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RandomAccessFile.java
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RandomAccessFile.java
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/*
* Copyright (c) 1994, 2017, Oracle and/or its affiliates. All rights reserved.
* DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
*
* This code is free software; you can redistribute it and/or modify it
* under the terms of the GNU General Public License version 2 only, as
* published by the Free Software Foundation. Oracle designates this
* particular file as subject to the "Classpath" exception as provided
* by Oracle in the LICENSE file that accompanied this code.
*
* This code is distributed in the hope that it will be useful, but WITHOUT
* ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
* FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
* version 2 for more details (a copy is included in the LICENSE file that
* accompanied this code).
*
* You should have received a copy of the GNU General Public License version
* 2 along with this work; if not, write to the Free Software Foundation,
* Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
*
* Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
* or visit www.oracle.com if you need additional information or have any
* questions.
*/
package java.io;
import java.nio.channels.FileChannel;
import java.util.concurrent.atomic.AtomicBoolean;
import jdk.internal.misc.JavaIORandomAccessFileAccess;
import jdk.internal.misc.SharedSecrets;
import sun.nio.ch.FileChannelImpl;
/**
* Instances of this class support both reading and writing to a
* random access file. A random access file behaves like a large
* array of bytes stored in the file system. There is a kind of cursor,
* or index into the implied array, called the <em>file pointer</em>;
* input operations read bytes starting at the file pointer and advance
* the file pointer past the bytes read. If the random access file is
* created in read/write mode, then output operations are also available;
* output operations write bytes starting at the file pointer and advance
* the file pointer past the bytes written. Output operations that write
* past the current end of the implied array cause the array to be
* extended. The file pointer can be read by the
* {@code getFilePointer} method and set by the {@code seek}
* method.
* <p>
* It is generally true of all the reading routines in this class that
* if end-of-file is reached before the desired number of bytes has been
* read, an {@code EOFException} (which is a kind of
* {@code IOException}) is thrown. If any byte cannot be read for
* any reason other than end-of-file, an {@code IOException} other
* than {@code EOFException} is thrown. In particular, an
* {@code IOException} may be thrown if the stream has been closed.
*
* @author unascribed
* @since 1.0
*/
// 支持随机访问的文件
public class RandomAccessFile implements DataOutput, DataInput, Closeable {
// 文件访问模式
private static final int O_RDONLY = 1; // r 只读模式
private static final int O_RDWR = 2; // rw 读写模式,如果文件不存在,则尝试创建文件
private static final int O_SYNC = 4; // rws 读写模式,与rw不同的是,文件内容或元数据的每个更新都实时同步到底层设备
private static final int O_DSYNC = 8; // rwd 读写模式,与rw不同的是,文件内容的每个更新都实时同步到底层设备
private static final int O_TEMPORARY = 16; // 创建临时文件,流关闭后删除
/**
* The path of the referenced file
* (null if the stream is created with a file descriptor)
*/
// 文件路径
private final String path;
// 文件描述符
private FileDescriptor fd;
// 是否使用读写模式
private boolean rw;
// 文件是否已关闭
private final AtomicBoolean closed = new AtomicBoolean(false);
// 当前文件关联的通道
private volatile FileChannel channel;
static {
initIDs();
SharedSecrets.setJavaIORandomAccessFileAccess(new JavaIORandomAccessFileAccess() {
// This is for j.u.z.ZipFile.OPEN_DELETE. The O_TEMPORARY flag is only implemented/supported on windows.
public RandomAccessFile openAndDelete(File file, String mode) throws IOException {
// 为ZipFile类准备,第三个参数true指示该zip解压后,原zip压缩包会被删除
return new RandomAccessFile(file, mode, true);
}
});
}
/*▼ 构造器 ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Creates a random access file stream to read from, and optionally
* to write to, a file with the specified name. A new
* {@link FileDescriptor} object is created to represent the
* connection to the file.
*
* <p> The {@code mode} argument specifies the access mode with which the
* file is to be opened. The permitted values and their meanings are as
* specified for the <a
* href="#mode">{@code RandomAccessFile(File,String)}</a> constructor.
*
* <p>
* If there is a security manager, its {@code checkRead} method
* is called with the {@code name} argument
* as its argument to see if read access to the file is allowed.
* If the mode allows writing, the security manager's
* {@code checkWrite} method
* is also called with the {@code name} argument
* as its argument to see if write access to the file is allowed.
*
* @param name the system-dependent filename
* @param mode the access <a href="#mode">mode</a>
*
* @throws IllegalArgumentException if the mode argument is not equal
* to one of {@code "r"}, {@code "rw"}, {@code "rws"}, or
* {@code "rwd"}
* @throws FileNotFoundException if the mode is {@code "r"} but the given string does not
* denote an existing regular file, or if the mode begins with
* {@code "rw"} but the given string does not denote an
* existing, writable regular file and a new regular file of
* that name cannot be created, or if some other error occurs
* while opening or creating the file
* @throws SecurityException if a security manager exists and its
* {@code checkRead} method denies read access to the file
* or the mode is {@code "rw"} and the security manager's
* {@code checkWrite} method denies write access to the file
* @revised 1.4
* @spec JSR-51
* @see java.lang.SecurityException
* @see java.lang.SecurityManager#checkRead(java.lang.String)
* @see java.lang.SecurityManager#checkWrite(java.lang.String)
*/
// 打开指定的文件,访问结束后不删除文件
public RandomAccessFile(String name, String mode) throws FileNotFoundException {
this(name != null ? new File(name) : null, mode);
}
/**
* Creates a random access file stream to read from, and optionally to
* write to, the file specified by the {@link File} argument. A new {@link
* FileDescriptor} object is created to represent this file connection.
*
* <p>The <a id="mode">{@code mode}</a> argument specifies the access mode
* in which the file is to be opened. The permitted values and their
* meanings are:
*
* <table class="striped">
* <caption style="display:none">Access mode permitted values and meanings</caption>
* <thead>
* <tr><th scope="col" style="text-align:left">Value</th><th scope="col" style="text-align:left">Meaning</th></tr>
* </thead>
* <tbody>
* <tr><th scope="row" style="vertical-align:top">{@code "r"}</th>
* <td> Open for reading only. Invoking any of the {@code write}
* methods of the resulting object will cause an
* {@link java.io.IOException} to be thrown.</td></tr>
* <tr><th scope="row" style="vertical-align:top">{@code "rw"}</th>
* <td> Open for reading and writing. If the file does not already
* exist then an attempt will be made to create it.</td></tr>
* <tr><th scope="row" style="vertical-align:top">{@code "rws"}</th>
* <td> Open for reading and writing, as with {@code "rw"}, and also
* require that every update to the file's content or metadata be
* written synchronously to the underlying storage device.</td></tr>
* <tr><th scope="row" style="vertical-align:top">{@code "rwd"}</th>
* <td> Open for reading and writing, as with {@code "rw"}, and also
* require that every update to the file's content be written
* synchronously to the underlying storage device.</td></tr>
* </tbody>
* </table>
*
* The {@code "rws"} and {@code "rwd"} modes work much like the {@link
* java.nio.channels.FileChannel#force(boolean) force(boolean)} method of
* the {@link java.nio.channels.FileChannel} class, passing arguments of
* {@code true} and {@code false}, respectively, except that they always
* apply to every I/O operation and are therefore often more efficient. If
* the file resides on a local storage device then when an invocation of a
* method of this class returns it is guaranteed that all changes made to
* the file by that invocation will have been written to that device. This
* is useful for ensuring that critical information is not lost in the
* event of a system crash. If the file does not reside on a local device
* then no such guarantee is made.
*
* <p>The {@code "rwd"} mode can be used to reduce the number of I/O
* operations performed. Using {@code "rwd"} only requires updates to the
* file's content to be written to storage; using {@code "rws"} requires
* updates to both the file's content and its metadata to be written, which
* generally requires at least one more low-level I/O operation.
*
* <p>If there is a security manager, its {@code checkRead} method is
* called with the pathname of the {@code file} argument as its
* argument to see if read access to the file is allowed. If the mode
* allows writing, the security manager's {@code checkWrite} method is
* also called with the path argument to see if write access to the file is
* allowed.
*
* @param file the file object
* @param mode the access mode, as described
* <a href="#mode">above</a>
*
* @throws IllegalArgumentException if the mode argument is not equal
* to one of {@code "r"}, {@code "rw"}, {@code "rws"}, or
* {@code "rwd"}
* @throws FileNotFoundException if the mode is {@code "r"} but the given file object does
* not denote an existing regular file, or if the mode begins
* with {@code "rw"} but the given file object does not denote
* an existing, writable regular file and a new regular file of
* that name cannot be created, or if some other error occurs
* while opening or creating the file
* @throws SecurityException if a security manager exists and its
* {@code checkRead} method denies read access to the file
* or the mode is {@code "rw"} and the security manager's
* {@code checkWrite} method denies write access to the file
* @revised 1.4
* @spec JSR-51
* @see java.lang.SecurityManager#checkRead(java.lang.String)
* @see java.lang.SecurityManager#checkWrite(java.lang.String)
* @see java.nio.channels.FileChannel#force(boolean)
*/
// 打开指定的文件,访问结束后不删除文件
public RandomAccessFile(File file, String mode) throws FileNotFoundException {
this(file, mode, false);
}
/*
* file : 文件对象
* mode : 访问模式,参考字段中的描述
* openAndDelete: 对文件访问结束后,是否删除原文件
*/
private RandomAccessFile(File file, String mode, boolean openAndDelete) throws FileNotFoundException {
String name = (file != null ? file.getPath() : null);
int imode = -1;
/*
* "rwd"模式可用于减少I/O次数
* 使用"rwd"更新时只要写入文件内容;
* 使用"rws"更新时不仅要写入文件内容,还要写入文件元数据(文件大小、文件名等信息)
* 文件元数据的更新,通常需要至少一个底层IO操作
*/
if(mode.equals("r")) {
imode = O_RDONLY;
} else if(mode.startsWith("rw")) {
imode = O_RDWR;
rw = true;
if(mode.length()>2) {
if(mode.equals("rws")) {
imode |= O_SYNC;
} else if(mode.equals("rwd")) {
imode |= O_DSYNC;
} else {
imode = -1;
}
}
}
// 关键关闭后需要删除它
if(openAndDelete) {
imode |= O_TEMPORARY;
}
if(imode<0) {
throw new IllegalArgumentException("Illegal mode \"" + mode + "\" must be one of " + "\"r\", \"rw\", \"rws\"," + " or \"rwd\"");
}
SecurityManager security = System.getSecurityManager();
if(security != null) {
security.checkRead(name);
if(rw) {
security.checkWrite(name);
}
}
if(name == null) {
throw new NullPointerException();
}
if(file.isInvalid()) {
throw new FileNotFoundException("Invalid file path");
}
fd = new FileDescriptor();
// 将当前文件(流)记录到关联的文件描述符fd中
fd.attach(this);
path = name;
open(name, imode);
// 注册文件描述符fd到清理器
FileCleanable.register(fd); // open sets the fd, register the cleanup
}
/*▲ 构造器 ████████████████████████████████████████████████████████████████████████████████┛ */
/*▼ 读 ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Reads a {@code boolean} from this file. This method reads a
* single byte from the file, starting at the current file pointer.
* A value of {@code 0} represents
* {@code false}. Any other value represents {@code true}.
* This method blocks until the byte is read, the end of the stream
* is detected, or an exception is thrown.
*
* @return the {@code boolean} value read.
*
* @throws EOFException if this file has reached the end.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取boolean
public final boolean readBoolean() throws IOException {
int ch = this.read();
if(ch<0) {
throw new EOFException();
}
return (ch != 0);
}
/**
* Reads a character from this file. This method reads two
* bytes from the file, starting at the current file pointer.
* If the bytes read, in order, are
* {@code b1} and {@code b2}, where
* <code>0 <= b1, b2 <= 255</code>,
* then the result is equal to:
* <blockquote><pre>
* (char)((b1 << 8) | b2)
* </pre></blockquote>
* <p>
* This method blocks until the two bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return the next two bytes of this file, interpreted as a
* {@code char}.
*
* @throws EOFException if this file reaches the end before reading
* two bytes.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取char值(按大端法读取)
public final char readChar() throws IOException {
int ch1 = this.read();
int ch2 = this.read();
if((ch1 | ch2)<0) {
throw new EOFException();
}
return (char) ((ch1 << 8) + (ch2 << 0));
}
/**
* Reads a signed eight-bit value from this file. This method reads a
* byte from the file, starting from the current file pointer.
* If the byte read is {@code b}, where
* <code>0 <= b <= 255</code>,
* then the result is:
* <blockquote><pre>
* (byte)(b)
* </pre></blockquote>
* <p>
* This method blocks until the byte is read, the end of the stream
* is detected, or an exception is thrown.
*
* @return the next byte of this file as a signed eight-bit
* {@code byte}.
*
* @throws EOFException if this file has reached the end.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取byte值
public final byte readByte() throws IOException {
int ch = this.read();
if(ch<0) {
throw new EOFException();
}
return (byte) (ch);
}
/**
* Reads an unsigned eight-bit number from this file. This method reads
* a byte from this file, starting at the current file pointer,
* and returns that byte.
* <p>
* This method blocks until the byte is read, the end of the stream
* is detected, or an exception is thrown.
*
* @return the next byte of this file, interpreted as an unsigned
* eight-bit number.
*
* @throws EOFException if this file has reached the end.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取无符号byte
public final int readUnsignedByte() throws IOException {
int ch = this.read();
if(ch<0) {
throw new EOFException();
}
return ch;
}
/**
* Reads a signed 16-bit number from this file. The method reads two
* bytes from this file, starting at the current file pointer.
* If the two bytes read, in order, are
* {@code b1} and {@code b2}, where each of the two values is
* between {@code 0} and {@code 255}, inclusive, then the
* result is equal to:
* <blockquote><pre>
* (short)((b1 << 8) | b2)
* </pre></blockquote>
* <p>
* This method blocks until the two bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return the next two bytes of this file, interpreted as a signed
* 16-bit number.
*
* @throws EOFException if this file reaches the end before reading
* two bytes.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取short(按大端法读取)
public final short readShort() throws IOException {
int ch1 = this.read();
int ch2 = this.read();
if((ch1 | ch2)<0) {
throw new EOFException();
}
return (short) ((ch1 << 8) + (ch2 << 0));
}
/**
* Reads an unsigned 16-bit number from this file. This method reads
* two bytes from the file, starting at the current file pointer.
* If the bytes read, in order, are
* {@code b1} and {@code b2}, where
* <code>0 <= b1, b2 <= 255</code>,
* then the result is equal to:
* <blockquote><pre>
* (b1 << 8) | b2
* </pre></blockquote>
* <p>
* This method blocks until the two bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return the next two bytes of this file, interpreted as an unsigned
* 16-bit integer.
*
* @throws EOFException if this file reaches the end before reading
* two bytes.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取无符号short(按大端法读取)
public final int readUnsignedShort() throws IOException {
int ch1 = this.read();
int ch2 = this.read();
if((ch1 | ch2)<0) {
throw new EOFException();
}
return (ch1 << 8) + (ch2 << 0);
}
/**
* Reads a signed 32-bit integer from this file. This method reads 4
* bytes from the file, starting at the current file pointer.
* If the bytes read, in order, are {@code b1},
* {@code b2}, {@code b3}, and {@code b4}, where
* <code>0 <= b1, b2, b3, b4 <= 255</code>,
* then the result is equal to:
* <blockquote><pre>
* (b1 << 24) | (b2 << 16) + (b3 << 8) + b4
* </pre></blockquote>
* <p>
* This method blocks until the four bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return the next four bytes of this file, interpreted as an
* {@code int}.
*
* @throws EOFException if this file reaches the end before reading
* four bytes.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取int(按大端法读取)
public final int readInt() throws IOException {
int ch1 = this.read();
int ch2 = this.read();
int ch3 = this.read();
int ch4 = this.read();
if((ch1 | ch2 | ch3 | ch4)<0) {
throw new EOFException();
}
return ((ch1 << 24) + (ch2 << 16) + (ch3 << 8) + (ch4 << 0));
}
/**
* Reads a signed 64-bit integer from this file. This method reads eight
* bytes from the file, starting at the current file pointer.
* If the bytes read, in order, are
* {@code b1}, {@code b2}, {@code b3},
* {@code b4}, {@code b5}, {@code b6},
* {@code b7}, and {@code b8,} where:
* <blockquote><pre>
* 0 <= b1, b2, b3, b4, b5, b6, b7, b8 <=255,
* </pre></blockquote>
* <p>
* then the result is equal to:
* <blockquote><pre>
* ((long)b1 << 56) + ((long)b2 << 48)
* + ((long)b3 << 40) + ((long)b4 << 32)
* + ((long)b5 << 24) + ((long)b6 << 16)
* + ((long)b7 << 8) + b8
* </pre></blockquote>
* <p>
* This method blocks until the eight bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return the next eight bytes of this file, interpreted as a
* {@code long}.
*
* @throws EOFException if this file reaches the end before reading
* eight bytes.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取long(按大端法读取)
public final long readLong() throws IOException {
return ((long) (readInt()) << 32) + (readInt() & 0xFFFFFFFFL);
}
/**
* Reads a {@code float} from this file. This method reads an
* {@code int} value, starting at the current file pointer,
* as if by the {@code readInt} method
* and then converts that {@code int} to a {@code float}
* using the {@code intBitsToFloat} method in class
* {@code Float}.
* <p>
* This method blocks until the four bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return the next four bytes of this file, interpreted as a
* {@code float}.
*
* @throws EOFException if this file reaches the end before reading
* four bytes.
* @throws IOException if an I/O error occurs.
* @see java.io.RandomAccessFile#readInt()
* @see java.lang.Float#intBitsToFloat(int)
*/
// 从当前文件读取float(按大端法读取)
public final float readFloat() throws IOException {
return Float.intBitsToFloat(readInt());
}
/**
* Reads a {@code double} from this file. This method reads a
* {@code long} value, starting at the current file pointer,
* as if by the {@code readLong} method
* and then converts that {@code long} to a {@code double}
* using the {@code longBitsToDouble} method in
* class {@code Double}.
* <p>
* This method blocks until the eight bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return the next eight bytes of this file, interpreted as a
* {@code double}.
*
* @throws EOFException if this file reaches the end before reading
* eight bytes.
* @throws IOException if an I/O error occurs.
* @see java.io.RandomAccessFile#readLong()
* @see java.lang.Double#longBitsToDouble(long)
*/
// 从当前文件读取double(按大端法读取)
public final double readDouble() throws IOException {
return Double.longBitsToDouble(readLong());
}
/**
* Reads {@code b.length} bytes from this file into the byte
* array, starting at the current file pointer. This method reads
* repeatedly from the file until the requested number of bytes are
* read. This method blocks until the requested number of bytes are
* read, the end of the stream is detected, or an exception is thrown.
*
* @param b the buffer into which the data is read.
*
* @throws NullPointerException if {@code b} is {@code null}.
* @throws EOFException if this file reaches the end before reading
* all the bytes.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取足量的字节填充给定的字节数组,填不满不返回
public final void readFully(byte[] b) throws IOException {
readFully(b, 0, b.length);
}
/**
* Reads exactly {@code len} bytes from this file into the byte
* array, starting at the current file pointer. This method reads
* repeatedly from the file until the requested number of bytes are
* read. This method blocks until the requested number of bytes are
* read, the end of the stream is detected, or an exception is thrown.
*
* @param b the buffer into which the data is read.
* @param off the start offset into the data array {@code b}.
* @param len the number of bytes to read.
*
* @throws NullPointerException if {@code b} is {@code null}.
* @throws IndexOutOfBoundsException if {@code off} is negative,
* {@code len} is negative, or {@code len} is greater than
* {@code b.length - off}.
* @throws EOFException if this file reaches the end before reading
* all the bytes.
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取len个字节插入到字节数组b的off处,读不够len个字节不返回
public final void readFully(byte[] b, int off, int len) throws IOException {
int n = 0;
do {
int count = this.read(b, off + n, len - n);
if(count<0) {
throw new EOFException();
}
n += count;
} while(n<len);
}
/**
* Reads in a string from this file. The string has been encoded
* using a
* <a href="DataInput.html#modified-utf-8">modified UTF-8</a>
* format.
* <p>
* The first two bytes are read, starting from the current file
* pointer, as if by
* {@code readUnsignedShort}. This value gives the number of
* following bytes that are in the encoded string, not
* the length of the resulting string. The following bytes are then
* interpreted as bytes encoding characters in the modified UTF-8 format
* and are converted into characters.
* <p>
* This method blocks until all the bytes are read, the end of the
* stream is detected, or an exception is thrown.
*
* @return a Unicode string.
*
* @throws EOFException if this file reaches the end before
* reading all the bytes.
* @throws IOException if an I/O error occurs.
* @throws UTFDataFormatException if the bytes do not represent
* valid modified UTF-8 encoding of a Unicode string.
* @see java.io.RandomAccessFile#readUnsignedShort()
*/
// 从当前文件读取UTF8格式的字节,将其解码为String
public final String readUTF() throws IOException {
return DataInputStream.readUTF(this);
}
/**
* Reads the next line of text from this file. This method successively
* reads bytes from the file, starting at the current file pointer,
* until it reaches a line terminator or the end
* of the file. Each byte is converted into a character by taking the
* byte's value for the lower eight bits of the character and setting the
* high eight bits of the character to zero. This method does not,
* therefore, support the full Unicode character set.
*
* <p> A line of text is terminated by a carriage-return character
* ({@code '\u005Cr'}), a newline character ({@code '\u005Cn'}), a
* carriage-return character immediately followed by a newline character,
* or the end of the file. Line-terminating characters are discarded and
* are not included as part of the string returned.
*
* <p> This method blocks until a newline character is read, a carriage
* return and the byte following it are read (to see if it is a newline),
* the end of the file is reached, or an exception is thrown.
*
* @return the next line of text from this file, or null if end
* of file is encountered before even one byte is read.
*
* @throws IOException if an I/O error occurs.
*/
// 从当前文件读取一行数据
public final String readLine() throws IOException {
StringBuilder input = new StringBuilder();
int c = -1;
boolean eol = false;
while(!eol) {
switch(c = read()) {
case -1:
case '\n':
eol = true;
break;
case '\r':
eol = true;
long cur = getFilePointer();
if((read()) != '\n') {
seek(cur);
}
break;
default:
input.append((char) c);
break;
}
}
if((c == -1) && (input.length() == 0)) {
return null;
}
return input.toString();
}
/**
* Reads a byte of data from this file. The byte is returned as an
* integer in the range 0 to 255 ({@code 0x00-0x0ff}). This
* method blocks if no input is yet available.
* <p>
* Although {@code RandomAccessFile} is not a subclass of
* {@code InputStream}, this method behaves in exactly the same
* way as the {@link InputStream#read()} method of
* {@code InputStream}.
*
* @return the next byte of data, or {@code -1} if the end of the
* file has been reached.
*
* @throws IOException if an I/O error occurs. Not thrown if
* end-of-file has been reached.
*/
// 从当前文件读取一个字节,并将其返回;返回-1表示没有可读数据
public int read() throws IOException {
return read0();
}
/**
* Reads up to {@code b.length} bytes of data from this file
* into an array of bytes. This method blocks until at least one byte
* of input is available.
* <p>
* Although {@code RandomAccessFile} is not a subclass of
* {@code InputStream}, this method behaves in exactly the
* same way as the {@link InputStream#read(byte[])} method of
* {@code InputStream}.
*
* @param b the buffer into which the data is read.
*
* @return the total number of bytes read into the buffer, or
* {@code -1} if there is no more data because the end of
* this file has been reached.
*
* @throws IOException If the first byte cannot be read for any reason
* other than end of file, or if the random access file has been closed, or if
* some other I/O error occurs.
* @throws NullPointerException If {@code b} is {@code null}.
*/
// 从当前文件读取足量的字节填充字节数组b,返回实际填充的字节数
public int read(byte[] b) throws IOException {
return readBytes(b, 0, b.length);
}
/**
* Reads up to {@code len} bytes of data from this file into an
* array of bytes. This method blocks until at least one byte of input
* is available.
* <p>
* Although {@code RandomAccessFile} is not a subclass of
* {@code InputStream}, this method behaves in exactly the
* same way as the {@link InputStream#read(byte[], int, int)} method of
* {@code InputStream}.
*
* @param b the buffer into which the data is read.
* @param off the start offset in array {@code b}
* at which the data is written.
* @param len the maximum number of bytes read.
*
* @return the total number of bytes read into the buffer, or
* {@code -1} if there is no more data because the end of
* the file has been reached.
*
* @throws IOException If the first byte cannot be read for any reason
* other than end of file, or if the random access file has been closed, or if
* some other I/O error occurs.
* @throws NullPointerException If {@code b} is {@code null}.
* @throws IndexOutOfBoundsException If {@code off} is negative,
* {@code len} is negative, or {@code len} is greater than
* {@code b.length - off}
*/
// 从当前文件读取len个字节填充到字节数组b的off处,返回实际填充的字节数
public int read(byte[] b, int off, int len) throws IOException {
return readBytes(b, off, len);
}
/*▲ 读 ████████████████████████████████████████████████████████████████████████████████┛ */
/*▼ 写 ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Writes a {@code boolean} to the file as a one-byte value. The
* value {@code true} is written out as the value
* {@code (byte)1}; the value {@code false} is written out
* as the value {@code (byte)0}. The write starts at
* the current position of the file pointer.
*
* @param v a {@code boolean} value to be written.
*
* @throws IOException if an I/O error occurs.
*/
// 向当前文件写入boolean值
public final void writeBoolean(boolean v) throws IOException {
write(v ? 1 : 0);
//written++;
}
/**
* Writes a {@code char} to the file as a two-byte value, high
* byte first. The write starts at the current position of the
* file pointer.
*
* @param v a {@code char} value to be written.
*
* @throws IOException if an I/O error occurs.
*/
// 向当前文件写入char值(按大端法写入)
public final void writeChar(int v) throws IOException {
write((v >>> 8) & 0xFF);
write((v >>> 0) & 0xFF);
//written += 2;
}
/**
* Writes a {@code byte} to the file as a one-byte value. The
* write starts at the current position of the file pointer.
*
* @param v a {@code byte} value to be written.
*
* @throws IOException if an I/O error occurs.
*/
// 向当前文件写入byte值
public final void writeByte(int v) throws IOException {
write(v);
//written++;
}
/**
* Writes a {@code short} to the file as two bytes, high byte first.
* The write starts at the current position of the file pointer.
*
* @param v a {@code short} to be written.
*
* @throws IOException if an I/O error occurs.
*/
// 向当前文件写入short值(按大端法写入)
public final void writeShort(int v) throws IOException {
write((v >>> 8) & 0xFF);
write((v >>> 0) & 0xFF);
//written += 2;
}
/**
* Writes an {@code int} to the file as four bytes, high byte first.
* The write starts at the current position of the file pointer.
*
* @param v an {@code int} to be written.
*
* @throws IOException if an I/O error occurs.
*/
// 向当前文件写入int值(按大端法写入)
public final void writeInt(int v) throws IOException {
write((v >>> 24) & 0xFF);
write((v >>> 16) & 0xFF);
write((v >>> 8) & 0xFF);
write((v >>> 0) & 0xFF);
//written += 4;
}
/**
* Writes a {@code long} to the file as eight bytes, high byte first.
* The write starts at the current position of the file pointer.
*
* @param v a {@code long} to be written.
*
* @throws IOException if an I/O error occurs.
*/
// 向当前文件写入long值(按大端法写入)
public final void writeLong(long v) throws IOException {
write((int) (v >>> 56) & 0xFF);
write((int) (v >>> 48) & 0xFF);
write((int) (v >>> 40) & 0xFF);
write((int) (v >>> 32) & 0xFF);
write((int) (v >>> 24) & 0xFF);
write((int) (v >>> 16) & 0xFF);
write((int) (v >>> 8) & 0xFF);
write((int) (v >>> 0) & 0xFF);
//written += 8;
}
/**
* Converts the float argument to an {@code int} using the
* {@code floatToIntBits} method in class {@code Float},
* and then writes that {@code int} value to the file as a
* four-byte quantity, high byte first. The write starts at the
* current position of the file pointer.
*
* @param v a {@code float} value to be written.
*
* @throws IOException if an I/O error occurs.
* @see java.lang.Float#floatToIntBits(float)
*/
// 向当前文件写入float值(先转为二进制,再按大端法写入)
public final void writeFloat(float v) throws IOException {
writeInt(Float.floatToIntBits(v));
}
/**
* Converts the double argument to a {@code long} using the
* {@code doubleToLongBits} method in class {@code Double},
* and then writes that {@code long} value to the file as an
* eight-byte quantity, high byte first. The write starts at the current
* position of the file pointer.
*
* @param v a {@code double} value to be written.
*
* @throws IOException if an I/O error occurs.
* @see java.lang.Double#doubleToLongBits(double)
*/
// 向当前文件写入double值(先转为二进制,按大端法写入)
public final void writeDouble(double v) throws IOException {
writeLong(Double.doubleToLongBits(v));
}
/**
* Writes the string to the file as a sequence of bytes. Each
* character in the string is written out, in sequence, by discarding
* its high eight bits. The write starts at the current position of
* the file pointer.
*
* @param s a string of bytes to be written.
*
* @throws IOException if an I/O error occurs.
*/
// 向当前文件写入String值(按字节写入)
@SuppressWarnings("deprecation")
public final void writeBytes(String s) throws IOException {
int len = s.length();
byte[] b = new byte[len];
s.getBytes(0, len, b, 0);
writeBytes(b, 0, len);
}
/**
* Writes a string to the file as a sequence of characters. Each
* character is written to the data output stream as if by the
* {@code writeChar} method. The write starts at the current
* position of the file pointer.
*
* @param s a {@code String} value to be written.
*
* @throws IOException if an I/O error occurs.
* @see java.io.RandomAccessFile#writeChar(int)
*/
// 向当前文件写入String值(按字符写入)
public final void writeChars(String s) throws IOException {
int clen = s.length();
int blen = 2 * clen;
byte[] b = new byte[blen];
char[] c = new char[clen];
s.getChars(0, clen, c, 0);
for(int i = 0, j = 0; i<clen; i++) {
b[j++] = (byte) (c[i] >>> 8);
b[j++] = (byte) (c[i] >>> 0);
}
writeBytes(b, 0, blen);