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crypto: algapi - make unregistration functions return void
Some of the algorithm unregistration functions return -ENOENT when asked to unregister a non-registered algorithm, while others always return 0 or always return void. But no users check the return value, except for two of the bulk unregistration functions which print a message on error but still always return 0 to their caller, and crypto_del_alg() which calls crypto_unregister_instance() which always returns 0. Since unregistering a non-registered algorithm is always a kernel bug but there isn't anything callers should do to handle this situation at runtime, let's simplify things by making all the unregistration functions return void, and moving the error message into crypto_unregister_alg() and upgrading it to a WARN(). Signed-off-by: Eric Biggers <ebiggers@google.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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@ -31,28 +31,18 @@ The counterparts to those functions are listed below.
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::
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int crypto_unregister_alg(struct crypto_alg *alg);
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int crypto_unregister_algs(struct crypto_alg *algs, int count);
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void crypto_unregister_alg(struct crypto_alg *alg);
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void crypto_unregister_algs(struct crypto_alg *algs, int count);
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Notice that both registration and unregistration functions do return a
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value, so make sure to handle errors. A return code of zero implies
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success. Any return code < 0 implies an error.
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The registration functions return 0 on success, or a negative errno
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value on failure. crypto_register_algs() succeeds only if it
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successfully registered all the given algorithms; if it fails partway
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through, then any changes are rolled back.
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The bulk registration/unregistration functions register/unregister each
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transformation in the given array of length count. They handle errors as
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follows:
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- crypto_register_algs() succeeds if and only if it successfully
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registers all the given transformations. If an error occurs partway
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through, then it rolls back successful registrations before returning
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the error code. Note that if a driver needs to handle registration
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errors for individual transformations, then it will need to use the
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non-bulk function crypto_register_alg() instead.
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- crypto_unregister_algs() tries to unregister all the given
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transformations, continuing on error. It logs errors and always
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returns zero.
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The unregistration functions always succeed, so they don't have a
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return value. Don't try to unregister algorithms that aren't
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currently registered.
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Single-Block Symmetric Ciphers [CIPHER]
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---------------------------------------
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@ -169,10 +159,10 @@ are as follows:
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::
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int crypto_unregister_ahash(struct ahash_alg *alg);
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void crypto_unregister_ahash(struct ahash_alg *alg);
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int crypto_unregister_shash(struct shash_alg *alg);
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int crypto_unregister_shashes(struct shash_alg *algs, int count);
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void crypto_unregister_shash(struct shash_alg *alg);
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void crypto_unregister_shashes(struct shash_alg *algs, int count);
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Cipher Definition With struct shash_alg and ahash_alg
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@ -151,9 +151,9 @@ int crypto_register_acomp(struct acomp_alg *alg)
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}
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EXPORT_SYMBOL_GPL(crypto_register_acomp);
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int crypto_unregister_acomp(struct acomp_alg *alg)
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void crypto_unregister_acomp(struct acomp_alg *alg)
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{
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return crypto_unregister_alg(&alg->base);
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crypto_unregister_alg(&alg->base);
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_acomp);
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@ -598,9 +598,9 @@ int crypto_register_ahash(struct ahash_alg *alg)
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}
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EXPORT_SYMBOL_GPL(crypto_register_ahash);
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int crypto_unregister_ahash(struct ahash_alg *alg)
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void crypto_unregister_ahash(struct ahash_alg *alg)
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{
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return crypto_unregister_alg(&alg->halg.base);
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crypto_unregister_alg(&alg->halg.base);
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_ahash);
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@ -442,7 +442,7 @@ static int crypto_remove_alg(struct crypto_alg *alg, struct list_head *list)
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return 0;
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}
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int crypto_unregister_alg(struct crypto_alg *alg)
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void crypto_unregister_alg(struct crypto_alg *alg)
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{
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int ret;
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LIST_HEAD(list);
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@ -451,15 +451,14 @@ int crypto_unregister_alg(struct crypto_alg *alg)
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ret = crypto_remove_alg(alg, &list);
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up_write(&crypto_alg_sem);
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if (ret)
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return ret;
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if (WARN(ret, "Algorithm %s is not registered", alg->cra_driver_name))
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return;
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BUG_ON(refcount_read(&alg->cra_refcnt) != 1);
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if (alg->cra_destroy)
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alg->cra_destroy(alg);
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crypto_remove_final(&list);
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return 0;
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_alg);
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@ -483,18 +482,12 @@ err:
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}
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EXPORT_SYMBOL_GPL(crypto_register_algs);
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int crypto_unregister_algs(struct crypto_alg *algs, int count)
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void crypto_unregister_algs(struct crypto_alg *algs, int count)
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{
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int i, ret;
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int i;
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for (i = 0; i < count; i++) {
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ret = crypto_unregister_alg(&algs[i]);
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if (ret)
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pr_err("Failed to unregister %s %s: %d\n",
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algs[i].cra_driver_name, algs[i].cra_name, ret);
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}
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return 0;
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for (i = 0; i < count; i++)
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crypto_unregister_alg(&algs[i]);
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_algs);
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@ -639,7 +632,7 @@ err:
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}
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EXPORT_SYMBOL_GPL(crypto_register_instance);
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int crypto_unregister_instance(struct crypto_instance *inst)
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void crypto_unregister_instance(struct crypto_instance *inst)
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{
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LIST_HEAD(list);
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@ -651,8 +644,6 @@ int crypto_unregister_instance(struct crypto_instance *inst)
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up_write(&crypto_alg_sem);
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crypto_remove_final(&list);
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return 0;
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_instance);
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@ -323,7 +323,8 @@ static int crypto_del_alg(struct sk_buff *skb, struct nlmsghdr *nlh,
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if (refcount_read(&alg->cra_refcnt) > 2)
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goto drop_alg;
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err = crypto_unregister_instance((struct crypto_instance *)alg);
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crypto_unregister_instance((struct crypto_instance *)alg);
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err = 0;
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drop_alg:
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crypto_mod_put(alg);
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@ -266,9 +266,9 @@ int crypto_register_scomp(struct scomp_alg *alg)
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}
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EXPORT_SYMBOL_GPL(crypto_register_scomp);
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int crypto_unregister_scomp(struct scomp_alg *alg)
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void crypto_unregister_scomp(struct scomp_alg *alg)
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{
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return crypto_unregister_alg(&alg->base);
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crypto_unregister_alg(&alg->base);
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_scomp);
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@ -520,9 +520,9 @@ int crypto_register_shash(struct shash_alg *alg)
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}
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EXPORT_SYMBOL_GPL(crypto_register_shash);
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int crypto_unregister_shash(struct shash_alg *alg)
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void crypto_unregister_shash(struct shash_alg *alg)
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{
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return crypto_unregister_alg(&alg->base);
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crypto_unregister_alg(&alg->base);
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_shash);
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@ -546,19 +546,12 @@ err:
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}
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EXPORT_SYMBOL_GPL(crypto_register_shashes);
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int crypto_unregister_shashes(struct shash_alg *algs, int count)
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void crypto_unregister_shashes(struct shash_alg *algs, int count)
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{
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int i, ret;
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int i;
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for (i = count - 1; i >= 0; --i) {
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ret = crypto_unregister_shash(&algs[i]);
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if (ret)
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pr_err("Failed to unregister %s %s: %d\n",
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algs[i].base.cra_driver_name,
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algs[i].base.cra_name, ret);
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}
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return 0;
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for (i = count - 1; i >= 0; --i)
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crypto_unregister_shash(&algs[i]);
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}
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EXPORT_SYMBOL_GPL(crypto_unregister_shashes);
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@ -96,7 +96,7 @@ struct crypto_template *crypto_lookup_template(const char *name);
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int crypto_register_instance(struct crypto_template *tmpl,
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struct crypto_instance *inst);
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int crypto_unregister_instance(struct crypto_instance *inst);
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void crypto_unregister_instance(struct crypto_instance *inst);
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int crypto_init_spawn(struct crypto_spawn *spawn, struct crypto_alg *alg,
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struct crypto_instance *inst, u32 mask);
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@ -68,10 +68,8 @@ int crypto_register_acomp(struct acomp_alg *alg);
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* compression algorithm
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*
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* @alg: algorithm definition
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*
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* Return: zero on success; error code in case of error
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*/
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int crypto_unregister_acomp(struct acomp_alg *alg);
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void crypto_unregister_acomp(struct acomp_alg *alg);
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int crypto_register_acomps(struct acomp_alg *algs, int count);
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void crypto_unregister_acomps(struct acomp_alg *algs, int count);
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@ -70,7 +70,7 @@ static inline int crypto_ahash_walk_last(struct crypto_hash_walk *walk)
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}
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int crypto_register_ahash(struct ahash_alg *alg);
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int crypto_unregister_ahash(struct ahash_alg *alg);
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void crypto_unregister_ahash(struct ahash_alg *alg);
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int crypto_register_ahashes(struct ahash_alg *algs, int count);
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void crypto_unregister_ahashes(struct ahash_alg *algs, int count);
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int ahash_register_instance(struct crypto_template *tmpl,
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@ -105,9 +105,9 @@ static inline void crypto_drop_ahash(struct crypto_ahash_spawn *spawn)
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struct hash_alg_common *ahash_attr_alg(struct rtattr *rta, u32 type, u32 mask);
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int crypto_register_shash(struct shash_alg *alg);
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int crypto_unregister_shash(struct shash_alg *alg);
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void crypto_unregister_shash(struct shash_alg *alg);
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int crypto_register_shashes(struct shash_alg *algs, int count);
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int crypto_unregister_shashes(struct shash_alg *algs, int count);
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void crypto_unregister_shashes(struct shash_alg *algs, int count);
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int shash_register_instance(struct crypto_template *tmpl,
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struct shash_instance *inst);
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void shash_free_instance(struct crypto_instance *inst);
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@ -112,10 +112,8 @@ int crypto_register_scomp(struct scomp_alg *alg);
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* compression algorithm
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*
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* @alg: algorithm definition
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*
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* Return: zero on success; error code in case of error
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*/
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int crypto_unregister_scomp(struct scomp_alg *alg);
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void crypto_unregister_scomp(struct scomp_alg *alg);
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int crypto_register_scomps(struct scomp_alg *algs, int count);
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void crypto_unregister_scomps(struct scomp_alg *algs, int count);
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@ -584,9 +584,9 @@ static inline void crypto_init_wait(struct crypto_wait *wait)
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* Algorithm registration interface.
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*/
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int crypto_register_alg(struct crypto_alg *alg);
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int crypto_unregister_alg(struct crypto_alg *alg);
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void crypto_unregister_alg(struct crypto_alg *alg);
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int crypto_register_algs(struct crypto_alg *algs, int count);
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int crypto_unregister_algs(struct crypto_alg *algs, int count);
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void crypto_unregister_algs(struct crypto_alg *algs, int count);
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/*
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* Algorithm query interface.
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