return sbind;
}
-QCryptoAFAlg *
+QCryptoAFAlgo *
qcrypto_afalg_comm_alloc(const char *type, const char *name,
Error **errp)
{
- QCryptoAFAlg *afalg;
+ QCryptoAFAlgo *afalg;
- afalg = g_new0(QCryptoAFAlg, 1);
+ afalg = g_new0(QCryptoAFAlgo, 1);
/* initialize crypto API socket */
afalg->opfd = -1;
afalg->tfmfd = qcrypto_afalg_socket_bind(type, name, errp);
return NULL;
}
-void qcrypto_afalg_comm_free(QCryptoAFAlg *afalg)
+void qcrypto_afalg_comm_free(QCryptoAFAlgo *afalg)
{
if (!afalg) {
return;
#define ALG_OPTYPE_LEN 4
#define ALG_MSGIV_LEN(len) (sizeof(struct af_alg_iv) + (len))
-typedef struct QCryptoAFAlg QCryptoAFAlg;
+typedef struct QCryptoAFAlgo QCryptoAFAlgo;
-struct QCryptoAFAlg {
+struct QCryptoAFAlgo {
QCryptoCipher base;
int tfmfd;
* @type: the type of crypto operation
* @name: the name of crypto operation
*
- * Allocate a QCryptoAFAlg object and bind itself to
+ * Allocate a QCryptoAFAlgo object and bind itself to
* a AF_ALG socket.
*
* Returns:
- * a new QCryptoAFAlg object, or NULL in error.
+ * a new QCryptoAFAlgo object, or NULL in error.
*/
-QCryptoAFAlg *
+QCryptoAFAlgo *
qcrypto_afalg_comm_alloc(const char *type, const char *name,
Error **errp);
/**
* afalg_comm_free:
- * @afalg: the QCryptoAFAlg object
+ * @afalg: the QCryptoAFAlgo object
*
* Free the @afalg.
*/
-void qcrypto_afalg_comm_free(QCryptoAFAlg *afalg);
+void qcrypto_afalg_comm_free(QCryptoAFAlgo *afalg);
#endif
const uint8_t *key,
size_t nkey, Error **errp)
{
- QCryptoAFAlg *afalg;
+ QCryptoAFAlgo *afalg;
size_t expect_niv;
char *name;
const uint8_t *iv,
size_t niv, Error **errp)
{
- QCryptoAFAlg *afalg = container_of(cipher, QCryptoAFAlg, base);
+ QCryptoAFAlgo *afalg = container_of(cipher, QCryptoAFAlgo, base);
struct af_alg_iv *alg_iv;
size_t expect_niv;
}
static int
-qcrypto_afalg_cipher_op(QCryptoAFAlg *afalg,
+qcrypto_afalg_cipher_op(QCryptoAFAlgo *afalg,
const void *in, void *out,
size_t len, bool do_encrypt,
Error **errp)
const void *in, void *out,
size_t len, Error **errp)
{
- QCryptoAFAlg *afalg = container_of(cipher, QCryptoAFAlg, base);
+ QCryptoAFAlgo *afalg = container_of(cipher, QCryptoAFAlgo, base);
return qcrypto_afalg_cipher_op(afalg, in, out, len, true, errp);
}
const void *in, void *out,
size_t len, Error **errp)
{
- QCryptoAFAlg *afalg = container_of(cipher, QCryptoAFAlg, base);
+ QCryptoAFAlgo *afalg = container_of(cipher, QCryptoAFAlgo, base);
return qcrypto_afalg_cipher_op(afalg, in, out, len, false, errp);
}
static void qcrypto_afalg_comm_ctx_free(QCryptoCipher *cipher)
{
- QCryptoAFAlg *afalg = container_of(cipher, QCryptoAFAlg, base);
+ QCryptoAFAlgo *afalg = container_of(cipher, QCryptoAFAlgo, base);
qcrypto_afalg_comm_free(afalg);
}
return name;
}
-static QCryptoAFAlg *
+static QCryptoAFAlgo *
qcrypto_afalg_hash_hmac_ctx_new(QCryptoHashAlgo alg,
const uint8_t *key, size_t nkey,
bool is_hmac, Error **errp)
{
- QCryptoAFAlg *afalg;
+ QCryptoAFAlgo *afalg;
char *name;
name = qcrypto_afalg_hash_format_name(alg, is_hmac, errp);
return afalg;
}
-static QCryptoAFAlg *
+static QCryptoAFAlgo *
qcrypto_afalg_hash_ctx_new(QCryptoHashAlgo alg,
Error **errp)
{
return qcrypto_afalg_hash_hmac_ctx_new(alg, NULL, 0, false, errp);
}
-QCryptoAFAlg *
+QCryptoAFAlgo *
qcrypto_afalg_hmac_ctx_new(QCryptoHashAlgo alg,
const uint8_t *key, size_t nkey,
Error **errp)
}
static int
-qcrypto_afalg_hash_hmac_bytesv(QCryptoAFAlg *hmac,
+qcrypto_afalg_hash_hmac_bytesv(QCryptoAFAlgo *hmac,
QCryptoHashAlgo alg,
const struct iovec *iov,
size_t niov, uint8_t **result,
size_t *resultlen,
Error **errp)
{
- QCryptoAFAlg *afalg;
+ QCryptoAFAlgo *afalg;
struct iovec outv;
int ret = 0;
bool is_hmac = (hmac != NULL) ? true : false;
static void qcrypto_afalg_hmac_ctx_free(QCryptoHmac *hmac)
{
- QCryptoAFAlg *afalg;
+ QCryptoAFAlgo *afalg;
afalg = hmac->opaque;
qcrypto_afalg_comm_free(afalg);
#include "afalgpriv.h"
-QCryptoAFAlg *qcrypto_afalg_hmac_ctx_new(QCryptoHashAlgo alg,
+QCryptoAFAlgo *qcrypto_afalg_hmac_ctx_new(QCryptoHashAlgo alg,
const uint8_t *key, size_t nkey,
Error **errp);
extern QCryptoHmacDriver qcrypto_hmac_afalg_driver;