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source: branches/DataAnalysis.IslandAlgorithms/HeuristicLab.Algorithms.GeneticAlgorithm/3.3/IslandGeneticAlgorithm.cs @ 11646

Last change on this file since 11646 was 11646, checked in by mkommend, 9 years ago

#1997: Merged trunk changes to data analysis island GA branch.

File size: 31.2 KB
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[3356]1#region License Information
2/* HeuristicLab
[11646]3 * Copyright (C) 2002-2014 Heuristic and Evolutionary Algorithms Laboratory (HEAL)
[3356]4 *
5 * This file is part of HeuristicLab.
6 *
7 * HeuristicLab is free software: you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation, either version 3 of the License, or
10 * (at your option) any later version.
11 *
12 * HeuristicLab is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with HeuristicLab. If not, see <http://www.gnu.org/licenses/>.
19 */
20#endregion
21
22using System;
23using System.Linq;
[4068]24using HeuristicLab.Analysis;
[3376]25using HeuristicLab.Common;
[3356]26using HeuristicLab.Core;
27using HeuristicLab.Data;
28using HeuristicLab.Operators;
29using HeuristicLab.Optimization;
30using HeuristicLab.Optimization.Operators;
31using HeuristicLab.Parameters;
32using HeuristicLab.Persistence.Default.CompositeSerializers.Storable;
33using HeuristicLab.PluginInfrastructure;
[3368]34using HeuristicLab.Random;
[3356]35
36namespace HeuristicLab.Algorithms.GeneticAlgorithm {
37  /// <summary>
38  /// An island genetic algorithm.
39  /// </summary>
40  [Item("Island Genetic Algorithm", "An island genetic algorithm.")]
41  [Creatable("Algorithms")]
42  [StorableClass]
[10142]43  public class IslandGeneticAlgorithm : HeuristicOptimizationEngineAlgorithm, IStorableContent {
[4437]44    public string Filename { get; set; }
[3356]45
46    #region Problem Properties
47    public override Type ProblemType {
[5809]48      get { return typeof(ISingleObjectiveHeuristicOptimizationProblem); }
[3356]49    }
[5809]50    public new ISingleObjectiveHeuristicOptimizationProblem Problem {
51      get { return (ISingleObjectiveHeuristicOptimizationProblem)base.Problem; }
[3356]52      set { base.Problem = value; }
53    }
54    #endregion
55
56    #region Parameter Properties
[10142]57    protected ValueParameter<IntValue> SeedParameter {
[3356]58      get { return (ValueParameter<IntValue>)Parameters["Seed"]; }
59    }
[10142]60    protected ValueParameter<BoolValue> SetSeedRandomlyParameter {
[3356]61      get { return (ValueParameter<BoolValue>)Parameters["SetSeedRandomly"]; }
62    }
[10142]63    protected ValueParameter<IntValue> NumberOfIslandsParameter {
[3356]64      get { return (ValueParameter<IntValue>)Parameters["NumberOfIslands"]; }
65    }
[10142]66    protected ValueParameter<IntValue> MigrationIntervalParameter {
[3356]67      get { return (ValueParameter<IntValue>)Parameters["MigrationInterval"]; }
68    }
[10197]69    protected IFixedValueParameter<IntValue> AnalysisIntervalParameter {
70      get { return (IFixedValueParameter<IntValue>)Parameters["AnalysisInterval"]; }
71    }
[10142]72    protected ValueParameter<PercentValue> MigrationRateParameter {
[3356]73      get { return (ValueParameter<PercentValue>)Parameters["MigrationRate"]; }
74    }
[8121]75    public IConstrainedValueParameter<IMigrator> MigratorParameter {
76      get { return (IConstrainedValueParameter<IMigrator>)Parameters["Migrator"]; }
[3356]77    }
[8121]78    public IConstrainedValueParameter<ISelector> EmigrantsSelectorParameter {
79      get { return (IConstrainedValueParameter<ISelector>)Parameters["EmigrantsSelector"]; }
[3356]80    }
[8121]81    public IConstrainedValueParameter<IReplacer> ImmigrationReplacerParameter {
82      get { return (IConstrainedValueParameter<IReplacer>)Parameters["ImmigrationReplacer"]; }
[3356]83    }
[10142]84    protected ValueParameter<IntValue> PopulationSizeParameter {
[3356]85      get { return (ValueParameter<IntValue>)Parameters["PopulationSize"]; }
86    }
[10142]87    protected ValueParameter<IntValue> MaximumGenerationsParameter {
[3609]88      get { return (ValueParameter<IntValue>)Parameters["MaximumGenerations"]; }
[3356]89    }
[8121]90    public IConstrainedValueParameter<ISelector> SelectorParameter {
91      get { return (IConstrainedValueParameter<ISelector>)Parameters["Selector"]; }
[3356]92    }
[8121]93    public IConstrainedValueParameter<ICrossover> CrossoverParameter {
94      get { return (IConstrainedValueParameter<ICrossover>)Parameters["Crossover"]; }
[3356]95    }
[10142]96    protected ValueParameter<PercentValue> MutationProbabilityParameter {
[3356]97      get { return (ValueParameter<PercentValue>)Parameters["MutationProbability"]; }
98    }
[8121]99    public IConstrainedValueParameter<IManipulator> MutatorParameter {
100      get { return (IConstrainedValueParameter<IManipulator>)Parameters["Mutator"]; }
[3356]101    }
[10142]102    protected ValueParameter<IntValue> ElitesParameter {
[3356]103      get { return (ValueParameter<IntValue>)Parameters["Elites"]; }
104    }
[10142]105    protected IFixedValueParameter<BoolValue> ReevaluateElitesParameter {
[9756]106      get { return (IFixedValueParameter<BoolValue>)Parameters["ReevaluateElites"]; }
107    }
[10142]108    protected ValueParameter<MultiAnalyzer> AnalyzerParameter {
[3658]109      get { return (ValueParameter<MultiAnalyzer>)Parameters["Analyzer"]; }
[3650]110    }
[10142]111    protected ValueParameter<MultiAnalyzer> IslandAnalyzerParameter {
[3658]112      get { return (ValueParameter<MultiAnalyzer>)Parameters["IslandAnalyzer"]; }
[3650]113    }
[10155]114    protected IFixedValueParameter<BoolValue> ReevaluateImmigrantsParameter {
115      get { return (IFixedValueParameter<BoolValue>)Parameters["ReevaluateImmigrants"]; }
116    }
[3356]117    #endregion
118
119    #region Properties
120    public IntValue Seed {
121      get { return SeedParameter.Value; }
122      set { SeedParameter.Value = value; }
123    }
124    public BoolValue SetSeedRandomly {
125      get { return SetSeedRandomlyParameter.Value; }
126      set { SetSeedRandomlyParameter.Value = value; }
127    }
128    public IntValue NumberOfIslands {
129      get { return NumberOfIslandsParameter.Value; }
130      set { NumberOfIslandsParameter.Value = value; }
131    }
132    public IntValue MigrationInterval {
133      get { return MigrationIntervalParameter.Value; }
134      set { MigrationIntervalParameter.Value = value; }
135    }
[10197]136    public int AnalysisInterval {
137      get { return AnalysisIntervalParameter.Value.Value; }
138      set { AnalysisIntervalParameter.Value.Value = value; }
139    }
[3356]140    public PercentValue MigrationRate {
141      get { return MigrationRateParameter.Value; }
142      set { MigrationRateParameter.Value = value; }
143    }
144    public IMigrator Migrator {
145      get { return MigratorParameter.Value; }
146      set { MigratorParameter.Value = value; }
147    }
148    public ISelector EmigrantsSelector {
149      get { return EmigrantsSelectorParameter.Value; }
150      set { EmigrantsSelectorParameter.Value = value; }
151    }
[3601]152    public IReplacer ImmigrationReplacer {
153      get { return ImmigrationReplacerParameter.Value; }
154      set { ImmigrationReplacerParameter.Value = value; }
[3356]155    }
156    public IntValue PopulationSize {
157      get { return PopulationSizeParameter.Value; }
158      set { PopulationSizeParameter.Value = value; }
159    }
[3609]160    public IntValue MaximumGenerations {
161      get { return MaximumGenerationsParameter.Value; }
162      set { MaximumGenerationsParameter.Value = value; }
[3356]163    }
164    public ISelector Selector {
165      get { return SelectorParameter.Value; }
166      set { SelectorParameter.Value = value; }
167    }
168    public ICrossover Crossover {
169      get { return CrossoverParameter.Value; }
170      set { CrossoverParameter.Value = value; }
171    }
172    public PercentValue MutationProbability {
173      get { return MutationProbabilityParameter.Value; }
174      set { MutationProbabilityParameter.Value = value; }
175    }
176    public IManipulator Mutator {
177      get { return MutatorParameter.Value; }
178      set { MutatorParameter.Value = value; }
179    }
180    public IntValue Elites {
181      get { return ElitesParameter.Value; }
182      set { ElitesParameter.Value = value; }
183    }
[9756]184    public bool ReevaluteElites {
185      get { return ReevaluateElitesParameter.Value.Value; }
186      set { ReevaluateElitesParameter.Value.Value = value; }
187    }
[3658]188    public MultiAnalyzer Analyzer {
[3650]189      get { return AnalyzerParameter.Value; }
190      set { AnalyzerParameter.Value = value; }
191    }
[3658]192    public MultiAnalyzer IslandAnalyzer {
[3650]193      get { return IslandAnalyzerParameter.Value; }
194      set { IslandAnalyzerParameter.Value = value; }
195    }
[10155]196    public bool ReevaluateImmigrants {
197      get { return ReevaluateImmigrantsParameter.Value.Value; }
198      set { ReevaluateImmigrantsParameter.Value.Value = value; }
199    }
[10142]200    protected RandomCreator RandomCreator {
[3359]201      get { return (RandomCreator)OperatorGraph.InitialOperator; }
202    }
[10142]203    protected UniformSubScopesProcessor IslandProcessor {
[9039]204      get { return OperatorGraph.Iterate().OfType<UniformSubScopesProcessor>().First(x => x.Operator is SolutionsCreator); }
[3429]205    }
[10142]206    protected SolutionsCreator SolutionsCreator {
[3429]207      get { return (SolutionsCreator)IslandProcessor.Operator; }
[3359]208    }
[10142]209    protected IslandGeneticAlgorithmMainLoop MainLoop {
[5366]210      get { return FindMainLoop(IslandProcessor.Successor); }
[3359]211    }
[3689]212    [Storable]
[10142]213    protected BestAverageWorstQualityAnalyzer islandQualityAnalyzer;
[3689]214    [Storable]
[10142]215    protected BestAverageWorstQualityAnalyzer qualityAnalyzer;
[3356]216    #endregion
217
218    [StorableConstructor]
[10142]219    protected IslandGeneticAlgorithm(bool deserializing) : base(deserializing) { }
[4722]220    [StorableHook(HookType.AfterDeserialization)]
221    private void AfterDeserialization() {
[9756]222      // BackwardsCompatibility3.3
223      #region Backwards compatible code, remove with 3.4
224      if (!Parameters.ContainsKey("ReevaluateElites")) {
225        Parameters.Add(new FixedValueParameter<BoolValue>("ReevaluateElites", "Flag to determine if elite individuals should be reevaluated (i.e., if stochastic fitness functions are used.)", (BoolValue)new BoolValue(false).AsReadOnly()) { Hidden = true });
226      }
[10197]227      if (!Parameters.ContainsKey("ReevaluateImmigrants")) {
228        Parameters.Add(new FixedValueParameter<BoolValue>("ReevaluateImmigrants", "Flag which indicates if inviduals should be reevaluated before they are immigrated.", new BoolValue(false)) { Hidden = true });
229      }
230      if (!Parameters.ContainsKey("AnalysisInterval")) {
[10206]231        Parameters.Add(new ValueParameter<IntValue>("AnalysisInterval", "The number of generations that should pass between the analyzers should be executed (should be <= MigrationInteval).", new IntValue(1)) { Hidden = true });
[10197]232      }
[9756]233      #endregion
234
[4722]235      Initialize();
236    }
[10142]237    protected IslandGeneticAlgorithm(IslandGeneticAlgorithm original, Cloner cloner)
[4722]238      : base(original, cloner) {
239      islandQualityAnalyzer = cloner.Clone(original.islandQualityAnalyzer);
240      qualityAnalyzer = cloner.Clone(original.qualityAnalyzer);
241      Initialize();
242    }
243    public override IDeepCloneable Clone(Cloner cloner) {
244      return new IslandGeneticAlgorithm(this, cloner);
245    }
246
[3356]247    public IslandGeneticAlgorithm()
248      : base() {
249      Parameters.Add(new ValueParameter<IntValue>("Seed", "The random seed used to initialize the new pseudo random number generator.", new IntValue(0)));
250      Parameters.Add(new ValueParameter<BoolValue>("SetSeedRandomly", "True if the random seed should be set to a random value, otherwise false.", new BoolValue(true)));
251      Parameters.Add(new ValueParameter<IntValue>("NumberOfIslands", "The number of islands.", new IntValue(5)));
252      Parameters.Add(new ValueParameter<IntValue>("MigrationInterval", "The number of generations that should pass between migration phases.", new IntValue(20)));
[10206]253      Parameters.Add(new ValueParameter<IntValue>("AnalysisInterval", "The number of generations that should pass between the analyzers should be executed (should be <= MigrationInteval).", new IntValue(1)) { Hidden = true });
[3356]254      Parameters.Add(new ValueParameter<PercentValue>("MigrationRate", "The proportion of individuals that should migrate between the islands.", new PercentValue(0.15)));
255      Parameters.Add(new ConstrainedValueParameter<IMigrator>("Migrator", "The migration strategy."));
256      Parameters.Add(new ConstrainedValueParameter<ISelector>("EmigrantsSelector", "Selects the individuals that will be migrated."));
[3601]257      Parameters.Add(new ConstrainedValueParameter<IReplacer>("ImmigrationReplacer", "Selects the population from the unification of the original population and the immigrants."));
[3356]258      Parameters.Add(new ValueParameter<IntValue>("PopulationSize", "The size of the population of solutions.", new IntValue(100)));
[3609]259      Parameters.Add(new ValueParameter<IntValue>("MaximumGenerations", "The maximum number of generations that should be processed.", new IntValue(1000)));
[3356]260      Parameters.Add(new ConstrainedValueParameter<ISelector>("Selector", "The operator used to select solutions for reproduction."));
261      Parameters.Add(new ConstrainedValueParameter<ICrossover>("Crossover", "The operator used to cross solutions."));
262      Parameters.Add(new ValueParameter<PercentValue>("MutationProbability", "The probability that the mutation operator is applied on a solution.", new PercentValue(0.05)));
263      Parameters.Add(new OptionalConstrainedValueParameter<IManipulator>("Mutator", "The operator used to mutate solutions."));
264      Parameters.Add(new ValueParameter<IntValue>("Elites", "The numer of elite solutions which are kept in each generation.", new IntValue(1)));
[9756]265      Parameters.Add(new FixedValueParameter<BoolValue>("ReevaluateElites", "Flag to determine if elite individuals should be reevaluated (i.e., if stochastic fitness functions are used.)", new BoolValue(false)) { Hidden = true });
[3658]266      Parameters.Add(new ValueParameter<MultiAnalyzer>("Analyzer", "The operator used to analyze the islands.", new MultiAnalyzer()));
267      Parameters.Add(new ValueParameter<MultiAnalyzer>("IslandAnalyzer", "The operator used to analyze each island.", new MultiAnalyzer()));
[10155]268      Parameters.Add(new FixedValueParameter<BoolValue>("ReevaluateImmigrants", "Flag which indicates if inviduals should be reevaluated before they are immigrated.", new BoolValue(false)) { Hidden = true });
[4068]269
[3359]270      RandomCreator randomCreator = new RandomCreator();
[9039]271      UniformSubScopesProcessor ussp0 = new UniformSubScopesProcessor();
272      LocalRandomCreator localRandomCreator = new LocalRandomCreator();
273      RandomCreator globalRandomResetter = new RandomCreator();
[3356]274      SubScopesCreator populationCreator = new SubScopesCreator();
275      UniformSubScopesProcessor ussp1 = new UniformSubScopesProcessor();
[3359]276      SolutionsCreator solutionsCreator = new SolutionsCreator();
[5351]277      VariableCreator variableCreator = new VariableCreator();
278      UniformSubScopesProcessor ussp2 = new UniformSubScopesProcessor();
279      SubScopesCounter subScopesCounter = new SubScopesCounter();
[5356]280      ResultsCollector resultsCollector = new ResultsCollector();
[3359]281      IslandGeneticAlgorithmMainLoop mainLoop = new IslandGeneticAlgorithmMainLoop();
[3356]282      OperatorGraph.InitialOperator = randomCreator;
283
[7395]284      randomCreator.RandomParameter.ActualName = "GlobalRandom";
[3356]285      randomCreator.SeedParameter.ActualName = SeedParameter.Name;
286      randomCreator.SeedParameter.Value = null;
287      randomCreator.SetSeedRandomlyParameter.ActualName = SetSeedRandomlyParameter.Name;
288      randomCreator.SetSeedRandomlyParameter.Value = null;
289      randomCreator.Successor = populationCreator;
290
291      populationCreator.NumberOfSubScopesParameter.ActualName = NumberOfIslandsParameter.Name;
[9039]292      populationCreator.Successor = ussp0;
[3356]293
[9039]294      ussp0.Operator = localRandomCreator;
295      ussp0.Successor = globalRandomResetter;
296
297      // BackwardsCompatibility3.3
298      // the global random is resetted to ensure the same algorithm results
[9756]299      #region Backwards compatible code, remove global random resetter with 3.4 and rewire the operator graph
[9039]300      globalRandomResetter.RandomParameter.ActualName = "GlobalRandom";
301      globalRandomResetter.SeedParameter.ActualName = SeedParameter.Name;
302      globalRandomResetter.SeedParameter.Value = null;
303      globalRandomResetter.SetSeedRandomlyParameter.Value = new BoolValue(false);
304      globalRandomResetter.Successor = ussp1;
305      #endregion
306
[3356]307      ussp1.Operator = solutionsCreator;
[5351]308      ussp1.Successor = variableCreator;
[3356]309
310      solutionsCreator.NumberOfSolutionsParameter.ActualName = PopulationSizeParameter.Name;
[7395]311      //don't create solutions in parallel because the hive engine would distribute these tasks
312      solutionsCreator.ParallelParameter.Value = new BoolValue(false);
[3356]313      solutionsCreator.Successor = null;
314
[5351]315      variableCreator.Name = "Initialize EvaluatedSolutions";
316      variableCreator.CollectedValues.Add(new ValueParameter<IntValue>("EvaluatedSolutions", new IntValue()));
317      variableCreator.Successor = ussp2;
318
319      ussp2.Operator = subScopesCounter;
[5356]320      ussp2.Successor = resultsCollector;
[5351]321
322      subScopesCounter.Name = "Count EvaluatedSolutions";
323      subScopesCounter.ValueParameter.ActualName = "EvaluatedSolutions";
324      subScopesCounter.Successor = null;
325
[5356]326      resultsCollector.CollectedValues.Add(new LookupParameter<IntValue>("Evaluated Solutions", null, "EvaluatedSolutions"));
327      resultsCollector.ResultsParameter.ActualName = "Results";
328      resultsCollector.Successor = mainLoop;
329
[3356]330      mainLoop.EmigrantsSelectorParameter.ActualName = EmigrantsSelectorParameter.Name;
[3601]331      mainLoop.ImmigrationReplacerParameter.ActualName = ImmigrationReplacerParameter.Name;
[3609]332      mainLoop.MaximumGenerationsParameter.ActualName = MaximumGenerationsParameter.Name;
[3356]333      mainLoop.MigrationIntervalParameter.ActualName = MigrationIntervalParameter.Name;
334      mainLoop.MigrationRateParameter.ActualName = MigrationRateParameter.Name;
335      mainLoop.MigratorParameter.ActualName = MigratorParameter.Name;
336      mainLoop.NumberOfIslandsParameter.ActualName = NumberOfIslandsParameter.Name;
337      mainLoop.SelectorParameter.ActualName = SelectorParameter.Name;
338      mainLoop.CrossoverParameter.ActualName = CrossoverParameter.Name;
339      mainLoop.ElitesParameter.ActualName = ElitesParameter.Name;
[9756]340      mainLoop.ReevaluateElitesParameter.ActualName = ReevaluateElitesParameter.Name;
[3356]341      mainLoop.MutatorParameter.ActualName = MutatorParameter.Name;
342      mainLoop.MutationProbabilityParameter.ActualName = MutationProbabilityParameter.Name;
343      mainLoop.RandomParameter.ActualName = randomCreator.RandomParameter.ActualName;
344      mainLoop.ResultsParameter.ActualName = "Results";
[3650]345      mainLoop.AnalyzerParameter.ActualName = AnalyzerParameter.Name;
346      mainLoop.IslandAnalyzerParameter.ActualName = IslandAnalyzerParameter.Name;
[5351]347      mainLoop.EvaluatedSolutionsParameter.ActualName = "EvaluatedSolutions";
[3356]348      mainLoop.Successor = null;
349
[3689]350      foreach (ISelector selector in ApplicationManager.Manager.GetInstances<ISelector>().Where(x => !(x is IMultiObjectiveSelector)).OrderBy(x => x.Name))
351        SelectorParameter.ValidValues.Add(selector);
352      ISelector proportionalSelector = SelectorParameter.ValidValues.FirstOrDefault(x => x.GetType().Name.Equals("ProportionalSelector"));
353      if (proportionalSelector != null) SelectorParameter.Value = proportionalSelector;
354
355      foreach (ISelector selector in ApplicationManager.Manager.GetInstances<ISelector>().Where(x => !(x is IMultiObjectiveSelector)).OrderBy(x => x.Name))
356        EmigrantsSelectorParameter.ValidValues.Add(selector);
357
358      foreach (IReplacer replacer in ApplicationManager.Manager.GetInstances<IReplacer>().OrderBy(x => x.Name))
359        ImmigrationReplacerParameter.ValidValues.Add(replacer);
360
361      ParameterizeSelectors();
362
363      foreach (IMigrator migrator in ApplicationManager.Manager.GetInstances<IMigrator>().OrderBy(x => x.Name))
364        MigratorParameter.ValidValues.Add(migrator);
365
366      qualityAnalyzer = new BestAverageWorstQualityAnalyzer();
367      islandQualityAnalyzer = new BestAverageWorstQualityAnalyzer();
368      ParameterizeAnalyzers();
369      UpdateAnalyzers();
370
[3356]371      Initialize();
372    }
373
374    public override void Prepare() {
375      if (Problem != null) base.Prepare();
376    }
377
378    #region Events
379    protected override void OnProblemChanged() {
380      ParameterizeStochasticOperator(Problem.SolutionCreator);
[9039]381      ParameterizeStochasticOperatorForIsland(Problem.Evaluator);
[7999]382      foreach (IOperator op in Problem.Operators.OfType<IOperator>()) ParameterizeStochasticOperator(op);
[3356]383      ParameterizeSolutionsCreator();
384      ParameterizeMainLoop();
385      ParameterizeSelectors();
[3650]386      ParameterizeAnalyzers();
[3750]387      ParameterizeIterationBasedOperators();
[3356]388      UpdateCrossovers();
389      UpdateMutators();
[3650]390      UpdateAnalyzers();
[3356]391      Problem.Evaluator.QualityParameter.ActualNameChanged += new EventHandler(Evaluator_QualityParameter_ActualNameChanged);
392      base.OnProblemChanged();
393    }
394
395    protected override void Problem_SolutionCreatorChanged(object sender, EventArgs e) {
396      ParameterizeStochasticOperator(Problem.SolutionCreator);
397      ParameterizeSolutionsCreator();
398      base.Problem_SolutionCreatorChanged(sender, e);
399    }
400    protected override void Problem_EvaluatorChanged(object sender, EventArgs e) {
[9039]401      ParameterizeStochasticOperatorForIsland(Problem.Evaluator);
[3356]402      ParameterizeSolutionsCreator();
403      ParameterizeMainLoop();
404      ParameterizeSelectors();
[3650]405      ParameterizeAnalyzers();
[3356]406      Problem.Evaluator.QualityParameter.ActualNameChanged += new EventHandler(Evaluator_QualityParameter_ActualNameChanged);
407      base.Problem_EvaluatorChanged(sender, e);
408    }
409    protected override void Problem_OperatorsChanged(object sender, EventArgs e) {
[7999]410      foreach (IOperator op in Problem.Operators.OfType<IOperator>()) ParameterizeStochasticOperator(op);
[3750]411      ParameterizeIterationBasedOperators();
[3356]412      UpdateCrossovers();
413      UpdateMutators();
[3650]414      UpdateAnalyzers();
[3356]415      base.Problem_OperatorsChanged(sender, e);
416    }
417    private void ElitesParameter_ValueChanged(object sender, EventArgs e) {
418      Elites.ValueChanged += new EventHandler(Elites_ValueChanged);
419      ParameterizeSelectors();
420    }
421    private void Elites_ValueChanged(object sender, EventArgs e) {
422      ParameterizeSelectors();
423    }
424    private void PopulationSizeParameter_ValueChanged(object sender, EventArgs e) {
425      NumberOfIslands.ValueChanged += new EventHandler(PopulationSize_ValueChanged);
426      ParameterizeSelectors();
427    }
428    private void PopulationSize_ValueChanged(object sender, EventArgs e) {
429      ParameterizeSelectors();
430    }
431    private void Evaluator_QualityParameter_ActualNameChanged(object sender, EventArgs e) {
432      ParameterizeMainLoop();
433      ParameterizeSelectors();
[3650]434      ParameterizeAnalyzers();
[3356]435    }
436    private void MigrationRateParameter_ValueChanged(object sender, EventArgs e) {
437      MigrationRate.ValueChanged += new EventHandler(MigrationRate_ValueChanged);
438      ParameterizeSelectors();
439    }
440    private void MigrationRate_ValueChanged(object sender, EventArgs e) {
441      ParameterizeSelectors();
442    }
443    #endregion
444
445    #region Helpers
[10142]446    protected virtual void Initialize() {
[3356]447      PopulationSizeParameter.ValueChanged += new EventHandler(PopulationSizeParameter_ValueChanged);
448      PopulationSize.ValueChanged += new EventHandler(PopulationSize_ValueChanged);
449      MigrationRateParameter.ValueChanged += new EventHandler(MigrationRateParameter_ValueChanged);
450      MigrationRate.ValueChanged += new EventHandler(MigrationRate_ValueChanged);
451      ElitesParameter.ValueChanged += new EventHandler(ElitesParameter_ValueChanged);
452      Elites.ValueChanged += new EventHandler(Elites_ValueChanged);
453      if (Problem != null) {
454        Problem.Evaluator.QualityParameter.ActualNameChanged += new EventHandler(Evaluator_QualityParameter_ActualNameChanged);
455      }
456    }
[10142]457    protected virtual void ParameterizeSolutionsCreator() {
[3359]458      SolutionsCreator.EvaluatorParameter.ActualName = Problem.EvaluatorParameter.Name;
459      SolutionsCreator.SolutionCreatorParameter.ActualName = Problem.SolutionCreatorParameter.Name;
[3356]460    }
[10142]461    protected virtual void ParameterizeMainLoop() {
[3359]462      MainLoop.BestKnownQualityParameter.ActualName = Problem.BestKnownQualityParameter.Name;
463      MainLoop.EvaluatorParameter.ActualName = Problem.EvaluatorParameter.Name;
464      MainLoop.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
465      MainLoop.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
[3356]466    }
[10142]467    protected virtual void ParameterizeStochasticOperator(IOperator op) {
[6051]468      IStochasticOperator stochasticOp = op as IStochasticOperator;
469      if (stochasticOp != null) {
470        stochasticOp.RandomParameter.ActualName = RandomCreator.RandomParameter.ActualName;
471        stochasticOp.RandomParameter.Hidden = true;
472      }
[3356]473    }
[10142]474    protected virtual void ParameterizeStochasticOperatorForIsland(IOperator op) {
[7395]475      IStochasticOperator stochasticOp = op as IStochasticOperator;
476      if (stochasticOp != null) {
477        stochasticOp.RandomParameter.ActualName = "LocalRandom";
478        stochasticOp.RandomParameter.Hidden = true;
479      }
480    }
[10142]481    protected virtual void ParameterizeSelectors() {
[3689]482      foreach (ISelector selector in SelectorParameter.ValidValues) {
[3356]483        selector.CopySelected = new BoolValue(true);
484        selector.NumberOfSelectedSubScopesParameter.Value = new IntValue(2 * (PopulationSize.Value - Elites.Value));
[6051]485        selector.NumberOfSelectedSubScopesParameter.Hidden = true;
[7395]486        ParameterizeStochasticOperatorForIsland(selector);
[3356]487      }
[3689]488      foreach (ISelector selector in EmigrantsSelectorParameter.ValidValues) {
[3356]489        selector.CopySelected = new BoolValue(true);
490        selector.NumberOfSelectedSubScopesParameter.Value = new IntValue((int)Math.Ceiling(PopulationSize.Value * MigrationRate.Value));
[6051]491        selector.NumberOfSelectedSubScopesParameter.Hidden = true;
[3356]492        ParameterizeStochasticOperator(selector);
493      }
[3689]494      foreach (IReplacer replacer in ImmigrationReplacerParameter.ValidValues) {
[3601]495        ParameterizeStochasticOperator(replacer);
[3356]496      }
497      if (Problem != null) {
[3689]498        foreach (ISingleObjectiveSelector selector in SelectorParameter.ValidValues.OfType<ISingleObjectiveSelector>()) {
[3356]499          selector.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
[6051]500          selector.MaximizationParameter.Hidden = true;
[3356]501          selector.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
[6051]502          selector.QualityParameter.Hidden = true;
[3356]503        }
[3689]504        foreach (ISingleObjectiveSelector selector in EmigrantsSelectorParameter.ValidValues.OfType<ISingleObjectiveSelector>()) {
[3356]505          selector.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
[6051]506          selector.MaximizationParameter.Hidden = true;
[3356]507          selector.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
[6051]508          selector.QualityParameter.Hidden = true;
[3356]509        }
[3689]510        foreach (ISingleObjectiveReplacer selector in ImmigrationReplacerParameter.ValidValues.OfType<ISingleObjectiveReplacer>()) {
[3356]511          selector.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
[6051]512          selector.MaximizationParameter.Hidden = true;
[3356]513          selector.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
[6051]514          selector.QualityParameter.Hidden = true;
[3356]515        }
516      }
517    }
[10142]518    protected virtual void ParameterizeAnalyzers() {
[3650]519      islandQualityAnalyzer.ResultsParameter.ActualName = "Results";
[6051]520      islandQualityAnalyzer.ResultsParameter.Hidden = true;
[3673]521      islandQualityAnalyzer.QualityParameter.Depth = 1;
[3671]522      qualityAnalyzer.ResultsParameter.ActualName = "Results";
[6051]523      qualityAnalyzer.ResultsParameter.Hidden = true;
[3673]524      qualityAnalyzer.QualityParameter.Depth = 2;
525
[3650]526      if (Problem != null) {
527        islandQualityAnalyzer.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
[6051]528        islandQualityAnalyzer.MaximizationParameter.Hidden = true;
[3650]529        islandQualityAnalyzer.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
[6051]530        islandQualityAnalyzer.QualityParameter.Hidden = true;
[3650]531        islandQualityAnalyzer.BestKnownQualityParameter.ActualName = Problem.BestKnownQualityParameter.Name;
[6051]532        islandQualityAnalyzer.BestKnownQualityParameter.Hidden = true;
[3671]533        qualityAnalyzer.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
[6051]534        qualityAnalyzer.MaximizationParameter.Hidden = true;
[3671]535        qualityAnalyzer.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
[6051]536        qualityAnalyzer.QualityParameter.Hidden = true;
[3671]537        qualityAnalyzer.BestKnownQualityParameter.ActualName = Problem.BestKnownQualityParameter.Name;
[6051]538        qualityAnalyzer.BestKnownQualityParameter.Hidden = true;
[3650]539      }
540    }
[10142]541    protected virtual void ParameterizeIterationBasedOperators() {
[3750]542      if (Problem != null) {
543        foreach (IIterationBasedOperator op in Problem.Operators.OfType<IIterationBasedOperator>()) {
544          op.IterationsParameter.ActualName = "Generations";
[6051]545          op.IterationsParameter.Hidden = true;
[3750]546          op.MaximumIterationsParameter.ActualName = "MaximumGenerations";
[6051]547          op.MaximumIterationsParameter.Hidden = true;
[3750]548        }
549      }
550    }
[10142]551    protected virtual void UpdateCrossovers() {
[3356]552      ICrossover oldCrossover = CrossoverParameter.Value;
[7511]553      ICrossover defaultCrossover = Problem.Operators.OfType<ICrossover>().FirstOrDefault();
[3356]554      CrossoverParameter.ValidValues.Clear();
[7524]555      foreach (ICrossover crossover in Problem.Operators.OfType<ICrossover>().OrderBy(x => x.Name)) {
556        ParameterizeStochasticOperatorForIsland(crossover);
[3356]557        CrossoverParameter.ValidValues.Add(crossover);
[7524]558      }
[3356]559      if (oldCrossover != null) {
560        ICrossover crossover = CrossoverParameter.ValidValues.FirstOrDefault(x => x.GetType() == oldCrossover.GetType());
561        if (crossover != null) CrossoverParameter.Value = crossover;
[7511]562        else oldCrossover = null;
[3356]563      }
[7511]564      if (oldCrossover == null && defaultCrossover != null)
565        CrossoverParameter.Value = defaultCrossover;
[3356]566    }
[10142]567    protected virtual void UpdateMutators() {
[3356]568      IManipulator oldMutator = MutatorParameter.Value;
569      MutatorParameter.ValidValues.Clear();
[7395]570      foreach (IManipulator mutator in Problem.Operators.OfType<IManipulator>().OrderBy(x => x.Name)) {
571        ParameterizeStochasticOperatorForIsland(mutator);
[3356]572        MutatorParameter.ValidValues.Add(mutator);
[7395]573      }
[3356]574      if (oldMutator != null) {
575        IManipulator mutator = MutatorParameter.ValidValues.FirstOrDefault(x => x.GetType() == oldMutator.GetType());
576        if (mutator != null) MutatorParameter.Value = mutator;
577      }
578    }
[10142]579    protected virtual void UpdateAnalyzers() {
[3650]580      IslandAnalyzer.Operators.Clear();
581      Analyzer.Operators.Clear();
[7172]582      IslandAnalyzer.Operators.Add(islandQualityAnalyzer, islandQualityAnalyzer.EnabledByDefault);
[3650]583      if (Problem != null) {
[3816]584        foreach (IAnalyzer analyzer in Problem.Operators.OfType<IAnalyzer>()) {
[3671]585          foreach (IScopeTreeLookupParameter param in analyzer.Parameters.OfType<IScopeTreeLookupParameter>())
586            param.Depth = 2;
[7172]587          Analyzer.Operators.Add(analyzer, analyzer.EnabledByDefault);
[3650]588        }
589      }
[7172]590      Analyzer.Operators.Add(qualityAnalyzer, qualityAnalyzer.EnabledByDefault);
[3650]591    }
[10142]592    protected virtual IslandGeneticAlgorithmMainLoop FindMainLoop(IOperator start) {
[5366]593      IOperator mainLoop = start;
594      while (mainLoop != null && !(mainLoop is IslandGeneticAlgorithmMainLoop))
595        mainLoop = ((SingleSuccessorOperator)mainLoop).Successor;
596      if (mainLoop == null) return null;
597      else return (IslandGeneticAlgorithmMainLoop)mainLoop;
598    }
[3356]599    #endregion
600  }
601}
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