AES加密此处用于对本地数据进行一些加密操作,保证数据的安全。该加密是对称加密类型,即加密的密钥和解密的密钥是一样的,这样加密处理后不会让黑客在手机上直接获取到用户的账号密码,而且AES加密每次生成的加密后的内容是不一样的,这样更安全。考虑到怕我们给出的加密串被反编译获取,这里可以获取本手机的imei号截取一部分来加密密码,这样基本杜绝了在手机上被人盗去密码的情况。
这里找到并稍加修改了一下负责加密解密的一个类,并做了相关的测试,确实可用,这里将该类粘贴到下面,用的话以后随时可以取。
package com.example.esatest;
import java.security.SecureRandom;
import javax.crypto.Cipher;
import javax.crypto.KeyGenerator;
import javax.crypto.SecretKey;
import javax.crypto.spec.SecretKeySpec;
public class AESEncryptor {
/**
* AES加密
*/
public static String encrypt(String seed, String cleartext)
throws Exception {
byte[] rawKey = getRawKey(seed.getBytes());
byte[] result = encrypt(rawKey, cleartext.getBytes());
System.out.println("加密============="+result);
return toHex(result);
}
/**
* AES解密
*/
public static String decrypt(String seed, String encrypted)
throws Exception {
byte[] rawKey = getRawKey(seed.getBytes());
byte[] enc = toByte(encrypted);
byte[] result = decrypt(rawKey, enc);
return new String(result);
}
private static byte[] getRawKey(byte[] seed) throws Exception {
String Algorithm = "AES"; // 加密算法
KeyGenerator kgen = KeyGenerator.getInstance(Algorithm);//生成秘要
//或用做"IBMSecureRandom",提供强加密随机数生成器
SecureRandom sr = SecureRandom.getInstance("SHA1PRNG");
// 重新设置此随机对象的种子。
sr.setSeed(seed);
//设置加密模式
kgen.init(128, sr); // 192 and 256 bits may not be available
SecretKey skey = kgen.generateKey();//生成secret key
byte[] raw = skey.getEncoded();//加密完成
return raw;
}
//真正执行加密
private static byte[] encrypt(byte[] raw, byte[] clear) throws Exception {
//生成 密钥
SecretKeySpec skeySpec = new SecretKeySpec(raw, "AES");
//实例化(为加密和解密提供密码功能)
Cipher cipher = Cipher.getInstance("AES");
//设置加密模式
cipher.init(Cipher.ENCRYPT_MODE, skeySpec);
//执行加密
byte[] encrypted = cipher.doFinal(clear);
return encrypted;
}
//真正执行解密
private static byte[] decrypt(byte[] raw, byte[] encrypted)
throws Exception {
SecretKeySpec skeySpec = new SecretKeySpec(raw, "AES");
Cipher cipher = Cipher.getInstance("AES");
//设置解密模式
cipher.init(Cipher.DECRYPT_MODE, skeySpec);
byte[] decrypted = cipher.doFinal(encrypted);
return decrypted;
}
public static String toHex(String txt) {
return toHex(txt.getBytes());
}
public static String fromHex(String hex) {
return new String(toByte(hex));
}
public static byte[] toByte(String hexString) {
int len = hexString.length() / 2;
byte[] result = new byte[len];
for (int i = 0; i < len; i++)
result[i] = Integer.valueOf(hexString.substring(2 * i, 2 * i + 2),
16).byteValue();
return result;
}
public static String toHex(byte[] buf) {
if (buf == null)
return "";
StringBuffer result = new StringBuffer(2 * buf.length);
for (int i = 0; i < buf.length; i++) {
appendHex(result, buf[i]);
}
return result.toString();
}
private final static String HEX = "0123456789ABCDEF";
private static void appendHex(StringBuffer sb, byte b) {
sb.append(HEX.charAt((b >> 4) & 0x0f)).append(HEX.charAt(b & 0x0f));
}
}