org.h2.store.fs.FilePathNioMem Maven / Gradle / Ivy
/*
* Copyright 2004-2013 H2 Group. Multiple-Licensed under the H2 License,
* Version 1.0, and under the Eclipse Public License, Version 1.0
* (http://h2database.com/html/license.html).
* Initial Developer: H2 Group
*/
package org.h2.store.fs;
import java.io.IOException;
import java.io.InputStream;
import java.io.OutputStream;
import java.nio.ByteBuffer;
import java.nio.channels.FileChannel;
import java.nio.channels.FileLock;
import java.util.ArrayList;
import java.util.LinkedHashMap;
import java.util.List;
import java.util.Map;
import java.util.TreeMap;
import org.h2.api.ErrorCode;
import org.h2.compress.CompressLZF;
import org.h2.message.DbException;
import org.h2.util.MathUtils;
import org.h2.util.New;
/**
* This file system keeps files fully in memory. There is an option to compress
* file blocks to safe memory.
*/
public class FilePathNioMem extends FilePath {
private static final TreeMap MEMORY_FILES =
new TreeMap();
@Override
public FilePathNioMem getPath(String path) {
FilePathNioMem p = new FilePathNioMem();
p.name = getCanonicalPath(path);
return p;
}
@Override
public long size() {
return getMemoryFile().length();
}
@Override
public void moveTo(FilePath newName) {
synchronized (MEMORY_FILES) {
FileNioMemData f = getMemoryFile();
f.setName(newName.name);
MEMORY_FILES.remove(name);
MEMORY_FILES.put(newName.name, f);
}
}
@Override
public boolean createFile() {
synchronized (MEMORY_FILES) {
if (exists()) {
return false;
}
getMemoryFile();
}
return true;
}
@Override
public boolean exists() {
if (isRoot()) {
return true;
}
synchronized (MEMORY_FILES) {
return MEMORY_FILES.get(name) != null;
}
}
@Override
public void delete() {
if (isRoot()) {
return;
}
synchronized (MEMORY_FILES) {
MEMORY_FILES.remove(name);
}
}
@Override
public List newDirectoryStream() {
ArrayList list = New.arrayList();
synchronized (MEMORY_FILES) {
for (String n : MEMORY_FILES.tailMap(name).keySet()) {
if (n.startsWith(name)) {
list.add(getPath(n));
} else {
break;
}
}
return list;
}
}
@Override
public boolean setReadOnly() {
return getMemoryFile().setReadOnly();
}
@Override
public boolean canWrite() {
return getMemoryFile().canWrite();
}
@Override
public FilePathNioMem getParent() {
int idx = name.lastIndexOf('/');
return idx < 0 ? null : getPath(name.substring(0, idx));
}
@Override
public boolean isDirectory() {
if (isRoot()) {
return true;
}
// TODO in memory file system currently
// does not really support directories
synchronized (MEMORY_FILES) {
return MEMORY_FILES.get(name) == null;
}
}
@Override
public boolean isAbsolute() {
// TODO relative files are not supported
return true;
}
@Override
public FilePathNioMem toRealPath() {
return this;
}
@Override
public long lastModified() {
return getMemoryFile().getLastModified();
}
@Override
public void createDirectory() {
if (exists() && isDirectory()) {
throw DbException.get(ErrorCode.FILE_CREATION_FAILED_1,
name + " (a file with this name already exists)");
}
// TODO directories are not really supported
}
@Override
public OutputStream newOutputStream(boolean append) throws IOException {
FileNioMemData obj = getMemoryFile();
FileNioMem m = new FileNioMem(obj, false);
return new FileChannelOutputStream(m, append);
}
@Override
public InputStream newInputStream() {
FileNioMemData obj = getMemoryFile();
FileNioMem m = new FileNioMem(obj, true);
return new FileChannelInputStream(m, true);
}
@Override
public FileChannel open(String mode) {
FileNioMemData obj = getMemoryFile();
return new FileNioMem(obj, "r".equals(mode));
}
private FileNioMemData getMemoryFile() {
synchronized (MEMORY_FILES) {
FileNioMemData m = MEMORY_FILES.get(name);
if (m == null) {
m = new FileNioMemData(name, compressed());
MEMORY_FILES.put(name, m);
}
return m;
}
}
private boolean isRoot() {
return name.equals(getScheme());
}
private static String getCanonicalPath(String fileName) {
fileName = fileName.replace('\\', '/');
int idx = fileName.indexOf(':') + 1;
if (fileName.length() > idx && fileName.charAt(idx) != '/') {
fileName = fileName.substring(0, idx) + "/" + fileName.substring(idx);
}
return fileName;
}
@Override
public String getScheme() {
return "nioMemFS";
}
/**
* Whether the file should be compressed.
*
* @return if it should be compressed.
*/
boolean compressed() {
return false;
}
}
/**
* A memory file system that compresses blocks to conserve memory.
*/
class FilePathNioMemLZF extends FilePathNioMem {
@Override
boolean compressed() {
return true;
}
@Override
public String getScheme() {
return "nioMemLZF";
}
}
/**
* This class represents an in-memory file.
*/
class FileNioMem extends FileBase {
/**
* The file data.
*/
final FileNioMemData data;
private final boolean readOnly;
private long pos;
FileNioMem(FileNioMemData data, boolean readOnly) {
this.data = data;
this.readOnly = readOnly;
}
@Override
public long size() {
return data.length();
}
@Override
public FileChannel truncate(long newLength) throws IOException {
if (newLength < size()) {
data.touch(readOnly);
pos = Math.min(pos, newLength);
data.truncate(newLength);
}
return this;
}
@Override
public FileChannel position(long newPos) {
this.pos = (int) newPos;
return this;
}
@Override
public int write(ByteBuffer src) throws IOException {
int len = src.remaining();
if (len == 0) {
return 0;
}
data.touch(readOnly);
// offset is 0 because we start writing from src.position()
pos = data.readWrite(pos, src, 0, len, true);
src.position(src.position() + len);
return len;
}
@Override
public int read(ByteBuffer dst) throws IOException {
int len = dst.remaining();
if (len == 0) {
return 0;
}
long newPos = data.readWrite(pos, dst, dst.position(), len, false);
len = (int) (newPos - pos);
if (len <= 0) {
return -1;
}
dst.position(dst.position() + len);
pos = newPos;
return len;
}
@Override
public long position() {
return pos;
}
@Override
public void implCloseChannel() throws IOException {
pos = 0;
}
@Override
public void force(boolean metaData) throws IOException {
// do nothing
}
@Override
public synchronized FileLock tryLock(long position, long size,
boolean shared) throws IOException {
if (shared) {
if (!data.lockShared()) {
return null;
}
} else {
if (!data.lockExclusive()) {
return null;
}
}
// cast to FileChannel to avoid JDK 1.7 ambiguity
FileLock lock = new FileLock((FileChannel) null, position, size, shared) {
@Override
public boolean isValid() {
return true;
}
@Override
public void release() throws IOException {
data.unlock();
}
};
return lock;
}
@Override
public String toString() {
return data.getName();
}
}
/**
* This class contains the data of an in-memory random access file.
* Data compression using the LZF algorithm is supported as well.
*/
class FileNioMemData {
private static final int CACHE_SIZE = 8;
private static final int BLOCK_SIZE_SHIFT = 10;
private static final int BLOCK_SIZE = 1 << BLOCK_SIZE_SHIFT;
private static final int BLOCK_SIZE_MASK = BLOCK_SIZE - 1;
private static final CompressLZF LZF = new CompressLZF();
private static final byte[] BUFFER = new byte[BLOCK_SIZE * 2];
private static final ByteBuffer COMPRESSED_EMPTY_BLOCK;
private static final Cache COMPRESS_LATER =
new Cache(CACHE_SIZE);
private String name;
private final boolean compress;
private long length;
private ByteBuffer[] data;
private long lastModified;
private boolean isReadOnly;
private boolean isLockedExclusive;
private int sharedLockCount;
static {
byte[] n = new byte[BLOCK_SIZE];
int len = LZF.compress(n, BLOCK_SIZE, BUFFER, 0);
COMPRESSED_EMPTY_BLOCK = ByteBuffer.allocateDirect(len);
COMPRESSED_EMPTY_BLOCK.put(BUFFER, 0, len);
}
FileNioMemData(String name, boolean compress) {
this.name = name;
this.compress = compress;
data = new ByteBuffer[0];
lastModified = System.currentTimeMillis();
}
/**
* Lock the file in exclusive mode if possible.
*
* @return if locking was successful
*/
synchronized boolean lockExclusive() {
if (sharedLockCount > 0 || isLockedExclusive) {
return false;
}
isLockedExclusive = true;
return true;
}
/**
* Lock the file in shared mode if possible.
*
* @return if locking was successful
*/
synchronized boolean lockShared() {
if (isLockedExclusive) {
return false;
}
sharedLockCount++;
return true;
}
/**
* Unlock the file.
*/
synchronized void unlock() {
if (isLockedExclusive) {
isLockedExclusive = false;
} else {
sharedLockCount = Math.max(0, sharedLockCount - 1);
}
}
/**
* This small cache compresses the data if an element leaves the cache.
*/
static class Cache extends LinkedHashMap {
private static final long serialVersionUID = 1L;
private final int size;
Cache(int size) {
super(size, (float) 0.75, true);
this.size = size;
}
@Override
protected boolean removeEldestEntry(Map.Entry eldest) {
if (size() < size) {
return false;
}
CompressItem c = (CompressItem) eldest.getKey();
compress(c.data, c.page);
return true;
}
}
/**
* Represents a compressed item.
*/
static class CompressItem {
/**
* The file data.
*/
ByteBuffer[] data;
/**
* The page to compress.
*/
int page;
@Override
public int hashCode() {
return page;
}
@Override
public boolean equals(Object o) {
if (o instanceof CompressItem) {
CompressItem c = (CompressItem) o;
return c.data == data && c.page == page;
}
return false;
}
}
private static void compressLater(ByteBuffer[] data, int page) {
CompressItem c = new CompressItem();
c.data = data;
c.page = page;
synchronized (LZF) {
COMPRESS_LATER.put(c, c);
}
}
private static void expand(ByteBuffer[] data, int page) {
ByteBuffer d = data[page];
if (d.capacity() == BLOCK_SIZE) {
return;
}
ByteBuffer out = ByteBuffer.allocateDirect(BLOCK_SIZE);
if (d != COMPRESSED_EMPTY_BLOCK) {
synchronized (LZF) {
CompressLZF.expand(d, out);
}
}
data[page] = out;
}
/**
* Compress the data in a byte array.
*
* @param data the page array
* @param page which page to compress
*/
static void compress(ByteBuffer[] data, int page) {
ByteBuffer d = data[page];
synchronized (LZF) {
int len = LZF.compress(d, BUFFER, 0);
d = ByteBuffer.allocateDirect(len);
d.put(BUFFER, 0, len);
data[page] = d;
}
}
/**
* Update the last modified time.
*
* @param openReadOnly if the file was opened in read-only mode
*/
void touch(boolean openReadOnly) throws IOException {
if (isReadOnly || openReadOnly) {
throw new IOException("Read only");
}
lastModified = System.currentTimeMillis();
}
/**
* Get the file length.
*
* @return the length
*/
long length() {
return length;
}
/**
* Truncate the file.
*
* @param newLength the new length
*/
void truncate(long newLength) {
changeLength(newLength);
long end = MathUtils.roundUpLong(newLength, BLOCK_SIZE);
if (end != newLength) {
int lastPage = (int) (newLength >>> BLOCK_SIZE_SHIFT);
expand(data, lastPage);
ByteBuffer d = data[lastPage];
for (int i = (int) (newLength & BLOCK_SIZE_MASK); i < BLOCK_SIZE; i++) {
d.put(i, (byte) 0);
}
if (compress) {
compressLater(data, lastPage);
}
}
}
private void changeLength(long len) {
length = len;
len = MathUtils.roundUpLong(len, BLOCK_SIZE);
int blocks = (int) (len >>> BLOCK_SIZE_SHIFT);
if (blocks != data.length) {
ByteBuffer[] n = new ByteBuffer[blocks];
System.arraycopy(data, 0, n, 0, Math.min(data.length, n.length));
for (int i = data.length; i < blocks; i++) {
n[i] = COMPRESSED_EMPTY_BLOCK;
}
data = n;
}
}
/**
* Read or write.
*
* @param pos the position
* @param b the byte array
* @param off the offset within the byte array
* @param len the number of bytes
* @param write true for writing
* @return the new position
*/
long readWrite(long pos, ByteBuffer b, int off, int len, boolean write) {
long end = pos + len;
if (end > length) {
if (write) {
changeLength(end);
} else {
len = (int) (length - pos);
}
}
while (len > 0) {
int l = (int) Math.min(len, BLOCK_SIZE - (pos & BLOCK_SIZE_MASK));
int page = (int) (pos >>> BLOCK_SIZE_SHIFT);
expand(data, page);
ByteBuffer block = data[page];
int blockOffset = (int) (pos & BLOCK_SIZE_MASK);
if (write) {
ByteBuffer tmp = b.slice();
tmp.position(off);
tmp.limit(off + l);
block.position(blockOffset);
block.put(tmp);
} else {
block.position(blockOffset);
ByteBuffer tmp = block.slice();
tmp.limit(l);
int oldPosition = b.position();
b.position(off);
b.put(tmp);
// restore old position
b.position(oldPosition);
}
if (compress) {
compressLater(data, page);
}
off += l;
pos += l;
len -= l;
}
return pos;
}
/**
* Set the file name.
*
* @param name the name
*/
void setName(String name) {
this.name = name;
}
/**
* Get the file name
*
* @return the name
*/
String getName() {
return name;
}
/**
* Get the last modified time.
*
* @return the time
*/
long getLastModified() {
return lastModified;
}
/**
* Check whether writing is allowed.
*
* @return true if it is
*/
boolean canWrite() {
return !isReadOnly;
}
/**
* Set the read-only flag.
*
* @return true
*/
boolean setReadOnly() {
isReadOnly = true;
return true;
}
}
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