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source: branches/2966_interval_calculation/HeuristicLab.Problems.DataAnalysis.Symbolic/3.4/Interpreter/IntervalInterpreter.cs @ 16377

Last change on this file since 16377 was 16377, checked in by chaider, 5 years ago

#2966 Changed namespace to HeuristicLab.Problems.DataAnalysis.Symbolic

File size: 10.6 KB
Line 
1#region License Information
2/* HeuristicLab
3 * Copyright (C) 2002-2018 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 HeuristicLab.Common;
26using HeuristicLab.Core;
27using HeuristicLab.Data;
28using HeuristicLab.Encodings.SymbolicExpressionTreeEncoding;
29using HeuristicLab.Persistence.Default.CompositeSerializers.Storable;
30using HeuristicLab.Parameters;
31
32namespace HeuristicLab.Problems.DataAnalysis.Symbolic {
33  [StorableClass]
34  [Item("IntervalInterpreter", "Intperter for calculation of intervals of symbolic models.")]
35  public sealed class IntervalInterpreter : ParameterizedNamedItem, IStatefulItem {
36
37    private const string EvaluatedSolutionsParameterName = "EvaluatedSolutions";
38
39    public IFixedValueParameter<IntValue> EvaluatedSolutionsParameter {
40      get { return (IFixedValueParameter<IntValue>)Parameters[EvaluatedSolutionsParameterName]; }
41    }
42
43    public int EvaluatedSolutions {
44      get { return EvaluatedSolutionsParameter.Value.Value; }
45      set { EvaluatedSolutionsParameter.Value.Value = value; }
46    }
47
48    [StorableConstructor]
49    private IntervalInterpreter(bool deserializing) : base(deserializing) { }
50    private IntervalInterpreter(IntervalInterpreter original, Cloner cloner)
51        : base(original, cloner) { }
52
53    public IntervalInterpreter()
54        : base("IntervalInterpreter", "Intperter for calculation of intervals of symbolic models.") {
55      Parameters.Add(new FixedValueParameter<IntValue>(EvaluatedSolutionsParameterName, "A counter for the total number of solutions the interpreter has evaluated", new IntValue(0)));
56    }
57
58    public override IDeepCloneable Clone(Cloner cloner) {
59      return new IntervalInterpreter(this, cloner);
60    }
61
62    private readonly object syncRoot = new object();
63
64    #region IStatefulItem Members
65    public void InitializeState() {
66      EvaluatedSolutions = 0;
67    }
68    public void ClearState() { }
69    #endregion
70
71    public Interval GetSymbolicExressionTreeIntervals(ISymbolicExpressionTree tree, IDataset dataset, IEnumerable<int> rows = null) {
72      lock (syncRoot) {
73        EvaluatedSolutions++;
74      }
75      int instructionCount = 0;
76      var intervalBoundaries = DatasetUtil.GetVariableBoundaries(dataset, rows);
77      var instructions = PrepareInterpreterState(tree, intervalBoundaries);
78      var x = Evaluate(instructions, ref instructionCount);
79
80      return x;
81    }
82
83    public Interval GetSymbolicExressionTreeIntervals(ISymbolicExpressionTree tree, IDataset dataset,
84      out Dictionary<ISymbolicExpressionTreeNode, Interval> intervals, IEnumerable<int> rows = null) {
85      lock (syncRoot) {
86        EvaluatedSolutions++;
87      }
88      int instructionCount = 0;
89      var intervalBoundaries = DatasetUtil.GetVariableBoundaries(dataset, rows);
90      intervals = new Dictionary<ISymbolicExpressionTreeNode, Interval>();
91      var instructions = PrepareInterpreterState(tree, intervalBoundaries);
92      var x = Evaluate(instructions, ref instructionCount, intervals);
93
94      return x;
95    }
96
97    public Interval GetSymbolicExressionTreeIntervals(ISymbolicExpressionTree tree, Dictionary<string, Interval> customIntervals) {
98      lock (syncRoot) {
99        EvaluatedSolutions++;
100      }
101      int instructionCount = 0;
102      var instructions = PrepareInterpreterState(tree, customIntervals);
103      var x = Evaluate(instructions, ref instructionCount);
104
105      return x;
106    }
107
108
109    public Interval GetSymbolicExressionTreeIntervals(ISymbolicExpressionTree tree,
110      Dictionary<string, Interval> customIntervals, out Dictionary<ISymbolicExpressionTreeNode, Interval> intervals) {
111      lock (syncRoot) {
112        EvaluatedSolutions++;
113      }
114      int instructionCount = 0;
115      intervals = new Dictionary<ISymbolicExpressionTreeNode, Interval>();
116      var instructions = PrepareInterpreterState(tree, customIntervals);
117      var x = Evaluate(instructions, ref instructionCount, intervals);
118
119      return x;
120    }
121
122
123    private static Instruction[] PrepareInterpreterState(ISymbolicExpressionTree tree, Dictionary<string, Interval> customIntervals) {
124      Instruction[] code = SymbolicExpressionTreeCompiler.Compile(tree, OpCodes.MapSymbolToOpCode);
125
126      if (customIntervals == null)
127        throw new ArgumentException("No interval ranges are present!", nameof(customIntervals));
128
129      foreach (var variable in tree.IterateNodesPrefix().OfType<VariableTreeNode>().Select(n => n.VariableName).Distinct()) {
130        if (!customIntervals.ContainsKey(variable)) throw new InvalidOperationException($"No ranges for variable {variable} is present");
131      }
132
133      foreach (Instruction instr in code.Where(i => i.opCode == OpCodes.Variable)) {
134        var variableTreeNode = (VariableTreeNode)instr.dynamicNode;
135        instr.data = customIntervals[variableTreeNode.VariableName];
136      }
137      return code;
138    }
139
140    private Interval Evaluate(Instruction[] instructions, ref int instructionCount, Dictionary<ISymbolicExpressionTreeNode,
141      Interval> intervals = null) {
142      Instruction currentInstr = instructions[instructionCount++];
143      Interval result = null;
144
145      switch (currentInstr.opCode) {
146        //Elementary arithmetic rules
147        case OpCodes.Add: {
148            result = Evaluate(instructions, ref instructionCount, intervals);
149            for (int i = 1; i < currentInstr.nArguments; i++) {
150              result = Interval.Add(result, Evaluate(instructions, ref instructionCount, intervals));
151            }
152            break;
153          }
154        case OpCodes.Sub: {
155            result = Evaluate(instructions, ref instructionCount, intervals);
156            for (int i = 1; i < currentInstr.nArguments; i++) {
157              result = Interval.Subtract(result, Evaluate(instructions, ref instructionCount, intervals));
158            }
159            break;
160          }
161        case OpCodes.Mul: {
162            result = Evaluate(instructions, ref instructionCount, intervals);
163            for (int i = 1; i < currentInstr.nArguments; i++) {
164              result = Interval.Multiply(result, Evaluate(instructions, ref instructionCount, intervals));
165            }
166            break;
167          }
168        case OpCodes.Div: {
169            result = Evaluate(instructions, ref instructionCount, intervals);
170            for (int i = 1; i < currentInstr.nArguments; i++) {
171              result = Interval.Divide(result, Evaluate(instructions, ref instructionCount, intervals));
172            }
173            break;
174          }
175        //Trigonometric functions
176        case OpCodes.Sin: {
177            result = Interval.Sine(Evaluate(instructions, ref instructionCount, intervals));
178            break;
179          }
180        case OpCodes.Cos: {
181            result = Interval.Cosine(Evaluate(instructions, ref instructionCount, intervals));
182            break;
183          }
184        case OpCodes.Tan: {
185            result = Interval.Tangens(Evaluate(instructions, ref instructionCount, intervals));
186            break;
187          }
188        //Exponential functions
189        case OpCodes.Log: {
190            result = Interval.Logarithm(Evaluate(instructions, ref instructionCount, intervals));
191            break;
192          }
193        case OpCodes.Exp: {
194            result = Interval.Exponential(Evaluate(instructions, ref instructionCount, intervals));
195            break;
196          }
197        case OpCodes.Power: {
198            result = Evaluate(instructions, ref instructionCount, intervals);
199            for (int i = 1; i < currentInstr.nArguments; i++) {
200              result = Interval.Power(result, Evaluate(instructions, ref instructionCount, intervals));
201            }
202            break;
203          }
204        case OpCodes.Square: {
205            result = Interval.Square(Evaluate(instructions, ref instructionCount, intervals));
206            break;
207          }
208        case OpCodes.Root: {
209            result = Evaluate(instructions, ref instructionCount, intervals);
210            for (int i = 1; i < currentInstr.nArguments; i++) {
211              result = Interval.Root(result, Evaluate(instructions, ref instructionCount, intervals));
212            }
213            break;
214          }
215        case OpCodes.SquareRoot: {
216            result = Interval.SquareRoot(Evaluate(instructions, ref instructionCount, intervals));
217            break;
218          }
219        //Variables, Constants, ...
220        case OpCodes.Variable: {
221            intervals.Add(currentInstr.dynamicNode, (Interval)currentInstr.data);
222            return (Interval)currentInstr.data;
223          }
224        case OpCodes.Constant: {
225            var constTreeNode = (ConstantTreeNode)currentInstr.dynamicNode;
226            var inter = new Interval(constTreeNode.Value, constTreeNode.Value);
227            intervals.Add(currentInstr.dynamicNode, inter);
228            return inter;
229          }
230        default:
231          throw new NotSupportedException("Tree contains an unknown symbol.");
232      }
233
234      if (intervals != null)
235        intervals.Add(currentInstr.dynamicNode, result);
236      return result;
237    }
238
239    public static bool IsCompatible(ISymbolicExpressionTree tree) {
240      var containsUnknownSyumbol = (
241        from n in tree.Root.GetSubtree(0).IterateNodesPrefix()
242        where
243          !(n.Symbol is StartSymbol) &&
244          !(n.Symbol is Addition) &&
245          !(n.Symbol is Subtraction) &&
246          !(n.Symbol is Multiplication) &&
247          !(n.Symbol is Division) &&
248          !(n.Symbol is Sine) &&
249          !(n.Symbol is Cosine) &&
250          !(n.Symbol is Tangent) &&
251          !(n.Symbol is Logarithm) &&
252          !(n.Symbol is Exponential) &&
253          !(n.Symbol is Power) &&
254          !(n.Symbol is Square) &&
255          !(n.Symbol is Root) &&
256          !(n.Symbol is SquareRoot) &&
257          !(n.Symbol is Problems.DataAnalysis.Symbolic.Variable) &&
258          !(n.Symbol is Constant)
259        select n).Any();
260      return !containsUnknownSyumbol;
261    }
262  }
263}
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