vitepress-mermaid-preview
Version:
Mermaid preview for vitepress
1,153 lines • 56.8 kB
JavaScript
import { _ as a, s as gi, g as xi, q as Xt, p as di, a as fi, b as pi, l as Nt, H as mi, e as yi, y as bi, E as St, D as Yt, F as Ai, K as wi, i as Ci, aF as Si, R as Wt } from "./component-CJYcFyxT.js";
import { i as _i } from "./init-DjUOC4st.js";
import { o as ki } from "./ordinal-DfAQgscy.js";
import { l as zt } from "./linear-m73w_WNc.js";
function Ri(e, t, i) {
e = +e, t = +t, i = (n = arguments.length) < 2 ? (t = e, e = 0, 1) : n < 3 ? 1 : +i;
for (var s = -1, n = Math.max(0, Math.ceil((t - e) / i)) | 0, r = new Array(n); ++s < n; )
r[s] = e + s * i;
return r;
}
function yt() {
var e = ki().unknown(void 0), t = e.domain, i = e.range, s = 0, n = 1, r, g, m = !1, p = 0, k = 0, v = 0.5;
delete e.unknown;
function C() {
var b = t().length, E = n < s, D = E ? n : s, P = E ? s : n;
r = (P - D) / Math.max(1, b - p + k * 2), m && (r = Math.floor(r)), D += (P - D - r * (b - p)) * v, g = r * (1 - p), m && (D = Math.round(D), g = Math.round(g));
var I = Ri(b).map(function(y) {
return D + r * y;
});
return i(E ? I.reverse() : I);
}
return e.domain = function(b) {
return arguments.length ? (t(b), C()) : t();
}, e.range = function(b) {
return arguments.length ? ([s, n] = b, s = +s, n = +n, C()) : [s, n];
}, e.rangeRound = function(b) {
return [s, n] = b, s = +s, n = +n, m = !0, C();
}, e.bandwidth = function() {
return g;
}, e.step = function() {
return r;
}, e.round = function(b) {
return arguments.length ? (m = !!b, C()) : m;
}, e.padding = function(b) {
return arguments.length ? (p = Math.min(1, k = +b), C()) : p;
}, e.paddingInner = function(b) {
return arguments.length ? (p = Math.min(1, b), C()) : p;
}, e.paddingOuter = function(b) {
return arguments.length ? (k = +b, C()) : k;
}, e.align = function(b) {
return arguments.length ? (v = Math.max(0, Math.min(1, b)), C()) : v;
}, e.copy = function() {
return yt(t(), [s, n]).round(m).paddingInner(p).paddingOuter(k).align(v);
}, _i.apply(C(), arguments);
}
var bt = function() {
var e = /* @__PURE__ */ a(function(F, h, u, x) {
for (u = u || {}, x = F.length; x--; u[F[x]] = h) ;
return u;
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trace: /* @__PURE__ */ a(function() {
}, "trace"),
yy: {},
symbols_: { error: 2, start: 3, eol: 4, XYCHART: 5, chartConfig: 6, document: 7, CHART_ORIENTATION: 8, statement: 9, title: 10, text: 11, X_AXIS: 12, parseXAxis: 13, Y_AXIS: 14, parseYAxis: 15, LINE: 16, plotData: 17, BAR: 18, acc_title: 19, acc_title_value: 20, acc_descr: 21, acc_descr_value: 22, acc_descr_multiline_value: 23, SQUARE_BRACES_START: 24, commaSeparatedNumbers: 25, SQUARE_BRACES_END: 26, NUMBER_WITH_DECIMAL: 27, COMMA: 28, xAxisData: 29, bandData: 30, ARROW_DELIMITER: 31, commaSeparatedTexts: 32, yAxisData: 33, NEWLINE: 34, SEMI: 35, EOF: 36, alphaNum: 37, STR: 38, MD_STR: 39, alphaNumToken: 40, AMP: 41, NUM: 42, ALPHA: 43, PLUS: 44, EQUALS: 45, MULT: 46, DOT: 47, BRKT: 48, MINUS: 49, UNDERSCORE: 50, $accept: 0, $end: 1 },
terminals_: { 2: "error", 5: "XYCHART", 8: "CHART_ORIENTATION", 10: "title", 12: "X_AXIS", 14: "Y_AXIS", 16: "LINE", 18: "BAR", 19: "acc_title", 20: "acc_title_value", 21: "acc_descr", 22: "acc_descr_value", 23: "acc_descr_multiline_value", 24: "SQUARE_BRACES_START", 26: "SQUARE_BRACES_END", 27: "NUMBER_WITH_DECIMAL", 28: "COMMA", 31: "ARROW_DELIMITER", 34: "NEWLINE", 35: "SEMI", 36: "EOF", 38: "STR", 39: "MD_STR", 41: "AMP", 42: "NUM", 43: "ALPHA", 44: "PLUS", 45: "EQUALS", 46: "MULT", 47: "DOT", 48: "BRKT", 49: "MINUS", 50: "UNDERSCORE" },
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performAction: /* @__PURE__ */ a(function(h, u, x, d, w, o, at) {
var f = o.length - 1;
switch (w) {
case 5:
d.setOrientation(o[f]);
break;
case 9:
d.setDiagramTitle(o[f].text.trim());
break;
case 12:
d.setLineData({ text: "", type: "text" }, o[f]);
break;
case 13:
d.setLineData(o[f - 1], o[f]);
break;
case 14:
d.setBarData({ text: "", type: "text" }, o[f]);
break;
case 15:
d.setBarData(o[f - 1], o[f]);
break;
case 16:
this.$ = o[f].trim(), d.setAccTitle(this.$);
break;
case 17:
case 18:
this.$ = o[f].trim(), d.setAccDescription(this.$);
break;
case 19:
this.$ = o[f - 1];
break;
case 20:
this.$ = [Number(o[f - 2]), ...o[f]];
break;
case 21:
this.$ = [Number(o[f])];
break;
case 22:
d.setXAxisTitle(o[f]);
break;
case 23:
d.setXAxisTitle(o[f - 1]);
break;
case 24:
d.setXAxisTitle({ type: "text", text: "" });
break;
case 25:
d.setXAxisBand(o[f]);
break;
case 26:
d.setXAxisRangeData(Number(o[f - 2]), Number(o[f]));
break;
case 27:
this.$ = o[f - 1];
break;
case 28:
this.$ = [o[f - 2], ...o[f]];
break;
case 29:
this.$ = [o[f]];
break;
case 30:
d.setYAxisTitle(o[f]);
break;
case 31:
d.setYAxisTitle(o[f - 1]);
break;
case 32:
d.setYAxisTitle({ type: "text", text: "" });
break;
case 33:
d.setYAxisRangeData(Number(o[f - 2]), Number(o[f]));
break;
case 37:
this.$ = { text: o[f], type: "text" };
break;
case 38:
this.$ = { text: o[f], type: "text" };
break;
case 39:
this.$ = { text: o[f], type: "markdown" };
break;
case 40:
this.$ = o[f];
break;
case 41:
this.$ = o[f - 1] + "" + o[f];
break;
}
}, "anonymous"),
table: [e(t, i, { 3: 1, 4: 2, 7: 4, 5: s, 34: n, 35: r, 36: g }), { 1: [3] }, e(t, i, { 4: 2, 7: 4, 3: 8, 5: s, 34: n, 35: r, 36: g }), e(t, i, { 4: 2, 7: 4, 6: 9, 3: 10, 5: s, 8: [1, 11], 34: n, 35: r, 36: g }), { 1: [2, 4], 9: 12, 10: [1, 13], 12: [1, 14], 14: [1, 15], 16: [1, 16], 18: [1, 17], 19: [1, 18], 21: [1, 19], 23: [1, 20] }, e(m, [2, 34]), e(m, [2, 35]), e(m, [2, 36]), { 1: [2, 1] }, e(t, i, { 4: 2, 7: 4, 3: 21, 5: s, 34: n, 35: r, 36: g }), { 1: [2, 3] }, e(m, [2, 5]), e(t, [2, 7], { 4: 22, 34: n, 35: r, 36: g }), { 11: 23, 37: 24, 38: p, 39: k, 40: 27, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }, { 11: 39, 13: 38, 24: W, 27: z, 29: 40, 30: 41, 37: 24, 38: p, 39: k, 40: 27, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }, { 11: 45, 15: 44, 27: U, 33: 46, 37: 24, 38: p, 39: k, 40: 27, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }, { 11: 49, 17: 48, 24: X, 37: 24, 38: p, 39: k, 40: 27, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }, { 11: 52, 17: 51, 24: X, 37: 24, 38: p, 39: k, 40: 27, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }, { 20: [1, 53] }, { 22: [1, 54] }, e(l, [2, 18]), { 1: [2, 2] }, e(l, [2, 8]), e(l, [2, 9]), e(L, [2, 37], { 40: 55, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }), e(L, [2, 38]), e(L, [2, 39]), e(S, [2, 40]), e(S, [2, 42]), e(S, [2, 43]), e(S, [2, 44]), e(S, [2, 45]), e(S, [2, 46]), e(S, [2, 47]), e(S, [2, 48]), e(S, [2, 49]), e(S, [2, 50]), e(S, [2, 51]), e(l, [2, 10]), e(l, [2, 22], { 30: 41, 29: 56, 24: W, 27: z }), e(l, [2, 24]), e(l, [2, 25]), { 31: [1, 57] }, { 11: 59, 32: 58, 37: 24, 38: p, 39: k, 40: 27, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }, e(l, [2, 11]), e(l, [2, 30], { 33: 60, 27: U }), e(l, [2, 32]), { 31: [1, 61] }, e(l, [2, 12]), { 17: 62, 24: X }, { 25: 63, 27: R }, e(l, [2, 14]), { 17: 65, 24: X }, e(l, [2, 16]), e(l, [2, 17]), e(S, [2, 41]), e(l, [2, 23]), { 27: [1, 66] }, { 26: [1, 67] }, { 26: [2, 29], 28: [1, 68] }, e(l, [2, 31]), { 27: [1, 69] }, e(l, [2, 13]), { 26: [1, 70] }, { 26: [2, 21], 28: [1, 71] }, e(l, [2, 15]), e(l, [2, 26]), e(l, [2, 27]), { 11: 59, 32: 72, 37: 24, 38: p, 39: k, 40: 27, 41: v, 42: C, 43: b, 44: E, 45: D, 46: P, 47: I, 48: y, 49: _, 50: c }, e(l, [2, 33]), e(l, [2, 19]), { 25: 73, 27: R }, { 26: [2, 28] }, { 26: [2, 20] }],
defaultActions: { 8: [2, 1], 10: [2, 3], 21: [2, 2], 72: [2, 28], 73: [2, 20] },
parseError: /* @__PURE__ */ a(function(h, u) {
if (u.recoverable)
this.trace(h);
else {
var x = new Error(h);
throw x.hash = u, x;
}
}, "parseError"),
parse: /* @__PURE__ */ a(function(h) {
var u = this, x = [0], d = [], w = [null], o = [], at = this.table, f = "", lt = 0, It = 0, hi = 2, Mt = 1, li = o.slice.call(arguments, 1), T = Object.create(this.lexer), Y = { yy: {} };
for (var dt in this.yy)
Object.prototype.hasOwnProperty.call(this.yy, dt) && (Y.yy[dt] = this.yy[dt]);
T.setInput(h, Y.yy), Y.yy.lexer = T, Y.yy.parser = this, typeof T.yylloc > "u" && (T.yylloc = {});
var ft = T.yylloc;
o.push(ft);
var ci = T.options && T.options.ranges;
typeof Y.yy.parseError == "function" ? this.parseError = Y.yy.parseError : this.parseError = Object.getPrototypeOf(this).parseError;
function ui(V) {
x.length = x.length - 2 * V, w.length = w.length - V, o.length = o.length - V;
}
a(ui, "popStack");
function Vt() {
var V;
return V = d.pop() || T.lex() || Mt, typeof V != "number" && (V instanceof Array && (d = V, V = d.pop()), V = u.symbols_[V] || V), V;
}
a(Vt, "lex");
for (var M, H, B, pt, q = {}, ct, O, Bt, ut; ; ) {
if (H = x[x.length - 1], this.defaultActions[H] ? B = this.defaultActions[H] : ((M === null || typeof M > "u") && (M = Vt()), B = at[H] && at[H][M]), typeof B > "u" || !B.length || !B[0]) {
var mt = "";
ut = [];
for (ct in at[H])
this.terminals_[ct] && ct > hi && ut.push("'" + this.terminals_[ct] + "'");
T.showPosition ? mt = "Parse error on line " + (lt + 1) + `:
` + T.showPosition() + `
Expecting ` + ut.join(", ") + ", got '" + (this.terminals_[M] || M) + "'" : mt = "Parse error on line " + (lt + 1) + ": Unexpected " + (M == Mt ? "end of input" : "'" + (this.terminals_[M] || M) + "'"), this.parseError(mt, {
text: T.match,
token: this.terminals_[M] || M,
line: T.yylineno,
loc: ft,
expected: ut
});
}
if (B[0] instanceof Array && B.length > 1)
throw new Error("Parse Error: multiple actions possible at state: " + H + ", token: " + M);
switch (B[0]) {
case 1:
x.push(M), w.push(T.yytext), o.push(T.yylloc), x.push(B[1]), M = null, It = T.yyleng, f = T.yytext, lt = T.yylineno, ft = T.yylloc;
break;
case 2:
if (O = this.productions_[B[1]][1], q.$ = w[w.length - O], q._$ = {
first_line: o[o.length - (O || 1)].first_line,
last_line: o[o.length - 1].last_line,
first_column: o[o.length - (O || 1)].first_column,
last_column: o[o.length - 1].last_column
}, ci && (q._$.range = [
o[o.length - (O || 1)].range[0],
o[o.length - 1].range[1]
]), pt = this.performAction.apply(q, [
f,
It,
lt,
Y.yy,
B[1],
w,
o
].concat(li)), typeof pt < "u")
return pt;
O && (x = x.slice(0, -1 * O * 2), w = w.slice(0, -1 * O), o = o.slice(0, -1 * O)), x.push(this.productions_[B[1]][0]), w.push(q.$), o.push(q._$), Bt = at[x[x.length - 2]][x[x.length - 1]], x.push(Bt);
break;
case 3:
return !0;
}
}
return !0;
}, "parse")
}, Et = /* @__PURE__ */ function() {
var F = {
EOF: 1,
parseError: /* @__PURE__ */ a(function(u, x) {
if (this.yy.parser)
this.yy.parser.parseError(u, x);
else
throw new Error(u);
}, "parseError"),
// resets the lexer, sets new input
setInput: /* @__PURE__ */ a(function(h, u) {
return this.yy = u || this.yy || {}, this._input = h, this._more = this._backtrack = this.done = !1, this.yylineno = this.yyleng = 0, this.yytext = this.matched = this.match = "", this.conditionStack = ["INITIAL"], this.yylloc = {
first_line: 1,
first_column: 0,
last_line: 1,
last_column: 0
}, this.options.ranges && (this.yylloc.range = [0, 0]), this.offset = 0, this;
}, "setInput"),
// consumes and returns one char from the input
input: /* @__PURE__ */ a(function() {
var h = this._input[0];
this.yytext += h, this.yyleng++, this.offset++, this.match += h, this.matched += h;
var u = h.match(/(?:\r\n?|\n).*/g);
return u ? (this.yylineno++, this.yylloc.last_line++) : this.yylloc.last_column++, this.options.ranges && this.yylloc.range[1]++, this._input = this._input.slice(1), h;
}, "input"),
// unshifts one char (or a string) into the input
unput: /* @__PURE__ */ a(function(h) {
var u = h.length, x = h.split(/(?:\r\n?|\n)/g);
this._input = h + this._input, this.yytext = this.yytext.substr(0, this.yytext.length - u), this.offset -= u;
var d = this.match.split(/(?:\r\n?|\n)/g);
this.match = this.match.substr(0, this.match.length - 1), this.matched = this.matched.substr(0, this.matched.length - 1), x.length - 1 && (this.yylineno -= x.length - 1);
var w = this.yylloc.range;
return this.yylloc = {
first_line: this.yylloc.first_line,
last_line: this.yylineno + 1,
first_column: this.yylloc.first_column,
last_column: x ? (x.length === d.length ? this.yylloc.first_column : 0) + d[d.length - x.length].length - x[0].length : this.yylloc.first_column - u
}, this.options.ranges && (this.yylloc.range = [w[0], w[0] + this.yyleng - u]), this.yyleng = this.yytext.length, this;
}, "unput"),
// When called from action, caches matched text and appends it on next action
more: /* @__PURE__ */ a(function() {
return this._more = !0, this;
}, "more"),
// When called from action, signals the lexer that this rule fails to match the input, so the next matching rule (regex) should be tested instead.
reject: /* @__PURE__ */ a(function() {
if (this.options.backtrack_lexer)
this._backtrack = !0;
else
return this.parseError("Lexical error on line " + (this.yylineno + 1) + `. You can only invoke reject() in the lexer when the lexer is of the backtracking persuasion (options.backtrack_lexer = true).
` + this.showPosition(), {
text: "",
token: null,
line: this.yylineno
});
return this;
}, "reject"),
// retain first n characters of the match
less: /* @__PURE__ */ a(function(h) {
this.unput(this.match.slice(h));
}, "less"),
// displays already matched input, i.e. for error messages
pastInput: /* @__PURE__ */ a(function() {
var h = this.matched.substr(0, this.matched.length - this.match.length);
return (h.length > 20 ? "..." : "") + h.substr(-20).replace(/\n/g, "");
}, "pastInput"),
// displays upcoming input, i.e. for error messages
upcomingInput: /* @__PURE__ */ a(function() {
var h = this.match;
return h.length < 20 && (h += this._input.substr(0, 20 - h.length)), (h.substr(0, 20) + (h.length > 20 ? "..." : "")).replace(/\n/g, "");
}, "upcomingInput"),
// displays the character position where the lexing error occurred, i.e. for error messages
showPosition: /* @__PURE__ */ a(function() {
var h = this.pastInput(), u = new Array(h.length + 1).join("-");
return h + this.upcomingInput() + `
` + u + "^";
}, "showPosition"),
// test the lexed token: return FALSE when not a match, otherwise return token
test_match: /* @__PURE__ */ a(function(h, u) {
var x, d, w;
if (this.options.backtrack_lexer && (w = {
yylineno: this.yylineno,
yylloc: {
first_line: this.yylloc.first_line,
last_line: this.last_line,
first_column: this.yylloc.first_column,
last_column: this.yylloc.last_column
},
yytext: this.yytext,
match: this.match,
matches: this.matches,
matched: this.matched,
yyleng: this.yyleng,
offset: this.offset,
_more: this._more,
_input: this._input,
yy: this.yy,
conditionStack: this.conditionStack.slice(0),
done: this.done
}, this.options.ranges && (w.yylloc.range = this.yylloc.range.slice(0))), d = h[0].match(/(?:\r\n?|\n).*/g), d && (this.yylineno += d.length), this.yylloc = {
first_line: this.yylloc.last_line,
last_line: this.yylineno + 1,
first_column: this.yylloc.last_column,
last_column: d ? d[d.length - 1].length - d[d.length - 1].match(/\r?\n?/)[0].length : this.yylloc.last_column + h[0].length
}, this.yytext += h[0], this.match += h[0], this.matches = h, this.yyleng = this.yytext.length, this.options.ranges && (this.yylloc.range = [this.offset, this.offset += this.yyleng]), this._more = !1, this._backtrack = !1, this._input = this._input.slice(h[0].length), this.matched += h[0], x = this.performAction.call(this, this.yy, this, u, this.conditionStack[this.conditionStack.length - 1]), this.done && this._input && (this.done = !1), x)
return x;
if (this._backtrack) {
for (var o in w)
this[o] = w[o];
return !1;
}
return !1;
}, "test_match"),
// return next match in input
next: /* @__PURE__ */ a(function() {
if (this.done)
return this.EOF;
this._input || (this.done = !0);
var h, u, x, d;
this._more || (this.yytext = "", this.match = "");
for (var w = this._currentRules(), o = 0; o < w.length; o++)
if (x = this._input.match(this.rules[w[o]]), x && (!u || x[0].length > u[0].length)) {
if (u = x, d = o, this.options.backtrack_lexer) {
if (h = this.test_match(x, w[o]), h !== !1)
return h;
if (this._backtrack) {
u = !1;
continue;
} else
return !1;
} else if (!this.options.flex)
break;
}
return u ? (h = this.test_match(u, w[d]), h !== !1 ? h : !1) : this._input === "" ? this.EOF : this.parseError("Lexical error on line " + (this.yylineno + 1) + `. Unrecognized text.
` + this.showPosition(), {
text: "",
token: null,
line: this.yylineno
});
}, "next"),
// return next match that has a token
lex: /* @__PURE__ */ a(function() {
var u = this.next();
return u || this.lex();
}, "lex"),
// activates a new lexer condition state (pushes the new lexer condition state onto the condition stack)
begin: /* @__PURE__ */ a(function(u) {
this.conditionStack.push(u);
}, "begin"),
// pop the previously active lexer condition state off the condition stack
popState: /* @__PURE__ */ a(function() {
var u = this.conditionStack.length - 1;
return u > 0 ? this.conditionStack.pop() : this.conditionStack[0];
}, "popState"),
// produce the lexer rule set which is active for the currently active lexer condition state
_currentRules: /* @__PURE__ */ a(function() {
return this.conditionStack.length && this.conditionStack[this.conditionStack.length - 1] ? this.conditions[this.conditionStack[this.conditionStack.length - 1]].rules : this.conditions.INITIAL.rules;
}, "_currentRules"),
// return the currently active lexer condition state; when an index argument is provided it produces the N-th previous condition state, if available
topState: /* @__PURE__ */ a(function(u) {
return u = this.conditionStack.length - 1 - Math.abs(u || 0), u >= 0 ? this.conditionStack[u] : "INITIAL";
}, "topState"),
// alias for begin(condition)
pushState: /* @__PURE__ */ a(function(u) {
this.begin(u);
}, "pushState"),
// return the number of states currently on the stack
stateStackSize: /* @__PURE__ */ a(function() {
return this.conditionStack.length;
}, "stateStackSize"),
options: { "case-insensitive": !0 },
performAction: /* @__PURE__ */ a(function(u, x, d, w) {
switch (d) {
case 0:
break;
case 1:
break;
case 2:
return this.popState(), 34;
case 3:
return this.popState(), 34;
case 4:
return 34;
case 5:
break;
case 6:
return 10;
case 7:
return this.pushState("acc_title"), 19;
case 8:
return this.popState(), "acc_title_value";
case 9:
return this.pushState("acc_descr"), 21;
case 10:
return this.popState(), "acc_descr_value";
case 11:
this.pushState("acc_descr_multiline");
break;
case 12:
this.popState();
break;
case 13:
return "acc_descr_multiline_value";
case 14:
return 5;
case 15:
return 8;
case 16:
return this.pushState("axis_data"), "X_AXIS";
case 17:
return this.pushState("axis_data"), "Y_AXIS";
case 18:
return this.pushState("axis_band_data"), 24;
case 19:
return 31;
case 20:
return this.pushState("data"), 16;
case 21:
return this.pushState("data"), 18;
case 22:
return this.pushState("data_inner"), 24;
case 23:
return 27;
case 24:
return this.popState(), 26;
case 25:
this.popState();
break;
case 26:
this.pushState("string");
break;
case 27:
this.popState();
break;
case 28:
return "STR";
case 29:
return 24;
case 30:
return 26;
case 31:
return 43;
case 32:
return "COLON";
case 33:
return 44;
case 34:
return 28;
case 35:
return 45;
case 36:
return 46;
case 37:
return 48;
case 38:
return 50;
case 39:
return 47;
case 40:
return 41;
case 41:
return 49;
case 42:
return 42;
case 43:
break;
case 44:
return 35;
case 45:
return 36;
}
}, "anonymous"),
rules: [/^(?:%%(?!\{)[^\n]*)/i, /^(?:[^\}]%%[^\n]*)/i, /^(?:(\r?\n))/i, /^(?:(\r?\n))/i, /^(?:[\n\r]+)/i, /^(?:%%[^\n]*)/i, /^(?:title\b)/i, /^(?:accTitle\s*:\s*)/i, /^(?:(?!\n||)*[^\n]*)/i, /^(?:accDescr\s*:\s*)/i, /^(?:(?!\n||)*[^\n]*)/i, /^(?:accDescr\s*\{\s*)/i, /^(?:\{)/i, /^(?:[^\}]*)/i, /^(?:xychart-beta\b)/i, /^(?:(?:vertical|horizontal))/i, /^(?:x-axis\b)/i, /^(?:y-axis\b)/i, /^(?:\[)/i, /^(?:-->)/i, /^(?:line\b)/i, /^(?:bar\b)/i, /^(?:\[)/i, /^(?:[+-]?(?:\d+(?:\.\d+)?|\.\d+))/i, /^(?:\])/i, /^(?:(?:`\) \{ this\.pushState\(md_string\); \}\n<md_string>\(\?:\(\?!`"\)\.\)\+ \{ return MD_STR; \}\n<md_string>\(\?:`))/i, /^(?:["])/i, /^(?:["])/i, /^(?:[^"]*)/i, /^(?:\[)/i, /^(?:\])/i, /^(?:[A-Za-z]+)/i, /^(?::)/i, /^(?:\+)/i, /^(?:,)/i, /^(?:=)/i, /^(?:\*)/i, /^(?:#)/i, /^(?:[\_])/i, /^(?:\.)/i, /^(?:&)/i, /^(?:-)/i, /^(?:[0-9]+)/i, /^(?:\s+)/i, /^(?:;)/i, /^(?:$)/i],
conditions: { data_inner: { rules: [0, 1, 4, 5, 6, 7, 9, 11, 14, 15, 16, 17, 20, 21, 23, 24, 25, 26, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45], inclusive: !0 }, data: { rules: [0, 1, 3, 4, 5, 6, 7, 9, 11, 14, 15, 16, 17, 20, 21, 22, 25, 26, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45], inclusive: !0 }, axis_band_data: { rules: [0, 1, 4, 5, 6, 7, 9, 11, 14, 15, 16, 17, 20, 21, 24, 25, 26, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45], inclusive: !0 }, axis_data: { rules: [0, 1, 2, 4, 5, 6, 7, 9, 11, 14, 15, 16, 17, 18, 19, 20, 21, 23, 25, 26, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45], inclusive: !0 }, acc_descr_multiline: { rules: [12, 13], inclusive: !1 }, acc_descr: { rules: [10], inclusive: !1 }, acc_title: { rules: [8], inclusive: !1 }, title: { rules: [], inclusive: !1 }, md_string: { rules: [], inclusive: !1 }, string: { rules: [27, 28], inclusive: !1 }, INITIAL: { rules: [0, 1, 4, 5, 6, 7, 9, 11, 14, 15, 16, 17, 20, 21, 25, 26, 29, 30, 31, 32, 33, 34, 35, 36, 37, 38, 39, 40, 41, 42, 43, 44, 45], inclusive: !0 } }
};
return F;
}();
$.lexer = Et;
function N() {
this.yy = {};
}
return a(N, "Parser"), N.prototype = $, $.Parser = N, new N();
}();
bt.parser = bt;
var Ti = bt;
function At(e) {
return e.type === "bar";
}
a(At, "isBarPlot");
function _t(e) {
return e.type === "band";
}
a(_t, "isBandAxisData");
function G(e) {
return e.type === "linear";
}
a(G, "isLinearAxisData");
var j, Ht = (j = class {
constructor(t) {
this.parentGroup = t;
}
getMaxDimension(t, i) {
if (!this.parentGroup)
return {
width: t.reduce((r, g) => Math.max(g.length, r), 0) * i,
height: i
};
const s = {
width: 0,
height: 0
}, n = this.parentGroup.append("g").attr("visibility", "hidden").attr("font-size", i);
for (const r of t) {
const g = Si(n, 1, r), m = g ? g.width : r.length * i, p = g ? g.height : i;
s.width = Math.max(s.width, m), s.height = Math.max(s.height, p);
}
return n.remove(), s;
}
}, a(j, "TextDimensionCalculatorWithFont"), j), Ft = 0.7, Ot = 0.2, Q, Ut = (Q = class {
constructor(t, i, s, n) {
this.axisConfig = t, this.title = i, this.textDimensionCalculator = s, this.axisThemeConfig = n, this.boundingRect = { x: 0, y: 0, width: 0, height: 0 }, this.axisPosition = "left", this.showTitle = !1, this.showLabel = !1, this.showTick = !1, this.showAxisLine = !1, this.outerPadding = 0, this.titleTextHeight = 0, this.labelTextHeight = 0, this.range = [0, 10], this.boundingRect = { x: 0, y: 0, width: 0, height: 0 }, this.axisPosition = "left";
}
setRange(t) {
this.range = t, this.axisPosition === "left" || this.axisPosition === "right" ? this.boundingRect.height = t[1] - t[0] : this.boundingRect.width = t[1] - t[0], this.recalculateScale();
}
getRange() {
return [this.range[0] + this.outerPadding, this.range[1] - this.outerPadding];
}
setAxisPosition(t) {
this.axisPosition = t, this.setRange(this.range);
}
getTickDistance() {
const t = this.getRange();
return Math.abs(t[0] - t[1]) / this.getTickValues().length;
}
getAxisOuterPadding() {
return this.outerPadding;
}
getLabelDimension() {
return this.textDimensionCalculator.getMaxDimension(
this.getTickValues().map((t) => t.toString()),
this.axisConfig.labelFontSize
);
}
recalculateOuterPaddingToDrawBar() {
Ft * this.getTickDistance() > this.outerPadding * 2 && (this.outerPadding = Math.floor(Ft * this.getTickDistance() / 2)), this.recalculateScale();
}
calculateSpaceIfDrawnHorizontally(t) {
let i = t.height;
if (this.axisConfig.showAxisLine && i > this.axisConfig.axisLineWidth && (i -= this.axisConfig.axisLineWidth, this.showAxisLine = !0), this.axisConfig.showLabel) {
const s = this.getLabelDimension(), n = Ot * t.width;
this.outerPadding = Math.min(s.width / 2, n);
const r = s.height + this.axisConfig.labelPadding * 2;
this.labelTextHeight = s.height, r <= i && (i -= r, this.showLabel = !0);
}
if (this.axisConfig.showTick && i >= this.axisConfig.tickLength && (this.showTick = !0, i -= this.axisConfig.tickLength), this.axisConfig.showTitle && this.title) {
const s = this.textDimensionCalculator.getMaxDimension(
[this.title],
this.axisConfig.titleFontSize
), n = s.height + this.axisConfig.titlePadding * 2;
this.titleTextHeight = s.height, n <= i && (i -= n, this.showTitle = !0);
}
this.boundingRect.width = t.width, this.boundingRect.height = t.height - i;
}
calculateSpaceIfDrawnVertical(t) {
let i = t.width;
if (this.axisConfig.showAxisLine && i > this.axisConfig.axisLineWidth && (i -= this.axisConfig.axisLineWidth, this.showAxisLine = !0), this.axisConfig.showLabel) {
const s = this.getLabelDimension(), n = Ot * t.height;
this.outerPadding = Math.min(s.height / 2, n);
const r = s.width + this.axisConfig.labelPadding * 2;
r <= i && (i -= r, this.showLabel = !0);
}
if (this.axisConfig.showTick && i >= this.axisConfig.tickLength && (this.showTick = !0, i -= this.axisConfig.tickLength), this.axisConfig.showTitle && this.title) {
const s = this.textDimensionCalculator.getMaxDimension(
[this.title],
this.axisConfig.titleFontSize
), n = s.height + this.axisConfig.titlePadding * 2;
this.titleTextHeight = s.height, n <= i && (i -= n, this.showTitle = !0);
}
this.boundingRect.width = t.width - i, this.boundingRect.height = t.height;
}
calculateSpace(t) {
return this.axisPosition === "left" || this.axisPosition === "right" ? this.calculateSpaceIfDrawnVertical(t) : this.calculateSpaceIfDrawnHorizontally(t), this.recalculateScale(), {
width: this.boundingRect.width,
height: this.boundingRect.height
};
}
setBoundingBoxXY(t) {
this.boundingRect.x = t.x, this.boundingRect.y = t.y;
}
getDrawableElementsForLeftAxis() {
const t = [];
if (this.showAxisLine) {
const i = this.boundingRect.x + this.boundingRect.width - this.axisConfig.axisLineWidth / 2;
t.push({
type: "path",
groupTexts: ["left-axis", "axisl-line"],
data: [
{
path: `M ${i},${this.boundingRect.y} L ${i},${this.boundingRect.y + this.boundingRect.height} `,
strokeFill: this.axisThemeConfig.axisLineColor,
strokeWidth: this.axisConfig.axisLineWidth
}
]
});
}
if (this.showLabel && t.push({
type: "text",
groupTexts: ["left-axis", "label"],
data: this.getTickValues().map((i) => ({
text: i.toString(),
x: this.boundingRect.x + this.boundingRect.width - (this.showLabel ? this.axisConfig.labelPadding : 0) - (this.showTick ? this.axisConfig.tickLength : 0) - (this.showAxisLine ? this.axisConfig.axisLineWidth : 0),
y: this.getScaleValue(i),
fill: this.axisThemeConfig.labelColor,
fontSize: this.axisConfig.labelFontSize,
rotation: 0,
verticalPos: "middle",
horizontalPos: "right"
}))
}), this.showTick) {
const i = this.boundingRect.x + this.boundingRect.width - (this.showAxisLine ? this.axisConfig.axisLineWidth : 0);
t.push({
type: "path",
groupTexts: ["left-axis", "ticks"],
data: this.getTickValues().map((s) => ({
path: `M ${i},${this.getScaleValue(s)} L ${i - this.axisConfig.tickLength},${this.getScaleValue(s)}`,
strokeFill: this.axisThemeConfig.tickColor,
strokeWidth: this.axisConfig.tickWidth
}))
});
}
return this.showTitle && t.push({
type: "text",
groupTexts: ["left-axis", "title"],
data: [
{
text: this.title,
x: this.boundingRect.x + this.axisConfig.titlePadding,
y: this.boundingRect.y + this.boundingRect.height / 2,
fill: this.axisThemeConfig.titleColor,
fontSize: this.axisConfig.titleFontSize,
rotation: 270,
verticalPos: "top",
horizontalPos: "center"
}
]
}), t;
}
getDrawableElementsForBottomAxis() {
const t = [];
if (this.showAxisLine) {
const i = this.boundingRect.y + this.axisConfig.axisLineWidth / 2;
t.push({
type: "path",
groupTexts: ["bottom-axis", "axis-line"],
data: [
{
path: `M ${this.boundingRect.x},${i} L ${this.boundingRect.x + this.boundingRect.width},${i}`,
strokeFill: this.axisThemeConfig.axisLineColor,
strokeWidth: this.axisConfig.axisLineWidth
}
]
});
}
if (this.showLabel && t.push({
type: "text",
groupTexts: ["bottom-axis", "label"],
data: this.getTickValues().map((i) => ({
text: i.toString(),
x: this.getScaleValue(i),
y: this.boundingRect.y + this.axisConfig.labelPadding + (this.showTick ? this.axisConfig.tickLength : 0) + (this.showAxisLine ? this.axisConfig.axisLineWidth : 0),
fill: this.axisThemeConfig.labelColor,
fontSize: this.axisConfig.labelFontSize,
rotation: 0,
verticalPos: "top",
horizontalPos: "center"
}))
}), this.showTick) {
const i = this.boundingRect.y + (this.showAxisLine ? this.axisConfig.axisLineWidth : 0);
t.push({
type: "path",
groupTexts: ["bottom-axis", "ticks"],
data: this.getTickValues().map((s) => ({
path: `M ${this.getScaleValue(s)},${i} L ${this.getScaleValue(s)},${i + this.axisConfig.tickLength}`,
strokeFill: this.axisThemeConfig.tickColor,
strokeWidth: this.axisConfig.tickWidth
}))
});
}
return this.showTitle && t.push({
type: "text",
groupTexts: ["bottom-axis", "title"],
data: [
{
text: this.title,
x: this.range[0] + (this.range[1] - this.range[0]) / 2,
y: this.boundingRect.y + this.boundingRect.height - this.axisConfig.titlePadding - this.titleTextHeight,
fill: this.axisThemeConfig.titleColor,
fontSize: this.axisConfig.titleFontSize,
rotation: 0,
verticalPos: "top",
horizontalPos: "center"
}
]
}), t;
}
getDrawableElementsForTopAxis() {
const t = [];
if (this.showAxisLine) {
const i = this.boundingRect.y + this.boundingRect.height - this.axisConfig.axisLineWidth / 2;
t.push({
type: "path",
groupTexts: ["top-axis", "axis-line"],
data: [
{
path: `M ${this.boundingRect.x},${i} L ${this.boundingRect.x + this.boundingRect.width},${i}`,
strokeFill: this.axisThemeConfig.axisLineColor,
strokeWidth: this.axisConfig.axisLineWidth
}
]
});
}
if (this.showLabel && t.push({
type: "text",
groupTexts: ["top-axis", "label"],
data: this.getTickValues().map((i) => ({
text: i.toString(),
x: this.getScaleValue(i),
y: this.boundingRect.y + (this.showTitle ? this.titleTextHeight + this.axisConfig.titlePadding * 2 : 0) + this.axisConfig.labelPadding,
fill: this.axisThemeConfig.labelColor,
fontSize: this.axisConfig.labelFontSize,
rotation: 0,
verticalPos: "top",
horizontalPos: "center"
}))
}), this.showTick) {
const i = this.boundingRect.y;
t.push({
type: "path",
groupTexts: ["top-axis", "ticks"],
data: this.getTickValues().map((s) => ({
path: `M ${this.getScaleValue(s)},${i + this.boundingRect.height - (this.showAxisLine ? this.axisConfig.axisLineWidth : 0)} L ${this.getScaleValue(s)},${i + this.boundingRect.height - this.axisConfig.tickLength - (this.showAxisLine ? this.axisConfig.axisLineWidth : 0)}`,
strokeFill: this.axisThemeConfig.tickColor,
strokeWidth: this.axisConfig.tickWidth
}))
});
}
return this.showTitle && t.push({
type: "text",
groupTexts: ["top-axis", "title"],
data: [
{
text: this.title,
x: this.boundingRect.x + this.boundingRect.width / 2,
y: this.boundingRect.y + this.axisConfig.titlePadding,
fill: this.axisThemeConfig.titleColor,
fontSize: this.axisConfig.titleFontSize,
rotation: 0,
verticalPos: "top",
horizontalPos: "center"
}
]
}), t;
}
getDrawableElements() {
if (this.axisPosition === "left")
return this.getDrawableElementsForLeftAxis();
if (this.axisPosition === "right")
throw Error("Drawing of right axis is not implemented");
return this.axisPosition === "bottom" ? this.getDrawableElementsForBottomAxis() : this.axisPosition === "top" ? this.getDrawableElementsForTopAxis() : [];
}
}, a(Q, "BaseAxis"), Q), K, Di = (K = class extends Ut {
constructor(t, i, s, n, r) {
super(t, n, r, i), this.categories = s, this.scale = yt().domain(this.categories).range(this.getRange());
}
setRange(t) {
super.setRange(t);
}
recalculateScale() {
this.scale = yt().domain(this.categories).range(this.getRange()).paddingInner(1).paddingOuter(0).align(0.5), Nt.trace("BandAxis axis final categories, range: ", this.categories, this.getRange());
}
getTickValues() {
return this.categories;
}
getScaleValue(t) {
return this.scale(t) ?? this.getRange()[0];
}
}, a(K, "BandAxis"), K), Z, vi = (Z = class extends Ut {
constructor(t, i, s, n, r) {
super(t, n, r, i), this.domain = s, this.scale = zt().domain(this.domain).range(this.getRange());
}
getTickValues() {
return this.scale.ticks();
}
recalculateScale() {
const t = [...this.domain];
this.axisPosition === "left" && t.reverse(), this.scale = zt().domain(t).range(this.getRange());
}
getScaleValue(t) {
return this.scale(t);
}
}, a(Z, "LinearAxis"), Z);
function wt(e, t, i, s) {
const n = new Ht(s);
return _t(e) ? new Di(
t,
i,
e.categories,
e.title,
n
) : new vi(
t,
i,
[e.min, e.max],
e.title,
n
);
}
a(wt, "getAxis");
var J, Pi = (J = class {
constructor(t, i, s, n) {
this.textDimensionCalculator = t, this.chartConfig = i, this.chartData = s, this.chartThemeConfig = n, this.boundingRect = {
x: 0,
y: 0,
width: 0,
height: 0
}, this.showChartTitle = !1;
}
setBoundingBoxXY(t) {
this.boundingRect.x = t.x, this.boundingRect.y = t.y;
}
calculateSpace(t) {
const i = this.textDimensionCalculator.getMaxDimension(
[this.chartData.title],
this.chartConfig.titleFontSize
), s = Math.max(i.width, t.width), n = i.height + 2 * this.chartConfig.titlePadding;
return i.width <= s && i.height <= n && this.chartConfig.showTitle && this.chartData.title && (this.boundingRect.width = s, this.boundingRect.height = n, this.showChartTitle = !0), {
width: this.boundingRect.width,
height: this.boundingRect.height
};
}
getDrawableElements() {
const t = [];
return this.showChartTitle && t.push({
groupTexts: ["chart-title"],
type: "text",
data: [
{
fontSize: this.chartConfig.titleFontSize,
text: this.chartData.title,
verticalPos: "middle",
horizontalPos: "center",
x: this.boundingRect.x + this.boundingRect.width / 2,
y: this.boundingRect.y + this.boundingRect.height / 2,
fill: this.chartThemeConfig.titleColor,
rotation: 0
}
]
}), t;
}
}, a(J, "ChartTitle"), J);
function $t(e, t, i, s) {
const n = new Ht(s);
return new Pi(n, e, t, i);
}
a($t, "getChartTitleComponent");
var tt, Li = (tt = class {
constructor(t, i, s, n, r) {
this.plotData = t, this.xAxis = i, this.yAxis = s, this.orientation = n, this.plotIndex = r;
}
getDrawableElement() {
const t = this.plotData.data.map((s) => [
this.xAxis.getScaleValue(s[0]),
this.yAxis.getScaleValue(s[1])
]);
let i;
return this.orientation === "horizontal" ? i = Wt().y((s) => s[0]).x((s) => s[1])(t) : i = Wt().x((s) => s[0]).y((s) => s[1])(t), i ? [
{
groupTexts: ["plot", `line-plot-${this.plotIndex}`],
type: "path",
data: [
{
path: i,
strokeFill: this.plotData.strokeFill,
strokeWidth: this.plotData.strokeWidth
}
]
}
] : [];
}
}, a(tt, "LinePlot"), tt), it, Ei = (it = class {
constructor(t, i, s, n, r, g) {
this.barData = t, this.boundingRect = i, this.xAxis = s, this.yAxis = n, this.orientation = r, this.plotIndex = g;
}
getDrawableElement() {
const t = this.barData.data.map((r) => [
this.xAxis.getScaleValue(r[0]),
this.yAxis.getScaleValue(r[1])
]), s = Math.min(this.xAxis.getAxisOuterPadding() * 2, this.xAxis.getTickDistance()) * (1 - 0.05), n = s / 2;
return this.orientation === "horizontal" ? [
{
groupTexts: ["plot", `bar-plot-${this.plotIndex}`],
type: "rect",
data: t.map((r) => ({
x: this.boundingRect.x,
y: r[0] - n,
height: s,
width: r[1] - this.boundingRect.x,
fill: this.barData.fill,
strokeWidth: 0,
strokeFill: this.barData.fill
}))
}
] : [
{
groupTexts: ["plot", `bar-plot-${this.plotIndex}`],
type: "rect",
data: t.map((r) => ({
x: r[0] - n,
y: r[1],
width: s,
height: this.boundingRect.y + this.boundingRect.height - r[1],
fill: this.barData.fill,
strokeWidth: 0,
strokeFill: this.barData.fill
}))
}
];
}
}, a(it, "BarPlot"), it), et, Ii = (et = class {
constructor(t, i, s) {
this.chartConfig = t, this.chartData = i, this.chartThemeConfig = s, this.boundingRect = {
x: 0,
y: 0,
width: 0,
height: 0
};
}
setAxes(t, i) {
this.xAxis = t, this.yAxis = i;
}
setBoundingBoxXY(t) {
this.boundingRect.x = t.x, this.boundingRect.y = t.y;
}
calculateSpace(t) {
return this.boundingRect.width = t.width, this.boundingRect.height = t.height, {
width: this.boundingRect.width,
height: this.boundingRect.height
};
}
getDrawableElements() {
if (!(this.xAxis && this.yAxis))
throw Error("Axes must be passed to render Plots");
const t = [];
for (const [i, s] of this.chartData.plots.entries())
switch (s.type) {
case "line":
{
const n = new Li(
s,
this.xAxis,
this.yAxis,
this.chartConfig.chartOrientation,
i
);
t.push(...n.getDrawableElement());
}
break;
case "bar":
{
const n = new Ei(
s,
this.boundingRect,
this.xAxis,
this.yAxis,
this.chartConfig.chartOrientation,
i
);
t.push(...n.getDrawableElement());
}
break;
}
return t;
}
}, a(et, "BasePlot"), et);
function qt(e, t, i) {
return new Ii(e, t, i);
}
a(qt, "getPlotComponent");
var st, Mi = (st = class {
constructor(t, i, s, n) {
this.chartConfig = t, this.chartData = i, this.componentStore = {
title: $t(t, i, s, n),
plot: qt(t, i, s),
xAxis: wt(
i.xAxis,
t.xAxis,
{
titleColor: s.xAxisTitleColor,
labelColor: s.xAxisLabelColor,
tickColor: s.xAxisTickColor,
axisLineColor: s.xAxisLineColor
},
n
),
yAxis: wt(
i.yAxis,
t.yAxis,
{
titleColor: s.yAxisTitleColor,
labelColor: s.yAxisLabelColor,
tickColor: s.yAxisTickColor,
axisLineColor: s.yAxisLineColor
},
n
)
};
}
calculateVerticalSpace() {
let t = this.chartConfig.width, i = this.chartConfig.height, s = 0, n = 0, r = Math.floor(t * this.chartConfig.plotReservedSpacePercent / 100), g = Math.floor(
i * this.chartConfig.plotReservedSpacePercent / 100
), m = this.componentStore.plot.calculateSpace({
width: r,
height: g
});
t -= m.width, i -= m.height, m = this.componentStore.title.calculateSpace({
width: this.chartConfig.width,
height: i
}), n = m.height, i -= m.height, this.componentStore.xAxis.setAxisPosition("bottom"), m = this.componentStore.xAxis.calculateSpace({
width: t,
height: i
}), i -= m.height, this.componentStore.yAxis.setAxisPosition("left"), m = this.componentStore.yAxis.calculateSpace({
width: t,
height: i
}), s = m.width, t -= m.width, t > 0 && (r += t, t = 0), i > 0 && (g += i, i = 0), this.componentStore.plot.calculateSpace({
width: r,
height: g
}), this.componentStore.plot.setBoundingBoxXY({ x: s, y: n }), this.componentStore.xAxis.setRange([s, s + r]), this.componentStore.xAxis.setBoundingBoxXY({ x: s, y: n + g }), this.componentStore.yAxis.setRange([n, n + g]), this.componentStore.yAxis.setBoundingBoxXY({ x: 0, y: n }), this.chartData.plots.some((p) => At(p)) && this.componentStore.xAxis.recalculateOuterPaddingToDrawBar();
}
calculateHorizontalSpace() {
let t = this.chartConfig.width, i = this.chartConfig.height, s = 0, n = 0, r = 0, g = Math.floor(t * this.chartConfig.plotReservedSpacePercent / 100), m = Math.floor(
i * this.chartConfig.plotReservedSpacePercent / 100
), p = this.componentStore.plot.calculateSpace({
width: g,
height: m
});
t -= p.width, i -= p.height, p = this.componentStore.title.calculateSpace({
width: this.chartConfig.width,
height: i
}), s = p.height, i -= p.height, this.componentStore.xAxis.setAxisPosition("left"), p = this.componentStore.xAxis.calculateSpace({
width: t,
height: i
}), t -= p.width, n = p.width, this.componentStore.yAxis.setAxisPosition("top"), p = this.componentStore.yAxis.calculateSpace({
width: t,
height: i
}), i -= p.height, r = s + p.height, t > 0 && (g += t, t = 0), i > 0 && (m += i, i = 0), this.componentStore.plot.calculateSpace({
width: g,
height: m
}), this.componentStore.plot.setBoundingBoxXY({ x: n, y: r }), this.componentStore.yAxis.setRange([n, n + g]), this.componentStore.yAxis.setBoundingBoxXY({ x: n, y: s }), this.componentStore.xAxis.setRange([r, r + m]), this.componentStore.xAxis.setBoundingBoxXY({ x: 0, y: r }), this.chartData.plots.some((k) => At(k)) && this.componentStore.xAxis.recalculateOuterPaddingToDrawBar();
}
calculateSpace() {
this.chartConfig.chartOrientation === "horizontal" ? this.calculateHorizontalSpace() : this.calculateVerticalSpace();
}
getDrawableElement() {
this.calculateSpace();
const t = [];
this.componentStore.plot.setAxes(this.componentStore.xAxis, this.componentStore.yAxis);
for (const i of Object.values(this.componentStore))
t.push(...i.getDrawableElements());
return t;
}
}, a(st, "Orchestrator"), st), nt, Vi = (nt = class {
static build(t, i, s, n) {
return new Mi(t, i, s, n).getDrawableElement();
}
}, a(nt, "XYChartBuilder"), nt), ot = 0, Gt, rt = Tt(), ht = Rt(), A = Dt(), Ct = ht.plotColorPalette.split(",").map((e) => e.trim()), gt = !1, kt = !1;
function Rt() {
const e = wi(), t = St();
return Yt(e.xyChart, t.themeVariables.xyChart);
}
a(Rt, "getChartDefaultThemeConfig");
function Tt() {
const e = St();
return Yt(
Ai.xyChart,
e.xyChart
);
}
a(Tt, "getChartDefaultConfig");
function Dt() {
return {
yAxis: {
type: "linear",
title: "",
min: 1 / 0,
max: -1 / 0
},
xAxis: {
type: "band",
title: "",
categories: []
},
title: "",
plots: []
};
}
a(Dt, "getChartDefaultData");
function xt(e) {
const t = St();
return Ci(e.trim(), t);
}
a(xt, "textSanitizer");
function jt(e) {
Gt = e;
}
a(jt, "setTmpSVGG");
function Qt(e) {
e === "horizontal" ? rt.chartOrientation = "horizontal" : rt.chartOrientation = "vertical";
}
a(Qt, "setOrientation");
function Kt(e) {
A.xAxis.title = xt(e.text);
}
a(Kt, "setXAxisTitle");
function vt(e, t) {
A.xAxis = { type: "linear", title: A.xAxis.title, min: e, max: t }, gt = !0;
}
a(vt, "setXAxisRangeData");
function Zt(e) {
A.xAxis = {
type: "band",
title: