mirror of https://github.com/F-Stack/f-stack.git
453 lines
12 KiB
C
453 lines
12 KiB
C
/*-
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* BSD LICENSE
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*
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* Copyright(c) 2010-2014 Intel Corporation. All rights reserved.
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* 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 <stdio.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdint.h>
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#include <unistd.h>
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#include <getopt.h>
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#include <signal.h>
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#include <sys/mman.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <sys/queue.h>
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#include <sys/file.h>
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#include <unistd.h>
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#include <limits.h>
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#include <errno.h>
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#include <sys/ioctl.h>
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#include <sys/time.h>
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#include <rte_common.h>
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#include <rte_eal_memconfig.h>
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#include <rte_log.h>
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#include <rte_memory.h>
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#include <rte_memcpy.h>
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#include <rte_memzone.h>
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#include <rte_eal.h>
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#include <rte_per_lcore.h>
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#include <rte_launch.h>
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#include <rte_atomic.h>
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#include <rte_cycles.h>
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#include <rte_prefetch.h>
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#include <rte_lcore.h>
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#include <rte_per_lcore.h>
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#include <rte_branch_prediction.h>
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#include <rte_interrupts.h>
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#include <rte_pci.h>
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#include <rte_random.h>
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#include <rte_debug.h>
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#include <rte_ether.h>
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#include <rte_ethdev.h>
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#include <rte_ring.h>
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#include <rte_mempool.h>
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#include <rte_mbuf.h>
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#include <rte_ivshmem.h>
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#include "../include/common.h"
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#define MAX_RX_QUEUE_PER_LCORE 16
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#define MAX_TX_QUEUE_PER_PORT 16
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struct lcore_queue_conf {
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unsigned n_rx_port;
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unsigned rx_port_list[MAX_RX_QUEUE_PER_LCORE];
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struct mbuf_table rx_mbufs[RTE_MAX_ETHPORTS];
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struct vm_port_param * port_param[MAX_RX_QUEUE_PER_LCORE];
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} __rte_cache_aligned;
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static struct lcore_queue_conf lcore_queue_conf[RTE_MAX_LCORE];
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/* Print out statistics on packets dropped */
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static void
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print_stats(void)
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{
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uint64_t total_packets_dropped, total_packets_tx, total_packets_rx;
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unsigned portid;
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total_packets_dropped = 0;
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total_packets_tx = 0;
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total_packets_rx = 0;
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const char clr[] = { 27, '[', '2', 'J', '\0' };
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const char topLeft[] = { 27, '[', '1', ';', '1', 'H','\0' };
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/* Clear screen and move to top left */
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printf("%s%s", clr, topLeft);
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printf("\nPort statistics ====================================");
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for (portid = 0; portid < ctrl->nb_ports; portid++) {
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/* skip ports that are not enabled */
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printf("\nStatistics for port %u ------------------------------"
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"\nPackets sent: %24"PRIu64
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"\nPackets received: %20"PRIu64
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"\nPackets dropped: %21"PRIu64,
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portid,
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ctrl->vm_ports[portid].stats.tx,
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ctrl->vm_ports[portid].stats.rx,
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ctrl->vm_ports[portid].stats.dropped);
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total_packets_dropped += ctrl->vm_ports[portid].stats.dropped;
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total_packets_tx += ctrl->vm_ports[portid].stats.tx;
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total_packets_rx += ctrl->vm_ports[portid].stats.rx;
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}
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printf("\nAggregate statistics ==============================="
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"\nTotal packets sent: %18"PRIu64
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"\nTotal packets received: %14"PRIu64
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"\nTotal packets dropped: %15"PRIu64,
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total_packets_tx,
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total_packets_rx,
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total_packets_dropped);
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printf("\n====================================================\n");
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}
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/* display usage */
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static void
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l2fwd_ivshmem_usage(const char *prgname)
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{
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printf("%s [EAL options] -- [-q NQ -T PERIOD]\n"
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" -q NQ: number of queue (=ports) per lcore (default is 1)\n"
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" -T PERIOD: statistics will be refreshed each PERIOD seconds (0 to disable, 10 default, 86400 maximum)\n",
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prgname);
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}
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static unsigned int
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l2fwd_ivshmem_parse_nqueue(const char *q_arg)
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{
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char *end = NULL;
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unsigned long n;
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/* parse hexadecimal string */
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n = strtoul(q_arg, &end, 10);
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if ((q_arg[0] == '\0') || (end == NULL) || (*end != '\0'))
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return 0;
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if (n == 0)
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return 0;
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if (n >= MAX_RX_QUEUE_PER_LCORE)
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return 0;
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return n;
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}
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static int
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l2fwd_ivshmem_parse_timer_period(const char *q_arg)
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{
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char *end = NULL;
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int n;
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/* parse number string */
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n = strtol(q_arg, &end, 10);
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if ((q_arg[0] == '\0') || (end == NULL) || (*end != '\0'))
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return -1;
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if (n >= MAX_TIMER_PERIOD)
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return -1;
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return n;
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}
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/* Parse the argument given in the command line of the application */
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static int
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l2fwd_ivshmem_parse_args(int argc, char **argv)
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{
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int opt, ret;
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char **argvopt;
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int option_index;
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char *prgname = argv[0];
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static struct option lgopts[] = {
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{NULL, 0, 0, 0}
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};
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argvopt = argv;
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while ((opt = getopt_long(argc, argvopt, "q:p:T:",
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lgopts, &option_index)) != EOF) {
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switch (opt) {
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/* nqueue */
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case 'q':
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l2fwd_ivshmem_rx_queue_per_lcore = l2fwd_ivshmem_parse_nqueue(optarg);
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if (l2fwd_ivshmem_rx_queue_per_lcore == 0) {
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printf("invalid queue number\n");
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l2fwd_ivshmem_usage(prgname);
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return -1;
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}
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break;
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/* timer period */
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case 'T':
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timer_period = l2fwd_ivshmem_parse_timer_period(optarg) * 1000 * TIMER_MILLISECOND;
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if (timer_period < 0) {
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printf("invalid timer period\n");
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l2fwd_ivshmem_usage(prgname);
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return -1;
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}
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break;
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/* long options */
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case 0:
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l2fwd_ivshmem_usage(prgname);
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return -1;
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default:
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l2fwd_ivshmem_usage(prgname);
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return -1;
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}
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}
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if (optind >= 0)
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argv[optind-1] = prgname;
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ret = optind-1;
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optind = 0; /* reset getopt lib */
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return ret;
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}
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/*
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* this loop is getting packets from RX rings of each port, and puts them
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* into TX rings of destination ports.
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*/
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static void
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fwd_loop(void)
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{
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struct rte_mbuf *pkts_burst[MAX_PKT_BURST];
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struct rte_mbuf **m_table;
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struct rte_mbuf *m;
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struct rte_ring *rx, *tx;
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unsigned lcore_id, len;
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uint64_t prev_tsc, diff_tsc, cur_tsc, timer_tsc;
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unsigned i, j, portid, nb_rx;
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struct lcore_queue_conf *qconf;
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struct ether_hdr *eth;
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void *tmp;
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prev_tsc = 0;
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timer_tsc = 0;
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lcore_id = rte_lcore_id();
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qconf = &lcore_queue_conf[lcore_id];
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if (qconf->n_rx_port == 0) {
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RTE_LOG(INFO, L2FWD_IVSHMEM, "lcore %u has nothing to do\n", lcore_id);
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return;
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}
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RTE_LOG(INFO, L2FWD_IVSHMEM, "entering main loop on lcore %u\n", lcore_id);
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for (i = 0; i < qconf->n_rx_port; i++) {
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portid = qconf->rx_port_list[i];
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RTE_LOG(INFO, L2FWD_IVSHMEM, " -- lcoreid=%u portid=%u\n", lcore_id,
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portid);
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}
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while (ctrl->state == STATE_FWD) {
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cur_tsc = rte_rdtsc();
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diff_tsc = cur_tsc - prev_tsc;
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/*
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* Read packet from RX queues and send it to TX queues
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*/
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for (i = 0; i < qconf->n_rx_port; i++) {
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portid = qconf->rx_port_list[i];
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len = qconf->rx_mbufs[portid].len;
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rx = ctrl->vm_ports[portid].rx_ring;
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tx = ctrl->vm_ports[portid].dst->tx_ring;
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m_table = qconf->rx_mbufs[portid].m_table;
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/* if we have something in the queue, try and transmit it down */
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if (len != 0) {
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/* if we succeed in sending the packets down, mark queue as free */
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if (rte_ring_enqueue_bulk(tx, (void**) m_table, len) == 0) {
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ctrl->vm_ports[portid].stats.tx += len;
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qconf->rx_mbufs[portid].len = 0;
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len = 0;
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}
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}
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nb_rx = rte_ring_count(rx);
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nb_rx = RTE_MIN(nb_rx, (unsigned) MAX_PKT_BURST);
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if (nb_rx == 0)
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continue;
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/* if we can get packets into the m_table */
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if (nb_rx < (RTE_DIM(qconf->rx_mbufs[portid].m_table) - len)) {
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/* this situation cannot exist, so if we fail to dequeue, that
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* means something went horribly wrong, hence the failure. */
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if (rte_ring_dequeue_bulk(rx, (void**) pkts_burst, nb_rx) < 0) {
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ctrl->state = STATE_FAIL;
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return;
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}
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ctrl->vm_ports[portid].stats.rx += nb_rx;
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/* put packets into the queue */
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for (j = 0; j < nb_rx; j++) {
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m = pkts_burst[j];
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rte_prefetch0(rte_pktmbuf_mtod(m, void *));
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m_table[len + j] = m;
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eth = rte_pktmbuf_mtod(m, struct ether_hdr *);
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/* 02:00:00:00:00:xx */
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tmp = ð->d_addr.addr_bytes[0];
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*((uint64_t *)tmp) = 0x000000000002 + ((uint64_t)portid << 40);
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/* src addr */
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ether_addr_copy(&ctrl->vm_ports[portid].dst->ethaddr,
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ð->s_addr);
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}
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qconf->rx_mbufs[portid].len += nb_rx;
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}
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}
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/* if timer is enabled */
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if (timer_period > 0) {
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/* advance the timer */
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timer_tsc += diff_tsc;
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/* if timer has reached its timeout */
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if (unlikely(timer_tsc >= (uint64_t) timer_period)) {
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/* do this only on master core */
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if (lcore_id == rte_get_master_lcore()) {
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print_stats();
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/* reset the timer */
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timer_tsc = 0;
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}
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}
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}
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prev_tsc = cur_tsc;
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}
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}
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static int
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l2fwd_ivshmem_launch_one_lcore(__attribute__((unused)) void *dummy)
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{
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fwd_loop();
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return 0;
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}
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int
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main(int argc, char **argv)
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{
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struct lcore_queue_conf *qconf;
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const struct rte_memzone * mz;
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int ret;
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uint8_t portid;
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unsigned rx_lcore_id, lcore_id;
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/* init EAL */
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ret = rte_eal_init(argc, argv);
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if (ret < 0)
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rte_exit(EXIT_FAILURE, "Invalid EAL arguments\n");
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argc -= ret;
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argv += ret;
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/* parse application arguments (after the EAL ones) */
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ret = l2fwd_ivshmem_parse_args(argc, argv);
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if (ret < 0)
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rte_exit(EXIT_FAILURE, "Invalid l2fwd-ivshmem arguments\n");
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/* find control structure */
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mz = rte_memzone_lookup(CTRL_MZ_NAME);
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if (mz == NULL)
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rte_exit(EXIT_FAILURE, "Cannot find control memzone\n");
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ctrl = (struct ivshmem_ctrl*) mz->addr;
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/* lock the ctrl so that we don't have conflicts with anything else */
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rte_spinlock_lock(&ctrl->lock);
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if (ctrl->state == STATE_FWD)
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rte_exit(EXIT_FAILURE, "Forwarding already started!\n");
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rx_lcore_id = 0;
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qconf = NULL;
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/* Initialize the port/queue configuration of each logical core */
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for (portid = 0; portid < ctrl->nb_ports; portid++) {
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/* get the lcore_id for this port */
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while (rte_lcore_is_enabled(rx_lcore_id) == 0 ||
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lcore_queue_conf[rx_lcore_id].n_rx_port ==
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l2fwd_ivshmem_rx_queue_per_lcore) {
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rx_lcore_id++;
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if (rx_lcore_id >= RTE_MAX_LCORE)
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rte_exit(EXIT_FAILURE, "Not enough cores\n");
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}
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if (qconf != &lcore_queue_conf[rx_lcore_id])
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/* Assigned a new logical core in the loop above. */
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qconf = &lcore_queue_conf[rx_lcore_id];
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qconf->rx_port_list[qconf->n_rx_port] = portid;
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qconf->port_param[qconf->n_rx_port] = &ctrl->vm_ports[portid];
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qconf->n_rx_port++;
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printf("Lcore %u: RX port %u\n", rx_lcore_id, (unsigned) portid);
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}
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sigsetup();
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/* indicate that we are ready to forward */
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ctrl->state = STATE_FWD;
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/* unlock */
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rte_spinlock_unlock(&ctrl->lock);
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/* launch per-lcore init on every lcore */
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rte_eal_mp_remote_launch(l2fwd_ivshmem_launch_one_lcore, NULL, CALL_MASTER);
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RTE_LCORE_FOREACH_SLAVE(lcore_id) {
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if (rte_eal_wait_lcore(lcore_id) < 0)
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return -1;
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}
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return 0;
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}
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