overwatch-ts
Version:
A blazing-fast, zero-boilerplate state management library for React & Next.js
924 lines (923 loc) • 27.3 kB
JavaScript
"use client";
import { globalStore as S } from "./server.es.js";
import Qe, { useState as ae, useEffect as j, useRef as je } from "react";
var Ce = Symbol.for("immer-nothing"), Pe = Symbol.for("immer-draftable"), h = Symbol.for("immer-state"), Ze = process.env.NODE_ENV !== "production" ? [
// All error codes, starting by 0:
function(e) {
return `The plugin for '${e}' has not been loaded into Immer. To enable the plugin, import and call \`enable${e}()\` when initializing your application.`;
},
function(e) {
return `produce can only be called on things that are draftable: plain objects, arrays, Map, Set or classes that are marked with '[immerable]: true'. Got '${e}'`;
},
"This object has been frozen and should not be mutated",
function(e) {
return "Cannot use a proxy that has been revoked. Did you pass an object from inside an immer function to an async process? " + e;
},
"An immer producer returned a new value *and* modified its draft. Either return a new value *or* modify the draft.",
"Immer forbids circular references",
"The first or second argument to `produce` must be a function",
"The third argument to `produce` must be a function or undefined",
"First argument to `createDraft` must be a plain object, an array, or an immerable object",
"First argument to `finishDraft` must be a draft returned by `createDraft`",
function(e) {
return `'current' expects a draft, got: ${e}`;
},
"Object.defineProperty() cannot be used on an Immer draft",
"Object.setPrototypeOf() cannot be used on an Immer draft",
"Immer only supports deleting array indices",
"Immer only supports setting array indices and the 'length' property",
function(e) {
return `'original' expects a draft, got: ${e}`;
}
// Note: if more errors are added, the errorOffset in Patches.ts should be increased
// See Patches.ts for additional errors
] : [];
function m(e, ...r) {
if (process.env.NODE_ENV !== "production") {
const t = Ze[e], n = typeof t == "function" ? t.apply(null, r) : t;
throw new Error(`[Immer] ${n}`);
}
throw new Error(
`[Immer] minified error nr: ${e}. Full error at: https://bit.ly/3cXEKWf`
);
}
var T = Object.getPrototypeOf;
function A(e) {
return !!e && !!e[h];
}
function v(e) {
var r;
return e ? De(e) || Array.isArray(e) || !!e[Pe] || !!((r = e.constructor) != null && r[Pe]) || W(e) || U(e) : !1;
}
var er = Object.prototype.constructor.toString();
function De(e) {
if (!e || typeof e != "object")
return !1;
const r = T(e);
if (r === null)
return !0;
const t = Object.hasOwnProperty.call(r, "constructor") && r.constructor;
return t === Object ? !0 : typeof t == "function" && Function.toString.call(t) === er;
}
function I(e, r) {
Y(e) === 0 ? Reflect.ownKeys(e).forEach((t) => {
r(t, e[t], e);
}) : e.forEach((t, n) => r(n, t, e));
}
function Y(e) {
const r = e[h];
return r ? r.type_ : Array.isArray(e) ? 1 : W(e) ? 2 : U(e) ? 3 : 0;
}
function ee(e, r) {
return Y(e) === 2 ? e.has(r) : Object.prototype.hasOwnProperty.call(e, r);
}
function Fe(e, r, t) {
const n = Y(e);
n === 2 ? e.set(r, t) : n === 3 ? e.add(t) : e[r] = t;
}
function rr(e, r) {
return e === r ? e !== 0 || 1 / e === 1 / r : e !== e && r !== r;
}
function W(e) {
return e instanceof Map;
}
function U(e) {
return e instanceof Set;
}
function g(e) {
return e.copy_ || e.base_;
}
function re(e, r) {
if (W(e))
return new Map(e);
if (U(e))
return new Set(e);
if (Array.isArray(e))
return Array.prototype.slice.call(e);
const t = De(e);
if (r === !0 || r === "class_only" && !t) {
const n = Object.getOwnPropertyDescriptors(e);
delete n[h];
let o = Reflect.ownKeys(n);
for (let s = 0; s < o.length; s++) {
const a = o[s], c = n[a];
c.writable === !1 && (c.writable = !0, c.configurable = !0), (c.get || c.set) && (n[a] = {
configurable: !0,
writable: !0,
// could live with !!desc.set as well here...
enumerable: c.enumerable,
value: e[a]
});
}
return Object.create(T(e), n);
} else {
const n = T(e);
if (n !== null && t)
return { ...e };
const o = Object.create(n);
return Object.assign(o, e);
}
}
function ce(e, r = !1) {
return q(e) || A(e) || !v(e) || (Y(e) > 1 && (e.set = e.add = e.clear = e.delete = tr), Object.freeze(e), r && Object.entries(e).forEach(([t, n]) => ce(n, !0))), e;
}
function tr() {
m(2);
}
function q(e) {
return Object.isFrozen(e);
}
var nr = {};
function R(e) {
const r = nr[e];
return r || m(0, e), r;
}
var C;
function ke() {
return C;
}
function or(e, r) {
return {
drafts_: [],
parent_: e,
immer_: r,
// Whenever the modified draft contains a draft from another scope, we
// need to prevent auto-freezing so the unowned draft can be finalized.
canAutoFreeze_: !0,
unfinalizedDrafts_: 0
};
}
function we(e, r) {
r && (R("Patches"), e.patches_ = [], e.inversePatches_ = [], e.patchListener_ = r);
}
function te(e) {
ne(e), e.drafts_.forEach(ir), e.drafts_ = null;
}
function ne(e) {
e === C && (C = e.parent_);
}
function ge(e) {
return C = or(C, e);
}
function ir(e) {
const r = e[h];
r.type_ === 0 || r.type_ === 1 ? r.revoke_() : r.revoked_ = !0;
}
function Se(e, r) {
r.unfinalizedDrafts_ = r.drafts_.length;
const t = r.drafts_[0];
return e !== void 0 && e !== t ? (t[h].modified_ && (te(r), m(4)), v(e) && (e = $(r, e), r.parent_ || M(r, e)), r.patches_ && R("Patches").generateReplacementPatches_(
t[h].base_,
e,
r.patches_,
r.inversePatches_
)) : e = $(r, t, []), te(r), r.patches_ && r.patchListener_(r.patches_, r.inversePatches_), e !== Ce ? e : void 0;
}
function $(e, r, t) {
if (q(r))
return r;
const n = r[h];
if (!n)
return I(
r,
(o, s) => ve(e, n, r, o, s, t)
), r;
if (n.scope_ !== e)
return r;
if (!n.modified_)
return M(e, n.base_, !0), n.base_;
if (!n.finalized_) {
n.finalized_ = !0, n.scope_.unfinalizedDrafts_--;
const o = n.copy_;
let s = o, a = !1;
n.type_ === 3 && (s = new Set(o), o.clear(), a = !0), I(
s,
(c, _) => ve(e, n, o, c, _, t, a)
), M(e, o, !1), t && e.patches_ && R("Patches").generatePatches_(
n,
t,
e.patches_,
e.inversePatches_
);
}
return n.copy_;
}
function ve(e, r, t, n, o, s, a) {
if (process.env.NODE_ENV !== "production" && o === t && m(5), A(o)) {
const c = s && r && r.type_ !== 3 && // Set objects are atomic since they have no keys.
!ee(r.assigned_, n) ? s.concat(n) : void 0, _ = $(e, o, c);
if (Fe(t, n, _), A(_))
e.canAutoFreeze_ = !1;
else
return;
} else a && t.add(o);
if (v(o) && !q(o)) {
if (!e.immer_.autoFreeze_ && e.unfinalizedDrafts_ < 1)
return;
$(e, o), (!r || !r.scope_.parent_) && typeof n != "symbol" && Object.prototype.propertyIsEnumerable.call(t, n) && M(e, o);
}
}
function M(e, r, t = !1) {
!e.parent_ && e.immer_.autoFreeze_ && e.canAutoFreeze_ && ce(r, t);
}
function sr(e, r) {
const t = Array.isArray(e), n = {
type_: t ? 1 : 0,
// Track which produce call this is associated with.
scope_: r ? r.scope_ : ke(),
// True for both shallow and deep changes.
modified_: !1,
// Used during finalization.
finalized_: !1,
// Track which properties have been assigned (true) or deleted (false).
assigned_: {},
// The parent draft state.
parent_: r,
// The base state.
base_: e,
// The base proxy.
draft_: null,
// set below
// The base copy with any updated values.
copy_: null,
// Called by the `produce` function.
revoke_: null,
isManual_: !1
};
let o = n, s = ue;
t && (o = [n], s = D);
const { revoke: a, proxy: c } = Proxy.revocable(o, s);
return n.draft_ = c, n.revoke_ = a, c;
}
var ue = {
get(e, r) {
if (r === h)
return e;
const t = g(e);
if (!ee(t, r))
return ar(e, t, r);
const n = t[r];
return e.finalized_ || !v(n) ? n : n === B(e.base_, r) ? (K(e), e.copy_[r] = ie(n, e)) : n;
},
has(e, r) {
return r in g(e);
},
ownKeys(e) {
return Reflect.ownKeys(g(e));
},
set(e, r, t) {
const n = ze(g(e), r);
if (n != null && n.set)
return n.set.call(e.draft_, t), !0;
if (!e.modified_) {
const o = B(g(e), r), s = o == null ? void 0 : o[h];
if (s && s.base_ === t)
return e.copy_[r] = t, e.assigned_[r] = !1, !0;
if (rr(t, o) && (t !== void 0 || ee(e.base_, r)))
return !0;
K(e), oe(e);
}
return e.copy_[r] === t && // special case: handle new props with value 'undefined'
(t !== void 0 || r in e.copy_) || // special case: NaN
Number.isNaN(t) && Number.isNaN(e.copy_[r]) || (e.copy_[r] = t, e.assigned_[r] = !0), !0;
},
deleteProperty(e, r) {
return B(e.base_, r) !== void 0 || r in e.base_ ? (e.assigned_[r] = !1, K(e), oe(e)) : delete e.assigned_[r], e.copy_ && delete e.copy_[r], !0;
},
// Note: We never coerce `desc.value` into an Immer draft, because we can't make
// the same guarantee in ES5 mode.
getOwnPropertyDescriptor(e, r) {
const t = g(e), n = Reflect.getOwnPropertyDescriptor(t, r);
return n && {
writable: !0,
configurable: e.type_ !== 1 || r !== "length",
enumerable: n.enumerable,
value: t[r]
};
},
defineProperty() {
m(11);
},
getPrototypeOf(e) {
return T(e.base_);
},
setPrototypeOf() {
m(12);
}
}, D = {};
I(ue, (e, r) => {
D[e] = function() {
return arguments[0] = arguments[0][0], r.apply(this, arguments);
};
});
D.deleteProperty = function(e, r) {
return process.env.NODE_ENV !== "production" && isNaN(parseInt(r)) && m(13), D.set.call(this, e, r, void 0);
};
D.set = function(e, r, t) {
return process.env.NODE_ENV !== "production" && r !== "length" && isNaN(parseInt(r)) && m(14), ue.set.call(this, e[0], r, t, e[0]);
};
function B(e, r) {
const t = e[h];
return (t ? g(t) : e)[r];
}
function ar(e, r, t) {
var o;
const n = ze(r, t);
return n ? "value" in n ? n.value : (
// This is a very special case, if the prop is a getter defined by the
// prototype, we should invoke it with the draft as context!
(o = n.get) == null ? void 0 : o.call(e.draft_)
) : void 0;
}
function ze(e, r) {
if (!(r in e))
return;
let t = T(e);
for (; t; ) {
const n = Object.getOwnPropertyDescriptor(t, r);
if (n)
return n;
t = T(t);
}
}
function oe(e) {
e.modified_ || (e.modified_ = !0, e.parent_ && oe(e.parent_));
}
function K(e) {
e.copy_ || (e.copy_ = re(
e.base_,
e.scope_.immer_.useStrictShallowCopy_
));
}
var cr = class {
constructor(e) {
this.autoFreeze_ = !0, this.useStrictShallowCopy_ = !1, this.produce = (r, t, n) => {
if (typeof r == "function" && typeof t != "function") {
const s = t;
t = r;
const a = this;
return function(_ = s, ...E) {
return a.produce(_, (p) => t.call(this, p, ...E));
};
}
typeof t != "function" && m(6), n !== void 0 && typeof n != "function" && m(7);
let o;
if (v(r)) {
const s = ge(this), a = ie(r, void 0);
let c = !0;
try {
o = t(a), c = !1;
} finally {
c ? te(s) : ne(s);
}
return we(s, n), Se(o, s);
} else if (!r || typeof r != "object") {
if (o = t(r), o === void 0 && (o = r), o === Ce && (o = void 0), this.autoFreeze_ && ce(o, !0), n) {
const s = [], a = [];
R("Patches").generateReplacementPatches_(r, o, s, a), n(s, a);
}
return o;
} else
m(1, r);
}, this.produceWithPatches = (r, t) => {
if (typeof r == "function")
return (a, ...c) => this.produceWithPatches(a, (_) => r(_, ...c));
let n, o;
return [this.produce(r, t, (a, c) => {
n = a, o = c;
}), n, o];
}, typeof (e == null ? void 0 : e.autoFreeze) == "boolean" && this.setAutoFreeze(e.autoFreeze), typeof (e == null ? void 0 : e.useStrictShallowCopy) == "boolean" && this.setUseStrictShallowCopy(e.useStrictShallowCopy);
}
createDraft(e) {
v(e) || m(8), A(e) && (e = ur(e));
const r = ge(this), t = ie(e, void 0);
return t[h].isManual_ = !0, ne(r), t;
}
finishDraft(e, r) {
const t = e && e[h];
(!t || !t.isManual_) && m(9);
const { scope_: n } = t;
return we(n, r), Se(void 0, n);
}
/**
* Pass true to automatically freeze all copies created by Immer.
*
* By default, auto-freezing is enabled.
*/
setAutoFreeze(e) {
this.autoFreeze_ = e;
}
/**
* Pass true to enable strict shallow copy.
*
* By default, immer does not copy the object descriptors such as getter, setter and non-enumrable properties.
*/
setUseStrictShallowCopy(e) {
this.useStrictShallowCopy_ = e;
}
applyPatches(e, r) {
let t;
for (t = r.length - 1; t >= 0; t--) {
const o = r[t];
if (o.path.length === 0 && o.op === "replace") {
e = o.value;
break;
}
}
t > -1 && (r = r.slice(t + 1));
const n = R("Patches").applyPatches_;
return A(e) ? n(e, r) : this.produce(
e,
(o) => n(o, r)
);
}
};
function ie(e, r) {
const t = W(e) ? R("MapSet").proxyMap_(e, r) : U(e) ? R("MapSet").proxySet_(e, r) : sr(e, r);
return (r ? r.scope_ : ke()).drafts_.push(t), t;
}
function ur(e) {
return A(e) || m(10, e), Ie(e);
}
function Ie(e) {
if (!v(e) || q(e))
return e;
const r = e[h];
let t;
if (r) {
if (!r.modified_)
return r.base_;
r.finalized_ = !0, t = re(e, r.scope_.immer_.useStrictShallowCopy_);
} else
t = re(e, !0);
return I(t, (n, o) => {
Fe(t, n, Ie(o));
}), r && (r.finalized_ = !1), t;
}
var y = new cr(), fr = y.produce;
y.produceWithPatches.bind(
y
);
y.setAutoFreeze.bind(y);
y.setUseStrictShallowCopy.bind(y);
y.applyPatches.bind(y);
y.createDraft.bind(y);
y.finishDraft.bind(y);
let Q = [], Z = !1;
function lr(e) {
Q.push(e), Z || (Z = !0, Promise.resolve().then(() => {
Q.forEach((r) => r()), Q = [], Z = !1;
}));
}
const w = {
events: {},
subscribe(e, r, t = "Anonymous") {
this.events[e] || (this.events[e] = []), this.events[e].push({
fn: r,
componentName: t,
timestamp: Date.now()
});
},
unsubscribe(e, r) {
this.events[e] && (this.events[e] = this.events[e].filter((t) => t.fn !== r));
},
// Optimized: deduplicate by storing only latest value for each event.
queuedPublishes: /* @__PURE__ */ new Map(),
publish(e, r) {
this.queuedPublishes.set(e, r), lr(() => {
const t = this.queuedPublishes.get(e), n = this.queuedPublishes.delete(e);
this.events[e] && n && this.events[e].forEach(({ fn: o, componentName: s }) => {
try {
o(t);
} catch (a) {
console.error(`[${s}] Error in "${e}" subscriber:`, a);
}
});
});
}
}, z = {};
function vr(e, r) {
z[e] || (z[e] = []), z[e].push(r);
}
function dr(e, r, t) {
const n = z[e] || [];
let o = 0;
const s = (a) => {
const c = n[o++];
c ? c(a, s) : t(a);
};
s(r);
}
function _r(e, r, t) {
let n = 0;
const o = (s) => {
const a = e[n++];
a ? a(s, o) : t(s);
};
o(r);
}
const fe = /* @__PURE__ */ new Map();
function $e(e) {
return typeof window > "u" ? null : e === "localStorage" ? window.localStorage : window.sessionStorage;
}
function mr(e, r) {
fe.set(e, r);
}
function hr(e, r) {
const t = fe.get(e);
if (!t) return;
const n = $e(t);
if (n)
try {
n.setItem(`${e}`, JSON.stringify(r));
} catch (o) {
console.error(`[Overwatch] Failed to persist key "${e}":`, o);
}
}
function yr(e) {
const r = fe.get(e);
if (!r) return;
const t = $e(r);
if (t)
try {
const n = t.getItem(`${e}`);
return n ? JSON.parse(n) : void 0;
} catch (n) {
console.error(`[Overwatch] Failed to retrieve persisted key "${e}":`, n);
return;
}
}
function pr(e, r, t) {
let n = t == null ? void 0 : t.store;
n || (n = S), t != null && t.persist && mr(e, t == null ? void 0 : t.persist);
const o = yr(e);
n.getSnapshot().hasOwnProperty(e) || n.set(e, o !== void 0 ? o : r);
}
function Rr(e, r) {
Object.entries(e).forEach(([t, n]) => {
pr(t, n, r);
});
}
function Re(e, r, t = S) {
const n = t.get(e);
dr(e, r, (o) => {
const s = Oe(n) && Oe(o) ? fr(n, (a) => {
Object.assign(a, o);
}) : o;
t.set(e, s), hr(e, s), w.publish(e, s);
});
}
function se(e, r = S) {
return r.get(e);
}
function Oe(e) {
return e !== null && typeof e == "object" && !Array.isArray(e);
}
function Or(e, r) {
const t = (r == null ? void 0 : r.store) || S, [n, o] = ae(() => se(e, t));
return j(() => {
if (t !== S) return;
const a = (c) => {
o(c);
};
return w.subscribe(e, a), () => {
w.unsubscribe(e, a);
};
}, [e]), [n, (a) => {
const c = r == null ? void 0 : r.middleware, _ = se(e, t), E = typeof a == "function" ? a(_) : a;
c != null && c.length ? _r(c, E, (p) => {
Re(e, p, t);
}) : Re(e, E, t);
}];
}
function Tr(e, r, t = (o, s) => o === s, n) {
const o = (n == null ? void 0 : n.store) || S, [s, a] = ae(() => r(se(e, o))), c = je(s);
return j(() => {
const _ = (E) => {
const p = r(E);
t(c.current, p) || (c.current = p, a(p));
};
return w.subscribe(e, _), () => w.unsubscribe(e, _);
}, [e, r, t]), s;
}
function Ar(e) {
return (r) => {
w.publish(e, r);
};
}
function Nr(e, r, t = "AnonymousComponent") {
const n = je(r);
j(() => {
n.current = r;
}), j(() => {
const o = (s) => {
try {
n.current(s);
} catch (a) {
console.error(`[${t}] Failed to handle "${e}"`, a);
}
};
return w.subscribe(e, o, t), () => {
w.unsubscribe(e, o);
};
}, [e, t]);
}
var k = { exports: {} }, N = {};
/**
* @license React
* react-jsx-runtime.production.js
*
* Copyright (c) Meta Platforms, Inc. and affiliates.
*
* This source code is licensed under the MIT license found in the
* LICENSE file in the root directory of this source tree.
*/
var Te;
function br() {
if (Te) return N;
Te = 1;
var e = Symbol.for("react.transitional.element"), r = Symbol.for("react.fragment");
function t(n, o, s) {
var a = null;
if (s !== void 0 && (a = "" + s), o.key !== void 0 && (a = "" + o.key), "key" in o) {
s = {};
for (var c in o)
c !== "key" && (s[c] = o[c]);
} else s = o;
return o = s.ref, {
$$typeof: e,
type: n,
key: a,
ref: o !== void 0 ? o : null,
props: s
};
}
return N.Fragment = r, N.jsx = t, N.jsxs = t, N;
}
var x = {};
/**
* @license React
* react-jsx-runtime.development.js
*
* Copyright (c) Meta Platforms, Inc. and affiliates.
*
* This source code is licensed under the MIT license found in the
* LICENSE file in the root directory of this source tree.
*/
var Ae;
function Er() {
return Ae || (Ae = 1, process.env.NODE_ENV !== "production" && function() {
function e(i) {
if (i == null) return null;
if (typeof i == "function")
return i.$$typeof === Xe ? null : i.displayName || i.name || null;
if (typeof i == "string") return i;
switch (i) {
case V:
return "Fragment";
case We:
return "Profiler";
case Ye:
return "StrictMode";
case Je:
return "Suspense";
case Le:
return "SuspenseList";
case He:
return "Activity";
}
if (typeof i == "object")
switch (typeof i.tag == "number" && console.error(
"Received an unexpected object in getComponentNameFromType(). This is likely a bug in React. Please file an issue."
), i.$$typeof) {
case Me:
return "Portal";
case qe:
return (i.displayName || "Context") + ".Provider";
case Ue:
return (i._context.displayName || "Context") + ".Consumer";
case Ve:
var u = i.render;
return i = i.displayName, i || (i = u.displayName || u.name || "", i = i !== "" ? "ForwardRef(" + i + ")" : "ForwardRef"), i;
case Ge:
return u = i.displayName || null, u !== null ? u : e(i.type) || "Memo";
case _e:
u = i._payload, i = i._init;
try {
return e(i(u));
} catch {
}
}
return null;
}
function r(i) {
return "" + i;
}
function t(i) {
try {
r(i);
var u = !1;
} catch {
u = !0;
}
if (u) {
u = console;
var f = u.error, l = typeof Symbol == "function" && Symbol.toStringTag && i[Symbol.toStringTag] || i.constructor.name || "Object";
return f.call(
u,
"The provided key is an unsupported type %s. This value must be coerced to a string before using it here.",
l
), r(i);
}
}
function n(i) {
if (i === V) return "<>";
if (typeof i == "object" && i !== null && i.$$typeof === _e)
return "<...>";
try {
var u = e(i);
return u ? "<" + u + ">" : "<...>";
} catch {
return "<...>";
}
}
function o() {
var i = J.A;
return i === null ? null : i.getOwner();
}
function s() {
return Error("react-stack-top-frame");
}
function a(i) {
if (me.call(i, "key")) {
var u = Object.getOwnPropertyDescriptor(i, "key").get;
if (u && u.isReactWarning) return !1;
}
return i.key !== void 0;
}
function c(i, u) {
function f() {
he || (he = !0, console.error(
"%s: `key` is not a prop. Trying to access it will result in `undefined` being returned. If you need to access the same value within the child component, you should pass it as a different prop. (https://react.dev/link/special-props)",
u
));
}
f.isReactWarning = !0, Object.defineProperty(i, "key", {
get: f,
configurable: !0
});
}
function _() {
var i = e(this.type);
return ye[i] || (ye[i] = !0, console.error(
"Accessing element.ref was removed in React 19. ref is now a regular prop. It will be removed from the JSX Element type in a future release."
)), i = this.props.ref, i !== void 0 ? i : null;
}
function E(i, u, f, l, P, b, G, H) {
return f = b.ref, i = {
$$typeof: de,
type: i,
key: u,
props: b,
_owner: P
}, (f !== void 0 ? f : null) !== null ? Object.defineProperty(i, "ref", {
enumerable: !1,
get: _
}) : Object.defineProperty(i, "ref", { enumerable: !1, value: null }), i._store = {}, Object.defineProperty(i._store, "validated", {
configurable: !1,
enumerable: !1,
writable: !0,
value: 0
}), Object.defineProperty(i, "_debugInfo", {
configurable: !1,
enumerable: !1,
writable: !0,
value: null
}), Object.defineProperty(i, "_debugStack", {
configurable: !1,
enumerable: !1,
writable: !0,
value: G
}), Object.defineProperty(i, "_debugTask", {
configurable: !1,
enumerable: !1,
writable: !0,
value: H
}), Object.freeze && (Object.freeze(i.props), Object.freeze(i)), i;
}
function p(i, u, f, l, P, b, G, H) {
var d = u.children;
if (d !== void 0)
if (l)
if (Be(d)) {
for (l = 0; l < d.length; l++)
le(d[l]);
Object.freeze && Object.freeze(d);
} else
console.error(
"React.jsx: Static children should always be an array. You are likely explicitly calling React.jsxs or React.jsxDEV. Use the Babel transform instead."
);
else le(d);
if (me.call(u, "key")) {
d = e(i);
var O = Object.keys(u).filter(function(Ke) {
return Ke !== "key";
});
l = 0 < O.length ? "{key: someKey, " + O.join(": ..., ") + ": ...}" : "{key: someKey}", Ee[d + l] || (O = 0 < O.length ? "{" + O.join(": ..., ") + ": ...}" : "{}", console.error(
`A props object containing a "key" prop is being spread into JSX:
let props = %s;
<%s {...props} />
React keys must be passed directly to JSX without using spread:
let props = %s;
<%s key={someKey} {...props} />`,
l,
d,
O,
d
), Ee[d + l] = !0);
}
if (d = null, f !== void 0 && (t(f), d = "" + f), a(u) && (t(u.key), d = "" + u.key), "key" in u) {
f = {};
for (var X in u)
X !== "key" && (f[X] = u[X]);
} else f = u;
return d && c(
f,
typeof i == "function" ? i.displayName || i.name || "Unknown" : i
), E(
i,
d,
b,
P,
o(),
f,
G,
H
);
}
function le(i) {
typeof i == "object" && i !== null && i.$$typeof === de && i._store && (i._store.validated = 1);
}
var F = Qe, de = Symbol.for("react.transitional.element"), Me = Symbol.for("react.portal"), V = Symbol.for("react.fragment"), Ye = Symbol.for("react.strict_mode"), We = Symbol.for("react.profiler"), Ue = Symbol.for("react.consumer"), qe = Symbol.for("react.context"), Ve = Symbol.for("react.forward_ref"), Je = Symbol.for("react.suspense"), Le = Symbol.for("react.suspense_list"), Ge = Symbol.for("react.memo"), _e = Symbol.for("react.lazy"), He = Symbol.for("react.activity"), Xe = Symbol.for("react.client.reference"), J = F.__CLIENT_INTERNALS_DO_NOT_USE_OR_WARN_USERS_THEY_CANNOT_UPGRADE, me = Object.prototype.hasOwnProperty, Be = Array.isArray, L = console.createTask ? console.createTask : function() {
return null;
};
F = {
"react-stack-bottom-frame": function(i) {
return i();
}
};
var he, ye = {}, pe = F["react-stack-bottom-frame"].bind(
F,
s
)(), be = L(n(s)), Ee = {};
x.Fragment = V, x.jsx = function(i, u, f, l, P) {
var b = 1e4 > J.recentlyCreatedOwnerStacks++;
return p(
i,
u,
f,
!1,
l,
P,
b ? Error("react-stack-top-frame") : pe,
b ? L(n(i)) : be
);
}, x.jsxs = function(i, u, f, l, P) {
var b = 1e4 > J.recentlyCreatedOwnerStacks++;
return p(
i,
u,
f,
!0,
l,
P,
b ? Error("react-stack-top-frame") : pe,
b ? L(n(i)) : be
);
};
}()), x;
}
var Ne;
function Pr() {
return Ne || (Ne = 1, process.env.NODE_ENV === "production" ? k.exports = br() : k.exports = Er()), k.exports;
}
var xe = Pr();
function wr(e, r = S) {
const [t, n] = ae(!1);
return j(() => {
t || (r.hydrate(e), n(!0));
}, [e, t, r]), t;
}
function xr({ snapshot: e, children: r }) {
return wr(e) ? /* @__PURE__ */ xe.jsx(xe.Fragment, { children: r }) : null;
}
export {
xr as Hydrated,
vr as applyMiddleware,
Rr as batchCreateSharedStates,
pr as createSharedState,
Ar as useBroadcast,
Nr as useEvent,
Tr as usePicker,
Or as useSharedState
};