Base64工具类
package test.test;
import org.apache.commons.codec.binary.Base64;
/**
* Base64工具类
* @author zhouky
* 2016年9月29日下午2:36:00
*/
public class Base64Util {
/**
* 加密
* @param bytes
* @return
*/
public static String encrypt(byte[] bytes) {
byte[] arr = Base64.encodeBase64(bytes, true);
if(null == arr)
try {
throw new Exception();
} catch (Exception e) {
e.printStackTrace();
}
return new String(arr);
}
/**
* 解密
* @param encryptString
* @return
*/
public static byte[] decrypt(String encryptString) {
byte[] arr = Base64.decodeBase64(encryptString.getBytes());
if(null == arr)
try {
throw new Exception();
} catch (Exception e) {
e.printStackTrace();
}
return arr;
}
}
AES加解密
package test.test;
import javax.crypto.Cipher;
import javax.crypto.spec.SecretKeySpec;
import org.apache.log4j.Logger;
/**
* AES加密工具类
* @author zhouky
* 2016年9月29日下午2:29:35
*/
@SuppressWarnings("static-access")
public class AES {
protected static Logger logger = Logger.getLogger(AES.class);
/**
* 密钥算法 java6支持56位密钥,bouncycastle支持64位
* */
public static final String KEY_ALGORITHM = "AES";
/**
* 加密/解密算法/工作模式/填充方式
* JAVA6 支持PKCS5PADDING填充方式 Bouncy castle支持PKCS7Padding填充方式
* */
public static final String CIPHER_ALGORITHM = "AES/ECB/PKCS5Padding";
public static final String SECRET_KEY = "1234567890123456";
private static AES instance = null;
private AES() {
}
public static AES getInstance() {
if (instance == null)
instance = new AES();
return instance;
}
/**
* 加密
* @param content 需要加密的内容
* @param password 加密密码
* @return
* @throws Exception
*/
public static byte[] encrypt(String content,String secretKey){
try {
SecretKeySpec key = new SecretKeySpec(secretKey.getBytes(), KEY_ALGORITHM);
Cipher cipher = Cipher.getInstance(CIPHER_ALGORITHM);// 创建密码器
byte[] byteContent = content.getBytes("utf-8");
cipher.init(Cipher.ENCRYPT_MODE, key);// 初始化
byte[] result = cipher.doFinal(byteContent);
return result; // 加密
} catch (Exception e) {
logger.error("[AES加密 error]="+e.getMessage());
return null;
}
}
/**
* AES加密后用Base64进行二次加密
* @param str
* @return
* @throws Exception
*/
public static String encrypt16(String str,String key){
byte[] data; // 加密数据
try {
data = encrypt(str,key);
return parseByte2HexStr(data);
} catch (Exception e) {
logger.debug("[AES密文转16进制 error] ="+e.getMessage());
return null;
}
}
/**
* AES加密后用Base64进行二次加密
* @param str
* @return
* @throws Exception
*/
public static String encryptBase64(String str,String key){
byte[] data; // 加密数据
try {
data = encrypt(str,key);
return Base64Util.encrypt(data).trim();
} catch (Exception e) {
logger.debug("[Base64加密 AES密文 error] ="+e.getMessage());
return null;
}
}
/**解密
* @param content 待解密内容
* @return
* @throws Exception
*/
public static byte[] decrypt(byte[] content,String secretKey){
try {
SecretKeySpec key = new SecretKeySpec(secretKey.getBytes(), KEY_ALGORITHM);
Cipher cipher = Cipher.getInstance(CIPHER_ALGORITHM);// 创建密码器
cipher.init(Cipher.DECRYPT_MODE, key);// 初始化
byte[] result = cipher.doFinal(content);
return result;
} catch (Exception e) {
logger.error("[AES解密 error ]=" +e.getMessage());
return null;
}
}
/**
* 解密数据
* @param value:base加密后的数据
* @return
* @throws Exception
*/
public static String decrypt16(String value,String secretKey){
byte[] hex2Data;
byte[] aes128Data;
try {
hex2Data = parseHexStr2Byte(value);
aes128Data = decrypt(hex2Data,secretKey);
return new String(aes128Data);
} catch (Exception e) {
logger.error("[十六进制转换 AES密文 error] ="+e.getMessage());
return null;
}
}
/**
* 解密数据
* @param value:base加密后的数据
* @return
* @throws Exception
*/
public static String decryptBase64(String value,String secretKey){
byte[] base64Data; // base64解密数据
byte[] aes256Data; // base64解密数据
try {
base64Data = Base64Util.decrypt(value);//base64解密 base64数据
aes256Data = decrypt(base64Data,secretKey);
return new String(aes256Data);
} catch (Exception e) {
logger.error("[Base64解密 AES密文 error] ="+e.getMessage());
return null;
}
}
private static String parseByte2HexStr(byte buf[]) {
StringBuffer sb = new StringBuffer();
for (int i = 0; i < buf.length; i++) {
String hex = Integer.toHexString(buf[i] & 0xFF);
if (hex.length() == 1) {
hex = '0' + hex;
}
sb.append(hex.toUpperCase());
}
return sb.toString();
}
private static byte[] parseHexStr2Byte(String hexStr) {
if (hexStr.length() < 1)
return null;
byte[] result = new byte[hexStr.length()/2];
for (int i = 0;i< hexStr.length()/2; i++) {
int high = Integer.parseInt(hexStr.substring(i*2, i*2+1), 16);
int low = Integer.parseInt(hexStr.substring(i*2+1, i*2+2), 16);
result[i] = (byte) (high * 16 + low);
}
return result;
}
public static void main(String[] args) {
System.out.println(AES.getInstance().encrypt("15152200001", SECRET_KEY));
System.out.println(AES.getInstance().decrypt(AES.getInstance().encrypt("15152200001", SECRET_KEY), SECRET_KEY));
System.out.println(AES.getInstance().encrypt16("15152200001", SECRET_KEY));
System.out.println(AES.getInstance().decrypt16(AES.getInstance().encrypt16("15152200001", SECRET_KEY), SECRET_KEY));
System.out.println(AES.getInstance().encryptBase64("15152200001", SECRET_KEY));
System.out.println(AES.getInstance().decryptBase64(AES.getInstance().encryptBase64("15152200001", SECRET_KEY), SECRET_KEY));
}
}
Jar包依赖
<dependency>
<groupId>log4j</groupId>
<artifactId>log4j</artifactId>
<version>${log4j_version}</version>
</dependency>
<dependency>
<groupId>commons-codec</groupId>
<artifactId>commons-codec</artifactId>
<version>${commons-codec_version}</version>
</dependency>