265 lines
7.8 KiB
Plaintext
265 lines
7.8 KiB
Plaintext
/*
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* Copyright (c) 2000, 2019, Oracle and/or its affiliates. All rights reserved.
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* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
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*
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* This code is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License version 2 only, as
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* published by the Free Software Foundation. Oracle designates this
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* particular file as subject to the "Classpath" exception as provided
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* by Oracle in the LICENSE file that accompanied this code.
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*
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* This code is distributed in the hope that it will be useful, but WITHOUT
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* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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* version 2 for more details (a copy is included in the LICENSE file that
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* accompanied this code).
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*
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* You should have received a copy of the GNU General Public License version
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* 2 along with this work; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
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*
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* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
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* or visit www.oracle.com if you need additional information or have any
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* questions.
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*/
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#warn This file is preprocessed before being compiled
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package java.nio;
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import java.util.Objects;
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import jdk.internal.access.foreign.MemorySegmentProxy;
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import jdk.internal.misc.Unsafe;
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class ByteBufferAs$Type$Buffer$RW$$BO$ // package-private
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extends {#if[ro]?ByteBufferAs}$Type$Buffer{#if[ro]?$BO$}
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{
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#if[rw]
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protected final ByteBuffer bb;
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#end[rw]
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ByteBufferAs$Type$Buffer$RW$$BO$(ByteBuffer bb, MemorySegmentProxy segment) { // package-private
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#if[rw]
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super(-1, 0,
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bb.remaining() >> $LG_BYTES_PER_VALUE$,
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bb.remaining() >> $LG_BYTES_PER_VALUE$, segment);
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this.bb = bb;
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// enforce limit == capacity
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int cap = this.capacity();
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this.limit(cap);
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int pos = this.position();
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assert (pos <= cap);
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address = bb.address;
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#else[rw]
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super(bb, segment);
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#end[rw]
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}
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ByteBufferAs$Type$Buffer$RW$$BO$(ByteBuffer bb,
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int mark, int pos, int lim, int cap,
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long addr, MemorySegmentProxy segment)
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{
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#if[rw]
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super(mark, pos, lim, cap, segment);
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this.bb = bb;
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address = addr;
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assert address >= bb.address;
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#else[rw]
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super(bb, mark, pos, lim, cap, addr, segment);
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#end[rw]
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}
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@Override
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Object base() {
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return bb.hb;
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}
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public $Type$Buffer slice() {
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int pos = this.position();
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int lim = this.limit();
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int rem = (pos <= lim ? lim - pos : 0);
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long addr = byteOffset(pos);
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return new ByteBufferAs$Type$Buffer$RW$$BO$(bb, -1, 0, rem, rem, addr, segment);
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}
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@Override
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public $Type$Buffer slice(int index, int length) {
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Objects.checkFromIndexSize(index, length, limit());
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return new ByteBufferAs$Type$Buffer$RW$$BO$(bb,
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-1,
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0,
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length,
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length,
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byteOffset(index), segment);
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}
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public $Type$Buffer duplicate() {
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return new ByteBufferAs$Type$Buffer$RW$$BO$(bb,
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this.markValue(),
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this.position(),
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this.limit(),
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this.capacity(),
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address, segment);
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}
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public $Type$Buffer asReadOnlyBuffer() {
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#if[rw]
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return new ByteBufferAs$Type$BufferR$BO$(bb,
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this.markValue(),
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this.position(),
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this.limit(),
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this.capacity(),
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address, segment);
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#else[rw]
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return duplicate();
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#end[rw]
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}
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#if[rw]
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private int ix(int i) {
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int off = (int) (address - bb.address);
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return (i << $LG_BYTES_PER_VALUE$) + off;
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}
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protected long byteOffset(long i) {
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return (i << $LG_BYTES_PER_VALUE$) + address;
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}
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public $type$ get() {
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checkSegment();
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$memtype$ x = UNSAFE.get$Memtype$Unaligned(bb.hb, byteOffset(nextGetIndex()),
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{#if[boB]?true:false});
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return $fromBits$(x);
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}
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public $type$ get(int i) {
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checkSegment();
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$memtype$ x = UNSAFE.get$Memtype$Unaligned(bb.hb, byteOffset(checkIndex(i)),
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{#if[boB]?true:false});
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return $fromBits$(x);
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}
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#if[streamableType]
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$type$ getUnchecked(int i) {
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$memtype$ x = UNSAFE.get$Memtype$Unaligned(bb.hb, byteOffset(i),
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{#if[boB]?true:false});
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return $fromBits$(x);
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}
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#end[streamableType]
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#end[rw]
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public $Type$Buffer put($type$ x) {
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#if[rw]
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checkSegment();
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$memtype$ y = $toBits$(x);
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UNSAFE.put$Memtype$Unaligned(bb.hb, byteOffset(nextPutIndex()), y,
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{#if[boB]?true:false});
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return this;
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#else[rw]
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throw new ReadOnlyBufferException();
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#end[rw]
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}
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public $Type$Buffer put(int i, $type$ x) {
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#if[rw]
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checkSegment();
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$memtype$ y = $toBits$(x);
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UNSAFE.put$Memtype$Unaligned(bb.hb, byteOffset(checkIndex(i)), y,
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{#if[boB]?true:false});
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return this;
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#else[rw]
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throw new ReadOnlyBufferException();
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#end[rw]
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}
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public $Type$Buffer compact() {
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#if[rw]
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int pos = position();
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int lim = limit();
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assert (pos <= lim);
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int rem = (pos <= lim ? lim - pos : 0);
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ByteBuffer db = bb.duplicate();
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db.limit(ix(lim));
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db.position(ix(0));
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ByteBuffer sb = db.slice();
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sb.position(pos << $LG_BYTES_PER_VALUE$);
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sb.compact();
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position(rem);
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limit(capacity());
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discardMark();
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return this;
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#else[rw]
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throw new ReadOnlyBufferException();
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#end[rw]
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}
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public boolean isDirect() {
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return bb.isDirect();
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}
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public boolean isReadOnly() {
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return {#if[rw]?false:true};
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}
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#if[char]
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public String toString(int start, int end) {
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Objects.checkFromToIndex(start, end, limit());
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try {
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int len = end - start;
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char[] ca = new char[len];
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CharBuffer cb = CharBuffer.wrap(ca);
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CharBuffer db = this.duplicate();
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db.position(start);
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db.limit(end);
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cb.put(db);
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return new String(ca);
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} catch (StringIndexOutOfBoundsException x) {
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throw new IndexOutOfBoundsException();
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}
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}
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// --- Methods to support CharSequence ---
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public CharBuffer subSequence(int start, int end) {
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int pos = position();
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int lim = limit();
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assert (pos <= lim);
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pos = (pos <= lim ? pos : lim);
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int len = lim - pos;
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Objects.checkFromToIndex(start, end, len);
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return new ByteBufferAsCharBuffer$RW$$BO$(bb,
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-1,
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pos + start,
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pos + end,
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capacity(),
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address, segment);
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}
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#end[char]
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public ByteOrder order() {
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#if[boB]
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return ByteOrder.BIG_ENDIAN;
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#end[boB]
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#if[boL]
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return ByteOrder.LITTLE_ENDIAN;
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#end[boL]
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}
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#if[char]
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ByteOrder charRegionOrder() {
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return order();
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}
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#end[char]
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}
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