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JMockit is a Java toolkit for automated developer testing.
It contains APIs for the creation of the objects to be tested, for mocking dependencies, and for faking external
APIs; JUnit (4 & 5) and TestNG test runners are supported.
It also contains an advanced code coverage tool.
/*
* Copyright (c) 2006 Rogério Liesenfeld
* This file is subject to the terms of the MIT license (see LICENSE.txt).
*/
package mockit.internal.faking;
import java.lang.reflect.*;
import javax.annotation.*;
import mockit.internal.faking.FakeMethods.*;
import mockit.internal.reflection.*;
final class FakeState
{
@Nonnull final FakeMethod fakeMethod;
@Nullable private Method actualFakeMethod;
@Nullable private Member realMethodOrConstructor;
@Nullable private Object realClass;
// Current fake invocation state:
private int invocationCount;
@Nullable private ThreadLocal proceedingInvocation;
// Helper field just for synchronization:
@Nonnull private final Object invocationCountLock;
FakeState(@Nonnull FakeMethod fakeMethod)
{
this.fakeMethod = fakeMethod;
invocationCountLock = new Object();
if (fakeMethod.canBeReentered()) {
makeReentrant();
}
}
FakeState(@Nonnull FakeState fakeState)
{
fakeMethod = fakeState.fakeMethod;
actualFakeMethod = fakeState.actualFakeMethod;
realMethodOrConstructor = fakeState.realMethodOrConstructor;
invocationCountLock = new Object();
if (fakeState.proceedingInvocation != null) {
makeReentrant();
}
}
@Nonnull Class> getRealClass() { return fakeMethod.getRealClass(); }
private void makeReentrant() { proceedingInvocation = new ThreadLocal(); }
boolean update()
{
if (proceedingInvocation != null) {
FakeInvocation invocation = proceedingInvocation.get();
if (invocation != null && invocation.proceeding) {
invocation.proceeding = false;
return false;
}
}
synchronized (invocationCountLock) {
invocationCount++;
}
return true;
}
int getTimesInvoked()
{
synchronized (invocationCountLock) {
return invocationCount;
}
}
@Nonnull
Member getRealMethodOrConstructor(
@Nonnull String fakedClassDesc, @Nonnull String fakedMethodName, @Nonnull String fakedMethodDesc)
{
if (realMethodOrConstructor == null || !fakedClassDesc.equals(realClass)) {
String memberName = "$init".equals(fakedMethodName) ? "" : fakedMethodName;
RealMethodOrConstructor realMember;
try { realMember = new RealMethodOrConstructor(fakedClassDesc, memberName, fakedMethodDesc); }
catch (NoSuchMethodException e) { throw new RuntimeException(e); }
Member member = realMember.getMember();
if (fakeMethod.isAdvice) {
return member;
}
realMethodOrConstructor = member;
realClass = fakedClassDesc;
}
return realMethodOrConstructor;
}
@Nonnull
Member getRealMethodOrConstructor(
@Nonnull Class> fakedClass, @Nonnull String fakedMethodName, @Nonnull String fakedMethodDesc)
{
if (realMethodOrConstructor == null || !fakedClass.equals(realClass)) {
String memberName = "$init".equals(fakedMethodName) ? "" : fakedMethodName;
RealMethodOrConstructor realMember;
try { realMember = new RealMethodOrConstructor(fakedClass, memberName, fakedMethodDesc); }
catch (NoSuchMethodException e) { throw new RuntimeException(e); }
Member member = realMember.getMember();
if (fakeMethod.isAdvice) {
return member;
}
realMethodOrConstructor = member;
realClass = fakedClass;
}
return realMethodOrConstructor;
}
boolean shouldProceedIntoRealImplementation(@Nullable Object fake, @Nonnull String classDesc)
{
if (proceedingInvocation != null) {
FakeInvocation pendingInvocation = proceedingInvocation.get();
if (pendingInvocation != null && pendingInvocation.isMethodInSuperclass(fake, classDesc)) {
return true;
}
}
return false;
}
void prepareToProceed(@Nonnull FakeInvocation invocation)
{
if (proceedingInvocation == null) {
throw new UnsupportedOperationException("Cannot proceed into abstract/interface method");
}
if (fakeMethod.isForNativeMethod()) {
throw new UnsupportedOperationException("Cannot proceed into real implementation of native method");
}
FakeInvocation previousInvocation = proceedingInvocation.get();
if (previousInvocation != null) {
invocation.setPrevious(previousInvocation);
}
proceedingInvocation.set(invocation);
}
void prepareToProceedFromNonRecursiveFake(@Nonnull FakeInvocation invocation)
{
assert proceedingInvocation != null;
proceedingInvocation.set(invocation);
}
void clearProceedIndicator()
{
assert proceedingInvocation != null;
FakeInvocation currentInvocation = proceedingInvocation.get();
FakeInvocation previousInvocation = (FakeInvocation) currentInvocation.getPrevious();
proceedingInvocation.set(previousInvocation);
}
@Nonnull
Method getFakeMethod(@Nonnull Class> fakeClass, @Nonnull Class>[] parameterTypes)
{
if (actualFakeMethod == null) {
actualFakeMethod = MethodReflection.findCompatibleMethod(fakeClass, fakeMethod.name, parameterTypes);
}
return actualFakeMethod;
}
@Override @SuppressWarnings("EqualsWhichDoesntCheckParameterClass")
public boolean equals(@Nonnull Object other) { return fakeMethod.equals(((FakeState) other).fakeMethod); }
@Override
public int hashCode() { return fakeMethod.hashCode(); }
}
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