9196db904b
Use RTE_DIM to calculate array size. Suggested-by: David Marchand <david.marchand@redhat.com> Signed-off-by: Pavan Nikhilesh <pbhagavatula@marvell.com> Acked-by: Cristian Dumitrescu <cristian.dumitrescu@intel.com> Acked-by: Kevin Laatz <kevin.laatz@intel.com> Acked-by: David Marchand <david.marchand@redhat.com>
585 lines
13 KiB
C
585 lines
13 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2019 Intel Corporation
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*/
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#include <string.h>
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#include <stdint.h>
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#include <rte_mbuf.h>
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#include <rte_malloc.h>
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#include "rte_port_eventdev.h"
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/*
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* Port EVENTDEV Reader
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*/
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#ifdef RTE_PORT_STATS_COLLECT
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#define RTE_PORT_EVENTDEV_READER_STATS_PKTS_IN_ADD(port, val) \
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do {port->stats.n_pkts_in += val;} while (0)
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#define RTE_PORT_EVENTDEV_READER_STATS_PKTS_DROP_ADD(port, val) \
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do {port->stats.n_pkts_drop += val;} while (0)
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#else
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#define RTE_PORT_EVENTDEV_READER_STATS_PKTS_IN_ADD(port, val)
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#define RTE_PORT_EVENTDEV_READER_STATS_PKTS_DROP_ADD(port, val)
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#endif
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struct rte_port_eventdev_reader {
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struct rte_port_in_stats stats;
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uint8_t eventdev_id;
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uint16_t port_id;
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struct rte_event ev[RTE_PORT_IN_BURST_SIZE_MAX];
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};
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static void *
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rte_port_eventdev_reader_create(void *params, int socket_id)
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{
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struct rte_port_eventdev_reader_params *conf =
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params;
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struct rte_port_eventdev_reader *port;
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/* Check input parameters */
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if (conf == NULL) {
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RTE_LOG(ERR, PORT, "%s: params is NULL\n", __func__);
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return NULL;
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}
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/* Memory allocation */
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port = rte_zmalloc_socket("PORT", sizeof(*port),
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RTE_CACHE_LINE_SIZE, socket_id);
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if (port == NULL) {
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RTE_LOG(ERR, PORT, "%s: Failed to allocate port\n", __func__);
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return NULL;
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}
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/* Initialization */
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port->eventdev_id = conf->eventdev_id;
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port->port_id = conf->port_id;
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return port;
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}
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static int
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rte_port_eventdev_reader_rx(void *port, struct rte_mbuf **pkts, uint32_t n_pkts)
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{
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struct rte_port_eventdev_reader *p = port;
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uint16_t rx_evts_cnt, i;
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rx_evts_cnt = rte_event_dequeue_burst(p->eventdev_id, p->port_id,
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p->ev, n_pkts, 0);
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for (i = 0; i < rx_evts_cnt; i++)
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pkts[i] = p->ev[i].mbuf;
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RTE_PORT_EVENTDEV_READER_STATS_PKTS_IN_ADD(p, rx_evts_cnt);
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return rx_evts_cnt;
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}
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static int
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rte_port_eventdev_reader_free(void *port)
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{
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if (port == NULL) {
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RTE_LOG(ERR, PORT, "%s: port is NULL\n", __func__);
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return -EINVAL;
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}
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rte_free(port);
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return 0;
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}
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static int rte_port_eventdev_reader_stats_read(void *port,
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struct rte_port_in_stats *stats, int clear)
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{
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struct rte_port_eventdev_reader *p =
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port;
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if (stats != NULL)
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memcpy(stats, &p->stats, sizeof(p->stats));
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if (clear)
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memset(&p->stats, 0, sizeof(p->stats));
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return 0;
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}
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/*
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* Port EVENTDEV Writer
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*/
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#ifdef RTE_PORT_STATS_COLLECT
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#define RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_IN_ADD(port, val) \
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do {port->stats.n_pkts_in += val;} while (0)
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#define RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_DROP_ADD(port, val) \
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do {port->stats.n_pkts_drop += val;} while (0)
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#else
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#define RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_IN_ADD(port, val)
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#define RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_DROP_ADD(port, val)
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#endif
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struct rte_port_eventdev_writer {
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struct rte_port_out_stats stats;
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struct rte_event ev[2 * RTE_PORT_IN_BURST_SIZE_MAX];
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uint32_t enq_burst_sz;
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uint32_t enq_buf_count;
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uint64_t bsz_mask;
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uint8_t eventdev_id;
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uint8_t port_id;
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uint8_t queue_id;
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uint8_t sched_type;
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uint8_t evt_op;
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};
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static void *
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rte_port_eventdev_writer_create(void *params, int socket_id)
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{
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struct rte_port_eventdev_writer_params *conf =
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params;
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struct rte_port_eventdev_writer *port;
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unsigned int i;
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/* Check input parameters */
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if ((conf == NULL) ||
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(conf->enq_burst_sz == 0) ||
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(conf->enq_burst_sz > RTE_PORT_IN_BURST_SIZE_MAX) ||
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(!rte_is_power_of_2(conf->enq_burst_sz))) {
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RTE_LOG(ERR, PORT, "%s: Invalid input parameters\n", __func__);
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return NULL;
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}
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/* Memory allocation */
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port = rte_zmalloc_socket("PORT", sizeof(*port),
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RTE_CACHE_LINE_SIZE, socket_id);
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if (port == NULL) {
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RTE_LOG(ERR, PORT, "%s: Failed to allocate port\n", __func__);
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return NULL;
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}
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/* Initialization */
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port->enq_burst_sz = conf->enq_burst_sz;
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port->enq_buf_count = 0;
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port->bsz_mask = 1LLU << (conf->enq_burst_sz - 1);
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port->eventdev_id = conf->eventdev_id;
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port->port_id = conf->port_id;
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port->queue_id = conf->queue_id;
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port->sched_type = conf->sched_type;
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port->evt_op = conf->evt_op;
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memset(&port->ev, 0, sizeof(port->ev));
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for (i = 0; i < RTE_DIM(port->ev); i++) {
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port->ev[i].queue_id = port->queue_id;
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port->ev[i].sched_type = port->sched_type;
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port->ev[i].op = port->evt_op;
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}
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return port;
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}
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static inline void
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send_burst(struct rte_port_eventdev_writer *p)
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{
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uint32_t nb_enq;
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nb_enq = rte_event_enqueue_burst(p->eventdev_id, p->port_id,
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p->ev, p->enq_buf_count);
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RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_DROP_ADD(p, p->enq_buf_count -
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nb_enq);
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for (; nb_enq < p->enq_buf_count; nb_enq++)
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rte_pktmbuf_free(p->ev[nb_enq].mbuf);
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p->enq_buf_count = 0;
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}
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static int
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rte_port_eventdev_writer_tx(void *port, struct rte_mbuf *pkt)
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{
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struct rte_port_eventdev_writer *p = port;
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p->ev[p->enq_buf_count++].mbuf = pkt;
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RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_IN_ADD(p, 1);
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if (p->enq_buf_count >= p->enq_burst_sz)
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send_burst(p);
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return 0;
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}
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static int
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rte_port_eventdev_writer_tx_bulk(void *port,
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struct rte_mbuf **pkts,
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uint64_t pkts_mask)
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{
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struct rte_port_eventdev_writer *p =
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port;
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uint64_t bsz_mask = p->bsz_mask;
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uint32_t enq_buf_count = p->enq_buf_count;
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uint64_t expr = (pkts_mask & (pkts_mask + 1)) |
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((pkts_mask & bsz_mask) ^ bsz_mask);
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if (expr == 0) {
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uint64_t n_pkts = __builtin_popcountll(pkts_mask);
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uint32_t i, n_enq_ok;
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if (enq_buf_count)
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send_burst(p);
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RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_IN_ADD(p, n_pkts);
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struct rte_event events[2 * RTE_PORT_IN_BURST_SIZE_MAX] = {};
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for (i = 0; i < n_pkts; i++) {
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events[i].mbuf = pkts[i];
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events[i].queue_id = p->queue_id;
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events[i].sched_type = p->sched_type;
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events[i].op = p->evt_op;
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}
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n_enq_ok = rte_event_enqueue_burst(p->eventdev_id, p->port_id,
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events, n_pkts);
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RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_DROP_ADD(p,
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n_pkts - n_enq_ok);
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for (; n_enq_ok < n_pkts; n_enq_ok++)
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rte_pktmbuf_free(pkts[n_enq_ok]);
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} else {
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for (; pkts_mask;) {
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uint32_t pkt_index = __builtin_ctzll(pkts_mask);
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uint64_t pkt_mask = 1LLU << pkt_index;
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p->ev[enq_buf_count++].mbuf = pkts[pkt_index];
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RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_IN_ADD(p, 1);
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pkts_mask &= ~pkt_mask;
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}
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p->enq_buf_count = enq_buf_count;
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if (enq_buf_count >= p->enq_burst_sz)
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send_burst(p);
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}
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return 0;
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}
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static int
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rte_port_eventdev_writer_flush(void *port)
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{
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struct rte_port_eventdev_writer *p =
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port;
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if (p->enq_buf_count > 0)
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send_burst(p);
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return 0;
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}
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static int
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rte_port_eventdev_writer_free(void *port)
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{
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if (port == NULL) {
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RTE_LOG(ERR, PORT, "%s: Port is NULL\n", __func__);
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return -EINVAL;
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}
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rte_port_eventdev_writer_flush(port);
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rte_free(port);
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return 0;
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}
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static int rte_port_eventdev_writer_stats_read(void *port,
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struct rte_port_out_stats *stats, int clear)
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{
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struct rte_port_eventdev_writer *p =
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port;
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if (stats != NULL)
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memcpy(stats, &p->stats, sizeof(p->stats));
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if (clear)
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memset(&p->stats, 0, sizeof(p->stats));
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return 0;
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}
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/*
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* Port EVENTDEV Writer Nodrop
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*/
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#ifdef RTE_PORT_STATS_COLLECT
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#define RTE_PORT_EVENTDEV_WRITER_NODROP_STATS_PKTS_IN_ADD(port, val) \
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do {port->stats.n_pkts_in += val;} while (0)
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#define RTE_PORT_EVENTDEV_WRITER_NODROP_STATS_PKTS_DROP_ADD(port, val) \
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do {port->stats.n_pkts_drop += val;} while (0)
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#else
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#define RTE_PORT_EVENTDEV_WRITER_NODROP_STATS_PKTS_IN_ADD(port, val)
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#define RTE_PORT_EVENTDEV_WRITER_NODROP_STATS_PKTS_DROP_ADD(port, val)
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#endif
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struct rte_port_eventdev_writer_nodrop {
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struct rte_port_out_stats stats;
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struct rte_event ev[2 * RTE_PORT_IN_BURST_SIZE_MAX];
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uint32_t enq_burst_sz;
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uint32_t enq_buf_count;
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uint64_t bsz_mask;
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uint64_t n_retries;
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uint8_t eventdev_id;
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uint8_t port_id;
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uint8_t queue_id;
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uint8_t sched_type;
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uint8_t evt_op;
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};
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static void *
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rte_port_eventdev_writer_nodrop_create(void *params, int socket_id)
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{
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struct rte_port_eventdev_writer_nodrop_params *conf =
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params;
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struct rte_port_eventdev_writer_nodrop *port;
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unsigned int i;
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/* Check input parameters */
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if ((conf == NULL) ||
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(conf->enq_burst_sz == 0) ||
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(conf->enq_burst_sz > RTE_PORT_IN_BURST_SIZE_MAX) ||
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(!rte_is_power_of_2(conf->enq_burst_sz))) {
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RTE_LOG(ERR, PORT, "%s: Invalid input parameters\n", __func__);
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return NULL;
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}
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/* Memory allocation */
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port = rte_zmalloc_socket("PORT", sizeof(*port),
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RTE_CACHE_LINE_SIZE, socket_id);
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if (port == NULL) {
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RTE_LOG(ERR, PORT, "%s: Failed to allocate port\n", __func__);
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return NULL;
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}
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/* Initialization */
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port->enq_burst_sz = conf->enq_burst_sz;
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port->enq_buf_count = 0;
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port->bsz_mask = 1LLU << (conf->enq_burst_sz - 1);
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port->eventdev_id = conf->eventdev_id;
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port->port_id = conf->port_id;
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port->queue_id = conf->queue_id;
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port->sched_type = conf->sched_type;
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port->evt_op = conf->evt_op;
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memset(&port->ev, 0, sizeof(port->ev));
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for (i = 0; i < RTE_DIM(port->ev); i++) {
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port->ev[i].queue_id = port->queue_id;
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port->ev[i].sched_type = port->sched_type;
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port->ev[i].op = port->evt_op;
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}
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/*
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* When n_retries is 0 it means that we should wait for every event to
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* send no matter how many retries should it take. To limit number of
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* branches in fast path, we use UINT64_MAX instead of branching.
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*/
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port->n_retries = (conf->n_retries == 0) ? UINT64_MAX : conf->n_retries;
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return port;
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}
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static inline void
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send_burst_nodrop(struct rte_port_eventdev_writer_nodrop *p)
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{
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uint32_t nb_enq, i;
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nb_enq = rte_event_enqueue_burst(p->eventdev_id, p->port_id,
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p->ev, p->enq_buf_count);
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/* We sent all the packets in a first try */
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if (nb_enq >= p->enq_buf_count) {
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p->enq_buf_count = 0;
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return;
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}
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for (i = 0; i < p->n_retries; i++) {
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nb_enq += rte_event_enqueue_burst(p->eventdev_id, p->port_id,
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p->ev + nb_enq,
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p->enq_buf_count - nb_enq);
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/* We sent all the events in more than one try */
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if (nb_enq >= p->enq_buf_count) {
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p->enq_buf_count = 0;
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return;
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}
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}
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/* We didn't send the events in maximum allowed attempts */
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RTE_PORT_EVENTDEV_WRITER_NODROP_STATS_PKTS_DROP_ADD(p,
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p->enq_buf_count - nb_enq);
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for (; nb_enq < p->enq_buf_count; nb_enq++)
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rte_pktmbuf_free(p->ev[nb_enq].mbuf);
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p->enq_buf_count = 0;
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}
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static int
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rte_port_eventdev_writer_nodrop_tx(void *port, struct rte_mbuf *pkt)
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{
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struct rte_port_eventdev_writer_nodrop *p = port;
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p->ev[p->enq_buf_count++].mbuf = pkt;
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RTE_PORT_EVENTDEV_WRITER_NODROP_STATS_PKTS_IN_ADD(p, 1);
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if (p->enq_buf_count >= p->enq_burst_sz)
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send_burst_nodrop(p);
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return 0;
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}
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static int
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rte_port_eventdev_writer_nodrop_tx_bulk(void *port,
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struct rte_mbuf **pkts,
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uint64_t pkts_mask)
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{
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struct rte_port_eventdev_writer_nodrop *p =
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port;
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uint64_t bsz_mask = p->bsz_mask;
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uint32_t enq_buf_count = p->enq_buf_count;
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uint64_t expr = (pkts_mask & (pkts_mask + 1)) |
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((pkts_mask & bsz_mask) ^ bsz_mask);
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if (expr == 0) {
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uint64_t n_pkts = __builtin_popcountll(pkts_mask);
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uint32_t i, n_enq_ok;
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if (enq_buf_count)
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send_burst_nodrop(p);
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RTE_PORT_EVENTDEV_WRITER_NODROP_STATS_PKTS_IN_ADD(p, n_pkts);
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struct rte_event events[RTE_PORT_IN_BURST_SIZE_MAX] = {};
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for (i = 0; i < n_pkts; i++) {
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events[i].mbuf = pkts[i];
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events[i].queue_id = p->queue_id;
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events[i].sched_type = p->sched_type;
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events[i].op = p->evt_op;
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}
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n_enq_ok = rte_event_enqueue_burst(p->eventdev_id, p->port_id,
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events, n_pkts);
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if (n_enq_ok >= n_pkts)
|
|
return 0;
|
|
|
|
/*
|
|
* If we did not manage to enqueue all events in single burst,
|
|
* move remaining events to the buffer and call send burst.
|
|
*/
|
|
for (; n_enq_ok < n_pkts; n_enq_ok++) {
|
|
struct rte_mbuf *pkt = pkts[n_enq_ok];
|
|
p->ev[p->enq_buf_count++].mbuf = pkt;
|
|
}
|
|
send_burst_nodrop(p);
|
|
} else {
|
|
for (; pkts_mask;) {
|
|
uint32_t pkt_index = __builtin_ctzll(pkts_mask);
|
|
uint64_t pkt_mask = 1LLU << pkt_index;
|
|
|
|
p->ev[enq_buf_count++].mbuf = pkts[pkt_index];
|
|
|
|
RTE_PORT_EVENTDEV_WRITER_STATS_PKTS_IN_ADD(p, 1);
|
|
pkts_mask &= ~pkt_mask;
|
|
}
|
|
|
|
p->enq_buf_count = enq_buf_count;
|
|
if (enq_buf_count >= p->enq_burst_sz)
|
|
send_burst_nodrop(p);
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int
|
|
rte_port_eventdev_writer_nodrop_flush(void *port)
|
|
{
|
|
struct rte_port_eventdev_writer_nodrop *p =
|
|
port;
|
|
|
|
if (p->enq_buf_count > 0)
|
|
send_burst_nodrop(p);
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int
|
|
rte_port_eventdev_writer_nodrop_free(void *port)
|
|
{
|
|
if (port == NULL) {
|
|
RTE_LOG(ERR, PORT, "%s: Port is NULL\n", __func__);
|
|
return -EINVAL;
|
|
}
|
|
|
|
rte_port_eventdev_writer_nodrop_flush(port);
|
|
rte_free(port);
|
|
|
|
return 0;
|
|
}
|
|
|
|
static int rte_port_eventdev_writer_nodrop_stats_read(void *port,
|
|
struct rte_port_out_stats *stats, int clear)
|
|
{
|
|
struct rte_port_eventdev_writer_nodrop *p =
|
|
port;
|
|
|
|
if (stats != NULL)
|
|
memcpy(stats, &p->stats, sizeof(p->stats));
|
|
|
|
if (clear)
|
|
memset(&p->stats, 0, sizeof(p->stats));
|
|
|
|
return 0;
|
|
}
|
|
|
|
/*
|
|
* Summary of port operations
|
|
*/
|
|
struct rte_port_in_ops rte_port_eventdev_reader_ops = {
|
|
.f_create = rte_port_eventdev_reader_create,
|
|
.f_free = rte_port_eventdev_reader_free,
|
|
.f_rx = rte_port_eventdev_reader_rx,
|
|
.f_stats = rte_port_eventdev_reader_stats_read,
|
|
};
|
|
|
|
struct rte_port_out_ops rte_port_eventdev_writer_ops = {
|
|
.f_create = rte_port_eventdev_writer_create,
|
|
.f_free = rte_port_eventdev_writer_free,
|
|
.f_tx = rte_port_eventdev_writer_tx,
|
|
.f_tx_bulk = rte_port_eventdev_writer_tx_bulk,
|
|
.f_flush = rte_port_eventdev_writer_flush,
|
|
.f_stats = rte_port_eventdev_writer_stats_read,
|
|
};
|
|
|
|
struct rte_port_out_ops rte_port_eventdev_writer_nodrop_ops = {
|
|
.f_create = rte_port_eventdev_writer_nodrop_create,
|
|
.f_free = rte_port_eventdev_writer_nodrop_free,
|
|
.f_tx = rte_port_eventdev_writer_nodrop_tx,
|
|
.f_tx_bulk = rte_port_eventdev_writer_nodrop_tx_bulk,
|
|
.f_flush = rte_port_eventdev_writer_nodrop_flush,
|
|
.f_stats = rte_port_eventdev_writer_nodrop_stats_read,
|
|
};
|