Day 15
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15/input
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15/input
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Sensor at x=3556832, y=3209801: closest beacon is at x=3520475, y=3164417
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Sensor at x=3068970, y=3071952: closest beacon is at x=3520475, y=3164417
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Sensor at x=636397, y=1899889: closest beacon is at x=338784, y=1935796
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Sensor at x=3856769, y=3377079: closest beacon is at x=3520475, y=3164417
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Sensor at x=2876227, y=2633203: closest beacon is at x=2595700, y=2684432
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Sensor at x=1435445, y=1194830: closest beacon is at x=925348, y=2000000
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Sensor at x=3764673, y=3881970: closest beacon is at x=3520475, y=3164417
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Sensor at x=3171272, y=1098717: closest beacon is at x=3778277, y=740547
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Sensor at x=3646837, y=966534: closest beacon is at x=3778277, y=740547
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Sensor at x=1736390, y=3309102: closest beacon is at x=1623417, y=4114070
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Sensor at x=1086601, y=2272573: closest beacon is at x=925348, y=2000000
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Sensor at x=3793954, y=2346914: closest beacon is at x=3520475, y=3164417
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Sensor at x=1896054, y=2706210: closest beacon is at x=2595700, y=2684432
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Sensor at x=2298950, y=3449308: closest beacon is at x=2205069, y=3958831
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Sensor at x=1911518, y=3848874: closest beacon is at x=2205069, y=3958831
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Sensor at x=2566355, y=1516144: closest beacon is at x=2595700, y=2684432
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Sensor at x=246553, y=343125: closest beacon is at x=338784, y=1935796
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Sensor at x=2197183, y=3975039: closest beacon is at x=2205069, y=3958831
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Sensor at x=552775, y=3494740: closest beacon is at x=-138318, y=2857049
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Sensor at x=128870, y=1935711: closest beacon is at x=338784, y=1935796
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Sensor at x=2197078, y=3999879: closest beacon is at x=2205069, y=3958831
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Sensor at x=2502533, y=3911039: closest beacon is at x=2205069, y=3958831
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Sensor at x=2289309, y=3024440: closest beacon is at x=2595700, y=2684432
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Sensor at x=3999523, y=551710: closest beacon is at x=3778277, y=740547
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Sensor at x=2246061, y=3999936: closest beacon is at x=2205069, y=3958831
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Sensor at x=3982782, y=1306639: closest beacon is at x=3778277, y=740547
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Sensor at x=1166660, y=2766482: closest beacon is at x=925348, y=2000000
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Sensor at x=3744391, y=440575: closest beacon is at x=3778277, y=740547
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Sensor at x=1480453, y=3997346: closest beacon is at x=1623417, y=4114070
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Sensor at x=9770, y=1844797: closest beacon is at x=338784, y=1935796
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Sensor at x=202829, y=2427690: closest beacon is at x=338784, y=1935796
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Sensor at x=3051096, y=3631595: closest beacon is at x=3147080, y=4258152
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Sensor at x=2111052, y=297293: closest beacon is at x=1552534, y=-431081
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Sensor at x=864326, y=2053355: closest beacon is at x=925348, y=2000000
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Sensor at x=2422495, y=2130146: closest beacon is at x=2595700, y=2684432
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Sensor at x=3655670, y=100751: closest beacon is at x=3778277, y=740547
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Sensor at x=535656, y=2133259: closest beacon is at x=338784, y=1935796
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Sensor at x=263229, y=2101270: closest beacon is at x=338784, y=1935796
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106
15/solution.mjs
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106
15/solution.mjs
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import { readFileSync } from 'node:fs';
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const input = readFileSync('input', 'utf-8');
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const sensors = input
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.split('\n')
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.filter(Boolean)
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.map(line => {
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const match = line.match(/.*?x=(-?\d+), y=(-?\d+).*?x=(-?\d+), y=(-?\d+)/);
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if (!match) {
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throw new Error(`Invalid sensor readout: ${line}`);
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}
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const [x, y, bx, by] = match
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.slice(1)
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.map(n => parseInt(n));
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return {x, y, bx, by};
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});
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function rangesOverlap(range1, range2, tollerance=0) {
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const t = tollerance;
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range1 = [...range1].sort((a, b) => a - b);
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range2 = [...range2].sort((a, b) => a - b);
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return (
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(range1[0] >= range2[0] - t && range1[0] <= range2[1] + t) ||
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(range1[1] >= range2[0] - t && range1[1] <= range2[1] + t) ||
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(range2[0] >= range1[0] - t && range2[0] <= range1[1] + t) ||
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(range2[1] >= range1[0] - t && range2[1] <= range1[1] + t)
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);
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}
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function mergeCoverage(coverage) {
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return [...coverage]
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.map(range => [...range].sort((a, b) => a - b))
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.sort((a, b) => a[0] - b[0])
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.reduce((newCoverage, range) => {
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if (newCoverage.length) {
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const lastRange = newCoverage[newCoverage.length - 1];
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if (rangesOverlap(lastRange, range, 1)) {
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newCoverage[newCoverage.length - 1] = [
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Math.min(lastRange[0], range[0]),
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Math.max(lastRange[1], range[1])
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];
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return newCoverage;
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}
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}
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newCoverage.push(range);
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return newCoverage;
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}, []);
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}
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function getCoverageForRow(y) {
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const coverage = [];
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for (const s of sensors) {
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const range = Math.abs(s.x - s.bx) + Math.abs(s.y - s.by);
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const distanceToSensor = Math.abs(s.y - y);
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const reducedRange = range - distanceToSensor;
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if (reducedRange < 0) continue;
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coverage.push([s.x - reducedRange, s.x + reducedRange]);
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}
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return mergeCoverage(coverage);
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}
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function countBeaconsForRow(y) {
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return sensors
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.map(s => [s.bx, s.by])
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.filter((coord, i, coords) => coords.findLastIndex(
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c => c[0] === coord[0] && c[1] === coord[1]
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) === i)
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.reduce((total, coord) => total + Number(coord[1] === y), 0);
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}
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function countCoverageForRow(y) {
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const coverageCount = getCoverageForRow(y)
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.reduce((total, range) => total + range[1] - range[0] + 1, 0);
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const beaconCount = countBeaconsForRow(y);
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return coverageCount - beaconCount;
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}
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const row = 2000000;
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const coverageCount = countCoverageForRow(2000000);
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console.log(
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`There are ${coverageCount} positions that cannot contain a beacon on ` +
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`row: ${row}`
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);
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function limitCoverage(coverage, min, max) {
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return coverage
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.filter(range => rangesOverlap([min, max], range))
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.map(range => [Math.max(min, range[0]), Math.min(max, range[1])]);
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}
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console.log('Locating distress beacon...');
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let tuningFrequency;
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for (let y = 0; y <= 4000000; y++) {
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const coverage = limitCoverage(getCoverageForRow(y), 0, 4000000);
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if (coverage.length > 1) {
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const x = coverage[0][1] + 1;
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tuningFrequency = x * 4000000 + y;
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}
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}
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console.log(`Tuning frequency for distress beacon: ${tuningFrequency}`);
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