275 lines
7.2 KiB
C#
275 lines
7.2 KiB
C#
//--------------------------------------------------------------------------------------------------------------------------------
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// Cartoon FX
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// (c) 2012-2020 Jean Moreno
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//--------------------------------------------------------------------------------------------------------------------------------
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using System.Collections.Generic;
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using System.IO;
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// Parse conditional expressions from CFXR_MaterialInspector to show/hide some parts of the UI easily
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namespace CartoonFX
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{
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public static class ExpressionParser
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{
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public delegate bool EvaluateFunction(string content);
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//--------------------------------------------------------------------------------------------------------------------------------
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// Main Function to use
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static public bool EvaluateExpression(string expression, EvaluateFunction evalFunction)
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{
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//Remove white spaces and double && ||
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string cleanExpr = "";
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for(int i = 0; i < expression.Length; i++)
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{
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switch(expression[i])
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{
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case ' ': break;
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case '&': cleanExpr += expression[i]; i++; break;
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case '|': cleanExpr += expression[i]; i++; break;
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default: cleanExpr += expression[i]; break;
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}
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}
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List<Token> tokens = new List<Token>();
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StringReader reader = new StringReader(cleanExpr);
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Token t = null;
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do
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{
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t = new Token(reader);
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tokens.Add(t);
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} while(t.type != Token.TokenType.EXPR_END);
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List<Token> polishNotation = Token.TransformToPolishNotation(tokens);
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var enumerator = polishNotation.GetEnumerator();
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enumerator.MoveNext();
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Expression root = MakeExpression(ref enumerator, evalFunction);
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return root.Evaluate();
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}
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//--------------------------------------------------------------------------------------------------------------------------------
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// Expression Token
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public class Token
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{
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static Dictionary<char, KeyValuePair<TokenType, string>> typesDict = new Dictionary<char, KeyValuePair<TokenType, string>>()
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{
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{'(', new KeyValuePair<TokenType, string>(TokenType.OPEN_PAREN, "(")},
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{')', new KeyValuePair<TokenType, string>(TokenType.CLOSE_PAREN, ")")},
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{'!', new KeyValuePair<TokenType, string>(TokenType.UNARY_OP, "NOT")},
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{'&', new KeyValuePair<TokenType, string>(TokenType.BINARY_OP, "AND")},
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{'|', new KeyValuePair<TokenType, string>(TokenType.BINARY_OP, "OR")}
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};
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public enum TokenType
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{
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OPEN_PAREN,
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CLOSE_PAREN,
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UNARY_OP,
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BINARY_OP,
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LITERAL,
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EXPR_END
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}
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public TokenType type;
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public string value;
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public Token(StringReader s)
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{
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int c = s.Read();
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if(c == -1)
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{
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type = TokenType.EXPR_END;
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value = "";
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return;
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}
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char ch = (char)c;
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//Special case: solve bug where !COND_FALSE_1 && COND_FALSE_2 would return True
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bool embeddedNot = (ch == '!' && s.Peek() != '(');
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if(typesDict.ContainsKey(ch) && !embeddedNot)
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{
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type = typesDict[ch].Key;
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value = typesDict[ch].Value;
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}
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else
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{
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string str = "";
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str += ch;
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while(s.Peek() != -1 && !typesDict.ContainsKey((char)s.Peek()))
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{
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str += (char)s.Read();
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}
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type = TokenType.LITERAL;
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value = str;
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}
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}
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static public List<Token> TransformToPolishNotation(List<Token> infixTokenList)
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{
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Queue<Token> outputQueue = new Queue<Token>();
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Stack<Token> stack = new Stack<Token>();
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int index = 0;
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while(infixTokenList.Count > index)
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{
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Token t = infixTokenList[index];
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switch(t.type)
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{
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case Token.TokenType.LITERAL:
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outputQueue.Enqueue(t);
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break;
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case Token.TokenType.BINARY_OP:
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case Token.TokenType.UNARY_OP:
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case Token.TokenType.OPEN_PAREN:
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stack.Push(t);
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break;
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case Token.TokenType.CLOSE_PAREN:
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while(stack.Peek().type != Token.TokenType.OPEN_PAREN)
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{
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outputQueue.Enqueue(stack.Pop());
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}
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stack.Pop();
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if(stack.Count > 0 && stack.Peek().type == Token.TokenType.UNARY_OP)
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{
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outputQueue.Enqueue(stack.Pop());
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}
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break;
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default:
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break;
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}
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index++;
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}
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while(stack.Count > 0)
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{
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outputQueue.Enqueue(stack.Pop());
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}
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var list = new List<Token>(outputQueue);
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list.Reverse();
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return list;
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}
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}
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//--------------------------------------------------------------------------------------------------------------------------------
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// Boolean Expression Classes
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public abstract class Expression
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{
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public abstract bool Evaluate();
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}
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public class ExpressionLeaf : Expression
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{
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private string content;
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private EvaluateFunction evalFunction;
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public ExpressionLeaf(EvaluateFunction _evalFunction, string _content)
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{
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this.evalFunction = _evalFunction;
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this.content = _content;
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}
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override public bool Evaluate()
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{
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//embedded not, see special case in Token declaration
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if(content.StartsWith("!"))
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{
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return !this.evalFunction(content.Substring(1));
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}
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return this.evalFunction(content);
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}
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}
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public class ExpressionAnd : Expression
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{
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private Expression left;
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private Expression right;
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public ExpressionAnd(Expression _left, Expression _right)
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{
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this.left = _left;
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this.right = _right;
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}
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override public bool Evaluate()
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{
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return left.Evaluate() && right.Evaluate();
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}
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}
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public class ExpressionOr : Expression
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{
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private Expression left;
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private Expression right;
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public ExpressionOr(Expression _left, Expression _right)
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{
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this.left = _left;
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this.right = _right;
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}
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override public bool Evaluate()
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{
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return left.Evaluate() || right.Evaluate();
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}
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}
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public class ExpressionNot : Expression
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{
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private Expression expr;
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public ExpressionNot(Expression _expr)
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{
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this.expr = _expr;
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}
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override public bool Evaluate()
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{
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return !expr.Evaluate();
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}
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}
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static public Expression MakeExpression(ref List<Token>.Enumerator polishNotationTokensEnumerator, EvaluateFunction _evalFunction)
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{
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if(polishNotationTokensEnumerator.Current.type == Token.TokenType.LITERAL)
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{
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Expression lit = new ExpressionLeaf(_evalFunction, polishNotationTokensEnumerator.Current.value);
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polishNotationTokensEnumerator.MoveNext();
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return lit;
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}
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else
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{
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if(polishNotationTokensEnumerator.Current.value == "NOT")
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{
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polishNotationTokensEnumerator.MoveNext();
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Expression operand = MakeExpression(ref polishNotationTokensEnumerator, _evalFunction);
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return new ExpressionNot(operand);
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}
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else if(polishNotationTokensEnumerator.Current.value == "AND")
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{
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polishNotationTokensEnumerator.MoveNext();
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Expression left = MakeExpression(ref polishNotationTokensEnumerator, _evalFunction);
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Expression right = MakeExpression(ref polishNotationTokensEnumerator, _evalFunction);
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return new ExpressionAnd(left, right);
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}
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else if(polishNotationTokensEnumerator.Current.value == "OR")
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{
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polishNotationTokensEnumerator.MoveNext();
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Expression left = MakeExpression(ref polishNotationTokensEnumerator, _evalFunction);
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Expression right = MakeExpression(ref polishNotationTokensEnumerator, _evalFunction);
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return new ExpressionOr(left, right);
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}
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}
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return null;
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}
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}
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} |