "Wrong";
    })(DataType || (exports.DataType = DataType = {}));
    function getSchemaTypes(schema) {
      const types = getJSONTypes(schema.type);
      const hasNull = types.includes("null");
      if (hasNull) {
        if (schema.nullable === false)
          throw new Error("type: null contradicts nullable: false");
      } else {
        if (!types.length && schema.nullable !== void 0) {
          throw new Error('"nullable" cannot be used without "type"');
        }
        if (schema.nullable === true)
          types.push("null");
      }
      return types;
    }
    exports.getSchemaTypes = getSchemaTypes;
    function getJSONTypes(ts) {
      const types = Array.isArray(ts) ? ts : ts ? [ts] : [];
      if (types.every(rules_1.isJSONType))
        return types;
      throw new Error("type must be JSONType or JSONType[]: " + types.join(","));
    }
    exports.getJSONTypes = getJSONTypes;
    function coerceAndCheckDataType(it, types) {
      const { gen, data, opts } = it;
      const coerceTo = coerceToTypes(types, opts.coerceTypes);
      const checkTypes = types.length > 0 && !(coerceTo.length === 0 && types.length === 1 && (0, applicability_1.schemaHasRulesForType)(it, types[0]));
      if (checkTypes) {
        const wrongType = checkDataTypes(types, data, opts.strictNumbers, DataType.Wrong);
        gen.if(wrongType, () => {
          if (coerceTo.length)
            coerceData(it, types, coerceTo);
          else
            reportTypeError(it);
        });
      }
      return checkTypes;
    }
    exports.coerceAndCheckDataType = coerceAndCheckDataType;
    var COERCIBLE = /* @__PURE__ */ new Set(["string", "number", "integer", "boolean", "null"]);
    function coerceToTypes(types, coerceTypes) {
      return coerceTypes ? types.filter((t) => COERCIBLE.has(t) || coerceTypes === "array" && t === "array") : [];
    }
    function coerceData(it, types, coerceTo) {
      const { gen, data, opts } = it;
      const dataType = gen.let("dataType", (0, codegen_1._)`typeof ${data}`);
      const coerced = gen.let("coerced", (0, codegen_1._)`undefined`);
      if (opts.coerceTypes === "array") {
        gen.if((0, codegen_1._)`${dataType} == 'object' && Array.isArray(${data}) && ${data}.length == 1`, () => gen.assign(data, (0, codegen_1._)`${data}[0]`).assign(dataType, (0, codegen_1._)`typeof ${data}`).if(checkDataTypes(types, data, opts.strictNumbers), () => gen.assign(coerced, data)));
      }
      gen.if((0, codegen_1._)`${coerced} !== undefined`);
      for (const t of coerceTo) {
        if (COERCIBLE.has(t) || t === "array" && opts.coerceTypes === "array") {
          coerceSpecificType(t);
        }
      }
      gen.else();
      reportTypeError(it);
      gen.endIf();
      gen.if((0, codegen_1._)`${coerced} !== undefined`, () => {
        gen.assign(data, coerced);
        assignParentData(it, coerced);
      });
      function coerceSpecificType(t) {
        switch (t) {
          case "string":
            gen.elseIf((0, codegen_1._)`${dataType} == "number" || ${dataType} == "boolean"`).assign(coerced, (0, codegen_1._)`"" + ${data}`).elseIf((0, codegen_1._)`${data} === null`).assign(coerced, (0, codegen_1._)`""`);
            return;
          case "number":
            gen.elseIf((0, codegen_1._)`${dataType} == "boolean" || ${data} === null
              || (${dataType} == "string" && ${data} && ${data} == +${data})`).assign(coerced, (0, codegen_1._)`+${data}`);
            return;
          case "integer":
            gen.elseIf((0, codegen_1._)`${dataType} === "boolean" || ${data} === null
              || (${dataType} === "string" && ${data} && ${data} == +${data} && !(${data} % 1))`).assign(coerced, (0, codegen_1._)`+${data}`);
            return;
          case "boolean":
            gen.elseIf((0, codegen_1._)`${data} === "false" || ${data} === 0 || ${data} === null`).assign(coerced, false).elseIf((0, codegen_1._)`${data} === "true" || ${data} === 1`).assign(coerced, true);
            return;
          case "null":
            gen.elseIf((0, codegen_1._)`${data} === "" || ${data} === 0 || ${data} === false`);
            gen.assign(coerced, null);
            return;
          case "array":
            gen.elseIf((0, codegen_1._)`${dataType} === "string" || ${dataType} === "number"
              || ${dataType} === "boolean" || ${data} === null`).assign(coerced, (0, codegen_1._)`[${data}]`);
        }
      }
    }
    function assignParentData({ gen, parentData, parentDataProperty }, expr) {
      gen.if((0, codegen_1._)`${parentData} !== undefined`, () => gen.assign((0, codegen_1._)`${parentData}[${parentDataProperty}]`, expr));
    }
    function checkDataType(dataType, data, strictNums, correct = DataType.Correct) {
      const EQ = correct === DataType.Correct ? codegen_1.operators.EQ : codegen_1.operators.NEQ;
      let cond;
      switch (dataType) {
        case "null":
          return (0, codegen_1._)`${data} ${EQ} null`;
        case "array":
          cond = (0, codegen_1._)`Array.isArray(${data})`;
          break;
        case "object":
          cond = (0, codegen_1._)`${data} && typeof ${data} == "object" && !Array.isArray(${data})`;
          break;
        case "integer":
          cond = numCond((0, codegen_1._)`!(${data} % 1) && !isNaN(${data})`);
          break;
        case "number":
          cond = numCond();
          break;
        default:
          return (0, codegen_1._)`typeof ${data} ${EQ} ${dataType}`;
      }
      return correct === DataType.Correct ? cond : (0, codegen_1.not)(cond);
      function numCond(_cond = codegen_1.nil) {
        return (0, codegen_1.and)((0, codegen_1._)`typeof ${data} == "number"`, _cond, strictNums ? (0, codegen_1._)`isFinite(${data})` : codegen_1.nil);
      }
    }
    exports.checkDataType = checkDataType;
    function checkDataTypes(dataTypes, data, strictNums, correct) {
      if (dataTypes.length === 1) {
        return checkDataType(dataTypes[0], data, strictNums, correct);
      }
      let cond;
      const types = (0, util_1.toHash)(dataTypes);
      if (types.array && types.object) {
        const notObj = (0, codegen_1._)`typeof ${data} != "object"`;
        cond = types.null ? notObj : (0, codegen_1._)`!${data} || ${notObj}`;
        delete types.null;
        delete types.array;
        delete types.object;
      } else {
        cond = codegen_1.nil;
      }
      if (types.number)
        delete types.integer;
      for (const t in types)
        cond = (0, codegen_1.and)(cond, checkDataType(t, data, strictNums, correct));
      return cond;
    }
    exports.checkDataTypes = checkDataTypes;
    var typeError = {
      message: ({ schema }) => `must be ${schema}`,
      params: ({ schema, schemaValue }) => typeof schema == "string" ? (0, codegen_1._)`{type: ${schema}}` : (0, codegen_1._)`{type: ${schemaValue}}`
    };
    function reportTypeError(it) {
      const cxt = getTypeErrorContext(it);
      (0, errors_1.reportError)(cxt, typeError);
    }
    exports.reportTypeError = reportTypeError;
    function getTypeErrorContext(it) {
      const { gen, data, schema } = it;
      const schemaCode = (0, util_1.schemaRefOrVal)(it, schema, "type");
      return {
        gen,
        keyword: "type",
        data,
        schema: schema.type,
        schemaCode,
        schemaValue: schemaCode,
        parentSchema: schema,
        params: {},
        it
      };
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/defaults.js
var require_defaults = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/defaults.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.assignDefaults = void 0;
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    function assignDefaults(it, ty) {
      const { properties, items } = it.schema;
      if (ty === "object" && properties) {
        for (const key in properties) {
          assignDefault(it, key, properties[key].default);
        }
      } else if (ty === "array" && Array.isArray(items)) {
        items.forEach((sch, i) => assignDefault(it, i, sch.default));
      }
    }
    exports.assignDefaults = assignDefaults;
    function assignDefault(it, prop, defaultValue) {
      const { gen, compositeRule, data, opts } = it;
      if (defaultValue === void 0)
        return;
      const childData = (0, codegen_1._)`${data}${(0, codegen_1.getProperty)(prop)}`;
      if (compositeRule) {
        (0, util_1.checkStrictMode)(it, `default is ignored for: ${childData}`);
        return;
      }
      let condition = (0, codegen_1._)`${childData} === undefined`;
      if (opts.useDefaults === "empty") {
        condition = (0, codegen_1._)`${condition} || ${childData} === null || ${childData} === ""`;
      }
      gen.if(condition, (0, codegen_1._)`${childData} = ${(0, codegen_1.stringify)(defaultValue)}`);
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/code.js
var require_code2 = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/code.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.validateUnion = exports.validateArray = exports.usePattern = exports.callValidateCode = exports.schemaProperties = exports.allSchemaProperties = exports.noPropertyInData = exports.propertyInData = exports.isOwnProperty = exports.hasPropFunc = exports.reportMissingProp = exports.checkMissingProp = exports.checkReportMissingProp = void 0;
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var names_1 = require_names();
    var util_2 = require_util();
    function checkReportMissingProp(cxt, prop) {
      const { gen, data, it } = cxt;
      gen.if(noPropertyInData(gen, data, prop, it.opts.ownProperties), () => {
        cxt.setParams({ missingProperty: (0, codegen_1._)`${prop}` }, true);
        cxt.error();
      });
    }
    exports.checkReportMissingProp = checkReportMissingProp;
    function checkMissingProp({ gen, data, it: { opts } }, properties, missing) {
      return (0, codegen_1.or)(...properties.map((prop) => (0, codegen_1.and)(noPropertyInData(gen, data, prop, opts.ownProperties), (0, codegen_1._)`${missing} = ${prop}`)));
    }
    exports.checkMissingProp = checkMissingProp;
    function reportMissingProp(cxt, missing) {
      cxt.setParams({ missingProperty: missing }, true);
      cxt.error();
    }
    exports.reportMissingProp = reportMissingProp;
    function hasPropFunc(gen) {
      return gen.scopeValue("func", {
        // eslint-disable-next-line @typescript-eslint/unbound-method
        ref: Object.prototype.hasOwnProperty,
        code: (0, codegen_1._)`Object.prototype.hasOwnProperty`
      });
    }
    exports.hasPropFunc = hasPropFunc;
    function isOwnProperty(gen, data, property) {
      return (0, codegen_1._)`${hasPropFunc(gen)}.call(${data}, ${property})`;
    }
    exports.isOwnProperty = isOwnProperty;
    function propertyInData(gen, data, property, ownProperties) {
      const cond = (0, codegen_1._)`${data}${(0, codegen_1.getProperty)(property)} !== undefined`;
      return ownProperties ? (0, codegen_1._)`${cond} && ${isOwnProperty(gen, data, property)}` : cond;
    }
    exports.propertyInData = propertyInData;
    function noPropertyInData(gen, data, property, ownProperties) {
      const cond = (0, codegen_1._)`${data}${(0, codegen_1.getProperty)(property)} === undefined`;
      return ownProperties ? (0, codegen_1.or)(cond, (0, codegen_1.not)(isOwnProperty(gen, data, property))) : cond;
    }
    exports.noPropertyInData = noPropertyInData;
    function allSchemaProperties(schemaMap) {
      return schemaMap ? Object.keys(schemaMap).filter((p) => p !== "__proto__") : [];
    }
    exports.allSchemaProperties = allSchemaProperties;
    function schemaProperties(it, schemaMap) {
      return allSchemaProperties(schemaMap).filter((p) => !(0, util_1.alwaysValidSchema)(it, schemaMap[p]));
    }
    exports.schemaProperties = schemaProperties;
    function callValidateCode({ schemaCode, data, it: { gen, topSchemaRef, schemaPath, errorPath }, it }, func, context, passSchema) {
      const dataAndSchema = passSchema ? (0, codegen_1._)`${schemaCode}, ${data}, ${topSchemaRef}${schemaPath}` : data;
      const valCxt = [
        [names_1.default.instancePath, (0, codegen_1.strConcat)(names_1.default.instancePath, errorPath)],
        [names_1.default.parentData, it.parentData],
        [names_1.default.parentDataProperty, it.parentDataProperty],
        [names_1.default.rootData, names_1.default.rootData]
      ];
      if (it.opts.dynamicRef)
        valCxt.push([names_1.default.dynamicAnchors, names_1.default.dynamicAnchors]);
      const args = (0, codegen_1._)`${dataAndSchema}, ${gen.object(...valCxt)}`;
      return context !== codegen_1.nil ? (0, codegen_1._)`${func}.call(${context}, ${args})` : (0, codegen_1._)`${func}(${args})`;
    }
    exports.callValidateCode = callValidateCode;
    var newRegExp = (0, codegen_1._)`new RegExp`;
    function usePattern({ gen, it: { opts } }, pattern) {
      const u = opts.unicodeRegExp ? "u" : "";
      const { regExp } = opts.code;
      const rx = regExp(pattern, u);
      return gen.scopeValue("pattern", {
        key: rx.toString(),
        ref: rx,
        code: (0, codegen_1._)`${regExp.code === "new RegExp" ? newRegExp : (0, util_2.useFunc)(gen, regExp)}(${pattern}, ${u})`
      });
    }
    exports.usePattern = usePattern;
    function validateArray(cxt) {
      const { gen, data, keyword, it } = cxt;
      const valid = gen.name("valid");
      if (it.allErrors) {
        const validArr = gen.let("valid", true);
        validateItems(() => gen.assign(validArr, false));
        return validArr;
      }
      gen.var(valid, true);
      validateItems(() => gen.break());
      return valid;
      function validateItems(notValid) {
        const len = gen.const("len", (0, codegen_1._)`${data}.length`);
        gen.forRange("i", 0, len, (i) => {
          cxt.subschema({
            keyword,
            dataProp: i,
            dataPropType: util_1.Type.Num
          }, valid);
          gen.if((0, codegen_1.not)(valid), notValid);
        });
      }
    }
    exports.validateArray = validateArray;
    function validateUnion(cxt) {
      const { gen, schema, keyword, it } = cxt;
      if (!Array.isArray(schema))
        throw new Error("ajv implementation error");
      const alwaysValid = schema.some((sch) => (0, util_1.alwaysValidSchema)(it, sch));
      if (alwaysValid && !it.opts.unevaluated)
        return;
      const valid = gen.let("valid", false);
      const schValid = gen.name("_valid");
      gen.block(() => schema.forEach((_sch, i) => {
        const schCxt = cxt.subschema({
          keyword,
          schemaProp: i,
          compositeRule: true
        }, schValid);
        gen.assign(valid, (0, codegen_1._)`${valid} || ${schValid}`);
        const merged = cxt.mergeValidEvaluated(schCxt, schValid);
        if (!merged)
          gen.if((0, codegen_1.not)(valid));
      }));
      cxt.result(valid, () => cxt.reset(), () => cxt.error(true));
    }
    exports.validateUnion = validateUnion;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/keyword.js
var require_keyword = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/keyword.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.validateKeywordUsage = exports.validSchemaType = exports.funcKeywordCode = exports.macroKeywordCode = void 0;
    var codegen_1 = require_codegen();
    var names_1 = require_names();
    var code_1 = require_code2();
    var errors_1 = require_errors();
    function macroKeywordCode(cxt, def) {
      const { gen, keyword, schema, parentSchema, it } = cxt;
      const macroSchema = def.macro.call(it.self, schema, parentSchema, it);
      const schemaRef = useKeyword(gen, keyword, macroSchema);
      if (it.opts.validateSchema !== false)
        it.self.validateSchema(macroSchema, true);
      const valid = gen.name("valid");
      cxt.subschema({
        schema: macroSchema,
        schemaPath: codegen_1.nil,
        errSchemaPath: `${it.errSchemaPath}/${keyword}`,
        topSchemaRef: schemaRef,
        compositeRule: true
      }, valid);
      cxt.pass(valid, () => cxt.error(true));
    }
    exports.macroKeywordCode = macroKeywordCode;
    function funcKeywordCode(cxt, def) {
      var _a2;
      const { gen, keyword, schema, parentSchema, $data, it } = cxt;
      checkAsyncKeyword(it, def);
      const validate = !$data && def.compile ? def.compile.call(it.self, schema, parentSchema, it) : def.validate;
      const validateRef = useKeyword(gen, keyword, validate);
      const valid = gen.let("valid");
      cxt.block$data(valid, validateKeyword);
      cxt.ok((_a2 = def.valid) !== null && _a2 !== void 0 ? _a2 : valid);
      function validateKeyword() {
        if (def.errors === false) {
          assignValid();
          if (def.modifying)
            modifyData(cxt);
          reportErrs(() => cxt.error());
        } else {
          const ruleErrs = def.async ? validateAsync() : validateSync();
          if (def.modifying)
            modifyData(cxt);
          reportErrs(() => addErrs(cxt, ruleErrs));
        }
      }
      function validateAsync() {
        const ruleErrs = gen.let("ruleErrs", null);
        gen.try(() => assignValid((0, codegen_1._)`await `), (e) => gen.assign(valid, false).if((0, codegen_1._)`${e} instanceof ${it.ValidationError}`, () => gen.assign(ruleErrs, (0, codegen_1._)`${e}.errors`), () => gen.throw(e)));
        return ruleErrs;
      }
      function validateSync() {
        const validateErrs = (0, codegen_1._)`${validateRef}.errors`;
        gen.assign(validateErrs, null);
        assignValid(codegen_1.nil);
        return validateErrs;
      }
      function assignValid(_await = def.async ? (0, codegen_1._)`await ` : codegen_1.nil) {
        const passCxt = it.opts.passContext ? names_1.default.this : names_1.default.self;
        const passSchema = !("compile" in def && !$data || def.schema === false);
        gen.assign(valid, (0, codegen_1._)`${_await}${(0, code_1.callValidateCode)(cxt, validateRef, passCxt, passSchema)}`, def.modifying);
      }
      function reportErrs(errors) {
        var _a3;
        gen.if((0, codegen_1.not)((_a3 = def.valid) !== null && _a3 !== void 0 ? _a3 : valid), errors);
      }
    }
    exports.funcKeywordCode = funcKeywordCode;
    function modifyData(cxt) {
      const { gen, data, it } = cxt;
      gen.if(it.parentData, () => gen.assign(data, (0, codegen_1._)`${it.parentData}[${it.parentDataProperty}]`));
    }
    function addErrs(cxt, errs) {
      const { gen } = cxt;
      gen.if((0, codegen_1._)`Array.isArray(${errs})`, () => {
        gen.assign(names_1.default.vErrors, (0, codegen_1._)`${names_1.default.vErrors} === null ? ${errs} : ${names_1.default.vErrors}.concat(${errs})`).assign(names_1.default.errors, (0, codegen_1._)`${names_1.default.vErrors}.length`);
        (0, errors_1.extendErrors)(cxt);
      }, () => cxt.error());
    }
    function checkAsyncKeyword({ schemaEnv }, def) {
      if (def.async && !schemaEnv.$async)
        throw new Error("async keyword in sync schema");
    }
    function useKeyword(gen, keyword, result) {
      if (result === void 0)
        throw new Error(`keyword "${keyword}" failed to compile`);
      return gen.scopeValue("keyword", typeof result == "function" ? { ref: result } : { ref: result, code: (0, codegen_1.stringify)(result) });
    }
    function validSchemaType(schema, schemaType, allowUndefined = false) {
      return !schemaType.length || schemaType.some((st) => st === "array" ? Array.isArray(schema) : st === "object" ? schema && typeof schema == "object" && !Array.isArray(schema) : typeof schema == st || allowUndefined && typeof schema == "undefined");
    }
    exports.validSchemaType = validSchemaType;
    function validateKeywordUsage({ schema, opts, self, errSchemaPath }, def, keyword) {
      if (Array.isArray(def.keyword) ? !def.keyword.includes(keyword) : def.keyword !== keyword) {
        throw new Error("ajv implementation error");
      }
      const deps = def.dependencies;
      if (deps === null || deps === void 0 ? void 0 : deps.some((kwd) => !Object.prototype.hasOwnProperty.call(schema, kwd))) {
        throw new Error(`parent schema must have dependencies of ${keyword}: ${deps.join(",")}`);
      }
      if (def.validateSchema) {
        const valid = def.validateSchema(schema[keyword]);
        if (!valid) {
          const msg = `keyword "${keyword}" value is invalid at path "${errSchemaPath}": ` + self.errorsText(def.validateSchema.errors);
          if (opts.validateSchema === "log")
            self.logger.error(msg);
          else
            throw new Error(msg);
        }
      }
    }
    exports.validateKeywordUsage = validateKeywordUsage;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/subschema.js
var require_subschema = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/subschema.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.extendSubschemaMode = exports.extendSubschemaData = exports.getSubschema = void 0;
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    function getSubschema(it, { keyword, schemaProp, schema, schemaPath, errSchemaPath, topSchemaRef }) {
      if (keyword !== void 0 && schema !== void 0) {
        throw new Error('both "keyword" and "schema" passed, only one allowed');
      }
      if (keyword !== void 0) {
        const sch = it.schema[keyword];
        return schemaProp === void 0 ? {
          schema: sch,
          schemaPath: (0, codegen_1._)`${it.schemaPath}${(0, codegen_1.getProperty)(keyword)}`,
          errSchemaPath: `${it.errSchemaPath}/${keyword}`
        } : {
          schema: sch[schemaProp],
          schemaPath: (0, codegen_1._)`${it.schemaPath}${(0, codegen_1.getProperty)(keyword)}${(0, codegen_1.getProperty)(schemaProp)}`,
          errSchemaPath: `${it.errSchemaPath}/${keyword}/${(0, util_1.escapeFragment)(schemaProp)}`
        };
      }
      if (schema !== void 0) {
        if (schemaPath === void 0 || errSchemaPath === void 0 || topSchemaRef === void 0) {
          throw new Error('"schemaPath", "errSchemaPath" and "topSchemaRef" are required with "schema"');
        }
        return {
          schema,
          schemaPath,
          topSchemaRef,
          errSchemaPath
        };
      }
      throw new Error('either "keyword" or "schema" must be passed');
    }
    exports.getSubschema = getSubschema;
    function extendSubschemaData(subschema, it, { dataProp, dataPropType: dpType, data, dataTypes, propertyName }) {
      if (data !== void 0 && dataProp !== void 0) {
        throw new Error('both "data" and "dataProp" passed, only one allowed');
      }
      const { gen } = it;
      if (dataProp !== void 0) {
        const { errorPath, dataPathArr, opts } = it;
        const nextData = gen.let("data", (0, codegen_1._)`${it.data}${(0, codegen_1.getProperty)(dataProp)}`, true);
        dataContextProps(nextData);
        subschema.errorPath = (0, codegen_1.str)`${errorPath}${(0, util_1.getErrorPath)(dataProp, dpType, opts.jsPropertySyntax)}`;
        subschema.parentDataProperty = (0, codegen_1._)`${dataProp}`;
        subschema.dataPathArr = [...dataPathArr, subschema.parentDataProperty];
      }
      if (data !== void 0) {
        const nextData = data instanceof codegen_1.Name ? data : gen.let("data", data, true);
        dataContextProps(nextData);
        if (propertyName !== void 0)
          subschema.propertyName = propertyName;
      }
      if (dataTypes)
        subschema.dataTypes = dataTypes;
      function dataContextProps(_nextData) {
        subschema.data = _nextData;
        subschema.dataLevel = it.dataLevel + 1;
        subschema.dataTypes = [];
        it.definedProperties = /* @__PURE__ */ new Set();
        subschema.parentData = it.data;
        subschema.dataNames = [...it.dataNames, _nextData];
      }
    }
    exports.extendSubschemaData = extendSubschemaData;
    function extendSubschemaMode(subschema, { jtdDiscriminator, jtdMetadata, compositeRule, createErrors, allErrors }) {
      if (compositeRule !== void 0)
        subschema.compositeRule = compositeRule;
      if (createErrors !== void 0)
        subschema.createErrors = createErrors;
      if (allErrors !== void 0)
        subschema.allErrors = allErrors;
      subschema.jtdDiscriminator = jtdDiscriminator;
      subschema.jtdMetadata = jtdMetadata;
    }
    exports.extendSubschemaMode = extendSubschemaMode;
  }
});

// node_modules/.pnpm/fast-deep-equal@3.1.3/node_modules/fast-deep-equal/index.js
var require_fast_deep_equal = __commonJS({
  "node_modules/.pnpm/fast-deep-equal@3.1.3/node_modules/fast-deep-equal/index.js"(exports, module) {
    "use strict";
    module.exports = function equal(a, b) {
      if (a === b) return true;
      if (a && b && typeof a == "object" && typeof b == "object") {
        if (a.constructor !== b.constructor) return false;
        var length, i, keys;
        if (Array.isArray(a)) {
          length = a.length;
          if (length != b.length) return false;
          for (i = length; i-- !== 0; )
            if (!equal(a[i], b[i])) return false;
          return true;
        }
        if (a.constructor === RegExp) return a.source === b.source && a.flags === b.flags;
        if (a.valueOf !== Object.prototype.valueOf) return a.valueOf() === b.valueOf();
        if (a.toString !== Object.prototype.toString) return a.toString() === b.toString();
        keys = Object.keys(a);
        length = keys.length;
        if (length !== Object.keys(b).length) return false;
        for (i = length; i-- !== 0; )
          if (!Object.prototype.hasOwnProperty.call(b, keys[i])) return false;
        for (i = length; i-- !== 0; ) {
          var key = keys[i];
          if (!equal(a[key], b[key])) return false;
        }
        return true;
      }
      return a !== a && b !== b;
    };
  }
});

// node_modules/.pnpm/json-schema-traverse@1.0.0/node_modules/json-schema-traverse/index.js
var require_json_schema_traverse = __commonJS({
  "node_modules/.pnpm/json-schema-traverse@1.0.0/node_modules/json-schema-traverse/index.js"(exports, module) {
    "use strict";
    var traverse = module.exports = function(schema, opts, cb) {
      if (typeof opts == "function") {
        cb = opts;
        opts = {};
      }
      cb = opts.cb || cb;
      var pre = typeof cb == "function" ? cb : cb.pre || function() {
      };
      var post = cb.post || function() {
      };
      _traverse(opts, pre, post, schema, "", schema);
    };
    traverse.keywords = {
      additionalItems: true,
      items: true,
      contains: true,
      additionalProperties: true,
      propertyNames: true,
      not: true,
      if: true,
      then: true,
      else: true
    };
    traverse.arrayKeywords = {
      items: true,
      allOf: true,
      anyOf: true,
      oneOf: true
    };
    traverse.propsKeywords = {
      $defs: true,
      definitions: true,
      properties: true,
      patternProperties: true,
      dependencies: true
    };
    traverse.skipKeywords = {
      default: true,
      enum: true,
      const: true,
      required: true,
      maximum: true,
      minimum: true,
      exclusiveMaximum: true,
      exclusiveMinimum: true,
      multipleOf: true,
      maxLength: true,
      minLength: true,
      pattern: true,
      format: true,
      maxItems: true,
      minItems: true,
      uniqueItems: true,
      maxProperties: true,
      minProperties: true
    };
    function _traverse(opts, pre, post, schema, jsonPtr, rootSchema, parentJsonPtr, parentKeyword, parentSchema, keyIndex) {
      if (schema && typeof schema == "object" && !Array.isArray(schema)) {
        pre(schema, jsonPtr, rootSchema, parentJsonPtr, parentKeyword, parentSchema, keyIndex);
        for (var key in schema) {
          var sch = schema[key];
          if (Array.isArray(sch)) {
            if (key in traverse.arrayKeywords) {
              for (var i = 0; i < sch.length; i++)
                _traverse(opts, pre, post, sch[i], jsonPtr + "/" + key + "/" + i, rootSchema, jsonPtr, key, schema, i);
            }
          } else if (key in traverse.propsKeywords) {
            if (sch && typeof sch == "object") {
              for (var prop in sch)
                _traverse(opts, pre, post, sch[prop], jsonPtr + "/" + key + "/" + escapeJsonPtr(prop), rootSchema, jsonPtr, key, schema, prop);
            }
          } else if (key in traverse.keywords || opts.allKeys && !(key in traverse.skipKeywords)) {
            _traverse(opts, pre, post, sch, jsonPtr + "/" + key, rootSchema, jsonPtr, key, schema);
          }
        }
        post(schema, jsonPtr, rootSchema, parentJsonPtr, parentKeyword, parentSchema, keyIndex);
      }
    }
    function escapeJsonPtr(str) {
      return str.replace(/~/g, "~0").replace(/\//g, "~1");
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/resolve.js
var require_resolve = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/resolve.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.getSchemaRefs = exports.resolveUrl = exports.normalizeId = exports._getFullPath = exports.getFullPath = exports.inlineRef = void 0;
    var util_1 = require_util();
    var equal = require_fast_deep_equal();
    var traverse = require_json_schema_traverse();
    var SIMPLE_INLINED = /* @__PURE__ */ new Set([
      "type",
      "format",
      "pattern",
      "maxLength",
      "minLength",
      "maxProperties",
      "minProperties",
      "maxItems",
      "minItems",
      "maximum",
      "minimum",
      "uniqueItems",
      "multipleOf",
      "required",
      "enum",
      "const"
    ]);
    function inlineRef(schema, limit = true) {
      if (typeof schema == "boolean")
        return true;
      if (limit === true)
        return !hasRef(schema);
      if (!limit)
        return false;
      return countKeys(schema) <= limit;
    }
    exports.inlineRef = inlineRef;
    var REF_KEYWORDS = /* @__PURE__ */ new Set([
      "$ref",
      "$recursiveRef",
      "$recursiveAnchor",
      "$dynamicRef",
      "$dynamicAnchor"
    ]);
    function hasRef(schema) {
      for (const key in schema) {
        if (REF_KEYWORDS.has(key))
          return true;
        const sch = schema[key];
        if (Array.isArray(sch) && sch.some(hasRef))
          return true;
        if (typeof sch == "object" && hasRef(sch))
          return true;
      }
      return false;
    }
    function countKeys(schema) {
      let count = 0;
      for (const key in schema) {
        if (key === "$ref")
          return Infinity;
        count++;
        if (SIMPLE_INLINED.has(key))
          continue;
        if (typeof schema[key] == "object") {
          (0, util_1.eachItem)(schema[key], (sch) => count += countKeys(sch));
        }
        if (count === Infinity)
          return Infinity;
      }
      return count;
    }
    function getFullPath(resolver, id = "", normalize) {
      if (normalize !== false)
        id = normalizeId(id);
      const p = resolver.parse(id);
      return _getFullPath(resolver, p);
    }
    exports.getFullPath = getFullPath;
    function _getFullPath(resolver, p) {
      const serialized = resolver.serialize(p);
      return serialized.split("#")[0] + "#";
    }
    exports._getFullPath = _getFullPath;
    var TRAILING_SLASH_HASH = /#\/?$/;
    function normalizeId(id) {
      return id ? id.replace(TRAILING_SLASH_HASH, "") : "";
    }
    exports.normalizeId = normalizeId;
    function resolveUrl(resolver, baseId, id) {
      id = normalizeId(id);
      return resolver.resolve(baseId, id);
    }
    exports.resolveUrl = resolveUrl;
    var ANCHOR = /^[a-z_][-a-z0-9._]*$/i;
    function getSchemaRefs(schema, baseId) {
      if (typeof schema == "boolean")
        return {};
      const { schemaId, uriResolver } = this.opts;
      const schId = normalizeId(schema[schemaId] || baseId);
      const baseIds = { "": schId };
      const pathPrefix = getFullPath(uriResolver, schId, false);
      const localRefs = {};
      const schemaRefs = /* @__PURE__ */ new Set();
      traverse(schema, { allKeys: true }, (sch, jsonPtr, _, parentJsonPtr) => {
        if (parentJsonPtr === void 0)
          return;
        const fullPath = pathPrefix + jsonPtr;
        let innerBaseId = baseIds[parentJsonPtr];
        if (typeof sch[schemaId] == "string")
          innerBaseId = addRef.call(this, sch[schemaId]);
        addAnchor.call(this, sch.$anchor);
        addAnchor.call(this, sch.$dynamicAnchor);
        baseIds[jsonPtr] = innerBaseId;
        function addRef(ref) {
          const _resolve = this.opts.uriResolver.resolve;
          ref = normalizeId(innerBaseId ? _resolve(innerBaseId, ref) : ref);
          if (schemaRefs.has(ref))
            throw ambiguos(ref);
          schemaRefs.add(ref);
          let schOrRef = this.refs[ref];
          if (typeof schOrRef == "string")
            schOrRef = this.refs[schOrRef];
          if (typeof schOrRef == "object") {
            checkAmbiguosRef(sch, schOrRef.schema, ref);
          } else if (ref !== normalizeId(fullPath)) {
            if (ref[0] === "#") {
              checkAmbiguosRef(sch, localRefs[ref], ref);
              localRefs[ref] = sch;
            } else {
              this.refs[ref] = fullPath;
            }
          }
          return ref;
        }
        function addAnchor(anchor) {
          if (typeof anchor == "string") {
            if (!ANCHOR.test(anchor))
              throw new Error(`invalid anchor "${anchor}"`);
            addRef.call(this, `#${anchor}`);
          }
        }
      });
      return localRefs;
      function checkAmbiguosRef(sch1, sch2, ref) {
        if (sch2 !== void 0 && !equal(sch1, sch2))
          throw ambiguos(ref);
      }
      function ambiguos(ref) {
        return new Error(`reference "${ref}" resolves to more than one schema`);
      }
    }
    exports.getSchemaRefs = getSchemaRefs;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/index.js
var require_validate = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/validate/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.getData = exports.KeywordCxt = exports.validateFunctionCode = void 0;
    var boolSchema_1 = require_boolSchema();
    var dataType_1 = require_dataType();
    var applicability_1 = require_applicability();
    var dataType_2 = require_dataType();
    var defaults_1 = require_defaults();
    var keyword_1 = require_keyword();
    var subschema_1 = require_subschema();
    var codegen_1 = require_codegen();
    var names_1 = require_names();
    var resolve_1 = require_resolve();
    var util_1 = require_util();
    var errors_1 = require_errors();
    function validateFunctionCode(it) {
      if (isSchemaObj(it)) {
        checkKeywords(it);
        if (schemaCxtHasRules(it)) {
          topSchemaObjCode(it);
          return;
        }
      }
      validateFunction(it, () => (0, boolSchema_1.topBoolOrEmptySchema)(it));
    }
    exports.validateFunctionCode = validateFunctionCode;
    function validateFunction({ gen, validateName, schema, schemaEnv, opts }, body) {
      if (opts.code.es5) {
        gen.func(validateName, (0, codegen_1._)`${names_1.default.data}, ${names_1.default.valCxt}`, schemaEnv.$async, () => {
          gen.code((0, codegen_1._)`"use strict"; ${funcSourceUrl(schema, opts)}`);
          destructureValCxtES5(gen, opts);
          gen.code(body);
        });
      } else {
        gen.func(validateName, (0, codegen_1._)`${names_1.default.data}, ${destructureValCxt(opts)}`, schemaEnv.$async, () => gen.code(funcSourceUrl(schema, opts)).code(body));
      }
    }
    function destructureValCxt(opts) {
      return (0, codegen_1._)`{${names_1.default.instancePath}="", ${names_1.default.parentData}, ${names_1.default.parentDataProperty}, ${names_1.default.rootData}=${names_1.default.data}${opts.dynamicRef ? (0, codegen_1._)`, ${names_1.default.dynamicAnchors}={}` : codegen_1.nil}}={}`;
    }
    function destructureValCxtES5(gen, opts) {
      gen.if(names_1.default.valCxt, () => {
        gen.var(names_1.default.instancePath, (0, codegen_1._)`${names_1.default.valCxt}.${names_1.default.instancePath}`);
        gen.var(names_1.default.parentData, (0, codegen_1._)`${names_1.default.valCxt}.${names_1.default.parentData}`);
        gen.var(names_1.default.parentDataProperty, (0, codegen_1._)`${names_1.default.valCxt}.${names_1.default.parentDataProperty}`);
        gen.var(names_1.default.rootData, (0, codegen_1._)`${names_1.default.valCxt}.${names_1.default.rootData}`);
        if (opts.dynamicRef)
          gen.var(names_1.default.dynamicAnchors, (0, codegen_1._)`${names_1.default.valCxt}.${names_1.default.dynamicAnchors}`);
      }, () => {
        gen.var(names_1.default.instancePath, (0, codegen_1._)`""`);
        gen.var(names_1.default.parentData, (0, codegen_1._)`undefined`);
        gen.var(names_1.default.parentDataProperty, (0, codegen_1._)`undefined`);
        gen.var(names_1.default.rootData, names_1.default.data);
        if (opts.dynamicRef)
          gen.var(names_1.default.dynamicAnchors, (0, codegen_1._)`{}`);
      });
    }
    function topSchemaObjCode(it) {
      const { schema, opts, gen } = it;
      validateFunction(it, () => {
        if (opts.$comment && schema.$comment)
          commentKeyword(it);
        checkNoDefault(it);
        gen.let(names_1.default.vErrors, null);
        gen.let(names_1.default.errors, 0);
        if (opts.unevaluated)
          resetEvaluated(it);
        typeAndKeywords(it);
        returnResults(it);
      });
      return;
    }
    function resetEvaluated(it) {
      const { gen, validateName } = it;
      it.evaluated = gen.const("evaluated", (0, codegen_1._)`${validateName}.evaluated`);
      gen.if((0, codegen_1._)`${it.evaluated}.dynamicProps`, () => gen.assign((0, codegen_1._)`${it.evaluated}.props`, (0, codegen_1._)`undefined`));
      gen.if((0, codegen_1._)`${it.evaluated}.dynamicItems`, () => gen.assign((0, codegen_1._)`${it.evaluated}.items`, (0, codegen_1._)`undefined`));
    }
    function funcSourceUrl(schema, opts) {
      const schId = typeof schema == "object" && schema[opts.schemaId];
      return schId && (opts.code.source || opts.code.process) ? (0, codegen_1._)`/*# sourceURL=${schId} */` : codegen_1.nil;
    }
    function subschemaCode(it, valid) {
      if (isSchemaObj(it)) {
        checkKeywords(it);
        if (schemaCxtHasRules(it)) {
          subSchemaObjCode(it, valid);
          return;
        }
      }
      (0, boolSchema_1.boolOrEmptySchema)(it, valid);
    }
    function schemaCxtHasRules({ schema, self }) {
      if (typeof schema == "boolean")
        return !schema;
      for (const key in schema)
        if (self.RULES.all[key])
          return true;
      return false;
    }
    function isSchemaObj(it) {
      return typeof it.schema != "boolean";
    }
    function subSchemaObjCode(it, valid) {
      const { schema, gen, opts } = it;
      if (opts.$comment && schema.$comment)
        commentKeyword(it);
      updateContext(it);
      checkAsyncSchema(it);
      const errsCount = gen.const("_errs", names_1.default.errors);
      typeAndKeywords(it, errsCount);
      gen.var(valid, (0, codegen_1._)`${errsCount} === ${names_1.default.errors}`);
    }
    function checkKeywords(it) {
      (0, util_1.checkUnknownRules)(it);
      checkRefsAndKeywords(it);
    }
    function typeAndKeywords(it, errsCount) {
      if (it.opts.jtd)
        return schemaKeywords(it, [], false, errsCount);
      const types = (0, dataType_1.getSchemaTypes)(it.schema);
      const checkedTypes = (0, dataType_1.coerceAndCheckDataType)(it, types);
      schemaKeywords(it, types, !checkedTypes, errsCount);
    }
    function checkRefsAndKeywords(it) {
      const { schema, errSchemaPath, opts, self } = it;
      if (schema.$ref && opts.ignoreKeywordsWithRef && (0, util_1.schemaHasRulesButRef)(schema, self.RULES)) {
        self.logger.warn(`$ref: keywords ignored in schema at path "${errSchemaPath}"`);
      }
    }
    function checkNoDefault(it) {
      const { schema, opts } = it;
      if (schema.default !== void 0 && opts.useDefaults && opts.strictSchema) {
        (0, util_1.checkStrictMode)(it, "default is ignored in the schema root");
      }
    }
    function updateContext(it) {
      const schId = it.schema[it.opts.schemaId];
      if (schId)
        it.baseId = (0, resolve_1.resolveUrl)(it.opts.uriResolver, it.baseId, schId);
    }
    function checkAsyncSchema(it) {
      if (it.schema.$async && !it.schemaEnv.$async)
        throw new Error("async schema in sync schema");
    }
    function commentKeyword({ gen, schemaEnv, schema, errSchemaPath, opts }) {
      const msg = schema.$comment;
      if (opts.$comment === true) {
        gen.code((0, codegen_1._)`${names_1.default.self}.logger.log(${msg})`);
      } else if (typeof opts.$comment == "function") {
        const schemaPath = (0, codegen_1.str)`${errSchemaPath}/$comment`;
        const rootName = gen.scopeValue("root", { ref: schemaEnv.root });
        gen.code((0, codegen_1._)`${names_1.default.self}.opts.$comment(${msg}, ${schemaPath}, ${rootName}.schema)`);
      }
    }
    function returnResults(it) {
      const { gen, schemaEnv, validateName, ValidationError, opts } = it;
      if (schemaEnv.$async) {
        gen.if((0, codegen_1._)`${names_1.default.errors} === 0`, () => gen.return(names_1.default.data), () => gen.throw((0, codegen_1._)`new ${ValidationError}(${names_1.default.vErrors})`));
      } else {
        gen.assign((0, codegen_1._)`${validateName}.errors`, names_1.default.vErrors);
        if (opts.unevaluated)
          assignEvaluated(it);
        gen.return((0, codegen_1._)`${names_1.default.errors} === 0`);
      }
    }
    function assignEvaluated({ gen, evaluated, props, items }) {
      if (props instanceof codegen_1.Name)
        gen.assign((0, codegen_1._)`${evaluated}.props`, props);
      if (items instanceof codegen_1.Name)
        gen.assign((0, codegen_1._)`${evaluated}.items`, items);
    }
    function schemaKeywords(it, types, typeErrors, errsCount) {
      const { gen, schema, data, allErrors, opts, self } = it;
      const { RULES } = self;
      if (schema.$ref && (opts.ignoreKeywordsWithRef || !(0, util_1.schemaHasRulesButRef)(schema, RULES))) {
        gen.block(() => keywordCode(it, "$ref", RULES.all.$ref.definition));
        return;
      }
      if (!opts.jtd)
        checkStrictTypes(it, types);
      gen.block(() => {
        for (const group of RULES.rules)
          groupKeywords(group);
        groupKeywords(RULES.post);
      });
      function groupKeywords(group) {
        if (!(0, applicability_1.shouldUseGroup)(schema, group))
          return;
        if (group.type) {
          gen.if((0, dataType_2.checkDataType)(group.type, data, opts.strictNumbers));
          iterateKeywords(it, group);
          if (types.length === 1 && types[0] === group.type && typeErrors) {
            gen.else();
            (0, dataType_2.reportTypeError)(it);
          }
          gen.endIf();
        } else {
          iterateKeywords(it, group);
        }
        if (!allErrors)
          gen.if((0, codegen_1._)`${names_1.default.errors} === ${errsCount || 0}`);
      }
    }
    function iterateKeywords(it, group) {
      const { gen, schema, opts: { useDefaults } } = it;
      if (useDefaults)
        (0, defaults_1.assignDefaults)(it, group.type);
      gen.block(() => {
        for (const rule of group.rules) {
          if ((0, applicability_1.shouldUseRule)(schema, rule)) {
            keywordCode(it, rule.keyword, rule.definition, group.type);
          }
        }
      });
    }
    function checkStrictTypes(it, types) {
      if (it.schemaEnv.meta || !it.opts.strictTypes)
        return;
      checkContextTypes(it, types);
      if (!it.opts.allowUnionTypes)
        checkMultipleTypes(it, types);
      checkKeywordTypes(it, it.dataTypes);
    }
    function checkContextTypes(it, types) {
      if (!types.length)
        return;
      if (!it.dataTypes.length) {
        it.dataTypes = types;
        return;
      }
      types.forEach((t) => {
        if (!includesType(it.dataTypes, t)) {
          strictTypesError(it, `type "${t}" not allowed by context "${it.dataTypes.join(",")}"`);
        }
      });
      narrowSchemaTypes(it, types);
    }
    function checkMultipleTypes(it, ts) {
      if (ts.length > 1 && !(ts.length === 2 && ts.includes("null"))) {
        strictTypesError(it, "use allowUnionTypes to allow union type keyword");
      }
    }
    function checkKeywordTypes(it, ts) {
      const rules = it.self.RULES.all;
      for (const keyword in rules) {
        const rule = rules[keyword];
        if (typeof rule == "object" && (0, applicability_1.shouldUseRule)(it.schema, rule)) {
          const { type } = rule.definition;
          if (type.length && !type.some((t) => hasApplicableType(ts, t))) {
            strictTypesError(it, `missing type "${type.join(",")}" for keyword "${keyword}"`);
          }
        }
      }
    }
    function hasApplicableType(schTs, kwdT) {
      return schTs.includes(kwdT) || kwdT === "number" && schTs.includes("integer");
    }
    function includesType(ts, t) {
      return ts.includes(t) || t === "integer" && ts.includes("number");
    }
    function narrowSchemaTypes(it, withTypes) {
      const ts = [];
      for (const t of it.dataTypes) {
        if (includesType(withTypes, t))
          ts.push(t);
        else if (withTypes.includes("integer") && t === "number")
          ts.push("integer");
      }
      it.dataTypes = ts;
    }
    function strictTypesError(it, msg) {
      const schemaPath = it.schemaEnv.baseId + it.errSchemaPath;
      msg += ` at "${schemaPath}" (strictTypes)`;
      (0, util_1.checkStrictMode)(it, msg, it.opts.strictTypes);
    }
    var KeywordCxt = class {
      constructor(it, def, keyword) {
        (0, keyword_1.validateKeywordUsage)(it, def, keyword);
        this.gen = it.gen;
        this.allErrors = it.allErrors;
        this.keyword = keyword;
        this.data = it.data;
        this.schema = it.schema[keyword];
        this.$data = def.$data && it.opts.$data && this.schema && this.schema.$data;
        this.schemaValue = (0, util_1.schemaRefOrVal)(it, this.schema, keyword, this.$data);
        this.schemaType = def.schemaType;
        this.parentSchema = it.schema;
        this.params = {};
        this.it = it;
        this.def = def;
        if (this.$data) {
          this.schemaCode = it.gen.const("vSchema", getData(this.$data, it));
        } else {
          this.schemaCode = this.schemaValue;
          if (!(0, keyword_1.validSchemaType)(this.schema, def.schemaType, def.allowUndefined)) {
            throw new Error(`${keyword} value must be ${JSON.stringify(def.schemaType)}`);
          }
        }
        if ("code" in def ? def.trackErrors : def.errors !== false) {
          this.errsCount = it.gen.const("_errs", names_1.default.errors);
        }
      }
      result(condition, successAction, failAction) {
        this.failResult((0, codegen_1.not)(condition), successAction, failAction);
      }
      failResult(condition, successAction, failAction) {
        this.gen.if(condition);
        if (failAction)
          failAction();
        else
          this.error();
        if (successAction) {
          this.gen.else();
          successAction();
          if (this.allErrors)
            this.gen.endIf();
        } else {
          if (this.allErrors)
            this.gen.endIf();
          else
            this.gen.else();
        }
      }
      pass(condition, failAction) {
        this.failResult((0, codegen_1.not)(condition), void 0, failAction);
      }
      fail(condition) {
        if (condition === void 0) {
          this.error();
          if (!this.allErrors)
            this.gen.if(false);
          return;
        }
        this.gen.if(condition);
        this.error();
        if (this.allErrors)
          this.gen.endIf();
        else
          this.gen.else();
      }
      fail$data(condition) {
        if (!this.$data)
          return this.fail(condition);
        const { schemaCode } = this;
        this.fail((0, codegen_1._)`${schemaCode} !== undefined && (${(0, codegen_1.or)(this.invalid$data(), condition)})`);
      }
      error(append, errorParams, errorPaths) {
        if (errorParams) {
          this.setParams(errorParams);
          this._error(append, errorPaths);
          this.setParams({});
          return;
        }
        this._error(append, errorPaths);
      }
      _error(append, errorPaths) {
        ;
        (append ? errors_1.reportExtraError : errors_1.reportError)(this, this.def.error, errorPaths);
      }
      $dataError() {
        (0, errors_1.reportError)(this, this.def.$dataError || errors_1.keyword$DataError);
      }
      reset() {
        if (this.errsCount === void 0)
          throw new Error('add "trackErrors" to keyword definition');
        (0, errors_1.resetErrorsCount)(this.gen, this.errsCount);
      }
      ok(cond) {
        if (!this.allErrors)
          this.gen.if(cond);
      }
      setParams(obj, assign) {
        if (assign)
          Object.assign(this.params, obj);
        else
          this.params = obj;
      }
      block$data(valid, codeBlock, $dataValid = codegen_1.nil) {
        this.gen.block(() => {
          this.check$data(valid, $dataValid);
          codeBlock();
        });
      }
      check$data(valid = codegen_1.nil, $dataValid = codegen_1.nil) {
        if (!this.$data)
          return;
        const { gen, schemaCode, schemaType, def } = this;
        gen.if((0, codegen_1.or)((0, codegen_1._)`${schemaCode} === undefined`, $dataValid));
        if (valid !== codegen_1.nil)
          gen.assign(valid, true);
        if (schemaType.length || def.validateSchema) {
          gen.elseIf(this.invalid$data());
          this.$dataError();
          if (valid !== codegen_1.nil)
            gen.assign(valid, false);
        }
        gen.else();
      }
      invalid$data() {
        const { gen, schemaCode, schemaType, def, it } = this;
        return (0, codegen_1.or)(wrong$DataType(), invalid$DataSchema());
        function wrong$DataType() {
          if (schemaType.length) {
            if (!(schemaCode instanceof codegen_1.Name))
              throw new Error("ajv implementation error");
            const st = Array.isArray(schemaType) ? schemaType : [schemaType];
            return (0, codegen_1._)`${(0, dataType_2.checkDataTypes)(st, schemaCode, it.opts.strictNumbers, dataType_2.DataType.Wrong)}`;
          }
          return codegen_1.nil;
        }
        function invalid$DataSchema() {
          if (def.validateSchema) {
            const validateSchemaRef = gen.scopeValue("validate$data", { ref: def.validateSchema });
            return (0, codegen_1._)`!${validateSchemaRef}(${schemaCode})`;
          }
          return codegen_1.nil;
        }
      }
      subschema(appl, valid) {
        const subschema = (0, subschema_1.getSubschema)(this.it, appl);
        (0, subschema_1.extendSubschemaData)(subschema, this.it, appl);
        (0, subschema_1.extendSubschemaMode)(subschema, appl);
        const nextContext = { ...this.it, ...subschema, items: void 0, props: void 0 };
        subschemaCode(nextContext, valid);
        return nextContext;
      }
      mergeEvaluated(schemaCxt, toName) {
        const { it, gen } = this;
        if (!it.opts.unevaluated)
          return;
        if (it.props !== true && schemaCxt.props !== void 0) {
          it.props = util_1.mergeEvaluated.props(gen, schemaCxt.props, it.props, toName);
        }
        if (it.items !== true && schemaCxt.items !== void 0) {
          it.items = util_1.mergeEvaluated.items(gen, schemaCxt.items, it.items, toName);
        }
      }
      mergeValidEvaluated(schemaCxt, valid) {
        const { it, gen } = this;
        if (it.opts.unevaluated && (it.props !== true || it.items !== true)) {
          gen.if(valid, () => this.mergeEvaluated(schemaCxt, codegen_1.Name));
          return true;
        }
      }
    };
    exports.KeywordCxt = KeywordCxt;
    function keywordCode(it, keyword, def, ruleType) {
      const cxt = new KeywordCxt(it, def, keyword);
      if ("code" in def) {
        def.code(cxt, ruleType);
      } else if (cxt.$data && def.validate) {
        (0, keyword_1.funcKeywordCode)(cxt, def);
      } else if ("macro" in def) {
        (0, keyword_1.macroKeywordCode)(cxt, def);
      } else if (def.compile || def.validate) {
        (0, keyword_1.funcKeywordCode)(cxt, def);
      }
    }
    var JSON_POINTER = /^\/(?:[^~]|~0|~1)*$/;
    var RELATIVE_JSON_POINTER = /^([0-9]+)(#|\/(?:[^~]|~0|~1)*)?$/;
    function getData($data, { dataLevel, dataNames, dataPathArr }) {
      let jsonPointer;
      let data;
      if ($data === "")
        return names_1.default.rootData;
      if ($data[0] === "/") {
        if (!JSON_POINTER.test($data))
          throw new Error(`Invalid JSON-pointer: ${$data}`);
        jsonPointer = $data;
        data = names_1.default.rootData;
      } else {
        const matches = RELATIVE_JSON_POINTER.exec($data);
        if (!matches)
          throw new Error(`Invalid JSON-pointer: ${$data}`);
        const up = +matches[1];
        jsonPointer = matches[2];
        if (jsonPointer === "#") {
          if (up >= dataLevel)
            throw new Error(errorMsg("property/index", up));
          return dataPathArr[dataLevel - up];
        }
        if (up > dataLevel)
          throw new Error(errorMsg("data", up));
        data = dataNames[dataLevel - up];
        if (!jsonPointer)
          return data;
      }
      let expr = data;
      const segments = jsonPointer.split("/");
      for (const segment of segments) {
        if (segment) {
          data = (0, codegen_1._)`${data}${(0, codegen_1.getProperty)((0, util_1.unescapeJsonPointer)(segment))}`;
          expr = (0, codegen_1._)`${expr} && ${data}`;
        }
      }
      return expr;
      function errorMsg(pointerType, up) {
        return `Cannot access ${pointerType} ${up} levels up, current level is ${dataLevel}`;
      }
    }
    exports.getData = getData;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/validation_error.js
var require_validation_error = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/validation_error.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var ValidationError = class extends Error {
      constructor(errors) {
        super("validation failed");
        this.errors = errors;
        this.ajv = this.validation = true;
      }
    };
    exports.default = ValidationError;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/ref_error.js
var require_ref_error = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/ref_error.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var resolve_1 = require_resolve();
    var MissingRefError = class extends Error {
      constructor(resolver, baseId, ref, msg) {
        super(msg || `can't resolve reference ${ref} from id ${baseId}`);
        this.missingRef = (0, resolve_1.resolveUrl)(resolver, baseId, ref);
        this.missingSchema = (0, resolve_1.normalizeId)((0, resolve_1.getFullPath)(resolver, this.missingRef));
      }
    };
    exports.default = MissingRefError;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/index.js
var require_compile = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/compile/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.resolveSchema = exports.getCompilingSchema = exports.resolveRef = exports.compileSchema = exports.SchemaEnv = void 0;
    var codegen_1 = require_codegen();
    var validation_error_1 = require_validation_error();
    var names_1 = require_names();
    var resolve_1 = require_resolve();
    var util_1 = require_util();
    var validate_1 = require_validate();
    var SchemaEnv = class {
      constructor(env) {
        var _a2;
        this.refs = {};
        this.dynamicAnchors = {};
        let schema;
        if (typeof env.schema == "object")
          schema = env.schema;
        this.schema = env.schema;
        this.schemaId = env.schemaId;
        this.root = env.root || this;
        this.baseId = (_a2 = env.baseId) !== null && _a2 !== void 0 ? _a2 : (0, resolve_1.normalizeId)(schema === null || schema === void 0 ? void 0 : schema[env.schemaId || "$id"]);
        this.schemaPath = env.schemaPath;
        this.localRefs = env.localRefs;
        this.meta = env.meta;
        this.$async = schema === null || schema === void 0 ? void 0 : schema.$async;
        this.refs = {};
      }
    };
    exports.SchemaEnv = SchemaEnv;
    function compileSchema(sch) {
      const _sch = getCompilingSchema.call(this, sch);
      if (_sch)
        return _sch;
      const rootId = (0, resolve_1.getFullPath)(this.opts.uriResolver, sch.root.baseId);
      const { es5, lines } = this.opts.code;
      const { ownProperties } = this.opts;
      const gen = new codegen_1.CodeGen(this.scope, { es5, lines, ownProperties });
      let _ValidationError;
      if (sch.$async) {
        _ValidationError = gen.scopeValue("Error", {
          ref: validation_error_1.default,
          code: (0, codegen_1._)`require("ajv/dist/runtime/validation_error").default`
        });
      }
      const validateName = gen.scopeName("validate");
      sch.validateName = validateName;
      const schemaCxt = {
        gen,
        allErrors: this.opts.allErrors,
        data: names_1.default.data,
        parentData: names_1.default.parentData,
        parentDataProperty: names_1.default.parentDataProperty,
        dataNames: [names_1.default.data],
        dataPathArr: [codegen_1.nil],
        // TODO can its length be used as dataLevel if nil is removed?
        dataLevel: 0,
        dataTypes: [],
        definedProperties: /* @__PURE__ */ new Set(),
        topSchemaRef: gen.scopeValue("schema", this.opts.code.source === true ? { ref: sch.schema, code: (0, codegen_1.stringify)(sch.schema) } : { ref: sch.schema }),
        validateName,
        ValidationError: _ValidationError,
        schema: sch.schema,
        schemaEnv: sch,
        rootId,
        baseId: sch.baseId || rootId,
        schemaPath: codegen_1.nil,
        errSchemaPath: sch.schemaPath || (this.opts.jtd ? "" : "#"),
        errorPath: (0, codegen_1._)`""`,
        opts: this.opts,
        self: this
      };
      let sourceCode;
      try {
        this._compilations.add(sch);
        (0, validate_1.validateFunctionCode)(schemaCxt);
        gen.optimize(this.opts.code.optimize);
        const validateCode = gen.toString();
        sourceCode = `${gen.scopeRefs(names_1.default.scope)}return ${validateCode}`;
        if (this.opts.code.process)
          sourceCode = this.opts.code.process(sourceCode, sch);
        const makeValidate = new Function(`${names_1.default.self}`, `${names_1.default.scope}`, sourceCode);
        const validate = makeValidate(this, this.scope.get());
        this.scope.value(validateName, { ref: validate });
        validate.errors = null;
        validate.schema = sch.schema;
        validate.schemaEnv = sch;
        if (sch.$async)
          validate.$async = true;
        if (this.opts.code.source === true) {
          validate.source = { validateName, validateCode, scopeValues: gen._values };
        }
        if (this.opts.unevaluated) {
          const { props, items } = schemaCxt;
          validate.evaluated = {
            props: props instanceof codegen_1.Name ? void 0 : props,
            items: items instanceof codegen_1.Name ? void 0 : items,
            dynamicProps: props instanceof codegen_1.Name,
            dynamicItems: items instanceof codegen_1.Name
          };
          if (validate.source)
            validate.source.evaluated = (0, codegen_1.stringify)(validate.evaluated);
        }
        sch.validate = validate;
        return sch;
      } catch (e) {
        delete sch.validate;
        delete sch.validateName;
        if (sourceCode)
          this.logger.error("Error compiling schema, function code:", sourceCode);
        throw e;
      } finally {
        this._compilations.delete(sch);
      }
    }
    exports.compileSchema = compileSchema;
    function resolveRef(root, baseId, ref) {
      var _a2;
      ref = (0, resolve_1.resolveUrl)(this.opts.uriResolver, baseId, ref);
      const schOrFunc = root.refs[ref];
      if (schOrFunc)
        return schOrFunc;
      let _sch = resolve.call(this, root, ref);
      if (_sch === void 0) {
        const schema = (_a2 = root.localRefs) === null || _a2 === void 0 ? void 0 : _a2[ref];
        const { schemaId } = this.opts;
        if (schema)
          _sch = new SchemaEnv({ schema, schemaId, root, baseId });
      }
      if (_sch === void 0)
        return;
      return root.refs[ref] = inlineOrCompile.call(this, _sch);
    }
    exports.resolveRef = resolveRef;
    function inlineOrCompile(sch) {
      if ((0, resolve_1.inlineRef)(sch.schema, this.opts.inlineRefs))
        return sch.schema;
      return sch.validate ? sch : compileSchema.call(this, sch);
    }
    function getCompilingSchema(schEnv) {
      for (const sch of this._compilations) {
        if (sameSchemaEnv(sch, schEnv))
          return sch;
      }
    }
    exports.getCompilingSchema = getCompilingSchema;
    function sameSchemaEnv(s1, s2) {
      return s1.schema === s2.schema && s1.root === s2.root && s1.baseId === s2.baseId;
    }
    function resolve(root, ref) {
      let sch;
      while (typeof (sch = this.refs[ref]) == "string")
        ref = sch;
      return sch || this.schemas[ref] || resolveSchema.call(this, root, ref);
    }
    function resolveSchema(root, ref) {
      const p = this.opts.uriResolver.parse(ref);
      const refPath = (0, resolve_1._getFullPath)(this.opts.uriResolver, p);
      let baseId = (0, resolve_1.getFullPath)(this.opts.uriResolver, root.baseId, void 0);
      if (Object.keys(root.schema).length > 0 && refPath === baseId) {
        return getJsonPointer.call(this, p, root);
      }
      const id = (0, resolve_1.normalizeId)(refPath);
      const schOrRef = this.refs[id] || this.schemas[id];
      if (typeof schOrRef == "string") {
        const sch = resolveSchema.call(this, root, schOrRef);
        if (typeof (sch === null || sch === void 0 ? void 0 : sch.schema) !== "object")
          return;
        return getJsonPointer.call(this, p, sch);
      }
      if (typeof (schOrRef === null || schOrRef === void 0 ? void 0 : schOrRef.schema) !== "object")
        return;
      if (!schOrRef.validate)
        compileSchema.call(this, schOrRef);
      if (id === (0, resolve_1.normalizeId)(ref)) {
        const { schema } = schOrRef;
        const { schemaId } = this.opts;
        const schId = schema[schemaId];
        if (schId)
          baseId = (0, resolve_1.resolveUrl)(this.opts.uriResolver, baseId, schId);
        return new SchemaEnv({ schema, schemaId, root, baseId });
      }
      return getJsonPointer.call(this, p, schOrRef);
    }
    exports.resolveSchema = resolveSchema;
    var PREVENT_SCOPE_CHANGE = /* @__PURE__ */ new Set([
      "properties",
      "patternProperties",
      "enum",
      "dependencies",
      "definitions"
    ]);
    function getJsonPointer(parsedRef, { baseId, schema, root }) {
      var _a2;
      if (((_a2 = parsedRef.fragment) === null || _a2 === void 0 ? void 0 : _a2[0]) !== "/")
        return;
      for (const part of parsedRef.fragment.slice(1).split("/")) {
        if (typeof schema === "boolean")
          return;
        const partSchema = schema[(0, util_1.unescapeFragment)(part)];
        if (partSchema === void 0)
          return;
        schema = partSchema;
        const schId = typeof schema === "object" && schema[this.opts.schemaId];
        if (!PREVENT_SCOPE_CHANGE.has(part) && schId) {
          baseId = (0, resolve_1.resolveUrl)(this.opts.uriResolver, baseId, schId);
        }
      }
      let env;
      if (typeof schema != "boolean" && schema.$ref && !(0, util_1.schemaHasRulesButRef)(schema, this.RULES)) {
        const $ref = (0, resolve_1.resolveUrl)(this.opts.uriResolver, baseId, schema.$ref);
        env = resolveSchema.call(this, root, $ref);
      }
      const { schemaId } = this.opts;
      env = env || new SchemaEnv({ schema, schemaId, root, baseId });
      if (env.schema !== env.root.schema)
        return env;
      return void 0;
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/refs/data.json
var require_data = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/refs/data.json"(exports, module) {
    module.exports = {
      $id: "https://raw.githubusercontent.com/ajv-validator/ajv/master/lib/refs/data.json#",
      description: "Meta-schema for $data reference (JSON AnySchema extension proposal)",
      type: "object",
      required: ["$data"],
      properties: {
        $data: {
          type: "string",
          anyOf: [{ format: "relative-json-pointer" }, { format: "json-pointer" }]
        }
      },
      additionalProperties: false
    };
  }
});

// node_modules/.pnpm/fast-uri@3.1.0/node_modules/fast-uri/lib/utils.js
var require_utils = __commonJS({
  "node_modules/.pnpm/fast-uri@3.1.0/node_modules/fast-uri/lib/utils.js"(exports, module) {
    "use strict";
    var isUUID = RegExp.prototype.test.bind(/^[\da-f]{8}-[\da-f]{4}-[\da-f]{4}-[\da-f]{4}-[\da-f]{12}$/iu);
    var isIPv4 = RegExp.prototype.test.bind(/^(?:(?:25[0-5]|2[0-4]\d|1\d{2}|[1-9]\d|\d)\.){3}(?:25[0-5]|2[0-4]\d|1\d{2}|[1-9]\d|\d)$/u);
    function stringArrayToHexStripped(input) {
      let acc = "";
      let code = 0;
      let i = 0;
      for (i = 0; i < input.length; i++) {
        code = input[i].charCodeAt(0);
        if (code === 48) {
          continue;
        }
        if (!(code >= 48 && code <= 57 || code >= 65 && code <= 70 || code >= 97 && code <= 102)) {
          return "";
        }
        acc += input[i];
        break;
      }
      for (i += 1; i < input.length; i++) {
        code = input[i].charCodeAt(0);
        if (!(code >= 48 && code <= 57 || code >= 65 && code <= 70 || code >= 97 && code <= 102)) {
          return "";
        }
        acc += input[i];
      }
      return acc;
    }
    var nonSimpleDomain = RegExp.prototype.test.bind(/[^!"$&'()*+,\-.;=_`a-z{}~]/u);
    function consumeIsZone(buffer) {
      buffer.length = 0;
      return true;
    }
    function consumeHextets(buffer, address, output) {
      if (buffer.length) {
        const hex = stringArrayToHexStripped(buffer);
        if (hex !== "") {
          address.push(hex);
        } else {
          output.error = true;
          return false;
        }
        buffer.length = 0;
      }
      return true;
    }
    function getIPV6(input) {
      let tokenCount = 0;
      const output = { error: false, address: "", zone: "" };
      const address = [];
      const buffer = [];
      let endipv6Encountered = false;
      let endIpv6 = false;
      let consume = consumeHextets;
      for (let i = 0; i < input.length; i++) {
        const cursor = input[i];
        if (cursor === "[" || cursor === "]") {
          continue;
        }
        if (cursor === ":") {
          if (endipv6Encountered === true) {
            endIpv6 = true;
          }
          if (!consume(buffer, address, output)) {
            break;
          }
          if (++tokenCount > 7) {
            output.error = true;
            break;
          }
          if (i > 0 && input[i - 1] === ":") {
            endipv6Encountered = true;
          }
          address.push(":");
          continue;
        } else if (cursor === "%") {
          if (!consume(buffer, address, output)) {
            break;
          }
          consume = consumeIsZone;
        } else {
          buffer.push(cursor);
          continue;
        }
      }
      if (buffer.length) {
        if (consume === consumeIsZone) {
          output.zone = buffer.join("");
        } else if (endIpv6) {
          address.push(buffer.join(""));
        } else {
          address.push(stringArrayToHexStripped(buffer));
        }
      }
      output.address = address.join("");
      return output;
    }
    function normalizeIPv6(host) {
      if (findToken(host, ":") < 2) {
        return { host, isIPV6: false };
      }
      const ipv62 = getIPV6(host);
      if (!ipv62.error) {
        let newHost = ipv62.address;
        let escapedHost = ipv62.address;
        if (ipv62.zone) {
          newHost += "%" + ipv62.zone;
          escapedHost += "%25" + ipv62.zone;
        }
        return { host: newHost, isIPV6: true, escapedHost };
      } else {
        return { host, isIPV6: false };
      }
    }
    function findToken(str, token) {
      let ind = 0;
      for (let i = 0; i < str.length; i++) {
        if (str[i] === token) ind++;
      }
      return ind;
    }
    function removeDotSegments(path3) {
      let input = path3;
      const output = [];
      let nextSlash = -1;
      let len = 0;
      while (len = input.length) {
        if (len === 1) {
          if (input === ".") {
            break;
          } else if (input === "/") {
            output.push("/");
            break;
          } else {
            output.push(input);
            break;
          }
        } else if (len === 2) {
          if (input[0] === ".") {
            if (input[1] === ".") {
              break;
            } else if (input[1] === "/") {
              input = input.slice(2);
              continue;
            }
          } else if (input[0] === "/") {
            if (input[1] === "." || input[1] === "/") {
              output.push("/");
              break;
            }
          }
        } else if (len === 3) {
          if (input === "/..") {
            if (output.length !== 0) {
              output.pop();
            }
            output.push("/");
            break;
          }
        }
        if (input[0] === ".") {
          if (input[1] === ".") {
            if (input[2] === "/") {
              input = input.slice(3);
              continue;
            }
          } else if (input[1] === "/") {
            input = input.slice(2);
            continue;
          }
        } else if (input[0] === "/") {
          if (input[1] === ".") {
            if (input[2] === "/") {
              input = input.slice(2);
              continue;
            } else if (input[2] === ".") {
              if (input[3] === "/") {
                input = input.slice(3);
                if (output.length !== 0) {
                  output.pop();
                }
                continue;
              }
            }
          }
        }
        if ((nextSlash = input.indexOf("/", 1)) === -1) {
          output.push(input);
          break;
        } else {
          output.push(input.slice(0, nextSlash));
          input = input.slice(nextSlash);
        }
      }
      return output.join("");
    }
    function normalizeComponentEncoding(component, esc2) {
      const func = esc2 !== true ? escape : unescape;
      if (component.scheme !== void 0) {
        component.scheme = func(component.scheme);
      }
      if (component.userinfo !== void 0) {
        component.userinfo = func(component.userinfo);
      }
      if (component.host !== void 0) {
        component.host = func(component.host);
      }
      if (component.path !== void 0) {
        component.path = func(component.path);
      }
      if (component.query !== void 0) {
        component.query = func(component.query);
      }
      if (component.fragment !== void 0) {
        component.fragment = func(component.fragment);
      }
      return component;
    }
    function recomposeAuthority(component) {
      const uriTokens = [];
      if (component.userinfo !== void 0) {
        uriTokens.push(component.userinfo);
        uriTokens.push("@");
      }
      if (component.host !== void 0) {
        let host = unescape(component.host);
        if (!isIPv4(host)) {
          const ipV6res = normalizeIPv6(host);
          if (ipV6res.isIPV6 === true) {
            host = `[${ipV6res.escapedHost}]`;
          } else {
            host = component.host;
          }
        }
        uriTokens.push(host);
      }
      if (typeof component.port === "number" || typeof component.port === "string") {
        uriTokens.push(":");
        uriTokens.push(String(component.port));
      }
      return uriTokens.length ? uriTokens.join("") : void 0;
    }
    module.exports = {
      nonSimpleDomain,
      recomposeAuthority,
      normalizeComponentEncoding,
      removeDotSegments,
      isIPv4,
      isUUID,
      normalizeIPv6,
      stringArrayToHexStripped
    };
  }
});

// node_modules/.pnpm/fast-uri@3.1.0/node_modules/fast-uri/lib/schemes.js
var require_schemes = __commonJS({
  "node_modules/.pnpm/fast-uri@3.1.0/node_modules/fast-uri/lib/schemes.js"(exports, module) {
    "use strict";
    var { isUUID } = require_utils();
    var URN_REG = /([\da-z][\d\-a-z]{0,31}):((?:[\w!$'()*+,\-.:;=@]|%[\da-f]{2})+)/iu;
    var supportedSchemeNames = (
      /** @type {const} */
      [
        "http",
        "https",
        "ws",
        "wss",
        "urn",
        "urn:uuid"
      ]
    );
    function isValidSchemeName(name) {
      return supportedSchemeNames.indexOf(
        /** @type {*} */
        name
      ) !== -1;
    }
    function wsIsSecure(wsComponent) {
      if (wsComponent.secure === true) {
        return true;
      } else if (wsComponent.secure === false) {
        return false;
      } else if (wsComponent.scheme) {
        return wsComponent.scheme.length === 3 && (wsComponent.scheme[0] === "w" || wsComponent.scheme[0] === "W") && (wsComponent.scheme[1] === "s" || wsComponent.scheme[1] === "S") && (wsComponent.scheme[2] === "s" || wsComponent.scheme[2] === "S");
      } else {
        return false;
      }
    }
    function httpParse(component) {
      if (!component.host) {
        component.error = component.error || "HTTP URIs must have a host.";
      }
      return component;
    }
    function httpSerialize(component) {
      const secure = String(component.scheme).toLowerCase() === "https";
      if (component.port === (secure ? 443 : 80) || component.port === "") {
        component.port = void 0;
      }
      if (!component.path) {
        component.path = "/";
      }
      return component;
    }
    function wsParse(wsComponent) {
      wsComponent.secure = wsIsSecure(wsComponent);
      wsComponent.resourceName = (wsComponent.path || "/") + (wsComponent.query ? "?" + wsComponent.query : "");
      wsComponent.path = void 0;
      wsComponent.query = void 0;
      return wsComponent;
    }
    function wsSerialize(wsComponent) {
      if (wsComponent.port === (wsIsSecure(wsComponent) ? 443 : 80) || wsComponent.port === "") {
        wsComponent.port = void 0;
      }
      if (typeof wsComponent.secure === "boolean") {
        wsComponent.scheme = wsComponent.secure ? "wss" : "ws";
        wsComponent.secure = void 0;
      }
      if (wsComponent.resourceName) {
        const [path3, query] = wsComponent.resourceName.split("?");
        wsComponent.path = path3 && path3 !== "/" ? path3 : void 0;
        wsComponent.query = query;
        wsComponent.resourceName = void 0;
      }
      wsComponent.fragment = void 0;
      return wsComponent;
    }
    function urnParse(urnComponent, options) {
      if (!urnComponent.path) {
        urnComponent.error = "URN can not be parsed";
        return urnComponent;
      }
      const matches = urnComponent.path.match(URN_REG);
      if (matches) {
        const scheme = options.scheme || urnComponent.scheme || "urn";
        urnComponent.nid = matches[1].toLowerCase();
        urnComponent.nss = matches[2];
        const urnScheme = `${scheme}:${options.nid || urnComponent.nid}`;
        const schemeHandler = getSchemeHandler(urnScheme);
        urnComponent.path = void 0;
        if (schemeHandler) {
          urnComponent = schemeHandler.parse(urnComponent, options);
        }
      } else {
        urnComponent.error = urnComponent.error || "URN can not be parsed.";
      }
      return urnComponent;
    }
    function urnSerialize(urnComponent, options) {
      if (urnComponent.nid === void 0) {
        throw new Error("URN without nid cannot be serialized");
      }
      const scheme = options.scheme || urnComponent.scheme || "urn";
      const nid = urnComponent.nid.toLowerCase();
      const urnScheme = `${scheme}:${options.nid || nid}`;
      const schemeHandler = getSchemeHandler(urnScheme);
      if (schemeHandler) {
        urnComponent = schemeHandler.serialize(urnComponent, options);
      }
      const uriComponent = urnComponent;
      const nss = urnComponent.nss;
      uriComponent.path = `${nid || options.nid}:${nss}`;
      options.skipEscape = true;
      return uriComponent;
    }
    function urnuuidParse(urnComponent, options) {
      const uuidComponent = urnComponent;
      uuidComponent.uuid = uuidComponent.nss;
      uuidComponent.nss = void 0;
      if (!options.tolerant && (!uuidComponent.uuid || !isUUID(uuidComponent.uuid))) {
        uuidComponent.error = uuidComponent.error || "UUID is not valid.";
      }
      return uuidComponent;
    }
    function urnuuidSerialize(uuidComponent) {
      const urnComponent = uuidComponent;
      urnComponent.nss = (uuidComponent.uuid || "").toLowerCase();
      return urnComponent;
    }
    var http = (
      /** @type {SchemeHandler} */
      {
        scheme: "http",
        domainHost: true,
        parse: httpParse,
        serialize: httpSerialize
      }
    );
    var https = (
      /** @type {SchemeHandler} */
      {
        scheme: "https",
        domainHost: http.domainHost,
        parse: httpParse,
        serialize: httpSerialize
      }
    );
    var ws = (
      /** @type {SchemeHandler} */
      {
        scheme: "ws",
        domainHost: true,
        parse: wsParse,
        serialize: wsSerialize
      }
    );
    var wss = (
      /** @type {SchemeHandler} */
      {
        scheme: "wss",
        domainHost: ws.domainHost,
        parse: ws.parse,
        serialize: ws.serialize
      }
    );
    var urn = (
      /** @type {SchemeHandler} */
      {
        scheme: "urn",
        parse: urnParse,
        serialize: urnSerialize,
        skipNormalize: true
      }
    );
    var urnuuid = (
      /** @type {SchemeHandler} */
      {
        scheme: "urn:uuid",
        parse: urnuuidParse,
        serialize: urnuuidSerialize,
        skipNormalize: true
      }
    );
    var SCHEMES = (
      /** @type {Record<SchemeName, SchemeHandler>} */
      {
        http,
        https,
        ws,
        wss,
        urn,
        "urn:uuid": urnuuid
      }
    );
    Object.setPrototypeOf(SCHEMES, null);
    function getSchemeHandler(scheme) {
      return scheme && (SCHEMES[
        /** @type {SchemeName} */
        scheme
      ] || SCHEMES[
        /** @type {SchemeName} */
        scheme.toLowerCase()
      ]) || void 0;
    }
    module.exports = {
      wsIsSecure,
      SCHEMES,
      isValidSchemeName,
      getSchemeHandler
    };
  }
});

// node_modules/.pnpm/fast-uri@3.1.0/node_modules/fast-uri/index.js
var require_fast_uri = __commonJS({
  "node_modules/.pnpm/fast-uri@3.1.0/node_modules/fast-uri/index.js"(exports, module) {
    "use strict";
    var { normalizeIPv6, removeDotSegments, recomposeAuthority, normalizeComponentEncoding, isIPv4, nonSimpleDomain } = require_utils();
    var { SCHEMES, getSchemeHandler } = require_schemes();
    function normalize(uri, options) {
      if (typeof uri === "string") {
        uri = /** @type {T} */
        serialize(parse3(uri, options), options);
      } else if (typeof uri === "object") {
        uri = /** @type {T} */
        parse3(serialize(uri, options), options);
      }
      return uri;
    }
    function resolve(baseURI, relativeURI, options) {
      const schemelessOptions = options ? Object.assign({ scheme: "null" }, options) : { scheme: "null" };
      const resolved = resolveComponent(parse3(baseURI, schemelessOptions), parse3(relativeURI, schemelessOptions), schemelessOptions, true);
      schemelessOptions.skipEscape = true;
      return serialize(resolved, schemelessOptions);
    }
    function resolveComponent(base, relative, options, skipNormalization) {
      const target = {};
      if (!skipNormalization) {
        base = parse3(serialize(base, options), options);
        relative = parse3(serialize(relative, options), options);
      }
      options = options || {};
      if (!options.tolerant && relative.scheme) {
        target.scheme = relative.scheme;
        target.userinfo = relative.userinfo;
        target.host = relative.host;
        target.port = relative.port;
        target.path = removeDotSegments(relative.path || "");
        target.query = relative.query;
      } else {
        if (relative.userinfo !== void 0 || relative.host !== void 0 || relative.port !== void 0) {
          target.userinfo = relative.userinfo;
          target.host = relative.host;
          target.port = relative.port;
          target.path = removeDotSegments(relative.path || "");
          target.query = relative.query;
        } else {
          if (!relative.path) {
            target.path = base.path;
            if (relative.query !== void 0) {
              target.query = relative.query;
            } else {
              target.query = base.query;
            }
          } else {
            if (relative.path[0] === "/") {
              target.path = removeDotSegments(relative.path);
            } else {
              if ((base.userinfo !== void 0 || base.host !== void 0 || base.port !== void 0) && !base.path) {
                target.path = "/" + relative.path;
              } else if (!base.path) {
                target.path = relative.path;
              } else {
                target.path = base.path.slice(0, base.path.lastIndexOf("/") + 1) + relative.path;
              }
              target.path = removeDotSegments(target.path);
            }
            target.query = relative.query;
          }
          target.userinfo = base.userinfo;
          target.host = base.host;
          target.port = base.port;
        }
        target.scheme = base.scheme;
      }
      target.fragment = relative.fragment;
      return target;
    }
    function equal(uriA, uriB, options) {
      if (typeof uriA === "string") {
        uriA = unescape(uriA);
        uriA = serialize(normalizeComponentEncoding(parse3(uriA, options), true), { ...options, skipEscape: true });
      } else if (typeof uriA === "object") {
        uriA = serialize(normalizeComponentEncoding(uriA, true), { ...options, skipEscape: true });
      }
      if (typeof uriB === "string") {
        uriB = unescape(uriB);
        uriB = serialize(normalizeComponentEncoding(parse3(uriB, options), true), { ...options, skipEscape: true });
      } else if (typeof uriB === "object") {
        uriB = serialize(normalizeComponentEncoding(uriB, true), { ...options, skipEscape: true });
      }
      return uriA.toLowerCase() === uriB.toLowerCase();
    }
    function serialize(cmpts, opts) {
      const component = {
        host: cmpts.host,
        scheme: cmpts.scheme,
        userinfo: cmpts.userinfo,
        port: cmpts.port,
        path: cmpts.path,
        query: cmpts.query,
        nid: cmpts.nid,
        nss: cmpts.nss,
        uuid: cmpts.uuid,
        fragment: cmpts.fragment,
        reference: cmpts.reference,
        resourceName: cmpts.resourceName,
        secure: cmpts.secure,
        error: ""
      };
      const options = Object.assign({}, opts);
      const uriTokens = [];
      const schemeHandler = getSchemeHandler(options.scheme || component.scheme);
      if (schemeHandler && schemeHandler.serialize) schemeHandler.serialize(component, options);
      if (component.path !== void 0) {
        if (!options.skipEscape) {
          component.path = escape(component.path);
          if (component.scheme !== void 0) {
            component.path = component.path.split("%3A").join(":");
          }
        } else {
          component.path = unescape(component.path);
        }
      }
      if (options.reference !== "suffix" && component.scheme) {
        uriTokens.push(component.scheme, ":");
      }
      const authority = recomposeAuthority(component);
      if (authority !== void 0) {
        if (options.reference !== "suffix") {
          uriTokens.push("//");
        }
        uriTokens.push(authority);
        if (component.path && component.path[0] !== "/") {
          uriTokens.push("/");
        }
      }
      if (component.path !== void 0) {
        let s = component.path;
        if (!options.absolutePath && (!schemeHandler || !schemeHandler.absolutePath)) {
          s = removeDotSegments(s);
        }
        if (authority === void 0 && s[0] === "/" && s[1] === "/") {
          s = "/%2F" + s.slice(2);
        }
        uriTokens.push(s);
      }
      if (component.query !== void 0) {
        uriTokens.push("?", component.query);
      }
      if (component.fragment !== void 0) {
        uriTokens.push("#", component.fragment);
      }
      return uriTokens.join("");
    }
    var URI_PARSE = /^(?:([^#/:?]+):)?(?:\/\/((?:([^#/?@]*)@)?(\[[^#/?\]]+\]|[^#/:?]*)(?::(\d*))?))?([^#?]*)(?:\?([^#]*))?(?:#((?:.|[\n\r])*))?/u;
    function parse3(uri, opts) {
      const options = Object.assign({}, opts);
      const parsed = {
        scheme: void 0,
        userinfo: void 0,
        host: "",
        port: void 0,
        path: "",
        query: void 0,
        fragment: void 0
      };
      let isIP = false;
      if (options.reference === "suffix") {
        if (options.scheme) {
          uri = options.scheme + ":" + uri;
        } else {
          uri = "//" + uri;
        }
      }
      const matches = uri.match(URI_PARSE);
      if (matches) {
        parsed.scheme = matches[1];
        parsed.userinfo = matches[3];
        parsed.host = matches[4];
        parsed.port = parseInt(matches[5], 10);
        parsed.path = matches[6] || "";
        parsed.query = matches[7];
        parsed.fragment = matches[8];
        if (isNaN(parsed.port)) {
          parsed.port = matches[5];
        }
        if (parsed.host) {
          const ipv4result = isIPv4(parsed.host);
          if (ipv4result === false) {
            const ipv6result = normalizeIPv6(parsed.host);
            parsed.host = ipv6result.host.toLowerCase();
            isIP = ipv6result.isIPV6;
          } else {
            isIP = true;
          }
        }
        if (parsed.scheme === void 0 && parsed.userinfo === void 0 && parsed.host === void 0 && parsed.port === void 0 && parsed.query === void 0 && !parsed.path) {
          parsed.reference = "same-document";
        } else if (parsed.scheme === void 0) {
          parsed.reference = "relative";
        } else if (parsed.fragment === void 0) {
          parsed.reference = "absolute";
        } else {
          parsed.reference = "uri";
        }
        if (options.reference && options.reference !== "suffix" && options.reference !== parsed.reference) {
          parsed.error = parsed.error || "URI is not a " + options.reference + " reference.";
        }
        const schemeHandler = getSchemeHandler(options.scheme || parsed.scheme);
        if (!options.unicodeSupport && (!schemeHandler || !schemeHandler.unicodeSupport)) {
          if (parsed.host && (options.domainHost || schemeHandler && schemeHandler.domainHost) && isIP === false && nonSimpleDomain(parsed.host)) {
            try {
              parsed.host = URL.domainToASCII(parsed.host.toLowerCase());
            } catch (e) {
              parsed.error = parsed.error || "Host's domain name can not be converted to ASCII: " + e;
            }
          }
        }
        if (!schemeHandler || schemeHandler && !schemeHandler.skipNormalize) {
          if (uri.indexOf("%") !== -1) {
            if (parsed.scheme !== void 0) {
              parsed.scheme = unescape(parsed.scheme);
            }
            if (parsed.host !== void 0) {
              parsed.host = unescape(parsed.host);
            }
          }
          if (parsed.path) {
            parsed.path = escape(unescape(parsed.path));
          }
          if (parsed.fragment) {
            parsed.fragment = encodeURI(decodeURIComponent(parsed.fragment));
          }
        }
        if (schemeHandler && schemeHandler.parse) {
          schemeHandler.parse(parsed, options);
        }
      } else {
        parsed.error = parsed.error || "URI can not be parsed.";
      }
      return parsed;
    }
    var fastUri = {
      SCHEMES,
      normalize,
      resolve,
      resolveComponent,
      equal,
      serialize,
      parse: parse3
    };
    module.exports = fastUri;
    module.exports.default = fastUri;
    module.exports.fastUri = fastUri;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/uri.js
var require_uri = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/uri.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var uri = require_fast_uri();
    uri.code = 'require("ajv/dist/runtime/uri").default';
    exports.default = uri;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/core.js
var require_core = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/core.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.CodeGen = exports.Name = exports.nil = exports.stringify = exports.str = exports._ = exports.KeywordCxt = void 0;
    var validate_1 = require_validate();
    Object.defineProperty(exports, "KeywordCxt", { enumerable: true, get: function() {
      return validate_1.KeywordCxt;
    } });
    var codegen_1 = require_codegen();
    Object.defineProperty(exports, "_", { enumerable: true, get: function() {
      return codegen_1._;
    } });
    Object.defineProperty(exports, "str", { enumerable: true, get: function() {
      return codegen_1.str;
    } });
    Object.defineProperty(exports, "stringify", { enumerable: true, get: function() {
      return codegen_1.stringify;
    } });
    Object.defineProperty(exports, "nil", { enumerable: true, get: function() {
      return codegen_1.nil;
    } });
    Object.defineProperty(exports, "Name", { enumerable: true, get: function() {
      return codegen_1.Name;
    } });
    Object.defineProperty(exports, "CodeGen", { enumerable: true, get: function() {
      return codegen_1.CodeGen;
    } });
    var validation_error_1 = require_validation_error();
    var ref_error_1 = require_ref_error();
    var rules_1 = require_rules();
    var compile_1 = require_compile();
    var codegen_2 = require_codegen();
    var resolve_1 = require_resolve();
    var dataType_1 = require_dataType();
    var util_1 = require_util();
    var $dataRefSchema = require_data();
    var uri_1 = require_uri();
    var defaultRegExp = (str, flags) => new RegExp(str, flags);
    defaultRegExp.code = "new RegExp";
    var META_IGNORE_OPTIONS = ["removeAdditional", "useDefaults", "coerceTypes"];
    var EXT_SCOPE_NAMES = /* @__PURE__ */ new Set([
      "validate",
      "serialize",
      "parse",
      "wrapper",
      "root",
      "schema",
      "keyword",
      "pattern",
      "formats",
      "validate$data",
      "func",
      "obj",
      "Error"
    ]);
    var removedOptions = {
      errorDataPath: "",
      format: "`validateFormats: false` can be used instead.",
      nullable: '"nullable" keyword is supported by default.',
      jsonPointers: "Deprecated jsPropertySyntax can be used instead.",
      extendRefs: "Deprecated ignoreKeywordsWithRef can be used instead.",
      missingRefs: "Pass empty schema with $id that should be ignored to ajv.addSchema.",
      processCode: "Use option `code: {process: (code, schemaEnv: object) => string}`",
      sourceCode: "Use option `code: {source: true}`",
      strictDefaults: "It is default now, see option `strict`.",
      strictKeywords: "It is default now, see option `strict`.",
      uniqueItems: '"uniqueItems" keyword is always validated.',
      unknownFormats: "Disable strict mode or pass `true` to `ajv.addFormat` (or `formats` option).",
      cache: "Map is used as cache, schema object as key.",
      serialize: "Map is used as cache, schema object as key.",
      ajvErrors: "It is default now."
    };
    var deprecatedOptions = {
      ignoreKeywordsWithRef: "",
      jsPropertySyntax: "",
      unicode: '"minLength"/"maxLength" account for unicode characters by default.'
    };
    var MAX_EXPRESSION = 200;
    function requiredOptions(o) {
      var _a2, _b, _c, _d, _e, _f, _g, _h, _j, _k, _l, _m, _o, _p, _q, _r, _s, _t, _u, _v, _w, _x, _y, _z, _0;
      const s = o.strict;
      const _optz = (_a2 = o.code) === null || _a2 === void 0 ? void 0 : _a2.optimize;
      const optimize = _optz === true || _optz === void 0 ? 1 : _optz || 0;
      const regExp = (_c = (_b = o.code) === null || _b === void 0 ? void 0 : _b.regExp) !== null && _c !== void 0 ? _c : defaultRegExp;
      const uriResolver = (_d = o.uriResolver) !== null && _d !== void 0 ? _d : uri_1.default;
      return {
        strictSchema: (_f = (_e = o.strictSchema) !== null && _e !== void 0 ? _e : s) !== null && _f !== void 0 ? _f : true,
        strictNumbers: (_h = (_g = o.strictNumbers) !== null && _g !== void 0 ? _g : s) !== null && _h !== void 0 ? _h : true,
        strictTypes: (_k = (_j = o.strictTypes) !== null && _j !== void 0 ? _j : s) !== null && _k !== void 0 ? _k : "log",
        strictTuples: (_m = (_l = o.strictTuples) !== null && _l !== void 0 ? _l : s) !== null && _m !== void 0 ? _m : "log",
        strictRequired: (_p = (_o = o.strictRequired) !== null && _o !== void 0 ? _o : s) !== null && _p !== void 0 ? _p : false,
        code: o.code ? { ...o.code, optimize, regExp } : { optimize, regExp },
        loopRequired: (_q = o.loopRequired) !== null && _q !== void 0 ? _q : MAX_EXPRESSION,
        loopEnum: (_r = o.loopEnum) !== null && _r !== void 0 ? _r : MAX_EXPRESSION,
        meta: (_s = o.meta) !== null && _s !== void 0 ? _s : true,
        messages: (_t = o.messages) !== null && _t !== void 0 ? _t : true,
        inlineRefs: (_u = o.inlineRefs) !== null && _u !== void 0 ? _u : true,
        schemaId: (_v = o.schemaId) !== null && _v !== void 0 ? _v : "$id",
        addUsedSchema: (_w = o.addUsedSchema) !== null && _w !== void 0 ? _w : true,
        validateSchema: (_x = o.validateSchema) !== null && _x !== void 0 ? _x : true,
        validateFormats: (_y = o.validateFormats) !== null && _y !== void 0 ? _y : true,
        unicodeRegExp: (_z = o.unicodeRegExp) !== null && _z !== void 0 ? _z : true,
        int32range: (_0 = o.int32range) !== null && _0 !== void 0 ? _0 : true,
        uriResolver
      };
    }
    var Ajv2 = class {
      constructor(opts = {}) {
        this.schemas = {};
        this.refs = {};
        this.formats = {};
        this._compilations = /* @__PURE__ */ new Set();
        this._loading = {};
        this._cache = /* @__PURE__ */ new Map();
        opts = this.opts = { ...opts, ...requiredOptions(opts) };
        const { es5, lines } = this.opts.code;
        this.scope = new codegen_2.ValueScope({ scope: {}, prefixes: EXT_SCOPE_NAMES, es5, lines });
        this.logger = getLogger(opts.logger);
        const formatOpt = opts.validateFormats;
        opts.validateFormats = false;
        this.RULES = (0, rules_1.getRules)();
        checkOptions.call(this, removedOptions, opts, "NOT SUPPORTED");
        checkOptions.call(this, deprecatedOptions, opts, "DEPRECATED", "warn");
        this._metaOpts = getMetaSchemaOptions.call(this);
        if (opts.formats)
          addInitialFormats.call(this);
        this._addVocabularies();
        this._addDefaultMetaSchema();
        if (opts.keywords)
          addInitialKeywords.call(this, opts.keywords);
        if (typeof opts.meta == "object")
          this.addMetaSchema(opts.meta);
        addInitialSchemas.call(this);
        opts.validateFormats = formatOpt;
      }
      _addVocabularies() {
        this.addKeyword("$async");
      }
      _addDefaultMetaSchema() {
        const { $data, meta: meta2, schemaId } = this.opts;
        let _dataRefSchema = $dataRefSchema;
        if (schemaId === "id") {
          _dataRefSchema = { ...$dataRefSchema };
          _dataRefSchema.id = _dataRefSchema.$id;
          delete _dataRefSchema.$id;
        }
        if (meta2 && $data)
          this.addMetaSchema(_dataRefSchema, _dataRefSchema[schemaId], false);
      }
      defaultMeta() {
        const { meta: meta2, schemaId } = this.opts;
        return this.opts.defaultMeta = typeof meta2 == "object" ? meta2[schemaId] || meta2 : void 0;
      }
      validate(schemaKeyRef, data) {
        let v;
        if (typeof schemaKeyRef == "string") {
          v = this.getSchema(schemaKeyRef);
          if (!v)
            throw new Error(`no schema with key or ref "${schemaKeyRef}"`);
        } else {
          v = this.compile(schemaKeyRef);
        }
        const valid = v(data);
        if (!("$async" in v))
          this.errors = v.errors;
        return valid;
      }
      compile(schema, _meta) {
        const sch = this._addSchema(schema, _meta);
        return sch.validate || this._compileSchemaEnv(sch);
      }
      compileAsync(schema, meta2) {
        if (typeof this.opts.loadSchema != "function") {
          throw new Error("options.loadSchema should be a function");
        }
        const { loadSchema } = this.opts;
        return runCompileAsync.call(this, schema, meta2);
        async function runCompileAsync(_schema, _meta) {
          await loadMetaSchema.call(this, _schema.$schema);
          const sch = this._addSchema(_schema, _meta);
          return sch.validate || _compileAsync.call(this, sch);
        }
        async function loadMetaSchema($ref) {
          if ($ref && !this.getSchema($ref)) {
            await runCompileAsync.call(this, { $ref }, true);
          }
        }
        async function _compileAsync(sch) {
          try {
            return this._compileSchemaEnv(sch);
          } catch (e) {
            if (!(e instanceof ref_error_1.default))
              throw e;
            checkLoaded.call(this, e);
            await loadMissingSchema.call(this, e.missingSchema);
            return _compileAsync.call(this, sch);
          }
        }
        function checkLoaded({ missingSchema: ref, missingRef }) {
          if (this.refs[ref]) {
            throw new Error(`AnySchema ${ref} is loaded but ${missingRef} cannot be resolved`);
          }
        }
        async function loadMissingSchema(ref) {
          const _schema = await _loadSchema.call(this, ref);
          if (!this.refs[ref])
            await loadMetaSchema.call(this, _schema.$schema);
          if (!this.refs[ref])
            this.addSchema(_schema, ref, meta2);
        }
        async function _loadSchema(ref) {
          const p = this._loading[ref];
          if (p)
            return p;
          try {
            return await (this._loading[ref] = loadSchema(ref));
          } finally {
            delete this._loading[ref];
          }
        }
      }
      // Adds schema to the instance
      addSchema(schema, key, _meta, _validateSchema = this.opts.validateSchema) {
        if (Array.isArray(schema)) {
          for (const sch of schema)
            this.addSchema(sch, void 0, _meta, _validateSchema);
          return this;
        }
        let id;
        if (typeof schema === "object") {
          const { schemaId } = this.opts;
          id = schema[schemaId];
          if (id !== void 0 && typeof id != "string") {
            throw new Error(`schema ${schemaId} must be string`);
          }
        }
        key = (0, resolve_1.normalizeId)(key || id);
        this._checkUnique(key);
        this.schemas[key] = this._addSchema(schema, _meta, key, _validateSchema, true);
        return this;
      }
      // Add schema that will be used to validate other schemas
      // options in META_IGNORE_OPTIONS are alway set to false
      addMetaSchema(schema, key, _validateSchema = this.opts.validateSchema) {
        this.addSchema(schema, key, true, _validateSchema);
        return this;
      }
      //  Validate schema against its meta-schema
      validateSchema(schema, throwOrLogError) {
        if (typeof schema == "boolean")
          return true;
        let $schema;
        $schema = schema.$schema;
        if ($schema !== void 0 && typeof $schema != "string") {
          throw new Error("$schema must be a string");
        }
        $schema = $schema || this.opts.defaultMeta || this.defaultMeta();
        if (!$schema) {
          this.logger.warn("meta-schema not available");
          this.errors = null;
          return true;
        }
        const valid = this.validate($schema, schema);
        if (!valid && throwOrLogError) {
          const message = "schema is invalid: " + this.errorsText();
          if (this.opts.validateSchema === "log")
            this.logger.error(message);
          else
            throw new Error(message);
        }
        return valid;
      }
      // Get compiled schema by `key` or `ref`.
      // (`key` that was passed to `addSchema` or full schema reference - `schema.$id` or resolved id)
      getSchema(keyRef) {
        let sch;
        while (typeof (sch = getSchEnv.call(this, keyRef)) == "string")
          keyRef = sch;
        if (sch === void 0) {
          const { schemaId } = this.opts;
          const root = new compile_1.SchemaEnv({ schema: {}, schemaId });
          sch = compile_1.resolveSchema.call(this, root, keyRef);
          if (!sch)
            return;
          this.refs[keyRef] = sch;
        }
        return sch.validate || this._compileSchemaEnv(sch);
      }
      // Remove cached schema(s).
      // If no parameter is passed all schemas but meta-schemas are removed.
      // If RegExp is passed all schemas with key/id matching pattern but meta-schemas are removed.
      // Even if schema is referenced by other schemas it still can be removed as other schemas have local references.
      removeSchema(schemaKeyRef) {
        if (schemaKeyRef instanceof RegExp) {
          this._removeAllSchemas(this.schemas, schemaKeyRef);
          this._removeAllSchemas(this.refs, schemaKeyRef);
          return this;
        }
        switch (typeof schemaKeyRef) {
          case "undefined":
            this._removeAllSchemas(this.schemas);
            this._removeAllSchemas(this.refs);
            this._cache.clear();
            return this;
          case "string": {
            const sch = getSchEnv.call(this, schemaKeyRef);
            if (typeof sch == "object")
              this._cache.delete(sch.schema);
            delete this.schemas[schemaKeyRef];
            delete this.refs[schemaKeyRef];
            return this;
          }
          case "object": {
            const cacheKey = schemaKeyRef;
            this._cache.delete(cacheKey);
            let id = schemaKeyRef[this.opts.schemaId];
            if (id) {
              id = (0, resolve_1.normalizeId)(id);
              delete this.schemas[id];
              delete this.refs[id];
            }
            return this;
          }
          default:
            throw new Error("ajv.removeSchema: invalid parameter");
        }
      }
      // add "vocabulary" - a collection of keywords
      addVocabulary(definitions) {
        for (const def of definitions)
          this.addKeyword(def);
        return this;
      }
      addKeyword(kwdOrDef, def) {
        let keyword;
        if (typeof kwdOrDef == "string") {
          keyword = kwdOrDef;
          if (typeof def == "object") {
            this.logger.warn("these parameters are deprecated, see docs for addKeyword");
            def.keyword = keyword;
          }
        } else if (typeof kwdOrDef == "object" && def === void 0) {
          def = kwdOrDef;
          keyword = def.keyword;
          if (Array.isArray(keyword) && !keyword.length) {
            throw new Error("addKeywords: keyword must be string or non-empty array");
          }
        } else {
          throw new Error("invalid addKeywords parameters");
        }
        checkKeyword.call(this, keyword, def);
        if (!def) {
          (0, util_1.eachItem)(keyword, (kwd) => addRule.call(this, kwd));
          return this;
        }
        keywordMetaschema.call(this, def);
        const definition = {
          ...def,
          type: (0, dataType_1.getJSONTypes)(def.type),
          schemaType: (0, dataType_1.getJSONTypes)(def.schemaType)
        };
        (0, util_1.eachItem)(keyword, definition.type.length === 0 ? (k) => addRule.call(this, k, definition) : (k) => definition.type.forEach((t) => addRule.call(this, k, definition, t)));
        return this;
      }
      getKeyword(keyword) {
        const rule = this.RULES.all[keyword];
        return typeof rule == "object" ? rule.definition : !!rule;
      }
      // Remove keyword
      removeKeyword(keyword) {
        const { RULES } = this;
        delete RULES.keywords[keyword];
        delete RULES.all[keyword];
        for (const group of RULES.rules) {
          const i = group.rules.findIndex((rule) => rule.keyword === keyword);
          if (i >= 0)
            group.rules.splice(i, 1);
        }
        return this;
      }
      // Add format
      addFormat(name, format) {
        if (typeof format == "string")
          format = new RegExp(format);
        this.formats[name] = format;
        return this;
      }
      errorsText(errors = this.errors, { separator = ", ", dataVar = "data" } = {}) {
        if (!errors || errors.length === 0)
          return "No errors";
        return errors.map((e) => `${dataVar}${e.instancePath} ${e.message}`).reduce((text, msg) => text + separator + msg);
      }
      $dataMetaSchema(metaSchema, keywordsJsonPointers) {
        const rules = this.RULES.all;
        metaSchema = JSON.parse(JSON.stringify(metaSchema));
        for (const jsonPointer of keywordsJsonPointers) {
          const segments = jsonPointer.split("/").slice(1);
          let keywords = metaSchema;
          for (const seg of segments)
            keywords = keywords[seg];
          for (const key in rules) {
            const rule = rules[key];
            if (typeof rule != "object")
              continue;
            const { $data } = rule.definition;
            const schema = keywords[key];
            if ($data && schema)
              keywords[key] = schemaOrData(schema);
          }
        }
        return metaSchema;
      }
      _removeAllSchemas(schemas, regex) {
        for (const keyRef in schemas) {
          const sch = schemas[keyRef];
          if (!regex || regex.test(keyRef)) {
            if (typeof sch == "string") {
              delete schemas[keyRef];
            } else if (sch && !sch.meta) {
              this._cache.delete(sch.schema);
              delete schemas[keyRef];
            }
          }
        }
      }
      _addSchema(schema, meta2, baseId, validateSchema = this.opts.validateSchema, addSchema = this.opts.addUsedSchema) {
        let id;
        const { schemaId } = this.opts;
        if (typeof schema == "object") {
          id = schema[schemaId];
        } else {
          if (this.opts.jtd)
            throw new Error("schema must be object");
          else if (typeof schema != "boolean")
            throw new Error("schema must be object or boolean");
        }
        let sch = this._cache.get(schema);
        if (sch !== void 0)
          return sch;
        baseId = (0, resolve_1.normalizeId)(id || baseId);
        const localRefs = resolve_1.getSchemaRefs.call(this, schema, baseId);
        sch = new compile_1.SchemaEnv({ schema, schemaId, meta: meta2, baseId, localRefs });
        this._cache.set(sch.schema, sch);
        if (addSchema && !baseId.startsWith("#")) {
          if (baseId)
            this._checkUnique(baseId);
          this.refs[baseId] = sch;
        }
        if (validateSchema)
          this.validateSchema(schema, true);
        return sch;
      }
      _checkUnique(id) {
        if (this.schemas[id] || this.refs[id]) {
          throw new Error(`schema with key or id "${id}" already exists`);
        }
      }
      _compileSchemaEnv(sch) {
        if (sch.meta)
          this._compileMetaSchema(sch);
        else
          compile_1.compileSchema.call(this, sch);
        if (!sch.validate)
          throw new Error("ajv implementation error");
        return sch.validate;
      }
      _compileMetaSchema(sch) {
        const currentOpts = this.opts;
        this.opts = this._metaOpts;
        try {
          compile_1.compileSchema.call(this, sch);
        } finally {
          this.opts = currentOpts;
        }
      }
    };
    Ajv2.ValidationError = validation_error_1.default;
    Ajv2.MissingRefError = ref_error_1.default;
    exports.default = Ajv2;
    function checkOptions(checkOpts, options, msg, log2 = "error") {
      for (const key in checkOpts) {
        const opt = key;
        if (opt in options)
          this.logger[log2](`${msg}: option ${key}. ${checkOpts[opt]}`);
      }
    }
    function getSchEnv(keyRef) {
      keyRef = (0, resolve_1.normalizeId)(keyRef);
      return this.schemas[keyRef] || this.refs[keyRef];
    }
    function addInitialSchemas() {
      const optsSchemas = this.opts.schemas;
      if (!optsSchemas)
        return;
      if (Array.isArray(optsSchemas))
        this.addSchema(optsSchemas);
      else
        for (const key in optsSchemas)
          this.addSchema(optsSchemas[key], key);
    }
    function addInitialFormats() {
      for (const name in this.opts.formats) {
        const format = this.opts.formats[name];
        if (format)
          this.addFormat(name, format);
      }
    }
    function addInitialKeywords(defs) {
      if (Array.isArray(defs)) {
        this.addVocabulary(defs);
        return;
      }
      this.logger.warn("keywords option as map is deprecated, pass array");
      for (const keyword in defs) {
        const def = defs[keyword];
        if (!def.keyword)
          def.keyword = keyword;
        this.addKeyword(def);
      }
    }
    function getMetaSchemaOptions() {
      const metaOpts = { ...this.opts };
      for (const opt of META_IGNORE_OPTIONS)
        delete metaOpts[opt];
      return metaOpts;
    }
    var noLogs = { log() {
    }, warn() {
    }, error() {
    } };
    function getLogger(logger) {
      if (logger === false)
        return noLogs;
      if (logger === void 0)
        return console;
      if (logger.log && logger.warn && logger.error)
        return logger;
      throw new Error("logger must implement log, warn and error methods");
    }
    var KEYWORD_NAME = /^[a-z_$][a-z0-9_$:-]*$/i;
    function checkKeyword(keyword, def) {
      const { RULES } = this;
      (0, util_1.eachItem)(keyword, (kwd) => {
        if (RULES.keywords[kwd])
          throw new Error(`Keyword ${kwd} is already defined`);
        if (!KEYWORD_NAME.test(kwd))
          throw new Error(`Keyword ${kwd} has invalid name`);
      });
      if (!def)
        return;
      if (def.$data && !("code" in def || "validate" in def)) {
        throw new Error('$data keyword must have "code" or "validate" function');
      }
    }
    function addRule(keyword, definition, dataType) {
      var _a2;
      const post = definition === null || definition === void 0 ? void 0 : definition.post;
      if (dataType && post)
        throw new Error('keyword with "post" flag cannot have "type"');
      const { RULES } = this;
      let ruleGroup = post ? RULES.post : RULES.rules.find(({ type: t }) => t === dataType);
      if (!ruleGroup) {
        ruleGroup = { type: dataType, rules: [] };
        RULES.rules.push(ruleGroup);
      }
      RULES.keywords[keyword] = true;
      if (!definition)
        return;
      const rule = {
        keyword,
        definition: {
          ...definition,
          type: (0, dataType_1.getJSONTypes)(definition.type),
          schemaType: (0, dataType_1.getJSONTypes)(definition.schemaType)
        }
      };
      if (definition.before)
        addBeforeRule.call(this, ruleGroup, rule, definition.before);
      else
        ruleGroup.rules.push(rule);
      RULES.all[keyword] = rule;
      (_a2 = definition.implements) === null || _a2 === void 0 ? void 0 : _a2.forEach((kwd) => this.addKeyword(kwd));
    }
    function addBeforeRule(ruleGroup, rule, before) {
      const i = ruleGroup.rules.findIndex((_rule) => _rule.keyword === before);
      if (i >= 0) {
        ruleGroup.rules.splice(i, 0, rule);
      } else {
        ruleGroup.rules.push(rule);
        this.logger.warn(`rule ${before} is not defined`);
      }
    }
    function keywordMetaschema(def) {
      let { metaSchema } = def;
      if (metaSchema === void 0)
        return;
      if (def.$data && this.opts.$data)
        metaSchema = schemaOrData(metaSchema);
      def.validateSchema = this.compile(metaSchema, true);
    }
    var $dataRef = {
      $ref: "https://raw.githubusercontent.com/ajv-validator/ajv/master/lib/refs/data.json#"
    };
    function schemaOrData(schema) {
      return { anyOf: [schema, $dataRef] };
    }
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/core/id.js
var require_id = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/core/id.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var def = {
      keyword: "id",
      code() {
        throw new Error('NOT SUPPORTED: keyword "id", use "$id" for schema ID');
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/core/ref.js
var require_ref = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/core/ref.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.callRef = exports.getValidate = void 0;
    var ref_error_1 = require_ref_error();
    var code_1 = require_code2();
    var codegen_1 = require_codegen();
    var names_1 = require_names();
    var compile_1 = require_compile();
    var util_1 = require_util();
    var def = {
      keyword: "$ref",
      schemaType: "string",
      code(cxt) {
        const { gen, schema: $ref, it } = cxt;
        const { baseId, schemaEnv: env, validateName, opts, self } = it;
        const { root } = env;
        if (($ref === "#" || $ref === "#/") && baseId === root.baseId)
          return callRootRef();
        const schOrEnv = compile_1.resolveRef.call(self, root, baseId, $ref);
        if (schOrEnv === void 0)
          throw new ref_error_1.default(it.opts.uriResolver, baseId, $ref);
        if (schOrEnv instanceof compile_1.SchemaEnv)
          return callValidate(schOrEnv);
        return inlineRefSchema(schOrEnv);
        function callRootRef() {
          if (env === root)
            return callRef(cxt, validateName, env, env.$async);
          const rootName = gen.scopeValue("root", { ref: root });
          return callRef(cxt, (0, codegen_1._)`${rootName}.validate`, root, root.$async);
        }
        function callValidate(sch) {
          const v = getValidate(cxt, sch);
          callRef(cxt, v, sch, sch.$async);
        }
        function inlineRefSchema(sch) {
          const schName = gen.scopeValue("schema", opts.code.source === true ? { ref: sch, code: (0, codegen_1.stringify)(sch) } : { ref: sch });
          const valid = gen.name("valid");
          const schCxt = cxt.subschema({
            schema: sch,
            dataTypes: [],
            schemaPath: codegen_1.nil,
            topSchemaRef: schName,
            errSchemaPath: $ref
          }, valid);
          cxt.mergeEvaluated(schCxt);
          cxt.ok(valid);
        }
      }
    };
    function getValidate(cxt, sch) {
      const { gen } = cxt;
      return sch.validate ? gen.scopeValue("validate", { ref: sch.validate }) : (0, codegen_1._)`${gen.scopeValue("wrapper", { ref: sch })}.validate`;
    }
    exports.getValidate = getValidate;
    function callRef(cxt, v, sch, $async) {
      const { gen, it } = cxt;
      const { allErrors, schemaEnv: env, opts } = it;
      const passCxt = opts.passContext ? names_1.default.this : codegen_1.nil;
      if ($async)
        callAsyncRef();
      else
        callSyncRef();
      function callAsyncRef() {
        if (!env.$async)
          throw new Error("async schema referenced by sync schema");
        const valid = gen.let("valid");
        gen.try(() => {
          gen.code((0, codegen_1._)`await ${(0, code_1.callValidateCode)(cxt, v, passCxt)}`);
          addEvaluatedFrom(v);
          if (!allErrors)
            gen.assign(valid, true);
        }, (e) => {
          gen.if((0, codegen_1._)`!(${e} instanceof ${it.ValidationError})`, () => gen.throw(e));
          addErrorsFrom(e);
          if (!allErrors)
            gen.assign(valid, false);
        });
        cxt.ok(valid);
      }
      function callSyncRef() {
        cxt.result((0, code_1.callValidateCode)(cxt, v, passCxt), () => addEvaluatedFrom(v), () => addErrorsFrom(v));
      }
      function addErrorsFrom(source) {
        const errs = (0, codegen_1._)`${source}.errors`;
        gen.assign(names_1.default.vErrors, (0, codegen_1._)`${names_1.default.vErrors} === null ? ${errs} : ${names_1.default.vErrors}.concat(${errs})`);
        gen.assign(names_1.default.errors, (0, codegen_1._)`${names_1.default.vErrors}.length`);
      }
      function addEvaluatedFrom(source) {
        var _a2;
        if (!it.opts.unevaluated)
          return;
        const schEvaluated = (_a2 = sch === null || sch === void 0 ? void 0 : sch.validate) === null || _a2 === void 0 ? void 0 : _a2.evaluated;
        if (it.props !== true) {
          if (schEvaluated && !schEvaluated.dynamicProps) {
            if (schEvaluated.props !== void 0) {
              it.props = util_1.mergeEvaluated.props(gen, schEvaluated.props, it.props);
            }
          } else {
            const props = gen.var("props", (0, codegen_1._)`${source}.evaluated.props`);
            it.props = util_1.mergeEvaluated.props(gen, props, it.props, codegen_1.Name);
          }
        }
        if (it.items !== true) {
          if (schEvaluated && !schEvaluated.dynamicItems) {
            if (schEvaluated.items !== void 0) {
              it.items = util_1.mergeEvaluated.items(gen, schEvaluated.items, it.items);
            }
          } else {
            const items = gen.var("items", (0, codegen_1._)`${source}.evaluated.items`);
            it.items = util_1.mergeEvaluated.items(gen, items, it.items, codegen_1.Name);
          }
        }
      }
    }
    exports.callRef = callRef;
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/core/index.js
var require_core2 = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/core/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var id_1 = require_id();
    var ref_1 = require_ref();
    var core = [
      "$schema",
      "$id",
      "$defs",
      "$vocabulary",
      { keyword: "$comment" },
      "definitions",
      id_1.default,
      ref_1.default
    ];
    exports.default = core;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitNumber.js
var require_limitNumber = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitNumber.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var ops = codegen_1.operators;
    var KWDs = {
      maximum: { okStr: "<=", ok: ops.LTE, fail: ops.GT },
      minimum: { okStr: ">=", ok: ops.GTE, fail: ops.LT },
      exclusiveMaximum: { okStr: "<", ok: ops.LT, fail: ops.GTE },
      exclusiveMinimum: { okStr: ">", ok: ops.GT, fail: ops.LTE }
    };
    var error2 = {
      message: ({ keyword, schemaCode }) => (0, codegen_1.str)`must be ${KWDs[keyword].okStr} ${schemaCode}`,
      params: ({ keyword, schemaCode }) => (0, codegen_1._)`{comparison: ${KWDs[keyword].okStr}, limit: ${schemaCode}}`
    };
    var def = {
      keyword: Object.keys(KWDs),
      type: "number",
      schemaType: "number",
      $data: true,
      error: error2,
      code(cxt) {
        const { keyword, data, schemaCode } = cxt;
        cxt.fail$data((0, codegen_1._)`${data} ${KWDs[keyword].fail} ${schemaCode} || isNaN(${data})`);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/multipleOf.js
var require_multipleOf = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/multipleOf.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var error2 = {
      message: ({ schemaCode }) => (0, codegen_1.str)`must be multiple of ${schemaCode}`,
      params: ({ schemaCode }) => (0, codegen_1._)`{multipleOf: ${schemaCode}}`
    };
    var def = {
      keyword: "multipleOf",
      type: "number",
      schemaType: "number",
      $data: true,
      error: error2,
      code(cxt) {
        const { gen, data, schemaCode, it } = cxt;
        const prec = it.opts.multipleOfPrecision;
        const res = gen.let("res");
        const invalid = prec ? (0, codegen_1._)`Math.abs(Math.round(${res}) - ${res}) > 1e-${prec}` : (0, codegen_1._)`${res} !== parseInt(${res})`;
        cxt.fail$data((0, codegen_1._)`(${schemaCode} === 0 || (${res} = ${data}/${schemaCode}, ${invalid}))`);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/ucs2length.js
var require_ucs2length = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/ucs2length.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    function ucs2length(str) {
      const len = str.length;
      let length = 0;
      let pos = 0;
      let value;
      while (pos < len) {
        length++;
        value = str.charCodeAt(pos++);
        if (value >= 55296 && value <= 56319 && pos < len) {
          value = str.charCodeAt(pos);
          if ((value & 64512) === 56320)
            pos++;
        }
      }
      return length;
    }
    exports.default = ucs2length;
    ucs2length.code = 'require("ajv/dist/runtime/ucs2length").default';
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitLength.js
var require_limitLength = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitLength.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var ucs2length_1 = require_ucs2length();
    var error2 = {
      message({ keyword, schemaCode }) {
        const comp = keyword === "maxLength" ? "more" : "fewer";
        return (0, codegen_1.str)`must NOT have ${comp} than ${schemaCode} characters`;
      },
      params: ({ schemaCode }) => (0, codegen_1._)`{limit: ${schemaCode}}`
    };
    var def = {
      keyword: ["maxLength", "minLength"],
      type: "string",
      schemaType: "number",
      $data: true,
      error: error2,
      code(cxt) {
        const { keyword, data, schemaCode, it } = cxt;
        const op = keyword === "maxLength" ? codegen_1.operators.GT : codegen_1.operators.LT;
        const len = it.opts.unicode === false ? (0, codegen_1._)`${data}.length` : (0, codegen_1._)`${(0, util_1.useFunc)(cxt.gen, ucs2length_1.default)}(${data})`;
        cxt.fail$data((0, codegen_1._)`${len} ${op} ${schemaCode}`);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/pattern.js
var require_pattern = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/pattern.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var code_1 = require_code2();
    var codegen_1 = require_codegen();
    var error2 = {
      message: ({ schemaCode }) => (0, codegen_1.str)`must match pattern "${schemaCode}"`,
      params: ({ schemaCode }) => (0, codegen_1._)`{pattern: ${schemaCode}}`
    };
    var def = {
      keyword: "pattern",
      type: "string",
      schemaType: "string",
      $data: true,
      error: error2,
      code(cxt) {
        const { data, $data, schema, schemaCode, it } = cxt;
        const u = it.opts.unicodeRegExp ? "u" : "";
        const regExp = $data ? (0, codegen_1._)`(new RegExp(${schemaCode}, ${u}))` : (0, code_1.usePattern)(cxt, schema);
        cxt.fail$data((0, codegen_1._)`!${regExp}.test(${data})`);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitProperties.js
var require_limitProperties = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitProperties.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var error2 = {
      message({ keyword, schemaCode }) {
        const comp = keyword === "maxProperties" ? "more" : "fewer";
        return (0, codegen_1.str)`must NOT have ${comp} than ${schemaCode} properties`;
      },
      params: ({ schemaCode }) => (0, codegen_1._)`{limit: ${schemaCode}}`
    };
    var def = {
      keyword: ["maxProperties", "minProperties"],
      type: "object",
      schemaType: "number",
      $data: true,
      error: error2,
      code(cxt) {
        const { keyword, data, schemaCode } = cxt;
        const op = keyword === "maxProperties" ? codegen_1.operators.GT : codegen_1.operators.LT;
        cxt.fail$data((0, codegen_1._)`Object.keys(${data}).length ${op} ${schemaCode}`);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/required.js
var require_required = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/required.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var code_1 = require_code2();
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var error2 = {
      message: ({ params: { missingProperty } }) => (0, codegen_1.str)`must have required property '${missingProperty}'`,
      params: ({ params: { missingProperty } }) => (0, codegen_1._)`{missingProperty: ${missingProperty}}`
    };
    var def = {
      keyword: "required",
      type: "object",
      schemaType: "array",
      $data: true,
      error: error2,
      code(cxt) {
        const { gen, schema, schemaCode, data, $data, it } = cxt;
        const { opts } = it;
        if (!$data && schema.length === 0)
          return;
        const useLoop = schema.length >= opts.loopRequired;
        if (it.allErrors)
          allErrorsMode();
        else
          exitOnErrorMode();
        if (opts.strictRequired) {
          const props = cxt.parentSchema.properties;
          const { definedProperties } = cxt.it;
          for (const requiredKey of schema) {
            if ((props === null || props === void 0 ? void 0 : props[requiredKey]) === void 0 && !definedProperties.has(requiredKey)) {
              const schemaPath = it.schemaEnv.baseId + it.errSchemaPath;
              const msg = `required property "${requiredKey}" is not defined at "${schemaPath}" (strictRequired)`;
              (0, util_1.checkStrictMode)(it, msg, it.opts.strictRequired);
            }
          }
        }
        function allErrorsMode() {
          if (useLoop || $data) {
            cxt.block$data(codegen_1.nil, loopAllRequired);
          } else {
            for (const prop of schema) {
              (0, code_1.checkReportMissingProp)(cxt, prop);
            }
          }
        }
        function exitOnErrorMode() {
          const missing = gen.let("missing");
          if (useLoop || $data) {
            const valid = gen.let("valid", true);
            cxt.block$data(valid, () => loopUntilMissing(missing, valid));
            cxt.ok(valid);
          } else {
            gen.if((0, code_1.checkMissingProp)(cxt, schema, missing));
            (0, code_1.reportMissingProp)(cxt, missing);
            gen.else();
          }
        }
        function loopAllRequired() {
          gen.forOf("prop", schemaCode, (prop) => {
            cxt.setParams({ missingProperty: prop });
            gen.if((0, code_1.noPropertyInData)(gen, data, prop, opts.ownProperties), () => cxt.error());
          });
        }
        function loopUntilMissing(missing, valid) {
          cxt.setParams({ missingProperty: missing });
          gen.forOf(missing, schemaCode, () => {
            gen.assign(valid, (0, code_1.propertyInData)(gen, data, missing, opts.ownProperties));
            gen.if((0, codegen_1.not)(valid), () => {
              cxt.error();
              gen.break();
            });
          }, codegen_1.nil);
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitItems.js
var require_limitItems = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/limitItems.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var error2 = {
      message({ keyword, schemaCode }) {
        const comp = keyword === "maxItems" ? "more" : "fewer";
        return (0, codegen_1.str)`must NOT have ${comp} than ${schemaCode} items`;
      },
      params: ({ schemaCode }) => (0, codegen_1._)`{limit: ${schemaCode}}`
    };
    var def = {
      keyword: ["maxItems", "minItems"],
      type: "array",
      schemaType: "number",
      $data: true,
      error: error2,
      code(cxt) {
        const { keyword, data, schemaCode } = cxt;
        const op = keyword === "maxItems" ? codegen_1.operators.GT : codegen_1.operators.LT;
        cxt.fail$data((0, codegen_1._)`${data}.length ${op} ${schemaCode}`);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/equal.js
var require_equal = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/runtime/equal.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var equal = require_fast_deep_equal();
    equal.code = 'require("ajv/dist/runtime/equal").default';
    exports.default = equal;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/uniqueItems.js
var require_uniqueItems = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/uniqueItems.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var dataType_1 = require_dataType();
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var equal_1 = require_equal();
    var error2 = {
      message: ({ params: { i, j } }) => (0, codegen_1.str)`must NOT have duplicate items (items ## ${j} and ${i} are identical)`,
      params: ({ params: { i, j } }) => (0, codegen_1._)`{i: ${i}, j: ${j}}`
    };
    var def = {
      keyword: "uniqueItems",
      type: "array",
      schemaType: "boolean",
      $data: true,
      error: error2,
      code(cxt) {
        const { gen, data, $data, schema, parentSchema, schemaCode, it } = cxt;
        if (!$data && !schema)
          return;
        const valid = gen.let("valid");
        const itemTypes = parentSchema.items ? (0, dataType_1.getSchemaTypes)(parentSchema.items) : [];
        cxt.block$data(valid, validateUniqueItems, (0, codegen_1._)`${schemaCode} === false`);
        cxt.ok(valid);
        function validateUniqueItems() {
          const i = gen.let("i", (0, codegen_1._)`${data}.length`);
          const j = gen.let("j");
          cxt.setParams({ i, j });
          gen.assign(valid, true);
          gen.if((0, codegen_1._)`${i} > 1`, () => (canOptimize() ? loopN : loopN2)(i, j));
        }
        function canOptimize() {
          return itemTypes.length > 0 && !itemTypes.some((t) => t === "object" || t === "array");
        }
        function loopN(i, j) {
          const item = gen.name("item");
          const wrongType = (0, dataType_1.checkDataTypes)(itemTypes, item, it.opts.strictNumbers, dataType_1.DataType.Wrong);
          const indices = gen.const("indices", (0, codegen_1._)`{}`);
          gen.for((0, codegen_1._)`;${i}--;`, () => {
            gen.let(item, (0, codegen_1._)`${data}[${i}]`);
            gen.if(wrongType, (0, codegen_1._)`continue`);
            if (itemTypes.length > 1)
              gen.if((0, codegen_1._)`typeof ${item} == "string"`, (0, codegen_1._)`${item} += "_"`);
            gen.if((0, codegen_1._)`typeof ${indices}[${item}] == "number"`, () => {
              gen.assign(j, (0, codegen_1._)`${indices}[${item}]`);
              cxt.error();
              gen.assign(valid, false).break();
            }).code((0, codegen_1._)`${indices}[${item}] = ${i}`);
          });
        }
        function loopN2(i, j) {
          const eql = (0, util_1.useFunc)(gen, equal_1.default);
          const outer = gen.name("outer");
          gen.label(outer).for((0, codegen_1._)`;${i}--;`, () => gen.for((0, codegen_1._)`${j} = ${i}; ${j}--;`, () => gen.if((0, codegen_1._)`${eql}(${data}[${i}], ${data}[${j}])`, () => {
            cxt.error();
            gen.assign(valid, false).break(outer);
          })));
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/const.js
var require_const = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/const.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var equal_1 = require_equal();
    var error2 = {
      message: "must be equal to constant",
      params: ({ schemaCode }) => (0, codegen_1._)`{allowedValue: ${schemaCode}}`
    };
    var def = {
      keyword: "const",
      $data: true,
      error: error2,
      code(cxt) {
        const { gen, data, $data, schemaCode, schema } = cxt;
        if ($data || schema && typeof schema == "object") {
          cxt.fail$data((0, codegen_1._)`!${(0, util_1.useFunc)(gen, equal_1.default)}(${data}, ${schemaCode})`);
        } else {
          cxt.fail((0, codegen_1._)`${schema} !== ${data}`);
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/enum.js
var require_enum = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/enum.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var equal_1 = require_equal();
    var error2 = {
      message: "must be equal to one of the allowed values",
      params: ({ schemaCode }) => (0, codegen_1._)`{allowedValues: ${schemaCode}}`
    };
    var def = {
      keyword: "enum",
      schemaType: "array",
      $data: true,
      error: error2,
      code(cxt) {
        const { gen, data, $data, schema, schemaCode, it } = cxt;
        if (!$data && schema.length === 0)
          throw new Error("enum must have non-empty array");
        const useLoop = schema.length >= it.opts.loopEnum;
        let eql;
        const getEql = () => eql !== null && eql !== void 0 ? eql : eql = (0, util_1.useFunc)(gen, equal_1.default);
        let valid;
        if (useLoop || $data) {
          valid = gen.let("valid");
          cxt.block$data(valid, loopEnum);
        } else {
          if (!Array.isArray(schema))
            throw new Error("ajv implementation error");
          const vSchema = gen.const("vSchema", schemaCode);
          valid = (0, codegen_1.or)(...schema.map((_x, i) => equalCode(vSchema, i)));
        }
        cxt.pass(valid);
        function loopEnum() {
          gen.assign(valid, false);
          gen.forOf("v", schemaCode, (v) => gen.if((0, codegen_1._)`${getEql()}(${data}, ${v})`, () => gen.assign(valid, true).break()));
        }
        function equalCode(vSchema, i) {
          const sch = schema[i];
          return typeof sch === "object" && sch !== null ? (0, codegen_1._)`${getEql()}(${data}, ${vSchema}[${i}])` : (0, codegen_1._)`${data} === ${sch}`;
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/index.js
var require_validation = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/validation/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var limitNumber_1 = require_limitNumber();
    var multipleOf_1 = require_multipleOf();
    var limitLength_1 = require_limitLength();
    var pattern_1 = require_pattern();
    var limitProperties_1 = require_limitProperties();
    var required_1 = require_required();
    var limitItems_1 = require_limitItems();
    var uniqueItems_1 = require_uniqueItems();
    var const_1 = require_const();
    var enum_1 = require_enum();
    var validation = [
      // number
      limitNumber_1.default,
      multipleOf_1.default,
      // string
      limitLength_1.default,
      pattern_1.default,
      // object
      limitProperties_1.default,
      required_1.default,
      // array
      limitItems_1.default,
      uniqueItems_1.default,
      // any
      { keyword: "type", schemaType: ["string", "array"] },
      { keyword: "nullable", schemaType: "boolean" },
      const_1.default,
      enum_1.default
    ];
    exports.default = validation;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/additionalItems.js
var require_additionalItems = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/additionalItems.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.validateAdditionalItems = void 0;
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var error2 = {
      message: ({ params: { len } }) => (0, codegen_1.str)`must NOT have more than ${len} items`,
      params: ({ params: { len } }) => (0, codegen_1._)`{limit: ${len}}`
    };
    var def = {
      keyword: "additionalItems",
      type: "array",
      schemaType: ["boolean", "object"],
      before: "uniqueItems",
      error: error2,
      code(cxt) {
        const { parentSchema, it } = cxt;
        const { items } = parentSchema;
        if (!Array.isArray(items)) {
          (0, util_1.checkStrictMode)(it, '"additionalItems" is ignored when "items" is not an array of schemas');
          return;
        }
        validateAdditionalItems(cxt, items);
      }
    };
    function validateAdditionalItems(cxt, items) {
      const { gen, schema, data, keyword, it } = cxt;
      it.items = true;
      const len = gen.const("len", (0, codegen_1._)`${data}.length`);
      if (schema === false) {
        cxt.setParams({ len: items.length });
        cxt.pass((0, codegen_1._)`${len} <= ${items.length}`);
      } else if (typeof schema == "object" && !(0, util_1.alwaysValidSchema)(it, schema)) {
        const valid = gen.var("valid", (0, codegen_1._)`${len} <= ${items.length}`);
        gen.if((0, codegen_1.not)(valid), () => validateItems(valid));
        cxt.ok(valid);
      }
      function validateItems(valid) {
        gen.forRange("i", items.length, len, (i) => {
          cxt.subschema({ keyword, dataProp: i, dataPropType: util_1.Type.Num }, valid);
          if (!it.allErrors)
            gen.if((0, codegen_1.not)(valid), () => gen.break());
        });
      }
    }
    exports.validateAdditionalItems = validateAdditionalItems;
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/items.js
var require_items = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/items.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.validateTuple = void 0;
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var code_1 = require_code2();
    var def = {
      keyword: "items",
      type: "array",
      schemaType: ["object", "array", "boolean"],
      before: "uniqueItems",
      code(cxt) {
        const { schema, it } = cxt;
        if (Array.isArray(schema))
          return validateTuple(cxt, "additionalItems", schema);
        it.items = true;
        if ((0, util_1.alwaysValidSchema)(it, schema))
          return;
        cxt.ok((0, code_1.validateArray)(cxt));
      }
    };
    function validateTuple(cxt, extraItems, schArr = cxt.schema) {
      const { gen, parentSchema, data, keyword, it } = cxt;
      checkStrictTuple(parentSchema);
      if (it.opts.unevaluated && schArr.length && it.items !== true) {
        it.items = util_1.mergeEvaluated.items(gen, schArr.length, it.items);
      }
      const valid = gen.name("valid");
      const len = gen.const("len", (0, codegen_1._)`${data}.length`);
      schArr.forEach((sch, i) => {
        if ((0, util_1.alwaysValidSchema)(it, sch))
          return;
        gen.if((0, codegen_1._)`${len} > ${i}`, () => cxt.subschema({
          keyword,
          schemaProp: i,
          dataProp: i
        }, valid));
        cxt.ok(valid);
      });
      function checkStrictTuple(sch) {
        const { opts, errSchemaPath } = it;
        const l = schArr.length;
        const fullTuple = l === sch.minItems && (l === sch.maxItems || sch[extraItems] === false);
        if (opts.strictTuples && !fullTuple) {
          const msg = `"${keyword}" is ${l}-tuple, but minItems or maxItems/${extraItems} are not specified or different at path "${errSchemaPath}"`;
          (0, util_1.checkStrictMode)(it, msg, opts.strictTuples);
        }
      }
    }
    exports.validateTuple = validateTuple;
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/prefixItems.js
var require_prefixItems = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/prefixItems.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var items_1 = require_items();
    var def = {
      keyword: "prefixItems",
      type: "array",
      schemaType: ["array"],
      before: "uniqueItems",
      code: (cxt) => (0, items_1.validateTuple)(cxt, "items")
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/items2020.js
var require_items2020 = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/items2020.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var code_1 = require_code2();
    var additionalItems_1 = require_additionalItems();
    var error2 = {
      message: ({ params: { len } }) => (0, codegen_1.str)`must NOT have more than ${len} items`,
      params: ({ params: { len } }) => (0, codegen_1._)`{limit: ${len}}`
    };
    var def = {
      keyword: "items",
      type: "array",
      schemaType: ["object", "boolean"],
      before: "uniqueItems",
      error: error2,
      code(cxt) {
        const { schema, parentSchema, it } = cxt;
        const { prefixItems } = parentSchema;
        it.items = true;
        if ((0, util_1.alwaysValidSchema)(it, schema))
          return;
        if (prefixItems)
          (0, additionalItems_1.validateAdditionalItems)(cxt, prefixItems);
        else
          cxt.ok((0, code_1.validateArray)(cxt));
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/contains.js
var require_contains = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/contains.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var error2 = {
      message: ({ params: { min, max } }) => max === void 0 ? (0, codegen_1.str)`must contain at least ${min} valid item(s)` : (0, codegen_1.str)`must contain at least ${min} and no more than ${max} valid item(s)`,
      params: ({ params: { min, max } }) => max === void 0 ? (0, codegen_1._)`{minContains: ${min}}` : (0, codegen_1._)`{minContains: ${min}, maxContains: ${max}}`
    };
    var def = {
      keyword: "contains",
      type: "array",
      schemaType: ["object", "boolean"],
      before: "uniqueItems",
      trackErrors: true,
      error: error2,
      code(cxt) {
        const { gen, schema, parentSchema, data, it } = cxt;
        let min;
        let max;
        const { minContains, maxContains } = parentSchema;
        if (it.opts.next) {
          min = minContains === void 0 ? 1 : minContains;
          max = maxContains;
        } else {
          min = 1;
        }
        const len = gen.const("len", (0, codegen_1._)`${data}.length`);
        cxt.setParams({ min, max });
        if (max === void 0 && min === 0) {
          (0, util_1.checkStrictMode)(it, `"minContains" == 0 without "maxContains": "contains" keyword ignored`);
          return;
        }
        if (max !== void 0 && min > max) {
          (0, util_1.checkStrictMode)(it, `"minContains" > "maxContains" is always invalid`);
          cxt.fail();
          return;
        }
        if ((0, util_1.alwaysValidSchema)(it, schema)) {
          let cond = (0, codegen_1._)`${len} >= ${min}`;
          if (max !== void 0)
            cond = (0, codegen_1._)`${cond} && ${len} <= ${max}`;
          cxt.pass(cond);
          return;
        }
        it.items = true;
        const valid = gen.name("valid");
        if (max === void 0 && min === 1) {
          validateItems(valid, () => gen.if(valid, () => gen.break()));
        } else if (min === 0) {
          gen.let(valid, true);
          if (max !== void 0)
            gen.if((0, codegen_1._)`${data}.length > 0`, validateItemsWithCount);
        } else {
          gen.let(valid, false);
          validateItemsWithCount();
        }
        cxt.result(valid, () => cxt.reset());
        function validateItemsWithCount() {
          const schValid = gen.name("_valid");
          const count = gen.let("count", 0);
          validateItems(schValid, () => gen.if(schValid, () => checkLimits(count)));
        }
        function validateItems(_valid, block) {
          gen.forRange("i", 0, len, (i) => {
            cxt.subschema({
              keyword: "contains",
              dataProp: i,
              dataPropType: util_1.Type.Num,
              compositeRule: true
            }, _valid);
            block();
          });
        }
        function checkLimits(count) {
          gen.code((0, codegen_1._)`${count}++`);
          if (max === void 0) {
            gen.if((0, codegen_1._)`${count} >= ${min}`, () => gen.assign(valid, true).break());
          } else {
            gen.if((0, codegen_1._)`${count} > ${max}`, () => gen.assign(valid, false).break());
            if (min === 1)
              gen.assign(valid, true);
            else
              gen.if((0, codegen_1._)`${count} >= ${min}`, () => gen.assign(valid, true));
          }
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/dependencies.js
var require_dependencies = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/dependencies.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.validateSchemaDeps = exports.validatePropertyDeps = exports.error = void 0;
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var code_1 = require_code2();
    exports.error = {
      message: ({ params: { property, depsCount, deps } }) => {
        const property_ies = depsCount === 1 ? "property" : "properties";
        return (0, codegen_1.str)`must have ${property_ies} ${deps} when property ${property} is present`;
      },
      params: ({ params: { property, depsCount, deps, missingProperty } }) => (0, codegen_1._)`{property: ${property},
    missingProperty: ${missingProperty},
    depsCount: ${depsCount},
    deps: ${deps}}`
      // TODO change to reference
    };
    var def = {
      keyword: "dependencies",
      type: "object",
      schemaType: "object",
      error: exports.error,
      code(cxt) {
        const [propDeps, schDeps] = splitDependencies(cxt);
        validatePropertyDeps(cxt, propDeps);
        validateSchemaDeps(cxt, schDeps);
      }
    };
    function splitDependencies({ schema }) {
      const propertyDeps = {};
      const schemaDeps = {};
      for (const key in schema) {
        if (key === "__proto__")
          continue;
        const deps = Array.isArray(schema[key]) ? propertyDeps : schemaDeps;
        deps[key] = schema[key];
      }
      return [propertyDeps, schemaDeps];
    }
    function validatePropertyDeps(cxt, propertyDeps = cxt.schema) {
      const { gen, data, it } = cxt;
      if (Object.keys(propertyDeps).length === 0)
        return;
      const missing = gen.let("missing");
      for (const prop in propertyDeps) {
        const deps = propertyDeps[prop];
        if (deps.length === 0)
          continue;
        const hasProperty = (0, code_1.propertyInData)(gen, data, prop, it.opts.ownProperties);
        cxt.setParams({
          property: prop,
          depsCount: deps.length,
          deps: deps.join(", ")
        });
        if (it.allErrors) {
          gen.if(hasProperty, () => {
            for (const depProp of deps) {
              (0, code_1.checkReportMissingProp)(cxt, depProp);
            }
          });
        } else {
          gen.if((0, codegen_1._)`${hasProperty} && (${(0, code_1.checkMissingProp)(cxt, deps, missing)})`);
          (0, code_1.reportMissingProp)(cxt, missing);
          gen.else();
        }
      }
    }
    exports.validatePropertyDeps = validatePropertyDeps;
    function validateSchemaDeps(cxt, schemaDeps = cxt.schema) {
      const { gen, data, keyword, it } = cxt;
      const valid = gen.name("valid");
      for (const prop in schemaDeps) {
        if ((0, util_1.alwaysValidSchema)(it, schemaDeps[prop]))
          continue;
        gen.if(
          (0, code_1.propertyInData)(gen, data, prop, it.opts.ownProperties),
          () => {
            const schCxt = cxt.subschema({ keyword, schemaProp: prop }, valid);
            cxt.mergeValidEvaluated(schCxt, valid);
          },
          () => gen.var(valid, true)
          // TODO var
        );
        cxt.ok(valid);
      }
    }
    exports.validateSchemaDeps = validateSchemaDeps;
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/propertyNames.js
var require_propertyNames = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/propertyNames.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var error2 = {
      message: "property name must be valid",
      params: ({ params }) => (0, codegen_1._)`{propertyName: ${params.propertyName}}`
    };
    var def = {
      keyword: "propertyNames",
      type: "object",
      schemaType: ["object", "boolean"],
      error: error2,
      code(cxt) {
        const { gen, schema, data, it } = cxt;
        if ((0, util_1.alwaysValidSchema)(it, schema))
          return;
        const valid = gen.name("valid");
        gen.forIn("key", data, (key) => {
          cxt.setParams({ propertyName: key });
          cxt.subschema({
            keyword: "propertyNames",
            data: key,
            dataTypes: ["string"],
            propertyName: key,
            compositeRule: true
          }, valid);
          gen.if((0, codegen_1.not)(valid), () => {
            cxt.error(true);
            if (!it.allErrors)
              gen.break();
          });
        });
        cxt.ok(valid);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/additionalProperties.js
var require_additionalProperties = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/additionalProperties.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var code_1 = require_code2();
    var codegen_1 = require_codegen();
    var names_1 = require_names();
    var util_1 = require_util();
    var error2 = {
      message: "must NOT have additional properties",
      params: ({ params }) => (0, codegen_1._)`{additionalProperty: ${params.additionalProperty}}`
    };
    var def = {
      keyword: "additionalProperties",
      type: ["object"],
      schemaType: ["boolean", "object"],
      allowUndefined: true,
      trackErrors: true,
      error: error2,
      code(cxt) {
        const { gen, schema, parentSchema, data, errsCount, it } = cxt;
        if (!errsCount)
          throw new Error("ajv implementation error");
        const { allErrors, opts } = it;
        it.props = true;
        if (opts.removeAdditional !== "all" && (0, util_1.alwaysValidSchema)(it, schema))
          return;
        const props = (0, code_1.allSchemaProperties)(parentSchema.properties);
        const patProps = (0, code_1.allSchemaProperties)(parentSchema.patternProperties);
        checkAdditionalProperties();
        cxt.ok((0, codegen_1._)`${errsCount} === ${names_1.default.errors}`);
        function checkAdditionalProperties() {
          gen.forIn("key", data, (key) => {
            if (!props.length && !patProps.length)
              additionalPropertyCode(key);
            else
              gen.if(isAdditional(key), () => additionalPropertyCode(key));
          });
        }
        function isAdditional(key) {
          let definedProp;
          if (props.length > 8) {
            const propsSchema = (0, util_1.schemaRefOrVal)(it, parentSchema.properties, "properties");
            definedProp = (0, code_1.isOwnProperty)(gen, propsSchema, key);
          } else if (props.length) {
            definedProp = (0, codegen_1.or)(...props.map((p) => (0, codegen_1._)`${key} === ${p}`));
          } else {
            definedProp = codegen_1.nil;
          }
          if (patProps.length) {
            definedProp = (0, codegen_1.or)(definedProp, ...patProps.map((p) => (0, codegen_1._)`${(0, code_1.usePattern)(cxt, p)}.test(${key})`));
          }
          return (0, codegen_1.not)(definedProp);
        }
        function deleteAdditional(key) {
          gen.code((0, codegen_1._)`delete ${data}[${key}]`);
        }
        function additionalPropertyCode(key) {
          if (opts.removeAdditional === "all" || opts.removeAdditional && schema === false) {
            deleteAdditional(key);
            return;
          }
          if (schema === false) {
            cxt.setParams({ additionalProperty: key });
            cxt.error();
            if (!allErrors)
              gen.break();
            return;
          }
          if (typeof schema == "object" && !(0, util_1.alwaysValidSchema)(it, schema)) {
            const valid = gen.name("valid");
            if (opts.removeAdditional === "failing") {
              applyAdditionalSchema(key, valid, false);
              gen.if((0, codegen_1.not)(valid), () => {
                cxt.reset();
                deleteAdditional(key);
              });
            } else {
              applyAdditionalSchema(key, valid);
              if (!allErrors)
                gen.if((0, codegen_1.not)(valid), () => gen.break());
            }
          }
        }
        function applyAdditionalSchema(key, valid, errors) {
          const subschema = {
            keyword: "additionalProperties",
            dataProp: key,
            dataPropType: util_1.Type.Str
          };
          if (errors === false) {
            Object.assign(subschema, {
              compositeRule: true,
              createErrors: false,
              allErrors: false
            });
          }
          cxt.subschema(subschema, valid);
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/properties.js
var require_properties = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/properties.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var validate_1 = require_validate();
    var code_1 = require_code2();
    var util_1 = require_util();
    var additionalProperties_1 = require_additionalProperties();
    var def = {
      keyword: "properties",
      type: "object",
      schemaType: "object",
      code(cxt) {
        const { gen, schema, parentSchema, data, it } = cxt;
        if (it.opts.removeAdditional === "all" && parentSchema.additionalProperties === void 0) {
          additionalProperties_1.default.code(new validate_1.KeywordCxt(it, additionalProperties_1.default, "additionalProperties"));
        }
        const allProps = (0, code_1.allSchemaProperties)(schema);
        for (const prop of allProps) {
          it.definedProperties.add(prop);
        }
        if (it.opts.unevaluated && allProps.length && it.props !== true) {
          it.props = util_1.mergeEvaluated.props(gen, (0, util_1.toHash)(allProps), it.props);
        }
        const properties = allProps.filter((p) => !(0, util_1.alwaysValidSchema)(it, schema[p]));
        if (properties.length === 0)
          return;
        const valid = gen.name("valid");
        for (const prop of properties) {
          if (hasDefault(prop)) {
            applyPropertySchema(prop);
          } else {
            gen.if((0, code_1.propertyInData)(gen, data, prop, it.opts.ownProperties));
            applyPropertySchema(prop);
            if (!it.allErrors)
              gen.else().var(valid, true);
            gen.endIf();
          }
          cxt.it.definedProperties.add(prop);
          cxt.ok(valid);
        }
        function hasDefault(prop) {
          return it.opts.useDefaults && !it.compositeRule && schema[prop].default !== void 0;
        }
        function applyPropertySchema(prop) {
          cxt.subschema({
            keyword: "properties",
            schemaProp: prop,
            dataProp: prop
          }, valid);
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/patternProperties.js
var require_patternProperties = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/patternProperties.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var code_1 = require_code2();
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var util_2 = require_util();
    var def = {
      keyword: "patternProperties",
      type: "object",
      schemaType: "object",
      code(cxt) {
        const { gen, schema, data, parentSchema, it } = cxt;
        const { opts } = it;
        const patterns = (0, code_1.allSchemaProperties)(schema);
        const alwaysValidPatterns = patterns.filter((p) => (0, util_1.alwaysValidSchema)(it, schema[p]));
        if (patterns.length === 0 || alwaysValidPatterns.length === patterns.length && (!it.opts.unevaluated || it.props === true)) {
          return;
        }
        const checkProperties = opts.strictSchema && !opts.allowMatchingProperties && parentSchema.properties;
        const valid = gen.name("valid");
        if (it.props !== true && !(it.props instanceof codegen_1.Name)) {
          it.props = (0, util_2.evaluatedPropsToName)(gen, it.props);
        }
        const { props } = it;
        validatePatternProperties();
        function validatePatternProperties() {
          for (const pat of patterns) {
            if (checkProperties)
              checkMatchingProperties(pat);
            if (it.allErrors) {
              validateProperties(pat);
            } else {
              gen.var(valid, true);
              validateProperties(pat);
              gen.if(valid);
            }
          }
        }
        function checkMatchingProperties(pat) {
          for (const prop in checkProperties) {
            if (new RegExp(pat).test(prop)) {
              (0, util_1.checkStrictMode)(it, `property ${prop} matches pattern ${pat} (use allowMatchingProperties)`);
            }
          }
        }
        function validateProperties(pat) {
          gen.forIn("key", data, (key) => {
            gen.if((0, codegen_1._)`${(0, code_1.usePattern)(cxt, pat)}.test(${key})`, () => {
              const alwaysValid = alwaysValidPatterns.includes(pat);
              if (!alwaysValid) {
                cxt.subschema({
                  keyword: "patternProperties",
                  schemaProp: pat,
                  dataProp: key,
                  dataPropType: util_2.Type.Str
                }, valid);
              }
              if (it.opts.unevaluated && props !== true) {
                gen.assign((0, codegen_1._)`${props}[${key}]`, true);
              } else if (!alwaysValid && !it.allErrors) {
                gen.if((0, codegen_1.not)(valid), () => gen.break());
              }
            });
          });
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/not.js
var require_not = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/not.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var util_1 = require_util();
    var def = {
      keyword: "not",
      schemaType: ["object", "boolean"],
      trackErrors: true,
      code(cxt) {
        const { gen, schema, it } = cxt;
        if ((0, util_1.alwaysValidSchema)(it, schema)) {
          cxt.fail();
          return;
        }
        const valid = gen.name("valid");
        cxt.subschema({
          keyword: "not",
          compositeRule: true,
          createErrors: false,
          allErrors: false
        }, valid);
        cxt.failResult(valid, () => cxt.reset(), () => cxt.error());
      },
      error: { message: "must NOT be valid" }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/anyOf.js
var require_anyOf = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/anyOf.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var code_1 = require_code2();
    var def = {
      keyword: "anyOf",
      schemaType: "array",
      trackErrors: true,
      code: code_1.validateUnion,
      error: { message: "must match a schema in anyOf" }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/oneOf.js
var require_oneOf = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/oneOf.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var error2 = {
      message: "must match exactly one schema in oneOf",
      params: ({ params }) => (0, codegen_1._)`{passingSchemas: ${params.passing}}`
    };
    var def = {
      keyword: "oneOf",
      schemaType: "array",
      trackErrors: true,
      error: error2,
      code(cxt) {
        const { gen, schema, parentSchema, it } = cxt;
        if (!Array.isArray(schema))
          throw new Error("ajv implementation error");
        if (it.opts.discriminator && parentSchema.discriminator)
          return;
        const schArr = schema;
        const valid = gen.let("valid", false);
        const passing = gen.let("passing", null);
        const schValid = gen.name("_valid");
        cxt.setParams({ passing });
        gen.block(validateOneOf);
        cxt.result(valid, () => cxt.reset(), () => cxt.error(true));
        function validateOneOf() {
          schArr.forEach((sch, i) => {
            let schCxt;
            if ((0, util_1.alwaysValidSchema)(it, sch)) {
              gen.var(schValid, true);
            } else {
              schCxt = cxt.subschema({
                keyword: "oneOf",
                schemaProp: i,
                compositeRule: true
              }, schValid);
            }
            if (i > 0) {
              gen.if((0, codegen_1._)`${schValid} && ${valid}`).assign(valid, false).assign(passing, (0, codegen_1._)`[${passing}, ${i}]`).else();
            }
            gen.if(schValid, () => {
              gen.assign(valid, true);
              gen.assign(passing, i);
              if (schCxt)
                cxt.mergeEvaluated(schCxt, codegen_1.Name);
            });
          });
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/allOf.js
var require_allOf = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/allOf.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var util_1 = require_util();
    var def = {
      keyword: "allOf",
      schemaType: "array",
      code(cxt) {
        const { gen, schema, it } = cxt;
        if (!Array.isArray(schema))
          throw new Error("ajv implementation error");
        const valid = gen.name("valid");
        schema.forEach((sch, i) => {
          if ((0, util_1.alwaysValidSchema)(it, sch))
            return;
          const schCxt = cxt.subschema({ keyword: "allOf", schemaProp: i }, valid);
          cxt.ok(valid);
          cxt.mergeEvaluated(schCxt);
        });
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/if.js
var require_if = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/if.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var util_1 = require_util();
    var error2 = {
      message: ({ params }) => (0, codegen_1.str)`must match "${params.ifClause}" schema`,
      params: ({ params }) => (0, codegen_1._)`{failingKeyword: ${params.ifClause}}`
    };
    var def = {
      keyword: "if",
      schemaType: ["object", "boolean"],
      trackErrors: true,
      error: error2,
      code(cxt) {
        const { gen, parentSchema, it } = cxt;
        if (parentSchema.then === void 0 && parentSchema.else === void 0) {
          (0, util_1.checkStrictMode)(it, '"if" without "then" and "else" is ignored');
        }
        const hasThen = hasSchema(it, "then");
        const hasElse = hasSchema(it, "else");
        if (!hasThen && !hasElse)
          return;
        const valid = gen.let("valid", true);
        const schValid = gen.name("_valid");
        validateIf();
        cxt.reset();
        if (hasThen && hasElse) {
          const ifClause = gen.let("ifClause");
          cxt.setParams({ ifClause });
          gen.if(schValid, validateClause("then", ifClause), validateClause("else", ifClause));
        } else if (hasThen) {
          gen.if(schValid, validateClause("then"));
        } else {
          gen.if((0, codegen_1.not)(schValid), validateClause("else"));
        }
        cxt.pass(valid, () => cxt.error(true));
        function validateIf() {
          const schCxt = cxt.subschema({
            keyword: "if",
            compositeRule: true,
            createErrors: false,
            allErrors: false
          }, schValid);
          cxt.mergeEvaluated(schCxt);
        }
        function validateClause(keyword, ifClause) {
          return () => {
            const schCxt = cxt.subschema({ keyword }, schValid);
            gen.assign(valid, schValid);
            cxt.mergeValidEvaluated(schCxt, valid);
            if (ifClause)
              gen.assign(ifClause, (0, codegen_1._)`${keyword}`);
            else
              cxt.setParams({ ifClause: keyword });
          };
        }
      }
    };
    function hasSchema(it, keyword) {
      const schema = it.schema[keyword];
      return schema !== void 0 && !(0, util_1.alwaysValidSchema)(it, schema);
    }
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/thenElse.js
var require_thenElse = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/thenElse.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var util_1 = require_util();
    var def = {
      keyword: ["then", "else"],
      schemaType: ["object", "boolean"],
      code({ keyword, parentSchema, it }) {
        if (parentSchema.if === void 0)
          (0, util_1.checkStrictMode)(it, `"${keyword}" without "if" is ignored`);
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/index.js
var require_applicator = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/applicator/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var additionalItems_1 = require_additionalItems();
    var prefixItems_1 = require_prefixItems();
    var items_1 = require_items();
    var items2020_1 = require_items2020();
    var contains_1 = require_contains();
    var dependencies_1 = require_dependencies();
    var propertyNames_1 = require_propertyNames();
    var additionalProperties_1 = require_additionalProperties();
    var properties_1 = require_properties();
    var patternProperties_1 = require_patternProperties();
    var not_1 = require_not();
    var anyOf_1 = require_anyOf();
    var oneOf_1 = require_oneOf();
    var allOf_1 = require_allOf();
    var if_1 = require_if();
    var thenElse_1 = require_thenElse();
    function getApplicator(draft2020 = false) {
      const applicator = [
        // any
        not_1.default,
        anyOf_1.default,
        oneOf_1.default,
        allOf_1.default,
        if_1.default,
        thenElse_1.default,
        // object
        propertyNames_1.default,
        additionalProperties_1.default,
        dependencies_1.default,
        properties_1.default,
        patternProperties_1.default
      ];
      if (draft2020)
        applicator.push(prefixItems_1.default, items2020_1.default);
      else
        applicator.push(additionalItems_1.default, items_1.default);
      applicator.push(contains_1.default);
      return applicator;
    }
    exports.default = getApplicator;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/format/format.js
var require_format = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/format/format.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var error2 = {
      message: ({ schemaCode }) => (0, codegen_1.str)`must match format "${schemaCode}"`,
      params: ({ schemaCode }) => (0, codegen_1._)`{format: ${schemaCode}}`
    };
    var def = {
      keyword: "format",
      type: ["number", "string"],
      schemaType: "string",
      $data: true,
      error: error2,
      code(cxt, ruleType) {
        const { gen, data, $data, schema, schemaCode, it } = cxt;
        const { opts, errSchemaPath, schemaEnv, self } = it;
        if (!opts.validateFormats)
          return;
        if ($data)
          validate$DataFormat();
        else
          validateFormat();
        function validate$DataFormat() {
          const fmts = gen.scopeValue("formats", {
            ref: self.formats,
            code: opts.code.formats
          });
          const fDef = gen.const("fDef", (0, codegen_1._)`${fmts}[${schemaCode}]`);
          const fType = gen.let("fType");
          const format = gen.let("format");
          gen.if((0, codegen_1._)`typeof ${fDef} == "object" && !(${fDef} instanceof RegExp)`, () => gen.assign(fType, (0, codegen_1._)`${fDef}.type || "string"`).assign(format, (0, codegen_1._)`${fDef}.validate`), () => gen.assign(fType, (0, codegen_1._)`"string"`).assign(format, fDef));
          cxt.fail$data((0, codegen_1.or)(unknownFmt(), invalidFmt()));
          function unknownFmt() {
            if (opts.strictSchema === false)
              return codegen_1.nil;
            return (0, codegen_1._)`${schemaCode} && !${format}`;
          }
          function invalidFmt() {
            const callFormat = schemaEnv.$async ? (0, codegen_1._)`(${fDef}.async ? await ${format}(${data}) : ${format}(${data}))` : (0, codegen_1._)`${format}(${data})`;
            const validData = (0, codegen_1._)`(typeof ${format} == "function" ? ${callFormat} : ${format}.test(${data}))`;
            return (0, codegen_1._)`${format} && ${format} !== true && ${fType} === ${ruleType} && !${validData}`;
          }
        }
        function validateFormat() {
          const formatDef = self.formats[schema];
          if (!formatDef) {
            unknownFormat();
            return;
          }
          if (formatDef === true)
            return;
          const [fmtType, format, fmtRef] = getFormat(formatDef);
          if (fmtType === ruleType)
            cxt.pass(validCondition());
          function unknownFormat() {
            if (opts.strictSchema === false) {
              self.logger.warn(unknownMsg());
              return;
            }
            throw new Error(unknownMsg());
            function unknownMsg() {
              return `unknown format "${schema}" ignored in schema at path "${errSchemaPath}"`;
            }
          }
          function getFormat(fmtDef) {
            const code = fmtDef instanceof RegExp ? (0, codegen_1.regexpCode)(fmtDef) : opts.code.formats ? (0, codegen_1._)`${opts.code.formats}${(0, codegen_1.getProperty)(schema)}` : void 0;
            const fmt = gen.scopeValue("formats", { key: schema, ref: fmtDef, code });
            if (typeof fmtDef == "object" && !(fmtDef instanceof RegExp)) {
              return [fmtDef.type || "string", fmtDef.validate, (0, codegen_1._)`${fmt}.validate`];
            }
            return ["string", fmtDef, fmt];
          }
          function validCondition() {
            if (typeof formatDef == "object" && !(formatDef instanceof RegExp) && formatDef.async) {
              if (!schemaEnv.$async)
                throw new Error("async format in sync schema");
              return (0, codegen_1._)`await ${fmtRef}(${data})`;
            }
            return typeof format == "function" ? (0, codegen_1._)`${fmtRef}(${data})` : (0, codegen_1._)`${fmtRef}.test(${data})`;
          }
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/format/index.js
var require_format2 = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/format/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var format_1 = require_format();
    var format = [format_1.default];
    exports.default = format;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/metadata.js
var require_metadata = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/metadata.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.contentVocabulary = exports.metadataVocabulary = void 0;
    exports.metadataVocabulary = [
      "title",
      "description",
      "default",
      "deprecated",
      "readOnly",
      "writeOnly",
      "examples"
    ];
    exports.contentVocabulary = [
      "contentMediaType",
      "contentEncoding",
      "contentSchema"
    ];
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/draft7.js
var require_draft7 = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/draft7.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var core_1 = require_core2();
    var validation_1 = require_validation();
    var applicator_1 = require_applicator();
    var format_1 = require_format2();
    var metadata_1 = require_metadata();
    var draft7Vocabularies = [
      core_1.default,
      validation_1.default,
      (0, applicator_1.default)(),
      format_1.default,
      metadata_1.metadataVocabulary,
      metadata_1.contentVocabulary
    ];
    exports.default = draft7Vocabularies;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/discriminator/types.js
var require_types = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/discriminator/types.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.DiscrError = void 0;
    var DiscrError;
    (function(DiscrError2) {
      DiscrError2["Tag"] = "tag";
      DiscrError2["Mapping"] = "mapping";
    })(DiscrError || (exports.DiscrError = DiscrError = {}));
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/discriminator/index.js
var require_discriminator = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/vocabularies/discriminator/index.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var codegen_1 = require_codegen();
    var types_1 = require_types();
    var compile_1 = require_compile();
    var ref_error_1 = require_ref_error();
    var util_1 = require_util();
    var error2 = {
      message: ({ params: { discrError, tagName } }) => discrError === types_1.DiscrError.Tag ? `tag "${tagName}" must be string` : `value of tag "${tagName}" must be in oneOf`,
      params: ({ params: { discrError, tag, tagName } }) => (0, codegen_1._)`{error: ${discrError}, tag: ${tagName}, tagValue: ${tag}}`
    };
    var def = {
      keyword: "discriminator",
      type: "object",
      schemaType: "object",
      error: error2,
      code(cxt) {
        const { gen, data, schema, parentSchema, it } = cxt;
        const { oneOf } = parentSchema;
        if (!it.opts.discriminator) {
          throw new Error("discriminator: requires discriminator option");
        }
        const tagName = schema.propertyName;
        if (typeof tagName != "string")
          throw new Error("discriminator: requires propertyName");
        if (schema.mapping)
          throw new Error("discriminator: mapping is not supported");
        if (!oneOf)
          throw new Error("discriminator: requires oneOf keyword");
        const valid = gen.let("valid", false);
        const tag = gen.const("tag", (0, codegen_1._)`${data}${(0, codegen_1.getProperty)(tagName)}`);
        gen.if((0, codegen_1._)`typeof ${tag} == "string"`, () => validateMapping(), () => cxt.error(false, { discrError: types_1.DiscrError.Tag, tag, tagName }));
        cxt.ok(valid);
        function validateMapping() {
          const mapping = getMapping();
          gen.if(false);
          for (const tagValue in mapping) {
            gen.elseIf((0, codegen_1._)`${tag} === ${tagValue}`);
            gen.assign(valid, applyTagSchema(mapping[tagValue]));
          }
          gen.else();
          cxt.error(false, { discrError: types_1.DiscrError.Mapping, tag, tagName });
          gen.endIf();
        }
        function applyTagSchema(schemaProp) {
          const _valid = gen.name("valid");
          const schCxt = cxt.subschema({ keyword: "oneOf", schemaProp }, _valid);
          cxt.mergeEvaluated(schCxt, codegen_1.Name);
          return _valid;
        }
        function getMapping() {
          var _a2;
          const oneOfMapping = {};
          const topRequired = hasRequired(parentSchema);
          let tagRequired = true;
          for (let i = 0; i < oneOf.length; i++) {
            let sch = oneOf[i];
            if ((sch === null || sch === void 0 ? void 0 : sch.$ref) && !(0, util_1.schemaHasRulesButRef)(sch, it.self.RULES)) {
              const ref = sch.$ref;
              sch = compile_1.resolveRef.call(it.self, it.schemaEnv.root, it.baseId, ref);
              if (sch instanceof compile_1.SchemaEnv)
                sch = sch.schema;
              if (sch === void 0)
                throw new ref_error_1.default(it.opts.uriResolver, it.baseId, ref);
            }
            const propSch = (_a2 = sch === null || sch === void 0 ? void 0 : sch.properties) === null || _a2 === void 0 ? void 0 : _a2[tagName];
            if (typeof propSch != "object") {
              throw new Error(`discriminator: oneOf subschemas (or referenced schemas) must have "properties/${tagName}"`);
            }
            tagRequired = tagRequired && (topRequired || hasRequired(sch));
            addMappings(propSch, i);
          }
          if (!tagRequired)
            throw new Error(`discriminator: "${tagName}" must be required`);
          return oneOfMapping;
          function hasRequired({ required: required2 }) {
            return Array.isArray(required2) && required2.includes(tagName);
          }
          function addMappings(sch, i) {
            if (sch.const) {
              addMapping(sch.const, i);
            } else if (sch.enum) {
              for (const tagValue of sch.enum) {
                addMapping(tagValue, i);
              }
            } else {
              throw new Error(`discriminator: "properties/${tagName}" must have "const" or "enum"`);
            }
          }
          function addMapping(tagValue, i) {
            if (typeof tagValue != "string" || tagValue in oneOfMapping) {
              throw new Error(`discriminator: "${tagName}" values must be unique strings`);
            }
            oneOfMapping[tagValue] = i;
          }
        }
      }
    };
    exports.default = def;
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/refs/json-schema-draft-07.json
var require_json_schema_draft_07 = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/refs/json-schema-draft-07.json"(exports, module) {
    module.exports = {
      $schema: "http://json-schema.org/draft-07/schema#",
      $id: "http://json-schema.org/draft-07/schema#",
      title: "Core schema meta-schema",
      definitions: {
        schemaArray: {
          type: "array",
          minItems: 1,
          items: { $ref: "#" }
        },
        nonNegativeInteger: {
          type: "integer",
          minimum: 0
        },
        nonNegativeIntegerDefault0: {
          allOf: [{ $ref: "#/definitions/nonNegativeInteger" }, { default: 0 }]
        },
        simpleTypes: {
          enum: ["array", "boolean", "integer", "null", "number", "object", "string"]
        },
        stringArray: {
          type: "array",
          items: { type: "string" },
          uniqueItems: true,
          default: []
        }
      },
      type: ["object", "boolean"],
      properties: {
        $id: {
          type: "string",
          format: "uri-reference"
        },
        $schema: {
          type: "string",
          format: "uri"
        },
        $ref: {
          type: "string",
          format: "uri-reference"
        },
        $comment: {
          type: "string"
        },
        title: {
          type: "string"
        },
        description: {
          type: "string"
        },
        default: true,
        readOnly: {
          type: "boolean",
          default: false
        },
        examples: {
          type: "array",
          items: true
        },
        multipleOf: {
          type: "number",
          exclusiveMinimum: 0
        },
        maximum: {
          type: "number"
        },
        exclusiveMaximum: {
          type: "number"
        },
        minimum: {
          type: "number"
        },
        exclusiveMinimum: {
          type: "number"
        },
        maxLength: { $ref: "#/definitions/nonNegativeInteger" },
        minLength: { $ref: "#/definitions/nonNegativeIntegerDefault0" },
        pattern: {
          type: "string",
          format: "regex"
        },
        additionalItems: { $ref: "#" },
        items: {
          anyOf: [{ $ref: "#" }, { $ref: "#/definitions/schemaArray" }],
          default: true
        },
        maxItems: { $ref: "#/definitions/nonNegativeInteger" },
        minItems: { $ref: "#/definitions/nonNegativeIntegerDefault0" },
        uniqueItems: {
          type: "boolean",
          default: false
        },
        contains: { $ref: "#" },
        maxProperties: { $ref: "#/definitions/nonNegativeInteger" },
        minProperties: { $ref: "#/definitions/nonNegativeIntegerDefault0" },
        required: { $ref: "#/definitions/stringArray" },
        additionalProperties: { $ref: "#" },
        definitions: {
          type: "object",
          additionalProperties: { $ref: "#" },
          default: {}
        },
        properties: {
          type: "object",
          additionalProperties: { $ref: "#" },
          default: {}
        },
        patternProperties: {
          type: "object",
          additionalProperties: { $ref: "#" },
          propertyNames: { format: "regex" },
          default: {}
        },
        dependencies: {
          type: "object",
          additionalProperties: {
            anyOf: [{ $ref: "#" }, { $ref: "#/definitions/stringArray" }]
          }
        },
        propertyNames: { $ref: "#" },
        const: true,
        enum: {
          type: "array",
          items: true,
          minItems: 1,
          uniqueItems: true
        },
        type: {
          anyOf: [
            { $ref: "#/definitions/simpleTypes" },
            {
              type: "array",
              items: { $ref: "#/definitions/simpleTypes" },
              minItems: 1,
              uniqueItems: true
            }
          ]
        },
        format: { type: "string" },
        contentMediaType: { type: "string" },
        contentEncoding: { type: "string" },
        if: { $ref: "#" },
        then: { $ref: "#" },
        else: { $ref: "#" },
        allOf: { $ref: "#/definitions/schemaArray" },
        anyOf: { $ref: "#/definitions/schemaArray" },
        oneOf: { $ref: "#/definitions/schemaArray" },
        not: { $ref: "#" }
      },
      default: true
    };
  }
});

// node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/ajv.js
var require_ajv = __commonJS({
  "node_modules/.pnpm/ajv@8.17.1/node_modules/ajv/dist/ajv.js"(exports, module) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.MissingRefError = exports.ValidationError = exports.CodeGen = exports.Name = exports.nil = exports.stringify = exports.str = exports._ = exports.KeywordCxt = exports.Ajv = void 0;
    var core_1 = require_core();
    var draft7_1 = require_draft7();
    var discriminator_1 = require_discriminator();
    var draft7MetaSchema = require_json_schema_draft_07();
    var META_SUPPORT_DATA = ["/properties"];
    var META_SCHEMA_ID = "http://json-schema.org/draft-07/schema";
    var Ajv2 = class extends core_1.default {
      _addVocabularies() {
        super._addVocabularies();
        draft7_1.default.forEach((v) => this.addVocabulary(v));
        if (this.opts.discriminator)
          this.addKeyword(discriminator_1.default);
      }
      _addDefaultMetaSchema() {
        super._addDefaultMetaSchema();
        if (!this.opts.meta)
          return;
        const metaSchema = this.opts.$data ? this.$dataMetaSchema(draft7MetaSchema, META_SUPPORT_DATA) : draft7MetaSchema;
        this.addMetaSchema(metaSchema, META_SCHEMA_ID, false);
        this.refs["http://json-schema.org/schema"] = META_SCHEMA_ID;
      }
      defaultMeta() {
        return this.opts.defaultMeta = super.defaultMeta() || (this.getSchema(META_SCHEMA_ID) ? META_SCHEMA_ID : void 0);
      }
    };
    exports.Ajv = Ajv2;
    module.exports = exports = Ajv2;
    module.exports.Ajv = Ajv2;
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.default = Ajv2;
    var validate_1 = require_validate();
    Object.defineProperty(exports, "KeywordCxt", { enumerable: true, get: function() {
      return validate_1.KeywordCxt;
    } });
    var codegen_1 = require_codegen();
    Object.defineProperty(exports, "_", { enumerable: true, get: function() {
      return codegen_1._;
    } });
    Object.defineProperty(exports, "str", { enumerable: true, get: function() {
      return codegen_1.str;
    } });
    Object.defineProperty(exports, "stringify", { enumerable: true, get: function() {
      return codegen_1.stringify;
    } });
    Object.defineProperty(exports, "nil", { enumerable: true, get: function() {
      return codegen_1.nil;
    } });
    Object.defineProperty(exports, "Name", { enumerable: true, get: function() {
      return codegen_1.Name;
    } });
    Object.defineProperty(exports, "CodeGen", { enumerable: true, get: function() {
      return codegen_1.CodeGen;
    } });
    var validation_error_1 = require_validation_error();
    Object.defineProperty(exports, "ValidationError", { enumerable: true, get: function() {
      return validation_error_1.default;
    } });
    var ref_error_1 = require_ref_error();
    Object.defineProperty(exports, "MissingRefError", { enumerable: true, get: function() {
      return ref_error_1.default;
    } });
  }
});

// node_modules/.pnpm/ajv-formats@3.0.1_ajv@8.17.1/node_modules/ajv-formats/dist/formats.js
var require_formats = __commonJS({
  "node_modules/.pnpm/ajv-formats@3.0.1_ajv@8.17.1/node_modules/ajv-formats/dist/formats.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.formatNames = exports.fastFormats = exports.fullFormats = void 0;
    function fmtDef(validate, compare) {
      return { validate, compare };
    }
    exports.fullFormats = {
      // date: http://tools.ietf.org/html/rfc3339#section-5.6
      date: fmtDef(date3, compareDate),
      // date-time: http://tools.ietf.org/html/rfc3339#section-5.6
      time: fmtDef(getTime(true), compareTime),
      "date-time": fmtDef(getDateTime(true), compareDateTime),
      "iso-time": fmtDef(getTime(), compareIsoTime),
      "iso-date-time": fmtDef(getDateTime(), compareIsoDateTime),
      // duration: https://tools.ietf.org/html/rfc3339#appendix-A
      duration: /^P(?!$)((\d+Y)?(\d+M)?(\d+D)?(T(?=\d)(\d+H)?(\d+M)?(\d+S)?)?|(\d+W)?)$/,
      uri,
      "uri-reference": /^(?:[a-z][a-z0-9+\-.]*:)?(?:\/?\/(?:(?:[a-z0-9\-._~!$&'()*+,;=:]|%[0-9a-f]{2})*@)?(?:\[(?:(?:(?:(?:[0-9a-f]{1,4}:){6}|::(?:[0-9a-f]{1,4}:){5}|(?:[0-9a-f]{1,4})?::(?:[0-9a-f]{1,4}:){4}|(?:(?:[0-9a-f]{1,4}:){0,1}[0-9a-f]{1,4})?::(?:[0-9a-f]{1,4}:){3}|(?:(?:[0-9a-f]{1,4}:){0,2}[0-9a-f]{1,4})?::(?:[0-9a-f]{1,4}:){2}|(?:(?:[0-9a-f]{1,4}:){0,3}[0-9a-f]{1,4})?::[0-9a-f]{1,4}:|(?:(?:[0-9a-f]{1,4}:){0,4}[0-9a-f]{1,4})?::)(?:[0-9a-f]{1,4}:[0-9a-f]{1,4}|(?:(?:25[0-5]|2[0-4]\d|[01]?\d\d?)\.){3}(?:25[0-5]|2[0-4]\d|[01]?\d\d?))|(?:(?:[0-9a-f]{1,4}:){0,5}[0-9a-f]{1,4})?::[0-9a-f]{1,4}|(?:(?:[0-9a-f]{1,4}:){0,6}[0-9a-f]{1,4})?::)|[Vv][0-9a-f]+\.[a-z0-9\-._~!$&'()*+,;=:]+)\]|(?:(?:25[0-5]|2[0-4]\d|[01]?\d\d?)\.){3}(?:25[0-5]|2[0-4]\d|[01]?\d\d?)|(?:[a-z0-9\-._~!$&'"()*+,;=]|%[0-9a-f]{2})*)(?::\d*)?(?:\/(?:[a-z0-9\-._~!$&'"()*+,;=:@]|%[0-9a-f]{2})*)*|\/(?:(?:[a-z0-9\-._~!$&'"()*+,;=:@]|%[0-9a-f]{2})+(?:\/(?:[a-z0-9\-._~!$&'"()*+,;=:@]|%[0-9a-f]{2})*)*)?|(?:[a-z0-9\-._~!$&'"()*+,;=:@]|%[0-9a-f]{2})+(?:\/(?:[a-z0-9\-._~!$&'"()*+,;=:@]|%[0-9a-f]{2})*)*)?(?:\?(?:[a-z0-9\-._~!$&'"()*+,;=:@/?]|%[0-9a-f]{2})*)?(?:#(?:[a-z0-9\-._~!$&'"()*+,;=:@/?]|%[0-9a-f]{2})*)?$/i,
      // uri-template: https://tools.ietf.org/html/rfc6570
      "uri-template": /^(?:(?:[^\x00-\x20"'<>%\\^`{|}]|%[0-9a-f]{2})|\{[+#./;?&=,!@|]?(?:[a-z0-9_]|%[0-9a-f]{2})+(?::[1-9][0-9]{0,3}|\*)?(?:,(?:[a-z0-9_]|%[0-9a-f]{2})+(?::[1-9][0-9]{0,3}|\*)?)*\})*$/i,
      // For the source: https://gist.github.com/dperini/729294
      // For test cases: https://mathiasbynens.be/demo/url-regex
      url: /^(?:https?|ftp):\/\/(?:\S+(?::\S*)?@)?(?:(?!(?:10|127)(?:\.\d{1,3}){3})(?!(?:169\.254|192\.168)(?:\.\d{1,3}){2})(?!172\.(?:1[6-9]|2\d|3[0-1])(?:\.\d{1,3}){2})(?:[1-9]\d?|1\d\d|2[01]\d|22[0-3])(?:\.(?:1?\d{1,2}|2[0-4]\d|25[0-5])){2}(?:\.(?:[1-9]\d?|1\d\d|2[0-4]\d|25[0-4]))|(?:(?:[a-z0-9\u{00a1}-\u{ffff}]+-)*[a-z0-9\u{00a1}-\u{ffff}]+)(?:\.(?:[a-z0-9\u{00a1}-\u{ffff}]+-)*[a-z0-9\u{00a1}-\u{ffff}]+)*(?:\.(?:[a-z\u{00a1}-\u{ffff}]{2,})))(?::\d{2,5})?(?:\/[^\s]*)?$/iu,
      email: /^[a-z0-9!#$%&'*+/=?^_`{|}~-]+(?:\.[a-z0-9!#$%&'*+/=?^_`{|}~-]+)*@(?:[a-z0-9](?:[a-z0-9-]*[a-z0-9])?\.)+[a-z0-9](?:[a-z0-9-]*[a-z0-9])?$/i,
      hostname: /^(?=.{1,253}\.?$)[a-z0-9](?:[a-z0-9-]{0,61}[a-z0-9])?(?:\.[a-z0-9](?:[-0-9a-z]{0,61}[0-9a-z])?)*\.?$/i,
      // optimized https://www.safaribooksonline.com/library/view/regular-expressions-cookbook/9780596802837/ch07s16.html
      ipv4: /^(?:(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)\.){3}(?:25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)$/,
      ipv6: /^((([0-9a-f]{1,4}:){7}([0-9a-f]{1,4}|:))|(([0-9a-f]{1,4}:){6}(:[0-9a-f]{1,4}|((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3})|:))|(([0-9a-f]{1,4}:){5}(((:[0-9a-f]{1,4}){1,2})|:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3})|:))|(([0-9a-f]{1,4}:){4}(((:[0-9a-f]{1,4}){1,3})|((:[0-9a-f]{1,4})?:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9a-f]{1,4}:){3}(((:[0-9a-f]{1,4}){1,4})|((:[0-9a-f]{1,4}){0,2}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9a-f]{1,4}:){2}(((:[0-9a-f]{1,4}){1,5})|((:[0-9a-f]{1,4}){0,3}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(([0-9a-f]{1,4}:){1}(((:[0-9a-f]{1,4}){1,6})|((:[0-9a-f]{1,4}){0,4}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:))|(:(((:[0-9a-f]{1,4}){1,7})|((:[0-9a-f]{1,4}){0,5}:((25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)(\.(25[0-5]|2[0-4]\d|1\d\d|[1-9]?\d)){3}))|:)))$/i,
      regex,
      // uuid: http://tools.ietf.org/html/rfc4122
      uuid: /^(?:urn:uuid:)?[0-9a-f]{8}-(?:[0-9a-f]{4}-){3}[0-9a-f]{12}$/i,
      // JSON-pointer: https://tools.ietf.org/html/rfc6901
      // uri fragment: https://tools.ietf.org/html/rfc3986#appendix-A
      "json-pointer": /^(?:\/(?:[^~/]|~0|~1)*)*$/,
      "json-pointer-uri-fragment": /^#(?:\/(?:[a-z0-9_\-.!$&'()*+,;:=@]|%[0-9a-f]{2}|~0|~1)*)*$/i,
      // relative JSON-pointer: http://tools.ietf.org/html/draft-luff-relative-json-pointer-00
      "relative-json-pointer": /^(?:0|[1-9][0-9]*)(?:#|(?:\/(?:[^~/]|~0|~1)*)*)$/,
      // the following formats are used by the openapi specification: https://spec.openapis.org/oas/v3.0.0#data-types
      // byte: https://github.com/miguelmota/is-base64
      byte,
      // signed 32 bit integer
      int32: { type: "number", validate: validateInt32 },
      // signed 64 bit integer
      int64: { type: "number", validate: validateInt64 },
      // C-type float
      float: { type: "number", validate: validateNumber },
      // C-type double
      double: { type: "number", validate: validateNumber },
      // hint to the UI to hide input strings
      password: true,
      // unchecked string payload
      binary: true
    };
    exports.fastFormats = {
      ...exports.fullFormats,
      date: fmtDef(/^\d\d\d\d-[0-1]\d-[0-3]\d$/, compareDate),
      time: fmtDef(/^(?:[0-2]\d:[0-5]\d:[0-5]\d|23:59:60)(?:\.\d+)?(?:z|[+-]\d\d(?::?\d\d)?)$/i, compareTime),
      "date-time": fmtDef(/^\d\d\d\d-[0-1]\d-[0-3]\dt(?:[0-2]\d:[0-5]\d:[0-5]\d|23:59:60)(?:\.\d+)?(?:z|[+-]\d\d(?::?\d\d)?)$/i, compareDateTime),
      "iso-time": fmtDef(/^(?:[0-2]\d:[0-5]\d:[0-5]\d|23:59:60)(?:\.\d+)?(?:z|[+-]\d\d(?::?\d\d)?)?$/i, compareIsoTime),
      "iso-date-time": fmtDef(/^\d\d\d\d-[0-1]\d-[0-3]\d[t\s](?:[0-2]\d:[0-5]\d:[0-5]\d|23:59:60)(?:\.\d+)?(?:z|[+-]\d\d(?::?\d\d)?)?$/i, compareIsoDateTime),
      // uri: https://github.com/mafintosh/is-my-json-valid/blob/master/formats.js
      uri: /^(?:[a-z][a-z0-9+\-.]*:)(?:\/?\/)?[^\s]*$/i,
      "uri-reference": /^(?:(?:[a-z][a-z0-9+\-.]*:)?\/?\/)?(?:[^\\\s#][^\s#]*)?(?:#[^\\\s]*)?$/i,
      // email (sources from jsen validator):
      // http://stackoverflow.com/questions/201323/using-a-regular-expression-to-validate-an-email-address#answer-8829363
      // http://www.w3.org/TR/html5/forms.html#valid-e-mail-address (search for 'wilful violation')
      email: /^[a-z0-9.!#$%&'*+/=?^_`{|}~-]+@[a-z0-9](?:[a-z0-9-]{0,61}[a-z0-9])?(?:\.[a-z0-9](?:[a-z0-9-]{0,61}[a-z0-9])?)*$/i
    };
    exports.formatNames = Object.keys(exports.fullFormats);
    function isLeapYear(year) {
      return year % 4 === 0 && (year % 100 !== 0 || year % 400 === 0);
    }
    var DATE = /^(\d\d\d\d)-(\d\d)-(\d\d)$/;
    var DAYS = [0, 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31];
    function date3(str) {
      const matches = DATE.exec(str);
      if (!matches)
        return false;
      const year = +matches[1];
      const month = +matches[2];
      const day = +matches[3];
      return month >= 1 && month <= 12 && day >= 1 && day <= (month === 2 && isLeapYear(year) ? 29 : DAYS[month]);
    }
    function compareDate(d1, d2) {
      if (!(d1 && d2))
        return void 0;
      if (d1 > d2)
        return 1;
      if (d1 < d2)
        return -1;
      return 0;
    }
    var TIME = /^(\d\d):(\d\d):(\d\d(?:\.\d+)?)(z|([+-])(\d\d)(?::?(\d\d))?)?$/i;
    function getTime(strictTimeZone) {
      return function time3(str) {
        const matches = TIME.exec(str);
        if (!matches)
          return false;
        const hr = +matches[1];
        const min = +matches[2];
        const sec = +matches[3];
        const tz = matches[4];
        const tzSign = matches[5] === "-" ? -1 : 1;
        const tzH = +(matches[6] || 0);
        const tzM = +(matches[7] || 0);
        if (tzH > 23 || tzM > 59 || strictTimeZone && !tz)
          return false;
        if (hr <= 23 && min <= 59 && sec < 60)
          return true;
        const utcMin = min - tzM * tzSign;
        const utcHr = hr - tzH * tzSign - (utcMin < 0 ? 1 : 0);
        return (utcHr === 23 || utcHr === -1) && (utcMin === 59 || utcMin === -1) && sec < 61;
      };
    }
    function compareTime(s1, s2) {
      if (!(s1 && s2))
        return void 0;
      const t1 = (/* @__PURE__ */ new Date("2020-01-01T" + s1)).valueOf();
      const t2 = (/* @__PURE__ */ new Date("2020-01-01T" + s2)).valueOf();
      if (!(t1 && t2))
        return void 0;
      return t1 - t2;
    }
    function compareIsoTime(t1, t2) {
      if (!(t1 && t2))
        return void 0;
      const a1 = TIME.exec(t1);
      const a2 = TIME.exec(t2);
      if (!(a1 && a2))
        return void 0;
      t1 = a1[1] + a1[2] + a1[3];
      t2 = a2[1] + a2[2] + a2[3];
      if (t1 > t2)
        return 1;
      if (t1 < t2)
        return -1;
      return 0;
    }
    var DATE_TIME_SEPARATOR = /t|\s/i;
    function getDateTime(strictTimeZone) {
      const time3 = getTime(strictTimeZone);
      return function date_time(str) {
        const dateTime = str.split(DATE_TIME_SEPARATOR);
        return dateTime.length === 2 && date3(dateTime[0]) && time3(dateTime[1]);
      };
    }
    function compareDateTime(dt1, dt2) {
      if (!(dt1 && dt2))
        return void 0;
      const d1 = new Date(dt1).valueOf();
      const d2 = new Date(dt2).valueOf();
      if (!(d1 && d2))
        return void 0;
      return d1 - d2;
    }
    function compareIsoDateTime(dt1, dt2) {
      if (!(dt1 && dt2))
        return void 0;
      const [d1, t1] = dt1.split(DATE_TIME_SEPARATOR);
      const [d2, t2] = dt2.split(DATE_TIME_SEPARATOR);
      const res = compareDate(d1, d2);
      if (res === void 0)
        return void 0;
      return res || compareTime(t1, t2);
    }
    var NOT_URI_FRAGMENT = /\/|:/;
    var URI = /^(?:[a-z][a-z0-9+\-.]*:)(?:\/?\/(?:(?:[a-z0-9\-._~!$&'()*+,;=:]|%[0-9a-f]{2})*@)?(?:\[(?:(?:(?:(?:[0-9a-f]{1,4}:){6}|::(?:[0-9a-f]{1,4}:){5}|(?:[0-9a-f]{1,4})?::(?:[0-9a-f]{1,4}:){4}|(?:(?:[0-9a-f]{1,4}:){0,1}[0-9a-f]{1,4})?::(?:[0-9a-f]{1,4}:){3}|(?:(?:[0-9a-f]{1,4}:){0,2}[0-9a-f]{1,4})?::(?:[0-9a-f]{1,4}:){2}|(?:(?:[0-9a-f]{1,4}:){0,3}[0-9a-f]{1,4})?::[0-9a-f]{1,4}:|(?:(?:[0-9a-f]{1,4}:){0,4}[0-9a-f]{1,4})?::)(?:[0-9a-f]{1,4}:[0-9a-f]{1,4}|(?:(?:25[0-5]|2[0-4]\d|[01]?\d\d?)\.){3}(?:25[0-5]|2[0-4]\d|[01]?\d\d?))|(?:(?:[0-9a-f]{1,4}:){0,5}[0-9a-f]{1,4})?::[0-9a-f]{1,4}|(?:(?:[0-9a-f]{1,4}:){0,6}[0-9a-f]{1,4})?::)|[Vv][0-9a-f]+\.[a-z0-9\-._~!$&'()*+,;=:]+)\]|(?:(?:25[0-5]|2[0-4]\d|[01]?\d\d?)\.){3}(?:25[0-5]|2[0-4]\d|[01]?\d\d?)|(?:[a-z0-9\-._~!$&'()*+,;=]|%[0-9a-f]{2})*)(?::\d*)?(?:\/(?:[a-z0-9\-._~!$&'()*+,;=:@]|%[0-9a-f]{2})*)*|\/(?:(?:[a-z0-9\-._~!$&'()*+,;=:@]|%[0-9a-f]{2})+(?:\/(?:[a-z0-9\-._~!$&'()*+,;=:@]|%[0-9a-f]{2})*)*)?|(?:[a-z0-9\-._~!$&'()*+,;=:@]|%[0-9a-f]{2})+(?:\/(?:[a-z0-9\-._~!$&'()*+,;=:@]|%[0-9a-f]{2})*)*)(?:\?(?:[a-z0-9\-._~!$&'()*+,;=:@/?]|%[0-9a-f]{2})*)?(?:#(?:[a-z0-9\-._~!$&'()*+,;=:@/?]|%[0-9a-f]{2})*)?$/i;
    function uri(str) {
      return NOT_URI_FRAGMENT.test(str) && URI.test(str);
    }
    var BYTE = /^(?:[A-Za-z0-9+/]{4})*(?:[A-Za-z0-9+/]{2}==|[A-Za-z0-9+/]{3}=)?$/gm;
    function byte(str) {
      BYTE.lastIndex = 0;
      return BYTE.test(str);
    }
    var MIN_INT32 = -(2 ** 31);
    var MAX_INT32 = 2 ** 31 - 1;
    function validateInt32(value) {
      return Number.isInteger(value) && value <= MAX_INT32 && value >= MIN_INT32;
    }
    function validateInt64(value) {
      return Number.isInteger(value);
    }
    function validateNumber() {
      return true;
    }
    var Z_ANCHOR = /[^\\]\\Z/;
    function regex(str) {
      if (Z_ANCHOR.test(str))
        return false;
      try {
        new RegExp(str);
        return true;
      } catch (e) {
        return false;
      }
    }
  }
});

// node_modules/.pnpm/ajv-formats@3.0.1_ajv@8.17.1/node_modules/ajv-formats/dist/limit.js
var require_limit = __commonJS({
  "node_modules/.pnpm/ajv-formats@3.0.1_ajv@8.17.1/node_modules/ajv-formats/dist/limit.js"(exports) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.formatLimitDefinition = void 0;
    var ajv_1 = require_ajv();
    var codegen_1 = require_codegen();
    var ops = codegen_1.operators;
    var KWDs = {
      formatMaximum: { okStr: "<=", ok: ops.LTE, fail: ops.GT },
      formatMinimum: { okStr: ">=", ok: ops.GTE, fail: ops.LT },
      formatExclusiveMaximum: { okStr: "<", ok: ops.LT, fail: ops.GTE },
      formatExclusiveMinimum: { okStr: ">", ok: ops.GT, fail: ops.LTE }
    };
    var error2 = {
      message: ({ keyword, schemaCode }) => (0, codegen_1.str)`should be ${KWDs[keyword].okStr} ${schemaCode}`,
      params: ({ keyword, schemaCode }) => (0, codegen_1._)`{comparison: ${KWDs[keyword].okStr}, limit: ${schemaCode}}`
    };
    exports.formatLimitDefinition = {
      keyword: Object.keys(KWDs),
      type: "string",
      schemaType: "string",
      $data: true,
      error: error2,
      code(cxt) {
        const { gen, data, schemaCode, keyword, it } = cxt;
        const { opts, self } = it;
        if (!opts.validateFormats)
          return;
        const fCxt = new ajv_1.KeywordCxt(it, self.RULES.all.format.definition, "format");
        if (fCxt.$data)
          validate$DataFormat();
        else
          validateFormat();
        function validate$DataFormat() {
          const fmts = gen.scopeValue("formats", {
            ref: self.formats,
            code: opts.code.formats
          });
          const fmt = gen.const("fmt", (0, codegen_1._)`${fmts}[${fCxt.schemaCode}]`);
          cxt.fail$data((0, codegen_1.or)((0, codegen_1._)`typeof ${fmt} != "object"`, (0, codegen_1._)`${fmt} instanceof RegExp`, (0, codegen_1._)`typeof ${fmt}.compare != "function"`, compareCode(fmt)));
        }
        function validateFormat() {
          const format = fCxt.schema;
          const fmtDef = self.formats[format];
          if (!fmtDef || fmtDef === true)
            return;
          if (typeof fmtDef != "object" || fmtDef instanceof RegExp || typeof fmtDef.compare != "function") {
            throw new Error(`"${keyword}": format "${format}" does not define "compare" function`);
          }
          const fmt = gen.scopeValue("formats", {
            key: format,
            ref: fmtDef,
            code: opts.code.formats ? (0, codegen_1._)`${opts.code.formats}${(0, codegen_1.getProperty)(format)}` : void 0
          });
          cxt.fail$data(compareCode(fmt));
        }
        function compareCode(fmt) {
          return (0, codegen_1._)`${fmt}.compare(${data}, ${schemaCode}) ${KWDs[keyword].fail} 0`;
        }
      },
      dependencies: ["format"]
    };
    var formatLimitPlugin = (ajv) => {
      ajv.addKeyword(exports.formatLimitDefinition);
      return ajv;
    };
    exports.default = formatLimitPlugin;
  }
});

// node_modules/.pnpm/ajv-formats@3.0.1_ajv@8.17.1/node_modules/ajv-formats/dist/index.js
var require_dist = __commonJS({
  "node_modules/.pnpm/ajv-formats@3.0.1_ajv@8.17.1/node_modules/ajv-formats/dist/index.js"(exports, module) {
    "use strict";
    Object.defineProperty(exports, "__esModule", { value: true });
    var formats_1 = require_formats();
    var limit_1 = require_limit();
    var codegen_1 = require_codegen();
    var fullName = new codegen_1.Name("fullFormats");
    var fastName = new codegen_1.Name("fastFormats");
    var formatsPlugin = (ajv, opts = { keywords: true }) => {
      if (Array.isArray(opts)) {
        addFormats(ajv, opts, formats_1.fullFormats, fullName);
        return ajv;
      }
      const [formats, exportName] = opts.mode === "fast" ? [formats_1.fastFormats, fastName] : [formats_1.fullFormats, fullName];
      const list = opts.formats || formats_1.formatNames;
      addFormats(ajv, list, formats, exportName);
      if (opts.keywords)
        (0, limit_1.default)(ajv);
      return ajv;
    };
    formatsPlugin.get = (name, mode = "full") => {
      const formats = mode === "fast" ? formats_1.fastFormats : formats_1.fullFormats;
      const f = formats[name];
      if (!f)
        throw new Error(`Unknown format "${name}"`);
      return f;
    };
    function addFormats(ajv, list, fs3, exportName) {
      var _a2;
      var _b;
      (_a2 = (_b = ajv.opts.code).formats) !== null && _a2 !== void 0 ? _a2 : _b.formats = (0, codegen_1._)`require("ajv-formats/dist/formats").${exportName}`;
      for (const f of list)
        ajv.addFormat(f, fs3[f]);
    }
    module.exports = exports = formatsPlugin;
    Object.defineProperty(exports, "__esModule", { value: true });
    exports.default = formatsPlugin;
  }
});

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/core.js
var NEVER = Object.freeze({
  status: "aborted"
});
// @__NO_SIDE_EFFECTS__
function $constructor(name, initializer3, params) {
  function init(inst, def) {
    if (!inst._zod) {
      Object.defineProperty(inst, "_zod", {
        value: {
          def,
          constr: _,
          traits: /* @__PURE__ */ new Set()
        },
        enumerable: false
      });
    }
    if (inst._zod.traits.has(name)) {
      return;
    }
    inst._zod.traits.add(name);
    initializer3(inst, def);
    const proto = _.prototype;
    const keys = Object.keys(proto);
    for (let i = 0; i < keys.length; i++) {
      const k = keys[i];
      if (!(k in inst)) {
        inst[k] = proto[k].bind(inst);
      }
    }
  }
  const Parent = params?.Parent ?? Object;
  class Definition extends Parent {
  }
  Object.defineProperty(Definition, "name", { value: name });
  function _(def) {
    var _a2;
    const inst = params?.Parent ? new Definition() : this;
    init(inst, def);
    (_a2 = inst._zod).deferred ?? (_a2.deferred = []);
    for (const fn of inst._zod.deferred) {
      fn();
    }
    return inst;
  }
  Object.defineProperty(_, "init", { value: init });
  Object.defineProperty(_, Symbol.hasInstance, {
    value: (inst) => {
      if (params?.Parent && inst instanceof params.Parent)
        return true;
      return inst?._zod?.traits?.has(name);
    }
  });
  Object.defineProperty(_, "name", { value: name });
  return _;
}
var $brand = Symbol("zod_brand");
var $ZodAsyncError = class extends Error {
  constructor() {
    super(`Encountered Promise during synchronous parse. Use .parseAsync() instead.`);
  }
};
var $ZodEncodeError = class extends Error {
  constructor(name) {
    super(`Encountered unidirectional transform during encode: ${name}`);
    this.name = "ZodEncodeError";
  }
};
var globalConfig = {};
function config(newConfig) {
  if (newConfig)
    Object.assign(globalConfig, newConfig);
  return globalConfig;
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/util.js
var util_exports = {};
__export(util_exports, {
  BIGINT_FORMAT_RANGES: () => BIGINT_FORMAT_RANGES,
  Class: () => Class,
  NUMBER_FORMAT_RANGES: () => NUMBER_FORMAT_RANGES,
  aborted: () => aborted,
  allowsEval: () => allowsEval,
  assert: () => assert,
  assertEqual: () => assertEqual,
  assertIs: () => assertIs,
  assertNever: () => assertNever,
  assertNotEqual: () => assertNotEqual,
  assignProp: () => assignProp,
  base64ToUint8Array: () => base64ToUint8Array,
  base64urlToUint8Array: () => base64urlToUint8Array,
  cached: () => cached,
  captureStackTrace: () => captureStackTrace,
  cleanEnum: () => cleanEnum,
  cleanRegex: () => cleanRegex,
  clone: () => clone,
  cloneDef: () => cloneDef,
  createTransparentProxy: () => createTransparentProxy,
  defineLazy: () => defineLazy,
  esc: () => esc,
  escapeRegex: () => escapeRegex,
  extend: () => extend,
  finalizeIssue: () => finalizeIssue,
  floatSafeRemainder: () => floatSafeRemainder,
  getElementAtPath: () => getElementAtPath,
  getEnumValues: () => getEnumValues,
  getLengthableOrigin: () => getLengthableOrigin,
  getParsedType: () => getParsedType,
  getSizableOrigin: () => getSizableOrigin,
  hexToUint8Array: () => hexToUint8Array,
  isObject: () => isObject,
  isPlainObject: () => isPlainObject,
  issue: () => issue,
  joinValues: () => joinValues,
  jsonStringifyReplacer: () => jsonStringifyReplacer,
  merge: () => merge,
  mergeDefs: () => mergeDefs,
  normalizeParams: () => normalizeParams,
  nullish: () => nullish,
  numKeys: () => numKeys,
  objectClone: () => objectClone,
  omit: () => omit,
  optionalKeys: () => optionalKeys,
  partial: () => partial,
  pick: () => pick,
  prefixIssues: () => prefixIssues,
  primitiveTypes: () => primitiveTypes,
  promiseAllObject: () => promiseAllObject,
  propertyKeyTypes: () => propertyKeyTypes,
  randomString: () => randomString,
  required: () => required,
  safeExtend: () => safeExtend,
  shallowClone: () => shallowClone,
  slugify: () => slugify,
  stringifyPrimitive: () => stringifyPrimitive,
  uint8ArrayToBase64: () => uint8ArrayToBase64,
  uint8ArrayToBase64url: () => uint8ArrayToBase64url,
  uint8ArrayToHex: () => uint8ArrayToHex,
  unwrapMessage: () => unwrapMessage
});
function assertEqual(val) {
  return val;
}
function assertNotEqual(val) {
  return val;
}
function assertIs(_arg) {
}
function assertNever(_x) {
  throw new Error();
}
function assert(_) {
}
function getEnumValues(entries) {
  const numericValues = Object.values(entries).filter((v) => typeof v === "number");
  const values = Object.entries(entries).filter(([k, _]) => numericValues.indexOf(+k) === -1).map(([_, v]) => v);
  return values;
}
function joinValues(array2, separator = "|") {
  return array2.map((val) => stringifyPrimitive(val)).join(separator);
}
function jsonStringifyReplacer(_, value) {
  if (typeof value === "bigint")
    return value.toString();
  return value;
}
function cached(getter) {
  const set = false;
  return {
    get value() {
      if (!set) {
        const value = getter();
        Object.defineProperty(this, "value", { value });
        return value;
      }
      throw new Error("cached value already set");
    }
  };
}
function nullish(input) {
  return input === null || input === void 0;
}
function cleanRegex(source) {
  const start = source.startsWith("^") ? 1 : 0;
  const end = source.endsWith("$") ? source.length - 1 : source.length;
  return source.slice(start, end);
}
function floatSafeRemainder(val, step) {
  const valDecCount = (val.toString().split(".")[1] || "").length;
  const stepString = step.toString();
  let stepDecCount = (stepString.split(".")[1] || "").length;
  if (stepDecCount === 0 && /\d?e-\d?/.test(stepString)) {
    const match = stepString.match(/\d?e-(\d?)/);
    if (match?.[1]) {
      stepDecCount = Number.parseInt(match[1]);
    }
  }
  const decCount = valDecCount > stepDecCount ? valDecCount : stepDecCount;
  const valInt = Number.parseInt(val.toFixed(decCount).replace(".", ""));
  const stepInt = Number.parseInt(step.toFixed(decCount).replace(".", ""));
  return valInt % stepInt / 10 ** decCount;
}
var EVALUATING = Symbol("evaluating");
function defineLazy(object3, key, getter) {
  let value = void 0;
  Object.defineProperty(object3, key, {
    get() {
      if (value === EVALUATING) {
        return void 0;
      }
      if (value === void 0) {
        value = EVALUATING;
        value = getter();
      }
      return value;
    },
    set(v) {
      Object.defineProperty(object3, key, {
        value: v
        // configurable: true,
      });
    },
    configurable: true
  });
}
function objectClone(obj) {
  return Object.create(Object.getPrototypeOf(obj), Object.getOwnPropertyDescriptors(obj));
}
function assignProp(target, prop, value) {
  Object.defineProperty(target, prop, {
    value,
    writable: true,
    enumerable: true,
    configurable: true
  });
}
function mergeDefs(...defs) {
  const mergedDescriptors = {};
  for (const def of defs) {
    const descriptors = Object.getOwnPropertyDescriptors(def);
    Object.assign(mergedDescriptors, descriptors);
  }
  return Object.defineProperties({}, mergedDescriptors);
}
function cloneDef(schema) {
  return mergeDefs(schema._zod.def);
}
function getElementAtPath(obj, path3) {
  if (!path3)
    return obj;
  return path3.reduce((acc, key) => acc?.[key], obj);
}
function promiseAllObject(promisesObj) {
  const keys = Object.keys(promisesObj);
  const promises = keys.map((key) => promisesObj[key]);
  return Promise.all(promises).then((results) => {
    const resolvedObj = {};
    for (let i = 0; i < keys.length; i++) {
      resolvedObj[keys[i]] = results[i];
    }
    return resolvedObj;
  });
}
function randomString(length = 10) {
  const chars = "abcdefghijklmnopqrstuvwxyz";
  let str = "";
  for (let i = 0; i < length; i++) {
    str += chars[Math.floor(Math.random() * chars.length)];
  }
  return str;
}
function esc(str) {
  return JSON.stringify(str);
}
function slugify(input) {
  return input.toLowerCase().trim().replace(/[^\w\s-]/g, "").replace(/[\s_-]+/g, "-").replace(/^-+|-+$/g, "");
}
var captureStackTrace = "captureStackTrace" in Error ? Error.captureStackTrace : (..._args) => {
};
function isObject(data) {
  return typeof data === "object" && data !== null && !Array.isArray(data);
}
var allowsEval = cached(() => {
  if (typeof navigator !== "undefined" && navigator?.userAgent?.includes("Cloudflare")) {
    return false;
  }
  try {
    const F = Function;
    new F("");
    return true;
  } catch (_) {
    return false;
  }
});
function isPlainObject(o) {
  if (isObject(o) === false)
    return false;
  const ctor = o.constructor;
  if (ctor === void 0)
    return true;
  if (typeof ctor !== "function")
    return true;
  const prot = ctor.prototype;
  if (isObject(prot) === false)
    return false;
  if (Object.prototype.hasOwnProperty.call(prot, "isPrototypeOf") === false) {
    return false;
  }
  return true;
}
function shallowClone(o) {
  if (isPlainObject(o))
    return { ...o };
  if (Array.isArray(o))
    return [...o];
  return o;
}
function numKeys(data) {
  let keyCount = 0;
  for (const key in data) {
    if (Object.prototype.hasOwnProperty.call(data, key)) {
      keyCount++;
    }
  }
  return keyCount;
}
var getParsedType = (data) => {
  const t = typeof data;
  switch (t) {
    case "undefined":
      return "undefined";
    case "string":
      return "string";
    case "number":
      return Number.isNaN(data) ? "nan" : "number";
    case "boolean":
      return "boolean";
    case "function":
      return "function";
    case "bigint":
      return "bigint";
    case "symbol":
      return "symbol";
    case "object":
      if (Array.isArray(data)) {
        return "array";
      }
      if (data === null) {
        return "null";
      }
      if (data.then && typeof data.then === "function" && data.catch && typeof data.catch === "function") {
        return "promise";
      }
      if (typeof Map !== "undefined" && data instanceof Map) {
        return "map";
      }
      if (typeof Set !== "undefined" && data instanceof Set) {
        return "set";
      }
      if (typeof Date !== "undefined" && data instanceof Date) {
        return "date";
      }
      if (typeof File !== "undefined" && data instanceof File) {
        return "file";
      }
      return "object";
    default:
      throw new Error(`Unknown data type: ${t}`);
  }
};
var propertyKeyTypes = /* @__PURE__ */ new Set(["string", "number", "symbol"]);
var primitiveTypes = /* @__PURE__ */ new Set(["string", "number", "bigint", "boolean", "symbol", "undefined"]);
function escapeRegex(str) {
  return str.replace(/[.*+?^${}()|[\]\\]/g, "\\$&");
}
function clone(inst, def, params) {
  const cl = new inst._zod.constr(def ?? inst._zod.def);
  if (!def || params?.parent)
    cl._zod.parent = inst;
  return cl;
}
function normalizeParams(_params) {
  const params = _params;
  if (!params)
    return {};
  if (typeof params === "string")
    return { error: () => params };
  if (params?.message !== void 0) {
    if (params?.error !== void 0)
      throw new Error("Cannot specify both `message` and `error` params");
    params.error = params.message;
  }
  delete params.message;
  if (typeof params.error === "string")
    return { ...params, error: () => params.error };
  return params;
}
function createTransparentProxy(getter) {
  let target;
  return new Proxy({}, {
    get(_, prop, receiver) {
      target ?? (target = getter());
      return Reflect.get(target, prop, receiver);
    },
    set(_, prop, value, receiver) {
      target ?? (target = getter());
      return Reflect.set(target, prop, value, receiver);
    },
    has(_, prop) {
      target ?? (target = getter());
      return Reflect.has(target, prop);
    },
    deleteProperty(_, prop) {
      target ?? (target = getter());
      return Reflect.deleteProperty(target, prop);
    },
    ownKeys(_) {
      target ?? (target = getter());
      return Reflect.ownKeys(target);
    },
    getOwnPropertyDescriptor(_, prop) {
      target ?? (target = getter());
      return Reflect.getOwnPropertyDescriptor(target, prop);
    },
    defineProperty(_, prop, descriptor) {
      target ?? (target = getter());
      return Reflect.defineProperty(target, prop, descriptor);
    }
  });
}
function stringifyPrimitive(value) {
  if (typeof value === "bigint")
    return value.toString() + "n";
  if (typeof value === "string")
    return `"${value}"`;
  return `${value}`;
}
function optionalKeys(shape) {
  return Object.keys(shape).filter((k) => {
    return shape[k]._zod.optin === "optional" && shape[k]._zod.optout === "optional";
  });
}
var NUMBER_FORMAT_RANGES = {
  safeint: [Number.MIN_SAFE_INTEGER, Number.MAX_SAFE_INTEGER],
  int32: [-2147483648, 2147483647],
  uint32: [0, 4294967295],
  float32: [-34028234663852886e22, 34028234663852886e22],
  float64: [-Number.MAX_VALUE, Number.MAX_VALUE]
};
var BIGINT_FORMAT_RANGES = {
  int64: [/* @__PURE__ */ BigInt("-9223372036854775808"), /* @__PURE__ */ BigInt("9223372036854775807")],
  uint64: [/* @__PURE__ */ BigInt(0), /* @__PURE__ */ BigInt("18446744073709551615")]
};
function pick(schema, mask) {
  const currDef = schema._zod.def;
  const def = mergeDefs(schema._zod.def, {
    get shape() {
      const newShape = {};
      for (const key in mask) {
        if (!(key in currDef.shape)) {
          throw new Error(`Unrecognized key: "${key}"`);
        }
        if (!mask[key])
          continue;
        newShape[key] = currDef.shape[key];
      }
      assignProp(this, "shape", newShape);
      return newShape;
    },
    checks: []
  });
  return clone(schema, def);
}
function omit(schema, mask) {
  const currDef = schema._zod.def;
  const def = mergeDefs(schema._zod.def, {
    get shape() {
      const newShape = { ...schema._zod.def.shape };
      for (const key in mask) {
        if (!(key in currDef.shape)) {
          throw new Error(`Unrecognized key: "${key}"`);
        }
        if (!mask[key])
          continue;
        delete newShape[key];
      }
      assignProp(this, "shape", newShape);
      return newShape;
    },
    checks: []
  });
  return clone(schema, def);
}
function extend(schema, shape) {
  if (!isPlainObject(shape)) {
    throw new Error("Invalid input to extend: expected a plain object");
  }
  const checks = schema._zod.def.checks;
  const hasChecks = checks && checks.length > 0;
  if (hasChecks) {
    throw new Error("Object schemas containing refinements cannot be extended. Use `.safeExtend()` instead.");
  }
  const def = mergeDefs(schema._zod.def, {
    get shape() {
      const _shape = { ...schema._zod.def.shape, ...shape };
      assignProp(this, "shape", _shape);
      return _shape;
    },
    checks: []
  });
  return clone(schema, def);
}
function safeExtend(schema, shape) {
  if (!isPlainObject(shape)) {
    throw new Error("Invalid input to safeExtend: expected a plain object");
  }
  const def = {
    ...schema._zod.def,
    get shape() {
      const _shape = { ...schema._zod.def.shape, ...shape };
      assignProp(this, "shape", _shape);
      return _shape;
    },
    checks: schema._zod.def.checks
  };
  return clone(schema, def);
}
function merge(a, b) {
  const def = mergeDefs(a._zod.def, {
    get shape() {
      const _shape = { ...a._zod.def.shape, ...b._zod.def.shape };
      assignProp(this, "shape", _shape);
      return _shape;
    },
    get catchall() {
      return b._zod.def.catchall;
    },
    checks: []
    // delete existing checks
  });
  return clone(a, def);
}
function partial(Class2, schema, mask) {
  const def = mergeDefs(schema._zod.def, {
    get shape() {
      const oldShape = schema._zod.def.shape;
      const shape = { ...oldShape };
      if (mask) {
        for (const key in mask) {
          if (!(key in oldShape)) {
            throw new Error(`Unrecognized key: "${key}"`);
          }
          if (!mask[key])
            continue;
          shape[key] = Class2 ? new Class2({
            type: "optional",
            innerType: oldShape[key]
          }) : oldShape[key];
        }
      } else {
        for (const key in oldShape) {
          shape[key] = Class2 ? new Class2({
            type: "optional",
            innerType: oldShape[key]
          }) : oldShape[key];
        }
      }
      assignProp(this, "shape", shape);
      return shape;
    },
    checks: []
  });
  return clone(schema, def);
}
function required(Class2, schema, mask) {
  const def = mergeDefs(schema._zod.def, {
    get shape() {
      const oldShape = schema._zod.def.shape;
      const shape = { ...oldShape };
      if (mask) {
        for (const key in mask) {
          if (!(key in shape)) {
            throw new Error(`Unrecognized key: "${key}"`);
          }
          if (!mask[key])
            continue;
          shape[key] = new Class2({
            type: "nonoptional",
            innerType: oldShape[key]
          });
        }
      } else {
        for (const key in oldShape) {
          shape[key] = new Class2({
            type: "nonoptional",
            innerType: oldShape[key]
          });
        }
      }
      assignProp(this, "shape", shape);
      return shape;
    },
    checks: []
  });
  return clone(schema, def);
}
function aborted(x, startIndex = 0) {
  if (x.aborted === true)
    return true;
  for (let i = startIndex; i < x.issues.length; i++) {
    if (x.issues[i]?.continue !== true) {
      return true;
    }
  }
  return false;
}
function prefixIssues(path3, issues) {
  return issues.map((iss) => {
    var _a2;
    (_a2 = iss).path ?? (_a2.path = []);
    iss.path.unshift(path3);
    return iss;
  });
}
function unwrapMessage(message) {
  return typeof message === "string" ? message : message?.message;
}
function finalizeIssue(iss, ctx, config2) {
  const full = { ...iss, path: iss.path ?? [] };
  if (!iss.message) {
    const message = unwrapMessage(iss.inst?._zod.def?.error?.(iss)) ?? unwrapMessage(ctx?.error?.(iss)) ?? unwrapMessage(config2.customError?.(iss)) ?? unwrapMessage(config2.localeError?.(iss)) ?? "Invalid input";
    full.message = message;
  }
  delete full.inst;
  delete full.continue;
  if (!ctx?.reportInput) {
    delete full.input;
  }
  return full;
}
function getSizableOrigin(input) {
  if (input instanceof Set)
    return "set";
  if (input instanceof Map)
    return "map";
  if (input instanceof File)
    return "file";
  return "unknown";
}
function getLengthableOrigin(input) {
  if (Array.isArray(input))
    return "array";
  if (typeof input === "string")
    return "string";
  return "unknown";
}
function issue(...args) {
  const [iss, input, inst] = args;
  if (typeof iss === "string") {
    return {
      message: iss,
      code: "custom",
      input,
      inst
    };
  }
  return { ...iss };
}
function cleanEnum(obj) {
  return Object.entries(obj).filter(([k, _]) => {
    return Number.isNaN(Number.parseInt(k, 10));
  }).map((el) => el[1]);
}
function base64ToUint8Array(base642) {
  const binaryString = atob(base642);
  const bytes = new Uint8Array(binaryString.length);
  for (let i = 0; i < binaryString.length; i++) {
    bytes[i] = binaryString.charCodeAt(i);
  }
  return bytes;
}
function uint8ArrayToBase64(bytes) {
  let binaryString = "";
  for (let i = 0; i < bytes.length; i++) {
    binaryString += String.fromCharCode(bytes[i]);
  }
  return btoa(binaryString);
}
function base64urlToUint8Array(base64url2) {
  const base642 = base64url2.replace(/-/g, "+").replace(/_/g, "/");
  const padding = "=".repeat((4 - base642.length % 4) % 4);
  return base64ToUint8Array(base642 + padding);
}
function uint8ArrayToBase64url(bytes) {
  return uint8ArrayToBase64(bytes).replace(/\+/g, "-").replace(/\//g, "_").replace(/=/g, "");
}
function hexToUint8Array(hex) {
  const cleanHex = hex.replace(/^0x/, "");
  if (cleanHex.length % 2 !== 0) {
    throw new Error("Invalid hex string length");
  }
  const bytes = new Uint8Array(cleanHex.length / 2);
  for (let i = 0; i < cleanHex.length; i += 2) {
    bytes[i / 2] = Number.parseInt(cleanHex.slice(i, i + 2), 16);
  }
  return bytes;
}
function uint8ArrayToHex(bytes) {
  return Array.from(bytes).map((b) => b.toString(16).padStart(2, "0")).join("");
}
var Class = class {
  constructor(..._args) {
  }
};

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/errors.js
var initializer = (inst, def) => {
  inst.name = "$ZodError";
  Object.defineProperty(inst, "_zod", {
    value: inst._zod,
    enumerable: false
  });
  Object.defineProperty(inst, "issues", {
    value: def,
    enumerable: false
  });
  inst.message = JSON.stringify(def, jsonStringifyReplacer, 2);
  Object.defineProperty(inst, "toString", {
    value: () => inst.message,
    enumerable: false
  });
};
var $ZodError = $constructor("$ZodError", initializer);
var $ZodRealError = $constructor("$ZodError", initializer, { Parent: Error });
function flattenError(error2, mapper = (issue2) => issue2.message) {
  const fieldErrors = {};
  const formErrors = [];
  for (const sub of error2.issues) {
    if (sub.path.length > 0) {
      fieldErrors[sub.path[0]] = fieldErrors[sub.path[0]] || [];
      fieldErrors[sub.path[0]].push(mapper(sub));
    } else {
      formErrors.push(mapper(sub));
    }
  }
  return { formErrors, fieldErrors };
}
function formatError(error2, mapper = (issue2) => issue2.message) {
  const fieldErrors = { _errors: [] };
  const processError = (error3) => {
    for (const issue2 of error3.issues) {
      if (issue2.code === "invalid_union" && issue2.errors.length) {
        issue2.errors.map((issues) => processError({ issues }));
      } else if (issue2.code === "invalid_key") {
        processError({ issues: issue2.issues });
      } else if (issue2.code === "invalid_element") {
        processError({ issues: issue2.issues });
      } else if (issue2.path.length === 0) {
        fieldErrors._errors.push(mapper(issue2));
      } else {
        let curr = fieldErrors;
        let i = 0;
        while (i < issue2.path.length) {
          const el = issue2.path[i];
          const terminal = i === issue2.path.length - 1;
          if (!terminal) {
            curr[el] = curr[el] || { _errors: [] };
          } else {
            curr[el] = curr[el] || { _errors: [] };
            curr[el]._errors.push(mapper(issue2));
          }
          curr = curr[el];
          i++;
        }
      }
    }
  };
  processError(error2);
  return fieldErrors;
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/parse.js
var _parse = (_Err) => (schema, value, _ctx, _params) => {
  const ctx = _ctx ? Object.assign(_ctx, { async: false }) : { async: false };
  const result = schema._zod.run({ value, issues: [] }, ctx);
  if (result instanceof Promise) {
    throw new $ZodAsyncError();
  }
  if (result.issues.length) {
    const e = new (_params?.Err ?? _Err)(result.issues.map((iss) => finalizeIssue(iss, ctx, config())));
    captureStackTrace(e, _params?.callee);
    throw e;
  }
  return result.value;
};
var _parseAsync = (_Err) => async (schema, value, _ctx, params) => {
  const ctx = _ctx ? Object.assign(_ctx, { async: true }) : { async: true };
  let result = schema._zod.run({ value, issues: [] }, ctx);
  if (result instanceof Promise)
    result = await result;
  if (result.issues.length) {
    const e = new (params?.Err ?? _Err)(result.issues.map((iss) => finalizeIssue(iss, ctx, config())));
    captureStackTrace(e, params?.callee);
    throw e;
  }
  return result.value;
};
var _safeParse = (_Err) => (schema, value, _ctx) => {
  const ctx = _ctx ? { ..._ctx, async: false } : { async: false };
  const result = schema._zod.run({ value, issues: [] }, ctx);
  if (result instanceof Promise) {
    throw new $ZodAsyncError();
  }
  return result.issues.length ? {
    success: false,
    error: new (_Err ?? $ZodError)(result.issues.map((iss) => finalizeIssue(iss, ctx, config())))
  } : { success: true, data: result.value };
};
var safeParse = /* @__PURE__ */ _safeParse($ZodRealError);
var _safeParseAsync = (_Err) => async (schema, value, _ctx) => {
  const ctx = _ctx ? Object.assign(_ctx, { async: true }) : { async: true };
  let result = schema._zod.run({ value, issues: [] }, ctx);
  if (result instanceof Promise)
    result = await result;
  return result.issues.length ? {
    success: false,
    error: new _Err(result.issues.map((iss) => finalizeIssue(iss, ctx, config())))
  } : { success: true, data: result.value };
};
var safeParseAsync = /* @__PURE__ */ _safeParseAsync($ZodRealError);
var _encode = (_Err) => (schema, value, _ctx) => {
  const ctx = _ctx ? Object.assign(_ctx, { direction: "backward" }) : { direction: "backward" };
  return _parse(_Err)(schema, value, ctx);
};
var _decode = (_Err) => (schema, value, _ctx) => {
  return _parse(_Err)(schema, value, _ctx);
};
var _encodeAsync = (_Err) => async (schema, value, _ctx) => {
  const ctx = _ctx ? Object.assign(_ctx, { direction: "backward" }) : { direction: "backward" };
  return _parseAsync(_Err)(schema, value, ctx);
};
var _decodeAsync = (_Err) => async (schema, value, _ctx) => {
  return _parseAsync(_Err)(schema, value, _ctx);
};
var _safeEncode = (_Err) => (schema, value, _ctx) => {
  const ctx = _ctx ? Object.assign(_ctx, { direction: "backward" }) : { direction: "backward" };
  return _safeParse(_Err)(schema, value, ctx);
};
var _safeDecode = (_Err) => (schema, value, _ctx) => {
  return _safeParse(_Err)(schema, value, _ctx);
};
var _safeEncodeAsync = (_Err) => async (schema, value, _ctx) => {
  const ctx = _ctx ? Object.assign(_ctx, { direction: "backward" }) : { direction: "backward" };
  return _safeParseAsync(_Err)(schema, value, ctx);
};
var _safeDecodeAsync = (_Err) => async (schema, value, _ctx) => {
  return _safeParseAsync(_Err)(schema, value, _ctx);
};

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/regexes.js
var cuid = /^[cC][^\s-]{8,}$/;
var cuid2 = /^[0-9a-z]+$/;
var ulid = /^[0-9A-HJKMNP-TV-Za-hjkmnp-tv-z]{26}$/;
var xid = /^[0-9a-vA-V]{20}$/;
var ksuid = /^[A-Za-z0-9]{27}$/;
var nanoid = /^[a-zA-Z0-9_-]{21}$/;
var duration = /^P(?:(\d+W)|(?!.*W)(?=\d|T\d)(\d+Y)?(\d+M)?(\d+D)?(T(?=\d)(\d+H)?(\d+M)?(\d+([.,]\d+)?S)?)?)$/;
var guid = /^([0-9a-fA-F]{8}-[0-9a-fA-F]{4}-[0-9a-fA-F]{4}-[0-9a-fA-F]{4}-[0-9a-fA-F]{12})$/;
var uuid = (version3) => {
  if (!version3)
    return /^([0-9a-fA-F]{8}-[0-9a-fA-F]{4}-[1-8][0-9a-fA-F]{3}-[89abAB][0-9a-fA-F]{3}-[0-9a-fA-F]{12}|00000000-0000-0000-0000-000000000000|ffffffff-ffff-ffff-ffff-ffffffffffff)$/;
  return new RegExp(`^([0-9a-fA-F]{8}-[0-9a-fA-F]{4}-${version3}[0-9a-fA-F]{3}-[89abAB][0-9a-fA-F]{3}-[0-9a-fA-F]{12})$`);
};
var email = /^(?!\.)(?!.*\.\.)([A-Za-z0-9_'+\-\.]*)[A-Za-z0-9_+-]@([A-Za-z0-9][A-Za-z0-9\-]*\.)+[A-Za-z]{2,}$/;
var _emoji = `^(\\p{Extended_Pictographic}|\\p{Emoji_Component})+$`;
function emoji() {
  return new RegExp(_emoji, "u");
}
var ipv4 = /^(?:(?:25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])\.){3}(?:25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])$/;
var ipv6 = /^(([0-9a-fA-F]{1,4}:){7}[0-9a-fA-F]{1,4}|([0-9a-fA-F]{1,4}:){1,7}:|([0-9a-fA-F]{1,4}:){1,6}:[0-9a-fA-F]{1,4}|([0-9a-fA-F]{1,4}:){1,5}(:[0-9a-fA-F]{1,4}){1,2}|([0-9a-fA-F]{1,4}:){1,4}(:[0-9a-fA-F]{1,4}){1,3}|([0-9a-fA-F]{1,4}:){1,3}(:[0-9a-fA-F]{1,4}){1,4}|([0-9a-fA-F]{1,4}:){1,2}(:[0-9a-fA-F]{1,4}){1,5}|[0-9a-fA-F]{1,4}:((:[0-9a-fA-F]{1,4}){1,6})|:((:[0-9a-fA-F]{1,4}){1,7}|:))$/;
var cidrv4 = /^((25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])\.){3}(25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])\/([0-9]|[1-2][0-9]|3[0-2])$/;
var cidrv6 = /^(([0-9a-fA-F]{1,4}:){7}[0-9a-fA-F]{1,4}|::|([0-9a-fA-F]{1,4})?::([0-9a-fA-F]{1,4}:?){0,6})\/(12[0-8]|1[01][0-9]|[1-9]?[0-9])$/;
var base64 = /^$|^(?:[0-9a-zA-Z+/]{4})*(?:(?:[0-9a-zA-Z+/]{2}==)|(?:[0-9a-zA-Z+/]{3}=))?$/;
var base64url = /^[A-Za-z0-9_-]*$/;
var e164 = /^\+(?:[0-9]){6,14}[0-9]$/;
var dateSource = `(?:(?:\\d\\d[2468][048]|\\d\\d[13579][26]|\\d\\d0[48]|[02468][048]00|[13579][26]00)-02-29|\\d{4}-(?:(?:0[13578]|1[02])-(?:0[1-9]|[12]\\d|3[01])|(?:0[469]|11)-(?:0[1-9]|[12]\\d|30)|(?:02)-(?:0[1-9]|1\\d|2[0-8])))`;
var date = /* @__PURE__ */ new RegExp(`^${dateSource}$`);
function timeSource(args) {
  const hhmm = `(?:[01]\\d|2[0-3]):[0-5]\\d`;
  const regex = typeof args.precision === "number" ? args.precision === -1 ? `${hhmm}` : args.precision === 0 ? `${hhmm}:[0-5]\\d` : `${hhmm}:[0-5]\\d\\.\\d{${args.precision}}` : `${hhmm}(?::[0-5]\\d(?:\\.\\d+)?)?`;
  return regex;
}
function time(args) {
  return new RegExp(`^${timeSource(args)}$`);
}
function datetime(args) {
  const time3 = timeSource({ precision: args.precision });
  const opts = ["Z"];
  if (args.local)
    opts.push("");
  if (args.offset)
    opts.push(`([+-](?:[01]\\d|2[0-3]):[0-5]\\d)`);
  const timeRegex2 = `${time3}(?:${opts.join("|")})`;
  return new RegExp(`^${dateSource}T(?:${timeRegex2})$`);
}
var string = (params) => {
  const regex = params ? `[\\s\\S]{${params?.minimum ?? 0},${params?.maximum ?? ""}}` : `[\\s\\S]*`;
  return new RegExp(`^${regex}$`);
};
var integer = /^-?\d+$/;
var number = /^-?\d+(?:\.\d+)?/;
var boolean = /^(?:true|false)$/i;
var lowercase = /^[^A-Z]*$/;
var uppercase = /^[^a-z]*$/;

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/checks.js
var $ZodCheck = /* @__PURE__ */ $constructor("$ZodCheck", (inst, def) => {
  var _a2;
  inst._zod ?? (inst._zod = {});
  inst._zod.def = def;
  (_a2 = inst._zod).onattach ?? (_a2.onattach = []);
});
var numericOriginMap = {
  number: "number",
  bigint: "bigint",
  object: "date"
};
var $ZodCheckLessThan = /* @__PURE__ */ $constructor("$ZodCheckLessThan", (inst, def) => {
  $ZodCheck.init(inst, def);
  const origin = numericOriginMap[typeof def.value];
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    const curr = (def.inclusive ? bag.maximum : bag.exclusiveMaximum) ?? Number.POSITIVE_INFINITY;
    if (def.value < curr) {
      if (def.inclusive)
        bag.maximum = def.value;
      else
        bag.exclusiveMaximum = def.value;
    }
  });
  inst._zod.check = (payload) => {
    if (def.inclusive ? payload.value <= def.value : payload.value < def.value) {
      return;
    }
    payload.issues.push({
      origin,
      code: "too_big",
      maximum: def.value,
      input: payload.value,
      inclusive: def.inclusive,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckGreaterThan = /* @__PURE__ */ $constructor("$ZodCheckGreaterThan", (inst, def) => {
  $ZodCheck.init(inst, def);
  const origin = numericOriginMap[typeof def.value];
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    const curr = (def.inclusive ? bag.minimum : bag.exclusiveMinimum) ?? Number.NEGATIVE_INFINITY;
    if (def.value > curr) {
      if (def.inclusive)
        bag.minimum = def.value;
      else
        bag.exclusiveMinimum = def.value;
    }
  });
  inst._zod.check = (payload) => {
    if (def.inclusive ? payload.value >= def.value : payload.value > def.value) {
      return;
    }
    payload.issues.push({
      origin,
      code: "too_small",
      minimum: def.value,
      input: payload.value,
      inclusive: def.inclusive,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckMultipleOf = /* @__PURE__ */ $constructor("$ZodCheckMultipleOf", (inst, def) => {
  $ZodCheck.init(inst, def);
  inst._zod.onattach.push((inst2) => {
    var _a2;
    (_a2 = inst2._zod.bag).multipleOf ?? (_a2.multipleOf = def.value);
  });
  inst._zod.check = (payload) => {
    if (typeof payload.value !== typeof def.value)
      throw new Error("Cannot mix number and bigint in multiple_of check.");
    const isMultiple = typeof payload.value === "bigint" ? payload.value % def.value === BigInt(0) : floatSafeRemainder(payload.value, def.value) === 0;
    if (isMultiple)
      return;
    payload.issues.push({
      origin: typeof payload.value,
      code: "not_multiple_of",
      divisor: def.value,
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckNumberFormat = /* @__PURE__ */ $constructor("$ZodCheckNumberFormat", (inst, def) => {
  $ZodCheck.init(inst, def);
  def.format = def.format || "float64";
  const isInt = def.format?.includes("int");
  const origin = isInt ? "int" : "number";
  const [minimum, maximum] = NUMBER_FORMAT_RANGES[def.format];
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    bag.format = def.format;
    bag.minimum = minimum;
    bag.maximum = maximum;
    if (isInt)
      bag.pattern = integer;
  });
  inst._zod.check = (payload) => {
    const input = payload.value;
    if (isInt) {
      if (!Number.isInteger(input)) {
        payload.issues.push({
          expected: origin,
          format: def.format,
          code: "invalid_type",
          continue: false,
          input,
          inst
        });
        return;
      }
      if (!Number.isSafeInteger(input)) {
        if (input > 0) {
          payload.issues.push({
            input,
            code: "too_big",
            maximum: Number.MAX_SAFE_INTEGER,
            note: "Integers must be within the safe integer range.",
            inst,
            origin,
            continue: !def.abort
          });
        } else {
          payload.issues.push({
            input,
            code: "too_small",
            minimum: Number.MIN_SAFE_INTEGER,
            note: "Integers must be within the safe integer range.",
            inst,
            origin,
            continue: !def.abort
          });
        }
        return;
      }
    }
    if (input < minimum) {
      payload.issues.push({
        origin: "number",
        input,
        code: "too_small",
        minimum,
        inclusive: true,
        inst,
        continue: !def.abort
      });
    }
    if (input > maximum) {
      payload.issues.push({
        origin: "number",
        input,
        code: "too_big",
        maximum,
        inst
      });
    }
  };
});
var $ZodCheckMaxLength = /* @__PURE__ */ $constructor("$ZodCheckMaxLength", (inst, def) => {
  var _a2;
  $ZodCheck.init(inst, def);
  (_a2 = inst._zod.def).when ?? (_a2.when = (payload) => {
    const val = payload.value;
    return !nullish(val) && val.length !== void 0;
  });
  inst._zod.onattach.push((inst2) => {
    const curr = inst2._zod.bag.maximum ?? Number.POSITIVE_INFINITY;
    if (def.maximum < curr)
      inst2._zod.bag.maximum = def.maximum;
  });
  inst._zod.check = (payload) => {
    const input = payload.value;
    const length = input.length;
    if (length <= def.maximum)
      return;
    const origin = getLengthableOrigin(input);
    payload.issues.push({
      origin,
      code: "too_big",
      maximum: def.maximum,
      inclusive: true,
      input,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckMinLength = /* @__PURE__ */ $constructor("$ZodCheckMinLength", (inst, def) => {
  var _a2;
  $ZodCheck.init(inst, def);
  (_a2 = inst._zod.def).when ?? (_a2.when = (payload) => {
    const val = payload.value;
    return !nullish(val) && val.length !== void 0;
  });
  inst._zod.onattach.push((inst2) => {
    const curr = inst2._zod.bag.minimum ?? Number.NEGATIVE_INFINITY;
    if (def.minimum > curr)
      inst2._zod.bag.minimum = def.minimum;
  });
  inst._zod.check = (payload) => {
    const input = payload.value;
    const length = input.length;
    if (length >= def.minimum)
      return;
    const origin = getLengthableOrigin(input);
    payload.issues.push({
      origin,
      code: "too_small",
      minimum: def.minimum,
      inclusive: true,
      input,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckLengthEquals = /* @__PURE__ */ $constructor("$ZodCheckLengthEquals", (inst, def) => {
  var _a2;
  $ZodCheck.init(inst, def);
  (_a2 = inst._zod.def).when ?? (_a2.when = (payload) => {
    const val = payload.value;
    return !nullish(val) && val.length !== void 0;
  });
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    bag.minimum = def.length;
    bag.maximum = def.length;
    bag.length = def.length;
  });
  inst._zod.check = (payload) => {
    const input = payload.value;
    const length = input.length;
    if (length === def.length)
      return;
    const origin = getLengthableOrigin(input);
    const tooBig = length > def.length;
    payload.issues.push({
      origin,
      ...tooBig ? { code: "too_big", maximum: def.length } : { code: "too_small", minimum: def.length },
      inclusive: true,
      exact: true,
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckStringFormat = /* @__PURE__ */ $constructor("$ZodCheckStringFormat", (inst, def) => {
  var _a2, _b;
  $ZodCheck.init(inst, def);
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    bag.format = def.format;
    if (def.pattern) {
      bag.patterns ?? (bag.patterns = /* @__PURE__ */ new Set());
      bag.patterns.add(def.pattern);
    }
  });
  if (def.pattern)
    (_a2 = inst._zod).check ?? (_a2.check = (payload) => {
      def.pattern.lastIndex = 0;
      if (def.pattern.test(payload.value))
        return;
      payload.issues.push({
        origin: "string",
        code: "invalid_format",
        format: def.format,
        input: payload.value,
        ...def.pattern ? { pattern: def.pattern.toString() } : {},
        inst,
        continue: !def.abort
      });
    });
  else
    (_b = inst._zod).check ?? (_b.check = () => {
    });
});
var $ZodCheckRegex = /* @__PURE__ */ $constructor("$ZodCheckRegex", (inst, def) => {
  $ZodCheckStringFormat.init(inst, def);
  inst._zod.check = (payload) => {
    def.pattern.lastIndex = 0;
    if (def.pattern.test(payload.value))
      return;
    payload.issues.push({
      origin: "string",
      code: "invalid_format",
      format: "regex",
      input: payload.value,
      pattern: def.pattern.toString(),
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckLowerCase = /* @__PURE__ */ $constructor("$ZodCheckLowerCase", (inst, def) => {
  def.pattern ?? (def.pattern = lowercase);
  $ZodCheckStringFormat.init(inst, def);
});
var $ZodCheckUpperCase = /* @__PURE__ */ $constructor("$ZodCheckUpperCase", (inst, def) => {
  def.pattern ?? (def.pattern = uppercase);
  $ZodCheckStringFormat.init(inst, def);
});
var $ZodCheckIncludes = /* @__PURE__ */ $constructor("$ZodCheckIncludes", (inst, def) => {
  $ZodCheck.init(inst, def);
  const escapedRegex = escapeRegex(def.includes);
  const pattern = new RegExp(typeof def.position === "number" ? `^.{${def.position}}${escapedRegex}` : escapedRegex);
  def.pattern = pattern;
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    bag.patterns ?? (bag.patterns = /* @__PURE__ */ new Set());
    bag.patterns.add(pattern);
  });
  inst._zod.check = (payload) => {
    if (payload.value.includes(def.includes, def.position))
      return;
    payload.issues.push({
      origin: "string",
      code: "invalid_format",
      format: "includes",
      includes: def.includes,
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckStartsWith = /* @__PURE__ */ $constructor("$ZodCheckStartsWith", (inst, def) => {
  $ZodCheck.init(inst, def);
  const pattern = new RegExp(`^${escapeRegex(def.prefix)}.*`);
  def.pattern ?? (def.pattern = pattern);
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    bag.patterns ?? (bag.patterns = /* @__PURE__ */ new Set());
    bag.patterns.add(pattern);
  });
  inst._zod.check = (payload) => {
    if (payload.value.startsWith(def.prefix))
      return;
    payload.issues.push({
      origin: "string",
      code: "invalid_format",
      format: "starts_with",
      prefix: def.prefix,
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckEndsWith = /* @__PURE__ */ $constructor("$ZodCheckEndsWith", (inst, def) => {
  $ZodCheck.init(inst, def);
  const pattern = new RegExp(`.*${escapeRegex(def.suffix)}$`);
  def.pattern ?? (def.pattern = pattern);
  inst._zod.onattach.push((inst2) => {
    const bag = inst2._zod.bag;
    bag.patterns ?? (bag.patterns = /* @__PURE__ */ new Set());
    bag.patterns.add(pattern);
  });
  inst._zod.check = (payload) => {
    if (payload.value.endsWith(def.suffix))
      return;
    payload.issues.push({
      origin: "string",
      code: "invalid_format",
      format: "ends_with",
      suffix: def.suffix,
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodCheckOverwrite = /* @__PURE__ */ $constructor("$ZodCheckOverwrite", (inst, def) => {
  $ZodCheck.init(inst, def);
  inst._zod.check = (payload) => {
    payload.value = def.tx(payload.value);
  };
});

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/doc.js
var Doc = class {
  constructor(args = []) {
    this.content = [];
    this.indent = 0;
    if (this)
      this.args = args;
  }
  indented(fn) {
    this.indent += 1;
    fn(this);
    this.indent -= 1;
  }
  write(arg) {
    if (typeof arg === "function") {
      arg(this, { execution: "sync" });
      arg(this, { execution: "async" });
      return;
    }
    const content = arg;
    const lines = content.split("\n").filter((x) => x);
    const minIndent = Math.min(...lines.map((x) => x.length - x.trimStart().length));
    const dedented = lines.map((x) => x.slice(minIndent)).map((x) => " ".repeat(this.indent * 2) + x);
    for (const line of dedented) {
      this.content.push(line);
    }
  }
  compile() {
    const F = Function;
    const args = this?.args;
    const content = this?.content ?? [``];
    const lines = [...content.map((x) => `  ${x}`)];
    return new F(...args, lines.join("\n"));
  }
};

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/versions.js
var version = {
  major: 4,
  minor: 1,
  patch: 13
};

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/schemas.js
var $ZodType = /* @__PURE__ */ $constructor("$ZodType", (inst, def) => {
  var _a2;
  inst ?? (inst = {});
  inst._zod.def = def;
  inst._zod.bag = inst._zod.bag || {};
  inst._zod.version = version;
  const checks = [...inst._zod.def.checks ?? []];
  if (inst._zod.traits.has("$ZodCheck")) {
    checks.unshift(inst);
  }
  for (const ch of checks) {
    for (const fn of ch._zod.onattach) {
      fn(inst);
    }
  }
  if (checks.length === 0) {
    (_a2 = inst._zod).deferred ?? (_a2.deferred = []);
    inst._zod.deferred?.push(() => {
      inst._zod.run = inst._zod.parse;
    });
  } else {
    const runChecks = (payload, checks2, ctx) => {
      let isAborted2 = aborted(payload);
      let asyncResult;
      for (const ch of checks2) {
        if (ch._zod.def.when) {
          const shouldRun = ch._zod.def.when(payload);
          if (!shouldRun)
            continue;
        } else if (isAborted2) {
          continue;
        }
        const currLen = payload.issues.length;
        const _ = ch._zod.check(payload);
        if (_ instanceof Promise && ctx?.async === false) {
          throw new $ZodAsyncError();
        }
        if (asyncResult || _ instanceof Promise) {
          asyncResult = (asyncResult ?? Promise.resolve()).then(async () => {
            await _;
            const nextLen = payload.issues.length;
            if (nextLen === currLen)
              return;
            if (!isAborted2)
              isAborted2 = aborted(payload, currLen);
          });
        } else {
          const nextLen = payload.issues.length;
          if (nextLen === currLen)
            continue;
          if (!isAborted2)
            isAborted2 = aborted(payload, currLen);
        }
      }
      if (asyncResult) {
        return asyncResult.then(() => {
          return payload;
        });
      }
      return payload;
    };
    const handleCanaryResult = (canary, payload, ctx) => {
      if (aborted(canary)) {
        canary.aborted = true;
        return canary;
      }
      const checkResult = runChecks(payload, checks, ctx);
      if (checkResult instanceof Promise) {
        if (ctx.async === false)
          throw new $ZodAsyncError();
        return checkResult.then((checkResult2) => inst._zod.parse(checkResult2, ctx));
      }
      return inst._zod.parse(checkResult, ctx);
    };
    inst._zod.run = (payload, ctx) => {
      if (ctx.skipChecks) {
        return inst._zod.parse(payload, ctx);
      }
      if (ctx.direction === "backward") {
        const canary = inst._zod.parse({ value: payload.value, issues: [] }, { ...ctx, skipChecks: true });
        if (canary instanceof Promise) {
          return canary.then((canary2) => {
            return handleCanaryResult(canary2, payload, ctx);
          });
        }
        return handleCanaryResult(canary, payload, ctx);
      }
      const result = inst._zod.parse(payload, ctx);
      if (result instanceof Promise) {
        if (ctx.async === false)
          throw new $ZodAsyncError();
        return result.then((result2) => runChecks(result2, checks, ctx));
      }
      return runChecks(result, checks, ctx);
    };
  }
  inst["~standard"] = {
    validate: (value) => {
      try {
        const r = safeParse(inst, value);
        return r.success ? { value: r.data } : { issues: r.error?.issues };
      } catch (_) {
        return safeParseAsync(inst, value).then((r) => r.success ? { value: r.data } : { issues: r.error?.issues });
      }
    },
    vendor: "zod",
    version: 1
  };
});
var $ZodString = /* @__PURE__ */ $constructor("$ZodString", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.pattern = [...inst?._zod.bag?.patterns ?? []].pop() ?? string(inst._zod.bag);
  inst._zod.parse = (payload, _) => {
    if (def.coerce)
      try {
        payload.value = String(payload.value);
      } catch (_2) {
      }
    if (typeof payload.value === "string")
      return payload;
    payload.issues.push({
      expected: "string",
      code: "invalid_type",
      input: payload.value,
      inst
    });
    return payload;
  };
});
var $ZodStringFormat = /* @__PURE__ */ $constructor("$ZodStringFormat", (inst, def) => {
  $ZodCheckStringFormat.init(inst, def);
  $ZodString.init(inst, def);
});
var $ZodGUID = /* @__PURE__ */ $constructor("$ZodGUID", (inst, def) => {
  def.pattern ?? (def.pattern = guid);
  $ZodStringFormat.init(inst, def);
});
var $ZodUUID = /* @__PURE__ */ $constructor("$ZodUUID", (inst, def) => {
  if (def.version) {
    const versionMap = {
      v1: 1,
      v2: 2,
      v3: 3,
      v4: 4,
      v5: 5,
      v6: 6,
      v7: 7,
      v8: 8
    };
    const v = versionMap[def.version];
    if (v === void 0)
      throw new Error(`Invalid UUID version: "${def.version}"`);
    def.pattern ?? (def.pattern = uuid(v));
  } else
    def.pattern ?? (def.pattern = uuid());
  $ZodStringFormat.init(inst, def);
});
var $ZodEmail = /* @__PURE__ */ $constructor("$ZodEmail", (inst, def) => {
  def.pattern ?? (def.pattern = email);
  $ZodStringFormat.init(inst, def);
});
var $ZodURL = /* @__PURE__ */ $constructor("$ZodURL", (inst, def) => {
  $ZodStringFormat.init(inst, def);
  inst._zod.check = (payload) => {
    try {
      const trimmed = payload.value.trim();
      const url2 = new URL(trimmed);
      if (def.hostname) {
        def.hostname.lastIndex = 0;
        if (!def.hostname.test(url2.hostname)) {
          payload.issues.push({
            code: "invalid_format",
            format: "url",
            note: "Invalid hostname",
            pattern: def.hostname.source,
            input: payload.value,
            inst,
            continue: !def.abort
          });
        }
      }
      if (def.protocol) {
        def.protocol.lastIndex = 0;
        if (!def.protocol.test(url2.protocol.endsWith(":") ? url2.protocol.slice(0, -1) : url2.protocol)) {
          payload.issues.push({
            code: "invalid_format",
            format: "url",
            note: "Invalid protocol",
            pattern: def.protocol.source,
            input: payload.value,
            inst,
            continue: !def.abort
          });
        }
      }
      if (def.normalize) {
        payload.value = url2.href;
      } else {
        payload.value = trimmed;
      }
      return;
    } catch (_) {
      payload.issues.push({
        code: "invalid_format",
        format: "url",
        input: payload.value,
        inst,
        continue: !def.abort
      });
    }
  };
});
var $ZodEmoji = /* @__PURE__ */ $constructor("$ZodEmoji", (inst, def) => {
  def.pattern ?? (def.pattern = emoji());
  $ZodStringFormat.init(inst, def);
});
var $ZodNanoID = /* @__PURE__ */ $constructor("$ZodNanoID", (inst, def) => {
  def.pattern ?? (def.pattern = nanoid);
  $ZodStringFormat.init(inst, def);
});
var $ZodCUID = /* @__PURE__ */ $constructor("$ZodCUID", (inst, def) => {
  def.pattern ?? (def.pattern = cuid);
  $ZodStringFormat.init(inst, def);
});
var $ZodCUID2 = /* @__PURE__ */ $constructor("$ZodCUID2", (inst, def) => {
  def.pattern ?? (def.pattern = cuid2);
  $ZodStringFormat.init(inst, def);
});
var $ZodULID = /* @__PURE__ */ $constructor("$ZodULID", (inst, def) => {
  def.pattern ?? (def.pattern = ulid);
  $ZodStringFormat.init(inst, def);
});
var $ZodXID = /* @__PURE__ */ $constructor("$ZodXID", (inst, def) => {
  def.pattern ?? (def.pattern = xid);
  $ZodStringFormat.init(inst, def);
});
var $ZodKSUID = /* @__PURE__ */ $constructor("$ZodKSUID", (inst, def) => {
  def.pattern ?? (def.pattern = ksuid);
  $ZodStringFormat.init(inst, def);
});
var $ZodISODateTime = /* @__PURE__ */ $constructor("$ZodISODateTime", (inst, def) => {
  def.pattern ?? (def.pattern = datetime(def));
  $ZodStringFormat.init(inst, def);
});
var $ZodISODate = /* @__PURE__ */ $constructor("$ZodISODate", (inst, def) => {
  def.pattern ?? (def.pattern = date);
  $ZodStringFormat.init(inst, def);
});
var $ZodISOTime = /* @__PURE__ */ $constructor("$ZodISOTime", (inst, def) => {
  def.pattern ?? (def.pattern = time(def));
  $ZodStringFormat.init(inst, def);
});
var $ZodISODuration = /* @__PURE__ */ $constructor("$ZodISODuration", (inst, def) => {
  def.pattern ?? (def.pattern = duration);
  $ZodStringFormat.init(inst, def);
});
var $ZodIPv4 = /* @__PURE__ */ $constructor("$ZodIPv4", (inst, def) => {
  def.pattern ?? (def.pattern = ipv4);
  $ZodStringFormat.init(inst, def);
  inst._zod.bag.format = `ipv4`;
});
var $ZodIPv6 = /* @__PURE__ */ $constructor("$ZodIPv6", (inst, def) => {
  def.pattern ?? (def.pattern = ipv6);
  $ZodStringFormat.init(inst, def);
  inst._zod.bag.format = `ipv6`;
  inst._zod.check = (payload) => {
    try {
      new URL(`http://[${payload.value}]`);
    } catch {
      payload.issues.push({
        code: "invalid_format",
        format: "ipv6",
        input: payload.value,
        inst,
        continue: !def.abort
      });
    }
  };
});
var $ZodCIDRv4 = /* @__PURE__ */ $constructor("$ZodCIDRv4", (inst, def) => {
  def.pattern ?? (def.pattern = cidrv4);
  $ZodStringFormat.init(inst, def);
});
var $ZodCIDRv6 = /* @__PURE__ */ $constructor("$ZodCIDRv6", (inst, def) => {
  def.pattern ?? (def.pattern = cidrv6);
  $ZodStringFormat.init(inst, def);
  inst._zod.check = (payload) => {
    const parts = payload.value.split("/");
    try {
      if (parts.length !== 2)
        throw new Error();
      const [address, prefix] = parts;
      if (!prefix)
        throw new Error();
      const prefixNum = Number(prefix);
      if (`${prefixNum}` !== prefix)
        throw new Error();
      if (prefixNum < 0 || prefixNum > 128)
        throw new Error();
      new URL(`http://[${address}]`);
    } catch {
      payload.issues.push({
        code: "invalid_format",
        format: "cidrv6",
        input: payload.value,
        inst,
        continue: !def.abort
      });
    }
  };
});
function isValidBase64(data) {
  if (data === "")
    return true;
  if (data.length % 4 !== 0)
    return false;
  try {
    atob(data);
    return true;
  } catch {
    return false;
  }
}
var $ZodBase64 = /* @__PURE__ */ $constructor("$ZodBase64", (inst, def) => {
  def.pattern ?? (def.pattern = base64);
  $ZodStringFormat.init(inst, def);
  inst._zod.bag.contentEncoding = "base64";
  inst._zod.check = (payload) => {
    if (isValidBase64(payload.value))
      return;
    payload.issues.push({
      code: "invalid_format",
      format: "base64",
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
function isValidBase64URL(data) {
  if (!base64url.test(data))
    return false;
  const base642 = data.replace(/[-_]/g, (c) => c === "-" ? "+" : "/");
  const padded = base642.padEnd(Math.ceil(base642.length / 4) * 4, "=");
  return isValidBase64(padded);
}
var $ZodBase64URL = /* @__PURE__ */ $constructor("$ZodBase64URL", (inst, def) => {
  def.pattern ?? (def.pattern = base64url);
  $ZodStringFormat.init(inst, def);
  inst._zod.bag.contentEncoding = "base64url";
  inst._zod.check = (payload) => {
    if (isValidBase64URL(payload.value))
      return;
    payload.issues.push({
      code: "invalid_format",
      format: "base64url",
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodE164 = /* @__PURE__ */ $constructor("$ZodE164", (inst, def) => {
  def.pattern ?? (def.pattern = e164);
  $ZodStringFormat.init(inst, def);
});
function isValidJWT(token, algorithm = null) {
  try {
    const tokensParts = token.split(".");
    if (tokensParts.length !== 3)
      return false;
    const [header] = tokensParts;
    if (!header)
      return false;
    const parsedHeader = JSON.parse(atob(header));
    if ("typ" in parsedHeader && parsedHeader?.typ !== "JWT")
      return false;
    if (!parsedHeader.alg)
      return false;
    if (algorithm && (!("alg" in parsedHeader) || parsedHeader.alg !== algorithm))
      return false;
    return true;
  } catch {
    return false;
  }
}
var $ZodJWT = /* @__PURE__ */ $constructor("$ZodJWT", (inst, def) => {
  $ZodStringFormat.init(inst, def);
  inst._zod.check = (payload) => {
    if (isValidJWT(payload.value, def.alg))
      return;
    payload.issues.push({
      code: "invalid_format",
      format: "jwt",
      input: payload.value,
      inst,
      continue: !def.abort
    });
  };
});
var $ZodNumber = /* @__PURE__ */ $constructor("$ZodNumber", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.pattern = inst._zod.bag.pattern ?? number;
  inst._zod.parse = (payload, _ctx) => {
    if (def.coerce)
      try {
        payload.value = Number(payload.value);
      } catch (_) {
      }
    const input = payload.value;
    if (typeof input === "number" && !Number.isNaN(input) && Number.isFinite(input)) {
      return payload;
    }
    const received = typeof input === "number" ? Number.isNaN(input) ? "NaN" : !Number.isFinite(input) ? "Infinity" : void 0 : void 0;
    payload.issues.push({
      expected: "number",
      code: "invalid_type",
      input,
      inst,
      ...received ? { received } : {}
    });
    return payload;
  };
});
var $ZodNumberFormat = /* @__PURE__ */ $constructor("$ZodNumberFormat", (inst, def) => {
  $ZodCheckNumberFormat.init(inst, def);
  $ZodNumber.init(inst, def);
});
var $ZodBoolean = /* @__PURE__ */ $constructor("$ZodBoolean", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.pattern = boolean;
  inst._zod.parse = (payload, _ctx) => {
    if (def.coerce)
      try {
        payload.value = Boolean(payload.value);
      } catch (_) {
      }
    const input = payload.value;
    if (typeof input === "boolean")
      return payload;
    payload.issues.push({
      expected: "boolean",
      code: "invalid_type",
      input,
      inst
    });
    return payload;
  };
});
var $ZodAny = /* @__PURE__ */ $constructor("$ZodAny", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.parse = (payload) => payload;
});
var $ZodUnknown = /* @__PURE__ */ $constructor("$ZodUnknown", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.parse = (payload) => payload;
});
var $ZodNever = /* @__PURE__ */ $constructor("$ZodNever", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.parse = (payload, _ctx) => {
    payload.issues.push({
      expected: "never",
      code: "invalid_type",
      input: payload.value,
      inst
    });
    return payload;
  };
});
function handleArrayResult(result, final, index) {
  if (result.issues.length) {
    final.issues.push(...prefixIssues(index, result.issues));
  }
  final.value[index] = result.value;
}
var $ZodArray = /* @__PURE__ */ $constructor("$ZodArray", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.parse = (payload, ctx) => {
    const input = payload.value;
    if (!Array.isArray(input)) {
      payload.issues.push({
        expected: "array",
        code: "invalid_type",
        input,
        inst
      });
      return payload;
    }
    payload.value = Array(input.length);
    const proms = [];
    for (let i = 0; i < input.length; i++) {
      const item = input[i];
      const result = def.element._zod.run({
        value: item,
        issues: []
      }, ctx);
      if (result instanceof Promise) {
        proms.push(result.then((result2) => handleArrayResult(result2, payload, i)));
      } else {
        handleArrayResult(result, payload, i);
      }
    }
    if (proms.length) {
      return Promise.all(proms).then(() => payload);
    }
    return payload;
  };
});
function handlePropertyResult(result, final, key, input) {
  if (result.issues.length) {
    final.issues.push(...prefixIssues(key, result.issues));
  }
  if (result.value === void 0) {
    if (key in input) {
      final.value[key] = void 0;
    }
  } else {
    final.value[key] = result.value;
  }
}
function normalizeDef(def) {
  const keys = Object.keys(def.shape);
  for (const k of keys) {
    if (!def.shape?.[k]?._zod?.traits?.has("$ZodType")) {
      throw new Error(`Invalid element at key "${k}": expected a Zod schema`);
    }
  }
  const okeys = optionalKeys(def.shape);
  return {
    ...def,
    keys,
    keySet: new Set(keys),
    numKeys: keys.length,
    optionalKeys: new Set(okeys)
  };
}
function handleCatchall(proms, input, payload, ctx, def, inst) {
  const unrecognized = [];
  const keySet = def.keySet;
  const _catchall = def.catchall._zod;
  const t = _catchall.def.type;
  for (const key in input) {
    if (keySet.has(key))
      continue;
    if (t === "never") {
      unrecognized.push(key);
      continue;
    }
    const r = _catchall.run({ value: input[key], issues: [] }, ctx);
    if (r instanceof Promise) {
      proms.push(r.then((r2) => handlePropertyResult(r2, payload, key, input)));
    } else {
      handlePropertyResult(r, payload, key, input);
    }
  }
  if (unrecognized.length) {
    payload.issues.push({
      code: "unrecognized_keys",
      keys: unrecognized,
      input,
      inst
    });
  }
  if (!proms.length)
    return payload;
  return Promise.all(proms).then(() => {
    return payload;
  });
}
var $ZodObject = /* @__PURE__ */ $constructor("$ZodObject", (inst, def) => {
  $ZodType.init(inst, def);
  const desc = Object.getOwnPropertyDescriptor(def, "shape");
  if (!desc?.get) {
    const sh = def.shape;
    Object.defineProperty(def, "shape", {
      get: () => {
        const newSh = { ...sh };
        Object.defineProperty(def, "shape", {
          value: newSh
        });
        return newSh;
      }
    });
  }
  const _normalized = cached(() => normalizeDef(def));
  defineLazy(inst._zod, "propValues", () => {
    const shape = def.shape;
    const propValues = {};
    for (const key in shape) {
      const field = shape[key]._zod;
      if (field.values) {
        propValues[key] ?? (propValues[key] = /* @__PURE__ */ new Set());
        for (const v of field.values)
          propValues[key].add(v);
      }
    }
    return propValues;
  });
  const isObject2 = isObject;
  const catchall = def.catchall;
  let value;
  inst._zod.parse = (payload, ctx) => {
    value ?? (value = _normalized.value);
    const input = payload.value;
    if (!isObject2(input)) {
      payload.issues.push({
        expected: "object",
        code: "invalid_type",
        input,
        inst
      });
      return payload;
    }
    payload.value = {};
    const proms = [];
    const shape = value.shape;
    for (const key of value.keys) {
      const el = shape[key];
      const r = el._zod.run({ value: input[key], issues: [] }, ctx);
      if (r instanceof Promise) {
        proms.push(r.then((r2) => handlePropertyResult(r2, payload, key, input)));
      } else {
        handlePropertyResult(r, payload, key, input);
      }
    }
    if (!catchall) {
      return proms.length ? Promise.all(proms).then(() => payload) : payload;
    }
    return handleCatchall(proms, input, payload, ctx, _normalized.value, inst);
  };
});
var $ZodObjectJIT = /* @__PURE__ */ $constructor("$ZodObjectJIT", (inst, def) => {
  $ZodObject.init(inst, def);
  const superParse = inst._zod.parse;
  const _normalized = cached(() => normalizeDef(def));
  const generateFastpass = (shape) => {
    const doc = new Doc(["shape", "payload", "ctx"]);
    const normalized = _normalized.value;
    const parseStr = (key) => {
      const k = esc(key);
      return `shape[${k}]._zod.run({ value: input[${k}], issues: [] }, ctx)`;
    };
    doc.write(`const input = payload.value;`);
    const ids = /* @__PURE__ */ Object.create(null);
    let counter = 0;
    for (const key of normalized.keys) {
      ids[key] = `key_${counter++}`;
    }
    doc.write(`const newResult = {};`);
    for (const key of normalized.keys) {
      const id = ids[key];
      const k = esc(key);
      doc.write(`const ${id} = ${parseStr(key)};`);
      doc.write(`
        if (${id}.issues.length) {
          payload.issues = payload.issues.concat(${id}.issues.map(iss => ({
            ...iss,
            path: iss.path ? [${k}, ...iss.path] : [${k}]
          })));
        }
        
        
        if (${id}.value === undefined) {
          if (${k} in input) {
            newResult[${k}] = undefined;
          }
        } else {
          newResult[${k}] = ${id}.value;
        }
        
      `);
    }
    doc.write(`payload.value = newResult;`);
    doc.write(`return payload;`);
    const fn = doc.compile();
    return (payload, ctx) => fn(shape, payload, ctx);
  };
  let fastpass;
  const isObject2 = isObject;
  const jit = !globalConfig.jitless;
  const allowsEval2 = allowsEval;
  const fastEnabled = jit && allowsEval2.value;
  const catchall = def.catchall;
  let value;
  inst._zod.parse = (payload, ctx) => {
    value ?? (value = _normalized.value);
    const input = payload.value;
    if (!isObject2(input)) {
      payload.issues.push({
        expected: "object",
        code: "invalid_type",
        input,
        inst
      });
      return payload;
    }
    if (jit && fastEnabled && ctx?.async === false && ctx.jitless !== true) {
      if (!fastpass)
        fastpass = generateFastpass(def.shape);
      payload = fastpass(payload, ctx);
      if (!catchall)
        return payload;
      return handleCatchall([], input, payload, ctx, value, inst);
    }
    return superParse(payload, ctx);
  };
});
function handleUnionResults(results, final, inst, ctx) {
  for (const result of results) {
    if (result.issues.length === 0) {
      final.value = result.value;
      return final;
    }
  }
  const nonaborted = results.filter((r) => !aborted(r));
  if (nonaborted.length === 1) {
    final.value = nonaborted[0].value;
    return nonaborted[0];
  }
  final.issues.push({
    code: "invalid_union",
    input: final.value,
    inst,
    errors: results.map((result) => result.issues.map((iss) => finalizeIssue(iss, ctx, config())))
  });
  return final;
}
var $ZodUnion = /* @__PURE__ */ $constructor("$ZodUnion", (inst, def) => {
  $ZodType.init(inst, def);
  defineLazy(inst._zod, "optin", () => def.options.some((o) => o._zod.optin === "optional") ? "optional" : void 0);
  defineLazy(inst._zod, "optout", () => def.options.some((o) => o._zod.optout === "optional") ? "optional" : void 0);
  defineLazy(inst._zod, "values", () => {
    if (def.options.every((o) => o._zod.values)) {
      return new Set(def.options.flatMap((option) => Array.from(option._zod.values)));
    }
    return void 0;
  });
  defineLazy(inst._zod, "pattern", () => {
    if (def.options.every((o) => o._zod.pattern)) {
      const patterns = def.options.map((o) => o._zod.pattern);
      return new RegExp(`^(${patterns.map((p) => cleanRegex(p.source)).join("|")})$`);
    }
    return void 0;
  });
  const single = def.options.length === 1;
  const first = def.options[0]._zod.run;
  inst._zod.parse = (payload, ctx) => {
    if (single) {
      return first(payload, ctx);
    }
    let async = false;
    const results = [];
    for (const option of def.options) {
      const result = option._zod.run({
        value: payload.value,
        issues: []
      }, ctx);
      if (result instanceof Promise) {
        results.push(result);
        async = true;
      } else {
        if (result.issues.length === 0)
          return result;
        results.push(result);
      }
    }
    if (!async)
      return handleUnionResults(results, payload, inst, ctx);
    return Promise.all(results).then((results2) => {
      return handleUnionResults(results2, payload, inst, ctx);
    });
  };
});
var $ZodDiscriminatedUnion = /* @__PURE__ */ $constructor("$ZodDiscriminatedUnion", (inst, def) => {
  $ZodUnion.init(inst, def);
  const _super = inst._zod.parse;
  defineLazy(inst._zod, "propValues", () => {
    const propValues = {};
    for (const option of def.options) {
      const pv = option._zod.propValues;
      if (!pv || Object.keys(pv).length === 0)
        throw new Error(`Invalid discriminated union option at index "${def.options.indexOf(option)}"`);
      for (const [k, v] of Object.entries(pv)) {
        if (!propValues[k])
          propValues[k] = /* @__PURE__ */ new Set();
        for (const val of v) {
          propValues[k].add(val);
        }
      }
    }
    return propValues;
  });
  const disc = cached(() => {
    const opts = def.options;
    const map = /* @__PURE__ */ new Map();
    for (const o of opts) {
      const values = o._zod.propValues?.[def.discriminator];
      if (!values || values.size === 0)
        throw new Error(`Invalid discriminated union option at index "${def.options.indexOf(o)}"`);
      for (const v of values) {
        if (map.has(v)) {
          throw new Error(`Duplicate discriminator value "${String(v)}"`);
        }
        map.set(v, o);
      }
    }
    return map;
  });
  inst._zod.parse = (payload, ctx) => {
    const input = payload.value;
    if (!isObject(input)) {
      payload.issues.push({
        code: "invalid_type",
        expected: "object",
        input,
        inst
      });
      return payload;
    }
    const opt = disc.value.get(input?.[def.discriminator]);
    if (opt) {
      return opt._zod.run(payload, ctx);
    }
    if (def.unionFallback) {
      return _super(payload, ctx);
    }
    payload.issues.push({
      code: "invalid_union",
      errors: [],
      note: "No matching discriminator",
      discriminator: def.discriminator,
      input,
      path: [def.discriminator],
      inst
    });
    return payload;
  };
});
var $ZodIntersection = /* @__PURE__ */ $constructor("$ZodIntersection", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.parse = (payload, ctx) => {
    const input = payload.value;
    const left = def.left._zod.run({ value: input, issues: [] }, ctx);
    const right = def.right._zod.run({ value: input, issues: [] }, ctx);
    const async = left instanceof Promise || right instanceof Promise;
    if (async) {
      return Promise.all([left, right]).then(([left2, right2]) => {
        return handleIntersectionResults(payload, left2, right2);
      });
    }
    return handleIntersectionResults(payload, left, right);
  };
});
function mergeValues(a, b) {
  if (a === b) {
    return { valid: true, data: a };
  }
  if (a instanceof Date && b instanceof Date && +a === +b) {
    return { valid: true, data: a };
  }
  if (isPlainObject(a) && isPlainObject(b)) {
    const bKeys = Object.keys(b);
    const sharedKeys = Object.keys(a).filter((key) => bKeys.indexOf(key) !== -1);
    const newObj = { ...a, ...b };
    for (const key of sharedKeys) {
      const sharedValue = mergeValues(a[key], b[key]);
      if (!sharedValue.valid) {
        return {
          valid: false,
          mergeErrorPath: [key, ...sharedValue.mergeErrorPath]
        };
      }
      newObj[key] = sharedValue.data;
    }
    return { valid: true, data: newObj };
  }
  if (Array.isArray(a) && Array.isArray(b)) {
    if (a.length !== b.length) {
      return { valid: false, mergeErrorPath: [] };
    }
    const newArray = [];
    for (let index = 0; index < a.length; index++) {
      const itemA = a[index];
      const itemB = b[index];
      const sharedValue = mergeValues(itemA, itemB);
      if (!sharedValue.valid) {
        return {
          valid: false,
          mergeErrorPath: [index, ...sharedValue.mergeErrorPath]
        };
      }
      newArray.push(sharedValue.data);
    }
    return { valid: true, data: newArray };
  }
  return { valid: false, mergeErrorPath: [] };
}
function handleIntersectionResults(result, left, right) {
  if (left.issues.length) {
    result.issues.push(...left.issues);
  }
  if (right.issues.length) {
    result.issues.push(...right.issues);
  }
  if (aborted(result))
    return result;
  const merged = mergeValues(left.value, right.value);
  if (!merged.valid) {
    throw new Error(`Unmergable intersection. Error path: ${JSON.stringify(merged.mergeErrorPath)}`);
  }
  result.value = merged.data;
  return result;
}
var $ZodRecord = /* @__PURE__ */ $constructor("$ZodRecord", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.parse = (payload, ctx) => {
    const input = payload.value;
    if (!isPlainObject(input)) {
      payload.issues.push({
        expected: "record",
        code: "invalid_type",
        input,
        inst
      });
      return payload;
    }
    const proms = [];
    const values = def.keyType._zod.values;
    if (values) {
      payload.value = {};
      const recordKeys = /* @__PURE__ */ new Set();
      for (const key of values) {
        if (typeof key === "string" || typeof key === "number" || typeof key === "symbol") {
          recordKeys.add(typeof key === "number" ? key.toString() : key);
          const result = def.valueType._zod.run({ value: input[key], issues: [] }, ctx);
          if (result instanceof Promise) {
            proms.push(result.then((result2) => {
              if (result2.issues.length) {
                payload.issues.push(...prefixIssues(key, result2.issues));
              }
              payload.value[key] = result2.value;
            }));
          } else {
            if (result.issues.length) {
              payload.issues.push(...prefixIssues(key, result.issues));
            }
            payload.value[key] = result.value;
          }
        }
      }
      let unrecognized;
      for (const key in input) {
        if (!recordKeys.has(key)) {
          unrecognized = unrecognized ?? [];
          unrecognized.push(key);
        }
      }
      if (unrecognized && unrecognized.length > 0) {
        payload.issues.push({
          code: "unrecognized_keys",
          input,
          inst,
          keys: unrecognized
        });
      }
    } else {
      payload.value = {};
      for (const key of Reflect.ownKeys(input)) {
        if (key === "__proto__")
          continue;
        const keyResult = def.keyType._zod.run({ value: key, issues: [] }, ctx);
        if (keyResult instanceof Promise) {
          throw new Error("Async schemas not supported in object keys currently");
        }
        if (keyResult.issues.length) {
          payload.issues.push({
            code: "invalid_key",
            origin: "record",
            issues: keyResult.issues.map((iss) => finalizeIssue(iss, ctx, config())),
            input: key,
            path: [key],
            inst
          });
          payload.value[keyResult.value] = keyResult.value;
          continue;
        }
        const result = def.valueType._zod.run({ value: input[key], issues: [] }, ctx);
        if (result instanceof Promise) {
          proms.push(result.then((result2) => {
            if (result2.issues.length) {
              payload.issues.push(...prefixIssues(key, result2.issues));
            }
            payload.value[keyResult.value] = result2.value;
          }));
        } else {
          if (result.issues.length) {
            payload.issues.push(...prefixIssues(key, result.issues));
          }
          payload.value[keyResult.value] = result.value;
        }
      }
    }
    if (proms.length) {
      return Promise.all(proms).then(() => payload);
    }
    return payload;
  };
});
var $ZodEnum = /* @__PURE__ */ $constructor("$ZodEnum", (inst, def) => {
  $ZodType.init(inst, def);
  const values = getEnumValues(def.entries);
  const valuesSet = new Set(values);
  inst._zod.values = valuesSet;
  inst._zod.pattern = new RegExp(`^(${values.filter((k) => propertyKeyTypes.has(typeof k)).map((o) => typeof o === "string" ? escapeRegex(o) : o.toString()).join("|")})$`);
  inst._zod.parse = (payload, _ctx) => {
    const input = payload.value;
    if (valuesSet.has(input)) {
      return payload;
    }
    payload.issues.push({
      code: "invalid_value",
      values,
      input,
      inst
    });
    return payload;
  };
});
var $ZodLiteral = /* @__PURE__ */ $constructor("$ZodLiteral", (inst, def) => {
  $ZodType.init(inst, def);
  if (def.values.length === 0) {
    throw new Error("Cannot create literal schema with no valid values");
  }
  const values = new Set(def.values);
  inst._zod.values = values;
  inst._zod.pattern = new RegExp(`^(${def.values.map((o) => typeof o === "string" ? escapeRegex(o) : o ? escapeRegex(o.toString()) : String(o)).join("|")})$`);
  inst._zod.parse = (payload, _ctx) => {
    const input = payload.value;
    if (values.has(input)) {
      return payload;
    }
    payload.issues.push({
      code: "invalid_value",
      values: def.values,
      input,
      inst
    });
    return payload;
  };
});
var $ZodTransform = /* @__PURE__ */ $constructor("$ZodTransform", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.parse = (payload, ctx) => {
    if (ctx.direction === "backward") {
      throw new $ZodEncodeError(inst.constructor.name);
    }
    const _out = def.transform(payload.value, payload);
    if (ctx.async) {
      const output = _out instanceof Promise ? _out : Promise.resolve(_out);
      return output.then((output2) => {
        payload.value = output2;
        return payload;
      });
    }
    if (_out instanceof Promise) {
      throw new $ZodAsyncError();
    }
    payload.value = _out;
    return payload;
  };
});
function handleOptionalResult(result, input) {
  if (result.issues.length && input === void 0) {
    return { issues: [], value: void 0 };
  }
  return result;
}
var $ZodOptional = /* @__PURE__ */ $constructor("$ZodOptional", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.optin = "optional";
  inst._zod.optout = "optional";
  defineLazy(inst._zod, "values", () => {
    return def.innerType._zod.values ? /* @__PURE__ */ new Set([...def.innerType._zod.values, void 0]) : void 0;
  });
  defineLazy(inst._zod, "pattern", () => {
    const pattern = def.innerType._zod.pattern;
    return pattern ? new RegExp(`^(${cleanRegex(pattern.source)})?$`) : void 0;
  });
  inst._zod.parse = (payload, ctx) => {
    if (def.innerType._zod.optin === "optional") {
      const result = def.innerType._zod.run(payload, ctx);
      if (result instanceof Promise)
        return result.then((r) => handleOptionalResult(r, payload.value));
      return handleOptionalResult(result, payload.value);
    }
    if (payload.value === void 0) {
      return payload;
    }
    return def.innerType._zod.run(payload, ctx);
  };
});
var $ZodNullable = /* @__PURE__ */ $constructor("$ZodNullable", (inst, def) => {
  $ZodType.init(inst, def);
  defineLazy(inst._zod, "optin", () => def.innerType._zod.optin);
  defineLazy(inst._zod, "optout", () => def.innerType._zod.optout);
  defineLazy(inst._zod, "pattern", () => {
    const pattern = def.innerType._zod.pattern;
    return pattern ? new RegExp(`^(${cleanRegex(pattern.source)}|null)$`) : void 0;
  });
  defineLazy(inst._zod, "values", () => {
    return def.innerType._zod.values ? /* @__PURE__ */ new Set([...def.innerType._zod.values, null]) : void 0;
  });
  inst._zod.parse = (payload, ctx) => {
    if (payload.value === null)
      return payload;
    return def.innerType._zod.run(payload, ctx);
  };
});
var $ZodDefault = /* @__PURE__ */ $constructor("$ZodDefault", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.optin = "optional";
  defineLazy(inst._zod, "values", () => def.innerType._zod.values);
  inst._zod.parse = (payload, ctx) => {
    if (ctx.direction === "backward") {
      return def.innerType._zod.run(payload, ctx);
    }
    if (payload.value === void 0) {
      payload.value = def.defaultValue;
      return payload;
    }
    const result = def.innerType._zod.run(payload, ctx);
    if (result instanceof Promise) {
      return result.then((result2) => handleDefaultResult(result2, def));
    }
    return handleDefaultResult(result, def);
  };
});
function handleDefaultResult(payload, def) {
  if (payload.value === void 0) {
    payload.value = def.defaultValue;
  }
  return payload;
}
var $ZodPrefault = /* @__PURE__ */ $constructor("$ZodPrefault", (inst, def) => {
  $ZodType.init(inst, def);
  inst._zod.optin = "optional";
  defineLazy(inst._zod, "values", () => def.innerType._zod.values);
  inst._zod.parse = (payload, ctx) => {
    if (ctx.direction === "backward") {
      return def.innerType._zod.run(payload, ctx);
    }
    if (payload.value === void 0) {
      payload.value = def.defaultValue;
    }
    return def.innerType._zod.run(payload, ctx);
  };
});
var $ZodNonOptional = /* @__PURE__ */ $constructor("$ZodNonOptional", (inst, def) => {
  $ZodType.init(inst, def);
  defineLazy(inst._zod, "values", () => {
    const v = def.innerType._zod.values;
    return v ? new Set([...v].filter((x) => x !== void 0)) : void 0;
  });
  inst._zod.parse = (payload, ctx) => {
    const result = def.innerType._zod.run(payload, ctx);
    if (result instanceof Promise) {
      return result.then((result2) => handleNonOptionalResult(result2, inst));
    }
    return handleNonOptionalResult(result, inst);
  };
});
function handleNonOptionalResult(payload, inst) {
  if (!payload.issues.length && payload.value === void 0) {
    payload.issues.push({
      code: "invalid_type",
      expected: "nonoptional",
      input: payload.value,
      inst
    });
  }
  return payload;
}
var $ZodCatch = /* @__PURE__ */ $constructor("$ZodCatch", (inst, def) => {
  $ZodType.init(inst, def);
  defineLazy(inst._zod, "optin", () => def.innerType._zod.optin);
  defineLazy(inst._zod, "optout", () => def.innerType._zod.optout);
  defineLazy(inst._zod, "values", () => def.innerType._zod.values);
  inst._zod.parse = (payload, ctx) => {
    if (ctx.direction === "backward") {
      return def.innerType._zod.run(payload, ctx);
    }
    const result = def.innerType._zod.run(payload, ctx);
    if (result instanceof Promise) {
      return result.then((result2) => {
        payload.value = result2.value;
        if (result2.issues.length) {
          payload.value = def.catchValue({
            ...payload,
            error: {
              issues: result2.issues.map((iss) => finalizeIssue(iss, ctx, config()))
            },
            input: payload.value
          });
          payload.issues = [];
        }
        return payload;
      });
    }
    payload.value = result.value;
    if (result.issues.length) {
      payload.value = def.catchValue({
        ...payload,
        error: {
          issues: result.issues.map((iss) => finalizeIssue(iss, ctx, config()))
        },
        input: payload.value
      });
      payload.issues = [];
    }
    return payload;
  };
});
var $ZodPipe = /* @__PURE__ */ $constructor("$ZodPipe", (inst, def) => {
  $ZodType.init(inst, def);
  defineLazy(inst._zod, "values", () => def.in._zod.values);
  defineLazy(inst._zod, "optin", () => def.in._zod.optin);
  defineLazy(inst._zod, "optout", () => def.out._zod.optout);
  defineLazy(inst._zod, "propValues", () => def.in._zod.propValues);
  inst._zod.parse = (payload, ctx) => {
    if (ctx.direction === "backward") {
      const right = def.out._zod.run(payload, ctx);
      if (right instanceof Promise) {
        return right.then((right2) => handlePipeResult(right2, def.in, ctx));
      }
      return handlePipeResult(right, def.in, ctx);
    }
    const left = def.in._zod.run(payload, ctx);
    if (left instanceof Promise) {
      return left.then((left2) => handlePipeResult(left2, def.out, ctx));
    }
    return handlePipeResult(left, def.out, ctx);
  };
});
function handlePipeResult(left, next, ctx) {
  if (left.issues.length) {
    left.aborted = true;
    return left;
  }
  return next._zod.run({ value: left.value, issues: left.issues }, ctx);
}
var $ZodReadonly = /* @__PURE__ */ $constructor("$ZodReadonly", (inst, def) => {
  $ZodType.init(inst, def);
  defineLazy(inst._zod, "propValues", () => def.innerType._zod.propValues);
  defineLazy(inst._zod, "values", () => def.innerType._zod.values);
  defineLazy(inst._zod, "optin", () => def.innerType?._zod?.optin);
  defineLazy(inst._zod, "optout", () => def.innerType?._zod?.optout);
  inst._zod.parse = (payload, ctx) => {
    if (ctx.direction === "backward") {
      return def.innerType._zod.run(payload, ctx);
    }
    const result = def.innerType._zod.run(payload, ctx);
    if (result instanceof Promise) {
      return result.then(handleReadonlyResult);
    }
    return handleReadonlyResult(result);
  };
});
function handleReadonlyResult(payload) {
  payload.value = Object.freeze(payload.value);
  return payload;
}
var $ZodCustom = /* @__PURE__ */ $constructor("$ZodCustom", (inst, def) => {
  $ZodCheck.init(inst, def);
  $ZodType.init(inst, def);
  inst._zod.parse = (payload, _) => {
    return payload;
  };
  inst._zod.check = (payload) => {
    const input = payload.value;
    const r = def.fn(input);
    if (r instanceof Promise) {
      return r.then((r2) => handleRefineResult(r2, payload, input, inst));
    }
    handleRefineResult(r, payload, input, inst);
    return;
  };
});
function handleRefineResult(result, payload, input, inst) {
  if (!result) {
    const _iss = {
      code: "custom",
      input,
      inst,
      // incorporates params.error into issue reporting
      path: [...inst._zod.def.path ?? []],
      // incorporates params.error into issue reporting
      continue: !inst._zod.def.abort
      // params: inst._zod.def.params,
    };
    if (inst._zod.def.params)
      _iss.params = inst._zod.def.params;
    payload.issues.push(issue(_iss));
  }
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/locales/en.js
var parsedType = (data) => {
  const t = typeof data;
  switch (t) {
    case "number": {
      return Number.isNaN(data) ? "NaN" : "number";
    }
    case "object": {
      if (Array.isArray(data)) {
        return "array";
      }
      if (data === null) {
        return "null";
      }
      if (Object.getPrototypeOf(data) !== Object.prototype && data.constructor) {
        return data.constructor.name;
      }
    }
  }
  return t;
};
var error = () => {
  const Sizable = {
    string: { unit: "characters", verb: "to have" },
    file: { unit: "bytes", verb: "to have" },
    array: { unit: "items", verb: "to have" },
    set: { unit: "items", verb: "to have" }
  };
  function getSizing(origin) {
    return Sizable[origin] ?? null;
  }
  const Nouns = {
    regex: "input",
    email: "email address",
    url: "URL",
    emoji: "emoji",
    uuid: "UUID",
    uuidv4: "UUIDv4",
    uuidv6: "UUIDv6",
    nanoid: "nanoid",
    guid: "GUID",
    cuid: "cuid",
    cuid2: "cuid2",
    ulid: "ULID",
    xid: "XID",
    ksuid: "KSUID",
    datetime: "ISO datetime",
    date: "ISO date",
    time: "ISO time",
    duration: "ISO duration",
    ipv4: "IPv4 address",
    ipv6: "IPv6 address",
    mac: "MAC address",
    cidrv4: "IPv4 range",
    cidrv6: "IPv6 range",
    base64: "base64-encoded string",
    base64url: "base64url-encoded string",
    json_string: "JSON string",
    e164: "E.164 number",
    jwt: "JWT",
    template_literal: "input"
  };
  return (issue2) => {
    switch (issue2.code) {
      case "invalid_type":
        return `Invalid input: expected ${issue2.expected}, received ${parsedType(issue2.input)}`;
      case "invalid_value":
        if (issue2.values.length === 1)
          return `Invalid input: expected ${stringifyPrimitive(issue2.values[0])}`;
        return `Invalid option: expected one of ${joinValues(issue2.values, "|")}`;
      case "too_big": {
        const adj = issue2.inclusive ? "<=" : "<";
        const sizing = getSizing(issue2.origin);
        if (sizing)
          return `Too big: expected ${issue2.origin ?? "value"} to have ${adj}${issue2.maximum.toString()} ${sizing.unit ?? "elements"}`;
        return `Too big: expected ${issue2.origin ?? "value"} to be ${adj}${issue2.maximum.toString()}`;
      }
      case "too_small": {
        const adj = issue2.inclusive ? ">=" : ">";
        const sizing = getSizing(issue2.origin);
        if (sizing) {
          return `Too small: expected ${issue2.origin} to have ${adj}${issue2.minimum.toString()} ${sizing.unit}`;
        }
        return `Too small: expected ${issue2.origin} to be ${adj}${issue2.minimum.toString()}`;
      }
      case "invalid_format": {
        const _issue = issue2;
        if (_issue.format === "starts_with") {
          return `Invalid string: must start with "${_issue.prefix}"`;
        }
        if (_issue.format === "ends_with")
          return `Invalid string: must end with "${_issue.suffix}"`;
        if (_issue.format === "includes")
          return `Invalid string: must include "${_issue.includes}"`;
        if (_issue.format === "regex")
          return `Invalid string: must match pattern ${_issue.pattern}`;
        return `Invalid ${Nouns[_issue.format] ?? issue2.format}`;
      }
      case "not_multiple_of":
        return `Invalid number: must be a multiple of ${issue2.divisor}`;
      case "unrecognized_keys":
        return `Unrecognized key${issue2.keys.length > 1 ? "s" : ""}: ${joinValues(issue2.keys, ", ")}`;
      case "invalid_key":
        return `Invalid key in ${issue2.origin}`;
      case "invalid_union":
        return "Invalid input";
      case "invalid_element":
        return `Invalid value in ${issue2.origin}`;
      default:
        return `Invalid input`;
    }
  };
};
function en_default() {
  return {
    localeError: error()
  };
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/registries.js
var _a;
var $output = Symbol("ZodOutput");
var $input = Symbol("ZodInput");
var $ZodRegistry = class {
  constructor() {
    this._map = /* @__PURE__ */ new WeakMap();
    this._idmap = /* @__PURE__ */ new Map();
  }
  add(schema, ..._meta) {
    const meta2 = _meta[0];
    this._map.set(schema, meta2);
    if (meta2 && typeof meta2 === "object" && "id" in meta2) {
      if (this._idmap.has(meta2.id)) {
        throw new Error(`ID ${meta2.id} already exists in the registry`);
      }
      this._idmap.set(meta2.id, schema);
    }
    return this;
  }
  clear() {
    this._map = /* @__PURE__ */ new WeakMap();
    this._idmap = /* @__PURE__ */ new Map();
    return this;
  }
  remove(schema) {
    const meta2 = this._map.get(schema);
    if (meta2 && typeof meta2 === "object" && "id" in meta2) {
      this._idmap.delete(meta2.id);
    }
    this._map.delete(schema);
    return this;
  }
  get(schema) {
    const p = schema._zod.parent;
    if (p) {
      const pm = { ...this.get(p) ?? {} };
      delete pm.id;
      const f = { ...pm, ...this._map.get(schema) };
      return Object.keys(f).length ? f : void 0;
    }
    return this._map.get(schema);
  }
  has(schema) {
    return this._map.has(schema);
  }
};
function registry() {
  return new $ZodRegistry();
}
(_a = globalThis).__zod_globalRegistry ?? (_a.__zod_globalRegistry = registry());
var globalRegistry = globalThis.__zod_globalRegistry;

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/core/api.js
function _string(Class2, params) {
  return new Class2({
    type: "string",
    ...normalizeParams(params)
  });
}
function _email(Class2, params) {
  return new Class2({
    type: "string",
    format: "email",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _guid(Class2, params) {
  return new Class2({
    type: "string",
    format: "guid",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _uuid(Class2, params) {
  return new Class2({
    type: "string",
    format: "uuid",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _uuidv4(Class2, params) {
  return new Class2({
    type: "string",
    format: "uuid",
    check: "string_format",
    abort: false,
    version: "v4",
    ...normalizeParams(params)
  });
}
function _uuidv6(Class2, params) {
  return new Class2({
    type: "string",
    format: "uuid",
    check: "string_format",
    abort: false,
    version: "v6",
    ...normalizeParams(params)
  });
}
function _uuidv7(Class2, params) {
  return new Class2({
    type: "string",
    format: "uuid",
    check: "string_format",
    abort: false,
    version: "v7",
    ...normalizeParams(params)
  });
}
function _url(Class2, params) {
  return new Class2({
    type: "string",
    format: "url",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _emoji2(Class2, params) {
  return new Class2({
    type: "string",
    format: "emoji",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _nanoid(Class2, params) {
  return new Class2({
    type: "string",
    format: "nanoid",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _cuid(Class2, params) {
  return new Class2({
    type: "string",
    format: "cuid",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _cuid2(Class2, params) {
  return new Class2({
    type: "string",
    format: "cuid2",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _ulid(Class2, params) {
  return new Class2({
    type: "string",
    format: "ulid",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _xid(Class2, params) {
  return new Class2({
    type: "string",
    format: "xid",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _ksuid(Class2, params) {
  return new Class2({
    type: "string",
    format: "ksuid",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _ipv4(Class2, params) {
  return new Class2({
    type: "string",
    format: "ipv4",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _ipv6(Class2, params) {
  return new Class2({
    type: "string",
    format: "ipv6",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _cidrv4(Class2, params) {
  return new Class2({
    type: "string",
    format: "cidrv4",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _cidrv6(Class2, params) {
  return new Class2({
    type: "string",
    format: "cidrv6",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _base64(Class2, params) {
  return new Class2({
    type: "string",
    format: "base64",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _base64url(Class2, params) {
  return new Class2({
    type: "string",
    format: "base64url",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _e164(Class2, params) {
  return new Class2({
    type: "string",
    format: "e164",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _jwt(Class2, params) {
  return new Class2({
    type: "string",
    format: "jwt",
    check: "string_format",
    abort: false,
    ...normalizeParams(params)
  });
}
function _isoDateTime(Class2, params) {
  return new Class2({
    type: "string",
    format: "datetime",
    check: "string_format",
    offset: false,
    local: false,
    precision: null,
    ...normalizeParams(params)
  });
}
function _isoDate(Class2, params) {
  return new Class2({
    type: "string",
    format: "date",
    check: "string_format",
    ...normalizeParams(params)
  });
}
function _isoTime(Class2, params) {
  return new Class2({
    type: "string",
    format: "time",
    check: "string_format",
    precision: null,
    ...normalizeParams(params)
  });
}
function _isoDuration(Class2, params) {
  return new Class2({
    type: "string",
    format: "duration",
    check: "string_format",
    ...normalizeParams(params)
  });
}
function _number(Class2, params) {
  return new Class2({
    type: "number",
    checks: [],
    ...normalizeParams(params)
  });
}
function _int(Class2, params) {
  return new Class2({
    type: "number",
    check: "number_format",
    abort: false,
    format: "safeint",
    ...normalizeParams(params)
  });
}
function _boolean(Class2, params) {
  return new Class2({
    type: "boolean",
    ...normalizeParams(params)
  });
}
function _any(Class2) {
  return new Class2({
    type: "any"
  });
}
function _unknown(Class2) {
  return new Class2({
    type: "unknown"
  });
}
function _never(Class2, params) {
  return new Class2({
    type: "never",
    ...normalizeParams(params)
  });
}
function _lt(value, params) {
  return new $ZodCheckLessThan({
    check: "less_than",
    ...normalizeParams(params),
    value,
    inclusive: false
  });
}
function _lte(value, params) {
  return new $ZodCheckLessThan({
    check: "less_than",
    ...normalizeParams(params),
    value,
    inclusive: true
  });
}
function _gt(value, params) {
  return new $ZodCheckGreaterThan({
    check: "greater_than",
    ...normalizeParams(params),
    value,
    inclusive: false
  });
}
function _gte(value, params) {
  return new $ZodCheckGreaterThan({
    check: "greater_than",
    ...normalizeParams(params),
    value,
    inclusive: true
  });
}
function _multipleOf(value, params) {
  return new $ZodCheckMultipleOf({
    check: "multiple_of",
    ...normalizeParams(params),
    value
  });
}
function _maxLength(maximum, params) {
  const ch = new $ZodCheckMaxLength({
    check: "max_length",
    ...normalizeParams(params),
    maximum
  });
  return ch;
}
function _minLength(minimum, params) {
  return new $ZodCheckMinLength({
    check: "min_length",
    ...normalizeParams(params),
    minimum
  });
}
function _length(length, params) {
  return new $ZodCheckLengthEquals({
    check: "length_equals",
    ...normalizeParams(params),
    length
  });
}
function _regex(pattern, params) {
  return new $ZodCheckRegex({
    check: "string_format",
    format: "regex",
    ...normalizeParams(params),
    pattern
  });
}
function _lowercase(params) {
  return new $ZodCheckLowerCase({
    check: "string_format",
    format: "lowercase",
    ...normalizeParams(params)
  });
}
function _uppercase(params) {
  return new $ZodCheckUpperCase({
    check: "string_format",
    format: "uppercase",
    ...normalizeParams(params)
  });
}
function _includes(includes, params) {
  return new $ZodCheckIncludes({
    check: "string_format",
    format: "includes",
    ...normalizeParams(params),
    includes
  });
}
function _startsWith(prefix, params) {
  return new $ZodCheckStartsWith({
    check: "string_format",
    format: "starts_with",
    ...normalizeParams(params),
    prefix
  });
}
function _endsWith(suffix, params) {
  return new $ZodCheckEndsWith({
    check: "string_format",
    format: "ends_with",
    ...normalizeParams(params),
    suffix
  });
}
function _overwrite(tx) {
  return new $ZodCheckOverwrite({
    check: "overwrite",
    tx
  });
}
function _normalize(form) {
  return _overwrite((input) => input.normalize(form));
}
function _trim() {
  return _overwrite((input) => input.trim());
}
function _toLowerCase() {
  return _overwrite((input) => input.toLowerCase());
}
function _toUpperCase() {
  return _overwrite((input) => input.toUpperCase());
}
function _slugify() {
  return _overwrite((input) => slugify(input));
}
function _array(Class2, element, params) {
  return new Class2({
    type: "array",
    element,
    // get element() {
    //   return element;
    // },
    ...normalizeParams(params)
  });
}
function _custom(Class2, fn, _params) {
  const norm = normalizeParams(_params);
  norm.abort ?? (norm.abort = true);
  const schema = new Class2({
    type: "custom",
    check: "custom",
    fn,
    ...norm
  });
  return schema;
}
function _refine(Class2, fn, _params) {
  const schema = new Class2({
    type: "custom",
    check: "custom",
    fn,
    ...normalizeParams(_params)
  });
  return schema;
}
function _superRefine(fn) {
  const ch = _check((payload) => {
    payload.addIssue = (issue2) => {
      if (typeof issue2 === "string") {
        payload.issues.push(issue(issue2, payload.value, ch._zod.def));
      } else {
        const _issue = issue2;
        if (_issue.fatal)
          _issue.continue = false;
        _issue.code ?? (_issue.code = "custom");
        _issue.input ?? (_issue.input = payload.value);
        _issue.inst ?? (_issue.inst = ch);
        _issue.continue ?? (_issue.continue = !ch._zod.def.abort);
        payload.issues.push(issue(_issue));
      }
    };
    return fn(payload.value, payload);
  });
  return ch;
}
function _check(fn, params) {
  const ch = new $ZodCheck({
    check: "custom",
    ...normalizeParams(params)
  });
  ch._zod.check = fn;
  return ch;
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/classic/iso.js
var ZodISODateTime = /* @__PURE__ */ $constructor("ZodISODateTime", (inst, def) => {
  $ZodISODateTime.init(inst, def);
  ZodStringFormat.init(inst, def);
});
function datetime2(params) {
  return _isoDateTime(ZodISODateTime, params);
}
var ZodISODate = /* @__PURE__ */ $constructor("ZodISODate", (inst, def) => {
  $ZodISODate.init(inst, def);
  ZodStringFormat.init(inst, def);
});
function date2(params) {
  return _isoDate(ZodISODate, params);
}
var ZodISOTime = /* @__PURE__ */ $constructor("ZodISOTime", (inst, def) => {
  $ZodISOTime.init(inst, def);
  ZodStringFormat.init(inst, def);
});
function time2(params) {
  return _isoTime(ZodISOTime, params);
}
var ZodISODuration = /* @__PURE__ */ $constructor("ZodISODuration", (inst, def) => {
  $ZodISODuration.init(inst, def);
  ZodStringFormat.init(inst, def);
});
function duration2(params) {
  return _isoDuration(ZodISODuration, params);
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/classic/errors.js
var initializer2 = (inst, issues) => {
  $ZodError.init(inst, issues);
  inst.name = "ZodError";
  Object.defineProperties(inst, {
    format: {
      value: (mapper) => formatError(inst, mapper)
      // enumerable: false,
    },
    flatten: {
      value: (mapper) => flattenError(inst, mapper)
      // enumerable: false,
    },
    addIssue: {
      value: (issue2) => {
        inst.issues.push(issue2);
        inst.message = JSON.stringify(inst.issues, jsonStringifyReplacer, 2);
      }
      // enumerable: false,
    },
    addIssues: {
      value: (issues2) => {
        inst.issues.push(...issues2);
        inst.message = JSON.stringify(inst.issues, jsonStringifyReplacer, 2);
      }
      // enumerable: false,
    },
    isEmpty: {
      get() {
        return inst.issues.length === 0;
      }
      // enumerable: false,
    }
  });
};
var ZodError = $constructor("ZodError", initializer2);
var ZodRealError = $constructor("ZodError", initializer2, {
  Parent: Error
});

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/classic/parse.js
var parse2 = /* @__PURE__ */ _parse(ZodRealError);
var parseAsync2 = /* @__PURE__ */ _parseAsync(ZodRealError);
var safeParse2 = /* @__PURE__ */ _safeParse(ZodRealError);
var safeParseAsync2 = /* @__PURE__ */ _safeParseAsync(ZodRealError);
var encode = /* @__PURE__ */ _encode(ZodRealError);
var decode = /* @__PURE__ */ _decode(ZodRealError);
var encodeAsync = /* @__PURE__ */ _encodeAsync(ZodRealError);
var decodeAsync = /* @__PURE__ */ _decodeAsync(ZodRealError);
var safeEncode = /* @__PURE__ */ _safeEncode(ZodRealError);
var safeDecode = /* @__PURE__ */ _safeDecode(ZodRealError);
var safeEncodeAsync = /* @__PURE__ */ _safeEncodeAsync(ZodRealError);
var safeDecodeAsync = /* @__PURE__ */ _safeDecodeAsync(ZodRealError);

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/classic/schemas.js
var ZodType = /* @__PURE__ */ $constructor("ZodType", (inst, def) => {
  $ZodType.init(inst, def);
  inst.def = def;
  inst.type = def.type;
  Object.defineProperty(inst, "_def", { value: def });
  inst.check = (...checks) => {
    return inst.clone(util_exports.mergeDefs(def, {
      checks: [
        ...def.checks ?? [],
        ...checks.map((ch) => typeof ch === "function" ? { _zod: { check: ch, def: { check: "custom" }, onattach: [] } } : ch)
      ]
    }));
  };
  inst.clone = (def2, params) => clone(inst, def2, params);
  inst.brand = () => inst;
  inst.register = (reg, meta2) => {
    reg.add(inst, meta2);
    return inst;
  };
  inst.parse = (data, params) => parse2(inst, data, params, { callee: inst.parse });
  inst.safeParse = (data, params) => safeParse2(inst, data, params);
  inst.parseAsync = async (data, params) => parseAsync2(inst, data, params, { callee: inst.parseAsync });
  inst.safeParseAsync = async (data, params) => safeParseAsync2(inst, data, params);
  inst.spa = inst.safeParseAsync;
  inst.encode = (data, params) => encode(inst, data, params);
  inst.decode = (data, params) => decode(inst, data, params);
  inst.encodeAsync = async (data, params) => encodeAsync(inst, data, params);
  inst.decodeAsync = async (data, params) => decodeAsync(inst, data, params);
  inst.safeEncode = (data, params) => safeEncode(inst, data, params);
  inst.safeDecode = (data, params) => safeDecode(inst, data, params);
  inst.safeEncodeAsync = async (data, params) => safeEncodeAsync(inst, data, params);
  inst.safeDecodeAsync = async (data, params) => safeDecodeAsync(inst, data, params);
  inst.refine = (check, params) => inst.check(refine(check, params));
  inst.superRefine = (refinement) => inst.check(superRefine(refinement));
  inst.overwrite = (fn) => inst.check(_overwrite(fn));
  inst.optional = () => optional(inst);
  inst.nullable = () => nullable(inst);
  inst.nullish = () => optional(nullable(inst));
  inst.nonoptional = (params) => nonoptional(inst, params);
  inst.array = () => array(inst);
  inst.or = (arg) => union([inst, arg]);
  inst.and = (arg) => intersection(inst, arg);
  inst.transform = (tx) => pipe(inst, transform(tx));
  inst.default = (def2) => _default(inst, def2);
  inst.prefault = (def2) => prefault(inst, def2);
  inst.catch = (params) => _catch(inst, params);
  inst.pipe = (target) => pipe(inst, target);
  inst.readonly = () => readonly(inst);
  inst.describe = (description) => {
    const cl = inst.clone();
    globalRegistry.add(cl, { description });
    return cl;
  };
  Object.defineProperty(inst, "description", {
    get() {
      return globalRegistry.get(inst)?.description;
    },
    configurable: true
  });
  inst.meta = (...args) => {
    if (args.length === 0) {
      return globalRegistry.get(inst);
    }
    const cl = inst.clone();
    globalRegistry.add(cl, args[0]);
    return cl;
  };
  inst.isOptional = () => inst.safeParse(void 0).success;
  inst.isNullable = () => inst.safeParse(null).success;
  return inst;
});
var _ZodString = /* @__PURE__ */ $constructor("_ZodString", (inst, def) => {
  $ZodString.init(inst, def);
  ZodType.init(inst, def);
  const bag = inst._zod.bag;
  inst.format = bag.format ?? null;
  inst.minLength = bag.minimum ?? null;
  inst.maxLength = bag.maximum ?? null;
  inst.regex = (...args) => inst.check(_regex(...args));
  inst.includes = (...args) => inst.check(_includes(...args));
  inst.startsWith = (...args) => inst.check(_startsWith(...args));
  inst.endsWith = (...args) => inst.check(_endsWith(...args));
  inst.min = (...args) => inst.check(_minLength(...args));
  inst.max = (...args) => inst.check(_maxLength(...args));
  inst.length = (...args) => inst.check(_length(...args));
  inst.nonempty = (...args) => inst.check(_minLength(1, ...args));
  inst.lowercase = (params) => inst.check(_lowercase(params));
  inst.uppercase = (params) => inst.check(_uppercase(params));
  inst.trim = () => inst.check(_trim());
  inst.normalize = (...args) => inst.check(_normalize(...args));
  inst.toLowerCase = () => inst.check(_toLowerCase());
  inst.toUpperCase = () => inst.check(_toUpperCase());
  inst.slugify = () => inst.check(_slugify());
});
var ZodString = /* @__PURE__ */ $constructor("ZodString", (inst, def) => {
  $ZodString.init(inst, def);
  _ZodString.init(inst, def);
  inst.email = (params) => inst.check(_email(ZodEmail, params));
  inst.url = (params) => inst.check(_url(ZodURL, params));
  inst.jwt = (params) => inst.check(_jwt(ZodJWT, params));
  inst.emoji = (params) => inst.check(_emoji2(ZodEmoji, params));
  inst.guid = (params) => inst.check(_guid(ZodGUID, params));
  inst.uuid = (params) => inst.check(_uuid(ZodUUID, params));
  inst.uuidv4 = (params) => inst.check(_uuidv4(ZodUUID, params));
  inst.uuidv6 = (params) => inst.check(_uuidv6(ZodUUID, params));
  inst.uuidv7 = (params) => inst.check(_uuidv7(ZodUUID, params));
  inst.nanoid = (params) => inst.check(_nanoid(ZodNanoID, params));
  inst.guid = (params) => inst.check(_guid(ZodGUID, params));
  inst.cuid = (params) => inst.check(_cuid(ZodCUID, params));
  inst.cuid2 = (params) => inst.check(_cuid2(ZodCUID2, params));
  inst.ulid = (params) => inst.check(_ulid(ZodULID, params));
  inst.base64 = (params) => inst.check(_base64(ZodBase64, params));
  inst.base64url = (params) => inst.check(_base64url(ZodBase64URL, params));
  inst.xid = (params) => inst.check(_xid(ZodXID, params));
  inst.ksuid = (params) => inst.check(_ksuid(ZodKSUID, params));
  inst.ipv4 = (params) => inst.check(_ipv4(ZodIPv4, params));
  inst.ipv6 = (params) => inst.check(_ipv6(ZodIPv6, params));
  inst.cidrv4 = (params) => inst.check(_cidrv4(ZodCIDRv4, params));
  inst.cidrv6 = (params) => inst.check(_cidrv6(ZodCIDRv6, params));
  inst.e164 = (params) => inst.check(_e164(ZodE164, params));
  inst.datetime = (params) => inst.check(datetime2(params));
  inst.date = (params) => inst.check(date2(params));
  inst.time = (params) => inst.check(time2(params));
  inst.duration = (params) => inst.check(duration2(params));
});
function string2(params) {
  return _string(ZodString, params);
}
var ZodStringFormat = /* @__PURE__ */ $constructor("ZodStringFormat", (inst, def) => {
  $ZodStringFormat.init(inst, def);
  _ZodString.init(inst, def);
});
var ZodEmail = /* @__PURE__ */ $constructor("ZodEmail", (inst, def) => {
  $ZodEmail.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodGUID = /* @__PURE__ */ $constructor("ZodGUID", (inst, def) => {
  $ZodGUID.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodUUID = /* @__PURE__ */ $constructor("ZodUUID", (inst, def) => {
  $ZodUUID.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodURL = /* @__PURE__ */ $constructor("ZodURL", (inst, def) => {
  $ZodURL.init(inst, def);
  ZodStringFormat.init(inst, def);
});
function url(params) {
  return _url(ZodURL, params);
}
var ZodEmoji = /* @__PURE__ */ $constructor("ZodEmoji", (inst, def) => {
  $ZodEmoji.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodNanoID = /* @__PURE__ */ $constructor("ZodNanoID", (inst, def) => {
  $ZodNanoID.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodCUID = /* @__PURE__ */ $constructor("ZodCUID", (inst, def) => {
  $ZodCUID.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodCUID2 = /* @__PURE__ */ $constructor("ZodCUID2", (inst, def) => {
  $ZodCUID2.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodULID = /* @__PURE__ */ $constructor("ZodULID", (inst, def) => {
  $ZodULID.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodXID = /* @__PURE__ */ $constructor("ZodXID", (inst, def) => {
  $ZodXID.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodKSUID = /* @__PURE__ */ $constructor("ZodKSUID", (inst, def) => {
  $ZodKSUID.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodIPv4 = /* @__PURE__ */ $constructor("ZodIPv4", (inst, def) => {
  $ZodIPv4.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodIPv6 = /* @__PURE__ */ $constructor("ZodIPv6", (inst, def) => {
  $ZodIPv6.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodCIDRv4 = /* @__PURE__ */ $constructor("ZodCIDRv4", (inst, def) => {
  $ZodCIDRv4.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodCIDRv6 = /* @__PURE__ */ $constructor("ZodCIDRv6", (inst, def) => {
  $ZodCIDRv6.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodBase64 = /* @__PURE__ */ $constructor("ZodBase64", (inst, def) => {
  $ZodBase64.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodBase64URL = /* @__PURE__ */ $constructor("ZodBase64URL", (inst, def) => {
  $ZodBase64URL.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodE164 = /* @__PURE__ */ $constructor("ZodE164", (inst, def) => {
  $ZodE164.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodJWT = /* @__PURE__ */ $constructor("ZodJWT", (inst, def) => {
  $ZodJWT.init(inst, def);
  ZodStringFormat.init(inst, def);
});
var ZodNumber = /* @__PURE__ */ $constructor("ZodNumber", (inst, def) => {
  $ZodNumber.init(inst, def);
  ZodType.init(inst, def);
  inst.gt = (value, params) => inst.check(_gt(value, params));
  inst.gte = (value, params) => inst.check(_gte(value, params));
  inst.min = (value, params) => inst.check(_gte(value, params));
  inst.lt = (value, params) => inst.check(_lt(value, params));
  inst.lte = (value, params) => inst.check(_lte(value, params));
  inst.max = (value, params) => inst.check(_lte(value, params));
  inst.int = (params) => inst.check(int(params));
  inst.safe = (params) => inst.check(int(params));
  inst.positive = (params) => inst.check(_gt(0, params));
  inst.nonnegative = (params) => inst.check(_gte(0, params));
  inst.negative = (params) => inst.check(_lt(0, params));
  inst.nonpositive = (params) => inst.check(_lte(0, params));
  inst.multipleOf = (value, params) => inst.check(_multipleOf(value, params));
  inst.step = (value, params) => inst.check(_multipleOf(value, params));
  inst.finite = () => inst;
  const bag = inst._zod.bag;
  inst.minValue = Math.max(bag.minimum ?? Number.NEGATIVE_INFINITY, bag.exclusiveMinimum ?? Number.NEGATIVE_INFINITY) ?? null;
  inst.maxValue = Math.min(bag.maximum ?? Number.POSITIVE_INFINITY, bag.exclusiveMaximum ?? Number.POSITIVE_INFINITY) ?? null;
  inst.isInt = (bag.format ?? "").includes("int") || Number.isSafeInteger(bag.multipleOf ?? 0.5);
  inst.isFinite = true;
  inst.format = bag.format ?? null;
});
function number2(params) {
  return _number(ZodNumber, params);
}
var ZodNumberFormat = /* @__PURE__ */ $constructor("ZodNumberFormat", (inst, def) => {
  $ZodNumberFormat.init(inst, def);
  ZodNumber.init(inst, def);
});
function int(params) {
  return _int(ZodNumberFormat, params);
}
var ZodBoolean = /* @__PURE__ */ $constructor("ZodBoolean", (inst, def) => {
  $ZodBoolean.init(inst, def);
  ZodType.init(inst, def);
});
function boolean2(params) {
  return _boolean(ZodBoolean, params);
}
var ZodAny = /* @__PURE__ */ $constructor("ZodAny", (inst, def) => {
  $ZodAny.init(inst, def);
  ZodType.init(inst, def);
});
function any() {
  return _any(ZodAny);
}
var ZodUnknown = /* @__PURE__ */ $constructor("ZodUnknown", (inst, def) => {
  $ZodUnknown.init(inst, def);
  ZodType.init(inst, def);
});
function unknown() {
  return _unknown(ZodUnknown);
}
var ZodNever = /* @__PURE__ */ $constructor("ZodNever", (inst, def) => {
  $ZodNever.init(inst, def);
  ZodType.init(inst, def);
});
function never(params) {
  return _never(ZodNever, params);
}
var ZodArray = /* @__PURE__ */ $constructor("ZodArray", (inst, def) => {
  $ZodArray.init(inst, def);
  ZodType.init(inst, def);
  inst.element = def.element;
  inst.min = (minLength, params) => inst.check(_minLength(minLength, params));
  inst.nonempty = (params) => inst.check(_minLength(1, params));
  inst.max = (maxLength, params) => inst.check(_maxLength(maxLength, params));
  inst.length = (len, params) => inst.check(_length(len, params));
  inst.unwrap = () => inst.element;
});
function array(element, params) {
  return _array(ZodArray, element, params);
}
var ZodObject = /* @__PURE__ */ $constructor("ZodObject", (inst, def) => {
  $ZodObjectJIT.init(inst, def);
  ZodType.init(inst, def);
  util_exports.defineLazy(inst, "shape", () => {
    return def.shape;
  });
  inst.keyof = () => _enum(Object.keys(inst._zod.def.shape));
  inst.catchall = (catchall) => inst.clone({ ...inst._zod.def, catchall });
  inst.passthrough = () => inst.clone({ ...inst._zod.def, catchall: unknown() });
  inst.loose = () => inst.clone({ ...inst._zod.def, catchall: unknown() });
  inst.strict = () => inst.clone({ ...inst._zod.def, catchall: never() });
  inst.strip = () => inst.clone({ ...inst._zod.def, catchall: void 0 });
  inst.extend = (incoming) => {
    return util_exports.extend(inst, incoming);
  };
  inst.safeExtend = (incoming) => {
    return util_exports.safeExtend(inst, incoming);
  };
  inst.merge = (other) => util_exports.merge(inst, other);
  inst.pick = (mask) => util_exports.pick(inst, mask);
  inst.omit = (mask) => util_exports.omit(inst, mask);
  inst.partial = (...args) => util_exports.partial(ZodOptional, inst, args[0]);
  inst.required = (...args) => util_exports.required(ZodNonOptional, inst, args[0]);
});
function object(shape, params) {
  const def = {
    type: "object",
    shape: shape ?? {},
    ...util_exports.normalizeParams(params)
  };
  return new ZodObject(def);
}
function looseObject(shape, params) {
  return new ZodObject({
    type: "object",
    shape,
    catchall: unknown(),
    ...util_exports.normalizeParams(params)
  });
}
var ZodUnion = /* @__PURE__ */ $constructor("ZodUnion", (inst, def) => {
  $ZodUnion.init(inst, def);
  ZodType.init(inst, def);
  inst.options = def.options;
});
function union(options, params) {
  return new ZodUnion({
    type: "union",
    options,
    ...util_exports.normalizeParams(params)
  });
}
var ZodDiscriminatedUnion = /* @__PURE__ */ $constructor("ZodDiscriminatedUnion", (inst, def) => {
  ZodUnion.init(inst, def);
  $ZodDiscriminatedUnion.init(inst, def);
});
function discriminatedUnion(discriminator, options, params) {
  return new ZodDiscriminatedUnion({
    type: "union",
    options,
    discriminator,
    ...util_exports.normalizeParams(params)
  });
}
var ZodIntersection = /* @__PURE__ */ $constructor("ZodIntersection", (inst, def) => {
  $ZodIntersection.init(inst, def);
  ZodType.init(inst, def);
});
function intersection(left, right) {
  return new ZodIntersection({
    type: "intersection",
    left,
    right
  });
}
var ZodRecord = /* @__PURE__ */ $constructor("ZodRecord", (inst, def) => {
  $ZodRecord.init(inst, def);
  ZodType.init(inst, def);
  inst.keyType = def.keyType;
  inst.valueType = def.valueType;
});
function record(keyType, valueType, params) {
  return new ZodRecord({
    type: "record",
    keyType,
    valueType,
    ...util_exports.normalizeParams(params)
  });
}
var ZodEnum = /* @__PURE__ */ $constructor("ZodEnum", (inst, def) => {
  $ZodEnum.init(inst, def);
  ZodType.init(inst, def);
  inst.enum = def.entries;
  inst.options = Object.values(def.entries);
  const keys = new Set(Object.keys(def.entries));
  inst.extract = (values, params) => {
    const newEntries = {};
    for (const value of values) {
      if (keys.has(value)) {
        newEntries[value] = def.entries[value];
      } else
        throw new Error(`Key ${value} not found in enum`);
    }
    return new ZodEnum({
      ...def,
      checks: [],
      ...util_exports.normalizeParams(params),
      entries: newEntries
    });
  };
  inst.exclude = (values, params) => {
    const newEntries = { ...def.entries };
    for (const value of values) {
      if (keys.has(value)) {
        delete newEntries[value];
      } else
        throw new Error(`Key ${value} not found in enum`);
    }
    return new ZodEnum({
      ...def,
      checks: [],
      ...util_exports.normalizeParams(params),
      entries: newEntries
    });
  };
});
function _enum(values, params) {
  const entries = Array.isArray(values) ? Object.fromEntries(values.map((v) => [v, v])) : values;
  return new ZodEnum({
    type: "enum",
    entries,
    ...util_exports.normalizeParams(params)
  });
}
var ZodLiteral = /* @__PURE__ */ $constructor("ZodLiteral", (inst, def) => {
  $ZodLiteral.init(inst, def);
  ZodType.init(inst, def);
  inst.values = new Set(def.values);
  Object.defineProperty(inst, "value", {
    get() {
      if (def.values.length > 1) {
        throw new Error("This schema contains multiple valid literal values. Use `.values` instead.");
      }
      return def.values[0];
    }
  });
});
function literal(value, params) {
  return new ZodLiteral({
    type: "literal",
    values: Array.isArray(value) ? value : [value],
    ...util_exports.normalizeParams(params)
  });
}
var ZodTransform = /* @__PURE__ */ $constructor("ZodTransform", (inst, def) => {
  $ZodTransform.init(inst, def);
  ZodType.init(inst, def);
  inst._zod.parse = (payload, _ctx) => {
    if (_ctx.direction === "backward") {
      throw new $ZodEncodeError(inst.constructor.name);
    }
    payload.addIssue = (issue2) => {
      if (typeof issue2 === "string") {
        payload.issues.push(util_exports.issue(issue2, payload.value, def));
      } else {
        const _issue = issue2;
        if (_issue.fatal)
          _issue.continue = false;
        _issue.code ?? (_issue.code = "custom");
        _issue.input ?? (_issue.input = payload.value);
        _issue.inst ?? (_issue.inst = inst);
        payload.issues.push(util_exports.issue(_issue));
      }
    };
    const output = def.transform(payload.value, payload);
    if (output instanceof Promise) {
      return output.then((output2) => {
        payload.value = output2;
        return payload;
      });
    }
    payload.value = output;
    return payload;
  };
});
function transform(fn) {
  return new ZodTransform({
    type: "transform",
    transform: fn
  });
}
var ZodOptional = /* @__PURE__ */ $constructor("ZodOptional", (inst, def) => {
  $ZodOptional.init(inst, def);
  ZodType.init(inst, def);
  inst.unwrap = () => inst._zod.def.innerType;
});
function optional(innerType) {
  return new ZodOptional({
    type: "optional",
    innerType
  });
}
var ZodNullable = /* @__PURE__ */ $constructor("ZodNullable", (inst, def) => {
  $ZodNullable.init(inst, def);
  ZodType.init(inst, def);
  inst.unwrap = () => inst._zod.def.innerType;
});
function nullable(innerType) {
  return new ZodNullable({
    type: "nullable",
    innerType
  });
}
var ZodDefault = /* @__PURE__ */ $constructor("ZodDefault", (inst, def) => {
  $ZodDefault.init(inst, def);
  ZodType.init(inst, def);
  inst.unwrap = () => inst._zod.def.innerType;
  inst.removeDefault = inst.unwrap;
});
function _default(innerType, defaultValue) {
  return new ZodDefault({
    type: "default",
    innerType,
    get defaultValue() {
      return typeof defaultValue === "function" ? defaultValue() : util_exports.shallowClone(defaultValue);
    }
  });
}
var ZodPrefault = /* @__PURE__ */ $constructor("ZodPrefault", (inst, def) => {
  $ZodPrefault.init(inst, def);
  ZodType.init(inst, def);
  inst.unwrap = () => inst._zod.def.innerType;
});
function prefault(innerType, defaultValue) {
  return new ZodPrefault({
    type: "prefault",
    innerType,
    get defaultValue() {
      return typeof defaultValue === "function" ? defaultValue() : util_exports.shallowClone(defaultValue);
    }
  });
}
var ZodNonOptional = /* @__PURE__ */ $constructor("ZodNonOptional", (inst, def) => {
  $ZodNonOptional.init(inst, def);
  ZodType.init(inst, def);
  inst.unwrap = () => inst._zod.def.innerType;
});
function nonoptional(innerType, params) {
  return new ZodNonOptional({
    type: "nonoptional",
    innerType,
    ...util_exports.normalizeParams(params)
  });
}
var ZodCatch = /* @__PURE__ */ $constructor("ZodCatch", (inst, def) => {
  $ZodCatch.init(inst, def);
  ZodType.init(inst, def);
  inst.unwrap = () => inst._zod.def.innerType;
  inst.removeCatch = inst.unwrap;
});
function _catch(innerType, catchValue) {
  return new ZodCatch({
    type: "catch",
    innerType,
    catchValue: typeof catchValue === "function" ? catchValue : () => catchValue
  });
}
var ZodPipe = /* @__PURE__ */ $constructor("ZodPipe", (inst, def) => {
  $ZodPipe.init(inst, def);
  ZodType.init(inst, def);
  inst.in = def.in;
  inst.out = def.out;
});
function pipe(in_, out) {
  return new ZodPipe({
    type: "pipe",
    in: in_,
    out
    // ...util.normalizeParams(params),
  });
}
var ZodReadonly = /* @__PURE__ */ $constructor("ZodReadonly", (inst, def) => {
  $ZodReadonly.init(inst, def);
  ZodType.init(inst, def);
  inst.unwrap = () => inst._zod.def.innerType;
});
function readonly(innerType) {
  return new ZodReadonly({
    type: "readonly",
    innerType
  });
}
var ZodCustom = /* @__PURE__ */ $constructor("ZodCustom", (inst, def) => {
  $ZodCustom.init(inst, def);
  ZodType.init(inst, def);
});
function custom(fn, _params) {
  return _custom(ZodCustom, fn ?? (() => true), _params);
}
function refine(fn, _params = {}) {
  return _refine(ZodCustom, fn, _params);
}
function superRefine(fn) {
  return _superRefine(fn);
}
function preprocess(fn, schema) {
  return pipe(transform(fn), schema);
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/classic/compat.js
var ZodIssueCode = {
  invalid_type: "invalid_type",
  too_big: "too_big",
  too_small: "too_small",
  invalid_format: "invalid_format",
  not_multiple_of: "not_multiple_of",
  unrecognized_keys: "unrecognized_keys",
  invalid_union: "invalid_union",
  invalid_key: "invalid_key",
  invalid_element: "invalid_element",
  invalid_value: "invalid_value",
  custom: "custom"
};
var ZodFirstPartyTypeKind;
/* @__PURE__ */ (function(ZodFirstPartyTypeKind3) {
})(ZodFirstPartyTypeKind || (ZodFirstPartyTypeKind = {}));

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v4/classic/external.js
config(en_default());

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/types.js
var LATEST_PROTOCOL_VERSION = "2025-06-18";
var SUPPORTED_PROTOCOL_VERSIONS = [LATEST_PROTOCOL_VERSION, "2025-03-26", "2024-11-05", "2024-10-07"];
var JSONRPC_VERSION = "2.0";
var AssertObjectSchema = custom((v) => v !== null && (typeof v === "object" || typeof v === "function"));
var ProgressTokenSchema = union([string2(), number2().int()]);
var CursorSchema = string2();
var RequestMetaSchema = looseObject({
  /**
   * If specified, the caller is requesting out-of-band progress notifications for this request (as represented by notifications/progress). The value of this parameter is an opaque token that will be attached to any subsequent notifications. The receiver is not obligated to provide these notifications.
   */
  progressToken: ProgressTokenSchema.optional()
});
var BaseRequestParamsSchema = looseObject({
  /**
   * See [General fields: `_meta`](/specification/draft/basic/index#meta) for notes on `_meta` usage.
   */
  _meta: RequestMetaSchema.optional()
});
var RequestSchema = object({
  method: string2(),
  params: BaseRequestParamsSchema.optional()
});
var NotificationsParamsSchema = looseObject({
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var NotificationSchema = object({
  method: string2(),
  params: NotificationsParamsSchema.optional()
});
var ResultSchema = looseObject({
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var RequestIdSchema = union([string2(), number2().int()]);
var JSONRPCRequestSchema = object({
  jsonrpc: literal(JSONRPC_VERSION),
  id: RequestIdSchema,
  ...RequestSchema.shape
}).strict();
var isJSONRPCRequest = (value) => JSONRPCRequestSchema.safeParse(value).success;
var JSONRPCNotificationSchema = object({
  jsonrpc: literal(JSONRPC_VERSION),
  ...NotificationSchema.shape
}).strict();
var isJSONRPCNotification = (value) => JSONRPCNotificationSchema.safeParse(value).success;
var JSONRPCResponseSchema = object({
  jsonrpc: literal(JSONRPC_VERSION),
  id: RequestIdSchema,
  result: ResultSchema
}).strict();
var isJSONRPCResponse = (value) => JSONRPCResponseSchema.safeParse(value).success;
var ErrorCode;
(function(ErrorCode2) {
  ErrorCode2[ErrorCode2["ConnectionClosed"] = -32e3] = "ConnectionClosed";
  ErrorCode2[ErrorCode2["RequestTimeout"] = -32001] = "RequestTimeout";
  ErrorCode2[ErrorCode2["ParseError"] = -32700] = "ParseError";
  ErrorCode2[ErrorCode2["InvalidRequest"] = -32600] = "InvalidRequest";
  ErrorCode2[ErrorCode2["MethodNotFound"] = -32601] = "MethodNotFound";
  ErrorCode2[ErrorCode2["InvalidParams"] = -32602] = "InvalidParams";
  ErrorCode2[ErrorCode2["InternalError"] = -32603] = "InternalError";
  ErrorCode2[ErrorCode2["UrlElicitationRequired"] = -32042] = "UrlElicitationRequired";
})(ErrorCode || (ErrorCode = {}));
var JSONRPCErrorSchema = object({
  jsonrpc: literal(JSONRPC_VERSION),
  id: RequestIdSchema,
  error: object({
    /**
     * The error type that occurred.
     */
    code: number2().int(),
    /**
     * A short description of the error. The message SHOULD be limited to a concise single sentence.
     */
    message: string2(),
    /**
     * Additional information about the error. The value of this member is defined by the sender (e.g. detailed error information, nested errors etc.).
     */
    data: optional(unknown())
  })
}).strict();
var isJSONRPCError = (value) => JSONRPCErrorSchema.safeParse(value).success;
var JSONRPCMessageSchema = union([JSONRPCRequestSchema, JSONRPCNotificationSchema, JSONRPCResponseSchema, JSONRPCErrorSchema]);
var EmptyResultSchema = ResultSchema.strict();
var CancelledNotificationParamsSchema = NotificationsParamsSchema.extend({
  /**
   * The ID of the request to cancel.
   *
   * This MUST correspond to the ID of a request previously issued in the same direction.
   */
  requestId: RequestIdSchema,
  /**
   * An optional string describing the reason for the cancellation. This MAY be logged or presented to the user.
   */
  reason: string2().optional()
});
var CancelledNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/cancelled"),
  params: CancelledNotificationParamsSchema
});
var IconSchema = object({
  /**
   * URL or data URI for the icon.
   */
  src: string2(),
  /**
   * Optional MIME type for the icon.
   */
  mimeType: string2().optional(),
  /**
   * Optional array of strings that specify sizes at which the icon can be used.
   * Each string should be in WxH format (e.g., `"48x48"`, `"96x96"`) or `"any"` for scalable formats like SVG.
   *
   * If not provided, the client should assume that the icon can be used at any size.
   */
  sizes: array(string2()).optional()
});
var IconsSchema = object({
  /**
   * Optional set of sized icons that the client can display in a user interface.
   *
   * Clients that support rendering icons MUST support at least the following MIME types:
   * - `image/png` - PNG images (safe, universal compatibility)
   * - `image/jpeg` (and `image/jpg`) - JPEG images (safe, universal compatibility)
   *
   * Clients that support rendering icons SHOULD also support:
   * - `image/svg+xml` - SVG images (scalable but requires security precautions)
   * - `image/webp` - WebP images (modern, efficient format)
   */
  icons: array(IconSchema).optional()
});
var BaseMetadataSchema = object({
  /** Intended for programmatic or logical use, but used as a display name in past specs or fallback */
  name: string2(),
  /**
   * Intended for UI and end-user contexts — optimized to be human-readable and easily understood,
   * even by those unfamiliar with domain-specific terminology.
   *
   * If not provided, the name should be used for display (except for Tool,
   * where `annotations.title` should be given precedence over using `name`,
   * if present).
   */
  title: string2().optional()
});
var ImplementationSchema = BaseMetadataSchema.extend({
  ...BaseMetadataSchema.shape,
  ...IconsSchema.shape,
  version: string2(),
  /**
   * An optional URL of the website for this implementation.
   */
  websiteUrl: string2().optional()
});
var FormElicitationCapabilitySchema = intersection(object({
  applyDefaults: boolean2().optional()
}), record(string2(), unknown()));
var ElicitationCapabilitySchema = preprocess((value) => {
  if (value && typeof value === "object" && !Array.isArray(value)) {
    if (Object.keys(value).length === 0) {
      return { form: {} };
    }
  }
  return value;
}, intersection(object({
  form: FormElicitationCapabilitySchema.optional(),
  url: AssertObjectSchema.optional()
}), record(string2(), unknown()).optional()));
var ClientCapabilitiesSchema = object({
  /**
   * Experimental, non-standard capabilities that the client supports.
   */
  experimental: record(string2(), AssertObjectSchema).optional(),
  /**
   * Present if the client supports sampling from an LLM.
   */
  sampling: object({
    /**
     * Present if the client supports context inclusion via includeContext parameter.
     * If not declared, servers SHOULD only use `includeContext: "none"` (or omit it).
     */
    context: AssertObjectSchema.optional(),
    /**
     * Present if the client supports tool use via tools and toolChoice parameters.
     */
    tools: AssertObjectSchema.optional()
  }).optional(),
  /**
   * Present if the client supports eliciting user input.
   */
  elicitation: ElicitationCapabilitySchema.optional(),
  /**
   * Present if the client supports listing roots.
   */
  roots: object({
    /**
     * Whether the client supports issuing notifications for changes to the roots list.
     */
    listChanged: boolean2().optional()
  }).optional()
});
var InitializeRequestParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * The latest version of the Model Context Protocol that the client supports. The client MAY decide to support older versions as well.
   */
  protocolVersion: string2(),
  capabilities: ClientCapabilitiesSchema,
  clientInfo: ImplementationSchema
});
var InitializeRequestSchema = RequestSchema.extend({
  method: literal("initialize"),
  params: InitializeRequestParamsSchema
});
var ServerCapabilitiesSchema = object({
  /**
   * Experimental, non-standard capabilities that the server supports.
   */
  experimental: record(string2(), AssertObjectSchema).optional(),
  /**
   * Present if the server supports sending log messages to the client.
   */
  logging: AssertObjectSchema.optional(),
  /**
   * Present if the server supports sending completions to the client.
   */
  completions: AssertObjectSchema.optional(),
  /**
   * Present if the server offers any prompt templates.
   */
  prompts: optional(object({
    /**
     * Whether this server supports issuing notifications for changes to the prompt list.
     */
    listChanged: optional(boolean2())
  })),
  /**
   * Present if the server offers any resources to read.
   */
  resources: object({
    /**
     * Whether this server supports clients subscribing to resource updates.
     */
    subscribe: boolean2().optional(),
    /**
     * Whether this server supports issuing notifications for changes to the resource list.
     */
    listChanged: boolean2().optional()
  }).optional(),
  /**
   * Present if the server offers any tools to call.
   */
  tools: object({
    /**
     * Whether this server supports issuing notifications for changes to the tool list.
     */
    listChanged: boolean2().optional()
  }).optional()
});
var InitializeResultSchema = ResultSchema.extend({
  /**
   * The version of the Model Context Protocol that the server wants to use. This may not match the version that the client requested. If the client cannot support this version, it MUST disconnect.
   */
  protocolVersion: string2(),
  capabilities: ServerCapabilitiesSchema,
  serverInfo: ImplementationSchema,
  /**
   * Instructions describing how to use the server and its features.
   *
   * This can be used by clients to improve the LLM's understanding of available tools, resources, etc. It can be thought of like a "hint" to the model. For example, this information MAY be added to the system prompt.
   */
  instructions: string2().optional()
});
var InitializedNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/initialized")
});
var isInitializedNotification = (value) => InitializedNotificationSchema.safeParse(value).success;
var PingRequestSchema = RequestSchema.extend({
  method: literal("ping")
});
var ProgressSchema = object({
  /**
   * The progress thus far. This should increase every time progress is made, even if the total is unknown.
   */
  progress: number2(),
  /**
   * Total number of items to process (or total progress required), if known.
   */
  total: optional(number2()),
  /**
   * An optional message describing the current progress.
   */
  message: optional(string2())
});
var ProgressNotificationParamsSchema = object({
  ...NotificationsParamsSchema.shape,
  ...ProgressSchema.shape,
  /**
   * The progress token which was given in the initial request, used to associate this notification with the request that is proceeding.
   */
  progressToken: ProgressTokenSchema
});
var ProgressNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/progress"),
  params: ProgressNotificationParamsSchema
});
var PaginatedRequestParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * An opaque token representing the current pagination position.
   * If provided, the server should return results starting after this cursor.
   */
  cursor: CursorSchema.optional()
});
var PaginatedRequestSchema = RequestSchema.extend({
  params: PaginatedRequestParamsSchema.optional()
});
var PaginatedResultSchema = ResultSchema.extend({
  /**
   * An opaque token representing the pagination position after the last returned result.
   * If present, there may be more results available.
   */
  nextCursor: optional(CursorSchema)
});
var ResourceContentsSchema = object({
  /**
   * The URI of this resource.
   */
  uri: string2(),
  /**
   * The MIME type of this resource, if known.
   */
  mimeType: optional(string2()),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var TextResourceContentsSchema = ResourceContentsSchema.extend({
  /**
   * The text of the item. This must only be set if the item can actually be represented as text (not binary data).
   */
  text: string2()
});
var Base64Schema = string2().refine((val) => {
  try {
    atob(val);
    return true;
  } catch (_a2) {
    return false;
  }
}, { message: "Invalid Base64 string" });
var BlobResourceContentsSchema = ResourceContentsSchema.extend({
  /**
   * A base64-encoded string representing the binary data of the item.
   */
  blob: Base64Schema
});
var ResourceSchema = object({
  ...BaseMetadataSchema.shape,
  ...IconsSchema.shape,
  /**
   * The URI of this resource.
   */
  uri: string2(),
  /**
   * A description of what this resource represents.
   *
   * This can be used by clients to improve the LLM's understanding of available resources. It can be thought of like a "hint" to the model.
   */
  description: optional(string2()),
  /**
   * The MIME type of this resource, if known.
   */
  mimeType: optional(string2()),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: optional(looseObject({}))
});
var ResourceTemplateSchema = object({
  ...BaseMetadataSchema.shape,
  ...IconsSchema.shape,
  /**
   * A URI template (according to RFC 6570) that can be used to construct resource URIs.
   */
  uriTemplate: string2(),
  /**
   * A description of what this template is for.
   *
   * This can be used by clients to improve the LLM's understanding of available resources. It can be thought of like a "hint" to the model.
   */
  description: optional(string2()),
  /**
   * The MIME type for all resources that match this template. This should only be included if all resources matching this template have the same type.
   */
  mimeType: optional(string2()),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: optional(looseObject({}))
});
var ListResourcesRequestSchema = PaginatedRequestSchema.extend({
  method: literal("resources/list")
});
var ListResourcesResultSchema = PaginatedResultSchema.extend({
  resources: array(ResourceSchema)
});
var ListResourceTemplatesRequestSchema = PaginatedRequestSchema.extend({
  method: literal("resources/templates/list")
});
var ListResourceTemplatesResultSchema = PaginatedResultSchema.extend({
  resourceTemplates: array(ResourceTemplateSchema)
});
var ResourceRequestParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * The URI of the resource to read. The URI can use any protocol; it is up to the server how to interpret it.
   *
   * @format uri
   */
  uri: string2()
});
var ReadResourceRequestParamsSchema = ResourceRequestParamsSchema;
var ReadResourceRequestSchema = RequestSchema.extend({
  method: literal("resources/read"),
  params: ReadResourceRequestParamsSchema
});
var ReadResourceResultSchema = ResultSchema.extend({
  contents: array(union([TextResourceContentsSchema, BlobResourceContentsSchema]))
});
var ResourceListChangedNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/resources/list_changed")
});
var SubscribeRequestParamsSchema = ResourceRequestParamsSchema;
var SubscribeRequestSchema = RequestSchema.extend({
  method: literal("resources/subscribe"),
  params: SubscribeRequestParamsSchema
});
var UnsubscribeRequestParamsSchema = ResourceRequestParamsSchema;
var UnsubscribeRequestSchema = RequestSchema.extend({
  method: literal("resources/unsubscribe"),
  params: UnsubscribeRequestParamsSchema
});
var ResourceUpdatedNotificationParamsSchema = NotificationsParamsSchema.extend({
  /**
   * The URI of the resource that has been updated. This might be a sub-resource of the one that the client actually subscribed to.
   */
  uri: string2()
});
var ResourceUpdatedNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/resources/updated"),
  params: ResourceUpdatedNotificationParamsSchema
});
var PromptArgumentSchema = object({
  /**
   * The name of the argument.
   */
  name: string2(),
  /**
   * A human-readable description of the argument.
   */
  description: optional(string2()),
  /**
   * Whether this argument must be provided.
   */
  required: optional(boolean2())
});
var PromptSchema = object({
  ...BaseMetadataSchema.shape,
  ...IconsSchema.shape,
  /**
   * An optional description of what this prompt provides
   */
  description: optional(string2()),
  /**
   * A list of arguments to use for templating the prompt.
   */
  arguments: optional(array(PromptArgumentSchema)),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: optional(looseObject({}))
});
var ListPromptsRequestSchema = PaginatedRequestSchema.extend({
  method: literal("prompts/list")
});
var ListPromptsResultSchema = PaginatedResultSchema.extend({
  prompts: array(PromptSchema)
});
var GetPromptRequestParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * The name of the prompt or prompt template.
   */
  name: string2(),
  /**
   * Arguments to use for templating the prompt.
   */
  arguments: record(string2(), string2()).optional()
});
var GetPromptRequestSchema = RequestSchema.extend({
  method: literal("prompts/get"),
  params: GetPromptRequestParamsSchema
});
var TextContentSchema = object({
  type: literal("text"),
  /**
   * The text content of the message.
   */
  text: string2(),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var ImageContentSchema = object({
  type: literal("image"),
  /**
   * The base64-encoded image data.
   */
  data: Base64Schema,
  /**
   * The MIME type of the image. Different providers may support different image types.
   */
  mimeType: string2(),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var AudioContentSchema = object({
  type: literal("audio"),
  /**
   * The base64-encoded audio data.
   */
  data: Base64Schema,
  /**
   * The MIME type of the audio. Different providers may support different audio types.
   */
  mimeType: string2(),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var ToolUseContentSchema = object({
  type: literal("tool_use"),
  /**
   * The name of the tool to invoke.
   * Must match a tool name from the request's tools array.
   */
  name: string2(),
  /**
   * Unique identifier for this tool call.
   * Used to correlate with ToolResultContent in subsequent messages.
   */
  id: string2(),
  /**
   * Arguments to pass to the tool.
   * Must conform to the tool's inputSchema.
   */
  input: object({}).passthrough(),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: optional(object({}).passthrough())
}).passthrough();
var EmbeddedResourceSchema = object({
  type: literal("resource"),
  resource: union([TextResourceContentsSchema, BlobResourceContentsSchema]),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var ResourceLinkSchema = ResourceSchema.extend({
  type: literal("resource_link")
});
var ContentBlockSchema = union([
  TextContentSchema,
  ImageContentSchema,
  AudioContentSchema,
  ResourceLinkSchema,
  EmbeddedResourceSchema
]);
var PromptMessageSchema = object({
  role: _enum(["user", "assistant"]),
  content: ContentBlockSchema
});
var GetPromptResultSchema = ResultSchema.extend({
  /**
   * An optional description for the prompt.
   */
  description: optional(string2()),
  messages: array(PromptMessageSchema)
});
var PromptListChangedNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/prompts/list_changed")
});
var ToolAnnotationsSchema = object({
  /**
   * A human-readable title for the tool.
   */
  title: string2().optional(),
  /**
   * If true, the tool does not modify its environment.
   *
   * Default: false
   */
  readOnlyHint: boolean2().optional(),
  /**
   * If true, the tool may perform destructive updates to its environment.
   * If false, the tool performs only additive updates.
   *
   * (This property is meaningful only when `readOnlyHint == false`)
   *
   * Default: true
   */
  destructiveHint: boolean2().optional(),
  /**
   * If true, calling the tool repeatedly with the same arguments
   * will have no additional effect on the its environment.
   *
   * (This property is meaningful only when `readOnlyHint == false`)
   *
   * Default: false
   */
  idempotentHint: boolean2().optional(),
  /**
   * If true, this tool may interact with an "open world" of external
   * entities. If false, the tool's domain of interaction is closed.
   * For example, the world of a web search tool is open, whereas that
   * of a memory tool is not.
   *
   * Default: true
   */
  openWorldHint: boolean2().optional()
});
var ToolSchema = object({
  ...BaseMetadataSchema.shape,
  ...IconsSchema.shape,
  /**
   * A human-readable description of the tool.
   */
  description: string2().optional(),
  /**
   * A JSON Schema 2020-12 object defining the expected parameters for the tool.
   * Must have type: 'object' at the root level per MCP spec.
   */
  inputSchema: object({
    type: literal("object"),
    properties: record(string2(), AssertObjectSchema).optional(),
    required: array(string2()).optional()
  }).catchall(unknown()),
  /**
   * An optional JSON Schema 2020-12 object defining the structure of the tool's output
   * returned in the structuredContent field of a CallToolResult.
   * Must have type: 'object' at the root level per MCP spec.
   */
  outputSchema: object({
    type: literal("object"),
    properties: record(string2(), AssertObjectSchema).optional(),
    required: array(string2()).optional()
  }).catchall(unknown()).optional(),
  /**
   * Optional additional tool information.
   */
  annotations: optional(ToolAnnotationsSchema),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var ListToolsRequestSchema = PaginatedRequestSchema.extend({
  method: literal("tools/list")
});
var ListToolsResultSchema = PaginatedResultSchema.extend({
  tools: array(ToolSchema)
});
var CallToolResultSchema = ResultSchema.extend({
  /**
   * A list of content objects that represent the result of the tool call.
   *
   * If the Tool does not define an outputSchema, this field MUST be present in the result.
   * For backwards compatibility, this field is always present, but it may be empty.
   */
  content: array(ContentBlockSchema).default([]),
  /**
   * An object containing structured tool output.
   *
   * If the Tool defines an outputSchema, this field MUST be present in the result, and contain a JSON object that matches the schema.
   */
  structuredContent: record(string2(), unknown()).optional(),
  /**
   * Whether the tool call ended in an error.
   *
   * If not set, this is assumed to be false (the call was successful).
   *
   * Any errors that originate from the tool SHOULD be reported inside the result
   * object, with `isError` set to true, _not_ as an MCP protocol-level error
   * response. Otherwise, the LLM would not be able to see that an error occurred
   * and self-correct.
   *
   * However, any errors in _finding_ the tool, an error indicating that the
   * server does not support tool calls, or any other exceptional conditions,
   * should be reported as an MCP error response.
   */
  isError: optional(boolean2())
});
var CompatibilityCallToolResultSchema = CallToolResultSchema.or(ResultSchema.extend({
  toolResult: unknown()
}));
var CallToolRequestParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * The name of the tool to call.
   */
  name: string2(),
  /**
   * Arguments to pass to the tool.
   */
  arguments: optional(record(string2(), unknown()))
});
var CallToolRequestSchema = RequestSchema.extend({
  method: literal("tools/call"),
  params: CallToolRequestParamsSchema
});
var ToolListChangedNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/tools/list_changed")
});
var LoggingLevelSchema = _enum(["debug", "info", "notice", "warning", "error", "critical", "alert", "emergency"]);
var SetLevelRequestParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * The level of logging that the client wants to receive from the server. The server should send all logs at this level and higher (i.e., more severe) to the client as notifications/logging/message.
   */
  level: LoggingLevelSchema
});
var SetLevelRequestSchema = RequestSchema.extend({
  method: literal("logging/setLevel"),
  params: SetLevelRequestParamsSchema
});
var LoggingMessageNotificationParamsSchema = NotificationsParamsSchema.extend({
  /**
   * The severity of this log message.
   */
  level: LoggingLevelSchema,
  /**
   * An optional name of the logger issuing this message.
   */
  logger: string2().optional(),
  /**
   * The data to be logged, such as a string message or an object. Any JSON serializable type is allowed here.
   */
  data: unknown()
});
var LoggingMessageNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/message"),
  params: LoggingMessageNotificationParamsSchema
});
var ModelHintSchema = object({
  /**
   * A hint for a model name.
   */
  name: string2().optional()
});
var ModelPreferencesSchema = object({
  /**
   * Optional hints to use for model selection.
   */
  hints: optional(array(ModelHintSchema)),
  /**
   * How much to prioritize cost when selecting a model.
   */
  costPriority: optional(number2().min(0).max(1)),
  /**
   * How much to prioritize sampling speed (latency) when selecting a model.
   */
  speedPriority: optional(number2().min(0).max(1)),
  /**
   * How much to prioritize intelligence and capabilities when selecting a model.
   */
  intelligencePriority: optional(number2().min(0).max(1))
});
var ToolChoiceSchema = object({
  /**
   * Controls when tools are used:
   * - "auto": Model decides whether to use tools (default)
   * - "required": Model MUST use at least one tool before completing
   * - "none": Model MUST NOT use any tools
   */
  mode: optional(_enum(["auto", "required", "none"]))
});
var ToolResultContentSchema = object({
  type: literal("tool_result"),
  toolUseId: string2().describe("The unique identifier for the corresponding tool call."),
  content: array(ContentBlockSchema).default([]),
  structuredContent: object({}).passthrough().optional(),
  isError: optional(boolean2()),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: optional(object({}).passthrough())
}).passthrough();
var SamplingMessageContentBlockSchema = discriminatedUnion("type", [
  TextContentSchema,
  ImageContentSchema,
  AudioContentSchema,
  ToolUseContentSchema,
  ToolResultContentSchema
]);
var SamplingMessageSchema = object({
  role: _enum(["user", "assistant"]),
  content: union([SamplingMessageContentBlockSchema, array(SamplingMessageContentBlockSchema)]),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: optional(object({}).passthrough())
}).passthrough();
var CreateMessageRequestParamsSchema = BaseRequestParamsSchema.extend({
  messages: array(SamplingMessageSchema),
  /**
   * The server's preferences for which model to select. The client MAY modify or omit this request.
   */
  modelPreferences: ModelPreferencesSchema.optional(),
  /**
   * An optional system prompt the server wants to use for sampling. The client MAY modify or omit this prompt.
   */
  systemPrompt: string2().optional(),
  /**
   * A request to include context from one or more MCP servers (including the caller), to be attached to the prompt.
   * The client MAY ignore this request.
   *
   * Default is "none". Values "thisServer" and "allServers" are soft-deprecated. Servers SHOULD only use these values if the client
   * declares ClientCapabilities.sampling.context. These values may be removed in future spec releases.
   */
  includeContext: _enum(["none", "thisServer", "allServers"]).optional(),
  temperature: number2().optional(),
  /**
   * The requested maximum number of tokens to sample (to prevent runaway completions).
   *
   * The client MAY choose to sample fewer tokens than the requested maximum.
   */
  maxTokens: number2().int(),
  stopSequences: array(string2()).optional(),
  /**
   * Optional metadata to pass through to the LLM provider. The format of this metadata is provider-specific.
   */
  metadata: AssertObjectSchema.optional(),
  /**
   * Tools that the model may use during generation.
   * The client MUST return an error if this field is provided but ClientCapabilities.sampling.tools is not declared.
   */
  tools: optional(array(ToolSchema)),
  /**
   * Controls how the model uses tools.
   * The client MUST return an error if this field is provided but ClientCapabilities.sampling.tools is not declared.
   * Default is `{ mode: "auto" }`.
   */
  toolChoice: optional(ToolChoiceSchema)
});
var CreateMessageRequestSchema = RequestSchema.extend({
  method: literal("sampling/createMessage"),
  params: CreateMessageRequestParamsSchema
});
var CreateMessageResultSchema = ResultSchema.extend({
  /**
   * The name of the model that generated the message.
   */
  model: string2(),
  /**
   * The reason why sampling stopped, if known.
   *
   * Standard values:
   * - "endTurn": Natural end of the assistant's turn
   * - "stopSequence": A stop sequence was encountered
   * - "maxTokens": Maximum token limit was reached
   * - "toolUse": The model wants to use one or more tools
   *
   * This field is an open string to allow for provider-specific stop reasons.
   */
  stopReason: optional(_enum(["endTurn", "stopSequence", "maxTokens", "toolUse"]).or(string2())),
  role: _enum(["user", "assistant"]),
  /**
   * Response content. May be ToolUseContent if stopReason is "toolUse".
   */
  content: union([SamplingMessageContentBlockSchema, array(SamplingMessageContentBlockSchema)])
});
var BooleanSchemaSchema = object({
  type: literal("boolean"),
  title: string2().optional(),
  description: string2().optional(),
  default: boolean2().optional()
});
var StringSchemaSchema = object({
  type: literal("string"),
  title: string2().optional(),
  description: string2().optional(),
  minLength: number2().optional(),
  maxLength: number2().optional(),
  format: _enum(["email", "uri", "date", "date-time"]).optional(),
  default: string2().optional()
});
var NumberSchemaSchema = object({
  type: _enum(["number", "integer"]),
  title: string2().optional(),
  description: string2().optional(),
  minimum: number2().optional(),
  maximum: number2().optional(),
  default: number2().optional()
});
var UntitledSingleSelectEnumSchemaSchema = object({
  type: literal("string"),
  title: string2().optional(),
  description: string2().optional(),
  enum: array(string2()),
  default: string2().optional()
});
var TitledSingleSelectEnumSchemaSchema = object({
  type: literal("string"),
  title: string2().optional(),
  description: string2().optional(),
  oneOf: array(object({
    const: string2(),
    title: string2()
  })),
  default: string2().optional()
});
var LegacyTitledEnumSchemaSchema = object({
  type: literal("string"),
  title: string2().optional(),
  description: string2().optional(),
  enum: array(string2()),
  enumNames: array(string2()).optional(),
  default: string2().optional()
});
var SingleSelectEnumSchemaSchema = union([UntitledSingleSelectEnumSchemaSchema, TitledSingleSelectEnumSchemaSchema]);
var UntitledMultiSelectEnumSchemaSchema = object({
  type: literal("array"),
  title: string2().optional(),
  description: string2().optional(),
  minItems: number2().optional(),
  maxItems: number2().optional(),
  items: object({
    type: literal("string"),
    enum: array(string2())
  }),
  default: array(string2()).optional()
});
var TitledMultiSelectEnumSchemaSchema = object({
  type: literal("array"),
  title: string2().optional(),
  description: string2().optional(),
  minItems: number2().optional(),
  maxItems: number2().optional(),
  items: object({
    anyOf: array(object({
      const: string2(),
      title: string2()
    }))
  }),
  default: array(string2()).optional()
});
var MultiSelectEnumSchemaSchema = union([UntitledMultiSelectEnumSchemaSchema, TitledMultiSelectEnumSchemaSchema]);
var EnumSchemaSchema = union([LegacyTitledEnumSchemaSchema, SingleSelectEnumSchemaSchema, MultiSelectEnumSchemaSchema]);
var PrimitiveSchemaDefinitionSchema = union([EnumSchemaSchema, BooleanSchemaSchema, StringSchemaSchema, NumberSchemaSchema]);
var ElicitRequestFormParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * The elicitation mode.
   *
   * Optional for backward compatibility. Clients MUST treat missing mode as "form".
   */
  mode: literal("form").optional(),
  /**
   * The message to present to the user describing what information is being requested.
   */
  message: string2(),
  /**
   * A restricted subset of JSON Schema.
   * Only top-level properties are allowed, without nesting.
   */
  requestedSchema: object({
    type: literal("object"),
    properties: record(string2(), PrimitiveSchemaDefinitionSchema),
    required: array(string2()).optional()
  })
});
var ElicitRequestURLParamsSchema = BaseRequestParamsSchema.extend({
  /**
   * The elicitation mode.
   */
  mode: literal("url"),
  /**
   * The message to present to the user explaining why the interaction is needed.
   */
  message: string2(),
  /**
   * The ID of the elicitation, which must be unique within the context of the server.
   * The client MUST treat this ID as an opaque value.
   */
  elicitationId: string2(),
  /**
   * The URL that the user should navigate to.
   */
  url: string2().url()
});
var ElicitRequestParamsSchema = union([ElicitRequestFormParamsSchema, ElicitRequestURLParamsSchema]);
var ElicitRequestSchema = RequestSchema.extend({
  method: literal("elicitation/create"),
  params: ElicitRequestParamsSchema
});
var ElicitationCompleteNotificationParamsSchema = NotificationsParamsSchema.extend({
  /**
   * The ID of the elicitation that completed.
   */
  elicitationId: string2()
});
var ElicitationCompleteNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/elicitation/complete"),
  params: ElicitationCompleteNotificationParamsSchema
});
var ElicitResultSchema = ResultSchema.extend({
  /**
   * The user action in response to the elicitation.
   * - "accept": User submitted the form/confirmed the action
   * - "decline": User explicitly decline the action
   * - "cancel": User dismissed without making an explicit choice
   */
  action: _enum(["accept", "decline", "cancel"]),
  /**
   * The submitted form data, only present when action is "accept".
   * Contains values matching the requested schema.
   */
  content: record(string2(), union([string2(), number2(), boolean2(), array(string2())])).optional()
});
var ResourceTemplateReferenceSchema = object({
  type: literal("ref/resource"),
  /**
   * The URI or URI template of the resource.
   */
  uri: string2()
});
var PromptReferenceSchema = object({
  type: literal("ref/prompt"),
  /**
   * The name of the prompt or prompt template
   */
  name: string2()
});
var CompleteRequestParamsSchema = BaseRequestParamsSchema.extend({
  ref: union([PromptReferenceSchema, ResourceTemplateReferenceSchema]),
  /**
   * The argument's information
   */
  argument: object({
    /**
     * The name of the argument
     */
    name: string2(),
    /**
     * The value of the argument to use for completion matching.
     */
    value: string2()
  }),
  context: object({
    /**
     * Previously-resolved variables in a URI template or prompt.
     */
    arguments: record(string2(), string2()).optional()
  }).optional()
});
var CompleteRequestSchema = RequestSchema.extend({
  method: literal("completion/complete"),
  params: CompleteRequestParamsSchema
});
var CompleteResultSchema = ResultSchema.extend({
  completion: looseObject({
    /**
     * An array of completion values. Must not exceed 100 items.
     */
    values: array(string2()).max(100),
    /**
     * The total number of completion options available. This can exceed the number of values actually sent in the response.
     */
    total: optional(number2().int()),
    /**
     * Indicates whether there are additional completion options beyond those provided in the current response, even if the exact total is unknown.
     */
    hasMore: optional(boolean2())
  })
});
var RootSchema = object({
  /**
   * The URI identifying the root. This *must* start with file:// for now.
   */
  uri: string2().startsWith("file://"),
  /**
   * An optional name for the root.
   */
  name: string2().optional(),
  /**
   * See [MCP specification](https://github.com/modelcontextprotocol/modelcontextprotocol/blob/47339c03c143bb4ec01a26e721a1b8fe66634ebe/docs/specification/draft/basic/index.mdx#general-fields)
   * for notes on _meta usage.
   */
  _meta: record(string2(), unknown()).optional()
});
var ListRootsRequestSchema = RequestSchema.extend({
  method: literal("roots/list")
});
var ListRootsResultSchema = ResultSchema.extend({
  roots: array(RootSchema)
});
var RootsListChangedNotificationSchema = NotificationSchema.extend({
  method: literal("notifications/roots/list_changed")
});
var ClientRequestSchema = union([
  PingRequestSchema,
  InitializeRequestSchema,
  CompleteRequestSchema,
  SetLevelRequestSchema,
  GetPromptRequestSchema,
  ListPromptsRequestSchema,
  ListResourcesRequestSchema,
  ListResourceTemplatesRequestSchema,
  ReadResourceRequestSchema,
  SubscribeRequestSchema,
  UnsubscribeRequestSchema,
  CallToolRequestSchema,
  ListToolsRequestSchema
]);
var ClientNotificationSchema = union([
  CancelledNotificationSchema,
  ProgressNotificationSchema,
  InitializedNotificationSchema,
  RootsListChangedNotificationSchema
]);
var ClientResultSchema = union([EmptyResultSchema, CreateMessageResultSchema, ElicitResultSchema, ListRootsResultSchema]);
var ServerRequestSchema = union([PingRequestSchema, CreateMessageRequestSchema, ElicitRequestSchema, ListRootsRequestSchema]);
var ServerNotificationSchema = union([
  CancelledNotificationSchema,
  ProgressNotificationSchema,
  LoggingMessageNotificationSchema,
  ResourceUpdatedNotificationSchema,
  ResourceListChangedNotificationSchema,
  ToolListChangedNotificationSchema,
  PromptListChangedNotificationSchema,
  ElicitationCompleteNotificationSchema
]);
var ServerResultSchema = union([
  EmptyResultSchema,
  InitializeResultSchema,
  CompleteResultSchema,
  GetPromptResultSchema,
  ListPromptsResultSchema,
  ListResourcesResultSchema,
  ListResourceTemplatesResultSchema,
  ReadResourceResultSchema,
  CallToolResultSchema,
  ListToolsResultSchema
]);
var McpError = class _McpError extends Error {
  constructor(code, message, data) {
    super(`MCP error ${code}: ${message}`);
    this.code = code;
    this.data = data;
    this.name = "McpError";
  }
  /**
   * Factory method to create the appropriate error type based on the error code and data
   */
  static fromError(code, message, data) {
    if (code === ErrorCode.UrlElicitationRequired && data) {
      const errorData = data;
      if (errorData.elicitations) {
        return new UrlElicitationRequiredError(errorData.elicitations, message);
      }
    }
    return new _McpError(code, message, data);
  }
};
var UrlElicitationRequiredError = class extends McpError {
  constructor(elicitations, message = `URL elicitation${elicitations.length > 1 ? "s" : ""} required`) {
    super(ErrorCode.UrlElicitationRequired, message, {
      elicitations
    });
  }
  get elicitations() {
    var _a2, _b;
    return (_b = (_a2 = this.data) === null || _a2 === void 0 ? void 0 : _a2.elicitations) !== null && _b !== void 0 ? _b : [];
  }
};

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v3/helpers/util.js
var util;
(function(util2) {
  util2.assertEqual = (_) => {
  };
  function assertIs2(_arg) {
  }
  util2.assertIs = assertIs2;
  function assertNever2(_x) {
    throw new Error();
  }
  util2.assertNever = assertNever2;
  util2.arrayToEnum = (items) => {
    const obj = {};
    for (const item of items) {
      obj[item] = item;
    }
    return obj;
  };
  util2.getValidEnumValues = (obj) => {
    const validKeys = util2.objectKeys(obj).filter((k) => typeof obj[obj[k]] !== "number");
    const filtered = {};
    for (const k of validKeys) {
      filtered[k] = obj[k];
    }
    return util2.objectValues(filtered);
  };
  util2.objectValues = (obj) => {
    return util2.objectKeys(obj).map(function(e) {
      return obj[e];
    });
  };
  util2.objectKeys = typeof Object.keys === "function" ? (obj) => Object.keys(obj) : (object3) => {
    const keys = [];
    for (const key in object3) {
      if (Object.prototype.hasOwnProperty.call(object3, key)) {
        keys.push(key);
      }
    }
    return keys;
  };
  util2.find = (arr, checker) => {
    for (const item of arr) {
      if (checker(item))
        return item;
    }
    return void 0;
  };
  util2.isInteger = typeof Number.isInteger === "function" ? (val) => Number.isInteger(val) : (val) => typeof val === "number" && Number.isFinite(val) && Math.floor(val) === val;
  function joinValues2(array2, separator = " | ") {
    return array2.map((val) => typeof val === "string" ? `'${val}'` : val).join(separator);
  }
  util2.joinValues = joinValues2;
  util2.jsonStringifyReplacer = (_, value) => {
    if (typeof value === "bigint") {
      return value.toString();
    }
    return value;
  };
})(util || (util = {}));
var objectUtil;
(function(objectUtil2) {
  objectUtil2.mergeShapes = (first, second) => {
    return {
      ...first,
      ...second
      // second overwrites first
    };
  };
})(objectUtil || (objectUtil = {}));
var ZodParsedType = util.arrayToEnum([
  "string",
  "nan",
  "number",
  "integer",
  "float",
  "boolean",
  "date",
  "bigint",
  "symbol",
  "function",
  "undefined",
  "null",
  "array",
  "object",
  "unknown",
  "promise",
  "void",
  "never",
  "map",
  "set"
]);
var getParsedType2 = (data) => {
  const t = typeof data;
  switch (t) {
    case "undefined":
      return ZodParsedType.undefined;
    case "string":
      return ZodParsedType.string;
    case "number":
      return Number.isNaN(data) ? ZodParsedType.nan : ZodParsedType.number;
    case "boolean":
      return ZodParsedType.boolean;
    case "function":
      return ZodParsedType.function;
    case "bigint":
      return ZodParsedType.bigint;
    case "symbol":
      return ZodParsedType.symbol;
    case "object":
      if (Array.isArray(data)) {
        return ZodParsedType.array;
      }
      if (data === null) {
        return ZodParsedType.null;
      }
      if (data.then && typeof data.then === "function" && data.catch && typeof data.catch === "function") {
        return ZodParsedType.promise;
      }
      if (typeof Map !== "undefined" && data instanceof Map) {
        return ZodParsedType.map;
      }
      if (typeof Set !== "undefined" && data instanceof Set) {
        return ZodParsedType.set;
      }
      if (typeof Date !== "undefined" && data instanceof Date) {
        return ZodParsedType.date;
      }
      return ZodParsedType.object;
    default:
      return ZodParsedType.unknown;
  }
};

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v3/ZodError.js
var ZodIssueCode2 = util.arrayToEnum([
  "invalid_type",
  "invalid_literal",
  "custom",
  "invalid_union",
  "invalid_union_discriminator",
  "invalid_enum_value",
  "unrecognized_keys",
  "invalid_arguments",
  "invalid_return_type",
  "invalid_date",
  "invalid_string",
  "too_small",
  "too_big",
  "invalid_intersection_types",
  "not_multiple_of",
  "not_finite"
]);
var ZodError2 = class _ZodError extends Error {
  get errors() {
    return this.issues;
  }
  constructor(issues) {
    super();
    this.issues = [];
    this.addIssue = (sub) => {
      this.issues = [...this.issues, sub];
    };
    this.addIssues = (subs = []) => {
      this.issues = [...this.issues, ...subs];
    };
    const actualProto = new.target.prototype;
    if (Object.setPrototypeOf) {
      Object.setPrototypeOf(this, actualProto);
    } else {
      this.__proto__ = actualProto;
    }
    this.name = "ZodError";
    this.issues = issues;
  }
  format(_mapper) {
    const mapper = _mapper || function(issue2) {
      return issue2.message;
    };
    const fieldErrors = { _errors: [] };
    const processError = (error2) => {
      for (const issue2 of error2.issues) {
        if (issue2.code === "invalid_union") {
          issue2.unionErrors.map(processError);
        } else if (issue2.code === "invalid_return_type") {
          processError(issue2.returnTypeError);
        } else if (issue2.code === "invalid_arguments") {
          processError(issue2.argumentsError);
        } else if (issue2.path.length === 0) {
          fieldErrors._errors.push(mapper(issue2));
        } else {
          let curr = fieldErrors;
          let i = 0;
          while (i < issue2.path.length) {
            const el = issue2.path[i];
            const terminal = i === issue2.path.length - 1;
            if (!terminal) {
              curr[el] = curr[el] || { _errors: [] };
            } else {
              curr[el] = curr[el] || { _errors: [] };
              curr[el]._errors.push(mapper(issue2));
            }
            curr = curr[el];
            i++;
          }
        }
      }
    };
    processError(this);
    return fieldErrors;
  }
  static assert(value) {
    if (!(value instanceof _ZodError)) {
      throw new Error(`Not a ZodError: ${value}`);
    }
  }
  toString() {
    return this.message;
  }
  get message() {
    return JSON.stringify(this.issues, util.jsonStringifyReplacer, 2);
  }
  get isEmpty() {
    return this.issues.length === 0;
  }
  flatten(mapper = (issue2) => issue2.message) {
    const fieldErrors = /* @__PURE__ */ Object.create(null);
    const formErrors = [];
    for (const sub of this.issues) {
      if (sub.path.length > 0) {
        const firstEl = sub.path[0];
        fieldErrors[firstEl] = fieldErrors[firstEl] || [];
        fieldErrors[firstEl].push(mapper(sub));
      } else {
        formErrors.push(mapper(sub));
      }
    }
    return { formErrors, fieldErrors };
  }
  get formErrors() {
    return this.flatten();
  }
};
ZodError2.create = (issues) => {
  const error2 = new ZodError2(issues);
  return error2;
};

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v3/locales/en.js
var errorMap = (issue2, _ctx) => {
  let message;
  switch (issue2.code) {
    case ZodIssueCode2.invalid_type:
      if (issue2.received === ZodParsedType.undefined) {
        message = "Required";
      } else {
        message = `Expected ${issue2.expected}, received ${issue2.received}`;
      }
      break;
    case ZodIssueCode2.invalid_literal:
      message = `Invalid literal value, expected ${JSON.stringify(issue2.expected, util.jsonStringifyReplacer)}`;
      break;
    case ZodIssueCode2.unrecognized_keys:
      message = `Unrecognized key(s) in object: ${util.joinValues(issue2.keys, ", ")}`;
      break;
    case ZodIssueCode2.invalid_union:
      message = `Invalid input`;
      break;
    case ZodIssueCode2.invalid_union_discriminator:
      message = `Invalid discriminator value. Expected ${util.joinValues(issue2.options)}`;
      break;
    case ZodIssueCode2.invalid_enum_value:
      message = `Invalid enum value. Expected ${util.joinValues(issue2.options)}, received '${issue2.received}'`;
      break;
    case ZodIssueCode2.invalid_arguments:
      message = `Invalid function arguments`;
      break;
    case ZodIssueCode2.invalid_return_type:
      message = `Invalid function return type`;
      break;
    case ZodIssueCode2.invalid_date:
      message = `Invalid date`;
      break;
    case ZodIssueCode2.invalid_string:
      if (typeof issue2.validation === "object") {
        if ("includes" in issue2.validation) {
          message = `Invalid input: must include "${issue2.validation.includes}"`;
          if (typeof issue2.validation.position === "number") {
            message = `${message} at one or more positions greater than or equal to ${issue2.validation.position}`;
          }
        } else if ("startsWith" in issue2.validation) {
          message = `Invalid input: must start with "${issue2.validation.startsWith}"`;
        } else if ("endsWith" in issue2.validation) {
          message = `Invalid input: must end with "${issue2.validation.endsWith}"`;
        } else {
          util.assertNever(issue2.validation);
        }
      } else if (issue2.validation !== "regex") {
        message = `Invalid ${issue2.validation}`;
      } else {
        message = "Invalid";
      }
      break;
    case ZodIssueCode2.too_small:
      if (issue2.type === "array")
        message = `Array must contain ${issue2.exact ? "exactly" : issue2.inclusive ? `at least` : `more than`} ${issue2.minimum} element(s)`;
      else if (issue2.type === "string")
        message = `String must contain ${issue2.exact ? "exactly" : issue2.inclusive ? `at least` : `over`} ${issue2.minimum} character(s)`;
      else if (issue2.type === "number")
        message = `Number must be ${issue2.exact ? `exactly equal to ` : issue2.inclusive ? `greater than or equal to ` : `greater than `}${issue2.minimum}`;
      else if (issue2.type === "bigint")
        message = `Number must be ${issue2.exact ? `exactly equal to ` : issue2.inclusive ? `greater than or equal to ` : `greater than `}${issue2.minimum}`;
      else if (issue2.type === "date")
        message = `Date must be ${issue2.exact ? `exactly equal to ` : issue2.inclusive ? `greater than or equal to ` : `greater than `}${new Date(Number(issue2.minimum))}`;
      else
        message = "Invalid input";
      break;
    case ZodIssueCode2.too_big:
      if (issue2.type === "array")
        message = `Array must contain ${issue2.exact ? `exactly` : issue2.inclusive ? `at most` : `less than`} ${issue2.maximum} element(s)`;
      else if (issue2.type === "string")
        message = `String must contain ${issue2.exact ? `exactly` : issue2.inclusive ? `at most` : `under`} ${issue2.maximum} character(s)`;
      else if (issue2.type === "number")
        message = `Number must be ${issue2.exact ? `exactly` : issue2.inclusive ? `less than or equal to` : `less than`} ${issue2.maximum}`;
      else if (issue2.type === "bigint")
        message = `BigInt must be ${issue2.exact ? `exactly` : issue2.inclusive ? `less than or equal to` : `less than`} ${issue2.maximum}`;
      else if (issue2.type === "date")
        message = `Date must be ${issue2.exact ? `exactly` : issue2.inclusive ? `smaller than or equal to` : `smaller than`} ${new Date(Number(issue2.maximum))}`;
      else
        message = "Invalid input";
      break;
    case ZodIssueCode2.custom:
      message = `Invalid input`;
      break;
    case ZodIssueCode2.invalid_intersection_types:
      message = `Intersection results could not be merged`;
      break;
    case ZodIssueCode2.not_multiple_of:
      message = `Number must be a multiple of ${issue2.multipleOf}`;
      break;
    case ZodIssueCode2.not_finite:
      message = "Number must be finite";
      break;
    default:
      message = _ctx.defaultError;
      util.assertNever(issue2);
  }
  return { message };
};
var en_default2 = errorMap;

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v3/errors.js
var overrideErrorMap = en_default2;
function getErrorMap() {
  return overrideErrorMap;
}

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v3/helpers/parseUtil.js
var makeIssue = (params) => {
  const { data, path: path3, errorMaps, issueData } = params;
  const fullPath = [...path3, ...issueData.path || []];
  const fullIssue = {
    ...issueData,
    path: fullPath
  };
  if (issueData.message !== void 0) {
    return {
      ...issueData,
      path: fullPath,
      message: issueData.message
    };
  }
  let errorMessage = "";
  const maps = errorMaps.filter((m) => !!m).slice().reverse();
  for (const map of maps) {
    errorMessage = map(fullIssue, { data, defaultError: errorMessage }).message;
  }
  return {
    ...issueData,
    path: fullPath,
    message: errorMessage
  };
};
function addIssueToContext(ctx, issueData) {
  const overrideMap = getErrorMap();
  const issue2 = makeIssue({
    issueData,
    data: ctx.data,
    path: ctx.path,
    errorMaps: [
      ctx.common.contextualErrorMap,
      // contextual error map is first priority
      ctx.schemaErrorMap,
      // then schema-bound map if available
      overrideMap,
      // then global override map
      overrideMap === en_default2 ? void 0 : en_default2
      // then global default map
    ].filter((x) => !!x)
  });
  ctx.common.issues.push(issue2);
}
var ParseStatus = class _ParseStatus {
  constructor() {
    this.value = "valid";
  }
  dirty() {
    if (this.value === "valid")
      this.value = "dirty";
  }
  abort() {
    if (this.value !== "aborted")
      this.value = "aborted";
  }
  static mergeArray(status, results) {
    const arrayValue = [];
    for (const s of results) {
      if (s.status === "aborted")
        return INVALID;
      if (s.status === "dirty")
        status.dirty();
      arrayValue.push(s.value);
    }
    return { status: status.value, value: arrayValue };
  }
  static async mergeObjectAsync(status, pairs) {
    const syncPairs = [];
    for (const pair of pairs) {
      const key = await pair.key;
      const value = await pair.value;
      syncPairs.push({
        key,
        value
      });
    }
    return _ParseStatus.mergeObjectSync(status, syncPairs);
  }
  static mergeObjectSync(status, pairs) {
    const finalObject = {};
    for (const pair of pairs) {
      const { key, value } = pair;
      if (key.status === "aborted")
        return INVALID;
      if (value.status === "aborted")
        return INVALID;
      if (key.status === "dirty")
        status.dirty();
      if (value.status === "dirty")
        status.dirty();
      if (key.value !== "__proto__" && (typeof value.value !== "undefined" || pair.alwaysSet)) {
        finalObject[key.value] = value.value;
      }
    }
    return { status: status.value, value: finalObject };
  }
};
var INVALID = Object.freeze({
  status: "aborted"
});
var DIRTY = (value) => ({ status: "dirty", value });
var OK = (value) => ({ status: "valid", value });
var isAborted = (x) => x.status === "aborted";
var isDirty = (x) => x.status === "dirty";
var isValid = (x) => x.status === "valid";
var isAsync = (x) => typeof Promise !== "undefined" && x instanceof Promise;

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v3/helpers/errorUtil.js
var errorUtil;
(function(errorUtil2) {
  errorUtil2.errToObj = (message) => typeof message === "string" ? { message } : message || {};
  errorUtil2.toString = (message) => typeof message === "string" ? message : message?.message;
})(errorUtil || (errorUtil = {}));

// node_modules/.pnpm/zod@4.1.13/node_modules/zod/v3/types.js
var ParseInputLazyPath = class {
  constructor(parent, value, path3, key) {
    this._cachedPath = [];
    this.parent = parent;
    this.data = value;
    this._path = path3;
    this._key = key;
  }
  get path() {
    if (!this._cachedPath.length) {
      if (Array.isArray(this._key)) {
        this._cachedPath.push(...this._path, ...this._key);
      } else {
        this._cachedPath.push(...this._path, this._key);
      }
    }
    return this._cachedPath;
  }
};
var handleResult = (ctx, result) => {
  if (isValid(result)) {
    return { success: true, data: result.value };
  } else {
    if (!ctx.common.issues.length) {
      throw new Error("Validation failed but no issues detected.");
    }
    return {
      success: false,
      get error() {
        if (this._error)
          return this._error;
        const error2 = new ZodError2(ctx.common.issues);
        this._error = error2;
        return this._error;
      }
    };
  }
};
function processCreateParams(params) {
  if (!params)
    return {};
  const { errorMap: errorMap2, invalid_type_error, required_error, description } = params;
  if (errorMap2 && (invalid_type_error || required_error)) {
    throw new Error(`Can't use "invalid_type_error" or "required_error" in conjunction with custom error map.`);
  }
  if (errorMap2)
    return { errorMap: errorMap2, description };
  const customMap = (iss, ctx) => {
    const { message } = params;
    if (iss.code === "invalid_enum_value") {
      return { message: message ?? ctx.defaultError };
    }
    if (typeof ctx.data === "undefined") {
      return { message: message ?? required_error ?? ctx.defaultError };
    }
    if (iss.code !== "invalid_type")
      return { message: ctx.defaultError };
    return { message: message ?? invalid_type_error ?? ctx.defaultError };
  };
  return { errorMap: customMap, description };
}
var ZodType2 = class {
  get description() {
    return this._def.description;
  }
  _getType(input) {
    return getParsedType2(input.data);
  }
  _getOrReturnCtx(input, ctx) {
    return ctx || {
      common: input.parent.common,
      data: input.data,
      parsedType: getParsedType2(input.data),
      schemaErrorMap: this._def.errorMap,
      path: input.path,
      parent: input.parent
    };
  }
  _processInputParams(input) {
    return {
      status: new ParseStatus(),
      ctx: {
        common: input.parent.common,
        data: input.data,
        parsedType: getParsedType2(input.data),
        schemaErrorMap: this._def.errorMap,
        path: input.path,
        parent: input.parent
      }
    };
  }
  _parseSync(input) {
    const result = this._parse(input);
    if (isAsync(result)) {
      throw new Error("Synchronous parse encountered promise.");
    }
    return result;
  }
  _parseAsync(input) {
    const result = this._parse(input);
    return Promise.resolve(result);
  }
  parse(data, params) {
    const result = this.safeParse(data, params);
    if (result.success)
      return result.data;
    throw result.error;
  }
  safeParse(data, params) {
    const ctx = {
      common: {
        issues: [],
        async: params?.async ?? false,
        contextualErrorMap: params?.errorMap
      },
      path: params?.path || [],
      schemaErrorMap: this._def.errorMap,
      parent: null,
      data,
      parsedType: getParsedType2(data)
    };
    const result = this._parseSync({ data, path: ctx.path, parent: ctx });
    return handleResult(ctx, result);
  }
  "~validate"(data) {
    const ctx = {
      common: {
        issues: [],
        async: !!this["~standard"].async
      },
      path: [],
      schemaErrorMap: this._def.errorMap,
      parent: null,
      data,
      parsedType: getParsedType2(data)
    };
    if (!this["~standard"].async) {
      try {
        const result = this._parseSync({ data, path: [], parent: ctx });
        return isValid(result) ? {
          value: result.value
        } : {
          issues: ctx.common.issues
        };
      } catch (err) {
        if (err?.message?.toLowerCase()?.includes("encountered")) {
          this["~standard"].async = true;
        }
        ctx.common = {
          issues: [],
          async: true
        };
      }
    }
    return this._parseAsync({ data, path: [], parent: ctx }).then((result) => isValid(result) ? {
      value: result.value
    } : {
      issues: ctx.common.issues
    });
  }
  async parseAsync(data, params) {
    const result = await this.safeParseAsync(data, params);
    if (result.success)
      return result.data;
    throw result.error;
  }
  async safeParseAsync(data, params) {
    const ctx = {
      common: {
        issues: [],
        contextualErrorMap: params?.errorMap,
        async: true
      },
      path: params?.path || [],
      schemaErrorMap: this._def.errorMap,
      parent: null,
      data,
      parsedType: getParsedType2(data)
    };
    const maybeAsyncResult = this._parse({ data, path: ctx.path, parent: ctx });
    const result = await (isAsync(maybeAsyncResult) ? maybeAsyncResult : Promise.resolve(maybeAsyncResult));
    return handleResult(ctx, result);
  }
  refine(check, message) {
    const getIssueProperties = (val) => {
      if (typeof message === "string" || typeof message === "undefined") {
        return { message };
      } else if (typeof message === "function") {
        return message(val);
      } else {
        return message;
      }
    };
    return this._refinement((val, ctx) => {
      const result = check(val);
      const setError = () => ctx.addIssue({
        code: ZodIssueCode2.custom,
        ...getIssueProperties(val)
      });
      if (typeof Promise !== "undefined" && result instanceof Promise) {
        return result.then((data) => {
          if (!data) {
            setError();
            return false;
          } else {
            return true;
          }
        });
      }
      if (!result) {
        setError();
        return false;
      } else {
        return true;
      }
    });
  }
  refinement(check, refinementData) {
    return this._refinement((val, ctx) => {
      if (!check(val)) {
        ctx.addIssue(typeof refinementData === "function" ? refinementData(val, ctx) : refinementData);
        return false;
      } else {
        return true;
      }
    });
  }
  _refinement(refinement) {
    return new ZodEffects({
      schema: this,
      typeName: ZodFirstPartyTypeKind2.ZodEffects,
      effect: { type: "refinement", refinement }
    });
  }
  superRefine(refinement) {
    return this._refinement(refinement);
  }
  constructor(def) {
    this.spa = this.safeParseAsync;
    this._def = def;
    this.parse = this.parse.bind(this);
    this.safeParse = this.safeParse.bind(this);
    this.parseAsync = this.parseAsync.bind(this);
    this.safeParseAsync = this.safeParseAsync.bind(this);
    this.spa = this.spa.bind(this);
    this.refine = this.refine.bind(this);
    this.refinement = this.refinement.bind(this);
    this.superRefine = this.superRefine.bind(this);
    this.optional = this.optional.bind(this);
    this.nullable = this.nullable.bind(this);
    this.nullish = this.nullish.bind(this);
    this.array = this.array.bind(this);
    this.promise = this.promise.bind(this);
    this.or = this.or.bind(this);
    this.and = this.and.bind(this);
    this.transform = this.transform.bind(this);
    this.brand = this.brand.bind(this);
    this.default = this.default.bind(this);
    this.catch = this.catch.bind(this);
    this.describe = this.describe.bind(this);
    this.pipe = this.pipe.bind(this);
    this.readonly = this.readonly.bind(this);
    this.isNullable = this.isNullable.bind(this);
    this.isOptional = this.isOptional.bind(this);
    this["~standard"] = {
      version: 1,
      vendor: "zod",
      validate: (data) => this["~validate"](data)
    };
  }
  optional() {
    return ZodOptional2.create(this, this._def);
  }
  nullable() {
    return ZodNullable2.create(this, this._def);
  }
  nullish() {
    return this.nullable().optional();
  }
  array() {
    return ZodArray2.create(this);
  }
  promise() {
    return ZodPromise.create(this, this._def);
  }
  or(option) {
    return ZodUnion2.create([this, option], this._def);
  }
  and(incoming) {
    return ZodIntersection2.create(this, incoming, this._def);
  }
  transform(transform2) {
    return new ZodEffects({
      ...processCreateParams(this._def),
      schema: this,
      typeName: ZodFirstPartyTypeKind2.ZodEffects,
      effect: { type: "transform", transform: transform2 }
    });
  }
  default(def) {
    const defaultValueFunc = typeof def === "function" ? def : () => def;
    return new ZodDefault2({
      ...processCreateParams(this._def),
      innerType: this,
      defaultValue: defaultValueFunc,
      typeName: ZodFirstPartyTypeKind2.ZodDefault
    });
  }
  brand() {
    return new ZodBranded({
      typeName: ZodFirstPartyTypeKind2.ZodBranded,
      type: this,
      ...processCreateParams(this._def)
    });
  }
  catch(def) {
    const catchValueFunc = typeof def === "function" ? def : () => def;
    return new ZodCatch2({
      ...processCreateParams(this._def),
      innerType: this,
      catchValue: catchValueFunc,
      typeName: ZodFirstPartyTypeKind2.ZodCatch
    });
  }
  describe(description) {
    const This = this.constructor;
    return new This({
      ...this._def,
      description
    });
  }
  pipe(target) {
    return ZodPipeline.create(this, target);
  }
  readonly() {
    return ZodReadonly2.create(this);
  }
  isOptional() {
    return this.safeParse(void 0).success;
  }
  isNullable() {
    return this.safeParse(null).success;
  }
};
var cuidRegex = /^c[^\s-]{8,}$/i;
var cuid2Regex = /^[0-9a-z]+$/;
var ulidRegex = /^[0-9A-HJKMNP-TV-Z]{26}$/i;
var uuidRegex = /^[0-9a-fA-F]{8}\b-[0-9a-fA-F]{4}\b-[0-9a-fA-F]{4}\b-[0-9a-fA-F]{4}\b-[0-9a-fA-F]{12}$/i;
var nanoidRegex = /^[a-z0-9_-]{21}$/i;
var jwtRegex = /^[A-Za-z0-9-_]+\.[A-Za-z0-9-_]+\.[A-Za-z0-9-_]*$/;
var durationRegex = /^[-+]?P(?!$)(?:(?:[-+]?\d+Y)|(?:[-+]?\d+[.,]\d+Y$))?(?:(?:[-+]?\d+M)|(?:[-+]?\d+[.,]\d+M$))?(?:(?:[-+]?\d+W)|(?:[-+]?\d+[.,]\d+W$))?(?:(?:[-+]?\d+D)|(?:[-+]?\d+[.,]\d+D$))?(?:T(?=[\d+-])(?:(?:[-+]?\d+H)|(?:[-+]?\d+[.,]\d+H$))?(?:(?:[-+]?\d+M)|(?:[-+]?\d+[.,]\d+M$))?(?:[-+]?\d+(?:[.,]\d+)?S)?)??$/;
var emailRegex = /^(?!\.)(?!.*\.\.)([A-Z0-9_'+\-\.]*)[A-Z0-9_+-]@([A-Z0-9][A-Z0-9\-]*\.)+[A-Z]{2,}$/i;
var _emojiRegex = `^(\\p{Extended_Pictographic}|\\p{Emoji_Component})+$`;
var emojiRegex;
var ipv4Regex = /^(?:(?:25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])\.){3}(?:25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])$/;
var ipv4CidrRegex = /^(?:(?:25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])\.){3}(?:25[0-5]|2[0-4][0-9]|1[0-9][0-9]|[1-9][0-9]|[0-9])\/(3[0-2]|[12]?[0-9])$/;
var ipv6Regex = /^(([0-9a-fA-F]{1,4}:){7,7}[0-9a-fA-F]{1,4}|([0-9a-fA-F]{1,4}:){1,7}:|([0-9a-fA-F]{1,4}:){1,6}:[0-9a-fA-F]{1,4}|([0-9a-fA-F]{1,4}:){1,5}(:[0-9a-fA-F]{1,4}){1,2}|([0-9a-fA-F]{1,4}:){1,4}(:[0-9a-fA-F]{1,4}){1,3}|([0-9a-fA-F]{1,4}:){1,3}(:[0-9a-fA-F]{1,4}){1,4}|([0-9a-fA-F]{1,4}:){1,2}(:[0-9a-fA-F]{1,4}){1,5}|[0-9a-fA-F]{1,4}:((:[0-9a-fA-F]{1,4}){1,6})|:((:[0-9a-fA-F]{1,4}){1,7}|:)|fe80:(:[0-9a-fA-F]{0,4}){0,4}%[0-9a-zA-Z]{1,}|::(ffff(:0{1,4}){0,1}:){0,1}((25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9])\.){3,3}(25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9])|([0-9a-fA-F]{1,4}:){1,4}:((25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9])\.){3,3}(25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9]))$/;
var ipv6CidrRegex = /^(([0-9a-fA-F]{1,4}:){7,7}[0-9a-fA-F]{1,4}|([0-9a-fA-F]{1,4}:){1,7}:|([0-9a-fA-F]{1,4}:){1,6}:[0-9a-fA-F]{1,4}|([0-9a-fA-F]{1,4}:){1,5}(:[0-9a-fA-F]{1,4}){1,2}|([0-9a-fA-F]{1,4}:){1,4}(:[0-9a-fA-F]{1,4}){1,3}|([0-9a-fA-F]{1,4}:){1,3}(:[0-9a-fA-F]{1,4}){1,4}|([0-9a-fA-F]{1,4}:){1,2}(:[0-9a-fA-F]{1,4}){1,5}|[0-9a-fA-F]{1,4}:((:[0-9a-fA-F]{1,4}){1,6})|:((:[0-9a-fA-F]{1,4}){1,7}|:)|fe80:(:[0-9a-fA-F]{0,4}){0,4}%[0-9a-zA-Z]{1,}|::(ffff(:0{1,4}){0,1}:){0,1}((25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9])\.){3,3}(25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9])|([0-9a-fA-F]{1,4}:){1,4}:((25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9])\.){3,3}(25[0-5]|(2[0-4]|1{0,1}[0-9]){0,1}[0-9]))\/(12[0-8]|1[01][0-9]|[1-9]?[0-9])$/;
var base64Regex = /^([0-9a-zA-Z+/]{4})*(([0-9a-zA-Z+/]{2}==)|([0-9a-zA-Z+/]{3}=))?$/;
var base64urlRegex = /^([0-9a-zA-Z-_]{4})*(([0-9a-zA-Z-_]{2}(==)?)|([0-9a-zA-Z-_]{3}(=)?))?$/;
var dateRegexSource = `((\\d\\d[2468][048]|\\d\\d[13579][26]|\\d\\d0[48]|[02468][048]00|[13579][26]00)-02-29|\\d{4}-((0[13578]|1[02])-(0[1-9]|[12]\\d|3[01])|(0[469]|11)-(0[1-9]|[12]\\d|30)|(02)-(0[1-9]|1\\d|2[0-8])))`;
var dateRegex = new RegExp(`^${dateRegexSource}$`);
function timeRegexSource(args) {
  let secondsRegexSource = `[0-5]\\d`;
  if (args.precision) {
    secondsRegexSource = `${secondsRegexSource}\\.\\d{${args.precision}}`;
  } else if (args.precision == null) {
    secondsRegexSource = `${secondsRegexSource}(\\.\\d+)?`;
  }
  const secondsQuantifier = args.precision ? "+" : "?";
  return `([01]\\d|2[0-3]):[0-5]\\d(:${secondsRegexSource})${secondsQuantifier}`;
}
function timeRegex(args) {
  return new RegExp(`^${timeRegexSource(args)}$`);
}
function datetimeRegex(args) {
  let regex = `${dateRegexSource}T${timeRegexSource(args)}`;
  const opts = [];
  opts.push(args.local ? `Z?` : `Z`);
  if (args.offset)
    opts.push(`([+-]\\d{2}:?\\d{2})`);
  regex = `${regex}(${opts.join("|")})`;
  return new RegExp(`^${regex}$`);
}
function isValidIP(ip, version3) {
  if ((version3 === "v4" || !version3) && ipv4Regex.test(ip)) {
    return true;
  }
  if ((version3 === "v6" || !version3) && ipv6Regex.test(ip)) {
    return true;
  }
  return false;
}
function isValidJWT2(jwt, alg) {
  if (!jwtRegex.test(jwt))
    return false;
  try {
    const [header] = jwt.split(".");
    if (!header)
      return false;
    const base642 = header.replace(/-/g, "+").replace(/_/g, "/").padEnd(header.length + (4 - header.length % 4) % 4, "=");
    const decoded = JSON.parse(atob(base642));
    if (typeof decoded !== "object" || decoded === null)
      return false;
    if ("typ" in decoded && decoded?.typ !== "JWT")
      return false;
    if (!decoded.alg)
      return false;
    if (alg && decoded.alg !== alg)
      return false;
    return true;
  } catch {
    return false;
  }
}
function isValidCidr(ip, version3) {
  if ((version3 === "v4" || !version3) && ipv4CidrRegex.test(ip)) {
    return true;
  }
  if ((version3 === "v6" || !version3) && ipv6CidrRegex.test(ip)) {
    return true;
  }
  return false;
}
var ZodString2 = class _ZodString2 extends ZodType2 {
  _parse(input) {
    if (this._def.coerce) {
      input.data = String(input.data);
    }
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.string) {
      const ctx2 = this._getOrReturnCtx(input);
      addIssueToContext(ctx2, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.string,
        received: ctx2.parsedType
      });
      return INVALID;
    }
    const status = new ParseStatus();
    let ctx = void 0;
    for (const check of this._def.checks) {
      if (check.kind === "min") {
        if (input.data.length < check.value) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_small,
            minimum: check.value,
            type: "string",
            inclusive: true,
            exact: false,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "max") {
        if (input.data.length > check.value) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_big,
            maximum: check.value,
            type: "string",
            inclusive: true,
            exact: false,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "length") {
        const tooBig = input.data.length > check.value;
        const tooSmall = input.data.length < check.value;
        if (tooBig || tooSmall) {
          ctx = this._getOrReturnCtx(input, ctx);
          if (tooBig) {
            addIssueToContext(ctx, {
              code: ZodIssueCode2.too_big,
              maximum: check.value,
              type: "string",
              inclusive: true,
              exact: true,
              message: check.message
            });
          } else if (tooSmall) {
            addIssueToContext(ctx, {
              code: ZodIssueCode2.too_small,
              minimum: check.value,
              type: "string",
              inclusive: true,
              exact: true,
              message: check.message
            });
          }
          status.dirty();
        }
      } else if (check.kind === "email") {
        if (!emailRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "email",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "emoji") {
        if (!emojiRegex) {
          emojiRegex = new RegExp(_emojiRegex, "u");
        }
        if (!emojiRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "emoji",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "uuid") {
        if (!uuidRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "uuid",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "nanoid") {
        if (!nanoidRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "nanoid",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "cuid") {
        if (!cuidRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "cuid",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "cuid2") {
        if (!cuid2Regex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "cuid2",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "ulid") {
        if (!ulidRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "ulid",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "url") {
        try {
          new URL(input.data);
        } catch {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "url",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "regex") {
        check.regex.lastIndex = 0;
        const testResult = check.regex.test(input.data);
        if (!testResult) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "regex",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "trim") {
        input.data = input.data.trim();
      } else if (check.kind === "includes") {
        if (!input.data.includes(check.value, check.position)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.invalid_string,
            validation: { includes: check.value, position: check.position },
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "toLowerCase") {
        input.data = input.data.toLowerCase();
      } else if (check.kind === "toUpperCase") {
        input.data = input.data.toUpperCase();
      } else if (check.kind === "startsWith") {
        if (!input.data.startsWith(check.value)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.invalid_string,
            validation: { startsWith: check.value },
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "endsWith") {
        if (!input.data.endsWith(check.value)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.invalid_string,
            validation: { endsWith: check.value },
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "datetime") {
        const regex = datetimeRegex(check);
        if (!regex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.invalid_string,
            validation: "datetime",
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "date") {
        const regex = dateRegex;
        if (!regex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.invalid_string,
            validation: "date",
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "time") {
        const regex = timeRegex(check);
        if (!regex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.invalid_string,
            validation: "time",
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "duration") {
        if (!durationRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "duration",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "ip") {
        if (!isValidIP(input.data, check.version)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "ip",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "jwt") {
        if (!isValidJWT2(input.data, check.alg)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "jwt",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "cidr") {
        if (!isValidCidr(input.data, check.version)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "cidr",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "base64") {
        if (!base64Regex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "base64",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "base64url") {
        if (!base64urlRegex.test(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            validation: "base64url",
            code: ZodIssueCode2.invalid_string,
            message: check.message
          });
          status.dirty();
        }
      } else {
        util.assertNever(check);
      }
    }
    return { status: status.value, value: input.data };
  }
  _regex(regex, validation, message) {
    return this.refinement((data) => regex.test(data), {
      validation,
      code: ZodIssueCode2.invalid_string,
      ...errorUtil.errToObj(message)
    });
  }
  _addCheck(check) {
    return new _ZodString2({
      ...this._def,
      checks: [...this._def.checks, check]
    });
  }
  email(message) {
    return this._addCheck({ kind: "email", ...errorUtil.errToObj(message) });
  }
  url(message) {
    return this._addCheck({ kind: "url", ...errorUtil.errToObj(message) });
  }
  emoji(message) {
    return this._addCheck({ kind: "emoji", ...errorUtil.errToObj(message) });
  }
  uuid(message) {
    return this._addCheck({ kind: "uuid", ...errorUtil.errToObj(message) });
  }
  nanoid(message) {
    return this._addCheck({ kind: "nanoid", ...errorUtil.errToObj(message) });
  }
  cuid(message) {
    return this._addCheck({ kind: "cuid", ...errorUtil.errToObj(message) });
  }
  cuid2(message) {
    return this._addCheck({ kind: "cuid2", ...errorUtil.errToObj(message) });
  }
  ulid(message) {
    return this._addCheck({ kind: "ulid", ...errorUtil.errToObj(message) });
  }
  base64(message) {
    return this._addCheck({ kind: "base64", ...errorUtil.errToObj(message) });
  }
  base64url(message) {
    return this._addCheck({
      kind: "base64url",
      ...errorUtil.errToObj(message)
    });
  }
  jwt(options) {
    return this._addCheck({ kind: "jwt", ...errorUtil.errToObj(options) });
  }
  ip(options) {
    return this._addCheck({ kind: "ip", ...errorUtil.errToObj(options) });
  }
  cidr(options) {
    return this._addCheck({ kind: "cidr", ...errorUtil.errToObj(options) });
  }
  datetime(options) {
    if (typeof options === "string") {
      return this._addCheck({
        kind: "datetime",
        precision: null,
        offset: false,
        local: false,
        message: options
      });
    }
    return this._addCheck({
      kind: "datetime",
      precision: typeof options?.precision === "undefined" ? null : options?.precision,
      offset: options?.offset ?? false,
      local: options?.local ?? false,
      ...errorUtil.errToObj(options?.message)
    });
  }
  date(message) {
    return this._addCheck({ kind: "date", message });
  }
  time(options) {
    if (typeof options === "string") {
      return this._addCheck({
        kind: "time",
        precision: null,
        message: options
      });
    }
    return this._addCheck({
      kind: "time",
      precision: typeof options?.precision === "undefined" ? null : options?.precision,
      ...errorUtil.errToObj(options?.message)
    });
  }
  duration(message) {
    return this._addCheck({ kind: "duration", ...errorUtil.errToObj(message) });
  }
  regex(regex, message) {
    return this._addCheck({
      kind: "regex",
      regex,
      ...errorUtil.errToObj(message)
    });
  }
  includes(value, options) {
    return this._addCheck({
      kind: "includes",
      value,
      position: options?.position,
      ...errorUtil.errToObj(options?.message)
    });
  }
  startsWith(value, message) {
    return this._addCheck({
      kind: "startsWith",
      value,
      ...errorUtil.errToObj(message)
    });
  }
  endsWith(value, message) {
    return this._addCheck({
      kind: "endsWith",
      value,
      ...errorUtil.errToObj(message)
    });
  }
  min(minLength, message) {
    return this._addCheck({
      kind: "min",
      value: minLength,
      ...errorUtil.errToObj(message)
    });
  }
  max(maxLength, message) {
    return this._addCheck({
      kind: "max",
      value: maxLength,
      ...errorUtil.errToObj(message)
    });
  }
  length(len, message) {
    return this._addCheck({
      kind: "length",
      value: len,
      ...errorUtil.errToObj(message)
    });
  }
  /**
   * Equivalent to `.min(1)`
   */
  nonempty(message) {
    return this.min(1, errorUtil.errToObj(message));
  }
  trim() {
    return new _ZodString2({
      ...this._def,
      checks: [...this._def.checks, { kind: "trim" }]
    });
  }
  toLowerCase() {
    return new _ZodString2({
      ...this._def,
      checks: [...this._def.checks, { kind: "toLowerCase" }]
    });
  }
  toUpperCase() {
    return new _ZodString2({
      ...this._def,
      checks: [...this._def.checks, { kind: "toUpperCase" }]
    });
  }
  get isDatetime() {
    return !!this._def.checks.find((ch) => ch.kind === "datetime");
  }
  get isDate() {
    return !!this._def.checks.find((ch) => ch.kind === "date");
  }
  get isTime() {
    return !!this._def.checks.find((ch) => ch.kind === "time");
  }
  get isDuration() {
    return !!this._def.checks.find((ch) => ch.kind === "duration");
  }
  get isEmail() {
    return !!this._def.checks.find((ch) => ch.kind === "email");
  }
  get isURL() {
    return !!this._def.checks.find((ch) => ch.kind === "url");
  }
  get isEmoji() {
    return !!this._def.checks.find((ch) => ch.kind === "emoji");
  }
  get isUUID() {
    return !!this._def.checks.find((ch) => ch.kind === "uuid");
  }
  get isNANOID() {
    return !!this._def.checks.find((ch) => ch.kind === "nanoid");
  }
  get isCUID() {
    return !!this._def.checks.find((ch) => ch.kind === "cuid");
  }
  get isCUID2() {
    return !!this._def.checks.find((ch) => ch.kind === "cuid2");
  }
  get isULID() {
    return !!this._def.checks.find((ch) => ch.kind === "ulid");
  }
  get isIP() {
    return !!this._def.checks.find((ch) => ch.kind === "ip");
  }
  get isCIDR() {
    return !!this._def.checks.find((ch) => ch.kind === "cidr");
  }
  get isBase64() {
    return !!this._def.checks.find((ch) => ch.kind === "base64");
  }
  get isBase64url() {
    return !!this._def.checks.find((ch) => ch.kind === "base64url");
  }
  get minLength() {
    let min = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "min") {
        if (min === null || ch.value > min)
          min = ch.value;
      }
    }
    return min;
  }
  get maxLength() {
    let max = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "max") {
        if (max === null || ch.value < max)
          max = ch.value;
      }
    }
    return max;
  }
};
ZodString2.create = (params) => {
  return new ZodString2({
    checks: [],
    typeName: ZodFirstPartyTypeKind2.ZodString,
    coerce: params?.coerce ?? false,
    ...processCreateParams(params)
  });
};
function floatSafeRemainder2(val, step) {
  const valDecCount = (val.toString().split(".")[1] || "").length;
  const stepDecCount = (step.toString().split(".")[1] || "").length;
  const decCount = valDecCount > stepDecCount ? valDecCount : stepDecCount;
  const valInt = Number.parseInt(val.toFixed(decCount).replace(".", ""));
  const stepInt = Number.parseInt(step.toFixed(decCount).replace(".", ""));
  return valInt % stepInt / 10 ** decCount;
}
var ZodNumber2 = class _ZodNumber extends ZodType2 {
  constructor() {
    super(...arguments);
    this.min = this.gte;
    this.max = this.lte;
    this.step = this.multipleOf;
  }
  _parse(input) {
    if (this._def.coerce) {
      input.data = Number(input.data);
    }
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.number) {
      const ctx2 = this._getOrReturnCtx(input);
      addIssueToContext(ctx2, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.number,
        received: ctx2.parsedType
      });
      return INVALID;
    }
    let ctx = void 0;
    const status = new ParseStatus();
    for (const check of this._def.checks) {
      if (check.kind === "int") {
        if (!util.isInteger(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.invalid_type,
            expected: "integer",
            received: "float",
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "min") {
        const tooSmall = check.inclusive ? input.data < check.value : input.data <= check.value;
        if (tooSmall) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_small,
            minimum: check.value,
            type: "number",
            inclusive: check.inclusive,
            exact: false,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "max") {
        const tooBig = check.inclusive ? input.data > check.value : input.data >= check.value;
        if (tooBig) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_big,
            maximum: check.value,
            type: "number",
            inclusive: check.inclusive,
            exact: false,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "multipleOf") {
        if (floatSafeRemainder2(input.data, check.value) !== 0) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.not_multiple_of,
            multipleOf: check.value,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "finite") {
        if (!Number.isFinite(input.data)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.not_finite,
            message: check.message
          });
          status.dirty();
        }
      } else {
        util.assertNever(check);
      }
    }
    return { status: status.value, value: input.data };
  }
  gte(value, message) {
    return this.setLimit("min", value, true, errorUtil.toString(message));
  }
  gt(value, message) {
    return this.setLimit("min", value, false, errorUtil.toString(message));
  }
  lte(value, message) {
    return this.setLimit("max", value, true, errorUtil.toString(message));
  }
  lt(value, message) {
    return this.setLimit("max", value, false, errorUtil.toString(message));
  }
  setLimit(kind, value, inclusive, message) {
    return new _ZodNumber({
      ...this._def,
      checks: [
        ...this._def.checks,
        {
          kind,
          value,
          inclusive,
          message: errorUtil.toString(message)
        }
      ]
    });
  }
  _addCheck(check) {
    return new _ZodNumber({
      ...this._def,
      checks: [...this._def.checks, check]
    });
  }
  int(message) {
    return this._addCheck({
      kind: "int",
      message: errorUtil.toString(message)
    });
  }
  positive(message) {
    return this._addCheck({
      kind: "min",
      value: 0,
      inclusive: false,
      message: errorUtil.toString(message)
    });
  }
  negative(message) {
    return this._addCheck({
      kind: "max",
      value: 0,
      inclusive: false,
      message: errorUtil.toString(message)
    });
  }
  nonpositive(message) {
    return this._addCheck({
      kind: "max",
      value: 0,
      inclusive: true,
      message: errorUtil.toString(message)
    });
  }
  nonnegative(message) {
    return this._addCheck({
      kind: "min",
      value: 0,
      inclusive: true,
      message: errorUtil.toString(message)
    });
  }
  multipleOf(value, message) {
    return this._addCheck({
      kind: "multipleOf",
      value,
      message: errorUtil.toString(message)
    });
  }
  finite(message) {
    return this._addCheck({
      kind: "finite",
      message: errorUtil.toString(message)
    });
  }
  safe(message) {
    return this._addCheck({
      kind: "min",
      inclusive: true,
      value: Number.MIN_SAFE_INTEGER,
      message: errorUtil.toString(message)
    })._addCheck({
      kind: "max",
      inclusive: true,
      value: Number.MAX_SAFE_INTEGER,
      message: errorUtil.toString(message)
    });
  }
  get minValue() {
    let min = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "min") {
        if (min === null || ch.value > min)
          min = ch.value;
      }
    }
    return min;
  }
  get maxValue() {
    let max = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "max") {
        if (max === null || ch.value < max)
          max = ch.value;
      }
    }
    return max;
  }
  get isInt() {
    return !!this._def.checks.find((ch) => ch.kind === "int" || ch.kind === "multipleOf" && util.isInteger(ch.value));
  }
  get isFinite() {
    let max = null;
    let min = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "finite" || ch.kind === "int" || ch.kind === "multipleOf") {
        return true;
      } else if (ch.kind === "min") {
        if (min === null || ch.value > min)
          min = ch.value;
      } else if (ch.kind === "max") {
        if (max === null || ch.value < max)
          max = ch.value;
      }
    }
    return Number.isFinite(min) && Number.isFinite(max);
  }
};
ZodNumber2.create = (params) => {
  return new ZodNumber2({
    checks: [],
    typeName: ZodFirstPartyTypeKind2.ZodNumber,
    coerce: params?.coerce || false,
    ...processCreateParams(params)
  });
};
var ZodBigInt2 = class _ZodBigInt extends ZodType2 {
  constructor() {
    super(...arguments);
    this.min = this.gte;
    this.max = this.lte;
  }
  _parse(input) {
    if (this._def.coerce) {
      try {
        input.data = BigInt(input.data);
      } catch {
        return this._getInvalidInput(input);
      }
    }
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.bigint) {
      return this._getInvalidInput(input);
    }
    let ctx = void 0;
    const status = new ParseStatus();
    for (const check of this._def.checks) {
      if (check.kind === "min") {
        const tooSmall = check.inclusive ? input.data < check.value : input.data <= check.value;
        if (tooSmall) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_small,
            type: "bigint",
            minimum: check.value,
            inclusive: check.inclusive,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "max") {
        const tooBig = check.inclusive ? input.data > check.value : input.data >= check.value;
        if (tooBig) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_big,
            type: "bigint",
            maximum: check.value,
            inclusive: check.inclusive,
            message: check.message
          });
          status.dirty();
        }
      } else if (check.kind === "multipleOf") {
        if (input.data % check.value !== BigInt(0)) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.not_multiple_of,
            multipleOf: check.value,
            message: check.message
          });
          status.dirty();
        }
      } else {
        util.assertNever(check);
      }
    }
    return { status: status.value, value: input.data };
  }
  _getInvalidInput(input) {
    const ctx = this._getOrReturnCtx(input);
    addIssueToContext(ctx, {
      code: ZodIssueCode2.invalid_type,
      expected: ZodParsedType.bigint,
      received: ctx.parsedType
    });
    return INVALID;
  }
  gte(value, message) {
    return this.setLimit("min", value, true, errorUtil.toString(message));
  }
  gt(value, message) {
    return this.setLimit("min", value, false, errorUtil.toString(message));
  }
  lte(value, message) {
    return this.setLimit("max", value, true, errorUtil.toString(message));
  }
  lt(value, message) {
    return this.setLimit("max", value, false, errorUtil.toString(message));
  }
  setLimit(kind, value, inclusive, message) {
    return new _ZodBigInt({
      ...this._def,
      checks: [
        ...this._def.checks,
        {
          kind,
          value,
          inclusive,
          message: errorUtil.toString(message)
        }
      ]
    });
  }
  _addCheck(check) {
    return new _ZodBigInt({
      ...this._def,
      checks: [...this._def.checks, check]
    });
  }
  positive(message) {
    return this._addCheck({
      kind: "min",
      value: BigInt(0),
      inclusive: false,
      message: errorUtil.toString(message)
    });
  }
  negative(message) {
    return this._addCheck({
      kind: "max",
      value: BigInt(0),
      inclusive: false,
      message: errorUtil.toString(message)
    });
  }
  nonpositive(message) {
    return this._addCheck({
      kind: "max",
      value: BigInt(0),
      inclusive: true,
      message: errorUtil.toString(message)
    });
  }
  nonnegative(message) {
    return this._addCheck({
      kind: "min",
      value: BigInt(0),
      inclusive: true,
      message: errorUtil.toString(message)
    });
  }
  multipleOf(value, message) {
    return this._addCheck({
      kind: "multipleOf",
      value,
      message: errorUtil.toString(message)
    });
  }
  get minValue() {
    let min = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "min") {
        if (min === null || ch.value > min)
          min = ch.value;
      }
    }
    return min;
  }
  get maxValue() {
    let max = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "max") {
        if (max === null || ch.value < max)
          max = ch.value;
      }
    }
    return max;
  }
};
ZodBigInt2.create = (params) => {
  return new ZodBigInt2({
    checks: [],
    typeName: ZodFirstPartyTypeKind2.ZodBigInt,
    coerce: params?.coerce ?? false,
    ...processCreateParams(params)
  });
};
var ZodBoolean2 = class extends ZodType2 {
  _parse(input) {
    if (this._def.coerce) {
      input.data = Boolean(input.data);
    }
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.boolean) {
      const ctx = this._getOrReturnCtx(input);
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.boolean,
        received: ctx.parsedType
      });
      return INVALID;
    }
    return OK(input.data);
  }
};
ZodBoolean2.create = (params) => {
  return new ZodBoolean2({
    typeName: ZodFirstPartyTypeKind2.ZodBoolean,
    coerce: params?.coerce || false,
    ...processCreateParams(params)
  });
};
var ZodDate2 = class _ZodDate extends ZodType2 {
  _parse(input) {
    if (this._def.coerce) {
      input.data = new Date(input.data);
    }
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.date) {
      const ctx2 = this._getOrReturnCtx(input);
      addIssueToContext(ctx2, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.date,
        received: ctx2.parsedType
      });
      return INVALID;
    }
    if (Number.isNaN(input.data.getTime())) {
      const ctx2 = this._getOrReturnCtx(input);
      addIssueToContext(ctx2, {
        code: ZodIssueCode2.invalid_date
      });
      return INVALID;
    }
    const status = new ParseStatus();
    let ctx = void 0;
    for (const check of this._def.checks) {
      if (check.kind === "min") {
        if (input.data.getTime() < check.value) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_small,
            message: check.message,
            inclusive: true,
            exact: false,
            minimum: check.value,
            type: "date"
          });
          status.dirty();
        }
      } else if (check.kind === "max") {
        if (input.data.getTime() > check.value) {
          ctx = this._getOrReturnCtx(input, ctx);
          addIssueToContext(ctx, {
            code: ZodIssueCode2.too_big,
            message: check.message,
            inclusive: true,
            exact: false,
            maximum: check.value,
            type: "date"
          });
          status.dirty();
        }
      } else {
        util.assertNever(check);
      }
    }
    return {
      status: status.value,
      value: new Date(input.data.getTime())
    };
  }
  _addCheck(check) {
    return new _ZodDate({
      ...this._def,
      checks: [...this._def.checks, check]
    });
  }
  min(minDate, message) {
    return this._addCheck({
      kind: "min",
      value: minDate.getTime(),
      message: errorUtil.toString(message)
    });
  }
  max(maxDate, message) {
    return this._addCheck({
      kind: "max",
      value: maxDate.getTime(),
      message: errorUtil.toString(message)
    });
  }
  get minDate() {
    let min = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "min") {
        if (min === null || ch.value > min)
          min = ch.value;
      }
    }
    return min != null ? new Date(min) : null;
  }
  get maxDate() {
    let max = null;
    for (const ch of this._def.checks) {
      if (ch.kind === "max") {
        if (max === null || ch.value < max)
          max = ch.value;
      }
    }
    return max != null ? new Date(max) : null;
  }
};
ZodDate2.create = (params) => {
  return new ZodDate2({
    checks: [],
    coerce: params?.coerce || false,
    typeName: ZodFirstPartyTypeKind2.ZodDate,
    ...processCreateParams(params)
  });
};
var ZodSymbol = class extends ZodType2 {
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.symbol) {
      const ctx = this._getOrReturnCtx(input);
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.symbol,
        received: ctx.parsedType
      });
      return INVALID;
    }
    return OK(input.data);
  }
};
ZodSymbol.create = (params) => {
  return new ZodSymbol({
    typeName: ZodFirstPartyTypeKind2.ZodSymbol,
    ...processCreateParams(params)
  });
};
var ZodUndefined = class extends ZodType2 {
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.undefined) {
      const ctx = this._getOrReturnCtx(input);
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.undefined,
        received: ctx.parsedType
      });
      return INVALID;
    }
    return OK(input.data);
  }
};
ZodUndefined.create = (params) => {
  return new ZodUndefined({
    typeName: ZodFirstPartyTypeKind2.ZodUndefined,
    ...processCreateParams(params)
  });
};
var ZodNull = class extends ZodType2 {
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.null) {
      const ctx = this._getOrReturnCtx(input);
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.null,
        received: ctx.parsedType
      });
      return INVALID;
    }
    return OK(input.data);
  }
};
ZodNull.create = (params) => {
  return new ZodNull({
    typeName: ZodFirstPartyTypeKind2.ZodNull,
    ...processCreateParams(params)
  });
};
var ZodAny2 = class extends ZodType2 {
  constructor() {
    super(...arguments);
    this._any = true;
  }
  _parse(input) {
    return OK(input.data);
  }
};
ZodAny2.create = (params) => {
  return new ZodAny2({
    typeName: ZodFirstPartyTypeKind2.ZodAny,
    ...processCreateParams(params)
  });
};
var ZodUnknown2 = class extends ZodType2 {
  constructor() {
    super(...arguments);
    this._unknown = true;
  }
  _parse(input) {
    return OK(input.data);
  }
};
ZodUnknown2.create = (params) => {
  return new ZodUnknown2({
    typeName: ZodFirstPartyTypeKind2.ZodUnknown,
    ...processCreateParams(params)
  });
};
var ZodNever2 = class extends ZodType2 {
  _parse(input) {
    const ctx = this._getOrReturnCtx(input);
    addIssueToContext(ctx, {
      code: ZodIssueCode2.invalid_type,
      expected: ZodParsedType.never,
      received: ctx.parsedType
    });
    return INVALID;
  }
};
ZodNever2.create = (params) => {
  return new ZodNever2({
    typeName: ZodFirstPartyTypeKind2.ZodNever,
    ...processCreateParams(params)
  });
};
var ZodVoid = class extends ZodType2 {
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.undefined) {
      const ctx = this._getOrReturnCtx(input);
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.void,
        received: ctx.parsedType
      });
      return INVALID;
    }
    return OK(input.data);
  }
};
ZodVoid.create = (params) => {
  return new ZodVoid({
    typeName: ZodFirstPartyTypeKind2.ZodVoid,
    ...processCreateParams(params)
  });
};
var ZodArray2 = class _ZodArray extends ZodType2 {
  _parse(input) {
    const { ctx, status } = this._processInputParams(input);
    const def = this._def;
    if (ctx.parsedType !== ZodParsedType.array) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.array,
        received: ctx.parsedType
      });
      return INVALID;
    }
    if (def.exactLength !== null) {
      const tooBig = ctx.data.length > def.exactLength.value;
      const tooSmall = ctx.data.length < def.exactLength.value;
      if (tooBig || tooSmall) {
        addIssueToContext(ctx, {
          code: tooBig ? ZodIssueCode2.too_big : ZodIssueCode2.too_small,
          minimum: tooSmall ? def.exactLength.value : void 0,
          maximum: tooBig ? def.exactLength.value : void 0,
          type: "array",
          inclusive: true,
          exact: true,
          message: def.exactLength.message
        });
        status.dirty();
      }
    }
    if (def.minLength !== null) {
      if (ctx.data.length < def.minLength.value) {
        addIssueToContext(ctx, {
          code: ZodIssueCode2.too_small,
          minimum: def.minLength.value,
          type: "array",
          inclusive: true,
          exact: false,
          message: def.minLength.message
        });
        status.dirty();
      }
    }
    if (def.maxLength !== null) {
      if (ctx.data.length > def.maxLength.value) {
        addIssueToContext(ctx, {
          code: ZodIssueCode2.too_big,
          maximum: def.maxLength.value,
          type: "array",
          inclusive: true,
          exact: false,
          message: def.maxLength.message
        });
        status.dirty();
      }
    }
    if (ctx.common.async) {
      return Promise.all([...ctx.data].map((item, i) => {
        return def.type._parseAsync(new ParseInputLazyPath(ctx, item, ctx.path, i));
      })).then((result2) => {
        return ParseStatus.mergeArray(status, result2);
      });
    }
    const result = [...ctx.data].map((item, i) => {
      return def.type._parseSync(new ParseInputLazyPath(ctx, item, ctx.path, i));
    });
    return ParseStatus.mergeArray(status, result);
  }
  get element() {
    return this._def.type;
  }
  min(minLength, message) {
    return new _ZodArray({
      ...this._def,
      minLength: { value: minLength, message: errorUtil.toString(message) }
    });
  }
  max(maxLength, message) {
    return new _ZodArray({
      ...this._def,
      maxLength: { value: maxLength, message: errorUtil.toString(message) }
    });
  }
  length(len, message) {
    return new _ZodArray({
      ...this._def,
      exactLength: { value: len, message: errorUtil.toString(message) }
    });
  }
  nonempty(message) {
    return this.min(1, message);
  }
};
ZodArray2.create = (schema, params) => {
  return new ZodArray2({
    type: schema,
    minLength: null,
    maxLength: null,
    exactLength: null,
    typeName: ZodFirstPartyTypeKind2.ZodArray,
    ...processCreateParams(params)
  });
};
function deepPartialify(schema) {
  if (schema instanceof ZodObject2) {
    const newShape = {};
    for (const key in schema.shape) {
      const fieldSchema = schema.shape[key];
      newShape[key] = ZodOptional2.create(deepPartialify(fieldSchema));
    }
    return new ZodObject2({
      ...schema._def,
      shape: () => newShape
    });
  } else if (schema instanceof ZodArray2) {
    return new ZodArray2({
      ...schema._def,
      type: deepPartialify(schema.element)
    });
  } else if (schema instanceof ZodOptional2) {
    return ZodOptional2.create(deepPartialify(schema.unwrap()));
  } else if (schema instanceof ZodNullable2) {
    return ZodNullable2.create(deepPartialify(schema.unwrap()));
  } else if (schema instanceof ZodTuple) {
    return ZodTuple.create(schema.items.map((item) => deepPartialify(item)));
  } else {
    return schema;
  }
}
var ZodObject2 = class _ZodObject extends ZodType2 {
  constructor() {
    super(...arguments);
    this._cached = null;
    this.nonstrict = this.passthrough;
    this.augment = this.extend;
  }
  _getCached() {
    if (this._cached !== null)
      return this._cached;
    const shape = this._def.shape();
    const keys = util.objectKeys(shape);
    this._cached = { shape, keys };
    return this._cached;
  }
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.object) {
      const ctx2 = this._getOrReturnCtx(input);
      addIssueToContext(ctx2, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.object,
        received: ctx2.parsedType
      });
      return INVALID;
    }
    const { status, ctx } = this._processInputParams(input);
    const { shape, keys: shapeKeys } = this._getCached();
    const extraKeys = [];
    if (!(this._def.catchall instanceof ZodNever2 && this._def.unknownKeys === "strip")) {
      for (const key in ctx.data) {
        if (!shapeKeys.includes(key)) {
          extraKeys.push(key);
        }
      }
    }
    const pairs = [];
    for (const key of shapeKeys) {
      const keyValidator = shape[key];
      const value = ctx.data[key];
      pairs.push({
        key: { status: "valid", value: key },
        value: keyValidator._parse(new ParseInputLazyPath(ctx, value, ctx.path, key)),
        alwaysSet: key in ctx.data
      });
    }
    if (this._def.catchall instanceof ZodNever2) {
      const unknownKeys = this._def.unknownKeys;
      if (unknownKeys === "passthrough") {
        for (const key of extraKeys) {
          pairs.push({
            key: { status: "valid", value: key },
            value: { status: "valid", value: ctx.data[key] }
          });
        }
      } else if (unknownKeys === "strict") {
        if (extraKeys.length > 0) {
          addIssueToContext(ctx, {
            code: ZodIssueCode2.unrecognized_keys,
            keys: extraKeys
          });
          status.dirty();
        }
      } else if (unknownKeys === "strip") {
      } else {
        throw new Error(`Internal ZodObject error: invalid unknownKeys value.`);
      }
    } else {
      const catchall = this._def.catchall;
      for (const key of extraKeys) {
        const value = ctx.data[key];
        pairs.push({
          key: { status: "valid", value: key },
          value: catchall._parse(
            new ParseInputLazyPath(ctx, value, ctx.path, key)
            //, ctx.child(key), value, getParsedType(value)
          ),
          alwaysSet: key in ctx.data
        });
      }
    }
    if (ctx.common.async) {
      return Promise.resolve().then(async () => {
        const syncPairs = [];
        for (const pair of pairs) {
          const key = await pair.key;
          const value = await pair.value;
          syncPairs.push({
            key,
            value,
            alwaysSet: pair.alwaysSet
          });
        }
        return syncPairs;
      }).then((syncPairs) => {
        return ParseStatus.mergeObjectSync(status, syncPairs);
      });
    } else {
      return ParseStatus.mergeObjectSync(status, pairs);
    }
  }
  get shape() {
    return this._def.shape();
  }
  strict(message) {
    errorUtil.errToObj;
    return new _ZodObject({
      ...this._def,
      unknownKeys: "strict",
      ...message !== void 0 ? {
        errorMap: (issue2, ctx) => {
          const defaultError = this._def.errorMap?.(issue2, ctx).message ?? ctx.defaultError;
          if (issue2.code === "unrecognized_keys")
            return {
              message: errorUtil.errToObj(message).message ?? defaultError
            };
          return {
            message: defaultError
          };
        }
      } : {}
    });
  }
  strip() {
    return new _ZodObject({
      ...this._def,
      unknownKeys: "strip"
    });
  }
  passthrough() {
    return new _ZodObject({
      ...this._def,
      unknownKeys: "passthrough"
    });
  }
  // const AugmentFactory =
  //   <Def extends ZodObjectDef>(def: Def) =>
  //   <Augmentation extends ZodRawShape>(
  //     augmentation: Augmentation
  //   ): ZodObject<
  //     extendShape<ReturnType<Def["shape"]>, Augmentation>,
  //     Def["unknownKeys"],
  //     Def["catchall"]
  //   > => {
  //     return new ZodObject({
  //       ...def,
  //       shape: () => ({
  //         ...def.shape(),
  //         ...augmentation,
  //       }),
  //     }) as any;
  //   };
  extend(augmentation) {
    return new _ZodObject({
      ...this._def,
      shape: () => ({
        ...this._def.shape(),
        ...augmentation
      })
    });
  }
  /**
   * Prior to zod@1.0.12 there was a bug in the
   * inferred type of merged objects. Please
   * upgrade if you are experiencing issues.
   */
  merge(merging) {
    const merged = new _ZodObject({
      unknownKeys: merging._def.unknownKeys,
      catchall: merging._def.catchall,
      shape: () => ({
        ...this._def.shape(),
        ...merging._def.shape()
      }),
      typeName: ZodFirstPartyTypeKind2.ZodObject
    });
    return merged;
  }
  // merge<
  //   Incoming extends AnyZodObject,
  //   Augmentation extends Incoming["shape"],
  //   NewOutput extends {
  //     [k in keyof Augmentation | keyof Output]: k extends keyof Augmentation
  //       ? Augmentation[k]["_output"]
  //       : k extends keyof Output
  //       ? Output[k]
  //       : never;
  //   },
  //   NewInput extends {
  //     [k in keyof Augmentation | keyof Input]: k extends keyof Augmentation
  //       ? Augmentation[k]["_input"]
  //       : k extends keyof Input
  //       ? Input[k]
  //       : never;
  //   }
  // >(
  //   merging: Incoming
  // ): ZodObject<
  //   extendShape<T, ReturnType<Incoming["_def"]["shape"]>>,
  //   Incoming["_def"]["unknownKeys"],
  //   Incoming["_def"]["catchall"],
  //   NewOutput,
  //   NewInput
  // > {
  //   const merged: any = new ZodObject({
  //     unknownKeys: merging._def.unknownKeys,
  //     catchall: merging._def.catchall,
  //     shape: () =>
  //       objectUtil.mergeShapes(this._def.shape(), merging._def.shape()),
  //     typeName: ZodFirstPartyTypeKind.ZodObject,
  //   }) as any;
  //   return merged;
  // }
  setKey(key, schema) {
    return this.augment({ [key]: schema });
  }
  // merge<Incoming extends AnyZodObject>(
  //   merging: Incoming
  // ): //ZodObject<T & Incoming["_shape"], UnknownKeys, Catchall> = (merging) => {
  // ZodObject<
  //   extendShape<T, ReturnType<Incoming["_def"]["shape"]>>,
  //   Incoming["_def"]["unknownKeys"],
  //   Incoming["_def"]["catchall"]
  // > {
  //   // const mergedShape = objectUtil.mergeShapes(
  //   //   this._def.shape(),
  //   //   merging._def.shape()
  //   // );
  //   const merged: any = new ZodObject({
  //     unknownKeys: merging._def.unknownKeys,
  //     catchall: merging._def.catchall,
  //     shape: () =>
  //       objectUtil.mergeShapes(this._def.shape(), merging._def.shape()),
  //     typeName: ZodFirstPartyTypeKind.ZodObject,
  //   }) as any;
  //   return merged;
  // }
  catchall(index) {
    return new _ZodObject({
      ...this._def,
      catchall: index
    });
  }
  pick(mask) {
    const shape = {};
    for (const key of util.objectKeys(mask)) {
      if (mask[key] && this.shape[key]) {
        shape[key] = this.shape[key];
      }
    }
    return new _ZodObject({
      ...this._def,
      shape: () => shape
    });
  }
  omit(mask) {
    const shape = {};
    for (const key of util.objectKeys(this.shape)) {
      if (!mask[key]) {
        shape[key] = this.shape[key];
      }
    }
    return new _ZodObject({
      ...this._def,
      shape: () => shape
    });
  }
  /**
   * @deprecated
   */
  deepPartial() {
    return deepPartialify(this);
  }
  partial(mask) {
    const newShape = {};
    for (const key of util.objectKeys(this.shape)) {
      const fieldSchema = this.shape[key];
      if (mask && !mask[key]) {
        newShape[key] = fieldSchema;
      } else {
        newShape[key] = fieldSchema.optional();
      }
    }
    return new _ZodObject({
      ...this._def,
      shape: () => newShape
    });
  }
  required(mask) {
    const newShape = {};
    for (const key of util.objectKeys(this.shape)) {
      if (mask && !mask[key]) {
        newShape[key] = this.shape[key];
      } else {
        const fieldSchema = this.shape[key];
        let newField = fieldSchema;
        while (newField instanceof ZodOptional2) {
          newField = newField._def.innerType;
        }
        newShape[key] = newField;
      }
    }
    return new _ZodObject({
      ...this._def,
      shape: () => newShape
    });
  }
  keyof() {
    return createZodEnum(util.objectKeys(this.shape));
  }
};
ZodObject2.create = (shape, params) => {
  return new ZodObject2({
    shape: () => shape,
    unknownKeys: "strip",
    catchall: ZodNever2.create(),
    typeName: ZodFirstPartyTypeKind2.ZodObject,
    ...processCreateParams(params)
  });
};
ZodObject2.strictCreate = (shape, params) => {
  return new ZodObject2({
    shape: () => shape,
    unknownKeys: "strict",
    catchall: ZodNever2.create(),
    typeName: ZodFirstPartyTypeKind2.ZodObject,
    ...processCreateParams(params)
  });
};
ZodObject2.lazycreate = (shape, params) => {
  return new ZodObject2({
    shape,
    unknownKeys: "strip",
    catchall: ZodNever2.create(),
    typeName: ZodFirstPartyTypeKind2.ZodObject,
    ...processCreateParams(params)
  });
};
var ZodUnion2 = class extends ZodType2 {
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    const options = this._def.options;
    function handleResults(results) {
      for (const result of results) {
        if (result.result.status === "valid") {
          return result.result;
        }
      }
      for (const result of results) {
        if (result.result.status === "dirty") {
          ctx.common.issues.push(...result.ctx.common.issues);
          return result.result;
        }
      }
      const unionErrors = results.map((result) => new ZodError2(result.ctx.common.issues));
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_union,
        unionErrors
      });
      return INVALID;
    }
    if (ctx.common.async) {
      return Promise.all(options.map(async (option) => {
        const childCtx = {
          ...ctx,
          common: {
            ...ctx.common,
            issues: []
          },
          parent: null
        };
        return {
          result: await option._parseAsync({
            data: ctx.data,
            path: ctx.path,
            parent: childCtx
          }),
          ctx: childCtx
        };
      })).then(handleResults);
    } else {
      let dirty = void 0;
      const issues = [];
      for (const option of options) {
        const childCtx = {
          ...ctx,
          common: {
            ...ctx.common,
            issues: []
          },
          parent: null
        };
        const result = option._parseSync({
          data: ctx.data,
          path: ctx.path,
          parent: childCtx
        });
        if (result.status === "valid") {
          return result;
        } else if (result.status === "dirty" && !dirty) {
          dirty = { result, ctx: childCtx };
        }
        if (childCtx.common.issues.length) {
          issues.push(childCtx.common.issues);
        }
      }
      if (dirty) {
        ctx.common.issues.push(...dirty.ctx.common.issues);
        return dirty.result;
      }
      const unionErrors = issues.map((issues2) => new ZodError2(issues2));
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_union,
        unionErrors
      });
      return INVALID;
    }
  }
  get options() {
    return this._def.options;
  }
};
ZodUnion2.create = (types, params) => {
  return new ZodUnion2({
    options: types,
    typeName: ZodFirstPartyTypeKind2.ZodUnion,
    ...processCreateParams(params)
  });
};
var getDiscriminator = (type) => {
  if (type instanceof ZodLazy) {
    return getDiscriminator(type.schema);
  } else if (type instanceof ZodEffects) {
    return getDiscriminator(type.innerType());
  } else if (type instanceof ZodLiteral2) {
    return [type.value];
  } else if (type instanceof ZodEnum2) {
    return type.options;
  } else if (type instanceof ZodNativeEnum) {
    return util.objectValues(type.enum);
  } else if (type instanceof ZodDefault2) {
    return getDiscriminator(type._def.innerType);
  } else if (type instanceof ZodUndefined) {
    return [void 0];
  } else if (type instanceof ZodNull) {
    return [null];
  } else if (type instanceof ZodOptional2) {
    return [void 0, ...getDiscriminator(type.unwrap())];
  } else if (type instanceof ZodNullable2) {
    return [null, ...getDiscriminator(type.unwrap())];
  } else if (type instanceof ZodBranded) {
    return getDiscriminator(type.unwrap());
  } else if (type instanceof ZodReadonly2) {
    return getDiscriminator(type.unwrap());
  } else if (type instanceof ZodCatch2) {
    return getDiscriminator(type._def.innerType);
  } else {
    return [];
  }
};
var ZodDiscriminatedUnion2 = class _ZodDiscriminatedUnion extends ZodType2 {
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    if (ctx.parsedType !== ZodParsedType.object) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.object,
        received: ctx.parsedType
      });
      return INVALID;
    }
    const discriminator = this.discriminator;
    const discriminatorValue = ctx.data[discriminator];
    const option = this.optionsMap.get(discriminatorValue);
    if (!option) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_union_discriminator,
        options: Array.from(this.optionsMap.keys()),
        path: [discriminator]
      });
      return INVALID;
    }
    if (ctx.common.async) {
      return option._parseAsync({
        data: ctx.data,
        path: ctx.path,
        parent: ctx
      });
    } else {
      return option._parseSync({
        data: ctx.data,
        path: ctx.path,
        parent: ctx
      });
    }
  }
  get discriminator() {
    return this._def.discriminator;
  }
  get options() {
    return this._def.options;
  }
  get optionsMap() {
    return this._def.optionsMap;
  }
  /**
   * The constructor of the discriminated union schema. Its behaviour is very similar to that of the normal z.union() constructor.
   * However, it only allows a union of objects, all of which need to share a discriminator property. This property must
   * have a different value for each object in the union.
   * @param discriminator the name of the discriminator property
   * @param types an array of object schemas
   * @param params
   */
  static create(discriminator, options, params) {
    const optionsMap = /* @__PURE__ */ new Map();
    for (const type of options) {
      const discriminatorValues = getDiscriminator(type.shape[discriminator]);
      if (!discriminatorValues.length) {
        throw new Error(`A discriminator value for key \`${discriminator}\` could not be extracted from all schema options`);
      }
      for (const value of discriminatorValues) {
        if (optionsMap.has(value)) {
          throw new Error(`Discriminator property ${String(discriminator)} has duplicate value ${String(value)}`);
        }
        optionsMap.set(value, type);
      }
    }
    return new _ZodDiscriminatedUnion({
      typeName: ZodFirstPartyTypeKind2.ZodDiscriminatedUnion,
      discriminator,
      options,
      optionsMap,
      ...processCreateParams(params)
    });
  }
};
function mergeValues2(a, b) {
  const aType = getParsedType2(a);
  const bType = getParsedType2(b);
  if (a === b) {
    return { valid: true, data: a };
  } else if (aType === ZodParsedType.object && bType === ZodParsedType.object) {
    const bKeys = util.objectKeys(b);
    const sharedKeys = util.objectKeys(a).filter((key) => bKeys.indexOf(key) !== -1);
    const newObj = { ...a, ...b };
    for (const key of sharedKeys) {
      const sharedValue = mergeValues2(a[key], b[key]);
      if (!sharedValue.valid) {
        return { valid: false };
      }
      newObj[key] = sharedValue.data;
    }
    return { valid: true, data: newObj };
  } else if (aType === ZodParsedType.array && bType === ZodParsedType.array) {
    if (a.length !== b.length) {
      return { valid: false };
    }
    const newArray = [];
    for (let index = 0; index < a.length; index++) {
      const itemA = a[index];
      const itemB = b[index];
      const sharedValue = mergeValues2(itemA, itemB);
      if (!sharedValue.valid) {
        return { valid: false };
      }
      newArray.push(sharedValue.data);
    }
    return { valid: true, data: newArray };
  } else if (aType === ZodParsedType.date && bType === ZodParsedType.date && +a === +b) {
    return { valid: true, data: a };
  } else {
    return { valid: false };
  }
}
var ZodIntersection2 = class extends ZodType2 {
  _parse(input) {
    const { status, ctx } = this._processInputParams(input);
    const handleParsed = (parsedLeft, parsedRight) => {
      if (isAborted(parsedLeft) || isAborted(parsedRight)) {
        return INVALID;
      }
      const merged = mergeValues2(parsedLeft.value, parsedRight.value);
      if (!merged.valid) {
        addIssueToContext(ctx, {
          code: ZodIssueCode2.invalid_intersection_types
        });
        return INVALID;
      }
      if (isDirty(parsedLeft) || isDirty(parsedRight)) {
        status.dirty();
      }
      return { status: status.value, value: merged.data };
    };
    if (ctx.common.async) {
      return Promise.all([
        this._def.left._parseAsync({
          data: ctx.data,
          path: ctx.path,
          parent: ctx
        }),
        this._def.right._parseAsync({
          data: ctx.data,
          path: ctx.path,
          parent: ctx
        })
      ]).then(([left, right]) => handleParsed(left, right));
    } else {
      return handleParsed(this._def.left._parseSync({
        data: ctx.data,
        path: ctx.path,
        parent: ctx
      }), this._def.right._parseSync({
        data: ctx.data,
        path: ctx.path,
        parent: ctx
      }));
    }
  }
};
ZodIntersection2.create = (left, right, params) => {
  return new ZodIntersection2({
    left,
    right,
    typeName: ZodFirstPartyTypeKind2.ZodIntersection,
    ...processCreateParams(params)
  });
};
var ZodTuple = class _ZodTuple extends ZodType2 {
  _parse(input) {
    const { status, ctx } = this._processInputParams(input);
    if (ctx.parsedType !== ZodParsedType.array) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.array,
        received: ctx.parsedType
      });
      return INVALID;
    }
    if (ctx.data.length < this._def.items.length) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.too_small,
        minimum: this._def.items.length,
        inclusive: true,
        exact: false,
        type: "array"
      });
      return INVALID;
    }
    const rest = this._def.rest;
    if (!rest && ctx.data.length > this._def.items.length) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.too_big,
        maximum: this._def.items.length,
        inclusive: true,
        exact: false,
        type: "array"
      });
      status.dirty();
    }
    const items = [...ctx.data].map((item, itemIndex) => {
      const schema = this._def.items[itemIndex] || this._def.rest;
      if (!schema)
        return null;
      return schema._parse(new ParseInputLazyPath(ctx, item, ctx.path, itemIndex));
    }).filter((x) => !!x);
    if (ctx.common.async) {
      return Promise.all(items).then((results) => {
        return ParseStatus.mergeArray(status, results);
      });
    } else {
      return ParseStatus.mergeArray(status, items);
    }
  }
  get items() {
    return this._def.items;
  }
  rest(rest) {
    return new _ZodTuple({
      ...this._def,
      rest
    });
  }
};
ZodTuple.create = (schemas, params) => {
  if (!Array.isArray(schemas)) {
    throw new Error("You must pass an array of schemas to z.tuple([ ... ])");
  }
  return new ZodTuple({
    items: schemas,
    typeName: ZodFirstPartyTypeKind2.ZodTuple,
    rest: null,
    ...processCreateParams(params)
  });
};
var ZodRecord2 = class _ZodRecord extends ZodType2 {
  get keySchema() {
    return this._def.keyType;
  }
  get valueSchema() {
    return this._def.valueType;
  }
  _parse(input) {
    const { status, ctx } = this._processInputParams(input);
    if (ctx.parsedType !== ZodParsedType.object) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.object,
        received: ctx.parsedType
      });
      return INVALID;
    }
    const pairs = [];
    const keyType = this._def.keyType;
    const valueType = this._def.valueType;
    for (const key in ctx.data) {
      pairs.push({
        key: keyType._parse(new ParseInputLazyPath(ctx, key, ctx.path, key)),
        value: valueType._parse(new ParseInputLazyPath(ctx, ctx.data[key], ctx.path, key)),
        alwaysSet: key in ctx.data
      });
    }
    if (ctx.common.async) {
      return ParseStatus.mergeObjectAsync(status, pairs);
    } else {
      return ParseStatus.mergeObjectSync(status, pairs);
    }
  }
  get element() {
    return this._def.valueType;
  }
  static create(first, second, third) {
    if (second instanceof ZodType2) {
      return new _ZodRecord({
        keyType: first,
        valueType: second,
        typeName: ZodFirstPartyTypeKind2.ZodRecord,
        ...processCreateParams(third)
      });
    }
    return new _ZodRecord({
      keyType: ZodString2.create(),
      valueType: first,
      typeName: ZodFirstPartyTypeKind2.ZodRecord,
      ...processCreateParams(second)
    });
  }
};
var ZodMap = class extends ZodType2 {
  get keySchema() {
    return this._def.keyType;
  }
  get valueSchema() {
    return this._def.valueType;
  }
  _parse(input) {
    const { status, ctx } = this._processInputParams(input);
    if (ctx.parsedType !== ZodParsedType.map) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.map,
        received: ctx.parsedType
      });
      return INVALID;
    }
    const keyType = this._def.keyType;
    const valueType = this._def.valueType;
    const pairs = [...ctx.data.entries()].map(([key, value], index) => {
      return {
        key: keyType._parse(new ParseInputLazyPath(ctx, key, ctx.path, [index, "key"])),
        value: valueType._parse(new ParseInputLazyPath(ctx, value, ctx.path, [index, "value"]))
      };
    });
    if (ctx.common.async) {
      const finalMap = /* @__PURE__ */ new Map();
      return Promise.resolve().then(async () => {
        for (const pair of pairs) {
          const key = await pair.key;
          const value = await pair.value;
          if (key.status === "aborted" || value.status === "aborted") {
            return INVALID;
          }
          if (key.status === "dirty" || value.status === "dirty") {
            status.dirty();
          }
          finalMap.set(key.value, value.value);
        }
        return { status: status.value, value: finalMap };
      });
    } else {
      const finalMap = /* @__PURE__ */ new Map();
      for (const pair of pairs) {
        const key = pair.key;
        const value = pair.value;
        if (key.status === "aborted" || value.status === "aborted") {
          return INVALID;
        }
        if (key.status === "dirty" || value.status === "dirty") {
          status.dirty();
        }
        finalMap.set(key.value, value.value);
      }
      return { status: status.value, value: finalMap };
    }
  }
};
ZodMap.create = (keyType, valueType, params) => {
  return new ZodMap({
    valueType,
    keyType,
    typeName: ZodFirstPartyTypeKind2.ZodMap,
    ...processCreateParams(params)
  });
};
var ZodSet = class _ZodSet extends ZodType2 {
  _parse(input) {
    const { status, ctx } = this._processInputParams(input);
    if (ctx.parsedType !== ZodParsedType.set) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.set,
        received: ctx.parsedType
      });
      return INVALID;
    }
    const def = this._def;
    if (def.minSize !== null) {
      if (ctx.data.size < def.minSize.value) {
        addIssueToContext(ctx, {
          code: ZodIssueCode2.too_small,
          minimum: def.minSize.value,
          type: "set",
          inclusive: true,
          exact: false,
          message: def.minSize.message
        });
        status.dirty();
      }
    }
    if (def.maxSize !== null) {
      if (ctx.data.size > def.maxSize.value) {
        addIssueToContext(ctx, {
          code: ZodIssueCode2.too_big,
          maximum: def.maxSize.value,
          type: "set",
          inclusive: true,
          exact: false,
          message: def.maxSize.message
        });
        status.dirty();
      }
    }
    const valueType = this._def.valueType;
    function finalizeSet(elements2) {
      const parsedSet = /* @__PURE__ */ new Set();
      for (const element of elements2) {
        if (element.status === "aborted")
          return INVALID;
        if (element.status === "dirty")
          status.dirty();
        parsedSet.add(element.value);
      }
      return { status: status.value, value: parsedSet };
    }
    const elements = [...ctx.data.values()].map((item, i) => valueType._parse(new ParseInputLazyPath(ctx, item, ctx.path, i)));
    if (ctx.common.async) {
      return Promise.all(elements).then((elements2) => finalizeSet(elements2));
    } else {
      return finalizeSet(elements);
    }
  }
  min(minSize, message) {
    return new _ZodSet({
      ...this._def,
      minSize: { value: minSize, message: errorUtil.toString(message) }
    });
  }
  max(maxSize, message) {
    return new _ZodSet({
      ...this._def,
      maxSize: { value: maxSize, message: errorUtil.toString(message) }
    });
  }
  size(size, message) {
    return this.min(size, message).max(size, message);
  }
  nonempty(message) {
    return this.min(1, message);
  }
};
ZodSet.create = (valueType, params) => {
  return new ZodSet({
    valueType,
    minSize: null,
    maxSize: null,
    typeName: ZodFirstPartyTypeKind2.ZodSet,
    ...processCreateParams(params)
  });
};
var ZodFunction = class _ZodFunction extends ZodType2 {
  constructor() {
    super(...arguments);
    this.validate = this.implement;
  }
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    if (ctx.parsedType !== ZodParsedType.function) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.function,
        received: ctx.parsedType
      });
      return INVALID;
    }
    function makeArgsIssue(args, error2) {
      return makeIssue({
        data: args,
        path: ctx.path,
        errorMaps: [ctx.common.contextualErrorMap, ctx.schemaErrorMap, getErrorMap(), en_default2].filter((x) => !!x),
        issueData: {
          code: ZodIssueCode2.invalid_arguments,
          argumentsError: error2
        }
      });
    }
    function makeReturnsIssue(returns, error2) {
      return makeIssue({
        data: returns,
        path: ctx.path,
        errorMaps: [ctx.common.contextualErrorMap, ctx.schemaErrorMap, getErrorMap(), en_default2].filter((x) => !!x),
        issueData: {
          code: ZodIssueCode2.invalid_return_type,
          returnTypeError: error2
        }
      });
    }
    const params = { errorMap: ctx.common.contextualErrorMap };
    const fn = ctx.data;
    if (this._def.returns instanceof ZodPromise) {
      const me = this;
      return OK(async function(...args) {
        const error2 = new ZodError2([]);
        const parsedArgs = await me._def.args.parseAsync(args, params).catch((e) => {
          error2.addIssue(makeArgsIssue(args, e));
          throw error2;
        });
        const result = await Reflect.apply(fn, this, parsedArgs);
        const parsedReturns = await me._def.returns._def.type.parseAsync(result, params).catch((e) => {
          error2.addIssue(makeReturnsIssue(result, e));
          throw error2;
        });
        return parsedReturns;
      });
    } else {
      const me = this;
      return OK(function(...args) {
        const parsedArgs = me._def.args.safeParse(args, params);
        if (!parsedArgs.success) {
          throw new ZodError2([makeArgsIssue(args, parsedArgs.error)]);
        }
        const result = Reflect.apply(fn, this, parsedArgs.data);
        const parsedReturns = me._def.returns.safeParse(result, params);
        if (!parsedReturns.success) {
          throw new ZodError2([makeReturnsIssue(result, parsedReturns.error)]);
        }
        return parsedReturns.data;
      });
    }
  }
  parameters() {
    return this._def.args;
  }
  returnType() {
    return this._def.returns;
  }
  args(...items) {
    return new _ZodFunction({
      ...this._def,
      args: ZodTuple.create(items).rest(ZodUnknown2.create())
    });
  }
  returns(returnType) {
    return new _ZodFunction({
      ...this._def,
      returns: returnType
    });
  }
  implement(func) {
    const validatedFunc = this.parse(func);
    return validatedFunc;
  }
  strictImplement(func) {
    const validatedFunc = this.parse(func);
    return validatedFunc;
  }
  static create(args, returns, params) {
    return new _ZodFunction({
      args: args ? args : ZodTuple.create([]).rest(ZodUnknown2.create()),
      returns: returns || ZodUnknown2.create(),
      typeName: ZodFirstPartyTypeKind2.ZodFunction,
      ...processCreateParams(params)
    });
  }
};
var ZodLazy = class extends ZodType2 {
  get schema() {
    return this._def.getter();
  }
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    const lazySchema = this._def.getter();
    return lazySchema._parse({ data: ctx.data, path: ctx.path, parent: ctx });
  }
};
ZodLazy.create = (getter, params) => {
  return new ZodLazy({
    getter,
    typeName: ZodFirstPartyTypeKind2.ZodLazy,
    ...processCreateParams(params)
  });
};
var ZodLiteral2 = class extends ZodType2 {
  _parse(input) {
    if (input.data !== this._def.value) {
      const ctx = this._getOrReturnCtx(input);
      addIssueToContext(ctx, {
        received: ctx.data,
        code: ZodIssueCode2.invalid_literal,
        expected: this._def.value
      });
      return INVALID;
    }
    return { status: "valid", value: input.data };
  }
  get value() {
    return this._def.value;
  }
};
ZodLiteral2.create = (value, params) => {
  return new ZodLiteral2({
    value,
    typeName: ZodFirstPartyTypeKind2.ZodLiteral,
    ...processCreateParams(params)
  });
};
function createZodEnum(values, params) {
  return new ZodEnum2({
    values,
    typeName: ZodFirstPartyTypeKind2.ZodEnum,
    ...processCreateParams(params)
  });
}
var ZodEnum2 = class _ZodEnum extends ZodType2 {
  _parse(input) {
    if (typeof input.data !== "string") {
      const ctx = this._getOrReturnCtx(input);
      const expectedValues = this._def.values;
      addIssueToContext(ctx, {
        expected: util.joinValues(expectedValues),
        received: ctx.parsedType,
        code: ZodIssueCode2.invalid_type
      });
      return INVALID;
    }
    if (!this._cache) {
      this._cache = new Set(this._def.values);
    }
    if (!this._cache.has(input.data)) {
      const ctx = this._getOrReturnCtx(input);
      const expectedValues = this._def.values;
      addIssueToContext(ctx, {
        received: ctx.data,
        code: ZodIssueCode2.invalid_enum_value,
        options: expectedValues
      });
      return INVALID;
    }
    return OK(input.data);
  }
  get options() {
    return this._def.values;
  }
  get enum() {
    const enumValues = {};
    for (const val of this._def.values) {
      enumValues[val] = val;
    }
    return enumValues;
  }
  get Values() {
    const enumValues = {};
    for (const val of this._def.values) {
      enumValues[val] = val;
    }
    return enumValues;
  }
  get Enum() {
    const enumValues = {};
    for (const val of this._def.values) {
      enumValues[val] = val;
    }
    return enumValues;
  }
  extract(values, newDef = this._def) {
    return _ZodEnum.create(values, {
      ...this._def,
      ...newDef
    });
  }
  exclude(values, newDef = this._def) {
    return _ZodEnum.create(this.options.filter((opt) => !values.includes(opt)), {
      ...this._def,
      ...newDef
    });
  }
};
ZodEnum2.create = createZodEnum;
var ZodNativeEnum = class extends ZodType2 {
  _parse(input) {
    const nativeEnumValues = util.getValidEnumValues(this._def.values);
    const ctx = this._getOrReturnCtx(input);
    if (ctx.parsedType !== ZodParsedType.string && ctx.parsedType !== ZodParsedType.number) {
      const expectedValues = util.objectValues(nativeEnumValues);
      addIssueToContext(ctx, {
        expected: util.joinValues(expectedValues),
        received: ctx.parsedType,
        code: ZodIssueCode2.invalid_type
      });
      return INVALID;
    }
    if (!this._cache) {
      this._cache = new Set(util.getValidEnumValues(this._def.values));
    }
    if (!this._cache.has(input.data)) {
      const expectedValues = util.objectValues(nativeEnumValues);
      addIssueToContext(ctx, {
        received: ctx.data,
        code: ZodIssueCode2.invalid_enum_value,
        options: expectedValues
      });
      return INVALID;
    }
    return OK(input.data);
  }
  get enum() {
    return this._def.values;
  }
};
ZodNativeEnum.create = (values, params) => {
  return new ZodNativeEnum({
    values,
    typeName: ZodFirstPartyTypeKind2.ZodNativeEnum,
    ...processCreateParams(params)
  });
};
var ZodPromise = class extends ZodType2 {
  unwrap() {
    return this._def.type;
  }
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    if (ctx.parsedType !== ZodParsedType.promise && ctx.common.async === false) {
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.promise,
        received: ctx.parsedType
      });
      return INVALID;
    }
    const promisified = ctx.parsedType === ZodParsedType.promise ? ctx.data : Promise.resolve(ctx.data);
    return OK(promisified.then((data) => {
      return this._def.type.parseAsync(data, {
        path: ctx.path,
        errorMap: ctx.common.contextualErrorMap
      });
    }));
  }
};
ZodPromise.create = (schema, params) => {
  return new ZodPromise({
    type: schema,
    typeName: ZodFirstPartyTypeKind2.ZodPromise,
    ...processCreateParams(params)
  });
};
var ZodEffects = class extends ZodType2 {
  innerType() {
    return this._def.schema;
  }
  sourceType() {
    return this._def.schema._def.typeName === ZodFirstPartyTypeKind2.ZodEffects ? this._def.schema.sourceType() : this._def.schema;
  }
  _parse(input) {
    const { status, ctx } = this._processInputParams(input);
    const effect = this._def.effect || null;
    const checkCtx = {
      addIssue: (arg) => {
        addIssueToContext(ctx, arg);
        if (arg.fatal) {
          status.abort();
        } else {
          status.dirty();
        }
      },
      get path() {
        return ctx.path;
      }
    };
    checkCtx.addIssue = checkCtx.addIssue.bind(checkCtx);
    if (effect.type === "preprocess") {
      const processed = effect.transform(ctx.data, checkCtx);
      if (ctx.common.async) {
        return Promise.resolve(processed).then(async (processed2) => {
          if (status.value === "aborted")
            return INVALID;
          const result = await this._def.schema._parseAsync({
            data: processed2,
            path: ctx.path,
            parent: ctx
          });
          if (result.status === "aborted")
            return INVALID;
          if (result.status === "dirty")
            return DIRTY(result.value);
          if (status.value === "dirty")
            return DIRTY(result.value);
          return result;
        });
      } else {
        if (status.value === "aborted")
          return INVALID;
        const result = this._def.schema._parseSync({
          data: processed,
          path: ctx.path,
          parent: ctx
        });
        if (result.status === "aborted")
          return INVALID;
        if (result.status === "dirty")
          return DIRTY(result.value);
        if (status.value === "dirty")
          return DIRTY(result.value);
        return result;
      }
    }
    if (effect.type === "refinement") {
      const executeRefinement = (acc) => {
        const result = effect.refinement(acc, checkCtx);
        if (ctx.common.async) {
          return Promise.resolve(result);
        }
        if (result instanceof Promise) {
          throw new Error("Async refinement encountered during synchronous parse operation. Use .parseAsync instead.");
        }
        return acc;
      };
      if (ctx.common.async === false) {
        const inner = this._def.schema._parseSync({
          data: ctx.data,
          path: ctx.path,
          parent: ctx
        });
        if (inner.status === "aborted")
          return INVALID;
        if (inner.status === "dirty")
          status.dirty();
        executeRefinement(inner.value);
        return { status: status.value, value: inner.value };
      } else {
        return this._def.schema._parseAsync({ data: ctx.data, path: ctx.path, parent: ctx }).then((inner) => {
          if (inner.status === "aborted")
            return INVALID;
          if (inner.status === "dirty")
            status.dirty();
          return executeRefinement(inner.value).then(() => {
            return { status: status.value, value: inner.value };
          });
        });
      }
    }
    if (effect.type === "transform") {
      if (ctx.common.async === false) {
        const base = this._def.schema._parseSync({
          data: ctx.data,
          path: ctx.path,
          parent: ctx
        });
        if (!isValid(base))
          return INVALID;
        const result = effect.transform(base.value, checkCtx);
        if (result instanceof Promise) {
          throw new Error(`Asynchronous transform encountered during synchronous parse operation. Use .parseAsync instead.`);
        }
        return { status: status.value, value: result };
      } else {
        return this._def.schema._parseAsync({ data: ctx.data, path: ctx.path, parent: ctx }).then((base) => {
          if (!isValid(base))
            return INVALID;
          return Promise.resolve(effect.transform(base.value, checkCtx)).then((result) => ({
            status: status.value,
            value: result
          }));
        });
      }
    }
    util.assertNever(effect);
  }
};
ZodEffects.create = (schema, effect, params) => {
  return new ZodEffects({
    schema,
    typeName: ZodFirstPartyTypeKind2.ZodEffects,
    effect,
    ...processCreateParams(params)
  });
};
ZodEffects.createWithPreprocess = (preprocess2, schema, params) => {
  return new ZodEffects({
    schema,
    effect: { type: "preprocess", transform: preprocess2 },
    typeName: ZodFirstPartyTypeKind2.ZodEffects,
    ...processCreateParams(params)
  });
};
var ZodOptional2 = class extends ZodType2 {
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 === ZodParsedType.undefined) {
      return OK(void 0);
    }
    return this._def.innerType._parse(input);
  }
  unwrap() {
    return this._def.innerType;
  }
};
ZodOptional2.create = (type, params) => {
  return new ZodOptional2({
    innerType: type,
    typeName: ZodFirstPartyTypeKind2.ZodOptional,
    ...processCreateParams(params)
  });
};
var ZodNullable2 = class extends ZodType2 {
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 === ZodParsedType.null) {
      return OK(null);
    }
    return this._def.innerType._parse(input);
  }
  unwrap() {
    return this._def.innerType;
  }
};
ZodNullable2.create = (type, params) => {
  return new ZodNullable2({
    innerType: type,
    typeName: ZodFirstPartyTypeKind2.ZodNullable,
    ...processCreateParams(params)
  });
};
var ZodDefault2 = class extends ZodType2 {
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    let data = ctx.data;
    if (ctx.parsedType === ZodParsedType.undefined) {
      data = this._def.defaultValue();
    }
    return this._def.innerType._parse({
      data,
      path: ctx.path,
      parent: ctx
    });
  }
  removeDefault() {
    return this._def.innerType;
  }
};
ZodDefault2.create = (type, params) => {
  return new ZodDefault2({
    innerType: type,
    typeName: ZodFirstPartyTypeKind2.ZodDefault,
    defaultValue: typeof params.default === "function" ? params.default : () => params.default,
    ...processCreateParams(params)
  });
};
var ZodCatch2 = class extends ZodType2 {
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    const newCtx = {
      ...ctx,
      common: {
        ...ctx.common,
        issues: []
      }
    };
    const result = this._def.innerType._parse({
      data: newCtx.data,
      path: newCtx.path,
      parent: {
        ...newCtx
      }
    });
    if (isAsync(result)) {
      return result.then((result2) => {
        return {
          status: "valid",
          value: result2.status === "valid" ? result2.value : this._def.catchValue({
            get error() {
              return new ZodError2(newCtx.common.issues);
            },
            input: newCtx.data
          })
        };
      });
    } else {
      return {
        status: "valid",
        value: result.status === "valid" ? result.value : this._def.catchValue({
          get error() {
            return new ZodError2(newCtx.common.issues);
          },
          input: newCtx.data
        })
      };
    }
  }
  removeCatch() {
    return this._def.innerType;
  }
};
ZodCatch2.create = (type, params) => {
  return new ZodCatch2({
    innerType: type,
    typeName: ZodFirstPartyTypeKind2.ZodCatch,
    catchValue: typeof params.catch === "function" ? params.catch : () => params.catch,
    ...processCreateParams(params)
  });
};
var ZodNaN = class extends ZodType2 {
  _parse(input) {
    const parsedType2 = this._getType(input);
    if (parsedType2 !== ZodParsedType.nan) {
      const ctx = this._getOrReturnCtx(input);
      addIssueToContext(ctx, {
        code: ZodIssueCode2.invalid_type,
        expected: ZodParsedType.nan,
        received: ctx.parsedType
      });
      return INVALID;
    }
    return { status: "valid", value: input.data };
  }
};
ZodNaN.create = (params) => {
  return new ZodNaN({
    typeName: ZodFirstPartyTypeKind2.ZodNaN,
    ...processCreateParams(params)
  });
};
var BRAND = Symbol("zod_brand");
var ZodBranded = class extends ZodType2 {
  _parse(input) {
    const { ctx } = this._processInputParams(input);
    const data = ctx.data;
    return this._def.type._parse({
      data,
      path: ctx.path,
      parent: ctx
    });
  }
  unwrap() {
    return this._def.type;
  }
};
var ZodPipeline = class _ZodPipeline extends ZodType2 {
  _parse(input) {
    const { status, ctx } = this._processInputParams(input);
    if (ctx.common.async) {
      const handleAsync = async () => {
        const inResult = await this._def.in._parseAsync({
          data: ctx.data,
          path: ctx.path,
          parent: ctx
        });
        if (inResult.status === "aborted")
          return INVALID;
        if (inResult.status === "dirty") {
          status.dirty();
          return DIRTY(inResult.value);
        } else {
          return this._def.out._parseAsync({
            data: inResult.value,
            path: ctx.path,
            parent: ctx
          });
        }
      };
      return handleAsync();
    } else {
      const inResult = this._def.in._parseSync({
        data: ctx.data,
        path: ctx.path,
        parent: ctx
      });
      if (inResult.status === "aborted")
        return INVALID;
      if (inResult.status === "dirty") {
        status.dirty();
        return {
          status: "dirty",
          value: inResult.value
        };
      } else {
        return this._def.out._parseSync({
          data: inResult.value,
          path: ctx.path,
          parent: ctx
        });
      }
    }
  }
  static create(a, b) {
    return new _ZodPipeline({
      in: a,
      out: b,
      typeName: ZodFirstPartyTypeKind2.ZodPipeline
    });
  }
};
var ZodReadonly2 = class extends ZodType2 {
  _parse(input) {
    const result = this._def.innerType._parse(input);
    const freeze = (data) => {
      if (isValid(data)) {
        data.value = Object.freeze(data.value);
      }
      return data;
    };
    return isAsync(result) ? result.then((data) => freeze(data)) : freeze(result);
  }
  unwrap() {
    return this._def.innerType;
  }
};
ZodReadonly2.create = (type, params) => {
  return new ZodReadonly2({
    innerType: type,
    typeName: ZodFirstPartyTypeKind2.ZodReadonly,
    ...processCreateParams(params)
  });
};
var late = {
  object: ZodObject2.lazycreate
};
var ZodFirstPartyTypeKind2;
(function(ZodFirstPartyTypeKind3) {
  ZodFirstPartyTypeKind3["ZodString"] = "ZodString";
  ZodFirstPartyTypeKind3["ZodNumber"] = "ZodNumber";
  ZodFirstPartyTypeKind3["ZodNaN"] = "ZodNaN";
  ZodFirstPartyTypeKind3["ZodBigInt"] = "ZodBigInt";
  ZodFirstPartyTypeKind3["ZodBoolean"] = "ZodBoolean";
  ZodFirstPartyTypeKind3["ZodDate"] = "ZodDate";
  ZodFirstPartyTypeKind3["ZodSymbol"] = "ZodSymbol";
  ZodFirstPartyTypeKind3["ZodUndefined"] = "ZodUndefined";
  ZodFirstPartyTypeKind3["ZodNull"] = "ZodNull";
  ZodFirstPartyTypeKind3["ZodAny"] = "ZodAny";
  ZodFirstPartyTypeKind3["ZodUnknown"] = "ZodUnknown";
  ZodFirstPartyTypeKind3["ZodNever"] = "ZodNever";
  ZodFirstPartyTypeKind3["ZodVoid"] = "ZodVoid";
  ZodFirstPartyTypeKind3["ZodArray"] = "ZodArray";
  ZodFirstPartyTypeKind3["ZodObject"] = "ZodObject";
  ZodFirstPartyTypeKind3["ZodUnion"] = "ZodUnion";
  ZodFirstPartyTypeKind3["ZodDiscriminatedUnion"] = "ZodDiscriminatedUnion";
  ZodFirstPartyTypeKind3["ZodIntersection"] = "ZodIntersection";
  ZodFirstPartyTypeKind3["ZodTuple"] = "ZodTuple";
  ZodFirstPartyTypeKind3["ZodRecord"] = "ZodRecord";
  ZodFirstPartyTypeKind3["ZodMap"] = "ZodMap";
  ZodFirstPartyTypeKind3["ZodSet"] = "ZodSet";
  ZodFirstPartyTypeKind3["ZodFunction"] = "ZodFunction";
  ZodFirstPartyTypeKind3["ZodLazy"] = "ZodLazy";
  ZodFirstPartyTypeKind3["ZodLiteral"] = "ZodLiteral";
  ZodFirstPartyTypeKind3["ZodEnum"] = "ZodEnum";
  ZodFirstPartyTypeKind3["ZodEffects"] = "ZodEffects";
  ZodFirstPartyTypeKind3["ZodNativeEnum"] = "ZodNativeEnum";
  ZodFirstPartyTypeKind3["ZodOptional"] = "ZodOptional";
  ZodFirstPartyTypeKind3["ZodNullable"] = "ZodNullable";
  ZodFirstPartyTypeKind3["ZodDefault"] = "ZodDefault";
  ZodFirstPartyTypeKind3["ZodCatch"] = "ZodCatch";
  ZodFirstPartyTypeKind3["ZodPromise"] = "ZodPromise";
  ZodFirstPartyTypeKind3["ZodBranded"] = "ZodBranded";
  ZodFirstPartyTypeKind3["ZodPipeline"] = "ZodPipeline";
  ZodFirstPartyTypeKind3["ZodReadonly"] = "ZodReadonly";
})(ZodFirstPartyTypeKind2 || (ZodFirstPartyTypeKind2 = {}));
var stringType = ZodString2.create;
var numberType = ZodNumber2.create;
var nanType = ZodNaN.create;
var bigIntType = ZodBigInt2.create;
var booleanType = ZodBoolean2.create;
var dateType = ZodDate2.create;
var symbolType = ZodSymbol.create;
var undefinedType = ZodUndefined.create;
var nullType = ZodNull.create;
var anyType = ZodAny2.create;
var unknownType = ZodUnknown2.create;
var neverType = ZodNever2.create;
var voidType = ZodVoid.create;
var arrayType = ZodArray2.create;
var objectType = ZodObject2.create;
var strictObjectType = ZodObject2.strictCreate;
var unionType = ZodUnion2.create;
var discriminatedUnionType = ZodDiscriminatedUnion2.create;
var intersectionType = ZodIntersection2.create;
var tupleType = ZodTuple.create;
var recordType = ZodRecord2.create;
var mapType = ZodMap.create;
var setType = ZodSet.create;
var functionType = ZodFunction.create;
var lazyType = ZodLazy.create;
var literalType = ZodLiteral2.create;
var enumType = ZodEnum2.create;
var nativeEnumType = ZodNativeEnum.create;
var promiseType = ZodPromise.create;
var effectsType = ZodEffects.create;
var optionalType = ZodOptional2.create;
var nullableType = ZodNullable2.create;
var preprocessType = ZodEffects.createWithPreprocess;
var pipelineType = ZodPipeline.create;

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/server/zod-compat.js
function isZ4Schema(s) {
  const schema = s;
  return !!schema._zod;
}
function safeParse3(schema, data) {
  if (isZ4Schema(schema)) {
    const result2 = safeParse(schema, data);
    return result2;
  }
  const v3Schema = schema;
  const result = v3Schema.safeParse(data);
  return result;
}
function getObjectShape(schema) {
  var _a2, _b;
  if (!schema)
    return void 0;
  let rawShape;
  if (isZ4Schema(schema)) {
    const v4Schema = schema;
    rawShape = (_b = (_a2 = v4Schema._zod) === null || _a2 === void 0 ? void 0 : _a2.def) === null || _b === void 0 ? void 0 : _b.shape;
  } else {
    const v3Schema = schema;
    rawShape = v3Schema.shape;
  }
  if (!rawShape)
    return void 0;
  if (typeof rawShape === "function") {
    try {
      return rawShape();
    } catch (_c) {
      return void 0;
    }
  }
  return rawShape;
}
function getLiteralValue(schema) {
  var _a2;
  if (isZ4Schema(schema)) {
    const v4Schema = schema;
    const def2 = (_a2 = v4Schema._zod) === null || _a2 === void 0 ? void 0 : _a2.def;
    if (def2) {
      if (def2.value !== void 0)
        return def2.value;
      if (Array.isArray(def2.values) && def2.values.length > 0) {
        return def2.values[0];
      }
    }
  }
  const v3Schema = schema;
  const def = v3Schema._def;
  if (def) {
    if (def.value !== void 0)
      return def.value;
    if (Array.isArray(def.values) && def.values.length > 0) {
      return def.values[0];
    }
  }
  const directValue = schema.value;
  if (directValue !== void 0)
    return directValue;
  return void 0;
}

// node_modules/.pnpm/zod-to-json-schema@3.25.0_zod@4.1.13/node_modules/zod-to-json-schema/dist/esm/Options.js
var ignoreOverride = Symbol("Let zodToJsonSchema decide on which parser to use");

// node_modules/.pnpm/zod-to-json-schema@3.25.0_zod@4.1.13/node_modules/zod-to-json-schema/dist/esm/parsers/string.js
var ALPHA_NUMERIC = new Set("ABCDEFGHIJKLMNOPQRSTUVXYZabcdefghijklmnopqrstuvxyz0123456789");

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/server/zod-json-schema-compat.js
function getMethodLiteral(schema) {
  const shape = getObjectShape(schema);
  const methodSchema = shape === null || shape === void 0 ? void 0 : shape.method;
  if (!methodSchema) {
    throw new Error("Schema is missing a method literal");
  }
  const value = getLiteralValue(methodSchema);
  if (typeof value !== "string") {
    throw new Error("Schema method literal must be a string");
  }
  return value;
}
function parseWithCompat(schema, data) {
  const result = safeParse3(schema, data);
  if (!result.success) {
    throw result.error;
  }
  return result.data;
}

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/shared/protocol.js
var DEFAULT_REQUEST_TIMEOUT_MSEC = 6e4;
var Protocol = class {
  constructor(_options) {
    this._options = _options;
    this._requestMessageId = 0;
    this._requestHandlers = /* @__PURE__ */ new Map();
    this._requestHandlerAbortControllers = /* @__PURE__ */ new Map();
    this._notificationHandlers = /* @__PURE__ */ new Map();
    this._responseHandlers = /* @__PURE__ */ new Map();
    this._progressHandlers = /* @__PURE__ */ new Map();
    this._timeoutInfo = /* @__PURE__ */ new Map();
    this._pendingDebouncedNotifications = /* @__PURE__ */ new Set();
    this.setNotificationHandler(CancelledNotificationSchema, (notification) => {
      const controller = this._requestHandlerAbortControllers.get(notification.params.requestId);
      controller === null || controller === void 0 ? void 0 : controller.abort(notification.params.reason);
    });
    this.setNotificationHandler(ProgressNotificationSchema, (notification) => {
      this._onprogress(notification);
    });
    this.setRequestHandler(
      PingRequestSchema,
      // Automatic pong by default.
      (_request) => ({})
    );
  }
  _setupTimeout(messageId, timeout, maxTotalTimeout, onTimeout, resetTimeoutOnProgress = false) {
    this._timeoutInfo.set(messageId, {
      timeoutId: setTimeout(onTimeout, timeout),
      startTime: Date.now(),
      timeout,
      maxTotalTimeout,
      resetTimeoutOnProgress,
      onTimeout
    });
  }
  _resetTimeout(messageId) {
    const info = this._timeoutInfo.get(messageId);
    if (!info)
      return false;
    const totalElapsed = Date.now() - info.startTime;
    if (info.maxTotalTimeout && totalElapsed >= info.maxTotalTimeout) {
      this._timeoutInfo.delete(messageId);
      throw McpError.fromError(ErrorCode.RequestTimeout, "Maximum total timeout exceeded", {
        maxTotalTimeout: info.maxTotalTimeout,
        totalElapsed
      });
    }
    clearTimeout(info.timeoutId);
    info.timeoutId = setTimeout(info.onTimeout, info.timeout);
    return true;
  }
  _cleanupTimeout(messageId) {
    const info = this._timeoutInfo.get(messageId);
    if (info) {
      clearTimeout(info.timeoutId);
      this._timeoutInfo.delete(messageId);
    }
  }
  /**
   * Attaches to the given transport, starts it, and starts listening for messages.
   *
   * The Protocol object assumes ownership of the Transport, replacing any callbacks that have already been set, and expects that it is the only user of the Transport instance going forward.
   */
  async connect(transport) {
    var _a2, _b, _c;
    this._transport = transport;
    const _onclose = (_a2 = this.transport) === null || _a2 === void 0 ? void 0 : _a2.onclose;
    this._transport.onclose = () => {
      _onclose === null || _onclose === void 0 ? void 0 : _onclose();
      this._onclose();
    };
    const _onerror = (_b = this.transport) === null || _b === void 0 ? void 0 : _b.onerror;
    this._transport.onerror = (error2) => {
      _onerror === null || _onerror === void 0 ? void 0 : _onerror(error2);
      this._onerror(error2);
    };
    const _onmessage = (_c = this._transport) === null || _c === void 0 ? void 0 : _c.onmessage;
    this._transport.onmessage = (message, extra) => {
      _onmessage === null || _onmessage === void 0 ? void 0 : _onmessage(message, extra);
      if (isJSONRPCResponse(message) || isJSONRPCError(message)) {
        this._onresponse(message);
      } else if (isJSONRPCRequest(message)) {
        this._onrequest(message, extra);
      } else if (isJSONRPCNotification(message)) {
        this._onnotification(message);
      } else {
        this._onerror(new Error(`Unknown message type: ${JSON.stringify(message)}`));
      }
    };
    await this._transport.start();
  }
  _onclose() {
    var _a2;
    const responseHandlers = this._responseHandlers;
    this._responseHandlers = /* @__PURE__ */ new Map();
    this._progressHandlers.clear();
    this._pendingDebouncedNotifications.clear();
    this._transport = void 0;
    (_a2 = this.onclose) === null || _a2 === void 0 ? void 0 : _a2.call(this);
    const error2 = McpError.fromError(ErrorCode.ConnectionClosed, "Connection closed");
    for (const handler of responseHandlers.values()) {
      handler(error2);
    }
  }
  _onerror(error2) {
    var _a2;
    (_a2 = this.onerror) === null || _a2 === void 0 ? void 0 : _a2.call(this, error2);
  }
  _onnotification(notification) {
    var _a2;
    const handler = (_a2 = this._notificationHandlers.get(notification.method)) !== null && _a2 !== void 0 ? _a2 : this.fallbackNotificationHandler;
    if (handler === void 0) {
      return;
    }
    Promise.resolve().then(() => handler(notification)).catch((error2) => this._onerror(new Error(`Uncaught error in notification handler: ${error2}`)));
  }
  _onrequest(request, extra) {
    var _a2, _b;
    const handler = (_a2 = this._requestHandlers.get(request.method)) !== null && _a2 !== void 0 ? _a2 : this.fallbackRequestHandler;
    const capturedTransport = this._transport;
    if (handler === void 0) {
      capturedTransport === null || capturedTransport === void 0 ? void 0 : capturedTransport.send({
        jsonrpc: "2.0",
        id: request.id,
        error: {
          code: ErrorCode.MethodNotFound,
          message: "Method not found"
        }
      }).catch((error2) => this._onerror(new Error(`Failed to send an error response: ${error2}`)));
      return;
    }
    const abortController = new AbortController();
    this._requestHandlerAbortControllers.set(request.id, abortController);
    const fullExtra = {
      signal: abortController.signal,
      sessionId: capturedTransport === null || capturedTransport === void 0 ? void 0 : capturedTransport.sessionId,
      _meta: (_b = request.params) === null || _b === void 0 ? void 0 : _b._meta,
      sendNotification: (notification) => this.notification(notification, { relatedRequestId: request.id }),
      sendRequest: (r, resultSchema, options) => this.request(r, resultSchema, { ...options, relatedRequestId: request.id }),
      authInfo: extra === null || extra === void 0 ? void 0 : extra.authInfo,
      requestId: request.id,
      requestInfo: extra === null || extra === void 0 ? void 0 : extra.requestInfo
    };
    Promise.resolve().then(() => handler(request, fullExtra)).then((result) => {
      if (abortController.signal.aborted) {
        return;
      }
      return capturedTransport === null || capturedTransport === void 0 ? void 0 : capturedTransport.send({
        result,
        jsonrpc: "2.0",
        id: request.id
      });
    }, (error2) => {
      var _a3;
      if (abortController.signal.aborted) {
        return;
      }
      return capturedTransport === null || capturedTransport === void 0 ? void 0 : capturedTransport.send({
        jsonrpc: "2.0",
        id: request.id,
        error: {
          code: Number.isSafeInteger(error2["code"]) ? error2["code"] : ErrorCode.InternalError,
          message: (_a3 = error2.message) !== null && _a3 !== void 0 ? _a3 : "Internal error",
          ...error2["data"] !== void 0 && { data: error2["data"] }
        }
      });
    }).catch((error2) => this._onerror(new Error(`Failed to send response: ${error2}`))).finally(() => {
      this._requestHandlerAbortControllers.delete(request.id);
    });
  }
  _onprogress(notification) {
    const { progressToken, ...params } = notification.params;
    const messageId = Number(progressToken);
    const handler = this._progressHandlers.get(messageId);
    if (!handler) {
      this._onerror(new Error(`Received a progress notification for an unknown token: ${JSON.stringify(notification)}`));
      return;
    }
    const responseHandler = this._responseHandlers.get(messageId);
    const timeoutInfo = this._timeoutInfo.get(messageId);
    if (timeoutInfo && responseHandler && timeoutInfo.resetTimeoutOnProgress) {
      try {
        this._resetTimeout(messageId);
      } catch (error2) {
        responseHandler(error2);
        return;
      }
    }
    handler(params);
  }
  _onresponse(response) {
    const messageId = Number(response.id);
    const handler = this._responseHandlers.get(messageId);
    if (handler === void 0) {
      this._onerror(new Error(`Received a response for an unknown message ID: ${JSON.stringify(response)}`));
      return;
    }
    this._responseHandlers.delete(messageId);
    this._progressHandlers.delete(messageId);
    this._cleanupTimeout(messageId);
    if (isJSONRPCResponse(response)) {
      handler(response);
    } else {
      const error2 = McpError.fromError(response.error.code, response.error.message, response.error.data);
      handler(error2);
    }
  }
  get transport() {
    return this._transport;
  }
  /**
   * Closes the connection.
   */
  async close() {
    var _a2;
    await ((_a2 = this._transport) === null || _a2 === void 0 ? void 0 : _a2.close());
  }
  /**
   * Sends a request and wait for a response.
   *
   * Do not use this method to emit notifications! Use notification() instead.
   */
  request(request, resultSchema, options) {
    const { relatedRequestId, resumptionToken, onresumptiontoken } = options !== null && options !== void 0 ? options : {};
    return new Promise((resolve, reject) => {
      var _a2, _b, _c, _d, _e, _f;
      if (!this._transport) {
        reject(new Error("Not connected"));
        return;
      }
      if (((_a2 = this._options) === null || _a2 === void 0 ? void 0 : _a2.enforceStrictCapabilities) === true) {
        this.assertCapabilityForMethod(request.method);
      }
      (_b = options === null || options === void 0 ? void 0 : options.signal) === null || _b === void 0 ? void 0 : _b.throwIfAborted();
      const messageId = this._requestMessageId++;
      const jsonrpcRequest = {
        ...request,
        jsonrpc: "2.0",
        id: messageId
      };
      if (options === null || options === void 0 ? void 0 : options.onprogress) {
        this._progressHandlers.set(messageId, options.onprogress);
        jsonrpcRequest.params = {
          ...request.params,
          _meta: {
            ...((_c = request.params) === null || _c === void 0 ? void 0 : _c._meta) || {},
            progressToken: messageId
          }
        };
      }
      const cancel = (reason) => {
        var _a3;
        this._responseHandlers.delete(messageId);
        this._progressHandlers.delete(messageId);
        this._cleanupTimeout(messageId);
        (_a3 = this._transport) === null || _a3 === void 0 ? void 0 : _a3.send({
          jsonrpc: "2.0",
          method: "notifications/cancelled",
          params: {
            requestId: messageId,
            reason: String(reason)
          }
        }, { relatedRequestId, resumptionToken, onresumptiontoken }).catch((error2) => this._onerror(new Error(`Failed to send cancellation: ${error2}`)));
        reject(reason);
      };
      this._responseHandlers.set(messageId, (response) => {
        var _a3;
        if ((_a3 = options === null || options === void 0 ? void 0 : options.signal) === null || _a3 === void 0 ? void 0 : _a3.aborted) {
          return;
        }
        if (response instanceof Error) {
          return reject(response);
        }
        try {
          const parseResult = safeParse3(resultSchema, response.result);
          if (!parseResult.success) {
            reject(parseResult.error);
          } else {
            resolve(parseResult.data);
          }
        } catch (error2) {
          reject(error2);
        }
      });
      (_d = options === null || options === void 0 ? void 0 : options.signal) === null || _d === void 0 ? void 0 : _d.addEventListener("abort", () => {
        var _a3;
        cancel((_a3 = options === null || options === void 0 ? void 0 : options.signal) === null || _a3 === void 0 ? void 0 : _a3.reason);
      });
      const timeout = (_e = options === null || options === void 0 ? void 0 : options.timeout) !== null && _e !== void 0 ? _e : DEFAULT_REQUEST_TIMEOUT_MSEC;
      const timeoutHandler = () => cancel(McpError.fromError(ErrorCode.RequestTimeout, "Request timed out", { timeout }));
      this._setupTimeout(messageId, timeout, options === null || options === void 0 ? void 0 : options.maxTotalTimeout, timeoutHandler, (_f = options === null || options === void 0 ? void 0 : options.resetTimeoutOnProgress) !== null && _f !== void 0 ? _f : false);
      this._transport.send(jsonrpcRequest, { relatedRequestId, resumptionToken, onresumptiontoken }).catch((error2) => {
        this._cleanupTimeout(messageId);
        reject(error2);
      });
    });
  }
  /**
   * Emits a notification, which is a one-way message that does not expect a response.
   */
  async notification(notification, options) {
    var _a2, _b;
    if (!this._transport) {
      throw new Error("Not connected");
    }
    this.assertNotificationCapability(notification.method);
    const debouncedMethods = (_b = (_a2 = this._options) === null || _a2 === void 0 ? void 0 : _a2.debouncedNotificationMethods) !== null && _b !== void 0 ? _b : [];
    const canDebounce = debouncedMethods.includes(notification.method) && !notification.params && !(options === null || options === void 0 ? void 0 : options.relatedRequestId);
    if (canDebounce) {
      if (this._pendingDebouncedNotifications.has(notification.method)) {
        return;
      }
      this._pendingDebouncedNotifications.add(notification.method);
      Promise.resolve().then(() => {
        var _a3;
        this._pendingDebouncedNotifications.delete(notification.method);
        if (!this._transport) {
          return;
        }
        const jsonrpcNotification2 = {
          ...notification,
          jsonrpc: "2.0"
        };
        (_a3 = this._transport) === null || _a3 === void 0 ? void 0 : _a3.send(jsonrpcNotification2, options).catch((error2) => this._onerror(error2));
      });
      return;
    }
    const jsonrpcNotification = {
      ...notification,
      jsonrpc: "2.0"
    };
    await this._transport.send(jsonrpcNotification, options);
  }
  /**
   * Registers a handler to invoke when this protocol object receives a request with the given method.
   *
   * Note that this will replace any previous request handler for the same method.
   */
  setRequestHandler(requestSchema, handler) {
    const method = getMethodLiteral(requestSchema);
    this.assertRequestHandlerCapability(method);
    this._requestHandlers.set(method, (request, extra) => {
      const parsed = parseWithCompat(requestSchema, request);
      return Promise.resolve(handler(parsed, extra));
    });
  }
  /**
   * Removes the request handler for the given method.
   */
  removeRequestHandler(method) {
    this._requestHandlers.delete(method);
  }
  /**
   * Asserts that a request handler has not already been set for the given method, in preparation for a new one being automatically installed.
   */
  assertCanSetRequestHandler(method) {
    if (this._requestHandlers.has(method)) {
      throw new Error(`A request handler for ${method} already exists, which would be overridden`);
    }
  }
  /**
   * Registers a handler to invoke when this protocol object receives a notification with the given method.
   *
   * Note that this will replace any previous notification handler for the same method.
   */
  setNotificationHandler(notificationSchema, handler) {
    const method = getMethodLiteral(notificationSchema);
    this._notificationHandlers.set(method, (notification) => {
      const parsed = parseWithCompat(notificationSchema, notification);
      return Promise.resolve(handler(parsed));
    });
  }
  /**
   * Removes the notification handler for the given method.
   */
  removeNotificationHandler(method) {
    this._notificationHandlers.delete(method);
  }
};
function isPlainObject2(value) {
  return value !== null && typeof value === "object" && !Array.isArray(value);
}
function mergeCapabilities(base, additional) {
  const result = { ...base };
  for (const key in additional) {
    const k = key;
    const addValue = additional[k];
    if (addValue === void 0)
      continue;
    const baseValue = result[k];
    if (isPlainObject2(baseValue) && isPlainObject2(addValue)) {
      result[k] = { ...baseValue, ...addValue };
    } else {
      result[k] = addValue;
    }
  }
  return result;
}

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/validation/ajv-provider.js
var import_ajv = __toESM(require_ajv(), 1);
var import_ajv_formats = __toESM(require_dist(), 1);
function createDefaultAjvInstance() {
  const ajv = new import_ajv.Ajv({
    strict: false,
    validateFormats: true,
    validateSchema: false,
    allErrors: true
  });
  const addFormats = import_ajv_formats.default;
  addFormats(ajv);
  return ajv;
}
var AjvJsonSchemaValidator = class {
  /**
   * Create an AJV validator
   *
   * @param ajv - Optional pre-configured AJV instance. If not provided, a default instance will be created.
   *
   * @example
   * ```typescript
   * // Use default configuration (recommended for most cases)
   * import { AjvJsonSchemaValidator } from '@modelcontextprotocol/sdk/validation/ajv';
   * const validator = new AjvJsonSchemaValidator();
   *
   * // Or provide custom AJV instance for advanced configuration
   * import { Ajv } from 'ajv';
   * import addFormats from 'ajv-formats';
   *
   * const ajv = new Ajv({ validateFormats: true });
   * addFormats(ajv);
   * const validator = new AjvJsonSchemaValidator(ajv);
   * ```
   */
  constructor(ajv) {
    this._ajv = ajv !== null && ajv !== void 0 ? ajv : createDefaultAjvInstance();
  }
  /**
   * Create a validator for the given JSON Schema
   *
   * The validator is compiled once and can be reused multiple times.
   * If the schema has an $id, it will be cached by AJV automatically.
   *
   * @param schema - Standard JSON Schema object
   * @returns A validator function that validates input data
   */
  getValidator(schema) {
    var _a2;
    const ajvValidator = "$id" in schema && typeof schema.$id === "string" ? (_a2 = this._ajv.getSchema(schema.$id)) !== null && _a2 !== void 0 ? _a2 : this._ajv.compile(schema) : this._ajv.compile(schema);
    return (input) => {
      const valid = ajvValidator(input);
      if (valid) {
        return {
          valid: true,
          data: input,
          errorMessage: void 0
        };
      } else {
        return {
          valid: false,
          data: void 0,
          errorMessage: this._ajv.errorsText(ajvValidator.errors)
        };
      }
    };
  }
};

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/client/index.js
function applyElicitationDefaults(schema, data) {
  if (!schema || data === null || typeof data !== "object")
    return;
  if (schema.type === "object" && schema.properties && typeof schema.properties === "object") {
    const obj = data;
    const props = schema.properties;
    for (const key of Object.keys(props)) {
      const propSchema = props[key];
      if (obj[key] === void 0 && Object.prototype.hasOwnProperty.call(propSchema, "default")) {
        obj[key] = propSchema.default;
      }
      if (obj[key] !== void 0) {
        applyElicitationDefaults(propSchema, obj[key]);
      }
    }
  }
  if (Array.isArray(schema.anyOf)) {
    for (const sub of schema.anyOf) {
      applyElicitationDefaults(sub, data);
    }
  }
  if (Array.isArray(schema.oneOf)) {
    for (const sub of schema.oneOf) {
      applyElicitationDefaults(sub, data);
    }
  }
}
function getSupportedElicitationModes(capabilities) {
  if (!capabilities) {
    return { supportsFormMode: false, supportsUrlMode: false };
  }
  const hasFormCapability = capabilities.form !== void 0;
  const hasUrlCapability = capabilities.url !== void 0;
  const supportsFormMode = hasFormCapability || !hasFormCapability && !hasUrlCapability;
  const supportsUrlMode = hasUrlCapability;
  return { supportsFormMode, supportsUrlMode };
}
var Client = class extends Protocol {
  /**
   * Initializes this client with the given name and version information.
   */
  constructor(_clientInfo, options) {
    var _a2, _b;
    super(options);
    this._clientInfo = _clientInfo;
    this._cachedToolOutputValidators = /* @__PURE__ */ new Map();
    this._capabilities = (_a2 = options === null || options === void 0 ? void 0 : options.capabilities) !== null && _a2 !== void 0 ? _a2 : {};
    this._jsonSchemaValidator = (_b = options === null || options === void 0 ? void 0 : options.jsonSchemaValidator) !== null && _b !== void 0 ? _b : new AjvJsonSchemaValidator();
  }
  /**
   * Registers new capabilities. This can only be called before connecting to a transport.
   *
   * The new capabilities will be merged with any existing capabilities previously given (e.g., at initialization).
   */
  registerCapabilities(capabilities) {
    if (this.transport) {
      throw new Error("Cannot register capabilities after connecting to transport");
    }
    this._capabilities = mergeCapabilities(this._capabilities, capabilities);
  }
  /**
   * Override request handler registration to enforce client-side validation for elicitation.
   */
  setRequestHandler(requestSchema, handler) {
    var _a2, _b, _c;
    const shape = getObjectShape(requestSchema);
    const methodSchema = shape === null || shape === void 0 ? void 0 : shape.method;
    if (!methodSchema) {
      throw new Error("Schema is missing a method literal");
    }
    let methodValue;
    if (isZ4Schema(methodSchema)) {
      const v4Schema = methodSchema;
      const v4Def = (_a2 = v4Schema._zod) === null || _a2 === void 0 ? void 0 : _a2.def;
      methodValue = (_b = v4Def === null || v4Def === void 0 ? void 0 : v4Def.value) !== null && _b !== void 0 ? _b : v4Schema.value;
    } else {
      const v3Schema = methodSchema;
      const legacyDef = v3Schema._def;
      methodValue = (_c = legacyDef === null || legacyDef === void 0 ? void 0 : legacyDef.value) !== null && _c !== void 0 ? _c : v3Schema.value;
    }
    if (typeof methodValue !== "string") {
      throw new Error("Schema method literal must be a string");
    }
    const method = methodValue;
    if (method === "elicitation/create") {
      const wrappedHandler = async (request, extra) => {
        var _a3, _b2, _c2;
        const validatedRequest = safeParse3(ElicitRequestSchema, request);
        if (!validatedRequest.success) {
          const errorMessage = validatedRequest.error instanceof Error ? validatedRequest.error.message : String(validatedRequest.error);
          throw new McpError(ErrorCode.InvalidParams, `Invalid elicitation request: ${errorMessage}`);
        }
        const { params } = validatedRequest.data;
        const mode = (_a3 = params.mode) !== null && _a3 !== void 0 ? _a3 : "form";
        const { supportsFormMode, supportsUrlMode } = getSupportedElicitationModes(this._capabilities.elicitation);
        if (mode === "form" && !supportsFormMode) {
          throw new McpError(ErrorCode.InvalidParams, "Client does not support form-mode elicitation requests");
        }
        if (mode === "url" && !supportsUrlMode) {
          throw new McpError(ErrorCode.InvalidParams, "Client does not support URL-mode elicitation requests");
        }
        const result = await Promise.resolve(handler(request, extra));
        const validationResult = safeParse3(ElicitResultSchema, result);
        if (!validationResult.success) {
          const errorMessage = validationResult.error instanceof Error ? validationResult.error.message : String(validationResult.error);
          throw new McpError(ErrorCode.InvalidParams, `Invalid elicitation result: ${errorMessage}`);
        }
        const validatedResult = validationResult.data;
        const requestedSchema = mode === "form" ? params.requestedSchema : void 0;
        if (mode === "form" && validatedResult.action === "accept" && validatedResult.content && requestedSchema) {
          if ((_c2 = (_b2 = this._capabilities.elicitation) === null || _b2 === void 0 ? void 0 : _b2.form) === null || _c2 === void 0 ? void 0 : _c2.applyDefaults) {
            try {
              applyElicitationDefaults(requestedSchema, validatedResult.content);
            } catch (_d) {
            }
          }
        }
        return validatedResult;
      };
      return super.setRequestHandler(requestSchema, wrappedHandler);
    }
    return super.setRequestHandler(requestSchema, handler);
  }
  assertCapability(capability, method) {
    var _a2;
    if (!((_a2 = this._serverCapabilities) === null || _a2 === void 0 ? void 0 : _a2[capability])) {
      throw new Error(`Server does not support ${capability} (required for ${method})`);
    }
  }
  async connect(transport, options) {
    await super.connect(transport);
    if (transport.sessionId !== void 0) {
      return;
    }
    try {
      const result = await this.request({
        method: "initialize",
        params: {
          protocolVersion: LATEST_PROTOCOL_VERSION,
          capabilities: this._capabilities,
          clientInfo: this._clientInfo
        }
      }, InitializeResultSchema, options);
      if (result === void 0) {
        throw new Error(`Server sent invalid initialize result: ${result}`);
      }
      if (!SUPPORTED_PROTOCOL_VERSIONS.includes(result.protocolVersion)) {
        throw new Error(`Server's protocol version is not supported: ${result.protocolVersion}`);
      }
      this._serverCapabilities = result.capabilities;
      this._serverVersion = result.serverInfo;
      if (transport.setProtocolVersion) {
        transport.setProtocolVersion(result.protocolVersion);
      }
      this._instructions = result.instructions;
      await this.notification({
        method: "notifications/initialized"
      });
    } catch (error2) {
      void this.close();
      throw error2;
    }
  }
  /**
   * After initialization has completed, this will be populated with the server's reported capabilities.
   */
  getServerCapabilities() {
    return this._serverCapabilities;
  }
  /**
   * After initialization has completed, this will be populated with information about the server's name and version.
   */
  getServerVersion() {
    return this._serverVersion;
  }
  /**
   * After initialization has completed, this may be populated with information about the server's instructions.
   */
  getInstructions() {
    return this._instructions;
  }
  assertCapabilityForMethod(method) {
    var _a2, _b, _c, _d, _e;
    switch (method) {
      case "logging/setLevel":
        if (!((_a2 = this._serverCapabilities) === null || _a2 === void 0 ? void 0 : _a2.logging)) {
          throw new Error(`Server does not support logging (required for ${method})`);
        }
        break;
      case "prompts/get":
      case "prompts/list":
        if (!((_b = this._serverCapabilities) === null || _b === void 0 ? void 0 : _b.prompts)) {
          throw new Error(`Server does not support prompts (required for ${method})`);
        }
        break;
      case "resources/list":
      case "resources/templates/list":
      case "resources/read":
      case "resources/subscribe":
      case "resources/unsubscribe":
        if (!((_c = this._serverCapabilities) === null || _c === void 0 ? void 0 : _c.resources)) {
          throw new Error(`Server does not support resources (required for ${method})`);
        }
        if (method === "resources/subscribe" && !this._serverCapabilities.resources.subscribe) {
          throw new Error(`Server does not support resource subscriptions (required for ${method})`);
        }
        break;
      case "tools/call":
      case "tools/list":
        if (!((_d = this._serverCapabilities) === null || _d === void 0 ? void 0 : _d.tools)) {
          throw new Error(`Server does not support tools (required for ${method})`);
        }
        break;
      case "completion/complete":
        if (!((_e = this._serverCapabilities) === null || _e === void 0 ? void 0 : _e.completions)) {
          throw new Error(`Server does not support completions (required for ${method})`);
        }
        break;
      case "initialize":
        break;
      case "ping":
        break;
    }
  }
  assertNotificationCapability(method) {
    var _a2;
    switch (method) {
      case "notifications/roots/list_changed":
        if (!((_a2 = this._capabilities.roots) === null || _a2 === void 0 ? void 0 : _a2.listChanged)) {
          throw new Error(`Client does not support roots list changed notifications (required for ${method})`);
        }
        break;
      case "notifications/initialized":
        break;
      case "notifications/cancelled":
        break;
      case "notifications/progress":
        break;
    }
  }
  assertRequestHandlerCapability(method) {
    switch (method) {
      case "sampling/createMessage":
        if (!this._capabilities.sampling) {
          throw new Error(`Client does not support sampling capability (required for ${method})`);
        }
        break;
      case "elicitation/create":
        if (!this._capabilities.elicitation) {
          throw new Error(`Client does not support elicitation capability (required for ${method})`);
        }
        break;
      case "roots/list":
        if (!this._capabilities.roots) {
          throw new Error(`Client does not support roots capability (required for ${method})`);
        }
        break;
      case "ping":
        break;
    }
  }
  async ping(options) {
    return this.request({ method: "ping" }, EmptyResultSchema, options);
  }
  async complete(params, options) {
    return this.request({ method: "completion/complete", params }, CompleteResultSchema, options);
  }
  async setLoggingLevel(level, options) {
    return this.request({ method: "logging/setLevel", params: { level } }, EmptyResultSchema, options);
  }
  async getPrompt(params, options) {
    return this.request({ method: "prompts/get", params }, GetPromptResultSchema, options);
  }
  async listPrompts(params, options) {
    return this.request({ method: "prompts/list", params }, ListPromptsResultSchema, options);
  }
  async listResources(params, options) {
    return this.request({ method: "resources/list", params }, ListResourcesResultSchema, options);
  }
  async listResourceTemplates(params, options) {
    return this.request({ method: "resources/templates/list", params }, ListResourceTemplatesResultSchema, options);
  }
  async readResource(params, options) {
    return this.request({ method: "resources/read", params }, ReadResourceResultSchema, options);
  }
  async subscribeResource(params, options) {
    return this.request({ method: "resources/subscribe", params }, EmptyResultSchema, options);
  }
  async unsubscribeResource(params, options) {
    return this.request({ method: "resources/unsubscribe", params }, EmptyResultSchema, options);
  }
  async callTool(params, resultSchema = CallToolResultSchema, options) {
    const result = await this.request({ method: "tools/call", params }, resultSchema, options);
    const validator = this.getToolOutputValidator(params.name);
    if (validator) {
      if (!result.structuredContent && !result.isError) {
        throw new McpError(ErrorCode.InvalidRequest, `Tool ${params.name} has an output schema but did not return structured content`);
      }
      if (result.structuredContent) {
        try {
          const validationResult = validator(result.structuredContent);
          if (!validationResult.valid) {
            throw new McpError(ErrorCode.InvalidParams, `Structured content does not match the tool's output schema: ${validationResult.errorMessage}`);
          }
        } catch (error2) {
          if (error2 instanceof McpError) {
            throw error2;
          }
          throw new McpError(ErrorCode.InvalidParams, `Failed to validate structured content: ${error2 instanceof Error ? error2.message : String(error2)}`);
        }
      }
    }
    return result;
  }
  /**
   * Cache validators for tool output schemas.
   * Called after listTools() to pre-compile validators for better performance.
   */
  cacheToolOutputSchemas(tools) {
    this._cachedToolOutputValidators.clear();
    for (const tool of tools) {
      if (tool.outputSchema) {
        const toolValidator = this._jsonSchemaValidator.getValidator(tool.outputSchema);
        this._cachedToolOutputValidators.set(tool.name, toolValidator);
      }
    }
  }
  /**
   * Get cached validator for a tool
   */
  getToolOutputValidator(toolName) {
    return this._cachedToolOutputValidators.get(toolName);
  }
  async listTools(params, options) {
    const result = await this.request({ method: "tools/list", params }, ListToolsResultSchema, options);
    this.cacheToolOutputSchemas(result.tools);
    return result;
  }
  async sendRootsListChanged() {
    return this.notification({ method: "notifications/roots/list_changed" });
  }
};

// package.json
var version2 = "0.1.36";

// node_modules/.pnpm/pkce-challenge@5.0.1/node_modules/pkce-challenge/dist/index.node.js
var crypto;
crypto = globalThis.crypto?.webcrypto ?? // Node.js [18-16] REPL
globalThis.crypto ?? // Node.js >18
import("node:crypto").then((m) => m.webcrypto);
async function getRandomValues(size) {
  return (await crypto).getRandomValues(new Uint8Array(size));
}
async function random(size) {
  const mask = "abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ0123456789-._~";
  const evenDistCutoff = Math.pow(2, 8) - Math.pow(2, 8) % mask.length;
  let result = "";
  while (result.length < size) {
    const randomBytes = await getRandomValues(size - result.length);
    for (const randomByte of randomBytes) {
      if (randomByte < evenDistCutoff) {
        result += mask[randomByte % mask.length];
      }
    }
  }
  return result;
}
async function generateVerifier(length) {
  return await random(length);
}
async function generateChallenge(code_verifier) {
  const buffer = await (await crypto).subtle.digest("SHA-256", new TextEncoder().encode(code_verifier));
  return btoa(String.fromCharCode(...new Uint8Array(buffer))).replace(/\//g, "_").replace(/\+/g, "-").replace(/=/g, "");
}
async function pkceChallenge(length) {
  if (!length)
    length = 43;
  if (length < 43 || length > 128) {
    throw `Expected a length between 43 and 128. Received ${length}.`;
  }
  const verifier = await generateVerifier(length);
  const challenge = await generateChallenge(verifier);
  return {
    code_verifier: verifier,
    code_challenge: challenge
  };
}

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/shared/auth.js
var SafeUrlSchema = url().superRefine((val, ctx) => {
  if (!URL.canParse(val)) {
    ctx.addIssue({
      code: ZodIssueCode.custom,
      message: "URL must be parseable",
      fatal: true
    });
    return NEVER;
  }
}).refine((url2) => {
  const u = new URL(url2);
  return u.protocol !== "javascript:" && u.protocol !== "data:" && u.protocol !== "vbscript:";
}, { message: "URL cannot use javascript:, data:, or vbscript: scheme" });
var OAuthProtectedResourceMetadataSchema = looseObject({
  resource: string2().url(),
  authorization_servers: array(SafeUrlSchema).optional(),
  jwks_uri: string2().url().optional(),
  scopes_supported: array(string2()).optional(),
  bearer_methods_supported: array(string2()).optional(),
  resource_signing_alg_values_supported: array(string2()).optional(),
  resource_name: string2().optional(),
  resource_documentation: string2().optional(),
  resource_policy_uri: string2().url().optional(),
  resource_tos_uri: string2().url().optional(),
  tls_client_certificate_bound_access_tokens: boolean2().optional(),
  authorization_details_types_supported: array(string2()).optional(),
  dpop_signing_alg_values_supported: array(string2()).optional(),
  dpop_bound_access_tokens_required: boolean2().optional()
});
var OAuthMetadataSchema = looseObject({
  issuer: string2(),
  authorization_endpoint: SafeUrlSchema,
  token_endpoint: SafeUrlSchema,
  registration_endpoint: SafeUrlSchema.optional(),
  scopes_supported: array(string2()).optional(),
  response_types_supported: array(string2()),
  response_modes_supported: array(string2()).optional(),
  grant_types_supported: array(string2()).optional(),
  token_endpoint_auth_methods_supported: array(string2()).optional(),
  token_endpoint_auth_signing_alg_values_supported: array(string2()).optional(),
  service_documentation: SafeUrlSchema.optional(),
  revocation_endpoint: SafeUrlSchema.optional(),
  revocation_endpoint_auth_methods_supported: array(string2()).optional(),
  revocation_endpoint_auth_signing_alg_values_supported: array(string2()).optional(),
  introspection_endpoint: string2().optional(),
  introspection_endpoint_auth_methods_supported: array(string2()).optional(),
  introspection_endpoint_auth_signing_alg_values_supported: array(string2()).optional(),
  code_challenge_methods_supported: array(string2()).optional(),
  client_id_metadata_document_supported: boolean2().optional()
});
var OpenIdProviderMetadataSchema = looseObject({
  issuer: string2(),
  authorization_endpoint: SafeUrlSchema,
  token_endpoint: SafeUrlSchema,
  userinfo_endpoint: SafeUrlSchema.optional(),
  jwks_uri: SafeUrlSchema,
  registration_endpoint: SafeUrlSchema.optional(),
  scopes_supported: array(string2()).optional(),
  response_types_supported: array(string2()),
  response_modes_supported: array(string2()).optional(),
  grant_types_supported: array(string2()).optional(),
  acr_values_supported: array(string2()).optional(),
  subject_types_supported: array(string2()),
  id_token_signing_alg_values_supported: array(string2()),
  id_token_encryption_alg_values_supported: array(string2()).optional(),
  id_token_encryption_enc_values_supported: array(string2()).optional(),
  userinfo_signing_alg_values_supported: array(string2()).optional(),
  userinfo_encryption_alg_values_supported: array(string2()).optional(),
  userinfo_encryption_enc_values_supported: array(string2()).optional(),
  request_object_signing_alg_values_supported: array(string2()).optional(),
  request_object_encryption_alg_values_supported: array(string2()).optional(),
  request_object_encryption_enc_values_supported: array(string2()).optional(),
  token_endpoint_auth_methods_supported: array(string2()).optional(),
  token_endpoint_auth_signing_alg_values_supported: array(string2()).optional(),
  display_values_supported: array(string2()).optional(),
  claim_types_supported: array(string2()).optional(),
  claims_supported: array(string2()).optional(),
  service_documentation: string2().optional(),
  claims_locales_supported: array(string2()).optional(),
  ui_locales_supported: array(string2()).optional(),
  claims_parameter_supported: boolean2().optional(),
  request_parameter_supported: boolean2().optional(),
  request_uri_parameter_supported: boolean2().optional(),
  require_request_uri_registration: boolean2().optional(),
  op_policy_uri: SafeUrlSchema.optional(),
  op_tos_uri: SafeUrlSchema.optional(),
  client_id_metadata_document_supported: boolean2().optional()
});
var OpenIdProviderDiscoveryMetadataSchema = object({
  ...OpenIdProviderMetadataSchema.shape,
  ...OAuthMetadataSchema.pick({
    code_challenge_methods_supported: true
  }).shape
});
var OAuthTokensSchema = object({
  access_token: string2(),
  id_token: string2().optional(),
  // Optional for OAuth 2.1, but necessary in OpenID Connect
  token_type: string2(),
  expires_in: number2().optional(),
  scope: string2().optional(),
  refresh_token: string2().optional()
}).strip();
var OAuthErrorResponseSchema = object({
  error: string2(),
  error_description: string2().optional(),
  error_uri: string2().optional()
});
var OptionalSafeUrlSchema = SafeUrlSchema.optional().or(literal("").transform(() => void 0));
var OAuthClientMetadataSchema = object({
  redirect_uris: array(SafeUrlSchema),
  token_endpoint_auth_method: string2().optional(),
  grant_types: array(string2()).optional(),
  response_types: array(string2()).optional(),
  client_name: string2().optional(),
  client_uri: SafeUrlSchema.optional(),
  logo_uri: OptionalSafeUrlSchema,
  scope: string2().optional(),
  contacts: array(string2()).optional(),
  tos_uri: OptionalSafeUrlSchema,
  policy_uri: string2().optional(),
  jwks_uri: SafeUrlSchema.optional(),
  jwks: any().optional(),
  software_id: string2().optional(),
  software_version: string2().optional(),
  software_statement: string2().optional()
}).strip();
var OAuthClientInformationSchema = object({
  client_id: string2(),
  client_secret: string2().optional(),
  client_id_issued_at: number2().optional(),
  client_secret_expires_at: number2().optional()
}).strip();
var OAuthClientInformationFullSchema = OAuthClientMetadataSchema.merge(OAuthClientInformationSchema);
var OAuthClientRegistrationErrorSchema = object({
  error: string2(),
  error_description: string2().optional()
}).strip();
var OAuthTokenRevocationRequestSchema = object({
  token: string2(),
  token_type_hint: string2().optional()
}).strip();

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/shared/auth-utils.js
function resourceUrlFromServerUrl(url2) {
  const resourceURL = typeof url2 === "string" ? new URL(url2) : new URL(url2.href);
  resourceURL.hash = "";
  return resourceURL;
}
function checkResourceAllowed({ requestedResource, configuredResource }) {
  const requested = typeof requestedResource === "string" ? new URL(requestedResource) : new URL(requestedResource.href);
  const configured = typeof configuredResource === "string" ? new URL(configuredResource) : new URL(configuredResource.href);
  if (requested.origin !== configured.origin) {
    return false;
  }
  if (requested.pathname.length < configured.pathname.length) {
    return false;
  }
  const requestedPath = requested.pathname.endsWith("/") ? requested.pathname : requested.pathname + "/";
  const configuredPath = configured.pathname.endsWith("/") ? configured.pathname : configured.pathname + "/";
  return requestedPath.startsWith(configuredPath);
}

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/server/auth/errors.js
var OAuthError = class extends Error {
  constructor(message, errorUri) {
    super(message);
    this.errorUri = errorUri;
    this.name = this.constructor.name;
  }
  /**
   * Converts the error to a standard OAuth error response object
   */
  toResponseObject() {
    const response = {
      error: this.errorCode,
      error_description: this.message
    };
    if (this.errorUri) {
      response.error_uri = this.errorUri;
    }
    return response;
  }
  get errorCode() {
    return this.constructor.errorCode;
  }
};
var InvalidRequestError = class extends OAuthError {
};
InvalidRequestError.errorCode = "invalid_request";
var InvalidClientError = class extends OAuthError {
};
InvalidClientError.errorCode = "invalid_client";
var InvalidGrantError = class extends OAuthError {
};
InvalidGrantError.errorCode = "invalid_grant";
var UnauthorizedClientError = class extends OAuthError {
};
UnauthorizedClientError.errorCode = "unauthorized_client";
var UnsupportedGrantTypeError = class extends OAuthError {
};
UnsupportedGrantTypeError.errorCode = "unsupported_grant_type";
var InvalidScopeError = class extends OAuthError {
};
InvalidScopeError.errorCode = "invalid_scope";
var AccessDeniedError = class extends OAuthError {
};
AccessDeniedError.errorCode = "access_denied";
var ServerError = class extends OAuthError {
};
ServerError.errorCode = "server_error";
var TemporarilyUnavailableError = class extends OAuthError {
};
TemporarilyUnavailableError.errorCode = "temporarily_unavailable";
var UnsupportedResponseTypeError = class extends OAuthError {
};
UnsupportedResponseTypeError.errorCode = "unsupported_response_type";
var UnsupportedTokenTypeError = class extends OAuthError {
};
UnsupportedTokenTypeError.errorCode = "unsupported_token_type";
var InvalidTokenError = class extends OAuthError {
};
InvalidTokenError.errorCode = "invalid_token";
var MethodNotAllowedError = class extends OAuthError {
};
MethodNotAllowedError.errorCode = "method_not_allowed";
var TooManyRequestsError = class extends OAuthError {
};
TooManyRequestsError.errorCode = "too_many_requests";
var InvalidClientMetadataError = class extends OAuthError {
};
InvalidClientMetadataError.errorCode = "invalid_client_metadata";
var InsufficientScopeError = class extends OAuthError {
};
InsufficientScopeError.errorCode = "insufficient_scope";
var OAUTH_ERRORS = {
  [InvalidRequestError.errorCode]: InvalidRequestError,
  [InvalidClientError.errorCode]: InvalidClientError,
  [InvalidGrantError.errorCode]: InvalidGrantError,
  [UnauthorizedClientError.errorCode]: UnauthorizedClientError,
  [UnsupportedGrantTypeError.errorCode]: UnsupportedGrantTypeError,
  [InvalidScopeError.errorCode]: InvalidScopeError,
  [AccessDeniedError.errorCode]: AccessDeniedError,
  [ServerError.errorCode]: ServerError,
  [TemporarilyUnavailableError.errorCode]: TemporarilyUnavailableError,
  [UnsupportedResponseTypeError.errorCode]: UnsupportedResponseTypeError,
  [UnsupportedTokenTypeError.errorCode]: UnsupportedTokenTypeError,
  [InvalidTokenError.errorCode]: InvalidTokenError,
  [MethodNotAllowedError.errorCode]: MethodNotAllowedError,
  [TooManyRequestsError.errorCode]: TooManyRequestsError,
  [InvalidClientMetadataError.errorCode]: InvalidClientMetadataError,
  [InsufficientScopeError.errorCode]: InsufficientScopeError
};

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/client/auth.js
var UnauthorizedError = class extends Error {
  constructor(message) {
    super(message !== null && message !== void 0 ? message : "Unauthorized");
  }
};
function isClientAuthMethod(method) {
  return ["client_secret_basic", "client_secret_post", "none"].includes(method);
}
var AUTHORIZATION_CODE_RESPONSE_TYPE = "code";
var AUTHORIZATION_CODE_CHALLENGE_METHOD = "S256";
function selectClientAuthMethod(clientInformation, supportedMethods) {
  const hasClientSecret = clientInformation.client_secret !== void 0;
  if (supportedMethods.length === 0) {
    return hasClientSecret ? "client_secret_post" : "none";
  }
  if ("token_endpoint_auth_method" in clientInformation && clientInformation.token_endpoint_auth_method && isClientAuthMethod(clientInformation.token_endpoint_auth_method) && supportedMethods.includes(clientInformation.token_endpoint_auth_method)) {
    return clientInformation.token_endpoint_auth_method;
  }
  if (hasClientSecret && supportedMethods.includes("client_secret_basic")) {
    return "client_secret_basic";
  }
  if (hasClientSecret && supportedMethods.includes("client_secret_post")) {
    return "client_secret_post";
  }
  if (supportedMethods.includes("none")) {
    return "none";
  }
  return hasClientSecret ? "client_secret_post" : "none";
}
function applyClientAuthentication(method, clientInformation, headers, params) {
  const { client_id, client_secret } = clientInformation;
  switch (method) {
    case "client_secret_basic":
      applyBasicAuth(client_id, client_secret, headers);
      return;
    case "client_secret_post":
      applyPostAuth(client_id, client_secret, params);
      return;
    case "none":
      applyPublicAuth(client_id, params);
      return;
    default:
      throw new Error(`Unsupported client authentication method: ${method}`);
  }
}
function applyBasicAuth(clientId, clientSecret, headers) {
  if (!clientSecret) {
    throw new Error("client_secret_basic authentication requires a client_secret");
  }
  const credentials = btoa(`${clientId}:${clientSecret}`);
  headers.set("Authorization", `Basic ${credentials}`);
}
function applyPostAuth(clientId, clientSecret, params) {
  params.set("client_id", clientId);
  if (clientSecret) {
    params.set("client_secret", clientSecret);
  }
}
function applyPublicAuth(clientId, params) {
  params.set("client_id", clientId);
}
async function parseErrorResponse(input) {
  const statusCode = input instanceof Response ? input.status : void 0;
  const body = input instanceof Response ? await input.text() : input;
  try {
    const result = OAuthErrorResponseSchema.parse(JSON.parse(body));
    const { error: error2, error_description, error_uri } = result;
    const errorClass = OAUTH_ERRORS[error2] || ServerError;
    return new errorClass(error_description || "", error_uri);
  } catch (error2) {
    const errorMessage = `${statusCode ? `HTTP ${statusCode}: ` : ""}Invalid OAuth error response: ${error2}. Raw body: ${body}`;
    return new ServerError(errorMessage);
  }
}
async function auth(provider, options) {
  var _a2, _b;
  try {
    return await authInternal(provider, options);
  } catch (error2) {
    if (error2 instanceof InvalidClientError || error2 instanceof UnauthorizedClientError) {
      await ((_a2 = provider.invalidateCredentials) === null || _a2 === void 0 ? void 0 : _a2.call(provider, "all"));
      return await authInternal(provider, options);
    } else if (error2 instanceof InvalidGrantError) {
      await ((_b = provider.invalidateCredentials) === null || _b === void 0 ? void 0 : _b.call(provider, "tokens"));
      return await authInternal(provider, options);
    }
    throw error2;
  }
}
async function authInternal(provider, { serverUrl, authorizationCode, scope, resourceMetadataUrl, fetchFn }) {
  var _a2, _b;
  let resourceMetadata;
  let authorizationServerUrl;
  try {
    resourceMetadata = await discoverOAuthProtectedResourceMetadata(serverUrl, { resourceMetadataUrl }, fetchFn);
    if (resourceMetadata.authorization_servers && resourceMetadata.authorization_servers.length > 0) {
      authorizationServerUrl = resourceMetadata.authorization_servers[0];
    }
  } catch (_c) {
  }
  if (!authorizationServerUrl) {
    authorizationServerUrl = new URL("/", serverUrl);
  }
  const resource = await selectResourceURL(serverUrl, provider, resourceMetadata);
  const metadata = await discoverAuthorizationServerMetadata(authorizationServerUrl, {
    fetchFn
  });
  let clientInformation = await Promise.resolve(provider.clientInformation());
  if (!clientInformation) {
    if (authorizationCode !== void 0) {
      throw new Error("Existing OAuth client information is required when exchanging an authorization code");
    }
    const supportsUrlBasedClientId = (metadata === null || metadata === void 0 ? void 0 : metadata.client_id_metadata_document_supported) === true;
    const clientMetadataUrl = provider.clientMetadataUrl;
    if (clientMetadataUrl && !isHttpsUrl(clientMetadataUrl)) {
      throw new InvalidClientMetadataError(`clientMetadataUrl must be a valid HTTPS URL with a non-root pathname, got: ${clientMetadataUrl}`);
    }
    const shouldUseUrlBasedClientId = supportsUrlBasedClientId && clientMetadataUrl;
    if (shouldUseUrlBasedClientId) {
      clientInformation = {
        client_id: clientMetadataUrl
      };
      await ((_a2 = provider.saveClientInformation) === null || _a2 === void 0 ? void 0 : _a2.call(provider, clientInformation));
    } else {
      if (!provider.saveClientInformation) {
        throw new Error("OAuth client information must be saveable for dynamic registration");
      }
      const fullInformation = await registerClient(authorizationServerUrl, {
        metadata,
        clientMetadata: provider.clientMetadata,
        fetchFn
      });
      await provider.saveClientInformation(fullInformation);
      clientInformation = fullInformation;
    }
  }
  if (authorizationCode !== void 0) {
    const codeVerifier2 = await provider.codeVerifier();
    const tokens2 = await exchangeAuthorization(authorizationServerUrl, {
      metadata,
      clientInformation,
      authorizationCode,
      codeVerifier: codeVerifier2,
      redirectUri: provider.redirectUrl,
      resource,
      addClientAuthentication: provider.addClientAuthentication,
      fetchFn
    });
    await provider.saveTokens(tokens2);
    return "AUTHORIZED";
  }
  const tokens = await provider.tokens();
  if (tokens === null || tokens === void 0 ? void 0 : tokens.refresh_token) {
    try {
      const newTokens = await refreshAuthorization(authorizationServerUrl, {
        metadata,
        clientInformation,
        refreshToken: tokens.refresh_token,
        resource,
        addClientAuthentication: provider.addClientAuthentication,
        fetchFn
      });
      await provider.saveTokens(newTokens);
      return "AUTHORIZED";
    } catch (error2) {
      if (!(error2 instanceof OAuthError) || error2 instanceof ServerError) {
      } else {
        throw error2;
      }
    }
  }
  const state = provider.state ? await provider.state() : void 0;
  const { authorizationUrl, codeVerifier } = await startAuthorization(authorizationServerUrl, {
    metadata,
    clientInformation,
    state,
    redirectUrl: provider.redirectUrl,
    scope: scope || ((_b = resourceMetadata === null || resourceMetadata === void 0 ? void 0 : resourceMetadata.scopes_supported) === null || _b === void 0 ? void 0 : _b.join(" ")) || provider.clientMetadata.scope,
    resource
  });
  await provider.saveCodeVerifier(codeVerifier);
  await provider.redirectToAuthorization(authorizationUrl);
  return "REDIRECT";
}
function isHttpsUrl(value) {
  if (!value)
    return false;
  try {
    const url2 = new URL(value);
    return url2.protocol === "https:" && url2.pathname !== "/";
  } catch (_a2) {
    return false;
  }
}
async function selectResourceURL(serverUrl, provider, resourceMetadata) {
  const defaultResource = resourceUrlFromServerUrl(serverUrl);
  if (provider.validateResourceURL) {
    return await provider.validateResourceURL(defaultResource, resourceMetadata === null || resourceMetadata === void 0 ? void 0 : resourceMetadata.resource);
  }
  if (!resourceMetadata) {
    return void 0;
  }
  if (!checkResourceAllowed({ requestedResource: defaultResource, configuredResource: resourceMetadata.resource })) {
    throw new Error(`Protected resource ${resourceMetadata.resource} does not match expected ${defaultResource} (or origin)`);
  }
  return new URL(resourceMetadata.resource);
}
function extractWWWAuthenticateParams(res) {
  const authenticateHeader = res.headers.get("WWW-Authenticate");
  if (!authenticateHeader) {
    return {};
  }
  const [type, scheme] = authenticateHeader.split(" ");
  if (type.toLowerCase() !== "bearer" || !scheme) {
    return {};
  }
  const resourceMetadataMatch = extractFieldFromWwwAuth(res, "resource_metadata") || void 0;
  let resourceMetadataUrl;
  if (resourceMetadataMatch) {
    try {
      resourceMetadataUrl = new URL(resourceMetadataMatch);
    } catch (_a2) {
    }
  }
  const scope = extractFieldFromWwwAuth(res, "scope") || void 0;
  const error2 = extractFieldFromWwwAuth(res, "error") || void 0;
  return {
    resourceMetadataUrl,
    scope,
    error: error2
  };
}
function extractFieldFromWwwAuth(response, fieldName) {
  const wwwAuthHeader = response.headers.get("WWW-Authenticate");
  if (!wwwAuthHeader) {
    return null;
  }
  const pattern = new RegExp(`${fieldName}=(?:"([^"]+)"|([^\\s,]+))`);
  const match = wwwAuthHeader.match(pattern);
  if (match) {
    return match[1] || match[2];
  }
  return null;
}
async function discoverOAuthProtectedResourceMetadata(serverUrl, opts, fetchFn = fetch) {
  const response = await discoverMetadataWithFallback(serverUrl, "oauth-protected-resource", fetchFn, {
    protocolVersion: opts === null || opts === void 0 ? void 0 : opts.protocolVersion,
    metadataUrl: opts === null || opts === void 0 ? void 0 : opts.resourceMetadataUrl
  });
  if (!response || response.status === 404) {
    throw new Error(`Resource server does not implement OAuth 2.0 Protected Resource Metadata.`);
  }
  if (!response.ok) {
    throw new Error(`HTTP ${response.status} trying to load well-known OAuth protected resource metadata.`);
  }
  return OAuthProtectedResourceMetadataSchema.parse(await response.json());
}
async function fetchWithCorsRetry(url2, headers, fetchFn = fetch) {
  try {
    return await fetchFn(url2, { headers });
  } catch (error2) {
    if (error2 instanceof TypeError) {
      if (headers) {
        return fetchWithCorsRetry(url2, void 0, fetchFn);
      } else {
        return void 0;
      }
    }
    throw error2;
  }
}
function buildWellKnownPath(wellKnownPrefix, pathname = "", options = {}) {
  if (pathname.endsWith("/")) {
    pathname = pathname.slice(0, -1);
  }
  return options.prependPathname ? `${pathname}/.well-known/${wellKnownPrefix}` : `/.well-known/${wellKnownPrefix}${pathname}`;
}
async function tryMetadataDiscovery(url2, protocolVersion, fetchFn = fetch) {
  const headers = {
    "MCP-Protocol-Version": protocolVersion
  };
  return await fetchWithCorsRetry(url2, headers, fetchFn);
}
function shouldAttemptFallback(response, pathname) {
  return !response || response.status >= 400 && response.status < 500 && pathname !== "/";
}
async function discoverMetadataWithFallback(serverUrl, wellKnownType, fetchFn, opts) {
  var _a2, _b;
  const issuer = new URL(serverUrl);
  const protocolVersion = (_a2 = opts === null || opts === void 0 ? void 0 : opts.protocolVersion) !== null && _a2 !== void 0 ? _a2 : LATEST_PROTOCOL_VERSION;
  let url2;
  if (opts === null || opts === void 0 ? void 0 : opts.metadataUrl) {
    url2 = new URL(opts.metadataUrl);
  } else {
    const wellKnownPath = buildWellKnownPath(wellKnownType, issuer.pathname);
    url2 = new URL(wellKnownPath, (_b = opts === null || opts === void 0 ? void 0 : opts.metadataServerUrl) !== null && _b !== void 0 ? _b : issuer);
    url2.search = issuer.search;
  }
  let response = await tryMetadataDiscovery(url2, protocolVersion, fetchFn);
  if (!(opts === null || opts === void 0 ? void 0 : opts.metadataUrl) && shouldAttemptFallback(response, issuer.pathname)) {
    const rootUrl = new URL(`/.well-known/${wellKnownType}`, issuer);
    response = await tryMetadataDiscovery(rootUrl, protocolVersion, fetchFn);
  }
  return response;
}
function buildDiscoveryUrls(authorizationServerUrl) {
  const url2 = typeof authorizationServerUrl === "string" ? new URL(authorizationServerUrl) : authorizationServerUrl;
  const hasPath = url2.pathname !== "/";
  const urlsToTry = [];
  if (!hasPath) {
    urlsToTry.push({
      url: new URL("/.well-known/oauth-authorization-server", url2.origin),
      type: "oauth"
    });
    urlsToTry.push({
      url: new URL(`/.well-known/openid-configuration`, url2.origin),
      type: "oidc"
    });
    return urlsToTry;
  }
  let pathname = url2.pathname;
  if (pathname.endsWith("/")) {
    pathname = pathname.slice(0, -1);
  }
  urlsToTry.push({
    url: new URL(`/.well-known/oauth-authorization-server${pathname}`, url2.origin),
    type: "oauth"
  });
  urlsToTry.push({
    url: new URL(`/.well-known/openid-configuration${pathname}`, url2.origin),
    type: "oidc"
  });
  urlsToTry.push({
    url: new URL(`${pathname}/.well-known/openid-configuration`, url2.origin),
    type: "oidc"
  });
  return urlsToTry;
}
async function discoverAuthorizationServerMetadata(authorizationServerUrl, { fetchFn = fetch, protocolVersion = LATEST_PROTOCOL_VERSION } = {}) {
  const headers = {
    "MCP-Protocol-Version": protocolVersion,
    Accept: "application/json"
  };
  const urlsToTry = buildDiscoveryUrls(authorizationServerUrl);
  for (const { url: endpointUrl, type } of urlsToTry) {
    const response = await fetchWithCorsRetry(endpointUrl, headers, fetchFn);
    if (!response) {
      continue;
    }
    if (!response.ok) {
      if (response.status >= 400 && response.status < 500) {
        continue;
      }
      throw new Error(`HTTP ${response.status} trying to load ${type === "oauth" ? "OAuth" : "OpenID provider"} metadata from ${endpointUrl}`);
    }
    if (type === "oauth") {
      return OAuthMetadataSchema.parse(await response.json());
    } else {
      return OpenIdProviderDiscoveryMetadataSchema.parse(await response.json());
    }
  }
  return void 0;
}
async function startAuthorization(authorizationServerUrl, { metadata, clientInformation, redirectUrl, scope, state, resource }) {
  let authorizationUrl;
  if (metadata) {
    authorizationUrl = new URL(metadata.authorization_endpoint);
    if (!metadata.response_types_supported.includes(AUTHORIZATION_CODE_RESPONSE_TYPE)) {
      throw new Error(`Incompatible auth server: does not support response type ${AUTHORIZATION_CODE_RESPONSE_TYPE}`);
    }
    if (metadata.code_challenge_methods_supported && !metadata.code_challenge_methods_supported.includes(AUTHORIZATION_CODE_CHALLENGE_METHOD)) {
      throw new Error(`Incompatible auth server: does not support code challenge method ${AUTHORIZATION_CODE_CHALLENGE_METHOD}`);
    }
  } else {
    authorizationUrl = new URL("/authorize", authorizationServerUrl);
  }
  const challenge = await pkceChallenge();
  const codeVerifier = challenge.code_verifier;
  const codeChallenge = challenge.code_challenge;
  authorizationUrl.searchParams.set("response_type", AUTHORIZATION_CODE_RESPONSE_TYPE);
  authorizationUrl.searchParams.set("client_id", clientInformation.client_id);
  authorizationUrl.searchParams.set("code_challenge", codeChallenge);
  authorizationUrl.searchParams.set("code_challenge_method", AUTHORIZATION_CODE_CHALLENGE_METHOD);
  authorizationUrl.searchParams.set("redirect_uri", String(redirectUrl));
  if (state) {
    authorizationUrl.searchParams.set("state", state);
  }
  if (scope) {
    authorizationUrl.searchParams.set("scope", scope);
  }
  if (scope === null || scope === void 0 ? void 0 : scope.includes("offline_access")) {
    authorizationUrl.searchParams.append("prompt", "consent");
  }
  if (resource) {
    authorizationUrl.searchParams.set("resource", resource.href);
  }
  return { authorizationUrl, codeVerifier };
}
async function exchangeAuthorization(authorizationServerUrl, { metadata, clientInformation, authorizationCode, codeVerifier, redirectUri, resource, addClientAuthentication, fetchFn }) {
  var _a2;
  const grantType = "authorization_code";
  const tokenUrl = (metadata === null || metadata === void 0 ? void 0 : metadata.token_endpoint) ? new URL(metadata.token_endpoint) : new URL("/token", authorizationServerUrl);
  if ((metadata === null || metadata === void 0 ? void 0 : metadata.grant_types_supported) && !metadata.grant_types_supported.includes(grantType)) {
    throw new Error(`Incompatible auth server: does not support grant type ${grantType}`);
  }
  const headers = new Headers({
    "Content-Type": "application/x-www-form-urlencoded",
    Accept: "application/json"
  });
  const params = new URLSearchParams({
    grant_type: grantType,
    code: authorizationCode,
    code_verifier: codeVerifier,
    redirect_uri: String(redirectUri)
  });
  if (addClientAuthentication) {
    addClientAuthentication(headers, params, authorizationServerUrl, metadata);
  } else {
    const supportedMethods = (_a2 = metadata === null || metadata === void 0 ? void 0 : metadata.token_endpoint_auth_methods_supported) !== null && _a2 !== void 0 ? _a2 : [];
    const authMethod = selectClientAuthMethod(clientInformation, supportedMethods);
    applyClientAuthentication(authMethod, clientInformation, headers, params);
  }
  if (resource) {
    params.set("resource", resource.href);
  }
  const response = await (fetchFn !== null && fetchFn !== void 0 ? fetchFn : fetch)(tokenUrl, {
    method: "POST",
    headers,
    body: params
  });
  if (!response.ok) {
    throw await parseErrorResponse(response);
  }
  return OAuthTokensSchema.parse(await response.json());
}
async function refreshAuthorization(authorizationServerUrl, { metadata, clientInformation, refreshToken, resource, addClientAuthentication, fetchFn }) {
  var _a2;
  const grantType = "refresh_token";
  let tokenUrl;
  if (metadata) {
    tokenUrl = new URL(metadata.token_endpoint);
    if (metadata.grant_types_supported && !metadata.grant_types_supported.includes(grantType)) {
      throw new Error(`Incompatible auth server: does not support grant type ${grantType}`);
    }
  } else {
    tokenUrl = new URL("/token", authorizationServerUrl);
  }
  const headers = new Headers({
    "Content-Type": "application/x-www-form-urlencoded"
  });
  const params = new URLSearchParams({
    grant_type: grantType,
    refresh_token: refreshToken
  });
  if (addClientAuthentication) {
    addClientAuthentication(headers, params, authorizationServerUrl, metadata);
  } else {
    const supportedMethods = (_a2 = metadata === null || metadata === void 0 ? void 0 : metadata.token_endpoint_auth_methods_supported) !== null && _a2 !== void 0 ? _a2 : [];
    const authMethod = selectClientAuthMethod(clientInformation, supportedMethods);
    applyClientAuthentication(authMethod, clientInformation, headers, params);
  }
  if (resource) {
    params.set("resource", resource.href);
  }
  const response = await (fetchFn !== null && fetchFn !== void 0 ? fetchFn : fetch)(tokenUrl, {
    method: "POST",
    headers,
    body: params
  });
  if (!response.ok) {
    throw await parseErrorResponse(response);
  }
  return OAuthTokensSchema.parse({ refresh_token: refreshToken, ...await response.json() });
}
async function registerClient(authorizationServerUrl, { metadata, clientMetadata, fetchFn }) {
  let registrationUrl;
  if (metadata) {
    if (!metadata.registration_endpoint) {
      throw new Error("Incompatible auth server: does not support dynamic client registration");
    }
    registrationUrl = new URL(metadata.registration_endpoint);
  } else {
    registrationUrl = new URL("/register", authorizationServerUrl);
  }
  const response = await (fetchFn !== null && fetchFn !== void 0 ? fetchFn : fetch)(registrationUrl, {
    method: "POST",
    headers: {
      "Content-Type": "application/json"
    },
    body: JSON.stringify(clientMetadata)
  });
  if (!response.ok) {
    throw await parseErrorResponse(response);
  }
  return OAuthClientInformationFullSchema.parse(await response.json());
}

// node_modules/.pnpm/eventsource-parser@3.0.6/node_modules/eventsource-parser/dist/index.js
var ParseError = class extends Error {
  constructor(message, options) {
    super(message), this.name = "ParseError", this.type = options.type, this.field = options.field, this.value = options.value, this.line = options.line;
  }
};
function noop(_arg) {
}
function createParser(callbacks) {
  if (typeof callbacks == "function")
    throw new TypeError(
      "`callbacks` must be an object, got a function instead. Did you mean `{onEvent: fn}`?"
    );
  const { onEvent = noop, onError = noop, onRetry = noop, onComment } = callbacks;
  let incompleteLine = "", isFirstChunk = true, id, data = "", eventType = "";
  function feed(newChunk) {
    const chunk = isFirstChunk ? newChunk.replace(/^\xEF\xBB\xBF/, "") : newChunk, [complete, incomplete] = splitLines(`${incompleteLine}${chunk}`);
    for (const line of complete)
      parseLine(line);
    incompleteLine = incomplete, isFirstChunk = false;
  }
  function parseLine(line) {
    if (line === "") {
      dispatchEvent();
      return;
    }
    if (line.startsWith(":")) {
      onComment && onComment(line.slice(line.startsWith(": ") ? 2 : 1));
      return;
    }
    const fieldSeparatorIndex = line.indexOf(":");
    if (fieldSeparatorIndex !== -1) {
      const field = line.slice(0, fieldSeparatorIndex), offset = line[fieldSeparatorIndex + 1] === " " ? 2 : 1, value = line.slice(fieldSeparatorIndex + offset);
      processField(field, value, line);
      return;
    }
    processField(line, "", line);
  }
  function processField(field, value, line) {
    switch (field) {
      case "event":
        eventType = value;
        break;
      case "data":
        data = `${data}${value}
`;
        break;
      case "id":
        id = value.includes("\0") ? void 0 : value;
        break;
      case "retry":
        /^\d+$/.test(value) ? onRetry(parseInt(value, 10)) : onError(
          new ParseError(`Invalid \`retry\` value: "${value}"`, {
            type: "invalid-retry",
            value,
            line
          })
        );
        break;
      default:
        onError(
          new ParseError(
            `Unknown field "${field.length > 20 ? `${field.slice(0, 20)}\u2026` : field}"`,
            { type: "unknown-field", field, value, line }
          )
        );
        break;
    }
  }
  function dispatchEvent() {
    data.length > 0 && onEvent({
      id,
      event: eventType || void 0,
      // If the data buffer's last character is a U+000A LINE FEED (LF) character,
      // then remove the last character from the data buffer.
      data: data.endsWith(`
`) ? data.slice(0, -1) : data
    }), id = void 0, data = "", eventType = "";
  }
  function reset(options = {}) {
    incompleteLine && options.consume && parseLine(incompleteLine), isFirstChunk = true, id = void 0, data = "", eventType = "", incompleteLine = "";
  }
  return { feed, reset };
}
function splitLines(chunk) {
  const lines = [];
  let incompleteLine = "", searchIndex = 0;
  for (; searchIndex < chunk.length; ) {
    const crIndex = chunk.indexOf("\r", searchIndex), lfIndex = chunk.indexOf(`
`, searchIndex);
    let lineEnd = -1;
    if (crIndex !== -1 && lfIndex !== -1 ? lineEnd = Math.min(crIndex, lfIndex) : crIndex !== -1 ? crIndex === chunk.length - 1 ? lineEnd = -1 : lineEnd = crIndex : lfIndex !== -1 && (lineEnd = lfIndex), lineEnd === -1) {
      incompleteLine = chunk.slice(searchIndex);
      break;
    } else {
      const line = chunk.slice(searchIndex, lineEnd);
      lines.push(line), searchIndex = lineEnd + 1, chunk[searchIndex - 1] === "\r" && chunk[searchIndex] === `
` && searchIndex++;
    }
  }
  return [lines, incompleteLine];
}

// node_modules/.pnpm/eventsource@3.0.7/node_modules/eventsource/dist/index.js
var ErrorEvent = class extends Event {
  /**
   * Constructs a new `ErrorEvent` instance. This is typically not called directly,
   * but rather emitted by the `EventSource` object when an error occurs.
   *
   * @param type - The type of the event (should be "error")
   * @param errorEventInitDict - Optional properties to include in the error event
   */
  constructor(type, errorEventInitDict) {
    var _a2, _b;
    super(type), this.code = (_a2 = errorEventInitDict == null ? void 0 : errorEventInitDict.code) != null ? _a2 : void 0, this.message = (_b = errorEventInitDict == null ? void 0 : errorEventInitDict.message) != null ? _b : void 0;
  }
  /**
   * Node.js "hides" the `message` and `code` properties of the `ErrorEvent` instance,
   * when it is `console.log`'ed. This makes it harder to debug errors. To ease debugging,
   * we explicitly include the properties in the `inspect` method.
   *
   * This is automatically called by Node.js when you `console.log` an instance of this class.
   *
   * @param _depth - The current depth
   * @param options - The options passed to `util.inspect`
   * @param inspect - The inspect function to use (prevents having to import it from `util`)
   * @returns A string representation of the error
   */
  [Symbol.for("nodejs.util.inspect.custom")](_depth, options, inspect) {
    return inspect(inspectableError(this), options);
  }
  /**
   * Deno "hides" the `message` and `code` properties of the `ErrorEvent` instance,
   * when it is `console.log`'ed. This makes it harder to debug errors. To ease debugging,
   * we explicitly include the properties in the `inspect` method.
   *
   * This is automatically called by Deno when you `console.log` an instance of this class.
   *
   * @param inspect - The inspect function to use (prevents having to import it from `util`)
   * @param options - The options passed to `Deno.inspect`
   * @returns A string representation of the error
   */
  [Symbol.for("Deno.customInspect")](inspect, options) {
    return inspect(inspectableError(this), options);
  }
};
function syntaxError(message) {
  const DomException = globalThis.DOMException;
  return typeof DomException == "function" ? new DomException(message, "SyntaxError") : new SyntaxError(message);
}
function flattenError2(err) {
  return err instanceof Error ? "errors" in err && Array.isArray(err.errors) ? err.errors.map(flattenError2).join(", ") : "cause" in err && err.cause instanceof Error ? `${err}: ${flattenError2(err.cause)}` : err.message : `${err}`;
}
function inspectableError(err) {
  return {
    type: err.type,
    message: err.message,
    code: err.code,
    defaultPrevented: err.defaultPrevented,
    cancelable: err.cancelable,
    timeStamp: err.timeStamp
  };
}
var __typeError = (msg) => {
  throw TypeError(msg);
};
var __accessCheck = (obj, member, msg) => member.has(obj) || __typeError("Cannot " + msg);
var __privateGet = (obj, member, getter) => (__accessCheck(obj, member, "read from private field"), getter ? getter.call(obj) : member.get(obj));
var __privateAdd = (obj, member, value) => member.has(obj) ? __typeError("Cannot add the same private member more than once") : member instanceof WeakSet ? member.add(obj) : member.set(obj, value);
var __privateSet = (obj, member, value, setter) => (__accessCheck(obj, member, "write to private field"), member.set(obj, value), value);
var __privateMethod = (obj, member, method) => (__accessCheck(obj, member, "access private method"), method);
var _readyState;
var _url2;
var _redirectUrl;
var _withCredentials;
var _fetch;
var _reconnectInterval;
var _reconnectTimer;
var _lastEventId;
var _controller;
var _parser;
var _onError;
var _onMessage;
var _onOpen;
var _EventSource_instances;
var connect_fn;
var _onFetchResponse;
var _onFetchError;
var getRequestOptions_fn;
var _onEvent;
var _onRetryChange;
var failConnection_fn;
var scheduleReconnect_fn;
var _reconnect;
var EventSource = class extends EventTarget {
  constructor(url2, eventSourceInitDict) {
    var _a2, _b;
    super(), __privateAdd(this, _EventSource_instances), this.CONNECTING = 0, this.OPEN = 1, this.CLOSED = 2, __privateAdd(this, _readyState), __privateAdd(this, _url2), __privateAdd(this, _redirectUrl), __privateAdd(this, _withCredentials), __privateAdd(this, _fetch), __privateAdd(this, _reconnectInterval), __privateAdd(this, _reconnectTimer), __privateAdd(this, _lastEventId, null), __privateAdd(this, _controller), __privateAdd(this, _parser), __privateAdd(this, _onError, null), __privateAdd(this, _onMessage, null), __privateAdd(this, _onOpen, null), __privateAdd(this, _onFetchResponse, async (response) => {
      var _a22;
      __privateGet(this, _parser).reset();
      const { body, redirected, status, headers } = response;
      if (status === 204) {
        __privateMethod(this, _EventSource_instances, failConnection_fn).call(this, "Server sent HTTP 204, not reconnecting", 204), this.close();
        return;
      }
      if (redirected ? __privateSet(this, _redirectUrl, new URL(response.url)) : __privateSet(this, _redirectUrl, void 0), status !== 200) {
        __privateMethod(this, _EventSource_instances, failConnection_fn).call(this, `Non-200 status code (${status})`, status);
        return;
      }
      if (!(headers.get("content-type") || "").startsWith("text/event-stream")) {
        __privateMethod(this, _EventSource_instances, failConnection_fn).call(this, 'Invalid content type, expected "text/event-stream"', status);
        return;
      }
      if (__privateGet(this, _readyState) === this.CLOSED)
        return;
      __privateSet(this, _readyState, this.OPEN);
      const openEvent = new Event("open");
      if ((_a22 = __privateGet(this, _onOpen)) == null || _a22.call(this, openEvent), this.dispatchEvent(openEvent), typeof body != "object" || !body || !("getReader" in body)) {
        __privateMethod(this, _EventSource_instances, failConnection_fn).call(this, "Invalid response body, expected a web ReadableStream", status), this.close();
        return;
      }
      const decoder = new TextDecoder(), reader = body.getReader();
      let open2 = true;
      do {
        const { done, value } = await reader.read();
        value && __privateGet(this, _parser).feed(decoder.decode(value, { stream: !done })), done && (open2 = false, __privateGet(this, _parser).reset(), __privateMethod(this, _EventSource_instances, scheduleReconnect_fn).call(this));
      } while (open2);
    }), __privateAdd(this, _onFetchError, (err) => {
      __privateSet(this, _controller, void 0), !(err.name === "AbortError" || err.type === "aborted") && __privateMethod(this, _EventSource_instances, scheduleReconnect_fn).call(this, flattenError2(err));
    }), __privateAdd(this, _onEvent, (event) => {
      typeof event.id == "string" && __privateSet(this, _lastEventId, event.id);
      const messageEvent = new MessageEvent(event.event || "message", {
        data: event.data,
        origin: __privateGet(this, _redirectUrl) ? __privateGet(this, _redirectUrl).origin : __privateGet(this, _url2).origin,
        lastEventId: event.id || ""
      });
      __privateGet(this, _onMessage) && (!event.event || event.event === "message") && __privateGet(this, _onMessage).call(this, messageEvent), this.dispatchEvent(messageEvent);
    }), __privateAdd(this, _onRetryChange, (value) => {
      __privateSet(this, _reconnectInterval, value);
    }), __privateAdd(this, _reconnect, () => {
      __privateSet(this, _reconnectTimer, void 0), __privateGet(this, _readyState) === this.CONNECTING && __privateMethod(this, _EventSource_instances, connect_fn).call(this);
    });
    try {
      if (url2 instanceof URL)
        __privateSet(this, _url2, url2);
      else if (typeof url2 == "string")
        __privateSet(this, _url2, new URL(url2, getBaseURL()));
      else
        throw new Error("Invalid URL");
    } catch {
      throw syntaxError("An invalid or illegal string was specified");
    }
    __privateSet(this, _parser, createParser({
      onEvent: __privateGet(this, _onEvent),
      onRetry: __privateGet(this, _onRetryChange)
    })), __privateSet(this, _readyState, this.CONNECTING), __privateSet(this, _reconnectInterval, 3e3), __privateSet(this, _fetch, (_a2 = eventSourceInitDict == null ? void 0 : eventSourceInitDict.fetch) != null ? _a2 : globalThis.fetch), __privateSet(this, _withCredentials, (_b = eventSourceInitDict == null ? void 0 : eventSourceInitDict.withCredentials) != null ? _b : false), __privateMethod(this, _EventSource_instances, connect_fn).call(this);
  }
  /**
   * Returns the state of this EventSource object's connection. It can have the values described below.
   *
   * [MDN Reference](https://developer.mozilla.org/docs/Web/API/EventSource/readyState)
   *
   * Note: typed as `number` instead of `0 | 1 | 2` for compatibility with the `EventSource` interface,
   * defined in the TypeScript `dom` library.
   *
   * @public
   */
  get readyState() {
    return __privateGet(this, _readyState);
  }
  /**
   * Returns the URL providing the event stream.
   *
   * [MDN Reference](https://developer.mozilla.org/docs/Web/API/EventSource/url)
   *
   * @public
   */
  get url() {
    return __privateGet(this, _url2).href;
  }
  /**
   * Returns true if the credentials mode for connection requests to the URL providing the event stream is set to "include", and false otherwise.
   *
   * [MDN Reference](https://developer.mozilla.org/docs/Web/API/EventSource/withCredentials)
   */
  get withCredentials() {
    return __privateGet(this, _withCredentials);
  }
  /** [MDN Reference](https://developer.mozilla.org/docs/Web/API/EventSource/error_event) */
  get onerror() {
    return __privateGet(this, _onError);
  }
  set onerror(value) {
    __privateSet(this, _onError, value);
  }
  /** [MDN Reference](https://developer.mozilla.org/docs/Web/API/EventSource/message_event) */
  get onmessage() {
    return __privateGet(this, _onMessage);
  }
  set onmessage(value) {
    __privateSet(this, _onMessage, value);
  }
  /** [MDN Reference](https://developer.mozilla.org/docs/Web/API/EventSource/open_event) */
  get onopen() {
    return __privateGet(this, _onOpen);
  }
  set onopen(value) {
    __privateSet(this, _onOpen, value);
  }
  addEventListener(type, listener, options) {
    const listen = listener;
    super.addEventListener(type, listen, options);
  }
  removeEventListener(type, listener, options) {
    const listen = listener;
    super.removeEventListener(type, listen, options);
  }
  /**
   * Aborts any instances of the fetch algorithm started for this EventSource object, and sets the readyState attribute to CLOSED.
   *
   * [MDN Reference](https://developer.mozilla.org/docs/Web/API/EventSource/close)
   *
   * @public
   */
  close() {
    __privateGet(this, _reconnectTimer) && clearTimeout(__privateGet(this, _reconnectTimer)), __privateGet(this, _readyState) !== this.CLOSED && (__privateGet(this, _controller) && __privateGet(this, _controller).abort(), __privateSet(this, _readyState, this.CLOSED), __privateSet(this, _controller, void 0));
  }
};
_readyState = /* @__PURE__ */ new WeakMap(), _url2 = /* @__PURE__ */ new WeakMap(), _redirectUrl = /* @__PURE__ */ new WeakMap(), _withCredentials = /* @__PURE__ */ new WeakMap(), _fetch = /* @__PURE__ */ new WeakMap(), _reconnectInterval = /* @__PURE__ */ new WeakMap(), _reconnectTimer = /* @__PURE__ */ new WeakMap(), _lastEventId = /* @__PURE__ */ new WeakMap(), _controller = /* @__PURE__ */ new WeakMap(), _parser = /* @__PURE__ */ new WeakMap(), _onError = /* @__PURE__ */ new WeakMap(), _onMessage = /* @__PURE__ */ new WeakMap(), _onOpen = /* @__PURE__ */ new WeakMap(), _EventSource_instances = /* @__PURE__ */ new WeakSet(), /**
* Connect to the given URL and start receiving events
*
* @internal
*/
connect_fn = function() {
  __privateSet(this, _readyState, this.CONNECTING), __privateSet(this, _controller, new AbortController()), __privateGet(this, _fetch)(__privateGet(this, _url2), __privateMethod(this, _EventSource_instances, getRequestOptions_fn).call(this)).then(__privateGet(this, _onFetchResponse)).catch(__privateGet(this, _onFetchError));
}, _onFetchResponse = /* @__PURE__ */ new WeakMap(), _onFetchError = /* @__PURE__ */ new WeakMap(), /**
* Get request options for the `fetch()` request
*
* @returns The request options
* @internal
*/
getRequestOptions_fn = function() {
  var _a2;
  const init = {
    // [spec] Let `corsAttributeState` be `Anonymous`…
    // [spec] …will have their mode set to "cors"…
    mode: "cors",
    redirect: "follow",
    headers: { Accept: "text/event-stream", ...__privateGet(this, _lastEventId) ? { "Last-Event-ID": __privateGet(this, _lastEventId) } : void 0 },
    cache: "no-store",
    signal: (_a2 = __privateGet(this, _controller)) == null ? void 0 : _a2.signal
  };
  return "window" in globalThis && (init.credentials = this.withCredentials ? "include" : "same-origin"), init;
}, _onEvent = /* @__PURE__ */ new WeakMap(), _onRetryChange = /* @__PURE__ */ new WeakMap(), /**
* Handles the process referred to in the EventSource specification as "failing a connection".
*
* @param error - The error causing the connection to fail
* @param code - The HTTP status code, if available
* @internal
*/
failConnection_fn = function(message, code) {
  var _a2;
  __privateGet(this, _readyState) !== this.CLOSED && __privateSet(this, _readyState, this.CLOSED);
  const errorEvent = new ErrorEvent("error", { code, message });
  (_a2 = __privateGet(this, _onError)) == null || _a2.call(this, errorEvent), this.dispatchEvent(errorEvent);
}, /**
* Schedules a reconnection attempt against the EventSource endpoint.
*
* @param message - The error causing the connection to fail
* @param code - The HTTP status code, if available
* @internal
*/
scheduleReconnect_fn = function(message, code) {
  var _a2;
  if (__privateGet(this, _readyState) === this.CLOSED)
    return;
  __privateSet(this, _readyState, this.CONNECTING);
  const errorEvent = new ErrorEvent("error", { code, message });
  (_a2 = __privateGet(this, _onError)) == null || _a2.call(this, errorEvent), this.dispatchEvent(errorEvent), __privateSet(this, _reconnectTimer, setTimeout(__privateGet(this, _reconnect), __privateGet(this, _reconnectInterval)));
}, _reconnect = /* @__PURE__ */ new WeakMap(), /**
* ReadyState representing an EventSource currently trying to connect
*
* @public
*/
EventSource.CONNECTING = 0, /**
* ReadyState representing an EventSource connection that is open (eg connected)
*
* @public
*/
EventSource.OPEN = 1, /**
* ReadyState representing an EventSource connection that is closed (eg disconnected)
*
* @public
*/
EventSource.CLOSED = 2;
function getBaseURL() {
  const doc = "document" in globalThis ? globalThis.document : void 0;
  return doc && typeof doc == "object" && "baseURI" in doc && typeof doc.baseURI == "string" ? doc.baseURI : void 0;
}

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/shared/transport.js
function normalizeHeaders(headers) {
  if (!headers)
    return {};
  if (headers instanceof Headers) {
    return Object.fromEntries(headers.entries());
  }
  if (Array.isArray(headers)) {
    return Object.fromEntries(headers);
  }
  return { ...headers };
}
function createFetchWithInit(baseFetch = fetch, baseInit) {
  if (!baseInit) {
    return baseFetch;
  }
  return async (url2, init) => {
    const mergedInit = {
      ...baseInit,
      ...init,
      // Headers need special handling - merge instead of replace
      headers: (init === null || init === void 0 ? void 0 : init.headers) ? { ...normalizeHeaders(baseInit.headers), ...normalizeHeaders(init.headers) } : baseInit.headers
    };
    return baseFetch(url2, mergedInit);
  };
}

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/client/sse.js
var SseError = class extends Error {
  constructor(code, message, event) {
    super(`SSE error: ${message}`);
    this.code = code;
    this.event = event;
  }
};
var SSEClientTransport = class {
  constructor(url2, opts) {
    this._url = url2;
    this._resourceMetadataUrl = void 0;
    this._scope = void 0;
    this._eventSourceInit = opts === null || opts === void 0 ? void 0 : opts.eventSourceInit;
    this._requestInit = opts === null || opts === void 0 ? void 0 : opts.requestInit;
    this._authProvider = opts === null || opts === void 0 ? void 0 : opts.authProvider;
    this._fetch = opts === null || opts === void 0 ? void 0 : opts.fetch;
    this._fetchWithInit = createFetchWithInit(opts === null || opts === void 0 ? void 0 : opts.fetch, opts === null || opts === void 0 ? void 0 : opts.requestInit);
  }
  async _authThenStart() {
    var _a2;
    if (!this._authProvider) {
      throw new UnauthorizedError("No auth provider");
    }
    let result;
    try {
      result = await auth(this._authProvider, {
        serverUrl: this._url,
        resourceMetadataUrl: this._resourceMetadataUrl,
        scope: this._scope,
        fetchFn: this._fetchWithInit
      });
    } catch (error2) {
      (_a2 = this.onerror) === null || _a2 === void 0 ? void 0 : _a2.call(this, error2);
      throw error2;
    }
    if (result !== "AUTHORIZED") {
      throw new UnauthorizedError();
    }
    return await this._startOrAuth();
  }
  async _commonHeaders() {
    var _a2;
    const headers = {};
    if (this._authProvider) {
      const tokens = await this._authProvider.tokens();
      if (tokens) {
        headers["Authorization"] = `Bearer ${tokens.access_token}`;
      }
    }
    if (this._protocolVersion) {
      headers["mcp-protocol-version"] = this._protocolVersion;
    }
    return new Headers({ ...headers, ...(_a2 = this._requestInit) === null || _a2 === void 0 ? void 0 : _a2.headers });
  }
  _startOrAuth() {
    var _a2, _b, _c;
    const fetchImpl = (_c = (_b = (_a2 = this === null || this === void 0 ? void 0 : this._eventSourceInit) === null || _a2 === void 0 ? void 0 : _a2.fetch) !== null && _b !== void 0 ? _b : this._fetch) !== null && _c !== void 0 ? _c : fetch;
    return new Promise((resolve, reject) => {
      this._eventSource = new EventSource(this._url.href, {
        ...this._eventSourceInit,
        fetch: async (url2, init) => {
          const headers = await this._commonHeaders();
          headers.set("Accept", "text/event-stream");
          const response = await fetchImpl(url2, {
            ...init,
            headers
          });
          if (response.status === 401 && response.headers.has("www-authenticate")) {
            const { resourceMetadataUrl, scope } = extractWWWAuthenticateParams(response);
            this._resourceMetadataUrl = resourceMetadataUrl;
            this._scope = scope;
          }
          return response;
        }
      });
      this._abortController = new AbortController();
      this._eventSource.onerror = (event) => {
        var _a3;
        if (event.code === 401 && this._authProvider) {
          this._authThenStart().then(resolve, reject);
          return;
        }
        const error2 = new SseError(event.code, event.message, event);
        reject(error2);
        (_a3 = this.onerror) === null || _a3 === void 0 ? void 0 : _a3.call(this, error2);
      };
      this._eventSource.onopen = () => {
      };
      this._eventSource.addEventListener("endpoint", (event) => {
        var _a3;
        const messageEvent = event;
        try {
          this._endpoint = new URL(messageEvent.data, this._url);
          if (this._endpoint.origin !== this._url.origin) {
            throw new Error(`Endpoint origin does not match connection origin: ${this._endpoint.origin}`);
          }
        } catch (error2) {
          reject(error2);
          (_a3 = this.onerror) === null || _a3 === void 0 ? void 0 : _a3.call(this, error2);
          void this.close();
          return;
        }
        resolve();
      });
      this._eventSource.onmessage = (event) => {
        var _a3, _b2;
        const messageEvent = event;
        let message;
        try {
          message = JSONRPCMessageSchema.parse(JSON.parse(messageEvent.data));
        } catch (error2) {
          (_a3 = this.onerror) === null || _a3 === void 0 ? void 0 : _a3.call(this, error2);
          return;
        }
        (_b2 = this.onmessage) === null || _b2 === void 0 ? void 0 : _b2.call(this, message);
      };
    });
  }
  async start() {
    if (this._eventSource) {
      throw new Error("SSEClientTransport already started! If using Client class, note that connect() calls start() automatically.");
    }
    return await this._startOrAuth();
  }
  /**
   * Call this method after the user has finished authorizing via their user agent and is redirected back to the MCP client application. This will exchange the authorization code for an access token, enabling the next connection attempt to successfully auth.
   */
  async finishAuth(authorizationCode) {
    if (!this._authProvider) {
      throw new UnauthorizedError("No auth provider");
    }
    const result = await auth(this._authProvider, {
      serverUrl: this._url,
      authorizationCode,
      resourceMetadataUrl: this._resourceMetadataUrl,
      scope: this._scope,
      fetchFn: this._fetchWithInit
    });
    if (result !== "AUTHORIZED") {
      throw new UnauthorizedError("Failed to authorize");
    }
  }
  async close() {
    var _a2, _b, _c;
    (_a2 = this._abortController) === null || _a2 === void 0 ? void 0 : _a2.abort();
    (_b = this._eventSource) === null || _b === void 0 ? void 0 : _b.close();
    (_c = this.onclose) === null || _c === void 0 ? void 0 : _c.call(this);
  }
  async send(message) {
    var _a2, _b, _c;
    if (!this._endpoint) {
      throw new Error("Not connected");
    }
    try {
      const headers = await this._commonHeaders();
      headers.set("content-type", "application/json");
      const init = {
        ...this._requestInit,
        method: "POST",
        headers,
        body: JSON.stringify(message),
        signal: (_a2 = this._abortController) === null || _a2 === void 0 ? void 0 : _a2.signal
      };
      const response = await ((_b = this._fetch) !== null && _b !== void 0 ? _b : fetch)(this._endpoint, init);
      if (!response.ok) {
        if (response.status === 401 && this._authProvider) {
          const { resourceMetadataUrl, scope } = extractWWWAuthenticateParams(response);
          this._resourceMetadataUrl = resourceMetadataUrl;
          this._scope = scope;
          const result = await auth(this._authProvider, {
            serverUrl: this._url,
            resourceMetadataUrl: this._resourceMetadataUrl,
            scope: this._scope,
            fetchFn: this._fetchWithInit
          });
          if (result !== "AUTHORIZED") {
            throw new UnauthorizedError();
          }
          return this.send(message);
        }
        const text = await response.text().catch(() => null);
        throw new Error(`Error POSTing to endpoint (HTTP ${response.status}): ${text}`);
      }
    } catch (error2) {
      (_c = this.onerror) === null || _c === void 0 ? void 0 : _c.call(this, error2);
      throw error2;
    }
  }
  setProtocolVersion(version3) {
    this._protocolVersion = version3;
  }
};

// node_modules/.pnpm/eventsource-parser@3.0.6/node_modules/eventsource-parser/dist/stream.js
var EventSourceParserStream = class extends TransformStream {
  constructor({ onError, onRetry, onComment } = {}) {
    let parser;
    super({
      start(controller) {
        parser = createParser({
          onEvent: (event) => {
            controller.enqueue(event);
          },
          onError(error2) {
            onError === "terminate" ? controller.error(error2) : typeof onError == "function" && onError(error2);
          },
          onRetry,
          onComment
        });
      },
      transform(chunk) {
        parser.feed(chunk);
      }
    });
  }
};

// node_modules/.pnpm/@modelcontextprotocol+sdk@1.23.0_zod@4.1.13/node_modules/@modelcontextprotocol/sdk/dist/esm/client/streamableHttp.js
var DEFAULT_STREAMABLE_HTTP_RECONNECTION_OPTIONS = {
  initialReconnectionDelay: 1e3,
  maxReconnectionDelay: 3e4,
  reconnectionDelayGrowFactor: 1.5,
  maxRetries: 2
};
var StreamableHTTPError = class extends Error {
  constructor(code, message) {
    super(`Streamable HTTP error: ${message}`);
    this.code = code;
  }
};
var StreamableHTTPClientTransport = class {
  constructor(url2, opts) {
    var _a2;
    this._hasCompletedAuthFlow = false;
    this._url = url2;
    this._resourceMetadataUrl = void 0;
    this._scope = void 0;
    this._requestInit = opts === null || opts === void 0 ? void 0 : opts.requestInit;
    this._authProvider = opts === null || opts === void 0 ? void 0 : opts.authProvider;
    this._fetch = opts === null || opts === void 0 ? void 0 : opts.fetch;
    this._fetchWithInit = createFetchWithInit(opts === null || opts === void 0 ? void 0 : opts.fetch, opts === null || opts === void 0 ? void 0 : opts.requestInit);
    this._sessionId = opts === null || opts === void 0 ? void 0 : opts.sessionId;
    this._reconnectionOptions = (_a2 = opts === null || opts === void 0 ? void 0 : opts.reconnectionOptions) !== null && _a2 !== void 0 ? _a2 : DEFAULT_STREAMABLE_HTTP_RECONNECTION_OPTIONS;
  }
  async _authThenStart() {
    var _a2;
    if (!this._authProvider) {
      throw new UnauthorizedError("No auth provider");
    }
    let result;
    try {
      result = await auth(this._authProvider, {
        serverUrl: this._url,
        resourceMetadataUrl: this._resourceMetadataUrl,
        scope: this._scope,
        fetchFn: this._fetchWithInit
      });
    } catch (error2) {
      (_a2 = this.onerror) === null || _a2 === void 0 ? void 0 : _a2.call(this, error2);
      throw error2;
    }
    if (result !== "AUTHORIZED") {
      throw new UnauthorizedError();
    }
    return await this._startOrAuthSse({ resumptionToken: void 0 });
  }
  async _commonHeaders() {
    var _a2;
    const headers = {};
    if (this._authProvider) {
      const tokens = await this._authProvider.tokens();
      if (tokens) {
        headers["Authorization"] = `Bearer ${tokens.access_token}`;
      }
    }
    if (this._sessionId) {
      headers["mcp-session-id"] = this._sessionId;
    }
    if (this._protocolVersion) {
      headers["mcp-protocol-version"] = this._protocolVersion;
    }
    const extraHeaders = normalizeHeaders((_a2 = this._requestInit) === null || _a2 === void 0 ? void 0 : _a2.headers);
    return new Headers({
      ...headers,
      ...extraHeaders
    });
  }
  async _startOrAuthSse(options) {
    var _a2, _b, _c;
    const { resumptionToken } = options;
    try {
      const headers = await this._commonHeaders();
      headers.set("Accept", "text/event-stream");
      if (resumptionToken) {
        headers.set("last-event-id", resumptionToken);
      }
      const response = await ((_a2 = this._fetch) !== null && _a2 !== void 0 ? _a2 : fetch)(this._url, {
        method: "GET",
        headers,
        signal: (_b = this._abortController) === null || _b === void 0 ? void 0 : _b.signal
      });
      if (!response.ok) {
        if (response.status === 401 && this._authProvider) {
          return await this._authThenStart();
        }
        if (response.status === 405) {
          return;
        }
        throw new StreamableHTTPError(response.status, `Failed to open SSE stream: ${response.statusText}`);
      }
      this._handleSseStream(response.body, options, true);
    } catch (error2) {
      (_c = this.onerror) === null || _c === void 0 ? void 0 : _c.call(this, error2);
      throw error2;
    }
  }
  /**
   * Calculates the next reconnection delay using  backoff algorithm
   *
   * @param attempt Current reconnection attempt count for the specific stream
   * @returns Time to wait in milliseconds before next reconnection attempt
   */
  _getNextReconnectionDelay(attempt) {
    if (this._serverRetryMs !== void 0) {
      return this._serverRetryMs;
    }
    const initialDelay = this._reconnectionOptions.initialReconnectionDelay;
    const growFactor = this._reconnectionOptions.reconnectionDelayGrowFactor;
    const maxDelay = this._reconnectionOptions.maxReconnectionDelay;
    return Math.min(initialDelay * Math.pow(growFactor, attempt), maxDelay);
  }
  /**
   * Schedule a reconnection attempt using server-provided retry interval or backoff
   *
   * @param lastEventId The ID of the last received event for resumability
   * @param attemptCount Current reconnection attempt count for this specific stream
   */
  _scheduleReconnection(options, attemptCount = 0) {
    var _a2;
    const maxRetries = this._reconnectionOptions.maxRetries;
    if (maxRetries > 0 && attemptCount >= maxRetries) {
      (_a2 = this.onerror) === null || _a2 === void 0 ? void 0 : _a2.call(this, new Error(`Maximum reconnection attempts (${maxRetries}) exceeded.`));
      return;
    }
    const delay = this._getNextReconnectionDelay(attemptCount);
    setTimeout(() => {
      this._startOrAuthSse(options).catch((error2) => {
        var _a3;
        (_a3 = this.onerror) === null || _a3 === void 0 ? void 0 : _a3.call(this, new Error(`Failed to reconnect SSE stream: ${error2 instanceof Error ? error2.message : String(error2)}`));
        this._scheduleReconnection(options, attemptCount + 1);
      });
    }, delay);
  }
  _handleSseStream(stream, options, isReconnectable) {
    if (!stream) {
      return;
    }
    const { onresumptiontoken, replayMessageId } = options;
    let lastEventId;
    let hasPrimingEvent = false;
    const processStream = async () => {
      var _a2, _b, _c, _d;
      try {
        const reader = stream.pipeThrough(new TextDecoderStream()).pipeThrough(new EventSourceParserStream({
          onRetry: (retryMs) => {
            this._serverRetryMs = retryMs;
          }
        })).getReader();
        while (true) {
          const { value: event, done } = await reader.read();
          if (done) {
            break;
          }
          if (event.id) {
            lastEventId = event.id;
            hasPrimingEvent = true;
            onresumptiontoken === null || onresumptiontoken === void 0 ? void 0 : onresumptiontoken(event.id);
          }
          if (!event.event || event.event === "message") {
            try {
              const message = JSONRPCMessageSchema.parse(JSON.parse(event.data));
              if (replayMessageId !== void 0 && isJSONRPCResponse(message)) {
                message.id = replayMessageId;
              }
              (_a2 = this.onmessage) === null || _a2 === void 0 ? void 0 : _a2.call(this, message);
            } catch (error2) {
              (_b = this.onerror) === null || _b === void 0 ? void 0 : _b.call(this, error2);
            }
          }
        }
        const canResume = isReconnectable || hasPrimingEvent;
        if (canResume && this._abortController && !this._abortController.signal.aborted) {
          this._scheduleReconnection({
            resumptionToken: lastEventId,
            onresumptiontoken,
            replayMessageId
          }, 0);
        }
      } catch (error2) {
        (_c = this.onerror) === null || _c === void 0 ? void 0 : _c.call(this, new Error(`SSE stream disconnected: ${error2}`));
        const canResume = isReconnectable || hasPrimingEvent;
        if (canResume && this._abortController && !this._abortController.signal.aborted) {
          try {
            this._scheduleReconnection({
              resumptionToken: lastEventId,
              onresumptiontoken,
              replayMessageId
            }, 0);
          } catch (error3) {
            (_d = this.onerror) === null || _d === void 0 ? void 0 : _d.call(this, new Error(`Failed to reconnect: ${error3 instanceof Error ? error3.message : String(error3)}`));
          }
        }
      }
    };
    processStream();
  }
  async start() {
    if (this._abortController) {
      throw new Error("StreamableHTTPClientTransport already started! If using Client class, note that connect() calls start() automatically.");
    }
    this._abortController = new AbortController();
  }
  /**
   * Call this method after the user has finished authorizing via their user agent and is redirected back to the MCP client application. This will exchange the authorization code for an access token, enabling the next connection attempt to successfully auth.
   */
  async finishAuth(authorizationCode) {
    if (!this._authProvider) {
      throw new UnauthorizedError("No auth provider");
    }
    const result = await auth(this._authProvider, {
      serverUrl: this._url,
      authorizationCode,
      resourceMetadataUrl: this._resourceMetadataUrl,
      scope: this._scope,
      fetchFn: this._fetchWithInit
    });
    if (result !== "AUTHORIZED") {
      throw new UnauthorizedError("Failed to authorize");
    }
  }
  async close() {
    var _a2, _b;
    (_a2 = this._abortController) === null || _a2 === void 0 ? void 0 : _a2.abort();
    (_b = this.onclose) === null || _b === void 0 ? void 0 : _b.call(this);
  }
  async send(message, options) {
    var _a2, _b, _c, _d;
    try {
      const { resumptionToken, onresumptiontoken } = options || {};
      if (resumptionToken) {
        this._startOrAuthSse({ resumptionToken, replayMessageId: isJSONRPCRequest(message) ? message.id : void 0 }).catch((err) => {
          var _a3;
          return (_a3 = this.onerror) === null || _a3 === void 0 ? void 0 : _a3.call(this, err);
        });
        return;
      }
      const headers = await this._commonHeaders();
      headers.set("content-type", "application/json");
      headers.set("accept", "application/json, text/event-stream");
      const init = {
        ...this._requestInit,
        method: "POST",
        headers,
        body: JSON.stringify(message),
        signal: (_a2 = this._abortController) === null || _a2 === void 0 ? void 0 : _a2.signal
      };
      const response = await ((_b = this._fetch) !== null && _b !== void 0 ? _b : fetch)(this._url, init);
      const sessionId = response.headers.get("mcp-session-id");
      if (sessionId) {
        this._sessionId = sessionId;
      }
      if (!response.ok) {
        if (response.status === 401 && this._authProvider) {
          if (this._hasCompletedAuthFlow) {
            throw new StreamableHTTPError(401, "Server returned 401 after successful authentication");
          }
          const { resourceMetadataUrl, scope } = extractWWWAuthenticateParams(response);
          this._resourceMetadataUrl = resourceMetadataUrl;
          this._scope = scope;
          const result = await auth(this._authProvider, {
            serverUrl: this._url,
            resourceMetadataUrl: this._resourceMetadataUrl,
            scope: this._scope,
            fetchFn: this._fetchWithInit
          });
          if (result !== "AUTHORIZED") {
            throw new UnauthorizedError();
          }
          this._hasCompletedAuthFlow = true;
          return this.send(message);
        }
        if (response.status === 403 && this._authProvider) {
          const { resourceMetadataUrl, scope, error: error2 } = extractWWWAuthenticateParams(response);
          if (error2 === "insufficient_scope") {
            const wwwAuthHeader = response.headers.get("WWW-Authenticate");
            if (this._lastUpscopingHeader === wwwAuthHeader) {
              throw new StreamableHTTPError(403, "Server returned 403 after trying upscoping");
            }
            if (scope) {
              this._scope = scope;
            }
            if (resourceMetadataUrl) {
              this._resourceMetadataUrl = resourceMetadataUrl;
            }
            this._lastUpscopingHeader = wwwAuthHeader !== null && wwwAuthHeader !== void 0 ? wwwAuthHeader : void 0;
            const result = await auth(this._authProvider, {
              serverUrl: this._url,
              resourceMetadataUrl: this._resourceMetadataUrl,
              scope: this._scope,
              fetchFn: this._fetch
            });
            if (result !== "AUTHORIZED") {
              throw new UnauthorizedError();
            }
            return this.send(message);
          }
        }
        const text = await response.text().catch(() => null);
        throw new Error(`Error POSTing to endpoint (HTTP ${response.status}): ${text}`);
      }
      this._hasCompletedAuthFlow = false;
      this._lastUpscopingHeader = void 0;
      if (response.status === 202) {
        if (isInitializedNotification(message)) {
          this._startOrAuthSse({ resumptionToken: void 0 }).catch((err) => {
            var _a3;
            return (_a3 = this.onerror) === null || _a3 === void 0 ? void 0 : _a3.call(this, err);
          });
        }
        return;
      }
      const messages = Array.isArray(message) ? message : [message];
      const hasRequests = messages.filter((msg) => "method" in msg && "id" in msg && msg.id !== void 0).length > 0;
      const contentType = response.headers.get("content-type");
      if (hasRequests) {
        if (contentType === null || contentType === void 0 ? void 0 : contentType.includes("text/event-stream")) {
          this._handleSseStream(response.body, { onresumptiontoken }, false);
        } else if (contentType === null || contentType === void 0 ? void 0 : contentType.includes("application/json")) {
          const data = await response.json();
          const responseMessages = Array.isArray(data) ? data.map((msg) => JSONRPCMessageSchema.parse(msg)) : [JSONRPCMessageSchema.parse(data)];
          for (const msg of responseMessages) {
            (_c = this.onmessage) === null || _c === void 0 ? void 0 : _c.call(this, msg);
          }
        } else {
          throw new StreamableHTTPError(-1, `Unexpected content type: ${contentType}`);
        }
      }
    } catch (error2) {
      (_d = this.onerror) === null || _d === void 0 ? void 0 : _d.call(this, error2);
      throw error2;
    }
  }
  get sessionId() {
    return this._sessionId;
  }
  /**
   * Terminates the current session by sending a DELETE request to the server.
   *
   * Clients that no longer need a particular session
   * (e.g., because the user is leaving the client application) SHOULD send an
   * HTTP DELETE to the MCP endpoint with the Mcp-Session-Id header to explicitly
   * terminate the session.
   *
   * The server MAY respond with HTTP 405 Method Not Allowed, indicating that
   * the server does not allow clients to terminate sessions.
   */
  async terminateSession() {
    var _a2, _b, _c;
    if (!this._sessionId) {
      return;
    }
    try {
      const headers = await this._commonHeaders();
      const init = {
        ...this._requestInit,
        method: "DELETE",
        headers,
        signal: (_a2 = this._abortController) === null || _a2 === void 0 ? void 0 : _a2.signal
      };
      const response = await ((_b = this._fetch) !== null && _b !== void 0 ? _b : fetch)(this._url, init);
      if (!response.ok && response.status !== 405) {
        throw new StreamableHTTPError(response.status, `Failed to terminate session: ${response.statusText}`);
      }
      this._sessionId = void 0;
    } catch (error2) {
      (_c = this.onerror) === null || _c === void 0 ? void 0 : _c.call(this, error2);
      throw error2;
    }
  }
  setProtocolVersion(version3) {
    this._protocolVersion = version3;
  }
  get protocolVersion() {
    return this._protocolVersion;
  }
  /**
   * Resume an SSE stream from a previous event ID.
   * Opens a GET SSE connection with Last-Event-ID header to replay missed events.
   *
   * @param lastEventId The event ID to resume from
   * @param options Optional callback to receive new resumption tokens
   */
  async resumeStream(lastEventId, options) {
    await this._startOrAuthSse({
      resumptionToken: lastEventId,
      onresumptiontoken: options === null || options === void 0 ? void 0 : options.onresumptiontoken
    });
  }
};

// src/lib/mcp-auth-config.ts
import path from "path";
import os from "os";
import fs from "fs/promises";
async function createLockfile(serverUrlHash, pid2, port) {
  const lockData = {
    pid: pid2,
    port,
    timestamp: Date.now()
  };
  await writeJsonFile(serverUrlHash, "lock.json", lockData);
}
async function checkLockfile(serverUrlHash) {
  try {
    const lockfile = await readJsonFile(serverUrlHash, "lock.json", {
      async parseAsync(data) {
        if (typeof data !== "object" || data === null) return null;
        if (typeof data.pid !== "number" || typeof data.port !== "number" || typeof data.timestamp !== "number") {
          return null;
        }
        return data;
      }
    });
    return lockfile || null;
  } catch {
    return null;
  }
}
async function deleteLockfile(serverUrlHash) {
  await deleteConfigFile(serverUrlHash, "lock.json");
}
function getConfigDir() {
  const baseConfigDir = process.env.MCP_REMOTE_CONFIG_DIR || path.join(os.homedir(), ".mcp-auth");
  return path.join(baseConfigDir, `mcp-remote-${version2}`);
}
async function ensureConfigDir() {
  try {
    const configDir = getConfigDir();
    await fs.mkdir(configDir, { recursive: true });
  } catch (error2) {
    log("Error creating config directory:", error2);
    throw error2;
  }
}
function getConfigFilePath(serverUrlHash, filename) {
  const configDir = getConfigDir();
  return path.join(configDir, `${serverUrlHash}_${filename}`);
}
async function deleteConfigFile(serverUrlHash, filename) {
  try {
    const filePath = getConfigFilePath(serverUrlHash, filename);
    await fs.unlink(filePath);
  } catch (error2) {
    if (error2.code !== "ENOENT") {
      log(`Error deleting ${filename}:`, error2);
    }
  }
}
async function readJsonFile(serverUrlHash, filename, schema) {
  try {
    await ensureConfigDir();
    const filePath = getConfigFilePath(serverUrlHash, filename);
    const content = await fs.readFile(filePath, "utf-8");
    const result = await schema.parseAsync(JSON.parse(content));
    return result;
  } catch (error2) {
    if (error2.code === "ENOENT") {
      return void 0;
    }
    log(`Error reading ${filename}:`, error2);
    return void 0;
  }
}
async function writeJsonFile(serverUrlHash, filename, data) {
  try {
    await ensureConfigDir();
    const filePath = getConfigFilePath(serverUrlHash, filename);
    await fs.writeFile(filePath, JSON.stringify(data, null, 2), { encoding: "utf-8", mode: 384 });
  } catch (error2) {
    log(`Error writing ${filename}:`, error2);
    throw error2;
  }
}
async function readTextFile(serverUrlHash, filename, errorMessage) {
  try {
    await ensureConfigDir();
    const filePath = getConfigFilePath(serverUrlHash, filename);
    return await fs.readFile(filePath, "utf-8");
  } catch (error2) {
    throw new Error(errorMessage || `Error reading ${filename}`);
  }
}
async function writeTextFile(serverUrlHash, filename, text) {
  try {
    await ensureConfigDir();
    const filePath = getConfigFilePath(serverUrlHash, filename);
    await fs.writeFile(filePath, text, { encoding: "utf-8", mode: 384 });
  } catch (error2) {
    log(`Error writing ${filename}:`, error2);
    throw error2;
  }
}

// src/lib/protected-resource-metadata.ts
function parseWWWAuthenticateHeader(header) {
  const result = {};
  if (!header) {
    return result;
  }
  const paramString = header.replace(/^Bearer\s+/i, "");
  const paramRegex = /(\w+)=(?:"([^"]*)"|([\w-]+))/g;
  let match;
  while ((match = paramRegex.exec(paramString)) !== null) {
    const key = match[1];
    const value = match[2] ?? match[3];
    switch (key) {
      case "resource_metadata":
        result.resourceMetadataUrl = value;
        break;
      case "scope":
        result.scope = value;
        break;
      case "error":
        result.error = value;
        break;
      case "error_description":
        result.errorDescription = value;
        break;
    }
  }
  debugLog("Parsed WWW-Authenticate header", {
    hasResourceMetadata: !!result.resourceMetadataUrl,
    hasScope: !!result.scope,
    error: result.error
  });
  return result;
}
function buildProtectedResourceMetadataUrls(resourceUrl) {
  const url2 = new URL(resourceUrl);
  const urls = [];
  const path3 = url2.pathname.replace(/\/$/, "");
  if (path3 && path3 !== "/") {
    urls.push(`${url2.origin}/.well-known/oauth-protected-resource${path3}`);
  }
  urls.push(`${url2.origin}/.well-known/oauth-protected-resource`);
  debugLog("Built Protected Resource Metadata URLs", { resourceUrl, urls });
  return urls;
}
async function fetchProtectedResourceMetadataFromUrl(metadataUrl) {
  debugLog("Fetching Protected Resource Metadata", { metadataUrl });
  try {
    const response = await fetch(metadataUrl, {
      headers: {
        Accept: "application/json"
      },
      signal: AbortSignal.timeout(5e3)
    });
    if (!response.ok) {
      if (response.status === 404) {
        debugLog("Protected Resource Metadata not found (404)", { metadataUrl });
      } else {
        debugLog("Failed to fetch Protected Resource Metadata", {
          status: response.status,
          statusText: response.statusText
        });
      }
      return void 0;
    }
    const metadata = await response.json();
    debugLog("Successfully fetched Protected Resource Metadata", {
      resource: metadata.resource,
      authorizationServers: metadata.authorization_servers,
      scopesSupported: metadata.scopes_supported
    });
    return metadata;
  } catch (error2) {
    debugLog("Error fetching Protected Resource Metadata", {
      error: error2 instanceof Error ? error2.message : String(error2),
      metadataUrl
    });
    return void 0;
  }
}
async function discoverProtectedResourceMetadata(resourceUrl, wwwAuthenticateHeader) {
  debugLog("Starting Protected Resource Metadata discovery", {
    resourceUrl,
    hasWWWAuthenticateHeader: !!wwwAuthenticateHeader
  });
  if (wwwAuthenticateHeader) {
    const params = parseWWWAuthenticateHeader(wwwAuthenticateHeader);
    if (params.resourceMetadataUrl) {
      debugLog("Using resource_metadata URL from WWW-Authenticate header", {
        url: params.resourceMetadataUrl
      });
      const metadata = await fetchProtectedResourceMetadataFromUrl(params.resourceMetadataUrl);
      if (metadata) {
        return metadata;
      }
      debugLog("Failed to fetch from WWW-Authenticate URL, falling back to well-known discovery");
    }
  }
  const wellKnownUrls = buildProtectedResourceMetadataUrls(resourceUrl);
  for (const url2 of wellKnownUrls) {
    const metadata = await fetchProtectedResourceMetadataFromUrl(url2);
    if (metadata) {
      return metadata;
    }
  }
  debugLog("Protected Resource Metadata discovery failed - no metadata found");
  return void 0;
}
function getAuthorizationServerUrl(metadata) {
  if (metadata.authorization_servers && metadata.authorization_servers.length > 0) {
    return metadata.authorization_servers[0];
  }
  return void 0;
}

// src/lib/authorization-server-metadata.ts
function getMetadataUrl(serverUrl) {
  const url2 = new URL(serverUrl);
  const metadataPath = "/.well-known/oauth-authorization-server";
  return `${url2.origin}${metadataPath}`;
}
async function fetchAuthorizationServerMetadata(serverUrl) {
  const metadataUrl = getMetadataUrl(serverUrl);
  debugLog("Fetching authorization server metadata", { serverUrl, metadataUrl });
  try {
    const response = await fetch(metadataUrl, {
      headers: {
        Accept: "application/json"
      },
      // Short timeout to avoid blocking
      signal: AbortSignal.timeout(5e3)
    });
    if (!response.ok) {
      if (response.status === 404) {
        debugLog("Authorization server metadata endpoint not found (404)", { metadataUrl });
      } else {
        debugLog("Failed to fetch authorization server metadata", {
          status: response.status,
          statusText: response.statusText
        });
      }
      return void 0;
    }
    const metadata = await response.json();
    debugLog("Successfully fetched authorization server metadata", {
      issuer: metadata.issuer,
      scopes_supported: metadata.scopes_supported,
      scopeCount: metadata.scopes_supported?.length || 0
    });
    return metadata;
  } catch (error2) {
    debugLog("Error fetching authorization server metadata", {
      error: error2 instanceof Error ? error2.message : String(error2),
      metadataUrl
    });
    return void 0;
  }
}

// src/lib/utils.ts
import express from "express";
import net from "net";
import crypto2 from "crypto";
import fs2 from "fs";
import { readFile, rm } from "fs/promises";
import path2 from "path";
import { EnvHttpProxyAgent, fetch as fetch2, Headers as Headers2, setGlobalDispatcher } from "undici";
var REASON_AUTH_NEEDED = "authentication-needed";
var REASON_TRANSPORT_FALLBACK = "falling-back-to-alternate-transport";
var pid = process.pid;
var DEBUG = false;
var SILENT = false;
function getTimestamp() {
  const now = /* @__PURE__ */ new Date();
  return now.toISOString();
}
function debugLog(message, ...args) {
  if (!DEBUG) return;
  const serverUrlHash = global.currentServerUrlHash;
  if (!serverUrlHash) {
    console.error("[DEBUG LOG ERROR] global.currentServerUrlHash is not set. Cannot write debug log.");
    return;
  }
  try {
    const formattedMessage = `[${getTimestamp()}][${pid}] ${message}`;
    console.error(formattedMessage, ...args);
    const configDir = getConfigDir();
    fs2.mkdirSync(configDir, { recursive: true });
    const logPath = path2.join(configDir, `${serverUrlHash}_debug.log`);
    const logMessage = `${formattedMessage} ${args.map((arg) => typeof arg === "object" ? JSON.stringify(arg) : String(arg)).join(" ")}
`;
    fs2.appendFileSync(logPath, logMessage, { encoding: "utf8" });
  } catch (error2) {
    console.error(`[DEBUG LOG ERROR] ${error2}`);
  }
}
function log(str, ...rest) {
  if (!SILENT) {
    console.error(`[${pid}] ${str}`, ...rest);
  }
  debugLog(str, ...rest);
}
var MESSAGE_BLOCKED = Symbol("MessageBlocked");
var isMessageBlocked = (value) => value === MESSAGE_BLOCKED;
function createMessageTransformer({
  transformRequestFunction,
  transformResponseFunction
} = {}) {
  const pendingRequests = /* @__PURE__ */ new Map();
  const interceptRequest = (message) => {
    const messageId = message.id;
    if (!messageId) return message;
    pendingRequests.set(messageId, message);
    return transformRequestFunction?.(message) ?? message;
  };
  const interceptResponse = (message) => {
    const messageId = message.id;
    if (!messageId) return message;
    const originalRequest = pendingRequests.get(messageId);
    if (!originalRequest) return message;
    pendingRequests.delete(messageId);
    return transformResponseFunction?.(originalRequest, message) ?? message;
  };
  return {
    interceptRequest,
    interceptResponse
  };
}
function mcpProxy({
  transportToClient,
  transportToServer,
  ignoredTools = []
}) {
  let transportToClientClosed = false;
  let transportToServerClosed = false;
  const messageTransformer = createMessageTransformer({
    transformRequestFunction: (request) => {
      if (request.method === "tools/call" && request.params?.name) {
        const toolName = request.params.name;
        if (!shouldIncludeTool(ignoredTools, toolName)) {
          const errorResponse = {
            jsonrpc: "2.0",
            id: request.id,
            error: {
              code: -32603,
              message: `Tool "${toolName}" is not available`
            }
          };
          transportToClient.send(errorResponse).catch(onClientError);
          return MESSAGE_BLOCKED;
        }
      }
      return request;
    },
    transformResponseFunction: (req, res) => {
      if (req.method === "tools/list") {
        return {
          ...res,
          result: {
            ...res.result,
            tools: res.result.tools.filter((tool) => shouldIncludeTool(ignoredTools, tool.name))
          }
        };
      }
      return res;
    }
  });
  transportToClient.onmessage = (_message) => {
    const message = messageTransformer.interceptRequest(_message);
    if (isMessageBlocked(message)) {
      return;
    }
    log("[Local\u2192Remote]", message.method || message.id);
    debugLog("Local \u2192 Remote message", {
      method: message.method,
      id: message.id,
      params: message.params ? JSON.stringify(message.params).substring(0, 500) : void 0
    });
    if (message.method === "initialize") {
      const { clientInfo } = message.params;
      if (clientInfo) clientInfo.name = `${clientInfo.name} (via mcp-remote ${version2})`;
      log(JSON.stringify(message, null, 2));
      debugLog("Initialize message with modified client info", { clientInfo });
    }
    transportToServer.send(message).catch(onServerError);
  };
  transportToServer.onmessage = (_message) => {
    const message = messageTransformer.interceptResponse(_message);
    log("[Remote\u2192Local]", message.method || message.id);
    debugLog("Remote \u2192 Local message", {
      method: message.method,
      id: message.id,
      result: message.result ? "result-present" : void 0,
      error: message.error
    });
    transportToClient.send(message).catch(onClientError);
  };
  transportToClient.onclose = () => {
    if (transportToServerClosed) {
      return;
    }
    transportToClientClosed = true;
    debugLog("Local transport closed, closing remote transport");
    transportToServer.close().catch(onServerError);
  };
  transportToServer.onclose = () => {
    if (transportToClientClosed) {
      return;
    }
    transportToServerClosed = true;
    debugLog("Remote transport closed, closing local transport");
    transportToClient.close().catch(onClientError);
  };
  transportToClient.onerror = onClientError;
  transportToServer.onerror = onServerError;
  function onClientError(error2) {
    log("Error from local client:", error2);
    debugLog("Error from local client", { stack: error2.stack });
  }
  function onServerError(error2) {
    log("Error from remote server:", error2);
    debugLog("Error from remote server", { stack: error2.stack });
  }
}
async function discoverOAuthServerInfo(serverUrl, headers = {}) {
  debugLog("Starting OAuth server discovery", { serverUrl });
  let wwwAuthenticateHeader;
  let wwwAuthenticateScope;
  try {
    debugLog("Probing MCP server for WWW-Authenticate header");
    const response = await fetch2(serverUrl, {
      method: "GET",
      headers: {
        ...headers,
        Accept: "application/json, text/event-stream"
      },
      signal: AbortSignal.timeout(1e4)
    });
    if (response.ok) {
      debugLog("Server responded OK without auth, using server URL as authorization server");
      const authServerMetadata = await fetchAuthorizationServerMetadata(serverUrl);
      return {
        authorizationServerUrl: serverUrl,
        authorizationServerMetadata: authServerMetadata
      };
    }
    if (response.status === 401) {
      wwwAuthenticateHeader = response.headers.get("WWW-Authenticate") || void 0;
      debugLog("Received 401 with WWW-Authenticate header", {
        hasHeader: !!wwwAuthenticateHeader,
        header: wwwAuthenticateHeader
      });
      if (wwwAuthenticateHeader) {
        const params = parseWWWAuthenticateHeader(wwwAuthenticateHeader);
        wwwAuthenticateScope = params.scope;
      }
    }
  } catch (error2) {
    debugLog("Error probing MCP server", {
      error: error2 instanceof Error ? error2.message : String(error2)
    });
  }
  const protectedResourceMetadata = await discoverProtectedResourceMetadata(serverUrl, wwwAuthenticateHeader);
  let authorizationServerUrl;
  if (protectedResourceMetadata) {
    const discoveredUrl = getAuthorizationServerUrl(protectedResourceMetadata);
    if (discoveredUrl) {
      authorizationServerUrl = discoveredUrl;
      debugLog("Using authorization server from Protected Resource Metadata", {
        authorizationServerUrl
      });
    } else {
      authorizationServerUrl = serverUrl;
      debugLog("PRM found but no authorization_servers, falling back to server URL");
    }
  } else {
    authorizationServerUrl = serverUrl;
    debugLog("No Protected Resource Metadata found, falling back to server URL as authorization server");
  }
  const authorizationServerMetadata = await fetchAuthorizationServerMetadata(authorizationServerUrl);
  return {
    authorizationServerUrl,
    authorizationServerMetadata,
    protectedResourceMetadata,
    wwwAuthenticateScope
  };
}
async function connectToRemoteServer(client, serverUrl, authProvider, headers, authInitializer, transportStrategy = "http-first", recursionReasons = /* @__PURE__ */ new Set()) {
  log(`[${pid}] Connecting to remote server: ${serverUrl}`);
  const url2 = new URL(serverUrl);
  const eventSourceInit = {
    fetch: (url3, init) => {
      return Promise.resolve(authProvider?.tokens?.()).then(
        (tokens) => fetch2(url3, {
          ...init,
          headers: {
            ...init?.headers instanceof Headers2 ? Object.fromEntries(init?.headers.entries()) : init?.headers || {},
            ...headers,
            ...tokens?.access_token ? { Authorization: `Bearer ${tokens.access_token}` } : {},
            Accept: "text/event-stream"
          }
        })
      );
    }
  };
  log(`Using transport strategy: ${transportStrategy}`);
  const shouldAttemptFallback2 = transportStrategy === "http-first" || transportStrategy === "sse-first";
  const sseTransport = transportStrategy === "sse-only" || transportStrategy === "sse-first";
  const transport = sseTransport ? new SSEClientTransport(url2, {
    authProvider,
    requestInit: { headers },
    eventSourceInit
  }) : new StreamableHTTPClientTransport(url2, {
    authProvider,
    requestInit: { headers }
  });
  try {
    debugLog("Attempting to connect to remote server", { sseTransport });
    if (client) {
      debugLog("Connecting client to transport");
      await client.connect(transport);
    } else {
      debugLog("Starting transport directly");
      await transport.start();
      if (!sseTransport) {
        debugLog("Creating test transport for HTTP-only connection test");
        const testTransport = new StreamableHTTPClientTransport(url2, { authProvider, requestInit: { headers } });
        const testClient = new Client({ name: "mcp-remote-fallback-test", version: "0.0.0" }, { capabilities: {} });
        await testClient.connect(testTransport);
      }
    }
    log(`Connected to remote server using ${transport.constructor.name}`);
    return transport;
  } catch (error2) {
    const isStreamableHTTPError = error2 instanceof StreamableHTTPError;
    const httpStatusCode = isStreamableHTTPError ? error2.code : null;
    const shouldFallbackOnError = shouldAttemptFallback2 && error2 instanceof Error && (httpStatusCode === 404 || httpStatusCode === 405 || error2.message.includes("405") || error2.message.includes("Method Not Allowed") || error2.message.includes("404") || error2.message.includes("Not Found"));
    if (shouldFallbackOnError) {
      log(`Received error (status ${httpStatusCode ?? "unknown"}): ${error2.message}`);
      if (recursionReasons.has(REASON_TRANSPORT_FALLBACK)) {
        const errorMessage = `Already attempted transport fallback. Giving up.`;
        log(errorMessage);
        throw new Error(errorMessage);
      }
      log(`Recursively reconnecting for reason: ${REASON_TRANSPORT_FALLBACK}`);
      recursionReasons.add(REASON_TRANSPORT_FALLBACK);
      return connectToRemoteServer(
        client,
        serverUrl,
        authProvider,
        headers,
        authInitializer,
        sseTransport ? "http-only" : "sse-only",
        recursionReasons
      );
    } else if (error2 instanceof UnauthorizedError || error2 instanceof Error && error2.message.includes("Unauthorized")) {
      log("Authentication required. Initializing auth...");
      debugLog("Authentication error detected", {
        errorCode: error2 instanceof OAuthError ? error2.errorCode : void 0,
        errorMessage: error2.message,
        stack: error2.stack
      });
      debugLog("Calling authInitializer to start auth flow");
      const { waitForAuthCode, skipBrowserAuth } = await authInitializer();
      if (skipBrowserAuth) {
        log("Authentication required but skipping browser auth - using shared auth");
      } else {
        log("Authentication required. Waiting for authorization...");
      }
      debugLog("Waiting for auth code from callback server");
      const code = await waitForAuthCode();
      debugLog("Received auth code from callback server");
      try {
        log("Completing authorization...");
        await transport.finishAuth(code);
        debugLog("Authorization completed successfully");
        if (recursionReasons.has(REASON_AUTH_NEEDED)) {
          const errorMessage = `Already attempted reconnection for reason: ${REASON_AUTH_NEEDED}. Giving up.`;
          log(errorMessage);
          debugLog("Already attempted auth reconnection, giving up", {
            recursionReasons: Array.from(recursionReasons)
          });
          throw new Error(errorMessage);
        }
        recursionReasons.add(REASON_AUTH_NEEDED);
        log(`Recursively reconnecting for reason: ${REASON_AUTH_NEEDED}`);
        debugLog("Recursively reconnecting after auth", { recursionReasons: Array.from(recursionReasons) });
        return connectToRemoteServer(client, serverUrl, authProvider, headers, authInitializer, transportStrategy, recursionReasons);
      } catch (authError) {
        log("Authorization error:", authError);
        debugLog("Authorization error during finishAuth", {
          errorMessage: authError.message,
          stack: authError.stack
        });
        throw authError;
      }
    } else {
      log("Connection error:", error2);
      debugLog("Connection error", {
        errorMessage: error2.message,
        stack: error2.stack,
        transportType: transport.constructor.name
      });
      throw error2;
    }
  }
}
function setupOAuthCallbackServerWithLongPoll(options) {
  let authCode = null;
  const app = express();
  let authCompletedResolve;
  const authCompletedPromise = new Promise((resolve) => {
    authCompletedResolve = resolve;
  });
  app.get("/wait-for-auth", (req, res) => {
    if (authCode) {
      log("Auth already completed, returning 200");
      res.status(200).send("Authentication completed");
      return;
    }
    if (req.query.poll === "false") {
      log("Client requested no long poll, responding with 202");
      res.status(202).send("Authentication in progress");
      return;
    }
    const longPollTimeout = setTimeout(() => {
      log("Long poll timeout reached, responding with 202");
      res.status(202).send("Authentication in progress");
    }, options.authTimeoutMs || 3e4);
    authCompletedPromise.then(() => {
      clearTimeout(longPollTimeout);
      if (!res.headersSent) {
        log("Auth completed during long poll, responding with 200");
        res.status(200).send("Authentication completed");
      }
    }).catch(() => {
      clearTimeout(longPollTimeout);
      if (!res.headersSent) {
        log("Auth failed during long poll, responding with 500");
        res.status(500).send("Authentication failed");
      }
    });
  });
  app.get(options.path, (req, res) => {
    const code = req.query.code;
    if (!code) {
      res.status(400).send("Error: No authorization code received");
      return;
    }
    authCode = code;
    log("Auth code received, resolving promise");
    authCompletedResolve(code);
    res.send(`
      Authorization successful!
      You may close this window and return to the CLI.
      <script>
        // If this is a non-interactive session (no manual approval step was required) then
        // this should automatically close the window. If not, this will have no effect and
        // the user will see the message above.
        window.close();
      </script>
    `);
    options.events.emit("auth-code-received", code);
  });
  const server = app.listen(options.port, "127.0.0.1", () => {
    log(`OAuth callback server running at http://127.0.0.1:${options.port}`);
  });
  const waitForAuthCode = () => {
    return new Promise((resolve) => {
      if (authCode) {
        resolve(authCode);
        return;
      }
      options.events.once("auth-code-received", (code) => {
        resolve(code);
      });
    });
  };
  return { server, authCode, waitForAuthCode, authCompletedPromise };
}
async function findExistingClientPort(serverUrlHash) {
  const clientInfo = await readJsonFile(serverUrlHash, "client_info.json", OAuthClientInformationFullSchema);
  if (!clientInfo) {
    return void 0;
  }
  const localhostRedirectUri = clientInfo.redirect_uris.map((uri) => new URL(uri)).find(({ hostname }) => hostname === "localhost" || hostname === "127.0.0.1");
  if (!localhostRedirectUri) {
    throw new Error("Cannot find localhost callback URI from existing client information");
  }
  return parseInt(localhostRedirectUri.port);
}
function calculateDefaultPort(serverUrlHash) {
  const offset = parseInt(serverUrlHash.substring(0, 4), 16);
  return 3335 + offset % 45816;
}
async function findAvailablePort(preferredPort) {
  return new Promise((resolve, reject) => {
    const server = net.createServer();
    server.on("error", (err) => {
      if (err.code === "EADDRINUSE") {
        server.listen(0);
      } else {
        reject(err);
      }
    });
    server.on("listening", () => {
      const { port } = server.address();
      server.close(() => {
        resolve(port);
      });
    });
    server.listen(preferredPort || 0);
  });
}
async function parseCommandLineArgs(args, usage) {
  const headers = {};
  let i = 0;
  while (i < args.length) {
    if (args[i] === "--header" && i < args.length - 1) {
      const value = args[i + 1];
      const match = value.match(/^([A-Za-z0-9_-]+):\s*(.*)$/);
      if (match) {
        headers[match[1]] = match[2];
      } else {
        log(`Warning: ignoring invalid header argument: ${value}`);
      }
      args.splice(i, 2);
      continue;
    }
    i++;
  }
  const serverUrl = args[0];
  const specifiedPort = args[1] ? parseInt(args[1]) : void 0;
  const allowHttp = args.includes("--allow-http");
  const debug = args.includes("--debug");
  if (debug) {
    DEBUG = true;
    log("Debug mode enabled - detailed logs will be written to ~/.mcp-auth/");
  }
  const silent = args.includes("--silent");
  if (silent) {
    SILENT = true;
    log("Silent mode enabled - stderr output will be suppressed, except when --debug is also enabled");
  }
  const enableProxy = args.includes("--enable-proxy");
  if (enableProxy) {
    setGlobalDispatcher(new EnvHttpProxyAgent());
    log("HTTP proxy support enabled - using system HTTP_PROXY/HTTPS_PROXY environment variables");
  }
  let transportStrategy = "http-first";
  const transportIndex = args.indexOf("--transport");
  if (transportIndex !== -1 && transportIndex < args.length - 1) {
    const strategy = args[transportIndex + 1];
    if (strategy === "sse-only" || strategy === "http-only" || strategy === "sse-first" || strategy === "http-first") {
      transportStrategy = strategy;
      log(`Using transport strategy: ${transportStrategy}`);
    } else {
      log(`Warning: Ignoring invalid transport strategy: ${strategy}. Valid values are: sse-only, http-only, sse-first, http-first`);
    }
  }
  let host = "localhost";
  const hostIndex = args.indexOf("--host");
  if (hostIndex !== -1 && hostIndex < args.length - 1) {
    host = args[hostIndex + 1];
    log(`Using callback hostname: ${host}`);
  }
  let staticOAuthClientMetadata = null;
  const staticOAuthClientMetadataIndex = args.indexOf("--static-oauth-client-metadata");
  if (staticOAuthClientMetadataIndex !== -1 && staticOAuthClientMetadataIndex < args.length - 1) {
    const staticOAuthClientMetadataArg = args[staticOAuthClientMetadataIndex + 1];
    if (staticOAuthClientMetadataArg.startsWith("@")) {
      const filePath = staticOAuthClientMetadataArg.slice(1);
      staticOAuthClientMetadata = JSON.parse(await readFile(filePath, "utf8"));
      log(`Using static OAuth client metadata from file: ${filePath}`);
    } else {
      staticOAuthClientMetadata = JSON.parse(staticOAuthClientMetadataArg);
      log(`Using static OAuth client metadata from string`);
    }
  }
  let staticOAuthClientInfo = null;
  const staticOAuthClientInfoIndex = args.indexOf("--static-oauth-client-info");
  if (staticOAuthClientInfoIndex !== -1 && staticOAuthClientInfoIndex < args.length - 1) {
    const staticOAuthClientInfoArg = args[staticOAuthClientInfoIndex + 1];
    if (staticOAuthClientInfoArg.startsWith("@")) {
      const filePath = staticOAuthClientInfoArg.slice(1);
      staticOAuthClientInfo = JSON.parse(await readFile(filePath, "utf8"));
      log(`Using static OAuth client information from file: ${filePath}`);
    } else {
      staticOAuthClientInfo = JSON.parse(staticOAuthClientInfoArg);
      log(`Using static OAuth client information from string`);
    }
  }
  let authorizeResource = "";
  const resourceIndex = args.indexOf("--resource");
  if (resourceIndex !== -1 && resourceIndex < args.length - 1) {
    authorizeResource = args[resourceIndex + 1];
    log(`Using authorize resource: ${authorizeResource}`);
  }
  const ignoredTools = [];
  let j = 0;
  while (j < args.length) {
    if (args[j] === "--ignore-tool" && j < args.length - 1) {
      const toolName = args[j + 1];
      ignoredTools.push(toolName);
      log(`Ignoring tool: ${toolName}`);
      args.splice(j, 2);
      continue;
    }
    j++;
  }
  let authTimeoutMs = 3e4;
  const authTimeoutIndex = args.indexOf("--auth-timeout");
  if (authTimeoutIndex !== -1 && authTimeoutIndex < args.length - 1) {
    const timeoutSeconds = parseInt(args[authTimeoutIndex + 1], 10);
    if (!isNaN(timeoutSeconds) && timeoutSeconds > 0) {
      authTimeoutMs = timeoutSeconds * 1e3;
      log(`Using auth callback timeout: ${timeoutSeconds} seconds`);
    } else {
      log(`Warning: Ignoring invalid auth timeout value: ${args[authTimeoutIndex + 1]}. Must be a positive number.`);
    }
  }
  if (!serverUrl) {
    log(usage);
    process.exit(1);
  }
  const url2 = new URL(serverUrl);
  const isLocalhost = (url2.hostname === "localhost" || url2.hostname === "127.0.0.1") && url2.protocol === "http:";
  if (!(url2.protocol == "https:" || isLocalhost || allowHttp)) {
    log("Error: Non-HTTPS URLs are only allowed for localhost or when --allow-http flag is provided");
    log(usage);
    process.exit(1);
  }
  const serverUrlHash = getServerUrlHash(serverUrl, authorizeResource, headers);
  global.currentServerUrlHash = serverUrlHash;
  debugLog(`Starting mcp-remote with server URL: ${serverUrl}`);
  const defaultPort = calculateDefaultPort(serverUrlHash);
  const [existingClientPort, availablePort] = await Promise.all([findExistingClientPort(serverUrlHash), findAvailablePort(defaultPort)]);
  let callbackPort;
  if (specifiedPort) {
    if (existingClientPort && specifiedPort !== existingClientPort) {
      log(
        `Warning! Specified callback port of ${specifiedPort}, which conflicts with existing client registration port ${existingClientPort}. Deleting existing client data to force reregistration.`
      );
      await rm(getConfigFilePath(serverUrlHash, "client_info.json"));
    }
    log(`Using specified callback port: ${specifiedPort}`);
    callbackPort = specifiedPort;
  } else if (existingClientPort) {
    log(`Using existing client port: ${existingClientPort}`);
    callbackPort = existingClientPort;
  } else {
    log(`Using automatically selected callback port: ${availablePort}`);
    callbackPort = availablePort;
  }
  if (Object.keys(headers).length > 0) {
    log(`Using custom headers: ${JSON.stringify(headers)}`);
  }
  for (const [key, value] of Object.entries(headers)) {
    headers[key] = value.replace(/\$\{([^}]+)}/g, (match, envVarName) => {
      const envVarValue = process.env[envVarName];
      if (envVarValue !== void 0) {
        log(`Replacing ${match} with environment value in header '${key}'`);
        return envVarValue;
      } else {
        log(`Warning: Environment variable '${envVarName}' not found for header '${key}'.`);
        return "";
      }
    });
  }
  return {
    serverUrl,
    callbackPort,
    headers,
    transportStrategy,
    host,
    debug,
    staticOAuthClientMetadata,
    staticOAuthClientInfo,
    authorizeResource,
    ignoredTools,
    authTimeoutMs,
    serverUrlHash
  };
}
function setupSignalHandlers(cleanup) {
  process.on("SIGINT", async () => {
    log("\nShutting down...");
    await cleanup();
    process.exit(0);
  });
  process.stdin.resume();
  process.stdin.on("end", async () => {
    log("\nShutting down...");
    await cleanup();
    process.exit(0);
  });
}
function getServerUrlHash(serverUrl, authorizeResource, headers) {
  const parts = [serverUrl];
  if (authorizeResource) parts.push(authorizeResource);
  if (headers && Object.keys(headers).length > 0) {
    const sortedKeys = Object.keys(headers).sort();
    parts.push(JSON.stringify(headers, sortedKeys));
  }
  return crypto2.createHash("md5").update(parts.join("|")).digest("hex");
}
function patternToRegex(pattern) {
  const parts = pattern.split("*");
  const escapedParts = parts.map((part) => part.replace(/\W/g, "\\$&"));
  const regexPattern = escapedParts.join(".*");
  return new RegExp(`^${regexPattern}$`, "i");
}
function shouldIncludeTool(ignorePatterns, toolName) {
  if (!ignorePatterns || ignorePatterns.length === 0) {
    return true;
  }
  for (const pattern of ignorePatterns) {
    const regex = patternToRegex(pattern);
    if (regex.test(toolName)) {
      return false;
    }
  }
  return true;
}

// src/lib/node-oauth-client-provider.ts
import open from "open";
import { sanitizeUrl } from "strict-url-sanitise";
import { randomUUID } from "node:crypto";
var NodeOAuthClientProvider = class {
  /**
   * Creates a new NodeOAuthClientProvider
   * @param options Configuration options for the provider
   */
  constructor(options) {
    this.options = options;
    this.serverUrlHash = options.serverUrlHash;
    this.callbackPath = options.callbackPath || "/oauth/callback";
    this.clientName = options.clientName || "MCP CLI Client";
    this.clientUri = options.clientUri || "https://github.com/modelcontextprotocol/mcp-cli";
    this.softwareId = options.softwareId || "2e6dc280-f3c3-4e01-99a7-8181dbd1d23d";
    this.softwareVersion = options.softwareVersion || version2;
    this.staticOAuthClientMetadata = options.staticOAuthClientMetadata;
    this.staticOAuthClientInfo = options.staticOAuthClientInfo;
    this.authorizeResource = options.authorizeResource;
    this._state = randomUUID();
    this._clientInfo = void 0;
    this.authorizationServerMetadata = options.authorizationServerMetadata;
    this.protectedResourceMetadata = options.protectedResourceMetadata;
    this.wwwAuthenticateScope = options.wwwAuthenticateScope;
  }
  serverUrlHash;
  callbackPath;
  clientName;
  clientUri;
  softwareId;
  softwareVersion;
  staticOAuthClientMetadata;
  staticOAuthClientInfo;
  authorizeResource;
  _state;
  _clientInfo;
  authorizationServerMetadata;
  protectedResourceMetadata;
  wwwAuthenticateScope;
  get redirectUrl() {
    return `http://${this.options.host}:${this.options.callbackPort}${this.callbackPath}`;
  }
  get clientMetadata() {
    const effectiveScope = this.getEffectiveScope();
    return {
      redirect_uris: [this.redirectUrl],
      token_endpoint_auth_method: "none",
      grant_types: ["authorization_code", "refresh_token"],
      response_types: ["code"],
      client_name: this.clientName,
      client_uri: this.clientUri,
      software_id: this.softwareId,
      software_version: this.softwareVersion,
      ...this.staticOAuthClientMetadata,
      scope: effectiveScope
    };
  }
  state() {
    return this._state;
  }
  /**
   * Gets the authorization server metadata, fetching it if not already available
   * @returns The authorization server metadata, or undefined if unavailable
   */
  async getAuthorizationServerMetadata() {
    debugLog(`authorizationServerMetadata: ${JSON.stringify(this.authorizationServerMetadata)}`);
    if (this.authorizationServerMetadata) {
      return this.authorizationServerMetadata;
    }
    try {
      this.authorizationServerMetadata = await fetchAuthorizationServerMetadata(this.options.serverUrl);
      if (this.authorizationServerMetadata?.scopes_supported) {
        debugLog("Authorization server supports scopes", {
          scopes_supported: this.authorizationServerMetadata.scopes_supported
        });
      }
      return this.authorizationServerMetadata;
    } catch (error2) {
      debugLog("Failed to fetch authorization server metadata", error2);
      return void 0;
    }
  }
  getEffectiveScope() {
    if (this.staticOAuthClientMetadata?.scope && this.staticOAuthClientMetadata.scope.trim().length > 0) {
      debugLog("Using scope from staticOAuthClientMetadata", { scope: this.staticOAuthClientMetadata.scope });
      return this.staticOAuthClientMetadata.scope;
    }
    if (this.wwwAuthenticateScope && this.wwwAuthenticateScope.trim().length > 0) {
      debugLog("Using scope from WWW-Authenticate header", { scope: this.wwwAuthenticateScope });
      return this.wwwAuthenticateScope;
    }
    if (this.protectedResourceMetadata?.scopes_supported?.length) {
      const scope = this.protectedResourceMetadata.scopes_supported.join(" ");
      debugLog("Using scopes from Protected Resource Metadata", {
        scopes_supported: this.protectedResourceMetadata.scopes_supported,
        scope
      });
      return scope;
    }
    if (this._clientInfo?.scope && this._clientInfo.scope.trim().length > 0) {
      debugLog("Using scope from client registration response", { scope: this._clientInfo.scope });
      return this._clientInfo.scope;
    }
    if (this.authorizationServerMetadata?.scopes_supported?.length) {
      const scope = this.authorizationServerMetadata.scopes_supported.join(" ");
      debugLog("Using scopes from Authorization Server Metadata", {
        scopes_supported: this.authorizationServerMetadata.scopes_supported,
        scope
      });
      return scope;
    }
    debugLog("Using fallback default scope");
    return "openid email profile";
  }
  /**
   * Gets the client information if it exists
   * @returns The client information or undefined
   */
  async clientInformation() {
    debugLog("Reading client info");
    if (this.staticOAuthClientInfo) {
      debugLog("Returning static client info");
      this._clientInfo = this.staticOAuthClientInfo;
      return this.staticOAuthClientInfo;
    }
    const clientInfo = await readJsonFile(
      this.serverUrlHash,
      "client_info.json",
      OAuthClientInformationFullSchema
    );
    if (clientInfo) {
      this._clientInfo = clientInfo;
    }
    debugLog("Client info result:", clientInfo ? "Found" : "Not found");
    return clientInfo;
  }
  /**
   * Saves client information
   * @param clientInformation The client information to save
   */
  async saveClientInformation(clientInformation) {
    debugLog("Saving client info", { client_id: clientInformation.client_id });
    this._clientInfo = clientInformation;
    await writeJsonFile(this.serverUrlHash, "client_info.json", clientInformation);
  }
  /**
   * Gets the OAuth tokens if they exist
   * @returns The OAuth tokens or undefined
   */
  async tokens() {
    debugLog("Reading OAuth tokens");
    debugLog("Token request stack trace:", new Error().stack);
    const tokens = await readJsonFile(this.serverUrlHash, "tokens.json", OAuthTokensSchema);
    if (tokens) {
      const timeLeft = tokens.expires_in || 0;
      if (typeof tokens.expires_in !== "number" || tokens.expires_in < 0) {
        debugLog("\u26A0\uFE0F WARNING: Invalid expires_in detected while reading tokens \u26A0\uFE0F", {
          expiresIn: tokens.expires_in,
          tokenObject: JSON.stringify(tokens),
          stack: new Error("Invalid expires_in value").stack
        });
      }
      debugLog("Token result:", {
        found: true,
        hasAccessToken: !!tokens.access_token,
        hasRefreshToken: !!tokens.refresh_token,
        expiresIn: `${timeLeft} seconds`,
        isExpired: timeLeft <= 0,
        expiresInValue: tokens.expires_in
      });
    } else {
      debugLog("Token result: Not found");
    }
    return tokens;
  }
  /**
   * Saves OAuth tokens
   * @param tokens The tokens to save
   */
  async saveTokens(tokens) {
    const timeLeft = tokens.expires_in || 0;
    if (typeof tokens.expires_in !== "number" || tokens.expires_in < 0) {
      debugLog("\u26A0\uFE0F WARNING: Invalid expires_in detected in tokens \u26A0\uFE0F", {
        expiresIn: tokens.expires_in,
        tokenObject: JSON.stringify(tokens),
        stack: new Error("Invalid expires_in value").stack
      });
    }
    debugLog("Saving tokens", {
      hasAccessToken: !!tokens.access_token,
      hasRefreshToken: !!tokens.refresh_token,
      expiresIn: `${timeLeft} seconds`,
      expiresInValue: tokens.expires_in
    });
    await writeJsonFile(this.serverUrlHash, "tokens.json", tokens);
  }
  /**
   * Redirects the user to the authorization URL
   * @param authorizationUrl The URL to redirect to
   */
  async redirectToAuthorization(authorizationUrl) {
    this.getAuthorizationServerMetadata().catch(() => {
    });
    if (this.authorizeResource) {
      authorizationUrl.searchParams.set("resource", this.authorizeResource);
    }
    const effectiveScope = this.getEffectiveScope();
    authorizationUrl.searchParams.set("scope", effectiveScope);
    debugLog("Added scope parameter to authorization URL", { scopes: effectiveScope });
    log(`
Please authorize this client by visiting:
${authorizationUrl.toString()}
`);
    debugLog("Redirecting to authorization URL", authorizationUrl.toString());
    try {
      await open(sanitizeUrl(authorizationUrl.toString()));
      log("Browser opened automatically.");
    } catch (error2) {
      log("Could not open browser automatically. Please copy and paste the URL above into your browser.");
      debugLog("Failed to open browser", error2);
    }
  }
  /**
   * Saves the PKCE code verifier
   * @param codeVerifier The code verifier to save
   */
  async saveCodeVerifier(codeVerifier) {
    debugLog("Saving code verifier");
    await writeTextFile(this.serverUrlHash, "code_verifier.txt", codeVerifier);
  }
  /**
   * Gets the PKCE code verifier
   * @returns The code verifier
   */
  async codeVerifier() {
    debugLog("Reading code verifier");
    const verifier = await readTextFile(this.serverUrlHash, "code_verifier.txt", "No code verifier saved for session");
    debugLog("Code verifier found:", !!verifier);
    return verifier;
  }
  /**
   * Invalidates the specified credentials
   * @param scope The scope of credentials to invalidate
   */
  async invalidateCredentials(scope) {
    debugLog(`Invalidating credentials: ${scope}`);
    switch (scope) {
      case "all":
        await Promise.all([
          deleteConfigFile(this.serverUrlHash, "client_info.json"),
          deleteConfigFile(this.serverUrlHash, "tokens.json"),
          deleteConfigFile(this.serverUrlHash, "code_verifier.txt")
        ]);
        this._clientInfo = void 0;
        debugLog("All credentials invalidated");
        break;
      case "client":
        await deleteConfigFile(this.serverUrlHash, "client_info.json");
        this._clientInfo = void 0;
        debugLog("Client information invalidated");
        break;
      case "tokens":
        await deleteConfigFile(this.serverUrlHash, "tokens.json");
        debugLog("OAuth tokens invalidated");
        break;
      case "verifier":
        await deleteConfigFile(this.serverUrlHash, "code_verifier.txt");
        debugLog("Code verifier invalidated");
        break;
      default:
        throw new Error(`Unknown credential scope: ${scope}`);
    }
  }
};

// src/lib/coordination.ts
import express2 from "express";
import { unlinkSync } from "fs";
async function isPidRunning(pid2) {
  try {
    process.kill(pid2, 0);
    debugLog(`Process ${pid2} is running`);
    return true;
  } catch (err) {
    debugLog(`Process ${pid2} is not running`, err);
    return false;
  }
}
async function isLockValid(lockData) {
  debugLog("Checking if lockfile is valid", lockData);
  const MAX_LOCK_AGE = 30 * 60 * 1e3;
  if (Date.now() - lockData.timestamp > MAX_LOCK_AGE) {
    log("Lockfile is too old");
    debugLog("Lockfile is too old", {
      age: Date.now() - lockData.timestamp,
      maxAge: MAX_LOCK_AGE
    });
    return false;
  }
  if (!await isPidRunning(lockData.pid)) {
    log("Process from lockfile is not running");
    debugLog("Process from lockfile is not running", { pid: lockData.pid });
    return false;
  }
  try {
    debugLog("Checking if endpoint is accessible", { port: lockData.port });
    const controller = new AbortController();
    const timeout = setTimeout(() => controller.abort(), 1e3);
    const response = await fetch(`http://127.0.0.1:${lockData.port}/wait-for-auth?poll=false`, {
      signal: controller.signal
    });
    clearTimeout(timeout);
    const isValid2 = response.status === 200 || response.status === 202;
    debugLog(`Endpoint check result: ${isValid2 ? "valid" : "invalid"}`, { status: response.status });
    return isValid2;
  } catch (error2) {
    log(`Error connecting to auth server: ${error2.message}`);
    debugLog("Error connecting to auth server", error2);
    return false;
  }
}
async function waitForAuthentication(port) {
  log(`Waiting for authentication from the server on port ${port}...`);
  try {
    let attempts = 0;
    while (true) {
      attempts++;
      const url2 = `http://127.0.0.1:${port}/wait-for-auth`;
      log(`Querying: ${url2}`);
      debugLog(`Poll attempt ${attempts}`);
      try {
        const response = await fetch(url2);
        debugLog(`Poll response status: ${response.status}`);
        if (response.status === 200) {
          log(`Authentication completed by other instance`);
          return true;
        } else if (response.status === 202) {
          log(`Authentication still in progress`);
          debugLog(`Will retry in 1s`);
          await new Promise((resolve) => setTimeout(resolve, 1e3));
        } else {
          log(`Unexpected response status: ${response.status}`);
          return false;
        }
      } catch (fetchError) {
        debugLog(`Fetch error during poll`, fetchError);
        await new Promise((resolve) => setTimeout(resolve, 2e3));
      }
    }
  } catch (error2) {
    log(`Error waiting for authentication: ${error2.message}`);
    debugLog(`Error waiting for authentication`, error2);
    return false;
  }
}
function createLazyAuthCoordinator(serverUrlHash, callbackPort, events, authTimeoutMs) {
  let authState = null;
  return {
    initializeAuth: async () => {
      if (authState) {
        debugLog("Auth already initialized, reusing existing state");
        return authState;
      }
      log("Initializing auth coordination on-demand");
      debugLog("Initializing auth coordination on-demand", { serverUrlHash, callbackPort });
      authState = await coordinateAuth(serverUrlHash, callbackPort, events, authTimeoutMs);
      debugLog("Auth coordination completed", { skipBrowserAuth: authState.skipBrowserAuth });
      return authState;
    }
  };
}
async function coordinateAuth(serverUrlHash, callbackPort, events, authTimeoutMs) {
  debugLog("Coordinating authentication", { serverUrlHash, callbackPort });
  const lockData = process.platform === "win32" ? null : await checkLockfile(serverUrlHash);
  if (process.platform === "win32") {
    debugLog("Skipping lockfile check on Windows");
  } else {
    debugLog("Lockfile check result", { found: !!lockData, lockData });
  }
  if (lockData && await isLockValid(lockData)) {
    log(`Another instance is handling authentication on port ${lockData.port} (pid: ${lockData.pid})`);
    try {
      debugLog("Waiting for authentication from other instance");
      const authCompleted = await waitForAuthentication(lockData.port);
      if (authCompleted) {
        log("Authentication completed by another instance. Using tokens from disk");
        const dummyServer = express2().listen(0);
        const dummyPort = dummyServer.address().port;
        debugLog("Started dummy server", { port: dummyPort });
        const dummyWaitForAuthCode = () => {
          log("WARNING: waitForAuthCode called in secondary instance - this is unexpected");
          return new Promise(() => {
          });
        };
        return {
          server: dummyServer,
          waitForAuthCode: dummyWaitForAuthCode,
          skipBrowserAuth: true
        };
      } else {
        log("Taking over authentication process...");
      }
    } catch (error2) {
      log(`Error waiting for authentication: ${error2}`);
      debugLog("Error waiting for authentication", error2);
    }
    debugLog("Other instance did not complete auth successfully, deleting lockfile");
    await deleteLockfile(serverUrlHash);
  } else if (lockData) {
    log("Found invalid lockfile, deleting it");
    await deleteLockfile(serverUrlHash);
  }
  debugLog("Setting up OAuth callback server", { port: callbackPort });
  const { server, waitForAuthCode, authCompletedPromise } = setupOAuthCallbackServerWithLongPoll({
    port: callbackPort,
    path: "/oauth/callback",
    events,
    authTimeoutMs
  });
  let address = server.address();
  if (!address) {
    await new Promise((resolve) => server.once("listening", resolve));
    address = server.address();
  }
  if (!address) {
    throw new Error("Failed to get server address after listening event");
  }
  const actualPort = address.port;
  debugLog("OAuth callback server running", { port: actualPort });
  log(`Creating lockfile for server ${serverUrlHash} with process ${process.pid} on port ${actualPort}`);
  await createLockfile(serverUrlHash, process.pid, actualPort);
  const cleanupHandler = async () => {
    try {
      log(`Cleaning up lockfile for server ${serverUrlHash}`);
      await deleteLockfile(serverUrlHash);
    } catch (error2) {
      log(`Error cleaning up lockfile: ${error2}`);
      debugLog("Error cleaning up lockfile", error2);
    }
  };
  process.once("exit", () => {
    try {
      const configPath = getConfigFilePath(serverUrlHash, "lock.json");
      unlinkSync(configPath);
      debugLog(`Removed lockfile on exit: ${configPath}`);
    } catch (error2) {
      debugLog(`Error removing lockfile on exit:`, error2);
    }
  });
  process.once("SIGINT", async () => {
    debugLog("Received SIGINT signal, cleaning up");
    await cleanupHandler();
  });
  debugLog("Auth coordination complete, returning primary instance handlers");
  return {
    server,
    waitForAuthCode,
    skipBrowserAuth: false
  };
}

export {
  JSONRPCMessageSchema,
  ListResourcesResultSchema,
  ListToolsResultSchema,
  Client,
  version2 as version,
  debugLog,
  log,
  mcpProxy,
  discoverOAuthServerInfo,
  connectToRemoteServer,
  parseCommandLineArgs,
  setupSignalHandlers,
  NodeOAuthClientProvider,
  createLazyAuthCoordinator
};