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在本章中,我们将解释具有内部类的类的序列化/反序列化。
Student student = new Student(); student.setRollNo(1); Student.Name name = student.new Name(); name.firstName = "Mahesh"; name.lastName = "Kumar"; student.setName(name); //serialize inner class object String nameString = gson.toJson(name); System.out.println(nameString); //deserialize inner class object name = gson.fromJson(nameString,Student.Name.class); System.out.println(name.getClass());
让我们看一个带有内部类的类的序列化/反序列化的示例。在C:> GSON_WORKSPACE中创建名为 GsonTester 的Java类文件。
文件:GsonTester.java
import com.google.gson.Gson; public class GsonTester { public static void main(String args[]) { Student student = new Student(); student.setRollNo(1); Student.Name name = student.new Name(); name.firstName = "Mahesh"; name.lastName = "Kumar"; student.setName(name); Gson gson = new Gson(); String jsonString = gson.toJson(student); System.out.println(jsonString); student = gson.fromJson(jsonString, Student.class); System.out.println("Roll No: "+ student.getRollNo()); System.out.println("First Name: "+ student.getName().firstName); System.out.println("Last Name: "+ student.getName().lastName); String nameString = gson.toJson(name); System.out.println(nameString); name = gson.fromJson(nameString,Student.Name.class); System.out.println(name.getClass()); System.out.println("First Name: "+ name.firstName); System.out.println("Last Name: "+ name.lastName); } } class Student { private int rollNo; private Name name; public int getRollNo() { return rollNo; } public void setRollNo(int rollNo) { this.rollNo = rollNo; } public Name getName() { return name; } public void setName(Name name) { this.name = name; } class Name { public String firstName; public String lastName; } }
使用 javac 编译器编译类如下 -
C:\GSON_WORKSPACE>javac GsonTester.java
现在运行GsonTester查看结果 -
C:\GSON_WORKSPACE>java GsonTester
验证输出。
{"rollNo":1,"name":{"firstName":"Mahesh","lastName":"Kumar"}} Roll No: 1 First Name: Mahesh Last Name: Kumar {"firstName":"Mahesh","lastName":"Kumar"} class Student$Name First Name: Mahesh Last Name: Kumar
Student student = new Student(); student.setRollNo(1); Student.Name name = new Student.Name(); name.firstName = "Mahesh"; name.lastName = "Kumar"; student.setName(name); //serialize static inner class object String nameString = gson.toJson(name); System.out.println(nameString); //deserialize static inner class object name = gson.fromJson(nameString,Student.Name.class); System.out.println(name.getClass());
让我们看一个带有静态内部类的类的序列化/反序列化的示例。在C:> GSON_WORKSPACE中创建名为GsonTester的Java类文件。
文件:GsonTester.java
import com.google.gson.Gson; public class GsonTester { public static void main(String args[]) { Student student = new Student(); student.setRollNo(1); Student.Name name = new Student.Name(); name.firstName = "Mahesh"; name.lastName = "Kumar"; student.setName(name); Gson gson = new Gson(); String jsonString = gson.toJson(student); System.out.println(jsonString); student = gson.fromJson(jsonString, Student.class); System.out.println("Roll No: "+ student.getRollNo()); System.out.println("First Name: "+ student.getName().firstName); System.out.println("Last Name: "+ student.getName().lastName); String nameString = gson.toJson(name); System.out.println(nameString); name = gson.fromJson(nameString,Student.Name.class); System.out.println(name.getClass()); System.out.println("First Name: "+ name.firstName); System.out.println("Last Name: "+ name.lastName); } } class Student { private int rollNo; private Name name; public int getRollNo() { return rollNo; } public void setRollNo(int rollNo) { this.rollNo = rollNo; } public Name getName() { return name; } public void setName(Name name) { this.name = name; } static class Name { public String firstName; public String lastName; } }
使用 javac 编译器编译类如下:
C:\GSON_WORKSPACE>javac GsonTester.java
现在运行 GsonTester 查看结果:
C:\GSON_WORKSPACE>java GsonTester
验证输出。
{"rollNo":1,"name":{"firstName":"Mahesh","lastName":"Kumar"}} Roll No: 1 First Name: Mahesh Last Name: Kumar {"firstName":"Mahesh","lastName":"Kumar"} class Student$Name First Name: Mahesh Last Name: Kumar
Gson 使用其内置适配器执行对象的序列化/反序列化。它还支持自定义适配器。我们将讨论如何创建自定义适配器以及如何使用它。 1. 创建自定义适配器通过扩展 TypeAdapter 类并将其传递给目标对象的类 ...