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	KEYS: Provide missing asymmetric key subops for new key type ops [ver #2]
Provide the missing asymmetric key subops for new key type ops. This include query, encrypt, decrypt and create signature. Verify signature already exists. Also provided are accessor functions for this: int query_asymmetric_key(const struct key *key, struct kernel_pkey_query *info); int encrypt_blob(struct kernel_pkey_params *params, const void *data, void *enc); int decrypt_blob(struct kernel_pkey_params *params, const void *enc, void *data); int create_signature(struct kernel_pkey_params *params, const void *data, void *enc); The public_key_signature struct gains an encoding field to carry the encoding for verify_signature(). Signed-off-by: David Howells <dhowells@redhat.com> Tested-by: Marcel Holtmann <marcel@holtmann.org> Reviewed-by: Marcel Holtmann <marcel@holtmann.org> Reviewed-by: Denis Kenzior <denkenz@gmail.com> Tested-by: Denis Kenzior <denkenz@gmail.com> Signed-off-by: James Morris <james.morris@microsoft.com>
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					 6 changed files with 180 additions and 7 deletions
				
			
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			@ -183,6 +183,10 @@ and looks like the following:
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		void (*describe)(const struct key *key, struct seq_file *m);
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		void (*destroy)(void *payload);
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		int (*query)(const struct kernel_pkey_params *params,
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			     struct kernel_pkey_query *info);
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		int (*eds_op)(struct kernel_pkey_params *params,
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			      const void *in, void *out);
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		int (*verify_signature)(const struct key *key,
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					const struct public_key_signature *sig);
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	};
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			@ -207,12 +211,22 @@ There are a number of operations defined by the subtype:
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     asymmetric key will look after freeing the fingerprint and releasing the
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     reference on the subtype module.
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 (3) verify_signature().
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 (3) query().
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     Optional.  These are the entry points for the key usage operations.
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     Currently there is only the one defined.  If not set, the caller will be
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     given -ENOTSUPP.  The subtype may do anything it likes to implement an
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     operation, including offloading to hardware.
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     Mandatory.  This is a function for querying the capabilities of a key.
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 (4) eds_op().
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     Optional.  This is the entry point for the encryption, decryption and
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     signature creation operations (which are distinguished by the operation ID
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     in the parameter struct).  The subtype may do anything it likes to
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     implement an operation, including offloading to hardware.
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 (5) verify_signature().
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     Optional.  This is the entry point for signature verification.  The
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     subtype may do anything it likes to implement an operation, including
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     offloading to hardware.
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==========================
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			@ -16,3 +16,6 @@ extern struct asymmetric_key_id *asymmetric_key_hex_to_key_id(const char *id);
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extern int __asymmetric_key_hex_to_key_id(const char *id,
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					  struct asymmetric_key_id *match_id,
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					  size_t hexlen);
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extern int asymmetric_key_eds_op(struct kernel_pkey_params *params,
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				 const void *in, void *out);
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			@ -18,6 +18,7 @@
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#include <linux/slab.h>
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#include <linux/ctype.h>
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#include <keys/system_keyring.h>
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#include <keys/user-type.h>
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#include "asymmetric_keys.h"
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MODULE_LICENSE("GPL");
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			@ -538,6 +539,45 @@ static struct key_restriction *asymmetric_lookup_restriction(
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	return ret;
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}
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int asymmetric_key_eds_op(struct kernel_pkey_params *params,
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			  const void *in, void *out)
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{
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	const struct asymmetric_key_subtype *subtype;
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	struct key *key = params->key;
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	int ret;
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	pr_devel("==>%s()\n", __func__);
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	if (key->type != &key_type_asymmetric)
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		return -EINVAL;
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	subtype = asymmetric_key_subtype(key);
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	if (!subtype ||
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	    !key->payload.data[0])
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		return -EINVAL;
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	if (!subtype->eds_op)
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		return -ENOTSUPP;
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	ret = subtype->eds_op(params, in, out);
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	pr_devel("<==%s() = %d\n", __func__, ret);
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	return ret;
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}
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static int asymmetric_key_verify_signature(struct kernel_pkey_params *params,
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					   const void *in, const void *in2)
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{
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	struct public_key_signature sig = {
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		.s_size		= params->in2_len,
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		.digest_size	= params->in_len,
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		.encoding	= params->encoding,
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		.hash_algo	= params->hash_algo,
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		.digest		= (void *)in,
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		.s		= (void *)in2,
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	};
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	return verify_signature(params->key, &sig);
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}
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struct key_type key_type_asymmetric = {
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	.name			= "asymmetric",
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	.preparse		= asymmetric_key_preparse,
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			@ -548,6 +588,9 @@ struct key_type key_type_asymmetric = {
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	.destroy		= asymmetric_key_destroy,
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	.describe		= asymmetric_key_describe,
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	.lookup_restriction	= asymmetric_lookup_restriction,
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	.asym_query		= query_asymmetric_key,
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	.asym_eds_op		= asymmetric_key_eds_op,
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	.asym_verify_signature	= asymmetric_key_verify_signature,
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};
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EXPORT_SYMBOL_GPL(key_type_asymmetric);
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			@ -16,7 +16,9 @@
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#include <linux/export.h>
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#include <linux/err.h>
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#include <linux/slab.h>
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#include <linux/keyctl.h>
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#include <crypto/public_key.h>
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#include <keys/user-type.h>
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#include "asymmetric_keys.h"
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/*
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			@ -36,6 +38,99 @@ void public_key_signature_free(struct public_key_signature *sig)
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}
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EXPORT_SYMBOL_GPL(public_key_signature_free);
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/**
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 * query_asymmetric_key - Get information about an aymmetric key.
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 * @params: Various parameters.
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 * @info: Where to put the information.
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 */
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int query_asymmetric_key(const struct kernel_pkey_params *params,
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			 struct kernel_pkey_query *info)
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{
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	const struct asymmetric_key_subtype *subtype;
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	struct key *key = params->key;
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	int ret;
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	pr_devel("==>%s()\n", __func__);
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	if (key->type != &key_type_asymmetric)
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		return -EINVAL;
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	subtype = asymmetric_key_subtype(key);
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	if (!subtype ||
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	    !key->payload.data[0])
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		return -EINVAL;
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	if (!subtype->query)
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		return -ENOTSUPP;
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	ret = subtype->query(params, info);
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	pr_devel("<==%s() = %d\n", __func__, ret);
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	return ret;
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}
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EXPORT_SYMBOL_GPL(query_asymmetric_key);
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/**
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 * encrypt_blob - Encrypt data using an asymmetric key
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 * @params: Various parameters
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 * @data: Data blob to be encrypted, length params->data_len
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 * @enc: Encrypted data buffer, length params->enc_len
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 *
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 * Encrypt the specified data blob using the private key specified by
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 * params->key.  The encrypted data is wrapped in an encoding if
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 * params->encoding is specified (eg. "pkcs1").
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 *
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 * Returns the length of the data placed in the encrypted data buffer or an
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 * error.
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 */
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int encrypt_blob(struct kernel_pkey_params *params,
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		 const void *data, void *enc)
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{
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	params->op = kernel_pkey_encrypt;
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	return asymmetric_key_eds_op(params, data, enc);
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}
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EXPORT_SYMBOL_GPL(encrypt_blob);
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/**
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 * decrypt_blob - Decrypt data using an asymmetric key
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 * @params: Various parameters
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 * @enc: Encrypted data to be decrypted, length params->enc_len
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 * @data: Decrypted data buffer, length params->data_len
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 *
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 * Decrypt the specified data blob using the private key specified by
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 * params->key.  The decrypted data is wrapped in an encoding if
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 * params->encoding is specified (eg. "pkcs1").
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 *
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 * Returns the length of the data placed in the decrypted data buffer or an
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 * error.
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 */
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int decrypt_blob(struct kernel_pkey_params *params,
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		 const void *enc, void *data)
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{
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	params->op = kernel_pkey_decrypt;
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	return asymmetric_key_eds_op(params, enc, data);
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}
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EXPORT_SYMBOL_GPL(decrypt_blob);
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/**
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 * create_signature - Sign some data using an asymmetric key
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 * @params: Various parameters
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 * @data: Data blob to be signed, length params->data_len
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 * @enc: Signature buffer, length params->enc_len
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 *
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 * Sign the specified data blob using the private key specified by params->key.
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 * The signature is wrapped in an encoding if params->encoding is specified
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 * (eg. "pkcs1").  If the encoding needs to know the digest type, this can be
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 * passed through params->hash_algo (eg. "sha1").
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 *
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 * Returns the length of the data placed in the signature buffer or an error.
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 */
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int create_signature(struct kernel_pkey_params *params,
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		     const void *data, void *enc)
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{
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	params->op = kernel_pkey_sign;
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	return asymmetric_key_eds_op(params, data, enc);
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}
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EXPORT_SYMBOL_GPL(create_signature);
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/**
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 * verify_signature - Initiate the use of an asymmetric key to verify a signature
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 * @key: The asymmetric key to verify against
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			@ -14,6 +14,8 @@
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#ifndef _LINUX_PUBLIC_KEY_H
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#define _LINUX_PUBLIC_KEY_H
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#include <linux/keyctl.h>
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/*
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 * Cryptographic data for the public-key subtype of the asymmetric key type.
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 *
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			@ -40,6 +42,7 @@ struct public_key_signature {
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	u8 digest_size;		/* Number of bytes in digest */
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	const char *pkey_algo;
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	const char *hash_algo;
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	const char *encoding;
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};
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extern void public_key_signature_free(struct public_key_signature *sig);
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			@ -65,8 +68,14 @@ extern int restrict_link_by_key_or_keyring_chain(struct key *trust_keyring,
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						 const union key_payload *payload,
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						 struct key *trusted);
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extern int verify_signature(const struct key *key,
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			    const struct public_key_signature *sig);
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extern int query_asymmetric_key(const struct kernel_pkey_params *,
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				struct kernel_pkey_query *);
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extern int encrypt_blob(struct kernel_pkey_params *, const void *, void *);
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extern int decrypt_blob(struct kernel_pkey_params *, const void *, void *);
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extern int create_signature(struct kernel_pkey_params *, const void *, void *);
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extern int verify_signature(const struct key *,
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			    const struct public_key_signature *);
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int public_key_verify_signature(const struct public_key *pkey,
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				const struct public_key_signature *sig);
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			@ -17,6 +17,8 @@
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#include <linux/seq_file.h>
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#include <keys/asymmetric-type.h>
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struct kernel_pkey_query;
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struct kernel_pkey_params;
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struct public_key_signature;
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/*
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			@ -34,6 +36,13 @@ struct asymmetric_key_subtype {
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	/* Destroy a key of this subtype */
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	void (*destroy)(void *payload_crypto, void *payload_auth);
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	int (*query)(const struct kernel_pkey_params *params,
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		     struct kernel_pkey_query *info);
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	/* Encrypt/decrypt/sign data */
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	int (*eds_op)(struct kernel_pkey_params *params,
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		      const void *in, void *out);
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	/* Verify the signature on a key of this subtype (optional) */
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	int (*verify_signature)(const struct key *key,
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				const struct public_key_signature *sig);
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