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package org.graalvm.compiler.core.test;

import jdk.vm.ci.meta.Assumptions.Assumption;
import jdk.vm.ci.meta.Assumptions.ConcreteSubtype;

import org.junit.Test;

import org.graalvm.compiler.nodes.StructuredGraph;

Ensure that abstract classes with a single implementor are properly optimized and that loading a subclass below the leaf type triggers invalidation.
/** * Ensure that abstract classes with a single implementor are properly optimized and that loading a * subclass below the leaf type triggers invalidation. */
public class ConcreteSubtypeTest extends GraalCompilerAssumptionsTest { abstract static class AbstractBase { abstract void check(); } static class Subclass extends AbstractBase { @Override public void check() { throw new InternalError(); } } static class SubSubclass extends Subclass { @Override public void check() { } } public void callAbstractType(AbstractBase object) { object.check(); } @Override protected void checkGraph(Assumption expectedAssumption, StructuredGraph graph) { super.checkGraph(expectedAssumption, graph); assertTrue(graph.isTrivial()); }
Test that callAbstractType gets compiled into an empty method with a ConcreteSubtype assumption on AbstractBase and Subclass. Then ensures that loading and initialization of SubSubclass causes the compiled method to be invalidated.
/** * Test that {@link #callAbstractType} gets compiled into an empty method with a * {@link ConcreteSubtype} assumption on {@link AbstractBase} and {@link Subclass}. Then ensures * that loading and initialization of {@link SubSubclass} causes the compiled method to be * invalidated. */
@Test public void testLeafAbstractType() { testAssumptionInvalidate("callAbstractType", new ConcreteSubtype(resolveAndInitialize(AbstractBase.class), resolveAndInitialize(Subclass.class)), "SubSubclass"); } }