2 * AMD Cryptographic Coprocessor (CCP) AES XTS crypto API support
4 * Copyright (C) 2013 Advanced Micro Devices, Inc.
6 * Author: Tom Lendacky <thomas.lendacky@amd.com>
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
13 #include <linux/module.h>
14 #include <linux/sched.h>
15 #include <linux/delay.h>
16 #include <linux/scatterlist.h>
17 #include <crypto/aes.h>
18 #include <crypto/internal/skcipher.h>
19 #include <crypto/scatterwalk.h>
21 #include "ccp-crypto.h"
23 struct ccp_aes_xts_def
{
28 static struct ccp_aes_xts_def aes_xts_algs
[] = {
31 .drv_name
= "xts-aes-ccp",
35 struct ccp_unit_size_map
{
40 static struct ccp_unit_size_map unit_size_map
[] = {
43 .value
= CCP_XTS_AES_UNIT_SIZE_4096
,
47 .value
= CCP_XTS_AES_UNIT_SIZE_2048
,
51 .value
= CCP_XTS_AES_UNIT_SIZE_1024
,
55 .value
= CCP_XTS_AES_UNIT_SIZE_512
,
59 .value
= CCP_XTS_AES_UNIT_SIZE__LAST
,
63 .value
= CCP_XTS_AES_UNIT_SIZE__LAST
,
67 .value
= CCP_XTS_AES_UNIT_SIZE__LAST
,
71 .value
= CCP_XTS_AES_UNIT_SIZE__LAST
,
75 .value
= CCP_XTS_AES_UNIT_SIZE_16
,
79 .value
= CCP_XTS_AES_UNIT_SIZE__LAST
,
83 static int ccp_aes_xts_complete(struct crypto_async_request
*async_req
, int ret
)
85 struct ablkcipher_request
*req
= ablkcipher_request_cast(async_req
);
86 struct ccp_aes_req_ctx
*rctx
= ablkcipher_request_ctx(req
);
91 memcpy(req
->info
, rctx
->iv
, AES_BLOCK_SIZE
);
96 static int ccp_aes_xts_setkey(struct crypto_ablkcipher
*tfm
, const u8
*key
,
99 struct ccp_ctx
*ctx
= crypto_tfm_ctx(crypto_ablkcipher_tfm(tfm
));
101 /* Only support 128-bit AES key with a 128-bit Tweak key,
102 * otherwise use the fallback
105 case AES_KEYSIZE_128
* 2:
106 memcpy(ctx
->u
.aes
.key
, key
, key_len
);
109 ctx
->u
.aes
.key_len
= key_len
/ 2;
110 sg_init_one(&ctx
->u
.aes
.key_sg
, ctx
->u
.aes
.key
, key_len
);
112 return crypto_skcipher_setkey(ctx
->u
.aes
.tfm_skcipher
, key
, key_len
);
115 static int ccp_aes_xts_crypt(struct ablkcipher_request
*req
,
116 unsigned int encrypt
)
118 struct ccp_ctx
*ctx
= crypto_tfm_ctx(req
->base
.tfm
);
119 struct ccp_aes_req_ctx
*rctx
= ablkcipher_request_ctx(req
);
124 if (!ctx
->u
.aes
.key_len
)
127 if (req
->nbytes
& (AES_BLOCK_SIZE
- 1))
133 unit_size
= CCP_XTS_AES_UNIT_SIZE__LAST
;
134 if (req
->nbytes
<= unit_size_map
[0].size
) {
135 for (unit
= 0; unit
< ARRAY_SIZE(unit_size_map
); unit
++) {
136 if (!(req
->nbytes
& (unit_size_map
[unit
].size
- 1))) {
137 unit_size
= unit_size_map
[unit
].value
;
143 if ((unit_size
== CCP_XTS_AES_UNIT_SIZE__LAST
) ||
144 (ctx
->u
.aes
.key_len
!= AES_KEYSIZE_128
)) {
145 SKCIPHER_REQUEST_ON_STACK(subreq
, ctx
->u
.aes
.tfm_skcipher
);
147 /* Use the fallback to process the request for any
148 * unsupported unit sizes or key sizes
150 skcipher_request_set_tfm(subreq
, ctx
->u
.aes
.tfm_skcipher
);
151 skcipher_request_set_callback(subreq
, req
->base
.flags
,
153 skcipher_request_set_crypt(subreq
, req
->src
, req
->dst
,
154 req
->nbytes
, req
->info
);
155 ret
= encrypt
? crypto_skcipher_encrypt(subreq
) :
156 crypto_skcipher_decrypt(subreq
);
157 skcipher_request_zero(subreq
);
161 memcpy(rctx
->iv
, req
->info
, AES_BLOCK_SIZE
);
162 sg_init_one(&rctx
->iv_sg
, rctx
->iv
, AES_BLOCK_SIZE
);
164 memset(&rctx
->cmd
, 0, sizeof(rctx
->cmd
));
165 INIT_LIST_HEAD(&rctx
->cmd
.entry
);
166 rctx
->cmd
.engine
= CCP_ENGINE_XTS_AES_128
;
167 rctx
->cmd
.u
.xts
.action
= (encrypt
) ? CCP_AES_ACTION_ENCRYPT
168 : CCP_AES_ACTION_DECRYPT
;
169 rctx
->cmd
.u
.xts
.unit_size
= unit_size
;
170 rctx
->cmd
.u
.xts
.key
= &ctx
->u
.aes
.key_sg
;
171 rctx
->cmd
.u
.xts
.key_len
= ctx
->u
.aes
.key_len
;
172 rctx
->cmd
.u
.xts
.iv
= &rctx
->iv_sg
;
173 rctx
->cmd
.u
.xts
.iv_len
= AES_BLOCK_SIZE
;
174 rctx
->cmd
.u
.xts
.src
= req
->src
;
175 rctx
->cmd
.u
.xts
.src_len
= req
->nbytes
;
176 rctx
->cmd
.u
.xts
.dst
= req
->dst
;
178 ret
= ccp_crypto_enqueue_request(&req
->base
, &rctx
->cmd
);
183 static int ccp_aes_xts_encrypt(struct ablkcipher_request
*req
)
185 return ccp_aes_xts_crypt(req
, 1);
188 static int ccp_aes_xts_decrypt(struct ablkcipher_request
*req
)
190 return ccp_aes_xts_crypt(req
, 0);
193 static int ccp_aes_xts_cra_init(struct crypto_tfm
*tfm
)
195 struct ccp_ctx
*ctx
= crypto_tfm_ctx(tfm
);
196 struct crypto_skcipher
*fallback_tfm
;
198 ctx
->complete
= ccp_aes_xts_complete
;
199 ctx
->u
.aes
.key_len
= 0;
201 fallback_tfm
= crypto_alloc_skcipher("xts(aes)", 0,
203 CRYPTO_ALG_NEED_FALLBACK
);
204 if (IS_ERR(fallback_tfm
)) {
205 pr_warn("could not load fallback driver xts(aes)\n");
206 return PTR_ERR(fallback_tfm
);
208 ctx
->u
.aes
.tfm_skcipher
= fallback_tfm
;
210 tfm
->crt_ablkcipher
.reqsize
= sizeof(struct ccp_aes_req_ctx
);
215 static void ccp_aes_xts_cra_exit(struct crypto_tfm
*tfm
)
217 struct ccp_ctx
*ctx
= crypto_tfm_ctx(tfm
);
219 crypto_free_skcipher(ctx
->u
.aes
.tfm_skcipher
);
222 static int ccp_register_aes_xts_alg(struct list_head
*head
,
223 const struct ccp_aes_xts_def
*def
)
225 struct ccp_crypto_ablkcipher_alg
*ccp_alg
;
226 struct crypto_alg
*alg
;
229 ccp_alg
= kzalloc(sizeof(*ccp_alg
), GFP_KERNEL
);
233 INIT_LIST_HEAD(&ccp_alg
->entry
);
237 snprintf(alg
->cra_name
, CRYPTO_MAX_ALG_NAME
, "%s", def
->name
);
238 snprintf(alg
->cra_driver_name
, CRYPTO_MAX_ALG_NAME
, "%s",
240 alg
->cra_flags
= CRYPTO_ALG_TYPE_ABLKCIPHER
| CRYPTO_ALG_ASYNC
|
241 CRYPTO_ALG_KERN_DRIVER_ONLY
|
242 CRYPTO_ALG_NEED_FALLBACK
;
243 alg
->cra_blocksize
= AES_BLOCK_SIZE
;
244 alg
->cra_ctxsize
= sizeof(struct ccp_ctx
);
245 alg
->cra_priority
= CCP_CRA_PRIORITY
;
246 alg
->cra_type
= &crypto_ablkcipher_type
;
247 alg
->cra_ablkcipher
.setkey
= ccp_aes_xts_setkey
;
248 alg
->cra_ablkcipher
.encrypt
= ccp_aes_xts_encrypt
;
249 alg
->cra_ablkcipher
.decrypt
= ccp_aes_xts_decrypt
;
250 alg
->cra_ablkcipher
.min_keysize
= AES_MIN_KEY_SIZE
* 2;
251 alg
->cra_ablkcipher
.max_keysize
= AES_MAX_KEY_SIZE
* 2;
252 alg
->cra_ablkcipher
.ivsize
= AES_BLOCK_SIZE
;
253 alg
->cra_init
= ccp_aes_xts_cra_init
;
254 alg
->cra_exit
= ccp_aes_xts_cra_exit
;
255 alg
->cra_module
= THIS_MODULE
;
257 ret
= crypto_register_alg(alg
);
259 pr_err("%s ablkcipher algorithm registration error (%d)\n",
265 list_add(&ccp_alg
->entry
, head
);
270 int ccp_register_aes_xts_algs(struct list_head
*head
)
274 for (i
= 0; i
< ARRAY_SIZE(aes_xts_algs
); i
++) {
275 ret
= ccp_register_aes_xts_alg(head
, &aes_xts_algs
[i
]);