类加载运行全过程
当我们用java命令运行某个类的main函数启动流程时,首先需要通过类加载器把主类加载到JVM。
类加载过程
- 加载:在硬盘上查找并通过IO读入字节码文件,使用到类时才会加载,比如调用类的main方法,new对象等等(只是定义不会被加载,如B b = null),在加载阶段会在内存中生成一个代表这个类的java.lang.Class对象,作为方法区这个类的各种数据的访问入口。
- 验证:校验字节码文件的正确性
- 准备:给类的静态变量分配内存,并赋予默认值
- 解析:将符号引用替换为直接引用,该阶段会把一些静态方法(符号引用,比如main()方法)替换为指向数据所存内存的指针或句柄等(直接引用),这是所谓的静态链接过程(类加载期间完成),动态链接是在程序运行期间完成的将符号引用替换为直接引用
- 初始化:对类的静态变量初始化为指定的值,执行静态代码块
类加载器和双亲委派机制
类加载器
- 引导类加载器:负责加载支撑JVM运行的位于JRE的lib目录下的核心类库,比如rt.jar、charset.jar等(C++实现)
- 扩展类加载器:负责加载支撑JVM运行的位于JRE的lib目录下的ext扩展目录中的JAR类包
- 应用程序类加载器:负责加载ClassPath路径下的类包,主要加载自己写的类
- 自定义类加载器:负责加载用户自定义下的类包
双亲委派机制
源码如下:
//ClassLoader的loadClass方法,里面实现了双亲委派机制
protected Class<?> loadClass(String name, boolean resolve)
throws ClassNotFoundException
{
synchronized (getClassLoadingLock(name)) {
// 检查当前类加载器是否已经加载了该类
Class<?> c = findLoadedClass(name);
if (c == null) {
long t0 = System.nanoTime();
try {
if (parent != null) { //如果当前加载器父加载器不为空则委托父加载器加载该类
c = parent.loadClass(name, false);
} else { //如果当前加载器父加载器为空则委托引导类加载器加载该类
c = findBootstrapClassOrNull(name);
}
} catch (ClassNotFoundException e) {
// ClassNotFoundException thrown if class not found
// from the non-null parent class loader
}
if (c == null) {
// If still not found, then invoke findClass in order
// to find the class.
long t1 = System.nanoTime();
//都会调用URLClassLoader的findClass方法在加载器的类路径里查找并加载该类
c = findClass(name);
// this is the defining class loader; record the stats
sun.misc.PerfCounter.getParentDelegationTime().addTime(t1 - t0);
sun.misc.PerfCounter.getFindClassTime().addElapsedTimeFrom(t1);
sun.misc.PerfCounter.getFindClasses().increment();
}
}
if (resolve) { //不会执行
resolveClass(c);
}
return c;
}
}
自定义类加载器
延用双亲委派机制
思路:继承ClassLoader类重写findClass方法,该思路延用了双亲委派机制,自定义加载器的Parent类(非继承关系)是AppClassLoader。
代码如下:
public class MyClassLoaderTest {
static class MyClassLoader extends ClassLoader {
private String classPath;
public MyClassLoader(String classPath) {
this.classPath = classPath;
}
private byte[] loadByte(String name) throws Exception {
name = name.replaceAll("\\.", "/");
FileInputStream fis = new FileInputStream(classPath + "/" + name
+ ".class");
int len = fis.available();
byte[] data = new byte[len];
fis.read(data);
fis.close();
return data;
}
protected Class<?> findClass(String name) throws ClassNotFoundException {
try {
byte[] data = loadByte(name);
//defineClass将一个字节数组转为Class对象,这个字节数组是class文件读取后最终的字节数组。
return defineClass(name, data, 0, data.length);
} catch (Exception e) {
e.printStackTrace();
throw new ClassNotFoundException();
}
}
}
public static void main(String args[]) throws Exception {
//初始化自定义类加载器,会先初始化父类ClassLoader,其中会把自定义类加载器的父加载器设置为应用程序类加载器AppClassLoader
MyClassLoader classLoader = new MyClassLoader("D:/test");
//D盘创建 test/com/tuling/jvm 几级目录,将User类的复制类User1.class丢入该目录
Class clazz = classLoader.loadClass("com.tuling.jvm.User1");
Object obj = clazz.newInstance();
Method method = clazz.getDeclaredMethod("sout", null);
method.invoke(obj, null);
System.out.println(clazz.getClassLoader().getClass().getName());
}
}
运行结果:
=======自己的加载器加载类调用方法=======
com.tuling.jvm.MyClassLoaderTest$MyClassLoader
打破双亲委派机制
思路:继承ClassLoader类重写loadClass,findClass方法
代码如下:
public class MyClassLoaderTest {
static class MyClassLoader extends ClassLoader {
private String classPath;
public MyClassLoader(String classPath) {
this.classPath = classPath;
}
private byte[] loadByte(String name) throws Exception {
name = name.replaceAll("\\.", "/");
FileInputStream fis = new FileInputStream(classPath + "/" + name
+ ".class");
int len = fis.available();
byte[] data = new byte[len];
fis.read(data);
fis.close();
return data;
}
protected Class<?> findClass(String name) throws ClassNotFoundException {
try {
byte[] data = loadByte(name);
return defineClass(name, data, 0, data.length);
} catch (Exception e) {
e.printStackTrace();
throw new ClassNotFoundException();
}
}
/**
* 重写类加载方法,实现自己的加载逻辑,不委派给双亲加载
* @param name
* @param resolve
* @return
* @throws ClassNotFoundException
*/
protected Class<?> loadClass(String name, boolean resolve)
throws ClassNotFoundException {
synchronized (getClassLoadingLock(name)) {
// First, check if the class has already been loaded
Class<?> c = findLoadedClass(name);
if (c == null) {
// If still not found, then invoke findClass in order
// to find the class.
long t1 = System.nanoTime();
c = findClass(name);
// this is the defining class loader; record the stats
sun.misc.PerfCounter.getFindClassTime().addElapsedTimeFrom(t1);
sun.misc.PerfCounter.getFindClasses().increment();
}
if (resolve) {
resolveClass(c);
}
return c;
}
}
}
public static void main(String args[]) throws Exception {
MyClassLoader classLoader = new MyClassLoader("D:/test");
//尝试用自己改写类加载机制去加载自己写的java.lang.String.class
Class clazz = classLoader.loadClass("java.lang.String");
Object obj = clazz.newInstance();
Method method= clazz.getDeclaredMethod("sout", null);
method.invoke(obj, null);
System.out.println(clazz.getClassLoader().getClass().getName());
}
}
运行结果:
java.lang.SecurityException: Prohibited package name: java.lang
at java.lang.ClassLoader.preDefineClass(ClassLoader.java:659)
at java.lang.ClassLoader.defineClass(ClassLoader.java:758)
从运行结果上看发现java.lang不允许使用自定义类加载器加载,这个时候就需要把那些不允许自定义加载的类给到Parent的类加载器加载。
Tomcat打破双亲委派机制
每个webappClassLoader加载自己的目录下的class文件,不会传递给父类加载器,打破了双亲委派机制。 代码如下:
public class MyClassLoaderTest {
static class MyClassLoader extends ClassLoader {
private String classPath;
public MyClassLoader(String classPath) {
this.classPath = classPath;
}
private byte[] loadByte(String name) throws Exception {
name = name.replaceAll("\\.", "/");
FileInputStream fis = new FileInputStream(classPath + "/" + name
+ ".class");
int len = fis.available();
byte[] data = new byte[len];
fis.read(data);
fis.close();
return data;
}
protected Class<?> findClass(String name) throws ClassNotFoundException {
try {
byte[] data = loadByte(name);
return defineClass(name, data, 0, data.length);
} catch (Exception e) {
e.printStackTrace();
throw new ClassNotFoundException();
}
}
/**
* 重写类加载方法,实现自己的加载逻辑,不委派给双亲加载
* @param name
* @param resolve
* @return
* @throws ClassNotFoundException
*/
protected Class<?> loadClass(String name, boolean resolve)
throws ClassNotFoundException {
synchronized (getClassLoadingLock(name)) {
// First, check if the class has already been loaded
Class<?> c = findLoadedClass(name);
if (c == null) {
// If still not found, then invoke findClass in order
// to find the class.
long t1 = System.nanoTime();
//非自定义的类还是走双亲委派加载
if (!name.startsWith("com.tuling.jvm")){
c = this.getParent().loadClass(name);
}else{
c = findClass(name);
}
// this is the defining class loader; record the stats
sun.misc.PerfCounter.getFindClassTime().addElapsedTimeFrom(t1);
sun.misc.PerfCounter.getFindClasses().increment();
}
if (resolve) {
resolveClass(c);
}
return c;
}
}
}
public static void main(String args[]) throws Exception {
MyClassLoader classLoader = new MyClassLoader("D:/test");
Class clazz = classLoader.loadClass("com.tuling.jvm.User1");
Object obj = clazz.newInstance();
Method method= clazz.getDeclaredMethod("sout", null);
method.invoke(obj, null);
System.out.println(clazz.getClassLoader());
System.out.println();
MyClassLoader classLoader1 = new MyClassLoader("D:/test1");
Class clazz1 = classLoader1.loadClass("com.tuling.jvm.User1");
Object obj1 = clazz1.newInstance();
Method method1= clazz1.getDeclaredMethod("sout", null);
method1.invoke(obj1, null);
System.out.println(clazz1.getClassLoader());
}
}
运行结果:
=======自己的加载器加载类调用方法=======
com.tuling.jvm.MyClassLoaderTest$MyClassLoader@266474c2
=======另外一个User1版本:自己的加载器加载类调用方法=======
com.tuling.jvm.MyClassLoaderTest$MyClassLoader@66d3c617
注意:同一个JVM内,两个相同包名和类名的类对象可以共存,因为他们的类加载器可以不一样,所以看两个类对象是否是同一个,除了看类的包名和类名是否都相同之外,还需要他们的类加载器也是同一个才能认为他们是同一个。