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Integer.java
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Integer.java
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/*
* Copyright (c) 1994, 2018, 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.lang;
import jdk.internal.HotSpotIntrinsicCandidate;
import jdk.internal.misc.VM;
import java.lang.annotation.Native;
import java.util.Objects;
import static java.lang.String.COMPACT_STRINGS;
import static java.lang.String.LATIN1;
import static java.lang.String.UTF16;
/**
* The {@code Integer} class wraps a value of the primitive type
* {@code int} in an object. An object of type {@code Integer}
* contains a single field whose type is {@code int}.
*
* <p>In addition, this class provides several methods for converting
* an {@code int} to a {@code String} and a {@code String} to an
* {@code int}, as well as other constants and methods useful when
* dealing with an {@code int}.
*
* <p>Implementation note: The implementations of the "bit twiddling"
* methods (such as {@link #highestOneBit(int) highestOneBit} and
* {@link #numberOfTrailingZeros(int) numberOfTrailingZeros}) are
* based on material from Henry S. Warren, Jr.'s <i>Hacker's
* Delight</i>, (Addison Wesley, 2002).
*
* @author Lee Boynton
* @author Arthur van Hoff
* @author Josh Bloch
* @author Joseph D. Darcy
* @since 1.0
*/
// int的包装类
public final class Integer extends Number implements Comparable<Integer> {
/** use serialVersionUID from JDK 1.0.2 for interoperability */
@Native
private static final long serialVersionUID = 1360826667806852920L;
/**
* The {@code Class} instance representing the primitive type
* {@code int}.
*
* @since 1.1
*/
// 相当于int.class
@SuppressWarnings("unchecked")
public static final Class<Integer> TYPE = (Class<Integer>) Class.getPrimitiveClass("int");
/**
* A constant holding the minimum value an {@code int} can
* have, -2<sup>31</sup>.
*/
@Native
public static final int MIN_VALUE = 0x80000000; // int最小值
/**
* A constant holding the maximum value an {@code int} can
* have, 2<sup>31</sup>-1.
*/
@Native
public static final int MAX_VALUE = 0x7fffffff; // int最大值
/**
* The number of bits used to represent an {@code int} value in two's
* complement binary form.
*
* @since 1.5
*/
@Native
public static final int SIZE = 32; // 当前类型所占bit[位]数
/**
* The number of bytes used to represent an {@code int} value in two's
* complement binary form.
*
* @since 1.8
*/
public static final int BYTES = SIZE / Byte.SIZE; // 当前类型所占字节数
/**
* The value of the {@code Integer}.
*
* @serial
*/
private final int value; // 当前类包装的值
/**
* All possible chars for representing a number as a String
*/
// 进制
static final char[] digits = {
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'a', 'b', 'c', 'd', 'e', 'f', 'g',
'h', 'i', 'j', 'k', 'l', 'm', 'n',
'o', 'p', 'q', 'r', 's', 't',
'u', 'v', 'w', 'x', 'y', 'z'
};
// 个位数
static final byte[] DigitOnes = {
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
'0', '1', '2', '3', '4', '5', '6', '7', '8', '9',
};
// 十位数
static final byte[] DigitTens = {
'0', '0', '0', '0', '0', '0', '0', '0', '0', '0',
'1', '1', '1', '1', '1', '1', '1', '1', '1', '1',
'2', '2', '2', '2', '2', '2', '2', '2', '2', '2',
'3', '3', '3', '3', '3', '3', '3', '3', '3', '3',
'4', '4', '4', '4', '4', '4', '4', '4', '4', '4',
'5', '5', '5', '5', '5', '5', '5', '5', '5', '5',
'6', '6', '6', '6', '6', '6', '6', '6', '6', '6',
'7', '7', '7', '7', '7', '7', '7', '7', '7', '7',
'8', '8', '8', '8', '8', '8', '8', '8', '8', '8',
'9', '9', '9', '9', '9', '9', '9', '9', '9', '9',
};
// Left here for compatibility reasons, see JDK-8143900.
static final int[] sizeTable = {9, 99, 999, 9999, 99999, 999999, 9999999, 99999999, 999999999, Integer.MAX_VALUE};
/*▼ 构造方法 ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Constructs a newly allocated {@code Integer} object that
* represents the specified {@code int} value.
*
* @param value the value to be represented by the
* {@code Integer} object.
*
* @deprecated It is rarely appropriate to use this constructor. The static factory
* {@link #valueOf(int)} is generally a better choice, as it is
* likely to yield significantly better space and time performance.
*/
@Deprecated(since = "9")
public Integer(int value) {
this.value = value;
}
/**
* Constructs a newly allocated {@code Integer} object that
* represents the {@code int} value indicated by the
* {@code String} parameter. The string is converted to an
* {@code int} value in exactly the manner used by the
* {@code parseInt} method for radix 10.
*
* @param s the {@code String} to be converted to an {@code Integer}.
*
* @throws NumberFormatException if the {@code String} does not
* contain a parsable integer.
* @deprecated It is rarely appropriate to use this constructor.
* Use {@link #parseInt(String)} to convert a string to a
* {@code int} primitive, or use {@link #valueOf(String)}
* to convert a string to an {@code Integer} object.
*/
@Deprecated(since = "9")
public Integer(String s) throws NumberFormatException {
this.value = parseInt(s, 10);
}
/*▲ 构造方法 ████████████████████████████████████████████████████████████████████████████████┛ */
/*▼ [装箱] ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Returns an {@code Integer} instance representing the specified
* {@code int} value. If a new {@code Integer} instance is not
* required, this method should generally be used in preference to
* the constructor {@link #Integer(int)}, as this method is likely
* to yield significantly better space and time performance by
* caching frequently requested values.
*
* This method will always cache values in the range -128 to 127,
* inclusive, and may cache other values outside of this range.
*
* @param i an {@code int} value.
*
* @return an {@code Integer} instance representing {@code i}.
*
* @since 1.5
*/
// int-->Integer 默认的装箱行为
@HotSpotIntrinsicCandidate
public static Integer valueOf(int i) {
if(i >= IntegerCache.low && i<=IntegerCache.high)
return IntegerCache.cache[i + (-IntegerCache.low)];
return new Integer(i);
}
/**
* Returns an {@code Integer} object holding the
* value of the specified {@code String}. The argument is
* interpreted as representing a signed decimal integer, exactly
* as if the argument were given to the {@link
* #parseInt(java.lang.String)} method. The result is an
* {@code Integer} object that represents the integer value
* specified by the string.
*
* <p>In other words, this method returns an {@code Integer}
* object equal to the value of:
*
* <blockquote>
* {@code new Integer(Integer.parseInt(s))}
* </blockquote>
*
* @param s the string to be parsed.
*
* @return an {@code Integer} object holding the value
* represented by the string argument.
*
* @throws NumberFormatException if the string cannot be parsed
* as an integer.
*/
// 按10进制形式将字符串s解析为int值,随后再装箱
public static Integer valueOf(String s) throws NumberFormatException {
return Integer.valueOf(parseInt(s, 10));
}
/**
* Returns an {@code Integer} object holding the value
* extracted from the specified {@code String} when parsed
* with the radix given by the second argument. The first argument
* is interpreted as representing a signed integer in the radix
* specified by the second argument, exactly as if the arguments
* were given to the {@link #parseInt(java.lang.String, int)}
* method. The result is an {@code Integer} object that
* represents the integer value specified by the string.
*
* <p>In other words, this method returns an {@code Integer}
* object equal to the value of:
*
* <blockquote>
* {@code new Integer(Integer.parseInt(s, radix))}
* </blockquote>
*
* @param s the string to be parsed.
* @param radix the radix to be used in interpreting {@code s}
*
* @return an {@code Integer} object holding the value
* represented by the string argument in the specified
* radix.
*
* @throws NumberFormatException if the {@code String}
* does not contain a parsable {@code int}.
*/
// 按radix进制形式将字符串s解析为int值,随后再装箱
public static Integer valueOf(String s, int radix) throws NumberFormatException {
return Integer.valueOf(parseInt(s, radix));
}
/**
* Decodes a {@code String} into an {@code Integer}.
* Accepts decimal, hexadecimal, and octal numbers given
* by the following grammar:
*
* <blockquote>
* <dl>
* <dt><i>DecodableString:</i>
* <dd><i>Sign<sub>opt</sub> DecimalNumeral</i>
* <dd><i>Sign<sub>opt</sub></i> {@code 0x} <i>HexDigits</i>
* <dd><i>Sign<sub>opt</sub></i> {@code 0X} <i>HexDigits</i>
* <dd><i>Sign<sub>opt</sub></i> {@code #} <i>HexDigits</i>
* <dd><i>Sign<sub>opt</sub></i> {@code 0} <i>OctalDigits</i>
*
* <dt><i>Sign:</i>
* <dd>{@code -}
* <dd>{@code +}
* </dl>
* </blockquote>
*
* <i>DecimalNumeral</i>, <i>HexDigits</i>, and <i>OctalDigits</i>
* are as defined in section 3.10.1 of
* <cite>The Java™ Language Specification</cite>,
* except that underscores are not accepted between digits.
*
* <p>The sequence of characters following an optional
* sign and/or radix specifier ("{@code 0x}", "{@code 0X}",
* "{@code #}", or leading zero) is parsed as by the {@code
* Integer.parseInt} method with the indicated radix (10, 16, or
* 8). This sequence of characters must represent a positive
* value or a {@link NumberFormatException} will be thrown. The
* result is negated if first character of the specified {@code
* String} is the minus sign. No whitespace characters are
* permitted in the {@code String}.
*
* @param nm the {@code String} to decode.
*
* @return an {@code Integer} object holding the {@code int}
* value represented by {@code nm}
*
* @throws NumberFormatException if the {@code String} does not
* contain a parsable integer.
* @see java.lang.Integer#parseInt(java.lang.String, int)
*/
/*
* 将字符串nm解析为int,随后再装箱
*
* 采用哪种进制解析nm取决于nm的格式:
* > 0x、0X、#开头,代表按16进制解析
* > 0开头,代表按8进制解析
* > 其他情形默认按10进制解析
*/
public static Integer decode(String nm) throws NumberFormatException {
int radix = 10;
int index = 0;
boolean negative = false;
Integer result;
if(nm.length() == 0)
throw new NumberFormatException("Zero length string");
char firstChar = nm.charAt(0);
// Handle sign, if present
if(firstChar == '-') {
negative = true;
index++;
} else if(firstChar == '+')
index++;
// Handle radix specifier, if present
if(nm.startsWith("0x", index) || nm.startsWith("0X", index)) {
index += 2;
radix = 16;
} else if(nm.startsWith("#", index)) {
index++;
radix = 16;
} else if(nm.startsWith("0", index) && nm.length()>1 + index) {
index++;
radix = 8;
}
if(nm.startsWith("-", index) || nm.startsWith("+", index))
throw new NumberFormatException("Sign character in wrong position");
try {
result = Integer.valueOf(nm.substring(index), radix);
result = negative ? Integer.valueOf(-result.intValue()) : result;
} catch(NumberFormatException e) {
// If number is Integer.MIN_VALUE, we'll end up here. The next line
// handles this case, and causes any genuine format error to be
// rethrown.
String constant = negative ? ("-" + nm.substring(index)) : nm.substring(index);
result = Integer.valueOf(constant, radix);
}
return result;
}
/*▲ [装箱] ████████████████████████████████████████████████████████████████████████████████┛ */
/*▼ [拆箱] ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Returns the value of this {@code Integer} as a {@code byte}
* after a narrowing primitive conversion.
*
* @jls 5.1.3 Narrowing Primitive Conversions
*/
// 以byte形式返回当前对象的值
public byte byteValue() {
return (byte) value;
}
/**
* Returns the value of this {@code Integer} as a {@code short}
* after a narrowing primitive conversion.
*
* @jls 5.1.3 Narrowing Primitive Conversions
*/
// 以short形式返回当前对象的值
public short shortValue() {
return (short) value;
}
/**
* Returns the value of this {@code Integer} as an
* {@code int}.
*/
// Integer-->int 默认的拆箱行为
@HotSpotIntrinsicCandidate
public int intValue() {
return value;
}
/**
* Returns the value of this {@code Integer} as a {@code long}
* after a widening primitive conversion.
*
* @jls 5.1.2 Widening Primitive Conversions
* @see Integer#toUnsignedLong(int)
*/
// 以long形式返回当前对象的值
public long longValue() {
return (long) value;
}
/**
* Returns the value of this {@code Integer} as a {@code float}
* after a widening primitive conversion.
*
* @jls 5.1.2 Widening Primitive Conversions
*/
// 以float形式返回当前对象的值
public float floatValue() {
return (float) value;
}
/**
* Returns the value of this {@code Integer} as a {@code double}
* after a widening primitive conversion.
*
* @jls 5.1.2 Widening Primitive Conversions
*/
// 以double形式返回当前对象的值
public double doubleValue() {
return (double) value;
}
/*▲ [拆箱] ████████████████████████████████████████████████████████████████████████████████┛ */
/*▼ 从属性中解析值 ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Returns the integer value of the system property with the
* specified name. The first argument is treated as the name of a
* system property. System properties are accessible through the
* {@link java.lang.System#getProperty(java.lang.String)} method.
* The string value of this property is then interpreted as an
* integer value, as per the {@link Integer#decode decode} method,
* and an {@code Integer} object representing this value is
* returned; in summary:
*
* <ul><li>If the property value begins with the two ASCII characters
* {@code 0x} or the ASCII character {@code #}, not
* followed by a minus sign, then the rest of it is parsed as a
* hexadecimal integer exactly as by the method
* {@link #valueOf(java.lang.String, int)} with radix 16.
* <li>If the property value begins with the ASCII character
* {@code 0} followed by another character, it is parsed as an
* octal integer exactly as by the method
* {@link #valueOf(java.lang.String, int)} with radix 8.
* <li>Otherwise, the property value is parsed as a decimal integer
* exactly as by the method {@link #valueOf(java.lang.String, int)}
* with radix 10.
* </ul>
*
* <p>The second argument is the default value. The default value is
* returned if there is no property of the specified name, if the
* property does not have the correct numeric format, or if the
* specified name is empty or {@code null}.
*
* @param nm property name.
* @param val default value.
*
* @return the {@code Integer} value of the property.
*
* @throws SecurityException for the same reasons as
* {@link System#getProperty(String) System.getProperty}
* @see System#getProperty(java.lang.String)
* @see System#getProperty(java.lang.String, java.lang.String)
*/
/*
* 从系统属性中获取值,然后再装箱
* 其中,nm为某个系统属性,val为备用值
*
* 比如:
* System.setProperty("age", "20");
* Integer x = getInteger("age", 25);
* 如果属性age存在(被提前设置),x的值为20。
* 如果属性age不存在,则x的值为备用值25。
*/
public static Integer getInteger(String nm, Integer val) {
String v = null;
try {
v = System.getProperty(nm);
} catch(IllegalArgumentException | NullPointerException e) {
}
if(v != null) {
try {
return Integer.decode(v);
} catch(NumberFormatException e) {
}
}
return val;
}
/**
* Determines the integer value of the system property with the
* specified name.
*
* <p>The first argument is treated as the name of a system
* property. System properties are accessible through the {@link
* java.lang.System#getProperty(java.lang.String)} method. The
* string value of this property is then interpreted as an integer
* value using the grammar supported by {@link Integer#decode decode} and
* an {@code Integer} object representing this value is returned.
*
* <p>The second argument is the default value. An {@code Integer} object
* that represents the value of the second argument is returned if there
* is no property of the specified name, if the property does not have
* the correct numeric format, or if the specified name is empty or
* {@code null}.
*
* <p>In other words, this method returns an {@code Integer} object
* equal to the value of:
*
* <blockquote>
* {@code getInteger(nm, new Integer(val))}
* </blockquote>
*
* but in practice it may be implemented in a manner such as:
*
* <blockquote><pre>
* Integer result = getInteger(nm, null);
* return (result == null) ? new Integer(val) : result;
* </pre></blockquote>
*
* to avoid the unnecessary allocation of an {@code Integer}
* object when the default value is not needed.
*
* @param nm property name.
* @param val default value.
*
* @return the {@code Integer} value of the property.
*
* @throws SecurityException for the same reasons as
* {@link System#getProperty(String) System.getProperty}
* @see java.lang.System#getProperty(java.lang.String)
* @see java.lang.System#getProperty(java.lang.String, java.lang.String)
*/
// 从系统属性中获取值,然后再装箱。如果取不到值,选用val
public static Integer getInteger(String nm, int val) {
Integer result = getInteger(nm, null);
return (result == null) ? Integer.valueOf(val) : result;
}
/**
* Determines the integer value of the system property with the
* specified name.
*
* <p>The first argument is treated as the name of a system
* property. System properties are accessible through the {@link
* java.lang.System#getProperty(java.lang.String)} method. The
* string value of this property is then interpreted as an integer
* value using the grammar supported by {@link Integer#decode decode} and
* an {@code Integer} object representing this value is returned.
*
* <p>If there is no property with the specified name, if the
* specified name is empty or {@code null}, or if the property
* does not have the correct numeric format, then {@code null} is
* returned.
*
* <p>In other words, this method returns an {@code Integer}
* object equal to the value of:
*
* <blockquote>
* {@code getInteger(nm, null)}
* </blockquote>
*
* @param nm property name.
*
* @return the {@code Integer} value of the property.
*
* @throws SecurityException for the same reasons as
* {@link System#getProperty(String) System.getProperty}
* @see java.lang.System#getProperty(java.lang.String)
* @see java.lang.System#getProperty(java.lang.String, java.lang.String)
*/
// 从系统属性中获取值,然后再装箱。如果取不到值,返回null。
public static Integer getInteger(String nm) {
return getInteger(nm, null);
}
/*▲ 从属性中解析值 ████████████████████████████████████████████████████████████████████████████████┛ */
/*▼ 逆字符串化 ████████████████████████████████████████████████████████████████████████████████┓ */
/**
* Parses the string argument as a signed integer in the radix
* specified by the second argument. The characters in the string
* must all be digits of the specified radix (as determined by
* whether {@link java.lang.Character#digit(char, int)} returns a
* nonnegative value), except that the first character may be an
* ASCII minus sign {@code '-'} ({@code '\u005Cu002D'}) to
* indicate a negative value or an ASCII plus sign {@code '+'}
* ({@code '\u005Cu002B'}) to indicate a positive value. The
* resulting integer value is returned.
*
* <p>An exception of type {@code NumberFormatException} is
* thrown if any of the following situations occurs:
* <ul>
* <li>The first argument is {@code null} or is a string of
* length zero.
*
* <li>The radix is either smaller than
* {@link java.lang.Character#MIN_RADIX} or
* larger than {@link java.lang.Character#MAX_RADIX}.
*
* <li>Any character of the string is not a digit of the specified
* radix, except that the first character may be a minus sign
* {@code '-'} ({@code '\u005Cu002D'}) or plus sign
* {@code '+'} ({@code '\u005Cu002B'}) provided that the
* string is longer than length 1.
*
* <li>The value represented by the string is not a value of type
* {@code int}.
* </ul>
*
* <p>Examples:
* <blockquote><pre>
* parseInt("0", 10) returns 0
* parseInt("473", 10) returns 473
* parseInt("+42", 10) returns 42
* parseInt("-0", 10) returns 0
* parseInt("-FF", 16) returns -255
* parseInt("1100110", 2) returns 102
* parseInt("2147483647", 10) returns 2147483647
* parseInt("-2147483648", 10) returns -2147483648
* parseInt("2147483648", 10) throws a NumberFormatException
* parseInt("99", 8) throws a NumberFormatException
* parseInt("Kona", 10) throws a NumberFormatException
* parseInt("Kona", 27) returns 411787
* </pre></blockquote>
*
* @param s the {@code String} containing the integer
* representation to be parsed
* @param radix the radix to be used while parsing {@code s}.
*
* @return the integer represented by the string argument in the
* specified radix.
*
* @throws NumberFormatException if the {@code String}
* does not contain a parsable {@code int}.
*/
// 按radix进制形式将字符串s解析为int值
public static int parseInt(String s, int radix) throws NumberFormatException {
/*
* WARNING: This method may be invoked early during VM initialization before IntegerCache is initialized.
* Care must be taken to not use the valueOf method.
*/
if(s == null) {
throw new NumberFormatException("null");
}
if(radix<Character.MIN_RADIX) {
throw new NumberFormatException("radix " + radix + " less than Character.MIN_RADIX");
}
if(radix>Character.MAX_RADIX) {
throw new NumberFormatException("radix " + radix + " greater than Character.MAX_RADIX");
}
boolean negative = false;
int i = 0, len = s.length();
int limit = -Integer.MAX_VALUE;
if(len>0) {
char firstChar = s.charAt(0);
if(firstChar<'0') { // Possible leading "+" or "-"
if(firstChar == '-') {
negative = true;
limit = Integer.MIN_VALUE;
} else if(firstChar != '+') {
throw NumberFormatException.forInputString(s);
}
if(len == 1) { // Cannot have lone "+" or "-"
throw NumberFormatException.forInputString(s);
}
i++;
}
int multmin = limit / radix;
int result = 0;
while(i<len) {
// Accumulating negatively avoids surprises near MAX_VALUE
int digit = Character.digit(s.charAt(i++), radix);
if(digit<0 || result<multmin) {
throw NumberFormatException.forInputString(s);
}
result *= radix;
if(result<limit + digit) {
throw NumberFormatException.forInputString(s);
}
result -= digit;
}
return negative ? result : -result;
} else {
throw NumberFormatException.forInputString(s);
}
}
/**
* Parses the string argument as a signed decimal integer. The
* characters in the string must all be decimal digits, except
* that the first character may be an ASCII minus sign {@code '-'}
* ({@code '\u005Cu002D'}) to indicate a negative value or an
* ASCII plus sign {@code '+'} ({@code '\u005Cu002B'}) to
* indicate a positive value. The resulting integer value is
* returned, exactly as if the argument and the radix 10 were
* given as arguments to the {@link #parseInt(java.lang.String,
* int)} method.
*
* @param s a {@code String} containing the {@code int}
* representation to be parsed
*
* @return the integer value represented by the argument in decimal.
*
* @throws NumberFormatException if the string does not contain a
* parsable integer.
*/
// 按10进制形式将字符串s解析为int值
public static int parseInt(String s) throws NumberFormatException {
return parseInt(s, 10);
}
/**
* Parses the {@link CharSequence} argument as a signed {@code int} in the
* specified {@code radix}, beginning at the specified {@code beginIndex}
* and extending to {@code endIndex - 1}.
*
* <p>The method does not take steps to guard against the
* {@code CharSequence} being mutated while parsing.
*
* @param s the {@code CharSequence} containing the {@code int}
* representation to be parsed
* @param beginIndex the beginning index, inclusive.
* @param endIndex the ending index, exclusive.
* @param radix the radix to be used while parsing {@code s}.
*
* @return the signed {@code int} represented by the subsequence in
* the specified radix.
*
* @throws NullPointerException if {@code s} is null.
* @throws IndexOutOfBoundsException if {@code beginIndex} is
* negative, or if {@code beginIndex} is greater than
* {@code endIndex} or if {@code endIndex} is greater than
* {@code s.length()}.
* @throws NumberFormatException if the {@code CharSequence} does not
* contain a parsable {@code int} in the specified
* {@code radix}, or if {@code radix} is either smaller than
* {@link java.lang.Character#MIN_RADIX} or larger than
* {@link java.lang.Character#MAX_RADIX}.
* @since 9
*/
// 按radix进制形式将字符序列s的[beginIndex, endIndex)部分解析为int值
public static int parseInt(CharSequence s, int beginIndex, int endIndex, int radix) throws NumberFormatException {
s = Objects.requireNonNull(s);
if(beginIndex<0 || beginIndex>endIndex || endIndex>s.length()) {
throw new IndexOutOfBoundsException();
}
if(radix<Character.MIN_RADIX) {
throw new NumberFormatException("radix " + radix + " less than Character.MIN_RADIX");
}
if(radix>Character.MAX_RADIX) {
throw new NumberFormatException("radix " + radix + " greater than Character.MAX_RADIX");
}
boolean negative = false;
int i = beginIndex;
int limit = -Integer.MAX_VALUE;
if(i<endIndex) {
char firstChar = s.charAt(i);
if(firstChar<'0') { // Possible leading "+" or "-"
if(firstChar == '-') {
negative = true;
limit = Integer.MIN_VALUE;
} else if(firstChar != '+') {
throw NumberFormatException.forCharSequence(s, beginIndex, endIndex, i);
}
i++;
if(i == endIndex) { // Cannot have lone "+" or "-"
throw NumberFormatException.forCharSequence(s, beginIndex, endIndex, i);
}
}
int multmin = limit / radix;
int result = 0;
while(i<endIndex) {
// Accumulating negatively avoids surprises near MAX_VALUE
int digit = Character.digit(s.charAt(i), radix);
if(digit<0 || result<multmin) {
throw NumberFormatException.forCharSequence(s, beginIndex, endIndex, i);
}
result *= radix;
if(result<limit + digit) {
throw NumberFormatException.forCharSequence(s, beginIndex, endIndex, i);
}
i++;
result -= digit;
}
return negative ? result : -result;
} else {
throw NumberFormatException.forInputString("");
}
}
/**
* Parses the string argument as an unsigned integer in the radix
* specified by the second argument. An unsigned integer maps the
* values usually associated with negative numbers to positive
* numbers larger than {@code MAX_VALUE}.
*
* The characters in the string must all be digits of the
* specified radix (as determined by whether {@link
* java.lang.Character#digit(char, int)} returns a nonnegative
* value), except that the first character may be an ASCII plus
* sign {@code '+'} ({@code '\u005Cu002B'}). The resulting
* integer value is returned.
*
* <p>An exception of type {@code NumberFormatException} is
* thrown if any of the following situations occurs:
* <ul>
* <li>The first argument is {@code null} or is a string of
* length zero.
*
* <li>The radix is either smaller than
* {@link java.lang.Character#MIN_RADIX} or
* larger than {@link java.lang.Character#MAX_RADIX}.
*
* <li>Any character of the string is not a digit of the specified
* radix, except that the first character may be a plus sign
* {@code '+'} ({@code '\u005Cu002B'}) provided that the
* string is longer than length 1.
*
* <li>The value represented by the string is larger than the
* largest unsigned {@code int}, 2<sup>32</sup>-1.
*
* </ul>
*
* @param s the {@code String} containing the unsigned integer
* representation to be parsed
* @param radix the radix to be used while parsing {@code s}.
*
* @return the integer represented by the string argument in the
* specified radix.
*
* @throws NumberFormatException if the {@code String}
* does not contain a parsable {@code int}.
* @since 1.8
*/
// 按radix进制形式将无符号整型字符串s解析为有符号整型值
public static int parseUnsignedInt(String s, int radix) throws NumberFormatException {
if(s == null) {
throw new NumberFormatException("null");
}
int len = s.length();
if(len>0) {
char firstChar = s.charAt(0);
if(firstChar == '-') {
throw new NumberFormatException(String.format("Illegal leading minus sign " + "on unsigned string %s.", s));
} else {
if(len<=5 || // Integer.MAX_VALUE in Character.MAX_RADIX is 6 digits
(radix == 10 && len<=9)) { // Integer.MAX_VALUE in base 10 is 10 digits
return parseInt(s, radix);
} else {
long ell = Long.parseLong(s, radix);
if((ell & 0xffff_ffff_0000_0000L) == 0) {
return (int) ell;
} else {
throw new NumberFormatException(String.format("String value %s exceeds " + "range of unsigned int.", s));
}
}
}
} else {
throw NumberFormatException.forInputString(s);
}
}
/**
* Parses the string argument as an unsigned decimal integer. The
* characters in the string must all be decimal digits, except
* that the first character may be an ASCII plus sign {@code
* '+'} ({@code '\u005Cu002B'}). The resulting integer value
* is returned, exactly as if the argument and the radix 10 were
* given as arguments to the {@link
* #parseUnsignedInt(java.lang.String, int)} method.
*
* @param s a {@code String} containing the unsigned {@code int}
* representation to be parsed
*
* @return the unsigned integer value represented by the argument in decimal.
*
* @throws NumberFormatException if the string does not contain a
* parsable unsigned integer.
* @since 1.8
*/
// 按10进制形式将无符号整型字符串s解析为有符号整型值
public static int parseUnsignedInt(String s) throws NumberFormatException {
return parseUnsignedInt(s, 10);
}
/**
* Parses the {@link CharSequence} argument as an unsigned {@code int} in
* the specified {@code radix}, beginning at the specified
* {@code beginIndex} and extending to {@code endIndex - 1}.
*
* <p>The method does not take steps to guard against the
* {@code CharSequence} being mutated while parsing.
*
* @param s the {@code CharSequence} containing the unsigned
* {@code int} representation to be parsed
* @param beginIndex the beginning index, inclusive.
* @param endIndex the ending index, exclusive.
* @param radix the radix to be used while parsing {@code s}.
*
* @return the unsigned {@code int} represented by the subsequence in
* the specified radix.
*
* @throws NullPointerException if {@code s} is null.
* @throws IndexOutOfBoundsException if {@code beginIndex} is
* negative, or if {@code beginIndex} is greater than
* {@code endIndex} or if {@code endIndex} is greater than
* {@code s.length()}.
* @throws NumberFormatException if the {@code CharSequence} does not
* contain a parsable unsigned {@code int} in the specified
* {@code radix}, or if {@code radix} is either smaller than
* {@link java.lang.Character#MIN_RADIX} or larger than
* {@link java.lang.Character#MAX_RADIX}.
* @since 9
*/
// 按radix进制形式将无符号整型字符序列s的[beginIndex, endIndex)部分解析为有符号整型值
public static int parseUnsignedInt(CharSequence s, int beginIndex, int endIndex, int radix) throws NumberFormatException {
s = Objects.requireNonNull(s);
if(beginIndex<0 || beginIndex>endIndex || endIndex>s.length()) {
throw new IndexOutOfBoundsException();
}
int start = beginIndex, len = endIndex - beginIndex;
if(len>0) {
char firstChar = s.charAt(start);
if(firstChar == '-') {
throw new NumberFormatException(String.format("Illegal leading minus sign " + "on unsigned string %s.", s));
} else {
if(len<=5 || // Integer.MAX_VALUE in Character.MAX_RADIX is 6 digits
(radix == 10 && len<=9)) { // Integer.MAX_VALUE in base 10 is 10 digits
return parseInt(s, start, start + len, radix);
} else {
long ell = Long.parseLong(s, start, start + len, radix);
if((ell & 0xffff_ffff_0000_0000L) == 0) {
return (int) ell;
} else {
throw new NumberFormatException(String.format("String value %s exceeds " + "range of unsigned int.", s));
}
}
}
} else {
throw new NumberFormatException("");
}
}
/*▲ 逆字符串化 ████████████████████████████████████████████████████████████████████████████████┛ */