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/**
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*
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* OOAS Compiler (Deprecated)
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*
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* Copyright 2015, Institute for Software Technology, Graz University of
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* Technology. Portions are copyright 2015 by the AIT Austrian Institute
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* of Technology. All rights reserved.
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*
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* SEE THE "LICENSE" FILE FOR THE TERMS UNDER WHICH THIS FILE IS PROVIDED.
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*
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* Please notice that this version of the OOAS compiler is considered de-
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* precated. Only the Java version is maintained.
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*
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* Contributors:
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* Willibald Krenn (TU Graz/AIT)
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* Stefan Tiran (TU Graz/AIT)
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*/
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using System;
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using System.Collections.Generic;
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using System.Text;
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using TUG.Mogentes.Codegen.Prolog;
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namespace TUG.Mogentes.Codegen.PrologSymbolic
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{
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public class OoaPrologSymbolicStatement : OoaPrologStatement
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{
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public new class Factory : OoaPrologStatement.Factory
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{
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public override OoaPrologStatement create(
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OoaPrologExpression.Factory exprFactory,
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OoaPrologIdentifier.Factory idFactory,
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OoaPrologType.Factory typeFactory)
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{
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return new OoaPrologSymbolicStatement(exprFactory, idFactory, typeFactory);
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}
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}
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public override void visit(Assignment assignment)
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{
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if (assignment.nondetExpression != null)
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throw new NotImplementedException();
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LinkedListNode<Expression> aPlace = assignment.places.First;
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LinkedListNode<Expression> aValue = assignment.values.First;
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List<string> assignments = new List<string>();
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while (aPlace != null)
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{
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OoaPrologExpression prologPlace = createExpressionVisitor(true);
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aPlace.Value.Accept(prologPlace);
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System.Diagnostics.Debug.Assert(prologPlace.tmpVariables.Count == 1);
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OoaPrologExpression prologValue = createExpressionVisitor();
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aValue.Value.Accept(prologValue);
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System.Diagnostics.Debug.Assert(prologValue.tmpVariables.Count == 1);
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m_emitter.Append(prologValue.ToString());
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if (aPlace.Value.kind == ExpressionKind.Access &&
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((AccessExpression)aPlace.Value).right.kind == ExpressionKind.Identifier &&
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((IdentifierExpression)((AccessExpression)aPlace.Value).right).identifier.kind == IdentifierKind.AttributeIdentifier)
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{
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//access to attribute is always 'self.XY'...
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assignments.Add(String.Format("{0} := {1}", prologPlace.tmpVariables[0], prologValue.tmpVariables[0]));
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}
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else
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if (prologPlace.tmpVariables[0] == "RESULT")
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assignments.Add(String.Format("unify( RESULT = {0})", prologValue.tmpVariables[0]));
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// else if (aPlace.Value.type.kind == TypeKind.IntType)
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// assignments.Add(String.Format("{0} #= {1}", prologPlace.tmpVariables[0], prologValue.tmpVariables[0]));
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else
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assignments.Add(String.Format("{0} = {1}", prologPlace.tmpVariables[0], prologValue.tmpVariables[0]));
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if (prologPlace.ToString().Length > 0)
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{
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string place = prologPlace.ToString();
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place = place.Trim();
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if (place.EndsWith(","))
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place = place.Substring(0, place.Length - 1);
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assignments.Add(place);
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}
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aPlace = aPlace.Next;
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aValue = aValue.Next;
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}
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int pos = 0;
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foreach (var s in assignments)
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{
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if (pos != 0)
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m_emitter.Append(",");
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pos++;
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m_emitter.Append(s);
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}
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}
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public override void visit(SeqBlock seqBlock)
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{
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int y = 0;
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if (seqBlock.symbols.symbolList.Count > 0)
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{
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m_emitter.Append(" [");
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foreach (Identifier sym in seqBlock.symbols.symbolList)
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{
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if (y != 0)
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m_emitter.AppendLine(", ");
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else
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y++;
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OoaPrologType atype = createTypeVisitor();
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sym.type.Accept(atype);
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OoaPrologIdentifier anIdent = createIdentifierVisitor();
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sym.Accept(anIdent);
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m_emitter.Append(String.Format("{0}:{1}", anIdent.ToString(), atype.ToString()));
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}
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m_emitter.Append("]: ( ");
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}
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y = 0;
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foreach (Statement x in seqBlock.statements)
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{
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if (y != 0)
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m_emitter.AppendLine(", ");
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else
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y++;
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m_emitter.Append("(");
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VisitSub(x, seqBlock);
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m_emitter.Append(")");
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}
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if (seqBlock.symbols.symbolList.Count > 0)
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m_emitter.Append(")");
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}
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protected OoaPrologSymbolicStatement(
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OoaPrologExpression.Factory exprFactory,
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OoaPrologIdentifier.Factory idFactory,
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OoaPrologType.Factory typeFactory)
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: base(exprFactory, idFactory, typeFactory)
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{
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}
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}
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}
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