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cc16位md5怎么加密

发布时间:2022-07-16 16:19:52

❶ 怎么做到MD5加密密码或者文件

在一些初始化处理后,MD5以512位分组来处理输入文本,每一分组又划分为16个32位子分组。算法的输出由四个32位分组组成,将它们级联形成一个128位散列值。
首先填充消息使其长度恰好为一个比512位的倍数仅小64位的数。填充方法是附一个1在消息后面,后接所要求的多个0,然后在其后附上64位的消息长度(填充前)。这两步的作用是使消息长度恰好是512位的整数倍(算法的其余部分要求如此),同时确保不同的消息在填充后不相同。
四个32位变量初始化为:
A=0x01234567
B=0x89abcdef
C=0xfedcba98
D=0x76543210
它们称为链接变量(chaining variable)
接着进行算法的主循环,循环的次数是消息中512位消息分组的数目。
将上面四个变量复制到别外的变量中:A到a,B到b,C到c,D到d。
主循环有四轮(MD4只有三轮),每轮很相拟。第一轮进行16次操作。每次操作对a,b,c和d中的其中三个作一次非线性函数运算,然后将所得结果加上第四个变量,文本的一个子分组和一个常数。再将所得结果向右环移一个不定的数,并加上a,b,c或d中之一。最后用该结果取代a,b,c或d中之一。
以一下是每次操作中用到的四个非线性函数(每轮一个)。
F(X,Y,Z)=(X&Y)|((~X)&Z)
G(X,Y,Z)=(X&Z)|(Y&(~Z))
H(X,Y,Z)=X^Y^Z
I(X,Y,Z)=Y^(X|(~Z))
(&是与,|是或,~是非,^是异或)
这些函数是这样设计的:如果X、Y和Z的对应位是独立和均匀的,那么结果的每一位也应是独立和均匀的。
函数F是按逐位方式操作:如果X,那么Y,否则Z。函数H是逐位奇偶操作符。
设Mj表示消息的第j个子分组(从0到15),<<<s表示循环左移s位,则四种操作为:
FF(a,b,c,d,Mj,s,ti)表示a=b+((a+(F(b,c,d)+Mj+ti)<<<s)
GG(a,b,c,d,Mj,s,ti)表示a=b+((a+(G(b,c,d)+Mj+ti)<<<s)
HH(a,b,c,d,Mj,s,ti)表示a=b+((a+(H(b,c,d)+Mj+ti)<<<s)
II(a,b,c,d,Mj,s,ti)表示a=b+((a+(I(b,c,d)+Mj+ti)<<<s)
这四轮(64步)是:
第一轮
FF(a,b,c,d,M0,7,0xd76aa478)
FF(d,a,b,c,M1,12,0xe8c7b756)
FF(c,d,a,b,M2,17,0x242070db)
FF(b,c,d,a,M3,22,0xc1bdceee)
FF(a,b,c,d,M4,7,0xf57c0faf)
FF(d,a,b,c,M5,12,0x4787c62a)
FF(c,d,a,b,M6,17,0xa8304613)
FF(b,c,d,a,M7,22,0xfd469501)
FF(a,b,c,d,M8,7,0x698098d8)
FF(d,a,b,c,M9,12,0x8b44f7af)
FF(c,d,a,b,M10,17,0xffff5bb1)
FF(b,c,d,a,M11,22,0x895cd7be)
FF(a,b,c,d,M12,7,0x6b901122)
FF(d,a,b,c,M13,12,0xfd987193)
FF(c,d,a,b,M14,17,0xa679438e)
FF(b,c,d,a,M15,22,0x49b40821)
第二轮
GG(a,b,c,d,M1,5,0xf61e2562)
GG(d,a,b,c,M6,9,0xc040b340)
GG(c,d,a,b,M11,14,0x265e5a51)
GG(b,c,d,a,M0,20,0xe9b6c7aa)
GG(a,b,c,d,M5,5,0xd62f105d)
GG(d,a,b,c,M10,9,0x02441453)
GG(c,d,a,b,M15,14,0xd8a1e681)
GG(b,c,d,a,M4,20,0xe7d3fbc8)
GG(a,b,c,d,M9,5,0x21e1cde6)
GG(d,a,b,c,M14,9,0xc33707d6)
GG(c,d,a,b,M3,14,0xf4d50d87)
GG(b,c,d,a,M8,20,0x455a14ed)
GG(a,b,c,d,M13,5,0xa9e3e905)
GG(d,a,b,c,M2,9,0xfcefa3f8)
GG(c,d,a,b,M7,14,0x676f02d9)
GG(b,c,d,a,M12,20,0x8d2a4c8a)
第三轮
HH(a,b,c,d,M5,4,0xfffa3942)
HH(d,a,b,c,M8,11,0x8771f681)
HH(c,d,a,b,M11,16,0x6d9d6122)
HH(b,c,d,a,M14,23,0xfde5380c)
HH(a,b,c,d,M1,4,0xa4beea44)
HH(d,a,b,c,M4,11,0x4bdecfa9)
HH(c,d,a,b,M7,16,0xf6bb4b60)
HH(b,c,d,a,M10,23,0xbebfbc70)
HH(a,b,c,d,M13,4,0x289b7ec6)
HH(d,a,b,c,M0,11,0xeaa127fa)
HH(c,d,a,b,M3,16,0xd4ef3085)
HH(b,c,d,a,M6,23,0x04881d05)
HH(a,b,c,d,M9,4,0xd9d4d039)
HH(d,a,b,c,M12,11,0xe6db99e5)
HH(c,d,a,b,M15,16,0x1fa27cf8)
HH(b,c,d,a,M2,23,0xc4ac5665)
第四轮
II(a,b,c,d,M0,6,0xf4292244)
II(d,a,b,c,M7,10,0x432aff97)
II(c,d,a,b,M14,15,0xab9423a7)
II(b,c,d,a,M5,21,0xfc93a039)
II(a,b,c,d,M12,6,0x655b59c3)
II(d,a,b,c,M3,10,0x8f0ccc92)
II(c,d,a,b,M10,15,0xffeff47d)
II(b,c,d,a,M1,21,0x85845dd1)
II(a,b,c,d,M8,6,0x6fa87e4f)
II(d,a,b,c,M15,10,0xfe2ce6e0)
II(c,d,a,b,M6,15,0xa3014314)
II(b,c,d,a,M13,21,0x4e0811a1)
II(a,b,c,d,M4,6,0xf7537e82)
II(d,a,b,c,M11,10,0xbd3af235)
II(c,d,a,b,M2,15,0x2ad7d2bb)
II(b,c,d,a,M9,21,0xeb86d391)
常数ti可以如下选择:
在第i步中,ti是4294967296*abs(sin(i))的整数部分,i的单位是弧度。
(2的32次方)
所有这些完成之后,将A,B,C,D分别加上a,b,c,d。然后用下一分组数据继续运行算法,最后的输出是A,B,C和D的级联。

❷ MD5如何加密可不可以还原加密

md5加密单元。存成一个asp文件,并在要使用加密的aps文件中加入对该文件的引用

调用方法
密文=md5(明文)
md5 加密后不可还原,可采用比对法进行验证
<%
Private Const BITS_TO_A_BYTE = 8
Private Const BYTES_TO_A_WORD = 4
Private Const BITS_TO_A_WORD = 32

Private m_lOnBits(30)
Private m_l2Power(30)

Private Function LShift(lValue, iShiftBits)
If iShiftBits = 0 Then
LShift = lValue
Exit Function
ElseIf iShiftBits = 31 Then
If lValue And 1 Then
LShift = &H80000000
Else
LShift = 0
End If
Exit Function
ElseIf iShiftBits < 0 Or iShiftBits > 31 Then
Err.Raise 6
End If

If (lValue And m_l2Power(31 - iShiftBits)) Then
LShift = ((lValue And m_lOnBits(31 - (iShiftBits + 1))) * m_l2Power(iShiftBits)) Or &H80000000
Else
LShift = ((lValue And m_lOnBits(31 - iShiftBits)) * m_l2Power(iShiftBits))
End If
End Function

Private Function RShift(lValue, iShiftBits)
If iShiftBits = 0 Then
RShift = lValue
Exit Function
ElseIf iShiftBits = 31 Then
If lValue And &H80000000 Then
RShift = 1
Else
RShift = 0
End If
Exit Function
ElseIf iShiftBits < 0 Or iShiftBits > 31 Then
Err.Raise 6
End If

RShift = (lValue And &H7FFFFFFE) \ m_l2Power(iShiftBits)

If (lValue And &H80000000) Then
RShift = (RShift Or (&H40000000 \ m_l2Power(iShiftBits - 1)))
End If
End Function

Private Function RotateLeft(lValue, iShiftBits)
RotateLeft = LShift(lValue, iShiftBits) Or RShift(lValue, (32 - iShiftBits))
End Function

Private Function AddUnsigned(lX, lY)
Dim lX4
Dim lY4
Dim lX8
Dim lY8
Dim lResult

lX8 = lX And &H80000000
lY8 = lY And &H80000000
lX4 = lX And &H40000000
lY4 = lY And &H40000000

lResult = (lX And &H3FFFFFFF) + (lY And &H3FFFFFFF)

If lX4 And lY4 Then
lResult = lResult Xor &H80000000 Xor lX8 Xor lY8
ElseIf lX4 Or lY4 Then
If lResult And &H40000000 Then
lResult = lResult Xor &HC0000000 Xor lX8 Xor lY8
Else
lResult = lResult Xor &H40000000 Xor lX8 Xor lY8
End If
Else
lResult = lResult Xor lX8 Xor lY8
End If

AddUnsigned = lResult
End Function

Private Function md5_F(x, y, z)
md5_F = (x And y) Or ((Not x) And z)
End Function

Private Function md5_G(x, y, z)
md5_G = (x And z) Or (y And (Not z))
End Function

Private Function md5_H(x, y, z)
md5_H = (x Xor y Xor z)
End Function

Private Function md5_I(x, y, z)
md5_I = (y Xor (x Or (Not z)))
End Function

Private Sub md5_FF(a, b, c, d, x, s, ac)
a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_F(b, c, d), x), ac))
a = RotateLeft(a, s)
a = AddUnsigned(a, b)
End Sub

Private Sub md5_GG(a, b, c, d, x, s, ac)
a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_G(b, c, d), x), ac))
a = RotateLeft(a, s)
a = AddUnsigned(a, b)
End Sub

Private Sub md5_HH(a, b, c, d, x, s, ac)
a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_H(b, c, d), x), ac))
a = RotateLeft(a, s)
a = AddUnsigned(a, b)
End Sub

Private Sub md5_II(a, b, c, d, x, s, ac)
a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_I(b, c, d), x), ac))
a = RotateLeft(a, s)
a = AddUnsigned(a, b)
End Sub

Private Function ConvertToWordArray(sMessage)
Dim lMessageLength
Dim lNumberOfWords
Dim lWordArray()
Dim lBytePosition
Dim lByteCount
Dim lWordCount

Const MODULUS_BITS = 512
Const CONGRUENT_BITS = 448

lMessageLength = Len(sMessage)

lNumberOfWords = (((lMessageLength + ((MODULUS_BITS - CONGRUENT_BITS) \ BITS_TO_A_BYTE)) \ (MODULUS_BITS \ BITS_TO_A_BYTE)) + 1) * (MODULUS_BITS \ BITS_TO_A_WORD)
ReDim lWordArray(lNumberOfWords - 1)

lBytePosition = 0
lByteCount = 0
Do Until lByteCount >= lMessageLength
lWordCount = lByteCount \ BYTES_TO_A_WORD
lBytePosition = (lByteCount Mod BYTES_TO_A_WORD) * BITS_TO_A_BYTE
lWordArray(lWordCount) = lWordArray(lWordCount) Or LShift(Asc(Mid(sMessage, lByteCount + 1, 1)), lBytePosition)
lByteCount = lByteCount + 1
Loop

lWordCount = lByteCount \ BYTES_TO_A_WORD
lBytePosition = (lByteCount Mod BYTES_TO_A_WORD) * BITS_TO_A_BYTE

lWordArray(lWordCount) = lWordArray(lWordCount) Or LShift(&H80, lBytePosition)

lWordArray(lNumberOfWords - 2) = LShift(lMessageLength, 3)
lWordArray(lNumberOfWords - 1) = RShift(lMessageLength, 29)

ConvertToWordArray = lWordArray
End Function

Private Function WordToHex(lValue)
Dim lByte
Dim lCount

For lCount = 0 To 3
lByte = RShift(lValue, lCount * BITS_TO_A_BYTE) And m_lOnBits(BITS_TO_A_BYTE - 1)
WordToHex = WordToHex & Right("0" & Hex(lByte), 2)
Next
End Function

Public Function MD5(sMessage)
m_lOnBits(0) = CLng(1)
m_lOnBits(1) = CLng(3)
m_lOnBits(2) = CLng(7)
m_lOnBits(3) = CLng(15)
m_lOnBits(4) = CLng(31)
m_lOnBits(5) = CLng(63)
m_lOnBits(6) = CLng(127)
m_lOnBits(7) = CLng(255)
m_lOnBits(8) = CLng(511)
m_lOnBits(9) = CLng(1023)
m_lOnBits(10) = CLng(2047)
m_lOnBits(11) = CLng(4095)
m_lOnBits(12) = CLng(8191)
m_lOnBits(13) = CLng(16383)
m_lOnBits(14) = CLng(32767)
m_lOnBits(15) = CLng(65535)
m_lOnBits(16) = CLng(131071)
m_lOnBits(17) = CLng(262143)
m_lOnBits(18) = CLng(524287)
m_lOnBits(19) = CLng(1048575)
m_lOnBits(20) = CLng(2097151)
m_lOnBits(21) = CLng(4194303)
m_lOnBits(22) = CLng(8388607)
m_lOnBits(23) = CLng(16777215)
m_lOnBits(24) = CLng(33554431)
m_lOnBits(25) = CLng(67108863)
m_lOnBits(26) = CLng(134217727)
m_lOnBits(27) = CLng(268435455)
m_lOnBits(28) = CLng(536870911)
m_lOnBits(29) = CLng(1073741823)
m_lOnBits(30) = CLng(2147483647)

m_l2Power(0) = CLng(1)
m_l2Power(1) = CLng(2)
m_l2Power(2) = CLng(4)
m_l2Power(3) = CLng(8)
m_l2Power(4) = CLng(16)
m_l2Power(5) = CLng(32)
m_l2Power(6) = CLng(64)
m_l2Power(7) = CLng(128)
m_l2Power(8) = CLng(256)
m_l2Power(9) = CLng(512)
m_l2Power(10) = CLng(1024)
m_l2Power(11) = CLng(2048)
m_l2Power(12) = CLng(4096)
m_l2Power(13) = CLng(8192)
m_l2Power(14) = CLng(16384)
m_l2Power(15) = CLng(32768)
m_l2Power(16) = CLng(65536)
m_l2Power(17) = CLng(131072)
m_l2Power(18) = CLng(262144)
m_l2Power(19) = CLng(524288)
m_l2Power(20) = CLng(1048576)
m_l2Power(21) = CLng(2097152)
m_l2Power(22) = CLng(4194304)
m_l2Power(23) = CLng(8388608)
m_l2Power(24) = CLng(16777216)
m_l2Power(25) = CLng(33554432)
m_l2Power(26) = CLng(67108864)
m_l2Power(27) = CLng(134217728)
m_l2Power(28) = CLng(268435456)
m_l2Power(29) = CLng(536870912)
m_l2Power(30) = CLng(1073741824)

Dim x
Dim k
Dim AA
Dim BB
Dim CC
Dim DD
Dim a
Dim b
Dim c
Dim d

Const S11 = 7
Const S12 = 12
Const S13 = 17
Const S14 = 22
Const S21 = 5
Const S22 = 9
Const S23 = 14
Const S24 = 20
Const S31 = 4
Const S32 = 11
Const S33 = 16
Const S34 = 23
Const S41 = 6
Const S42 = 10
Const S43 = 15
Const S44 = 21

x = ConvertToWordArray(sMessage)

a = &H67452301
b = &HEFCDAB89
c = &H98BADCFE
d = &H10325476

For k = 0 To UBound(x) Step 16
AA = a
BB = b
CC = c
DD = d

md5_FF a, b, c, d, x(k + 0), S11, &HD76AA478
md5_FF d, a, b, c, x(k + 1), S12, &HE8C7B756
md5_FF c, d, a, b, x(k + 2), S13, &H242070DB
md5_FF b, c, d, a, x(k + 3), S14, &HC1BDCEEE
md5_FF a, b, c, d, x(k + 4), S11, &HF57C0FAF
md5_FF d, a, b, c, x(k + 5), S12, &H4787C62A
md5_FF c, d, a, b, x(k + 6), S13, &HA8304613
md5_FF b, c, d, a, x(k + 7), S14, &HFD469501
md5_FF a, b, c, d, x(k + 8), S11, &H698098D8
md5_FF d, a, b, c, x(k + 9), S12, &H8B44F7AF
md5_FF c, d, a, b, x(k + 10), S13, &HFFFF5BB1
md5_FF b, c, d, a, x(k + 11), S14, &H895CD7BE
md5_FF a, b, c, d, x(k + 12), S11, &H6B901122
md5_FF d, a, b, c, x(k + 13), S12, &HFD987193
md5_FF c, d, a, b, x(k + 14), S13, &HA679438E
md5_FF b, c, d, a, x(k + 15), S14, &H49B40821

md5_GG a, b, c, d, x(k + 1), S21, &HF61E2562
md5_GG d, a, b, c, x(k + 6), S22, &HC040B340
md5_GG c, d, a, b, x(k + 11), S23, &H265E5A51
md5_GG b, c, d, a, x(k + 0), S24, &HE9B6C7AA
md5_GG a, b, c, d, x(k + 5), S21, &HD62F105D
md5_GG d, a, b, c, x(k + 10), S22, &H2441453
md5_GG c, d, a, b, x(k + 15), S23, &HD8A1E681
md5_GG b, c, d, a, x(k + 4), S24, &HE7D3FBC8
md5_GG a, b, c, d, x(k + 9), S21, &H21E1CDE6
md5_GG d, a, b, c, x(k + 14), S22, &HC33707D6
md5_GG c, d, a, b, x(k + 3), S23, &HF4D50D87
md5_GG b, c, d, a, x(k + 8), S24, &H455A14ED
md5_GG a, b, c, d, x(k + 13), S21, &HA9E3E905
md5_GG d, a, b, c, x(k + 2), S22, &HFCEFA3F8
md5_GG c, d, a, b, x(k + 7), S23, &H676F02D9
md5_GG b, c, d, a, x(k + 12), S24, &H8D2A4C8A

md5_HH a, b, c, d, x(k + 5), S31, &HFFFA3942
md5_HH d, a, b, c, x(k + 8), S32, &H8771F681
md5_HH c, d, a, b, x(k + 11), S33, &H6D9D6122
md5_HH b, c, d, a, x(k + 14), S34, &HFDE5380C
md5_HH a, b, c, d, x(k + 1), S31, &HA4BEEA44
md5_HH d, a, b, c, x(k + 4), S32, &H4BDECFA9
md5_HH c, d, a, b, x(k + 7), S33, &HF6BB4B60
md5_HH b, c, d, a, x(k + 10), S34, &HBEBFBC70
md5_HH a, b, c, d, x(k + 13), S31, &H289B7EC6
md5_HH d, a, b, c, x(k + 0), S32, &HEAA127FA
md5_HH c, d, a, b, x(k + 3), S33, &HD4EF3085
md5_HH b, c, d, a, x(k + 6), S34, &H4881D05
md5_HH a, b, c, d, x(k + 9), S31, &HD9D4D039
md5_HH d, a, b, c, x(k + 12), S32, &HE6DB99E5
md5_HH c, d, a, b, x(k + 15), S33, &H1FA27CF8
md5_HH b, c, d, a, x(k + 2), S34, &HC4AC5665

md5_II a, b, c, d, x(k + 0), S41, &HF4292244
md5_II d, a, b, c, x(k + 7), S42, &H432AFF97
md5_II c, d, a, b, x(k + 14), S43, &HAB9423A7
md5_II b, c, d, a, x(k + 5), S44, &HFC93A039
md5_II a, b, c, d, x(k + 12), S41, &H655B59C3
md5_II d, a, b, c, x(k + 3), S42, &H8F0CCC92
md5_II c, d, a, b, x(k + 10), S43, &HFFEFF47D
md5_II b, c, d, a, x(k + 1), S44, &H85845DD1
md5_II a, b, c, d, x(k + 8), S41, &H6FA87E4F
md5_II d, a, b, c, x(k + 15), S42, &HFE2CE6E0
md5_II c, d, a, b, x(k + 6), S43, &HA3014314
md5_II b, c, d, a, x(k + 13), S44, &H4E0811A1
md5_II a, b, c, d, x(k + 4), S41, &HF7537E82
md5_II d, a, b, c, x(k + 11), S42, &HBD3AF235
md5_II c, d, a, b, x(k + 2), S43, &H2AD7D2BB
md5_II b, c, d, a, x(k + 9), S44, &HEB86D391

a = AddUnsigned(a, AA)
b = AddUnsigned(b, BB)
c = AddUnsigned(c, CC)
d = AddUnsigned(d, DD)
Next

'MD5 = LCase(WordToHex(a) & WordToHex(b) & WordToHex(c) & WordToHex(d))
MD5=LCase(WordToHex(b) & WordToHex(c)) 'I crop this to fit 16byte database password :D
End Function
%>

❸ 如何对MD5加密

md5的全称是message-digest algorithm 5(信息-摘要算法),在90年代初由mit laboratory for computer science和rsa data security inc的ronald l. rivest开发出来,经md2、md3和md4发展而来。它的作用是让大容量信息在用数字签名软件签署私人密匙前被"压缩"成一种保密的格式(就是把一个任意长度的字节串变换成一定长的大整数)。不管是md2、md4还是md5,它们都需要获得一个随机长度的信息并产生一个128位的信息摘要。虽然这些算法的结构或多或少有些相似,但md2的设计与md4和md5完全不同,那是因为md2是为8位机器做过设计优化的,而md4和md5却是面向32位的电脑。这三个算法的描述和c语言源代码在internet rfcs 1321中有详细的描述(h++p://www.ietf.org/rfc/rfc1321.txt),这是一份最权威的文档,由ronald l. rivest在1992年8月向ieft提交。

rivest在1989年开发出md2算法。在这个算法中,首先对信息进行数据补位,使信息的字节长度是16的倍数。然后,以一个16位的检验和追加到信息末尾。并且根据这个新产生的信息计算出散列值。后来,rogier和chauvaud发现如果忽略了检验和将产生md2冲突。md2算法的加密后结果是唯一的--既没有重复。

为了加强算法的安全性,rivest在1990年又开发出md4算法。md4算法同样需要填补信息以确保信息的字节长度加上448后能被512整除(信息字节长度mod 512 = 448)。然后,一个以64位二进制表示的信息的最初长度被添加进来。信息被处理成512位damg?rd/merkle迭代结构的区块,而且每个区块要通过三个不同步骤的处理。den boer和bosselaers以及其他人很快的发现了攻击md4版本中第一步和第三步的漏洞。dobbertin向大家演示了如何利用一部普通的个人电脑在几分钟内找到md4完整版本中的冲突(这个冲突实际上是一种漏洞,它将导致对不同的内容进行加密却可能得到相同的加密后结果)。毫无疑问,md4就此被淘汰掉了。

尽管md4算法在安全上有个这么大的漏洞,但它对在其后才被开发出来的好几种信息安全加密算法的出现却有着不可忽视的引导作用。除了md5以外,其中比较有名的还有sha-1、ripe-md以及haval等。

一年以后,即1991年,rivest开发出技术上更为趋近成熟的md5算法。它在md4的基础上增加了"安全-带子"(safety-belts)的概念。虽然md5比md4稍微慢一些,但却更为安全。这个算法很明显的由四个和md4设计有少许不同的步骤组成。在md5算法中,信息-摘要的大小和填充的必要条件与md4完全相同。den boer和bosselaers曾发现md5算法中的假冲突(pseudo-collisions),但除此之外就没有其他被发现的加密后结果了。

van oorschot和wiener曾经考虑过一个在散列中暴力搜寻冲突的函数(brute-force hash function),而且他们猜测一个被设计专门用来搜索md5冲突的机器(这台机器在1994年的制造成本大约是一百万美元)可以平均每24天就找到一个冲突。但单从1991年到2001年这10年间,竟没有出现替代md5算法的md6或被叫做其他什么名字的新算法这一点,我们就可以看出这个瑕疵并没有太多的影响md5的安全性。上面所有这些都不足以成为md5的在实际应用中的问题。并且,由于md5算法的使用不需要支付任何版权费用的,所以在一般的情况下(非绝密应用领域。但即便是应用在绝密领域内,md5也不失为一种非常优秀的中间技术),md5怎么都应该算得上是非常安全的了。

算法的应用

md5的典型应用是对一段信息(message)产生信息摘要(message-digest),以防止被篡改。比如,在unix下有很多软件在下载的时候都有一个文件名相同,文件扩展名为.md5的文件,在这个文件中通常只有一行文本,大致结构如:

md5 (tanajiya.tar.gz) =

这就是tanajiya.tar.gz文件的数字签名。md5将整个文件当作一个大文本信息,通过其不可逆的字符串变换算法,产生了这个唯一的md5信息摘要。如果在以后传播这个文件的过程中,无论文件的内容发生了任何形式的改变(包括人为修改或者下载过程中线路不稳定引起的传输错误等),只要你对这个文件重新计算md5时就会发现信息摘要不相同,由此可以确定你得到的只是一个不正确的文件。如果再有一个第三方的认证机构,用md5还可以防止文件作者的"抵赖",这就是所谓的数字签名应用。

md5还广泛用于加密和解密技术上。比如在unix系统中用户的密码就是以md5(或其它类似的算法)经加密后存储在文件系统中。当用户登录的时候,系统把用户输入的密码计算成md5值,然后再去和保存在文件系统中的md5值进行比较,进而确定输入的密码是否正确。通过这样的步骤,系统在并不知道用户密码的明码的情况下就可以确定用户登录系统的合法性。这不但可以避免用户的密码被具有系统管理员权限的用户知道,而且还在一定程度上增加了密码被破解的难度。

正是因为这个原因,现在被黑客使用最多的一种破译密码的方法就是一种被称为"跑字典"的方法。有两种方法得到字典,一种是日常搜集的用做密码的字符串表,另一种是用排列组合方法生成的,先用md5程序计算出这些字典项的md5值,然后再用目标的md5值在这个字典中检索。我们假设密码的最大长度为8位字节(8 bytes),同时密码只能是字母和数字,共26+26+10=62个字符,排列组合出的字典的项数则是p(62,1)+p(62,2)….+p(62,8),那也已经是一个很天文的数字了,存储这个字典就需要tb级的磁盘阵列,而且这种方法还有一个前提,就是能获得目标账户的密码md5值的情况下才可以。这种加密技术被广泛的应用于unix系统中,这也是为什么unix系统比一般操作系统更为坚固一个重要原因。

算法描述

对md5算法简要的叙述可以为:md5以512位分组来处理输入的信息,且每一分组又被划分为16个32位子分组,经过了一系列的处理后,算法的输出由四个32位分组组成,将这四个32位分组级联后将生成一个128位散列值。

在md5算法中,首先需要对信息进行填充,使其字节长度对512求余的结果等于448。因此,信息的字节长度(bits length)将被扩展至n*512+448,即n*64+56个字节(bytes),n为一个正整数。填充的方法如下,在信息的后面填充一个1和无数个0,直到满足上面的条件时才停止用0对信息的填充。然后,在在这个结果后面附加一个以64位二进制表示的填充前信息长度。经过这两步的处理,现在的信息字节长度=n*512+448+64=(n+1)*512,即长度恰好是512的整数倍。这样做的原因是为满足后面处理中对信息长度的要求。

md5中有四个32位被称作链接变量(chaining variable)的整数参数,他们分别为:a=0x01234567,b=0x89abcdef,c=0xfedcba98,d=0x76543210。

当设置好这四个链接变量后,就开始进入算法的四轮循环运算。循环的次数是信息中512位信息分组的数目。

将上面四个链接变量复制到另外四个变量中:a到a,b到b,c到c,d到d。

主循环有四轮(md4只有三轮),每轮循环都很相似。第一轮进行16次操作。每次操作对a、b、c和d中的其中三个作一次非线性函数运算,然后将所得结果加上第四个变量,文本的一个子分组和一个常数。再将所得结果向右环移一个不定的数,并加上a、b、c或d中之一。最后用该结果取代a、b、c或d中之一。
以一下是每次操作中用到的四个非线性函数(每轮一个)。

f(x,y,z) =(x&y)|((~x)&z)
g(x,y,z) =(x&z)|(y&(~z))
h(x,y,z) =x^y^z
i(x,y,z)=y^(x|(~z))
(&是与,|是或,~是非,^是异或)

这四个函数的说明:如果x、y和z的对应位是独立和均匀的,那么结果的每一位也应是独立和均匀的。
f是一个逐位运算的函数。即,如果x,那么y,否则z。函数h是逐位奇偶操作符。

假设mj表示消息的第j个子分组(从0到15),<<
ff(a,b,c,d,mj,s,ti)表示a=b+((a+(f(b,c,d)+mj+ti)<< gg(a,b,c,d,mj,s,ti)表示a=b+((a+(g(b,c,d)+mj+ti)<< hh(a,b,c,d,mj,s,ti)表示a=b+((a+(h(b,c,d)+mj+ti)<< ii(a,b,c,d,mj,s,ti)表示a=b+((a+(i(b,c,d)+mj+ti)<<
这四轮(64步)是:

第一轮

ff(a,b,c,d,m0,7,0xd76aa478)
ff(d,a,b,c,m1,12,0xe8c7b756)
ff(c,d,a,b,m2,17,0x242070db)
ff(b,c,d,a,m3,22,0xc1bdceee)
ff(a,b,c,d,m4,7,0xf57c0faf)
ff(d,a,b,c,m5,12,0x4787c62a)
ff(c,d,a,b,m6,17,0xa8304613)
ff(b,c,d,a,m7,22,0xfd469501)
ff(a,b,c,d,m8,7,0x698098d8)
ff(d,a,b,c,m9,12,0x8b44f7af)
ff(c,d,a,b,m10,17,0xffff5bb1)
ff(b,c,d,a,m11,22,0x895cd7be)
ff(a,b,c,d,m12,7,0x6b901122)
ff(d,a,b,c,m13,12,0xfd987193)
ff(c,d,a,b,m14,17,0xa679438e)
ff(b,c,d,a,m15,22,0x49b40821)

第二轮

gg(a,b,c,d,m1,5,0xf61e2562)
gg(d,a,b,c,m6,9,0xc040b340)
gg(c,d,a,b,m11,14,0x265e5a51)
gg(b,c,d,a,m0,20,0xe9b6c7aa)
gg(a,b,c,d,m5,5,0xd62f105d)
gg(d,a,b,c,m10,9,0x02441453)
gg(c,d,a,b,m15,14,0xd8a1e681)
gg(b,c,d,a,m4,20,0xe7d3fbc8)
gg(a,b,c,d,m9,5,0x21e1cde6)
gg(d,a,b,c,m14,9,0xc33707d6)
gg(c,d,a,b,m3,14,0xf4d50d87)
gg(b,c,d,a,m8,20,0x455a14ed)
gg(a,b,c,d,m13,5,0xa9e3e905)
gg(d,a,b,c,m2,9,0xfcefa3f8)
gg(c,d,a,b,m7,14,0x676f02d9)
gg(b,c,d,a,m12,20,0x8d2a4c8a)

第三轮

hh(a,b,c,d,m5,4,0xfffa3942)
hh(d,a,b,c,m8,11,0x8771f681)
hh(c,d,a,b,m11,16,0x6d9d6122)
hh(b,c,d,a,m14,23,0xfde5380c)
hh(a,b,c,d,m1,4,0xa4beea44)
hh(d,a,b,c,m4,11,0x4bdecfa9)
hh(c,d,a,b,m7,16,0xf6bb4b60)
hh(b,c,d,a,m10,23,0xbebfbc70)
hh(a,b,c,d,m13,4,0x289b7ec6)
hh(d,a,b,c,m0,11,0xeaa127fa)
hh(c,d,a,b,m3,16,0xd4ef3085)
hh(b,c,d,a,m6,23,0x04881d05)
hh(a,b,c,d,m9,4,0xd9d4d039)
hh(d,a,b,c,m12,11,0xe6db99e5)
hh(c,d,a,b,m15,16,0x1fa27cf8)
hh(b,c,d,a,m2,23,0xc4ac5665)

第四轮

ii(a,b,c,d,m0,6,0xf4292244)
ii(d,a,b,c,m7,10,0x432aff97)
ii(c,d,a,b,m14,15,0xab9423a7)
ii(b,c,d,a,m5,21,0xfc93a039)
ii(a,b,c,d,m12,6,0x655b59c3)
ii(d,a,b,c,m3,10,0x8f0ccc92)
ii(c,d,a,b,m10,15,0xffeff47d)
ii(b,c,d,a,m1,21,0x85845dd1)
ii(a,b,c,d,m8,6,0x6fa87e4f)
ii(d,a,b,c,m15,10,0xfe2ce6e0)
ii(c,d,a,b,m6,15,0xa3014314)
ii(b,c,d,a,m13,21,0x4e0811a1)
ii(a,b,c,d,m4,6,0xf7537e82)
ii(d,a,b,c,m11,10,0xbd3af235)
ii(c,d,a,b,m2,15,0x2ad7d2bb)
ii(b,c,d,a,m9,21,0xeb86d391)

常数ti可以如下选择:

在第i步中,ti是4294967296*abs(sin(i))的整数部分,i的单位是弧度。(4294967296等于2的32次方)
所有这些完成之后,将a、b、c、d分别加上a、b、c、d。然后用下一分组数据继续运行算法,最后的输出是a、b、c和d的级联。

当你按照我上面所说的方法实现md5算法以后,你可以用以下几个信息对你做出来的程序作一个简单的测试,看看程序有没有错误。

md5 ("") =
md5 ("a") =
md5 ("abc") =
md5 ("message digest") =
md5 ("abcdefghijklmnopqrstuvwxyz") =
md5 ("") =

md5 ("
01234567890") =

如果你用上面的信息分别对你做的md5算法实例做测试,最后得出的结论和标准答案完全一样,那我就要在这里象你道一声祝贺了。要知道,我的程序在第一次编译成功的时候是没有得出和上面相同的结果的。

md5的安全性

md5相对md4所作的改进:

1. 增加了第四轮;

2. 每一步均有唯一的加法常数;

3. 为减弱第二轮中函数g的对称性从(x&y)|(x&z)|(y&z)变为(x&z)|(y&(~z));

4. 第一步加上了上一步的结果,这将引起更快的雪崩效应;

5. 改变了第二轮和第三轮中访问消息子分组的次序,使其更不相似;

6. 近似优化了每一轮中的循环左移位移量以实现更快的雪崩效应。各轮的位移量互不相同。

[color=red]简单的说:

MD5叫信息-摘要算法,是一种密码的算法,它可以对任何文件产生一个唯一的MD5验证码,每个文件的MD5码就如同每个人的指纹一样,都是不同的,这样,一旦这个文件在传输过程中,其内容被损坏或者被修改的话,那么这个文件的MD5码就会发生变化,通过对文件MD5的验证,可以得知获得的文件是否完整。

参考资料:http://www.i170.com/Article/28572

❹ 16位的md5加密如何直接转换为 32位md5加密

这里你混淆了“位”
md5的输出只有128bit一种。
32个byte,或者32个ascii可显示字符形式的是其hex码的显示形式
16个byte是其直接输出形式。
16*8=128bit
这里只要把每4bit用一个char表示,就成了32个byte的可打印显示形式。
4个bit表示从[0,1,2,3...14,15],其中[10,15]区间用[A,B,C,...F]表示即可

❺ 16位的MD5加密和32位MD5加密的区别

我在学习 linux 过程中的理解是 md5 加密 是通过算法 算出来的 所以 md5加密程序在编辑过程中 应该是可以通过 加密长度 进行设置的 16 位 为什么 会和32 位中的部分相同 应该是 这个加密程序 运算过程中 取 32位加密 中 的 第几 位开始 后的16位数值 的 大部分 网络上流行的加密程序都是 从 第九个数值开始 取值的 我想如果可以看到
这些 运算程序的源代码 就可以明白了!!!!

❻ MD5 加密方法

<%
private const bits_to_a_byte = 8
private const bytes_to_a_word = 4
private const bits_to_a_word = 32
private m_lonbits(30)
private m_l2power(30)

private function lshift(lvalue, ishiftbits)
if ishiftbits = 0 then
lshift = lvalue
exit function
elseif ishiftbits = 31 then
if lvalue and 1 then
lshift = &h80000000
else
lshift = 0
end if
exit function
elseif ishiftbits < 0 or ishiftbits > 31 then
err.raise 6
end if

if (lvalue and m_l2power(31 - ishiftbits)) then
lshift = ((lvalue and m_lonbits(31 - (ishiftbits + 1))) * m_l2power(ishiftbits)) or &h80000000
else
lshift = ((lvalue and m_lonbits(31 - ishiftbits)) * m_l2power(ishiftbits))
end if
end function

private function rshift(lvalue, ishiftbits)
if ishiftbits = 0 then
rshift = lvalue
exit function
elseif ishiftbits = 31 then
if lvalue and &h80000000 then
rshift = 1
else
rshift = 0
end if
exit function
elseif ishiftbits < 0 or ishiftbits > 31 then
err.raise 6
end if

rshift = (lvalue and &h7ffffffe) \ m_l2power(ishiftbits)

if (lvalue and &h80000000) then
rshift = (rshift or (&h40000000 \ m_l2power(ishiftbits - 1)))
end if
end function

private function rotateleft(lvalue, ishiftbits)
rotateleft = lshift(lvalue, ishiftbits) or rshift(lvalue, (32 - ishiftbits))
end function

private function adnsigned(lx, ly)
dim lx4
dim ly4
dim lx8
dim ly8
dim lresult

lx8 = lx and &h80000000
ly8 = ly and &h80000000
lx4 = lx and &h40000000
ly4 = ly and &h40000000

lresult = (lx and &h3fffffff) + (ly and &h3fffffff)

if lx4 and ly4 then
lresult = lresult xor &h80000000 xor lx8 xor ly8
elseif lx4 or ly4 then
if lresult and &h40000000 then
lresult = lresult xor &hc0000000 xor lx8 xor ly8
else
lresult = lresult xor &h40000000 xor lx8 xor ly8
end if
else
lresult = lresult xor lx8 xor ly8
end if

adnsigned = lresult
end function

private function md5_f(x, y, z)
md5_f = (x and y) or ((not x) and z)
end function

private function md5_g(x, y, z)
md5_g = (x and z) or (y and (not z))
end function

private function md5_h(x, y, z)
md5_h = (x xor y xor z)
end function

private function md5_i(x, y, z)
md5_i = (y xor (x or (not z)))
end function

private sub md5_ff(a, b, c, d, x, s, ac)
a = adnsigned(a, adnsigned(adnsigned(md5_f(b, c, d), x), ac))
a = rotateleft(a, s)
a = adnsigned(a, b)
end sub

private sub md5_gg(a, b, c, d, x, s, ac)
a = adnsigned(a, adnsigned(adnsigned(md5_g(b, c, d), x), ac))
a = rotateleft(a, s)
a = adnsigned(a, b)
end sub

private sub md5_hh(a, b, c, d, x, s, ac)
a = adnsigned(a, adnsigned(adnsigned(md5_h(b, c, d), x), ac))
a = rotateleft(a, s)
a = adnsigned(a, b)
end sub

private sub md5_ii(a, b, c, d, x, s, ac)
a = adnsigned(a, adnsigned(adnsigned(md5_i(b, c, d), x), ac))
a = rotateleft(a, s)
a = adnsigned(a, b)
end sub

private function converttowordarray(smessage)
dim lmessagelength
dim lnumberofwords
dim lwordarray()
dim lbyteposition
dim lbytecount
dim lwordcount

const molus_bits = 512
const congruent_bits = 448

lmessagelength = len(smessage)

lnumberofwords = (((lmessagelength + ((molus_bits - congruent_bits) \ bits_to_a_byte)) \ (molus_bits \ bits_to_a_byte)) + 1) * (molus_bits \ bits_to_a_word)
redim lwordarray(lnumberofwords - 1)

lbyteposition = 0
lbytecount = 0
do until lbytecount >= lmessagelength
lwordcount = lbytecount \ bytes_to_a_word
lbyteposition = (lbytecount mod bytes_to_a_word) * bits_to_a_byte
lwordarray(lwordcount) = lwordarray(lwordcount) or lshift(asc(mid(smessage, lbytecount + 1, 1)), lbyteposition)
lbytecount = lbytecount + 1
loop

lwordcount = lbytecount \ bytes_to_a_word
lbyteposition = (lbytecount mod bytes_to_a_word) * bits_to_a_byte

lwordarray(lwordcount) = lwordarray(lwordcount) or lshift(&h80, lbyteposition)
lwordarray(lnumberofwords - 2) = lshift(lmessagelength, 3)
lwordarray(lnumberofwords - 1) = rshift(lmessagelength, 29)

converttowordarray = lwordarray
end function

private function wordtohex(lvalue)
dim lbyte
dim lcount

for lcount = 0 to 3
lbyte = rshift(lvalue, lcount * bits_to_a_byte) and m_lonbits(bits_to_a_byte - 1)
wordtohex = wordtohex & right("0" & hex(lbyte), 2)
next
end function

public function md5(smessage)
m_lonbits(0) = clng(1)
m_lonbits(1) = clng(3)
m_lonbits(2) = clng(7)
m_lonbits(3) = clng(15)
m_lonbits(4) = clng(31)
m_lonbits(5) = clng(63)
m_lonbits(6) = clng(127)
m_lonbits(7) = clng(255)
m_lonbits(8) = clng(511)
m_lonbits(9) = clng(1023)
m_lonbits(10) = clng(2047)
m_lonbits(11) = clng(4095)
m_lonbits(12) = clng(8191)
m_lonbits(13) = clng(16383)
m_lonbits(14) = clng(32767)
m_lonbits(15) = clng(65535)
m_lonbits(16) = clng(131071)
m_lonbits(17) = clng(262143)
m_lonbits(18) = clng(524287)
m_lonbits(19) = clng(1048575)
m_lonbits(20) = clng(2097151)
m_lonbits(21) = clng(4194303)
m_lonbits(22) = clng(8388607)
m_lonbits(23) = clng(16777215)
m_lonbits(24) = clng(33554431)
m_lonbits(25) = clng(67108863)
m_lonbits(26) = clng(134217727)
m_lonbits(27) = clng(268435455)
m_lonbits(28) = clng(536870911)
m_lonbits(29) = clng(1073741823)
m_lonbits(30) = clng(2147483647)

m_l2power(0) = clng(1)
m_l2power(1) = clng(2)
m_l2power(2) = clng(4)
m_l2power(3) = clng(8)
m_l2power(4) = clng(16)
m_l2power(5) = clng(32)
m_l2power(6) = clng(64)
m_l2power(7) = clng(128)
m_l2power(8) = clng(256)
m_l2power(9) = clng(512)
m_l2power(10) = clng(1024)
m_l2power(11) = clng(2048)
m_l2power(12) = clng(4096)
m_l2power(13) = clng(8192)
m_l2power(14) = clng(16384)
m_l2power(15) = clng(32768)
m_l2power(16) = clng(65536)
m_l2power(17) = clng(131072)
m_l2power(18) = clng(262144)
m_l2power(19) = clng(524288)
m_l2power(20) = clng(1048576)
m_l2power(21) = clng(2097152)
m_l2power(22) = clng(4194304)
m_l2power(23) = clng(8388608)
m_l2power(24) = clng(16777216)
m_l2power(25) = clng(33554432)
m_l2power(26) = clng(67108864)
m_l2power(27) = clng(134217728)
m_l2power(28) = clng(268435456)
m_l2power(29) = clng(536870912)
m_l2power(30) = clng(1073741824)

dim x
dim k
dim aa
dim bb
dim cc
dim dd
dim a
dim b
dim c
dim d

const s11 = 7
const s12 = 12
const s13 = 17
const s14 = 22
const s21 = 5
const s22 = 9
const s23 = 14
const s24 = 20
const s31 = 4
const s32 = 11
const s33 = 16
const s34 = 23
const s41 = 6
const s42 = 10
const s43 = 15
const s44 = 21

x = converttowordarray(smessage)

a = &h67452301
b = &hefcdab89
c = &h98badcfe
d = &h10325476

for k = 0 to ubound(x) step 16
aa = a
bb = b
cc = c
dd = d

md5_ff a, b, c, d, x(k + 0), s11, &hd76aa478
md5_ff d, a, b, c, x(k + 1), s12, &he8c7b756
md5_ff c, d, a, b, x(k + 2), s13, &h242070db
md5_ff b, c, d, a, x(k + 3), s14, &hc1bdceee
md5_ff a, b, c, d, x(k + 4), s11, &hf57c0faf
md5_ff d, a, b, c, x(k + 5), s12, &h4787c62a
md5_ff c, d, a, b, x(k + 6), s13, &ha8304613
md5_ff b, c, d, a, x(k + 7), s14, &hfd469501
md5_ff a, b, c, d, x(k + 8), s11, &h698098d8
md5_ff d, a, b, c, x(k + 9), s12, &h8b44f7af
md5_ff c, d, a, b, x(k + 10), s13, &hffff5bb1
md5_ff b, c, d, a, x(k + 11), s14, &h895cd7be
md5_ff a, b, c, d, x(k + 12), s11, &h6b901122
md5_ff d, a, b, c, x(k + 13), s12, &hfd987193
md5_ff c, d, a, b, x(k + 14), s13, &ha679438e
md5_ff b, c, d, a, x(k + 15), s14, &h49b40821

md5_gg a, b, c, d, x(k + 1), s21, &hf61e2562
md5_gg d, a, b, c, x(k + 6), s22, &hc040b340
md5_gg c, d, a, b, x(k + 11), s23, &h265e5a51
md5_gg b, c, d, a, x(k + 0), s24, &he9b6c7aa
md5_gg a, b, c, d, x(k + 5), s21, &hd62f105d
md5_gg d, a, b, c, x(k + 10), s22, &h2441453
md5_gg c, d, a, b, x(k + 15), s23, &hd8a1e681
md5_gg b, c, d, a, x(k + 4), s24, &he7d3fbc8

md5_gg a, b, c, d, x(k + 9), s21, &h21e1cde6
md5_gg d, a, b, c, x(k + 14), s22, &hc33707d6
md5_gg c, d, a, b, x(k + 3), s23, &hf4d50d87
md5_gg b, c, d, a, x(k + 8), s24, &h455a14ed
md5_gg a, b, c, d, x(k + 13), s21, &ha9e3e905
md5_gg d, a, b, c, x(k + 2), s22, &hfcefa3f8
md5_gg c, d, a, b, x(k + 7), s23, &h676f02d9
md5_gg b, c, d, a, x(k + 12), s24, &h8d2a4c8a

md5_hh a, b, c, d, x(k + 5), s31, &hfffa3942
md5_hh d, a, b, c, x(k + 8), s32, &h8771f681
md5_hh c, d, a, b, x(k + 11), s33, &h6d9d6122
md5_hh b, c, d, a, x(k + 14), s34, &hfde5380c
md5_hh a, b, c, d, x(k + 1), s31, &ha4beea44
md5_hh d, a, b, c, x(k + 4), s32, &h4bdecfa9
md5_hh c, d, a, b, x(k + 7), s33, &hf6bb4b60
md5_hh b, c, d, a, x(k + 10), s34, &hbebfbc70
md5_hh a, b, c, d, x(k + 13), s31, &h289b7ec6
md5_hh d, a, b, c, x(k + 0), s32, &heaa127fa
md5_hh c, d, a, b, x(k + 3), s33, &hd4ef3085
md5_hh b, c, d, a, x(k + 6), s34, &h4881d05
md5_hh a, b, c, d, x(k + 9), s31, &hd9d4d039
md5_hh d, a, b, c, x(k + 12), s32, &he6db99e5
md5_hh c, d, a, b, x(k + 15), s33, &h1fa27cf8
md5_hh b, c, d, a, x(k + 2), s34, &hc4ac5665

md5_ii a, b, c, d, x(k + 0), s41, &hf4292244
md5_ii d, a, b, c, x(k + 7), s42, &h432aff97
md5_ii c, d, a, b, x(k + 14), s43, &hab9423a7
md5_ii b, c, d, a, x(k + 5), s44, &hfc93a039
md5_ii a, b, c, d, x(k + 12), s41, &h655b59c3
md5_ii d, a, b, c, x(k + 3), s42, &h8f0ccc92
md5_ii c, d, a, b, x(k + 10), s43, &hffeff47d
md5_ii b, c, d, a, x(k + 1), s44, &h85845dd1
md5_ii a, b, c, d, x(k + 8), s41, &h6fa87e4f
md5_ii d, a, b, c, x(k + 15), s42, &hfe2ce6e0
md5_ii c, d, a, b, x(k + 6), s43, &ha3014314
md5_ii b, c, d, a, x(k + 13), s44, &h4e0811a1
md5_ii a, b, c, d, x(k + 4), s41, &hf7537e82
md5_ii d, a, b, c, x(k + 11), s42, &hbd3af235
md5_ii c, d, a, b, x(k + 2), s43, &h2ad7d2bb
md5_ii b, c, d, a, x(k + 9), s44, &heb86d391

a = adnsigned(a, aa)
b = adnsigned(b, bb)
c = adnsigned(c, cc)
d = adnsigned(d, dd)
next

md5 = lcase(wordtohex(a) & wordtohex(b) & wordtohex(c) & wordtohex(d))
'md5=lcase(wordtohex(b) & wordtohex(c)) 'i crop this to fit 16byte database password :d

md5=ucase(md5)
end function

public function md5_16(smessage)
m_lonbits(0) = clng(1)
m_lonbits(1) = clng(3)
m_lonbits(2) = clng(7)
m_lonbits(3) = clng(15)
m_lonbits(4) = clng(31)
m_lonbits(5) = clng(63)
m_lonbits(6) = clng(127)
m_lonbits(7) = clng(255)
m_lonbits(8) = clng(511)
m_lonbits(9) = clng(1023)
m_lonbits(10) = clng(2047)
m_lonbits(11) = clng(4095)
m_lonbits(12) = clng(8191)
m_lonbits(13) = clng(16383)
m_lonbits(14) = clng(32767)
m_lonbits(15) = clng(65535)
m_lonbits(16) = clng(131071)
m_lonbits(17) = clng(262143)
m_lonbits(18) = clng(524287)
m_lonbits(19) = clng(1048575)
m_lonbits(20) = clng(2097151)
m_lonbits(21) = clng(4194303)
m_lonbits(22) = clng(8388607)
m_lonbits(23) = clng(16777215)
m_lonbits(24) = clng(33554431)
m_lonbits(25) = clng(67108863)
m_lonbits(26) = clng(134217727)
m_lonbits(27) = clng(268435455)
m_lonbits(28) = clng(536870911)
m_lonbits(29) = clng(1073741823)
m_lonbits(30) = clng(2147483647)

m_l2power(0) = clng(1)
m_l2power(1) = clng(2)
m_l2power(2) = clng(4)
m_l2power(3) = clng(8)
m_l2power(4) = clng(16)
m_l2power(5) = clng(32)
m_l2power(6) = clng(64)
m_l2power(7) = clng(128)
m_l2power(8) = clng(256)
m_l2power(9) = clng(512)
m_l2power(10) = clng(1024)
m_l2power(11) = clng(2048)
m_l2power(12) = clng(4096)
m_l2power(13) = clng(8192)
m_l2power(14) = clng(16384)
m_l2power(15) = clng(32768)
m_l2power(16) = clng(65536)
m_l2power(17) = clng(131072)
m_l2power(18) = clng(262144)
m_l2power(19) = clng(524288)
m_l2power(20) = clng(1048576)
m_l2power(21) = clng(2097152)
m_l2power(22) = clng(4194304)
m_l2power(23) = clng(8388608)
m_l2power(24) = clng(16777216)
m_l2power(25) = clng(33554432)
m_l2power(26) = clng(67108864)
m_l2power(27) = clng(134217728)
m_l2power(28) = clng(268435456)
m_l2power(29) = clng(536870912)
m_l2power(30) = clng(1073741824)

dim x
dim k
dim aa
dim bb
dim cc
dim dd
dim a
dim b
dim c
dim d

const s11 = 7
const s12 = 12
const s13 = 17
const s14 = 22
const s21 = 5
const s22 = 9
const s23 = 14
const s24 = 20
const s31 = 4
const s32 = 11
const s33 = 16
const s34 = 23
const s41 = 6
const s42 = 10
const s43 = 15
const s44 = 21

x = converttowordarray(smessage)

a = &h67452301
b = &hefcdab89
c = &h98badcfe
d = &h10325476

for k = 0 to ubound(x) step 16
aa = a
bb = b
cc = c
dd = d

md5_ff a, b, c, d, x(k + 0), s11, &hd76aa478
md5_ff d, a, b, c, x(k + 1), s12, &he8c7b756
md5_ff c, d, a, b, x(k + 2), s13, &h242070db
md5_ff b, c, d, a, x(k + 3), s14, &hc1bdceee
md5_ff a, b, c, d, x(k + 4), s11, &hf57c0faf
md5_ff d, a, b, c, x(k + 5), s12, &h4787c62a
md5_ff c, d, a, b, x(k + 6), s13, &ha8304613
md5_ff b, c, d, a, x(k + 7), s14, &hfd469501
md5_ff a, b, c, d, x(k + 8), s11, &h698098d8
md5_ff d, a, b, c, x(k + 9), s12, &h8b44f7af
md5_ff c, d, a, b, x(k + 10), s13, &hffff5bb1
md5_ff b, c, d, a, x(k + 11), s14, &h895cd7be
md5_ff a, b, c, d, x(k + 12), s11, &h6b901122
md5_ff d, a, b, c, x(k + 13), s12, &hfd987193
md5_ff c, d, a, b, x(k + 14), s13, &ha679438e
md5_ff b, c, d, a, x(k + 15), s14, &h49b40821

md5_gg a, b, c, d, x(k + 1), s21, &hf61e2562
md5_gg d, a, b, c, x(k + 6), s22, &hc040b340
md5_gg c, d, a, b, x(k + 11), s23, &h265e5a51
md5_gg b, c, d, a, x(k + 0), s24, &he9b6c7aa
md5_gg a, b, c, d, x(k + 5), s21, &hd62f105d
md5_gg d, a, b, c, x(k + 10), s22, &h2441453
md5_gg c, d, a, b, x(k + 15), s23, &hd8a1e681
md5_gg b, c, d, a, x(k + 4), s24, &he7d3fbc8
md5_gg a, b, c, d, x(k + 9), s21, &h21e1cde6
md5_gg d, a, b, c, x(k + 14), s22, &hc33707d6
md5_gg c, d, a, b, x(k + 3), s23, &hf4d50d87
md5_gg b, c, d, a, x(k + 8), s24, &h455a14ed
md5_gg a, b, c, d, x(k + 13), s21, &ha9e3e905
md5_gg d, a, b, c, x(k + 2), s22, &hfcefa3f8
md5_gg c, d, a, b, x(k + 7), s23, &h676f02d9
md5_gg b, c, d, a, x(k + 12), s24, &h8d2a4c8a

md5_hh a, b, c, d, x(k + 5), s31, &hfffa3942
md5_hh d, a, b, c, x(k + 8), s32, &h8771f681
md5_hh c, d, a, b, x(k + 11), s33, &h6d9d6122
md5_hh b, c, d, a, x(k + 14), s34, &hfde5380c
md5_hh a, b, c, d, x(k + 1), s31, &ha4beea44
md5_hh d, a, b, c, x(k + 4), s32, &h4bdecfa9
md5_hh c, d, a, b, x(k + 7), s33, &hf6bb4b60
md5_hh b, c, d, a, x(k + 10), s34, &hbebfbc70
md5_hh a, b, c, d, x(k + 13), s31, &h289b7ec6
md5_hh d, a, b, c, x(k + 0), s32, &heaa127fa
md5_hh c, d, a, b, x(k + 3), s33, &hd4ef3085
md5_hh b, c, d, a, x(k + 6), s34, &h4881d05
md5_hh a, b, c, d, x(k + 9), s31, &hd9d4d039
md5_hh d, a, b, c, x(k + 12), s32, &he6db99e5
md5_hh c, d, a, b, x(k + 15), s33, &h1fa27cf8
md5_hh b, c, d, a, x(k + 2), s34, &hc4ac5665

md5_ii a, b, c, d, x(k + 0), s41, &hf4292244
md5_ii d, a, b, c, x(k + 7), s42, &h432aff97
md5_ii c, d, a, b, x(k + 14), s43, &hab9423a7
md5_ii b, c, d, a, x(k + 5), s44, &hfc93a039
md5_ii a, b, c, d, x(k + 12), s41, &h655b59c3
md5_ii d, a, b, c, x(k + 3), s42, &h8f0ccc92
md5_ii c, d, a, b, x(k + 10), s43, &hffeff47d
md5_ii b, c, d, a, x(k + 1), s44, &h85845dd1
md5_ii a, b, c, d, x(k + 8), s41, &h6fa87e4f
md5_ii d, a, b, c, x(k + 15), s42, &hfe2ce6e0
md5_ii c, d, a, b, x(k + 6), s43, &ha3014314
md5_ii b, c, d, a, x(k + 13), s44, &h4e0811a1
md5_ii a, b, c, d, x(k + 4), s41, &hf7537e82
md5_ii d, a, b, c, x(k + 11), s42, &hbd3af235
md5_ii c, d, a, b, x(k + 2), s43, &h2ad7d2bb
md5_ii b, c, d, a, x(k + 9), s44, &heb86d391

a = adnsigned(a, aa)
b = adnsigned(b, bb)
c = adnsigned(c, cc)
d = adnsigned(d, dd)
next

'md5 = lcase(wordtohex(a) & wordtohex(b) & wordtohex(c) & wordtohex(d))
md5_16=lcase(wordtohex(b) & wordtohex(c)) 'i crop this to fit 16byte database password :d

md5_16=ucase(md5_16)
end function
%>

调使用下面的方法

<%

password="123456"

response.write MD5(password)

%>

❼ 123456加密md5是多少md5密码16位和32位加密

我见过的都是算成
32
个字符的,也就是
128位。
好像也有别的版本,可以得到
16
个字符,24个字符等等。
MD5

摘要算法
,是不可逆的。
我觉得加密总得对应一个解密,可以得到原来的信息,但是MD5不可以,所以MD5不是
加密算法

❽ 登录怎么对密码MD5加密

获取到需要加密的字符串、然后传值到MD5方法里即可。
如: string str="我要加密";
MD5(str);
public string MD5(string str)
{
//加密操作。
}

❾ C#中怎样实现MD5加密MD5中加密算法16位加密算法与32位加密算法怎么实现

调用这个类就行了
using System.Text;
using System.Security.Cryptography;
namespace class1
{
[System.Diagnostics.DebuggerStepThroughAttribute()]
public static class MD5Encode
{
//用md5 hash 字符串
public static string MD5Hash(string str)
{
ASCIIEncoding ASC = new ASCIIEncoding();
byte[] arrPwd = ASC.GetBytes(str);
MD5 md5 = new MD5CryptoServiceProvider();
byte[] arrHashPwd = md5.ComputeHash(arrPwd);
//转成字符串,表示十六进制值
string sHashPwd = "";
foreach (byte b in arrHashPwd)
{
if (b < 16)
sHashPwd = sHashPwd + "0" + b.ToString("x");
else
sHashPwd = sHashPwd + b.ToString("x");
}
return sHashPwd;
}
}
}

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