1
0
Fork 0
mirror of https://github.com/eclipse-cdt/cdt synced 2025-06-08 18:26:01 +02:00

Bug 497875 - Avoid evaluating isConstantExpression multiple times

Change-Id: I54d6b533f5b21294a92319ea1d45d4f18962a460
This commit is contained in:
Sergey Prigogin 2016-07-13 17:57:02 -07:00
parent f2af760266
commit b7ecc46eca
9 changed files with 108 additions and 18 deletions

View file

@ -81,6 +81,8 @@ public class EvalBinary extends CPPDependentEvaluation {
private ICPPFunction fOverload= CPPFunction.UNINITIALIZED_FUNCTION;
private IType fType;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalBinary(int operator, ICPPEvaluation arg1, ICPPEvaluation arg2, IASTNode pointOfDefinition) {
this(operator, arg1, arg2, findEnclosingTemplate(pointOfDefinition));
@ -204,6 +206,14 @@ public class EvalBinary extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
return fArg1.isConstantExpression(point)
&& fArg2.isConstantExpression(point)
&& isNullOrConstexprFunc(getOverload(point));

View file

@ -36,6 +36,8 @@ public class EvalComma extends CPPDependentEvaluation {
private ICPPFunction[] fOverloads;
private IType fType;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalComma(ICPPEvaluation[] evals, IASTNode pointOfDefinition) {
this(evals, findEnclosingTemplate(pointOfDefinition));
@ -75,6 +77,14 @@ public class EvalComma extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
if (!areAllConstantExpressions(fArguments, point)) {
return false;
}

View file

@ -55,6 +55,8 @@ public class EvalConditional extends CPPDependentEvaluation {
private ValueCategory fValueCategory;
private IType fType;
private ICPPFunction fOverload;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalConditional(ICPPEvaluation condition, ICPPEvaluation positive, ICPPEvaluation negative,
boolean positiveThrows, boolean negativeThrows, IASTNode pointOfDefinition) {
@ -149,6 +151,14 @@ public class EvalConditional extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
return fCondition.isConstantExpression(point)
&& (fPositive == null || fPositive.isConstantExpression(point))
&& fNegative.isConstantExpression(point);

View file

@ -45,6 +45,8 @@ public class EvalFixed extends CPPEvaluation {
private boolean fCheckedIsTypeDependent;
private boolean fIsValueDependent;
private boolean fCheckedIsValueDependent;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalFixed(IType type, ValueCategory cat, IValue value) {
// Avoid nesting EvalFixed's as nesting causes the signature to be different.
@ -110,6 +112,14 @@ public class EvalFixed extends CPPEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
return (fType instanceof ICPPClassType && TypeTraits.isEmpty(fType, point))
|| isConstexprValue(fValue, point);
}

View file

@ -45,6 +45,8 @@ public class EvalFunctionCall extends CPPDependentEvaluation {
private final ICPPEvaluation[] fArguments;
private ICPPFunction fOverload= CPPFunction.UNINITIALIZED_FUNCTION;
private IType fType;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalFunctionCall(ICPPEvaluation[] args, IASTNode pointOfDefinition) {
this(args, findEnclosingTemplate(pointOfDefinition));
@ -85,6 +87,14 @@ public class EvalFunctionCall extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
return areAllConstantExpressions(fArguments, point) && isNullOrConstexprFunc(getOverload(point));
}

View file

@ -58,6 +58,8 @@ public class EvalFunctionSet extends CPPDependentEvaluation {
// by asking the first function in the set for its name.)
// Exactly one of fFunctionSet and fName should be non-null.
private final char[] fName;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalFunctionSet(CPPFunctionSet set, boolean qualified, boolean addressOf, IType impliedObjectType,
IASTNode pointOfDefinition) {
@ -140,6 +142,14 @@ public class EvalFunctionSet extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
if (fFunctionSet == null)
return false;
for (ICPPFunction f : fFunctionSet.getBindings()) {

View file

@ -31,6 +31,8 @@ import org.eclipse.core.runtime.CoreException;
*/
public class EvalInitList extends CPPDependentEvaluation {
private final ICPPEvaluation[] fClauses;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalInitList(ICPPEvaluation[] clauses, IASTNode pointOfDefinition) {
this(clauses, findEnclosingTemplate(pointOfDefinition));
@ -67,6 +69,14 @@ public class EvalInitList extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
return areAllConstantExpressions(fClauses, point);
}

View file

@ -53,6 +53,8 @@ public class EvalTypeId extends CPPDependentEvaluation {
private ICPPFunction fConstructor = CPPFunction.UNINITIALIZED_FUNCTION;
private boolean fCheckedIsTypeDependent;
private boolean fIsTypeDependent;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalTypeId(IType type, IASTNode pointOfDefinition, ICPPEvaluation... arguments) {
this(type, findEnclosingTemplate(pointOfDefinition), false, arguments);
@ -151,6 +153,14 @@ public class EvalTypeId extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
return !fRepresentsNewExpression
&& areAllConstantExpressions(fArguments, point)
&& isNullOrConstexprFunc(getConstructor(point));

View file

@ -79,6 +79,8 @@ public class EvalUnary extends CPPDependentEvaluation {
private final IBinding fAddressOfQualifiedNameBinding;
private ICPPFunction fOverload= CPPFunction.UNINITIALIZED_FUNCTION;
private IType fType;
private boolean fCheckedIsConstantExpression;
private boolean fIsConstantExpression;
public EvalUnary(int operator, ICPPEvaluation operand, IBinding addressOfQualifiedNameBinding,
IASTNode pointOfDefinition) {
@ -152,6 +154,14 @@ public class EvalUnary extends CPPDependentEvaluation {
@Override
public boolean isConstantExpression(IASTNode point) {
if (!fCheckedIsConstantExpression) {
fCheckedIsConstantExpression = true;
fIsConstantExpression = computeIsConstantExpression(point);
}
return fIsConstantExpression;
}
private boolean computeIsConstantExpression(IASTNode point) {
return fArgument.isConstantExpression(point)
&& isNullOrConstexprFunc(getOverload(point));
}