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📄 digest-sha1.c

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/* $Id: digest-sha1.c,v 1.12 2002/10/02 22:02:08 hvr Exp $ * * Modified by Andrew McDonald <andrew@mcdonald.org.uk> from md5glue * by Alan Smithee, mailed to maintainer on pulped trees. * * Contains SHA-1 code from Steve Reid, licensed in the public domain. *  * This program is free software; you can redistribute it and/or modify it * under the terms of the GNU General Public License as published by the * Free Software Foundation; either version 2, or (at your option) any * later version. * */#include <linux/module.h>#include <linux/init.h>#include <linux/types.h>#include <linux/crypto.h>#include <asm/uaccess.h>#include <asm/byteorder.h>#ifdef MODULE_LICENSEMODULE_LICENSE("GPL");#endif /* MODULE_LICENSE */#ifdef MODULE_DESCRIPTIONMODULE_DESCRIPTION ("SHA1 Digest / CryptoAPI");#endiftypedef struct {	u64 count;	u32 state[5];	u8 buffer[64];} sha1_ctx_t;#define rol(value, bits) (((value) << (bits)) | ((value) >> (32 - (bits))))/* blk0() and blk() perform the initial expand. *//* I got the idea of expanding during the round function from SSLeay */# define blk0(i) block32[i]#define blk(i) (block32[i&15] = rol(block32[(i+13)&15]^block32[(i+8)&15] \    ^block32[(i+2)&15]^block32[i&15],1))/* (R0+R1), R2, R3, R4 are the different operations used in SHA1 */#define R0(v,w,x,y,z,i) z+=((w&(x^y))^y)+blk0(i)+0x5A827999+rol(v,5); \                        w=rol(w,30);#define R1(v,w,x,y,z,i) z+=((w&(x^y))^y)+blk(i)+0x5A827999+rol(v,5); \                        w=rol(w,30);#define R2(v,w,x,y,z,i) z+=(w^x^y)+blk(i)+0x6ED9EBA1+rol(v,5);w=rol(w,30);#define R3(v,w,x,y,z,i) z+=(((w|x)&y)|(w&x))+blk(i)+0x8F1BBCDC+rol(v,5); \                        w=rol(w,30);#define R4(v,w,x,y,z,i) z+=(w^x^y)+blk(i)+0xCA62C1D6+rol(v,5);w=rol(w,30);/* Hash a single 512-bit block. This is the core of the algorithm. */static voidSHA1Transform(u32 state[5], const u8 buffer[64]){	register u32 a, b, c, d, e;	u32 block32[16];	/* convert/copy data to workspace */	for (a = 0; a < sizeof(block32)/sizeof(u32); a++)	  block32[a] = be32_to_cpu (((const u32 *)buffer)[a]);	/* Copy context->state[] to working vars */	a = state[0];	b = state[1];	c = state[2];	d = state[3];	e = state[4];	/* 4 rounds of 20 operations each. Loop unrolled. */	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	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);	/* Add the working vars back into context.state[] */	state[0] += a;	state[1] += b;	state[2] += c;	state[3] += d;	state[4] += e;	/* Wipe variables */	a = b = c = d = e = 0;	memset (block32, 0x00, sizeof block32);}/* SHA1Init - Initialize new context */static inline voidSHA1Init(sha1_ctx_t* ctx){	/* SHA1 initialization constants */	const static sha1_ctx_t initstate = {	  0,	  { 0x67452301, 0xEFCDAB89, 0x98BADCFE, 0x10325476, 0xC3D2E1F0 },	  { 0, }	};	*ctx = initstate;}/* Run your data through this. */static voidSHA1Update(sha1_ctx_t* ctx, const u8* data, unsigned len){	unsigned i, j;	j = (ctx->count >> 3) & 0x3f;	ctx->count += len << 3;	if ((j + len) > 63) {		memcpy(&ctx->buffer[j], data, (i = 64-j));		SHA1Transform(ctx->state, ctx->buffer);		for ( ; i + 63 < len; i += 64) {			SHA1Transform(ctx->state, &data[i]);		}		j = 0;	}	else i = 0;	memcpy(&ctx->buffer[j], &data[i], len - i);}/* Add padding and return the message digest. */static voidSHA1Final(sha1_ctx_t* ctx, u8 digest[20]){	const static u8 padding[64] = { 0x80, };	u32 i, j, index, padLen;	u64 t;	u8 bits[8] = { 0, };	t = ctx->count;	bits[7] = 0xff & t; t>>=8;	bits[6] = 0xff & t; t>>=8;	bits[5] = 0xff & t; t>>=8;	bits[4] = 0xff & t; t>>=8;	bits[3] = 0xff & t; t>>=8;	bits[2] = 0xff & t; t>>=8;	bits[1] = 0xff & t; t>>=8;	bits[0] = 0xff & t;	/* Pad out to 56 mod 64 */	index = (ctx->count >> 3) & 0x3f;	padLen = (index < 56) ? (56 - index) : ((64+56) - index);	SHA1Update(ctx, padding, padLen);	/* Append length */	SHA1Update(ctx, bits, sizeof bits); 	/* Store state in digest */	for (i = j = 0; i < 5; i++, j += 4) {		u32 t2 = ctx->state[i];		digest[j+3] = t2 & 0xff; t2>>=8;		digest[j+2] = t2 & 0xff; t2>>=8;		digest[j+1] = t2 & 0xff; t2>>=8;		digest[j  ] = t2 & 0xff;	}	/* Wipe context */	memset(ctx, 0, sizeof *ctx);}/* * */static intsha1_open(struct digest_context *cx, int atomic){	sha1_ctx_t *const ctx = (sha1_ctx_t *) cx->digest_info;	SHA1Init (ctx);	return 0;}static intsha1_update(struct digest_context *cx, const u8 *in, int size, int atomic){	sha1_ctx_t *const ctx = (sha1_ctx_t *) cx->digest_info;	SHA1Update (ctx, in, size);	return 0;}static intsha1_digest(struct digest_context *cx, u8 *out, int atomic){	sha1_ctx_t *const ctx = (sha1_ctx_t *) cx->digest_info;	sha1_ctx_t *const ctx_tmp = kmalloc (sizeof *ctx_tmp, GFP_KERNEL);	if (!ctx_tmp)		return -ENOMEM;	*ctx_tmp = *ctx;	SHA1Final (ctx_tmp, out);	kfree (ctx_tmp);	return 0;}static intsha1_close(struct digest_context *cx, u8 *out, int atomic){	sha1_ctx_t *const ctx = (sha1_ctx_t *) cx->digest_info;	static u8 tmp[20];	SHA1Final(ctx, out ? out : tmp);	return 0;}#define DIGEST_ID		sha1#define DIGEST_BLOCKSIZE	20#include "gen-hash.h"EXPORT_NO_SYMBOLS;

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