C#中常用的字符串加密,解密方法封装,包含只加密,不解密的方法
//方法一
//须添加对System.Web的引用
//using System.Web.Security;
/// <summary>
/// SHA1加密字符串
/// </summary>
/// <param name="source">源字符串</param>
/// <returns>加密后的字符串</returns>
public string SHA1(string source)
{
return FormsAuthentication.HashPasswordForStoringInConfigFile(source, "SHA1");
}
/// <summary>
/// MD5加密字符串
/// </summary>
/// <param name="source">源字符串</param>
/// <returns>加密后的字符串</returns>
public string MD5(string source)
{
return FormsAuthentication.HashPasswordForStoringInConfigFile(source, "MD5");;
}
//方法二(可逆加密解密):
//using System.Security.Cryptography;
public string Encode(string data)
{
byte[] byKey = System.Text.ASCIIEncoding.ASCII.GetBytes(KEY_64);
byte[] byIV = System.Text.ASCIIEncoding.ASCII.GetBytes(IV_64);
DESCryptoServiceProvider cryptoProvider = new DESCryptoServiceProvider();
int i = cryptoProvider.KeySize;
MemoryStream ms = new MemoryStream();
CryptoStream cst = new CryptoStream(ms, cryptoProvider.CreateEncryptor(byKey, byIV), CryptoStreamMode.Write);
StreamWriter sw = new StreamWriter(cst);
sw.Write(data);
sw.Flush();
cst.FlushFinalBlock();
sw.Flush();
return Convert.ToBase64String(ms.GetBuffer(), 0, (int)ms.Length);
}
public string Decode(string data)
{
byte[] byKey = System.Text.ASCIIEncoding.ASCII.GetBytes(KEY_64);
byte[] byIV = System.Text.ASCIIEncoding.ASCII.GetBytes(IV_64);
byte[] byEnc;
try
{
byEnc = Convert.FromBase64String(data);
}
catch
{
return null;
}
DESCryptoServiceProvider cryptoProvider = new DESCryptoServiceProvider();
MemoryStream ms = new MemoryStream(byEnc);
CryptoStream cst = new CryptoStream(ms, cryptoProvider.CreateDecryptor(byKey, byIV), CryptoStreamMode.Read);
StreamReader sr = new StreamReader(cst);
//方法三(MD5不可逆):
//using System.Security.Cryptography;
//MD5不可逆加密
//32位加密
public string GetMD5_32(string s, string _input_charset)
{
MD5 md5 = new MD5CryptoServiceProvider();
byte[] t = md5.ComputeHash(Encoding.GetEncoding(_input_charset).GetBytes(s));
StringBuilder sb = new StringBuilder(32);
for (int i = 0; i < t.Length; i++)
{
sb.Append(t[i].ToString("x").PadLeft(2, '0'));
}
return sb.ToString();
}
//16位加密
public static string GetMd5_16(string ConvertString)
{
MD5CryptoServiceProvider md5 = new MD5CryptoServiceProvider();
string t2 = BitConverter.ToString(md5.ComputeHash(UTF8Encoding.Default.GetBytes(ConvertString)), 4, 8);
t2 = t2.Replace("-", "");
return t2;
}
//方法四(对称加密):
//using System.IO;
//using System.Security.Cryptography;
private SymmetricAlgorithm mobjCryptoService;
private string Key;
/// <summary>
/// 对称加密类的构造函数
/// </summary>
public SymmetricMethod()
{
mobjCryptoService = new RijndaelManaged();
Key = "Guz(%&hj7x89H$yuBI0456FtmaT5&fvHUFCy76*h%(HilJ$lhj!y6&(*jkP87jH7";
}
/// <summary>
/// 获得密钥
/// </summary>
/// <returns>密钥</returns>
private byte[] GetLegalKey()
{
string sTemp = Key;
mobjCryptoService.GenerateKey();
byte[] bytTemp = mobjCryptoService.Key;
int KeyLength = bytTemp.Length;
if (sTemp.Length > KeyLength)
sTemp = sTemp.Substring(0, KeyLength);
else if (sTemp.Length < KeyLength)
sTemp = sTemp.PadRight(KeyLength, ' ');
return ASCIIEncoding.ASCII.GetBytes(sTemp);
}
/// <summary>
/// 获得初始向量IV
/// </summary>
/// <returns>初试向量IV</returns>
private byte[] GetLegalIV()
{
string sTemp = "E4ghj*Ghg7!rNIfb&95GUY86GfghUb#er57HBh(u%g6HJ($jhWk7&!hg4ui%$hjk";
mobjCryptoService.GenerateIV();
byte[] bytTemp = mobjCryptoService.IV;
int IVLength = bytTemp.Length;
if (sTemp.Length > IVLength)
sTemp = sTemp.Substring(0, IVLength);
else if (sTemp.Length < IVLength)
sTemp = sTemp.PadRight(IVLength, ' ');
return ASCIIEncoding.ASCII.GetBytes(sTemp);
}
/// <summary>
/// 加密方法
/// </summary>
/// <param name="Source">待加密的串</param>
/// <returns>经过加密的串</returns>
public string Encrypto(string Source)
{
byte[] bytIn = UTF8Encoding.UTF8.GetBytes(Source);
MemoryStream ms = new MemoryStream();
mobjCryptoService.Key = GetLegalKey();
mobjCryptoService.IV = GetLegalIV();
ICryptoTransform encrypto = mobjCryptoService.CreateEncryptor();
CryptoStream cs = new CryptoStream(ms, encrypto, CryptoStreamMode.Write);
cs.Write(bytIn, 0, bytIn.Length);
cs.FlushFinalBlock();
ms.Close();
byte[] bytOut = ms.ToArray();
return Convert.ToBase64String(bytOut);
}
/// <summary>
/// 解密方法
/// </summary>
/// <param name="Source">待解密的串</param>
/// <returns>经过解密的串</returns>
public string Decrypto(string Source)
{
byte[] bytIn = Convert.FromBase64String(Source);
MemoryStream ms = new MemoryStream(bytIn, 0, bytIn.Length);
mobjCryptoService.Key = GetLegalKey();
mobjCryptoService.IV = GetLegalIV();
ICryptoTransform encrypto = mobjCryptoService.CreateDecryptor();
CryptoStream cs = new CryptoStream(ms, encrypto, CryptoStreamMode.Read);
StreamReader sr = new StreamReader(cs);
return sr.ReadToEnd();
}
//方法五:
//using System.IO;
//using System.Security.Cryptography;
//using System.Text;
//默认密钥向量
private static byte[] Keys = { 0x12, 0x34, 0x56, 0x78, 0x90, 0xAB, 0xCD, 0xEF };
/**//**//**//// <summary>
/// DES加密字符串
/// </summary>
/// <param name="encryptString">待加密的字符串</param>
/// <param name="encryptKey">加密密钥,要求为8位</param>
/// <returns>加密成功返回加密后的字符串,失败返回源串</returns>
public static string EncryptDES(string encryptString, string encryptKey)
{
try
{
byte[] rgbKey = Encoding.UTF8.GetBytes(encryptKey.Substring(0, 8));
byte[] rgbIV = Keys;
byte[] inputByteArray = Encoding.UTF8.GetBytes(encryptString);
DESCryptoServiceProvider dCSP = new DESCryptoServiceProvider();
MemoryStream mStream = new MemoryStream();
CryptoStream cStream = new CryptoStream(mStream, dCSP.CreateEncryptor(rgbKey, rgbIV), CryptoStreamMode.Write);
cStream.Write(inputByteArray, 0, inputByteArray.Length);
cStream.FlushFinalBlock();
return Convert.ToBase64String(mStream.ToArray());
}
catch
{
return encryptString;
}
}
/**//**//**//// <summary>
/// DES解密字符串
/// </summary>
/// <param name="decryptString">待解密的字符串</param>
/// <param name="decryptKey">解密密钥,要求为8位,和加密密钥相同</param>
/// <returns>解密成功返回解密后的字符串,失败返源串</returns>
public static string DecryptDES(string decryptString, string decryptKey)
{
try
{
byte[] rgbKey = Encoding.UTF8.GetBytes(decryptKey);
byte[] rgbIV = Keys;
byte[] inputByteArray = Convert.FromBase64String(decryptString);
DESCryptoServiceProvider DCSP = new DESCryptoServiceProvider();
MemoryStream mStream = new MemoryStream();
CryptoStream cStream = new CryptoStream(mStream, DCSP.CreateDecryptor(rgbKey, rgbIV), CryptoStreamMode.Write);
cStream.Write(inputByteArray, 0, inputByteArray.Length);
cStream.FlushFinalBlock();
return Encoding.UTF8.GetString(mStream.ToArray());
}
catch
{
return decryptString;
}
}
//方法六(文件加密):
//using System.IO;
//using System.Security.Cryptography;
//using System.Text;
//加密文件
private static void EncryptData(String inName, String outName, byte[] desKey, byte[] desIV)
{
//Create the file streams to handle the input and output files.
FileStream fin = new FileStream(inName, FileMode.Open, FileAccess.Read);
FileStream fout = new FileStream(outName, FileMode.OpenOrCreate, FileAccess.Write);
fout.SetLength(0);
//Create variables to help with read and write.
byte[] bin = new byte[100]; //This is intermediate storage for the encryption.
long rdlen = 0; //This is the total number of bytes written.
long totlen = fin.Length; //This is the total length of the input file.
int len; //This is the number of bytes to be written at a time.
DES des = new DESCryptoServiceProvider();
CryptoStream encStream = new CryptoStream(fout, des.CreateEncryptor(desKey, desIV), CryptoStreamMode.Write);
//Read from the input file, then encrypt and write to the output file.
while (rdlen < totlen)
{
len = fin.Read(bin, 0, 100);
encStream.Write(bin, 0, len);
rdlen = rdlen + len;
}
encStream.Close();
fout.Close();
fin.Close();
}
//解密文件
private static void DecryptData(String inName, String outName, byte[] desKey, byte[] desIV)
{
//Create the file streams to handle the input and output files.
FileStream fin = new FileStream(inName, FileMode.Open, FileAccess.Read);
FileStream fout = new FileStream(outName, FileMode.OpenOrCreate, FileAccess.Write);
fout.SetLength(0);
//Create variables to help with read and write.
byte[] bin = new byte[100]; //This is intermediate storage for the encryption.
long rdlen = 0; //This is the total number of bytes written.
long totlen = fin.Length; //This is the total length of the input file.
int len; //This is the number of bytes to be written at a time.
DES des = new DESCryptoServiceProvider();
CryptoStream encStream = new CryptoStream(fout, des.CreateDecryptor(desKey, desIV), CryptoStreamMode.Write);
//Read from the input file, then encrypt and write to the output file.
while (rdlen < totlen)
{
len = fin.Read(bin, 0, 100);
encStream.Write(bin, 0, len);
rdlen = rdlen + len;
}
encStream.Close();
fout.Close();
fin.Close();
return sr.ReadToEnd();
}
C#中常用的字符串加密,解密方法封装,包含只加密,不解密的方法的更多相关文章
- java中常用的字符串的截取方法
java中常用的字符串的截取方法 1.length() 字符串的长度 例:char chars[]={'a','b'.'c'}; String s=new String(chars); int l ...
- LoadRunner中常用的字符串操作函数
LoadRunner中常用的字符串操作函数有: strcpy(destination_string, source_string); strc ...
- Js中常用的字符串,数组,函数扩展
由于最近辞职在家,自己的时间相对多一点.所以就根据prototytpeJS的API,结合自己正在看的司徒大神的<javascript框架设计>,整理了下Js中常用一些字符串,数组,函数扩展 ...
- netty系列之:netty中常用的字符串编码解码器
目录 简介 netty中的字符串编码解码器 不同平台的换行符 字符串编码的实现 总结 简介 字符串是我们程序中最常用到的消息格式,也是最简单的消息格式,但是正因为字符串string太过简单,不能附加更 ...
- PHP中常用的字符串格式化函数总结
注意:在PHP中提供的字符串函数处理的字符串,大部分都不是在原字符串上修改,而是返回一个格式化后的新字符串. 一.取出空格和字符串填补函数 空格也是一个有效的字符,在字符串中也会占据一个位置.用户在表 ...
- php中常用的字符串查找函数strstr()、strpos()实例解释
string strstr ( string $haystack , mixed $needle [, bool $before_needle = false ] ) 1.$haystack被查找的字 ...
- mysql中常用的字符串函数
写在分割线之前,个人以为,数据库应该具备简单的的数据加工能力.如同食品在吃之前,是要经过很多到工序的,有经过初加工.粗加工.精加工.深加工等.那么mysql也应该并必须担任起数据初加工以及粗加工的责任 ...
- C语言中常用的字符串操作函数
程序开头要声明 #include <string.h> 函数名: stpcpy 功 能: 拷贝一个字符串到另一个 用 法: char *stpcpy(char *destin, char ...
- C语言中常用的字符串处理函数总结
C语言中字符串处理函数备注 此文仅用于自己研究和记录 字符串处理函数 1. char *gets(char *s); #include<stdio.h> 功能: 从标准输入读入字符,并保存 ...
随机推荐
- KMP笔记√//找最大子串,前缀自匹配长度
假设s1里找s2,然后s2进去匹配假设在第三位失配那么说明前两位是匹配成功的 如果这时候将s2后移一位相当于将s2的第一位和s2的第二位比较,如果我们已知s1(1)≠s1(2)那么就可以直接后移两位 ...
- JavaScript基础精华02(函数声明,arguments对象,匿名函数,JS面向对象基础)
函数声明 JavaScript中声明函数的方式:(无需声明返回值类型) function add(i1, i2) { return i1 + i2;//如果不写return返回 ...
- 46. Permutations
题目: Given a collection of numbers, return all possible permutations. For example,[1,2,3] have the fo ...
- php库Faker
Faker License : MIT Source Code Allo点评:Faker是一个很神奇的项目,会自动生成拟真的数据,包括用户资料.长文本.IP.日期等等,在网站上线前测试时非常好用. g ...
- HDU 4746 (莫比乌斯反演) Mophues
这道题看巨巨的题解看了好久,好久.. 本文转自hdu4746(莫比乌斯反演) 题意:给出n, m, p,求有多少对a, b满足gcd(a, b)的素因子个数<=p,(其中1<=a<= ...
- 继承在WCF中的问题和解决办法
1. 问题 假设有代码如下: [ServiceContract] public interface IA { [OperationContract] string M1(); } [ServiceCo ...
- VS2010安装中遇到的错误
背景 用win7 64位系统安装VS2010遇到一个错误,网上查了各种资料也没有找到这种解决办法,后来自己找到了解决办法,分享一下,让他人少走一些弯路. 错误信息 安装过程中遇到如下错误: [08/2 ...
- HDU 4612 Warm up (边双连通分量+DP最长链)
[题意]给定一个无向图,问在允许加一条边的情况下,最少的桥的个数 [思路]对图做一遍Tarjan找出桥,把双连通分量缩成一个点,这样原图就成了一棵树,树的每条边都是桥.然后在树中求最长链,这样在两端点 ...
- 基于ffmpeg的流媒体服务器
OS:ubuntu 12.04ffmpeg:N-47141-g4063bb2x264:0.133.2334 a3ac64b目标:使用ffserver建立流媒体服务器使用ffmpeg对本地文件流化(x2 ...
- RTP头结构解析
RTP包头前12个固定字节机构图: 0 1 2 3 0 1 2 3 4 5 6 7 8 9 ...