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 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
 * version 2 for more details (a copy is included in the LICENSE file that
 * accompanied this code).
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 * 2 along with this work; if not, write to the Free Software Foundation,
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package jdk.vm.ci.hotspot;

import java.lang.reflect.Array;
import java.util.Objects;

import jdk.vm.ci.common.JVMCIError;
import jdk.vm.ci.meta.Constant;
import jdk.vm.ci.meta.ConstantReflectionProvider;
import jdk.vm.ci.meta.JavaConstant;
import jdk.vm.ci.meta.JavaKind;
import jdk.vm.ci.meta.MemoryAccessProvider;
import jdk.vm.ci.meta.MethodHandleAccessProvider;
import jdk.vm.ci.meta.ResolvedJavaField;
import jdk.vm.ci.meta.ResolvedJavaType;

HotSpot implementation of ConstantReflectionProvider.
/** * HotSpot implementation of {@link ConstantReflectionProvider}. */
public class HotSpotConstantReflectionProvider implements ConstantReflectionProvider { protected final HotSpotJVMCIRuntime runtime; protected final HotSpotMethodHandleAccessProvider methodHandleAccess; protected final HotSpotMemoryAccessProviderImpl memoryAccess; public HotSpotConstantReflectionProvider(HotSpotJVMCIRuntime runtime) { this.runtime = runtime; this.methodHandleAccess = new HotSpotMethodHandleAccessProvider(this); this.memoryAccess = new HotSpotMemoryAccessProviderImpl(runtime); } @Override public MethodHandleAccessProvider getMethodHandleAccess() { return methodHandleAccess; } @Override public MemoryAccessProvider getMemoryAccessProvider() { return memoryAccess; } @Override public Boolean constantEquals(Constant x, Constant y) { if (x == y) { return true; } else if (x instanceof HotSpotObjectConstantImpl) { return y instanceof HotSpotObjectConstantImpl && ((HotSpotObjectConstantImpl) x).object() == ((HotSpotObjectConstantImpl) y).object(); } else { return Objects.equals(x, y); } } @Override public Integer readArrayLength(JavaConstant array) { if (array == null || array.getJavaKind() != JavaKind.Object || array.isNull()) { return null; } Object arrayObject = ((HotSpotObjectConstantImpl) array).object(); if (!arrayObject.getClass().isArray()) { return null; } return Array.getLength(arrayObject); } @Override public JavaConstant readArrayElement(JavaConstant array, int index) { if (array == null || array.getJavaKind() != JavaKind.Object || array.isNull()) { return null; } Object a = ((HotSpotObjectConstantImpl) array).object(); if (!a.getClass().isArray() || index < 0 || index >= Array.getLength(a)) { return null; } if (a instanceof Object[]) { Object element = ((Object[]) a)[index]; return HotSpotObjectConstantImpl.forObject(element); } else { return JavaConstant.forBoxedPrimitive(Array.get(a, index)); } }
Check if the constant is a boxed value that is guaranteed to be cached by the platform. Otherwise the generated code might be the only reference to the boxed value and since object references from nmethods are weak this can cause GC problems.
Params:
  • source –
Returns:true if the box is cached
/** * Check if the constant is a boxed value that is guaranteed to be cached by the platform. * Otherwise the generated code might be the only reference to the boxed value and since object * references from nmethods are weak this can cause GC problems. * * @param source * @return true if the box is cached */
private static boolean isBoxCached(JavaConstant source) { switch (source.getJavaKind()) { case Boolean: return true; case Char: return source.asInt() <= 127; case Byte: case Short: case Int: return source.asInt() >= -128 && source.asInt() <= 127; case Long: return source.asLong() >= -128 && source.asLong() <= 127; case Float: case Double: return false; default: throw new IllegalArgumentException("unexpected kind " + source.getJavaKind()); } } @Override public JavaConstant boxPrimitive(JavaConstant source) { if (source == null || !source.getJavaKind().isPrimitive() || !isBoxCached(source)) { return null; } return HotSpotObjectConstantImpl.forObject(source.asBoxedPrimitive()); } @Override public JavaConstant unboxPrimitive(JavaConstant source) { if (source == null || !source.getJavaKind().isObject()) { return null; } if (source.isNull()) { return null; } return JavaConstant.forBoxedPrimitive(((HotSpotObjectConstantImpl) source).object()); } @Override public JavaConstant forString(String value) { return HotSpotObjectConstantImpl.forObject(value); } public JavaConstant forObject(Object value) { return HotSpotObjectConstantImpl.forObject(value); } @Override public ResolvedJavaType asJavaType(Constant constant) { if (constant instanceof HotSpotObjectConstant) { Object obj = ((HotSpotObjectConstantImpl) constant).object(); if (obj instanceof Class) { return runtime.getHostJVMCIBackend().getMetaAccess().lookupJavaType((Class<?>) obj); } } if (constant instanceof HotSpotMetaspaceConstant) { MetaspaceWrapperObject obj = HotSpotMetaspaceConstantImpl.getMetaspaceObject(constant); if (obj instanceof HotSpotResolvedObjectTypeImpl) { return (ResolvedJavaType) obj; } } return null; } @Override public JavaConstant readFieldValue(ResolvedJavaField field, JavaConstant receiver) { HotSpotResolvedJavaField hotspotField = (HotSpotResolvedJavaField) field; if (hotspotField.isStatic()) { HotSpotResolvedJavaType holder = (HotSpotResolvedJavaType) hotspotField.getDeclaringClass(); if (holder.isInitialized()) { return memoryAccess.readFieldValue(hotspotField, holder.mirror()); } } else { if (receiver.isNonNull()) { Object object = ((HotSpotObjectConstantImpl) receiver).object(); if (hotspotField.isInObject(receiver)) { return memoryAccess.readFieldValue(hotspotField, object); } } } return null; } @Override public JavaConstant asJavaClass(ResolvedJavaType type) { return HotSpotObjectConstantImpl.forObject(((HotSpotResolvedJavaType) type).mirror()); } @Override public Constant asObjectHub(ResolvedJavaType type) { if (type instanceof HotSpotResolvedObjectType) { return ((HotSpotResolvedObjectType) type).klass(); } else { throw JVMCIError.unimplemented(); } } }