// SPDX-License-Identifier: GPL-2.0-or-later
/* Kernel cryptographic api.
* cast6.c - Cast6 cipher algorithm [rfc2612].
*
* CAST-256 (*cast6*) is a DES like Substitution-Permutation Network (SPN)
* cryptosystem built upon the CAST-128 (*cast5*) [rfc2144] encryption
* algorithm.
*
* Copyright (C) 2003 Kartikey Mahendra Bhatt <kartik_me@hotmail.com>.
*/
#include <linux/unaligned.h>
#include <crypto/algapi.h>
#include <linux/init.h>
#include <linux/module.h>
#include <linux/errno.h>
#include <linux/string.h>
#include <linux/types.h>
#include <crypto/cast6.h>
#define s1 cast_s1
#define s2 cast_s2
#define s3 cast_s3
#define s4 cast_s4
#define F1(D, r, m) ((I = ((m) + (D))), (I = rol32(I, (r))), \
(((s1[I >> 24 ] ^ s2[(I>>16 )&0 xff]) - s3[(I>>8 )&0 xff]) + s4[I&0 xff]))
#define F2(D, r, m) ((I = ((m) ^ (D))), (I = rol32(I, (r))), \
(((s1[I >> 24 ] - s2[(I>>16 )&0 xff]) + s3[(I>>8 )&0 xff]) ^ s4[I&0 xff]))
#define F3(D, r, m) ((I = ((m) - (D))), (I = rol32(I, (r))), \
(((s1[I >> 24 ] + s2[(I>>16 )&0 xff]) ^ s3[(I>>8 )&0 xff]) - s4[I&0 xff]))
static const u32 Tm[24 ][8 ] = {
{ 0 x5a827999, 0 xc95c653a, 0 x383650db, 0 xa7103c7c, 0 x15ea281d,
0 x84c413be, 0 xf39dff5f, 0 x6277eb00 } ,
{ 0 xd151d6a1, 0 x402bc242, 0 xaf05ade3, 0 x1ddf9984, 0 x8cb98525,
0 xfb9370c6, 0 x6a6d5c67, 0 xd9474808 } ,
{ 0 x482133a9, 0 xb6fb1f4a, 0 x25d50aeb, 0 x94aef68c, 0 x0388e22d,
0 x7262cdce, 0 xe13cb96f, 0 x5016a510 } ,
{ 0 xbef090b1, 0 x2dca7c52, 0 x9ca467f3, 0 x0b7e5394, 0 x7a583f35,
0 xe9322ad6, 0 x580c1677, 0 xc6e60218 } ,
{ 0 x35bfedb9, 0 xa499d95a, 0 x1373c4fb, 0 x824db09c, 0 xf1279c3d,
0 x600187de, 0 xcedb737f, 0 x3db55f20 } ,
{ 0 xac8f4ac1, 0 x1b693662, 0 x8a432203, 0 xf91d0da4, 0 x67f6f945,
0 xd6d0e4e6, 0 x45aad087, 0 xb484bc28 } ,
{ 0 x235ea7c9, 0 x9238936a, 0 x01127f0b, 0 x6fec6aac, 0 xdec6564d,
0 x4da041ee, 0 xbc7a2d8f, 0 x2b541930 } ,
{ 0 x9a2e04d1, 0 x0907f072, 0 x77e1dc13, 0 xe6bbc7b4, 0 x5595b355,
0 xc46f9ef6, 0 x33498a97, 0 xa2237638 } ,
{ 0 x10fd61d9, 0 x7fd74d7a, 0 xeeb1391b, 0 x5d8b24bc, 0 xcc65105d,
0 x3b3efbfe, 0 xaa18e79f, 0 x18f2d340 } ,
{ 0 x87ccbee1, 0 xf6a6aa82, 0 x65809623, 0 xd45a81c4, 0 x43346d65,
0 xb20e5906, 0 x20e844a7, 0 x8fc23048 } ,
{ 0 xfe9c1be9, 0 x6d76078a, 0 xdc4ff32b, 0 x4b29decc, 0 xba03ca6d,
0 x28ddb60e, 0 x97b7a1af, 0 x06918d50 } ,
{ 0 x756b78f1, 0 xe4456492, 0 x531f5033, 0 xc1f93bd4, 0 x30d32775,
0 x9fad1316, 0 x0e86feb7, 0 x7d60ea58 } ,
{ 0 xec3ad5f9, 0 x5b14c19a, 0 xc9eead3b, 0 x38c898dc, 0 xa7a2847d,
0 x167c701e, 0 x85565bbf, 0 xf4304760 } ,
{ 0 x630a3301, 0 xd1e41ea2, 0 x40be0a43, 0 xaf97f5e4, 0 x1e71e185,
0 x8d4bcd26, 0 xfc25b8c7, 0 x6affa468 } ,
{ 0 xd9d99009, 0 x48b37baa, 0 xb78d674b, 0 x266752ec, 0 x95413e8d,
0 x041b2a2e, 0 x72f515cf, 0 xe1cf0170 } ,
{ 0 x50a8ed11, 0 xbf82d8b2, 0 x2e5cc453, 0 x9d36aff4, 0 x0c109b95,
0 x7aea8736, 0 xe9c472d7, 0 x589e5e78 } ,
{ 0 xc7784a19, 0 x365235ba, 0 xa52c215b, 0 x14060cfc, 0 x82dff89d,
0 xf1b9e43e, 0 x6093cfdf, 0 xcf6dbb80 } ,
{ 0 x3e47a721, 0 xad2192c2, 0 x1bfb7e63, 0 x8ad56a04, 0 xf9af55a5,
0 x68894146, 0 xd7632ce7, 0 x463d1888 } ,
{ 0 xb5170429, 0 x23f0efca, 0 x92cadb6b, 0 x01a4c70c, 0 x707eb2ad,
0 xdf589e4e, 0 x4e3289ef, 0 xbd0c7590 } ,
{ 0 x2be66131, 0 x9ac04cd2, 0 x099a3873, 0 x78742414, 0 xe74e0fb5,
0 x5627fb56, 0 xc501e6f7, 0 x33dbd298 } ,
{ 0 xa2b5be39, 0 x118fa9da, 0 x8069957b, 0 xef43811c, 0 x5e1d6cbd,
0 xccf7585e, 0 x3bd143ff, 0 xaaab2fa0 } ,
{ 0 x19851b41, 0 x885f06e2, 0 xf738f283, 0 x6612de24, 0 xd4ecc9c5,
0 x43c6b566, 0 xb2a0a107, 0 x217a8ca8 } ,
{ 0 x90547849, 0 xff2e63ea, 0 x6e084f8b, 0 xdce23b2c, 0 x4bbc26cd,
0 xba96126e, 0 x296ffe0f, 0 x9849e9b0 } ,
{ 0 x0723d551, 0 x75fdc0f2, 0 xe4d7ac93, 0 x53b19834, 0 xc28b83d5,
0 x31656f76, 0 xa03f5b17, 0 x0f1946b8 }
};
static const u8 Tr[4 ][8 ] = {
{ 0 x13, 0 x04, 0 x15, 0 x06, 0 x17, 0 x08, 0 x19, 0 x0a } ,
{ 0 x1b, 0 x0c, 0 x1d, 0 x0e, 0 x1f, 0 x10, 0 x01, 0 x12 } ,
{ 0 x03, 0 x14, 0 x05, 0 x16, 0 x07, 0 x18, 0 x09, 0 x1a } ,
{ 0 x0b, 0 x1c, 0 x0d, 0 x1e, 0 x0f, 0 x00, 0 x11, 0 x02 }
};
/* forward octave */
static inline void W(u32 *key, unsigned int i)
{
u32 I;
key[6 ] ^= F1(key[7 ], Tr[i % 4 ][0 ], Tm[i][0 ]);
key[5 ] ^= F2(key[6 ], Tr[i % 4 ][1 ], Tm[i][1 ]);
key[4 ] ^= F3(key[5 ], Tr[i % 4 ][2 ], Tm[i][2 ]);
key[3 ] ^= F1(key[4 ], Tr[i % 4 ][3 ], Tm[i][3 ]);
key[2 ] ^= F2(key[3 ], Tr[i % 4 ][4 ], Tm[i][4 ]);
key[1 ] ^= F3(key[2 ], Tr[i % 4 ][5 ], Tm[i][5 ]);
key[0 ] ^= F1(key[1 ], Tr[i % 4 ][6 ], Tm[i][6 ]);
key[7 ] ^= F2(key[0 ], Tr[i % 4 ][7 ], Tm[i][7 ]);
}
int __cast6_setkey(struct cast6_ctx *c, const u8 *in_key, unsigned int key_len)
{
int i;
u32 key[8 ];
__be32 p_key[8 ]; /* padded key */
if (key_len % 4 != 0 )
return -EINVAL;
memset(p_key, 0 , 32 );
memcpy(p_key, in_key, key_len);
key[0 ] = be32_to_cpu(p_key[0 ]); /* A */
key[1 ] = be32_to_cpu(p_key[1 ]); /* B */
key[2 ] = be32_to_cpu(p_key[2 ]); /* C */
key[3 ] = be32_to_cpu(p_key[3 ]); /* D */
key[4 ] = be32_to_cpu(p_key[4 ]); /* E */
key[5 ] = be32_to_cpu(p_key[5 ]); /* F */
key[6 ] = be32_to_cpu(p_key[6 ]); /* G */
key[7 ] = be32_to_cpu(p_key[7 ]); /* H */
for (i = 0 ; i < 12 ; i++) {
W(key, 2 * i);
W(key, 2 * i + 1 );
c->Kr[i][0 ] = key[0 ] & 0 x1f;
c->Kr[i][1 ] = key[2 ] & 0 x1f;
c->Kr[i][2 ] = key[4 ] & 0 x1f;
c->Kr[i][3 ] = key[6 ] & 0 x1f;
c->Km[i][0 ] = key[7 ];
c->Km[i][1 ] = key[5 ];
c->Km[i][2 ] = key[3 ];
c->Km[i][3 ] = key[1 ];
}
return 0 ;
}
EXPORT_SYMBOL_GPL(__cast6_setkey);
int cast6_setkey(struct crypto_tfm *tfm, const u8 *key, unsigned int keylen)
{
return __cast6_setkey(crypto_tfm_ctx(tfm), key, keylen);
}
EXPORT_SYMBOL_GPL(cast6_setkey);
/*forward quad round*/
static inline void Q(u32 *block, const u8 *Kr, const u32 *Km)
{
u32 I;
block[2 ] ^= F1(block[3 ], Kr[0 ], Km[0 ]);
block[1 ] ^= F2(block[2 ], Kr[1 ], Km[1 ]);
block[0 ] ^= F3(block[1 ], Kr[2 ], Km[2 ]);
block[3 ] ^= F1(block[0 ], Kr[3 ], Km[3 ]);
}
/*reverse quad round*/
static inline void QBAR(u32 *block, const u8 *Kr, const u32 *Km)
{
u32 I;
block[3 ] ^= F1(block[0 ], Kr[3 ], Km[3 ]);
block[0 ] ^= F3(block[1 ], Kr[2 ], Km[2 ]);
block[1 ] ^= F2(block[2 ], Kr[1 ], Km[1 ]);
block[2 ] ^= F1(block[3 ], Kr[0 ], Km[0 ]);
}
void __cast6_encrypt(const void *ctx, u8 *outbuf, const u8 *inbuf)
{
const struct cast6_ctx *c = ctx;
u32 block[4 ];
const u32 *Km;
const u8 *Kr;
block[0 ] = get_unaligned_be32(inbuf);
block[1 ] = get_unaligned_be32(inbuf + 4 );
block[2 ] = get_unaligned_be32(inbuf + 8 );
block[3 ] = get_unaligned_be32(inbuf + 12 );
Km = c->Km[0 ]; Kr = c->Kr[0 ]; Q(block, Kr, Km);
Km = c->Km[1 ]; Kr = c->Kr[1 ]; Q(block, Kr, Km);
Km = c->Km[2 ]; Kr = c->Kr[2 ]; Q(block, Kr, Km);
Km = c->Km[3 ]; Kr = c->Kr[3 ]; Q(block, Kr, Km);
Km = c->Km[4 ]; Kr = c->Kr[4 ]; Q(block, Kr, Km);
Km = c->Km[5 ]; Kr = c->Kr[5 ]; Q(block, Kr, Km);
Km = c->Km[6 ]; Kr = c->Kr[6 ]; QBAR(block, Kr, Km);
Km = c->Km[7 ]; Kr = c->Kr[7 ]; QBAR(block, Kr, Km);
Km = c->Km[8 ]; Kr = c->Kr[8 ]; QBAR(block, Kr, Km);
Km = c->Km[9 ]; Kr = c->Kr[9 ]; QBAR(block, Kr, Km);
Km = c->Km[10 ]; Kr = c->Kr[10 ]; QBAR(block, Kr, Km);
Km = c->Km[11 ]; Kr = c->Kr[11 ]; QBAR(block, Kr, Km);
put_unaligned_be32(block[0 ], outbuf);
put_unaligned_be32(block[1 ], outbuf + 4 );
put_unaligned_be32(block[2 ], outbuf + 8 );
put_unaligned_be32(block[3 ], outbuf + 12 );
}
EXPORT_SYMBOL_GPL(__cast6_encrypt);
static void cast6_encrypt(struct crypto_tfm *tfm, u8 *outbuf, const u8 *inbuf)
{
__cast6_encrypt(crypto_tfm_ctx(tfm), outbuf, inbuf);
}
void __cast6_decrypt(const void *ctx, u8 *outbuf, const u8 *inbuf)
{
const struct cast6_ctx *c = ctx;
u32 block[4 ];
const u32 *Km;
const u8 *Kr;
block[0 ] = get_unaligned_be32(inbuf);
block[1 ] = get_unaligned_be32(inbuf + 4 );
block[2 ] = get_unaligned_be32(inbuf + 8 );
block[3 ] = get_unaligned_be32(inbuf + 12 );
Km = c->Km[11 ]; Kr = c->Kr[11 ]; Q(block, Kr, Km);
Km = c->Km[10 ]; Kr = c->Kr[10 ]; Q(block, Kr, Km);
Km = c->Km[9 ]; Kr = c->Kr[9 ]; Q(block, Kr, Km);
Km = c->Km[8 ]; Kr = c->Kr[8 ]; Q(block, Kr, Km);
Km = c->Km[7 ]; Kr = c->Kr[7 ]; Q(block, Kr, Km);
Km = c->Km[6 ]; Kr = c->Kr[6 ]; Q(block, Kr, Km);
Km = c->Km[5 ]; Kr = c->Kr[5 ]; QBAR(block, Kr, Km);
Km = c->Km[4 ]; Kr = c->Kr[4 ]; QBAR(block, Kr, Km);
Km = c->Km[3 ]; Kr = c->Kr[3 ]; QBAR(block, Kr, Km);
Km = c->Km[2 ]; Kr = c->Kr[2 ]; QBAR(block, Kr, Km);
Km = c->Km[1 ]; Kr = c->Kr[1 ]; QBAR(block, Kr, Km);
Km = c->Km[0 ]; Kr = c->Kr[0 ]; QBAR(block, Kr, Km);
put_unaligned_be32(block[0 ], outbuf);
put_unaligned_be32(block[1 ], outbuf + 4 );
put_unaligned_be32(block[2 ], outbuf + 8 );
put_unaligned_be32(block[3 ], outbuf + 12 );
}
EXPORT_SYMBOL_GPL(__cast6_decrypt);
static void cast6_decrypt(struct crypto_tfm *tfm, u8 *outbuf, const u8 *inbuf)
{
__cast6_decrypt(crypto_tfm_ctx(tfm), outbuf, inbuf);
}
static struct crypto_alg alg = {
.cra_name = "cast6" ,
.cra_driver_name = "cast6-generic" ,
.cra_priority = 100 ,
.cra_flags = CRYPTO_ALG_TYPE_CIPHER,
.cra_blocksize = CAST6_BLOCK_SIZE,
.cra_ctxsize = sizeof (struct cast6_ctx),
.cra_module = THIS_MODULE,
.cra_u = {
.cipher = {
.cia_min_keysize = CAST6_MIN_KEY_SIZE,
.cia_max_keysize = CAST6_MAX_KEY_SIZE,
.cia_setkey = cast6_setkey,
.cia_encrypt = cast6_encrypt,
.cia_decrypt = cast6_decrypt}
}
};
static int __init cast6_mod_init(void )
{
return crypto_register_alg(&alg);
}
static void __exit cast6_mod_fini(void )
{
crypto_unregister_alg(&alg);
}
module_init(cast6_mod_init);
module_exit(cast6_mod_fini);
MODULE_LICENSE("GPL" );
MODULE_DESCRIPTION("Cast6 Cipher Algorithm" );
MODULE_ALIAS_CRYPTO("cast6" );
MODULE_ALIAS_CRYPTO("cast6-generic" );
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