java加密encrypt
朋友你好,很高兴为你作答。
首先,Java加密能够应对的风险包括以下几个:
1、核心技术窃取
2、核心业务破解
3、通信模块破解
4、API接口暴露
本人正在使用几维安全Java加密方式,很不错,向你推荐,希望能够帮助到你。
几维安全Java2C针对DEX文件进行加密保护,将DEX文件中标记的Java代码翻译为C代码,编译成加固后的SO文件。默认情况只加密activity中的onCreate函数,如果开发者想加密其它类和方法,只需对相关类或函数添加标记代码,在APK加密时会自动对标记的代码进行加密处理。
与传统的APP加固方案相比,不涉及到自定义修改DEX文件的加载方式,所以其兼容性非常好;其次Java函数被完全转化为C函数,直接在Native层执行,不存在Java层解密执行的步骤,其性能和执行效率更优。
如果操作上有不明白的地方,可以联系技术支持人员帮你完成Java加密。
希望以上解答能够帮助到你。
⑵ 漫谈Java加密技术(二)
接下来我们介绍对称加密算法 最常用的莫过于DES数据加密算法
DES
DES Data Encryption Standard 即数据加密算法 是IBM公司于 年研究成功并公开发表的 DES算法的入口参数有三个 Key Data Mode 其中Key为 个字节共 位 是DES算法的工作密钥 Data也为 个字节 位 是要被加密或被解密的数据 Mode为DES的工作方式 有两种 加密或解密
DES算法把 位的明文输入块变为 位的密文输出块 它所使用的密钥也是 位
通过java代码实现如下
importjava security Key;importjava security SecureRandom;importjavax crypto Cipher;importjavax crypto KeyGenerator;importjavax crypto SecretKey;importjavax crypto SecretKeyFactory;importjavax crypto spec DESKeySpec;/***//***DES安全编码组件authorby;**<pre>*支持DES DESede(TripleDES 就是 DES) AES Blowfish RC RC (ARCFOUR)*DESkeysizemustbeequalto *DESede(TripleDES)keysizemustbeequalto or *AESkeysizemustbeequalto or but and bitsmaynotbeavailable* andcanonlyrangefrom to (inclusive)*RC keysizemustbebeeen and bits*RC (ARCFOUR)keysizemustbebeeen and bits*具体内容需要关注JDKDocument&///docs/technotes/guides/security/l*</pre>**@author梁栋*@version *@since */{/***//***ALGORITHM算法<br>*可替换为以下任意一种算法 同时key值的size相应改变 **<pre>*DESkeysizemustbeequalto *DESede(TripleDES)keysizemustbeequalto or *AESkeysizemustbeequalto or but and bitsmaynotbeavailable* andcanonlyrangefrom to (inclusive)*RC keysizemustbebeeen and bits*RC (ARCFOUR)keysizemustbebeeen and bits*</pre>**在KeytoKey(byte[]key)方法中使用下述代码*<code>SecretKeysecretKey=newSecretKeySpec(key ALGORITHM);</code>替换*<code>*DESKeySpecdks=newDESKeySpec(key);*SecretKeyFactorykeyFactory=SecretKeyFactory getInstance(ALGORITHM);*SecretKeysecretKey=keyFactory generateSecret(dks);*</code>*/= DES ;/***//***转换密钥<br>**@paramkey*@return*@throwsException*/privatestaticKeytoKey(byte[]key)throwsException{DESKeySpecdks=newDESKeySpec(key);SecretKeyFactorykeyFactory=SecretKeyFactory getInstance(ALGORITHM);SecretKeysecretKey=keyFactory generateSecret(dks);//当使用其他对称加密算法时 如AES Blowfish等算法时 用下述代码替换上述三行代码//SecretKeysecretKey=newSecretKeySpec(key ALGORITHM);returnsecretKey;}/***//***解密**@paramdata*@paramkey*@return*@throwsException*/publicstaticbyte[]decrypt(byte[]data Stringkey)throwsException{Keyk=toKey(decryptBASE (key));Ciphercipher=Cipher getInstance(ALGORITHM);cipher init(Cipher DECRYPT_MODE k);returncipher doFinal(data);}/***//***加密**@paramdata*@paramkey*@return*@throwsException*/publicstaticbyte[]encrypt(byte[]data Stringkey)throwsException{Keyk=toKey(decryptBASE (key));Ciphercipher=Cipher getInstance(ALGORITHM);cipher init(Cipher ENCRYPT_MODE k);returncipher doFinal(data);}/***//***生成密钥**@return*@throwsException*/publicstaticStringinitKey()throwsException{returninitKey(null);}/***//***生成密钥**@paramseed*@return*@throwsException*/publicstaticStringinitKey(Stringseed)throwsException{SecureRandomsecureRandom=null;if(seed!=null){secureRandom=newSecureRandom(decryptBASE (seed));}else{secureRandom=newSecureRandom();}KeyGeneratorkg=KeyGenerator getInstance(ALGORITHM);kg init(secureRandom);SecretKeysecretKey=kg generateKey();returnencryptBASE (secretKey getEncoded());}}
延续上一个类的实现 我们通过MD 以及SHA对字符串加密生成密钥 这是比较常见的密钥生成方式
再给出一个测试类
importstatic junit Assert *;import junit Test;/***//****@authorby;;*@version *@since */publicclassDESCoderTest{@Testpublicvoidtest()throwsException{StringinputStr= DES ;Stringkey=DESCoder initKey();System err println( 原文: +inputStr);System err println( 密钥: +key);byte[]inputData=inputStr getBytes();inputData=DESCoder encrypt(inputData key);System err println( 加密后: +DESCoder encryptBASE (inputData));byte[]outputData=DESCoder decrypt(inputData key);StringoutputStr=newString(outputData);System err println( 解密后: +outputStr);assertEquals(inputStr outputStr);}}
得到的输出内容如下
原文 DES
密钥 f wEtRrV q =
加密后 C qe oNIzRY=
解密后 DES
由控制台得到的输出 我们能够比对加密 解密后结果一致 这是一种简单的加密解密方式 只有一个密钥
其实DES有很多同胞兄弟 如DESede(TripleDES) AES Blowfish RC RC (ARCFOUR) 这里就不过多阐述了 大同小异 只要换掉ALGORITHM换成对应的值 同时做一个代码替换SecretKey secretKey = new SecretKeySpec(key ALGORITHM) 就可以了 此外就是密钥长度不同了
/**
lishixin/Article/program/Java/gj/201311/27624
⑶ 如何用JAVA实现字符串简单加密解密
java加密字符串可以使用des加密算法,实例如下:
package test;
import java.io.FileInputStream;
import java.io.FileOutputStream;
import java.io.IOException;
import java.io.ObjectInputStream;
import java.io.ObjectOutputStream;
import java.security.*;
import javax.crypto.Cipher;
import javax.crypto.KeyGenerator;
import javax.crypto.SecretKey;
/**
* 加密解密
*
* @author shy.qiu
* @since http://blog.csdn.net/qiushyfm
*/
public class CryptTest {
/**
* 进行MD5加密
*
* @param info
* 要加密的信息
* @return String 加密后的字符串
*/
public String encryptToMD5(String info) {
byte[] digesta = null;
try {
// 得到一个md5的消息摘要
MessageDigest alga = MessageDigest.getInstance("MD5");
// 添加要进行计算摘要的信息
alga.update(info.getBytes());
// 得到该摘要
digesta = alga.digest();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 将摘要转为字符串
String rs = byte2hex(digesta);
return rs;
}
/**
* 进行SHA加密
*
* @param info
* 要加密的信息
* @return String 加密后的字符串
*/
public String encryptToSHA(String info) {
byte[] digesta = null;
try {
// 得到一个SHA-1的消息摘要
MessageDigest alga = MessageDigest.getInstance("SHA-1");
// 添加要进行计算摘要的信息
alga.update(info.getBytes());
// 得到该摘要
digesta = alga.digest();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 将摘要转为字符串
String rs = byte2hex(digesta);
return rs;
}
// //////////////////////////////////////////////////////////////////////////
/**
* 创建密匙
*
* @param algorithm
* 加密算法,可用 DES,DESede,Blowfish
* @return SecretKey 秘密(对称)密钥
*/
public SecretKey createSecretKey(String algorithm) {
// 声明KeyGenerator对象
KeyGenerator keygen;
// 声明 密钥对象
SecretKey deskey = null;
try {
// 返回生成指定算法的秘密密钥的 KeyGenerator 对象
keygen = KeyGenerator.getInstance(algorithm);
// 生成一个密钥
deskey = keygen.generateKey();
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
// 返回密匙
return deskey;
}
/**
* 根据密匙进行DES加密
*
* @param key
* 密匙
* @param info
* 要加密的信息
* @return String 加密后的信息
*/
public String encryptToDES(SecretKey key, String info) {
// 定义 加密算法,可用 DES,DESede,Blowfish
String Algorithm = "DES";
// 加密随机数生成器 (RNG),(可以不写)
SecureRandom sr = new SecureRandom();
// 定义要生成的密文
byte[] cipherByte = null;
try {
// 得到加密/解密器
Cipher c1 = Cipher.getInstance(Algorithm);
// 用指定的密钥和模式初始化Cipher对象
// 参数:(ENCRYPT_MODE, DECRYPT_MODE, WRAP_MODE,UNWRAP_MODE)
c1.init(Cipher.ENCRYPT_MODE, key, sr);
// 对要加密的内容进行编码处理,
cipherByte = c1.doFinal(info.getBytes());
} catch (Exception e) {
e.printStackTrace();
}
// 返回密文的十六进制形式
return byte2hex(cipherByte);
}
/**
* 根据密匙进行DES解密
*
* @param key
* 密匙
* @param sInfo
* 要解密的密文
* @return String 返回解密后信息
*/
public String decryptByDES(SecretKey key, String sInfo) {
// 定义 加密算法,
String Algorithm = "DES";
// 加密随机数生成器 (RNG)
SecureRandom sr = new SecureRandom();
byte[] cipherByte = null;
try {
// 得到加密/解密器
Cipher c1 = Cipher.getInstance(Algorithm);
// 用指定的密钥和模式初始化Cipher对象
c1.init(Cipher.DECRYPT_MODE, key, sr);
// 对要解密的内容进行编码处理
cipherByte = c1.doFinal(hex2byte(sInfo));
} catch (Exception e) {
e.printStackTrace();
}
// return byte2hex(cipherByte);
return new String(cipherByte);
}
// /////////////////////////////////////////////////////////////////////////////
/**
* 创建密匙组,并将公匙,私匙放入到指定文件中
*
* 默认放入mykeys.bat文件中
*/
public void createPairKey() {
try {
// 根据特定的算法一个密钥对生成器
KeyPairGenerator keygen = KeyPairGenerator.getInstance("DSA");
// 加密随机数生成器 (RNG)
SecureRandom random = new SecureRandom();
// 重新设置此随机对象的种子
random.setSeed(1000);
// 使用给定的随机源(和默认的参数集合)初始化确定密钥大小的密钥对生成器
keygen.initialize(512, random);// keygen.initialize(512);
// 生成密钥组
KeyPair keys = keygen.generateKeyPair();
// 得到公匙
PublicKey pubkey = keys.getPublic();
// 得到私匙
PrivateKey prikey = keys.getPrivate();
// 将公匙私匙写入到文件当中
doObjToFile("mykeys.bat", new Object[] { prikey, pubkey });
} catch (NoSuchAlgorithmException e) {
e.printStackTrace();
}
}
/**
* 利用私匙对信息进行签名 把签名后的信息放入到指定的文件中
*
* @param info
* 要签名的信息
* @param signfile
* 存入的文件
*/
public void signToInfo(String info, String signfile) {
// 从文件当中读取私匙
PrivateKey myprikey = (PrivateKey) getObjFromFile("mykeys.bat", 1);
// 从文件中读取公匙
PublicKey mypubkey = (PublicKey) getObjFromFile("mykeys.bat", 2);
try {
// Signature 对象可用来生成和验证数字签名
Signature signet = Signature.getInstance("DSA");
// 初始化签署签名的私钥
signet.initSign(myprikey);
// 更新要由字节签名或验证的数据
signet.update(info.getBytes());
// 签署或验证所有更新字节的签名,返回签名
byte[] signed = signet.sign();
// 将数字签名,公匙,信息放入文件中
doObjToFile(signfile, new Object[] { signed, mypubkey, info });
} catch (Exception e) {
e.printStackTrace();
}
}
/**
* 读取数字签名文件 根据公匙,签名,信息验证信息的合法性
*
* @return true 验证成功 false 验证失败
*/
public boolean validateSign(String signfile) {
// 读取公匙
PublicKey mypubkey = (PublicKey) getObjFromFile(signfile, 2);
// 读取签名
byte[] signed = (byte[]) getObjFromFile(signfile, 1);
// 读取信息
String info = (String) getObjFromFile(signfile, 3);
try {
// 初始一个Signature对象,并用公钥和签名进行验证
Signature signetcheck = Signature.getInstance("DSA");
// 初始化验证签名的公钥
signetcheck.initVerify(mypubkey);
// 使用指定的 byte 数组更新要签名或验证的数据
signetcheck.update(info.getBytes());
System.out.println(info);
// 验证传入的签名
return signetcheck.verify(signed);
} catch (Exception e) {
e.printStackTrace();
return false;
}
}
/**
* 将二进制转化为16进制字符串
*
* @param b
* 二进制字节数组
* @return String
*/
public String byte2hex(byte[] b) {
String hs = "";
String stmp = "";
for (int n = 0; n < b.length; n++) {
stmp = (java.lang.Integer.toHexString(b[n] & 0XFF));
if (stmp.length() == 1) {
hs = hs + "0" + stmp;
} else {
hs = hs + stmp;
}
}
return hs.toUpperCase();
}
/**
* 十六进制字符串转化为2进制
*
* @param hex
* @return
*/
public byte[] hex2byte(String hex) {
byte[] ret = new byte[8];
byte[] tmp = hex.getBytes();
for (int i = 0; i < 8; i++) {
ret[i] = uniteBytes(tmp[i * 2], tmp[i * 2 + 1]);
}
return ret;
}
/**
* 将两个ASCII字符合成一个字节; 如:"EF"--> 0xEF
*
* @param src0
* byte
* @param src1
* byte
* @return byte
*/
public static byte uniteBytes(byte src0, byte src1) {
byte _b0 = Byte.decode("0x" + new String(new byte[] { src0 }))
.byteValue();
_b0 = (byte) (_b0 << 4);
byte _b1 = Byte.decode("0x" + new String(new byte[] { src1 }))
.byteValue();
byte ret = (byte) (_b0 ^ _b1);
return ret;
}
/**
* 将指定的对象写入指定的文件
*
* @param file
* 指定写入的文件
* @param objs
* 要写入的对象
*/
public void doObjToFile(String file, Object[] objs) {
ObjectOutputStream oos = null;
try {
FileOutputStream fos = new FileOutputStream(file);
oos = new ObjectOutputStream(fos);
for (int i = 0; i < objs.length; i++) {
oos.writeObject(objs[i]);
}
} catch (Exception e) {
e.printStackTrace();
} finally {
try {
oos.close();
} catch (IOException e) {
e.printStackTrace();
}
}
}
/**
* 返回在文件中指定位置的对象
*
* @param file
* 指定的文件
* @param i
* 从1开始
* @return
*/
public Object getObjFromFile(String file, int i) {
ObjectInputStream ois = null;
Object obj = null;
try {
FileInputStream fis = new FileInputStream(file);
ois = new ObjectInputStream(fis);
for (int j = 0; j < i; j++) {
obj = ois.readObject();
}
} catch (Exception e) {
e.printStackTrace();
} finally {
try {
ois.close();
} catch (IOException e) {
e.printStackTrace();
}
}
return obj;
}
/**
* 测试
*
* @param args
*/
public static void main(String[] args) {
CryptTest jiami = new CryptTest();
// 执行MD5加密"Hello world!"
System.out.println("Hello经过MD5:" + jiami.encryptToMD5("Hello"));
// 生成一个DES算法的密匙
SecretKey key = jiami.createSecretKey("DES");
// 用密匙加密信息"Hello world!"
String str1 = jiami.encryptToDES(key, "Hello");
System.out.println("使用des加密信息Hello为:" + str1);
// 使用这个密匙解密
String str2 = jiami.decryptByDES(key, str1);
System.out.println("解密后为:" + str2);
// 创建公匙和私匙
jiami.createPairKey();
// 对Hello world!使用私匙进行签名
jiami.signToInfo("Hello", "mysign.bat");
// 利用公匙对签名进行验证。
if (jiami.validateSign("mysign.bat")) {
System.out.println("Success!");
} else {
System.out.println("Fail!");
}
}
}
⑷ 怎么对加密的JAVA class文件进行解密
JAVA class文件加密解密
package com..encrypt;
import java.io.File;
import java.io.FileInputStream;
import java.io.FileNotFoundException;
import java.io.FileOutputStream;
import java.io.IOException;
import java.io.InputStream;
import java.io.OutputStream;
import java.io.RandomAccessFile;
public class FileEncryptAndDecrypt {
/**
* 文件file进行加密
* @param fileUrl 文件路径
* @param key 密码
* @throws Exception
*/
public static void encrypt(String fileUrl, String key) throws Exception {
File file = new File(fileUrl);
String path = file.getPath();
if(!file.exists()){
return;
}
int index = path.lastIndexOf("迅掘雀\\");
String destFile = path.substring(0, index)+"\\"+"abc";
File dest = new File(destFile);
InputStream in = new FileInputStream(fileUrl);
OutputStream out = new FileOutputStream(destFile);
byte[] buffer = new byte[1024];
int r;
byte[] buffer2=new byte[1024];
while (( r= in.read(buffer)) > 0) {
for(int i=0;i<r;i++)
{
byte b=buffer[i];
buffer2[i]=b==255?0:++b;
}
out.write(buffer2, 0, r);
out.flush();
}
in.close();
out.close();
file.delete();
dest.renameTo(new File(fileUrl));
appendMethodA(fileUrl, key);
System.out.println("加密成功"散野);
}
/**
*
* @param fileName
* @param content 密钥
*/
public static void appendMethodA(String fileName, String content) {
try {
// 打开一个随亩早机访问文件流,按读写方式
RandomAccessFile randomFile = new RandomAccessFile(fileName, "rw");
// 文件长度,字节数
long fileLength = randomFile.length();
//将写文件指针移到文件尾。
randomFile.seek(fileLength);
randomFile.writeBytes(content);
randomFile.close();
} catch (IOException e) {
e.printStackTrace();
}
}
/**
* 解密
* @param fileUrl 源文件
* @param tempUrl 临时文件
* @param ketLength 密码长度
* @return
* @throws Exception
*/
public static String decrypt(String fileUrl, String tempUrl, int keyLength) throws Exception{
File file = new File(fileUrl);
if (!file.exists()) {
return null;
}
File dest = new File(tempUrl);
if (!dest.getParentFile().exists()) {
dest.getParentFile().mkdirs();
}
InputStream is = new FileInputStream(fileUrl);
OutputStream out = new FileOutputStream(tempUrl);
byte[] buffer = new byte[1024];
byte[] buffer2=new byte[1024];
byte bMax=(byte)255;
long size = file.length() - keyLength;
int mod = (int) (size%1024);
int div = (int) (size>>10);
int count = mod==0?div:(div+1);
int k = 1, r;
while ((k <= count && ( r = is.read(buffer)) > 0)) {
if(mod != 0 && k==count) {
r = mod;
}
for(int i = 0;i < r;i++)
{
byte b=buffer[i];
buffer2[i]=b==0?bMax:--b;
}
out.write(buffer2, 0, r);
k++;
}
out.close();
is.close();
return tempUrl;
}
/**
* 判断文件是否加密
* @param fileName
* @return
*/
public static String readFileLastByte(String fileName, int keyLength) {
File file = new File(fileName);
if(!file.exists())return null;
StringBuffer str = new StringBuffer();
try {
// 打开一个随机访问文件流,按读写方式
RandomAccessFile randomFile = new RandomAccessFile(fileName, "r");
// 文件长度,字节数
long fileLength = randomFile.length();
//将写文件指针移到文件尾。
for(int i = keyLength ; i>=1 ; i--){
randomFile.seek(fileLength-i);
str.append((char)randomFile.read());
}
randomFile.close();
return str.toString();
} catch (IOException e) {
e.printStackTrace();
}
return null;
}
}
⑸ 用java写个文件加密的代码该怎么写
import java.awt.*;
import java.awt.event.*;
import javax.swing.*;
import java.io.*;
import java.security.*;
import javax.crypto.*;
import javax.crypto.spec.*;
/**
文件名:FileEncrypter.java
JDK:1.40以上
说明:文件加密
加密方法:三重DES加密
加密过程:对选中的文件加密后在同文件夹下生成一个增加了".tdes"
扩展名的加密文件
解密过程:对选中的加密文件(必须有".tdes"扩展名)进行解密
*/
public class FileEncrypter extends JFrame{
public static final int WIDTH = 550;
public static final int HEIGHT = 200;
public static void main(String args[]) {
FileEncrypter fe = new FileEncrypter();
fe.show();
}
FileEncrypter(){
this.setSize(WIDTH,HEIGHT);
this.setDefaultCloseOperation(JFrame.EXIT_ON_CLOSE);
this.setResizable(false);
Toolkit tk = Toolkit.getDefaultToolkit();
Dimension screenSize = tk.getScreenSize();
this.setLocation((screenSize.width - WIDTH)/2,
(screenSize.height - HEIGHT)/2);
this.setTitle("文件加密器(TriDES)");
Container c = this.getContentPane();
c.setLayout( new FlowLayout());
final FilePanel fp = new FilePanel("文件选择");
c.add(fp);
final KeyPanel pp = new KeyPanel("密码");
c.add(pp);
JButton jbE = new JButton("加密");
c.add(jbE);
jbE.addActionListener(new ActionListener(){
public void actionPerformed(ActionEvent event){
File file = new File(fp.getFileName());
if (file.exists())
encrypt(file.getAbsoluteFile(),pp.getKey());
else
JOptionPane.showMessageDialog(
null,"请选择文件!","提示",JOptionPane.OK_OPTION);
}
});
JButton jbD = new JButton("解密");
c.add(jbD);
jbD.addActionListener(new ActionListener(){
public void actionPerformed(ActionEvent event){
File file = new File(fp.getFileName());
if (file.exists())
decrypt(file.getAbsoluteFile(),pp.getKey());
else
JOptionPane.showMessageDialog(
null,"请选择文件!","提示",JOptionPane.OK_OPTION);
}
});
}
/**
加密函数
输入:
要加密的文件,密码(由0-F组成,共48个字符,表示3个8位的密码)如:
其中:
AD67EA2F3BE6E5AD DES密码一
D368DFE03120B5DF DES密码二
92A8FD8FEC2F0746 DES密码三
输出:
对输入的文件加密后,保存到同一文件夹下增加了".tdes"扩展名的文件中。
*/
private void encrypt(File fileIn,String sKey){
try{
if(sKey.length() == 48){
byte[] bytK1 = getKeyByStr(sKey.substring(0,16));
byte[] bytK2 = getKeyByStr(sKey.substring(16,32));
byte[] bytK3 = getKeyByStr(sKey.substring(32,48));
FileInputStream fis = new FileInputStream(fileIn);
byte[] bytIn = new byte[(int)fileIn.length()];
for(int i = 0;i<FILEIN.LENGTH();I++){
bytIn[i] = (byte)fis.read();
}
//加密
byte[] bytOut = encryptByDES(encryptByDES(
encryptByDES(bytIn,bytK1),bytK2),bytK3);
String fileOut = fileIn.getPath() + ".tdes";
FileOutputStream fos = new FileOutputStream(fileOut);
for(int i = 0;i<BYTOUT.LENGTH;I++){
fos.write((int)bytOut[i]);
}
fos.close();
JOptionPane.showMessageDialog(
this,"加密成功!","提示",JOptionPane.OK_OPTION);
}else
JOptionPane.showMessageDialog(
this,"密码长度必须等于48!","错误信息",JOptionPane.ERROR_MESSAGE);
}catch(Exception e){
e.printStackTrace();
}
}
/**
解密函数
输入:
要解密的文件,密码(由0-F组成,共48个字符,表示3个8位的密码)如:
其中:
AD67EA2F3BE6E5AD DES密码一
D368DFE03120B5DF DES密码二
92A8FD8FEC2F0746 DES密码三
输出:
对输入的文件解密后,保存到用户指定的文件中。
*/
private void decrypt(File fileIn,String sKey){
try{
if(sKey.length() == 48){
String strPath = fileIn.getPath();
if(strPath.substring(strPath.length()-5).toLowerCase().equals(".tdes"))
strPath = strPath.substring(0,strPath.length()-5);
else{
JOptionPane.showMessageDialog(
this,"不是合法的加密文件!","提示",JOptionPane.OK_OPTION);
return;
}
JFileChooser chooser = new JFileChooser();
chooser.setCurrentDirectory(new File("."));
chooser.setSelectedFile(new File(strPath));
//用户指定要保存的文件
int ret = chooser.showSaveDialog(this);
if(ret==JFileChooser.APPROVE_OPTION){
byte[] bytK1 = getKeyByStr(sKey.substring(0,16));
byte[] bytK2 = getKeyByStr(sKey.substring(16,32));
byte[] bytK3 = getKeyByStr(sKey.substring(32,48));
FileInputStream fis = new FileInputStream(fileIn);
byte[] bytIn = new byte[(int)fileIn.length()];
for(int i = 0;i<FILEIN.LENGTH();I++){
bytIn[i] = (byte)fis.read();
}
//解密
byte[] bytOut = decryptByDES(decryptByDES(
decryptByDES(bytIn,bytK3),bytK2),bytK1);
File fileOut = chooser.getSelectedFile();
fileOut.createNewFile();
FileOutputStream fos = new FileOutputStream(fileOut);
for(int i = 0;i<BYTOUT.LENGTH;I++){
fos.write((int)bytOut[i]);
}
fos.close();
JOptionPane.showMessageDialog(
this,"解密成功!","提示",JOptionPane.OK_OPTION);
}
}else
JOptionPane.showMessageDialog(
this,"密码长度必须等于48!","错误信息",JOptionPane.ERROR_MESSAGE);
}catch(Exception e){
JOptionPane.showMessageDialog(
this,"解密失败,请核对密码!","提示",JOptionPane.OK_OPTION);
}
}
/**
用DES方法加密输入的字节
bytKey需为8字节长,是加密的密码
*/
private byte[] encryptByDES(byte[] bytP,byte[] bytKey) throws Exception{
DESKeySpec desKS = new DESKeySpec(bytKey);
SecretKeyFactory skf = SecretKeyFactory.getInstance("DES");
SecretKey sk = skf.generateSecret(desKS);
Cipher cip = Cipher.getInstance("DES");
cip.init(Cipher.ENCRYPT_MODE,sk);
return cip.doFinal(bytP);
}
/**
用DES方法解密输入的字节
bytKey需为8字节长,是解密的密码
*/
private byte[] decryptByDES(byte[] bytE,byte[] bytKey) throws Exception{
DESKeySpec desKS = new DESKeySpec(bytKey);
SecretKeyFactory skf = SecretKeyFactory.getInstance("DES");
SecretKey sk = skf.generateSecret(desKS);
Cipher cip = Cipher.getInstance("DES");
cip.init(Cipher.DECRYPT_MODE,sk);
return cip.doFinal(bytE);
}
/**
输入密码的字符形式,返回字节数组形式。
如输入字符串:AD67EA2F3BE6E5AD
返回字节数组:{173,103,234,47,59,230,229,173}
*/
private byte[] getKeyByStr(String str){
byte[] bRet = new byte[str.length()/2];
for(int i=0;i<STR.LENGTH()
Integer itg =
new Integer(16*getChrInt(str.charAt(2*i)) + getChrInt(str.charAt(2*i+1)));
bRet[i] = itg.byteValue();
}
return bRet;
}
/**
计算一个16进制字符的10进制值
输入:0-F
*/
private int getChrInt(char chr){
int iRet=0;
if(chr=="0".charAt(0)) iRet = 0;
if(chr=="1".charAt(0)) iRet = 1;
if(chr=="2".charAt(0)) iRet = 2;
if(chr=="3".charAt(0)) iRet = 3;
if(chr=="4".charAt(0)) iRet = 4;
if(chr=="5".charAt(0)) iRet = 5;
if(chr=="6".charAt(0)) iRet = 6;
if(chr=="7".charAt(0)) iRet = 7;
if(chr=="8".charAt(0)) iRet = 8;
if(chr=="9".charAt(0)) iRet = 9;
if(chr=="A".charAt(0)) iRet = 10;
if(chr=="B".charAt(0)) iRet = 11;
if(chr=="C".charAt(0)) iRet = 12;
if(chr=="D".charAt(0)) iRet = 13;
if(chr=="E".charAt(0)) iRet = 14;
if(chr=="F".charAt(0)) iRet = 15;
return iRet;
}
}
/**
文件选择组件。
*/
class FilePanel extends JPanel{
FilePanel(String str){
JLabel label = new JLabel(str);
JTextField fileText = new JTextField(35);
JButton chooseButton = new JButton("浏览...");
this.add(label);
this.add(fileText);
this.add(chooseButton);
clickAction ca = new clickAction(this);
chooseButton.addActionListener(ca);
}
public String getFileName(){
JTextField jtf = (JTextField)this.getComponent(1);
return jtf.getText();
}
private class clickAction implements ActionListener{
clickAction(Component c){
cmpt = c;
}
public void actionPerformed(ActionEvent event){
JFileChooser chooser = new JFileChooser();
chooser.setCurrentDirectory(new File("."));
int ret = chooser.showOpenDialog(cmpt);
if(ret==JFileChooser.APPROVE_OPTION){
JPanel jp = (JPanel)cmpt;
JTextField jtf = (JTextField)jp.getComponent(1);
jtf.setText(chooser.getSelectedFile().getPath());
}
}
private Component cmpt;
}
}
/**
密码生成组件。
*/
class KeyPanel extends JPanel{
KeyPanel(String str){
JLabel label = new JLabel(str);
JTextField fileText = new JTextField(35);
JButton chooseButton = new JButton("随机产生");
this.add(label);
this.add(fileText);
this.add(chooseButton);
clickAction ca = new clickAction(this);
chooseButton.addActionListener(ca);
}
//返回生成的密码(48个字符长度)
public String getKey(){
JTextField jtf = (JTextField)this.getComponent(1);
return jtf.getText();
}
private class clickAction implements ActionListener{
clickAction(Component c){
cmpt = c;
}
public void actionPerformed(ActionEvent event){
try{
KeyGenerator kg = KeyGenerator.getInstance("DES");
kg.init(56);
Key ke = kg.generateKey();
byte[] bytK1 = ke.getEncoded();
ke = kg.generateKey();
byte[] bytK2 = ke.getEncoded();
ke = kg.generateKey();
byte[] bytK3 = ke.getEncoded();
JPanel jp = (JPanel)cmpt;
JTextField jtf = (JTextField)jp.getComponent(1);
jtf.setText(getByteStr(bytK1)+getByteStr(bytK2)+getByteStr(bytK3));
}catch(Exception e){
e.printStackTrace();
}
}
private String getByteStr(byte[] byt){
String strRet = "";
for(int i=0;i<BYT.LENGTH;I++){
//System.out.println(byt[i]);
strRet += getHexValue((byt[i]&240)/16);
strRet += getHexValue(byt[i]&15);
}
return strRet;
}
private String getHexValue(int s){
String sRet=null;
switch (s){
case 0: sRet = "0";break;
case 1: sRet = "1";break;
case 2: sRet = "2";break;
case 3: sRet = "3";break;
case 4: sRet = "4";break;
case 5: sRet = "5";break;
case 6: sRet = "6";break;
case 7: sRet = "7";break;
case 8: sRet = "8";break;
case 9: sRet = "9";break;
case 10: sRet = "A";break;
case 11: sRet = "B";break;
case 12: sRet = "C";break;
case 13: sRet = "D";break;
case 14: sRet = "E";break;
case 15: sRet = "F";
}
return sRet;
}
private Component cmpt;
}
}
⑹ 如何通过JAVA对电脑中的文本文档进行加密,最好能够详细的说一下!
package com.test.zc;
import java.io.File;
import java.io.FileInputStream;
import java.io.FileOutputStream;
import java.io.InputStream;
import java.io.OutputStream;
import java.security.KeyPair;
import java.security.KeyPairGenerator;
import java.security.NoSuchAlgorithmException;
import java.security.interfaces.RSAPrivateKey;
import java.security.interfaces.RSAPublicKey;
import javax.crypto.Cipher;
public class RSAEncrypt {
private KeyPairGenerator keyPairGen;
private KeyPair keyPair;
private RSAPrivateKey privateKey;
private RSAPublicKey publicKey;
public RSAEncrypt() {
try {
keyPairGen = KeyPairGenerator.getInstance("RSA");
keyPairGen.initialize(512);
keyPair = keyPairGen.generateKeyPair();
// Generate keys
privateKey = (RSAPrivateKey) keyPair.getPrivate();
publicKey = (RSAPublicKey) keyPair.getPublic();
} catch (NoSuchAlgorithmException e) {
// TODO Auto-generated catch block
e.printStackTrace();
}
}
public static void main(String[] args) {
RSAEncrypt encrypt = new RSAEncrypt();
File file = new File(
"C:\\Documents and Settings\\Administrator.DCB5E0D91E0D436\\桌面\\test.txt");
File newFile = new File(
"C:\\Documents and Settings\\Administrator.DCB5E0D91E0D436\\桌面\\test1.txt");
encrypt.encryptFile(encrypt, file, newFile);
File file1 = new File(
"C:\\Documents and Settings\\Administrator.DCB5E0D91E0D436\\桌面\\test1.txt");
File newFile1 = new File(
"C:\\Documents and Settings\\Administrator.DCB5E0D91E0D436\\桌面\\test2.txt");
encrypt.decryptFile(encrypt, file1, newFile1);
}
public void encryptFile(RSAEncrypt encrypt, File file, File newFile) {
try {
InputStream is = new FileInputStream(file);
OutputStream os = new FileOutputStream(newFile);
byte[] bytes = new byte[53];
while (is.read(bytes) > 0) {
byte[] e = encrypt.encrypt(encrypt.publicKey, bytes);
bytes = new byte[53];
os.write(e, 0, e.length);
}
os.close();
is.close();
System.out.println("write success");
} catch (Exception e) {
e.printStackTrace();
}
}
public void decryptFile(RSAEncrypt encrypt, File file, File newFile) {
try {
InputStream is = new FileInputStream(
new File(
"C:\\Documents and Settings\\Administrator.DCB5E0D91E0D436\\桌面\\test1.txt"));
OutputStream os = new FileOutputStream(
"C:\\Documents and Settings\\Administrator.DCB5E0D91E0D436\\桌面\\test2.txt");
byte[] bytes1 = new byte[64];
while (is.read(bytes1) > 0) {
byte[] de = encrypt.decrypt(encrypt.privateKey, bytes1);
bytes1 = new byte[64];
os.write(de, 0, de.length);
}
os.close();
is.close();
System.out.println("write success");
} catch (Exception e) {
e.printStackTrace();
}
}
/** */
/**
* * Encrypt String. *
*
* @return byte[]
*/
protected byte[] encrypt(RSAPublicKey publicKey, byte[] obj) {
if (publicKey != null) {
try {
Cipher cipher = Cipher.getInstance("RSA");
cipher.init(Cipher.ENCRYPT_MODE, publicKey);
return cipher.doFinal(obj);
} catch (Exception e) {
e.printStackTrace();
}
}
return null;
}
/** */
/**
* * Basic decrypt method *
*
* @return byte[]
*/
protected byte[] decrypt(RSAPrivateKey privateKey, byte[] obj) {
if (privateKey != null) {
try {
Cipher cipher = Cipher.getInstance("RSA");
cipher.init(Cipher.DECRYPT_MODE, privateKey);
return cipher.doFinal(obj);
} catch (Exception e) {
e.printStackTrace();
}
}
return null;
}
}
注意,RSAPrivateKey与RSAPublicKey在加密和解密中需保持一致,如果加密与解密需要分开进行,则需要把RSAPrivateKey与RSAPublicKey写入文件或其他方式保存进行解密
⑺ java密码加密与解密
以下两个类可以很方便的完成字符串的加密和解密
加密 CryptHelper encrypt(password)
解密 CrypHelper decrypt(password)
代码如下
CryptUtils java
[java]
package gdie lab crypt;
import java io IOException;
import javax crypto Cipher;
import javax crypto KeyGenerator;
import javax crypto SecretKey;
import apache xerces internal impl dv util Base ;
public class CryptUtils {
private static String Algorithm = DES ;
private static byte[] DEFAULT_KEY=new byte[] { };
private static String VALUE_ENCODING= UTF ;
/**
* 生成密钥
*
* @return byte[] 返回生成的密钥
* @throws exception
* 扔出异常
*/
public static byte[] getSecretKey() throws Exception {
KeyGenerator keygen = KeyGenerator getInstance(Algorithm)
SecretKey deskey = keygen generateKey()
// if (debug ) System out println ( 生成密钥 +byte hex (deskey getEncoded
// ()))
return deskey getEncoded()
}
/**
* 将指定的数据根据提供的密钥进行加密
*
* @param input
* 需要加密的数据
* @param key
* 密钥
* @return byte[] 加密后的数据
* @throws Exception
*/
public static byte[] encryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug )
// {
// System out println ( 加密前的二进串 +byte hex (input ))
// System out println ( 加密前的字符串 +new String (input ))
//
// }
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher ENCRYPT_MODE deskey)
byte[] cipherByte = c doFinal(input)
// if (debug ) System out println ( 加密后的二进串 +byte hex (cipherByte ))
return cipherByte;
}
public static byte[] encryptData(byte[] input) throws Exception {
return encryptData(input DEFAULT_KEY)
}
/**
* 将给定的已加密的数据通过指定的密钥进行解密
*
* @param input
* 待解密的数据
* @param key
* 密钥
* @return byte[] 解密后的数据
* @throws Exception
*/
public static byte[] decryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug ) System out println ( 解密前的信息 +byte hex (input ))
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher DECRYPT_MODE deskey)
byte[] clearByte = c doFinal(input)
// if (debug )
// {
// System out println ( 解密后的二进串 +byte hex (clearByte ))
// System out println ( 解密后的字符串 +(new String (clearByte )))
//
// }
return clearByte;
}
public static byte[] decryptData(byte[] input) throws Exception {
return decryptData(input DEFAULT_KEY)
}
/**
* 字节码转换成 进制字符串
*
* @param byte[] b 输入要转换的字节码
* @return String 返回转换后的 进制字符串
*/
public static String byte hex(byte[] bytes) {
StringBuilder hs = new StringBuilder()
for(byte b : bytes)
hs append(String format( % $ X b))
return hs toString()
}
public static byte[] hex byte(String content) {
int l=content length()》 ;
byte[] result=new byte[l];
for(int i= ;i<l;i++) {
int j=i《 ;
String s=content substring(j j+ )
result[i]=Integer valueOf(s ) byteValue()
}
return result;
}
/**
* 将字节数组转换为base 编码字符串
* @param buffer
* @return
*/
public static String bytesToBase (byte[] buffer) {
//BASE Encoder en=new BASE Encoder()
return Base encode(buffer)
// return encoder encode(buffer)
}
/**
* 将base 编码的字符串解码为字节数组
* @param value
* @return
* @throws IOException
*/
public static byte[] base ToBytes(String value) throws IOException {
//return Base decodeToByteArray(value)
// System out println(decoder decodeBuffer(value))
// return decoder decodeBuffer(value)
return Base decode(value)
}
/**
* 加密给定的字符串
* @param value
* @return 加密后的base 字符串
*/
public static String encryptString(String value) {
return encryptString(value DEFAULT_KEY)
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 以BASE 形式存在的密钥
* @return 加密后的base 字符串
* @throws IOException
*/
public static String encryptString(String value String key) throws IOException {
return encryptString(value base ToBytes(key))
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 字节数组形式的密钥
* @return 加密后的base 字符串
*/
public static String encryptString(String value byte[] key) {
try {
byte[] data=value getBytes(VALUE_ENCODING)
data=CryptUtils encryptData(data key)
return bytesToBase (data)
} catch (Exception e) {
// TODO Auto generated catch block
e printStackTrace()
return null;
}
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @return 明文
*/
public static String decryptString(String value) {
return decryptString(value DEFAULT_KEY)
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key base 形式存在的密钥
* @return 明文
* @throws IOException
*/
public static String decryptString(String value String key) throws IOException {
String s=decryptString(value base ToBytes(key))
return s;
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key 字节数据形式存在的密钥
* @return 明文
*/
public static String decryptString(String value byte[] key) {
try {
byte[] data=base ToBytes(value)
data=CryptUtils decryptData(data key)
return new String(data VALUE_ENCODING)
}catch(Exception e) {
e printStackTrace()
return null;
}
}
}
package gdie lab crypt;
import java io IOException;
import javax crypto Cipher;
import javax crypto KeyGenerator;
import javax crypto SecretKey;
import apache xerces internal impl dv util Base ;
public class CryptUtils {
private static String Algorithm = DES ;
private static byte[] DEFAULT_KEY=new byte[] { };
private static String VALUE_ENCODING= UTF ;
/**
* 生成密钥
*
* @return byte[] 返回生成的密钥
* @throws exception
* 扔出异常
*/
public static byte[] getSecretKey() throws Exception {
KeyGenerator keygen = KeyGenerator getInstance(Algorithm)
SecretKey deskey = keygen generateKey()
// if (debug ) System out println ( 生成密钥 +byte hex (deskey getEncoded
// ()))
return deskey getEncoded()
}
/**
* 将指定的数据根据提供的密钥进行加密
*
* @param input
* 需要加密的数据
* @param key
* 密钥
* @return byte[] 加密后的数据
* @throws Exception
*/
public static byte[] encryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug )
// {
// System out println ( 加密前的二进串 +byte hex (input ))
// System out println ( 加密前的字符串 +new String (input ))
//
// }
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher ENCRYPT_MODE deskey)
byte[] cipherByte = c doFinal(input)
// if (debug ) System out println ( 加密后的二进串 +byte hex (cipherByte ))
return cipherByte;
}
public static byte[] encryptData(byte[] input) throws Exception {
return encryptData(input DEFAULT_KEY)
}
/**
* 将给定的已加密的数据通过指定的密钥进行解密
*
* @param input
* 待解密的数据
* @param key
* 密钥
* @return byte[] 解密后的数据
* @throws Exception
*/
public static byte[] decryptData(byte[] input byte[] key) throws Exception {
SecretKey deskey = new javax crypto spec SecretKeySpec(key Algorithm)
// if (debug ) System out println ( 解密前的信息 +byte hex (input ))
Cipher c = Cipher getInstance(Algorithm)
c init(Cipher DECRYPT_MODE deskey)
byte[] clearByte = c doFinal(input)
// if (debug )
// {
// System out println ( 解密后的二进串 +byte hex (clearByte ))
// System out println ( 解密后的字符串 +(new String (clearByte )))
//
// }
return clearByte;
}
public static byte[] decryptData(byte[] input) throws Exception {
return decryptData(input DEFAULT_KEY)
}
/**
* 字节码转换成 进制字符串
*
* @param byte[] b 输入要转换的字节码
* @return String 返回转换后的 进制字符串
*/
public static String byte hex(byte[] bytes) {
StringBuilder hs = new StringBuilder()
for(byte b : bytes)
hs append(String format( % $ X b))
return hs toString()
}
public static byte[] hex byte(String content) {
int l=content length()》 ;
byte[] result=new byte[l];
for(int i= ;i<l;i++) {
int j=i《 ;
String s=content substring(j j+ )
result[i]=Integer valueOf(s ) byteValue()
}
return result;
}
/**
* 将字节数组转换为base 编码字符串
* @param buffer
* @return
*/
public static String bytesToBase (byte[] buffer) {
//BASE Encoder en=new BASE Encoder()
return Base encode(buffer)
// return encoder encode(buffer)
}
/**
* 将base 编码的字符串解码为字节数组
* @param value
* @return
* @throws IOException
*/
public static byte[] base ToBytes(String value) throws IOException {
//return Base decodeToByteArray(value)
// System out println(decoder decodeBuffer(value))
// return decoder decodeBuffer(value)
return Base decode(value)
}
/**
* 加密给定的字符串
* @param value
* @return 加密后的base 字符串
*/
public static String encryptString(String value) {
return encryptString(value DEFAULT_KEY)
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 以BASE 形式存在的密钥
* @return 加密后的base 字符串
* @throws IOException
*/
public static String encryptString(String value String key) throws IOException {
return encryptString(value base ToBytes(key))
}
/**
* 根据给定的密钥加密字符串
* @param value 待加密的字符串
* @param key 字节数组形式的密钥
* @return 加密后的base 字符串
*/
public static String encryptString(String value byte[] key) {
try {
byte[] data=value getBytes(VALUE_ENCODING)
data=CryptUtils encryptData(data key)
return bytesToBase (data)
} catch (Exception e) {
// TODO Auto generated catch block
e printStackTrace()
return null;
}
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @return 明文
*/
public static String decryptString(String value) {
return decryptString(value DEFAULT_KEY)
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key base 形式存在的密钥
* @return 明文
* @throws IOException
*/
public static String decryptString(String value String key) throws IOException {
String s=decryptString(value base ToBytes(key))
return s;
}
/**
* 解密字符串
* @param value base 形式存在的密文
* @param key 字节数据形式存在的密钥
* @return 明文
*/
public static String decryptString(String value byte[] key) {
try {
byte[] data=base ToBytes(value)
data=CryptUtils decryptData(data key)
return new String(data VALUE_ENCODING)
}catch(Exception e) {
e printStackTrace()
return null;
}
}
}
CryptHelper java
[java]
package gdie lab crypt;
import javax crypto Cipher;
import javax crypto SecretKey;
import javax crypto SecretKeyFactory;
import javax crypto spec DESKeySpec;
import javax crypto spec IvParameterSpec;
import springframework util DigestUtils;
public class CryptHelper{
private static String CRYPT_KEY = zhongqian ;
//加密
private static Cipher ecip;
//解密
private static Cipher dcip;
static {
try {
String KEY = DigestUtils md DigestAsHex(CRYPT_KEY getBytes()) toUpperCase()
KEY = KEY substring( )
byte[] bytes = KEY getBytes()
DESKeySpec ks = new DESKeySpec(bytes)
SecretKeyFactory skf = SecretKeyFactory getInstance( DES )
SecretKey sk = skf generateSecret(ks)
IvParameterSpec iv = new IvParameterSpec(bytes)
ecip = Cipher getInstance( DES/CBC/PKCS Padding )
ecip init(Cipher ENCRYPT_MODE sk iv )
dcip = Cipher getInstance( DES/CBC/PKCS Padding )
dcip init(Cipher DECRYPT_MODE sk iv )
}catch(Exception ex) {
ex printStackTrace()
}
}
public static String encrypt(String content) throws Exception {
byte[] bytes = ecip doFinal(content getBytes( ascii ))
return CryptUtils byte hex(bytes)
}
public static String decrypt(String content) throws Exception {
byte[] bytes = CryptUtils hex byte(content)
bytes = dcip doFinal(bytes)
return new String(bytes ascii )
}
//test
public static void main(String[] args) throws Exception {
String password = gly ;
String en = encrypt(password)
System out println(en)
System out println(decrypt(en))
}
}
package gdie lab crypt;
import javax crypto Cipher;
import javax crypto SecretKey;
import javax crypto SecretKeyFactory;
import javax crypto spec DESKeySpec;
import javax crypto spec IvParameterSpec;
import springframework util DigestUtils;
public class CryptHelper{
private static String CRYPT_KEY = zhongqian ;
//加密
private static Cipher ecip;
//解密
private static Cipher dcip;
static {
try {
String KEY = DigestUtils md DigestAsHex(CRYPT_KEY getBytes()) toUpperCase()
KEY = KEY substring( )
byte[] bytes = KEY getBytes()
DESKeySpec ks = new DESKeySpec(bytes)
SecretKeyFactory skf = SecretKeyFactory getInstance( DES )
SecretKey sk = skf generateSecret(ks)
IvParameterSpec iv = new IvParameterSpec(bytes)
ecip = Cipher getInstance( DES/CBC/PKCS Padding )
ecip init(Cipher ENCRYPT_MODE sk iv )
dcip = Cipher getInstance( DES/CBC/PKCS Padding )
dcip init(Cipher DECRYPT_MODE sk iv )
}catch(Exception ex) {
ex printStackTrace()
}
}
public static String encrypt(String content) throws Exception {
byte[] bytes = ecip doFinal(content getBytes( ascii ))
return CryptUtils byte hex(bytes)
}
public static String decrypt(String content) throws Exception {
byte[] bytes = CryptUtils hex byte(content)
bytes = dcip doFinal(bytes)
return new String(bytes ascii )
}
//test
public static void main(String[] args) throws Exception {
String password = gly ;
String en = encrypt(password)
System out println(en)
System out println(decrypt(en))
}
lishixin/Article/program/Java/hx/201311/26449
⑻ java des 加密 解密 密钥随机取得方法
java DES 加密 解密 生成随机密钥
举例说明:
//保存生成的key
public static void saveDesKey() {
try {
SecureRandom sr = new SecureRandom();
// 选择的DES算法生成一个KeyGenerator对象
KeyGenerator kg = KeyGenerator.getInstance("DES");
kg.init(sr);
// 相对路径 需要新建 conf 文件夹
// String fileName = "conf/DesKey.xml";
// 绝对路径
String fileName = "d:/DesKey.xml";
FileOutputStream fos = new FileOutputStream(fileName);
ObjectOutputStream oos = new ObjectOutputStream(fos);
// 生成密钥
Key key = kg.generateKey();
oos.writeObject(key);
oos.close();
} catch (Exception e) {
e.printStackTrace();
}
}
//获取生成的key
public static Key getKey() {
Key kp = null;
try {
// 相对路径 需要新建 conf 文件夹
// String fileName = "conf/DesKey.xml";
// InputStream is = Encrypt.class.getClassLoader().getResourceAsStream(fileName);
// 绝对路径
String fileName = "d:/DesKey.xml";
FileInputStream is = new FileInputStream(fileName);
ObjectInputStream oos = new ObjectInputStream(is);
kp = (Key) oos.readObject();
oos.close();
} catch (Exception e) {
e.printStackTrace();
}
return kp;
}
//加密开始
public static void encrypt(String file, String dest) throws Exception {
Cipher cipher = Cipher.getInstance("DES");
cipher.init(Cipher.ENCRYPT_MODE, getKey());
InputStream is = new FileInputStream(file);
OutputStream out = new FileOutputStream(dest);
CipherInputStream cis = new CipherInputStream(is, cipher);
byte[] buffer = new byte[1024];
int r;
while ((r = cis.read(buffer)) > 0) {
out.write(buffer, 0, r);
}
cis.close();
is.close();
out.close();
}
//解密开始
public static void decrypt(String file, String dest) throws Exception {
Cipher cipher = Cipher.getInstance("DES");
cipher.init(Cipher.DECRYPT_MODE, getKey());
InputStream is = new FileInputStream(file);
OutputStream out = new FileOutputStream(dest);
CipherOutputStream cos = new CipherOutputStream(out, cipher);
byte[] buffer = new byte[1024];
int r;
while ((r = is.read(buffer)) >= 0) {
cos.write(buffer, 0, r);
}
cos.close();
out.close();
is.close();
}
}
//des加密主方法
public class DES {
public static void main(String[] args) throws Exception {
Encrypt.saveDesKey();
System.out.println("生成key");
Encrypt.getKey();
System.out.println("获取key");
Encrypt.encrypt("d:\\hello.txt", "d:\\encrypt.txt");
System.out.println("加密");
Encrypt.decrypt("d:\\encrypt.txt", "d:\\decrypt.txt");
System.out.println("解密");
}
以上方法亲测可用。