JavaPatternMatching/src/mycompiler/mystatement/DoubleLiteral.java

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2013-10-18 11:33:46 +00:00
// ino.module.IntLiteral.8635.package
package mycompiler.mystatement;
// ino.end
// ino.module.IntLiteral.8635.import
import java.util.Hashtable;
import java.util.Vector;
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import mycompiler.SyntaxTreeNode;
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import mycompiler.mybytecode.ClassFile;
import mycompiler.mybytecode.CodeAttribute;
import mycompiler.mybytecode.JVMCode;
import mycompiler.myclass.Class;
import mycompiler.myexception.CTypeReconstructionException;
import mycompiler.myexception.JVMCodeException;
import mycompiler.mytype.DoubleType;
import mycompiler.mytype.GenericTypeVar;
import mycompiler.mytype.IntegerType;
import mycompiler.mytype.LongType;
import mycompiler.mytype.RefType;
import mycompiler.mytype.Type;
import mycompiler.mytypereconstruction.CSupportData;
import mycompiler.mytypereconstruction.CTriple;
import mycompiler.mytypereconstruction.set.CSubstitutionSet;
import mycompiler.mytypereconstruction.set.CTripleSet;
import mycompiler.mytypereconstruction.set.CTypeAssumptionSet;
import mycompiler.mytypereconstruction.typeassumption.CTypeAssumption;
import org.apache.log4j.Logger;
import sun.reflect.generics.reflectiveObjects.NotImplementedException;
// ino.end
import typinferenz.ConstraintsSet;
import typinferenz.JavaCodeResult;
import typinferenz.ResultSet;
import typinferenz.assumptions.TypeAssumptions;
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// ino.class.IntLiteral.25447.declaration
public class DoubleLiteral extends Literal
// ino.end
// ino.class.IntLiteral.25447.body
{
// ino.attribute.Int.25451.declaration
private double Double;
// ino.end
// ino.attribute.parserlog.25454.declaration
protected static Logger parserlog = Logger.getLogger("parser");
// ino.end
// ino.method.IntLiteral.25457.definition
public DoubleLiteral()
// ino.end
// ino.method.IntLiteral.25457.body
{
super(-1,-1);
this.setType(new DoubleType());
}
// ino.end
// ino.method.set_Int.25460.definition
public void set_Double(double i)
// ino.end
// ino.method.set_Int.25460.body
{
this.Double = i;
}
// ino.end
// ino.method.get_Int.25463.definition
public double get_Double()
// ino.end
// ino.method.get_Int.25463.body
{
return Double;
}
// ino.end
// ino.method.sc_check.25466.definition
public void sc_check(Vector<Class> classname, Hashtable ch, Hashtable<String, String> bh, boolean ext, Hashtable parach, Hashtable<String, Hashtable> parabh)
// ino.end
// ino.method.sc_check.25466.body
{
parserlog.debug("SC -> Semantik-Check f<>r DoubleLiteral wurde aufgerufen --> nichts zu tun!");
}
// ino.end
// ino.method.get_Name.25469.definition
public String get_Name()
// ino.end
// ino.method.get_Name.25469.body
{
return null;
}
// ino.end
// ino.method.codegen.25472.definition
public void codegen(ClassFile classfile, CodeAttribute code, Vector paralist)
throws JVMCodeException
// ino.end
// ino.method.codegen.25472.body
{
/*if (Int >= 0 && Int <= 5) // Kleine Werte lassen sich direkt realisieren
code.add_code(JVMCode.nconst_n("int", Int));
else if (Int >= -128 && Int <= 127) { // Aenderung des Codes fuer etwas groessere Werte
code.add_code(JVMCode.bipush);
code.add_code_byte((byte) Int);
} else if (Int >= -32768 && Int <= 32767) { // Aenderung des Codes fuer groessere Werte
code.add_code(JVMCode.sipush);
code.add_code_short((short) Int);
} else { // Ablage als Konstante
int index = classfile.add_CONSTANT_Integer_info(Int);
if (index < 256) {
code.add_code(JVMCode.ldc);
code.add_code_byte((byte) index);
} else {
code.add_code(JVMCode.ldc_w);
code.add_code_short((short) index);
}
}
// Auto-Boxing: Da int nicht so nicht weiterverwendet werden kann,
// in Integer umwandeln.
if (!getPrimitiveFlag()) {
code.add_code(JVMCode.invokestatic);
code.add_code_short(classfile.add_method_ref("java/lang/Integer", "valueOf", "(I)Ljava/lang/Integer;"));
}*/
throw new JVMCodeException("Bytecode nicht implementiert");
}
// ino.end
// ino.method.ConstantCodegen.25475.definition
public short ConstantCodegen(ClassFile classfile)
throws JVMCodeException
// ino.end
// ino.method.ConstantCodegen.25475.body
{
//return (short) classfile.add_CONSTANT_Integer_info(get_Int());
throw new JVMCodeException("Bytecode nicht implementiert");
}
// ino.end
// ino.method.TRStatement.25478.definition
public CTripleSet TRStatement(CSubstitutionSet sigma, CTypeAssumptionSet V, CSupportData supportData)
// ino.end
// ino.method.TRStatement.25478.body
{
throw CTypeReconstructionException.createNotImplementedException();
}
// ino.end
// ino.method.TRExp.25481.defdescription type=javadoc
/**
* Workaround: <EFBFBD>berschreibt Methode TRExp aus der Super-Klasse
* <code>Literal</code>, weil die Implementierung von Unify (noch) nicht mit
* Basetypes umgehen kann.<br/>
* Anstatt den Basetype <code>IntegerType</code> zur<EFBFBD>ckzugeben, wird ein
* <code>RefType</code> zur<EFBFBD>ckgegeben.<br/>
* Diese Methode kann sp<EFBFBD>ter entfernt werden, sodass automatisch die Methode der
* Super-Klasse verwendet wird.
* <br>Author: J<EFBFBD>rg B<EFBFBD>uerle
* @param sigma
* @param V
* @param supportData
* @return
*/
// ino.end
// ino.method.TRExp.25481.definition
public CTripleSet TRExp(CSubstitutionSet sigma, CTypeAssumptionSet V, CSupportData supportData)
// ino.end
// ino.method.TRExp.25481.body
{
CTripleSet tripleSet = new CTripleSet();
tripleSet.addElement(new CTriple(sigma, new RefType("java.lang.Double",getOffset()),V));
return tripleSet;
}
// ino.end
// ino.method.toString.25484.defdescription type=javadoc
/**
* <br/>Author: Martin Pl<EFBFBD>micke
* @return
*/
// ino.end
// ino.method.toString.25484.definition
public String toString()
// ino.end
// ino.method.toString.25484.body
{
return type.toString() + " " + Double;
}
// ino.end
// ino.method.wandleRefTypeAttributes2GenericAttributes.25487.definition
public void wandleRefTypeAttributes2GenericAttributes(Vector<Type> paralist, Vector<GenericTypeVar> genericMethodParameters)
// ino.end
// ino.method.wandleRefTypeAttributes2GenericAttributes.25487.body
{
}
// ino.end
@Override
public ConstraintsSet TYPEExpr(TypeAssumptions assumptions) {
// TODO Auto-generated method stub
return null;
}
@Override
public JavaCodeResult printJavaCode(ResultSet resultSet) {
// TODO Auto-generated method stub
return null;
}
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@Override
public Vector<SyntaxTreeNode> getChildren() {
Vector<SyntaxTreeNode> ret = new Vector<SyntaxTreeNode>();
return ret;
}
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}
// ino.end