1 // SPDX-License-Identifier: GPL-2.0
2 /* Copyright(c) 2020 Intel Corporation. */
3
4 /*
5 * Some functions in this program are taken from
6 * Linux kernel samples/bpf/xdpsock* and modified
7 * for use.
8 *
9 * See test_xsk.sh for detailed information on test topology
10 * and prerequisite network setup.
11 *
12 * This test program contains two threads, each thread is single socket with
13 * a unique UMEM. It validates in-order packet delivery and packet content
14 * by sending packets to each other.
15 *
16 * Tests Information:
17 * ------------------
18 * These selftests test AF_XDP SKB and Native/DRV modes using veth
19 * Virtual Ethernet interfaces.
20 *
21 * For each mode, the following tests are run:
22 * a. nopoll - soft-irq processing in run-to-completion mode
23 * b. poll - using poll() syscall
24 * c. Socket Teardown
25 * Create a Tx and a Rx socket, Tx from one socket, Rx on another. Destroy
26 * both sockets, then repeat multiple times. Only nopoll mode is used
27 * d. Bi-directional sockets
28 * Configure sockets as bi-directional tx/rx sockets, sets up fill and
29 * completion rings on each socket, tx/rx in both directions. Only nopoll
30 * mode is used
31 * e. Statistics
32 * Trigger some error conditions and ensure that the appropriate statistics
33 * are incremented. Within this test, the following statistics are tested:
34 * i. rx dropped
35 * Increase the UMEM frame headroom to a value which results in
36 * insufficient space in the rx buffer for both the packet and the headroom.
37 * ii. tx invalid
38 * Set the 'len' field of tx descriptors to an invalid value (umem frame
39 * size + 1).
40 * iii. rx ring full
41 * Reduce the size of the RX ring to a fraction of the fill ring size.
42 * iv. fill queue empty
43 * Do not populate the fill queue and then try to receive pkts.
44 * f. bpf_link resource persistence
45 * Configure sockets at indexes 0 and 1, run a traffic on queue ids 0,
46 * then remove xsk sockets from queue 0 on both veth interfaces and
47 * finally run a traffic on queues ids 1
48 * g. unaligned mode
49 * h. tests for invalid and corner case Tx descriptors so that the correct ones
50 * are discarded and let through, respectively.
51 * i. 2K frame size tests
52 *
53 * Total tests: 12
54 *
55 * Flow:
56 * -----
57 * - Single process spawns two threads: Tx and Rx
58 * - Each of these two threads attach to a veth interface
59 * - Each thread creates one AF_XDP socket connected to a unique umem for each
60 * veth interface
61 * - Tx thread Transmits a number of packets from veth<xxxx> to veth<yyyy>
62 * - Rx thread verifies if all packets were received and delivered in-order,
63 * and have the right content
64 *
65 * Enable/disable packet dump mode:
66 * --------------------------
67 * To enable L2 - L4 headers and payload dump of each packet on STDOUT, add
68 * parameter -D to params array in test_xsk.sh, i.e. params=("-S" "-D")
69 */
70
71 #define _GNU_SOURCE
72 #include <fcntl.h>
73 #include <errno.h>
74 #include <getopt.h>
75 #include <asm/barrier.h>
76 #include <linux/if_link.h>
77 #include <linux/if_ether.h>
78 #include <linux/ip.h>
79 #include <linux/udp.h>
80 #include <arpa/inet.h>
81 #include <net/if.h>
82 #include <locale.h>
83 #include <poll.h>
84 #include <pthread.h>
85 #include <signal.h>
86 #include <stdbool.h>
87 #include <stdio.h>
88 #include <stdlib.h>
89 #include <string.h>
90 #include <stddef.h>
91 #include <sys/mman.h>
92 #include <sys/socket.h>
93 #include <sys/time.h>
94 #include <sys/types.h>
95 #include <sys/queue.h>
96 #include <time.h>
97 #include <unistd.h>
98 #include <stdatomic.h>
99
100 #include "xsk_xdp_progs.skel.h"
101 #include "xsk.h"
102 #include "xskxceiver.h"
103 #include <bpf/bpf.h>
104 #include <linux/filter.h>
105 #include "../kselftest.h"
106
107 static const char *MAC1 = "\x00\x0A\x56\x9E\xEE\x62";
108 static const char *MAC2 = "\x00\x0A\x56\x9E\xEE\x61";
109 static const char *IP1 = "192.168.100.162";
110 static const char *IP2 = "192.168.100.161";
111 static const u16 UDP_PORT1 = 2020;
112 static const u16 UDP_PORT2 = 2121;
113
__exit_with_error(int error,const char * file,const char * func,int line)114 static void __exit_with_error(int error, const char *file, const char *func, int line)
115 {
116 ksft_test_result_fail("[%s:%s:%i]: ERROR: %d/\"%s\"\n", file, func, line, error,
117 strerror(error));
118 ksft_exit_xfail();
119 }
120
121 #define exit_with_error(error) __exit_with_error(error, __FILE__, __func__, __LINE__)
122 #define busy_poll_string(test) (test)->ifobj_tx->busy_poll ? "BUSY-POLL " : ""
mode_string(struct test_spec * test)123 static char *mode_string(struct test_spec *test)
124 {
125 switch (test->mode) {
126 case TEST_MODE_SKB:
127 return "SKB";
128 case TEST_MODE_DRV:
129 return "DRV";
130 case TEST_MODE_ZC:
131 return "ZC";
132 default:
133 return "BOGUS";
134 }
135 }
136
report_failure(struct test_spec * test)137 static void report_failure(struct test_spec *test)
138 {
139 if (test->fail)
140 return;
141
142 ksft_test_result_fail("FAIL: %s %s%s\n", mode_string(test), busy_poll_string(test),
143 test->name);
144 test->fail = true;
145 }
146
memset32_htonl(void * dest,u32 val,u32 size)147 static void memset32_htonl(void *dest, u32 val, u32 size)
148 {
149 u32 *ptr = (u32 *)dest;
150 int i;
151
152 val = htonl(val);
153
154 for (i = 0; i < (size & (~0x3)); i += 4)
155 ptr[i >> 2] = val;
156 }
157
158 /*
159 * Fold a partial checksum
160 * This function code has been taken from
161 * Linux kernel include/asm-generic/checksum.h
162 */
csum_fold(__u32 csum)163 static __u16 csum_fold(__u32 csum)
164 {
165 u32 sum = (__force u32)csum;
166
167 sum = (sum & 0xffff) + (sum >> 16);
168 sum = (sum & 0xffff) + (sum >> 16);
169 return (__force __u16)~sum;
170 }
171
172 /*
173 * This function code has been taken from
174 * Linux kernel lib/checksum.c
175 */
from64to32(u64 x)176 static u32 from64to32(u64 x)
177 {
178 /* add up 32-bit and 32-bit for 32+c bit */
179 x = (x & 0xffffffff) + (x >> 32);
180 /* add up carry.. */
181 x = (x & 0xffffffff) + (x >> 32);
182 return (u32)x;
183 }
184
185 /*
186 * This function code has been taken from
187 * Linux kernel lib/checksum.c
188 */
csum_tcpudp_nofold(__be32 saddr,__be32 daddr,__u32 len,__u8 proto,__u32 sum)189 static __u32 csum_tcpudp_nofold(__be32 saddr, __be32 daddr, __u32 len, __u8 proto, __u32 sum)
190 {
191 unsigned long long s = (__force u32)sum;
192
193 s += (__force u32)saddr;
194 s += (__force u32)daddr;
195 #ifdef __BIG_ENDIAN__
196 s += proto + len;
197 #else
198 s += (proto + len) << 8;
199 #endif
200 return (__force __u32)from64to32(s);
201 }
202
203 /*
204 * This function has been taken from
205 * Linux kernel include/asm-generic/checksum.h
206 */
csum_tcpudp_magic(__be32 saddr,__be32 daddr,__u32 len,__u8 proto,__u32 sum)207 static __u16 csum_tcpudp_magic(__be32 saddr, __be32 daddr, __u32 len, __u8 proto, __u32 sum)
208 {
209 return csum_fold(csum_tcpudp_nofold(saddr, daddr, len, proto, sum));
210 }
211
udp_csum(u32 saddr,u32 daddr,u32 len,u8 proto,u16 * udp_pkt)212 static u16 udp_csum(u32 saddr, u32 daddr, u32 len, u8 proto, u16 *udp_pkt)
213 {
214 u32 csum = 0;
215 u32 cnt = 0;
216
217 /* udp hdr and data */
218 for (; cnt < len; cnt += 2)
219 csum += udp_pkt[cnt >> 1];
220
221 return csum_tcpudp_magic(saddr, daddr, len, proto, csum);
222 }
223
gen_eth_hdr(struct ifobject * ifobject,struct ethhdr * eth_hdr)224 static void gen_eth_hdr(struct ifobject *ifobject, struct ethhdr *eth_hdr)
225 {
226 memcpy(eth_hdr->h_dest, ifobject->dst_mac, ETH_ALEN);
227 memcpy(eth_hdr->h_source, ifobject->src_mac, ETH_ALEN);
228 eth_hdr->h_proto = htons(ETH_P_IP);
229 }
230
gen_ip_hdr(struct ifobject * ifobject,struct iphdr * ip_hdr)231 static void gen_ip_hdr(struct ifobject *ifobject, struct iphdr *ip_hdr)
232 {
233 ip_hdr->version = IP_PKT_VER;
234 ip_hdr->ihl = 0x5;
235 ip_hdr->tos = IP_PKT_TOS;
236 ip_hdr->tot_len = htons(IP_PKT_SIZE);
237 ip_hdr->id = 0;
238 ip_hdr->frag_off = 0;
239 ip_hdr->ttl = IPDEFTTL;
240 ip_hdr->protocol = IPPROTO_UDP;
241 ip_hdr->saddr = ifobject->src_ip;
242 ip_hdr->daddr = ifobject->dst_ip;
243 ip_hdr->check = 0;
244 }
245
gen_udp_hdr(u32 payload,void * pkt,struct ifobject * ifobject,struct udphdr * udp_hdr)246 static void gen_udp_hdr(u32 payload, void *pkt, struct ifobject *ifobject,
247 struct udphdr *udp_hdr)
248 {
249 udp_hdr->source = htons(ifobject->src_port);
250 udp_hdr->dest = htons(ifobject->dst_port);
251 udp_hdr->len = htons(UDP_PKT_SIZE);
252 memset32_htonl(pkt + PKT_HDR_SIZE, payload, UDP_PKT_DATA_SIZE);
253 }
254
is_umem_valid(struct ifobject * ifobj)255 static bool is_umem_valid(struct ifobject *ifobj)
256 {
257 return !!ifobj->umem->umem;
258 }
259
gen_udp_csum(struct udphdr * udp_hdr,struct iphdr * ip_hdr)260 static void gen_udp_csum(struct udphdr *udp_hdr, struct iphdr *ip_hdr)
261 {
262 udp_hdr->check = 0;
263 udp_hdr->check =
264 udp_csum(ip_hdr->saddr, ip_hdr->daddr, UDP_PKT_SIZE, IPPROTO_UDP, (u16 *)udp_hdr);
265 }
266
mode_to_xdp_flags(enum test_mode mode)267 static u32 mode_to_xdp_flags(enum test_mode mode)
268 {
269 return (mode == TEST_MODE_SKB) ? XDP_FLAGS_SKB_MODE : XDP_FLAGS_DRV_MODE;
270 }
271
xsk_configure_umem(struct xsk_umem_info * umem,void * buffer,u64 size)272 static int xsk_configure_umem(struct xsk_umem_info *umem, void *buffer, u64 size)
273 {
274 struct xsk_umem_config cfg = {
275 .fill_size = XSK_RING_PROD__DEFAULT_NUM_DESCS,
276 .comp_size = XSK_RING_CONS__DEFAULT_NUM_DESCS,
277 .frame_size = umem->frame_size,
278 .frame_headroom = umem->frame_headroom,
279 .flags = XSK_UMEM__DEFAULT_FLAGS
280 };
281 int ret;
282
283 if (umem->unaligned_mode)
284 cfg.flags |= XDP_UMEM_UNALIGNED_CHUNK_FLAG;
285
286 ret = xsk_umem__create(&umem->umem, buffer, size,
287 &umem->fq, &umem->cq, &cfg);
288 if (ret)
289 return ret;
290
291 umem->buffer = buffer;
292 return 0;
293 }
294
enable_busy_poll(struct xsk_socket_info * xsk)295 static void enable_busy_poll(struct xsk_socket_info *xsk)
296 {
297 int sock_opt;
298
299 sock_opt = 1;
300 if (setsockopt(xsk_socket__fd(xsk->xsk), SOL_SOCKET, SO_PREFER_BUSY_POLL,
301 (void *)&sock_opt, sizeof(sock_opt)) < 0)
302 exit_with_error(errno);
303
304 sock_opt = 20;
305 if (setsockopt(xsk_socket__fd(xsk->xsk), SOL_SOCKET, SO_BUSY_POLL,
306 (void *)&sock_opt, sizeof(sock_opt)) < 0)
307 exit_with_error(errno);
308
309 sock_opt = BATCH_SIZE;
310 if (setsockopt(xsk_socket__fd(xsk->xsk), SOL_SOCKET, SO_BUSY_POLL_BUDGET,
311 (void *)&sock_opt, sizeof(sock_opt)) < 0)
312 exit_with_error(errno);
313 }
314
__xsk_configure_socket(struct xsk_socket_info * xsk,struct xsk_umem_info * umem,struct ifobject * ifobject,bool shared)315 static int __xsk_configure_socket(struct xsk_socket_info *xsk, struct xsk_umem_info *umem,
316 struct ifobject *ifobject, bool shared)
317 {
318 struct xsk_socket_config cfg = {};
319 struct xsk_ring_cons *rxr;
320 struct xsk_ring_prod *txr;
321
322 xsk->umem = umem;
323 cfg.rx_size = xsk->rxqsize;
324 cfg.tx_size = XSK_RING_PROD__DEFAULT_NUM_DESCS;
325 cfg.bind_flags = ifobject->bind_flags;
326 if (shared)
327 cfg.bind_flags |= XDP_SHARED_UMEM;
328
329 txr = ifobject->tx_on ? &xsk->tx : NULL;
330 rxr = ifobject->rx_on ? &xsk->rx : NULL;
331 return xsk_socket__create(&xsk->xsk, ifobject->ifindex, 0, umem->umem, rxr, txr, &cfg);
332 }
333
ifobj_zc_avail(struct ifobject * ifobject)334 static bool ifobj_zc_avail(struct ifobject *ifobject)
335 {
336 size_t umem_sz = DEFAULT_UMEM_BUFFERS * XSK_UMEM__DEFAULT_FRAME_SIZE;
337 int mmap_flags = MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE;
338 struct xsk_socket_info *xsk;
339 struct xsk_umem_info *umem;
340 bool zc_avail = false;
341 void *bufs;
342 int ret;
343
344 bufs = mmap(NULL, umem_sz, PROT_READ | PROT_WRITE, mmap_flags, -1, 0);
345 if (bufs == MAP_FAILED)
346 exit_with_error(errno);
347
348 umem = calloc(1, sizeof(struct xsk_umem_info));
349 if (!umem) {
350 munmap(bufs, umem_sz);
351 exit_with_error(ENOMEM);
352 }
353 umem->frame_size = XSK_UMEM__DEFAULT_FRAME_SIZE;
354 ret = xsk_configure_umem(umem, bufs, umem_sz);
355 if (ret)
356 exit_with_error(-ret);
357
358 xsk = calloc(1, sizeof(struct xsk_socket_info));
359 if (!xsk)
360 goto out;
361 ifobject->bind_flags = XDP_USE_NEED_WAKEUP | XDP_ZEROCOPY;
362 ifobject->rx_on = true;
363 xsk->rxqsize = XSK_RING_CONS__DEFAULT_NUM_DESCS;
364 ret = __xsk_configure_socket(xsk, umem, ifobject, false);
365 if (!ret)
366 zc_avail = true;
367
368 xsk_socket__delete(xsk->xsk);
369 free(xsk);
370 out:
371 munmap(umem->buffer, umem_sz);
372 xsk_umem__delete(umem->umem);
373 free(umem);
374 return zc_avail;
375 }
376
377 static struct option long_options[] = {
378 {"interface", required_argument, 0, 'i'},
379 {"busy-poll", no_argument, 0, 'b'},
380 {"dump-pkts", no_argument, 0, 'D'},
381 {"verbose", no_argument, 0, 'v'},
382 {0, 0, 0, 0}
383 };
384
usage(const char * prog)385 static void usage(const char *prog)
386 {
387 const char *str =
388 " Usage: %s [OPTIONS]\n"
389 " Options:\n"
390 " -i, --interface Use interface\n"
391 " -D, --dump-pkts Dump packets L2 - L5\n"
392 " -v, --verbose Verbose output\n"
393 " -b, --busy-poll Enable busy poll\n";
394
395 ksft_print_msg(str, prog);
396 }
397
validate_interface(struct ifobject * ifobj)398 static bool validate_interface(struct ifobject *ifobj)
399 {
400 if (!strcmp(ifobj->ifname, ""))
401 return false;
402 return true;
403 }
404
parse_command_line(struct ifobject * ifobj_tx,struct ifobject * ifobj_rx,int argc,char ** argv)405 static void parse_command_line(struct ifobject *ifobj_tx, struct ifobject *ifobj_rx, int argc,
406 char **argv)
407 {
408 struct ifobject *ifobj;
409 u32 interface_nb = 0;
410 int option_index, c;
411
412 opterr = 0;
413
414 for (;;) {
415 c = getopt_long(argc, argv, "i:Dvb", long_options, &option_index);
416 if (c == -1)
417 break;
418
419 switch (c) {
420 case 'i':
421 if (interface_nb == 0)
422 ifobj = ifobj_tx;
423 else if (interface_nb == 1)
424 ifobj = ifobj_rx;
425 else
426 break;
427
428 memcpy(ifobj->ifname, optarg,
429 min_t(size_t, MAX_INTERFACE_NAME_CHARS, strlen(optarg)));
430
431 ifobj->ifindex = if_nametoindex(ifobj->ifname);
432 if (!ifobj->ifindex)
433 exit_with_error(errno);
434
435 interface_nb++;
436 break;
437 case 'D':
438 opt_pkt_dump = true;
439 break;
440 case 'v':
441 opt_verbose = true;
442 break;
443 case 'b':
444 ifobj_tx->busy_poll = true;
445 ifobj_rx->busy_poll = true;
446 break;
447 default:
448 usage(basename(argv[0]));
449 ksft_exit_xfail();
450 }
451 }
452 }
453
__test_spec_init(struct test_spec * test,struct ifobject * ifobj_tx,struct ifobject * ifobj_rx)454 static void __test_spec_init(struct test_spec *test, struct ifobject *ifobj_tx,
455 struct ifobject *ifobj_rx)
456 {
457 u32 i, j;
458
459 for (i = 0; i < MAX_INTERFACES; i++) {
460 struct ifobject *ifobj = i ? ifobj_rx : ifobj_tx;
461
462 ifobj->xsk = &ifobj->xsk_arr[0];
463 ifobj->use_poll = false;
464 ifobj->use_fill_ring = true;
465 ifobj->release_rx = true;
466 ifobj->validation_func = NULL;
467
468 if (i == 0) {
469 ifobj->rx_on = false;
470 ifobj->tx_on = true;
471 ifobj->pkt_stream = test->tx_pkt_stream_default;
472 } else {
473 ifobj->rx_on = true;
474 ifobj->tx_on = false;
475 ifobj->pkt_stream = test->rx_pkt_stream_default;
476 }
477
478 memset(ifobj->umem, 0, sizeof(*ifobj->umem));
479 ifobj->umem->num_frames = DEFAULT_UMEM_BUFFERS;
480 ifobj->umem->frame_size = XSK_UMEM__DEFAULT_FRAME_SIZE;
481 if (ifobj->shared_umem && ifobj->rx_on)
482 ifobj->umem->base_addr = DEFAULT_UMEM_BUFFERS *
483 XSK_UMEM__DEFAULT_FRAME_SIZE;
484
485 for (j = 0; j < MAX_SOCKETS; j++) {
486 memset(&ifobj->xsk_arr[j], 0, sizeof(ifobj->xsk_arr[j]));
487 ifobj->xsk_arr[j].rxqsize = XSK_RING_CONS__DEFAULT_NUM_DESCS;
488 }
489 }
490
491 test->ifobj_tx = ifobj_tx;
492 test->ifobj_rx = ifobj_rx;
493 test->current_step = 0;
494 test->total_steps = 1;
495 test->nb_sockets = 1;
496 test->fail = false;
497 test->xdp_prog_rx = ifobj_rx->xdp_progs->progs.xsk_def_prog;
498 test->xskmap_rx = ifobj_rx->xdp_progs->maps.xsk;
499 test->xdp_prog_tx = ifobj_tx->xdp_progs->progs.xsk_def_prog;
500 test->xskmap_tx = ifobj_tx->xdp_progs->maps.xsk;
501 }
502
test_spec_init(struct test_spec * test,struct ifobject * ifobj_tx,struct ifobject * ifobj_rx,enum test_mode mode)503 static void test_spec_init(struct test_spec *test, struct ifobject *ifobj_tx,
504 struct ifobject *ifobj_rx, enum test_mode mode)
505 {
506 struct pkt_stream *tx_pkt_stream;
507 struct pkt_stream *rx_pkt_stream;
508 u32 i;
509
510 tx_pkt_stream = test->tx_pkt_stream_default;
511 rx_pkt_stream = test->rx_pkt_stream_default;
512 memset(test, 0, sizeof(*test));
513 test->tx_pkt_stream_default = tx_pkt_stream;
514 test->rx_pkt_stream_default = rx_pkt_stream;
515
516 for (i = 0; i < MAX_INTERFACES; i++) {
517 struct ifobject *ifobj = i ? ifobj_rx : ifobj_tx;
518
519 ifobj->bind_flags = XDP_USE_NEED_WAKEUP;
520 if (mode == TEST_MODE_ZC)
521 ifobj->bind_flags |= XDP_ZEROCOPY;
522 else
523 ifobj->bind_flags |= XDP_COPY;
524 }
525
526 test->mode = mode;
527 __test_spec_init(test, ifobj_tx, ifobj_rx);
528 }
529
test_spec_reset(struct test_spec * test)530 static void test_spec_reset(struct test_spec *test)
531 {
532 __test_spec_init(test, test->ifobj_tx, test->ifobj_rx);
533 }
534
test_spec_set_name(struct test_spec * test,const char * name)535 static void test_spec_set_name(struct test_spec *test, const char *name)
536 {
537 strncpy(test->name, name, MAX_TEST_NAME_SIZE);
538 }
539
test_spec_set_xdp_prog(struct test_spec * test,struct bpf_program * xdp_prog_rx,struct bpf_program * xdp_prog_tx,struct bpf_map * xskmap_rx,struct bpf_map * xskmap_tx)540 static void test_spec_set_xdp_prog(struct test_spec *test, struct bpf_program *xdp_prog_rx,
541 struct bpf_program *xdp_prog_tx, struct bpf_map *xskmap_rx,
542 struct bpf_map *xskmap_tx)
543 {
544 test->xdp_prog_rx = xdp_prog_rx;
545 test->xdp_prog_tx = xdp_prog_tx;
546 test->xskmap_rx = xskmap_rx;
547 test->xskmap_tx = xskmap_tx;
548 }
549
pkt_stream_reset(struct pkt_stream * pkt_stream)550 static void pkt_stream_reset(struct pkt_stream *pkt_stream)
551 {
552 if (pkt_stream)
553 pkt_stream->rx_pkt_nb = 0;
554 }
555
pkt_stream_get_pkt(struct pkt_stream * pkt_stream,u32 pkt_nb)556 static struct pkt *pkt_stream_get_pkt(struct pkt_stream *pkt_stream, u32 pkt_nb)
557 {
558 if (pkt_nb >= pkt_stream->nb_pkts)
559 return NULL;
560
561 return &pkt_stream->pkts[pkt_nb];
562 }
563
pkt_stream_get_next_rx_pkt(struct pkt_stream * pkt_stream,u32 * pkts_sent)564 static struct pkt *pkt_stream_get_next_rx_pkt(struct pkt_stream *pkt_stream, u32 *pkts_sent)
565 {
566 while (pkt_stream->rx_pkt_nb < pkt_stream->nb_pkts) {
567 (*pkts_sent)++;
568 if (pkt_stream->pkts[pkt_stream->rx_pkt_nb].valid)
569 return &pkt_stream->pkts[pkt_stream->rx_pkt_nb++];
570 pkt_stream->rx_pkt_nb++;
571 }
572 return NULL;
573 }
574
pkt_stream_delete(struct pkt_stream * pkt_stream)575 static void pkt_stream_delete(struct pkt_stream *pkt_stream)
576 {
577 free(pkt_stream->pkts);
578 free(pkt_stream);
579 }
580
pkt_stream_restore_default(struct test_spec * test)581 static void pkt_stream_restore_default(struct test_spec *test)
582 {
583 struct pkt_stream *tx_pkt_stream = test->ifobj_tx->pkt_stream;
584 struct pkt_stream *rx_pkt_stream = test->ifobj_rx->pkt_stream;
585
586 if (tx_pkt_stream != test->tx_pkt_stream_default) {
587 pkt_stream_delete(test->ifobj_tx->pkt_stream);
588 test->ifobj_tx->pkt_stream = test->tx_pkt_stream_default;
589 }
590
591 if (rx_pkt_stream != test->rx_pkt_stream_default) {
592 pkt_stream_delete(test->ifobj_rx->pkt_stream);
593 test->ifobj_rx->pkt_stream = test->rx_pkt_stream_default;
594 }
595 }
596
__pkt_stream_alloc(u32 nb_pkts)597 static struct pkt_stream *__pkt_stream_alloc(u32 nb_pkts)
598 {
599 struct pkt_stream *pkt_stream;
600
601 pkt_stream = calloc(1, sizeof(*pkt_stream));
602 if (!pkt_stream)
603 return NULL;
604
605 pkt_stream->pkts = calloc(nb_pkts, sizeof(*pkt_stream->pkts));
606 if (!pkt_stream->pkts) {
607 free(pkt_stream);
608 return NULL;
609 }
610
611 pkt_stream->nb_pkts = nb_pkts;
612 return pkt_stream;
613 }
614
pkt_set(struct xsk_umem_info * umem,struct pkt * pkt,u64 addr,u32 len)615 static void pkt_set(struct xsk_umem_info *umem, struct pkt *pkt, u64 addr, u32 len)
616 {
617 pkt->addr = addr + umem->base_addr;
618 pkt->len = len;
619 if (len > umem->frame_size - XDP_PACKET_HEADROOM - MIN_PKT_SIZE * 2 - umem->frame_headroom)
620 pkt->valid = false;
621 else
622 pkt->valid = true;
623 }
624
pkt_stream_generate(struct xsk_umem_info * umem,u32 nb_pkts,u32 pkt_len)625 static struct pkt_stream *pkt_stream_generate(struct xsk_umem_info *umem, u32 nb_pkts, u32 pkt_len)
626 {
627 struct pkt_stream *pkt_stream;
628 u32 i;
629
630 pkt_stream = __pkt_stream_alloc(nb_pkts);
631 if (!pkt_stream)
632 exit_with_error(ENOMEM);
633
634 pkt_stream->nb_pkts = nb_pkts;
635 for (i = 0; i < nb_pkts; i++) {
636 pkt_set(umem, &pkt_stream->pkts[i], (i % umem->num_frames) * umem->frame_size,
637 pkt_len);
638 pkt_stream->pkts[i].payload = i;
639 }
640
641 return pkt_stream;
642 }
643
pkt_stream_clone(struct xsk_umem_info * umem,struct pkt_stream * pkt_stream)644 static struct pkt_stream *pkt_stream_clone(struct xsk_umem_info *umem,
645 struct pkt_stream *pkt_stream)
646 {
647 return pkt_stream_generate(umem, pkt_stream->nb_pkts, pkt_stream->pkts[0].len);
648 }
649
pkt_stream_replace(struct test_spec * test,u32 nb_pkts,u32 pkt_len)650 static void pkt_stream_replace(struct test_spec *test, u32 nb_pkts, u32 pkt_len)
651 {
652 struct pkt_stream *pkt_stream;
653
654 pkt_stream = pkt_stream_generate(test->ifobj_tx->umem, nb_pkts, pkt_len);
655 test->ifobj_tx->pkt_stream = pkt_stream;
656 pkt_stream = pkt_stream_generate(test->ifobj_rx->umem, nb_pkts, pkt_len);
657 test->ifobj_rx->pkt_stream = pkt_stream;
658 }
659
__pkt_stream_replace_half(struct ifobject * ifobj,u32 pkt_len,int offset)660 static void __pkt_stream_replace_half(struct ifobject *ifobj, u32 pkt_len,
661 int offset)
662 {
663 struct xsk_umem_info *umem = ifobj->umem;
664 struct pkt_stream *pkt_stream;
665 u32 i;
666
667 pkt_stream = pkt_stream_clone(umem, ifobj->pkt_stream);
668 for (i = 1; i < ifobj->pkt_stream->nb_pkts; i += 2)
669 pkt_set(umem, &pkt_stream->pkts[i],
670 (i % umem->num_frames) * umem->frame_size + offset, pkt_len);
671
672 ifobj->pkt_stream = pkt_stream;
673 }
674
pkt_stream_replace_half(struct test_spec * test,u32 pkt_len,int offset)675 static void pkt_stream_replace_half(struct test_spec *test, u32 pkt_len, int offset)
676 {
677 __pkt_stream_replace_half(test->ifobj_tx, pkt_len, offset);
678 __pkt_stream_replace_half(test->ifobj_rx, pkt_len, offset);
679 }
680
pkt_stream_receive_half(struct test_spec * test)681 static void pkt_stream_receive_half(struct test_spec *test)
682 {
683 struct xsk_umem_info *umem = test->ifobj_rx->umem;
684 struct pkt_stream *pkt_stream = test->ifobj_tx->pkt_stream;
685 u32 i;
686
687 test->ifobj_rx->pkt_stream = pkt_stream_generate(umem, pkt_stream->nb_pkts,
688 pkt_stream->pkts[0].len);
689 pkt_stream = test->ifobj_rx->pkt_stream;
690 for (i = 1; i < pkt_stream->nb_pkts; i += 2)
691 pkt_stream->pkts[i].valid = false;
692 }
693
pkt_generate(struct ifobject * ifobject,u32 pkt_nb)694 static struct pkt *pkt_generate(struct ifobject *ifobject, u32 pkt_nb)
695 {
696 struct pkt *pkt = pkt_stream_get_pkt(ifobject->pkt_stream, pkt_nb);
697 struct udphdr *udp_hdr;
698 struct ethhdr *eth_hdr;
699 struct iphdr *ip_hdr;
700 void *data;
701
702 if (!pkt)
703 return NULL;
704 if (!pkt->valid || pkt->len < MIN_PKT_SIZE)
705 return pkt;
706
707 data = xsk_umem__get_data(ifobject->umem->buffer, pkt->addr);
708 udp_hdr = (struct udphdr *)(data + sizeof(struct ethhdr) + sizeof(struct iphdr));
709 ip_hdr = (struct iphdr *)(data + sizeof(struct ethhdr));
710 eth_hdr = (struct ethhdr *)data;
711
712 gen_udp_hdr(pkt_nb, data, ifobject, udp_hdr);
713 gen_ip_hdr(ifobject, ip_hdr);
714 gen_udp_csum(udp_hdr, ip_hdr);
715 gen_eth_hdr(ifobject, eth_hdr);
716
717 return pkt;
718 }
719
__pkt_stream_generate_custom(struct ifobject * ifobj,struct pkt * pkts,u32 nb_pkts)720 static void __pkt_stream_generate_custom(struct ifobject *ifobj,
721 struct pkt *pkts, u32 nb_pkts)
722 {
723 struct pkt_stream *pkt_stream;
724 u32 i;
725
726 pkt_stream = __pkt_stream_alloc(nb_pkts);
727 if (!pkt_stream)
728 exit_with_error(ENOMEM);
729
730 for (i = 0; i < nb_pkts; i++) {
731 pkt_stream->pkts[i].addr = pkts[i].addr + ifobj->umem->base_addr;
732 pkt_stream->pkts[i].len = pkts[i].len;
733 pkt_stream->pkts[i].payload = i;
734 pkt_stream->pkts[i].valid = pkts[i].valid;
735 }
736
737 ifobj->pkt_stream = pkt_stream;
738 }
739
pkt_stream_generate_custom(struct test_spec * test,struct pkt * pkts,u32 nb_pkts)740 static void pkt_stream_generate_custom(struct test_spec *test, struct pkt *pkts, u32 nb_pkts)
741 {
742 __pkt_stream_generate_custom(test->ifobj_tx, pkts, nb_pkts);
743 __pkt_stream_generate_custom(test->ifobj_rx, pkts, nb_pkts);
744 }
745
pkt_dump(void * pkt,u32 len)746 static void pkt_dump(void *pkt, u32 len)
747 {
748 char s[INET_ADDRSTRLEN];
749 struct ethhdr *ethhdr;
750 struct udphdr *udphdr;
751 struct iphdr *iphdr;
752 u32 payload, i;
753
754 ethhdr = pkt;
755 iphdr = pkt + sizeof(*ethhdr);
756 udphdr = pkt + sizeof(*ethhdr) + sizeof(*iphdr);
757
758 /*extract L2 frame */
759 fprintf(stdout, "DEBUG>> L2: dst mac: ");
760 for (i = 0; i < ETH_ALEN; i++)
761 fprintf(stdout, "%02X", ethhdr->h_dest[i]);
762
763 fprintf(stdout, "\nDEBUG>> L2: src mac: ");
764 for (i = 0; i < ETH_ALEN; i++)
765 fprintf(stdout, "%02X", ethhdr->h_source[i]);
766
767 /*extract L3 frame */
768 fprintf(stdout, "\nDEBUG>> L3: ip_hdr->ihl: %02X\n", iphdr->ihl);
769 fprintf(stdout, "DEBUG>> L3: ip_hdr->saddr: %s\n",
770 inet_ntop(AF_INET, &iphdr->saddr, s, sizeof(s)));
771 fprintf(stdout, "DEBUG>> L3: ip_hdr->daddr: %s\n",
772 inet_ntop(AF_INET, &iphdr->daddr, s, sizeof(s)));
773 /*extract L4 frame */
774 fprintf(stdout, "DEBUG>> L4: udp_hdr->src: %d\n", ntohs(udphdr->source));
775 fprintf(stdout, "DEBUG>> L4: udp_hdr->dst: %d\n", ntohs(udphdr->dest));
776 /*extract L5 frame */
777 payload = ntohl(*((u32 *)(pkt + PKT_HDR_SIZE)));
778
779 fprintf(stdout, "DEBUG>> L5: payload: %d\n", payload);
780 fprintf(stdout, "---------------------------------------\n");
781 }
782
is_offset_correct(struct xsk_umem_info * umem,struct pkt_stream * pkt_stream,u64 addr,u64 pkt_stream_addr)783 static bool is_offset_correct(struct xsk_umem_info *umem, struct pkt_stream *pkt_stream, u64 addr,
784 u64 pkt_stream_addr)
785 {
786 u32 headroom = umem->unaligned_mode ? 0 : umem->frame_headroom;
787 u32 offset = addr % umem->frame_size, expected_offset = 0;
788
789 if (!pkt_stream->use_addr_for_fill)
790 pkt_stream_addr = 0;
791
792 expected_offset += (pkt_stream_addr + headroom + XDP_PACKET_HEADROOM) % umem->frame_size;
793
794 if (offset == expected_offset)
795 return true;
796
797 ksft_print_msg("[%s] expected [%u], got [%u]\n", __func__, expected_offset, offset);
798 return false;
799 }
800
is_pkt_valid(struct pkt * pkt,void * buffer,u64 addr,u32 len)801 static bool is_pkt_valid(struct pkt *pkt, void *buffer, u64 addr, u32 len)
802 {
803 void *data = xsk_umem__get_data(buffer, addr);
804 struct iphdr *iphdr = (struct iphdr *)(data + sizeof(struct ethhdr));
805
806 if (!pkt) {
807 ksft_print_msg("[%s] too many packets received\n", __func__);
808 return false;
809 }
810
811 if (len < MIN_PKT_SIZE || pkt->len < MIN_PKT_SIZE) {
812 /* Do not try to verify packets that are smaller than minimum size. */
813 return true;
814 }
815
816 if (pkt->len != len) {
817 ksft_print_msg("[%s] expected length [%d], got length [%d]\n",
818 __func__, pkt->len, len);
819 return false;
820 }
821
822 if (iphdr->version == IP_PKT_VER && iphdr->tos == IP_PKT_TOS) {
823 u32 seqnum = ntohl(*((u32 *)(data + PKT_HDR_SIZE)));
824
825 if (opt_pkt_dump)
826 pkt_dump(data, PKT_SIZE);
827
828 if (pkt->payload != seqnum) {
829 ksft_print_msg("[%s] expected seqnum [%d], got seqnum [%d]\n",
830 __func__, pkt->payload, seqnum);
831 return false;
832 }
833 } else {
834 ksft_print_msg("Invalid frame received: ");
835 ksft_print_msg("[IP_PKT_VER: %02X], [IP_PKT_TOS: %02X]\n", iphdr->version,
836 iphdr->tos);
837 return false;
838 }
839
840 return true;
841 }
842
kick_tx(struct xsk_socket_info * xsk)843 static void kick_tx(struct xsk_socket_info *xsk)
844 {
845 int ret;
846
847 ret = sendto(xsk_socket__fd(xsk->xsk), NULL, 0, MSG_DONTWAIT, NULL, 0);
848 if (ret >= 0)
849 return;
850 if (errno == ENOBUFS || errno == EAGAIN || errno == EBUSY || errno == ENETDOWN) {
851 usleep(100);
852 return;
853 }
854 exit_with_error(errno);
855 }
856
kick_rx(struct xsk_socket_info * xsk)857 static void kick_rx(struct xsk_socket_info *xsk)
858 {
859 int ret;
860
861 ret = recvfrom(xsk_socket__fd(xsk->xsk), NULL, 0, MSG_DONTWAIT, NULL, NULL);
862 if (ret < 0)
863 exit_with_error(errno);
864 }
865
complete_pkts(struct xsk_socket_info * xsk,int batch_size)866 static int complete_pkts(struct xsk_socket_info *xsk, int batch_size)
867 {
868 unsigned int rcvd;
869 u32 idx;
870
871 if (xsk_ring_prod__needs_wakeup(&xsk->tx))
872 kick_tx(xsk);
873
874 rcvd = xsk_ring_cons__peek(&xsk->umem->cq, batch_size, &idx);
875 if (rcvd) {
876 if (rcvd > xsk->outstanding_tx) {
877 u64 addr = *xsk_ring_cons__comp_addr(&xsk->umem->cq, idx + rcvd - 1);
878
879 ksft_print_msg("[%s] Too many packets completed\n", __func__);
880 ksft_print_msg("Last completion address: %llx\n", addr);
881 return TEST_FAILURE;
882 }
883
884 xsk_ring_cons__release(&xsk->umem->cq, rcvd);
885 xsk->outstanding_tx -= rcvd;
886 }
887
888 return TEST_PASS;
889 }
890
receive_pkts(struct test_spec * test,struct pollfd * fds)891 static int receive_pkts(struct test_spec *test, struct pollfd *fds)
892 {
893 struct timeval tv_end, tv_now, tv_timeout = {THREAD_TMOUT, 0};
894 struct pkt_stream *pkt_stream = test->ifobj_rx->pkt_stream;
895 u32 idx_rx = 0, idx_fq = 0, rcvd, i, pkts_sent = 0;
896 struct xsk_socket_info *xsk = test->ifobj_rx->xsk;
897 struct ifobject *ifobj = test->ifobj_rx;
898 struct xsk_umem_info *umem = xsk->umem;
899 struct pkt *pkt;
900 int ret;
901
902 ret = gettimeofday(&tv_now, NULL);
903 if (ret)
904 exit_with_error(errno);
905 timeradd(&tv_now, &tv_timeout, &tv_end);
906
907 pkt = pkt_stream_get_next_rx_pkt(pkt_stream, &pkts_sent);
908 while (pkt) {
909 ret = gettimeofday(&tv_now, NULL);
910 if (ret)
911 exit_with_error(errno);
912 if (timercmp(&tv_now, &tv_end, >)) {
913 ksft_print_msg("ERROR: [%s] Receive loop timed out\n", __func__);
914 return TEST_FAILURE;
915 }
916
917 kick_rx(xsk);
918 if (ifobj->use_poll) {
919 ret = poll(fds, 1, POLL_TMOUT);
920 if (ret < 0)
921 exit_with_error(errno);
922
923 if (!ret) {
924 if (!is_umem_valid(test->ifobj_tx))
925 return TEST_PASS;
926
927 ksft_print_msg("ERROR: [%s] Poll timed out\n", __func__);
928 return TEST_FAILURE;
929
930 }
931
932 if (!(fds->revents & POLLIN))
933 continue;
934 }
935
936 rcvd = xsk_ring_cons__peek(&xsk->rx, BATCH_SIZE, &idx_rx);
937 if (!rcvd)
938 continue;
939
940 if (ifobj->use_fill_ring) {
941 ret = xsk_ring_prod__reserve(&umem->fq, rcvd, &idx_fq);
942 while (ret != rcvd) {
943 if (ret < 0)
944 exit_with_error(-ret);
945 if (xsk_ring_prod__needs_wakeup(&umem->fq)) {
946 ret = poll(fds, 1, POLL_TMOUT);
947 if (ret < 0)
948 exit_with_error(errno);
949 }
950 ret = xsk_ring_prod__reserve(&umem->fq, rcvd, &idx_fq);
951 }
952 }
953
954 for (i = 0; i < rcvd; i++) {
955 const struct xdp_desc *desc = xsk_ring_cons__rx_desc(&xsk->rx, idx_rx++);
956 u64 addr = desc->addr, orig;
957
958 orig = xsk_umem__extract_addr(addr);
959 addr = xsk_umem__add_offset_to_addr(addr);
960
961 if (!is_pkt_valid(pkt, umem->buffer, addr, desc->len) ||
962 !is_offset_correct(umem, pkt_stream, addr, pkt->addr))
963 return TEST_FAILURE;
964
965 if (ifobj->use_fill_ring)
966 *xsk_ring_prod__fill_addr(&umem->fq, idx_fq++) = orig;
967 pkt = pkt_stream_get_next_rx_pkt(pkt_stream, &pkts_sent);
968 }
969
970 if (ifobj->use_fill_ring)
971 xsk_ring_prod__submit(&umem->fq, rcvd);
972 if (ifobj->release_rx)
973 xsk_ring_cons__release(&xsk->rx, rcvd);
974
975 pthread_mutex_lock(&pacing_mutex);
976 pkts_in_flight -= pkts_sent;
977 if (pkts_in_flight < umem->num_frames)
978 pthread_cond_signal(&pacing_cond);
979 pthread_mutex_unlock(&pacing_mutex);
980 pkts_sent = 0;
981 }
982
983 return TEST_PASS;
984 }
985
__send_pkts(struct ifobject * ifobject,u32 * pkt_nb,struct pollfd * fds,bool timeout)986 static int __send_pkts(struct ifobject *ifobject, u32 *pkt_nb, struct pollfd *fds,
987 bool timeout)
988 {
989 struct xsk_socket_info *xsk = ifobject->xsk;
990 bool use_poll = ifobject->use_poll;
991 u32 i, idx = 0, valid_pkts = 0;
992 int ret;
993
994 while (xsk_ring_prod__reserve(&xsk->tx, BATCH_SIZE, &idx) < BATCH_SIZE) {
995 if (use_poll) {
996 ret = poll(fds, 1, POLL_TMOUT);
997 if (timeout) {
998 if (ret < 0) {
999 ksft_print_msg("ERROR: [%s] Poll error %d\n",
1000 __func__, errno);
1001 return TEST_FAILURE;
1002 }
1003 if (ret == 0)
1004 return TEST_PASS;
1005 break;
1006 }
1007 if (ret <= 0) {
1008 ksft_print_msg("ERROR: [%s] Poll error %d\n",
1009 __func__, errno);
1010 return TEST_FAILURE;
1011 }
1012 }
1013
1014 complete_pkts(xsk, BATCH_SIZE);
1015 }
1016
1017 for (i = 0; i < BATCH_SIZE; i++) {
1018 struct xdp_desc *tx_desc = xsk_ring_prod__tx_desc(&xsk->tx, idx + i);
1019 struct pkt *pkt = pkt_generate(ifobject, *pkt_nb);
1020
1021 if (!pkt)
1022 break;
1023
1024 tx_desc->addr = pkt->addr;
1025 tx_desc->len = pkt->len;
1026 (*pkt_nb)++;
1027 if (pkt->valid)
1028 valid_pkts++;
1029 }
1030
1031 pthread_mutex_lock(&pacing_mutex);
1032 pkts_in_flight += valid_pkts;
1033 /* pkts_in_flight might be negative if many invalid packets are sent */
1034 if (pkts_in_flight >= (int)(ifobject->umem->num_frames - BATCH_SIZE)) {
1035 kick_tx(xsk);
1036 pthread_cond_wait(&pacing_cond, &pacing_mutex);
1037 }
1038 pthread_mutex_unlock(&pacing_mutex);
1039
1040 xsk_ring_prod__submit(&xsk->tx, i);
1041 xsk->outstanding_tx += valid_pkts;
1042
1043 if (use_poll) {
1044 ret = poll(fds, 1, POLL_TMOUT);
1045 if (ret <= 0) {
1046 if (ret == 0 && timeout)
1047 return TEST_PASS;
1048
1049 ksft_print_msg("ERROR: [%s] Poll error %d\n", __func__, ret);
1050 return TEST_FAILURE;
1051 }
1052 }
1053
1054 if (!timeout) {
1055 if (complete_pkts(xsk, i))
1056 return TEST_FAILURE;
1057
1058 usleep(10);
1059 return TEST_PASS;
1060 }
1061
1062 return TEST_CONTINUE;
1063 }
1064
wait_for_tx_completion(struct xsk_socket_info * xsk)1065 static void wait_for_tx_completion(struct xsk_socket_info *xsk)
1066 {
1067 while (xsk->outstanding_tx)
1068 complete_pkts(xsk, BATCH_SIZE);
1069 }
1070
send_pkts(struct test_spec * test,struct ifobject * ifobject)1071 static int send_pkts(struct test_spec *test, struct ifobject *ifobject)
1072 {
1073 bool timeout = !is_umem_valid(test->ifobj_rx);
1074 struct pollfd fds = { };
1075 u32 pkt_cnt = 0, ret;
1076
1077 fds.fd = xsk_socket__fd(ifobject->xsk->xsk);
1078 fds.events = POLLOUT;
1079
1080 while (pkt_cnt < ifobject->pkt_stream->nb_pkts) {
1081 ret = __send_pkts(ifobject, &pkt_cnt, &fds, timeout);
1082 if ((ret || test->fail) && !timeout)
1083 return TEST_FAILURE;
1084 else if (ret == TEST_PASS && timeout)
1085 return ret;
1086 }
1087
1088 wait_for_tx_completion(ifobject->xsk);
1089 return TEST_PASS;
1090 }
1091
get_xsk_stats(struct xsk_socket * xsk,struct xdp_statistics * stats)1092 static int get_xsk_stats(struct xsk_socket *xsk, struct xdp_statistics *stats)
1093 {
1094 int fd = xsk_socket__fd(xsk), err;
1095 socklen_t optlen, expected_len;
1096
1097 optlen = sizeof(*stats);
1098 err = getsockopt(fd, SOL_XDP, XDP_STATISTICS, stats, &optlen);
1099 if (err) {
1100 ksft_print_msg("[%s] getsockopt(XDP_STATISTICS) error %u %s\n",
1101 __func__, -err, strerror(-err));
1102 return TEST_FAILURE;
1103 }
1104
1105 expected_len = sizeof(struct xdp_statistics);
1106 if (optlen != expected_len) {
1107 ksft_print_msg("[%s] getsockopt optlen error. Expected: %u got: %u\n",
1108 __func__, expected_len, optlen);
1109 return TEST_FAILURE;
1110 }
1111
1112 return TEST_PASS;
1113 }
1114
validate_rx_dropped(struct ifobject * ifobject)1115 static int validate_rx_dropped(struct ifobject *ifobject)
1116 {
1117 struct xsk_socket *xsk = ifobject->xsk->xsk;
1118 struct xdp_statistics stats;
1119 int err;
1120
1121 kick_rx(ifobject->xsk);
1122
1123 err = get_xsk_stats(xsk, &stats);
1124 if (err)
1125 return TEST_FAILURE;
1126
1127 if (stats.rx_dropped == ifobject->pkt_stream->nb_pkts / 2)
1128 return TEST_PASS;
1129
1130 return TEST_FAILURE;
1131 }
1132
validate_rx_full(struct ifobject * ifobject)1133 static int validate_rx_full(struct ifobject *ifobject)
1134 {
1135 struct xsk_socket *xsk = ifobject->xsk->xsk;
1136 struct xdp_statistics stats;
1137 int err;
1138
1139 usleep(1000);
1140 kick_rx(ifobject->xsk);
1141
1142 err = get_xsk_stats(xsk, &stats);
1143 if (err)
1144 return TEST_FAILURE;
1145
1146 if (stats.rx_ring_full)
1147 return TEST_PASS;
1148
1149 return TEST_FAILURE;
1150 }
1151
validate_fill_empty(struct ifobject * ifobject)1152 static int validate_fill_empty(struct ifobject *ifobject)
1153 {
1154 struct xsk_socket *xsk = ifobject->xsk->xsk;
1155 struct xdp_statistics stats;
1156 int err;
1157
1158 usleep(1000);
1159 kick_rx(ifobject->xsk);
1160
1161 err = get_xsk_stats(xsk, &stats);
1162 if (err)
1163 return TEST_FAILURE;
1164
1165 if (stats.rx_fill_ring_empty_descs)
1166 return TEST_PASS;
1167
1168 return TEST_FAILURE;
1169 }
1170
validate_tx_invalid_descs(struct ifobject * ifobject)1171 static int validate_tx_invalid_descs(struct ifobject *ifobject)
1172 {
1173 struct xsk_socket *xsk = ifobject->xsk->xsk;
1174 int fd = xsk_socket__fd(xsk);
1175 struct xdp_statistics stats;
1176 socklen_t optlen;
1177 int err;
1178
1179 optlen = sizeof(stats);
1180 err = getsockopt(fd, SOL_XDP, XDP_STATISTICS, &stats, &optlen);
1181 if (err) {
1182 ksft_print_msg("[%s] getsockopt(XDP_STATISTICS) error %u %s\n",
1183 __func__, -err, strerror(-err));
1184 return TEST_FAILURE;
1185 }
1186
1187 if (stats.tx_invalid_descs != ifobject->pkt_stream->nb_pkts / 2) {
1188 ksft_print_msg("[%s] tx_invalid_descs incorrect. Got [%u] expected [%u]\n",
1189 __func__, stats.tx_invalid_descs, ifobject->pkt_stream->nb_pkts);
1190 return TEST_FAILURE;
1191 }
1192
1193 return TEST_PASS;
1194 }
1195
xsk_configure_socket(struct test_spec * test,struct ifobject * ifobject,struct xsk_umem_info * umem,bool tx)1196 static void xsk_configure_socket(struct test_spec *test, struct ifobject *ifobject,
1197 struct xsk_umem_info *umem, bool tx)
1198 {
1199 int i, ret;
1200
1201 for (i = 0; i < test->nb_sockets; i++) {
1202 bool shared = (ifobject->shared_umem && tx) ? true : !!i;
1203 u32 ctr = 0;
1204
1205 while (ctr++ < SOCK_RECONF_CTR) {
1206 ret = __xsk_configure_socket(&ifobject->xsk_arr[i], umem,
1207 ifobject, shared);
1208 if (!ret)
1209 break;
1210
1211 /* Retry if it fails as xsk_socket__create() is asynchronous */
1212 if (ctr >= SOCK_RECONF_CTR)
1213 exit_with_error(-ret);
1214 usleep(USLEEP_MAX);
1215 }
1216 if (ifobject->busy_poll)
1217 enable_busy_poll(&ifobject->xsk_arr[i]);
1218 }
1219 }
1220
thread_common_ops_tx(struct test_spec * test,struct ifobject * ifobject)1221 static void thread_common_ops_tx(struct test_spec *test, struct ifobject *ifobject)
1222 {
1223 xsk_configure_socket(test, ifobject, test->ifobj_rx->umem, true);
1224 ifobject->xsk = &ifobject->xsk_arr[0];
1225 ifobject->xskmap = test->ifobj_rx->xskmap;
1226 memcpy(ifobject->umem, test->ifobj_rx->umem, sizeof(struct xsk_umem_info));
1227 }
1228
xsk_populate_fill_ring(struct xsk_umem_info * umem,struct pkt_stream * pkt_stream)1229 static void xsk_populate_fill_ring(struct xsk_umem_info *umem, struct pkt_stream *pkt_stream)
1230 {
1231 u32 idx = 0, i, buffers_to_fill;
1232 int ret;
1233
1234 if (umem->num_frames < XSK_RING_PROD__DEFAULT_NUM_DESCS)
1235 buffers_to_fill = umem->num_frames;
1236 else
1237 buffers_to_fill = XSK_RING_PROD__DEFAULT_NUM_DESCS;
1238
1239 ret = xsk_ring_prod__reserve(&umem->fq, buffers_to_fill, &idx);
1240 if (ret != buffers_to_fill)
1241 exit_with_error(ENOSPC);
1242 for (i = 0; i < buffers_to_fill; i++) {
1243 u64 addr;
1244
1245 if (pkt_stream->use_addr_for_fill) {
1246 struct pkt *pkt = pkt_stream_get_pkt(pkt_stream, i);
1247
1248 if (!pkt)
1249 break;
1250 addr = pkt->addr;
1251 } else {
1252 addr = i * umem->frame_size;
1253 }
1254
1255 *xsk_ring_prod__fill_addr(&umem->fq, idx++) = addr;
1256 }
1257 xsk_ring_prod__submit(&umem->fq, i);
1258 }
1259
thread_common_ops(struct test_spec * test,struct ifobject * ifobject)1260 static void thread_common_ops(struct test_spec *test, struct ifobject *ifobject)
1261 {
1262 u64 umem_sz = ifobject->umem->num_frames * ifobject->umem->frame_size;
1263 int mmap_flags = MAP_PRIVATE | MAP_ANONYMOUS | MAP_NORESERVE;
1264 LIBBPF_OPTS(bpf_xdp_query_opts, opts);
1265 void *bufs;
1266 int ret;
1267
1268 if (ifobject->umem->unaligned_mode)
1269 mmap_flags |= MAP_HUGETLB;
1270
1271 if (ifobject->shared_umem)
1272 umem_sz *= 2;
1273
1274 bufs = mmap(NULL, umem_sz, PROT_READ | PROT_WRITE, mmap_flags, -1, 0);
1275 if (bufs == MAP_FAILED)
1276 exit_with_error(errno);
1277
1278 ret = xsk_configure_umem(ifobject->umem, bufs, umem_sz);
1279 if (ret)
1280 exit_with_error(-ret);
1281
1282 xsk_populate_fill_ring(ifobject->umem, ifobject->pkt_stream);
1283
1284 xsk_configure_socket(test, ifobject, ifobject->umem, false);
1285
1286 ifobject->xsk = &ifobject->xsk_arr[0];
1287
1288 if (!ifobject->rx_on)
1289 return;
1290
1291 ret = xsk_update_xskmap(ifobject->xskmap, ifobject->xsk->xsk);
1292 if (ret)
1293 exit_with_error(errno);
1294 }
1295
worker_testapp_validate_tx(void * arg)1296 static void *worker_testapp_validate_tx(void *arg)
1297 {
1298 struct test_spec *test = (struct test_spec *)arg;
1299 struct ifobject *ifobject = test->ifobj_tx;
1300 int err;
1301
1302 if (test->current_step == 1) {
1303 if (!ifobject->shared_umem)
1304 thread_common_ops(test, ifobject);
1305 else
1306 thread_common_ops_tx(test, ifobject);
1307 }
1308
1309 print_verbose("Sending %d packets on interface %s\n", ifobject->pkt_stream->nb_pkts,
1310 ifobject->ifname);
1311 err = send_pkts(test, ifobject);
1312
1313 if (!err && ifobject->validation_func)
1314 err = ifobject->validation_func(ifobject);
1315 if (err)
1316 report_failure(test);
1317
1318 pthread_exit(NULL);
1319 }
1320
worker_testapp_validate_rx(void * arg)1321 static void *worker_testapp_validate_rx(void *arg)
1322 {
1323 struct test_spec *test = (struct test_spec *)arg;
1324 struct ifobject *ifobject = test->ifobj_rx;
1325 struct pollfd fds = { };
1326 int err;
1327
1328 if (test->current_step == 1) {
1329 thread_common_ops(test, ifobject);
1330 } else {
1331 xsk_clear_xskmap(ifobject->xskmap);
1332 err = xsk_update_xskmap(ifobject->xskmap, ifobject->xsk->xsk);
1333 if (err) {
1334 printf("Error: Failed to update xskmap, error %s\n", strerror(-err));
1335 exit_with_error(-err);
1336 }
1337 }
1338
1339 fds.fd = xsk_socket__fd(ifobject->xsk->xsk);
1340 fds.events = POLLIN;
1341
1342 pthread_barrier_wait(&barr);
1343
1344 err = receive_pkts(test, &fds);
1345
1346 if (!err && ifobject->validation_func)
1347 err = ifobject->validation_func(ifobject);
1348 if (err) {
1349 report_failure(test);
1350 pthread_mutex_lock(&pacing_mutex);
1351 pthread_cond_signal(&pacing_cond);
1352 pthread_mutex_unlock(&pacing_mutex);
1353 }
1354
1355 pthread_exit(NULL);
1356 }
1357
testapp_clean_xsk_umem(struct ifobject * ifobj)1358 static void testapp_clean_xsk_umem(struct ifobject *ifobj)
1359 {
1360 u64 umem_sz = ifobj->umem->num_frames * ifobj->umem->frame_size;
1361
1362 if (ifobj->shared_umem)
1363 umem_sz *= 2;
1364
1365 xsk_umem__delete(ifobj->umem->umem);
1366 munmap(ifobj->umem->buffer, umem_sz);
1367 }
1368
handler(int signum)1369 static void handler(int signum)
1370 {
1371 pthread_exit(NULL);
1372 }
1373
xdp_prog_changed(struct test_spec * test,struct ifobject * ifobj)1374 static bool xdp_prog_changed(struct test_spec *test, struct ifobject *ifobj)
1375 {
1376 return ifobj->xdp_prog != test->xdp_prog_rx || ifobj->mode != test->mode;
1377 }
1378
xsk_reattach_xdp(struct ifobject * ifobj,struct bpf_program * xdp_prog,struct bpf_map * xskmap,enum test_mode mode)1379 static void xsk_reattach_xdp(struct ifobject *ifobj, struct bpf_program *xdp_prog,
1380 struct bpf_map *xskmap, enum test_mode mode)
1381 {
1382 int err;
1383
1384 xsk_detach_xdp_program(ifobj->ifindex, mode_to_xdp_flags(ifobj->mode));
1385 err = xsk_attach_xdp_program(xdp_prog, ifobj->ifindex, mode_to_xdp_flags(mode));
1386 if (err) {
1387 printf("Error attaching XDP program\n");
1388 exit_with_error(-err);
1389 }
1390
1391 if (ifobj->mode != mode && (mode == TEST_MODE_DRV || mode == TEST_MODE_ZC))
1392 if (!xsk_is_in_mode(ifobj->ifindex, XDP_FLAGS_DRV_MODE)) {
1393 ksft_print_msg("ERROR: XDP prog not in DRV mode\n");
1394 exit_with_error(EINVAL);
1395 }
1396
1397 ifobj->xdp_prog = xdp_prog;
1398 ifobj->xskmap = xskmap;
1399 ifobj->mode = mode;
1400 }
1401
xsk_attach_xdp_progs(struct test_spec * test,struct ifobject * ifobj_rx,struct ifobject * ifobj_tx)1402 static void xsk_attach_xdp_progs(struct test_spec *test, struct ifobject *ifobj_rx,
1403 struct ifobject *ifobj_tx)
1404 {
1405 if (xdp_prog_changed(test, ifobj_rx))
1406 xsk_reattach_xdp(ifobj_rx, test->xdp_prog_rx, test->xskmap_rx, test->mode);
1407
1408 if (!ifobj_tx || ifobj_tx->shared_umem)
1409 return;
1410
1411 if (xdp_prog_changed(test, ifobj_tx))
1412 xsk_reattach_xdp(ifobj_tx, test->xdp_prog_tx, test->xskmap_tx, test->mode);
1413 }
1414
__testapp_validate_traffic(struct test_spec * test,struct ifobject * ifobj1,struct ifobject * ifobj2)1415 static int __testapp_validate_traffic(struct test_spec *test, struct ifobject *ifobj1,
1416 struct ifobject *ifobj2)
1417 {
1418 pthread_t t0, t1;
1419
1420 if (ifobj2)
1421 if (pthread_barrier_init(&barr, NULL, 2))
1422 exit_with_error(errno);
1423
1424 test->current_step++;
1425 pkt_stream_reset(ifobj1->pkt_stream);
1426 pkts_in_flight = 0;
1427
1428 signal(SIGUSR1, handler);
1429 /*Spawn RX thread */
1430 pthread_create(&t0, NULL, ifobj1->func_ptr, test);
1431
1432 if (ifobj2) {
1433 pthread_barrier_wait(&barr);
1434 if (pthread_barrier_destroy(&barr))
1435 exit_with_error(errno);
1436
1437 /*Spawn TX thread */
1438 pthread_create(&t1, NULL, ifobj2->func_ptr, test);
1439
1440 pthread_join(t1, NULL);
1441 }
1442
1443 if (!ifobj2)
1444 pthread_kill(t0, SIGUSR1);
1445 else
1446 pthread_join(t0, NULL);
1447
1448 if (test->total_steps == test->current_step || test->fail) {
1449 if (ifobj2)
1450 xsk_socket__delete(ifobj2->xsk->xsk);
1451 xsk_socket__delete(ifobj1->xsk->xsk);
1452 testapp_clean_xsk_umem(ifobj1);
1453 if (ifobj2 && !ifobj2->shared_umem)
1454 testapp_clean_xsk_umem(ifobj2);
1455 }
1456
1457 return !!test->fail;
1458 }
1459
testapp_validate_traffic(struct test_spec * test)1460 static int testapp_validate_traffic(struct test_spec *test)
1461 {
1462 struct ifobject *ifobj_rx = test->ifobj_rx;
1463 struct ifobject *ifobj_tx = test->ifobj_tx;
1464
1465 xsk_attach_xdp_progs(test, ifobj_rx, ifobj_tx);
1466 return __testapp_validate_traffic(test, ifobj_rx, ifobj_tx);
1467 }
1468
testapp_validate_traffic_single_thread(struct test_spec * test,struct ifobject * ifobj)1469 static int testapp_validate_traffic_single_thread(struct test_spec *test, struct ifobject *ifobj)
1470 {
1471 return __testapp_validate_traffic(test, ifobj, NULL);
1472 }
1473
testapp_teardown(struct test_spec * test)1474 static void testapp_teardown(struct test_spec *test)
1475 {
1476 int i;
1477
1478 test_spec_set_name(test, "TEARDOWN");
1479 for (i = 0; i < MAX_TEARDOWN_ITER; i++) {
1480 if (testapp_validate_traffic(test))
1481 return;
1482 test_spec_reset(test);
1483 }
1484 }
1485
swap_directions(struct ifobject ** ifobj1,struct ifobject ** ifobj2)1486 static void swap_directions(struct ifobject **ifobj1, struct ifobject **ifobj2)
1487 {
1488 thread_func_t tmp_func_ptr = (*ifobj1)->func_ptr;
1489 struct ifobject *tmp_ifobj = (*ifobj1);
1490
1491 (*ifobj1)->func_ptr = (*ifobj2)->func_ptr;
1492 (*ifobj2)->func_ptr = tmp_func_ptr;
1493
1494 *ifobj1 = *ifobj2;
1495 *ifobj2 = tmp_ifobj;
1496 }
1497
testapp_bidi(struct test_spec * test)1498 static void testapp_bidi(struct test_spec *test)
1499 {
1500 test_spec_set_name(test, "BIDIRECTIONAL");
1501 test->ifobj_tx->rx_on = true;
1502 test->ifobj_rx->tx_on = true;
1503 test->total_steps = 2;
1504 if (testapp_validate_traffic(test))
1505 return;
1506
1507 print_verbose("Switching Tx/Rx vectors\n");
1508 swap_directions(&test->ifobj_rx, &test->ifobj_tx);
1509 __testapp_validate_traffic(test, test->ifobj_rx, test->ifobj_tx);
1510
1511 swap_directions(&test->ifobj_rx, &test->ifobj_tx);
1512 }
1513
swap_xsk_resources(struct ifobject * ifobj_tx,struct ifobject * ifobj_rx)1514 static void swap_xsk_resources(struct ifobject *ifobj_tx, struct ifobject *ifobj_rx)
1515 {
1516 int ret;
1517
1518 xsk_socket__delete(ifobj_tx->xsk->xsk);
1519 xsk_socket__delete(ifobj_rx->xsk->xsk);
1520 ifobj_tx->xsk = &ifobj_tx->xsk_arr[1];
1521 ifobj_rx->xsk = &ifobj_rx->xsk_arr[1];
1522
1523 ret = xsk_update_xskmap(ifobj_rx->xskmap, ifobj_rx->xsk->xsk);
1524 if (ret)
1525 exit_with_error(errno);
1526 }
1527
testapp_bpf_res(struct test_spec * test)1528 static void testapp_bpf_res(struct test_spec *test)
1529 {
1530 test_spec_set_name(test, "BPF_RES");
1531 test->total_steps = 2;
1532 test->nb_sockets = 2;
1533 if (testapp_validate_traffic(test))
1534 return;
1535
1536 swap_xsk_resources(test->ifobj_tx, test->ifobj_rx);
1537 testapp_validate_traffic(test);
1538 }
1539
testapp_headroom(struct test_spec * test)1540 static void testapp_headroom(struct test_spec *test)
1541 {
1542 test_spec_set_name(test, "UMEM_HEADROOM");
1543 test->ifobj_rx->umem->frame_headroom = UMEM_HEADROOM_TEST_SIZE;
1544 testapp_validate_traffic(test);
1545 }
1546
testapp_stats_rx_dropped(struct test_spec * test)1547 static void testapp_stats_rx_dropped(struct test_spec *test)
1548 {
1549 test_spec_set_name(test, "STAT_RX_DROPPED");
1550 pkt_stream_replace_half(test, MIN_PKT_SIZE * 4, 0);
1551 test->ifobj_rx->umem->frame_headroom = test->ifobj_rx->umem->frame_size -
1552 XDP_PACKET_HEADROOM - MIN_PKT_SIZE * 3;
1553 pkt_stream_receive_half(test);
1554 test->ifobj_rx->validation_func = validate_rx_dropped;
1555 testapp_validate_traffic(test);
1556 }
1557
testapp_stats_tx_invalid_descs(struct test_spec * test)1558 static void testapp_stats_tx_invalid_descs(struct test_spec *test)
1559 {
1560 test_spec_set_name(test, "STAT_TX_INVALID");
1561 pkt_stream_replace_half(test, XSK_UMEM__INVALID_FRAME_SIZE, 0);
1562 test->ifobj_tx->validation_func = validate_tx_invalid_descs;
1563 testapp_validate_traffic(test);
1564 }
1565
testapp_stats_rx_full(struct test_spec * test)1566 static void testapp_stats_rx_full(struct test_spec *test)
1567 {
1568 test_spec_set_name(test, "STAT_RX_FULL");
1569 pkt_stream_replace(test, DEFAULT_UMEM_BUFFERS + DEFAULT_UMEM_BUFFERS / 2, PKT_SIZE);
1570 test->ifobj_rx->pkt_stream = pkt_stream_generate(test->ifobj_rx->umem,
1571 DEFAULT_UMEM_BUFFERS, PKT_SIZE);
1572 if (!test->ifobj_rx->pkt_stream)
1573 exit_with_error(ENOMEM);
1574
1575 test->ifobj_rx->xsk->rxqsize = DEFAULT_UMEM_BUFFERS;
1576 test->ifobj_rx->release_rx = false;
1577 test->ifobj_rx->validation_func = validate_rx_full;
1578 testapp_validate_traffic(test);
1579 }
1580
testapp_stats_fill_empty(struct test_spec * test)1581 static void testapp_stats_fill_empty(struct test_spec *test)
1582 {
1583 test_spec_set_name(test, "STAT_RX_FILL_EMPTY");
1584 pkt_stream_replace(test, DEFAULT_UMEM_BUFFERS + DEFAULT_UMEM_BUFFERS / 2, PKT_SIZE);
1585 test->ifobj_rx->pkt_stream = pkt_stream_generate(test->ifobj_rx->umem,
1586 DEFAULT_UMEM_BUFFERS, PKT_SIZE);
1587 if (!test->ifobj_rx->pkt_stream)
1588 exit_with_error(ENOMEM);
1589
1590 test->ifobj_rx->use_fill_ring = false;
1591 test->ifobj_rx->validation_func = validate_fill_empty;
1592 testapp_validate_traffic(test);
1593 }
1594
1595 /* Simple test */
hugepages_present(struct ifobject * ifobject)1596 static bool hugepages_present(struct ifobject *ifobject)
1597 {
1598 const size_t mmap_sz = 2 * ifobject->umem->num_frames * ifobject->umem->frame_size;
1599 void *bufs;
1600
1601 bufs = mmap(NULL, mmap_sz, PROT_READ | PROT_WRITE,
1602 MAP_PRIVATE | MAP_ANONYMOUS | MAP_HUGETLB, -1, 0);
1603 if (bufs == MAP_FAILED)
1604 return false;
1605
1606 munmap(bufs, mmap_sz);
1607 return true;
1608 }
1609
testapp_unaligned(struct test_spec * test)1610 static bool testapp_unaligned(struct test_spec *test)
1611 {
1612 if (!hugepages_present(test->ifobj_tx)) {
1613 ksft_test_result_skip("No 2M huge pages present.\n");
1614 return false;
1615 }
1616
1617 test_spec_set_name(test, "UNALIGNED_MODE");
1618 test->ifobj_tx->umem->unaligned_mode = true;
1619 test->ifobj_rx->umem->unaligned_mode = true;
1620 /* Let half of the packets straddle a buffer boundrary */
1621 pkt_stream_replace_half(test, PKT_SIZE, -PKT_SIZE / 2);
1622 test->ifobj_rx->pkt_stream->use_addr_for_fill = true;
1623 testapp_validate_traffic(test);
1624
1625 return true;
1626 }
1627
testapp_single_pkt(struct test_spec * test)1628 static void testapp_single_pkt(struct test_spec *test)
1629 {
1630 struct pkt pkts[] = {{0x1000, PKT_SIZE, 0, true}};
1631
1632 pkt_stream_generate_custom(test, pkts, ARRAY_SIZE(pkts));
1633 testapp_validate_traffic(test);
1634 }
1635
testapp_invalid_desc(struct test_spec * test)1636 static void testapp_invalid_desc(struct test_spec *test)
1637 {
1638 struct pkt pkts[] = {
1639 /* Zero packet address allowed */
1640 {0, PKT_SIZE, 0, true},
1641 /* Allowed packet */
1642 {0x1000, PKT_SIZE, 0, true},
1643 /* Straddling the start of umem */
1644 {-2, PKT_SIZE, 0, false},
1645 /* Packet too large */
1646 {0x2000, XSK_UMEM__INVALID_FRAME_SIZE, 0, false},
1647 /* After umem ends */
1648 {UMEM_SIZE, PKT_SIZE, 0, false},
1649 /* Straddle the end of umem */
1650 {UMEM_SIZE - PKT_SIZE / 2, PKT_SIZE, 0, false},
1651 /* Straddle a page boundrary */
1652 {0x3000 - PKT_SIZE / 2, PKT_SIZE, 0, false},
1653 /* Straddle a 2K boundrary */
1654 {0x3800 - PKT_SIZE / 2, PKT_SIZE, 0, true},
1655 /* Valid packet for synch so that something is received */
1656 {0x4000, PKT_SIZE, 0, true}};
1657
1658 if (test->ifobj_tx->umem->unaligned_mode) {
1659 /* Crossing a page boundrary allowed */
1660 pkts[6].valid = true;
1661 }
1662 if (test->ifobj_tx->umem->frame_size == XSK_UMEM__DEFAULT_FRAME_SIZE / 2) {
1663 /* Crossing a 2K frame size boundrary not allowed */
1664 pkts[7].valid = false;
1665 }
1666
1667 if (test->ifobj_tx->shared_umem) {
1668 pkts[4].addr += UMEM_SIZE;
1669 pkts[5].addr += UMEM_SIZE;
1670 }
1671
1672 pkt_stream_generate_custom(test, pkts, ARRAY_SIZE(pkts));
1673 testapp_validate_traffic(test);
1674 }
1675
testapp_xdp_drop(struct test_spec * test)1676 static void testapp_xdp_drop(struct test_spec *test)
1677 {
1678 struct xsk_xdp_progs *skel_rx = test->ifobj_rx->xdp_progs;
1679 struct xsk_xdp_progs *skel_tx = test->ifobj_tx->xdp_progs;
1680
1681 test_spec_set_name(test, "XDP_DROP_HALF");
1682 test_spec_set_xdp_prog(test, skel_rx->progs.xsk_xdp_drop, skel_tx->progs.xsk_xdp_drop,
1683 skel_rx->maps.xsk, skel_tx->maps.xsk);
1684
1685 pkt_stream_receive_half(test);
1686 testapp_validate_traffic(test);
1687 }
1688
testapp_poll_txq_tmout(struct test_spec * test)1689 static void testapp_poll_txq_tmout(struct test_spec *test)
1690 {
1691 test_spec_set_name(test, "POLL_TXQ_FULL");
1692
1693 test->ifobj_tx->use_poll = true;
1694 /* create invalid frame by set umem frame_size and pkt length equal to 2048 */
1695 test->ifobj_tx->umem->frame_size = 2048;
1696 pkt_stream_replace(test, 2 * DEFAULT_PKT_CNT, 2048);
1697 testapp_validate_traffic_single_thread(test, test->ifobj_tx);
1698 }
1699
testapp_poll_rxq_tmout(struct test_spec * test)1700 static void testapp_poll_rxq_tmout(struct test_spec *test)
1701 {
1702 test_spec_set_name(test, "POLL_RXQ_EMPTY");
1703 test->ifobj_rx->use_poll = true;
1704 testapp_validate_traffic_single_thread(test, test->ifobj_rx);
1705 }
1706
xsk_load_xdp_programs(struct ifobject * ifobj)1707 static int xsk_load_xdp_programs(struct ifobject *ifobj)
1708 {
1709 ifobj->xdp_progs = xsk_xdp_progs__open_and_load();
1710 if (libbpf_get_error(ifobj->xdp_progs))
1711 return libbpf_get_error(ifobj->xdp_progs);
1712
1713 return 0;
1714 }
1715
xsk_unload_xdp_programs(struct ifobject * ifobj)1716 static void xsk_unload_xdp_programs(struct ifobject *ifobj)
1717 {
1718 xsk_xdp_progs__destroy(ifobj->xdp_progs);
1719 }
1720
init_iface(struct ifobject * ifobj,const char * dst_mac,const char * src_mac,const char * dst_ip,const char * src_ip,const u16 dst_port,const u16 src_port,thread_func_t func_ptr)1721 static void init_iface(struct ifobject *ifobj, const char *dst_mac, const char *src_mac,
1722 const char *dst_ip, const char *src_ip, const u16 dst_port,
1723 const u16 src_port, thread_func_t func_ptr)
1724 {
1725 struct in_addr ip;
1726 int err;
1727
1728 memcpy(ifobj->dst_mac, dst_mac, ETH_ALEN);
1729 memcpy(ifobj->src_mac, src_mac, ETH_ALEN);
1730
1731 inet_aton(dst_ip, &ip);
1732 ifobj->dst_ip = ip.s_addr;
1733
1734 inet_aton(src_ip, &ip);
1735 ifobj->src_ip = ip.s_addr;
1736
1737 ifobj->dst_port = dst_port;
1738 ifobj->src_port = src_port;
1739
1740 ifobj->func_ptr = func_ptr;
1741
1742 err = xsk_load_xdp_programs(ifobj);
1743 if (err) {
1744 printf("Error loading XDP program\n");
1745 exit_with_error(err);
1746 }
1747 }
1748
run_pkt_test(struct test_spec * test,enum test_mode mode,enum test_type type)1749 static void run_pkt_test(struct test_spec *test, enum test_mode mode, enum test_type type)
1750 {
1751 switch (type) {
1752 case TEST_TYPE_STATS_RX_DROPPED:
1753 if (mode == TEST_MODE_ZC) {
1754 ksft_test_result_skip("Can not run RX_DROPPED test for ZC mode\n");
1755 return;
1756 }
1757 testapp_stats_rx_dropped(test);
1758 break;
1759 case TEST_TYPE_STATS_TX_INVALID_DESCS:
1760 testapp_stats_tx_invalid_descs(test);
1761 break;
1762 case TEST_TYPE_STATS_RX_FULL:
1763 testapp_stats_rx_full(test);
1764 break;
1765 case TEST_TYPE_STATS_FILL_EMPTY:
1766 testapp_stats_fill_empty(test);
1767 break;
1768 case TEST_TYPE_TEARDOWN:
1769 testapp_teardown(test);
1770 break;
1771 case TEST_TYPE_BIDI:
1772 testapp_bidi(test);
1773 break;
1774 case TEST_TYPE_BPF_RES:
1775 testapp_bpf_res(test);
1776 break;
1777 case TEST_TYPE_RUN_TO_COMPLETION:
1778 test_spec_set_name(test, "RUN_TO_COMPLETION");
1779 testapp_validate_traffic(test);
1780 break;
1781 case TEST_TYPE_RUN_TO_COMPLETION_SINGLE_PKT:
1782 test_spec_set_name(test, "RUN_TO_COMPLETION_SINGLE_PKT");
1783 testapp_single_pkt(test);
1784 break;
1785 case TEST_TYPE_RUN_TO_COMPLETION_2K_FRAME:
1786 test_spec_set_name(test, "RUN_TO_COMPLETION_2K_FRAME_SIZE");
1787 test->ifobj_tx->umem->frame_size = 2048;
1788 test->ifobj_rx->umem->frame_size = 2048;
1789 pkt_stream_replace(test, DEFAULT_PKT_CNT, PKT_SIZE);
1790 testapp_validate_traffic(test);
1791 break;
1792 case TEST_TYPE_RX_POLL:
1793 test->ifobj_rx->use_poll = true;
1794 test_spec_set_name(test, "POLL_RX");
1795 testapp_validate_traffic(test);
1796 break;
1797 case TEST_TYPE_TX_POLL:
1798 test->ifobj_tx->use_poll = true;
1799 test_spec_set_name(test, "POLL_TX");
1800 testapp_validate_traffic(test);
1801 break;
1802 case TEST_TYPE_POLL_TXQ_TMOUT:
1803 testapp_poll_txq_tmout(test);
1804 break;
1805 case TEST_TYPE_POLL_RXQ_TMOUT:
1806 testapp_poll_rxq_tmout(test);
1807 break;
1808 case TEST_TYPE_ALIGNED_INV_DESC:
1809 test_spec_set_name(test, "ALIGNED_INV_DESC");
1810 testapp_invalid_desc(test);
1811 break;
1812 case TEST_TYPE_ALIGNED_INV_DESC_2K_FRAME:
1813 test_spec_set_name(test, "ALIGNED_INV_DESC_2K_FRAME_SIZE");
1814 test->ifobj_tx->umem->frame_size = 2048;
1815 test->ifobj_rx->umem->frame_size = 2048;
1816 testapp_invalid_desc(test);
1817 break;
1818 case TEST_TYPE_UNALIGNED_INV_DESC:
1819 if (!hugepages_present(test->ifobj_tx)) {
1820 ksft_test_result_skip("No 2M huge pages present.\n");
1821 return;
1822 }
1823 test_spec_set_name(test, "UNALIGNED_INV_DESC");
1824 test->ifobj_tx->umem->unaligned_mode = true;
1825 test->ifobj_rx->umem->unaligned_mode = true;
1826 testapp_invalid_desc(test);
1827 break;
1828 case TEST_TYPE_UNALIGNED:
1829 if (!testapp_unaligned(test))
1830 return;
1831 break;
1832 case TEST_TYPE_HEADROOM:
1833 testapp_headroom(test);
1834 break;
1835 case TEST_TYPE_XDP_DROP_HALF:
1836 testapp_xdp_drop(test);
1837 break;
1838 default:
1839 break;
1840 }
1841
1842 if (!test->fail)
1843 ksft_test_result_pass("PASS: %s %s%s\n", mode_string(test), busy_poll_string(test),
1844 test->name);
1845 pkt_stream_restore_default(test);
1846 }
1847
ifobject_create(void)1848 static struct ifobject *ifobject_create(void)
1849 {
1850 struct ifobject *ifobj;
1851
1852 ifobj = calloc(1, sizeof(struct ifobject));
1853 if (!ifobj)
1854 return NULL;
1855
1856 ifobj->xsk_arr = calloc(MAX_SOCKETS, sizeof(*ifobj->xsk_arr));
1857 if (!ifobj->xsk_arr)
1858 goto out_xsk_arr;
1859
1860 ifobj->umem = calloc(1, sizeof(*ifobj->umem));
1861 if (!ifobj->umem)
1862 goto out_umem;
1863
1864 return ifobj;
1865
1866 out_umem:
1867 free(ifobj->xsk_arr);
1868 out_xsk_arr:
1869 free(ifobj);
1870 return NULL;
1871 }
1872
ifobject_delete(struct ifobject * ifobj)1873 static void ifobject_delete(struct ifobject *ifobj)
1874 {
1875 free(ifobj->umem);
1876 free(ifobj->xsk_arr);
1877 free(ifobj);
1878 }
1879
is_xdp_supported(int ifindex)1880 static bool is_xdp_supported(int ifindex)
1881 {
1882 int flags = XDP_FLAGS_DRV_MODE;
1883
1884 LIBBPF_OPTS(bpf_link_create_opts, opts, .flags = flags);
1885 struct bpf_insn insns[2] = {
1886 BPF_MOV64_IMM(BPF_REG_0, XDP_PASS),
1887 BPF_EXIT_INSN()
1888 };
1889 int prog_fd, insn_cnt = ARRAY_SIZE(insns);
1890 int err;
1891
1892 prog_fd = bpf_prog_load(BPF_PROG_TYPE_XDP, NULL, "GPL", insns, insn_cnt, NULL);
1893 if (prog_fd < 0)
1894 return false;
1895
1896 err = bpf_xdp_attach(ifindex, prog_fd, flags, NULL);
1897 if (err) {
1898 close(prog_fd);
1899 return false;
1900 }
1901
1902 bpf_xdp_detach(ifindex, flags, NULL);
1903 close(prog_fd);
1904
1905 return true;
1906 }
1907
main(int argc,char ** argv)1908 int main(int argc, char **argv)
1909 {
1910 struct pkt_stream *rx_pkt_stream_default;
1911 struct pkt_stream *tx_pkt_stream_default;
1912 struct ifobject *ifobj_tx, *ifobj_rx;
1913 int modes = TEST_MODE_SKB + 1;
1914 u32 i, j, failed_tests = 0;
1915 struct test_spec test;
1916 bool shared_netdev;
1917
1918 /* Use libbpf 1.0 API mode */
1919 libbpf_set_strict_mode(LIBBPF_STRICT_ALL);
1920
1921 ifobj_tx = ifobject_create();
1922 if (!ifobj_tx)
1923 exit_with_error(ENOMEM);
1924 ifobj_rx = ifobject_create();
1925 if (!ifobj_rx)
1926 exit_with_error(ENOMEM);
1927
1928 setlocale(LC_ALL, "");
1929
1930 parse_command_line(ifobj_tx, ifobj_rx, argc, argv);
1931
1932 shared_netdev = (ifobj_tx->ifindex == ifobj_rx->ifindex);
1933 ifobj_tx->shared_umem = shared_netdev;
1934 ifobj_rx->shared_umem = shared_netdev;
1935
1936 if (!validate_interface(ifobj_tx) || !validate_interface(ifobj_rx)) {
1937 usage(basename(argv[0]));
1938 ksft_exit_xfail();
1939 }
1940
1941 if (is_xdp_supported(ifobj_tx->ifindex)) {
1942 modes++;
1943 if (ifobj_zc_avail(ifobj_tx))
1944 modes++;
1945 }
1946
1947 init_iface(ifobj_rx, MAC1, MAC2, IP1, IP2, UDP_PORT1, UDP_PORT2,
1948 worker_testapp_validate_rx);
1949 init_iface(ifobj_tx, MAC2, MAC1, IP2, IP1, UDP_PORT2, UDP_PORT1,
1950 worker_testapp_validate_tx);
1951
1952 test_spec_init(&test, ifobj_tx, ifobj_rx, 0);
1953 tx_pkt_stream_default = pkt_stream_generate(ifobj_tx->umem, DEFAULT_PKT_CNT, PKT_SIZE);
1954 rx_pkt_stream_default = pkt_stream_generate(ifobj_rx->umem, DEFAULT_PKT_CNT, PKT_SIZE);
1955 if (!tx_pkt_stream_default || !rx_pkt_stream_default)
1956 exit_with_error(ENOMEM);
1957 test.tx_pkt_stream_default = tx_pkt_stream_default;
1958 test.rx_pkt_stream_default = rx_pkt_stream_default;
1959
1960 ksft_set_plan(modes * TEST_TYPE_MAX);
1961
1962 for (i = 0; i < modes; i++) {
1963 for (j = 0; j < TEST_TYPE_MAX; j++) {
1964 test_spec_init(&test, ifobj_tx, ifobj_rx, i);
1965 run_pkt_test(&test, i, j);
1966 usleep(USLEEP_MAX);
1967
1968 if (test.fail)
1969 failed_tests++;
1970 }
1971 }
1972
1973 pkt_stream_delete(tx_pkt_stream_default);
1974 pkt_stream_delete(rx_pkt_stream_default);
1975 xsk_unload_xdp_programs(ifobj_tx);
1976 xsk_unload_xdp_programs(ifobj_rx);
1977 ifobject_delete(ifobj_tx);
1978 ifobject_delete(ifobj_rx);
1979
1980 if (failed_tests)
1981 ksft_exit_fail();
1982 else
1983 ksft_exit_pass();
1984 }
1985