012c5076d4
The PMD specific API to configure, clear and obtain session private size is renamed, including the word _sym_ to clarify that it is API for symmetric sessions, so there will not be any conflicts for asymmetric and other type of sessions in the future. Signed-off-by: Pablo de Lara <pablo.de.lara.guarch@intel.com> Acked-by: Akhil Goyal <akhil.goyal@nxp.com>
323 lines
7.2 KiB
C
323 lines
7.2 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2016-2018 Intel Corporation
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*/
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#include <string.h>
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#include <rte_common.h>
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#include <rte_malloc.h>
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#include <rte_cryptodev_pmd.h>
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#include "rte_zuc_pmd_private.h"
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static const struct rte_cryptodev_capabilities zuc_pmd_capabilities[] = {
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{ /* ZUC (EIA3) */
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.op = RTE_CRYPTO_OP_TYPE_SYMMETRIC,
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{.sym = {
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.xform_type = RTE_CRYPTO_SYM_XFORM_AUTH,
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{.auth = {
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.algo = RTE_CRYPTO_AUTH_ZUC_EIA3,
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.block_size = 16,
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.key_size = {
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.min = 16,
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.max = 16,
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.increment = 0
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},
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.digest_size = {
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.min = 4,
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.max = 4,
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.increment = 0
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},
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.iv_size = {
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.min = 16,
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.max = 16,
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.increment = 0
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}
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}, }
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}, }
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},
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{ /* ZUC (EEA3) */
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.op = RTE_CRYPTO_OP_TYPE_SYMMETRIC,
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{.sym = {
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.xform_type = RTE_CRYPTO_SYM_XFORM_CIPHER,
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{.cipher = {
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.algo = RTE_CRYPTO_CIPHER_ZUC_EEA3,
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.block_size = 16,
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.key_size = {
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.min = 16,
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.max = 16,
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.increment = 0
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},
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.iv_size = {
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.min = 16,
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.max = 16,
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.increment = 0
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},
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}, }
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}, }
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},
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RTE_CRYPTODEV_END_OF_CAPABILITIES_LIST()
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};
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/** Configure device */
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static int
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zuc_pmd_config(__rte_unused struct rte_cryptodev *dev,
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__rte_unused struct rte_cryptodev_config *config)
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{
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return 0;
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}
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/** Start device */
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static int
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zuc_pmd_start(__rte_unused struct rte_cryptodev *dev)
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{
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return 0;
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}
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/** Stop device */
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static void
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zuc_pmd_stop(__rte_unused struct rte_cryptodev *dev)
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{
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}
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/** Close device */
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static int
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zuc_pmd_close(__rte_unused struct rte_cryptodev *dev)
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{
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return 0;
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}
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/** Get device statistics */
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static void
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zuc_pmd_stats_get(struct rte_cryptodev *dev,
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struct rte_cryptodev_stats *stats)
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{
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int qp_id;
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for (qp_id = 0; qp_id < dev->data->nb_queue_pairs; qp_id++) {
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struct zuc_qp *qp = dev->data->queue_pairs[qp_id];
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stats->enqueued_count += qp->qp_stats.enqueued_count;
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stats->dequeued_count += qp->qp_stats.dequeued_count;
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stats->enqueue_err_count += qp->qp_stats.enqueue_err_count;
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stats->dequeue_err_count += qp->qp_stats.dequeue_err_count;
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}
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}
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/** Reset device statistics */
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static void
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zuc_pmd_stats_reset(struct rte_cryptodev *dev)
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{
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int qp_id;
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for (qp_id = 0; qp_id < dev->data->nb_queue_pairs; qp_id++) {
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struct zuc_qp *qp = dev->data->queue_pairs[qp_id];
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memset(&qp->qp_stats, 0, sizeof(qp->qp_stats));
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}
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}
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/** Get device info */
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static void
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zuc_pmd_info_get(struct rte_cryptodev *dev,
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struct rte_cryptodev_info *dev_info)
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{
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struct zuc_private *internals = dev->data->dev_private;
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if (dev_info != NULL) {
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dev_info->driver_id = dev->driver_id;
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dev_info->max_nb_queue_pairs = internals->max_nb_queue_pairs;
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/* No limit of number of sessions */
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dev_info->sym.max_nb_sessions = 0;
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dev_info->feature_flags = dev->feature_flags;
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dev_info->capabilities = zuc_pmd_capabilities;
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}
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}
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/** Release queue pair */
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static int
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zuc_pmd_qp_release(struct rte_cryptodev *dev, uint16_t qp_id)
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{
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if (dev->data->queue_pairs[qp_id] != NULL) {
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rte_free(dev->data->queue_pairs[qp_id]);
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dev->data->queue_pairs[qp_id] = NULL;
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}
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return 0;
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}
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/** set a unique name for the queue pair based on its name, dev_id and qp_id */
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static int
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zuc_pmd_qp_set_unique_name(struct rte_cryptodev *dev,
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struct zuc_qp *qp)
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{
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unsigned n = snprintf(qp->name, sizeof(qp->name),
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"zuc_pmd_%u_qp_%u",
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dev->data->dev_id, qp->id);
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if (n >= sizeof(qp->name))
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return -1;
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return 0;
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}
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/** Create a ring to place processed ops on */
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static struct rte_ring *
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zuc_pmd_qp_create_processed_ops_ring(struct zuc_qp *qp,
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unsigned ring_size, int socket_id)
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{
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struct rte_ring *r;
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r = rte_ring_lookup(qp->name);
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if (r) {
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if (rte_ring_get_size(r) >= ring_size) {
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ZUC_LOG(INFO, "Reusing existing ring %s"
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" for processed packets",
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qp->name);
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return r;
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}
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ZUC_LOG(ERR, "Unable to reuse existing ring %s"
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" for processed packets",
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qp->name);
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return NULL;
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}
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return rte_ring_create(qp->name, ring_size, socket_id,
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RING_F_SP_ENQ | RING_F_SC_DEQ);
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}
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/** Setup a queue pair */
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static int
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zuc_pmd_qp_setup(struct rte_cryptodev *dev, uint16_t qp_id,
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const struct rte_cryptodev_qp_conf *qp_conf,
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int socket_id, struct rte_mempool *session_pool)
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{
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struct zuc_qp *qp = NULL;
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/* Free memory prior to re-allocation if needed. */
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if (dev->data->queue_pairs[qp_id] != NULL)
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zuc_pmd_qp_release(dev, qp_id);
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/* Allocate the queue pair data structure. */
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qp = rte_zmalloc_socket("ZUC PMD Queue Pair", sizeof(*qp),
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RTE_CACHE_LINE_SIZE, socket_id);
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if (qp == NULL)
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return (-ENOMEM);
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qp->id = qp_id;
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dev->data->queue_pairs[qp_id] = qp;
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if (zuc_pmd_qp_set_unique_name(dev, qp))
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goto qp_setup_cleanup;
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qp->processed_ops = zuc_pmd_qp_create_processed_ops_ring(qp,
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qp_conf->nb_descriptors, socket_id);
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if (qp->processed_ops == NULL)
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goto qp_setup_cleanup;
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qp->sess_mp = session_pool;
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memset(&qp->qp_stats, 0, sizeof(qp->qp_stats));
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return 0;
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qp_setup_cleanup:
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if (qp)
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rte_free(qp);
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return -1;
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}
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/** Return the number of allocated queue pairs */
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static uint32_t
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zuc_pmd_qp_count(struct rte_cryptodev *dev)
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{
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return dev->data->nb_queue_pairs;
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}
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/** Returns the size of the ZUC session structure */
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static unsigned
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zuc_pmd_sym_session_get_size(struct rte_cryptodev *dev __rte_unused)
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{
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return sizeof(struct zuc_session);
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}
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/** Configure a ZUC session from a crypto xform chain */
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static int
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zuc_pmd_sym_session_configure(struct rte_cryptodev *dev __rte_unused,
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struct rte_crypto_sym_xform *xform,
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struct rte_cryptodev_sym_session *sess,
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struct rte_mempool *mempool)
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{
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void *sess_private_data;
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int ret;
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if (unlikely(sess == NULL)) {
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ZUC_LOG(ERR, "invalid session struct");
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return -EINVAL;
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}
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if (rte_mempool_get(mempool, &sess_private_data)) {
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ZUC_LOG(ERR,
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"Couldn't get object from session mempool");
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return -ENOMEM;
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}
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ret = zuc_set_session_parameters(sess_private_data, xform);
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if (ret != 0) {
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ZUC_LOG(ERR, "failed configure session parameters");
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/* Return session to mempool */
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rte_mempool_put(mempool, sess_private_data);
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return ret;
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}
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set_sym_session_private_data(sess, dev->driver_id,
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sess_private_data);
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return 0;
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}
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/** Clear the memory of session so it doesn't leave key material behind */
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static void
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zuc_pmd_sym_session_clear(struct rte_cryptodev *dev,
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struct rte_cryptodev_sym_session *sess)
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{
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uint8_t index = dev->driver_id;
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void *sess_priv = get_sym_session_private_data(sess, index);
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/* Zero out the whole structure */
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if (sess_priv) {
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memset(sess_priv, 0, sizeof(struct zuc_session));
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struct rte_mempool *sess_mp = rte_mempool_from_obj(sess_priv);
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set_sym_session_private_data(sess, index, NULL);
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rte_mempool_put(sess_mp, sess_priv);
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}
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}
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struct rte_cryptodev_ops zuc_pmd_ops = {
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.dev_configure = zuc_pmd_config,
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.dev_start = zuc_pmd_start,
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.dev_stop = zuc_pmd_stop,
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.dev_close = zuc_pmd_close,
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.stats_get = zuc_pmd_stats_get,
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.stats_reset = zuc_pmd_stats_reset,
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.dev_infos_get = zuc_pmd_info_get,
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.queue_pair_setup = zuc_pmd_qp_setup,
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.queue_pair_release = zuc_pmd_qp_release,
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.queue_pair_count = zuc_pmd_qp_count,
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.sym_session_get_size = zuc_pmd_sym_session_get_size,
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.sym_session_configure = zuc_pmd_sym_session_configure,
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.sym_session_clear = zuc_pmd_sym_session_clear
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};
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struct rte_cryptodev_ops *rte_zuc_pmd_ops = &zuc_pmd_ops;
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