r4528: merge Fedora spec file fixes
[Samba.git] / examples / LDAP / smbldap-tools / mkntpwd / md4.c
blob1c9c2e6ecd596b82b665e82b648088cfe11f0347
1 /*
2 Unix SMB/Netbios implementation.
3 Version 1.9.
4 a implementation of MD4 designed for use in the SMB authentication protocol
5 Copyright (C) Andrew Tridgell 1997
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
23 /* NOTE: This code makes no attempt to be fast!
25 It assumes that a int is at least 32 bits long
28 typedef unsigned int uint32;
30 static uint32 A, B, C, D;
32 static uint32 F(uint32 X, uint32 Y, uint32 Z)
34 return (X&Y) | ((~X)&Z);
37 static uint32 G(uint32 X, uint32 Y, uint32 Z)
39 return (X&Y) | (X&Z) | (Y&Z);
42 static uint32 H(uint32 X, uint32 Y, uint32 Z)
44 return X^Y^Z;
47 static uint32 lshift(uint32 x, int s)
49 x &= 0xFFFFFFFF;
50 return ((x<<s)&0xFFFFFFFF) | (x>>(32-s));
53 #define ROUND1(a,b,c,d,k,s) a = lshift(a + F(b,c,d) + X[k], s)
54 #define ROUND2(a,b,c,d,k,s) a = lshift(a + G(b,c,d) + X[k] + (uint32)0x5A827999,s)
55 #define ROUND3(a,b,c,d,k,s) a = lshift(a + H(b,c,d) + X[k] + (uint32)0x6ED9EBA1,s)
57 /* this applies md4 to 64 byte chunks */
58 static void mdfour64(uint32 *M)
60 int j;
61 uint32 AA, BB, CC, DD;
62 uint32 X[16];
64 for (j=0;j<16;j++)
65 X[j] = M[j];
67 AA = A; BB = B; CC = C; DD = D;
69 ROUND1(A,B,C,D, 0, 3); ROUND1(D,A,B,C, 1, 7);
70 ROUND1(C,D,A,B, 2, 11); ROUND1(B,C,D,A, 3, 19);
71 ROUND1(A,B,C,D, 4, 3); ROUND1(D,A,B,C, 5, 7);
72 ROUND1(C,D,A,B, 6, 11); ROUND1(B,C,D,A, 7, 19);
73 ROUND1(A,B,C,D, 8, 3); ROUND1(D,A,B,C, 9, 7);
74 ROUND1(C,D,A,B, 10, 11); ROUND1(B,C,D,A, 11, 19);
75 ROUND1(A,B,C,D, 12, 3); ROUND1(D,A,B,C, 13, 7);
76 ROUND1(C,D,A,B, 14, 11); ROUND1(B,C,D,A, 15, 19);
78 ROUND2(A,B,C,D, 0, 3); ROUND2(D,A,B,C, 4, 5);
79 ROUND2(C,D,A,B, 8, 9); ROUND2(B,C,D,A, 12, 13);
80 ROUND2(A,B,C,D, 1, 3); ROUND2(D,A,B,C, 5, 5);
81 ROUND2(C,D,A,B, 9, 9); ROUND2(B,C,D,A, 13, 13);
82 ROUND2(A,B,C,D, 2, 3); ROUND2(D,A,B,C, 6, 5);
83 ROUND2(C,D,A,B, 10, 9); ROUND2(B,C,D,A, 14, 13);
84 ROUND2(A,B,C,D, 3, 3); ROUND2(D,A,B,C, 7, 5);
85 ROUND2(C,D,A,B, 11, 9); ROUND2(B,C,D,A, 15, 13);
87 ROUND3(A,B,C,D, 0, 3); ROUND3(D,A,B,C, 8, 9);
88 ROUND3(C,D,A,B, 4, 11); ROUND3(B,C,D,A, 12, 15);
89 ROUND3(A,B,C,D, 2, 3); ROUND3(D,A,B,C, 10, 9);
90 ROUND3(C,D,A,B, 6, 11); ROUND3(B,C,D,A, 14, 15);
91 ROUND3(A,B,C,D, 1, 3); ROUND3(D,A,B,C, 9, 9);
92 ROUND3(C,D,A,B, 5, 11); ROUND3(B,C,D,A, 13, 15);
93 ROUND3(A,B,C,D, 3, 3); ROUND3(D,A,B,C, 11, 9);
94 ROUND3(C,D,A,B, 7, 11); ROUND3(B,C,D,A, 15, 15);
96 A += AA; B += BB; C += CC; D += DD;
98 A &= 0xFFFFFFFF; B &= 0xFFFFFFFF;
99 C &= 0xFFFFFFFF; D &= 0xFFFFFFFF;
101 for (j=0;j<16;j++)
102 X[j] = 0;
105 static void copy64(uint32 *M, unsigned char *in)
107 int i;
109 for (i=0;i<16;i++)
110 M[i] = (in[i*4+3]<<24) | (in[i*4+2]<<16) |
111 (in[i*4+1]<<8) | (in[i*4+0]<<0);
114 static void copy4(unsigned char *out,uint32 x)
116 out[0] = x&0xFF;
117 out[1] = (x>>8)&0xFF;
118 out[2] = (x>>16)&0xFF;
119 out[3] = (x>>24)&0xFF;
122 /* produce a md4 message digest from data of length n bytes */
123 void mdfour(unsigned char *out, unsigned char *in, int n)
125 unsigned char buf[128];
126 uint32 M[16];
127 uint32 b = n * 8;
128 int i;
130 A = 0x67452301;
131 B = 0xefcdab89;
132 C = 0x98badcfe;
133 D = 0x10325476;
135 while (n > 64) {
136 copy64(M, in);
137 mdfour64(M);
138 in += 64;
139 n -= 64;
142 for (i=0;i<128;i++)
143 buf[i] = 0;
144 memcpy(buf, in, n);
145 buf[n] = 0x80;
147 if (n <= 55) {
148 copy4(buf+56, b);
149 copy64(M, buf);
150 mdfour64(M);
151 } else {
152 copy4(buf+120, b);
153 copy64(M, buf);
154 mdfour64(M);
155 copy64(M, buf+64);
156 mdfour64(M);
159 for (i=0;i<128;i++)
160 buf[i] = 0;
161 copy64(M, buf);
163 copy4(out, A);
164 copy4(out+4, B);
165 copy4(out+8, C);
166 copy4(out+12, D);
168 A = B = C = D = 0;