des3在线加密解密
1. 【急】【求助】.des加密文件怎样打开
想实现用方法1加密文件 后再方法2 解密文件 可成功正常运行"C:/j2sdk1.4.2_08/bin/aa.class"文件
//方法1 这是加密文件, 把"C:/aa.class" 加密为 "C:/j2sdk1.4.2_08/bin/aaEncode.class"
//方法2 这是解密文件,把"C:/j2sdk1.4.2_08/bin/aaEncode.class" 解密为 "C:/j2sdk1.4.2_08/bin/aa.class"
//方法3 这是先加密再解密的代码,这是加密文件, 把"C:/aa.class" 加密到一个内存后把这内存解密到 "C:/j2sdk1.4.2_08/bin/aa.class"
其中直接运行方法3 可正常运行"C:/j2sdk1.4.2_08/bin/aa.class"文件,成功!
如果先运行 方法1 再运行方法2 不可正常运行"C:/j2sdk1.4.2_08/bin/aa.class"文件,失败!
请高手解决一下。
//方法1 这是加密文件, 把"C:/aa.class" 加密为 "C:/j2sdk1.4.2_08/bin/aaEncode.class"
void CTestDllDlg::OnBnClickedjiami()
{
CString spath ;
int ilen = 800;
char *pBufferRead = new char[ilen];
ZeroMemory(pBufferRead,ilen);
spath ="C:/aa.class";
CFile fFileRead(spath,CFile::modeReadWrite | CFile::modeNoTruncate );
ilen = fFileRead.GetLength();
fFileRead.Read(pBufferRead,fFileRead.GetLength());
fFileRead.Close();
char *key =new char[10];
strcpy(key,"1234567");
char *bufferEncode =new char[ilen];
Des_EncodeFile( bufferEncode, pBufferRead, key,ilen);
spath ="C:/j2sdk1.4.2_08/bin/aaEncode.class";
CFile fFileWrite(spath,CFile::modeReadWrite | CFile::modeNoTruncate | CFile::modeCreate);
fFileWrite.SeekToBegin();
fFileWrite.Write(bufferEncode,ilen);
fFileWrite.Close();
CString ss;
//ss.Format("新文件大小原 %s 新%s",bufferEncode,pBufferRead);
// AfxMessageBox(ss);
delete [] pBufferRead ;
delete [] key ;
delete [] bufferEncode ;
}
//方法2 这是解密文件,把"C:/j2sdk1.4.2_08/bin/aaEncode.class" 解密为 "C:/j2sdk1.4.2_08/bin/aa.class"
void CTestDllDlg::OnBnClickedjiemi()
{
CString spath ;
int ilen = 800;
char *pBufferRead = new char[ilen];
ZeroMemory(pBufferRead,ilen);
spath ="C:/j2sdk1.4.2_08/bin/aaEncode.class";
CFile fFileRead(spath,CFile::modeReadWrite | CFile::modeNoTruncate );
ilen = fFileRead.GetLength();
fFileRead.Read(pBufferRead,fFileRead.GetLength());
fFileRead.Close();
char *key =new char[10];
strcpy(key,"1234567");
char *bufferDecode =new char[ilen ];
Des_DecodeFile( bufferDecode, pBufferRead, key,ilen);
spath ="C:/j2sdk1.4.2_08/bin/aa.class";
CFile fFileWrite(spath,CFile::modeReadWrite | CFile::modeNoTruncate | CFile::modeCreate);
fFileWrite.SeekToBegin();
fFileWrite.Write(bufferDecode,ilen);
fFileWrite.Close();
CString ss;
//ss.Format("新文件大小原 %s 新%s",bufferDecode,pBufferRead);
// AfxMessageBox(ss);
delete [] pBufferRead ;
delete [] key ;
delete [] bufferDecode ;
}
//方法3 这是先加密再解密的代码,这是加密文件, 把"C:/aa.class" 加密到一个内存后把这内存解密到 "C:/j2sdk1.4.2_08/bin/aa.class"
void CTestDllDlg::OnBnClickedjiajiemi()
{
CString spath ;
int ilen = 800;
char *pBufferRead = new char[ilen];
ZeroMemory(pBufferRead,ilen);
spath ="C:/aa.class";
CFile fFileRead(spath,CFile::modeReadWrite | CFile::modeNoTruncate );
ilen = fFileRead.GetLength();
fFileRead.Read(pBufferRead,fFileRead.GetLength());
fFileRead.Close();
char *key =new char[10];
strcpy(key,"1234567");
char *bufferEncode =new char[ilen];
Des_EncodeFile( bufferEncode, pBufferRead, key,ilen);
char *bufferDecode =new char[ilen ];
Des_DecodeFile( bufferDecode, bufferEncode, key,ilen);
spath ="C:/j2sdk1.4.2_08/bin/aa.class";
CFile fFileWrite(spath,CFile::modeReadWrite | CFile::modeNoTruncate | CFile::modeCreate);
fFileWrite.SeekToBegin();
fFileWrite.Write(bufferDecode,ilen);
fFileWrite.Close();
CString ss;
//ss.Format("新文件大小原 %s 新%s",bufferEncode,pBufferRead);
// AfxMessageBox(ss);
delete [] pBufferRead ;
delete [] key ;
delete [] bufferEncode ;
delete [] bufferDecode ;
}
//
int CTestDllDlg::Des_EncodeFile( char *buf, char *input, char *key,int lenp)
{
Des_Go(buf, input, lenp, key, sizeof(key), ENCRYPT);
return 0;
}
//
int CTestDllDlg::Des_DecodeFile(char *output, char *input, char *key,int lenp)
{
Des_Go(output,input, lenp, key, sizeof(key), DECRYPT);
return 0;
}
或是看看下面这个网址
http://hi..com/sammy17084/blog/item/369fa202a6263d054afb5167.html
希望对你有帮助
2. 请教DES算法的解密
DES算法处理的数据对象是一组64比特的明文串。设该明文串为m=m1m2…m64 (mi=0或1)。明文串经过64比特的密钥K来加密,最后生成长度为64比特的密文E。其加密过程图示如下:
DES算法加密过程
对DES算法加密过程图示的说明如下:待加密的64比特明文串m,经过IP置换后,得到的比特串的下标列表如下:
IP 58 50 42 34 26 18 10 2
60 52 44 36 28 20 12 4
62 54 46 38 30 22 14 6
64 56 48 40 32 24 16 8
57 49 41 33 25 17 9 1
59 51 43 35 27 19 11 3
61 53 45 37 29 21 13 5
63 55 47 39 31 23 15 7
该比特串被分为32位的L0和32位的R0两部分。R0子密钥K1(子密钥的生成将在后面讲)经过变换f(R0,K1)(f变换将在下面讲)输出32位的比特串f1,f1与L0做不进位的二进制加法运算。运算规则为:
f1与L0做不进位的二进制加法运算后的结果赋给R1,R0则原封不动的赋给L1。L1与R0又做与以上完全相同的运算,生成L2,R2…… 一共经过16次运算。最后生成R16和L16。其中R16为L15与f(R15,K16)做不进位二进制加法运算的结果,L16是R15的直接赋值。
R16与L16合并成64位的比特串。值得注意的是R16一定要排在L16前面。R16与L16合并后成的比特串,经过置换IP-1后所得比特串的下标列表如下:
IP-1 40 8 48 16 56 24 64 32
39 7 47 15 55 23 63 31
38 6 46 14 54 22 62 30
37 5 45 13 53 21 61 29
36 4 44 12 52 20 60 28
35 3 43 11 51 19 59 27
34 2 42 10 50 18 58 26
33 1 41 9 49 17 57 25
经过置换IP-1后生成的比特串就是密文e.。
下面再讲一下变换f(Ri-1,Ki)。
它的功能是将32比特的输入再转化为32比特的输出。其过程如图所示:
对f变换说明如下:输入Ri-1(32比特)经过变换E后,膨胀为48比特。膨胀后的比特串的下标列表如下:
E: 32 1 2 3 4 5
4 5 6 7 8 9
8 9 10 11 12 13
12 13 14 15 16 17
16 17 18 19 20 21
20 21 22 23 24 25
24 25 26 27 28 29
28 29 30 31 32 31
膨胀后的比特串分为8组,每组6比特。各组经过各自的S盒后,又变为4比特(具体过程见后),合并后又成为32比特。该32比特经过P变换后,其下标列表如下:
P: 16 7 20 21
29 12 28 17
1 15 23 26
5 18 31 10
2 8 24 14
32 27 3 9
19 13 30 6
22 11 4 25
经过P变换后输出的比特串才是32比特的f (Ri-1,Ki)。
3. 使用des对文件加密后怎么解密
您好,一般来说在线加密工具都是网页版的,des加密需要加密前明文和加密密钥,在网页的控件上填写好对应信息之后,点击加密按钮一般就可以看到加密后的加密结果。
4. java的des3解密方法。转成c#
byte[] iv = utf8.GetBytes("25439768");改成byte[] iv = Convert.FromBase64String("25439768")
5. 使用des对文件加密后怎么解密
des加密解密都比较复杂
推荐使用加密软件进行加密解密
文件夹加密超级大师解密也很方便。双击加密的数据在弹出的密码框输入正确的密码,点击【解密】即可
6. DES加密算法C语言实现
/*********************************************************************/
/*-文件名:des.h */
/*- */
/*-功能: 实现DES加密算法的加密解密功能 */
/*********************************************************************/
typedef int INT32;
typedef char INT8;
typedef unsigned char ULONG8;
typedef unsigned short ULONG16;
typedef unsigned long ULONG32;
/*如果采用c++编译器的话采用如下宏定义
#define DllExport extern "C" __declspec(dllexport)
*/
#define DllExport __declspec(dllexport)
/*加密接口函数*/
DllExport INT32 DdesN(ULONG8 *data, ULONG8 **key, ULONG32 n_key,ULONG32 readlen);
DllExport INT32 desN(ULONG8 *data, ULONG8 **key, ULONG32 n_key,ULONG32 readlen);
DllExport INT32 des3(ULONG8 *data, ULONG8 *key,ULONG32 n ,ULONG32 readlen);
DllExport INT32 Ddes3(ULONG8 *data,ULONG8 *key,ULONG32 n ,ULONG32 readlen);
DllExport INT32 des(ULONG8 *data, ULONG8 *key,INT32 readlen);
DllExport INT32 Ddes(ULONG8 *data,ULONG8 *key,INT32 readlen);
*********************************************************************/
/*-文件名:des.c */
/*- */
/*-功能: 实现DES加密算法的加密解密功能 */
//*********************************************************************/
#include <stdlib.h>
#include <stdio.h>
#include <string.h>
#include <memory.h>
#include <malloc.h>
#include "des.h"
#define SUCCESS 0
#define FAIL -1
#define READFILESIZE 512
#define WZ_COMMEND_NUM 4
#define WZUSEHELPNUM 19
#define DESONE 1
#define DESTHREE 2
#define DESMULTI 3
INT8 *WZ_Commend_Help[] =
{
"基于DES的加密解密工具v1.0 ",/*0*/
"追求卓越,勇于创新 ",
"----着者 : 吴真--- ",
" "
};
INT8 *WZ_USE_HELP[]={
"输入5+n个参数:",
"\t1.可执行文件名 *.exe",
"\t2.操作类型 1:一层加密;2:一层解密;",
"\t\t13:N层单密钥加密;23:N层单密钥解密;",
"\t\t39:N层多密钥加密;49:N层多密钥解密",
"\t3.读出数据的文件名*.txt",
"\t4.写入数据的文件名*.txt",
"\t5.密钥(8字节例如:wuzhen12)",
"\t[6].N层单密钥的层数或者...二层加密|解密密钥",
"\t[7].三层加密|解密密钥",
"\t[8]. ...",
"\t[N].N层加密|解密密钥",
"\t 例1: des 1 1.txt 2.txt 12345678",
"\t : des 2 2.txt 3.txt 12345678",
"\t 例2: des 13 1.txt 2.txt tiantian 5",
"\t : des 23 2.txt 3.txt tiantian 5",
"\t 例3: des 39 1.txt 2.txt 12345678 tiantian gaoxinma",
"\t : des 49 2.txt 3.txt 12345678 tiantian gaoxinma",
"******************************"
};
INT32 hextofile( ULONG8 *buf ,FILE *writefile, ULONG32 length);/*以16进制写入文件*/
INT32 encodehex(ULONG8 *tobuf,ULONG8 *frombuf,ULONG32 len);/*16进制解码*/
INT32 file_enc(FILE *readfile,FILE *writefile,
ULONG8 *key,ULONG32 keynum,
ULONG8 **superkey,ULONG32 n_superkey,
ULONG8 flag);
INT32 file_dec(FILE *readfile,FILE *writefile,
ULONG8 *key,ULONG32 keynum,
ULONG8 **superkey,ULONG32 n_superkey,
ULONG8 flag);
void wz_print_help();
INT32 main(INT32 argc,INT8 *argv[])
{
INT8 *FILENAME1,*FILENAME2;
FILE *fp, *fp2;
ULONG8 *key ;
ULONG8 **superkey ;/*n层加密解密密钥*/
ULONG8 n_superkey ;
ULONG32 num;
if ( argc >= 5 && (atoi(argv[1]) == 39 || atoi(argv[1]) == 49 ) )
{
n_superkey = argc - 4 ;
superkey = ( INT8 **)calloc(1, n_superkey*sizeof( void *) ) ;
for ( num = 0 ; num < n_superkey ; num++)
{
superkey[num] = argv[4+num] ;
}
}
else if ( argc == 6 && (atoi(argv[1]) == 13 || atoi(argv[1]) == 23 ) && (atoi(argv[5])) > 0)
{
}
else if ( argc == 5 && ( atoi(argv[1]) == 1 || atoi(argv[1]) == 2 ))
{
}
else
{
wz_print_help();
return FAIL;
}
FILENAME1 = argv[2];
FILENAME2 = argv[3];
if ((fp= fopen(FILENAME1,"rb")) == NULL || (fp2 = fopen(FILENAME2,"wb"))==NULL)
{
printf("Can't open file\n");
return FAIL;
}
key = argv[4] ;
switch( atoi(argv[1] ))
{
case 1: /*加密*/
file_enc(fp,fp2,key,0, NULL,0, DESONE);
printf("\n \tDES 一层加密完毕,密文存于%s文件\n",FILENAME2);
break;
case 2:
file_dec(fp,fp2,key,0, NULL, 0,DESONE);
printf("\n \tDES 一层解密完毕,密文存于%s文件\n",FILENAME2);
break;
case 13:
file_enc(fp,fp2,key,atoi(argv[5]),NULL,0,DESTHREE);
printf("\n \tDES %u层单密钥加密完毕,密文存于%s文件\n",atoi(argv[5]),FILENAME2);
break;
case 23:
file_dec(fp,fp2,key,atoi(argv[5]),NULL,0,DESTHREE);
printf("\n \tDES %u层单密钥解密完毕,密文存于%s文件\n",atoi(argv[5]),FILENAME2);
break;
case 39:
file_enc(fp,fp2,NULL,0,superkey,n_superkey,DESMULTI);
printf("\n \tDES 多密钥加密完毕,密文存于%s文件\n",FILENAME2);
free(superkey);
superkey = NULL;
break;
case 49:
file_dec(fp,fp2,NULL,0,superkey,n_superkey,DESMULTI);
printf("\n \tDES 多密钥加密完毕,密文存于%s文件\n",FILENAME2);
free(superkey);
superkey = NULL;
break;
default:
printf("请选择是加密|解密 plese choose encrypt|deencrypt\n");
break;
}
fclose(fp);
fclose(fp2);
return SUCCESS;
}
void wz_print_help()
{
INT32 i ;
printf("\t");
for ( i = 0 ; i < 22 ; i++)
{
printf("%c ",5);
}
printf("\n");
for( i = 0 ; i < WZ_COMMEND_NUM ; i++)
{
printf("\t%c\t%s %c\n",5,WZ_Commend_Help[i],5);
}
printf("\t");
for ( i = 0 ; i < 22 ; i++)
{
printf("%c ",5);
}
printf("\n");
for( i = 0 ; i < WZUSEHELPNUM ; i++)
{
printf("\t%s\n",WZ_USE_HELP[i]);
}
return ;
}
INT32 file_enc(FILE *readfile,FILE *writefile,
ULONG8 *key,ULONG32 keynum,
ULONG8 **superkey,ULONG32 n_superkey,
ULONG8 flag)
{
INT32 filelen = 0,readlen = 0,writelen = 0;
ULONG32 totalfilelen = 0 ;/*统计实际的文件的长度*/
ULONG8 readbuf[READFILESIZE] = { 0 };
filelen = fread( readbuf, sizeof( INT8 ), READFILESIZE, readfile );
while( filelen == READFILESIZE )
{
totalfilelen += READFILESIZE;
switch(flag)
{
case DESONE:
des( readbuf,key,READFILESIZE);
break;
case DESTHREE:
des3( readbuf, key ,keynum,READFILESIZE);
break;
case DESMULTI:
desN( readbuf, superkey ,n_superkey,READFILESIZE);
break;
}
hextofile( readbuf, writefile, READFILESIZE );/*以16进制形式写入文件*/
memset(readbuf,0,READFILESIZE);
filelen = fread( readbuf, sizeof( INT8 ), READFILESIZE, readfile );
}
/*这是从文件中读出的最后一批数据,长度可能会等于0,所以要先判断*/
if ( filelen > 0 )
{
/*如果从文件中读出的长度不等于0,那么肯定有8个字节以上的空间
文件长度存在最后8个字节中*/
totalfilelen += filelen;
memcpy( &readbuf[READFILESIZE-8], (ULONG8*)&totalfilelen,4);
switch(flag)
{
case DESONE:
des( readbuf,key,READFILESIZE);
break;
case DESTHREE:
des3( readbuf, key ,keynum,READFILESIZE);
break;
case DESMULTI:
desN( readbuf, superkey ,n_superkey,READFILESIZE);
break;
}
hextofile( readbuf, writefile,READFILESIZE );/*以16进制形式写入文件*/
memset(readbuf,0 ,READFILESIZE);
}
else /*filelen == 0*/
{
memcpy( &readbuf[0], (ULONG8*)&totalfilelen,4);
switch(flag)
{
case DESONE:
des( readbuf,key,8);
break;
case DESTHREE:
des3( readbuf, key ,keynum,8);
break;
case DESMULTI:
desN( readbuf, superkey ,n_superkey,8);
break;
}
hextofile( readbuf, writefile, 8);/*以16进制形式写入文件*/
}
return SUCCESS;
}
INT32 file_dec(FILE *readfile,FILE *writefile,
ULONG8 *key,ULONG32 keynum,
ULONG8 **superkey,ULONG32 n_superkey,
ULONG8 flag)
{
INT32 filelen = 0,readlen = 0,writelen = 0;
ULONG32 totalfilelen = 0 ;/*统计实际的文件的长度*/
INT32 num = 0;
ULONG8 readbuf[READFILESIZE] = { 0 };
ULONG8 sendbuf[READFILESIZE*2] = { 0 };
fseek(readfile,-16,SEEK_END);/*最后16个字节的表示文件长度的空间*/
filelen = fread( sendbuf, sizeof( INT8 ), 16, readfile );
encodehex( readbuf,sendbuf,8);
switch(flag)
{
case DESONE:
Ddes( readbuf,key,8);
break;
case DESTHREE:
Ddes3( readbuf, key ,keynum,8);
break;
case DESMULTI:
DdesN( readbuf, superkey ,n_superkey,8);
break;
}
/*解密*/
memcpy((ULONG8*)&totalfilelen, &readbuf[0],4);/*得到文件总长*/
memset(readbuf,0 ,8);
memset(sendbuf,0 ,16);
num = totalfilelen/READFILESIZE;/*有几个READFILESIZE组*/
totalfilelen %= READFILESIZE;
fseek(readfile,0,SEEK_SET);/*跳到文件头*/
while(num--)
{
filelen = fread( sendbuf, sizeof( INT8 ), READFILESIZE*2, readfile );
encodehex( readbuf,sendbuf,READFILESIZE);
switch(flag)
{
case DESONE:
Ddes( readbuf,key,READFILESIZE);
break;
case DESTHREE:
Ddes3( readbuf, key ,keynum,READFILESIZE);
break;
case DESMULTI:
DdesN( readbuf, superkey ,n_superkey,READFILESIZE);
break;
}
writelen = fwrite(readbuf, sizeof( INT8 ), READFILESIZE, writefile);
memset(readbuf,0 ,READFILESIZE);
memset(sendbuf,0 ,READFILESIZE*2);
}
if ( totalfilelen > 0 )/*最后一块有多余的元素*/
{
filelen = fread( sendbuf, sizeof( INT8 ), READFILESIZE*2, readfile );
encodehex( readbuf,sendbuf,READFILESIZE);
switch(flag)
{
case DESONE:
Ddes( readbuf,key,READFILESIZE);
break;
case DESTHREE:
Ddes3( readbuf, key ,keynum,READFILESIZE);
break;
case DESMULTI:
DdesN( readbuf, superkey ,n_superkey,READFILESIZE);
break;
}
writelen = fwrite(readbuf, sizeof( INT8 ), totalfilelen, writefile);
memset(readbuf,0 ,READFILESIZE);
memset(sendbuf,0 ,READFILESIZE*2);
}
return SUCCESS;
}
INT32 hextofile( ULONG8 *buf ,FILE *writefile, ULONG32 length)
{
ULONG32 writelen = 0 ;
/*以16进制形式写入文件*/
while( writelen < length)
{
if(buf[writelen] == 0)
{
fprintf( writefile, "%x", 0 );
fprintf( writefile, "%x", 0 );
}
else if (buf[writelen] < 0x10)
{
fprintf( writefile, "%x", 0 );
fprintf( writefile, "%x", buf[writelen] );
}
else
{
fprintf( writefile, "%x", buf[writelen] );
}
writelen++;
}
return SUCCESS;
}
INT32 encodehex(ULONG8 *tobuf,ULONG8 *frombuf,ULONG32 len)
{
ULONG8 *readfirst = frombuf ;
ULONG8 *readend = &frombuf[1] ;
INT8 *s;
ULONG8 y[2] ;
ULONG32 i;
for ( i = 0 ; i < len ; i++)
{
y[0] = *readfirst ;
y[1] = *readend ;
readfirst += 2 ;
readend += 2 ;
tobuf[i] = (ULONG8)strtol((INT8*)y, &s, 16);
}
return SUCCESS;
}
7. 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;
}
}
8. linux怎么获取使用md5处理前的密码
这里以字符串123456为例子,它的md5密文值为:
这里以1.txt为需要被加密的文件。
一、 用oppnssl md5 加密字符串和文件的方法。
1. oppnssl md5 加密字符串的方法
a.手动输入命令及过程如下:
#openssl //在终端中输入openssl后回车。
OpenSSL> md5 //输入md5后回车
123456 //接着输入123456,不要输入回车。然后按3次ctrl+d。
123456 //123456后面的就是密文了
解释:为何在输入123456后不回车呢?
是因为openssl默认会把回车符当做要加密的字符串中的一个字符,所以得到的结果不同。如果你输入123456后回车,在按2次ctrl+d。得到的结果是:
OpenSSL> md5
123456
//因为openssl不忽略回车符导致的
b.或者直接用管道命令
# echo -n 123456 | openssl md5 //必须要有-n参数,否则就不是这个结果了。
解释:为何要加-n这个参数?
-n就表示不输入回车符,这样才能得到正确的结果。如果你不加-n,那么结果和前面说的一样为:
//因为openssl不忽略回车符导致的
2.用openssl加密文件。
#openssl md 5 -in 1.txt
##################################################3
Openssl其他相关加密的命令参数:引自:实用命令:利用openssl进行BASE64编码解码、md5/sha1摘要、AES/DES3加密解密 收藏
一. 利用openssl命令进行BASE64编码解码(base64 encode/decode)
1. BASE64编码命令
对字符串‘abc’进行base64编码:
# echo abc | openssl base64
YWJjCg== (编码结果)
如果对一个文件进行base64编码(文件名t.txt):
# openssl base64 -in t.txt
2. BASE64解码命令
求base64后的字符串‘YWJjCg==’的原文:
# echo YWJjCg== | openssl base64 -d
abc (解码结果)
如果对一个文件进行base64解码(文件名t.base64):
# openssl base64 -d -in t.base64
二. 利用openssl命令进行md5/sha1摘要(digest)
1. 对字符串‘abc’进行md5摘要计算:echo abc | openssl md5
若对某文件进行md5摘要计算:openssl md5 -in t.txt
2. 对字符串‘abc’进行sha1摘要计算:echo abc | openssl sha1
若对某文件进行sha1摘要计算:openssl sha1 -in t.txt
三. 利用openssl命令进行AES/DES3加密解密(AES/DES3 encrypt/decrypt)
对字符串‘abc’进行aes加密,使用密钥123,输出结果以base64编码格式给出:
# echo abc | openssl aes-128-cbc -k 123 -base64
U2FsdGVkX18ynIbzARm15nG/JA2dhN4mtiotwD7jt4g= (结果)
对以上结果进行解密处理:
# echo U2FsdGVkX18ynIbzARm15nG/JA2dhN4mtiotwD7jt4g= | openssl aes-128-cbc -d -k 123 -base64
abc (结果)
若要从文件里取原文(密文)进行加密(解密),只要指定 -in 参数指向文件名就可以了。
进行des3加解密,只要把命令中的aes-128-cbc换成des3就可以了。
注:只要利用openssl help就可以看到更多的安全算法了。
###############################################
二、 利用php的md5函数加密字符串
#touch a.php //创建a.php文件
#vi a.php //用vi 编辑a.php文件
将<?php echo md5(123456); ?>输入进去后保存
#php a.php //运行a.php文件
显示:
三、 利用md5sum命令
A.在linux或Unix上,md5sum是用来计算和校验文件报文摘要的工具程序。一般来说,安装了Linux后,就会有md5sum这个工具,直接在命令行终端直接运行。可以用下面的命令来获取md5sum命令帮助 man md5sum
#md5sum –help
有个提示:“With no FILE, or when FILE is -, read standard input.”翻译过来就是“如果没有输入文件选项或者文件选项为 - ,则从标砖读取输入内容”,即可以直接从键盘读取字符串来加密。
利用md5sum加密字符串的方法
# md5sum //然后回车
123456 //输入123456.然后按两次ctrl+d.
显示:
123456 红色代表加密后的值
还可以用管道命令:
#echo -n '123123' | md5sum
或者写成md5加密脚本,名字叫md5.sh,
将以下内容复制进脚本里:
#!/bin/bash
echo -n $1 | md5sum | awk '{print $1}'
保存后,给脚本执行权限。
#sh md5.sh 123456
显示:
B.其实也可以将文本放入文本文件,然后用md5sum 加密改文本,也可以得到字符串加密的值。过程如下:
#touch a.txt
#echo -n 123456 > a.txt //将123456写进文本文件,不能丢了 –n参数,避免回车符干扰
#md5sum a.txt
显示: a.txt
ctrl+d有两个含义:
一是向程序发送文件输入结束符EOF。
二是向程序发送exit退出指令。程序收到信号后具体动作是结束输入、然后等待,还是直接退出,那就要看该程序捕获信号后是如何操作的了。
md5sum属于第一个含义。两次strl+d了,第一次读取EOF指令,再次捕获就会当成exit指令。而shell一类的程序,会直接把ctrl+d解析为退出指令。
9. 我想做一个加密解密文件的VB程序!用des加密解密方法!!! 希望高手解答!
vb.net code注意随机密码按钮在没用,调试时你自己输入密码,一定为8位,我是将文件存在D盘,你自己在修改一下,那个就很简单
Imports System.IO
Imports System.Security.Cryptography
Imports System.Text
Public Class Form1
Private Sub Button1_Click(ByVal sender As System.Object, ByVal e As System.EventArgs) Handles Button1.Click
Dim sSecretKey As String = Me.TextBox2.Text
EncryptFile(Me.TextBox1.Text, "D:\JMtest.txt", sSecretKey)
End Sub
Private Sub Button2_Click(ByVal sender As System.Object, ByVal e As System.EventArgs) Handles Button2.Click
Dim sSecretKey As String = Me.TextBox2.Text
DecryptFile("D:\JMtest.txt", "D:\Decrypted.txt", sSecretKey)
End Sub
Sub EncryptFile(ByVal sInputFilename As String, ByVal sOutputFilename As String, ByVal sKey As String)
Dim fsInput As New FileStream(sInputFilename, FileMode.Open, FileAccess.Read)
Dim fsEncrypted As New FileStream(sOutputFilename, FileMode.Create, FileAccess.Write)
Dim DES As New DESCryptoServiceProvider
DES.Key = ASCIIEncoding.ASCII.GetBytes(sKey)
DES.IV = ASCIIEncoding.ASCII.GetBytes(sKey)
Dim desencrypt As ICryptoTransform = DES.CreateEncryptor()
Dim cryptostream As New CryptoStream(fsEncrypted, desencrypt, CryptoStreamMode.Write)
Dim byteArrayInput(fsInput.Length - 1) As Byte
fsInput.Read(byteArrayInput, 0, byteArrayInput.Length)
cryptostream.Write(byteArrayInput, 0, byteArrayInput.Length)
cryptostream.Close()
End Sub
Sub DecryptFile(ByVal sInputFilename As String, ByVal sOutputFilename As String, ByVal sKey As String)
Dim DES As New DESCryptoServiceProvider
DES.Key() = ASCIIEncoding.ASCII.GetBytes(sKey)
DES.IV = ASCIIEncoding.ASCII.GetBytes(sKey)
Dim fsread As New FileStream(sInputFilename, FileMode.Open, FileAccess.Read)
Dim desdecrypt As ICryptoTransform = DES.CreateDecryptor
Dim cryptostreamDecr As New CryptoStream(fsread, desdecrypt, CryptoStreamMode.Read)
Dim fsDecrypted As New StreamWriter(sOutputFilename)
fsDecrypted.Write(New StreamReader(cryptostreamDecr, System.Text.ASCIIEncoding.Default).ReadToEnd)
fsDecrypted.Flush()
fsDecrypted.Close()
End Sub
Private Sub BtnChoose_Click(ByVal sender As System.Object, ByVal e As System.EventArgs) Handles BtnChoose.Click
OpenFileDialog1.FileName = ""
OpenFileDialog1.Filter = "txt files (*.txt)|*.txt"
OpenFileDialog1.ShowDialog()
If OpenFileDialog1.FileName <> "" Then
Me.TextBox1.Text = OpenFileDialog1.FileName
End If
End Sub
End Class
10. openssl提供 DES_ecb3_encrypt方法
一. 利用openssl命令进行BASE64编码解码(base64 encode/decode)
1. BASE64编码命令
对字符串‘abc’进行base64编码:
# echo abc | openssl base64
YWJjCg== (编码结果)
如果对一个文件进行base64编码(文件名t.txt):
# openssl base64 -in t.txt
2. BASE64解码命令
求base64后的字符串‘YWJjCg==’的原文:
# echo YWJjCg== | openssl base64 -d
abc (解码结果)
如果对一个文件进行base64解码(文件名t.base64):
# openssl base64 -d -in t.base64
二. 利用openssl命令进行md5/sha1摘要(digest)
1. 对字符串‘abc’进行md5摘要计算:echo abc | openssl md5
若对某文件进行md5摘要计算:openssl md5 -in t.txt
2. 对字符串‘abc’进行sha1摘要计算:echo abc | openssl sha1
若对某文件进行sha1摘要计算:openssl sha1 -in t.txt
三. 利用openssl命令进行AES/DES3加密解密(AES/DES3 encrypt/decrypt)
对字符串‘abc’进行aes加密,使用密钥123,输出结果以base64编码格式给出:
# echo abc | openssl aes-128-cbc -k 123 -base64
U2FsdGVkX18ynIbzARm15nG/JA2dhN4mtiotwD7jt4g= (结果)
对以上结果进行解密处理:
# echo U2FsdGVkX18ynIbzARm15nG/JA2dhN4mtiotwD7jt4g= | openssl aes-128-cbc -d -k 123 -base64
abc (结果)
若要从文件里取原文(密文)进行加密(解密),只要指定 -in 参数指向文件名就可以了。
进行des3加解密,只要把命令中的aes-128-cbc换成des3就可以了。
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