1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * Copyright (C)2006 USAGI/WIDE Project
6 * Kazunori Miyazawa <miyazawa@linux-ipv6.org>
9 #include <crypto/internal/cipher.h>
10 #include <crypto/internal/hash.h>
11 #include <linux/err.h>
12 #include <linux/kernel.h>
13 #include <linux/module.h>
15 static u_int32_t ks
[12] = {0x01010101, 0x01010101, 0x01010101, 0x01010101,
16 0x02020202, 0x02020202, 0x02020202, 0x02020202,
17 0x03030303, 0x03030303, 0x03030303, 0x03030303};
20 * +------------------------
22 * +------------------------
24 * +------------------------
25 * | consts (block size * 2)
26 * +------------------------
29 struct crypto_cipher
*child
;
34 * +------------------------
36 * +------------------------
38 * +------------------------
40 * +------------------------
42 * +------------------------
44 struct xcbc_desc_ctx
{
49 #define XCBC_BLOCKSIZE 16
51 static int crypto_xcbc_digest_setkey(struct crypto_shash
*parent
,
52 const u8
*inkey
, unsigned int keylen
)
54 struct xcbc_tfm_ctx
*ctx
= crypto_shash_ctx(parent
);
55 u8
*consts
= ctx
->consts
;
57 u8 key1
[XCBC_BLOCKSIZE
];
58 int bs
= sizeof(key1
);
60 if ((err
= crypto_cipher_setkey(ctx
->child
, inkey
, keylen
)))
63 crypto_cipher_encrypt_one(ctx
->child
, consts
, (u8
*)ks
+ bs
);
64 crypto_cipher_encrypt_one(ctx
->child
, consts
+ bs
, (u8
*)ks
+ bs
* 2);
65 crypto_cipher_encrypt_one(ctx
->child
, key1
, (u8
*)ks
);
67 return crypto_cipher_setkey(ctx
->child
, key1
, bs
);
71 static int crypto_xcbc_digest_init(struct shash_desc
*pdesc
)
73 struct xcbc_desc_ctx
*ctx
= shash_desc_ctx(pdesc
);
74 int bs
= crypto_shash_blocksize(pdesc
->tfm
);
75 u8
*prev
= &ctx
->odds
[bs
];
83 static int crypto_xcbc_digest_update(struct shash_desc
*pdesc
, const u8
*p
,
86 struct crypto_shash
*parent
= pdesc
->tfm
;
87 struct xcbc_tfm_ctx
*tctx
= crypto_shash_ctx(parent
);
88 struct xcbc_desc_ctx
*ctx
= shash_desc_ctx(pdesc
);
89 struct crypto_cipher
*tfm
= tctx
->child
;
90 int bs
= crypto_shash_blocksize(parent
);
94 /* checking the data can fill the block */
95 if ((ctx
->len
+ len
) <= bs
) {
96 memcpy(odds
+ ctx
->len
, p
, len
);
101 /* filling odds with new data and encrypting it */
102 memcpy(odds
+ ctx
->len
, p
, bs
- ctx
->len
);
103 len
-= bs
- ctx
->len
;
106 crypto_xor(prev
, odds
, bs
);
107 crypto_cipher_encrypt_one(tfm
, prev
, prev
);
109 /* clearing the length */
112 /* encrypting the rest of data */
114 crypto_xor(prev
, p
, bs
);
115 crypto_cipher_encrypt_one(tfm
, prev
, prev
);
120 /* keeping the surplus of blocksize */
122 memcpy(odds
, p
, len
);
129 static int crypto_xcbc_digest_final(struct shash_desc
*pdesc
, u8
*out
)
131 struct crypto_shash
*parent
= pdesc
->tfm
;
132 struct xcbc_tfm_ctx
*tctx
= crypto_shash_ctx(parent
);
133 struct xcbc_desc_ctx
*ctx
= shash_desc_ctx(pdesc
);
134 struct crypto_cipher
*tfm
= tctx
->child
;
135 int bs
= crypto_shash_blocksize(parent
);
136 u8
*odds
= ctx
->odds
;
137 u8
*prev
= odds
+ bs
;
138 unsigned int offset
= 0;
140 if (ctx
->len
!= bs
) {
142 u8
*p
= odds
+ ctx
->len
;
147 rlen
= bs
- ctx
->len
-1;
154 crypto_xor(prev
, odds
, bs
);
155 crypto_xor(prev
, &tctx
->consts
[offset
], bs
);
157 crypto_cipher_encrypt_one(tfm
, out
, prev
);
162 static int xcbc_init_tfm(struct crypto_tfm
*tfm
)
164 struct crypto_cipher
*cipher
;
165 struct crypto_instance
*inst
= (void *)tfm
->__crt_alg
;
166 struct crypto_cipher_spawn
*spawn
= crypto_instance_ctx(inst
);
167 struct xcbc_tfm_ctx
*ctx
= crypto_tfm_ctx(tfm
);
169 cipher
= crypto_spawn_cipher(spawn
);
171 return PTR_ERR(cipher
);
178 static void xcbc_exit_tfm(struct crypto_tfm
*tfm
)
180 struct xcbc_tfm_ctx
*ctx
= crypto_tfm_ctx(tfm
);
181 crypto_free_cipher(ctx
->child
);
184 static int xcbc_create(struct crypto_template
*tmpl
, struct rtattr
**tb
)
186 struct shash_instance
*inst
;
187 struct crypto_cipher_spawn
*spawn
;
188 struct crypto_alg
*alg
;
192 err
= crypto_check_attr_type(tb
, CRYPTO_ALG_TYPE_SHASH
, &mask
);
196 inst
= kzalloc(sizeof(*inst
) + sizeof(*spawn
), GFP_KERNEL
);
199 spawn
= shash_instance_ctx(inst
);
201 err
= crypto_grab_cipher(spawn
, shash_crypto_instance(inst
),
202 crypto_attr_alg_name(tb
[1]), 0, mask
);
205 alg
= crypto_spawn_cipher_alg(spawn
);
208 if (alg
->cra_blocksize
!= XCBC_BLOCKSIZE
)
211 err
= crypto_inst_setname(shash_crypto_instance(inst
), tmpl
->name
, alg
);
215 inst
->alg
.base
.cra_priority
= alg
->cra_priority
;
216 inst
->alg
.base
.cra_blocksize
= alg
->cra_blocksize
;
217 inst
->alg
.base
.cra_ctxsize
= sizeof(struct xcbc_tfm_ctx
) +
218 alg
->cra_blocksize
* 2;
220 inst
->alg
.digestsize
= alg
->cra_blocksize
;
221 inst
->alg
.descsize
= sizeof(struct xcbc_desc_ctx
) +
222 alg
->cra_blocksize
* 2;
224 inst
->alg
.base
.cra_init
= xcbc_init_tfm
;
225 inst
->alg
.base
.cra_exit
= xcbc_exit_tfm
;
227 inst
->alg
.init
= crypto_xcbc_digest_init
;
228 inst
->alg
.update
= crypto_xcbc_digest_update
;
229 inst
->alg
.final
= crypto_xcbc_digest_final
;
230 inst
->alg
.setkey
= crypto_xcbc_digest_setkey
;
232 inst
->free
= shash_free_singlespawn_instance
;
234 err
= shash_register_instance(tmpl
, inst
);
237 shash_free_singlespawn_instance(inst
);
242 static struct crypto_template crypto_xcbc_tmpl
= {
244 .create
= xcbc_create
,
245 .module
= THIS_MODULE
,
248 static int __init
crypto_xcbc_module_init(void)
250 return crypto_register_template(&crypto_xcbc_tmpl
);
253 static void __exit
crypto_xcbc_module_exit(void)
255 crypto_unregister_template(&crypto_xcbc_tmpl
);
258 subsys_initcall(crypto_xcbc_module_init
);
259 module_exit(crypto_xcbc_module_exit
);
261 MODULE_LICENSE("GPL");
262 MODULE_DESCRIPTION("XCBC keyed hash algorithm");
263 MODULE_ALIAS_CRYPTO("xcbc");
264 MODULE_IMPORT_NS("CRYPTO_INTERNAL");