mirror of
https://github.com/Dasharo/linux.git
synced 2026-03-06 15:25:10 -08:00
crypto: skcipher - Add lskcipher
Add a new API type lskcipher designed for taking straight kernel pointers instead of SG lists. Its relationship to skcipher will be analogous to that between shash and ahash. Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
This commit is contained in:
@@ -16,7 +16,11 @@ obj-$(CONFIG_CRYPTO_ALGAPI2) += crypto_algapi.o
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obj-$(CONFIG_CRYPTO_AEAD2) += aead.o
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obj-$(CONFIG_CRYPTO_GENIV) += geniv.o
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obj-$(CONFIG_CRYPTO_SKCIPHER2) += skcipher.o
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crypto_skcipher-y += lskcipher.o
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crypto_skcipher-y += skcipher.o
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obj-$(CONFIG_CRYPTO_SKCIPHER2) += crypto_skcipher.o
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obj-$(CONFIG_CRYPTO_SEQIV) += seqiv.o
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obj-$(CONFIG_CRYPTO_ECHAINIV) += echainiv.o
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@@ -929,7 +929,7 @@ static int cryptd_create(struct crypto_template *tmpl, struct rtattr **tb)
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return PTR_ERR(algt);
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switch (algt->type & algt->mask & CRYPTO_ALG_TYPE_MASK) {
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case CRYPTO_ALG_TYPE_SKCIPHER:
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case CRYPTO_ALG_TYPE_LSKCIPHER:
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return cryptd_create_skcipher(tmpl, tb, algt, &queue);
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case CRYPTO_ALG_TYPE_HASH:
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return cryptd_create_hash(tmpl, tb, algt, &queue);
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594
crypto/lskcipher.c
Normal file
594
crypto/lskcipher.c
Normal file
File diff suppressed because it is too large
Load Diff
@@ -24,8 +24,9 @@
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#include <linux/slab.h>
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#include <linux/string.h>
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#include <net/netlink.h>
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#include "skcipher.h"
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#include "internal.h"
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#define CRYPTO_ALG_TYPE_SKCIPHER_MASK 0x0000000e
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enum {
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SKCIPHER_WALK_PHYS = 1 << 0,
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@@ -43,6 +44,8 @@ struct skcipher_walk_buffer {
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u8 buffer[];
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};
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static const struct crypto_type crypto_skcipher_type;
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static int skcipher_walk_next(struct skcipher_walk *walk);
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static inline void skcipher_map_src(struct skcipher_walk *walk)
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@@ -89,11 +92,7 @@ static inline struct skcipher_alg *__crypto_skcipher_alg(
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static inline struct crypto_istat_cipher *skcipher_get_stat(
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struct skcipher_alg *alg)
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{
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#ifdef CONFIG_CRYPTO_STATS
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return &alg->stat;
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#else
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return NULL;
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#endif
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return skcipher_get_stat_common(&alg->co);
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}
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static inline int crypto_skcipher_errstat(struct skcipher_alg *alg, int err)
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@@ -468,6 +467,7 @@ static int skcipher_walk_skcipher(struct skcipher_walk *walk,
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struct skcipher_request *req)
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{
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struct crypto_skcipher *tfm = crypto_skcipher_reqtfm(req);
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struct skcipher_alg *alg = crypto_skcipher_alg(tfm);
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walk->total = req->cryptlen;
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walk->nbytes = 0;
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@@ -485,10 +485,14 @@ static int skcipher_walk_skcipher(struct skcipher_walk *walk,
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SKCIPHER_WALK_SLEEP : 0;
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walk->blocksize = crypto_skcipher_blocksize(tfm);
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walk->stride = crypto_skcipher_walksize(tfm);
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walk->ivsize = crypto_skcipher_ivsize(tfm);
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walk->alignmask = crypto_skcipher_alignmask(tfm);
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if (alg->co.base.cra_type != &crypto_skcipher_type)
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walk->stride = alg->co.chunksize;
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else
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walk->stride = alg->walksize;
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return skcipher_walk_first(walk);
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}
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@@ -616,6 +620,11 @@ int crypto_skcipher_setkey(struct crypto_skcipher *tfm, const u8 *key,
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unsigned long alignmask = crypto_skcipher_alignmask(tfm);
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int err;
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if (cipher->co.base.cra_type != &crypto_skcipher_type) {
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err = crypto_lskcipher_setkey_sg(tfm, key, keylen);
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goto out;
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}
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if (keylen < cipher->min_keysize || keylen > cipher->max_keysize)
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return -EINVAL;
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@@ -624,6 +633,7 @@ int crypto_skcipher_setkey(struct crypto_skcipher *tfm, const u8 *key,
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else
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err = cipher->setkey(tfm, key, keylen);
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out:
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if (unlikely(err)) {
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skcipher_set_needkey(tfm);
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return err;
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@@ -649,6 +659,8 @@ int crypto_skcipher_encrypt(struct skcipher_request *req)
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if (crypto_skcipher_get_flags(tfm) & CRYPTO_TFM_NEED_KEY)
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ret = -ENOKEY;
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else if (alg->co.base.cra_type != &crypto_skcipher_type)
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ret = crypto_lskcipher_encrypt_sg(req);
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else
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ret = alg->encrypt(req);
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@@ -671,6 +683,8 @@ int crypto_skcipher_decrypt(struct skcipher_request *req)
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if (crypto_skcipher_get_flags(tfm) & CRYPTO_TFM_NEED_KEY)
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ret = -ENOKEY;
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else if (alg->co.base.cra_type != &crypto_skcipher_type)
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ret = crypto_lskcipher_decrypt_sg(req);
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else
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ret = alg->decrypt(req);
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@@ -693,6 +707,9 @@ static int crypto_skcipher_init_tfm(struct crypto_tfm *tfm)
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skcipher_set_needkey(skcipher);
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if (tfm->__crt_alg->cra_type != &crypto_skcipher_type)
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return crypto_init_lskcipher_ops_sg(tfm);
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if (alg->exit)
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skcipher->base.exit = crypto_skcipher_exit_tfm;
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@@ -702,6 +719,14 @@ static int crypto_skcipher_init_tfm(struct crypto_tfm *tfm)
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return 0;
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}
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static unsigned int crypto_skcipher_extsize(struct crypto_alg *alg)
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{
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if (alg->cra_type != &crypto_skcipher_type)
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return sizeof(struct crypto_lskcipher *);
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return crypto_alg_extsize(alg);
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}
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static void crypto_skcipher_free_instance(struct crypto_instance *inst)
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{
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struct skcipher_instance *skcipher =
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@@ -770,7 +795,7 @@ static int __maybe_unused crypto_skcipher_report_stat(
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}
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static const struct crypto_type crypto_skcipher_type = {
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.extsize = crypto_alg_extsize,
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.extsize = crypto_skcipher_extsize,
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.init_tfm = crypto_skcipher_init_tfm,
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.free = crypto_skcipher_free_instance,
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#ifdef CONFIG_PROC_FS
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@@ -783,7 +808,7 @@ static const struct crypto_type crypto_skcipher_type = {
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.report_stat = crypto_skcipher_report_stat,
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#endif
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.maskclear = ~CRYPTO_ALG_TYPE_MASK,
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.maskset = CRYPTO_ALG_TYPE_MASK,
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.maskset = CRYPTO_ALG_TYPE_SKCIPHER_MASK,
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.type = CRYPTO_ALG_TYPE_SKCIPHER,
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.tfmsize = offsetof(struct crypto_skcipher, base),
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};
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@@ -834,27 +859,43 @@ int crypto_has_skcipher(const char *alg_name, u32 type, u32 mask)
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}
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EXPORT_SYMBOL_GPL(crypto_has_skcipher);
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static int skcipher_prepare_alg(struct skcipher_alg *alg)
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int skcipher_prepare_alg_common(struct skcipher_alg_common *alg)
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{
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struct crypto_istat_cipher *istat = skcipher_get_stat(alg);
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struct crypto_istat_cipher *istat = skcipher_get_stat_common(alg);
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struct crypto_alg *base = &alg->base;
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if (alg->ivsize > PAGE_SIZE / 8 || alg->chunksize > PAGE_SIZE / 8 ||
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alg->walksize > PAGE_SIZE / 8)
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if (alg->ivsize > PAGE_SIZE / 8 || alg->chunksize > PAGE_SIZE / 8)
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return -EINVAL;
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if (!alg->chunksize)
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alg->chunksize = base->cra_blocksize;
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base->cra_flags &= ~CRYPTO_ALG_TYPE_MASK;
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if (IS_ENABLED(CONFIG_CRYPTO_STATS))
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memset(istat, 0, sizeof(*istat));
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return 0;
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}
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static int skcipher_prepare_alg(struct skcipher_alg *alg)
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{
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struct crypto_alg *base = &alg->base;
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int err;
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err = skcipher_prepare_alg_common(&alg->co);
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if (err)
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return err;
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if (alg->walksize > PAGE_SIZE / 8)
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return -EINVAL;
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if (!alg->walksize)
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alg->walksize = alg->chunksize;
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base->cra_type = &crypto_skcipher_type;
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base->cra_flags &= ~CRYPTO_ALG_TYPE_MASK;
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base->cra_flags |= CRYPTO_ALG_TYPE_SKCIPHER;
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if (IS_ENABLED(CONFIG_CRYPTO_STATS))
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memset(istat, 0, sizeof(*istat));
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return 0;
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}
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30
crypto/skcipher.h
Normal file
30
crypto/skcipher.h
Normal file
@@ -0,0 +1,30 @@
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/* SPDX-License-Identifier: GPL-2.0-or-later */
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/*
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* Cryptographic API.
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*
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* Copyright (c) 2023 Herbert Xu <herbert@gondor.apana.org.au>
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*/
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#ifndef _LOCAL_CRYPTO_SKCIPHER_H
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#define _LOCAL_CRYPTO_SKCIPHER_H
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#include <crypto/internal/skcipher.h>
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#include "internal.h"
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static inline struct crypto_istat_cipher *skcipher_get_stat_common(
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struct skcipher_alg_common *alg)
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{
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#ifdef CONFIG_CRYPTO_STATS
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return &alg->stat;
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#else
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return NULL;
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#endif
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}
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int crypto_lskcipher_setkey_sg(struct crypto_skcipher *tfm, const u8 *key,
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unsigned int keylen);
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int crypto_lskcipher_encrypt_sg(struct skcipher_request *req);
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int crypto_lskcipher_decrypt_sg(struct skcipher_request *req);
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int crypto_init_lskcipher_ops_sg(struct crypto_tfm *tfm);
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int skcipher_prepare_alg_common(struct skcipher_alg_common *alg);
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#endif /* _LOCAL_CRYPTO_SKCIPHER_H */
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@@ -36,10 +36,25 @@ struct skcipher_instance {
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};
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};
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struct lskcipher_instance {
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void (*free)(struct lskcipher_instance *inst);
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union {
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struct {
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char head[offsetof(struct lskcipher_alg, co.base)];
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struct crypto_instance base;
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} s;
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struct lskcipher_alg alg;
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};
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};
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struct crypto_skcipher_spawn {
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struct crypto_spawn base;
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};
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struct crypto_lskcipher_spawn {
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struct crypto_spawn base;
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};
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struct skcipher_walk {
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union {
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struct {
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@@ -80,6 +95,12 @@ static inline struct crypto_instance *skcipher_crypto_instance(
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return &inst->s.base;
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}
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static inline struct crypto_instance *lskcipher_crypto_instance(
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struct lskcipher_instance *inst)
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{
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return &inst->s.base;
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}
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static inline struct skcipher_instance *skcipher_alg_instance(
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struct crypto_skcipher *skcipher)
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{
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@@ -87,11 +108,23 @@ static inline struct skcipher_instance *skcipher_alg_instance(
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struct skcipher_instance, alg);
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}
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static inline struct lskcipher_instance *lskcipher_alg_instance(
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struct crypto_lskcipher *lskcipher)
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{
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return container_of(crypto_lskcipher_alg(lskcipher),
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struct lskcipher_instance, alg);
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}
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static inline void *skcipher_instance_ctx(struct skcipher_instance *inst)
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{
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return crypto_instance_ctx(skcipher_crypto_instance(inst));
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}
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static inline void *lskcipher_instance_ctx(struct lskcipher_instance *inst)
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{
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return crypto_instance_ctx(lskcipher_crypto_instance(inst));
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}
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static inline void skcipher_request_complete(struct skcipher_request *req, int err)
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{
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crypto_request_complete(&req->base, err);
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@@ -101,29 +134,56 @@ int crypto_grab_skcipher(struct crypto_skcipher_spawn *spawn,
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struct crypto_instance *inst,
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const char *name, u32 type, u32 mask);
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int crypto_grab_lskcipher(struct crypto_lskcipher_spawn *spawn,
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struct crypto_instance *inst,
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const char *name, u32 type, u32 mask);
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static inline void crypto_drop_skcipher(struct crypto_skcipher_spawn *spawn)
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{
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crypto_drop_spawn(&spawn->base);
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}
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static inline void crypto_drop_lskcipher(struct crypto_lskcipher_spawn *spawn)
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{
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crypto_drop_spawn(&spawn->base);
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}
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static inline struct skcipher_alg *crypto_skcipher_spawn_alg(
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struct crypto_skcipher_spawn *spawn)
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{
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return container_of(spawn->base.alg, struct skcipher_alg, base);
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}
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static inline struct lskcipher_alg *crypto_lskcipher_spawn_alg(
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struct crypto_lskcipher_spawn *spawn)
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{
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return container_of(spawn->base.alg, struct lskcipher_alg, co.base);
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}
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static inline struct skcipher_alg *crypto_spawn_skcipher_alg(
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struct crypto_skcipher_spawn *spawn)
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{
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return crypto_skcipher_spawn_alg(spawn);
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}
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static inline struct lskcipher_alg *crypto_spawn_lskcipher_alg(
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struct crypto_lskcipher_spawn *spawn)
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{
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return crypto_lskcipher_spawn_alg(spawn);
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}
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static inline struct crypto_skcipher *crypto_spawn_skcipher(
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struct crypto_skcipher_spawn *spawn)
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{
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return crypto_spawn_tfm2(&spawn->base);
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}
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static inline struct crypto_lskcipher *crypto_spawn_lskcipher(
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struct crypto_lskcipher_spawn *spawn)
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{
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return crypto_spawn_tfm2(&spawn->base);
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}
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static inline void crypto_skcipher_set_reqsize(
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struct crypto_skcipher *skcipher, unsigned int reqsize)
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{
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@@ -144,6 +204,13 @@ void crypto_unregister_skciphers(struct skcipher_alg *algs, int count);
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int skcipher_register_instance(struct crypto_template *tmpl,
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struct skcipher_instance *inst);
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int crypto_register_lskcipher(struct lskcipher_alg *alg);
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void crypto_unregister_lskcipher(struct lskcipher_alg *alg);
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int crypto_register_lskciphers(struct lskcipher_alg *algs, int count);
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void crypto_unregister_lskciphers(struct lskcipher_alg *algs, int count);
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int lskcipher_register_instance(struct crypto_template *tmpl,
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struct lskcipher_instance *inst);
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int skcipher_walk_done(struct skcipher_walk *walk, int err);
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int skcipher_walk_virt(struct skcipher_walk *walk,
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struct skcipher_request *req,
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@@ -166,6 +233,11 @@ static inline void *crypto_skcipher_ctx(struct crypto_skcipher *tfm)
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return crypto_tfm_ctx(&tfm->base);
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}
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static inline void *crypto_lskcipher_ctx(struct crypto_lskcipher *tfm)
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{
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return crypto_tfm_ctx(&tfm->base);
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}
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static inline void *crypto_skcipher_ctx_dma(struct crypto_skcipher *tfm)
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{
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return crypto_tfm_ctx_dma(&tfm->base);
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@@ -209,21 +281,16 @@ static inline unsigned int crypto_skcipher_alg_walksize(
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return alg->walksize;
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}
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/**
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* crypto_skcipher_walksize() - obtain walk size
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* @tfm: cipher handle
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*
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* In some cases, algorithms can only perform optimally when operating on
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* multiple blocks in parallel. This is reflected by the walksize, which
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* must be a multiple of the chunksize (or equal if the concern does not
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* apply)
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*
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* Return: walk size in bytes
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*/
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static inline unsigned int crypto_skcipher_walksize(
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struct crypto_skcipher *tfm)
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static inline unsigned int crypto_lskcipher_alg_min_keysize(
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struct lskcipher_alg *alg)
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{
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return crypto_skcipher_alg_walksize(crypto_skcipher_alg(tfm));
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return alg->co.min_keysize;
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}
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static inline unsigned int crypto_lskcipher_alg_max_keysize(
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struct lskcipher_alg *alg)
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{
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return alg->co.max_keysize;
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}
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/* Helpers for simple block cipher modes of operation */
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@@ -249,5 +316,24 @@ static inline struct crypto_alg *skcipher_ialg_simple(
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return crypto_spawn_cipher_alg(spawn);
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}
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static inline struct crypto_lskcipher *lskcipher_cipher_simple(
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struct crypto_lskcipher *tfm)
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{
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struct crypto_lskcipher **ctx = crypto_lskcipher_ctx(tfm);
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return *ctx;
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}
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struct lskcipher_instance *lskcipher_alloc_instance_simple(
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struct crypto_template *tmpl, struct rtattr **tb);
|
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static inline struct lskcipher_alg *lskcipher_ialg_simple(
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struct lskcipher_instance *inst)
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{
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struct crypto_lskcipher_spawn *spawn = lskcipher_instance_ctx(inst);
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return crypto_lskcipher_spawn_alg(spawn);
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}
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#endif /* _CRYPTO_INTERNAL_SKCIPHER_H */
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|
||||
@@ -49,6 +49,10 @@ struct crypto_sync_skcipher {
|
||||
struct crypto_skcipher base;
|
||||
};
|
||||
|
||||
struct crypto_lskcipher {
|
||||
struct crypto_tfm base;
|
||||
};
|
||||
|
||||
/*
|
||||
* struct crypto_istat_cipher - statistics for cipher algorithm
|
||||
* @encrypt_cnt: number of encrypt requests
|
||||
@@ -65,6 +69,43 @@ struct crypto_istat_cipher {
|
||||
atomic64_t err_cnt;
|
||||
};
|
||||
|
||||
#ifdef CONFIG_CRYPTO_STATS
|
||||
#define SKCIPHER_ALG_COMMON_STAT struct crypto_istat_cipher stat;
|
||||
#else
|
||||
#define SKCIPHER_ALG_COMMON_STAT
|
||||
#endif
|
||||
|
||||
/*
|
||||
* struct skcipher_alg_common - common properties of skcipher_alg
|
||||
* @min_keysize: Minimum key size supported by the transformation. This is the
|
||||
* smallest key length supported by this transformation algorithm.
|
||||
* This must be set to one of the pre-defined values as this is
|
||||
* not hardware specific. Possible values for this field can be
|
||||
* found via git grep "_MIN_KEY_SIZE" include/crypto/
|
||||
* @max_keysize: Maximum key size supported by the transformation. This is the
|
||||
* largest key length supported by this transformation algorithm.
|
||||
* This must be set to one of the pre-defined values as this is
|
||||
* not hardware specific. Possible values for this field can be
|
||||
* found via git grep "_MAX_KEY_SIZE" include/crypto/
|
||||
* @ivsize: IV size applicable for transformation. The consumer must provide an
|
||||
* IV of exactly that size to perform the encrypt or decrypt operation.
|
||||
* @chunksize: Equal to the block size except for stream ciphers such as
|
||||
* CTR where it is set to the underlying block size.
|
||||
* @stat: Statistics for cipher algorithm
|
||||
* @base: Definition of a generic crypto algorithm.
|
||||
*/
|
||||
#define SKCIPHER_ALG_COMMON { \
|
||||
unsigned int min_keysize; \
|
||||
unsigned int max_keysize; \
|
||||
unsigned int ivsize; \
|
||||
unsigned int chunksize; \
|
||||
\
|
||||
SKCIPHER_ALG_COMMON_STAT \
|
||||
\
|
||||
struct crypto_alg base; \
|
||||
}
|
||||
struct skcipher_alg_common SKCIPHER_ALG_COMMON;
|
||||
|
||||
/**
|
||||
* struct skcipher_alg - symmetric key cipher definition
|
||||
* @min_keysize: Minimum key size supported by the transformation. This is the
|
||||
@@ -120,6 +161,7 @@ struct crypto_istat_cipher {
|
||||
* in parallel. Should be a multiple of chunksize.
|
||||
* @stat: Statistics for cipher algorithm
|
||||
* @base: Definition of a generic crypto algorithm.
|
||||
* @co: see struct skcipher_alg_common
|
||||
*
|
||||
* All fields except @ivsize are mandatory and must be filled.
|
||||
*/
|
||||
@@ -131,17 +173,55 @@ struct skcipher_alg {
|
||||
int (*init)(struct crypto_skcipher *tfm);
|
||||
void (*exit)(struct crypto_skcipher *tfm);
|
||||
|
||||
unsigned int min_keysize;
|
||||
unsigned int max_keysize;
|
||||
unsigned int ivsize;
|
||||
unsigned int chunksize;
|
||||
unsigned int walksize;
|
||||
|
||||
#ifdef CONFIG_CRYPTO_STATS
|
||||
struct crypto_istat_cipher stat;
|
||||
#endif
|
||||
union {
|
||||
struct SKCIPHER_ALG_COMMON;
|
||||
struct skcipher_alg_common co;
|
||||
};
|
||||
};
|
||||
|
||||
struct crypto_alg base;
|
||||
/**
|
||||
* struct lskcipher_alg - linear symmetric key cipher definition
|
||||
* @setkey: Set key for the transformation. This function is used to either
|
||||
* program a supplied key into the hardware or store the key in the
|
||||
* transformation context for programming it later. Note that this
|
||||
* function does modify the transformation context. This function can
|
||||
* be called multiple times during the existence of the transformation
|
||||
* object, so one must make sure the key is properly reprogrammed into
|
||||
* the hardware. This function is also responsible for checking the key
|
||||
* length for validity. In case a software fallback was put in place in
|
||||
* the @cra_init call, this function might need to use the fallback if
|
||||
* the algorithm doesn't support all of the key sizes.
|
||||
* @encrypt: Encrypt a number of bytes. This function is used to encrypt
|
||||
* the supplied data. This function shall not modify
|
||||
* the transformation context, as this function may be called
|
||||
* in parallel with the same transformation object. Data
|
||||
* may be left over if length is not a multiple of blocks
|
||||
* and there is more to come (final == false). The number of
|
||||
* left-over bytes should be returned in case of success.
|
||||
* @decrypt: Decrypt a number of bytes. This is a reverse counterpart to
|
||||
* @encrypt and the conditions are exactly the same.
|
||||
* @init: Initialize the cryptographic transformation object. This function
|
||||
* is used to initialize the cryptographic transformation object.
|
||||
* This function is called only once at the instantiation time, right
|
||||
* after the transformation context was allocated.
|
||||
* @exit: Deinitialize the cryptographic transformation object. This is a
|
||||
* counterpart to @init, used to remove various changes set in
|
||||
* @init.
|
||||
* @co: see struct skcipher_alg_common
|
||||
*/
|
||||
struct lskcipher_alg {
|
||||
int (*setkey)(struct crypto_lskcipher *tfm, const u8 *key,
|
||||
unsigned int keylen);
|
||||
int (*encrypt)(struct crypto_lskcipher *tfm, const u8 *src,
|
||||
u8 *dst, unsigned len, u8 *iv, bool final);
|
||||
int (*decrypt)(struct crypto_lskcipher *tfm, const u8 *src,
|
||||
u8 *dst, unsigned len, u8 *iv, bool final);
|
||||
int (*init)(struct crypto_lskcipher *tfm);
|
||||
void (*exit)(struct crypto_lskcipher *tfm);
|
||||
|
||||
struct skcipher_alg_common co;
|
||||
};
|
||||
|
||||
#define MAX_SYNC_SKCIPHER_REQSIZE 384
|
||||
@@ -213,12 +293,36 @@ struct crypto_skcipher *crypto_alloc_skcipher(const char *alg_name,
|
||||
struct crypto_sync_skcipher *crypto_alloc_sync_skcipher(const char *alg_name,
|
||||
u32 type, u32 mask);
|
||||
|
||||
|
||||
/**
|
||||
* crypto_alloc_lskcipher() - allocate linear symmetric key cipher handle
|
||||
* @alg_name: is the cra_name / name or cra_driver_name / driver name of the
|
||||
* lskcipher
|
||||
* @type: specifies the type of the cipher
|
||||
* @mask: specifies the mask for the cipher
|
||||
*
|
||||
* Allocate a cipher handle for an lskcipher. The returned struct
|
||||
* crypto_lskcipher is the cipher handle that is required for any subsequent
|
||||
* API invocation for that lskcipher.
|
||||
*
|
||||
* Return: allocated cipher handle in case of success; IS_ERR() is true in case
|
||||
* of an error, PTR_ERR() returns the error code.
|
||||
*/
|
||||
struct crypto_lskcipher *crypto_alloc_lskcipher(const char *alg_name,
|
||||
u32 type, u32 mask);
|
||||
|
||||
static inline struct crypto_tfm *crypto_skcipher_tfm(
|
||||
struct crypto_skcipher *tfm)
|
||||
{
|
||||
return &tfm->base;
|
||||
}
|
||||
|
||||
static inline struct crypto_tfm *crypto_lskcipher_tfm(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return &tfm->base;
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_free_skcipher() - zeroize and free cipher handle
|
||||
* @tfm: cipher handle to be freed
|
||||
@@ -235,6 +339,17 @@ static inline void crypto_free_sync_skcipher(struct crypto_sync_skcipher *tfm)
|
||||
crypto_free_skcipher(&tfm->base);
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_free_lskcipher() - zeroize and free cipher handle
|
||||
* @tfm: cipher handle to be freed
|
||||
*
|
||||
* If @tfm is a NULL or error pointer, this function does nothing.
|
||||
*/
|
||||
static inline void crypto_free_lskcipher(struct crypto_lskcipher *tfm)
|
||||
{
|
||||
crypto_destroy_tfm(tfm, crypto_lskcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_has_skcipher() - Search for the availability of an skcipher.
|
||||
* @alg_name: is the cra_name / name or cra_driver_name / driver name of the
|
||||
@@ -253,6 +368,19 @@ static inline const char *crypto_skcipher_driver_name(
|
||||
return crypto_tfm_alg_driver_name(crypto_skcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
static inline const char *crypto_lskcipher_driver_name(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_tfm_alg_driver_name(crypto_lskcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
static inline struct skcipher_alg_common *crypto_skcipher_alg_common(
|
||||
struct crypto_skcipher *tfm)
|
||||
{
|
||||
return container_of(crypto_skcipher_tfm(tfm)->__crt_alg,
|
||||
struct skcipher_alg_common, base);
|
||||
}
|
||||
|
||||
static inline struct skcipher_alg *crypto_skcipher_alg(
|
||||
struct crypto_skcipher *tfm)
|
||||
{
|
||||
@@ -260,11 +388,24 @@ static inline struct skcipher_alg *crypto_skcipher_alg(
|
||||
struct skcipher_alg, base);
|
||||
}
|
||||
|
||||
static inline struct lskcipher_alg *crypto_lskcipher_alg(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return container_of(crypto_lskcipher_tfm(tfm)->__crt_alg,
|
||||
struct lskcipher_alg, co.base);
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_skcipher_alg_ivsize(struct skcipher_alg *alg)
|
||||
{
|
||||
return alg->ivsize;
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_lskcipher_alg_ivsize(
|
||||
struct lskcipher_alg *alg)
|
||||
{
|
||||
return alg->co.ivsize;
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_skcipher_ivsize() - obtain IV size
|
||||
* @tfm: cipher handle
|
||||
@@ -276,7 +417,7 @@ static inline unsigned int crypto_skcipher_alg_ivsize(struct skcipher_alg *alg)
|
||||
*/
|
||||
static inline unsigned int crypto_skcipher_ivsize(struct crypto_skcipher *tfm)
|
||||
{
|
||||
return crypto_skcipher_alg(tfm)->ivsize;
|
||||
return crypto_skcipher_alg_common(tfm)->ivsize;
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_sync_skcipher_ivsize(
|
||||
@@ -285,6 +426,21 @@ static inline unsigned int crypto_sync_skcipher_ivsize(
|
||||
return crypto_skcipher_ivsize(&tfm->base);
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_lskcipher_ivsize() - obtain IV size
|
||||
* @tfm: cipher handle
|
||||
*
|
||||
* The size of the IV for the lskcipher referenced by the cipher handle is
|
||||
* returned. This IV size may be zero if the cipher does not need an IV.
|
||||
*
|
||||
* Return: IV size in bytes
|
||||
*/
|
||||
static inline unsigned int crypto_lskcipher_ivsize(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_lskcipher_alg(tfm)->co.ivsize;
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_skcipher_blocksize() - obtain block size of cipher
|
||||
* @tfm: cipher handle
|
||||
@@ -301,12 +457,34 @@ static inline unsigned int crypto_skcipher_blocksize(
|
||||
return crypto_tfm_alg_blocksize(crypto_skcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_lskcipher_blocksize() - obtain block size of cipher
|
||||
* @tfm: cipher handle
|
||||
*
|
||||
* The block size for the lskcipher referenced with the cipher handle is
|
||||
* returned. The caller may use that information to allocate appropriate
|
||||
* memory for the data returned by the encryption or decryption operation
|
||||
*
|
||||
* Return: block size of cipher
|
||||
*/
|
||||
static inline unsigned int crypto_lskcipher_blocksize(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_tfm_alg_blocksize(crypto_lskcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_skcipher_alg_chunksize(
|
||||
struct skcipher_alg *alg)
|
||||
{
|
||||
return alg->chunksize;
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_lskcipher_alg_chunksize(
|
||||
struct lskcipher_alg *alg)
|
||||
{
|
||||
return alg->co.chunksize;
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_skcipher_chunksize() - obtain chunk size
|
||||
* @tfm: cipher handle
|
||||
@@ -321,7 +499,24 @@ static inline unsigned int crypto_skcipher_alg_chunksize(
|
||||
static inline unsigned int crypto_skcipher_chunksize(
|
||||
struct crypto_skcipher *tfm)
|
||||
{
|
||||
return crypto_skcipher_alg_chunksize(crypto_skcipher_alg(tfm));
|
||||
return crypto_skcipher_alg_common(tfm)->chunksize;
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_lskcipher_chunksize() - obtain chunk size
|
||||
* @tfm: cipher handle
|
||||
*
|
||||
* The block size is set to one for ciphers such as CTR. However,
|
||||
* you still need to provide incremental updates in multiples of
|
||||
* the underlying block size as the IV does not have sub-block
|
||||
* granularity. This is known in this API as the chunk size.
|
||||
*
|
||||
* Return: chunk size in bytes
|
||||
*/
|
||||
static inline unsigned int crypto_lskcipher_chunksize(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_lskcipher_alg_chunksize(crypto_lskcipher_alg(tfm));
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_sync_skcipher_blocksize(
|
||||
@@ -336,6 +531,12 @@ static inline unsigned int crypto_skcipher_alignmask(
|
||||
return crypto_tfm_alg_alignmask(crypto_skcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_lskcipher_alignmask(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_tfm_alg_alignmask(crypto_lskcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
static inline u32 crypto_skcipher_get_flags(struct crypto_skcipher *tfm)
|
||||
{
|
||||
return crypto_tfm_get_flags(crypto_skcipher_tfm(tfm));
|
||||
@@ -371,6 +572,23 @@ static inline void crypto_sync_skcipher_clear_flags(
|
||||
crypto_skcipher_clear_flags(&tfm->base, flags);
|
||||
}
|
||||
|
||||
static inline u32 crypto_lskcipher_get_flags(struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_tfm_get_flags(crypto_lskcipher_tfm(tfm));
|
||||
}
|
||||
|
||||
static inline void crypto_lskcipher_set_flags(struct crypto_lskcipher *tfm,
|
||||
u32 flags)
|
||||
{
|
||||
crypto_tfm_set_flags(crypto_lskcipher_tfm(tfm), flags);
|
||||
}
|
||||
|
||||
static inline void crypto_lskcipher_clear_flags(struct crypto_lskcipher *tfm,
|
||||
u32 flags)
|
||||
{
|
||||
crypto_tfm_clear_flags(crypto_lskcipher_tfm(tfm), flags);
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_skcipher_setkey() - set key for cipher
|
||||
* @tfm: cipher handle
|
||||
@@ -396,16 +614,47 @@ static inline int crypto_sync_skcipher_setkey(struct crypto_sync_skcipher *tfm,
|
||||
return crypto_skcipher_setkey(&tfm->base, key, keylen);
|
||||
}
|
||||
|
||||
/**
|
||||
* crypto_lskcipher_setkey() - set key for cipher
|
||||
* @tfm: cipher handle
|
||||
* @key: buffer holding the key
|
||||
* @keylen: length of the key in bytes
|
||||
*
|
||||
* The caller provided key is set for the lskcipher referenced by the cipher
|
||||
* handle.
|
||||
*
|
||||
* Note, the key length determines the cipher type. Many block ciphers implement
|
||||
* different cipher modes depending on the key size, such as AES-128 vs AES-192
|
||||
* vs. AES-256. When providing a 16 byte key for an AES cipher handle, AES-128
|
||||
* is performed.
|
||||
*
|
||||
* Return: 0 if the setting of the key was successful; < 0 if an error occurred
|
||||
*/
|
||||
int crypto_lskcipher_setkey(struct crypto_lskcipher *tfm,
|
||||
const u8 *key, unsigned int keylen);
|
||||
|
||||
static inline unsigned int crypto_skcipher_min_keysize(
|
||||
struct crypto_skcipher *tfm)
|
||||
{
|
||||
return crypto_skcipher_alg(tfm)->min_keysize;
|
||||
return crypto_skcipher_alg_common(tfm)->min_keysize;
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_skcipher_max_keysize(
|
||||
struct crypto_skcipher *tfm)
|
||||
{
|
||||
return crypto_skcipher_alg(tfm)->max_keysize;
|
||||
return crypto_skcipher_alg_common(tfm)->max_keysize;
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_lskcipher_min_keysize(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_lskcipher_alg(tfm)->co.min_keysize;
|
||||
}
|
||||
|
||||
static inline unsigned int crypto_lskcipher_max_keysize(
|
||||
struct crypto_lskcipher *tfm)
|
||||
{
|
||||
return crypto_lskcipher_alg(tfm)->co.max_keysize;
|
||||
}
|
||||
|
||||
/**
|
||||
@@ -457,6 +706,42 @@ int crypto_skcipher_encrypt(struct skcipher_request *req);
|
||||
*/
|
||||
int crypto_skcipher_decrypt(struct skcipher_request *req);
|
||||
|
||||
/**
|
||||
* crypto_lskcipher_encrypt() - encrypt plaintext
|
||||
* @tfm: lskcipher handle
|
||||
* @src: source buffer
|
||||
* @dst: destination buffer
|
||||
* @len: number of bytes to process
|
||||
* @iv: IV for the cipher operation which must comply with the IV size defined
|
||||
* by crypto_lskcipher_ivsize
|
||||
*
|
||||
* Encrypt plaintext data using the lskcipher handle.
|
||||
*
|
||||
* Return: >=0 if the cipher operation was successful, if positive
|
||||
* then this many bytes have been left unprocessed;
|
||||
* < 0 if an error occurred
|
||||
*/
|
||||
int crypto_lskcipher_encrypt(struct crypto_lskcipher *tfm, const u8 *src,
|
||||
u8 *dst, unsigned len, u8 *iv);
|
||||
|
||||
/**
|
||||
* crypto_lskcipher_decrypt() - decrypt ciphertext
|
||||
* @tfm: lskcipher handle
|
||||
* @src: source buffer
|
||||
* @dst: destination buffer
|
||||
* @len: number of bytes to process
|
||||
* @iv: IV for the cipher operation which must comply with the IV size defined
|
||||
* by crypto_lskcipher_ivsize
|
||||
*
|
||||
* Decrypt ciphertext data using the lskcipher handle.
|
||||
*
|
||||
* Return: >=0 if the cipher operation was successful, if positive
|
||||
* then this many bytes have been left unprocessed;
|
||||
* < 0 if an error occurred
|
||||
*/
|
||||
int crypto_lskcipher_decrypt(struct crypto_lskcipher *tfm, const u8 *src,
|
||||
u8 *dst, unsigned len, u8 *iv);
|
||||
|
||||
/**
|
||||
* DOC: Symmetric Key Cipher Request Handle
|
||||
*
|
||||
|
||||
@@ -24,6 +24,7 @@
|
||||
#define CRYPTO_ALG_TYPE_CIPHER 0x00000001
|
||||
#define CRYPTO_ALG_TYPE_COMPRESS 0x00000002
|
||||
#define CRYPTO_ALG_TYPE_AEAD 0x00000003
|
||||
#define CRYPTO_ALG_TYPE_LSKCIPHER 0x00000004
|
||||
#define CRYPTO_ALG_TYPE_SKCIPHER 0x00000005
|
||||
#define CRYPTO_ALG_TYPE_AKCIPHER 0x00000006
|
||||
#define CRYPTO_ALG_TYPE_SIG 0x00000007
|
||||
|
||||
Reference in New Issue
Block a user