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java.lang.Object scale.common.Root scale.score.Note scale.score.expr.Expr scale.score.expr.BinaryExpr scale.score.expr.BitOrExpr
public class BitOrExpr
This class represents the bit or operation.
$Id: BitOrExpr.java,v 1.26 2007-04-27 18:04:35 burrill Exp $
Copyright 2008 by the
Scale Compiler Group,
Department of Computer Science
University of Massachusetts,
Amherst MA. 01003, USA
All Rights Reserved.
Field Summary |
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Fields inherited from class scale.score.expr.Expr |
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fpReorder, SE_DOMAIN, SE_NONE, SE_OVERFLOW, SE_STATE |
Constructor Summary | |
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BitOrExpr(Expr e1,
Expr e2)
The expression type is the same as the type of expression e1. |
|
BitOrExpr(Type t,
Expr e1,
Expr e2)
|
Method Summary | |
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Expr |
copy()
Perform a deep copy of the expression tree. |
static Expr |
create(Type type,
Expr la,
Expr ra)
This method of creating a BitOrExpr instance will return a simpler expression if possible. |
Literal |
getConstantValue()
Return the constant value of the expression. |
Literal |
getConstantValue(HashMap<Expr,Literal> cvMap)
Return the constant value of the expression. |
java.lang.String |
getDisplayLabel()
Return a String suitable for labeling this node in a graphical display. |
boolean |
isAssociative()
Return true if the binary operation is associative: (a α b) α c ≡ a α (b α c). |
boolean |
isCommutative()
Return true if the binary operation is commutative: (a α b) ≡ (b &alpha a). |
void |
visit(Predicate p)
Process a node by calling its associated routine. |
Methods inherited from class scale.score.expr.BinaryExpr |
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associativeSwapOperands, containsDeclaration, dependsOnDeclaration, equivalent, executionCostEstimate, getAliasAnnote, getDeclList, getExprList, getLeftArg, getLoadExprList, getOperand, getOperandArray, getRightArg, isLeftDistributive, isRightDistributive, loopClean, numOperands, optimizationCandidate, pushOperands, recordRefs, removeRefs, removeUseDef, replaceDecl, setLeftArg, setOperand, setRightArg, sideEffects, swapOperands, unlinkExpression, validate |
Methods inherited from class scale.score.Note |
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getChord, getEssentialUse, setAnnotationLevel, setReportLevel, toString |
Methods inherited from class scale.common.Root |
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addAnnotation, allAnnotations, allMatchingAnnotations, getAnnotation, getDisplayName, getDisplayString, getNodeCount, getNodeID, hasAnnotation, hasEqualAnnotation, hashCode, removeAnnotation, removeAnnotations, toStringAnnotations, toStringClass, trace, trace, trace |
Methods inherited from class java.lang.Object |
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clone, equals, finalize, getClass, notify, notifyAll, wait, wait, wait |
Constructor Detail |
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public BitOrExpr(Type t, Expr e1, Expr e2)
public BitOrExpr(Expr e1, Expr e2)
Method Detail |
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public static Expr create(Type type, Expr la, Expr ra)
public Expr copy()
Expr
copy
in class Expr
public void visit(Predicate p)
Note
Each class has a visit(Predicate p)
method. For
example, in class ABC
:
public void visit(Predicate p) { p.visitABC(this); }and the class that implements
Predicate
has a method
public void visitABC(Note n) { ABC a = (ABC) n; ... }Thus, the class that implements
Predicate
can call
n.visit(this);where
n
is a Note
sub-class without
determining which specific sub-class n
is.
The visit pattern basically avoids implementing a large
switch
statement or defining different methods
in each class for some purpose.
visit
in class Note
Predicate
public java.lang.String getDisplayLabel()
Expr
getDisplayLabel
in interface DisplayNode
getDisplayLabel
in class Expr
public boolean isCommutative()
BinaryExpr
isCommutative
in class BinaryExpr
public boolean isAssociative()
BinaryExpr
isAssociative
in class BinaryExpr
public Literal getConstantValue(HashMap<Expr,Literal> cvMap)
getConstantValue
in class Expr
Lattice
public Literal getConstantValue()
getConstantValue
in class Expr
Lattice
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