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// -- This file was mechanically generated: Do not edit! -- //

package java.nio;

import java.util.Objects;
import jdk.internal.access.foreign.MemorySegmentProxy;

A read/write HeapDoubleBuffer.
/** * A read/write HeapDoubleBuffer. */
class HeapDoubleBuffer extends DoubleBuffer { // Cached array base offset private static final long ARRAY_BASE_OFFSET = UNSAFE.arrayBaseOffset(double[].class); // Cached array index scale private static final long ARRAY_INDEX_SCALE = UNSAFE.arrayIndexScale(double[].class); // For speed these fields are actually declared in X-Buffer; // these declarations are here as documentation /* protected final double[] hb; protected final int offset; */ HeapDoubleBuffer(int cap, int lim, MemorySegmentProxy segment) { // package-private super(-1, 0, lim, cap, new double[cap], 0, segment); /* hb = new double[cap]; offset = 0; */ this.address = ARRAY_BASE_OFFSET; } HeapDoubleBuffer(double[] buf, int off, int len, MemorySegmentProxy segment) { // package-private super(-1, off, off + len, buf.length, buf, 0, segment); /* hb = buf; offset = 0; */ this.address = ARRAY_BASE_OFFSET; } protected HeapDoubleBuffer(double[] buf, int mark, int pos, int lim, int cap, int off, MemorySegmentProxy segment) { super(mark, pos, lim, cap, buf, off, segment); /* hb = buf; offset = off; */ this.address = ARRAY_BASE_OFFSET + off * ARRAY_INDEX_SCALE; } public DoubleBuffer slice() { int pos = this.position(); int lim = this.limit(); int rem = (pos <= lim ? lim - pos : 0); return new HeapDoubleBuffer(hb, -1, 0, rem, rem, pos + offset, segment); } @Override public DoubleBuffer slice(int index, int length) { Objects.checkFromIndexSize(index, length, limit()); return new HeapDoubleBuffer(hb, -1, 0, length, length, index + offset, segment); } public DoubleBuffer duplicate() { return new HeapDoubleBuffer(hb, this.markValue(), this.position(), this.limit(), this.capacity(), offset, segment); } public DoubleBuffer asReadOnlyBuffer() { return new HeapDoubleBufferR(hb, this.markValue(), this.position(), this.limit(), this.capacity(), offset, segment); } protected int ix(int i) { return i + offset; } public double get() { checkSegment(); return hb[ix(nextGetIndex())]; } public double get(int i) { checkSegment(); return hb[ix(checkIndex(i))]; } public DoubleBuffer get(double[] dst, int offset, int length) { checkSegment(); Objects.checkFromIndexSize(offset, length, dst.length); int pos = position(); if (length > limit() - pos) throw new BufferUnderflowException(); System.arraycopy(hb, ix(pos), dst, offset, length); position(pos + length); return this; } public DoubleBuffer get(int index, double[] dst, int offset, int length) { checkSegment(); Objects.checkFromIndexSize(index, length, limit()); Objects.checkFromIndexSize(offset, length, dst.length); System.arraycopy(hb, ix(index), dst, offset, length); return this; } public boolean isDirect() { return false; } public boolean isReadOnly() { return false; } public DoubleBuffer put(double x) { checkSegment(); hb[ix(nextPutIndex())] = x; return this; } public DoubleBuffer put(int i, double x) { checkSegment(); hb[ix(checkIndex(i))] = x; return this; } public DoubleBuffer put(double[] src, int offset, int length) { checkSegment(); Objects.checkFromIndexSize(offset, length, src.length); int pos = position(); if (length > limit() - pos) throw new BufferOverflowException(); System.arraycopy(src, offset, hb, ix(pos), length); position(pos + length); return this; } public DoubleBuffer put(DoubleBuffer src) { checkSegment(); super.put(src); return this; } public DoubleBuffer put(int index, double[] src, int offset, int length) { checkSegment(); Objects.checkFromIndexSize(index, length, limit()); Objects.checkFromIndexSize(offset, length, src.length); System.arraycopy(src, offset, hb, ix(index), length); return this; } public DoubleBuffer compact() { int pos = position(); int rem = limit() - pos; System.arraycopy(hb, ix(pos), hb, ix(0), rem); position(rem); limit(capacity()); discardMark(); return this; } public ByteOrder order() { return ByteOrder.nativeOrder(); } }