f-stack/dpdk/examples/l3fwd/l3fwd_altivec.h

255 lines
6.3 KiB
C

/* SPDX-License-Identifier: BSD-3-Clause
* Copyright(c) 2016 Intel Corporation.
* Copyright(c) 2017 IBM Corporation.
* All rights reserved.
*/
#ifndef _L3FWD_ALTIVEC_H_
#define _L3FWD_ALTIVEC_H_
#include "l3fwd.h"
#include "altivec/port_group.h"
#include "l3fwd_common.h"
/*
* Update source and destination MAC addresses in the ethernet header.
* Perform RFC1812 checks and updates for IPV4 packets.
*/
static inline void
processx4_step3(struct rte_mbuf *pkt[FWDSTEP], uint16_t dst_port[FWDSTEP])
{
__vector unsigned int te[FWDSTEP];
__vector unsigned int ve[FWDSTEP];
__vector unsigned int *p[FWDSTEP];
p[0] = rte_pktmbuf_mtod(pkt[0], __vector unsigned int *);
p[1] = rte_pktmbuf_mtod(pkt[1], __vector unsigned int *);
p[2] = rte_pktmbuf_mtod(pkt[2], __vector unsigned int *);
p[3] = rte_pktmbuf_mtod(pkt[3], __vector unsigned int *);
ve[0] = (__vector unsigned int)val_eth[dst_port[0]];
te[0] = *p[0];
ve[1] = (__vector unsigned int)val_eth[dst_port[1]];
te[1] = *p[1];
ve[2] = (__vector unsigned int)val_eth[dst_port[2]];
te[2] = *p[2];
ve[3] = (__vector unsigned int)val_eth[dst_port[3]];
te[3] = *p[3];
/* Update first 12 bytes, keep rest bytes intact. */
te[0] = (__vector unsigned int)vec_sel(
(__vector unsigned short)ve[0],
(__vector unsigned short)te[0],
(__vector unsigned short) {0, 0, 0, 0,
0, 0, 0xffff, 0xffff});
te[1] = (__vector unsigned int)vec_sel(
(__vector unsigned short)ve[1],
(__vector unsigned short)te[1],
(__vector unsigned short) {0, 0, 0, 0,
0, 0, 0xffff, 0xffff});
te[2] = (__vector unsigned int)vec_sel(
(__vector unsigned short)ve[2],
(__vector unsigned short)te[2],
(__vector unsigned short) {0, 0, 0, 0, 0,
0, 0xffff, 0xffff});
te[3] = (__vector unsigned int)vec_sel(
(__vector unsigned short)ve[3],
(__vector unsigned short)te[3],
(__vector unsigned short) {0, 0, 0, 0,
0, 0, 0xffff, 0xffff});
*p[0] = te[0];
*p[1] = te[1];
*p[2] = te[2];
*p[3] = te[3];
rfc1812_process((struct rte_ipv4_hdr *)
((struct rte_ether_hdr *)p[0] + 1),
&dst_port[0], pkt[0]->packet_type);
rfc1812_process((struct rte_ipv4_hdr *)
((struct rte_ether_hdr *)p[1] + 1),
&dst_port[1], pkt[1]->packet_type);
rfc1812_process((struct rte_ipv4_hdr *)
((struct rte_ether_hdr *)p[2] + 1),
&dst_port[2], pkt[2]->packet_type);
rfc1812_process((struct rte_ipv4_hdr *)
((struct rte_ether_hdr *)p[3] + 1),
&dst_port[3], pkt[3]->packet_type);
}
/**
* Process one packet:
* Update source and destination MAC addresses in the ethernet header.
* Perform RFC1812 checks and updates for IPV4 packets.
*/
static inline void
process_packet(struct rte_mbuf *pkt, uint16_t *dst_port)
{
struct rte_ether_hdr *eth_hdr;
__vector unsigned int te, ve;
eth_hdr = rte_pktmbuf_mtod(pkt, struct rte_ether_hdr *);
te = *(__vector unsigned int *)eth_hdr;
ve = (__vector unsigned int)val_eth[dst_port[0]];
rfc1812_process((struct rte_ipv4_hdr *)(eth_hdr + 1), dst_port,
pkt->packet_type);
/* dynamically vec_sel te and ve for MASK_ETH (0x3f) */
te = (__vector unsigned int)vec_sel(
(__vector unsigned short)ve,
(__vector unsigned short)te,
(__vector unsigned short){0, 0, 0, 0,
0, 0, 0xffff, 0xffff});
*(__vector unsigned int *)eth_hdr = te;
}
/**
* Send packets burst from pkts_burst to the ports in dst_port array
*/
static __rte_always_inline void
send_packets_multi(struct lcore_conf *qconf, struct rte_mbuf **pkts_burst,
uint16_t dst_port[MAX_PKT_BURST], int nb_rx)
{
int32_t k;
int j = 0;
uint16_t dlp;
uint16_t *lp;
uint16_t pnum[MAX_PKT_BURST + 1];
/*
* Finish packet processing and group consecutive
* packets with the same destination port.
*/
k = RTE_ALIGN_FLOOR(nb_rx, FWDSTEP);
if (k != 0) {
__vector unsigned short dp1, dp2;
lp = pnum;
lp[0] = 1;
processx4_step3(pkts_burst, dst_port);
/* dp1: <d[0], d[1], d[2], d[3], ... > */
dp1 = *(__vector unsigned short *)dst_port;
for (j = FWDSTEP; j != k; j += FWDSTEP) {
processx4_step3(&pkts_burst[j], &dst_port[j]);
/*
* dp2:
* <d[j-3], d[j-2], d[j-1], d[j], ... >
*/
dp2 = *((__vector unsigned short *)
&dst_port[j - FWDSTEP + 1]);
lp = port_groupx4(&pnum[j - FWDSTEP], lp, dp1, dp2);
/*
* dp1:
* <d[j], d[j+1], d[j+2], d[j+3], ... >
*/
dp1 = vec_sro(dp2, (__vector unsigned char) {
0, 0, 0, 0, 0, 0, 0, 0,
0, 0, 0, (FWDSTEP - 1) * sizeof(dst_port[0])});
}
/*
* dp2: <d[j-3], d[j-2], d[j-1], d[j-1], ... >
*/
dp2 = vec_perm(dp1, (__vector unsigned short){},
(__vector unsigned char){0xf9});
lp = port_groupx4(&pnum[j - FWDSTEP], lp, dp1, dp2);
/*
* remove values added by the last repeated
* dst port.
*/
lp[0]--;
dlp = dst_port[j - 1];
} else {
/* set dlp and lp to the never used values. */
dlp = BAD_PORT - 1;
lp = pnum + MAX_PKT_BURST;
}
/* Process up to last 3 packets one by one. */
switch (nb_rx % FWDSTEP) {
case 3:
process_packet(pkts_burst[j], dst_port + j);
GROUP_PORT_STEP(dlp, dst_port, lp, pnum, j);
j++;
/* fall-through */
case 2:
process_packet(pkts_burst[j], dst_port + j);
GROUP_PORT_STEP(dlp, dst_port, lp, pnum, j);
j++;
/* fall-through */
case 1:
process_packet(pkts_burst[j], dst_port + j);
GROUP_PORT_STEP(dlp, dst_port, lp, pnum, j);
j++;
}
/*
* Send packets out, through destination port.
* Consecutive packets with the same destination port
* are already grouped together.
* If destination port for the packet equals BAD_PORT,
* then free the packet without sending it out.
*/
for (j = 0; j < nb_rx; j += k) {
int32_t m;
uint16_t pn;
pn = dst_port[j];
k = pnum[j];
if (likely(pn != BAD_PORT))
send_packetsx4(qconf, pn, pkts_burst + j, k);
else
for (m = j; m != j + k; m++)
rte_pktmbuf_free(pkts_burst[m]);
}
}
static __rte_always_inline uint16_t
process_dst_port(uint16_t *dst_ports, uint16_t nb_elem)
{
uint16_t i = 0, res;
while (nb_elem > 7) {
__vector unsigned short dp1;
__vector unsigned short dp;
dp = (__vector unsigned short)vec_splats((short)dst_ports[0]);
dp1 = *((__vector unsigned short *)&dst_ports[i]);
res = vec_all_eq(dp1, dp);
if (!res)
return BAD_PORT;
nb_elem -= 8;
i += 8;
}
while (nb_elem) {
if (dst_ports[i] != dst_ports[0])
return BAD_PORT;
nb_elem--;
i++;
}
return dst_ports[0];
}
#endif /* _L3FWD_ALTIVEC_H_ */