479c4af301
This registers the legacy names of the driver being renamed in
commit 2f45703c17
("drivers: make driver names consistent").
Signed-off-by: Jan Blunck <jblunck@infradead.org>
Tested-by: Pablo de Lara <pablo.de.lara.guarch@intel.com>
Reviewed-by: Yuanhan Liu <yuanhan.liu@linux.intel.com>
537 lines
14 KiB
C
537 lines
14 KiB
C
/*-
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* BSD LICENSE
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*
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* Copyright(c) 2016 Intel Corporation. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* * Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* * Neither the name of Intel Corporation nor the names of its
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* contributors may be used to endorse or promote products derived
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* from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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* A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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* OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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* SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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* LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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* DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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* THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <openssl/aes.h>
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#include <rte_common.h>
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#include <rte_config.h>
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#include <rte_hexdump.h>
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#include <rte_cryptodev.h>
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#include <rte_cryptodev_pmd.h>
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#include <rte_vdev.h>
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#include <rte_malloc.h>
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#include <rte_cpuflags.h>
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#include "aesni_gcm_pmd_private.h"
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/**
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* Global static parameter used to create a unique name for each AES-NI multi
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* buffer crypto device.
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*/
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static unsigned unique_name_id;
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static inline int
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create_unique_device_name(char *name, size_t size)
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{
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int ret;
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if (name == NULL)
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return -EINVAL;
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ret = snprintf(name, size, "%s_%u", RTE_STR(CRYPTODEV_NAME_AESNI_GCM_PMD),
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unique_name_id++);
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if (ret < 0)
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return ret;
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return 0;
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}
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static int
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aesni_gcm_calculate_hash_sub_key(uint8_t *hsubkey, unsigned hsubkey_length,
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uint8_t *aeskey, unsigned aeskey_length)
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{
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uint8_t key[aeskey_length] __rte_aligned(16);
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AES_KEY enc_key;
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if (hsubkey_length % 16 != 0 && aeskey_length % 16 != 0)
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return -EFAULT;
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memcpy(key, aeskey, aeskey_length);
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if (AES_set_encrypt_key(key, aeskey_length << 3, &enc_key) != 0)
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return -EFAULT;
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AES_encrypt(hsubkey, hsubkey, &enc_key);
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return 0;
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}
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/** Get xform chain order */
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static int
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aesni_gcm_get_mode(const struct rte_crypto_sym_xform *xform)
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{
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/*
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* GCM only supports authenticated encryption or authenticated
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* decryption, all other options are invalid, so we must have exactly
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* 2 xform structs chained together
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*/
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if (xform->next == NULL || xform->next->next != NULL)
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return -1;
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if (xform->type == RTE_CRYPTO_SYM_XFORM_CIPHER &&
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xform->next->type == RTE_CRYPTO_SYM_XFORM_AUTH) {
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return AESNI_GCM_OP_AUTHENTICATED_ENCRYPTION;
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}
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if (xform->type == RTE_CRYPTO_SYM_XFORM_AUTH &&
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xform->next->type == RTE_CRYPTO_SYM_XFORM_CIPHER) {
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return AESNI_GCM_OP_AUTHENTICATED_DECRYPTION;
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}
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return -1;
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}
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/** Parse crypto xform chain and set private session parameters */
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int
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aesni_gcm_set_session_parameters(const struct aesni_gcm_ops *gcm_ops,
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struct aesni_gcm_session *sess,
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const struct rte_crypto_sym_xform *xform)
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{
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const struct rte_crypto_sym_xform *auth_xform = NULL;
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const struct rte_crypto_sym_xform *cipher_xform = NULL;
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uint8_t hsubkey[16] __rte_aligned(16) = { 0 };
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/* Select Crypto operation - hash then cipher / cipher then hash */
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switch (aesni_gcm_get_mode(xform)) {
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case AESNI_GCM_OP_AUTHENTICATED_ENCRYPTION:
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sess->op = AESNI_GCM_OP_AUTHENTICATED_ENCRYPTION;
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cipher_xform = xform;
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auth_xform = xform->next;
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break;
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case AESNI_GCM_OP_AUTHENTICATED_DECRYPTION:
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sess->op = AESNI_GCM_OP_AUTHENTICATED_DECRYPTION;
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auth_xform = xform;
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cipher_xform = xform->next;
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break;
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default:
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GCM_LOG_ERR("Unsupported operation chain order parameter");
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return -EINVAL;
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}
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/* We only support AES GCM */
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if (cipher_xform->cipher.algo != RTE_CRYPTO_CIPHER_AES_GCM &&
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auth_xform->auth.algo != RTE_CRYPTO_AUTH_AES_GCM)
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return -EINVAL;
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/* Select cipher direction */
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if (sess->op == AESNI_GCM_OP_AUTHENTICATED_ENCRYPTION &&
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cipher_xform->cipher.op !=
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RTE_CRYPTO_CIPHER_OP_ENCRYPT) {
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GCM_LOG_ERR("xform chain (CIPHER/AUTH) and cipher operation "
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"(DECRYPT) specified are an invalid selection");
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return -EINVAL;
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} else if (sess->op == AESNI_GCM_OP_AUTHENTICATED_DECRYPTION &&
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cipher_xform->cipher.op !=
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RTE_CRYPTO_CIPHER_OP_DECRYPT) {
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GCM_LOG_ERR("xform chain (AUTH/CIPHER) and cipher operation "
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"(ENCRYPT) specified are an invalid selection");
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return -EINVAL;
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}
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/* Expand GCM AES128 key */
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(*gcm_ops->aux.keyexp.aes128_enc)(cipher_xform->cipher.key.data,
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sess->gdata.expanded_keys);
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/* Calculate hash sub key here */
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aesni_gcm_calculate_hash_sub_key(hsubkey, sizeof(hsubkey),
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cipher_xform->cipher.key.data,
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cipher_xform->cipher.key.length);
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/* Calculate GCM pre-compute */
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(*gcm_ops->gcm.precomp)(&sess->gdata, hsubkey);
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return 0;
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}
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/** Get gcm session */
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static struct aesni_gcm_session *
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aesni_gcm_get_session(struct aesni_gcm_qp *qp, struct rte_crypto_sym_op *op)
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{
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struct aesni_gcm_session *sess = NULL;
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if (op->sess_type == RTE_CRYPTO_SYM_OP_WITH_SESSION) {
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if (unlikely(op->session->dev_type
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!= RTE_CRYPTODEV_AESNI_GCM_PMD))
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return sess;
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sess = (struct aesni_gcm_session *)op->session->_private;
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} else {
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void *_sess;
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if (rte_mempool_get(qp->sess_mp, &_sess))
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return sess;
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sess = (struct aesni_gcm_session *)
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((struct rte_cryptodev_session *)_sess)->_private;
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if (unlikely(aesni_gcm_set_session_parameters(qp->ops,
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sess, op->xform) != 0)) {
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rte_mempool_put(qp->sess_mp, _sess);
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sess = NULL;
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}
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}
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return sess;
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}
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/**
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* Process a crypto operation and complete a JOB_AES_HMAC job structure for
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* submission to the multi buffer library for processing.
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*
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* @param qp queue pair
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* @param op symmetric crypto operation
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* @param session GCM session
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*
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* @return
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*
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*/
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static int
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process_gcm_crypto_op(struct aesni_gcm_qp *qp, struct rte_crypto_sym_op *op,
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struct aesni_gcm_session *session)
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{
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uint8_t *src, *dst;
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struct rte_mbuf *m = op->m_src;
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src = rte_pktmbuf_mtod(m, uint8_t *) + op->cipher.data.offset;
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dst = op->m_dst ?
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rte_pktmbuf_mtod_offset(op->m_dst, uint8_t *,
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op->cipher.data.offset) :
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rte_pktmbuf_mtod_offset(m, uint8_t *,
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op->cipher.data.offset);
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/* sanity checks */
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if (op->cipher.iv.length != 16 && op->cipher.iv.length != 12 &&
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op->cipher.iv.length != 0) {
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GCM_LOG_ERR("iv");
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return -1;
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}
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/*
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* GCM working in 12B IV mode => 16B pre-counter block we need
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* to set BE LSB to 1, driver expects that 16B is allocated
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*/
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if (op->cipher.iv.length == 12) {
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op->cipher.iv.data[15] = 1;
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}
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if (op->auth.aad.length != 12 && op->auth.aad.length != 8 &&
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op->auth.aad.length != 0) {
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GCM_LOG_ERR("iv");
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return -1;
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}
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if (op->auth.digest.length != 16 &&
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op->auth.digest.length != 12 &&
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op->auth.digest.length != 8 &&
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op->auth.digest.length != 0) {
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GCM_LOG_ERR("iv");
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return -1;
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}
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if (session->op == AESNI_GCM_OP_AUTHENTICATED_ENCRYPTION) {
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(*qp->ops->gcm.enc)(&session->gdata, dst, src,
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(uint64_t)op->cipher.data.length,
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op->cipher.iv.data,
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op->auth.aad.data,
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(uint64_t)op->auth.aad.length,
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op->auth.digest.data,
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(uint64_t)op->auth.digest.length);
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} else if (session->op == AESNI_GCM_OP_AUTHENTICATED_DECRYPTION) {
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uint8_t *auth_tag = (uint8_t *)rte_pktmbuf_append(m,
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op->auth.digest.length);
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if (!auth_tag) {
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GCM_LOG_ERR("iv");
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return -1;
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}
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(*qp->ops->gcm.dec)(&session->gdata, dst, src,
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(uint64_t)op->cipher.data.length,
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op->cipher.iv.data,
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op->auth.aad.data,
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(uint64_t)op->auth.aad.length,
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auth_tag,
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(uint64_t)op->auth.digest.length);
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} else {
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GCM_LOG_ERR("iv");
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return -1;
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}
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return 0;
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}
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/**
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* Process a completed job and return rte_mbuf which job processed
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*
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* @param job JOB_AES_HMAC job to process
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*
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* @return
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* - Returns processed mbuf which is trimmed of output digest used in
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* verification of supplied digest in the case of a HASH_CIPHER operation
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* - Returns NULL on invalid job
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*/
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static void
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post_process_gcm_crypto_op(struct rte_crypto_op *op)
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{
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struct rte_mbuf *m = op->sym->m_dst ? op->sym->m_dst : op->sym->m_src;
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struct aesni_gcm_session *session =
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(struct aesni_gcm_session *)op->sym->session->_private;
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op->status = RTE_CRYPTO_OP_STATUS_SUCCESS;
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/* Verify digest if required */
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if (session->op == AESNI_GCM_OP_AUTHENTICATED_DECRYPTION) {
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uint8_t *tag = rte_pktmbuf_mtod_offset(m, uint8_t *,
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m->data_len - op->sym->auth.digest.length);
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#ifdef RTE_LIBRTE_PMD_AESNI_GCM_DEBUG
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rte_hexdump(stdout, "auth tag (orig):",
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op->sym->auth.digest.data, op->sym->auth.digest.length);
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rte_hexdump(stdout, "auth tag (calc):",
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tag, op->sym->auth.digest.length);
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#endif
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if (memcmp(tag, op->sym->auth.digest.data,
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op->sym->auth.digest.length) != 0)
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op->status = RTE_CRYPTO_OP_STATUS_AUTH_FAILED;
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/* trim area used for digest from mbuf */
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rte_pktmbuf_trim(m, op->sym->auth.digest.length);
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}
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}
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/**
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* Process a completed GCM request
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*
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* @param qp Queue Pair to process
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* @param job JOB_AES_HMAC job
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*
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* @return
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* - Number of processed jobs
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*/
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static void
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handle_completed_gcm_crypto_op(struct aesni_gcm_qp *qp,
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struct rte_crypto_op *op)
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{
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post_process_gcm_crypto_op(op);
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/* Free session if a session-less crypto op */
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if (op->sym->sess_type == RTE_CRYPTO_SYM_OP_SESSIONLESS) {
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rte_mempool_put(qp->sess_mp, op->sym->session);
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op->sym->session = NULL;
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}
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rte_ring_enqueue(qp->processed_pkts, (void *)op);
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}
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static uint16_t
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aesni_gcm_pmd_enqueue_burst(void *queue_pair,
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struct rte_crypto_op **ops, uint16_t nb_ops)
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{
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struct aesni_gcm_session *sess;
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struct aesni_gcm_qp *qp = queue_pair;
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int i, retval = 0;
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for (i = 0; i < nb_ops; i++) {
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sess = aesni_gcm_get_session(qp, ops[i]->sym);
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if (unlikely(sess == NULL)) {
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ops[i]->status = RTE_CRYPTO_OP_STATUS_INVALID_ARGS;
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qp->qp_stats.enqueue_err_count++;
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break;
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}
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retval = process_gcm_crypto_op(qp, ops[i]->sym, sess);
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if (retval < 0) {
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ops[i]->status = RTE_CRYPTO_OP_STATUS_INVALID_ARGS;
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qp->qp_stats.enqueue_err_count++;
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break;
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}
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handle_completed_gcm_crypto_op(qp, ops[i]);
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qp->qp_stats.enqueued_count++;
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}
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return i;
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}
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static uint16_t
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aesni_gcm_pmd_dequeue_burst(void *queue_pair,
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struct rte_crypto_op **ops, uint16_t nb_ops)
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{
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struct aesni_gcm_qp *qp = queue_pair;
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unsigned nb_dequeued;
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nb_dequeued = rte_ring_dequeue_burst(qp->processed_pkts,
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(void **)ops, nb_ops);
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qp->qp_stats.dequeued_count += nb_dequeued;
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return nb_dequeued;
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}
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static int aesni_gcm_remove(const char *name);
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static int
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aesni_gcm_create(const char *name,
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struct rte_crypto_vdev_init_params *init_params)
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{
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struct rte_cryptodev *dev;
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char crypto_dev_name[RTE_CRYPTODEV_NAME_MAX_LEN];
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struct aesni_gcm_private *internals;
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enum aesni_gcm_vector_mode vector_mode;
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/* Check CPU for support for AES instruction set */
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if (!rte_cpu_get_flag_enabled(RTE_CPUFLAG_AES)) {
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GCM_LOG_ERR("AES instructions not supported by CPU");
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return -EFAULT;
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}
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/* Check CPU for supported vector instruction set */
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if (rte_cpu_get_flag_enabled(RTE_CPUFLAG_AVX2))
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vector_mode = RTE_AESNI_GCM_AVX2;
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else if (rte_cpu_get_flag_enabled(RTE_CPUFLAG_AVX))
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vector_mode = RTE_AESNI_GCM_AVX;
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else if (rte_cpu_get_flag_enabled(RTE_CPUFLAG_SSE4_1))
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vector_mode = RTE_AESNI_GCM_SSE;
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else {
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GCM_LOG_ERR("Vector instructions are not supported by CPU");
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return -EFAULT;
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}
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/* create a unique device name */
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if (create_unique_device_name(crypto_dev_name,
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RTE_CRYPTODEV_NAME_MAX_LEN) != 0) {
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GCM_LOG_ERR("failed to create unique cryptodev name");
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return -EINVAL;
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}
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dev = rte_cryptodev_pmd_virtual_dev_init(crypto_dev_name,
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sizeof(struct aesni_gcm_private), init_params->socket_id);
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if (dev == NULL) {
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GCM_LOG_ERR("failed to create cryptodev vdev");
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goto init_error;
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}
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dev->dev_type = RTE_CRYPTODEV_AESNI_GCM_PMD;
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dev->dev_ops = rte_aesni_gcm_pmd_ops;
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/* register rx/tx burst functions for data path */
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dev->dequeue_burst = aesni_gcm_pmd_dequeue_burst;
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dev->enqueue_burst = aesni_gcm_pmd_enqueue_burst;
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dev->feature_flags = RTE_CRYPTODEV_FF_SYMMETRIC_CRYPTO |
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RTE_CRYPTODEV_FF_SYM_OPERATION_CHAINING |
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RTE_CRYPTODEV_FF_CPU_AESNI;
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switch (vector_mode) {
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case RTE_AESNI_GCM_SSE:
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dev->feature_flags |= RTE_CRYPTODEV_FF_CPU_SSE;
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break;
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case RTE_AESNI_GCM_AVX:
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dev->feature_flags |= RTE_CRYPTODEV_FF_CPU_AVX;
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break;
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case RTE_AESNI_GCM_AVX2:
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dev->feature_flags |= RTE_CRYPTODEV_FF_CPU_AVX2;
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break;
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default:
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break;
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}
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/* Set vector instructions mode supported */
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internals = dev->data->dev_private;
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internals->vector_mode = vector_mode;
|
|
|
|
internals->max_nb_queue_pairs = init_params->max_nb_queue_pairs;
|
|
internals->max_nb_sessions = init_params->max_nb_sessions;
|
|
|
|
return 0;
|
|
|
|
init_error:
|
|
GCM_LOG_ERR("driver %s: create failed", name);
|
|
|
|
aesni_gcm_remove(crypto_dev_name);
|
|
return -EFAULT;
|
|
}
|
|
|
|
static int
|
|
aesni_gcm_probe(const char *name, const char *input_args)
|
|
{
|
|
struct rte_crypto_vdev_init_params init_params = {
|
|
RTE_CRYPTODEV_VDEV_DEFAULT_MAX_NB_QUEUE_PAIRS,
|
|
RTE_CRYPTODEV_VDEV_DEFAULT_MAX_NB_SESSIONS,
|
|
rte_socket_id()
|
|
};
|
|
|
|
rte_cryptodev_parse_vdev_init_params(&init_params, input_args);
|
|
|
|
RTE_LOG(INFO, PMD, "Initialising %s on NUMA node %d\n", name,
|
|
init_params.socket_id);
|
|
RTE_LOG(INFO, PMD, " Max number of queue pairs = %d\n",
|
|
init_params.max_nb_queue_pairs);
|
|
RTE_LOG(INFO, PMD, " Max number of sessions = %d\n",
|
|
init_params.max_nb_sessions);
|
|
|
|
return aesni_gcm_create(name, &init_params);
|
|
}
|
|
|
|
static int
|
|
aesni_gcm_remove(const char *name)
|
|
{
|
|
if (name == NULL)
|
|
return -EINVAL;
|
|
|
|
GCM_LOG_INFO("Closing AESNI crypto device %s on numa socket %u\n",
|
|
name, rte_socket_id());
|
|
|
|
return 0;
|
|
}
|
|
|
|
static struct rte_vdev_driver aesni_gcm_pmd_drv = {
|
|
.probe = aesni_gcm_probe,
|
|
.remove = aesni_gcm_remove
|
|
};
|
|
|
|
RTE_PMD_REGISTER_VDEV(CRYPTODEV_NAME_AESNI_GCM_PMD, aesni_gcm_pmd_drv);
|
|
RTE_PMD_REGISTER_ALIAS(CRYPTODEV_NAME_AESNI_GCM_PMD, cryptodev_aesni_gcm_pmd);
|
|
RTE_PMD_REGISTER_PARAM_STRING(CRYPTODEV_NAME_AESNI_GCM_PMD,
|
|
"max_nb_queue_pairs=<int> "
|
|
"max_nb_sessions=<int> "
|
|
"socket_id=<int>");
|