1bf215546Sopenharmony_ci/*	$OpenBSD: sha1.c,v 1.26 2015/09/11 09:18:27 guenther Exp $	*/
2bf215546Sopenharmony_ci
3bf215546Sopenharmony_ci/*
4bf215546Sopenharmony_ci * SHA-1 in C
5bf215546Sopenharmony_ci * By Steve Reid <steve@edmweb.com>
6bf215546Sopenharmony_ci * 100% Public Domain
7bf215546Sopenharmony_ci *
8bf215546Sopenharmony_ci * Test Vectors (from FIPS PUB 180-1)
9bf215546Sopenharmony_ci * "abc"
10bf215546Sopenharmony_ci *   A9993E36 4706816A BA3E2571 7850C26C 9CD0D89D
11bf215546Sopenharmony_ci * "abcdbcdecdefdefgefghfghighijhijkijkljklmklmnlmnomnopnopq"
12bf215546Sopenharmony_ci *   84983E44 1C3BD26E BAAE4AA1 F95129E5 E54670F1
13bf215546Sopenharmony_ci * A million repetitions of "a"
14bf215546Sopenharmony_ci *   34AA973C D4C4DAA4 F61EEB2B DBAD2731 6534016F
15bf215546Sopenharmony_ci */
16bf215546Sopenharmony_ci
17bf215546Sopenharmony_ci#include <stdint.h>
18bf215546Sopenharmony_ci#include <string.h>
19bf215546Sopenharmony_ci#include "u_endian.h"
20bf215546Sopenharmony_ci#include "sha1.h"
21bf215546Sopenharmony_ci
22bf215546Sopenharmony_ci#define rol(value, bits) (((value) << (bits)) | ((value) >> (32 - (bits))))
23bf215546Sopenharmony_ci
24bf215546Sopenharmony_ci/*
25bf215546Sopenharmony_ci * blk0() and blk() perform the initial expand.
26bf215546Sopenharmony_ci * I got the idea of expanding during the round function from SSLeay
27bf215546Sopenharmony_ci */
28bf215546Sopenharmony_ci#if UTIL_ARCH_LITTLE_ENDIAN
29bf215546Sopenharmony_ci# define blk0(i) (block->l[i] = (rol(block->l[i],24)&0xFF00FF00) \
30bf215546Sopenharmony_ci    |(rol(block->l[i],8)&0x00FF00FF))
31bf215546Sopenharmony_ci#else
32bf215546Sopenharmony_ci# define blk0(i) block->l[i]
33bf215546Sopenharmony_ci#endif
34bf215546Sopenharmony_ci#define blk(i) (block->l[i&15] = rol(block->l[(i+13)&15]^block->l[(i+8)&15] \
35bf215546Sopenharmony_ci    ^block->l[(i+2)&15]^block->l[i&15],1))
36bf215546Sopenharmony_ci
37bf215546Sopenharmony_ci/*
38bf215546Sopenharmony_ci * (R0+R1), R2, R3, R4 are the different operations (rounds) used in SHA1
39bf215546Sopenharmony_ci */
40bf215546Sopenharmony_ci#define R0(v,w,x,y,z,i) z+=((w&(x^y))^y)+blk0(i)+0x5A827999+rol(v,5);w=rol(w,30);
41bf215546Sopenharmony_ci#define R1(v,w,x,y,z,i) z+=((w&(x^y))^y)+blk(i)+0x5A827999+rol(v,5);w=rol(w,30);
42bf215546Sopenharmony_ci#define R2(v,w,x,y,z,i) z+=(w^x^y)+blk(i)+0x6ED9EBA1+rol(v,5);w=rol(w,30);
43bf215546Sopenharmony_ci#define R3(v,w,x,y,z,i) z+=(((w|x)&y)|(w&x))+blk(i)+0x8F1BBCDC+rol(v,5);w=rol(w,30);
44bf215546Sopenharmony_ci#define R4(v,w,x,y,z,i) z+=(w^x^y)+blk(i)+0xCA62C1D6+rol(v,5);w=rol(w,30);
45bf215546Sopenharmony_ci
46bf215546Sopenharmony_citypedef union {
47bf215546Sopenharmony_ci	uint8_t c[64];
48bf215546Sopenharmony_ci	uint32_t l[16];
49bf215546Sopenharmony_ci} CHAR64LONG16;
50bf215546Sopenharmony_ci
51bf215546Sopenharmony_ci/*
52bf215546Sopenharmony_ci * Hash a single 512-bit block. This is the core of the algorithm.
53bf215546Sopenharmony_ci */
54bf215546Sopenharmony_civoid
55bf215546Sopenharmony_ciSHA1Transform(uint32_t state[5], const uint8_t buffer[SHA1_BLOCK_LENGTH])
56bf215546Sopenharmony_ci{
57bf215546Sopenharmony_ci	uint32_t a, b, c, d, e;
58bf215546Sopenharmony_ci	uint8_t workspace[SHA1_BLOCK_LENGTH];
59bf215546Sopenharmony_ci	CHAR64LONG16 *block = (CHAR64LONG16 *)workspace;
60bf215546Sopenharmony_ci
61bf215546Sopenharmony_ci	(void)memcpy(block, buffer, SHA1_BLOCK_LENGTH);
62bf215546Sopenharmony_ci
63bf215546Sopenharmony_ci	/* Copy context->state[] to working vars */
64bf215546Sopenharmony_ci	a = state[0];
65bf215546Sopenharmony_ci	b = state[1];
66bf215546Sopenharmony_ci	c = state[2];
67bf215546Sopenharmony_ci	d = state[3];
68bf215546Sopenharmony_ci	e = state[4];
69bf215546Sopenharmony_ci
70bf215546Sopenharmony_ci	/* 4 rounds of 20 operations each. Loop unrolled. */
71bf215546Sopenharmony_ci	R0(a,b,c,d,e, 0); R0(e,a,b,c,d, 1); R0(d,e,a,b,c, 2); R0(c,d,e,a,b, 3);
72bf215546Sopenharmony_ci	R0(b,c,d,e,a, 4); R0(a,b,c,d,e, 5); R0(e,a,b,c,d, 6); R0(d,e,a,b,c, 7);
73bf215546Sopenharmony_ci	R0(c,d,e,a,b, 8); R0(b,c,d,e,a, 9); R0(a,b,c,d,e,10); R0(e,a,b,c,d,11);
74bf215546Sopenharmony_ci	R0(d,e,a,b,c,12); R0(c,d,e,a,b,13); R0(b,c,d,e,a,14); R0(a,b,c,d,e,15);
75bf215546Sopenharmony_ci	R1(e,a,b,c,d,16); R1(d,e,a,b,c,17); R1(c,d,e,a,b,18); R1(b,c,d,e,a,19);
76bf215546Sopenharmony_ci	R2(a,b,c,d,e,20); R2(e,a,b,c,d,21); R2(d,e,a,b,c,22); R2(c,d,e,a,b,23);
77bf215546Sopenharmony_ci	R2(b,c,d,e,a,24); R2(a,b,c,d,e,25); R2(e,a,b,c,d,26); R2(d,e,a,b,c,27);
78bf215546Sopenharmony_ci	R2(c,d,e,a,b,28); R2(b,c,d,e,a,29); R2(a,b,c,d,e,30); R2(e,a,b,c,d,31);
79bf215546Sopenharmony_ci	R2(d,e,a,b,c,32); R2(c,d,e,a,b,33); R2(b,c,d,e,a,34); R2(a,b,c,d,e,35);
80bf215546Sopenharmony_ci	R2(e,a,b,c,d,36); R2(d,e,a,b,c,37); R2(c,d,e,a,b,38); R2(b,c,d,e,a,39);
81bf215546Sopenharmony_ci	R3(a,b,c,d,e,40); R3(e,a,b,c,d,41); R3(d,e,a,b,c,42); R3(c,d,e,a,b,43);
82bf215546Sopenharmony_ci	R3(b,c,d,e,a,44); R3(a,b,c,d,e,45); R3(e,a,b,c,d,46); R3(d,e,a,b,c,47);
83bf215546Sopenharmony_ci	R3(c,d,e,a,b,48); R3(b,c,d,e,a,49); R3(a,b,c,d,e,50); R3(e,a,b,c,d,51);
84bf215546Sopenharmony_ci	R3(d,e,a,b,c,52); R3(c,d,e,a,b,53); R3(b,c,d,e,a,54); R3(a,b,c,d,e,55);
85bf215546Sopenharmony_ci	R3(e,a,b,c,d,56); R3(d,e,a,b,c,57); R3(c,d,e,a,b,58); R3(b,c,d,e,a,59);
86bf215546Sopenharmony_ci	R4(a,b,c,d,e,60); R4(e,a,b,c,d,61); R4(d,e,a,b,c,62); R4(c,d,e,a,b,63);
87bf215546Sopenharmony_ci	R4(b,c,d,e,a,64); R4(a,b,c,d,e,65); R4(e,a,b,c,d,66); R4(d,e,a,b,c,67);
88bf215546Sopenharmony_ci	R4(c,d,e,a,b,68); R4(b,c,d,e,a,69); R4(a,b,c,d,e,70); R4(e,a,b,c,d,71);
89bf215546Sopenharmony_ci	R4(d,e,a,b,c,72); R4(c,d,e,a,b,73); R4(b,c,d,e,a,74); R4(a,b,c,d,e,75);
90bf215546Sopenharmony_ci	R4(e,a,b,c,d,76); R4(d,e,a,b,c,77); R4(c,d,e,a,b,78); R4(b,c,d,e,a,79);
91bf215546Sopenharmony_ci
92bf215546Sopenharmony_ci	/* Add the working vars back into context.state[] */
93bf215546Sopenharmony_ci	state[0] += a;
94bf215546Sopenharmony_ci	state[1] += b;
95bf215546Sopenharmony_ci	state[2] += c;
96bf215546Sopenharmony_ci	state[3] += d;
97bf215546Sopenharmony_ci	state[4] += e;
98bf215546Sopenharmony_ci
99bf215546Sopenharmony_ci	/* Wipe variables */
100bf215546Sopenharmony_ci	a = b = c = d = e = 0;
101bf215546Sopenharmony_ci}
102bf215546Sopenharmony_ci
103bf215546Sopenharmony_ci
104bf215546Sopenharmony_ci/*
105bf215546Sopenharmony_ci * SHA1Init - Initialize new context
106bf215546Sopenharmony_ci */
107bf215546Sopenharmony_civoid
108bf215546Sopenharmony_ciSHA1Init(SHA1_CTX *context)
109bf215546Sopenharmony_ci{
110bf215546Sopenharmony_ci
111bf215546Sopenharmony_ci	/* SHA1 initialization constants */
112bf215546Sopenharmony_ci	context->count = 0;
113bf215546Sopenharmony_ci	context->state[0] = 0x67452301;
114bf215546Sopenharmony_ci	context->state[1] = 0xEFCDAB89;
115bf215546Sopenharmony_ci	context->state[2] = 0x98BADCFE;
116bf215546Sopenharmony_ci	context->state[3] = 0x10325476;
117bf215546Sopenharmony_ci	context->state[4] = 0xC3D2E1F0;
118bf215546Sopenharmony_ci}
119bf215546Sopenharmony_ci
120bf215546Sopenharmony_ci
121bf215546Sopenharmony_ci/*
122bf215546Sopenharmony_ci * Run your data through this.
123bf215546Sopenharmony_ci */
124bf215546Sopenharmony_civoid
125bf215546Sopenharmony_ciSHA1Update(SHA1_CTX *context, const uint8_t *data, size_t len)
126bf215546Sopenharmony_ci{
127bf215546Sopenharmony_ci	size_t i, j;
128bf215546Sopenharmony_ci
129bf215546Sopenharmony_ci	j = (size_t)((context->count >> 3) & 63);
130bf215546Sopenharmony_ci	context->count += (len << 3);
131bf215546Sopenharmony_ci	if ((j + len) > 63) {
132bf215546Sopenharmony_ci		(void)memcpy(&context->buffer[j], data, (i = 64-j));
133bf215546Sopenharmony_ci		SHA1Transform(context->state, context->buffer);
134bf215546Sopenharmony_ci		for ( ; i + 63 < len; i += 64)
135bf215546Sopenharmony_ci			SHA1Transform(context->state, (uint8_t *)&data[i]);
136bf215546Sopenharmony_ci		j = 0;
137bf215546Sopenharmony_ci	} else {
138bf215546Sopenharmony_ci		i = 0;
139bf215546Sopenharmony_ci	}
140bf215546Sopenharmony_ci	(void)memcpy(&context->buffer[j], &data[i], len - i);
141bf215546Sopenharmony_ci}
142bf215546Sopenharmony_ci
143bf215546Sopenharmony_ci
144bf215546Sopenharmony_ci/*
145bf215546Sopenharmony_ci * Add padding and return the message digest.
146bf215546Sopenharmony_ci */
147bf215546Sopenharmony_civoid
148bf215546Sopenharmony_ciSHA1Pad(SHA1_CTX *context)
149bf215546Sopenharmony_ci{
150bf215546Sopenharmony_ci	uint8_t finalcount[8];
151bf215546Sopenharmony_ci	uint32_t i;
152bf215546Sopenharmony_ci
153bf215546Sopenharmony_ci	for (i = 0; i < 8; i++) {
154bf215546Sopenharmony_ci		finalcount[i] = (uint8_t)((context->count >>
155bf215546Sopenharmony_ci		    ((7 - (i & 7)) * 8)) & 255);	/* Endian independent */
156bf215546Sopenharmony_ci	}
157bf215546Sopenharmony_ci	SHA1Update(context, (uint8_t *)"\200", 1);
158bf215546Sopenharmony_ci	while ((context->count & 504) != 448)
159bf215546Sopenharmony_ci		SHA1Update(context, (uint8_t *)"\0", 1);
160bf215546Sopenharmony_ci	SHA1Update(context, finalcount, 8); /* Should cause a SHA1Transform() */
161bf215546Sopenharmony_ci}
162bf215546Sopenharmony_ci
163bf215546Sopenharmony_civoid
164bf215546Sopenharmony_ciSHA1Final(uint8_t digest[SHA1_DIGEST_LENGTH], SHA1_CTX *context)
165bf215546Sopenharmony_ci{
166bf215546Sopenharmony_ci	uint32_t i;
167bf215546Sopenharmony_ci
168bf215546Sopenharmony_ci	SHA1Pad(context);
169bf215546Sopenharmony_ci	for (i = 0; i < SHA1_DIGEST_LENGTH; i++) {
170bf215546Sopenharmony_ci		digest[i] = (uint8_t)
171bf215546Sopenharmony_ci		   ((context->state[i>>2] >> ((3-(i & 3)) * 8) ) & 255);
172bf215546Sopenharmony_ci	}
173bf215546Sopenharmony_ci	memset(context, 0, sizeof(*context));
174bf215546Sopenharmony_ci}
175