reverse-machine
Version:
**Next-generation JavaScript deobfuscation powered by AI**
4,342 lines • 249 kB
JavaScript
var __defProp = Object.defineProperty;
var __defProps = Object.defineProperties;
var __getOwnPropDescs = Object.getOwnPropertyDescriptors;
var __getOwnPropSymbols = Object.getOwnPropertySymbols;
var __hasOwnProp = Object.prototype.hasOwnProperty;
var __propIsEnum = Object.prototype.propertyIsEnumerable;
var __defNormalProp = (obj, key, value) => key in obj ? __defProp(obj, key, { enumerable: true, configurable: true, writable: true, value }) : obj[key] = value;
var __spreadValues = (a, b2) => {
for (var prop in b2 || (b2 = {}))
if (__hasOwnProp.call(b2, prop))
__defNormalProp(a, prop, b2[prop]);
if (__getOwnPropSymbols)
for (var prop of __getOwnPropSymbols(b2)) {
if (__propIsEnum.call(b2, prop))
__defNormalProp(a, prop, b2[prop]);
}
return a;
};
var __spreadProps = (a, b2) => __defProps(a, __getOwnPropDescs(b2));
var __publicField = (obj, key, value) => __defNormalProp(obj, key + "" , value);
var za = Object.defineProperty;
var Us = (e) => {
throw TypeError(e);
};
var xr = (e, t) => {
for (var r in t) za(e, r, { get: t[r], enumerable: true });
};
var Xs = (e, t, r) => t.has(e) || Us("Cannot " + r);
var mt = (e, t, r) => (Xs(e, t, "read from private field"), t.get(e)), Ys = (e, t, r) => t.has(e) ? Us("Cannot add the same private member more than once") : t instanceof WeakSet ? t.add(e) : t.set(e, r), Hs = (e, t, r, n) => (Xs(e, t, "write to private field"), t.set(e, r), r);
var Rs = {};
xr(Rs, { languages: () => Tm, options: () => Ha, printers: () => dm });
var Vs = [{ name: "JavaScript", type: "programming", extensions: [".js", "._js", ".bones", ".cjs", ".es", ".es6", ".gs", ".jake", ".javascript", ".jsb", ".jscad", ".jsfl", ".jslib", ".jsm", ".jspre", ".jss", ".mjs", ".njs", ".pac", ".sjs", ".ssjs", ".xsjs", ".xsjslib", ".start.frag", ".end.frag", ".wxs"], tmScope: "source.js", aceMode: "javascript", aliases: ["js", "node"], codemirrorMode: "javascript", codemirrorMimeType: "text/javascript", interpreters: ["chakra", "d8", "gjs", "js", "node", "nodejs", "qjs", "rhino", "v8", "v8-shell", "zx"], filenames: ["Jakefile", "start.frag", "end.frag"], parsers: ["babel", "acorn", "espree", "meriyah", "babel-flow", "babel-ts", "flow", "typescript"], vscodeLanguageIds: ["javascript", "mongo"], linguistLanguageId: 183 }, { name: "Flow", type: "programming", extensions: [".js.flow"], tmScope: "source.js", aceMode: "javascript", aliases: [], codemirrorMode: "javascript", codemirrorMimeType: "text/javascript", interpreters: ["chakra", "d8", "gjs", "js", "node", "nodejs", "qjs", "rhino", "v8", "v8-shell"], filenames: [], parsers: ["flow", "babel-flow"], vscodeLanguageIds: ["javascript"], linguistLanguageId: 183 }, { name: "JSX", type: "programming", extensions: [".jsx"], tmScope: "source.js.jsx", aceMode: "javascript", aliases: void 0, codemirrorMode: "jsx", codemirrorMimeType: "text/jsx", interpreters: void 0, filenames: void 0, parsers: ["babel", "babel-flow", "babel-ts", "flow", "typescript", "espree", "meriyah"], vscodeLanguageIds: ["javascriptreact"], group: "JavaScript", linguistLanguageId: 183 }, { name: "TypeScript", type: "programming", extensions: [".ts", ".cts", ".mts"], tmScope: "source.ts", aceMode: "typescript", aliases: ["ts"], codemirrorMode: "javascript", codemirrorMimeType: "application/typescript", interpreters: ["bun", "deno", "ts-node", "tsx"], parsers: ["typescript", "babel-ts"], vscodeLanguageIds: ["typescript"], linguistLanguageId: 378 }, { name: "TSX", type: "programming", extensions: [".tsx"], tmScope: "source.tsx", aceMode: "javascript", codemirrorMode: "jsx", codemirrorMimeType: "text/jsx", group: "TypeScript", parsers: ["typescript", "babel-ts"], vscodeLanguageIds: ["typescriptreact"], linguistLanguageId: 94901924 }];
var vs = {};
xr(vs, { canAttachComment: () => kp, embed: () => oi, experimentalFeatures: () => fm, getCommentChildNodes: () => Ip, getVisitorKeys: () => br, handleComments: () => ts, insertPragma: () => di, isBlockComment: () => te, isGap: () => Lp, massageAstNode: () => Bu, print: () => Ga, printComment: () => ju, willPrintOwnComments: () => rs });
var Za = (e, t, r, n) => {
if (!(e && t == null)) return t.replaceAll ? t.replaceAll(r, n) : r.global ? t.replace(r, n) : t.split(r).join(n);
}, X = Za;
var eo = (e, t, r) => {
if (!(e && t == null)) return Array.isArray(t) || typeof t == "string" ? t[r < 0 ? t.length + r : r] : t.at(r);
}, v = eo;
function to(e) {
return e !== null && typeof e == "object";
}
var $s = to;
function* ro(e, t) {
let { getVisitorKeys: r, filter: n = () => true } = t, s = (u) => $s(u) && n(u);
for (let u of r(e)) {
let i = e[u];
if (Array.isArray(i)) for (let a of i) s(a) && (yield a);
else s(i) && (yield i);
}
}
function* no(e, t) {
let r = [e];
for (let n = 0; n < r.length; n++) {
let s = r[n];
for (let u of ro(s, t)) yield u, r.push(u);
}
}
function Ks(e, { getVisitorKeys: t, predicate: r }) {
for (let n of no(e, { getVisitorKeys: t })) if (r(n)) return true;
return false;
}
var Qs = () => 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function zs(e) {
return e === 12288 || e >= 65281 && e <= 65376 || e >= 65504 && e <= 65510;
}
function Zs(e) {
return e >= 4352 && e <= 4447 || e === 8986 || e === 8987 || e === 9001 || e === 9002 || e >= 9193 && e <= 9196 || e === 9200 || e === 9203 || e === 9725 || e === 9726 || e === 9748 || e === 9749 || e >= 9776 && e <= 9783 || e >= 9800 && e <= 9811 || e === 9855 || e >= 9866 && e <= 9871 || e === 9875 || e === 9889 || e === 9898 || e === 9899 || e === 9917 || e === 9918 || e === 9924 || e === 9925 || e === 9934 || e === 9940 || e === 9962 || e === 9970 || e === 9971 || e === 9973 || e === 9978 || e === 9981 || e === 9989 || e === 9994 || e === 9995 || e === 10024 || e === 10060 || e === 10062 || e >= 10067 && e <= 10069 || e === 10071 || e >= 10133 && e <= 10135 || e === 10160 || e === 10175 || e === 11035 || e === 11036 || e === 11088 || e === 11093 || e >= 11904 && e <= 11929 || e >= 11931 && e <= 12019 || e >= 12032 && e <= 12245 || e >= 12272 && e <= 12287 || e >= 12289 && e <= 12350 || e >= 12353 && e <= 12438 || e >= 12441 && e <= 12543 || e >= 12549 && e <= 12591 || e >= 12593 && e <= 12686 || e >= 12688 && e <= 12773 || e >= 12783 && e <= 12830 || e >= 12832 && e <= 12871 || e >= 12880 && e <= 42124 || e >= 42128 && e <= 42182 || e >= 43360 && e <= 43388 || e >= 44032 && e <= 55203 || e >= 63744 && e <= 64255 || e >= 65040 && e <= 65049 || e >= 65072 && e <= 65106 || e >= 65108 && e <= 65126 || e >= 65128 && e <= 65131 || e >= 94176 && e <= 94180 || e === 94192 || e === 94193 || e >= 94208 && e <= 100343 || e >= 100352 && e <= 101589 || e >= 101631 && e <= 101640 || e >= 110576 && e <= 110579 || e >= 110581 && e <= 110587 || e === 110589 || e === 110590 || e >= 110592 && e <= 110882 || e === 110898 || e >= 110928 && e <= 110930 || e === 110933 || e >= 110948 && e <= 110951 || e >= 110960 && e <= 111355 || e >= 119552 && e <= 119638 || e >= 119648 && e <= 119670 || e === 126980 || e === 127183 || e === 127374 || e >= 127377 && e <= 127386 || e >= 127488 && e <= 127490 || e >= 127504 && e <= 127547 || e >= 127552 && e <= 127560 || e === 127568 || e === 127569 || e >= 127584 && e <= 127589 || e >= 127744 && e <= 127776 || e >= 127789 && e <= 127797 || e >= 127799 && e <= 127868 || e >= 127870 && e <= 127891 || e >= 127904 && e <= 127946 || e >= 127951 && e <= 127955 || e >= 127968 && e <= 127984 || e === 127988 || e >= 127992 && e <= 128062 || e === 128064 || e >= 128066 && e <= 128252 || e >= 128255 && e <= 128317 || e >= 128331 && e <= 128334 || e >= 128336 && e <= 128359 || e === 128378 || e === 128405 || e === 128406 || e === 128420 || e >= 128507 && e <= 128591 || e >= 128640 && e <= 128709 || e === 128716 || e >= 128720 && e <= 128722 || e >= 128725 && e <= 128727 || e >= 128732 && e <= 128735 || e === 128747 || e === 128748 || e >= 128756 && e <= 128764 || e >= 128992 && e <= 129003 || e === 129008 || e >= 129292 && e <= 129338 || e >= 129340 && e <= 129349 || e >= 129351 && e <= 129535 || e >= 129648 && e <= 129660 || e >= 129664 && e <= 129673 || e >= 129679 && e <= 129734 || e >= 129742 && e <= 129756 || e >= 129759 && e <= 129769 || e >= 129776 && e <= 129784 || e >= 131072 && e <= 196605 || e >= 196608 && e <= 262141;
}
var eu = (e) => !(zs(e) || Zs(e));
var so = /[^\x20-\x7F]/u;
function uo(e) {
if (!e) return 0;
if (!so.test(e)) return e.length;
e = e.replace(Qs(), " ");
let t = 0;
for (let r of e) {
let n = r.codePointAt(0);
n <= 31 || n >= 127 && n <= 159 || n >= 768 && n <= 879 || (t += eu(n) ? 1 : 2);
}
return t;
}
var st = uo;
function hr(e) {
return (t, r, n) => {
let s = !!(n != null && n.backwards);
if (r === false) return false;
let { length: u } = t, i = r;
for (; i >= 0 && i < u; ) {
let a = t.charAt(i);
if (e instanceof RegExp) {
if (!e.test(a)) return i;
} else if (!e.includes(a)) return i;
s ? i-- : i++;
}
return i === -1 || i === u ? i : false;
};
}
var Ye = hr(" "), tu = hr(",; "), ru = hr(/[^\n\r]/u);
function io(e, t, r) {
let n = !!(r != null && r.backwards);
if (t === false) return false;
let s = e.charAt(t);
if (n) {
if (e.charAt(t - 1) === "\r" && s === `
`) return t - 2;
if (s === `
` || s === "\r" || s === "\u2028" || s === "\u2029") return t - 1;
} else {
if (s === "\r" && e.charAt(t + 1) === `
`) return t + 2;
if (s === `
` || s === "\r" || s === "\u2028" || s === "\u2029") return t + 1;
}
return t;
}
var He = io;
function ao(e, t, r = {}) {
let n = Ye(e, r.backwards ? t - 1 : t, r), s = He(e, n, r);
return n !== s;
}
var ee = ao;
function oo(e, t) {
if (t === false) return false;
if (e.charAt(t) === "/" && e.charAt(t + 1) === "*") {
for (let r = t + 2; r < e.length; ++r) if (e.charAt(r) === "*" && e.charAt(r + 1) === "/") return r + 2;
}
return t;
}
var _t = oo;
function po(e, t) {
return t === false ? false : e.charAt(t) === "/" && e.charAt(t + 1) === "/" ? ru(e, t) : t;
}
var Mt = po;
function co(e, t) {
let r = null, n = t;
for (; n !== r; ) r = n, n = tu(e, n), n = _t(e, n), n = Ye(e, n);
return n = Mt(e, n), n = He(e, n), n !== false && ee(e, n);
}
var vt = co;
function lo(e) {
return Array.isArray(e) && e.length > 0;
}
var O = lo;
var nu = new Proxy(() => {
}, { get: () => nu }), jt = nu;
var gr = "'", su = '"';
function mo(e, t) {
let r = t === true || t === gr ? gr : su, n = r === gr ? su : gr, s = 0, u = 0;
for (let i of e) i === r ? s++ : i === n && u++;
return s > u ? n : r;
}
var Sr = mo;
function yo(e, t, r) {
let n = t === '"' ? "'" : '"', u = X(false, e, new RegExp(`\\\\(.)|(["'])`, "gsu"), (i, a, o) => a === n ? a : o === t ? "\\" + o : o || (r && /^[^\n\r"'0-7\\bfnrt-vx\u2028\u2029]$/u.test(a) ? a : "\\" + a));
return t + u + t;
}
var uu = yo;
function fo(e, t) {
jt.ok(new RegExp(`^(?<quote>["']).*\\k<quote>$`, "su").test(e));
let r = e.slice(1, -1), n = t.parser === "json" || t.parser === "jsonc" || t.parser === "json5" && t.quoteProps === "preserve" && !t.singleQuote ? '"' : t.__isInHtmlAttribute ? "'" : Sr(r, t.singleQuote);
return e.charAt(0) === n ? e : uu(r, n, false);
}
var ut = fo;
var iu = (e) => Number.isInteger(e) && e >= 0;
function j(e) {
var _a2, _b;
var n, s, u;
let t = (_a2 = (n = e.range) == null ? void 0 : n[0]) != null ? _a2 : e.start, r = (u = (_b = (s = e.declaration) == null ? void 0 : s.decorators) != null ? _b : e.decorators) == null ? void 0 : u[0];
return r ? Math.min(j(r), t) : t;
}
function P(e) {
var _a2;
var r;
return (_a2 = (r = e.range) == null ? void 0 : r[1]) != null ? _a2 : e.end;
}
function Bt(e, t) {
let r = j(e);
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return os(e, r) || Jp(t) && os(t, r) || t.type === "ExpressionStatement" && os(t, r);
}
function Jp(e) {
return e.type === "AsConstExpression" || e.type === "TSAsExpression" && e.typeAnnotation.type === "TSTypeReference" && e.typeAnnotation.typeName.type === "Identifier" && e.typeAnnotation.typeName.name === "const";
}
async function Np(e, t, r) {
let { node: n } = r, s = n.quasis.map((m) => m.value.raw), u = 0, i = s.reduce((m, f, y) => y === 0 ? f : m + "@prettier-placeholder-" + u++ + "-id" + f, ""), a = await e(i, { parser: "scss" }), o = Yt(r, t), p = Gp(a, o);
if (!p) throw new Error("Couldn't insert all the expressions");
return ["`", D([F, p]), E, "`"];
}
function Gp(e, t) {
if (!O(t)) return e;
let r = 0, n = ft(Ut(e), (s) => typeof s != "string" || !s.includes("@prettier-placeholder") ? s : s.split(/@prettier-placeholder-(\d+)-id/u).map((u, i) => i % 2 === 0 ? ve(u) : (r++, t[u])));
return t.length === r ? n : null;
}
function qp({ node: e, parent: t, grandparent: r }) {
return r && e.quasis && t.type === "JSXExpressionContainer" && r.type === "JSXElement" && r.openingElement.name.name === "style" && r.openingElement.attributes.some((n) => n.type === "JSXAttribute" && n.name.name === "jsx") || (t == null ? void 0 : t.type) === "TaggedTemplateExpression" && t.tag.type === "Identifier" && t.tag.name === "css" || (t == null ? void 0 : t.type) === "TaggedTemplateExpression" && t.tag.type === "MemberExpression" && t.tag.object.name === "css" && (t.tag.property.name === "global" || t.tag.property.name === "resolve");
}
function Yr(e) {
return e.type === "Identifier" && e.name === "styled";
}
function ri(e) {
return /^[A-Z]/u.test(e.object.name) && e.property.name === "extend";
}
function Wp({ parent: e }) {
if (!e || e.type !== "TaggedTemplateExpression") return false;
let t = e.tag.type === "ParenthesizedExpression" ? e.tag.expression : e.tag;
switch (t.type) {
case "MemberExpression":
return Yr(t.object) || ri(t);
case "CallExpression":
return Yr(t.callee) || t.callee.type === "MemberExpression" && (t.callee.object.type === "MemberExpression" && (Yr(t.callee.object.object) || ri(t.callee.object)) || t.callee.object.type === "CallExpression" && Yr(t.callee.object.callee));
case "Identifier":
return t.name === "css";
default:
return false;
}
}
function Up({ parent: e, grandparent: t }) {
return (t == null ? void 0 : t.type) === "JSXAttribute" && e.type === "JSXExpressionContainer" && t.name.type === "JSXIdentifier" && t.name.name === "css";
}
function Xp(e) {
if (qp(e) || Wp(e) || Up(e) || ei(e)) return Np;
}
var ni = Xp;
async function Yp(e, t, r) {
let { node: n } = r, s = n.quasis.length, u = Yt(r, t), i = [];
for (let a = 0; a < s; a++) {
let o = n.quasis[a], p = a === 0, m = a === s - 1, f = o.value.cooked, y = f.split(`
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if (!m && /#[^\n\r]*$/u.test(y[C - 1])) return null;
let g = null;
B ? g = Hp(y) : g = await e(f, { parser: "graphql" }), g ? (g = Ur(g, false), !p && A && i.push(""), i.push(g), !m && T && i.push("")) : !p && !m && A && i.push(""), c && i.push(c);
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return ["`", D([F, b(F, i)]), F, "`"];
}
function Hp(e) {
let t = [], r = false, n = e.map((s) => s.trim());
for (let [s, u] of n.entries()) u !== "" && (n[s - 1] === "" && r ? t.push([F, u]) : t.push(u), r = true);
return t.length === 0 ? null : b(F, t);
}
function Vp({ node: e, parent: t }) {
return Xr({ node: e, parent: t }, "GraphQL") || t && (t.type === "TaggedTemplateExpression" && (t.tag.type === "MemberExpression" && t.tag.object.name === "graphql" && t.tag.property.name === "experimental" || t.tag.type === "Identifier" && (t.tag.name === "gql" || t.tag.name === "graphql")) || t.type === "CallExpression" && t.callee.type === "Identifier" && t.callee.name === "graphql");
}
function $p(e) {
if (Vp(e)) return Yp;
}
var si = $p;
var cs = 0;
async function ui(e, t, r, n, s) {
let { node: u } = n, i = cs;
cs = cs + 1 >>> 0;
let a = (B) => `PRETTIER_HTML_PLACEHOLDER_${B}_${i}_IN_JS`, o = u.quasis.map((B, g, _) => g === _.length - 1 ? B.value.cooked : B.value.cooked + a(g)).join(""), p = Yt(n, r), m = new RegExp(a(String.raw`(\d+)`), "gu"), f = 0, y = await t(o, { parser: e, __onHtmlRoot(B) {
f = B.children.length;
} }), C = ft(y, (B) => {
if (typeof B != "string") return B;
let g = [], _ = B.split(m);
for (let M = 0; M < _.length; M++) {
let J = _[M];
if (M % 2 === 0) {
J && (J = as(J), s.__embeddedInHtml && (J = X(false, J, /<\/(?=script\b)/giu, String.raw`<\/`)), g.push(J));
continue;
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let I = Number(J);
g.push(p[I]);
}
return g;
}), c = /^\s/u.test(o) ? " " : "", A = /\s$/u.test(o) ? " " : "", T = s.htmlWhitespaceSensitivity === "ignore" ? F : c && A ? x : null;
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}
function Kp(e) {
return Xr(e, "HTML") || e.match((t) => t.type === "TemplateLiteral", (t, r) => t.type === "TaggedTemplateExpression" && t.tag.type === "Identifier" && t.tag.name === "html" && r === "quasi");
}
var Qp = ui.bind(void 0, "html"), zp = ui.bind(void 0, "angular");
function Zp(e) {
if (Kp(e)) return Qp;
if (ti(e)) return zp;
}
var ii = Zp;
async function ec(e, t, r) {
let { node: n } = r, s = X(false, n.quasis[0].value.raw, /((?:\\\\)*)\\`/gu, (o, p) => "\\".repeat(p.length / 2) + "`"), u = tc(s), i = u !== "";
i && (s = X(false, s, new RegExp(`^${u}`, "gmu"), ""));
let a = Ur(await e(s, { parser: "markdown", __inJsTemplate: true }), true);
return ["`", i ? D([E, a]) : [Rr, _u(a)], E, "`"];
}
function tc(e) {
let t = e.match(/^([^\S\n]*)\S/mu);
return t === null ? "" : t[1];
}
function rc(e) {
if (nc(e)) return ec;
}
function nc({ node: e, parent: t }) {
return (t == null ? void 0 : t.type) === "TaggedTemplateExpression" && e.quasis.length === 1 && t.tag.type === "Identifier" && (t.tag.name === "md" || t.tag.name === "markdown");
}
var ai = rc;
function sc(e) {
let { node: t } = e;
if (t.type !== "TemplateLiteral" || uc(t)) return;
let r;
for (let n of [ni, si, ii, ai]) if (r = n(e), !!r) return t.quasis.length === 1 && t.quasis[0].value.raw.trim() === "" ? "``" : async (...s) => {
let u = await r(...s);
return u && at(__spreadValues({ embed: true }, u.label), u);
};
}
function uc({ quasis: e }) {
return e.some(({ value: { cooked: t } }) => t === null);
}
var oi = sc;
var ic = /\*\/$/, ac = /^\/\*\*?/, mi = /^\s*(\/\*\*?(.|\r?\n)*?\*\/)/, oc = /(^|\s+)\/\/([^\n\r]*)/g, pi = /^(\r?\n)+/, pc = /(?:^|\r?\n) *(@[^\n\r]*?) *\r?\n *(?![^\n\r@]*\/\/[^]*)([^\s@][^\n\r@]+?) *\r?\n/g, ci = /(?:^|\r?\n) *@(\S+) *([^\n\r]*)/g, cc = /(\r?\n|^) *\* ?/g, yi = [];
function fi(e) {
let t = e.match(mi);
return t ? t[0].trimStart() : "";
}
function Di(e) {
let t = e.match(mi), r = t == null ? void 0 : t[0];
return r == null ? e : e.slice(r.length);
}
function Ei(e) {
let t = `
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e = X(false, e.replace(ac, "").replace(ic, ""), cc, "$1");
let r = "";
for (; r !== e; ) r = e, e = X(false, e, pc, `${t}$1 $2${t}`);
e = e.replace(pi, "").trimEnd();
let n = /* @__PURE__ */ Object.create(null), s = X(false, e, ci, "").replace(pi, "").trimEnd(), u;
for (; u = ci.exec(e); ) {
let i = X(false, u[2], oc, "");
if (typeof n[u[1]] == "string" || Array.isArray(n[u[1]])) {
let a = n[u[1]];
n[u[1]] = [...yi, ...Array.isArray(a) ? a : [a], i];
} else n[u[1]] = i;
}
return { comments: s, pragmas: n };
}
function Fi({ comments: e = "", pragmas: t = {} }) {
let r = `
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if (!e) {
if (i.length === 0) return "";
if (i.length === 1 && !Array.isArray(t[i[0]])) {
let p = t[i[0]];
return `${n} ${li(i[0], p)[0]}${u}`;
}
}
let o = e.split(r).map((p) => `${s} ${p}`).join(r) + r;
return n + r + (e ? o : "") + (e && i.length > 0 ? s + r : "") + a + u;
}
function li(e, t) {
return [...yi, ...Array.isArray(t) ? t : [t]].map((r) => `@${e} ${r}`.trim());
}
var Ci = "format";
function lc(e) {
if (!e.startsWith("#!")) return "";
let t = e.indexOf(`
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return t === -1 ? e : e.slice(0, t);
}
var Ai = lc;
function mc(e) {
let t = Ai(e);
t && (e = e.slice(t.length + 1));
let r = fi(e), { pragmas: n, comments: s } = Ei(r);
return { shebang: t, text: e, pragmas: n, comments: s };
}
function di(e) {
let { shebang: t, text: r, pragmas: n, comments: s } = mc(e), u = Di(r), i = Fi({ pragmas: __spreadValues({ [Ci]: "" }, n), comments: s.trimStart() });
return (t ? `${t}
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}
function yc(e, t) {
let { originalText: r, [Symbol.for("comments")]: n, locStart: s, locEnd: u, [Symbol.for("printedComments")]: i } = t, { node: a } = e, o = s(a), p = u(a);
for (let m of n) s(m) >= o && u(m) <= p && i.add(m);
return r.slice(o, p);
}
var Ti = yc;
function ls(e, t) {
var u, i, a, o, p, m, f, y, C;
if (e.isRoot) return false;
let { node: r, key: n, parent: s } = e;
if (t.__isInHtmlInterpolation && !t.bracketSpacing && Fc(r) && yr(e)) return true;
if (fc(r)) return false;
if (r.type === "Identifier") {
if ((u = r.extra) != null && u.parenthesized && /^PRETTIER_HTML_PLACEHOLDER_\d+_\d+_IN_JS$/u.test(r.name) || n === "left" && (r.name === "async" && !s.await || r.name === "let") && s.type === "ForOfStatement") return true;
if (r.name === "let") {
let c = (i = e.findAncestor((A) => A.type === "ForOfStatement")) == null ? void 0 : i.left;
if (c && pe(c, (A) => A === r)) return true;
}
if (n === "object" && r.name === "let" && s.type === "MemberExpression" && s.computed && !s.optional) {
let c = e.findAncestor((T) => T.type === "ExpressionStatement" || T.type === "ForStatement" || T.type === "ForInStatement"), A = c ? c.type === "ExpressionStatement" ? c.expression : c.type === "ForStatement" ? c.init : c.left : void 0;
if (A && pe(A, (T) => T === r)) return true;
}
if (n === "expression") switch (r.name) {
case "await":
case "interface":
case "module":
case "using":
case "yield":
case "let":
case "component":
case "hook":
case "type": {
let c = e.findAncestor((A) => !xe(A));
if (c !== s && c.type === "ExpressionStatement") return true;
}
}
return false;
}
if (r.type === "ObjectExpression" || r.type === "FunctionExpression" || r.type === "ClassExpression" || r.type === "DoExpression") {
let c = (a = e.findAncestor((A) => A.type === "ExpressionStatement")) == null ? void 0 : a.expression;
if (c && pe(c, (A) => A === r)) return true;
}
if (r.type === "ObjectExpression") {
let c = (o = e.findAncestor((A) => A.type === "ArrowFunctionExpression")) == null ? void 0 : o.body;
if (c && c.type !== "SequenceExpression" && c.type !== "AssignmentExpression" && pe(c, (A) => A === r)) return true;
}
switch (s.type) {
case "ParenthesizedExpression":
return false;
case "ClassDeclaration":
case "ClassExpression":
if (n === "superClass" && (r.type === "ArrowFunctionExpression" || r.type === "AssignmentExpression" || r.type === "AwaitExpression" || r.type === "BinaryExpression" || r.type === "ConditionalExpression" || r.type === "LogicalExpression" || r.type === "NewExpression" || r.type === "ObjectExpression" || r.type === "SequenceExpression" || r.type === "TaggedTemplateExpression" || r.type === "UnaryExpression" || r.type === "UpdateExpression" || r.type === "YieldExpression" || r.type === "TSNonNullExpression" || r.type === "ClassExpression" && O(r.decorators))) return true;
break;
case "ExportDefaultDeclaration":
return xi(e, t) || r.type === "SequenceExpression";
case "Decorator":
if (n === "expression" && !Ac(r)) return true;
break;
case "TypeAnnotation":
if (e.match(void 0, void 0, (c, A) => A === "returnType" && c.type === "ArrowFunctionExpression") && Ec(r)) return true;
break;
case "BinaryExpression":
if (n === "left" && (s.operator === "in" || s.operator === "instanceof") && r.type === "UnaryExpression") return true;
break;
case "VariableDeclarator":
if (n === "init" && e.match(void 0, void 0, (c, A) => A === "declarations" && c.type === "VariableDeclaration", (c, A) => A === "left" && c.type === "ForInStatement")) return true;
break;
}
switch (r.type) {
case "UpdateExpression":
if (s.type === "UnaryExpression") return r.prefix && (r.operator === "++" && s.operator === "+" || r.operator === "--" && s.operator === "-");
case "UnaryExpression":
switch (s.type) {
case "UnaryExpression":
return r.operator === s.operator && (r.operator === "+" || r.operator === "-");
case "BindExpression":
return true;
case "MemberExpression":
case "OptionalMemberExpression":
return n === "object";
case "TaggedTemplateExpression":
return true;
case "NewExpression":
case "CallExpression":
case "OptionalCallExpression":
return n === "callee";
case "BinaryExpression":
return n === "left" && s.operator === "**";
case "TSNonNullExpression":
return true;
default:
return false;
}
case "BinaryExpression":
if (s.type === "UpdateExpression" || r.operator === "in" && Dc(e)) return true;
if (r.operator === "|>" && ((p = r.extra) != null && p.parenthesized)) {
let c = e.grandparent;
if (c.type === "BinaryExpression" && c.operator === "|>") return true;
}
case "TSTypeAssertion":
case "TSAsExpression":
case "TSSatisfiesExpression":
case "AsExpression":
case "AsConstExpression":
case "SatisfiesExpression":
case "LogicalExpression":
switch (s.type) {
case "TSAsExpression":
case "TSSatisfiesExpression":
case "AsExpression":
case "AsConstExpression":
case "SatisfiesExpression":
return !xe(r);
case "ConditionalExpression":
return xe(r) || fu(r);
case "CallExpression":
case "NewExpression":
case "OptionalCallExpression":
return n === "callee";
case "ClassExpression":
case "ClassDeclaration":
return n === "superClass";
case "TSTypeAssertion":
case "TaggedTemplateExpression":
case "UnaryExpression":
case "JSXSpreadAttribute":
case "SpreadElement":
case "BindExpression":
case "AwaitExpression":
case "TSNonNullExpression":
case "UpdateExpression":
return true;
case "MemberExpression":
case "OptionalMemberExpression":
return n === "object";
case "AssignmentExpression":
case "AssignmentPattern":
return n === "left" && (r.type === "TSTypeAssertion" || xe(r));
case "LogicalExpression":
if (r.type === "LogicalExpression") return s.operator !== r.operator;
case "BinaryExpression": {
let { operator: c, type: A } = r;
if (!c && A !== "TSTypeAssertion") return true;
let T = sr(c), B = s.operator, g = sr(B);
return g > T || n === "right" && g === T || g === T && !ar(B, c) ? true : g < T && c === "%" ? B === "+" || B === "-" : !!Tu(B);
}
default:
return false;
}
case "SequenceExpression":
return s.type !== "ForStatement";
case "YieldExpression":
if (s.type === "AwaitExpression" || s.type === "TSTypeAssertion") return true;
case "AwaitExpression":
switch (s.type) {
case "TaggedTemplateExpression":
case "UnaryExpression":
case "LogicalExpression":
case "SpreadElement":
case "TSAsExpression":
case "TSSatisfiesExpression":
case "TSNonNullExpression":
case "AsExpression":
case "AsConstExpression":
case "SatisfiesExpression":
case "BindExpression":
return true;
case "MemberExpression":
case "OptionalMemberExpression":
return n === "object";
case "NewExpression":
case "CallExpression":
case "OptionalCallExpression":
return n === "callee";
case "ConditionalExpression":
return n === "test";
case "BinaryExpression":
return !(!r.argument && s.operator === "|>");
default:
return false;
}
case "TSFunctionType":
if (e.match((c) => c.type === "TSFunctionType", (c, A) => A === "typeAnnotation" && c.type === "TSTypeAnnotation", (c, A) => A === "returnType" && c.type === "ArrowFunctionExpression")) return true;
case "TSConditionalType":
case "TSConstructorType":
case "ConditionalTypeAnnotation":
if (n === "extendsType" && Je(r) && s.type === r.type || n === "checkType" && Je(s)) return true;
if (n === "extendsType" && s.type === "TSConditionalType") {
let { typeAnnotation: c } = r.returnType || r.typeAnnotation;
if (c.type === "TSTypePredicate" && c.typeAnnotation && (c = c.typeAnnotation.typeAnnotation), c.type === "TSInferType" && c.typeParameter.constraint) return true;
}
case "TSUnionType":
case "TSIntersectionType":
if ((Oe(s) || qt(s)) && s.types.length > 1 && (!r.types || r.types.length > 1)) return true;
case "TSInferType":
if (r.type === "TSInferType") {
if (s.type === "TSRestType") return false;
if (n === "types" && (s.type === "TSUnionType" || s.type === "TSIntersectionType") && r.typeParameter.type === "TSTypeParameter" && r.typeParameter.constraint) return true;
}
case "TSTypeOperator":
return s.type === "TSArrayType" || s.type === "TSOptionalType" || s.type === "TSRestType" || n === "objectType" && s.type === "TSIndexedAccessType" || s.type === "TSTypeOperator" || s.type === "TSTypeAnnotation" && e.grandparent.type.startsWith("TSJSDoc");
case "TSTypeQuery":
return n === "objectType" && s.type === "TSIndexedAccessType" || n === "elementType" && s.type === "TSArrayType";
case "TypeOperator":
return s.type === "ArrayTypeAnnotation" || s.type === "NullableTypeAnnotation" || n === "objectType" && (s.type === "IndexedAccessType" || s.type === "OptionalIndexedAccessType") || s.type === "TypeOperator";
case "TypeofTypeAnnotation":
return n === "objectType" && (s.type === "IndexedAccessType" || s.type === "OptionalIndexedAccessType") || n === "elementType" && s.type === "ArrayTypeAnnotation";
case "ArrayTypeAnnotation":
return s.type === "NullableTypeAnnotation";
case "IntersectionTypeAnnotation":
case "UnionTypeAnnotation":
return s.type === "TypeOperator" || s.type === "ArrayTypeAnnotation" || s.type === "NullableTypeAnnotation" || s.type === "IntersectionTypeAnnotation" || s.type === "UnionTypeAnnotation" || n === "objectType" && (s.type === "IndexedAccessType" || s.type === "OptionalIndexedAccessType");
case "InferTypeAnnotation":
case "NullableTypeAnnotation":
return s.type === "ArrayTypeAnnotation" || n === "objectType" && (s.type === "IndexedAccessType" || s.type === "OptionalIndexedAccessType");
case "ComponentTypeAnnotation":
case "FunctionTypeAnnotation": {
if (r.type === "ComponentTypeAnnotation" && (r.rendersType === null || r.rendersType === void 0)) return false;
if (e.match(void 0, (A, T) => T === "typeAnnotation" && A.type === "TypeAnnotation", (A, T) => T === "returnType" && A.type === "ArrowFunctionExpression") || e.match(void 0, (A, T) => T === "typeAnnotation" && A.type === "TypePredicate", (A, T) => T === "typeAnnotation" && A.type === "TypeAnnotation", (A, T) => T === "returnType" && A.type === "ArrowFunctionExpression")) return true;
let c = s.type === "NullableTypeAnnotation" ? e.grandparent : s;
return c.type === "UnionTypeAnnotation" || c.type === "IntersectionTypeAnnotation" || c.type === "ArrayTypeAnnotation" || n === "objectType" && (c.type === "IndexedAccessType" || c.type === "OptionalIndexedAccessType") || n === "checkType" && s.type === "ConditionalTypeAnnotation" || n === "extendsType" && s.type === "ConditionalTypeAnnotation" && ((m = r.returnType) == null ? void 0 : m.type) === "InferTypeAnnotation" && ((f = r.returnType) == null ? void 0 : f.typeParameter.bound) || c.type === "NullableTypeAnnotation" || s.type === "FunctionTypeParam" && s.name === null && Q(r).some((A) => {
var T;
return ((T = A.typeAnnotation) == null ? void 0 : T.type) === "NullableTypeAnnotation";
});
}
case "OptionalIndexedAccessType":
return n === "objectType" && s.type === "IndexedAccessType";
case "StringLiteral":
case "NumericLiteral":
case "Literal":
if (typeof r.value == "string" && s.type === "ExpressionStatement" && typeof s.directive != "string") {
let c = e.grandparent;
return c.type === "Program" || c.type === "BlockStatement";
}
return n === "object" && G(s) && ye(r);
case "AssignmentExpression":
return !((n === "init" || n === "update") && s.type === "ForStatement" || n === "expression" && r.left.type !== "ObjectPattern" && s.type === "ExpressionStatement" || n === "key" && s.type === "TSPropertySignature" || s.type === "AssignmentExpression" || n === "expressions" && s.type === "SequenceExpression" && e.match(void 0, void 0, (c, A) => (A === "init" || A === "update") && c.type === "ForStatement") || n === "value" && s.type === "Property" && e.match(void 0, void 0, (c, A) => A === "properties" && c.type === "ObjectPattern") || s.type === "NGChainedExpression" || n === "node" && s.type === "JsExpressionRoot");
case "ConditionalExpression":
switch (s.type) {
case "TaggedTemplateExpression":
case "UnaryExpression":
case "SpreadElement":
case "BinaryExpression":
case "LogicalExpression":
case "NGPipeExpression":
case "ExportDefaultDeclaration":
case "AwaitExpression":
case "JSXSpreadAttribute":
case "TSTypeAssertion":
case "TypeCastExpression":
case "TSAsExpression":
case "TSSatisfiesExpression":
case "AsExpression":
case "AsConstExpression":
case "SatisfiesExpression":
case "TSNonNullExpression":
return true;
case "NewExpression":
case "CallExpression":
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return Lc(e, t, r);
case "JSXClosingElement":
return _c(e, t, r);
case "JSXOpeningFragment":
case "JSXClosingFragment":
return Mc(e, t);
case "JSXEmptyExpression":
return jc(e, t);
case "JSXText":
throw new Error("JSXText should be handled by JSXElement");
default:
throw new qe(n, "JSX");
}
}
function Jc(e) {
if (e.children.length === 0) return true;
if (e.children.length > 1) return false;
let t = e.children[0];
return t.type === "JSXText" && !fr(t);
}
function fr(e) {
return e.type === "JSXText" && (Hr.hasNonWhitespaceCharacter(ae(e)) || !/\n/u.test(ae(e)));
}
function Nc(e) {
return e.type === "JSXExpressionContainer" && K(e.expression) && e.expression.value === " " && !d(e.expression);
}
function Pi(e) {
let { node: t, parent: r } = e;
if (!Y(t) || !Y(r)) return false;
let { index: n, siblings: s } = e, u;
for (let i = n; i > 0; i--) {
let a = s[i - 1];
if (!(a.type === "JSXText" && !fr(a))) {
u = a;
break;
}
}
return (u == null ? void 0 : u.type) === "JSXExpressionContainer" && u.expression.type === "JSXEmptyExpression" && kt(u.expression);
}
function Gc(e) {
return kt(e.node) || Pi(e);
}
var Vr = Gc;
var qc = 0;
function $r(e, t, r) {
var M;
let { node: n, parent: s, grandparent: u, key: i } = e, a = i !== "body" && (s.type === "IfStatement" || s.type === "WhileStatement" || s.type === "SwitchStatement" || s.type === "DoWhileStatement"), o = n.operator === "|>" && ((M = e.root.extra) == null ? void 0 : M.__isUsingHackPipeline), p = As(e, t, r, false, a);
if (a) return p;
if (o) return l(p);
if (w(s) && s.callee === n || s.type === "UnaryExpression" || G(s) && !s.computed) return l([D([E, ...p]), E]);
let m = s.type === "ReturnStatement" || s.type === "ThrowStatement" || s.type === "JSXExpressionContainer" && u.type === "JSXAttribute" || n.operator !== "|" && s.type === "JsExpressionRoot" || n.type !== "NGPipeExpression" && (s.type === "NGRoot" && t.parser === "__ng_binding" || s.type === "NGMicrosyntaxExpression" && u.type === "NGMicrosyntax" && u.body.length === 1) || n === s.body && s.type === "ArrowFunctionExpression" || n !== s.body && s.type === "ForStatement" || s.type === "ConditionalExpression" && u.type !== "ReturnStatement" && u.type !== "ThrowStatement" && !w(u) || s.type === "TemplateLiteral", f = s.type === "AssignmentExpression" || s.type === "VariableDeclarator" || s.type === "ClassProperty" || s.type === "PropertyDefinition" || s.type === "TSAbstractPropertyDefinition" || s.type === "ClassPrivateProperty" || Te(s), y = Fe(n.left) && ar(n.operator, n.left.operator);
if (m || Ht(n) && !y || !Ht(n) && f) return l(p);
if (p.length === 0) return "";
let C = Y(n.right), c = p.findIndex((J) => typeof J != "string" && !Array.isArray(J) && J.type === fe), A = p.slice(0, c === -1 ? 1 : c + 1), T = p.slice(A.length, C ? -1 : void 0), B = Symbol("logicalChain-" + ++qc), g = l([...A, D(T)], { id: B });
if (!C) return g;
let _ = v(false, p, -1);
return l([g, xt(_, { groupId: B })]);
}
function As(e, t, r, n, s) {
var B;
let { node: u } = e;
if (!Fe(u)) return [l(r())];
let i = [];
ar(u.operator, u.left.operator) ? i = e.call((g) => As(g, t, r, true, s), "left") : i.push(l(r("left")));
let a = Ht(u), o = (u.operator === "|>" || u.type === "NGPipeExpression" || Wc(e, t)) && !de(t.originalText, u.right), m = !d(u.right, h.Leading, Gr) && de(t.originalText, u.right), f = u.type === "NGPipeExpression" ? "|" : u.operator, y = u.type === "NGPipeExpression" && u.arguments.length > 0 ? l(D([E, ": ", b([x, ": "], e.map(() => be(2, l(r())), "arguments"))])) : "", C;
if (a) C = [f, de(t.originalText, u.right) ? D([x, r("right"), y]) : [" ", r("right"), y]];
else {
let _ = f === "|>" && ((B = e.root.extra) == null ? void 0 : B.__isUsingHackPipeline) ? e.call((M) => As(M, t, r, true, s), "right") : r("right");
if (t.experimentalOperatorPosition === "start") {
let M = "";
if (m) switch (Be(_)) {
case ge:
M = _.splice(0, 1)[0];
break;
case Se:
M = _.contents.splice(0, 1)[0];
break;
}
C = [x, M, f, " ", _, y];
} else C = [o ? x : "", f, o ? " " : x, _, y];
}
let { parent: c } = e, A = d(u.left, h.Trailing | h.Line);
if ((A || !(s && u.type === "LogicalExpression") && c.type !== u.type && u.left.type !== u.type && u.right.type !== u.type) && (C = l(C, { shouldBreak: A })), t.experimentalOperatorPosition === "start" ? i.push(a || m ? " " : "", C) : i.push(o ? "" : " ", C), n && d(u)) {
let g = Ut(Ee(e, i, t));
return g.type === _e ? g.parts : Array.isArray(g) ? g : [g];
}
return i;
}
function Ht(e) {
return e.type !== "LogicalExpression" ? false : !!(ue(e.right) && e.right.properties.length > 0 || U(e.right) && e.right.elements.length > 0 || Y(e.right));
}
var ki = (e) => e.type === "BinaryExpression" && e.operator === "|";
function Wc(e, t) {
return (t.parser === "__vue_expression" || t.parser === "__vue_ts_expression") && ki(e.node) && !e.hasAncestor((r) => !ki(r) && r.type !== "JsExpressionRoot");
}
function Li(e, t, r) {
let { node: n } = e;
if (n.type.startsWith("NG")) switch (n.type) {
case "NGRoot":
return [r("node"), d(n.node) ? " //" + Ve(n.node)[0].value.trimEnd() : ""];
case "NGPipeExpression":
return $r(e, t, r);
case "NGChainedExpression":
return l(b([";", x], e.map(() => Yc(e) ? r() : ["(", r(), ")"], "expressions")));
case "NGEmptyExpression":
return "";
case "NGMicrosyntax":
return e.map(() => [e.isFirst ? "" : Ii(e) ? " " : [";", x], r()], "body");
case "NGMicrosyntaxKey":
return /^[$_a-z][\w$]*(?:-[$_a-z][\w$])*$/iu.test(n.name) ? n.name : JSON.stringify(n.name);
case "NGMicrosyntaxExpression":
return [r("expression"), n.alias === null ? "" : [" as ", r("alias")]];
case "NGMicrosyntaxKeyedExpression": {
let { index: s, parent: u } = e, i = Ii(e) || Uc(e) || (s === 1 && (n.key.name === "then" || n.key.name === "else" || n.key.name === "as") || s === 2 && (n.key.name === "else" && u.body[s - 1].type === "NGMicrosyntaxKeyedExpression" && u.body[s - 1].key.name === "then" || n.key.name === "track")) && u.body[0].type === "NGMicrosyntaxExpression";
return [r("key"), i ? " " : ": ", r("expression")];
}
case "NGMicrosyntaxLet":
return ["let ", r("key"), n.value === null ? "" : [" = ", r("value")]];
case "NGMicrosyntaxAs":
return [r("key"), " as ", r("alias")];
default:
throw new qe(n, "Angular");
}
}
function Ii({ node: e, index: t }) {
return e.type === "NGMicrosyntaxKeyedExpression" && e.key.name === "of" && t === 1;
}
function Uc(e) {
let { node: t } = e;
return e.parent.body[1].key.name === "of" && t.type === "NGMicrosyntaxKeyedExpression" && t.key.name === "track" && t.key.type === "NGMicrosyntaxKey";
}
var Xc = R(["CallExpression", "OptionalCallExpression", "AssignmentExpression"]);
function Yc({ node: e }) {
return ur(e, Xc);
}
function ds(e, t, r) {
let { node: n } = e;
return l([b(x, e.map(r, "decorators")), _i(n, t) ? F : x]);
}
function wi(e, t, r) {
return Mi(e.node) ? [b(F, e.map(r, "declaration", "decorators")), F] : "";
}
function Oi(e, t, r) {
let { node: n, parent: s } = e, { decorators: u } = n;
if (!O(u) || Mi(s) || Vr(e)) return "";
let i = n.type === "ClassExpression" || n.type === "ClassDeclaration" || _i(n, t);
return [e.key === "declaration" && yu(s) ? F : i ? Ce : "", b(x, e.map(r, "decorators")), x];
}
function _i(e, t) {
return e.decorators.some((r) => ee(t.originalText, P(r)));
}
function Mi(e) {
var r;
if (e.type !== "ExportDefaultDeclaration" && e.type !== "ExportNamedDeclaration" && e.type !== "DeclareExportDeclaration") return false;
let t = (r = e.declaration) == null ? void 0 : r.decorators;
return O(t) && Bt(e, t[0]);
}
var Dt = class extends Error {
constructor() {
super(...arguments);
__publicField(this, "name", "ArgExpansionBailout");
}
};
function Hc(e, t, r) {
let { node: n } = e, s = le(n);
if (s.length === 0) return ["(", N(e, t), ")"];
let u = s.length - 1;
if (Kc(s)) {
let f = ["("];
return Gt(e, (y, C) => {
f.push(r()), C !== u && f.push(", ");
}), f.push(")"), f;
}
let i = false, a = [];
Gt(e, ({ node: f }, y) => {
let C = r();
y === u || (me(f, t) ? (i = true, C = [C, ",", F, F]) : C = [C, ",", x]), a.push(C);
});
let o = !t.parser.startsWith("__ng_") && n.type !== "ImportExpression" && n.type !== "TSImportType" && ce(t, "all") ? "," : "";
if (n.type === "TSImportType" && s.length === 1 && (s[0].type === "TSLiteralType" && K(s[0].literal) || K(s[0])) && !d(s[0])) return l(["(", ...a, S(o), ")"]);
function p() {
return l(["(", D([x, ...a]), o, x, ")"], { shouldBreak: true });
}
if (i || e.parent.type !== "Decorator" && Au(s)) return p();
if ($c(s)) {
let f = a.slice(1);
if (f.some(re)) return p();
let y;
try {
y = r(Gn(n, 0), { expandFirstArg: true });
} catch (C) {
if (C instanceof Dt) return p();
throw C;
}
return re(y) ? [Ce, tt([["(", l(y, { shouldBreak: true }), ", ", ...f, ")"], p()])] : tt([["(", y, ", ", ...f, ")"], ["(", l(y, { shouldBreak: true }), ", ", ...f, ")"], p()]);
}
if (Vc(s, a, t)) {
let f = a.slice(0, -1);
if (f.some(re)) return p();
let y;
try {
y = r(Gn(n, -1), { expandLastArg: true });
} catch (C) {
if (C instanceof Dt) return p();
throw C;
}
return re(y) ? [Ce, tt([["(", ...f, l(y, { shouldBreak: true }), ")"], p()])] : tt([["(", ...f, y, ")"], ["(", ...f, l(y, { shouldBreak: true }), ")"], p()]);
}
let m = ["(", D([E, ...a]), S(o), E, ")"];
return vr(e) ? m : l(m, { shouldBreak: a.some(re) || i });
}
function Dr(e, t = false) {
return ue(e) && (e.properties.length > 0 || d(e)) || U(e) && (e.elements.length > 0 || d(e)) || e.type === "TSTypeAssertion" && Dr(e.expression) || xe(e) && Dr(e.expression) || e.type === "FunctionExpression" || e.type === "ArrowFunctionExpression" && (!e.returnType || !e.returnType.typeAnnotation || e.returnType.typeAnnotation.type !== "TSTypeReference" || Qc(e.body)) && (e.body.type === "BlockStatement" || e.body.type === "ArrowFunctionExpression" && Dr(e.body, true) || ue(e.body) || U(e.body) || !t && (w(e.body) || e.body.type === "ConditionalExpression") || Y(e.body)) || e.type === "DoExpression" || e.type === "ModuleExpression";
}
function Vc(e, t, r) {
var u, i;
let n = v(false, e, -1);
if (e.length === 1) {
let a = v(false, t, -1);
if ((u = a.label) != null && u.embed && ((i = a.label) == null ? void 0 : i.hug) !== false) return true;
}
let s = v(false, e, -2);
return !d(n, h.Leading) && !d(n, h.Trailing) && Dr(n) && (!s || s.type !== n.type) && (e.length !== 2 || s.type !== "ArrowFunctionExpression" || !U(n)) && !(e.length > 1 && Ts(n, r));
}
function $c(e) {
if (e.length !== 2) return false;
let [t, r] = e;
return t.type === "ModuleExpression" && zc(r) ? true : !d(t) && (t.type === "FunctionExpression" || t.type === "ArrowFunctionExpression" && t.body.type === "BlockStatement") && r.type !== "FunctionExpression" && r.type !== "ArrowFunctionExpression" && r.type !== "ConditionalExpression" && ji(r) && !Dr(r);
}
function ji(e) {
var _a2;
if (e.type === "ParenthesizedExpression") return ji(e.expression);
if (xe(e) || e.type === "TypeCastExpression") {
let { typeAnnotation: t } = e;
if (t.type === "TypeAnnotation" && (t = t.typeAnnotation), t.type === "TSArrayType" && (t = t.elementType, t.type === "TSArrayType" && (t = t.elementType)), t.type === "GenericTypeAnnotation" || t.type === "TSTypeReference") {
let r = (_a2 = t.typeArguments) != null ? _a2 : t.typeParameters;
(r == null ? void 0 : r.params.length) === 1 && (t = r.params[0]);
}
return Nt(t) && we(e.expression, 1);
}
return yt(e) && le(e).length > 1 ? false : Fe(e) ? we(e.left, 1) && we(e.right, 1) : Jn(e) || we(e);
}
function Kc(e) {
return e.length === 2 ? vi(e, 0) : e.length === 3 ? e[0].type === "Identifier" && vi(e, 1) : false;
}
function vi(e, t) {
let r = e[t], n = e[t + 1];
return r.type === "ArrowFunctionExpression" && Q(r).length === 0 && r.body.type === "BlockStatement" && n.type === "ArrayExpression" && !e.some((s) => d(s));
}
function Qc(e) {
return e.type === "BlockStatement" && (e.body.some((t) => t.type !== "EmptyStatement") || d(e, h.Dangling));
}
function zc(e) {
if (!(e.type === "ObjectExpression" && e.properties.length === 1)) return false;
let [t] = e.properties;
return Te(t) ? !t.computed && (t.key.type === "Identifier" && t.key.name === "type" || K(t.key) && t.key.value === "type") && K(t.value) && t.value.value === "module" : false;
}
var Lt = Hc;
var Zc = (e) => ((e.type === "ChainExpression" || e.type === "TSNonNullExpression") && (e = e.expression), w(e) && le(e).length > 0);
function Ri(e, t, r) {
var p;
let n = r("object"), s = xs(e, t, r), { node: u } = e, i = e.findAncestor((m) => !(G(m) || m.type === "TSNonNullExpression")), a = e.findAncestor((m) => !(m.type === "ChainExpression" || m.type === "TSNonNullExpression")), o = i && (i.type === "NewExpression" || i.type === "BindExpression" || i.type === "AssignmentExpression" && i.left.type !== "Identifier") || u.computed || u.object.type === "Identifier" && u.property.type === "Identifier" && !G(a) || (a.type === "AssignmentExpression" || a.type === "VariableDeclarator") && (Zc(u.object) || ((p = n.label) == null ? void 0 : p.memberChain));
return at(n.label, [n, o ? s : l(D([E, s]))]);
}
function xs(e, t, r) {
let n = r("property"), { node: s } = e, u = V(e);
return s.computed ? !s.property || ye(s.property) ? [u, "[", n, "]"] : l([u, "[", D([E, n]), E, "]"]) : [u, ".", n];
}
function Ji(e, t, r) {
if (e.node.type === "ChainExpression") return e.call(() => Ji(e, t, r), "expression");
let n = (e.parent.type === "ChainExpression" ? e.grandparent : e.parent).type === "ExpressionStatement", s = [];
function u(L) {
let { originalText: se } = t, Ae = ot(se, P(L));
return se.charAt(Ae) === ")" ? Ae !== false && vt(se, Ae + 1) : me(L, t);
}
function i() {
let { node: L } = e;
if (L.type === "ChainExpression") return e.call(i, "expression");
if (w(L) && (dt(L.callee) || w(L.callee))) {
let se = u(L);
s.unshift({ node: L, hasTrailingEmptyLine: se, printed: [Ee(e, [V(e), rt(e, t, r), Lt(e, t, r)], t), se ? F : ""] }), e.call(i, "callee");
} else dt(L) ? (s.unshift({ node: L, needsParens: Le(e, t), printed: Ee(e, G(L) ? xs(e, t, r) : Kr(e, t, r), t) }), e.call(i, "object")) : L.type === "TSNonNullExpression" ? (s.unshift({ node: L, printed: Ee(e, "!", t) }), e.call(i, "expression")) : s.unshift({ node: L, printed: r() });
}
let { node: a } = e;
s.unshift({ node: a, printed: [V(e), rt(e, t, r), Lt(e, t, r)] }), a.callee && e.call(i, "callee");
let o = [], p = [s[0]], m = 1;
for (; m < s.length && (s[m].node.type === "TSNonNullExpression" || w(s[m].node) || G(s[m].node) && s[m].node.computed && ye(s[m].node.property)); ++m) p.push(s[m]);
if (!w(s[0].node)) for (; m + 1 < s.length && (dt(s[m].node) && dt(s[m + 1].node)); ++m) p.push(s[m]);
o.push(p), p = [];
let f = false;
for (; m < s.length; ++m) {
if (f && dt(s[m].node)) {
if (s[m].node.computed && ye(s[m].node.property)) {
p.push(s[m]);
continue;
}
o.push(p), p = [], f = false;
}
(w(s[m].node) || s[m].node.type === "ImportExpression") && (f = true), p.push(s[m]), d(s[m].node, h.Trailing) && (o.push(p), p = [], f = false);
}
p.length > 0 && o.push(p);
function y(L) {
return /^[A-Z]|^[$_]+$/u.test(L);
}
function C(L) {
return L.length <= t.tabWidth;
}
function c(L) {
var Ot;
let se = (Ot = L[1][0]) == null ? void 0 : Ot.node.computed;
if (L[0].length === 1) {
let nt = L[0][0].node;
return nt.type === "ThisExpression" || nt.type === "Identifier" && (y(nt.name) || n && C(nt.name) || se);
}
let Ae = v(false, L[0], -1).node;
return G(Ae) && Ae.property.type === "Identifier" && (y(Ae.property.name) || se);
}
let A = o.length >= 2 && !d(o[1][0].node) && c(o);
function T(L) {
let se = L.map((Ae) => Ae.printed);
return L.length > 0 && v(false, L, -1).needsParens ? ["(", ...se, ")"] : se;
}
function B(L) {
return L.length === 0 ? "" : D([F, b(F, L.map(T))]);
}
let g = o.map(T), _ = g, M = A ? 3 : 2, J = o.flat(), I = J.slice(1, -1).some((L) => d(L.node, h.Leading)) || J.slice(0, -1).some((L) => d(L.node, h.Trailing)) || o[M] && d(o[M][0].node, h.Leading);
if (o.length <= M && !I && !o.some((L) => v(false, L, -1).hasTrailingEmptyLine)) return vr(e) ? _ : l(_);
let q = v(false, o[A ? 1 : 0], -1).node, k = !w(q) && u(q), W = [T(o[0]), A ? o.slice(1, 2).map(T) : "", k ? F : "", B(o.slice(A ? 2 : 1))], ne = s.map(({ node: L }) => L).filter(w);
function Z() {
let L = v(false, v(false, o, -1), -1).node, se = v(false, g, -1);
return w(L) && re(se) && ne.slice(0, -1).some((Ae) => Ae.arguments.some(Rt));
}
let lt;
return I || ne.length > 2 && ne.some((L) => !L.arguments.every((se) => we(se))) || g.slice(0, -1).some(re) || Z() ? lt = l(W) : lt = [re(_) || k ? Ce : "", tt([_, W])], at({ memberChain: true }, lt);
}
var Ni = Ji;
function Qr(e, t, r) {
var m;
let { node: n } = e, s = n.type === "NewExpression", u = n.type === "ImportExpression", i = V(e), a = le(n), o = a.length === 1 && _r(a[0], t.originalText);
if (o || el(e) || Pt(n, e.parent)) {
let f = [];
if (Gt(e, () => {
f.push(r());
}), !(o && ((m = f[0].label) != null && m.embed))) return [s ? "new " : "", Gi(e, r), i, rt(e, t, r), "(", b(", ", f), ")"];
}
if (!u && !s && dt(n.callee) && !e.call((f) => Le(f, t), "callee", ...n.callee.type === "ChainExpression" ? ["expression"] : [])) return Ni(e, t, r);
let p = [s ? "new " : "", Gi(e, r), i, rt(e, t, r), Lt(e, t, r)];
return u || w(n.callee) ? l(p) : p;
}
function Gi(e, t) {
let { node: r } = e;
return r.type === "ImportExpression" ? `import${r.phase ? `.${r.phase}` : ""}` : t("callee");
}
function el(e) {
let { node: t } = e;
if (t.type !== "CallExpression" || t.optional || t.callee.type !== "Identifier") return false;
let r = le(t);
return t.callee.name === "require" ? r.length === 1 && K(r[0]) || r.length > 1 : t.callee.name === "define" && e.parent.type === "ExpressionStatement" ? r.length === 1 || r.length === 2 && r[0].type === "ArrayExpression" || r.length === 3 && K(r[0]) && r[1].type === "ArrayExpression" : false;
}
function ht(e, t, r, n, s, u) {
let i = tl(e, t, r, n, u), a = u ? r(u, { assignmentLayout: i }) : "";
switch (i) {
case "break-after-operator":
return l([l(n), s, l(D([x, a]))]);
case "never-break-after-operator":
return l([l(n), s, " ", a]);
case "fluid": {
let o = Symbol("assignment");
return l([l(n), s, l(D(x), { id: o }), je, xt(a, { groupId: o })]);
}
case "break-lhs":
return l([n, s, " ", l(a)]);
case "chain":
return [l(n), s, x, a];
case "chain-tail":
return [l(n), s, D([x, a])];
case "chain-tail-arrow-chain":
return [l(n), s, a];
case "only-left":
return n;
}
}
function Wi(e, t, r) {
let { node: n } = e;
return ht(e, t, r, r("left"), [" ", n.operator], "right");
}
function Ui(e, t, r) {
return ht(e, t, r, r("id"), " =", "init");
}
function tl(e, t, r, n, s) {
let { node: u } = e, i = u[s];
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function bl(e) {
return e.length === 1 ? e : e.toLowerCase().replace(/^([+-]?[\d.]+e)(?:\+|(-))?0*(?=\d)/u, "$1$2").replace(/^([+-]?[\d.]+)e[+-]?0+$/u, "$1").replace(/^([+-])?\./u, "$10.").replace(/(\.\d+?)0+(?=e|$)/u, "$1").replace(/\.(?=e|$)/u, "");
}
var Ft = bl;
var fn = /* @__PURE__ */ new WeakMap();
function Zi(e) {
return /^(?:\d+|\d+\.\d+)$/u.test(e);
}
function zi(e, t) {
return t.parser === "json" || t.parser === "jsonc" || !K(e.key) || ut(ae(e.key), t).slice(1, -1) !== e.key.value ? false : !!(Qi(e.key.value) && !(t.parser === "babel-ts" && e.type === "ClassProperty" || (t.parser === "typescript" || t.parser === "oxc-ts") && e.type === "PropertyDefinition") || Zi(e.key.value) && String(Number(e.key.value)) === e.key.value && e.type !== "ImportAttribute" && (t.parser === "babel" || t.parser === "acorn" || t.parser === "oxc" || t.parser === "espree" || t.parser === "meriyah" || t.parser === "__babel_estree"));
}
function Pl(e, t) {
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}
function Ct(e, t, r) {
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if (n.computed) return ["[", r("key"), "]"];
let { parent: s } = e, { key: u } = n;
if (t.quoteProps === "consistent" && !fn.has(s)) {
let i = e.siblings.some((a) => !a.computed && K(a.key) && !zi(a, t));
fn.set(s, i);
}
if (Pl(e, t)) {
let i = ut(JSON.stringify(u.type === "Identifier" ? u.name : u.value.toString()), t);
return e.call((a) => Ee(a, i, t), "key");
}
return zi(n, t) && (t.quoteProps === "as-needed" || t.quoteProps === "consistent" && !fn.get(s)) ? e.call((i) => Ee(i, /^\d/u.test(u.value) ? Ft(u.value) : u.value, t), "key") : r("key");
}
function Dn(e, t, r) {
let { node: n } = e;
return n.shorthand ? r("value") : ht(e, t, r, Ct(e, t, r), ":", "value");
}
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function En(e, t, r, n) {
if (kl(e)) return Fn(e, t, r);
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if ((s.type === "FunctionDeclaration" || s.type === "FunctionExpression") && (n != null && n.expandLastArg)) {
let { parent: m } = e;
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case "DebuggerStatement":
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case "TopicReference":
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case "ModuleExpression":
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Ya.ignoredProperties = Cm;
var Zt = { bracketSpacing: { category: "Common", type: "boolean", default: true, description: "Print spaces between brackets.", oppositeDescription: "Do not print spaces between brackets." }, objectWrap: { category: "Common", type: "choice", default: "preserve", description: "How to wrap object literals.", choices: [{ value: "preserve", description: "Keep as multi-line, if there is a newline between the opening brace and first property." }, { value: "collapse", description: "Fit to a single line when possible." }] }, singleQuote: { category: "Common", type: "boolean", default: false, description: "Use single quotes instead of double quotes." }, bracketSameLine: { category: "Common", type: "boolean", default: false, description: "Put > of opening tags on the last line instead of on a new line." }, singleAttributePerLine: { category: "Common", type: "boolean", default: false, description: "Enforce single attribute per line in HTML, Vue and JSX." } };
var St = "JavaScript", Am = { arrowParens: { category: St, type: "choice", default: "always", description: "Include parentheses around a sole arrow function parameter.", choices: [{ value: "always", description: "Always include parens. Example: `(x) => x`" }, { value: "avoid", description: "Omit parens when possible. Example: `x => x`" }] }, bracketSameLine: Zt.bracketSameLine, objectWrap: Zt.objectWrap, bracketSpacing: Zt.bracketSpacing, jsxBracketSameLine: { category: St, type: "boolean", description: "Put > on the last line instead of at a new line.", deprecated: "2.4.0" }, semi: { category: St, type: "boolean", default: true, description: "Print semicolons.", oppositeDescription: "Do not print semicolons, except at the beginning of lines which may need them." }, experimentalOperatorPosition: { category: St, type: "choice", default: "end", description: "Where to print operators when binary expressions wrap lines.", choices: [{ value: "start", description: "Print operators at the start of new lines." }, { value: "end", description: "Print operators at the end of previous lines." }] }, experimentalTernaries: { category: St, type: "boolean", default: false, description: "Use curious ternaries, with the question mark after the condition.", oppositeDescription: "Default behavior of ternaries; keep question marks on the same line as the consequent." }, singleQuote: Zt.singleQuote, jsxSingleQuote: { category: St, type: "boolean", default: false, description: "Use single quotes in JSX." }, quoteProps: { category: St, type: "choice", default: "as-needed", description: "Change when properties in objects are quoted.", choices: [{ value: "as-needed", description: "Only add quotes around object properties where required." }, { value: "consistent", description: "If at least one property in an object requires quotes, quote all properties." }, { value: "preserve", description: "Respect the input use of quotes in object properties." }] }, trailingComma: { category: St, type: "choice", default: "all", description: "Print trailing commas wherever possible when multi-line.", choices: [{ value: "all", description: "Trailing commas wherever possible (including function arguments)." }, { value: "es5", description: "Trailing commas where valid in ES5 (objects, arrays, etc.)" }, { value: "none", description: "No trailing commas." }] }, singleAttributePerLine: Zt.singleAttributePerLine }, Ha = Am;
var dm = { estree: vs, "estree-json": js }, Tm = [...Vs, ...qa];
var Nx = Rs;
export { Nx as default, Tm as languages, Ha as options, dm as printers };