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/*
* Licensed to the Apache Software Foundation (ASF) under one or more
* contributor license agreements. See the NOTICE file distributed with
* this work for additional information regarding copyright ownership.
* The ASF 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
*
* http://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 java.nio;
/**
* DoubleArrayBuffer implements double[]-based DoubleBuffers.
*/
final class DoubleArrayBuffer extends DoubleBuffer {
private final double[] backingArray;
private final int arrayOffset;
private final boolean isReadOnly;
DoubleArrayBuffer(double[] array) {
this(array.length, array, 0, false);
}
private DoubleArrayBuffer(int capacity, double[] backingArray, int arrayOffset, boolean isReadOnly) {
super(capacity);
this.backingArray = backingArray;
this.arrayOffset = arrayOffset;
this.isReadOnly = isReadOnly;
}
private static DoubleArrayBuffer copy(DoubleArrayBuffer other, int markOfOther, boolean isReadOnly) {
DoubleArrayBuffer buf = new DoubleArrayBuffer(other.capacity(), other.backingArray, other.arrayOffset, isReadOnly);
buf.limit = other.limit;
buf.position = other.position();
buf.mark = markOfOther;
return buf;
}
@Override public DoubleBuffer asReadOnlyBuffer() {
return copy(this, mark, true);
}
@Override public DoubleBuffer compact() {
if (isReadOnly) {
throw new ReadOnlyBufferException();
}
System.arraycopy(backingArray, position + arrayOffset, backingArray, arrayOffset, remaining());
position = limit - position;
limit = capacity;
mark = UNSET_MARK;
return this;
}
@Override public DoubleBuffer duplicate() {
return copy(this, mark, isReadOnly);
}
@Override public DoubleBuffer slice() {
return new DoubleArrayBuffer(remaining(), backingArray, arrayOffset + position, isReadOnly);
}
@Override public boolean isReadOnly() {
return isReadOnly;
}
@Override double[] protectedArray() {
if (isReadOnly) {
throw new ReadOnlyBufferException();
}
return backingArray;
}
@Override int protectedArrayOffset() {
if (isReadOnly) {
throw new ReadOnlyBufferException();
}
return arrayOffset;
}
@Override boolean protectedHasArray() {
if (isReadOnly) {
return false;
}
return true;
}
@Override public final double get() {
if (position == limit) {
throw new BufferUnderflowException();
}
return backingArray[arrayOffset + position++];
}
@Override public final double get(int index) {
checkIndex(index);
return backingArray[arrayOffset + index];
}
@Override public final DoubleBuffer get(double[] dst, int dstOffset, int doubleCount) {
if (doubleCount > remaining()) {
throw new BufferUnderflowException();
}
System.arraycopy(backingArray, arrayOffset + position, dst, dstOffset, doubleCount);
position += doubleCount;
return this;
}
@Override public final boolean isDirect() {
return false;
}
@Override public final ByteOrder order() {
return ByteOrder.nativeOrder();
}
@Override public DoubleBuffer put(double c) {
if (isReadOnly) {
throw new ReadOnlyBufferException();
}
if (position == limit) {
throw new BufferOverflowException();
}
backingArray[arrayOffset + position++] = c;
return this;
}
@Override public DoubleBuffer put(int index, double c) {
if (isReadOnly) {
throw new ReadOnlyBufferException();
}
checkIndex(index);
backingArray[arrayOffset + index] = c;
return this;
}
@Override public DoubleBuffer put(double[] src, int srcOffset, int doubleCount) {
if (isReadOnly) {
throw new ReadOnlyBufferException();
}
if (doubleCount > remaining()) {
throw new BufferOverflowException();
}
System.arraycopy(src, srcOffset, backingArray, arrayOffset + position, doubleCount);
position += doubleCount;
return this;
}
}