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source: branches/2521_ProblemRefactoring/HeuristicLab.Optimization/3.3/BasicProblems/SingleObjectiveProblem.cs @ 17279

Last change on this file since 17279 was 17279, checked in by mkommend, 5 years ago

#2521: Updated single-objective problem to include a static is better method and fixed setter of maximization property.

File size: 8.3 KB
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1#region License Information
2/* HeuristicLab
3 * Copyright (C) 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.Collections.Generic;
24using System.Linq;
25using HEAL.Attic;
26using HeuristicLab.Common;
27using HeuristicLab.Core;
28using HeuristicLab.Data;
29using HeuristicLab.Parameters;
30
31namespace HeuristicLab.Optimization {
32  [StorableType("2697320D-0259-44BB-BD71-7EE1B10F664C")]
33  public abstract class SingleObjectiveProblem<TEncoding, TEncodedSolution> :
34    Problem<TEncoding, TEncodedSolution, SingleObjectiveEvaluator<TEncodedSolution>>,
35    ISingleObjectiveProblem<TEncoding, TEncodedSolution>,
36    ISingleObjectiveProblemDefinition<TEncoding, TEncodedSolution>
37    where TEncoding : class, IEncoding<TEncodedSolution>
38    where TEncodedSolution : class, IEncodedSolution {
39
40    [Storable] protected IValueParameter<DoubleValue> BestKnownQualityParameter { get; }
41    [Storable] protected IValueParameter<BoolValue> MaximizationParameter { get; }
42
43    public double BestKnownQuality {
44      get {
45        if (BestKnownQualityParameter.Value == null) return double.NaN;
46        return BestKnownQualityParameter.Value.Value;
47      }
48      set {
49        if (double.IsNaN(value)) {
50          BestKnownQualityParameter.Value = null;
51          return;
52        }
53        if (BestKnownQualityParameter.Value == null) BestKnownQualityParameter.Value = new DoubleValue(value);
54        else BestKnownQualityParameter.Value.Value = value;
55      }
56    }
57
58    public bool Maximization {
59      get { return MaximizationParameter.Value.Value; }
60      protected set {
61        if (MaximizationParameter.Value.Value == value) return;
62        MaximizationParameter.ReadOnly = false;
63        MaximizationParameter.Value = new BoolValue(value).AsReadOnly();
64        MaximizationParameter.ReadOnly = true;
65      }
66    }
67
68    [StorableConstructor]
69    protected SingleObjectiveProblem(StorableConstructorFlag _) : base(_) { }
70
71    protected SingleObjectiveProblem(SingleObjectiveProblem<TEncoding, TEncodedSolution> original, Cloner cloner)
72      : base(original, cloner) {
73      BestKnownQualityParameter = cloner.Clone(original.BestKnownQualityParameter);
74      MaximizationParameter = cloner.Clone(original.MaximizationParameter);
75      ParameterizeOperators();
76    }
77
78    protected SingleObjectiveProblem() : base() {
79
80      MaximizationParameter = new ValueParameter<BoolValue>("Maximization", "Whether the problem should be maximized (True) or minimized (False).", new BoolValue(false).AsReadOnly()) { Hidden = true, ReadOnly = true };
81      BestKnownQualityParameter = new OptionalValueParameter<DoubleValue>("BestKnownQuality", "The quality of the best known solution of this problem.");
82
83      Parameters.Add(MaximizationParameter);
84      Parameters.Add(BestKnownQualityParameter);
85
86      Operators.Add(Evaluator);
87      Operators.Add(new SingleObjectiveAnalyzer<TEncodedSolution>());
88      Operators.Add(new SingleObjectiveImprover<TEncodedSolution>());
89      Operators.Add(new SingleObjectiveMoveEvaluator<TEncodedSolution>());
90      Operators.Add(new SingleObjectiveMoveGenerator<TEncodedSolution>());
91      Operators.Add(new SingleObjectiveMoveMaker<TEncodedSolution>());
92
93      ParameterizeOperators();
94    }
95
96    protected SingleObjectiveProblem(TEncoding encoding) : base(encoding) {
97      Parameters.Add(MaximizationParameter = new ValueParameter<BoolValue>("Maximization", "Set to false if the problem should be minimized.", new BoolValue(false).AsReadOnly()) { Hidden = true, ReadOnly = true });
98      Parameters.Add(BestKnownQualityParameter = new OptionalValueParameter<DoubleValue>("BestKnownQuality", "The quality of the best known solution of this problem."));
99
100      Operators.Add(Evaluator);
101      Operators.Add(new SingleObjectiveAnalyzer<TEncodedSolution>());
102      Operators.Add(new SingleObjectiveImprover<TEncodedSolution>());
103      Operators.Add(new SingleObjectiveMoveEvaluator<TEncodedSolution>());
104      Operators.Add(new SingleObjectiveMoveGenerator<TEncodedSolution>());
105      Operators.Add(new SingleObjectiveMoveMaker<TEncodedSolution>());
106
107      ParameterizeOperators();
108    }
109
110    [StorableHook(HookType.AfterDeserialization)]
111    private void AfterDeserialization() {
112      ParameterizeOperators();
113    }
114
115    public abstract double Evaluate(TEncodedSolution solution, IRandom random);
116    public virtual void Analyze(TEncodedSolution[] solutions, double[] qualities, ResultCollection results, IRandom random) { }
117    public virtual IEnumerable<TEncodedSolution> GetNeighbors(TEncodedSolution solution, IRandom random) {
118      return Enumerable.Empty<TEncodedSolution>();
119    }
120
121    public static bool IsBetter(bool maximization, double quality, double bestQuality) {
122      return (maximization && quality > bestQuality || !maximization && quality < bestQuality);
123    }
124
125    public virtual bool IsBetter(double quality, double bestQuality) {
126      return IsBetter(Maximization, quality, bestQuality);
127    }
128
129    protected Tuple<TEncodedSolution, double> GetBestSolution(TEncodedSolution[] solutions, double[] qualities) {
130      return GetBestSolution(solutions, qualities, Maximization);
131    }
132    public static Tuple<TEncodedSolution, double> GetBestSolution(TEncodedSolution[] solutions, double[] qualities, bool maximization) {
133      var zipped = solutions.Zip(qualities, (s, q) => new { Solution = s, Quality = q });
134      var best = (maximization ? zipped.OrderByDescending(z => z.Quality) : zipped.OrderBy(z => z.Quality)).First();
135      return Tuple.Create(best.Solution, best.Quality);
136    }
137
138    protected override void OnOperatorsChanged() {
139      if (Encoding != null) {
140        PruneMultiObjectiveOperators(Encoding);
141        var combinedEncoding = Encoding as CombinedEncoding;
142        if (combinedEncoding != null) {
143          foreach (var encoding in combinedEncoding.Encodings.ToList()) {
144            PruneMultiObjectiveOperators(encoding);
145          }
146        }
147      }
148      base.OnOperatorsChanged();
149    }
150
151    private void PruneMultiObjectiveOperators(IEncoding encoding) {
152      if (encoding.Operators.Any(x => x is IMultiObjectiveOperator && !(x is ISingleObjectiveOperator)))
153        encoding.Operators = encoding.Operators.Where(x => !(x is IMultiObjectiveOperator) || x is ISingleObjectiveOperator).ToList();
154
155      foreach (var multiOp in Encoding.Operators.OfType<IMultiOperator>()) {
156        foreach (var moOp in multiOp.Operators.Where(x => x is IMultiObjectiveOperator).ToList()) {
157          multiOp.RemoveOperator(moOp);
158        }
159      }
160    }
161
162    protected override void OnEvaluatorChanged() {
163      base.OnEvaluatorChanged();
164      ParameterizeOperators();
165    }
166
167    private void ParameterizeOperators() {
168      foreach (var op in Operators.OfType<ISingleObjectiveEvaluationOperator<TEncodedSolution>>())
169        op.EvaluateFunc = Evaluate;
170      foreach (var op in Operators.OfType<ISingleObjectiveAnalysisOperator<TEncodedSolution>>())
171        op.AnalyzeAction = Analyze;
172      foreach (var op in Operators.OfType<INeighborBasedOperator<TEncodedSolution>>())
173        op.GetNeighborsFunc = GetNeighbors;
174    }
175
176    #region ISingleObjectiveHeuristicOptimizationProblem Members
177    IParameter ISingleObjectiveHeuristicOptimizationProblem.MaximizationParameter {
178      get { return Parameters["Maximization"]; }
179    }
180    IParameter ISingleObjectiveHeuristicOptimizationProblem.BestKnownQualityParameter {
181      get { return Parameters["BestKnownQuality"]; }
182    }
183    ISingleObjectiveEvaluator ISingleObjectiveHeuristicOptimizationProblem.Evaluator {
184      get { return Evaluator; }
185    }
186    #endregion
187  }
188}
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