/* * Copyright 2021 The Netty Project * * The Netty Project licenses this file to you under the Apache License, * version 2.0 (the "License"); you may not use this file except in compliance * with the License. You may obtain a copy of the License at: * * https://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the * License for the specific language governing permissions and limitations * under the License. */ package io.netty.buffer.api.unsafe; import io.netty.buffer.api.AllocatorControl; import io.netty.buffer.api.Buffer; import io.netty.buffer.api.Drop; import io.netty.buffer.api.MemoryManager; import io.netty.buffer.api.internal.Statics; import io.netty.util.internal.PlatformDependent; import java.lang.ref.Cleaner; import static io.netty.buffer.api.internal.Statics.convert; public class UnsafeMemoryManager implements MemoryManager { private final boolean offheap; public UnsafeMemoryManager(boolean offheap) { this.offheap = offheap; } @Override public boolean isNative() { return offheap; } @Override public Buffer allocateShared(AllocatorControl allocatorControl, long size, Drop drop, Cleaner cleaner) { final Object base; final long address; final UnsafeMemory memory; final int size32 = Math.toIntExact(size); if (cleaner == null) { cleaner = Statics.CLEANER; } if (offheap) { base = null; address = PlatformDependent.allocateMemory(size); PlatformDependent.setMemory(address, size, (byte) 0); memory = new UnsafeMemory(base, address, size32); drop = new CleanerDrop(memory, drop, cleaner); } else { base = new byte[size32]; address = PlatformDependent.byteArrayBaseOffset(); memory = new UnsafeMemory(base, address, size32); } return new UnsafeBuffer(memory, 0, size32, allocatorControl, convert(drop)); } @Override public Buffer allocateConstChild(Buffer readOnlyConstParent) { assert readOnlyConstParent.readOnly(); UnsafeBuffer buf = (UnsafeBuffer) readOnlyConstParent; return new UnsafeBuffer(buf); } @Override public Drop drop() { // We cannot reliably drop unsafe memory. We have to rely on the cleaner to do that. return Statics.NO_OP_DROP; } @Override public Object unwrapRecoverableMemory(Buffer buf) { return ((UnsafeBuffer) buf).recover(); } @Override public int capacityOfRecoverableMemory(Object memory) { return ((UnsafeMemory) memory).size; } @Override public void discardRecoverableMemory(Object recoverableMemory) { // We cannot reliably drop unsafe memory. We have to rely on the cleaner to do that. } @Override public Buffer recoverMemory(AllocatorControl allocatorControl, Object recoverableMemory, Drop drop) { UnsafeMemory memory = (UnsafeMemory) recoverableMemory; return new UnsafeBuffer(memory, 0, memory.size, allocatorControl, convert(drop)); } @Override public Object sliceMemory(Object memory, int offset, int length) { return ((UnsafeMemory) memory).slice(offset, length); } }