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import {blur2, max, ticks} from "d3-array"; |
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import {slice} from "./array.js"; |
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import constant from "./constant.js"; |
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import Contours from "./contours.js"; |
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function defaultX(d) { |
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return d[0]; |
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} |
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function defaultY(d) { |
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return d[1]; |
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} |
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function defaultWeight() { |
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return 1; |
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} |
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export default function() { |
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var x = defaultX, |
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y = defaultY, |
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weight = defaultWeight, |
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dx = 960, |
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dy = 500, |
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r = 20, |
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k = 2, |
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o = r * 3, |
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n = (dx + o * 2) >> k, |
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m = (dy + o * 2) >> k, |
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threshold = constant(20); |
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function grid(data) { |
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var values = new Float32Array(n * m), |
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pow2k = Math.pow(2, -k), |
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i = -1; |
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for (const d of data) { |
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var xi = (x(d, ++i, data) + o) * pow2k, |
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yi = (y(d, i, data) + o) * pow2k, |
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wi = +weight(d, i, data); |
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if (wi && xi >= 0 && xi < n && yi >= 0 && yi < m) { |
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var x0 = Math.floor(xi), |
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y0 = Math.floor(yi), |
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xt = xi - x0 - 0.5, |
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yt = yi - y0 - 0.5; |
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values[x0 + y0 * n] += (1 - xt) * (1 - yt) * wi; |
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values[x0 + 1 + y0 * n] += xt * (1 - yt) * wi; |
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values[x0 + 1 + (y0 + 1) * n] += xt * yt * wi; |
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values[x0 + (y0 + 1) * n] += (1 - xt) * yt * wi; |
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} |
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} |
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blur2({data: values, width: n, height: m}, r * pow2k); |
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return values; |
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} |
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function density(data) { |
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var values = grid(data), |
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tz = threshold(values), |
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pow4k = Math.pow(2, 2 * k); |
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if (!Array.isArray(tz)) { |
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tz = ticks(Number.MIN_VALUE, max(values) / pow4k, tz); |
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} |
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return Contours() |
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.size([n, m]) |
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.thresholds(tz.map(d => d * pow4k)) |
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(values) |
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.map((c, i) => (c.value = +tz[i], transform(c))); |
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} |
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density.contours = function(data) { |
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var values = grid(data), |
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contours = Contours().size([n, m]), |
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pow4k = Math.pow(2, 2 * k), |
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contour = value => { |
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value = +value; |
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var c = transform(contours.contour(values, value * pow4k)); |
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c.value = value; |
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return c; |
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}; |
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Object.defineProperty(contour, "max", {get: () => max(values) / pow4k}); |
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return contour; |
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}; |
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function transform(geometry) { |
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geometry.coordinates.forEach(transformPolygon); |
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return geometry; |
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} |
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function transformPolygon(coordinates) { |
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coordinates.forEach(transformRing); |
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} |
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function transformRing(coordinates) { |
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coordinates.forEach(transformPoint); |
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} |
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function transformPoint(coordinates) { |
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coordinates[0] = coordinates[0] * Math.pow(2, k) - o; |
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coordinates[1] = coordinates[1] * Math.pow(2, k) - o; |
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} |
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function resize() { |
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o = r * 3; |
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n = (dx + o * 2) >> k; |
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m = (dy + o * 2) >> k; |
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return density; |
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} |
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density.x = function(_) { |
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return arguments.length ? (x = typeof _ === "function" ? _ : constant(+_), density) : x; |
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}; |
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density.y = function(_) { |
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return arguments.length ? (y = typeof _ === "function" ? _ : constant(+_), density) : y; |
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}; |
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density.weight = function(_) { |
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return arguments.length ? (weight = typeof _ === "function" ? _ : constant(+_), density) : weight; |
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}; |
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density.size = function(_) { |
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if (!arguments.length) return [dx, dy]; |
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var _0 = +_[0], _1 = +_[1]; |
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if (!(_0 >= 0 && _1 >= 0)) throw new Error("invalid size"); |
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return dx = _0, dy = _1, resize(); |
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}; |
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density.cellSize = function(_) { |
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if (!arguments.length) return 1 << k; |
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if (!((_ = +_) >= 1)) throw new Error("invalid cell size"); |
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return k = Math.floor(Math.log(_) / Math.LN2), resize(); |
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}; |
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density.thresholds = function(_) { |
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return arguments.length ? (threshold = typeof _ === "function" ? _ : Array.isArray(_) ? constant(slice.call(_)) : constant(_), density) : threshold; |
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}; |
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density.bandwidth = function(_) { |
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if (!arguments.length) return Math.sqrt(r * (r + 1)); |
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if (!((_ = +_) >= 0)) throw new Error("invalid bandwidth"); |
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return r = (Math.sqrt(4 * _ * _ + 1) - 1) / 2, resize(); |
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}; |
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return density; |
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} |
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