#region License Information /* HeuristicLab * Copyright (C) 2002-2011 Heuristic and Evolutionary Algorithms Laboratory (HEAL) * * This file is part of HeuristicLab. * * HeuristicLab is free software: you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation, either version 3 of the License, or * (at your option) any later version. * * HeuristicLab is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with HeuristicLab. If not, see . */ #endregion using System; using System.Collections.Generic; using System.Drawing; using System.IO; using System.Linq; using System.Reflection; using HeuristicLab.Common; using HeuristicLab.Core; using HeuristicLab.Data; using HeuristicLab.Encodings.PermutationEncoding; using HeuristicLab.Optimization; using HeuristicLab.Parameters; using HeuristicLab.Persistence.Default.CompositeSerializers.Storable; using HeuristicLab.PluginInfrastructure; namespace HeuristicLab.Problems.QuadraticAssignment { [Item("Quadratic Assignment Problem", "The Quadratic Assignment Problem (QAP) can be described as the problem of assigning N facilities to N fixed locations such that there is exactly one facility in each location and that the sum of the distances multiplied by the connection strength between the facilities becomes minimal.")] [Creatable("Problems")] [StorableClass] public sealed class QuadraticAssignmentProblem : SingleObjectiveHeuristicOptimizationProblem, IStorableContent { private static string InstancePrefix = "HeuristicLab.Problems.QuadraticAssignment.Data."; public string Filename { get; set; } public override Image ItemImage { get { return HeuristicLab.Common.Resources.VSImageLibrary.Type; } } #region Parameter Properties public IValueParameter> BestKnownSolutionsParameter { get { return (IValueParameter>)Parameters["BestKnownSolutions"]; } } public IValueParameter BestKnownSolutionParameter { get { return (IValueParameter)Parameters["BestKnownSolution"]; } } public IValueParameter WeightsParameter { get { return (IValueParameter)Parameters["Weights"]; } } public IValueParameter DistancesParameter { get { return (IValueParameter)Parameters["Distances"]; } } #endregion #region Properties public ItemList BestKnownSolutions { get { return BestKnownSolutionsParameter.Value; } set { BestKnownSolutionsParameter.Value = value; } } public Permutation BestKnownSolution { get { return BestKnownSolutionParameter.Value; } set { BestKnownSolutionParameter.Value = value; } } public DoubleMatrix Weights { get { return WeightsParameter.Value; } set { WeightsParameter.Value = value; } } public DoubleMatrix Distances { get { return DistancesParameter.Value; } set { DistancesParameter.Value = value; } } public IEnumerable EmbeddedInstances { get { return Assembly.GetExecutingAssembly() .GetManifestResourceNames() .Where(x => x.EndsWith(".dat")) .OrderBy(x => x) .Select(x => x.Replace(".dat", String.Empty)) .Select(x => x.Replace(InstancePrefix, String.Empty)); } } private BestQAPSolutionAnalyzer BestQAPSolutionAnalyzer { get { return Operators.OfType().FirstOrDefault(); } } private QAPAlleleFrequencyAnalyzer QAPAlleleFrequencyAnalyzer { get { return Operators.OfType().FirstOrDefault(); } } private QAPPopulationDiversityAnalyzer QAPPopulationDiversityAnalyzer { get { return Operators.OfType().FirstOrDefault(); } } #endregion [StorableConstructor] private QuadraticAssignmentProblem(bool deserializing) : base(deserializing) { } private QuadraticAssignmentProblem(QuadraticAssignmentProblem original, Cloner cloner) : base(original, cloner) { AttachEventHandlers(); } public QuadraticAssignmentProblem() : base(new QAPEvaluator(), new RandomPermutationCreator()) { Parameters.Add(new OptionalValueParameter>("BestKnownSolutions", "The list of best known solutions which is updated whenever a new better solution is found or may be the optimal solution if it is known beforehand.", null)); Parameters.Add(new OptionalValueParameter("BestKnownSolution", "The best known solution which is updated whenever a new better solution is found or may be the optimal solution if it is known beforehand.", null)); Parameters.Add(new ValueParameter("Weights", "The strength of the connection between the facilities.", new DoubleMatrix(5, 5))); Parameters.Add(new ValueParameter("Distances", "The distance matrix which can either be specified directly without the coordinates, or can be calculated automatically from the coordinates.", new DoubleMatrix(5, 5))); Maximization = new BoolValue(false); Weights = new DoubleMatrix(new double[,] { { 0, 1, 0, 0, 1 }, { 1, 0, 1, 0, 0 }, { 0, 1, 0, 1, 0 }, { 0, 0, 1, 0, 1 }, { 1, 0, 0, 1, 0 } }); Distances = new DoubleMatrix(new double[,] { { 0, 360, 582, 582, 360 }, { 360, 0, 360, 582, 582 }, { 582, 360, 0, 360, 582 }, { 582, 582, 360, 0, 360 }, { 360, 582, 582, 360, 0 } }); SolutionCreator.PermutationParameter.ActualName = "Assignment"; ParameterizeSolutionCreator(); ParameterizeEvaluator(); InitializeOperators(); AttachEventHandlers(); } public override IDeepCloneable Clone(Cloner cloner) { return new QuadraticAssignmentProblem(this, cloner); } [StorableHook(HookType.AfterDeserialization)] private void AfterDeserialization() { // BackwardsCompatibility3.3 #region Backwards compatible code, remove with 3.4 /*if (Parameters.ContainsKey("BestKnownSolution")) { Permutation solution = ((IValueParameter)Parameters["BestKnownSolution"]).Value; Parameters.Remove("BestKnownSolution"); Parameters.Add(new OptionalValueParameter>("BestKnownSolutions", "The list of best known solutions which is updated whenever a new better solution is found or may be the optimal solution if it is known beforehand.", null)); if (solution != null) { BestKnownSolutions = new ItemList(); BestKnownSolutions.Add(solution); } }*/ if (!Parameters.ContainsKey("BestKnownSolutions")) { Parameters.Add(new OptionalValueParameter>("BestKnownSolutions", "The list of best known solutions which is updated whenever a new better solution is found or may be the optimal solution if it is known beforehand.", null)); } if (Parameters.ContainsKey("DistanceMatrix")) { DoubleMatrix bla = ((ValueParameter)Parameters["DistanceMatrix"]).Value; Parameters.Remove("DistanceMatrix"); Parameters.Add(new ValueParameter("Distances", "bla", bla)); } AttachEventHandlers(); #endregion } #region Events protected override void OnSolutionCreatorChanged() { SolutionCreator.PermutationParameter.ActualNameChanged += new EventHandler(SolutionCreator_PermutationParameter_ActualNameChanged); ParameterizeSolutionCreator(); ParameterizeEvaluator(); ParameterizeAnalyzers(); ParameterizeOperators(); base.OnSolutionCreatorChanged(); } protected override void OnEvaluatorChanged() { Evaluator.QualityParameter.ActualNameChanged += new EventHandler(Evaluator_QualityParameter_ActualNameChanged); ParameterizeEvaluator(); ParameterizeAnalyzers(); ParameterizeOperators(); base.OnEvaluatorChanged(); } private void SolutionCreator_PermutationParameter_ActualNameChanged(object sender, EventArgs e) { ParameterizeEvaluator(); ParameterizeAnalyzers(); ParameterizeOperators(); } private void Evaluator_QualityParameter_ActualNameChanged(object sender, EventArgs e) { ParameterizeAnalyzers(); ParameterizeOperators(); } private void WeightsParameter_ValueChanged(object sender, EventArgs e) { Weights.RowsChanged += new EventHandler(Weights_RowsChanged); Weights.ColumnsChanged += new EventHandler(Weights_ColumnsChanged); ParameterizeSolutionCreator(); ParameterizeEvaluator(); ParameterizeOperators(); AdjustDistanceMatrix(); } private void Weights_RowsChanged(object sender, EventArgs e) { if (Weights.Rows != Weights.Columns) ((IStringConvertibleMatrix)Weights).Columns = Weights.Rows; else { ParameterizeSolutionCreator(); ParameterizeEvaluator(); ParameterizeOperators(); AdjustDistanceMatrix(); } } private void Weights_ColumnsChanged(object sender, EventArgs e) { if (Weights.Rows != Weights.Columns) ((IStringConvertibleMatrix)Weights).Rows = Weights.Columns; else { ParameterizeSolutionCreator(); ParameterizeEvaluator(); ParameterizeOperators(); AdjustDistanceMatrix(); } } private void DistancesParameter_ValueChanged(object sender, EventArgs e) { Distances.RowsChanged += new EventHandler(Distances_RowsChanged); Distances.ColumnsChanged += new EventHandler(Distances_ColumnsChanged); ParameterizeSolutionCreator(); ParameterizeEvaluator(); ParameterizeOperators(); AdjustWeightsMatrix(); } private void Distances_RowsChanged(object sender, EventArgs e) { if (Distances.Rows != Distances.Columns) ((IStringConvertibleMatrix)Distances).Columns = Distances.Rows; else { ParameterizeSolutionCreator(); ParameterizeEvaluator(); ParameterizeOperators(); AdjustWeightsMatrix(); } } private void Distances_ColumnsChanged(object sender, EventArgs e) { if (Distances.Rows != Distances.Columns) ((IStringConvertibleMatrix)Distances).Rows = Distances.Columns; else { ParameterizeSolutionCreator(); ParameterizeEvaluator(); ParameterizeOperators(); AdjustWeightsMatrix(); } } #endregion #region Helpers private void AttachEventHandlers() { SolutionCreator.PermutationParameter.ActualNameChanged += new EventHandler(SolutionCreator_PermutationParameter_ActualNameChanged); Evaluator.QualityParameter.ActualNameChanged += new EventHandler(Evaluator_QualityParameter_ActualNameChanged); WeightsParameter.ValueChanged += new EventHandler(WeightsParameter_ValueChanged); Weights.RowsChanged += new EventHandler(Weights_RowsChanged); Weights.ColumnsChanged += new EventHandler(Weights_ColumnsChanged); DistancesParameter.ValueChanged += new EventHandler(DistancesParameter_ValueChanged); Distances.RowsChanged += new EventHandler(Distances_RowsChanged); Distances.ColumnsChanged += new EventHandler(Distances_ColumnsChanged); } private void InitializeOperators() { Operators.AddRange(ApplicationManager.Manager.GetInstances()); Operators.RemoveAll(x => x is ISingleObjectiveMoveEvaluator); Operators.AddRange(ApplicationManager.Manager.GetInstances()); Operators.Add(new BestQAPSolutionAnalyzer()); Operators.Add(new QAPAlleleFrequencyAnalyzer()); Operators.Add(new QAPPopulationDiversityAnalyzer()); Operators.Add(new QAPExhaustiveSwap2LocalImprovement()); ParameterizeAnalyzers(); ParameterizeOperators(); } private void ParameterizeSolutionCreator() { if (SolutionCreator != null) { SolutionCreator.PermutationTypeParameter.Value = new PermutationType(PermutationTypes.Absolute); SolutionCreator.LengthParameter.Value = new IntValue(Weights.Rows); } } private void ParameterizeEvaluator() { if (Evaluator != null) { Evaluator.PermutationParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; Evaluator.DistancesParameter.ActualName = DistancesParameter.Name; Evaluator.WeightsParameter.ActualName = WeightsParameter.Name; } } private void ParameterizeAnalyzers() { if (BestQAPSolutionAnalyzer != null) { BestQAPSolutionAnalyzer.QualityParameter.ActualName = Evaluator.QualityParameter.ActualName; BestQAPSolutionAnalyzer.DistancesParameter.ActualName = DistancesParameter.Name; BestQAPSolutionAnalyzer.WeightsParameter.ActualName = WeightsParameter.Name; BestQAPSolutionAnalyzer.PermutationParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; BestQAPSolutionAnalyzer.ResultsParameter.ActualName = "Results"; BestQAPSolutionAnalyzer.BestKnownQualityParameter.ActualName = BestKnownQualityParameter.Name; BestQAPSolutionAnalyzer.BestKnownSolutionsParameter.ActualName = BestKnownSolutionsParameter.Name; BestQAPSolutionAnalyzer.MaximizationParameter.ActualName = MaximizationParameter.Name; } if (QAPAlleleFrequencyAnalyzer != null) { QAPAlleleFrequencyAnalyzer.QualityParameter.ActualName = Evaluator.QualityParameter.ActualName; QAPAlleleFrequencyAnalyzer.BestKnownSolutionParameter.ActualName = BestKnownSolutionParameter.Name; QAPAlleleFrequencyAnalyzer.DistancesParameter.ActualName = DistancesParameter.Name; QAPAlleleFrequencyAnalyzer.MaximizationParameter.ActualName = MaximizationParameter.Name; QAPAlleleFrequencyAnalyzer.ResultsParameter.ActualName = "Results"; QAPAlleleFrequencyAnalyzer.SolutionParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; QAPAlleleFrequencyAnalyzer.WeightsParameter.ActualName = WeightsParameter.Name; } if (QAPPopulationDiversityAnalyzer != null) { QAPPopulationDiversityAnalyzer.MaximizationParameter.ActualName = MaximizationParameter.Name; QAPPopulationDiversityAnalyzer.QualityParameter.ActualName = Evaluator.QualityParameter.ActualName; QAPPopulationDiversityAnalyzer.ResultsParameter.ActualName = "Results"; QAPPopulationDiversityAnalyzer.SolutionParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; } } private void ParameterizeOperators() { foreach (IPermutationCrossover op in Operators.OfType()) { op.ParentsParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; op.ChildParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; } foreach (IPermutationManipulator op in Operators.OfType()) { op.PermutationParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; } foreach (IPermutationMoveOperator op in Operators.OfType()) { op.PermutationParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; } if (Operators.OfType().Any()) { string inversionMove = Operators.OfType().OfType().First().InversionMoveParameter.ActualName; foreach (IPermutationInversionMoveOperator op in Operators.OfType()) op.InversionMoveParameter.ActualName = inversionMove; string translocationMove = Operators.OfType().OfType().First().TranslocationMoveParameter.ActualName; foreach (IPermutationTranslocationMoveOperator op in Operators.OfType()) op.TranslocationMoveParameter.ActualName = translocationMove; string swapMove = Operators.OfType().OfType().First().Swap2MoveParameter.ActualName; foreach (IPermutationSwap2MoveOperator op in Operators.OfType()) { op.Swap2MoveParameter.ActualName = swapMove; } } foreach (var op in Operators.OfType()) op.PermutationParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; QAPExhaustiveSwap2LocalImprovement localOpt = Operators.OfType().SingleOrDefault(); if (localOpt != null) { localOpt.AssignmentParameter.ActualName = SolutionCreator.PermutationParameter.ActualName; localOpt.DistancesParameter.ActualName = DistancesParameter.Name; localOpt.MaximizationParameter.ActualName = MaximizationParameter.Name; localOpt.QualityParameter.ActualName = Evaluator.QualityParameter.ActualName; localOpt.WeightsParameter.ActualName = WeightsParameter.Name; } } private void AdjustDistanceMatrix() { if (Distances.Rows != Weights.Rows || Distances.Columns != Weights.Columns) { ((IStringConvertibleMatrix)Distances).Rows = Weights.Rows; } } private void AdjustWeightsMatrix() { if (Weights.Rows != Distances.Rows || Weights.Columns != Distances.Columns) { ((IStringConvertibleMatrix)Weights).Rows = Distances.Rows; } } #endregion public void ImportFileInstance(string filename) { QAPLIBParser parser = new QAPLIBParser(); parser.Parse(filename); if (parser.Error != null) throw parser.Error; Distances = new DoubleMatrix(parser.Distances); Weights = new DoubleMatrix(parser.Weights); Name = "Quadratic Assignment Problem (imported from " + Path.GetFileNameWithoutExtension(filename) + ")"; Description = "Imported problem data using QAPLIBParser " + Assembly.GetExecutingAssembly().GetCustomAttributes(typeof(AssemblyFileVersionAttribute), true).Cast().FirstOrDefault().Version + "."; BestKnownQuality = null; BestKnownSolutions = null; OnReset(); } public void LoadEmbeddedInstance(string instance) { using (Stream stream = Assembly.GetExecutingAssembly() .GetManifestResourceStream(InstancePrefix + instance + ".dat")) { QAPLIBParser parser = new QAPLIBParser(); parser.Parse(stream); if (parser.Error != null) throw parser.Error; Distances = new DoubleMatrix(parser.Distances); Weights = new DoubleMatrix(parser.Weights); Name = "Quadratic Assignment Problem (loaded instance " + instance + ")"; Description = "Loaded embedded problem data of instance " + instance + "."; OnReset(); } bool solutionExists = Assembly.GetExecutingAssembly() .GetManifestResourceNames() .Where(x => x.EndsWith(instance + ".sln")) .Any(); if (solutionExists) { using (Stream solStream = Assembly.GetExecutingAssembly() .GetManifestResourceStream(InstancePrefix + instance + ".sln")) { QAPLIBSolutionParser solParser = new QAPLIBSolutionParser(); solParser.Parse(solStream, true); // most sln's seem to be of the type index = "facility" => value = "location" if (solParser.Error != null) throw solParser.Error; if (!solParser.Quality.IsAlmost(QAPEvaluator.Apply(new Permutation(PermutationTypes.Absolute, solParser.Assignment), Weights, Distances))) { solStream.Seek(0, SeekOrigin.Begin); solParser.Reset(); solParser.Parse(solStream, false); // some sln's seem to be of the type index = "location" => value = "facility" if (solParser.Error != null) throw solParser.Error; if (solParser.Quality.IsAlmost(QAPEvaluator.Apply(new Permutation(PermutationTypes.Absolute, solParser.Assignment), Weights, Distances))) { BestKnownQuality = new DoubleValue(solParser.Quality); BestKnownSolutions = new ItemList(new Permutation[] { new Permutation(PermutationTypes.Absolute, solParser.Assignment) }); BestKnownSolution = new Permutation(PermutationTypes.Absolute, solParser.Assignment); } else { BestKnownQuality = new DoubleValue(solParser.Quality); BestKnownSolutions = null; BestKnownSolution = null; } } else { BestKnownQuality = new DoubleValue(solParser.Quality); BestKnownSolutions = new ItemList(new Permutation[] { new Permutation(PermutationTypes.Absolute, solParser.Assignment) }); BestKnownSolution = new Permutation(PermutationTypes.Absolute, solParser.Assignment); } } } else { BestKnownQuality = null; BestKnownSolutions = null; BestKnownSolution = null; } } } }