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/*
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* Cryptographic API .
*
* Blowfish Cipher Algorithm , by Bruce Schneier .
* http : //www.counterpane.com/blowfish.html
*
* Adapted from Kerneli implementation .
*
* Copyright ( c ) Herbert Valerio Riedel < hvr @ hvrlab . org >
* Copyright ( c ) Kyle McMartin < kyle @ debian . org >
* Copyright ( c ) 2002 James Morris < jmorris @ intercode . com . au >
*
* 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 of the License , or
* ( at your option ) any later version .
*
*/
# include <linux/init.h>
# include <linux/module.h>
# include <linux/mm.h>
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# include <asm/byteorder.h>
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# include <linux/crypto.h>
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# include <linux/types.h>
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# include <crypto/blowfish.h>
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/*
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* Round loop unrolling macros , S is a pointer to a S - Box array
* organized in 4 unsigned longs at a row .
*/
# define GET32_3(x) (((x) & 0xff))
# define GET32_2(x) (((x) >> (8)) & (0xff))
# define GET32_1(x) (((x) >> (16)) & (0xff))
# define GET32_0(x) (((x) >> (24)) & (0xff))
# define bf_F(x) (((S[GET32_0(x)] + S[256 + GET32_1(x)]) ^ \
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S [ 512 + GET32_2 ( x ) ] ) + S [ 768 + GET32_3 ( x ) ] )
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# define ROUND(a, b, n) ({ b ^= P[n]; a ^= bf_F(b); })
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static void bf_encrypt ( struct crypto_tfm * tfm , u8 * dst , const u8 * src )
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{
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struct bf_ctx * ctx = crypto_tfm_ctx ( tfm ) ;
const __be32 * in_blk = ( const __be32 * ) src ;
__be32 * const out_blk = ( __be32 * ) dst ;
const u32 * P = ctx - > p ;
const u32 * S = ctx - > s ;
u32 yl = be32_to_cpu ( in_blk [ 0 ] ) ;
u32 yr = be32_to_cpu ( in_blk [ 1 ] ) ;
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ROUND ( yr , yl , 0 ) ;
ROUND ( yl , yr , 1 ) ;
ROUND ( yr , yl , 2 ) ;
ROUND ( yl , yr , 3 ) ;
ROUND ( yr , yl , 4 ) ;
ROUND ( yl , yr , 5 ) ;
ROUND ( yr , yl , 6 ) ;
ROUND ( yl , yr , 7 ) ;
ROUND ( yr , yl , 8 ) ;
ROUND ( yl , yr , 9 ) ;
ROUND ( yr , yl , 10 ) ;
ROUND ( yl , yr , 11 ) ;
ROUND ( yr , yl , 12 ) ;
ROUND ( yl , yr , 13 ) ;
ROUND ( yr , yl , 14 ) ;
ROUND ( yl , yr , 15 ) ;
yl ^ = P [ 16 ] ;
yr ^ = P [ 17 ] ;
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out_blk [ 0 ] = cpu_to_be32 ( yr ) ;
out_blk [ 1 ] = cpu_to_be32 ( yl ) ;
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}
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static void bf_decrypt ( struct crypto_tfm * tfm , u8 * dst , const u8 * src )
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{
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struct bf_ctx * ctx = crypto_tfm_ctx ( tfm ) ;
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const __be32 * in_blk = ( const __be32 * ) src ;
__be32 * const out_blk = ( __be32 * ) dst ;
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const u32 * P = ctx - > p ;
const u32 * S = ctx - > s ;
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u32 yl = be32_to_cpu ( in_blk [ 0 ] ) ;
u32 yr = be32_to_cpu ( in_blk [ 1 ] ) ;
ROUND ( yr , yl , 17 ) ;
ROUND ( yl , yr , 16 ) ;
ROUND ( yr , yl , 15 ) ;
ROUND ( yl , yr , 14 ) ;
ROUND ( yr , yl , 13 ) ;
ROUND ( yl , yr , 12 ) ;
ROUND ( yr , yl , 11 ) ;
ROUND ( yl , yr , 10 ) ;
ROUND ( yr , yl , 9 ) ;
ROUND ( yl , yr , 8 ) ;
ROUND ( yr , yl , 7 ) ;
ROUND ( yl , yr , 6 ) ;
ROUND ( yr , yl , 5 ) ;
ROUND ( yl , yr , 4 ) ;
ROUND ( yr , yl , 3 ) ;
ROUND ( yl , yr , 2 ) ;
yl ^ = P [ 1 ] ;
yr ^ = P [ 0 ] ;
out_blk [ 0 ] = cpu_to_be32 ( yr ) ;
out_blk [ 1 ] = cpu_to_be32 ( yl ) ;
}
static struct crypto_alg alg = {
. cra_name = " blowfish " ,
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. cra_driver_name = " blowfish-generic " ,
. cra_priority = 100 ,
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. cra_flags = CRYPTO_ALG_TYPE_CIPHER ,
. cra_blocksize = BF_BLOCK_SIZE ,
. cra_ctxsize = sizeof ( struct bf_ctx ) ,
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. cra_alignmask = 3 ,
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. cra_module = THIS_MODULE ,
. cra_u = { . cipher = {
. cia_min_keysize = BF_MIN_KEY_SIZE ,
. cia_max_keysize = BF_MAX_KEY_SIZE ,
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. cia_setkey = blowfish_setkey ,
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. cia_encrypt = bf_encrypt ,
. cia_decrypt = bf_decrypt } }
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} ;
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static int __init blowfish_mod_init ( void )
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{
return crypto_register_alg ( & alg ) ;
}
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static void __exit blowfish_mod_fini ( void )
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{
crypto_unregister_alg ( & alg ) ;
}
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module_init ( blowfish_mod_init ) ;
module_exit ( blowfish_mod_fini ) ;
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MODULE_LICENSE ( " GPL " ) ;
MODULE_DESCRIPTION ( " Blowfish Cipher Algorithm " ) ;
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MODULE_ALIAS_CRYPTO ( " blowfish " ) ;
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MODULE_ALIAS_CRYPTO ( " blowfish-generic " ) ;