[13645] | 1 | #region License Information
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| 2 | /* HeuristicLab
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[14185] | 3 | * Copyright (C) 2002-2016 Heuristic and Evolutionary Algorithms Laboratory (HEAL)
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[13645] | 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 | using System;
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| 22 | using System.Diagnostics.Contracts;
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| 23 | using System.Linq;
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| 24 |
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| 25 | using HeuristicLab.Encodings.SymbolicExpressionTreeEncoding;
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| 26 | using HeuristicLab.Problems.DataAnalysis.Symbolic;
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| 27 |
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| 28 | namespace HeuristicLab.Algorithms.DataAnalysis.MctsSymbolicRegression {
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| 29 |
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| 30 | // translates byte code to a symbolic expression tree
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| 31 | internal class SymbolicExpressionTreeGenerator {
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| 32 | const int MaxStackSize = 100;
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| 33 | private readonly ISymbolicExpressionTreeNode[] stack;
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| 34 | private readonly ConstantTreeNode const0;
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| 35 | private readonly ConstantTreeNode const1;
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| 36 | private readonly Addition addSy;
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| 37 | private readonly Multiplication mulSy;
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| 38 | private readonly Exponential expSy;
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| 39 | private readonly Logarithm logSy;
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| 40 | private readonly Division divSy;
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| 41 | private readonly VariableTreeNode varNode;
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| 42 | private readonly string[] variableNames;
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| 43 | private readonly StartSymbol startSy;
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| 44 | private readonly ProgramRootSymbol progRootSy;
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| 45 |
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| 46 | public SymbolicExpressionTreeGenerator(string[] variableNames) {
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| 47 | stack = new ISymbolicExpressionTreeNode[MaxStackSize];
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| 48 | var grammar = new TypeCoherentExpressionGrammar();
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| 49 | this.variableNames = variableNames;
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| 50 |
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| 51 | grammar.ConfigureAsDefaultRegressionGrammar();
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| 52 | const0 = (ConstantTreeNode)grammar.Symbols.OfType<Constant>().First().CreateTreeNode();
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| 53 | const0.Value = 0;
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| 54 | const1 = (ConstantTreeNode)grammar.Symbols.OfType<Constant>().First().CreateTreeNode();
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| 55 | const1.Value = 1;
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| 56 | varNode = (VariableTreeNode)grammar.Symbols.OfType<Variable>().First().CreateTreeNode();
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| 57 |
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| 58 | addSy = grammar.AllowedSymbols.OfType<Addition>().First();
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| 59 | mulSy = grammar.AllowedSymbols.OfType<Multiplication>().First();
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| 60 | logSy = grammar.AllowedSymbols.OfType<Logarithm>().First();
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| 61 | expSy = grammar.AllowedSymbols.OfType<Exponential>().First();
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| 62 | divSy = grammar.AllowedSymbols.OfType<Division>().First();
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| 63 |
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| 64 | progRootSy = grammar.AllowedSymbols.OfType<ProgramRootSymbol>().First();
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| 65 | startSy = grammar.AllowedSymbols.OfType<StartSymbol>().First();
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| 66 | }
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| 67 |
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| 68 | public ISymbolicExpressionTreeNode Exec(byte[] code, double[] consts, int nParams, double[] scalingFactor, double[] scalingOffset) {
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| 69 | int topOfStack = -1;
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| 70 | int pc = 0;
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| 71 | int nextParamIdx = -1;
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| 72 | OpCodes op;
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| 73 | short arg;
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| 74 | while (true) {
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| 75 | ReadNext(code, ref pc, out op, out arg);
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| 76 | switch (op) {
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| 77 | case OpCodes.Nop: break;
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| 78 | case OpCodes.LoadConst0: {
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| 79 | ++topOfStack;
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| 80 | stack[topOfStack] = (ISymbolicExpressionTreeNode)const0.Clone();
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| 81 | break;
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| 82 | }
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| 83 | case OpCodes.LoadConst1: {
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| 84 | ++topOfStack;
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| 85 | stack[topOfStack] = (ISymbolicExpressionTreeNode)const1.Clone();
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| 86 | break;
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| 87 | }
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| 88 | case OpCodes.LoadParamN: {
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| 89 | ++topOfStack;
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| 90 | var p = (ConstantTreeNode)const1.Clone(); // value will be tuned later (evaluator and tree generator both use 1 as initial values)
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| 91 | p.Value = consts[++nextParamIdx];
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| 92 | stack[topOfStack] = p;
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| 93 | break;
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| 94 | }
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| 95 | case OpCodes.LoadVar:
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| 96 | ++topOfStack;
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| 97 | if (scalingOffset != null) {
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| 98 | var sumNode = addSy.CreateTreeNode();
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| 99 | var varNode = (VariableTreeNode)this.varNode.Clone();
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| 100 | var constNode = (ConstantTreeNode)const0.Clone();
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| 101 | varNode.Weight = scalingFactor[arg];
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| 102 | varNode.VariableName = variableNames[arg];
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| 103 | constNode.Value = scalingOffset[arg];
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| 104 | sumNode.AddSubtree(varNode);
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| 105 | sumNode.AddSubtree(constNode);
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| 106 | stack[topOfStack] = sumNode;
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| 107 | } else {
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| 108 | var varNode = (VariableTreeNode)this.varNode.Clone();
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| 109 | varNode.Weight = 1.0;
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| 110 | varNode.VariableName = variableNames[arg];
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| 111 | stack[topOfStack] = varNode;
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| 112 | }
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| 113 | break;
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| 114 | case OpCodes.Add: {
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[13652] | 115 | var t1 = stack[topOfStack - 1];
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| 116 | var t2 = stack[topOfStack];
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[13645] | 117 | topOfStack--;
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[13652] | 118 | if (t1.Symbol is Addition) {
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| 119 | t1.AddSubtree(t2);
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[13645] | 120 | } else {
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| 121 | var addNode = addSy.CreateTreeNode();
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| 122 | addNode.AddSubtree(t1);
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| 123 | addNode.AddSubtree(t2);
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| 124 | stack[topOfStack] = addNode;
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| 125 | }
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| 126 | break;
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| 127 | }
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| 128 | case OpCodes.Mul: {
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[13652] | 129 | var t1 = stack[topOfStack - 1];
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| 130 | var t2 = stack[topOfStack];
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[13645] | 131 | topOfStack--;
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[13652] | 132 | if (t1.Symbol is Multiplication) {
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| 133 | t1.AddSubtree(t2);
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[13645] | 134 | } else {
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| 135 | var mulNode = mulSy.CreateTreeNode();
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| 136 | mulNode.AddSubtree(t1);
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| 137 | mulNode.AddSubtree(t2);
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| 138 | stack[topOfStack] = mulNode;
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| 139 | }
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| 140 | break;
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| 141 | }
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| 142 | case OpCodes.Log: {
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| 143 | var v1 = stack[topOfStack];
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| 144 | var logNode = logSy.CreateTreeNode();
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| 145 | logNode.AddSubtree(v1);
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| 146 | stack[topOfStack] = logNode;
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| 147 | break;
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| 148 | }
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| 149 | case OpCodes.Exp: {
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| 150 | var v1 = stack[topOfStack];
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| 151 | var expNode = expSy.CreateTreeNode();
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| 152 | expNode.AddSubtree(v1);
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| 153 | stack[topOfStack] = expNode;
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| 154 | break;
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| 155 | }
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| 156 | case OpCodes.Inv: {
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| 157 | var v1 = stack[topOfStack];
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| 158 | var divNode = divSy.CreateTreeNode();
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| 159 | divNode.AddSubtree(v1);
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| 160 | stack[topOfStack] = divNode;
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| 161 | break;
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| 162 | }
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| 163 | case OpCodes.Exit:
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| 164 | Contract.Assert(topOfStack == 0);
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| 165 | var rootNode = progRootSy.CreateTreeNode();
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| 166 | var startNode = startSy.CreateTreeNode();
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| 167 | startNode.AddSubtree(stack[topOfStack]);
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| 168 | rootNode.AddSubtree(startNode);
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| 169 | return rootNode;
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| 170 | }
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| 171 | }
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| 172 | }
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| 173 |
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| 174 | private void ReadNext(byte[] code, ref int pc, out OpCodes op, out short s) {
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| 175 | op = (OpCodes)Enum.ToObject(typeof(OpCodes), code[pc++]);
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| 176 | s = 0;
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| 177 | if (op == OpCodes.LoadVar) {
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[14142] | 178 | s = (short)((code[pc] << 8) | code[pc + 1]);
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[13645] | 179 | pc += 2;
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| 180 | }
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| 181 | }
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| 182 | }
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| 183 | }
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