2 * xfrm algorithm interface
4 * Copyright (c) 2002 James Morris <jmorris@intercode.com.au>
6 * This program is free software; you can redistribute it and/or modify it
7 * under the terms of the GNU General Public License as published by the Free
8 * Software Foundation; either version 2 of the License, or (at your option)
12 #include <linux/module.h>
13 #include <linux/kernel.h>
14 #include <linux/pfkeyv2.h>
15 #include <linux/crypto.h>
16 #include <linux/scatterlist.h>
18 #if defined(CONFIG_INET_ESP) || defined(CONFIG_INET_ESP_MODULE) || defined(CONFIG_INET6_ESP) || defined(CONFIG_INET6_ESP_MODULE)
23 * Algorithms supported by IPsec. These entries contain properties which
24 * are used in key negotiation and xfrm processing, and are used to verify
25 * that instantiated crypto transforms have correct parameters for IPsec
28 static struct xfrm_algo_desc aead_list
[] = {
30 .name
= "rfc4106(gcm(aes))",
39 .sadb_alg_id
= SADB_X_EALG_AES_GCM_ICV8
,
41 .sadb_alg_minbits
= 128,
42 .sadb_alg_maxbits
= 256
46 .name
= "rfc4106(gcm(aes))",
55 .sadb_alg_id
= SADB_X_EALG_AES_GCM_ICV12
,
57 .sadb_alg_minbits
= 128,
58 .sadb_alg_maxbits
= 256
62 .name
= "rfc4106(gcm(aes))",
71 .sadb_alg_id
= SADB_X_EALG_AES_GCM_ICV16
,
73 .sadb_alg_minbits
= 128,
74 .sadb_alg_maxbits
= 256
78 .name
= "rfc4309(ccm(aes))",
87 .sadb_alg_id
= SADB_X_EALG_AES_CCM_ICV8
,
89 .sadb_alg_minbits
= 128,
90 .sadb_alg_maxbits
= 256
94 .name
= "rfc4309(ccm(aes))",
103 .sadb_alg_id
= SADB_X_EALG_AES_CCM_ICV12
,
105 .sadb_alg_minbits
= 128,
106 .sadb_alg_maxbits
= 256
110 .name
= "rfc4309(ccm(aes))",
114 .icv_truncbits
= 128,
119 .sadb_alg_id
= SADB_X_EALG_AES_CCM_ICV16
,
121 .sadb_alg_minbits
= 128,
122 .sadb_alg_maxbits
= 256
126 .name
= "rfc4543(gcm(aes))",
130 .icv_truncbits
= 128,
135 .sadb_alg_id
= SADB_X_EALG_NULL_AES_GMAC
,
137 .sadb_alg_minbits
= 128,
138 .sadb_alg_maxbits
= 256
143 static struct xfrm_algo_desc aalg_list
[] = {
145 .name
= "digest_null",
155 .sadb_alg_id
= SADB_X_AALG_NULL
,
157 .sadb_alg_minbits
= 0,
158 .sadb_alg_maxbits
= 0
173 .sadb_alg_id
= SADB_AALG_MD5HMAC
,
175 .sadb_alg_minbits
= 128,
176 .sadb_alg_maxbits
= 128
180 .name
= "hmac(sha1)",
191 .sadb_alg_id
= SADB_AALG_SHA1HMAC
,
193 .sadb_alg_minbits
= 160,
194 .sadb_alg_maxbits
= 160
198 .name
= "hmac(sha256)",
209 .sadb_alg_id
= SADB_X_AALG_SHA2_256HMAC
,
211 .sadb_alg_minbits
= 256,
212 .sadb_alg_maxbits
= 256
216 .name
= "hmac(sha384)",
220 .icv_truncbits
= 192,
226 .sadb_alg_id
= SADB_X_AALG_SHA2_384HMAC
,
228 .sadb_alg_minbits
= 384,
229 .sadb_alg_maxbits
= 384
233 .name
= "hmac(sha512)",
237 .icv_truncbits
= 256,
243 .sadb_alg_id
= SADB_X_AALG_SHA2_512HMAC
,
245 .sadb_alg_minbits
= 512,
246 .sadb_alg_maxbits
= 512
250 .name
= "hmac(rmd160)",
261 .sadb_alg_id
= SADB_X_AALG_RIPEMD160HMAC
,
263 .sadb_alg_minbits
= 160,
264 .sadb_alg_maxbits
= 160
278 .sadb_alg_id
= SADB_X_AALG_AES_XCBC_MAC
,
280 .sadb_alg_minbits
= 128,
281 .sadb_alg_maxbits
= 128
286 static struct xfrm_algo_desc ealg_list
[] = {
288 .name
= "ecb(cipher_null)",
289 .compat
= "cipher_null",
299 .sadb_alg_id
= SADB_EALG_NULL
,
301 .sadb_alg_minbits
= 0,
302 .sadb_alg_maxbits
= 0
317 .sadb_alg_id
= SADB_EALG_DESCBC
,
319 .sadb_alg_minbits
= 64,
320 .sadb_alg_maxbits
= 64
324 .name
= "cbc(des3_ede)",
325 .compat
= "des3_ede",
335 .sadb_alg_id
= SADB_EALG_3DESCBC
,
337 .sadb_alg_minbits
= 192,
338 .sadb_alg_maxbits
= 192
342 .name
= "cbc(cast5)",
353 .sadb_alg_id
= SADB_X_EALG_CASTCBC
,
355 .sadb_alg_minbits
= 40,
356 .sadb_alg_maxbits
= 128
360 .name
= "cbc(blowfish)",
361 .compat
= "blowfish",
371 .sadb_alg_id
= SADB_X_EALG_BLOWFISHCBC
,
373 .sadb_alg_minbits
= 40,
374 .sadb_alg_maxbits
= 448
389 .sadb_alg_id
= SADB_X_EALG_AESCBC
,
391 .sadb_alg_minbits
= 128,
392 .sadb_alg_maxbits
= 256
396 .name
= "cbc(serpent)",
407 .sadb_alg_id
= SADB_X_EALG_SERPENTCBC
,
409 .sadb_alg_minbits
= 128,
410 .sadb_alg_maxbits
= 256,
414 .name
= "cbc(camellia)",
415 .compat
= "camellia",
425 .sadb_alg_id
= SADB_X_EALG_CAMELLIACBC
,
427 .sadb_alg_minbits
= 128,
428 .sadb_alg_maxbits
= 256
432 .name
= "cbc(twofish)",
443 .sadb_alg_id
= SADB_X_EALG_TWOFISHCBC
,
445 .sadb_alg_minbits
= 128,
446 .sadb_alg_maxbits
= 256
450 .name
= "rfc3686(ctr(aes))",
455 .defkeybits
= 160, /* 128-bit key + 32-bit nonce */
460 .sadb_alg_id
= SADB_X_EALG_AESCTR
,
462 .sadb_alg_minbits
= 160,
463 .sadb_alg_maxbits
= 288
468 static struct xfrm_algo_desc calg_list
[] = {
476 .desc
= { .sadb_alg_id
= SADB_X_CALG_DEFLATE
}
485 .desc
= { .sadb_alg_id
= SADB_X_CALG_LZS
}
494 .desc
= { .sadb_alg_id
= SADB_X_CALG_LZJH
}
498 static inline int aead_entries(void)
500 return ARRAY_SIZE(aead_list
);
503 static inline int aalg_entries(void)
505 return ARRAY_SIZE(aalg_list
);
508 static inline int ealg_entries(void)
510 return ARRAY_SIZE(ealg_list
);
513 static inline int calg_entries(void)
515 return ARRAY_SIZE(calg_list
);
518 struct xfrm_algo_list
{
519 struct xfrm_algo_desc
*algs
;
525 static const struct xfrm_algo_list xfrm_aead_list
= {
527 .entries
= ARRAY_SIZE(aead_list
),
528 .type
= CRYPTO_ALG_TYPE_AEAD
,
529 .mask
= CRYPTO_ALG_TYPE_MASK
,
532 static const struct xfrm_algo_list xfrm_aalg_list
= {
534 .entries
= ARRAY_SIZE(aalg_list
),
535 .type
= CRYPTO_ALG_TYPE_HASH
,
536 .mask
= CRYPTO_ALG_TYPE_HASH_MASK
,
539 static const struct xfrm_algo_list xfrm_ealg_list
= {
541 .entries
= ARRAY_SIZE(ealg_list
),
542 .type
= CRYPTO_ALG_TYPE_BLKCIPHER
,
543 .mask
= CRYPTO_ALG_TYPE_BLKCIPHER_MASK
,
546 static const struct xfrm_algo_list xfrm_calg_list
= {
548 .entries
= ARRAY_SIZE(calg_list
),
549 .type
= CRYPTO_ALG_TYPE_COMPRESS
,
550 .mask
= CRYPTO_ALG_TYPE_MASK
,
553 static struct xfrm_algo_desc
*xfrm_find_algo(
554 const struct xfrm_algo_list
*algo_list
,
555 int match(const struct xfrm_algo_desc
*entry
, const void *data
),
556 const void *data
, int probe
)
558 struct xfrm_algo_desc
*list
= algo_list
->algs
;
561 for (i
= 0; i
< algo_list
->entries
; i
++) {
562 if (!match(list
+ i
, data
))
565 if (list
[i
].available
)
571 status
= crypto_has_alg(list
[i
].name
, algo_list
->type
,
576 list
[i
].available
= status
;
582 static int xfrm_alg_id_match(const struct xfrm_algo_desc
*entry
,
585 return entry
->desc
.sadb_alg_id
== (unsigned long)data
;
588 struct xfrm_algo_desc
*xfrm_aalg_get_byid(int alg_id
)
590 return xfrm_find_algo(&xfrm_aalg_list
, xfrm_alg_id_match
,
591 (void *)(unsigned long)alg_id
, 1);
593 EXPORT_SYMBOL_GPL(xfrm_aalg_get_byid
);
595 struct xfrm_algo_desc
*xfrm_ealg_get_byid(int alg_id
)
597 return xfrm_find_algo(&xfrm_ealg_list
, xfrm_alg_id_match
,
598 (void *)(unsigned long)alg_id
, 1);
600 EXPORT_SYMBOL_GPL(xfrm_ealg_get_byid
);
602 struct xfrm_algo_desc
*xfrm_calg_get_byid(int alg_id
)
604 return xfrm_find_algo(&xfrm_calg_list
, xfrm_alg_id_match
,
605 (void *)(unsigned long)alg_id
, 1);
607 EXPORT_SYMBOL_GPL(xfrm_calg_get_byid
);
609 static int xfrm_alg_name_match(const struct xfrm_algo_desc
*entry
,
612 const char *name
= data
;
614 return name
&& (!strcmp(name
, entry
->name
) ||
615 (entry
->compat
&& !strcmp(name
, entry
->compat
)));
618 struct xfrm_algo_desc
*xfrm_aalg_get_byname(const char *name
, int probe
)
620 return xfrm_find_algo(&xfrm_aalg_list
, xfrm_alg_name_match
, name
,
623 EXPORT_SYMBOL_GPL(xfrm_aalg_get_byname
);
625 struct xfrm_algo_desc
*xfrm_ealg_get_byname(const char *name
, int probe
)
627 return xfrm_find_algo(&xfrm_ealg_list
, xfrm_alg_name_match
, name
,
630 EXPORT_SYMBOL_GPL(xfrm_ealg_get_byname
);
632 struct xfrm_algo_desc
*xfrm_calg_get_byname(const char *name
, int probe
)
634 return xfrm_find_algo(&xfrm_calg_list
, xfrm_alg_name_match
, name
,
637 EXPORT_SYMBOL_GPL(xfrm_calg_get_byname
);
639 struct xfrm_aead_name
{
644 static int xfrm_aead_name_match(const struct xfrm_algo_desc
*entry
,
647 const struct xfrm_aead_name
*aead
= data
;
648 const char *name
= aead
->name
;
650 return aead
->icvbits
== entry
->uinfo
.aead
.icv_truncbits
&& name
&&
651 !strcmp(name
, entry
->name
);
654 struct xfrm_algo_desc
*xfrm_aead_get_byname(const char *name
, int icv_len
, int probe
)
656 struct xfrm_aead_name data
= {
661 return xfrm_find_algo(&xfrm_aead_list
, xfrm_aead_name_match
, &data
,
664 EXPORT_SYMBOL_GPL(xfrm_aead_get_byname
);
666 struct xfrm_algo_desc
*xfrm_aalg_get_byidx(unsigned int idx
)
668 if (idx
>= aalg_entries())
671 return &aalg_list
[idx
];
673 EXPORT_SYMBOL_GPL(xfrm_aalg_get_byidx
);
675 struct xfrm_algo_desc
*xfrm_ealg_get_byidx(unsigned int idx
)
677 if (idx
>= ealg_entries())
680 return &ealg_list
[idx
];
682 EXPORT_SYMBOL_GPL(xfrm_ealg_get_byidx
);
685 * Probe for the availability of crypto algorithms, and set the available
686 * flag for any algorithms found on the system. This is typically called by
687 * pfkey during userspace SA add, update or register.
689 void xfrm_probe_algs(void)
693 BUG_ON(in_softirq());
695 for (i
= 0; i
< aalg_entries(); i
++) {
696 status
= crypto_has_hash(aalg_list
[i
].name
, 0,
698 if (aalg_list
[i
].available
!= status
)
699 aalg_list
[i
].available
= status
;
702 for (i
= 0; i
< ealg_entries(); i
++) {
703 status
= crypto_has_blkcipher(ealg_list
[i
].name
, 0,
705 if (ealg_list
[i
].available
!= status
)
706 ealg_list
[i
].available
= status
;
709 for (i
= 0; i
< calg_entries(); i
++) {
710 status
= crypto_has_comp(calg_list
[i
].name
, 0,
712 if (calg_list
[i
].available
!= status
)
713 calg_list
[i
].available
= status
;
716 EXPORT_SYMBOL_GPL(xfrm_probe_algs
);
718 int xfrm_count_auth_supported(void)
722 for (i
= 0, n
= 0; i
< aalg_entries(); i
++)
723 if (aalg_list
[i
].available
)
727 EXPORT_SYMBOL_GPL(xfrm_count_auth_supported
);
729 int xfrm_count_enc_supported(void)
733 for (i
= 0, n
= 0; i
< ealg_entries(); i
++)
734 if (ealg_list
[i
].available
)
738 EXPORT_SYMBOL_GPL(xfrm_count_enc_supported
);
740 #if defined(CONFIG_INET_ESP) || defined(CONFIG_INET_ESP_MODULE) || defined(CONFIG_INET6_ESP) || defined(CONFIG_INET6_ESP_MODULE)
742 void *pskb_put(struct sk_buff
*skb
, struct sk_buff
*tail
, int len
)
745 skb
->data_len
+= len
;
748 return skb_put(tail
, len
);
750 EXPORT_SYMBOL_GPL(pskb_put
);
753 MODULE_LICENSE("GPL");