xdpsock_user.c 31.1 KB
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// SPDX-License-Identifier: GPL-2.0
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/* Copyright(c) 2017 - 2018 Intel Corporation. */
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#include <asm/barrier.h>
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#include <errno.h>
#include <getopt.h>
#include <libgen.h>
#include <linux/bpf.h>
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#include <linux/compiler.h>
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#include <linux/if_link.h>
#include <linux/if_xdp.h>
#include <linux/if_ether.h>
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#include <linux/ip.h>
#include <linux/udp.h>
#include <arpa/inet.h>
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#include <locale.h>
#include <net/ethernet.h>
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#include <net/if.h>
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#include <poll.h>
#include <pthread.h>
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#include <signal.h>
#include <stdbool.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
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#include <sys/mman.h>
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#include <sys/resource.h>
#include <sys/socket.h>
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#include <sys/types.h>
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#include <time.h>
#include <unistd.h>

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#include <bpf/libbpf.h>
#include <bpf/xsk.h>
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#include <bpf/bpf.h>
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#include "xdpsock.h"
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#ifndef SOL_XDP
#define SOL_XDP 283
#endif

#ifndef AF_XDP
#define AF_XDP 44
#endif

#ifndef PF_XDP
#define PF_XDP AF_XDP
#endif

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#define NUM_FRAMES (4 * 1024)
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#define MIN_PKT_SIZE 64
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#define DEBUG_HEXDUMP 0

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typedef __u64 u64;
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typedef __u32 u32;
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typedef __u16 u16;
typedef __u8  u8;
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static unsigned long prev_time;

enum benchmark_type {
	BENCH_RXDROP = 0,
	BENCH_TXONLY = 1,
	BENCH_L2FWD = 2,
};

static enum benchmark_type opt_bench = BENCH_RXDROP;
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static u32 opt_xdp_flags = XDP_FLAGS_UPDATE_IF_NOEXIST;
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static const char *opt_if = "";
static int opt_ifindex;
static int opt_queue;
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static unsigned long opt_duration;
static unsigned long start_time;
static bool benchmark_done;
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static u32 opt_batch_size = 64;
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static int opt_pkt_count;
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static u16 opt_pkt_size = MIN_PKT_SIZE;
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static u32 opt_pkt_fill_pattern = 0x12345678;
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static bool opt_extra_stats;
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static int opt_poll;
static int opt_interval = 1;
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static u32 opt_xdp_bind_flags = XDP_USE_NEED_WAKEUP;
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static u32 opt_umem_flags;
static int opt_unaligned_chunks;
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static int opt_mmap_flags;
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static int opt_xsk_frame_size = XSK_UMEM__DEFAULT_FRAME_SIZE;
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static int opt_timeout = 1000;
static bool opt_need_wakeup = true;
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static u32 opt_num_xsks = 1;
static u32 prog_id;
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struct xsk_umem_info {
	struct xsk_ring_prod fq;
	struct xsk_ring_cons cq;
	struct xsk_umem *umem;
	void *buffer;
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};

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struct xsk_socket_info {
	struct xsk_ring_cons rx;
	struct xsk_ring_prod tx;
	struct xsk_umem_info *umem;
	struct xsk_socket *xsk;
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	unsigned long rx_npkts;
	unsigned long tx_npkts;
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	unsigned long rx_dropped_npkts;
	unsigned long rx_invalid_npkts;
	unsigned long tx_invalid_npkts;
	unsigned long rx_full_npkts;
	unsigned long rx_fill_empty_npkts;
	unsigned long tx_empty_npkts;
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	unsigned long prev_rx_npkts;
	unsigned long prev_tx_npkts;
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	unsigned long prev_rx_dropped_npkts;
	unsigned long prev_rx_invalid_npkts;
	unsigned long prev_tx_invalid_npkts;
	unsigned long prev_rx_full_npkts;
	unsigned long prev_rx_fill_empty_npkts;
	unsigned long prev_tx_empty_npkts;
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	u32 outstanding_tx;
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};

static int num_socks;
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struct xsk_socket_info *xsks[MAX_SOCKS];
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static unsigned long get_nsecs(void)
{
	struct timespec ts;

	clock_gettime(CLOCK_MONOTONIC, &ts);
	return ts.tv_sec * 1000000000UL + ts.tv_nsec;
}

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static void print_benchmark(bool running)
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{
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	const char *bench_str = "INVALID";
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	if (opt_bench == BENCH_RXDROP)
		bench_str = "rxdrop";
	else if (opt_bench == BENCH_TXONLY)
		bench_str = "txonly";
	else if (opt_bench == BENCH_L2FWD)
		bench_str = "l2fwd";
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	printf("%s:%d %s ", opt_if, opt_queue, bench_str);
	if (opt_xdp_flags & XDP_FLAGS_SKB_MODE)
		printf("xdp-skb ");
	else if (opt_xdp_flags & XDP_FLAGS_DRV_MODE)
		printf("xdp-drv ");
	else
		printf("	");
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	if (opt_poll)
		printf("poll() ");
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	if (running) {
		printf("running...");
		fflush(stdout);
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	}
}

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static int xsk_get_xdp_stats(int fd, struct xsk_socket_info *xsk)
{
	struct xdp_statistics stats;
	socklen_t optlen;
	int err;

	optlen = sizeof(stats);
	err = getsockopt(fd, SOL_XDP, XDP_STATISTICS, &stats, &optlen);
	if (err)
		return err;

	if (optlen == sizeof(struct xdp_statistics)) {
		xsk->rx_dropped_npkts = stats.rx_dropped;
		xsk->rx_invalid_npkts = stats.rx_invalid_descs;
		xsk->tx_invalid_npkts = stats.tx_invalid_descs;
		xsk->rx_full_npkts = stats.rx_ring_full;
		xsk->rx_fill_empty_npkts = stats.rx_fill_ring_empty_descs;
		xsk->tx_empty_npkts = stats.tx_ring_empty_descs;
		return 0;
	}

	return -EINVAL;
}

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static void dump_stats(void)
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{
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	unsigned long now = get_nsecs();
	long dt = now - prev_time;
	int i;
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	prev_time = now;
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	for (i = 0; i < num_socks && xsks[i]; i++) {
		char *fmt = "%-15s %'-11.0f %'-11lu\n";
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		double rx_pps, tx_pps, dropped_pps, rx_invalid_pps, full_pps, fill_empty_pps,
			tx_invalid_pps, tx_empty_pps;
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		rx_pps = (xsks[i]->rx_npkts - xsks[i]->prev_rx_npkts) *
			 1000000000. / dt;
		tx_pps = (xsks[i]->tx_npkts - xsks[i]->prev_tx_npkts) *
			 1000000000. / dt;
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		printf("\n sock%d@", i);
		print_benchmark(false);
		printf("\n");
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		printf("%-15s %-11s %-11s %-11.2f\n", "", "pps", "pkts",
		       dt / 1000000000.);
		printf(fmt, "rx", rx_pps, xsks[i]->rx_npkts);
		printf(fmt, "tx", tx_pps, xsks[i]->tx_npkts);
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		xsks[i]->prev_rx_npkts = xsks[i]->rx_npkts;
		xsks[i]->prev_tx_npkts = xsks[i]->tx_npkts;
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		if (opt_extra_stats) {
			if (!xsk_get_xdp_stats(xsk_socket__fd(xsks[i]->xsk), xsks[i])) {
				dropped_pps = (xsks[i]->rx_dropped_npkts -
						xsks[i]->prev_rx_dropped_npkts) * 1000000000. / dt;
				rx_invalid_pps = (xsks[i]->rx_invalid_npkts -
						xsks[i]->prev_rx_invalid_npkts) * 1000000000. / dt;
				tx_invalid_pps = (xsks[i]->tx_invalid_npkts -
						xsks[i]->prev_tx_invalid_npkts) * 1000000000. / dt;
				full_pps = (xsks[i]->rx_full_npkts -
						xsks[i]->prev_rx_full_npkts) * 1000000000. / dt;
				fill_empty_pps = (xsks[i]->rx_fill_empty_npkts -
						xsks[i]->prev_rx_fill_empty_npkts)
						* 1000000000. / dt;
				tx_empty_pps = (xsks[i]->tx_empty_npkts -
						xsks[i]->prev_tx_empty_npkts) * 1000000000. / dt;

				printf(fmt, "rx dropped", dropped_pps,
				       xsks[i]->rx_dropped_npkts);
				printf(fmt, "rx invalid", rx_invalid_pps,
				       xsks[i]->rx_invalid_npkts);
				printf(fmt, "tx invalid", tx_invalid_pps,
				       xsks[i]->tx_invalid_npkts);
				printf(fmt, "rx queue full", full_pps,
				       xsks[i]->rx_full_npkts);
				printf(fmt, "fill ring empty", fill_empty_pps,
				       xsks[i]->rx_fill_empty_npkts);
				printf(fmt, "tx ring empty", tx_empty_pps,
				       xsks[i]->tx_empty_npkts);

				xsks[i]->prev_rx_dropped_npkts = xsks[i]->rx_dropped_npkts;
				xsks[i]->prev_rx_invalid_npkts = xsks[i]->rx_invalid_npkts;
				xsks[i]->prev_tx_invalid_npkts = xsks[i]->tx_invalid_npkts;
				xsks[i]->prev_rx_full_npkts = xsks[i]->rx_full_npkts;
				xsks[i]->prev_rx_fill_empty_npkts = xsks[i]->rx_fill_empty_npkts;
				xsks[i]->prev_tx_empty_npkts = xsks[i]->tx_empty_npkts;
			} else {
				printf("%-15s\n", "Error retrieving extra stats");
			}
		}
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	}
}

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static bool is_benchmark_done(void)
{
	if (opt_duration > 0) {
		unsigned long dt = (get_nsecs() - start_time);

		if (dt >= opt_duration)
			benchmark_done = true;
	}
	return benchmark_done;
}

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static void *poller(void *arg)
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{
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	(void)arg;
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	while (!is_benchmark_done()) {
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		sleep(opt_interval);
		dump_stats();
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	}

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	return NULL;
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}

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static void remove_xdp_program(void)
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{
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	u32 curr_prog_id = 0;
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	if (bpf_get_link_xdp_id(opt_ifindex, &curr_prog_id, opt_xdp_flags)) {
		printf("bpf_get_link_xdp_id failed\n");
		exit(EXIT_FAILURE);
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	}
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	if (prog_id == curr_prog_id)
		bpf_set_link_xdp_fd(opt_ifindex, -1, opt_xdp_flags);
	else if (!curr_prog_id)
		printf("couldn't find a prog id on a given interface\n");
	else
		printf("program on interface changed, not removing\n");
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}

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static void int_exit(int sig)
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{
	benchmark_done = true;
}

static void xdpsock_cleanup(void)
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{
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	struct xsk_umem *umem = xsks[0]->umem->umem;
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	int i;
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	dump_stats();
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	for (i = 0; i < num_socks; i++)
		xsk_socket__delete(xsks[i]->xsk);
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	(void)xsk_umem__delete(umem);
	remove_xdp_program();
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}

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static void __exit_with_error(int error, const char *file, const char *func,
			      int line)
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{
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	fprintf(stderr, "%s:%s:%i: errno: %d/\"%s\"\n", file, func,
		line, error, strerror(error));
	dump_stats();
	remove_xdp_program();
	exit(EXIT_FAILURE);
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}

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#define exit_with_error(error) __exit_with_error(error, __FILE__, __func__, \
						 __LINE__)
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static void swap_mac_addresses(void *data)
{
	struct ether_header *eth = (struct ether_header *)data;
	struct ether_addr *src_addr = (struct ether_addr *)&eth->ether_shost;
	struct ether_addr *dst_addr = (struct ether_addr *)&eth->ether_dhost;
	struct ether_addr tmp;

	tmp = *src_addr;
	*src_addr = *dst_addr;
	*dst_addr = tmp;
}

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static void hex_dump(void *pkt, size_t length, u64 addr)
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{
	const unsigned char *address = (unsigned char *)pkt;
	const unsigned char *line = address;
	size_t line_size = 32;
	unsigned char c;
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	char buf[32];
	int i = 0;
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	if (!DEBUG_HEXDUMP)
		return;

	sprintf(buf, "addr=%llu", addr);
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	printf("length = %zu\n", length);
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	printf("%s | ", buf);
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	while (length-- > 0) {
		printf("%02X ", *address++);
		if (!(++i % line_size) || (length == 0 && i % line_size)) {
			if (length == 0) {
				while (i++ % line_size)
					printf("__ ");
			}
			printf(" | ");	/* right close */
			while (line < address) {
				c = *line++;
				printf("%c", (c < 33 || c == 255) ? 0x2E : c);
			}
			printf("\n");
			if (length > 0)
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				printf("%s | ", buf);
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		}
	}
	printf("\n");
}

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static void *memset32_htonl(void *dest, u32 val, u32 size)
{
	u32 *ptr = (u32 *)dest;
	int i;

	val = htonl(val);

	for (i = 0; i < (size & (~0x3)); i += 4)
		ptr[i >> 2] = val;

	for (; i < size; i++)
		((char *)dest)[i] = ((char *)&val)[i & 3];

	return dest;
}

/*
 * This function code has been taken from
 * Linux kernel lib/checksum.c
 */
static inline unsigned short from32to16(unsigned int x)
{
	/* add up 16-bit and 16-bit for 16+c bit */
	x = (x & 0xffff) + (x >> 16);
	/* add up carry.. */
	x = (x & 0xffff) + (x >> 16);
	return x;
}

/*
 * This function code has been taken from
 * Linux kernel lib/checksum.c
 */
static unsigned int do_csum(const unsigned char *buff, int len)
{
	unsigned int result = 0;
	int odd;

	if (len <= 0)
		goto out;
	odd = 1 & (unsigned long)buff;
	if (odd) {
#ifdef __LITTLE_ENDIAN
		result += (*buff << 8);
#else
		result = *buff;
#endif
		len--;
		buff++;
	}
	if (len >= 2) {
		if (2 & (unsigned long)buff) {
			result += *(unsigned short *)buff;
			len -= 2;
			buff += 2;
		}
		if (len >= 4) {
			const unsigned char *end = buff +
						   ((unsigned int)len & ~3);
			unsigned int carry = 0;

			do {
				unsigned int w = *(unsigned int *)buff;

				buff += 4;
				result += carry;
				result += w;
				carry = (w > result);
			} while (buff < end);
			result += carry;
			result = (result & 0xffff) + (result >> 16);
		}
		if (len & 2) {
			result += *(unsigned short *)buff;
			buff += 2;
		}
	}
	if (len & 1)
#ifdef __LITTLE_ENDIAN
		result += *buff;
#else
		result += (*buff << 8);
#endif
	result = from32to16(result);
	if (odd)
		result = ((result >> 8) & 0xff) | ((result & 0xff) << 8);
out:
	return result;
}

__sum16 ip_fast_csum(const void *iph, unsigned int ihl);

/*
 *	This is a version of ip_compute_csum() optimized for IP headers,
 *	which always checksum on 4 octet boundaries.
 *	This function code has been taken from
 *	Linux kernel lib/checksum.c
 */
__sum16 ip_fast_csum(const void *iph, unsigned int ihl)
{
	return (__force __sum16)~do_csum(iph, ihl * 4);
}

/*
 * Fold a partial checksum
 * This function code has been taken from
 * Linux kernel include/asm-generic/checksum.h
 */
static inline __sum16 csum_fold(__wsum csum)
{
	u32 sum = (__force u32)csum;

	sum = (sum & 0xffff) + (sum >> 16);
	sum = (sum & 0xffff) + (sum >> 16);
	return (__force __sum16)~sum;
}

/*
 * This function code has been taken from
 * Linux kernel lib/checksum.c
 */
static inline u32 from64to32(u64 x)
{
	/* add up 32-bit and 32-bit for 32+c bit */
	x = (x & 0xffffffff) + (x >> 32);
	/* add up carry.. */
	x = (x & 0xffffffff) + (x >> 32);
	return (u32)x;
}

__wsum csum_tcpudp_nofold(__be32 saddr, __be32 daddr,
			  __u32 len, __u8 proto, __wsum sum);

/*
 * This function code has been taken from
 * Linux kernel lib/checksum.c
 */
__wsum csum_tcpudp_nofold(__be32 saddr, __be32 daddr,
			  __u32 len, __u8 proto, __wsum sum)
{
	unsigned long long s = (__force u32)sum;

	s += (__force u32)saddr;
	s += (__force u32)daddr;
#ifdef __BIG_ENDIAN__
	s += proto + len;
#else
	s += (proto + len) << 8;
#endif
	return (__force __wsum)from64to32(s);
}

/*
 * This function has been taken from
 * Linux kernel include/asm-generic/checksum.h
 */
static inline __sum16
csum_tcpudp_magic(__be32 saddr, __be32 daddr, __u32 len,
		  __u8 proto, __wsum sum)
{
	return csum_fold(csum_tcpudp_nofold(saddr, daddr, len, proto, sum));
}

static inline u16 udp_csum(u32 saddr, u32 daddr, u32 len,
			   u8 proto, u16 *udp_pkt)
{
	u32 csum = 0;
	u32 cnt = 0;

	/* udp hdr and data */
	for (; cnt < len; cnt += 2)
		csum += udp_pkt[cnt >> 1];

	return csum_tcpudp_magic(saddr, daddr, len, proto, csum);
}

#define ETH_FCS_SIZE 4

#define PKT_HDR_SIZE (sizeof(struct ethhdr) + sizeof(struct iphdr) + \
		      sizeof(struct udphdr))

#define PKT_SIZE		(opt_pkt_size - ETH_FCS_SIZE)
#define IP_PKT_SIZE		(PKT_SIZE - sizeof(struct ethhdr))
#define UDP_PKT_SIZE		(IP_PKT_SIZE - sizeof(struct iphdr))
#define UDP_PKT_DATA_SIZE	(UDP_PKT_SIZE - sizeof(struct udphdr))

static u8 pkt_data[XSK_UMEM__DEFAULT_FRAME_SIZE];

static void gen_eth_hdr_data(void)
{
	struct udphdr *udp_hdr = (struct udphdr *)(pkt_data +
						   sizeof(struct ethhdr) +
						   sizeof(struct iphdr));
	struct iphdr *ip_hdr = (struct iphdr *)(pkt_data +
						sizeof(struct ethhdr));
	struct ethhdr *eth_hdr = (struct ethhdr *)pkt_data;

	/* ethernet header */
	memcpy(eth_hdr->h_dest, "\x3c\xfd\xfe\x9e\x7f\x71", ETH_ALEN);
	memcpy(eth_hdr->h_source, "\xec\xb1\xd7\x98\x3a\xc0", ETH_ALEN);
	eth_hdr->h_proto = htons(ETH_P_IP);

	/* IP header */
	ip_hdr->version = IPVERSION;
	ip_hdr->ihl = 0x5; /* 20 byte header */
	ip_hdr->tos = 0x0;
	ip_hdr->tot_len = htons(IP_PKT_SIZE);
	ip_hdr->id = 0;
	ip_hdr->frag_off = 0;
	ip_hdr->ttl = IPDEFTTL;
	ip_hdr->protocol = IPPROTO_UDP;
	ip_hdr->saddr = htonl(0x0a0a0a10);
	ip_hdr->daddr = htonl(0x0a0a0a20);

	/* IP header checksum */
	ip_hdr->check = 0;
	ip_hdr->check = ip_fast_csum((const void *)ip_hdr, ip_hdr->ihl);

	/* UDP header */
	udp_hdr->source = htons(0x1000);
	udp_hdr->dest = htons(0x1000);
	udp_hdr->len = htons(UDP_PKT_SIZE);

	/* UDP data */
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	memset32_htonl(pkt_data + PKT_HDR_SIZE, opt_pkt_fill_pattern,
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		       UDP_PKT_DATA_SIZE);

	/* UDP header checksum */
	udp_hdr->check = 0;
	udp_hdr->check = udp_csum(ip_hdr->saddr, ip_hdr->daddr, UDP_PKT_SIZE,
				  IPPROTO_UDP, (u16 *)udp_hdr);
}

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static void gen_eth_frame(struct xsk_umem_info *umem, u64 addr)
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{
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	memcpy(xsk_umem__get_data(umem->buffer, addr), pkt_data,
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	       PKT_SIZE);
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}

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static struct xsk_umem_info *xsk_configure_umem(void *buffer, u64 size)
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{
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	struct xsk_umem_info *umem;
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	struct xsk_umem_config cfg = {
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		/* We recommend that you set the fill ring size >= HW RX ring size +
		 * AF_XDP RX ring size. Make sure you fill up the fill ring
		 * with buffers at regular intervals, and you will with this setting
		 * avoid allocation failures in the driver. These are usually quite
		 * expensive since drivers have not been written to assume that
		 * allocation failures are common. For regular sockets, kernel
		 * allocated memory is used that only runs out in OOM situations
		 * that should be rare.
		 */
		.fill_size = XSK_RING_PROD__DEFAULT_NUM_DESCS * 2,
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		.comp_size = XSK_RING_CONS__DEFAULT_NUM_DESCS,
		.frame_size = opt_xsk_frame_size,
		.frame_headroom = XSK_UMEM__DEFAULT_FRAME_HEADROOM,
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		.flags = opt_umem_flags
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	};
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	int ret;
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	umem = calloc(1, sizeof(*umem));
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	if (!umem)
		exit_with_error(errno);
636

637
	ret = xsk_umem__create(&umem->umem, buffer, size, &umem->fq, &umem->cq,
638
			       &cfg);
639 640
	if (ret)
		exit_with_error(-ret);
641

642 643 644 645 646 647 648 649 650
	umem->buffer = buffer;
	return umem;
}

static void xsk_populate_fill_ring(struct xsk_umem_info *umem)
{
	int ret, i;
	u32 idx;

651
	ret = xsk_ring_prod__reserve(&umem->fq,
652 653
				     XSK_RING_PROD__DEFAULT_NUM_DESCS * 2, &idx);
	if (ret != XSK_RING_PROD__DEFAULT_NUM_DESCS * 2)
654
		exit_with_error(-ret);
655
	for (i = 0; i < XSK_RING_PROD__DEFAULT_NUM_DESCS * 2; i++)
656 657
		*xsk_ring_prod__fill_addr(&umem->fq, idx++) =
			i * opt_xsk_frame_size;
658
	xsk_ring_prod__submit(&umem->fq, XSK_RING_PROD__DEFAULT_NUM_DESCS * 2);
659 660
}

661 662
static struct xsk_socket_info *xsk_configure_socket(struct xsk_umem_info *umem,
						    bool rx, bool tx)
663
{
664 665
	struct xsk_socket_config cfg;
	struct xsk_socket_info *xsk;
666 667
	struct xsk_ring_cons *rxr;
	struct xsk_ring_prod *txr;
668
	int ret;
669 670

	xsk = calloc(1, sizeof(*xsk));
671 672 673 674 675 676
	if (!xsk)
		exit_with_error(errno);

	xsk->umem = umem;
	cfg.rx_size = XSK_RING_CONS__DEFAULT_NUM_DESCS;
	cfg.tx_size = XSK_RING_PROD__DEFAULT_NUM_DESCS;
677 678 679 680
	if (opt_num_xsks > 1)
		cfg.libbpf_flags = XSK_LIBBPF_FLAGS__INHIBIT_PROG_LOAD;
	else
		cfg.libbpf_flags = 0;
681 682
	cfg.xdp_flags = opt_xdp_flags;
	cfg.bind_flags = opt_xdp_bind_flags;
683

684 685 686 687
	rxr = rx ? &xsk->rx : NULL;
	txr = tx ? &xsk->tx : NULL;
	ret = xsk_socket__create(&xsk->xsk, opt_if, opt_queue, umem->umem,
				 rxr, txr, &cfg);
688 689 690 691 692 693 694
	if (ret)
		exit_with_error(-ret);

	ret = bpf_get_link_xdp_id(opt_ifindex, &prog_id, opt_xdp_flags);
	if (ret)
		exit_with_error(-ret);

695 696 697 698 699 700 701 702 703 704 705 706 707
	return xsk;
}

static struct option long_options[] = {
	{"rxdrop", no_argument, 0, 'r'},
	{"txonly", no_argument, 0, 't'},
	{"l2fwd", no_argument, 0, 'l'},
	{"interface", required_argument, 0, 'i'},
	{"queue", required_argument, 0, 'q'},
	{"poll", no_argument, 0, 'p'},
	{"xdp-skb", no_argument, 0, 'S'},
	{"xdp-native", no_argument, 0, 'N'},
	{"interval", required_argument, 0, 'n'},
708 709
	{"zero-copy", no_argument, 0, 'z'},
	{"copy", no_argument, 0, 'c'},
710
	{"frame-size", required_argument, 0, 'f'},
711
	{"no-need-wakeup", no_argument, 0, 'm'},
712
	{"unaligned", no_argument, 0, 'u'},
713
	{"shared-umem", no_argument, 0, 'M'},
714
	{"force", no_argument, 0, 'F'},
715
	{"duration", required_argument, 0, 'd'},
716
	{"batch-size", required_argument, 0, 'b'},
717
	{"tx-pkt-count", required_argument, 0, 'C'},
718
	{"tx-pkt-size", required_argument, 0, 's'},
719
	{"tx-pkt-pattern", required_argument, 0, 'P'},
720
	{"extra-stats", no_argument, 0, 'x'},
721 722 723 724 725 726 727 728 729 730 731 732 733 734 735
	{0, 0, 0, 0}
};

static void usage(const char *prog)
{
	const char *str =
		"  Usage: %s [OPTIONS]\n"
		"  Options:\n"
		"  -r, --rxdrop		Discard all incoming packets (default)\n"
		"  -t, --txonly		Only send packets\n"
		"  -l, --l2fwd		MAC swap L2 forwarding\n"
		"  -i, --interface=n	Run on interface n\n"
		"  -q, --queue=n	Use queue n (default 0)\n"
		"  -p, --poll		Use poll syscall\n"
		"  -S, --xdp-skb=n	Use XDP skb-mod\n"
736
		"  -N, --xdp-native=n	Enforce XDP native mode\n"
737
		"  -n, --interval=n	Specify statistics update interval (default 1 sec).\n"
738 739
		"  -z, --zero-copy      Force zero-copy mode.\n"
		"  -c, --copy           Force copy mode.\n"
740
		"  -m, --no-need-wakeup Turn off use of driver need wakeup flag.\n"
741 742
		"  -f, --frame-size=n   Set the frame size (must be a power of two in aligned mode, default is %d).\n"
		"  -u, --unaligned	Enable unaligned chunk placement\n"
743
		"  -M, --shared-umem	Enable XDP_SHARED_UMEM\n"
744
		"  -F, --force		Force loading the XDP prog\n"
745 746
		"  -d, --duration=n	Duration in secs to run command.\n"
		"			Default: forever.\n"
747 748
		"  -b, --batch-size=n	Batch size for sending or receiving\n"
		"			packets. Default: %d\n"
749 750
		"  -C, --tx-pkt-count=n	Number of packets to send.\n"
		"			Default: Continuous packets.\n"
751 752 753
		"  -s, --tx-pkt-size=n	Transmit packet size.\n"
		"			(Default: %d bytes)\n"
		"			Min size: %d, Max size %d.\n"
754
		"  -P, --tx-pkt-pattern=nPacket fill pattern. Default: 0x%x\n"
755
		"  -x, --extra-stats	Display extra statistics.\n"
756
		"\n";
757
	fprintf(stderr, str, prog, XSK_UMEM__DEFAULT_FRAME_SIZE,
758
		opt_batch_size, MIN_PKT_SIZE, MIN_PKT_SIZE,
759
		XSK_UMEM__DEFAULT_FRAME_SIZE, opt_pkt_fill_pattern);
760

761 762 763 764 765 766 767 768 769 770
	exit(EXIT_FAILURE);
}

static void parse_command_line(int argc, char **argv)
{
	int option_index, c;

	opterr = 0;

	for (;;) {
771
		c = getopt_long(argc, argv, "Frtli:q:pSNn:czf:muMd:b:C:s:P:x",
772
				long_options, &option_index);
773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795 796
		if (c == -1)
			break;

		switch (c) {
		case 'r':
			opt_bench = BENCH_RXDROP;
			break;
		case 't':
			opt_bench = BENCH_TXONLY;
			break;
		case 'l':
			opt_bench = BENCH_L2FWD;
			break;
		case 'i':
			opt_if = optarg;
			break;
		case 'q':
			opt_queue = atoi(optarg);
			break;
		case 'p':
			opt_poll = 1;
			break;
		case 'S':
			opt_xdp_flags |= XDP_FLAGS_SKB_MODE;
797
			opt_xdp_bind_flags |= XDP_COPY;
798 799
			break;
		case 'N':
800
			/* default, set below */
801 802 803 804
			break;
		case 'n':
			opt_interval = atoi(optarg);
			break;
805 806 807 808 809 810
		case 'z':
			opt_xdp_bind_flags |= XDP_ZEROCOPY;
			break;
		case 'c':
			opt_xdp_bind_flags |= XDP_COPY;
			break;
811 812 813
		case 'u':
			opt_umem_flags |= XDP_UMEM_UNALIGNED_CHUNK_FLAG;
			opt_unaligned_chunks = 1;
814
			opt_mmap_flags = MAP_HUGETLB;
815
			break;
816 817 818
		case 'F':
			opt_xdp_flags &= ~XDP_FLAGS_UPDATE_IF_NOEXIST;
			break;
819 820
		case 'f':
			opt_xsk_frame_size = atoi(optarg);
821
			break;
822 823 824
		case 'm':
			opt_need_wakeup = false;
			opt_xdp_bind_flags &= ~XDP_USE_NEED_WAKEUP;
825
			break;
826 827 828
		case 'M':
			opt_num_xsks = MAX_SOCKS;
			break;
829 830 831 832
		case 'd':
			opt_duration = atoi(optarg);
			opt_duration *= 1000000000;
			break;
833 834 835
		case 'b':
			opt_batch_size = atoi(optarg);
			break;
836 837 838
		case 'C':
			opt_pkt_count = atoi(optarg);
			break;
839 840 841 842 843 844 845 846 847 848
		case 's':
			opt_pkt_size = atoi(optarg);
			if (opt_pkt_size > (XSK_UMEM__DEFAULT_FRAME_SIZE) ||
			    opt_pkt_size < MIN_PKT_SIZE) {
				fprintf(stderr,
					"ERROR: Invalid frame size %d\n",
					opt_pkt_size);
				usage(basename(argv[0]));
			}
			break;
849 850 851
		case 'P':
			opt_pkt_fill_pattern = strtol(optarg, NULL, 16);
			break;
852 853 854
		case 'x':
			opt_extra_stats = 1;
			break;
855 856 857 858 859
		default:
			usage(basename(argv[0]));
		}
	}

860 861 862
	if (!(opt_xdp_flags & XDP_FLAGS_SKB_MODE))
		opt_xdp_flags |= XDP_FLAGS_DRV_MODE;

863 864 865 866 867 868
	opt_ifindex = if_nametoindex(opt_if);
	if (!opt_ifindex) {
		fprintf(stderr, "ERROR: interface \"%s\" does not exist\n",
			opt_if);
		usage(basename(argv[0]));
	}
869

870 871
	if ((opt_xsk_frame_size & (opt_xsk_frame_size - 1)) &&
	    !opt_unaligned_chunks) {
872 873 874 875
		fprintf(stderr, "--frame-size=%d is not a power of two\n",
			opt_xsk_frame_size);
		usage(basename(argv[0]));
	}
876 877
}

878
static void kick_tx(struct xsk_socket_info *xsk)
879 880 881
{
	int ret;

882
	ret = sendto(xsk_socket__fd(xsk->xsk), NULL, 0, MSG_DONTWAIT, NULL, 0);
883 884
	if (ret >= 0 || errno == ENOBUFS || errno == EAGAIN ||
	    errno == EBUSY || errno == ENETDOWN)
885
		return;
886
	exit_with_error(errno);
887 888
}

889 890
static inline void complete_tx_l2fwd(struct xsk_socket_info *xsk,
				     struct pollfd *fds)
891
{
892
	struct xsk_umem_info *umem = xsk->umem;
893
	u32 idx_cq = 0, idx_fq = 0;
894 895 896 897 898 899
	unsigned int rcvd;
	size_t ndescs;

	if (!xsk->outstanding_tx)
		return;

900
	ndescs = (xsk->outstanding_tx > opt_batch_size) ? opt_batch_size :
901
		xsk->outstanding_tx;
902 903

	/* re-add completed Tx buffers */
904
	rcvd = xsk_ring_cons__peek(&umem->cq, ndescs, &idx_cq);
905
	if (rcvd > 0) {
906 907 908
		unsigned int i;
		int ret;

909
		ret = xsk_ring_prod__reserve(&umem->fq, rcvd, &idx_fq);
910 911 912
		while (ret != rcvd) {
			if (ret < 0)
				exit_with_error(-ret);
913
			if (xsk_ring_prod__needs_wakeup(&umem->fq))
914
				ret = poll(fds, num_socks, opt_timeout);
915
			ret = xsk_ring_prod__reserve(&umem->fq, rcvd, &idx_fq);
916
		}
917

918
		for (i = 0; i < rcvd; i++)
919 920
			*xsk_ring_prod__fill_addr(&umem->fq, idx_fq++) =
				*xsk_ring_cons__comp_addr(&umem->cq, idx_cq++);
921 922 923

		xsk_ring_prod__submit(&xsk->umem->fq, rcvd);
		xsk_ring_cons__release(&xsk->umem->cq, rcvd);
924 925 926 927 928
		xsk->outstanding_tx -= rcvd;
		xsk->tx_npkts += rcvd;
	}
}

929 930
static inline void complete_tx_only(struct xsk_socket_info *xsk,
				    int batch_size)
931 932
{
	unsigned int rcvd;
933
	u32 idx;
934 935 936 937

	if (!xsk->outstanding_tx)
		return;

938 939
	if (!opt_need_wakeup || xsk_ring_prod__needs_wakeup(&xsk->tx))
		kick_tx(xsk);
940

941
	rcvd = xsk_ring_cons__peek(&xsk->umem->cq, batch_size, &idx);
942
	if (rcvd > 0) {
943
		xsk_ring_cons__release(&xsk->umem->cq, rcvd);
944 945 946 947 948
		xsk->outstanding_tx -= rcvd;
		xsk->tx_npkts += rcvd;
	}
}

949
static void rx_drop(struct xsk_socket_info *xsk, struct pollfd *fds)
950 951
{
	unsigned int rcvd, i;
952
	u32 idx_rx = 0, idx_fq = 0;
953
	int ret;
954

955
	rcvd = xsk_ring_cons__peek(&xsk->rx, opt_batch_size, &idx_rx);
956 957 958
	if (!rcvd) {
		if (xsk_ring_prod__needs_wakeup(&xsk->umem->fq))
			ret = poll(fds, num_socks, opt_timeout);
959
		return;
960
	}
961

962 963 964 965
	ret = xsk_ring_prod__reserve(&xsk->umem->fq, rcvd, &idx_fq);
	while (ret != rcvd) {
		if (ret < 0)
			exit_with_error(-ret);
966 967
		if (xsk_ring_prod__needs_wakeup(&xsk->umem->fq))
			ret = poll(fds, num_socks, opt_timeout);
968 969 970
		ret = xsk_ring_prod__reserve(&xsk->umem->fq, rcvd, &idx_fq);
	}

971
	for (i = 0; i < rcvd; i++) {
972 973
		u64 addr = xsk_ring_cons__rx_desc(&xsk->rx, idx_rx)->addr;
		u32 len = xsk_ring_cons__rx_desc(&xsk->rx, idx_rx++)->len;
974 975 976
		u64 orig = xsk_umem__extract_addr(addr);

		addr = xsk_umem__add_offset_to_addr(addr);
977
		char *pkt = xsk_umem__get_data(xsk->umem->buffer, addr);
978

979
		hex_dump(pkt, len, addr);
980
		*xsk_ring_prod__fill_addr(&xsk->umem->fq, idx_fq++) = orig;
981 982
	}

983 984
	xsk_ring_prod__submit(&xsk->umem->fq, rcvd);
	xsk_ring_cons__release(&xsk->rx, rcvd);
985 986 987 988 989
	xsk->rx_npkts += rcvd;
}

static void rx_drop_all(void)
{
990
	struct pollfd fds[MAX_SOCKS] = {};
991
	int i, ret;
992 993

	for (i = 0; i < num_socks; i++) {
994
		fds[i].fd = xsk_socket__fd(xsks[i]->xsk);
995 996 997 998 999
		fds[i].events = POLLIN;
	}

	for (;;) {
		if (opt_poll) {
1000
			ret = poll(fds, num_socks, opt_timeout);
1001 1002 1003 1004 1005
			if (ret <= 0)
				continue;
		}

		for (i = 0; i < num_socks; i++)
1006
			rx_drop(xsks[i], fds);
1007 1008 1009

		if (benchmark_done)
			break;
1010 1011 1012
	}
}

1013
static void tx_only(struct xsk_socket_info *xsk, u32 *frame_nb, int batch_size)
1014 1015
{
	u32 idx;
1016
	unsigned int i;
1017

1018 1019 1020
	while (xsk_ring_prod__reserve(&xsk->tx, batch_size, &idx) <
				      batch_size) {
		complete_tx_only(xsk, batch_size);
1021
	}
1022

1023
	for (i = 0; i < batch_size; i++) {
1024 1025
		struct xdp_desc *tx_desc = xsk_ring_prod__tx_desc(&xsk->tx,
								  idx + i);
1026
		tx_desc->addr = (*frame_nb + i) << XSK_UMEM__DEFAULT_FRAME_SHIFT;
1027
		tx_desc->len = PKT_SIZE;
1028
	}
1029

1030 1031
	xsk_ring_prod__submit(&xsk->tx, batch_size);
	xsk->outstanding_tx += batch_size;
1032 1033
	*frame_nb += batch_size;
	*frame_nb %= NUM_FRAMES;
1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061
	complete_tx_only(xsk, batch_size);
}

static inline int get_batch_size(int pkt_cnt)
{
	if (!opt_pkt_count)
		return opt_batch_size;

	if (pkt_cnt + opt_batch_size <= opt_pkt_count)
		return opt_batch_size;

	return opt_pkt_count - pkt_cnt;
}

static void complete_tx_only_all(void)
{
	bool pending;
	int i;

	do {
		pending = false;
		for (i = 0; i < num_socks; i++) {
			if (xsks[i]->outstanding_tx) {
				complete_tx_only(xsks[i], opt_batch_size);
				pending = !!xsks[i]->outstanding_tx;
			}
		}
	} while (pending);
1062 1063
}

1064
static void tx_only_all(void)
1065
{
1066
	struct pollfd fds[MAX_SOCKS] = {};
1067
	u32 frame_nb[MAX_SOCKS] = {};
1068
	int pkt_cnt = 0;
1069
	int i, ret;
1070

1071 1072 1073 1074
	for (i = 0; i < num_socks; i++) {
		fds[0].fd = xsk_socket__fd(xsks[i]->xsk);
		fds[0].events = POLLOUT;
	}
1075

1076 1077 1078
	while ((opt_pkt_count && pkt_cnt < opt_pkt_count) || !opt_pkt_count) {
		int batch_size = get_batch_size(pkt_cnt);

1079
		if (opt_poll) {
1080
			ret = poll(fds, num_socks, opt_timeout);
1081 1082 1083
			if (ret <= 0)
				continue;

1084
			if (!(fds[0].revents & POLLOUT))
1085 1086 1087
				continue;
		}

1088
		for (i = 0; i < num_socks; i++)
1089
			tx_only(xsks[i], &frame_nb[i], batch_size);
1090 1091

		pkt_cnt += batch_size;
1092 1093 1094

		if (benchmark_done)
			break;
1095
	}
1096 1097 1098

	if (opt_pkt_count)
		complete_tx_only_all();
1099 1100
}

1101
static void l2fwd(struct xsk_socket_info *xsk, struct pollfd *fds)
1102
{
1103 1104 1105
	unsigned int rcvd, i;
	u32 idx_rx = 0, idx_tx = 0;
	int ret;
1106

1107
	complete_tx_l2fwd(xsk, fds);
1108

1109
	rcvd = xsk_ring_cons__peek(&xsk->rx, opt_batch_size, &idx_rx);
1110 1111 1112 1113 1114
	if (!rcvd) {
		if (xsk_ring_prod__needs_wakeup(&xsk->umem->fq))
			ret = poll(fds, num_socks, opt_timeout);
		return;
	}
1115

1116 1117 1118 1119 1120 1121
	ret = xsk_ring_prod__reserve(&xsk->tx, rcvd, &idx_tx);
	while (ret != rcvd) {
		if (ret < 0)
			exit_with_error(-ret);
		if (xsk_ring_prod__needs_wakeup(&xsk->tx))
			kick_tx(xsk);
1122
		ret = xsk_ring_prod__reserve(&xsk->tx, rcvd, &idx_tx);
1123 1124 1125 1126 1127
	}

	for (i = 0; i < rcvd; i++) {
		u64 addr = xsk_ring_cons__rx_desc(&xsk->rx, idx_rx)->addr;
		u32 len = xsk_ring_cons__rx_desc(&xsk->rx, idx_rx++)->len;
1128
		u64 orig = addr;
1129 1130

		addr = xsk_umem__add_offset_to_addr(addr);
1131 1132 1133
		char *pkt = xsk_umem__get_data(xsk->umem->buffer, addr);

		swap_mac_addresses(pkt);
1134

1135
		hex_dump(pkt, len, addr);
1136
		xsk_ring_prod__tx_desc(&xsk->tx, idx_tx)->addr = orig;
1137 1138
		xsk_ring_prod__tx_desc(&xsk->tx, idx_tx++)->len = len;
	}
1139

1140 1141
	xsk_ring_prod__submit(&xsk->tx, rcvd);
	xsk_ring_cons__release(&xsk->rx, rcvd);
1142

1143 1144 1145 1146 1147 1148
	xsk->rx_npkts += rcvd;
	xsk->outstanding_tx += rcvd;
}

static void l2fwd_all(void)
{
1149
	struct pollfd fds[MAX_SOCKS] = {};
1150 1151 1152 1153 1154 1155
	int i, ret;

	for (i = 0; i < num_socks; i++) {
		fds[i].fd = xsk_socket__fd(xsks[i]->xsk);
		fds[i].events = POLLOUT | POLLIN;
	}
1156

1157 1158 1159 1160 1161 1162
	for (;;) {
		if (opt_poll) {
			ret = poll(fds, num_socks, opt_timeout);
			if (ret <= 0)
				continue;
		}
1163

1164 1165
		for (i = 0; i < num_socks; i++)
			l2fwd(xsks[i], fds);
1166 1167 1168

		if (benchmark_done)
			break;
1169 1170 1171
	}
}

1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222
static void load_xdp_program(char **argv, struct bpf_object **obj)
{
	struct bpf_prog_load_attr prog_load_attr = {
		.prog_type      = BPF_PROG_TYPE_XDP,
	};
	char xdp_filename[256];
	int prog_fd;

	snprintf(xdp_filename, sizeof(xdp_filename), "%s_kern.o", argv[0]);
	prog_load_attr.file = xdp_filename;

	if (bpf_prog_load_xattr(&prog_load_attr, obj, &prog_fd))
		exit(EXIT_FAILURE);
	if (prog_fd < 0) {
		fprintf(stderr, "ERROR: no program found: %s\n",
			strerror(prog_fd));
		exit(EXIT_FAILURE);
	}

	if (bpf_set_link_xdp_fd(opt_ifindex, prog_fd, opt_xdp_flags) < 0) {
		fprintf(stderr, "ERROR: link set xdp fd failed\n");
		exit(EXIT_FAILURE);
	}
}

static void enter_xsks_into_map(struct bpf_object *obj)
{
	struct bpf_map *map;
	int i, xsks_map;

	map = bpf_object__find_map_by_name(obj, "xsks_map");
	xsks_map = bpf_map__fd(map);
	if (xsks_map < 0) {
		fprintf(stderr, "ERROR: no xsks map found: %s\n",
			strerror(xsks_map));
			exit(EXIT_FAILURE);
	}

	for (i = 0; i < num_socks; i++) {
		int fd = xsk_socket__fd(xsks[i]->xsk);
		int key, ret;

		key = i;
		ret = bpf_map_update_elem(xsks_map, &key, &fd, 0);
		if (ret) {
			fprintf(stderr, "ERROR: bpf_map_update_elem %d\n", i);
			exit(EXIT_FAILURE);
		}
	}
}

1223 1224 1225
int main(int argc, char **argv)
{
	struct rlimit r = {RLIM_INFINITY, RLIM_INFINITY};
1226
	bool rx = false, tx = false;
1227
	struct xsk_umem_info *umem;
1228
	struct bpf_object *obj;
1229
	pthread_t pt;
1230
	int i, ret;
1231
	void *bufs;
1232 1233 1234 1235 1236 1237 1238 1239 1240

	parse_command_line(argc, argv);

	if (setrlimit(RLIMIT_MEMLOCK, &r)) {
		fprintf(stderr, "ERROR: setrlimit(RLIMIT_MEMLOCK) \"%s\"\n",
			strerror(errno));
		exit(EXIT_FAILURE);
	}

1241 1242 1243
	if (opt_num_xsks > 1)
		load_xdp_program(argv, &obj);

1244 1245 1246 1247 1248 1249 1250 1251
	/* Reserve memory for the umem. Use hugepages if unaligned chunk mode */
	bufs = mmap(NULL, NUM_FRAMES * opt_xsk_frame_size,
		    PROT_READ | PROT_WRITE,
		    MAP_PRIVATE | MAP_ANONYMOUS | opt_mmap_flags, -1, 0);
	if (bufs == MAP_FAILED) {
		printf("ERROR: mmap failed\n");
		exit(EXIT_FAILURE);
	}
1252 1253

	/* Create sockets... */
1254
	umem = xsk_configure_umem(bufs, NUM_FRAMES * opt_xsk_frame_size);
1255 1256 1257 1258 1259 1260
	if (opt_bench == BENCH_RXDROP || opt_bench == BENCH_L2FWD) {
		rx = true;
		xsk_populate_fill_ring(umem);
	}
	if (opt_bench == BENCH_L2FWD || opt_bench == BENCH_TXONLY)
		tx = true;
1261
	for (i = 0; i < opt_num_xsks; i++)
1262
		xsks[num_socks++] = xsk_configure_socket(umem, rx, tx);
1263

1264 1265 1266
	if (opt_bench == BENCH_TXONLY) {
		gen_eth_hdr_data();

1267 1268
		for (i = 0; i < NUM_FRAMES; i++)
			gen_eth_frame(umem, i * opt_xsk_frame_size);
1269
	}
1270

1271 1272
	if (opt_num_xsks > 1 && opt_bench != BENCH_TXONLY)
		enter_xsks_into_map(obj);
1273 1274 1275 1276 1277 1278 1279 1280

	signal(SIGINT, int_exit);
	signal(SIGTERM, int_exit);
	signal(SIGABRT, int_exit);

	setlocale(LC_ALL, "");

	ret = pthread_create(&pt, NULL, poller, NULL);
1281 1282
	if (ret)
		exit_with_error(ret);
1283 1284

	prev_time = get_nsecs();
1285
	start_time = prev_time;
1286 1287 1288 1289

	if (opt_bench == BENCH_RXDROP)
		rx_drop_all();
	else if (opt_bench == BENCH_TXONLY)
1290
		tx_only_all();
1291
	else
1292
		l2fwd_all();
1293

1294 1295
	benchmark_done = true;

1296 1297
	pthread_join(pt, NULL);

1298 1299
	xdpsock_cleanup();

1300 1301
	return 0;
}