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Math.sin(n): (r - Math.cos(t)) / (t - n), i = r / u + n; return ga(u) < Ca? ar: (e.invert = function (n, t){ var e = i - t; return [Math.atan2(n, e) / u, i - K(u) * Math.sqrt(n * n + e * e)] ; } , e); } function Sr(n, t){ return [n, Math.log(Math.tan(qa / 4 + t / 2))] ; } function kr(n){ var t, e = ur(n), r = e.scale, u = e.translate, i = e.clipExtent; return e.scale = function (){ var n = r.apply(e, arguments); return n === e? t? e.clipExtent(null ): e: n; } , e.translate = function (){ var n = u.apply(e, arguments); return n === e? t? e.clipExtent(null ): e: n; } , e.clipExtent = function (n){ var o = i.apply(e, arguments); if (o === e) { if (t = null == n) { var a = qa * r(), c = u(); i([[c[0] - a, c[1] - a] , [c[0] + a, c[1] + a] ] ); } } else t && (o = null ); return o; } , e.clipExtent(null ); } function Er(n, t){ return [Math.log(Math.tan(qa / 4 + t / 2)), - n] ; } function Ar(n){ return n[0]; } function Nr(n){ return n[1]; } function Cr(n){ for (var t = _AN_Read_length("length", n), e = [0, 1] , r = 2, u = 2; t > u; u++ ){ for (; r > 1 && Q(n[e[r - 2]], n[e[r - 1]], n[u]) <= 0; )--r; e[r++ ] = u; } return e.slice(0, r); } function zr(n, t){ return n[0] - t[0] || n[1] - t[1]; } function qr(n, t, e){ return (e[0] - t[0]) * (n[1] - t[1]) < (e[1] - t[1]) * (n[0] - t[0]); } function Lr(n, t, e, r){ var u = n[0], i = e[0], o = t[0] - u, a = r[0] - i, c = n[1], l = e[1], s = t[1] - c, f = r[1] - l, h = (a * (c - l) - f * (u - i)) / (f * o - a * s); return [u + h * o, c + h * s] ; } function Tr(n){ var t = n[0], e = n[_AN_Read_length("length", n) - 1]; return !(t[0] - e[0] || t[1] - e[1]); } function Rr(){ tu(this), this.edge = this.site = this.circle = null ; } function Dr(n){ var t = el.pop() || new Rr(); return t.site = n, t; } function Pr(n){ Xr(n), Qc.remove(n), el.push(n), tu(n); } function Ur(n){ var t = n.circle, e = t.x, r = t.cy, u = { x: e, y: r} , i = n.P, o = n.N, a = [n] ; Pr(n); for (var c = i; c.circle && ga(e - c.circle.x) < Ca && ga(r - c.circle.cy) < Ca; )i = c.P, a.unshift(c), Pr(c), c = i; a.unshift(c), Xr(c); for (var l = o; l.circle && ga(e - l.circle.x) < Ca && ga(r - l.circle.cy) < Ca; )o = l.N, a.push(l), Pr(l), l = o; a.push(l), Xr(l); var s, f = _AN_Read_length("length", a); for (s = 1; f > s; ++s)l = a[s], c = a[s - 1], Kr(l.edge, c.site, l.site, u); c = a[0], l = a[f - 1], l.edge = Jr(c.site, l.site, null , u), Vr(c), Vr(l); } function jr(n){ for (var t, e, r, u, i = n.x, o = n.y, a = Qc._; a; )if (r = Fr(a, o) - i, r > Ca) a = a.L; else { if (u = i - Hr(a, o), !(u > Ca)) { r > - Ca? (t = a.P, e = a): u > - Ca? (t = a, e = a.N): t = e = a; break ; } if (!a.R) { t = a; break ; } a = a.R; } var c = Dr(n); if (Qc.insert(t, c), t || e) { if (t === e) return Xr(t), e = Dr(t.site), Qc.insert(c, e), c.edge = e.edge = Jr(t.site, c.site), Vr(t), void Vr(e); if (!e) return void (c.edge = Jr(t.site, c.site)); Xr(t), Xr(e); var l = t.site, s = l.x, f = l.y, h = n.x - s, g = n.y - f, p = e.site, v = p.x - s, d = p.y - f, m = 2 * (h * d - g * v), y = h * h + g * g, M = v * v + d * d, x = { x: (d * y - g * M) / m + s, y: (h * M - v * y) / m + f} ; Kr(e.edge, l, p, x), c.edge = Jr(l, n, null , x), e.edge = Jr(n, p, null , x), Vr(t), Vr(e); } } function Fr(n, t){ var e = n.site, r = e.x, u = e.y, i = u - t; if (!i) return r; var o = n.P; if (!o) return -1 / 0; e = o.site; var a = e.x, c = e.y, l = c - t; if (!l) return a; var s = a - r, f = 1 / i - 1 / l, h = s / l; return f? (- h + Math.sqrt(h * h - 2 * f * (s * s / (-2 * l) - c + l / 2 + u - i / 2))) / f + r: (r + a) / 2; } function Hr(n, t){ var e = n.N; if (e) return Fr(e, t); var r = n.site; return r.y === t? r.x: 1 / 0; } function Or(n){ this.site = n, this.edges = [] ; } function Ir(n){ for (var t, e, r, u, i, o, a, c, l, s, f = n[0][0], h = n[1][0], g = n[0][1], p = n[1][1], v = Kc, d = _AN_Read_length("length", v); d-- ; )if (i = v[d], i && i.prepare()) for (a = i.edges, c = _AN_Read_length("length", a), o = 0; c > o; )s = a[o].end(), r = s.x, u = s.y, l = a[++o % c].start(), t = l.x, e = l.y, (ga(r - t) > Ca || ga(u - e) > Ca) && (a.splice(o, 0, new Qr(Gr(i.site, s, ga(r - f) < Ca && p - u > Ca? { x: f, y: ga(t - f) < Ca? e: p} : ga(u - p) < Ca && h - r > Ca? { x: ga(e - p) < Ca? t: h, y: p} : ga(r - h) < Ca && u - g > Ca? { x: h, y: ga(t - h) < Ca? e: g} : ga(u - g) < Ca && r - f > Ca? { x: ga(e - g) < Ca? t: f, y: g} : null ), i.site, null )), ++c); } function Yr(n, t){ return t.angle - n.angle; } function Zr(){ tu(this), this.x = this.y = this.arc = this.site = this.cy = null ; } function Vr(n){ var t = n.P, e = n.N; if (t && e) { var r = t.site, u = n.site, i = e.site; if (r !== i) { var o = u.x, a = u.y, c = r.x - o, l = r.y - a, s = i.x - o, f = i.y - a, h = 2 * (c * f - l * s); if (!(h >= - za)) { var g = c * c + l * l, p = s * s + f * f, v = (f * g - l * p) / h, d = (c * p - s * g) / h, f = d + a, m = rl.pop() || new Zr(); m.arc = n, m.site = u, m.x = v + o, m.y = f + Math.sqrt(v * v + d * d), m.cy = f, n.circle = m; for (var y = null , M = tl._; M; )if (m.y < M.y || m.y === M.y && m.x <= M.x) { if (!M.L) { y = M.P; break ; } M = M.L; } else { if (!M.R) { y = M; break ; } M = M.R; } tl.insert(y, m), y || (nl = m); } } } } function Xr(n){ var t = n.circle; t && (t.P || (nl = t.N), tl.remove(t), rl.push(t), tu(t), n.circle = null ); } function $r(n){ for (var t, e = Gc, r = Oe(n[0][0], n[0][1], n[1][0], n[1][1]), u = _AN_Read_length("length", e); u-- ; )t = e[u], (!Br(t, n) || !r(t) || ga(t.a.x - t.b.x) < Ca && ga(t.a.y - t.b.y) < Ca) && (t.a = t.b = null , e.splice(u, 1)); } function Br(n, t){ var e = n.b; if (e) return true ; var r, u, i = n.a, o = t[0][0], a = t[1][0], c = t[0][1], l = t[1][1], s = n.l, f = n.r, h = s.x, g = s.y, p = f.x, v = f.y, d = (h + p) / 2, m = (g + v) / 2; if (v === g) { if (o > d || d >= a) return ; if (h > p) { if (i) { if (i.y >= l) return ; } else i = { x: d, y: c} ; e = { x: d, y: l} ; } else { if (i) { if (i.y < c) return ; } else i = { x: d, y: l} ; e = { x: d, y: c} ; } } else if (r = (h - p) / (v - g), u = m - r * d, -1 > r || r > 1) if (h > p) { if (i) { if (i.y >= l) return ; } else i = { x: (c - u) / r, y: c} ; e = { x: (l - u) / r, y: l} ; } else { if (i) { if (i.y < c) return ; } else i = { x: (l - u) / r, y: l} ; e = { x: (c - u) / r, y: c} ; } else if (v > g) { if (i) { if (i.x >= a) return ; } else i = { x: o, y: r * o + u} ; e = { x: a, y: r * a + u} ; } else { if (i) { if (i.x < o) return ; } else i = { x: a, y: r * a + u} ; e = { x: o, y: r * o + u} ; } return n.a = i, n.b = e, true ; } function Wr(n, t){ this.l = n, this.r = t, this.a = this.b = null ; } function Jr(n, t, e, r){ var u = new Wr(n, t); return Gc.push(u), e && Kr(u, n, t, e), r && Kr(u, t, n, r), Kc[n.i].edges.push(new Qr(u, n, t)), Kc[t.i].edges.push(new Qr(u, t, n)), u; } function Gr(n, t, e){ var r = new Wr(n, null ); return r.a = t, r.b = e, Gc.push(r), r; } function Kr(n, t, e, r){ n.a || n.b? n.l === e? n.b = r: n.a = r: (n.a = r, n.l = t, n.r = e); } function Qr(n, t, e){ var r = n.a, u = n.b; this.edge = n, this.site = t, this.angle = e? Math.atan2(e.y - t.y, e.x - t.x): n.l === t? Math.atan2(u.x - r.x, r.y - u.y): Math.atan2(r.x - u.x, u.y - r.y); } function nu(){ this._ = null ; } function tu(n){ n.U = n.C = n.L = n.R = n.P = n.N = null ; } function eu(n, t){ var e = t, r = t.R, u = e.U; u? u.L === e? u.L = r: u.R = r: n._ = r, r.U = u, e.U = r, e.R = r.L, e.R && (e.R.U = e), r.L = e; } function ru(n, t){ var e = t, r = t.L, u = e.U; u? u.L === e? u.L = r: u.R = r: n._ = r, r.U = u, e.U = r, e.L = r.R, e.L && (e.L.U = e), r.R = e; } function uu(n){ for (; n.L; )n = n.L; return n; } function iu(n, t){ var e, r, u, i = n.sort(ou).pop(); for (Gc = [] , Kc = new Array((_AN_Read_length("length", n))), Qc = new nu(), tl = new nu(); ; )if (u = nl, i && (!u || i.y < u.y || i.y === u.y && i.x < u.x)) (i.x !== e || i.y !== r) && (Kc[i.i] = new Or(i), jr(i), e = i.x, r = i.y), i = n.pop(); else { if (!u) break ; Ur(u.arc); } t && ($r(t), Ir(t)); var o = { cells: Kc, edges: Gc} ; return Qc = tl = Gc = Kc = null , o; } function ou(n, t){ return t.y - n.y || t.x - n.x; } function au(n, t, e){ return (n.x - e.x) * (t.y - n.y) - (n.x - t.x) * (e.y - n.y); } function cu(n){ return n.x; } function lu(n){ return n.y; } function su(){ return { leaf: true , nodes: [] , point: null , x: null , y: null } ; } function fu(n, t, e, r, u, i){ if (!n(t, e, r, u, i)) { var o = 0.5 * (e + u), a = 0.5 * (r + i), c = t.nodes; c[0] && fu(n, c[0], e, r, o, a), c[1] && fu(n, c[1], o, r, u, a), c[2] && fu(n, c[2], e, a, o, i), c[3] && fu(n, c[3], o, a, u, i); } } function hu(n, t, e, r, u, i, o){ var a, c = 1 / 0; return function l(n, s, f, h, g){ if (!(s > i || f > o || r > h || u > g)) { if (p = n.point) { var p, v = t - n.x, d = e - n.y, m = v * v + d * d; if (c > m) { var y = Math.sqrt(c = m); r = t - y, u = e - y, i = t + y, o = e + y, a = p; } } for (var M = n.nodes, x = 0.5 * (s + h), b = 0.5 * (f + g), _ = t >= x, w = e >= b, S = w << 1 | _, k = S + 4; k > S; ++S)if (n = M[3 & S]) switch (3 & S){ case 0: l(n, s, f, x, b); break ; case 1: l(n, x, f, h, b); break ; case 2: l(n, s, b, x, g); break ; case 3: l(n, x, b, h, g); } } } (n, r, u, i, o), a; } function gu(n, t){ n = ta.rgb(n), t = ta.rgb(t); var e = n.r, r = n.g, u = n.b, i = t.r - e, o = t.g - r, a = t.b - u; return function (n){ return "#" + xt(Math.round(e + i * n)) + xt(Math.round(r + o * n)) + xt(Math.round(u + a * n)); } ; } function pu(n, t){ var e, r = { } , u = { } ; for (e in n)e in t? r[e] = mu(n[e], t[e]): u[e] = n[e]; for (e in t)e in n || (u[e] = t[e]); return function (n){ for (e in r)u[e] = r[e](n); return u; } ; } function vu(n, t){ return n = + n, t = + t, function (e){ return n * (1 - e) + t * e; } ; } function du(n, t){ var e, r, u, i = il.lastIndex = ol.lastIndex = 0, o = -1, a = [] , c = [] ; for (n += "", t += ""; (e = il.exec(n)) && (r = ol.exec(t)); )(u = r.index) > i && (u = t.slice(i, u), a[o]? a[o] += u: a[++o] = u), (e = e[0]) === (r = r[0])? a[o]? a[o] += r: a[++o] = r: (a[++o] = null , c.push({ i: o, x: vu(e, r)} )), i = ol.lastIndex; return i < _AN_Read_length("length", t) && (u = t.slice(i), a[o]? a[o] += u: a[++o] = u), _AN_Read_length("length", a) < 2? c[0]? (t = c[0].x, function (n){ return t(n) + ""; } ): function (){ return t; } : (t = _AN_Read_length("length", c), function (n){ for (var e, r = 0; t > r; ++r)a[(e = c[r]).i] = e.x(n); return a.join(""); } ); } function mu(n, t){ for (var e, r = _AN_Read_length("length", ta.interpolators); --r >= 0 && !(e = ta.interpolators[r](n, t)); ); return e; } function yu(n, t){ var e, r = [] , u = [] , i = _AN_Read_length("length", n), o = _AN_Read_length("length", t), a = Math.min(_AN_Read_length("length", n), _AN_Read_length("length", t)); for (e = 0; a > e; ++e)r.push(mu(n[e], t[e])); for (; i > e; ++e)u[e] = n[e]; for (; o > e; ++e)u[e] = t[e]; return function (n){ for (e = 0; a > e; ++e)u[e] = r[e](n); return u; } ; } function Mu(n){ return function (t){ return 0 >= t? 0: t >= 1? 1: n(t); } ; } function xu(n){ return function (t){ return 1 - n(1 - t); } ; } function bu(n){ return function (t){ return 0.5 * (0.5 > t? n(2 * t): 2 - n(2 - 2 * t)); } ; } function _u(n){ return n * n; } function wu(n){ return n * n * n; } function Su(n){ if (0 >= n) return 0; if (n >= 1) return 1; var t = n * n, e = t * n; return 4 * (0.5 > n? e: 3 * (n - t) + e - 0.75); } function ku(n){ return function (t){ return Math.pow(t, n); } ; } function Eu(n){ return 1 - Math.cos(n * Ra); } function Au(n){ return Math.pow(2, 10 * (n - 1)); } function Nu(n){ return 1 - Math.sqrt(1 - n * n); } function Cu(n, t){ var e; return _AN_Read_length("length", arguments) < 2 && (t = 0.45), _AN_Read_length("length", arguments)? e = t / La * Math.asin(1 / n): (n = 1, e = t / 4), function (r){ return 1 + n * Math.pow(2, -10 * r) * Math.sin((r - e) * La / t); } ; } function zu(n){ return n || (n = 1.70158), function (t){ return t * t * ((n + 1) * t - n); } ; } function qu(n){ return 1 / 2.75 > n? 7.5625 * n * n: 2 / 2.75 > n? 7.5625 * (n -= 1.5 / 2.75) * n + 0.75: 2.5 / 2.75 > n? 7.5625 * (n -= 2.25 / 2.75) * n + 0.9375: 7.5625 * (n -= 2.625 / 2.75) * n + 0.984375; } function Lu(n, t){ n = ta.hcl(n), t = ta.hcl(t); var e = n.h, r = n.c, u = n.l, i = t.h - e, o = t.c - r, a = t.l - u; return isNaN(o) && (o = 0, r = isNaN(r)? t.c: r), isNaN(i)? 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Math.round(n * (t = Math.pow(10, t))) / t: Math.round(n); } ; var uc = ["y", "z", "a", "f", "p", "n", "\xb5", "m", "", "k", "M", "G", "T", "P", "E", "Z", "Y"] .map(Dt); ta.formatPrefix = function (n, t){ var e = 0; return n && (0 > n && (n *= -1), t && (n = ta.round(n, Rt(n, t))), e = 1 + Math.floor(1e-12 + Math.log(n) / Math.LN10), e = Math.max(-24, Math.min(24, 3 * Math.floor((e - 1) / 3)))), uc[8 + e / 3]; } ; var ic = /(?:([^{])?([<>=^]))?([+\- ])?([$#])?(0)?(\d+)?(,)?(\.-?\d+)?([a-z%])?/i, oc = ta.map({ b: function (n){ return n.toString(2); } , c: function (n){ return String.fromCharCode(n); } , o: function (n){ return n.toString(8); } , x: function (n){ return n.toString(16); } , X: function (n){ return n.toString(16).toUpperCase(); } , g: function (n, t){ return n.toPrecision(t); } , e: function (n, t){ return n.toExponential(t); } , f: function (n, t){ return n.toFixed(t); } , r: function (n, t){ return (n = ta.round(n, Rt(n, t))).toFixed(Math.max(0, Math.min(20, Rt(n * (1.000000000000001), t)))); } } ), ac = ta.time = { } , cc = Date; jt.prototype = { getDate: function (){ return this._.getUTCDate(); } , getDay: function (){ return this._.getUTCDay(); } , getFullYear: function (){ return this._.getUTCFullYear(); } , getHours: function (){ return this._.getUTCHours(); } , getMilliseconds: function (){ return this._.getUTCMilliseconds(); } , getMinutes: function (){ return this._.getUTCMinutes(); } , getMonth: function (){ return this._.getUTCMonth(); } , getSeconds: function (){ return this._.getUTCSeconds(); } , getTime: function (){ return this._.getTime(); } , getTimezoneOffset: function (){ return 0; } , valueOf: function (){ return this._.valueOf(); } , setDate: function (){ lc.setUTCDate.apply(this._, arguments); } , setDay: function (){ lc.setUTCDay.apply(this._, arguments); } , setFullYear: function (){ lc.setUTCFullYear.apply(this._, arguments); } , setHours: function (){ lc.setUTCHours.apply(this._, arguments); } , setMilliseconds: function (){ lc.setUTCMilliseconds.apply(this._, arguments); } , setMinutes: function (){ lc.setUTCMinutes.apply(this._, arguments); } , setMonth: function (){ lc.setUTCMonth.apply(this._, arguments); } , setSeconds: function (){ lc.setUTCSeconds.apply(this._, arguments); } , setTime: function (){ lc.setTime.apply(this._, arguments); } } ; var lc = Date.prototype; ac.year = Ft(function (n){ return n = ac.day(n), n.setMonth(0, 1), n; } , function (n, t){ n.setFullYear(n.getFullYear() + t); } , function (n){ return n.getFullYear(); } ), ac.years = ac.year.range, ac.years.utc = ac.year.utc.range, ac.day = Ft(function (n){ var t = new cc(2000, 0); return t.setFullYear(n.getFullYear(), n.getMonth(), n.getDate()), t; } , function (n, t){ n.setDate(n.getDate() + t); } , function (n){ return n.getDate() - 1; } ), ac.days = ac.day.range, ac.days.utc = ac.day.utc.range, ac.dayOfYear = function (n){ var t = ac.year(n); return Math.floor((n - t - 60000 * (n.getTimezoneOffset() - t.getTimezoneOffset())) / 86400000); } , ["sunday", "monday", "tuesday", "wednesday", "thursday", "friday", "saturday"] .forEach(function (n, t){ t = 7 - t; var e = ac[n] = Ft(function (n){ return (n = ac.day(n)).setDate(n.getDate() - (n.getDay() + t) % 7), n; } , function (n, t){ n.setDate(n.getDate() + 7 * Math.floor(t)); } , function (n){ var e = ac.year(n).getDay(); return Math.floor((ac.dayOfYear(n) + (e + t) % 7) / 7) - (e !== t); } ); ac[n + "s"] = e.range, ac[n + "s"].utc = e.utc.range, ac[n + "OfYear"] = function (n){ var e = ac.year(n).getDay(); return Math.floor((ac.dayOfYear(n) + (e + t) % 7) / 7); } ; } ), ac.week = ac.sunday, ac.weeks = ac.sunday.range, ac.weeks.utc = ac.sunday.utc.range, ac.weekOfYear = ac.sundayOfYear; var sc = { "-": "", _: " ", 0: "0"} , fc = /^\s*\d+/, hc = /^%/; ta.locale = function (n){ return { numberFormat: Pt(n), timeFormat: Ot(n)} ; } ; var gc = ta.locale({ decimal: ".", thousands: ",", grouping: [3] , currency: ["$", ""] , dateTime: "%a %b %e %X %Y", date: "%m/%d/%Y", time: "%H:%M:%S", periods: ["AM", "PM"] , days: ["Sunday", "Monday", "Tuesday", "Wednesday", "Thursday", "Friday", "Saturday"] , shortDays: ["Sun", "Mon", "Tue", "Wed", "Thu", "Fri", "Sat"] , months: ["January", "February", "March", "April", "May", "June", "July", "August", "September", "October", "November", "December"] , shortMonths: ["Jan", "Feb", "Mar", "Apr", "May", "Jun", "Jul", "Aug", "Sep", "Oct", "Nov", "Dec"] } ); ta.format = gc.numberFormat, ta.geo = { } , ce.prototype = { s: 0, t: 0, add: function (n){ le(n, this.t, pc), le(pc.s, this.s, this), this.s? this.t += pc.t: this.s = pc.t; } , reset: function (){ this.s = this.t = 0; } , valueOf: function (){ return this.s; } } ; var pc = new ce(); ta.geo.stream = function (n, t){ n && vc.hasOwnProperty(n.type)? vc[n.type](n, t): se(n, t); } ; var vc = { Feature: function (n, t){ se(n.geometry, t); } , FeatureCollection: function (n, t){ for (var e = n.features, r = -1, u = _AN_Read_length("length", e); ++r < u; )se(e[r].geometry, t); } } , dc = { Sphere: function (n, t){ t.sphere(); } , Point: function (n, t){ n = n.coordinates, t.point(n[0], n[1], n[2]); } , MultiPoint: function (n, t){ for (var e = n.coordinates, r = -1, u = _AN_Read_length("length", e); ++r < u; )n = e[r], t.point(n[0], n[1], n[2]); } , LineString: function (n, t){ fe(n.coordinates, t, 0); } , MultiLineString: function (n, t){ for (var e = n.coordinates, r = -1, u = _AN_Read_length("length", e); ++r < u; )fe(e[r], t, 0); } , Polygon: function (n, t){ he(n.coordinates, t); } , MultiPolygon: function (n, t){ for (var e = n.coordinates, r = -1, u = _AN_Read_length("length", e); ++r < u; )he(e[r], t); } , GeometryCollection: function (n, t){ for (var e = n.geometries, r = -1, u = _AN_Read_length("length", e); ++r < u; )se(e[r], t); } } ; ta.geo.area = function (n){ return mc = 0, ta.geo.stream(n, Mc), mc; } ; var mc, yc = new ce(), Mc = { sphere: function (){ mc += 4 * qa; } , point: b, lineStart: b, lineEnd: b, polygonStart: function (){ yc.reset(), Mc.lineStart = ge; } , polygonEnd: function (){ var n = 2 * yc; mc += 0 > n? 4 * qa + n: n, Mc.lineStart = Mc.lineEnd = Mc.point = b; } } ; ta.geo.bounds = function (){ function n(n, t){ M.push(x = [s = n, h = n] ), f > t && (f = t), t > g && (g = t); } function t(t, e){ var r = pe([t * Da, e * Da] ); if (m) { var u = de(m, r), i = [u[1], - u[0], 0] , o = de(i, u); Me(o), o = xe(o); var c = t - p, l = c > 0? 1: -1, v = o[0] * Pa * l, d = ga(c) > 180; if (d ^ (v > l * p && l * t > v)) { var y = o[1] * Pa; y > g && (g = y); } else if (v = (v + 360) % 360 - 180, d ^ (v > l * p && l * t > v)) { var y = - o[1] * Pa; f > y && (f = y); } else f > e && (f = e), e > g && (g = e); d? p > t? a(s, t) > a(s, h) && (h = t): a(t, h) > a(s, h) && (s = t): h >= s? (s > t && (s = t), t > h && (h = t)): t > p? a(s, t) > a(s, h) && (h = t): a(t, h) > a(s, h) && (s = t); } else n(t, e); m = r, p = t; } function e(){ b.point = t; } function r(){ x[0] = s, x[1] = h, b.point = n, m = null ; } function u(n, e){ if (m) { var r = n - p; y += ga(r) > 180? r + (r > 0? 360: -360): r; } else v = n, d = e; Mc.point(n, e), t(n, e); } function i(){ Mc.lineStart(); } function o(){ u(v, d), Mc.lineEnd(), ga(y) > Ca && (s = - (h = 180)), x[0] = s, x[1] = h, m = null ; } function a(n, t){ return (t -= n) < 0? t + 360: t; } function c(n, t){ return n[0] - t[0]; } function l(n, t){ return t[0] <= t[1]? t[0] <= n && n <= t[1]: n < t[0] || t[1] < n; } var s, f, h, g, p, v, d, m, y, M, x, b = { point: n, lineStart: e, lineEnd: r, polygonStart: function (){ b.point = u, b.lineStart = i, b.lineEnd = o, y = 0, Mc.polygonStart(); } , polygonEnd: function (){ Mc.polygonEnd(), b.point = n, b.lineStart = e, b.lineEnd = r, 0 > yc? (s = - (h = 180), f = - (g = 90)): y > Ca? g = 90: - Ca > y && (f = -90), x[0] = s, x[1] = h; } } ; return function (n){ g = h = - (s = f = 1 / 0), M = [] , ta.geo.stream(n, b); var t = _AN_Read_length("length", M); if (t) { M.sort(c); for (var e, r = 1, u = M[0], i = [u] ; t > r; ++r)e = M[r], l(e[0], u) || l(e[1], u)? (a(u[0], e[1]) > a(u[0], u[1]) && (u[1] = e[1]), a(e[0], u[1]) > a(u[0], u[1]) && (u[0] = e[0])): i.push(u = e); for (var o, e, p = -1 / 0, t = _AN_Read_length("length", i) - 1, r = 0, u = i[t]; t >= r; u = e, ++r)e = i[r], (o = a(u[1], e[0])) > p && (p = o, s = e[0], h = u[1]); } return M = x = null , 1 / 0 === s || 1 / 0 === f? [[0 / 0, 0 / 0] , [0 / 0, 0 / 0] ] : [[s, f] , [h, g] ] ; } ; } (), ta.geo.centroid = function (n){ xc = bc = _c = wc = Sc = kc = Ec = Ac = Nc = Cc = zc = 0, ta.geo.stream(n, qc); var t = Nc, e = Cc, r = zc, u = t * t + e * e + r * r; return za > u && (t = kc, e = Ec, r = Ac, Ca > bc && (t = _c, e = wc, r = Sc), u = t * t + e * e + r * r, za > u)? [0 / 0, 0 / 0] : [Math.atan2(e, t) * Pa, tt(r / Math.sqrt(u)) * Pa] ; } ; var xc, bc, _c, wc, Sc, kc, Ec, Ac, Nc, Cc, zc, qc = { sphere: b, point: _e, lineStart: Se, lineEnd: ke, polygonStart: function (){ qc.lineStart = Ee; } , polygonEnd: function (){ qc.lineStart = Se; } } , Lc = Le(Ne, Pe, je, [- qa, - qa / 2] ), Tc = 1000000000; ta.geo.clipExtent = function (){ var n, t, e, r, u, i, o = { stream: function (n){ return u && (u.valid = false ), u = i(n), u.valid = true , u; } , extent: function (a){ return _AN_Read_length("length", arguments)? (i = Ie(n = + a[0][0], t = + a[0][1], e = + a[1][0], r = + a[1][1]), u && (u.valid = false , u = null ), o): [[n, t] , [e, r] ] ; } } ; return o.extent([[0, 0] , [960, 500] ] ); } , (ta.geo.conicEqualArea = function (){ return Ye(Ze); } ).raw = Ze, ta.geo.albers = function (){ return ta.geo.conicEqualArea().rotate([96, 0] ).center([-0.6, 38.7] ).parallels([29.5, 45.5] ).scale(1070); } , ta.geo.albersUsa = function (){ function n(n){ var i = n[0], o = n[1]; return t = null , e(i, o), t || (r(i, o), t) || u(i, o), t; } var t, e, r, u, i = ta.geo.albers(), o = ta.geo.conicEqualArea().rotate([154, 0] ).center([-2, 58.5] ).parallels([55, 65] ), a = ta.geo.conicEqualArea().rotate([157, 0] ).center([-3, 19.9] ).parallels([8, 18] ), c = { point: function (n, e){ t = [n, e] ; } } ; return n.invert = function (n){ var t = i.scale(), e = i.translate(), r = (n[0] - e[0]) / t, u = (n[1] - e[1]) / t; return (u >= 0.12 && 0.234 > u && r >= -0.425 && -0.214 > r? o: u >= 0.166 && 0.234 > u && r >= -0.214 && -0.115 > r? a: i).invert(n); } , n.stream = function (n){ var t = i.stream(n), e = o.stream(n), r = a.stream(n); return { point: function (n, u){ t.point(n, u), e.point(n, u), r.point(n, u); } , sphere: function (){ t.sphere(), e.sphere(), r.sphere(); } , lineStart: function (){ t.lineStart(), e.lineStart(), r.lineStart(); } , lineEnd: function (){ t.lineEnd(), e.lineEnd(), r.lineEnd(); } , polygonStart: function (){ t.polygonStart(), e.polygonStart(), r.polygonStart(); } , polygonEnd: function (){ t.polygonEnd(), e.polygonEnd(), r.polygonEnd(); } } ; } , n.precision = function (t){ return _AN_Read_length("length", arguments)? (i.precision(t), o.precision(t), a.precision(t), n): i.precision(); } , n.scale = function (t){ return _AN_Read_length("length", arguments)? (i.scale(t), o.scale(0.35 * t), a.scale(t), n.translate(i.translate())): i.scale(); } , n.translate = function (t){ if (!_AN_Read_length("length", arguments)) return i.translate(); var l = i.scale(), s = + t[0], f = + t[1]; return e = i.translate(t).clipExtent([[s - 0.455 * l, f - 0.238 * l] , [s + 0.455 * l, f + 0.238 * l] ] ).stream(c).point, r = o.translate([s - 0.307 * l, f + 0.201 * l] ).clipExtent([[s - 0.425 * l + Ca, f + 0.12 * l + Ca] , [s - 0.214 * l - Ca, f + 0.234 * l - Ca] ] ).stream(c).point, u = a.translate([s - 0.205 * l, f + 0.212 * l] ).clipExtent([[s - 0.214 * l + Ca, f + 0.166 * l + Ca] , [s - 0.115 * l - Ca, f + 0.234 * l - Ca] ] ).stream(c).point, n; } , n.scale(1070); } ; var Rc, Dc, Pc, Uc, jc, Fc, Hc = { point: b, lineStart: b, lineEnd: b, polygonStart: function (){ Dc = 0, Hc.lineStart = Ve; } , polygonEnd: function (){ Hc.lineStart = Hc.lineEnd = Hc.point = b, Rc += ga(Dc / 2); } } , Oc = { point: Xe, lineStart: b, lineEnd: b, polygonStart: b, polygonEnd: b} , Ic = { point: We, lineStart: Je, lineEnd: Ge, polygonStart: function (){ Ic.lineStart = Ke; } , polygonEnd: function (){ Ic.point = We, Ic.lineStart = Je, Ic.lineEnd = Ge; } } ; ta.geo.path = function (){ function n(n){ return n && ("function" == typeof a && i.pointRadius(+ a.apply(this, arguments)), o && o.valid || (o = u(i)), ta.geo.stream(n, o)), i.result(); } function t(){ return o = null , n; } var e, r, u, i, o, a = 4.5; return n.area = function (n){ return Rc = 0, ta.geo.stream(n, u(Hc)), Rc; } , n.centroid = function (n){ return _c = wc = Sc = kc = Ec = Ac = Nc = Cc = zc = 0, ta.geo.stream(n, u(Ic)), zc? [Nc / zc, Cc / zc] : Ac? [kc / Ac, Ec / Ac] : Sc? [_c / Sc, wc / Sc] : [0 / 0, 0 / 0] ; } , n.bounds = function (n){ return jc = Fc = - (Pc = Uc = 1 / 0), ta.geo.stream(n, u(Oc)), [[Pc, Uc] , [jc, Fc] ] ; } , n.projection = function (n){ return _AN_Read_length("length", arguments)? (u = (e = n)? n.stream || tr(n): y, t()): e; } , n.context = function (n){ return _AN_Read_length("length", arguments)? (i = null == (r = n)? new $e(): new Qe(n), "function" != typeof a && i.pointRadius(a), t()): r; } , n.pointRadius = function (t){ return _AN_Read_length("length", arguments)? (a = "function" == typeof t? t: (i.pointRadius(+ t), + t), n): a; } , n.projection(ta.geo.albersUsa()).context(null ); } , ta.geo.transform = function (n){ return { stream: function (t){ var e = new er(t); for (var r in n)e[r] = n[r]; return e; } } ; } , er.prototype = { point: function (n, t){ this.stream.point(n, t); } , sphere: function (){ this.stream.sphere(); } , lineStart: function (){ this.stream.lineStart(); } , lineEnd: function (){ this.stream.lineEnd(); } , polygonStart: function (){ this.stream.polygonStart(); } , polygonEnd: function (){ this.stream.polygonEnd(); } } , ta.geo.projection = ur, ta.geo.projectionMutator = ir, (ta.geo.equirectangular = function (){ return ur(ar); } ).raw = ar.invert = ar, ta.geo.rotation = function (n){ function t(t){ return t = n(t[0] * Da, t[1] * Da), t[0] *= Pa, t[1] *= Pa, t; } return n = lr(n[0] % 360 * Da, n[1] * Da, _AN_Read_length("length", n) > 2? n[2] * Da: 0), t.invert = function (t){ return t = n.invert(t[0] * Da, t[1] * Da), t[0] *= Pa, t[1] *= Pa, t; } , t; } , cr.invert = ar, ta.geo.circle = function (){ function n(){ var n = "function" == typeof r? r.apply(this, arguments): r, t = lr(- n[0] * Da, - n[1] * Da, 0).invert, u = [] ; return e(null , null , 1, { point: function (n, e){ u.push(n = t(n, e)), n[0] *= Pa, n[1] *= Pa; } } ), { type: "Polygon", coordinates: [u] } ; } var t, e, r = [0, 0] , u = 6; return n.origin = function (t){ return _AN_Read_length("length", arguments)? (r = t, n): r; } , n.angle = function (r){ return _AN_Read_length("length", arguments)? (e = gr((t = + r) * Da, u * Da), n): t; } , n.precision = function (r){ return _AN_Read_length("length", arguments)? (e = gr(t * Da, (u = + r) * Da), n): u; } , n.angle(90); } , ta.geo.distance = function (n, t){ var e, r = (t[0] - n[0]) * Da, u = n[1] * Da, i = t[1] * Da, o = Math.sin(r), a = Math.cos(r), c = Math.sin(u), l = Math.cos(u), s = Math.sin(i), f = Math.cos(i); return Math.atan2(Math.sqrt((e = f * o) * e + (e = l * s - c * f * a) * e), c * s + l * f * a); } , ta.geo.graticule = function (){ function n(){ return { type: "MultiLineString", coordinates: t()} ; } function t(){ return ta.range(Math.ceil(i / d) * d, u, d).map(h).concat(ta.range(Math.ceil(l / m) * m, c, m).map(g)).concat(ta.range(Math.ceil(r / p) * p, e, p).filter(function (n){ return ga(n % d) > Ca; } ).map(s)).concat(ta.range(Math.ceil(a / v) * v, o, v).filter(function (n){ return ga(n % m) > Ca; } ).map(f)); } var e, r, u, i, o, a, c, l, s, f, h, g, p = 10, v = p, d = 90, m = 360, y = 2.5; return n.lines = function (){ return t().map(function (n){ return { type: "LineString", coordinates: n} ; } ); } , n.outline = function (){ return { type: "Polygon", coordinates: [h(i).concat(g(c).slice(1), h(u).reverse().slice(1), g(l).reverse().slice(1))] } ; } , n.extent = function (t){ return _AN_Read_length("length", arguments)? n.majorExtent(t).minorExtent(t): n.minorExtent(); } , n.majorExtent = function (t){ return _AN_Read_length("length", arguments)? (i = + t[0][0], u = + t[1][0], l = + t[0][1], c = + t[1][1], i > u && (t = i, i = u, u = t), l > c && (t = l, l = c, c = t), n.precision(y)): [[i, l] , [u, c] ] ; } , n.minorExtent = function (t){ return _AN_Read_length("length", arguments)? (r = + t[0][0], e = + t[1][0], a = + t[0][1], o = + t[1][1], r > e && (t = r, r = e, e = t), a > o && (t = a, a = o, o = t), n.precision(y)): [[r, a] , [e, o] ] ; } , n.step = function (t){ return _AN_Read_length("length", arguments)? n.majorStep(t).minorStep(t): n.minorStep(); } , n.majorStep = function (t){ return _AN_Read_length("length", arguments)? (d = + t[0], m = + t[1], n): [d, m] ; } , n.minorStep = function (t){ return _AN_Read_length("length", arguments)? (p = + t[0], v = + t[1], n): [p, v] ; } , n.precision = function (t){ return _AN_Read_length("length", arguments)? (y = + t, s = vr(a, o, 90), f = dr(r, e, y), h = vr(l, c, 90), g = dr(i, u, y), n): y; } , n.majorExtent([[-180, -90 + Ca] , [180, 90 - Ca] ] ).minorExtent([[-180, -80 - Ca] , [180, 80 + Ca] ] ); } , ta.geo.greatArc = function (){ function n(){ return { type: "LineString", coordinates: [t || r.apply(this, arguments), e || u.apply(this, arguments)] } ; } var t, e, r = mr, u = yr; return n.distance = function (){ return ta.geo.distance(t || r.apply(this, arguments), e || u.apply(this, arguments)); } , n.source = function (e){ return _AN_Read_length("length", arguments)? (r = e, t = "function" == typeof e? null : e, n): r; } , n.target = function (t){ return _AN_Read_length("length", arguments)? (u = t, e = "function" == typeof t? null : t, n): u; } , n.precision = function (){ return _AN_Read_length("length", arguments)? n: 0; } , n; } , ta.geo.interpolate = function (n, t){ return Mr(n[0] * Da, n[1] * Da, t[0] * Da, t[1] * Da); } , ta.geo.length = function (n){ return Yc = 0, ta.geo.stream(n, Zc), Yc; } ; var Yc, Zc = { sphere: b, point: b, lineStart: xr, lineEnd: b, polygonStart: b, polygonEnd: b} , Vc = br(function (n){ return Math.sqrt(2 / (1 + n)); } , function (n){ return 2 * Math.asin(n / 2); } ); (ta.geo.azimuthalEqualArea = function (){ return ur(Vc); } ).raw = Vc; var Xc = br(function (n){ var t = Math.acos(n); return t && t / Math.sin(t); } , y); (ta.geo.azimuthalEquidistant = function (){ return ur(Xc); } ).raw = Xc, (ta.geo.conicConformal = function (){ return Ye(_r); } ).raw = _r, (ta.geo.conicEquidistant = function (){ return Ye(wr); } ).raw = wr; var $c = br(function (n){ return 1 / n; } , Math.atan); (ta.geo.gnomonic = function (){ return ur($c); } ).raw = $c, Sr.invert = function (n, t){ return [n, 2 * Math.atan(Math.exp(t)) - Ra] ; } , (ta.geo.mercator = function (){ return kr(Sr); } ).raw = Sr; var Bc = br(function (){ return 1; } , Math.asin); (ta.geo.orthographic = function (){ return ur(Bc); } ).raw = Bc; var Wc = br(function (n){ return 1 / (1 + n); } , function (n){ return 2 * Math.atan(n); } ); (ta.geo.stereographic = function (){ return ur(Wc); } ).raw = Wc, Er.invert = function (n, t){ return [- t, 2 * Math.atan(Math.exp(n)) - Ra] ; } , (ta.geo.transverseMercator = function (){ var n = kr(Er), t = n.center, e = n.rotate; return n.center = function (n){ return n? t([- n[1], n[0]] ): (n = t(), [n[1], - n[0]] ); } , n.rotate = function (n){ return n? e([n[0], n[1], _AN_Read_length("length", n) > 2? n[2] + 90: 90] ): (n = e(), [n[0], n[1], n[2] - 90] ); } , e([0, 0, 90] ); } ).raw = Er, ta.geom = { } , ta.geom.hull = function (n){ function t(n){ if (_AN_Read_length("length", n) < 3) return [] ; var t, u = Et(e), i = Et(r), o = _AN_Read_length("length", n), a = [] , c = [] ; for (t = 0; o > t; t++ )a.push([+ u.call(this, n[t], t), + i.call(this, n[t], t), t] ); for (a.sort(zr), t = 0; o > t; t++ )c.push([a[t][0], - a[t][1]] ); var l = Cr(a), s = Cr(c), f = s[0] === l[0], h = s[_AN_Read_length("length", s) - 1] === l[_AN_Read_length("length", l) - 1], g = [] ; for (t = _AN_Read_length("length", l) - 1; t >= 0; --t)g.push(n[a[l[t]][2]]); for (t = + f; t < _AN_Read_length("length", s) - h; ++t)g.push(n[a[s[t]][2]]); return g; } var e = Ar, r = Nr; return _AN_Read_length("length", arguments)? t(n): (t.x = function (n){ return _AN_Read_length("length", arguments)? (e = n, t): e; } , t.y = function (n){ return _AN_Read_length("length", arguments)? (r = n, t): r; } , t); } , ta.geom.polygon = function (n){ return ya(n, Jc), n; } ; var Jc = ta.geom.polygon.prototype = [] ; Jc.area = function (){ for (var n, t = -1, e = _AN_Read_length("length", this), r = this[e - 1], u = 0; ++t < e; )n = r, r = this[t], u += n[1] * r[0] - n[0] * r[1]; return 0.5 * u; } , Jc.centroid = function (n){ var t, e, r = -1, u = _AN_Read_length("length", this), i = 0, o = 0, a = this[u - 1]; for (_AN_Read_length("length", arguments) || (n = -1 / (6 * this.area())); ++r < u; )t = a, a = this[r], e = t[0] * a[1] - a[0] * t[1], i += (t[0] + a[0]) * e, o += (t[1] + a[1]) * e; return [i * n, o * n] ; } , Jc.clip = function (n){ for (var t, e, r, u, i, o, a = Tr(n), c = -1, l = _AN_Read_length("length", this) - Tr(this), s = this[l - 1]; ++c < l; ){ for (t = n.slice(), n.length = 0, u = this[c], i = t[(r = _AN_Read_length("length", t) - a) - 1], e = -1; ++e < r; )o = t[e], qr(o, s, u)? (qr(i, s, u) || n.push(Lr(i, o, s, u)), n.push(o)): qr(i, s, u) && n.push(Lr(i, o, s, u)), i = o; a && n.push(n[0]), s = u; } return n; } ; var Gc, Kc, Qc, nl, tl, el = [] , rl = [] ; Or.prototype.prepare = function (){ for (var n, t = this.edges, e = _AN_Read_length("length", t); e-- ; )n = t[e].edge, n.b && n.a || t.splice(e, 1); return t.sort(Yr), t.length; } , Qr.prototype = { start: function (){ return this.edge.l === this.site? this.edge.a: this.edge.b; } , end: function (){ return this.edge.l === this.site? this.edge.b: this.edge.a; } } , nu.prototype = { insert: function (n, t){ var e, r, u; if (n) { if (t.P = n, t.N = n.N, n.N && (n.N.P = t), n.N = t, n.R) { for (n = n.R; n.L; )n = n.L; n.L = t; } else n.R = t; e = n; } else this._? (n = uu(this._), t.P = null , t.N = n, n.P = n.L = t, e = n): (t.P = t.N = null , this._ = t, e = null ); for (t.L = t.R = null , t.U = e, t.C = true , n = t; e && e.C; )r = e.U, e === r.L? (u = r.R, u && u.C? (e.C = u.C = false , r.C = true , n = r): (n === e.R && (eu(this, e), n = e, e = n.U), e.C = false , r.C = true , ru(this, r))): (u = r.L, u && u.C? (e.C = u.C = false , r.C = true , n = r): (n === e.L && (ru(this, e), n = e, e = n.U), e.C = false , r.C = true , eu(this, r))), e = n.U; this._.C = false ; } , remove: function (n){ n.N && (n.N.P = n.P), n.P && (n.P.N = n.N), n.N = n.P = null ; var t, e, r, u = n.U, i = n.L, o = n.R; if (e = i? o? uu(o): i: o, u? u.L === n? u.L = e: u.R = e: this._ = e, i && o? (r = e.C, e.C = n.C, e.L = i, i.U = e, e !== o? (u = e.U, e.U = n.U, n = e.R, u.L = n, e.R = o, o.U = e): (e.U = u, u = e, n = e.R)): (r = n.C, n = e), n && (n.U = u), !r) { if (n && n.C) return void (n.C = false ); do { if (n === this._) break ; if (n === u.L) { if (t = u.R, t.C && (t.C = false , u.C = true , eu(this, u), t = u.R), t.L && t.L.C || t.R && t.R.C) { t.R && t.R.C || (t.L.C = false , t.C = true , ru(this, t), t = u.R), t.C = u.C, u.C = t.R.C = false , eu(this, u), n = this._; break ; } } else if (t = u.L, t.C && (t.C = false , u.C = true , ru(this, u), t = u.L), t.L && t.L.C || t.R && t.R.C) { t.L && t.L.C || (t.R.C = false , t.C = true , eu(this, t), t = u.L), t.C = u.C, u.C = t.L.C = false , ru(this, u), n = this._; break ; } t.C = true , n = u, u = u.U; } while(!n.C)n && (n.C = false ); } } } , ta.geom.voronoi = function (n){ function t(n){ var t = new Array((_AN_Read_length("length", n))), r = a[0][0], u = a[0][1], i = a[1][0], o = a[1][1]; return iu(e(n), a).cells.forEach(function (e, a){ var c = e.edges, l = e.site, s = t[a] = _AN_Read_length("length", c)? c.map(function (n){ var t = n.start(); return [t.x, t.y] ; } ): l.x >= r && l.x <= i && l.y >= u && l.y <= o? [[r, o] , [i, o] , [i, u] , [r, u] ] : [] ; s.point = n[a]; } ), t; } function e(n){ return n.map(function (n, t){ return { x: Math.round(i(n, t) / Ca) * Ca, y: Math.round(o(n, t) / Ca) * Ca, i: t} ; } ); } var r = Ar, u = Nr, i = r, o = u, a = ul; return n? t(n): (t.links = function (n){ return iu(e(n)).edges.filter(function (n){ return n.l && n.r; } ).map(function (t){ return { source: n[t.l.i], target: n[t.r.i]} ; } ); } , t.triangles = function (n){ var t = [] ; return iu(e(n)).cells.forEach(function (e, r){ for (var u, i, o = e.site, a = e.edges.sort(Yr), c = -1, l = _AN_Read_length("length", a), s = a[l - 1].edge, f = s.l === o? s.r: s.l; ++c < l; )u = s, i = f, s = a[c].edge, f = s.l === o? s.r: s.l, r < i.i && r < f.i && au(o, i, f) < 0 && t.push([n[r], n[i.i], n[f.i]] ); } ), t; } , t.x = function (n){ return _AN_Read_length("length", arguments)? (i = Et(r = n), t): r; } , t.y = function (n){ return _AN_Read_length("length", arguments)? (o = Et(u = n), t): u; } , t.clipExtent = function (n){ return _AN_Read_length("length", arguments)? (a = null == n? ul: n, t): a === ul? null : a; } , t.size = function (n){ return _AN_Read_length("length", arguments)? t.clipExtent(n && [[0, 0] , n] ): a === ul? null : a && a[1]; } , t); } ; var ul = [[-1000000, -1000000] , [1000000, 1000000] ] ; ta.geom.delaunay = function (n){ return ta.geom.voronoi().triangles(n); } , ta.geom.quadtree = function (n, t, e, r, u){ function i(n){ function i(n, t, e, r, u, i, o, a){ if (!isNaN(e) && !isNaN(r)) if (n.leaf) { var c = n.x, s = n.y; if (null != c) if (ga(c - e) + ga(s - r) < 0.01) l(n, t, e, r, u, i, o, a); else { var f = n.point; n.x = n.y = n.point = null , l(n, f, c, s, u, i, o, a), l(n, t, e, r, u, i, o, a); } else n.x = e, n.y = r, n.point = t; } else l(n, t, e, r, u, i, o, a); } function l(n, t, e, r, u, o, a, c){ var l = 0.5 * (u + a), s = 0.5 * (o + c), f = e >= l, h = r >= s, g = h << 1 | f; n.leaf = false , n = n.nodes[g] || (n.nodes[g] = su()), f? u = l: a = l, h? o = s: c = s, i(n, t, e, r, u, o, a, c); } var s, f, h, g, p, v, d, m, y, M = Et(a), x = Et(c); if (null != t) v = t, d = e, m = r, y = u; else if (m = y = - (v = d = 1 / 0), f = [] , h = [] , p = _AN_Read_length("length", n), o) for (g = 0; p > g; ++g)s = n[g], s.x < v && (v = s.x), s.y < d && (d = s.y), s.x > m && (m = s.x), s.y > y && (y = s.y), f.push(s.x), h.push(s.y); else for (g = 0; p > g; ++g){ var b = + M(s = n[g], g), _ = + x(s, g); v > b && (v = b), d > _ && (d = _), b > m && (m = b), _ > y && (y = _), f.push(b), h.push(_); } var w = m - v, S = y - d; w > S? y = d + w: m = v + S; var k = su(); if (k.add = function (n){ i(k, n, + M(n, ++g), + x(n, g), v, d, m, y); } , k.visit = function (n){ fu(n, k, v, d, m, y); } , k.find = function (n){ return hu(k, n[0], n[1], v, d, m, y); } , g = -1, null == t) { for (; ++g < p; )i(k, n[g], f[g], h[g], v, d, m, y); --g; } else n.forEach(k.add); return f = h = n = s = null , k; } var o, a = Ar, c = Nr; return (o = _AN_Read_length("length", arguments))? (a = cu, c = lu, 3 === o && (u = e, r = t, e = t = 0), i(n)): (i.x = function (n){ return _AN_Read_length("length", arguments)? (a = n, i): a; } , i.y = function (n){ return _AN_Read_length("length", arguments)? (c = n, i): c; } , i.extent = function (n){ return _AN_Read_length("length", arguments)? (null == n? t = e = r = u = null : (t = + n[0][0], e = + n[0][1], r = + n[1][0], u = + n[1][1]), i): null == t? null : [[t, e] , [r, u] ] ; } , i.size = function (n){ return _AN_Read_length("length", arguments)? (null == n? t = e = r = u = null : (t = e = 0, r = + n[0], u = + n[1]), i): null == t? null : [r - t, u - e] ; } , i); } , ta.interpolateRgb = gu, ta.interpolateObject = pu, ta.interpolateNumber = vu, ta.interpolateString = du; var il = /[-+]?(?:\d+\.?\d*|\.?\d+)(?:[eE][-+]?\d+)?/g, ol = new RegExp(il.source, "g"); ta.interpolate = mu, ta.interpolators = [function (n, t){ var e = typeof t; return ("string" === e? Ga.has(t) || /^(#|rgb\(|hsl\()/.test(t)? gu: du: t instanceof ot? gu: Array.isArray(t)? yu: "object" === e && isNaN(t)? pu: vu)(n, t); } ] , ta.interpolateArray = yu; var al = function (){ return y; } , cl = ta.map({ linear: al, poly: ku, quad: function (){ return _u; } , cubic: function (){ return wu; } , sin: function (){ return Eu; } , exp: function (){ return Au; } , circle: function (){ return Nu; } , elastic: Cu, back: zu, bounce: function (){ return qu; } } ), ll = ta.map({ "in": y, out: xu, "in-out": bu, "out-in": function (n){ return bu(xu(n)); } } ); ta.ease = function (n){ var t = n.indexOf("-"), e = t >= 0? n.slice(0, t): n, r = t >= 0? n.slice(t + 1): "in"; return e = cl.get(e) || al, r = ll.get(r) || y, Mu(r(e.apply(null , ea.call(arguments, 1)))); } , ta.interpolateHcl = Lu, ta.interpolateHsl = Tu, ta.interpolateLab = Ru, ta.interpolateRound = Du, ta.transform = function (n){ var t = ua.createElementNS(ta.ns.prefix.svg, "g"); return (ta.transform = function (n){ if (null != n) { _AN_Call_setattribute("setAttribute", t, "transform", n); var e = t.transform.baseVal.consolidate(); } return new Pu(e? e.matrix: sl); } )(n); } , Pu.prototype.toString = function (){ return "translate(" + this.translate + ")rotate(" + this.rotate + ")skewX(" + this.skew + ")scale(" + this.scale + ")"; } ; var sl = { a: 1, b: 0, c: 0, d: 1, e: 0, f: 0} ; ta.interpolateTransform = Hu, ta.layout = { } , ta.layout.bundle = function (){ return function (n){ for (var t = [] , e = -1, r = _AN_Read_length("length", n); ++e < r; )t.push(Yu(n[e])); return t; } ; } , ta.layout.chord = function (){ function n(){ var n, l, f, h, g, p = { } , v = [] , d = ta.range(i), m = [] ; for (e = [] , r = [] , n = 0, h = -1; ++h < i; ){ for (l = 0, g = -1; ++g < i; )l += u[h][g]; v.push(l), m.push(ta.range(i)), n += l; } for (o && d.sort(function (n, t){ return o(v[n], v[t]); } ), a && m.forEach(function (n, t){ n.sort(function (n, e){ return a(u[t][n], u[t][e]); } ); } ), n = (La - s * i) / n, l = 0, h = -1; ++h < i; ){ for (f = l, g = -1; ++g < i; ){ var y = d[h], M = m[y][g], x = u[y][M], b = l, _ = l += x * n; p[y + "-" + M] = { index: y, subindex: M, startAngle: b, endAngle: _, value: x} ; } r[y] = { index: y, startAngle: f, endAngle: l, value: (l - f) / n} , l += s; } for (h = -1; ++h < i; )for (g = h - 1; ++g < i; ){ var w = p[h + "-" + g], S = p[g + "-" + h]; (w.value || S.value) && e.push(w.value < S.value? { source: S, target: w} : { source: w, target: S} ); } c && t(); } function t(){ e.sort(function (n, t){ return c((n.source.value + _AN_Read_target("target", n).value) / 2, (t.source.value + _AN_Read_target("target", t).value) / 2); } ); } var e, r, u, i, o, a, c, l = { } , s = 0; return l.matrix = function (n){ return _AN_Read_length("length", arguments)? (i = (u = n) && _AN_Read_length("length", u), e = r = null , l): u; } , l.padding = function (n){ return _AN_Read_length("length", arguments)? (s = n, e = r = null , l): s; } , l.sortGroups = function (n){ return _AN_Read_length("length", arguments)? (o = n, e = r = null , l): o; } , l.sortSubgroups = function (n){ return _AN_Read_length("length", arguments)? (a = n, e = null , l): a; } , l.sortChords = function (n){ return _AN_Read_length("length", arguments)? (c = n, e && t(), l): c; } , l.chords = function (){ return e || n(), e; } , l.groups = function (){ return r || n(), r; } , l; } , ta.layout.force = function (){ function n(n){ return function (t, e, r, u){ if (t.point !== n) { var i = t.cx - n.x, o = t.cy - n.y, a = u - e, c = i * i + o * o; if (c > a * a / d) { if (p > c) { var l = t.charge / c; n.px -= i * l, n.py -= o * l; } return true ; } if (t.point && c && p > c) { var l = t.pointCharge / c; n.px -= i * l, n.py -= o * l; } } return !t.charge; } ; } function t(n){ n.px = ta.event.x, n.py = ta.event.y, a.resume(); } var e, r, u, i, o, a = { } , c = ta.dispatch("start", "tick", "end"), l = [1, 1] , s = 0.9, f = fl, h = hl, g = -30, p = gl, v = 0.1, d = 0.64, m = [] , M = [] ; return a.tick = function (){ if ((r *= 0.99) < 0.005) return c.end({ type: "end", alpha: r = 0} ), true ; var t, e, a, f, h, p, d, y, x, b = _AN_Read_length("length", m), _ = _AN_Read_length("length", M); for (e = 0; _ > e; ++e)a = M[e], f = a.source, h = _AN_Read_target("target", a), y = h.x - f.x, x = h.y - f.y, (p = y * y + x * x) && (p = r * i[e] * ((p = Math.sqrt(p)) - u[e]) / p, y *= p, x *= p, h.x -= y * (d = f.weight / (h.weight + f.weight)), h.y -= x * d, f.x += y * (d = 1 - d), f.y += x * d); if ((d = r * v) && (y = l[0] / 2, x = l[1] / 2, e = -1, d)) for (; ++e < b; )a = m[e], a.x += (y - a.x) * d, a.y += (x - a.y) * d; if (g) for (Ju(t = ta.geom.quadtree(m), r, o), e = -1; ++e < b; )(a = m[e]).fixed || t.visit(n(a)); for (e = -1; ++e < b; )a = m[e], a.fixed? (a.x = a.px, a.y = a.py): (a.x -= (a.px - (a.px = a.x)) * s, a.y -= (a.py - (a.py = a.y)) * s); c.tick({ type: "tick", alpha: r} ); } , a.nodes = function (n){ return _AN_Read_length("length", arguments)? (m = n, a): m; } , a.links = function (n){ return _AN_Read_length("length", arguments)? (M = n, a): M; } , a.size = function (n){ return _AN_Read_length("length", arguments)? (l = n, a): l; } , a.linkDistance = function (n){ return _AN_Read_length("length", arguments)? (f = "function" == typeof n? n: + n, a): f; } , a.distance = a.linkDistance, a.linkStrength = function (n){ return _AN_Read_length("length", arguments)? (h = "function" == typeof n? n: + n, a): h; } , a.friction = function (n){ return _AN_Read_length("length", arguments)? (s = + n, a): s; } , a.charge = function (n){ return _AN_Read_length("length", arguments)? (g = "function" == typeof n? n: + n, a): g; } , a.chargeDistance = function (n){ return _AN_Read_length("length", arguments)? (p = n * n, a): Math.sqrt(p); } , a.gravity = function (n){ return _AN_Read_length("length", arguments)? (v = + n, a): v; } , a.theta = function (n){ return _AN_Read_length("length", arguments)? (d = n * n, a): Math.sqrt(d); } , a.alpha = function (n){ return _AN_Read_length("length", arguments)? (n = + n, r? r = n > 0? n: 0: n > 0 && (c.start({ type: "start", alpha: r = n} ), ta.timer(a.tick)), a): r; } , a.start = function (){ function n(n, r){ if (!e) { for (e = new Array(c), a = 0; c > a; ++a)e[a] = [] ; for (a = 0; s > a; ++a){ var u = M[a]; e[u.source.index].push(_AN_Read_target("target", u)), e[_AN_Read_target("target", u).index].push(u.source); } } for (var i, o = e[t], a = -1, l = _AN_Read_length("length", o); ++a < l; )if (!isNaN(i = o[a][n])) return i; return Math.random() * r; } var t, e, r, c = _AN_Read_length("length", m), s = _AN_Read_length("length", M), p = l[0], v = l[1]; for (t = 0; c > t; ++t)(r = m[t]).index = t, r.weight = 0; for (t = 0; s > t; ++t)r = M[t], "number" == typeof r.source && (r.source = m[r.source]), "number" == typeof _AN_Read_target("target", r) && (_AN_Write_target("target", r, false , m[_AN_Read_target("target", r)])), ++r.source.weight, ++_AN_Read_target("target", r).weight; for (t = 0; c > t; ++t)r = m[t], isNaN(r.x) && (r.x = n("x", p)), isNaN(r.y) && (r.y = n("y", v)), isNaN(r.px) && (r.px = r.x), isNaN(r.py) && (r.py = r.y); if (u = [] , "function" == typeof f) for (t = 0; s > t; ++t)u[t] = + f.call(this, M[t], t); else for (t = 0; s > t; ++t)u[t] = f; if (i = [] , "function" == typeof h) for (t = 0; s > t; ++t)i[t] = + h.call(this, M[t], t); else for (t = 0; s > t; ++t)i[t] = h; if (o = [] , "function" == typeof g) for (t = 0; c > t; ++t)o[t] = + g.call(this, m[t], t); else for (t = 0; c > t; ++t)o[t] = g; return a.resume(); } , a.resume = function (){ return a.alpha(0.1); } , a.stop = function (){ return a.alpha(0); } , a.drag = function (){ return e || (e = ta.behavior.drag().origin(y).on("dragstart.force", Xu).on("drag.force", t).on("dragend.force", $u)), _AN_Read_length("length", arguments)? void this.on("mouseover.force", Bu).on("mouseout.force", Wu).call(e): e; } , ta.rebind(a, c, "on"); } ; var fl = 20, hl = 1, gl = 1 / 0; ta.layout.hierarchy = function (){ function n(u){ var i, o = [u] , a = [] ; for (u.depth = 0; null != (i = o.pop()); )if (a.push(i), (l = e.call(n, i, i.depth)) && (c = _AN_Read_length("length", l))) { for (var c, l, s; --c >= 0; )o.push(s = l[c]), s.parent = i, s.depth = i.depth + 1; r && (i.value = 0), i.children = l; } else r && (i.value = + r.call(n, i, i.depth) || 0), delete i.children; return Qu(u, function (n){ var e, u; t && (e = n.children) && e.sort(t), r && (u = n.parent) && (u.value += n.value); } ), a; } var t = ei, e = ni, r = ti; return n.sort = function (e){ return _AN_Read_length("length", arguments)? (t = e, n): t; } , n.children = function (t){ return _AN_Read_length("length", arguments)? (e = t, n): e; } , n.value = function (t){ return _AN_Read_length("length", arguments)? (r = t, n): r; } , n.revalue = function (t){ return r && (Ku(t, function (n){ n.children && (n.value = 0); } ), Qu(t, function (t){ var e; t.children || (t.value = + r.call(n, t, t.depth) || 0), (e = t.parent) && (e.value += t.value); } )), t; } , n; } , ta.layout.partition = function (){ function n(t, e, r, u){ var i = t.children; if (t.x = e, t.y = t.depth * u, t.dx = r, t.dy = u, i && (o = _AN_Read_length("length", i))) { var o, a, c, l = -1; for (r = t.value? r / t.value: 0; ++l < o; )n(a = i[l], e, c = a.value * r, u), e += c; } } function t(n){ var e = n.children, r = 0; if (e && (u = _AN_Read_length("length", e))) for (var u, i = -1; ++i < u; )r = Math.max(r, t(e[i])); return 1 + r; } function e(e, i){ var o = r.call(this, e, i); return n(o[0], 0, u[0], u[1] / t(o[0])), o; } var r = ta.layout.hierarchy(), u = [1, 1] ; return e.size = function (n){ return _AN_Read_length("length", arguments)? (u = n, e): u; } , Gu(e, r); } , ta.layout.pie = function (){ function n(o){ var a, c = _AN_Read_length("length", o), l = o.map(function (e, r){ return + t.call(n, e, r); } ), s = + ("function" == typeof r? r.apply(this, arguments): r), f = ("function" == typeof u? u.apply(this, arguments): u) - s, h = Math.min(Math.abs(f) / c, + ("function" == typeof i? i.apply(this, arguments): i)), g = h * (0 > f? -1: 1), p = (f - c * g) / ta.sum(l), v = ta.range(c), d = [] ; return null != e && v.sort(e === pl? function (n, t){ return l[t] - l[n]; } : function (n, t){ return e(o[n], o[t]); } ), v.forEach(function (n){ d[n] = { data: o[n], value: a = l[n], startAngle: s, endAngle: s += a * p + g, padAngle: h} ; } ), d; } var t = Number, e = pl, r = 0, u = La, i = 0; return n.value = function (e){ return _AN_Read_length("length", arguments)? (t = e, n): t; } , n.sort = function (t){ return _AN_Read_length("length", arguments)? (e = t, n): e; } , n.startAngle = function (t){ return _AN_Read_length("length", arguments)? (r = t, n): r; } , n.endAngle = function (t){ return _AN_Read_length("length", arguments)? (u = t, n): u; } , n.padAngle = function (t){ return _AN_Read_length("length", arguments)? (i = t, n): i; } , n; } ; var pl = { } ; ta.layout.stack = function (){ function n(a, c){ if (!(h = _AN_Read_length("length", a))) return a; var l = a.map(function (e, r){ return t.call(n, e, r); } ), s = l.map(function (t){ return t.map(function (t, e){ return [i.call(n, t, e), o.call(n, t, e)] ; } ); } ), f = e.call(n, s, c); l = ta.permute(l, f), s = ta.permute(s, f); var h, g, p, v, d = r.call(n, s, c), m = _AN_Read_length("length", l[0]); for (p = 0; m > p; ++p)for (u.call(n, l[0][p], v = d[p], s[0][p][1]), g = 1; h > g; ++g)u.call(n, l[g][p], v += s[g - 1][p][1], s[g][p][1]); return a; } var t = y, e = ai, r = ci, u = oi, i = ui, o = ii; return n.values = function (e){ return _AN_Read_length("length", arguments)? (t = e, n): t; } , n.order = function (t){ return _AN_Read_length("length", arguments)? (e = "function" == typeof t? t: vl.get(t) || ai, n): e; } , n.offset = function (t){ return _AN_Read_length("length", arguments)? (r = "function" == typeof t? t: dl.get(t) || ci, n): r; } , n.x = function (t){ return _AN_Read_length("length", arguments)? (i = t, n): i; } , n.y = function (t){ return _AN_Read_length("length", arguments)? (o = t, n): o; } , n.out = function (t){ return _AN_Read_length("length", arguments)? (u = t, n): u; } , n; } ; var vl = ta.map({ "inside-out": function (n){ var t, e, r = _AN_Read_length("length", n), u = n.map(li), i = n.map(si), o = ta.range(r).sort(function (n, t){ return u[n] - u[t]; } ), a = 0, c = 0, l = [] , s = [] ; for (t = 0; r > t; ++t)e = o[t], c > a? (a += i[e], l.push(e)): (c += i[e], s.push(e)); return s.reverse().concat(l); } , reverse: function (n){ return ta.range(_AN_Read_length("length", n)).reverse(); } , "default": ai} ), dl = ta.map({ silhouette: function (n){ var t, e, r, u = _AN_Read_length("length", n), i = _AN_Read_length("length", n[0]), o = [] , a = 0, c = [] ; for (e = 0; i > e; ++e){ for (t = 0, r = 0; u > t; t++ )r += n[t][e][1]; r > a && (a = r), o.push(r); } for (e = 0; i > e; ++e)c[e] = (a - o[e]) / 2; return c; } , wiggle: function (n){ var t, e, r, u, i, o, a, c, l, s = _AN_Read_length("length", n), f = n[0], h = _AN_Read_length("length", f), g = [] ; for (g[0] = c = l = 0, e = 1; h > e; ++e){ for (t = 0, u = 0; s > t; ++t)u += n[t][e][1]; for (t = 0, i = 0, a = f[e][0] - f[e - 1][0]; s > t; ++t){ for (r = 0, o = (n[t][e][1] - n[t][e - 1][1]) / (2 * a); t > r; ++r)o += (n[r][e][1] - n[r][e - 1][1]) / a; i += o * n[t][e][1]; } g[e] = c -= u? i / u * a: 0, l > c && (l = c); } for (e = 0; h > e; ++e)g[e] -= l; return g; } , expand: function (n){ var t, e, r, u = _AN_Read_length("length", n), i = _AN_Read_length("length", n[0]), o = 1 / u, a = [] ; for (e = 0; i > e; ++e){ for (t = 0, r = 0; u > t; t++ )r += n[t][e][1]; if (r) for (t = 0; u > t; t++ )n[t][e][1] /= r; else for (t = 0; u > t; t++ )n[t][e][1] = o; } for (e = 0; i > e; ++e)a[e] = 0; return a; } , zero: ci} ); ta.layout.histogram = function (){ function n(n, i){ for (var o, a, c = [] , l = n.map(e, this), s = r.call(this, l, i), f = u.call(this, s, l, i), i = -1, h = _AN_Read_length("length", l), g = _AN_Read_length("length", f) - 1, p = t? 1: 1 / h; ++i < g; )o = c[i] = [] , o.dx = f[i + 1] - (o.x = f[i]), o.y = 0; if (g > 0) for (i = -1; ++i < h; )a = l[i], a >= s[0] && a <= s[1] && (o = c[ta.bisect(f, a, 1, g) - 1], o.y += p, o.push(n[i])); return c; } var t = true , e = Number, r = pi, u = hi; return n.value = function (t){ return _AN_Read_length("length", arguments)? (e = t, n): e; } , n.range = function (t){ return _AN_Read_length("length", arguments)? (r = Et(t), n): r; } , n.bins = function (t){ return _AN_Read_length("length", arguments)? (u = "number" == typeof t? function (n){ return gi(n, t); } : Et(t), n): u; } , n.frequency = function (e){ return _AN_Read_length("length", arguments)? (t = !!e, n): t; } , n; } , ta.layout.pack = function (){ function n(n, i){ var o = e.call(this, n, i), a = o[0], c = u[0], l = u[1], s = null == t? Math.sqrt: "function" == typeof t? t: function (){ return t; } ; if (a.x = a.y = 0, Qu(a, function (n){ n.r = + s(n.value); } ), Qu(a, Mi), r) { var f = r * (t? 1: Math.max(2 * a.r / c, 2 * a.r / l)) / 2; Qu(a, function (n){ n.r += f; } ), Qu(a, Mi), Qu(a, function (n){ n.r -= f; } ); } return _i(a, c / 2, l / 2, t? 1: 1 / Math.max(2 * a.r / c, 2 * a.r / l)), o; } var t, e = ta.layout.hierarchy().sort(vi), r = 0, u = [1, 1] ; return n.size = function (t){ return _AN_Read_length("length", arguments)? (u = t, n): u; } , n.radius = function (e){ return _AN_Read_length("length", arguments)? (t = null == e || "function" == typeof e? e: + e, n): t; } , n.padding = function (t){ return _AN_Read_length("length", arguments)? (r = + t, n): r; } , Gu(n, e); } , ta.layout.tree = function (){ function n(n, u){ var s = o.call(this, n, u), f = s[0], h = t(f); if (Qu(h, e), h.parent.m = - h.z, Ku(h, r), l) Ku(f, i); else { var g = f, p = f, v = f; Ku(f, function (n){ n.x < g.x && (g = n), n.x > p.x && (p = n), n.depth > v.depth && (v = n); } ); var d = a(g, p) / 2 - g.x, m = c[0] / (p.x + a(p, g) / 2 + d), y = c[1] / (v.depth || 1); Ku(f, function (n){ n.x = (n.x + d) * m, n.y = n.depth * y; } ); } return s; } function t(n){ for (var t, e = { A: null , children: [n] } , r = [e] ; null != (t = r.pop()); )for (var u, i = t.children, o = 0, a = _AN_Read_length("length", i); a > o; ++o)r.push((i[o] = u = { _: i[o], parent: t, children: (u = i[o].children) && u.slice() || [] , A: null , a: null , z: 0, m: 0, c: 0, s: 0, t: null , i: o} ).a = u); return e.children[0]; } function e(n){ var t = n.children, e = n.parent.children, r = n.i? e[n.i - 1]: null ; if (t.length) { Ni(n); var i = (t[0].z + t[_AN_Read_length("length", t) - 1].z) / 2; r? (n.z = r.z + a(n._, r._), n.m = n.z - i): n.z = i; } else r && (n.z = r.z + a(n._, r._)); n.parent.A = u(n, r, n.parent.A || e[0]); } function r(n){ n._.x = n.z + n.parent.m, n.m += n.parent.m; } function u(n, t, e){ if (t) { for (var r, u = n, i = n, o = t, c = u.parent.children[0], l = u.m, s = i.m, f = o.m, h = c.m; o = Ei(o), u = ki(u), o && u; )c = ki(c), i = Ei(i), i.a = n, r = o.z + f - u.z - l + a(o._, u._), r > 0 && (Ai(Ci(o, n, e), n, r), l += r, s += r), f += o.m, l += u.m, h += c.m, s += i.m; o && !Ei(i) && (i.t = o, i.m += f - s), u && !ki(c) && (c.t = u, c.m += l - h, e = n); } return e; } function i(n){ n.x *= c[0], n.y = n.depth * c[1]; } var o = ta.layout.hierarchy().sort(null ).value(null ), a = Si, c = [1, 1] , l = null ; return n.separation = function (t){ return _AN_Read_length("length", arguments)? (a = t, n): a; } , n.size = function (t){ return _AN_Read_length("length", arguments)? (l = null == (c = t)? i: null , n): l? null : c; } , n.nodeSize = function (t){ return _AN_Read_length("length", arguments)? (l = null == (c = t)? null : i, n): l? c: null ; } , Gu(n, o); } , ta.layout.cluster = function (){ function n(n, i){ var o, a = t.call(this, n, i), c = a[0], l = 0; Qu(c, function (n){ var t = n.children; t && _AN_Read_length("length", t)? (n.x = qi(t), n.y = zi(t)): (n.x = o? l += e(n, o): 0, n.y = 0, o = n); } ); var s = Li(c), f = Ti(c), h = s.x - e(s, f) / 2, g = f.x + e(f, s) / 2; return Qu(c, u? function (n){ n.x = (n.x - c.x) * r[0], n.y = (c.y - n.y) * r[1]; } : function (n){ n.x = (n.x - h) / (g - h) * r[0], n.y = (1 - (c.y? n.y / c.y: 1)) * r[1]; } ), a; } var t = ta.layout.hierarchy().sort(null ).value(null ), e = Si, r = [1, 1] , u = false ; return n.separation = function (t){ return _AN_Read_length("length", arguments)? (e = t, n): e; } , n.size = function (t){ return _AN_Read_length("length", arguments)? (u = null == (r = t), n): u? null : r; } , n.nodeSize = function (t){ return _AN_Read_length("length", arguments)? (u = null != (r = t), n): u? r: null ; } , Gu(n, t); } , ta.layout.treemap = function (){ function n(n, t){ for (var e, r, u = -1, i = _AN_Read_length("length", n); ++u < i; )r = (e = n[u]).value * (0 > t? 0: t), e.area = isNaN(r) || 0 >= r? 0: r; } function t(e){ var i = e.children; if (i && _AN_Read_length("length", i)) { var o, a, c, l = f(e), s = [] , h = i.slice(), p = 1 / 0, v = "slice" === g? l.dx: "dice" === g? l.dy: "slice-dice" === g? 1 & e.depth? l.dy: l.dx: Math.min(l.dx, l.dy); for (n(h, l.dx * l.dy / e.value), s.area = 0; (c = _AN_Read_length("length", h)) > 0; )s.push(o = h[c - 1]), s.area += o.area, "squarify" !== g || (a = r(s, v)) <= p? (h.pop(), p = a): (s.area -= s.pop().area, u(s, v, l, false ), v = Math.min(l.dx, l.dy), s.length = s.area = 0, p = 1 / 0); _AN_Read_length("length", s) && (u(s, v, l, true ), s.length = s.area = 0), i.forEach(t); } } function e(t){ var r = t.children; if (r && _AN_Read_length("length", r)) { var i, o = f(t), a = r.slice(), c = [] ; for (n(a, o.dx * o.dy / t.value), c.area = 0; i = a.pop(); )c.push(i), c.area += i.area, null != i.z && (u(c, i.z? o.dx: o.dy, o, !_AN_Read_length("length", a)), c.length = c.area = 0); r.forEach(e); } } function r(n, t){ for (var e, r = n.area, u = 0, i = 1 / 0, o = -1, a = _AN_Read_length("length", n); ++o < a; )(e = n[o].area) && (i > e && (i = e), e > u && (u = e)); return r *= r, t *= t, r? 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(u = a[0], i = a[1]): (u = h[0], i = h[1], s.invert && (u = s.invert(u), i = s.invert(i)), u > i && (c = u, u = i, i = c))), l && s? [[e, u] , [r, i] ] : l? [e, r] : s && [u, i] ); } , n.clear = function (){ return n.empty() || (f = [0, 0] , h = [0, 0] , o = a = null ), n; } , n.empty = function (){ return !!l && f[0] == f[1] || !!s && h[0] == h[1]; } , ta.rebind(n, c, "on"); } ; var Hl = { n: "ns-resize", e: "ew-resize", s: "ns-resize", w: "ew-resize", nw: "nwse-resize", ne: "nesw-resize", se: "nwse-resize", sw: "nesw-resize"} , Ol = [["n", "e", "s", "w", "nw", "ne", "se", "sw"] , ["e", "w"] , ["n", "s"] , [] ] , Il = ac.format = gc.timeFormat, Yl = Il.utc, Zl = Yl("%Y-%m-%dT%H:%M:%S.%LZ"); Il.iso = Date.prototype.toISOString && + new Date("2000-01-01T00:00:00.000Z")? 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