ok, let's try and improve the skip solution
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@ -5,29 +5,25 @@ import kotlin.math.min
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/**
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* Counter for X digits of a given base.
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*/
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class Counter(size: Int, val base: Int = 10) {
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open class Counter(size: Int, val base: Int = 10) {
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/**
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* Empty counter, all 0 values for each digit.
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*/
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private var counter: Array<Int> = Array(size) { 0 }
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protected var counter: Array<Int> = Array(size) { 0 }
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/**
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* The last (highest significance) index that overflowed and has been changed in the counter. Could be null, if it never overflowed.
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* Start with saying that everything changed.
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*/
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private var lastModifiedIndex: Int = 0
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fun getLastModifiedIndex(): Int {
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return this.lastModifiedIndex
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}
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var lastModifiedIndex: Int = 0
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/**
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* Increase the counter.
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*
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* @return true if the increase happened, false if we hit the ceiling.
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*/
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fun increase(): Boolean {
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open fun increase(): Boolean {
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if (atMax()) {
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return false
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}
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41
src/main/kotlin/be/nielandt/CounterSkipSameFaces.kt
Normal file
41
src/main/kotlin/be/nielandt/CounterSkipSameFaces.kt
Normal file
@ -0,0 +1,41 @@
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package be.nielandt
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import kotlin.math.min
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/**
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* Counter for X digits of a given base. Skips situations where faces are the same.
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*/
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class CounterSkipSameFaces(size: Int, base: Int = 10): Counter(size, base) {
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/**
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* Increase the counter.
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*
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* @return true if the increase happened, false if we hit the ceiling.
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*/
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override fun increase(): Boolean {
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var lmi = lastModifiedIndex
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var last = super.increase()
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lmi = min(lastModifiedIndex, lmi)
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// are we having an invalid situation? this would be two consecutive moves on the same face
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while (containsConsecutiveSameFaceMoves() && !atMax()) {
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last = super.increase()
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lmi = min(lastModifiedIndex, lmi)
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}
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// we have to set the lastmodified index to the lowest point that it got to... otherwise we might be skipping some cases
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this.lastModifiedIndex = lmi
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return last
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}
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/**
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* Are there two moves in the current counter / chain that act on the same face? This would be F+F2 for example.
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*/
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private fun containsConsecutiveSameFaceMoves(): Boolean {
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for (i in 1 until this.counter.size) {
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val current = Move.values()[this.counter[i]]
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val previous = Move.values()[this.counter[i - 1]]
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if (current sameFace previous)
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return true
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}
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return false
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}
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}
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@ -67,17 +67,20 @@ fun main(args: Array<String>) {
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// scramble random
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val moves = Move.random(20)
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val moves = Move.random(10)
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println("Scramble: $moves")
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val scrambledModel = EdgeModel(moves)
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println(scrambledModel)
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val baseSolve = CrossSolverBase().solveCrossesTimed(scrambledModel)
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CrossSolver.printResults(baseSolve)
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// val baseSolve = CrossSolverBase().solveCrossesTimed(scrambledModel)
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// CrossSolver.printResults(baseSolve)
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val upgradedSolve = CrossSolverUpgraded().solveCrossesTimed(scrambledModel)
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CrossSolver.printResults(upgradedSolve)
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val upgradedSolveSkip = CrossSolverUpgradedSkip().solveCrossesTimed(scrambledModel)
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CrossSolver.printResults(upgradedSolveSkip)
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// val allCrossMoveCountUpgradedSkip = allCrossMoveCountUpgradedSkip(scrambledModel)
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// allCrossMoveCountUpgradedSkip.forEach { color, moves ->
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// println("skip upgrade cross for color: ${color} in ${moves.size}: ${moves.joinToString(" ")}")
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@ -1,16 +1,12 @@
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package be.nielandt
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import java.time.Instant
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/**
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* This solver avoids redoing edgemodel manipulations. Should be equivalent to X nested for loops.
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*/
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class CrossSolverUpgraded : CrossSolver() {
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override fun solveCrosses(edgeModel: EdgeModel): Map<Int, List<Move>> {
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val start = Instant.now()
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val moveCounts = mutableMapOf<Int, List<Move>>()
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for (moveCount in 1..8) {
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println("all cross move count upgrade doing $moveCount")
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// build a counter of moveCount big
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@ -7,16 +7,12 @@ class CrossSolverUpgradedSkip : CrossSolver() {
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override fun solveCrosses(edgeModel: EdgeModel): Map<Int, List<Move>> {
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val moveCounts = mutableMapOf<Int, List<Move>>()
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for (moveCount in 1..8) {
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println("all cross move count upgrade doing $moveCount")
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// build a counter of moveCount big
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val counter = Counter(moveCount, Move.values().size)
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// TODO skip the counter
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val counter = CounterSkipSameFaces(moveCount, Move.values().size)
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val edgeModelFactory = EdgeModelFactory(edgeModel, counter)
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println("moveCounts = ${moveCounts}")
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while (edgeModelFactory.hasNext()) {
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// get the next model, using the internal counter which simply iterates over possible combinations of moves
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val next = edgeModelFactory.getNext()
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@ -34,7 +30,6 @@ class CrossSolverUpgradedSkip : CrossSolver() {
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}
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// break if we have found hem all
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if (moveCounts.keys.size == 6) {
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// println("counter.skipInvalidCount = ${counter.skipInvalidCount}")
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return moveCounts
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}
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}
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@ -28,12 +28,12 @@ class EdgeModelFactory(val original: EdgeModel, val counter: Counter) {
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fun getNext(): EdgeModel {
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// the counter was increased, hooray
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val lastOverflowIndex = counter.getLastModifiedIndex()
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val lastOverflowIndex = counter.lastModifiedIndex
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// we only need to redo everything starting from the lastoverflowindex
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// these are our moves, but we can salvage everything up to lastoverflowindex
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val moves = Move.combo(counter)
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// we have a history to work with... only redo what's necessary
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for (i in counter.getLastModifiedIndex() until counter.size()) {
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for (i in counter.lastModifiedIndex until counter.size()) {
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var start: EdgeModel = if (i == 0)
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original
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else
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