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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.injection;
import java.lang.reflect.*;
import java.util.*;
import java.util.Map.*;
import javax.annotation.*;
import static mockit.internal.reflection.MethodReflection.invoke;
import static mockit.internal.util.Utilities.getClassType;
final class InterfaceResolution
{
@Nonnull private final NavigableMap interfaceResolutionMethods;
InterfaceResolution()
{
interfaceResolutionMethods = new TreeMap(new Comparator() {
@Override
public int compare(ParameterizedType t1, ParameterizedType t2)
{
if (t1 == t2) {
return 0;
}
Type targetType1 = t1.getActualTypeArguments()[0];
Type targetType2 = t2.getActualTypeArguments()[0];
if (targetType1 == targetType2) {
return 0;
}
if (targetType1 instanceof WildcardType) {
if (targetType2 instanceof WildcardType) {
return compareTypesFromResolutionMethods((WildcardType) targetType1, (WildcardType) targetType2);
}
return 1;
}
return -1;
}
});
}
private static int compareTypesFromResolutionMethods(@Nonnull WildcardType type1, @Nonnull WildcardType type2)
{
Type upperBound1 = type1.getUpperBounds()[0];
Class> classOfUpperBound1 = getClassType(upperBound1);
Type upperBound2 = type2.getUpperBounds()[0];
Class> classOfUpperBound2 = getClassType(upperBound2);
if (classOfUpperBound1.isAssignableFrom(classOfUpperBound2)) {
return 1;
}
if (classOfUpperBound2.isAssignableFrom(classOfUpperBound1)) {
return -1;
}
return classOfUpperBound1.getName().compareTo(classOfUpperBound2.getName());
}
boolean canResolveInterfaces() { return !interfaceResolutionMethods.isEmpty(); }
void addInterfaceResolutionMethod(@Nonnull ParameterizedType interfaceType, @Nonnull Method resolutionMethod)
{
interfaceResolutionMethods.put(interfaceType, resolutionMethod);
}
@Nullable
Class> resolveInterface(@Nonnull Class> anInterface, @Nonnull Object testClassInstance)
{
if (interfaceResolutionMethods.isEmpty()) {
return null;
}
for (Entry typeAndMethod : interfaceResolutionMethods.entrySet()) {
ParameterizedType acceptedType = typeAndMethod.getKey();
Method method = typeAndMethod.getValue();
Type targetType = acceptedType.getActualTypeArguments()[0];
if (
targetType == anInterface ||
targetType instanceof WildcardType && satisfiesUpperBounds(anInterface, (WildcardType) targetType)
) {
Class> implementationClass = invoke(testClassInstance, method, anInterface);
if (implementationClass != null) {
return implementationClass;
}
}
}
return null;
}
private static boolean satisfiesUpperBounds(@Nonnull Class> interfaceType, @Nonnull WildcardType targetType)
{
for (Type upperBound : targetType.getUpperBounds()) {
Class> classOfUpperBound = getClassType(upperBound);
if (!classOfUpperBound.isAssignableFrom(interfaceType)) {
return false;
}
}
return true;
}
}
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