{"version":3,"sources":["node_modules/@arcgis/core/chunks/vec42.js"],"sourcesContent":["/*\nAll material copyright ESRI, All Rights Reserved, unless otherwise specified.\nSee https://js.arcgis.com/4.31/esri/copyright.txt for details.\n*/\nimport { getEpsilon as t, RANDOM as n } from \"../core/libs/gl-matrix-2/math/common.js\";\nfunction a(t, n) {\n return t[0] = n[0], t[1] = n[1], t[2] = n[2], t[3] = n[3], t;\n}\nfunction r(t, n) {\n return t[0] = n[0], t[1] = n[1], t[2] = n[2], t;\n}\nfunction s(t, n, a, r, s) {\n return t[0] = n, t[1] = a, t[2] = r, t[3] = s, t;\n}\nfunction o(t, n, a) {\n return t[0] = n[0] + a[0], t[1] = n[1] + a[1], t[2] = n[2] + a[2], t[3] = n[3] + a[3], t;\n}\nfunction u(t, n, a) {\n return t[0] = n[0] - a[0], t[1] = n[1] - a[1], t[2] = n[2] - a[2], t[3] = n[3] - a[3], t;\n}\nfunction e(t, n, a) {\n return t[0] = n[0] * a[0], t[1] = n[1] * a[1], t[2] = n[2] * a[2], t[3] = n[3] * a[3], t;\n}\nfunction c(t, n, a) {\n return t[0] = n[0] / a[0], t[1] = n[1] / a[1], t[2] = n[2] / a[2], t[3] = n[3] / a[3], t;\n}\nfunction i(t, n) {\n return t[0] = Math.ceil(n[0]), t[1] = Math.ceil(n[1]), t[2] = Math.ceil(n[2]), t[3] = Math.ceil(n[3]), t;\n}\nfunction h(t, n) {\n return t[0] = Math.floor(n[0]), t[1] = Math.floor(n[1]), t[2] = Math.floor(n[2]), t[3] = Math.floor(n[3]), t;\n}\nfunction M(t, n, a) {\n return t[0] = Math.min(n[0], a[0]), t[1] = Math.min(n[1], a[1]), t[2] = Math.min(n[2], a[2]), t[3] = Math.min(n[3], a[3]), t;\n}\nfunction f(t, n, a) {\n return t[0] = Math.max(n[0], a[0]), t[1] = Math.max(n[1], a[1]), t[2] = Math.max(n[2], a[2]), t[3] = Math.max(n[3], a[3]), t;\n}\nfunction l(t, n) {\n return t[0] = Math.round(n[0]), t[1] = Math.round(n[1]), t[2] = Math.round(n[2]), t[3] = Math.round(n[3]), t;\n}\nfunction m(t, n, a) {\n return t[0] = n[0] * a, t[1] = n[1] * a, t[2] = n[2] * a, t[3] = n[3] * a, t;\n}\nfunction d(t, n, a, r) {\n return t[0] = n[0] + a[0] * r, t[1] = n[1] + a[1] * r, t[2] = n[2] + a[2] * r, t[3] = n[3] + a[3] * r, t;\n}\nfunction b(t, n) {\n const a = n[0] - t[0],\n r = n[1] - t[1],\n s = n[2] - t[2],\n o = n[3] - t[3];\n return Math.sqrt(a * a + r * r + s * s + o * o);\n}\nfunction x(t, n) {\n const a = n[0] - t[0],\n r = n[1] - t[1],\n s = n[2] - t[2],\n o = n[3] - t[3];\n return a * a + r * r + s * s + o * o;\n}\nfunction q(t) {\n const n = t[0],\n a = t[1],\n r = t[2],\n s = t[3];\n return Math.sqrt(n * n + a * a + r * r + s * s);\n}\nfunction p(t) {\n const n = t[0],\n a = t[1],\n r = t[2],\n s = t[3];\n return n * n + a * a + r * r + s * s;\n}\nfunction g(t, n) {\n return t[0] = -n[0], t[1] = -n[1], t[2] = -n[2], t[3] = -n[3], t;\n}\nfunction v(t, n) {\n return t[0] = 1 / n[0], t[1] = 1 / n[1], t[2] = 1 / n[2], t[3] = 1 / n[3], t;\n}\nfunction y(t, n) {\n const a = n[0],\n r = n[1],\n s = n[2],\n o = n[3];\n let u = a * a + r * r + s * s + o * o;\n return u > 0 && (u = 1 / Math.sqrt(u), t[0] = a * u, t[1] = r * u, t[2] = s * u, t[3] = o * u), t;\n}\nfunction j(t, n) {\n return t[0] * n[0] + t[1] * n[1] + t[2] * n[2] + t[3] * n[3];\n}\nfunction _(t, n, a, r) {\n const s = n[0],\n o = n[1],\n u = n[2],\n e = n[3];\n return t[0] = s + r * (a[0] - s), t[1] = o + r * (a[1] - o), t[2] = u + r * (a[2] - u), t[3] = e + r * (a[3] - e), t;\n}\nfunction w(t, a = 1) {\n const r = n;\n let s, o, u, e, c, i;\n do {\n s = 2 * r() - 1, o = 2 * r() - 1, c = s * s + o * o;\n } while (c >= 1);\n do {\n u = 2 * r() - 1, e = 2 * r() - 1, i = u * u + e * e;\n } while (i >= 1);\n const h = Math.sqrt((1 - c) / i);\n return t[0] = a * s, t[1] = a * o, t[2] = a * u * h, t[3] = a * e * h, t;\n}\nfunction z(t, n, a) {\n const r = n[0],\n s = n[1],\n o = n[2],\n u = n[3];\n return t[0] = a[0] * r + a[4] * s + a[8] * o + a[12] * u, t[1] = a[1] * r + a[5] * s + a[9] * o + a[13] * u, t[2] = a[2] * r + a[6] * s + a[10] * o + a[14] * u, t[3] = a[3] * r + a[7] * s + a[11] * o + a[15] * u, t;\n}\nfunction A(t, n, a) {\n const r = n[0],\n s = n[1],\n o = n[2],\n u = a[0],\n e = a[1],\n c = a[2],\n i = a[3],\n h = i * r + e * o - c * s,\n M = i * s + c * r - u * o,\n f = i * o + u * s - e * r,\n l = -u * r - e * s - c * o;\n return t[0] = h * i + l * -u + M * -c - f * -e, t[1] = M * i + l * -e + f * -u - h * -c, t[2] = f * i + l * -c + h * -e - M * -u, t[3] = n[3], t;\n}\nfunction D(t) {\n return \"vec4(\" + t[0] + \", \" + t[1] + \", \" + t[2] + \", \" + t[3] + \")\";\n}\nfunction E(t, n) {\n return t[0] === n[0] && t[1] === n[1] && t[2] === n[2] && t[3] === n[3];\n}\nfunction L(n, a) {\n const r = n[0],\n s = n[1],\n o = n[2],\n u = n[3],\n e = a[0],\n c = a[1],\n i = a[2],\n h = a[3],\n M = t();\n return Math.abs(r - e) <= M * Math.max(1, Math.abs(r), Math.abs(e)) && Math.abs(s - c) <= M * Math.max(1, Math.abs(s), Math.abs(c)) && Math.abs(o - i) <= M * Math.max(1, Math.abs(o), Math.abs(i)) && Math.abs(u - h) <= M * Math.max(1, Math.abs(u), Math.abs(h));\n}\nconst O = u,\n S = e,\n k = c,\n B = b,\n C = x,\n F = q,\n G = p,\n H = Object.freeze(Object.defineProperty({\n __proto__: null,\n add: o,\n ceil: i,\n copy: a,\n copyVec3: r,\n dist: B,\n distance: b,\n div: k,\n divide: c,\n dot: j,\n equals: L,\n exactEquals: E,\n floor: h,\n inverse: v,\n len: F,\n length: q,\n lerp: _,\n max: f,\n min: M,\n mul: S,\n multiply: e,\n negate: g,\n normalize: y,\n random: w,\n round: l,\n scale: m,\n scaleAndAdd: d,\n set: s,\n sqrDist: C,\n sqrLen: G,\n squaredDistance: x,\n squaredLength: p,\n str: D,\n sub: O,\n subtract: u,\n transformMat4: z,\n transformQuat: A\n }, Symbol.toStringTag, {\n value: \"Module\"\n }));\nexport { v as A, w as B, A as C, D, O as E, S as F, k as G, B as H, C as I, F as J, G as K, E as a, p as b, a as c, m as d, L as e, x as f, o as g, j as h, r as i, q as j, u as k, _ as l, e as m, y as n, c as o, i as p, h as q, M as r, s, z as t, f as u, H as v, l as w, d as x, b as y, g as z 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