1 | #region License Information
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2 | /* HeuristicLab
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3 | * Copyright (C) 2002-2012 Heuristic and Evolutionary Algorithms Laboratory (HEAL)
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4 | *
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5 | * This file is part of HeuristicLab.
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6 | *
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7 | * HeuristicLab is free software: you can redistribute it and/or modify
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8 | * it under the terms of the GNU General Public License as published by
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9 | * the Free Software Foundation, either version 3 of the License, or
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10 | * (at your option) any later version.
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11 | *
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12 | * HeuristicLab is distributed in the hope that it will be useful,
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13 | * but WITHOUT ANY WARRANTY; without even the implied warranty of
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14 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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15 | * GNU General Public License for more details.
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16 | *
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17 | * You should have received a copy of the GNU General Public License
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18 | * along with HeuristicLab. If not, see <http://www.gnu.org/licenses/>.
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19 | */
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20 | #endregion
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21 |
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22 | using System;
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23 | using System.Collections.Generic;
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24 | using System.ComponentModel;
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25 | using System.Drawing;
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26 | using System.Linq;
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27 | using System.Windows.Forms;
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28 | using HeuristicLab.Common;
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29 | using HeuristicLab.Data;
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30 | using HeuristicLab.Encodings.SymbolicExpressionTreeEncoding;
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31 | using HeuristicLab.Encodings.SymbolicExpressionTreeEncoding.Views;
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32 | using HeuristicLab.MainForm.WindowsForms;
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33 |
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34 | namespace HeuristicLab.Problems.DataAnalysis.Symbolic.Views {
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35 | public abstract partial class InteractiveSymbolicDataAnalysisSolutionSimplifierView : AsynchronousContentView {
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36 | private Dictionary<ISymbolicExpressionTreeNode, ISymbolicExpressionTreeNode> replacementNodes;
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37 | private Dictionary<ISymbolicExpressionTreeNode, double> nodeImpacts;
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38 | private Dictionary<ISymbolicExpressionTreeNode, double> originalValues;
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39 | private Dictionary<ISymbolicExpressionTreeNode, string> originalVariableNames;
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40 | private bool updateInProgress = false;
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41 | private ISymbolicExpressionTree model;
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42 |
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43 | public InteractiveSymbolicDataAnalysisSolutionSimplifierView() {
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44 | InitializeComponent();
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45 | replacementNodes = new Dictionary<ISymbolicExpressionTreeNode, ISymbolicExpressionTreeNode>();
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46 | nodeImpacts = new Dictionary<ISymbolicExpressionTreeNode, double>();
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47 | originalValues = new Dictionary<ISymbolicExpressionTreeNode, double>();
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48 | originalVariableNames = new Dictionary<ISymbolicExpressionTreeNode, string>();
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49 | Caption = "Interactive Solution Simplifier";
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50 | }
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51 |
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52 | public new ISymbolicDataAnalysisSolution Content {
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53 | get { return (ISymbolicDataAnalysisSolution)base.Content; }
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54 | set { base.Content = value; }
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55 | }
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56 |
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57 | protected override void RegisterContentEvents() {
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58 | base.RegisterContentEvents();
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59 | Content.ModelChanged += Content_ModelChanged;
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60 | Content.ProblemDataChanged += Content_ProblemDataChanged;
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61 | }
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62 | protected override void DeregisterContentEvents() {
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63 | base.DeregisterContentEvents();
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64 | Content.ModelChanged -= Content_ModelChanged;
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65 | Content.ProblemDataChanged -= Content_ProblemDataChanged;
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66 | }
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67 |
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68 | private void Content_ModelChanged(object sender, EventArgs e) {
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69 | OnModelChanged();
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70 | }
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71 | private void Content_ProblemDataChanged(object sender, EventArgs e) {
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72 | OnProblemDataChanged();
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73 | }
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74 |
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75 | protected virtual void OnModelChanged() {
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76 | model = (model == null) ? (ISymbolicExpressionTree)Content.Model.SymbolicExpressionTree.Clone() : Content.Model.SymbolicExpressionTree;
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77 | CalculateReplacementNodesAndNodeImpacts(model);
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78 | PaintModel();
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79 | }
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80 |
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81 | protected virtual void OnProblemDataChanged() {
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82 | CalculateReplacementNodesAndNodeImpacts();
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83 | PaintModel();
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84 | }
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85 |
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86 | protected override void OnContentChanged() {
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87 | model = (model == null) ? (ISymbolicExpressionTree)Content.Model.SymbolicExpressionTree.Clone() : Content.Model.SymbolicExpressionTree;
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88 | base.OnContentChanged();
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89 | CalculateReplacementNodesAndNodeImpacts(model);
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90 | PaintModel();
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91 | viewHost.Content = this.Content;
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92 | }
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93 |
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94 | private void CalculateReplacementNodesAndNodeImpacts() {
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95 | if (Content == null || Content.Model == null || Content.ProblemData == null) return;
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96 | var tree = model;
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97 | var replacementValues = CalculateReplacementValues(tree);
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98 | foreach (var pair in replacementValues.Where(pair => !(pair.Key is ConstantTreeNode))) {
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99 | replacementNodes[pair.Key] = MakeConstantTreeNode(pair.Value);
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100 | }
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101 | nodeImpacts = CalculateImpactValues(tree);
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102 |
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103 | if (!updateInProgress) {
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104 | // automatically fold all branches with impact = 0
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105 | List<ISymbolicExpressionTreeNode> nodeList = tree.Root.GetSubtree(0).IterateNodesPrefix().ToList();
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106 | foreach (var parent in nodeList) {
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107 | for (int subTreeIndex = 0; subTreeIndex < parent.SubtreeCount; subTreeIndex++) {
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108 | var child = parent.GetSubtree(subTreeIndex);
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109 | if (!(child.Symbol is Constant) && nodeImpacts[child].IsAlmost(0.0)) {
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110 | SwitchNodeWithReplacementNode(parent, subTreeIndex);
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111 | }
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112 | }
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113 | }
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114 | }
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115 | PaintModel();
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116 | }
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117 |
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118 | private void CalculateReplacementNodesAndNodeImpacts(ISymbolicExpressionTree tree) {
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119 | var replacementValues = CalculateReplacementValues(tree);
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120 | foreach (var pair in replacementValues.Where(pair => !(pair.Key is ConstantTreeNode))) {
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121 | replacementNodes[pair.Key] = MakeConstantTreeNode(pair.Value);
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122 | }
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123 | nodeImpacts = CalculateImpactValues(tree);
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124 |
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125 | if (!updateInProgress) {
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126 | // automatically fold all branches with impact = 0
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127 | List<ISymbolicExpressionTreeNode> nodeList = tree.Root.GetSubtree(0).IterateNodesPrefix().ToList();
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128 | foreach (var parent in nodeList) {
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129 | for (int subTreeIndex = 0; subTreeIndex < parent.SubtreeCount; subTreeIndex++) {
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130 | var child = parent.GetSubtree(subTreeIndex);
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131 | if (!(child.Symbol is Constant) && nodeImpacts[child].IsAlmost(0.0)) {
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132 | SwitchNodeWithReplacementNode(parent, subTreeIndex);
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133 | }
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134 | }
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135 | }
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136 | }
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137 | PaintModel();
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138 | }
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139 |
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140 | private void PaintModel() {
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141 | // show only interesting part of solution
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142 | treeChart.Tree = model.Root.SubtreeCount > 1 ? new SymbolicExpressionTree(model.Root) : new SymbolicExpressionTree(model.Root.GetSubtree(0).GetSubtree(0));
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143 | PaintNodeImpacts();
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144 | }
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145 |
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146 | protected abstract Dictionary<ISymbolicExpressionTreeNode, double> CalculateReplacementValues(ISymbolicExpressionTree tree);
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147 | protected abstract Dictionary<ISymbolicExpressionTreeNode, double> CalculateImpactValues(ISymbolicExpressionTree tree);
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148 | protected abstract void UpdateModel(ISymbolicExpressionTree tree);
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149 |
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150 | private ConstantTreeNode MakeConstantTreeNode(double value) {
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151 | Constant constant = new Constant();
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152 | constant.MinValue = value - 1;
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153 | constant.MaxValue = value + 1;
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154 | ConstantTreeNode constantTreeNode = (ConstantTreeNode)constant.CreateTreeNode();
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155 | constantTreeNode.Value = value;
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156 | return constantTreeNode;
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157 | }
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158 |
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159 | private void treeChart_SymbolicExpressionTreeNodeDoubleClicked(object sender, MouseEventArgs e) {
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160 | if (!treeChart.TreeValid) return;
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161 | var visualNode = (VisualSymbolicExpressionTreeNode)sender;
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162 | var symbExprTreeNode = (SymbolicExpressionTreeNode)visualNode.SymbolicExpressionTreeNode;
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163 | if (symbExprTreeNode == null) return;
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164 | var tree = model;
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165 | // check if the node value/weight has been altered
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166 | // if so, the first double click will return the node to its original value/weight/variable name
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167 | // the next double click will replace the ConstantNode with the original SymbolicExpressionTreeNode
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168 | if (originalVariableNames.ContainsKey(symbExprTreeNode)) {
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169 | var variable = (VariableTreeNode)symbExprTreeNode;
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170 | variable.VariableName = originalVariableNames[symbExprTreeNode];
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171 | originalVariableNames.Remove(variable);
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172 | updateInProgress = true;
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173 | UpdateModel(tree);
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174 | updateInProgress = false;
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175 | return;
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176 | }
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177 | if (originalValues.ContainsKey(symbExprTreeNode)) {
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178 | double value = originalValues[symbExprTreeNode];
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179 | if (symbExprTreeNode.Symbol is Constant)
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180 | ((ConstantTreeNode)symbExprTreeNode).Value = value;
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181 | else if (symbExprTreeNode.Symbol is Variable)
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182 | ((VariableTreeNode)symbExprTreeNode).Weight = value;
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183 | originalValues.Remove(symbExprTreeNode);
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184 | updateInProgress = true;
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185 | UpdateModel(tree);
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186 | updateInProgress = false;
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187 | return;
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188 | }
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189 | foreach (SymbolicExpressionTreeNode treeNode in tree.IterateNodesPostfix()) {
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190 | for (int i = 0; i < treeNode.SubtreeCount; i++) {
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191 | ISymbolicExpressionTreeNode subTree = treeNode.GetSubtree(i);
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192 | // only allow to replace nodes for which a replacement value is known (replacement value for ADF nodes are not available)
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193 | if (subTree == symbExprTreeNode && replacementNodes.ContainsKey(subTree)) {
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194 | SwitchNodeWithReplacementNode(treeNode, i);
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195 | // show only interesting part of solution
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196 | treeChart.Tree = tree.Root.SubtreeCount > 1 ? new SymbolicExpressionTree(tree.Root) : new SymbolicExpressionTree(tree.Root.GetSubtree(0).GetSubtree(0));
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197 | updateInProgress = true;
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198 | UpdateModel(tree);
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199 | updateInProgress = false;
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200 | return; // break all loops
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201 | }
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202 | }
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203 | }
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204 | }
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205 |
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206 | private void treeChart_SymbolicExpressionTreeNodeClicked(object sender, MouseEventArgs e) {
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207 | // do stuff
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208 | }
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209 |
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210 | private void treeChart_SymbolicExpressionTreeChanged(object sender, EventArgs e) {
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211 | updateInProgress = true;
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212 | UpdateModel(model);
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213 | updateInProgress = false;
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214 | CalculateReplacementNodesAndNodeImpacts();
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215 | }
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216 |
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217 | private void treeChart_SymbolicExpressionTreeNodeChanged(object sender, EventArgs e) {
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218 | var dialog = (ValueChangeDialog)sender;
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219 | bool flag1 = false, flag2 = false;
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220 | if (dialog.Content is VariableTreeNode) {
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221 | var variable = (VariableTreeNode)dialog.Content;
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222 | var weight = double.Parse(dialog.NewValueTextBox.Text);
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223 | var name = (string)dialog.VariableNameComboBox.SelectedItem;
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224 | if (!variable.Weight.Equals(weight)) {
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225 | flag1 = true;
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226 | originalValues[variable] = variable.Weight;
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227 | variable.Weight = weight;
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228 | }
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229 | if (!variable.VariableName.Equals(name)) {
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230 | flag2 = true;
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231 | originalVariableNames[variable] = variable.VariableName;
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232 | variable.VariableName = name;
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233 | }
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234 | } else if (dialog.Content is ConstantTreeNode) {
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235 | var constant = (ConstantTreeNode)dialog.Content;
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236 | var value = double.Parse(dialog.NewValueTextBox.Text);
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237 | if (!constant.Value.Equals(value)) {
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238 | flag1 = true;
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239 | originalValues[constant] = constant.Value;
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240 | constant.Value = value;
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241 |
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242 | }
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243 | }
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244 | if (flag1 || flag2) {
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245 | CalculateReplacementNodesAndNodeImpacts();
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246 | PaintModel();
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247 | }
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248 | }
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249 |
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250 | private void treeChart_SymbolicExpressionTreeNodeInserted(object sender, EventArgs e) {
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251 | }
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252 |
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253 | private void SwitchNodeWithReplacementNode(ISymbolicExpressionTreeNode parent, int subTreeIndex) {
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254 | ISymbolicExpressionTreeNode subTree = parent.GetSubtree(subTreeIndex);
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255 | parent.RemoveSubtree(subTreeIndex);
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256 | if (replacementNodes.ContainsKey(subTree)) {
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257 | var replacementNode = replacementNodes[subTree];
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258 | parent.InsertSubtree(subTreeIndex, replacementNode);
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259 | // exchange key and value
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260 | replacementNodes.Remove(subTree);
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261 | replacementNodes.Add(replacementNode, subTree);
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262 | }
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263 | }
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264 |
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265 | private void PaintNodeImpacts() {
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266 | var impacts = nodeImpacts.Values;
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267 | double max = impacts.Max();
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268 | double min = impacts.Min();
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269 | foreach (ISymbolicExpressionTreeNode treeNode in model.IterateNodesPostfix()) {
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270 | VisualSymbolicExpressionTreeNode visualTree = treeChart.GetVisualSymbolicExpressionTreeNode(treeNode);
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271 | bool flag1 = replacementNodes.ContainsKey(treeNode);
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272 | bool flag2 = originalValues.ContainsKey(treeNode);
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273 | bool flag3 = treeNode is ConstantTreeNode;
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274 |
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275 | if (flag2) // constant or variable node was changed
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276 | visualTree.ToolTip += Environment.NewLine + "Original value: " + originalValues[treeNode];
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277 | else if (flag1 && flag3) // symbol node was folded to a constant
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278 | visualTree.ToolTip += Environment.NewLine + "Original node: " + replacementNodes[treeNode];
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279 |
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280 | if (!(treeNode is ConstantTreeNode) && nodeImpacts.ContainsKey(treeNode)) {
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281 | double impact = nodeImpacts[treeNode];
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282 |
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283 | // impact = 0 if no change
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284 | // impact < 0 if new solution is better
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285 | // impact > 0 if new solution is worse
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286 | if (impact < 0.0) {
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287 | // min is guaranteed to be < 0
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288 | visualTree.FillColor = Color.FromArgb((int)(impact / min * 255), Color.Red);
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289 | } else if (impact.IsAlmost(0.0)) {
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290 | visualTree.FillColor = Color.White;
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291 | } else {
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292 | // max is guaranteed to be > 0
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293 | visualTree.FillColor = Color.FromArgb((int)(impact / max * 255), Color.Green);
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294 | }
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295 | visualTree.ToolTip += Environment.NewLine + "Node impact: " + impact;
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296 | var constantReplacementNode = replacementNodes[treeNode] as ConstantTreeNode;
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297 | if (constantReplacementNode != null) {
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298 | visualTree.ToolTip += Environment.NewLine + "Replacement value: " + constantReplacementNode.Value;
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299 | }
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300 | }
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301 | }
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302 | this.PaintCollapsedNodes();
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303 | this.treeChart.Repaint();
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304 | }
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305 |
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306 | private void PaintCollapsedNodes() {
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307 | foreach (ISymbolicExpressionTreeNode treeNode in model.IterateNodesPostfix()) {
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308 | bool flag1 = replacementNodes.ContainsKey(treeNode);
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309 | bool flag2 = originalValues.ContainsKey(treeNode);
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310 | if (flag1 && treeNode is ConstantTreeNode) {
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311 | this.treeChart.GetVisualSymbolicExpressionTreeNode(treeNode).LineColor = flag2 ? Color.DarkViolet : Color.DarkOrange;
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312 | } else if (flag2) {
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313 | this.treeChart.GetVisualSymbolicExpressionTreeNode(treeNode).LineColor = Color.DodgerBlue;
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314 | }
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315 | }
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316 | }
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317 |
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318 | private void btnSimplify_Click(object sender, EventArgs e) {
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319 | var simplifier = new SymbolicDataAnalysisExpressionTreeSimplifier();
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320 | var simplifiedExpressionTree = simplifier.Simplify(model);
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321 | UpdateModel(simplifiedExpressionTree);
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322 | }
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323 |
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324 | protected abstract void btnOptimizeConstants_Click(object sender, EventArgs e);
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325 |
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326 | private void btnPrune_Click(object sender, EventArgs e) {
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327 | btnPrune.Enabled = false;
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328 | backgroundWorker1.RunWorkerAsync();
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329 | }
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330 |
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331 | private void backgroundWorker1_DoWork(object sender, DoWorkEventArgs e) {
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332 | var worker = sender as BackgroundWorker;
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333 | PruneTree(worker);
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334 | }
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335 |
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336 | private void PruneTree(BackgroundWorker worker) {
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337 | var tree = model;
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338 | // get all tree nodes starting from depth 2 (below the root and start nodes)
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339 | foreach (var node in GetNodesAtDepth(tree, new IntRange(2, tree.Depth))) {
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340 | if (worker.CancellationPending)
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341 | break; // pruning cancelled
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342 | if (!(node.Symbol is Constant) && nodeImpacts.ContainsKey(node) && nodeImpacts[node] < 0.001) {
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343 | SwitchNodeWithReplacementNode(node.Parent, node.Parent.IndexOfSubtree(node));
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344 | nodeImpacts = CalculateImpactValues(tree);
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345 | // we do not refresh the replacementValues because they won't change when folding nodes with such low impacts (<0.001)
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346 | }
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347 | }
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348 | }
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349 |
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350 | private void backgroundWorker1_RunWorkerCompleted(object sender, RunWorkerCompletedEventArgs e) {
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351 | if (e.Cancelled) {
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352 | // The user canceled the operation.
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353 | } else if (e.Error != null) {
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354 | // There was an error during the operation.
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355 | // Error-handling
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356 | } else {
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357 | // The operation completed normally. We can update the model
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358 | updateInProgress = true;
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359 | UpdateModel(model);
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360 | updateInProgress = false;
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361 | }
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362 | btnPrune.Enabled = true;
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363 | }
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364 |
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365 | #region helpers
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366 | private static IEnumerable<ISymbolicExpressionTreeNode> GetNodesAtDepth(ISymbolicExpressionTree tree, IntRange depthRange) {
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367 | var treeDepth = tree.Root.GetDepth();
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368 | return from node in tree.Root.IterateNodesPostfix()
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369 | let depth = treeDepth - node.GetDepth()
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370 | where depthRange.Start <= depth
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371 | where depth <= depthRange.End
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372 | select node;
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373 | }
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374 | #endregion
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375 | }
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376 | }
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