improved (a lot) day 5 puzzle 2
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123d0db8b2
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4e1cd00e53
@ -14,10 +14,15 @@ object Puzzle2 {
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def backward(dst: Long): Long = startSrc + dst - startDst
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override def toString: String = s"[$startSrc;$endSrc[ -> ($dstTable) [$startDst;$endDst["
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}
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class Table(val id: Int) {
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var ranges: ArrayBuffer[Range] = new ArrayBuffer()
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def addRange(range: Range): Unit = ranges.addOne(range)
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/**
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* Sorts the ranges in ascending order
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*/
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def sortRanges(): Unit = {
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var changed: Boolean = false
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do {
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@ -33,6 +38,9 @@ object Puzzle2 {
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} while (changed)
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}
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/**
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* Fills the gaps between ranges with identity ranges (i.e. which keep values unchanged)
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*/
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def fillGaps(): Unit = {
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var r1: Range = Range(0, 0, 0, id + 1)
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var r2: Range = r1
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@ -49,12 +57,23 @@ object Puzzle2 {
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}
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}
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/**
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* Forwards a value through this table
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* @param src The source to forward
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* @return A pair containing the destination value and new table id
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*/
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def forward(src: Long): (Long, Int) = {
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for (range: Range <- ranges) {
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if (range.containsSrc(src)) return (range.forward(src), range.dstTable)
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}
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return (src, id+1)
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}
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/**
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* Forwards a value in reverse through this table
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* @param dst The destination to "backward"
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* @return A pair containing the source value and new table id
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*/
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def backward(dst: Long): (Long, Int) = {
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for (range: Range <- ranges) {
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if (range.containsDst(dst)) return (range.backward(dst), id)
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@ -67,6 +86,7 @@ object Puzzle2 {
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var forwardingTables: Array[Table] = Array.empty
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var seeds: Array[Long] = Array.empty
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def loadInput(path: String): Unit = {
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val source: BufferedSource = Source.fromFile(path)
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@ -89,6 +109,9 @@ object Puzzle2 {
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source.close()
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}
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/**
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* Reorganizes all the tables by sorting the ranges and filling the gaps between them
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*/
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def sortTables(): Unit = {
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for (table: Table <- forwardingTables) {
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table.sortRanges()
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@ -96,50 +119,24 @@ object Puzzle2 {
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}
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}
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def simplifyTables(): Unit = {
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/**
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* Collapses all forwarding tables into a single one, mapping seeds to locations
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*/
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def collapseTables(): Unit = {
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for (i: Int <- forwardingTables.length - 1 until 0 by -1) {
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//simplifyTable(i)
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val newTable: Table = collapseTables(forwardingTables(i-1), forwardingTables(i))
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val newTable: Table = collapseTable(forwardingTables(i-1), forwardingTables(i))
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forwardingTables(i-1) = newTable
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}
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}
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def simplifyTable(tableI: Int): Unit = {
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val table1: Table = forwardingTables(tableI)
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val table2: Table = forwardingTables(tableI+1)
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val newTable1: Table = new Table(table1.id)
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val limits: ArrayBuffer[Long] = new ArrayBuffer()
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for (r1: Range <- table1.ranges) {
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val startFrom1 = r1.startSrc
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val endFrom1 = startFrom1 + r1.length
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val startTo1 = r1.startDst
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val endTo1 = startTo1 + r1.length
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limits.addOne(startTo1)
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limits.addOne(endTo1)
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for (r2: Range <- table2.ranges) {
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val startFrom2 = r2.startSrc
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val endFrom2 = startFrom2 + r2.length
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val startTo2 = r2.startDst
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val endTo2 = startTo2 + r2.length
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limits.addOne(startFrom2)
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limits.addOne(endFrom2)
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// If overlap
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if (!(endTo1 < startFrom2 || startTo1 > endFrom2)) {
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}
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}
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}
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forwardingTables(tableI) = newTable1
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}
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def collapseTables(table1: Table, table2: Table): Table = {
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/**
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* Collapses a forwarding table with the next tables
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* @param table1 The table to collapse
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* @param table2 The next table
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* @return A new table equivalent to the fusion of both tables
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*/
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def collapseTable(table1: Table, table2: Table): Table = {
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// Find all new range limits
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val limitsSet: mutable.Set[Long] = new mutable.HashSet()
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limitsSet.addOne(table1.ranges(0).startSrc)
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for (range: Range <- table1.ranges) {
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@ -152,6 +149,8 @@ object Puzzle2 {
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val newTable: Table = new Table(table1.id)
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val limits: Array[Long] = limitsSet.toArray.sorted
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// For each limit, create the corresponding range by forwarding table 1 through table 2
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for (i: Int <- 0 until limits.length - 1) {
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val src1: Long = limits(i)
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val dst1: (Long, Int) = table1.forward(src1)
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@ -162,42 +161,40 @@ object Puzzle2 {
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return newTable
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}
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def forward(value: Long, tableI: Int): Long = {
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for (range: Range <- forwardingTables(tableI).ranges) {
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if (value >= range.startSrc) {
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if (value < range.startSrc + range.length) {
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return value - range.startSrc + range.startDst
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}
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} else {
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return value
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}
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}
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return value
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}
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def solve(path: String): Long = {
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println("Solving puzzle 2")
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loadInput(path)
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println("Loaded input")
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sortTables()
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for (table: Table <- forwardingTables) {
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/*for (table: Table <- forwardingTables) {
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println(table)
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}
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}*/
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println("Sorted forwarding tables")
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simplifyTables()
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collapseTables()
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println("Simplified forwarding tables")
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val table: Table = forwardingTables(0)
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println(table)
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//println(table)
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var smallest: Long = -1
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for (i: Int <- seeds.indices by 2) {
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println(s"Mapping range of seed [${seeds(i)},${seeds(i)+seeds(i+1)}]")
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for (seed: Long <- seeds(i) until seeds(i)+seeds(i+1)) {
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val location: Long = table.forward(seed)._1
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if (smallest == -1 || location < smallest) {
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smallest = location
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}
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val seedStart: Long = seeds(i)
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val seedEnd: Long = seedStart + seeds(i+1) - 1
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// Find range limits lying inside seed range
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val limitsSet: mutable.Set[Long] = new mutable.HashSet()
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limitsSet.addOne(seedStart)
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limitsSet.addOne(seedEnd)
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for (r2: Range <- table.ranges) {
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if (r2.startSrc > seedStart && r2.startSrc < seedEnd) limitsSet.add(r2.startSrc)
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if (r2.endSrc > seedStart && r2.endSrc < seedEnd) limitsSet.add(r2.startSrc)
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}
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val limits: Array[Long] = limitsSet.toArray.sorted
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// For each limit, forward its value and compare with current smallest
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for (i: Int <- 0 until limits.length - 1) {
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val value: Long = table.forward(limits(i))._1
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if (smallest == -1 || value < smallest) smallest = value
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}
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println(s"New smallest location: $smallest")
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}
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return smallest
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}
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