2012-09-04 12:54:00 +00:00
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/*-
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* BSD LICENSE
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2014-06-03 23:42:50 +00:00
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*
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2014-02-10 11:46:50 +00:00
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* Copyright(c) 2010-2014 Intel Corporation. All rights reserved.
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2012-09-04 12:54:00 +00:00
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* All rights reserved.
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2014-06-03 23:42:50 +00:00
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*
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2013-09-18 10:00:00 +00:00
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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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2012-09-04 12:54:00 +00:00
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* are met:
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2014-06-03 23:42:50 +00:00
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*
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2013-09-18 10:00:00 +00:00
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* * Redistributions of source code must retain the above copyright
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2012-09-04 12:54:00 +00:00
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* notice, this list of conditions and the following disclaimer.
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2013-09-18 10:00:00 +00:00
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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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2012-09-04 12:54:00 +00:00
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* distribution.
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2013-09-18 10:00:00 +00:00
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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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2012-09-04 12:54:00 +00:00
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* from this software without specific prior written permission.
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2014-06-03 23:42:50 +00:00
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*
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2013-09-18 10:00:00 +00:00
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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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2012-09-04 12:54:00 +00:00
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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 <stdarg.h>
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#include <string.h>
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#include <stdio.h>
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#include <errno.h>
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#include <stdint.h>
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#include <unistd.h>
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#include <inttypes.h>
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#include <sys/queue.h>
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#include <sys/stat.h>
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#include <rte_common.h>
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#include <rte_byteorder.h>
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#include <rte_log.h>
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#include <rte_debug.h>
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#include <rte_cycles.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_launch.h>
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#include <rte_eal.h>
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#include <rte_per_lcore.h>
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#include <rte_lcore.h>
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#include <rte_atomic.h>
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#include <rte_branch_prediction.h>
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#include <rte_memory.h>
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#include <rte_mempool.h>
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#include <rte_mbuf.h>
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#include <rte_memcpy.h>
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#include <rte_interrupts.h>
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#include <rte_pci.h>
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#include <rte_ether.h>
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#include <rte_ethdev.h>
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#include <rte_ip.h>
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#include <rte_tcp.h>
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#include <rte_udp.h>
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#include <rte_string_fns.h>
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2016-12-21 14:51:22 +00:00
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#include <rte_flow.h>
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2012-09-04 12:54:00 +00:00
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#include "testpmd.h"
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#define UDP_SRC_PORT 1024
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#define UDP_DST_PORT 1024
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2014-05-12 15:35:09 +00:00
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#define IP_SRC_ADDR ((192U << 24) | (168 << 16) | (0 << 8) | 1)
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#define IP_DST_ADDR ((192U << 24) | (168 << 16) | (0 << 8) | 2)
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2012-09-04 12:54:00 +00:00
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#define IP_DEFTTL 64 /* from RFC 1340. */
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#define IP_VERSION 0x40
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#define IP_HDRLEN 0x05 /* default IP header length == five 32-bits words. */
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#define IP_VHL_DEF (IP_VERSION | IP_HDRLEN)
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static struct ipv4_hdr pkt_ip_hdr; /**< IP header of transmitted packets. */
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static struct udp_hdr pkt_udp_hdr; /**< UDP header of transmitted packets. */
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static void
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copy_buf_to_pkt_segs(void* buf, unsigned len, struct rte_mbuf *pkt,
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unsigned offset)
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{
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struct rte_mbuf *seg;
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void *seg_buf;
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unsigned copy_len;
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seg = pkt;
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2014-08-28 15:42:37 +00:00
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while (offset >= seg->data_len) {
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offset -= seg->data_len;
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seg = seg->next;
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2012-09-04 12:54:00 +00:00
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}
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2014-08-28 15:42:37 +00:00
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copy_len = seg->data_len - offset;
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2015-06-22 18:34:23 +00:00
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seg_buf = rte_pktmbuf_mtod_offset(seg, char *, offset);
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2012-09-04 12:54:00 +00:00
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while (len > copy_len) {
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rte_memcpy(seg_buf, buf, (size_t) copy_len);
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len -= copy_len;
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buf = ((char*) buf + copy_len);
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2014-08-28 15:42:37 +00:00
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seg = seg->next;
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2014-09-11 13:15:35 +00:00
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seg_buf = rte_pktmbuf_mtod(seg, char *);
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2012-09-04 12:54:00 +00:00
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}
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rte_memcpy(seg_buf, buf, (size_t) len);
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}
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static inline void
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copy_buf_to_pkt(void* buf, unsigned len, struct rte_mbuf *pkt, unsigned offset)
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{
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2014-08-28 15:42:37 +00:00
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if (offset + len <= pkt->data_len) {
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2015-06-22 18:34:23 +00:00
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rte_memcpy(rte_pktmbuf_mtod_offset(pkt, char *, offset),
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2014-09-11 13:15:35 +00:00
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buf, (size_t) len);
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2012-09-04 12:54:00 +00:00
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return;
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}
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copy_buf_to_pkt_segs(buf, len, pkt, offset);
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}
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static void
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setup_pkt_udp_ip_headers(struct ipv4_hdr *ip_hdr,
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struct udp_hdr *udp_hdr,
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uint16_t pkt_data_len)
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{
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uint16_t *ptr16;
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uint32_t ip_cksum;
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uint16_t pkt_len;
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/*
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* Initialize UDP header.
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*/
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pkt_len = (uint16_t) (pkt_data_len + sizeof(struct udp_hdr));
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udp_hdr->src_port = rte_cpu_to_be_16(UDP_SRC_PORT);
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udp_hdr->dst_port = rte_cpu_to_be_16(UDP_DST_PORT);
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udp_hdr->dgram_len = RTE_CPU_TO_BE_16(pkt_len);
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udp_hdr->dgram_cksum = 0; /* No UDP checksum. */
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/*
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* Initialize IP header.
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*/
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pkt_len = (uint16_t) (pkt_len + sizeof(struct ipv4_hdr));
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ip_hdr->version_ihl = IP_VHL_DEF;
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ip_hdr->type_of_service = 0;
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ip_hdr->fragment_offset = 0;
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ip_hdr->time_to_live = IP_DEFTTL;
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ip_hdr->next_proto_id = IPPROTO_UDP;
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ip_hdr->packet_id = 0;
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ip_hdr->total_length = RTE_CPU_TO_BE_16(pkt_len);
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ip_hdr->src_addr = rte_cpu_to_be_32(IP_SRC_ADDR);
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ip_hdr->dst_addr = rte_cpu_to_be_32(IP_DST_ADDR);
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/*
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* Compute IP header checksum.
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*/
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2015-06-22 18:34:19 +00:00
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ptr16 = (unaligned_uint16_t*) ip_hdr;
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2012-09-04 12:54:00 +00:00
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ip_cksum = 0;
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ip_cksum += ptr16[0]; ip_cksum += ptr16[1];
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ip_cksum += ptr16[2]; ip_cksum += ptr16[3];
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ip_cksum += ptr16[4];
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ip_cksum += ptr16[6]; ip_cksum += ptr16[7];
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ip_cksum += ptr16[8]; ip_cksum += ptr16[9];
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/*
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* Reduce 32 bit checksum to 16 bits and complement it.
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*/
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ip_cksum = ((ip_cksum & 0xFFFF0000) >> 16) +
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(ip_cksum & 0x0000FFFF);
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if (ip_cksum > 65535)
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ip_cksum -= 65535;
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ip_cksum = (~ip_cksum) & 0x0000FFFF;
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if (ip_cksum == 0)
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ip_cksum = 0xFFFF;
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ip_hdr->hdr_checksum = (uint16_t) ip_cksum;
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}
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/*
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* Transmit a burst of multi-segments packets.
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*/
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static void
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pkt_burst_transmit(struct fwd_stream *fs)
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{
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struct rte_mbuf *pkts_burst[MAX_PKT_BURST];
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2014-11-26 15:04:49 +00:00
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struct rte_port *txp;
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2012-09-04 12:54:00 +00:00
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struct rte_mbuf *pkt;
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struct rte_mbuf *pkt_seg;
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struct rte_mempool *mbp;
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struct ether_hdr eth_hdr;
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uint16_t nb_tx;
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uint16_t nb_pkt;
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2015-06-11 07:03:58 +00:00
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uint16_t vlan_tci, vlan_tci_outer;
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2016-06-14 23:08:02 +00:00
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uint32_t retry;
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2014-11-26 15:04:49 +00:00
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uint64_t ol_flags = 0;
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2012-09-04 12:54:00 +00:00
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uint8_t i;
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#ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
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uint64_t start_tsc;
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uint64_t end_tsc;
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uint64_t core_cycles;
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#endif
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2015-11-10 13:48:20 +00:00
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uint32_t nb_segs, pkt_len;
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2012-09-04 12:54:00 +00:00
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#ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
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start_tsc = rte_rdtsc();
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#endif
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mbp = current_fwd_lcore()->mbp;
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2014-11-26 15:04:49 +00:00
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txp = &ports[fs->tx_port];
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vlan_tci = txp->tx_vlan_id;
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2015-06-11 07:03:58 +00:00
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vlan_tci_outer = txp->tx_vlan_id_outer;
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2014-11-26 15:04:49 +00:00
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if (txp->tx_ol_flags & TESTPMD_TX_OFFLOAD_INSERT_VLAN)
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ol_flags = PKT_TX_VLAN_PKT;
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2015-06-11 07:03:58 +00:00
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if (txp->tx_ol_flags & TESTPMD_TX_OFFLOAD_INSERT_QINQ)
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ol_flags |= PKT_TX_QINQ_PKT;
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2017-01-13 11:21:40 +00:00
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if (txp->tx_ol_flags & TESTPMD_TX_OFFLOAD_MACSEC)
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ol_flags |= PKT_TX_MACSEC;
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2012-09-04 12:54:00 +00:00
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for (nb_pkt = 0; nb_pkt < nb_pkt_per_burst; nb_pkt++) {
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2016-05-11 14:43:46 +00:00
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pkt = rte_mbuf_raw_alloc(mbp);
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2012-09-04 12:54:00 +00:00
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if (pkt == NULL) {
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nomore_mbuf:
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if (nb_pkt == 0)
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return;
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break;
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}
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2016-10-04 12:05:24 +00:00
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/*
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* Using raw alloc is good to improve performance,
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* but some consumers may use the headroom and so
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* decrement data_off. We need to make sure it is
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* reset to default value.
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*/
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rte_pktmbuf_reset_headroom(pkt);
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2014-08-28 15:42:37 +00:00
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pkt->data_len = tx_pkt_seg_lengths[0];
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2012-09-04 12:54:00 +00:00
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pkt_seg = pkt;
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2015-11-10 13:48:20 +00:00
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if (tx_pkt_split == TX_PKT_SPLIT_RND)
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nb_segs = random() % tx_pkt_nb_segs + 1;
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else
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nb_segs = tx_pkt_nb_segs;
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pkt_len = pkt->data_len;
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for (i = 1; i < nb_segs; i++) {
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2016-05-11 14:43:46 +00:00
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pkt_seg->next = rte_mbuf_raw_alloc(mbp);
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2014-08-28 15:42:37 +00:00
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if (pkt_seg->next == NULL) {
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pkt->nb_segs = i;
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2012-09-04 12:54:00 +00:00
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rte_pktmbuf_free(pkt);
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goto nomore_mbuf;
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}
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2014-08-28 15:42:37 +00:00
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pkt_seg = pkt_seg->next;
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pkt_seg->data_len = tx_pkt_seg_lengths[i];
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2015-11-10 13:48:20 +00:00
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pkt_len += pkt_seg->data_len;
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2012-09-04 12:54:00 +00:00
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}
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2014-08-28 15:42:37 +00:00
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pkt_seg->next = NULL; /* Last segment of packet. */
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2012-09-04 12:54:00 +00:00
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/*
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* Initialize Ethernet header.
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*/
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ether_addr_copy(&peer_eth_addrs[fs->peer_addr],ð_hdr.d_addr);
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ether_addr_copy(&ports[fs->tx_port].eth_addr, ð_hdr.s_addr);
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eth_hdr.ether_type = rte_cpu_to_be_16(ETHER_TYPE_IPv4);
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/*
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* Copy headers in first packet segment(s).
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*/
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copy_buf_to_pkt(ð_hdr, sizeof(eth_hdr), pkt, 0);
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copy_buf_to_pkt(&pkt_ip_hdr, sizeof(pkt_ip_hdr), pkt,
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sizeof(struct ether_hdr));
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copy_buf_to_pkt(&pkt_udp_hdr, sizeof(pkt_udp_hdr), pkt,
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sizeof(struct ether_hdr) +
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sizeof(struct ipv4_hdr));
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/*
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* Complete first mbuf of packet and append it to the
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* burst of packets to be transmitted.
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*/
|
2015-11-10 13:48:20 +00:00
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pkt->nb_segs = nb_segs;
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pkt->pkt_len = pkt_len;
|
2012-09-04 12:54:00 +00:00
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pkt->ol_flags = ol_flags;
|
2015-06-11 07:03:58 +00:00
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pkt->vlan_tci = vlan_tci;
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pkt->vlan_tci_outer = vlan_tci_outer;
|
2014-09-09 14:40:56 +00:00
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pkt->l2_len = sizeof(struct ether_hdr);
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pkt->l3_len = sizeof(struct ipv4_hdr);
|
2012-09-04 12:54:00 +00:00
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pkts_burst[nb_pkt] = pkt;
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}
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nb_tx = rte_eth_tx_burst(fs->tx_port, fs->tx_queue, pkts_burst, nb_pkt);
|
2016-06-14 23:08:02 +00:00
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/*
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* Retry if necessary
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*/
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if (unlikely(nb_tx < nb_pkt) && fs->retry_enabled) {
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retry = 0;
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|
|
|
while (nb_tx < nb_pkt && retry++ < burst_tx_retry_num) {
|
|
|
|
rte_delay_us(burst_tx_delay_time);
|
|
|
|
nb_tx += rte_eth_tx_burst(fs->tx_port, fs->tx_queue,
|
|
|
|
&pkts_burst[nb_tx], nb_pkt - nb_tx);
|
|
|
|
}
|
|
|
|
}
|
2012-09-04 12:54:00 +00:00
|
|
|
fs->tx_packets += nb_tx;
|
|
|
|
|
|
|
|
#ifdef RTE_TEST_PMD_RECORD_BURST_STATS
|
|
|
|
fs->tx_burst_stats.pkt_burst_spread[nb_tx]++;
|
|
|
|
#endif
|
|
|
|
if (unlikely(nb_tx < nb_pkt)) {
|
|
|
|
if (verbose_level > 0 && fs->fwd_dropped == 0)
|
|
|
|
printf("port %d tx_queue %d - drop "
|
|
|
|
"(nb_pkt:%u - nb_tx:%u)=%u packets\n",
|
|
|
|
fs->tx_port, fs->tx_queue,
|
|
|
|
(unsigned) nb_pkt, (unsigned) nb_tx,
|
|
|
|
(unsigned) (nb_pkt - nb_tx));
|
|
|
|
fs->fwd_dropped += (nb_pkt - nb_tx);
|
|
|
|
do {
|
|
|
|
rte_pktmbuf_free(pkts_burst[nb_tx]);
|
|
|
|
} while (++nb_tx < nb_pkt);
|
|
|
|
}
|
|
|
|
|
|
|
|
#ifdef RTE_TEST_PMD_RECORD_CORE_CYCLES
|
|
|
|
end_tsc = rte_rdtsc();
|
|
|
|
core_cycles = (end_tsc - start_tsc);
|
|
|
|
fs->core_cycles = (uint64_t) (fs->core_cycles + core_cycles);
|
|
|
|
#endif
|
|
|
|
}
|
|
|
|
|
|
|
|
static void
|
|
|
|
tx_only_begin(__attribute__((unused)) portid_t pi)
|
|
|
|
{
|
|
|
|
uint16_t pkt_data_len;
|
|
|
|
|
|
|
|
pkt_data_len = (uint16_t) (tx_pkt_length - (sizeof(struct ether_hdr) +
|
|
|
|
sizeof(struct ipv4_hdr) +
|
|
|
|
sizeof(struct udp_hdr)));
|
|
|
|
setup_pkt_udp_ip_headers(&pkt_ip_hdr, &pkt_udp_hdr, pkt_data_len);
|
|
|
|
}
|
|
|
|
|
|
|
|
struct fwd_engine tx_only_engine = {
|
|
|
|
.fwd_mode_name = "txonly",
|
|
|
|
.port_fwd_begin = tx_only_begin,
|
|
|
|
.port_fwd_end = NULL,
|
|
|
|
.packet_fwd = pkt_burst_transmit,
|
|
|
|
};
|