❶ 求 java的C/S模式中 远程数据传输的“加密、解密”技术
常用API
java.security.KeyPairGenerator 密钥生成器类
public static KeyPairGenerator getInstance(String algorithm) throws NoSuchAlgorithmException
以指定的算法返回一个KeyPairGenerator 对象
参数: algorithm 算法名.如:"DSA","RSA"
public void initialize(int keysize)
以指定的长度初始化KeyPairGenerator对象,如果没有初始化系统以1024长度默认设置
参数:keysize 算法位长.其范围必须在 512 到 1024 之间,且必须为 64 的倍数
public void initialize(int keysize, SecureRandom random)
以指定的长度初始化和随机发生器初始化KeyPairGenerator对象
参数:keysize 算法位长.其范围必须在 512 到 1024 之间,且必须为 64 的倍数
random 一个随机位的来源(对于initialize(int keysize)使用了默认随机器
public abstract KeyPair generateKeyPair()
产生新密钥对
java.security.KeyPair 密钥对类
public PrivateKey getPrivate()
返回私钥
public PublicKey getPublic()
返回公钥
java.security.Signature 签名类
public static Signature getInstance(String algorithm) throws NoSuchAlgorithmException
返回一个指定算法的Signature对象
参数 algorithm 如:"DSA"
public final void initSign(PrivateKey privateKey)
throws InvalidKeyException
用指定的私钥初始化
参数:privateKey 所进行签名时用的私钥
public final void update(byte data)
throws SignatureException
public final void update(byte[] data)
throws SignatureException
public final void update(byte[] data, int off, int len)
throws SignatureException
添加要签名的信息
public final byte[] sign()
throws SignatureException
返回签名的数组,前提是initSign和update
public final void initVerify(PublicKey publicKey)
throws InvalidKeyException
用指定的公钥初始化
参数:publicKey 验证时用的公钥
public final boolean verify(byte[] signature)
throws SignatureException
验证签名是否有效,前提是已initVerify初始化
参数: signature 签名数组
❷ C#加密Java解密
DES加密 java与 C# 可以相互加密解密
这里的KEY采用Base64编码,便用分发,因为Java的Byte范围为-128至127,c#的Byte范围是0-255
核心是确定Mode和Padding,关于这两个的意思可以搜索3DES算法相关文章
一个是C#采用CBC Mode,PKCS7 Padding,Java采用CBC Mode,PKCS5Padding Padding,
另一个是C#采用ECB Mode,PKCS7 Padding,Java采用ECB Mode,PKCS5Padding Padding,
Java的ECB模式不需要IV
对字符加密时,双方采用的都是UTF-8编码
C# 代码
/// <summary>
/// DES3加密解密
/// </summary>
public class Des3
{
#region CBC模式**
/// <summary>
/// DES3 CBC模式加密
/// </summary>
/// <param name="key">密钥</param>
/// <param name="iv">IV</param>
/// <param name="data">明文的byte数组</param>
/// <returns>密文的byte数组</returns>
public static byte[] Des3EncodeCBC( byte[] key, byte[] iv, byte[] data )
{
//复制于MSDN
try
{
// Create a MemoryStream.
MemoryStream mStream = new MemoryStream();
tdsp = new ();
tdsp.Mode = CipherMode.CBC; //默认值
tdsp.Padding = PaddingMode.PKCS7; //默认值
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream cStream = new CryptoStream( mStream,
tdsp.CreateEncryptor( key, iv ),
CryptoStreamMode.Write );
// Write the byte array to the crypto stream and flush it.
cStream.Write( data, 0, data.Length );
cStream.FlushFinalBlock();
// Get an array of bytes from the
// MemoryStream that holds the
// encrypted data.
byte[] ret = mStream.ToArray();
// Close the streams.
cStream.Close();
mStream.Close();
// Return the encrypted buffer.
return ret;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
/// <summary>
/// DES3 CBC模式解密
/// </summary>
/// <param name="key">密钥</param>
/// <param name="iv">IV</param>
/// <param name="data">密文的byte数组</param>
/// <returns>明文的byte数组</returns>
public static byte[] Des3DecodeCBC( byte[] key, byte[] iv, byte[] data )
{
try
{
// Create a new MemoryStream using the passed
// array of encrypted data.
MemoryStream msDecrypt = new MemoryStream( data );
tdsp = new ();
tdsp.Mode = CipherMode.CBC;
tdsp.Padding = PaddingMode.PKCS7;
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream csDecrypt = new CryptoStream( msDecrypt,
tdsp.CreateDecryptor( key, iv ),
CryptoStreamMode.Read );
// Create buffer to hold the decrypted data.
byte[] fromEncrypt = new byte[data.Length];
// Read the decrypted data out of the crypto stream
// and place it into the temporary buffer.
csDecrypt.Read( fromEncrypt, 0, fromEncrypt.Length );
//Convert the buffer into a string and return it.
return fromEncrypt;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
#endregion
#region ECB模式
/// <summary>
/// DES3 ECB模式加密
/// </summary>
/// <param name="key">密钥</param>
/// <param name="iv">IV(当模式为ECB时,IV无用)</param>
/// <param name="str">明文的byte数组</param>
/// <returns>密文的byte数组</returns>
public static byte[] Des3EncodeECB( byte[] key, byte[] iv, byte[] data )
{
try
{
// Create a MemoryStream.
MemoryStream mStream = new MemoryStream();
tdsp = new ();
tdsp.Mode = CipherMode.ECB;
tdsp.Padding = PaddingMode.PKCS7;
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream cStream = new CryptoStream( mStream,
tdsp.CreateEncryptor( key, iv ),
CryptoStreamMode.Write );
// Write the byte array to the crypto stream and flush it.
cStream.Write( data, 0, data.Length );
cStream.FlushFinalBlock();
// Get an array of bytes from the
// MemoryStream that holds the
// encrypted data.
byte[] ret = mStream.ToArray();
// Close the streams.
cStream.Close();
mStream.Close();
// Return the encrypted buffer.
return ret;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
/// <summary>
/// DES3 ECB模式解密
/// </summary>
/// <param name="key">密钥</param>
/// <param name="iv">IV(当模式为ECB时,IV无用)</param>
/// <param name="str">密文的byte数组</param>
/// <returns>明文的byte数组</returns>
public static byte[] Des3DecodeECB( byte[] key, byte[] iv, byte[] data )
{
try
{
// Create a new MemoryStream using the passed
// array of encrypted data.
MemoryStream msDecrypt = new MemoryStream( data );
tdsp = new ();
tdsp.Mode = CipherMode.ECB;
tdsp.Padding = PaddingMode.PKCS7;
// Create a CryptoStream using the MemoryStream
// and the passed key and initialization vector (IV).
CryptoStream csDecrypt = new CryptoStream( msDecrypt,
tdsp.CreateDecryptor( key, iv ),
CryptoStreamMode.Read );
// Create buffer to hold the decrypted data.
byte[] fromEncrypt = new byte[data.Length];
// Read the decrypted data out of the crypto stream
// and place it into the temporary buffer.
csDecrypt.Read( fromEncrypt, 0, fromEncrypt.Length );
//Convert the buffer into a string and return it.
return fromEncrypt;
}
catch ( CryptographicException e )
{
Console.WriteLine( "A Cryptographic error occurred: {0}", e.Message );
return null;
}
}
#endregion
/// <summary>
/// 类测试
/// </summary>
public static void Test()
{
System.Text.Encoding utf8 = System.Text.Encoding.UTF8;
//key为abcdefghijklmnopqrstuvwx的Base64编码
byte[] key = Convert.FromBase64String( "" );
byte[] iv = new byte[] { 1, 2, 3, 4, 5, 6, 7, 8 }; //当模式为ECB时,IV无用
byte[] data = utf8.GetBytes( "中国ABCabc123" );
System.Console.WriteLine( "ECB模式:" );
byte[] str1 = Des3.Des3EncodeECB( key, iv, data );
byte[] str2 = Des3.Des3DecodeECB( key, iv, str1 );
System.Console.WriteLine( Convert.ToBase64String( str1 ) );
System.Console.WriteLine( System.Text.Encoding.UTF8.GetString( str2 ) );
System.Console.WriteLine();
System.Console.WriteLine( "CBC模式:" );
byte[] str3 = Des3.Des3EncodeCBC( key, iv, data );
byte[] str4 = Des3.Des3DecodeCBC( key, iv, str3 );
System.Console.WriteLine( Convert.ToBase64String( str3 ) );
System.Console.WriteLine( utf8.GetString( str4 ) );
System.Console.WriteLine();
}
}
java 代码:
import java.security.Key;
import javax.crypto.Cipher;
import javax.crypto.SecretKeyFactory;
import javax.crypto.spec.DESedeKeySpec;
import javax.crypto.spec.IvParameterSpec;
import sun.misc.BASE64Decoder;
import sun.misc.BASE64Encoder;
public class Des3 {
public static void main(String[] args) throws Exception {
byte[] key=new BASE64Decoder().decodeBuffer("");
byte[] keyiv = { 1, 2, 3, 4, 5, 6, 7, 8 };
byte[] data="中国ABCabc123".getBytes("UTF-8");
System.out.println("ECB加密解密");
byte[] str3 = des3EncodeECB(key,data );
byte[] str4 = ees3DecodeECB(key, str3);
System.out.println(new BASE64Encoder().encode(str3));
System.out.println(new String(str4, "UTF-8"));
System.out.println();
System.out.println("CBC加密解密");
byte[] str5 = des3EncodeCBC(key, keyiv, data);
byte[] str6 = des3DecodeCBC(key, keyiv, str5);
System.out.println(new BASE64Encoder().encode(str5));
System.out.println(new String(str6, "UTF-8"));
}
/**
* ECB加密,不要IV
* @param key 密钥
* @param data 明文
* @return Base64编码的密文
* @throws Exception
*/
public static byte[] des3EncodeECB(byte[] key, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/ECB/PKCS5Padding");
cipher.init(Cipher.ENCRYPT_MODE, deskey);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
/**
* ECB解密,不要IV
* @param key 密钥
* @param data Base64编码的密文
* @return 明文
* @throws Exception
*/
public static byte[] ees3DecodeECB(byte[] key, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/ECB/PKCS5Padding");
cipher.init(Cipher.DECRYPT_MODE, deskey);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
/**
* CBC加密
* @param key 密钥
* @param keyiv IV
* @param data 明文
* @return Base64编码的密文
* @throws Exception
*/
public static byte[] des3EncodeCBC(byte[] key, byte[] keyiv, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/CBC/PKCS5Padding");
IvParameterSpec ips = new IvParameterSpec(keyiv);
cipher.init(Cipher.ENCRYPT_MODE, deskey, ips);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
/**
* CBC解密
* @param key 密钥
* @param keyiv IV
* @param data Base64编码的密文
* @return 明文
* @throws Exception
*/
public static byte[] des3DecodeCBC(byte[] key, byte[] keyiv, byte[] data)
throws Exception {
Key deskey = null;
DESedeKeySpec spec = new DESedeKeySpec(key);
SecretKeyFactory keyfactory = SecretKeyFactory.getInstance("desede");
deskey = keyfactory.generateSecret(spec);
Cipher cipher = Cipher.getInstance("desede" + "/CBC/PKCS5Padding");
IvParameterSpec ips = new IvParameterSpec(keyiv);
cipher.init(Cipher.DECRYPT_MODE, deskey, ips);
byte[] bOut = cipher.doFinal(data);
return bOut;
}
}
❸ Des加密解密方法 用java C#和C++三种方式实现
Solaris下的系统,有一个用C做的加密工具,调用Sunwcry的des(1)对文件进行加密,然后在java中对文件进行解密。java中用的是标准的DES/CBC/NoPadding算法,可是解密后发现开头有8byte的数据出错了,请高人指点一下。
cbc_encrypt.c : 加密用的C程序
cbc_decrypt.c:解密用的C程序
TestDescbc.java:解密用的java程序
Test01.dat原始文件
Test03.dat cbc_encrypt加密后的文件
Test05.dat cbc_decrypt解密后的文件
Test06.dat TestDescbc解密后的文件
❹ 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
❺ Java生成的RSA密钥对,用C#加密解密,怎么弄
http://davenzeng.blog.51cto.com/3896952/989634看下这个对你有没有帮助
❻ 如题,求Java的DES算法代码,可以用于解密用C语言写的DES加密算法!其中C语言代码见问题补充
俺就是来帮助你这样可爱的人。俺可是花了几年的时间费了多大的力气才能把这个东西弄出来!
DES加密还没有AES严密:
packagecom.palic.pss.afcs.worldthrough.common.util;
importjavax.crypto.Cipher;
importjavax.crypto.spec.SecretKeySpec;
importrepack.com.thoughtworks.xstream.core.util.Base64Encoder;
/**
*AES加密解密
*@author
*
*/
publicclassAesUtils{
publicstaticfinalStringcKey="assistant7654321";
/**
*加密--把加密后的byte数组先进行二进制转16进制在进行base64编码
*@paramsSrc
*@paramsKey
*@return
*@throwsException
*/
publicstaticStringencrypt(StringsSrc,StringsKey)throwsException{
if(sKey==null){
("ArgumentsKeyisnull.");
}
if(sKey.length()!=16){
(
"ArgumentsKey'lengthisnot16.");
}
byte[]raw=sKey.getBytes("ASCII");
SecretKeySpecskeySpec=newSecretKeySpec(raw,"AES");
Ciphercipher=Cipher.getInstance("AES");
cipher.init(Cipher.ENCRYPT_MODE,skeySpec);
byte[]encrypted=cipher.doFinal(sSrc.getBytes("UTF-8"));
StringtempStr=parseByte2HexStr(encrypted);
Base64Encoderencoder=newBase64Encoder();
returnencoder.encode(tempStr.getBytes("UTF-8"));
}
/**
*解密--先进行base64解码,在进行16进制转为2进制然后再解码
*@paramsSrc
*@paramsKey
*@return
*@throwsException
*/
publicstaticStringdecrypt(StringsSrc,StringsKey)throwsException{
if(sKey==null){
("499");
}
if(sKey.length()!=16){
("498");
}
byte[]raw=sKey.getBytes("ASCII");
SecretKeySpecskeySpec=newSecretKeySpec(raw,"AES");
Ciphercipher=Cipher.getInstance("AES");
cipher.init(Cipher.DECRYPT_MODE,skeySpec);
Base64Encoderencoder=newBase64Encoder();
byte[]encrypted1=encoder.decode(sSrc);
StringtempStr=newString(encrypted1,"utf-8");
encrypted1=parseHexStr2Byte(tempStr);
byte[]original=cipher.doFinal(encrypted1);
StringoriginalString=newString(original,"utf-8");
returnoriginalString;
}
/**
*将二进制转换成16进制
*
*@parambuf
*@return
*/
(bytebuf[]){
StringBuffersb=newStringBuffer();
for(inti=0;i<buf.length;i++){
Stringhex=Integer.toHexString(buf[i]&0xFF);
if(hex.length()==1){
hex='0'+hex;
}
sb.append(hex.toUpperCase());
}
returnsb.toString();
}
/**
*将16进制转换为二进制
*
*@paramhexStr
*@return
*/
publicstaticbyte[]parseHexStr2Byte(StringhexStr){
if(hexStr.length()<1)
returnnull;
byte[]result=newbyte[hexStr.length()/2];
for(inti=0;i<hexStr.length()/2;i++){
inthigh=Integer.parseInt(hexStr.substring(i*2,i*2+1),16);
intlow=Integer.parseInt(hexStr.substring(i*2+1,i*2+2),
16);
result[i]=(byte)(high*16+low);
}
returnresult;
}
publicstaticvoidmain(String[]args)throwsException{
/*
*加密用的Key可以用26个字母和数字组成,最好不要用保留字符,虽然不会错,至于怎么裁决,个人看情况而定
*/
StringcKey="assistant7654321";
//需要加密的字串
StringcSrc="123456";
//加密
longlStart=System.currentTimeMillis();
StringenString=encrypt(cSrc,cKey);
System.out.println("加密后的字串是:"+enString);
longlUseTime=System.currentTimeMillis()-lStart;
System.out.println("加密耗时:"+lUseTime+"毫秒");
//解密
lStart=System.currentTimeMillis();
StringDeString=decrypt(enString,cKey);
System.out.println("解密后的字串是:"+DeString);
lUseTime=System.currentTimeMillis()-lStart;
System.out.println("解密耗时:"+lUseTime+"毫秒");
}
}
❼ des解密算法,利用C语言解密JAVA语言加密的密码。。密钥为12345678,加密后的密文为:26d086be3a3a62fc
// C 语言 DES用的是 ECB模式, 没有填充
// 因此Java端要对应, 你的明文是 liubiao 吗?
// 另外 DES已经不安全了, 如果可以改为 3DES或者 AES吧。
public class LearnDes {
public static void main(String[] args) {
try {
System.out.println(encrypt("liubiao", "12345678"));
System.out.println(decrypt("26d086be3a3a62fc", "12345678"));
} catch (Exception e) {
e.printStackTrace();
}
}
public static String encrypt(String message, String key) throws Exception {
//Cipher cipher = Cipher.getInstance("DES/CBC/PKCS5Padding");
Cipher cipher = Cipher.getInstance("DES/ECB/NOPADDING");
DESKeySpec desKeySpec = new DESKeySpec(key.getBytes("UTF-8"));
SecretKeyFactory keyFactory = SecretKeyFactory.getInstance("DES");
SecretKey secretKey = keyFactory.generateSecret(desKeySpec);
IvParameterSpec iv = new IvParameterSpec(key.getBytes("UTF-8"));
//cipher.init(Cipher.ENCRYPT_MODE, secretKey, iv);
cipher.init(Cipher.ENCRYPT_MODE, secretKey );
return toHexString(cipher.doFinal(message.getBytes("UTF-8")));
}
public static String decrypt(String message, String key) throws Exception {
byte[] bytesrc = convertHexString(message);
//Cipher cipher = Cipher.getInstance("DES/CBC/PKCS5Padding");
Cipher cipher = Cipher.getInstance("DES/ECB/NOPADDING");
DESKeySpec desKeySpec = new DESKeySpec(key.getBytes("UTF-8"));
SecretKeyFactory keyFactory = SecretKeyFactory.getInstance("DES");
SecretKey secretKey = keyFactory.generateSecret(desKeySpec);
IvParameterSpec iv = new IvParameterSpec(key.getBytes("UTF-8"));
//cipher.init(Cipher.DECRYPT_MODE, secretKey, iv);
cipher.init(Cipher.DECRYPT_MODE, secretKey );
byte[] retByte = cipher.doFinal(bytesrc);
return new String(retByte);
}
public static byte[] convertHexString(String ss) {
byte digest[] = new byte[ss.length() / 2];
for (int i = 0; i < digest.length; i++) {
String byteString = ss.substring(2 * i, 2 * i + 2);
int byteValue = Integer.parseInt(byteString, 16);
digest[i] = (byte) byteValue;
}
return digest;
}
public static String toHexString(byte b[]) {
StringBuffer hexString = new StringBuffer();
for (int i = 0; i < b.length; i++) {
String plainText = Integer.toHexString(0xff & b[i]);
if (plainText.length() < 2)
plainText = "0" + plainText;
hexString.append(plainText);
}
return hexString.toString();
}
}