Free cookie consent management tool by TermsFeed Policy Generator

source: branches/ALPS/HeuristicLab.Algorithms.ALPS.SteadyState/3.3/AlpsSsGeneticAlgorithm.cs @ 12157

Last change on this file since 12157 was 12157, checked in by pfleck, 9 years ago

#2350

  • Added a NamedSubScopeProcessor to process an name Scope (created by the NamedSubScopesCreator).
  • Changed the Steady-State ALPS to use the new Processor.
File size: 14.6 KB
Line 
1#region License Information
2/* HeuristicLab
3 * Copyright (C) 2002-2015 Heuristic and Evolutionary Algorithms Laboratory (HEAL)
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;
24using HeuristicLab.Common;
25using HeuristicLab.Core;
26using HeuristicLab.Data;
27using HeuristicLab.Operators;
28using HeuristicLab.Optimization;
29using HeuristicLab.Optimization.Operators;
30using HeuristicLab.Parameters;
31using HeuristicLab.Persistence.Default.CompositeSerializers.Storable;
32using HeuristicLab.PluginInfrastructure;
33using HeuristicLab.Random;
34using HeuristicLab.Selection;
35
36namespace HeuristicLab.Algorithms.ALPS.SteadyState {
37  [Item("ALPS Steady-State Genetic Algorithm", "A genetic algorithmn with a steady-state age-layered population structure")]
38  [Creatable("Algorithms")]
39  [StorableClass]
40  public class AlpsSsGeneticAlgorithm : Alps {
41    #region Parameter Properties
42    private IValueParameter<IntValue> LayerSizeParameter {
43      get { return (IValueParameter<IntValue>)Parameters["LayerSize"]; }
44    }
45    private IValueParameter<IntValue> MaximumIterationsParameter {
46      get { return (IValueParameter<IntValue>)Parameters["MaximumIterations"]; }
47    }
48    public IConstrainedValueParameter<ISelector> SelectorParameter {
49      get { return (IConstrainedValueParameter<ISelector>)Parameters["Selector"]; }
50    }
51    public IConstrainedValueParameter<ICrossover> CrossoverParameter {
52      get { return (IConstrainedValueParameter<ICrossover>)Parameters["Crossover"]; }
53    }
54    private IValueParameter<PercentValue> MutationProbabilityParameter {
55      get { return (IValueParameter<PercentValue>)Parameters["MutationProbability"]; }
56    }
57    public IConstrainedValueParameter<IManipulator> MutatorParameter {
58      get { return (IConstrainedValueParameter<IManipulator>)Parameters["Mutator"]; }
59    }
60    private IValueParameter<IntValue> ElitesParameter {
61      get { return (IValueParameter<IntValue>)Parameters["Elites"]; }
62    }
63    private IFixedValueParameter<BoolValue> ReevaluateElitesParameter {
64      get { return (IFixedValueParameter<BoolValue>)Parameters["ReevaluateElites"]; }
65    }
66    #endregion
67
68    #region Properties
69    public IntValue LayerSize {
70      get { return LayerSizeParameter.Value; }
71      set { LayerSizeParameter.Value = value; }
72    }
73    public IntValue MaximumIterations {
74      get { return MaximumIterationsParameter.Value; }
75      set { MaximumIterationsParameter.Value = value; }
76    }
77
78    public ISelector Selector {
79      get { return SelectorParameter.Value; }
80      set { SelectorParameter.Value = value; }
81    }
82    public ICrossover Crossover {
83      get { return CrossoverParameter.Value; }
84      set { CrossoverParameter.Value = value; }
85    }
86    public PercentValue MutationProbability {
87      get { return MutationProbabilityParameter.Value; }
88      set { MutationProbabilityParameter.Value = value; }
89    }
90    public IManipulator Mutator {
91      get { return MutatorParameter.Value; }
92      set { MutatorParameter.Value = value; }
93    }
94    public IntValue Elites {
95      get { return ElitesParameter.Value; }
96      set { ElitesParameter.Value = value; }
97    }
98    public bool ReevaluteElites {
99      get { return ReevaluateElitesParameter.Value.Value; }
100      set { ReevaluateElitesParameter.Value.Value = value; }
101    }
102    #endregion
103
104    private AlpsSsGeneticAlgorithmMainLoop MainLoop {
105      get { return OperatorGraph.Iterate().OfType<AlpsSsGeneticAlgorithmMainLoop>().First(); }
106    }
107
108    [StorableConstructor]
109    private AlpsSsGeneticAlgorithm(bool deserializing)
110      : base(deserializing) { }
111    private AlpsSsGeneticAlgorithm(AlpsSsGeneticAlgorithm original, Cloner cloner)
112      : base(original, cloner) {
113      Initialize();
114    }
115    public override IDeepCloneable Clone(Cloner cloner) {
116      return new AlpsSsGeneticAlgorithm(this, cloner);
117    }
118
119    public AlpsSsGeneticAlgorithm()
120      : base() {
121      Parameters.Add(new ValueParameter<IntValue>("LayerSize", "The size of the population of solutions each layer.", new IntValue(100)));
122      Parameters.Add(new ValueParameter<IntValue>("MaximumIterations", "The maximum number of iterations that should be processed.", new IntValue(1000)));
123      Parameters.Add(new ConstrainedValueParameter<ISelector>("Selector", "The operator used to select solutions for reproduction."));
124      Parameters.Add(new ConstrainedValueParameter<ICrossover>("Crossover", "The operator used to cross solutions."));
125      Parameters.Add(new ValueParameter<PercentValue>("MutationProbability", "The probability that the mutation operator is applied on a solution.", new PercentValue(0.05)));
126      Parameters.Add(new OptionalConstrainedValueParameter<IManipulator>("Mutator", "The operator used to mutate solutions."));
127      Parameters.Add(new ValueParameter<IntValue>("Elites", "The numer of elite solutions which are kept in each generation.", new IntValue(1)));
128      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 });
129      AgeInheritance = new ReductionOperation(ReductionOperations.Min);
130
131      var randomCreator = new RandomCreator();
132      var workingScopeCreator = new NamedSubScopesCreator() { Name = "Create WorkingScope and Layers-Scope" };
133      var layersProcessor = new NamedSubScopeProcessor() { Name = "Process Layers-Scope" };
134      var layerCreator = new SubScopesCreator() { Name = "Create Layer" };
135      var layerProcessor = new /*Layer*/UniformSubScopesProcessor();
136      var layerVariableCreator = new VariableCreator() { Name = "Initialize Layer" };
137      var layerSolutionsCreator = new SolutionsCreator();
138      var initializeAgeProcessor = new UniformSubScopesProcessor();
139      var initializeAge = new VariableCreator() { Name = "Initialize Age" };
140      var initializeEvaluatedSolutions = new ExpressionCalculator() { Name = "Initialize EvaluatedSolutions" };
141      var initializePopulationSize = new Assigner() { Name = "Initialize PopulationSize" };
142      var resultsCollector = new ResultsCollector();
143      var mainLoop = new AlpsSsGeneticAlgorithmMainLoop();
144
145      OperatorGraph.InitialOperator = randomCreator;
146
147      randomCreator.SeedParameter.Value = null;
148      randomCreator.SetSeedRandomlyParameter.Value = null;
149      randomCreator.Successor = workingScopeCreator;
150
151      workingScopeCreator.NamesParameter.Value = new StringArray(new[] { "WorkingScope", "Layers" });
152      workingScopeCreator.Successor = layersProcessor;
153
154      layersProcessor.TargetScopeParameter.ActualName = "Layers";
155      layersProcessor.Operator = layerCreator;
156
157      layerCreator.NumberOfSubScopesParameter.ActualName = "NumberOfLayers";
158      layerCreator.NumberOfSubScopesParameter.Value = null;
159      layerCreator.Successor = layerProcessor;
160
161      layerProcessor.Operator = layerVariableCreator;
162      layerProcessor.Successor = initializeEvaluatedSolutions;
163
164      layerVariableCreator.CollectedValues.Add(new ValueParameter<ResultCollection>("LayerResults"));
165      layerVariableCreator.Successor = layerSolutionsCreator;
166
167      layerSolutionsCreator.NumberOfSolutionsParameter.ActualName = LayerSizeParameter.Name;
168      layerSolutionsCreator.Successor = initializeAgeProcessor;
169
170      initializeAgeProcessor.Operator = initializeAge;
171
172      initializeAge.CollectedValues.Add(new ValueParameter<IntValue>("EvalsCreated", new IntValue(1)));
173      initializeAge.CollectedValues.Add(new ValueParameter<IntValue>("LastMove", new IntValue(1)));
174
175      initializeEvaluatedSolutions.ExpressionResultParameter.ActualName = "EvaluatedSolutions";
176      initializeEvaluatedSolutions.ExpressionParameter.Value = new StringValue("LayerSize NumberOfLayers * toint");
177      initializeEvaluatedSolutions.CollectedValues.Add(new LookupParameter<IntValue>("LayerSize"));
178      initializeEvaluatedSolutions.CollectedValues.Add(new LookupParameter<IntValue>("NumberOfLayers"));
179      initializeEvaluatedSolutions.Successor = initializePopulationSize;
180
181      initializePopulationSize.LeftSideParameter.ActualName = "PopulationSize";
182      initializePopulationSize.RightSideParameter.ActualName = "EvaluatedSolutions";
183      initializePopulationSize.Successor = resultsCollector;
184
185      resultsCollector.CollectedValues.Add(new LookupParameter<IntValue>("Evaluated Solutions", null, "EvaluatedSolutions"));
186      resultsCollector.Successor = mainLoop;
187
188      foreach (var selector in ApplicationManager.Manager.GetInstances<ISelector>().Where(s => !(s is IMultiObjectiveSelector)).OrderBy(s => Name))
189        SelectorParameter.ValidValues.Add(selector);
190      var tournamentSelector = SelectorParameter.ValidValues.OfType<TournamentSelector>().FirstOrDefault();
191      if (tournamentSelector != null) {
192        tournamentSelector.GroupSizeParameter.Value = new IntValue(5);
193        SelectorParameter.Value = tournamentSelector;
194      }
195
196      ParameterizeSelectors();
197      Initialize();
198    }
199
200    #region Events
201    protected override void OnProblemChanged() {
202      base.OnProblemChanged();
203      ParameterizeSolutionsCreator();
204      ParameterizeMainLoop();
205      ParameterizeSelectors();
206      ParameterizeIterationBasedOperators();
207      UpdateCrossovers();
208      UpdateMutators();
209    }
210    protected override void Problem_SolutionCreatorChanged(object sender, EventArgs e) {
211      base.Problem_SolutionCreatorChanged(sender, e);
212      ParameterizeSolutionsCreator();
213    }
214    protected override void Problem_EvaluatorChanged(object sender, EventArgs e) {
215      base.Problem_EvaluatorChanged(sender, e);
216      ParameterizeSolutionsCreator();
217      ParameterizeMainLoop();
218      ParameterizeSelectors();
219    }
220    protected override void Problem_OperatorsChanged(object sender, EventArgs e) {
221      base.Problem_OperatorsChanged(sender, e);
222      ParameterizeIterationBasedOperators();
223      UpdateCrossovers();
224      UpdateMutators();
225    }
226    protected override void Evaluator_QualityParameter_ActualNameChanged(object sender, EventArgs e) {
227      base.Evaluator_QualityParameter_ActualNameChanged(sender, e);
228      ParameterizeMainLoop();
229      ParameterizeSelectors();
230    }
231    #endregion
232
233    #region Parameterization
234    private void Initialize() {
235    }
236    private void ParameterizeSolutionsCreator() {
237    }
238    private void ParameterizeMainLoop() {
239      MainLoop.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
240      MainLoop.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
241    }
242    private void ParameterizeSelectors() {
243      foreach (var selector in SelectorParameter.ValidValues) {
244        selector.CopySelected = new BoolValue(true);
245        selector.NumberOfSelectedSubScopesParameter.Value = new IntValue(2);
246        selector.NumberOfSelectedSubScopesParameter.Hidden = true;
247        ParameterizeStochasticOperatorForLayer(selector);
248      }
249      if (Problem != null) {
250        foreach (var selector in SelectorParameter.ValidValues.OfType<ISingleObjectiveSelector>()) {
251          selector.MaximizationParameter.ActualName = Problem.MaximizationParameter.Name;
252          selector.MaximizationParameter.Hidden = true;
253          selector.QualityParameter.ActualName = Problem.Evaluator.QualityParameter.ActualName;
254          selector.QualityParameter.Hidden = true;
255        }
256      }
257    }
258    private void ParameterizeIterationBasedOperators() {
259      if (Problem != null) {
260        foreach (var @operator in Problem.Operators.OfType<IIterationBasedOperator>()) {
261          @operator.IterationsParameter.ActualName = "Iteration";
262          @operator.IterationsParameter.Hidden = true;
263          @operator.MaximumIterationsParameter.ActualName = MaximumIterationsParameter.Name;
264          @operator.MaximumIterationsParameter.Hidden = true;
265        }
266      }
267    }
268
269    protected override void ParameterizeStochasticOperator(IOperator @operator) {
270      var stochasticOperator = @operator as IStochasticOperator;
271      if (stochasticOperator != null) {
272        stochasticOperator.RandomParameter.ActualName = "Random";
273        stochasticOperator.RandomParameter.Hidden = true;
274      }
275    }
276    protected override void ParameterizeStochasticOperatorForLayer(IOperator @operator) {
277      var stochasticOperator = @operator as IStochasticOperator;
278      if (stochasticOperator != null) {
279        stochasticOperator.RandomParameter.ActualName = "Random";
280        stochasticOperator.RandomParameter.Hidden = true;
281      }
282    }
283    #endregion
284
285    #region Updates
286    private void UpdateCrossovers() {
287      var oldCrossover = CrossoverParameter.Value;
288      var defaultCrossover = Problem.Operators.OfType<ICrossover>().FirstOrDefault();
289      CrossoverParameter.ValidValues.Clear();
290      foreach (var crossover in Problem.Operators.OfType<ICrossover>().OrderBy(c => c.Name)) {
291        ParameterizeStochasticOperatorForLayer(crossover);
292        CrossoverParameter.ValidValues.Add(crossover);
293      }
294      if (oldCrossover != null) {
295        var crossover = CrossoverParameter.ValidValues.FirstOrDefault(c => c.GetType() == oldCrossover.GetType());
296        if (crossover != null)
297          CrossoverParameter.Value = crossover;
298        else
299          oldCrossover = null;
300      }
301      if (oldCrossover == null && defaultCrossover != null)
302        CrossoverParameter.Value = defaultCrossover;
303    }
304    private void UpdateMutators() {
305      var oldMutator = MutatorParameter.Value;
306      MutatorParameter.ValidValues.Clear();
307      foreach (var mutator in Problem.Operators.OfType<IManipulator>().OrderBy(m => m.Name)) {
308        ParameterizeStochasticOperatorForLayer(mutator);
309        MutatorParameter.ValidValues.Add(mutator);
310      }
311      if (oldMutator != null) {
312        var mutator = MutatorParameter.ValidValues.FirstOrDefault(m => m.GetType() == oldMutator.GetType());
313        if (mutator != null)
314          MutatorParameter.Value = mutator;
315      }
316    }
317    #endregion
318  }
319}
Note: See TracBrowser for help on using the repository browser.