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52af74ecd5
..
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+101
-1
@@ -1,4 +1,5 @@
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import java.lang.Long.numberOfTrailingZeros
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import java.lang.Long.numberOfTrailingZeros
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import java.math.BigInteger
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import java.util.*
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import java.util.*
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import kotlin.math.abs
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import kotlin.math.abs
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import kotlin.math.min
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import kotlin.math.min
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@@ -187,7 +188,106 @@ fun gcdPositive(aIn: Long, bIn: Long): Long {
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return a shl shift
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return a shl shift
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}
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}
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fun calcPrimeFactorsAndPhi(n: Long, primes: MutableList<Long>, allPrimes: MutableSet<Long>): Pair<List<Pair<Long, Int>>, Long> {
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// ax + by = gcdExtendedPositive(a, b)
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fun extendedGcd(a: Long, b: Long): Pair<Long, Pair<Long, Long>> {
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var old_r = a
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var r = b
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var old_s = 1L
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var s = 0L
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var old_t = 0L
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var t = 1L
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while (r != 0L) {
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val q = old_r / r
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val rtmp = old_r
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old_r = r
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r = rtmp - q * r
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val stmp = old_s
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old_s = s
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s = stmp - q * s
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val ttmp = old_t
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old_t = t
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t = ttmp - q * t
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}
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return old_r to (old_s to old_t)
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}
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fun extendedGcd(a: BigInteger, b: BigInteger): Pair<BigInteger, Pair<BigInteger, BigInteger>> {
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var old_r = a
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var r = b
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var old_s = BigInteger.ONE
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var s = BigInteger.ZERO
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var old_t = BigInteger.ZERO
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var t = BigInteger.ONE
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while (r != BigInteger.ZERO) {
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val q = old_r / r
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val rtmp = old_r
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old_r = r
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r = rtmp - q * r
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val stmp = old_s
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old_s = s
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s = stmp - q * s
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val ttmp = old_t
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old_t = t
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t = ttmp - q * t
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}
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return old_r to (old_s to old_t)
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}
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fun extendedGcd(v: List<Long>): Pair<Long, List<Long>> {
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if (v.size < 2) throw IllegalArgumentException("Expected at least 2 elements")
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val gcds = ArrayList<Long>(v.size)
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val coeffs = ArrayList<Long>(v.size)
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var (gcd, p1) = extendedGcd(v[0], v[1])
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coeffs.add(p1.first)
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coeffs.add(p1.second)
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gcds.add(gcd)
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gcds.add(gcd)
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for (i in 2 until v.size) {
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val (gcdnew, pi) = extendedGcd(gcd, v[i])
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gcd = gcdnew
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coeffs.add(pi.second)
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gcds.add(gcd)
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}
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for (i in gcds.indices) {
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if (gcds[i] != gcd) {
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coeffs[i] *= gcds[i] / gcd
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}
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}
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return gcd to coeffs
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}
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fun extendedGcdBigInteger(v: List<BigInteger>): Pair<BigInteger, List<BigInteger>> {
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if (v.size < 2) throw IllegalArgumentException("Expected at least 2 elements")
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val gcds = ArrayList<BigInteger>(v.size)
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val coeffs = ArrayList<BigInteger>(v.size)
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var (gcd, p1) = extendedGcd(v[0], v[1])
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coeffs.add(p1.first)
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coeffs.add(p1.second)
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gcds.add(gcd)
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gcds.add(gcd)
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for (i in 2 until v.size) {
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val (gcdnew, pi) = extendedGcd(gcd, v[i])
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gcd = gcdnew
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coeffs.add(pi.second)
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gcds.add(gcd)
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}
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for (i in gcds.indices) {
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if (gcds[i] != gcd) {
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coeffs[i] *= gcds[i] / gcd
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}
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}
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return gcd to coeffs
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}
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fun calcPrimeFactorsAndPhi(
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n: Long,
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primes: MutableList<Long>,
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allPrimes: MutableSet<Long>
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): Pair<List<Pair<Long, Int>>, Long> {
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val factors = ArrayList<Pair<Long, Int>>()
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val factors = ArrayList<Pair<Long, Int>>()
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var phi = 1L
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var phi = 1L
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var rem = n
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var rem = n
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@@ -82,7 +82,7 @@ Prize: X=18641, Y=10279
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// Linear Diophantine equations
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// Linear Diophantine equations
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/* The simplest linear Diophantine equation takes the form
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/* The simplest linear Diophantine equation takes the form
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a*x + b*x = c
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a*x + b*y = c
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where a, b and c are given integers.
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where a, b and c are given integers.
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The solutions are described by the following theorem:
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The solutions are described by the following theorem:
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This Diophantine equation has a solution (where x and y are integers),
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This Diophantine equation has a solution (where x and y are integers),
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@@ -88,7 +88,7 @@ fun main() {
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return circuitSizes.sortedDescending().take(3).fold(1L) { acc, l -> acc * l }
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return circuitSizes.sortedDescending().take(3).fold(1L) { acc, l -> acc * l }
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}
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}
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fun part2(input: List<String>): Int {
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fun part2(input: List<String>): Long {
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val nodes = input.map { it.splitInts(",").toIntArray() }.toTypedArray()
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val nodes = input.map { it.splitInts(",").toIntArray() }.toTypedArray()
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val distances = createDistances(nodes)
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val distances = createDistances(nodes)
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@@ -100,11 +100,11 @@ fun main() {
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if (union(unionFindParentArray, n1, n2)) {
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if (union(unionFindParentArray, n1, n2)) {
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numCircuits++
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numCircuits++
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if (numCircuits == n) {
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if (numCircuits == n) {
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return nodes[n1][0] * nodes[n2][0]
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return nodes[n1][0].toLong() * nodes[n2][0]
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}
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}
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}
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}
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}
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}
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return -1
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return -1L
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}
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}
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// test if implementation meets criteria from the description, like:
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// test if implementation meets criteria from the description, like:
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@@ -115,7 +115,7 @@ fun main() {
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val testInputPart2Result = part2(testInput)
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val testInputPart2Result = part2(testInput)
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println("Part 2 Test: $testInputPart2Result")
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println("Part 2 Test: $testInputPart2Result")
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check(testInputPart1Result == 40L)
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check(testInputPart1Result == 40L)
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check(testInputPart2Result == 25272)
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check(testInputPart2Result == 25272L)
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val input = readInput("aoc2025/Day08")
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val input = readInput("aoc2025/Day08")
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part1(input, 1000).println()
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part1(input, 1000).println()
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@@ -0,0 +1,91 @@
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package aoc2025
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import println
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import readInput
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import splitInts
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import java.util.*
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import kotlin.math.abs
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/*
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--- Day 9: Movie Theater ---
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https://adventofcode.com/2025/day/9
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*/
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fun main() {
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val inlineTestInput = """
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7,1
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11,1
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11,7
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9,7
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9,5
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2,5
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2,3
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7,3
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"""
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fun part1(input: List<String>): Long {
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val coords = input.map { it.splitInts(",") }
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var maxArea = 0L
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for (i1 in 0 until coords.size step 2) {
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for (i2 in i1 + 2 until coords.size step 2) {
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maxArea =
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((abs(coords[i1][0] - coords[i2][0]) + 1).toLong() * (abs(coords[i1][1] - coords[i2][1]) + 1).toLong()).coerceAtLeast(
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maxArea
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)
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}
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}
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return maxArea
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}
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fun intersectsRanges(set: TreeMap<Int, ArrayList<IntRange>>, x1: Int, y1: Int, x2: Int, y2: Int) =
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set.subMap(y1 + 1, y2).values.any { it.any { it.first < x2 && it.last > x1 } }
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fun part2(input: List<String>): Long {
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val coords = input.map { it.splitInts(",") }
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val xSpans = TreeMap<Int, ArrayList<IntRange>>()
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val ySpans = TreeMap<Int, ArrayList<IntRange>>()
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for (i1 in 0 until coords.size) {
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val i2 = if (i1 != coords.size - 1) i1 + 1 else 0
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if (coords[i1][1] == coords[i2][1]) {
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xSpans.getOrPut(coords[i1][1]) { ArrayList<IntRange>() }.add(
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IntRange(coords[i1][0].coerceAtMost(coords[i2][0]), coords[i1][0].coerceAtLeast(coords[i2][0]))
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)
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} else {
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ySpans.getOrPut(coords[i1][0]) { ArrayList<IntRange>() }.add(
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IntRange(coords[i1][1].coerceAtMost(coords[i2][1]), coords[i1][1].coerceAtLeast(coords[i2][1]))
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)
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}
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}
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var maxArea = 0L
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for (i1 in 0 until coords.size step 2) {
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for (i2 in i1 + 2 until coords.size step 2) {
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val x1 = coords[i1][0].coerceAtMost(coords[i2][0])
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val x2 = coords[i1][0].coerceAtLeast(coords[i2][0])
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val y1 = coords[i1][1].coerceAtMost(coords[i2][1])
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val y2 = coords[i1][1].coerceAtLeast(coords[i2][1])
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val area = ((x2 - x1 + 1).toLong() * (y2 - y1 + 1).toLong())
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if (area > maxArea &&
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!(intersectsRanges(xSpans, x1, y1, x2, y2) || intersectsRanges(ySpans, y1, x1, y2, x2))
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) {
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maxArea = area
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}
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}
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}
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return maxArea
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}
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// test if implementation meets criteria from the description, like:
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val testInput = inlineTestInput.trim().reader().readLines()
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//val testInput = readInput("aoc2025/Day09_test")
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val testInputPart1Result = part1(testInput)
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println("Part 1 Test: $testInputPart1Result")
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val testInputPart2Result = part2(testInput)
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println("Part 2 Test: $testInputPart2Result")
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check(testInputPart1Result == 50L)
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check(testInputPart2Result == 24L)
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val input = readInput("aoc2025/Day09")
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part1(input).println()
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part2(input).println()
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}
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@@ -0,0 +1,134 @@
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package aoc2025
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import chineseRemainder
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import extendedGcdBigInteger
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import primeFactors
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import primeSequence
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import println
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import readInput
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import sieveOfErastosthenes
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import splitInts
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import java.math.BigInteger
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/*
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--- Day 10: Factory ---
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|
https://adventofcode.com/2025/day/10
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*/
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fun main() {
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|
|
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val inlineTestInput = """
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[.##.] (3) (1,3) (2) (2,3) (0,2) (0,1) {3,5,4,7}
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[...#.] (0,2,3,4) (2,3) (0,4) (0,1,2) (1,2,3,4) {7,5,12,7,2}
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[.###.#] (0,1,2,3,4) (0,3,4) (0,1,2,4,5) (1,2) {10,11,11,5,10,5}
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"""
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data class Machine(val size: Int, val target: Int, val toggles: IntArray, val joltage: IntArray)
|
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|
|
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fun parse(input: List<String>): ArrayList<Machine> {
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val machines = ArrayList<Machine>()
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for (i in input) {
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val stuff = i.split(" ")
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val machSize = stuff[0].length - 2
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val target = stuff[0].removeSurrounding("[", "]")
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.foldIndexed(0) { i, acc, ch -> acc + if (ch == '#') (1 shl i) else 0 }
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val toggles =
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stuff.drop(1).dropLast(1)
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|
.map { it.removeSurrounding("(", ")").splitInts(",").fold(0) { acc, v -> acc + (1 shl v) } }
|
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.toIntArray()
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val joltages = stuff.last().removeSurrounding("{", "}").splitInts(",").toIntArray()
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machines.add(Machine(machSize, target, toggles, joltages))
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|
}
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return machines
|
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|
}
|
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|
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fun part1(input: List<String>): Int {
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val machines = parse(input)
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var sumButts = 0
|
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for (m in machines) {
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// look at which different possible sets of toggles need to be pressed to result in the target number
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|
// pressing an even time will cancel out the effect, so only look what happens if you press once
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var minPresses = Int.MAX_VALUE
|
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for (tm in 1 until (1 shl m.toggles.size)) {
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val odds = m.toggles.filterIndexed { i, v -> (1 shl i) and tm != 0 }
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val result = odds.fold(0) { acc, iv -> acc xor iv }
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if (result == m.target) {
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minPresses = minPresses.coerceAtMost(odds.size)
|
||||||
|
}
|
||||||
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}
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sumButts += minPresses
|
||||||
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}
|
||||||
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return sumButts
|
||||||
|
}
|
||||||
|
|
||||||
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fun part2(input: List<String>): Int {
|
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val machines = parse(input)
|
||||||
|
|
||||||
|
val sieve = sieveOfErastosthenes(10000)
|
||||||
|
val primes = primeSequence(sieve).take(500).toList()
|
||||||
|
var sumButts = 0
|
||||||
|
for (m in machines) {
|
||||||
|
println()
|
||||||
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val maxJoltage = m.joltage.max()
|
||||||
|
val numBits = 32 - maxJoltage.countLeadingZeroBits()
|
||||||
|
val bigTarget = m.joltage.foldIndexed(BigInteger.ZERO) { index, acc, i ->
|
||||||
|
acc.plus(
|
||||||
|
BigInteger.valueOf(i.toLong()).shiftLeft(numBits * index)
|
||||||
|
)
|
||||||
|
}
|
||||||
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val bigToggles = ArrayList<BigInteger>()
|
||||||
|
for (t in m.toggles) {
|
||||||
|
var tt = t
|
||||||
|
var bigToggle = BigInteger.ZERO
|
||||||
|
var shift = 0
|
||||||
|
while (tt > 0) {
|
||||||
|
if (tt and 1 != 0) {
|
||||||
|
bigToggle += BigInteger.ONE.shiftLeft(shift)
|
||||||
|
}
|
||||||
|
shift += numBits
|
||||||
|
tt = tt shr 1
|
||||||
|
}
|
||||||
|
bigToggles.add(bigToggle)
|
||||||
|
}
|
||||||
|
|
||||||
|
// j0 * bigtoggle[0] + j1 * bigtoggle[1] + ... = bigTarget
|
||||||
|
// is a Linear Diophantine equation that can be solved with the extended Euclidean algorithm
|
||||||
|
|
||||||
|
val (gcd, coeffients) = extendedGcdBigInteger(bigToggles)
|
||||||
|
if (bigTarget % gcd != BigInteger.ZERO) throw IllegalStateException()
|
||||||
|
|
||||||
|
val factorMap = HashMap<Long, Long>()
|
||||||
|
var good = true
|
||||||
|
val primeFactors = primeFactors(bigTarget.toLong(), sieve)
|
||||||
|
for (pf in primeFactors) {
|
||||||
|
val sf = factorMap[pf]
|
||||||
|
val pr = 1000 % pf
|
||||||
|
if (sf != null && sf != pr) {
|
||||||
|
good = false
|
||||||
|
break
|
||||||
|
}
|
||||||
|
factorMap[pf] = pr
|
||||||
|
}
|
||||||
|
val reducedPairs = factorMap.map { it.value to it.key }.sortedBy { it.second }
|
||||||
|
val rx = reducedPairs.chineseRemainder()
|
||||||
|
|
||||||
|
val leastFingers = 0
|
||||||
|
println(leastFingers)
|
||||||
|
sumButts += leastFingers
|
||||||
|
}
|
||||||
|
return sumButts
|
||||||
|
}
|
||||||
|
|
||||||
|
// test if implementation meets criteria from the description, like:
|
||||||
|
val testInput = inlineTestInput.trim().reader().readLines()
|
||||||
|
//val testInput = readInput("aoc2025/Day10_test")
|
||||||
|
val testInputPart1Result = part1(testInput)
|
||||||
|
println("Part 1 Test: $testInputPart1Result")
|
||||||
|
val testInputPart2Result = part2(testInput)
|
||||||
|
println("Part 2 Test: $testInputPart2Result")
|
||||||
|
check(testInputPart1Result == 7)
|
||||||
|
//check(testInputPart2Result == 33)
|
||||||
|
|
||||||
|
val input = readInput("aoc2025/Day10")
|
||||||
|
part1(input).println()
|
||||||
|
part2(input).println()
|
||||||
|
}
|
||||||
@@ -0,0 +1,98 @@
|
|||||||
|
package aoc2025
|
||||||
|
|
||||||
|
import println
|
||||||
|
import readInput
|
||||||
|
|
||||||
|
/*
|
||||||
|
--- Day 11: Reactor ---
|
||||||
|
https://adventofcode.com/2025/day/11
|
||||||
|
*/
|
||||||
|
fun main() {
|
||||||
|
|
||||||
|
val inlineTestInput = """
|
||||||
|
aaa: you hhh
|
||||||
|
you: bbb ccc
|
||||||
|
bbb: ddd eee
|
||||||
|
ccc: ddd eee fff
|
||||||
|
ddd: ggg
|
||||||
|
eee: out
|
||||||
|
fff: out
|
||||||
|
ggg: out
|
||||||
|
hhh: ccc fff iii
|
||||||
|
iii: out
|
||||||
|
"""
|
||||||
|
|
||||||
|
val inlineTestInput2 = """
|
||||||
|
svr: aaa bbb
|
||||||
|
aaa: fft
|
||||||
|
fft: ccc
|
||||||
|
bbb: tty
|
||||||
|
tty: ccc
|
||||||
|
ccc: ddd eee
|
||||||
|
ddd: hub
|
||||||
|
hub: fff
|
||||||
|
eee: dac
|
||||||
|
dac: fff
|
||||||
|
fff: ggg hhh
|
||||||
|
ggg: out
|
||||||
|
hhh: out
|
||||||
|
"""
|
||||||
|
|
||||||
|
fun parseInput(input: List<String>): HashMap<String, MutableSet<String>> {
|
||||||
|
val children = HashMap<String, MutableSet<String>>()
|
||||||
|
for (i in input) {
|
||||||
|
val (n, chs) = i.split(": ")
|
||||||
|
val ch = chs.split(" ")
|
||||||
|
children.getOrPut(n) { HashSet() }.addAll(ch)
|
||||||
|
}
|
||||||
|
return children
|
||||||
|
}
|
||||||
|
|
||||||
|
fun rec(
|
||||||
|
children: HashMap<String, MutableSet<String>>,
|
||||||
|
p: String,
|
||||||
|
stop: String,
|
||||||
|
visited: MutableSet<String> = HashSet(),
|
||||||
|
memo: HashMap<String, Long> = HashMap()
|
||||||
|
): Long {
|
||||||
|
if (p == stop) return 1L
|
||||||
|
return memo.getOrPut(p) {
|
||||||
|
visited.add(p)
|
||||||
|
val res = children[p]?.sumOf { rec(children, it, stop, visited, memo) } ?: 0L
|
||||||
|
visited.remove(p)
|
||||||
|
res
|
||||||
|
}
|
||||||
|
}
|
||||||
|
|
||||||
|
fun part1(input: List<String>): Long {
|
||||||
|
return rec(parseInput(input), "you", "out")
|
||||||
|
}
|
||||||
|
|
||||||
|
fun part2(input: List<String>): Long {
|
||||||
|
val children = parseInput(input)
|
||||||
|
|
||||||
|
val srvToDac = rec(children, "svr", "dac")
|
||||||
|
val dacToFft = rec(children, "dac", "fft")
|
||||||
|
val fftToOut = rec(children, "fft", "out")
|
||||||
|
val srvToFft = rec(children, "svr", "fft")
|
||||||
|
val fftToDac = rec(children, "fft", "dac")
|
||||||
|
val dacToOut = rec(children, "dac", "out")
|
||||||
|
|
||||||
|
return srvToDac * dacToFft * fftToOut + srvToFft * fftToDac * dacToOut
|
||||||
|
}
|
||||||
|
|
||||||
|
// test if implementation meets criteria from the description, like:
|
||||||
|
val testInput = inlineTestInput.trim().reader().readLines()
|
||||||
|
val testInput2 = inlineTestInput2.trim().reader().readLines()
|
||||||
|
//val testInput = readInput("aoc2025/Day11_test")
|
||||||
|
val testInputPart1Result = part1(testInput)
|
||||||
|
println("Part 1 Test: $testInputPart1Result")
|
||||||
|
val testInputPart2Result = part2(testInput2)
|
||||||
|
println("Part 2 Test: $testInputPart2Result")
|
||||||
|
check(testInputPart1Result == 5L)
|
||||||
|
check(testInputPart2Result == 2L)
|
||||||
|
|
||||||
|
val input = readInput("aoc2025/Day11")
|
||||||
|
part1(input).println()
|
||||||
|
part2(input).println()
|
||||||
|
}
|
||||||
@@ -0,0 +1,126 @@
|
|||||||
|
package aoc2025
|
||||||
|
|
||||||
|
import CharGrid
|
||||||
|
import println
|
||||||
|
import readInput
|
||||||
|
import splitInts
|
||||||
|
|
||||||
|
/*
|
||||||
|
--- Day 12: Christmas Tree Farm ---
|
||||||
|
https://adventofcode.com/2025/day/12
|
||||||
|
*/
|
||||||
|
fun main() {
|
||||||
|
|
||||||
|
val inlineTestInput = """
|
||||||
|
0:
|
||||||
|
###
|
||||||
|
##.
|
||||||
|
##.
|
||||||
|
|
||||||
|
1:
|
||||||
|
###
|
||||||
|
##.
|
||||||
|
.##
|
||||||
|
|
||||||
|
2:
|
||||||
|
.##
|
||||||
|
###
|
||||||
|
##.
|
||||||
|
|
||||||
|
3:
|
||||||
|
##.
|
||||||
|
###
|
||||||
|
##.
|
||||||
|
|
||||||
|
4:
|
||||||
|
###
|
||||||
|
#..
|
||||||
|
###
|
||||||
|
|
||||||
|
5:
|
||||||
|
###
|
||||||
|
.#.
|
||||||
|
###
|
||||||
|
|
||||||
|
4x4: 0 0 0 0 2 0
|
||||||
|
12x5: 1 0 1 0 2 2
|
||||||
|
12x5: 1 0 1 0 3 2
|
||||||
|
"""
|
||||||
|
|
||||||
|
fun fits(grid: LongArray, x: Int, y: Int, present: Long) =
|
||||||
|
(grid[y] or ((7L and present) shl x) == grid[y]) &&
|
||||||
|
(grid[y + 1] or ((7L and (present shr 3)) shl x) == grid[y + 1]) &&
|
||||||
|
(grid[y + 2] or ((7L and (present shr 6)) shl x) == grid[y + 2])
|
||||||
|
|
||||||
|
fun part1(input: List<String>): Int {
|
||||||
|
var lp = 0
|
||||||
|
val presents = ArrayList<IntArray>()
|
||||||
|
// nothing of this stuff is needed :-(
|
||||||
|
while (!input[lp].contains("x")) {
|
||||||
|
var charGrid = CharGrid(input.subList(lp + 1, lp + 4))
|
||||||
|
lp += 5
|
||||||
|
|
||||||
|
val setRot = HashSet<Int>()
|
||||||
|
for (r in 0..7) {
|
||||||
|
val present = charGrid.generateGridPos().foldIndexed(0) { index, acc, pos -> acc + (if (charGrid[pos] == '#') (1 shl index) else 0) }
|
||||||
|
setRot.add(present)
|
||||||
|
if (r != 3) {
|
||||||
|
// rotate
|
||||||
|
val newGrid = charGrid.copyOf()
|
||||||
|
newGrid.generateGridPos().forEach { (dc, dr) -> newGrid[2 - dr, dc] = charGrid[dc, dr] }
|
||||||
|
charGrid = newGrid
|
||||||
|
} else {
|
||||||
|
// flip
|
||||||
|
val newGrid = charGrid.copyOf()
|
||||||
|
newGrid.generateGridPos().forEach { (dc, dr) -> newGrid[2 - dc, dr] = charGrid[dc, dr] }
|
||||||
|
charGrid = newGrid
|
||||||
|
}
|
||||||
|
}
|
||||||
|
presents.add(setRot.toIntArray())
|
||||||
|
}
|
||||||
|
|
||||||
|
var fitted = 0
|
||||||
|
val presentSizes = presents.map { it[0].countOneBits() }.toIntArray()
|
||||||
|
|
||||||
|
for (p in lp until input.size) {
|
||||||
|
val (dim, pl) = input[p].split(": ")
|
||||||
|
val (width, height) = dim.splitInts("x")
|
||||||
|
val placements = pl.splitInts().toIntArray()
|
||||||
|
val totalSize = placements.mapIndexed { i, v -> v * presentSizes[i] }.sum()
|
||||||
|
if (totalSize > width * height) {
|
||||||
|
continue
|
||||||
|
}
|
||||||
|
|
||||||
|
val totalPresents = placements.sum()
|
||||||
|
// just assume it will fit if there is enough area
|
||||||
|
if (totalPresents * 9 <= width * height) {
|
||||||
|
fitted++
|
||||||
|
continue
|
||||||
|
}
|
||||||
|
|
||||||
|
println("Oh no!")
|
||||||
|
// here the hard part would have started, but except for the example input,
|
||||||
|
// it never gets here
|
||||||
|
//val grid = LongArray(height) { (1L shl width) - 1L }
|
||||||
|
}
|
||||||
|
return fitted
|
||||||
|
}
|
||||||
|
|
||||||
|
fun part2(input: List<String>): Int {
|
||||||
|
return 0
|
||||||
|
}
|
||||||
|
|
||||||
|
// test if implementation meets criteria from the description, like:
|
||||||
|
val testInput = inlineTestInput.trim().reader().readLines()
|
||||||
|
//val testInput = readInput("aoc2025/Day12_test")
|
||||||
|
val testInputPart1Result = part1(testInput)
|
||||||
|
println("Part 1 Test: $testInputPart1Result")
|
||||||
|
val testInputPart2Result = part2(testInput)
|
||||||
|
println("Part 2 Test: $testInputPart2Result")
|
||||||
|
//check(testInputPart1Result == 2)
|
||||||
|
check(testInputPart2Result == 0)
|
||||||
|
|
||||||
|
val input = readInput("aoc2025/Day12")
|
||||||
|
part1(input).println()
|
||||||
|
part2(input).println()
|
||||||
|
}
|
||||||
Reference in New Issue
Block a user