xref: /dpdk/app/test-pmd/parameters.c (revision 3998e2a07220844d3f3c17f76a781ced3efe0de0)
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2010-2017 Intel Corporation
3  */
4 
5 #include <errno.h>
6 #include <getopt.h>
7 #include <stdarg.h>
8 #include <stdio.h>
9 #include <stdlib.h>
10 #include <signal.h>
11 #include <string.h>
12 #include <time.h>
13 #include <fcntl.h>
14 #include <sys/types.h>
15 
16 #include <sys/queue.h>
17 #include <sys/stat.h>
18 
19 #include <stdint.h>
20 #include <unistd.h>
21 #include <inttypes.h>
22 
23 #include <rte_common.h>
24 #include <rte_byteorder.h>
25 #include <rte_log.h>
26 #include <rte_debug.h>
27 #include <rte_cycles.h>
28 #include <rte_memory.h>
29 #include <rte_launch.h>
30 #include <rte_eal.h>
31 #include <rte_per_lcore.h>
32 #include <rte_lcore.h>
33 #include <rte_atomic.h>
34 #include <rte_branch_prediction.h>
35 #include <rte_mempool.h>
36 #include <rte_interrupts.h>
37 #include <rte_pci.h>
38 #include <rte_ether.h>
39 #include <rte_ethdev.h>
40 #include <rte_string_fns.h>
41 #ifdef RTE_LIBRTE_CMDLINE
42 #include <cmdline_parse.h>
43 #include <cmdline_parse_etheraddr.h>
44 #endif
45 #ifdef RTE_LIBRTE_PMD_BOND
46 #include <rte_eth_bond.h>
47 #endif
48 #include <rte_flow.h>
49 
50 #include "testpmd.h"
51 
52 static void
53 usage(char* progname)
54 {
55 	printf("usage: %s "
56 #ifdef RTE_LIBRTE_CMDLINE
57 	       "[--interactive|-i] "
58 	       "[--cmdline-file=FILENAME] "
59 #endif
60 	       "[--help|-h] | [--auto-start|-a] | ["
61 	       "--tx-first | --stats-period=PERIOD | "
62 	       "--coremask=COREMASK --portmask=PORTMASK --numa "
63 	       "--mbuf-size= | --total-num-mbufs= | "
64 	       "--nb-cores= | --nb-ports= | "
65 #ifdef RTE_LIBRTE_CMDLINE
66 	       "--eth-peers-configfile= | "
67 	       "--eth-peer=X,M:M:M:M:M:M | "
68 #endif
69 	       "--pkt-filter-mode= |"
70 	       "--rss-ip | --rss-udp | "
71 	       "--rxpt= | --rxht= | --rxwt= | --rxfreet= | "
72 	       "--txpt= | --txht= | --txwt= | --txfreet= | "
73 	       "--txrst= | --txqflags= ]\n",
74 	       progname);
75 #ifdef RTE_LIBRTE_CMDLINE
76 	printf("  --interactive: run in interactive mode.\n");
77 	printf("  --cmdline-file: execute cli commands before startup.\n");
78 #endif
79 	printf("  --auto-start: start forwarding on init "
80 	       "[always when non-interactive].\n");
81 	printf("  --help: display this message and quit.\n");
82 	printf("  --tx-first: start forwarding sending a burst first "
83 	       "(only if interactive is disabled).\n");
84 	printf("  --stats-period=PERIOD: statistics will be shown "
85 	       "every PERIOD seconds (only if interactive is disabled).\n");
86 	printf("  --nb-cores=N: set the number of forwarding cores "
87 	       "(1 <= N <= %d).\n", nb_lcores);
88 	printf("  --nb-ports=N: set the number of forwarding ports "
89 	       "(1 <= N <= %d).\n", nb_ports);
90 	printf("  --coremask=COREMASK: hexadecimal bitmask of cores running "
91 	       "the packet forwarding test. The master lcore is reserved for "
92 	       "command line parsing only, and cannot be masked on for "
93 	       "packet forwarding.\n");
94 	printf("  --portmask=PORTMASK: hexadecimal bitmask of ports used "
95 	       "by the packet forwarding test.\n");
96 	printf("  --numa: enable NUMA-aware allocation of RX/TX rings and of "
97 	       "RX memory buffers (mbufs).\n");
98 	printf("  --port-numa-config=(port,socket)[,(port,socket)]: "
99 	       "specify the socket on which the memory pool "
100 	       "used by the port will be allocated.\n");
101 	printf("  --ring-numa-config=(port,flag,socket)[,(port,flag,socket)]: "
102 	       "specify the socket on which the TX/RX rings for "
103 	       "the port will be allocated "
104 	       "(flag: 1 for RX; 2 for TX; 3 for RX and TX).\n");
105 	printf("  --socket-num=N: set socket from which all memory is allocated "
106 	       "in NUMA mode.\n");
107 	printf("  --mbuf-size=N: set the data size of mbuf to N bytes.\n");
108 	printf("  --total-num-mbufs=N: set the number of mbufs to be allocated "
109 	       "in mbuf pools.\n");
110 	printf("  --max-pkt-len=N: set the maximum size of packet to N bytes.\n");
111 #ifdef RTE_LIBRTE_CMDLINE
112 	printf("  --eth-peers-configfile=name: config file with ethernet addresses "
113 	       "of peer ports.\n");
114 	printf("  --eth-peer=X,M:M:M:M:M:M: set the MAC address of the X peer "
115 	       "port (0 <= X < %d).\n", RTE_MAX_ETHPORTS);
116 #endif
117 	printf("  --pkt-filter-mode=N: set Flow Director mode "
118 	       "(N: none (default mode) or signature or perfect).\n");
119 	printf("  --pkt-filter-report-hash=N: set Flow Director report mode "
120 	       "(N: none  or match (default) or always).\n");
121 	printf("  --pkt-filter-size=N: set Flow Director mode "
122 	       "(N: 64K (default mode) or 128K or 256K).\n");
123 	printf("  --pkt-filter-drop-queue=N: set drop-queue. "
124 	       "In perfect mode, when you add a rule with queue = -1 "
125 	       "the packet will be enqueued into the rx drop-queue. "
126 	       "If the drop-queue doesn't exist, the packet is dropped. "
127 	       "By default drop-queue=127.\n");
128 #ifdef RTE_LIBRTE_LATENCY_STATS
129 	printf("  --latencystats=N: enable latency and jitter statistcs "
130 	       "monitoring on forwarding lcore id N.\n");
131 #endif
132 	printf("  --disable-crc-strip: disable CRC stripping by hardware.\n");
133 	printf("  --enable-lro: enable large receive offload.\n");
134 	printf("  --enable-rx-cksum: enable rx hardware checksum offload.\n");
135 	printf("  --enable-rx-timestamp: enable rx hardware timestamp offload.\n");
136 	printf("  --disable-hw-vlan: disable hardware vlan.\n");
137 	printf("  --disable-hw-vlan-filter: disable hardware vlan filter.\n");
138 	printf("  --disable-hw-vlan-strip: disable hardware vlan strip.\n");
139 	printf("  --disable-hw-vlan-extend: disable hardware vlan extend.\n");
140 	printf("  --enable-drop-en: enable per queue packet drop.\n");
141 	printf("  --disable-rss: disable rss.\n");
142 	printf("  --port-topology=N: set port topology (N: paired (default) or "
143 	       "chained).\n");
144 	printf("  --forward-mode=N: set forwarding mode (N: %s).\n",
145 	       list_pkt_forwarding_modes());
146 	printf("  --rss-ip: set RSS functions to IPv4/IPv6 only .\n");
147 	printf("  --rss-udp: set RSS functions to IPv4/IPv6 + UDP.\n");
148 	printf("  --rxq=N: set the number of RX queues per port to N.\n");
149 	printf("  --rxd=N: set the number of descriptors in RX rings to N.\n");
150 	printf("  --txq=N: set the number of TX queues per port to N.\n");
151 	printf("  --txd=N: set the number of descriptors in TX rings to N.\n");
152 	printf("  --burst=N: set the number of packets per burst to N.\n");
153 	printf("  --mbcache=N: set the cache of mbuf memory pool to N.\n");
154 	printf("  --rxpt=N: set prefetch threshold register of RX rings to N.\n");
155 	printf("  --rxht=N: set the host threshold register of RX rings to N.\n");
156 	printf("  --rxfreet=N: set the free threshold of RX descriptors to N "
157 	       "(0 <= N < value of rxd).\n");
158 	printf("  --rxwt=N: set the write-back threshold register of RX rings to N.\n");
159 	printf("  --txpt=N: set the prefetch threshold register of TX rings to N.\n");
160 	printf("  --txht=N: set the nhost threshold register of TX rings to N.\n");
161 	printf("  --txwt=N: set the write-back threshold register of TX rings to N.\n");
162 	printf("  --txfreet=N: set the transmit free threshold of TX rings to N "
163 	       "(0 <= N <= value of txd).\n");
164 	printf("  --txrst=N: set the transmit RS bit threshold of TX rings to N "
165 	       "(0 <= N <= value of txd).\n");
166 	printf("  --txqflags=0xXXXXXXXX: hexadecimal bitmask of TX queue flags "
167 	       "(0 <= N <= 0x7FFFFFFF).\n");
168 	printf("  --tx-queue-stats-mapping=(port,queue,mapping)[,(port,queue,mapping]: "
169 	       "tx queues statistics counters mapping "
170 	       "(0 <= mapping <= %d).\n", RTE_ETHDEV_QUEUE_STAT_CNTRS - 1);
171 	printf("  --rx-queue-stats-mapping=(port,queue,mapping)[,(port,queue,mapping]: "
172 	       "rx queues statistics counters mapping "
173 	       "(0 <= mapping <= %d).\n", RTE_ETHDEV_QUEUE_STAT_CNTRS - 1);
174 	printf("  --no-flush-rx: Don't flush RX streams before forwarding."
175 	       " Used mainly with PCAP drivers.\n");
176 	printf("  --txpkts=X[,Y]*: set TX segment sizes"
177 		" or total packet length.\n");
178 	printf("  --disable-link-check: disable check on link status when "
179 	       "starting/stopping ports.\n");
180 	printf("  --no-lsc-interrupt: disable link status change interrupt.\n");
181 	printf("  --no-rmv-interrupt: disable device removal interrupt.\n");
182 	printf("  --bitrate-stats=N: set the logical core N to perform "
183 		"bit-rate calculation.\n");
184 	printf("  --print-event <unknown|intr_lsc|queue_state|intr_reset|vf_mbox|macsec|intr_rmv|all>: "
185 	       "enable print of designated event or all of them.\n");
186 	printf("  --mask-event <unknown|intr_lsc|queue_state|intr_reset|vf_mbox|macsec|intr_rmv|all>: "
187 	       "disable print of designated event or all of them.\n");
188 	printf("  --flow-isolate-all: "
189 	       "requests flow API isolated mode on all ports at initialization time.\n");
190 }
191 
192 #ifdef RTE_LIBRTE_CMDLINE
193 static int
194 init_peer_eth_addrs(char *config_filename)
195 {
196 	FILE *config_file;
197 	portid_t i;
198 	char buf[50];
199 
200 	config_file = fopen(config_filename, "r");
201 	if (config_file == NULL) {
202 		perror("Failed to open eth config file\n");
203 		return -1;
204 	}
205 
206 	for (i = 0; i < RTE_MAX_ETHPORTS; i++) {
207 
208 		if (fgets(buf, sizeof(buf), config_file) == NULL)
209 			break;
210 
211 		if (cmdline_parse_etheraddr(NULL, buf, &peer_eth_addrs[i],
212 				sizeof(peer_eth_addrs[i])) < 0) {
213 			printf("Bad MAC address format on line %d\n", i+1);
214 			fclose(config_file);
215 			return -1;
216 		}
217 	}
218 	fclose(config_file);
219 	nb_peer_eth_addrs = (portid_t) i;
220 	return 0;
221 }
222 #endif
223 
224 /*
225  * Parse the coremask given as argument (hexadecimal string) and set
226  * the global configuration of forwarding cores.
227  */
228 static void
229 parse_fwd_coremask(const char *coremask)
230 {
231 	char *end;
232 	unsigned long long int cm;
233 
234 	/* parse hexadecimal string */
235 	end = NULL;
236 	cm = strtoull(coremask, &end, 16);
237 	if ((coremask[0] == '\0') || (end == NULL) || (*end != '\0'))
238 		rte_exit(EXIT_FAILURE, "Invalid fwd core mask\n");
239 	else if (set_fwd_lcores_mask((uint64_t) cm) < 0)
240 		rte_exit(EXIT_FAILURE, "coremask is not valid\n");
241 }
242 
243 /*
244  * Parse the coremask given as argument (hexadecimal string) and set
245  * the global configuration of forwarding cores.
246  */
247 static void
248 parse_fwd_portmask(const char *portmask)
249 {
250 	char *end;
251 	unsigned long long int pm;
252 
253 	/* parse hexadecimal string */
254 	end = NULL;
255 	pm = strtoull(portmask, &end, 16);
256 	if ((portmask[0] == '\0') || (end == NULL) || (*end != '\0'))
257 		rte_exit(EXIT_FAILURE, "Invalid fwd port mask\n");
258 	else
259 		set_fwd_ports_mask((uint64_t) pm);
260 }
261 
262 
263 static int
264 parse_queue_stats_mapping_config(const char *q_arg, int is_rx)
265 {
266 	char s[256];
267 	const char *p, *p0 = q_arg;
268 	char *end;
269 	enum fieldnames {
270 		FLD_PORT = 0,
271 		FLD_QUEUE,
272 		FLD_STATS_COUNTER,
273 		_NUM_FLD
274 	};
275 	unsigned long int_fld[_NUM_FLD];
276 	char *str_fld[_NUM_FLD];
277 	int i;
278 	unsigned size;
279 
280 	/* reset from value set at definition */
281 	is_rx ? (nb_rx_queue_stats_mappings = 0) : (nb_tx_queue_stats_mappings = 0);
282 
283 	while ((p = strchr(p0,'(')) != NULL) {
284 		++p;
285 		if((p0 = strchr(p,')')) == NULL)
286 			return -1;
287 
288 		size = p0 - p;
289 		if(size >= sizeof(s))
290 			return -1;
291 
292 		snprintf(s, sizeof(s), "%.*s", size, p);
293 		if (rte_strsplit(s, sizeof(s), str_fld, _NUM_FLD, ',') != _NUM_FLD)
294 			return -1;
295 		for (i = 0; i < _NUM_FLD; i++){
296 			errno = 0;
297 			int_fld[i] = strtoul(str_fld[i], &end, 0);
298 			if (errno != 0 || end == str_fld[i] || int_fld[i] > 255)
299 				return -1;
300 		}
301 		/* Check mapping field is in correct range (0..RTE_ETHDEV_QUEUE_STAT_CNTRS-1) */
302 		if (int_fld[FLD_STATS_COUNTER] >= RTE_ETHDEV_QUEUE_STAT_CNTRS) {
303 			printf("Stats counter not in the correct range 0..%d\n",
304 					RTE_ETHDEV_QUEUE_STAT_CNTRS - 1);
305 			return -1;
306 		}
307 
308 		if (!is_rx) {
309 			if ((nb_tx_queue_stats_mappings >=
310 						MAX_TX_QUEUE_STATS_MAPPINGS)) {
311 				printf("exceeded max number of TX queue "
312 						"statistics mappings: %hu\n",
313 						nb_tx_queue_stats_mappings);
314 				return -1;
315 			}
316 			tx_queue_stats_mappings_array[nb_tx_queue_stats_mappings].port_id =
317 				(uint8_t)int_fld[FLD_PORT];
318 			tx_queue_stats_mappings_array[nb_tx_queue_stats_mappings].queue_id =
319 				(uint8_t)int_fld[FLD_QUEUE];
320 			tx_queue_stats_mappings_array[nb_tx_queue_stats_mappings].stats_counter_id =
321 				(uint8_t)int_fld[FLD_STATS_COUNTER];
322 			++nb_tx_queue_stats_mappings;
323 		}
324 		else {
325 			if ((nb_rx_queue_stats_mappings >=
326 						MAX_RX_QUEUE_STATS_MAPPINGS)) {
327 				printf("exceeded max number of RX queue "
328 						"statistics mappings: %hu\n",
329 						nb_rx_queue_stats_mappings);
330 				return -1;
331 			}
332 			rx_queue_stats_mappings_array[nb_rx_queue_stats_mappings].port_id =
333 				(uint8_t)int_fld[FLD_PORT];
334 			rx_queue_stats_mappings_array[nb_rx_queue_stats_mappings].queue_id =
335 				(uint8_t)int_fld[FLD_QUEUE];
336 			rx_queue_stats_mappings_array[nb_rx_queue_stats_mappings].stats_counter_id =
337 				(uint8_t)int_fld[FLD_STATS_COUNTER];
338 			++nb_rx_queue_stats_mappings;
339 		}
340 
341 	}
342 /* Reassign the rx/tx_queue_stats_mappings pointer to point to this newly populated array rather */
343 /* than to the default array (that was set at its definition) */
344 	is_rx ? (rx_queue_stats_mappings = rx_queue_stats_mappings_array) :
345 		(tx_queue_stats_mappings = tx_queue_stats_mappings_array);
346 	return 0;
347 }
348 
349 static void
350 print_invalid_socket_id_error(void)
351 {
352 	unsigned int i = 0;
353 
354 	printf("Invalid socket id, options are: ");
355 	for (i = 0; i < num_sockets; i++) {
356 		printf("%u%s", socket_ids[i],
357 		      (i == num_sockets - 1) ? "\n" : ",");
358 	}
359 }
360 
361 static int
362 parse_portnuma_config(const char *q_arg)
363 {
364 	char s[256];
365 	const char *p, *p0 = q_arg;
366 	char *end;
367 	uint8_t i, socket_id;
368 	portid_t port_id;
369 	unsigned size;
370 	enum fieldnames {
371 		FLD_PORT = 0,
372 		FLD_SOCKET,
373 		_NUM_FLD
374 	};
375 	unsigned long int_fld[_NUM_FLD];
376 	char *str_fld[_NUM_FLD];
377 	portid_t pid;
378 
379 	/* reset from value set at definition */
380 	while ((p = strchr(p0,'(')) != NULL) {
381 		++p;
382 		if((p0 = strchr(p,')')) == NULL)
383 			return -1;
384 
385 		size = p0 - p;
386 		if(size >= sizeof(s))
387 			return -1;
388 
389 		snprintf(s, sizeof(s), "%.*s", size, p);
390 		if (rte_strsplit(s, sizeof(s), str_fld, _NUM_FLD, ',') != _NUM_FLD)
391 			return -1;
392 		for (i = 0; i < _NUM_FLD; i++) {
393 			errno = 0;
394 			int_fld[i] = strtoul(str_fld[i], &end, 0);
395 			if (errno != 0 || end == str_fld[i] || int_fld[i] > 255)
396 				return -1;
397 		}
398 		port_id = (portid_t)int_fld[FLD_PORT];
399 		if (port_id_is_invalid(port_id, ENABLED_WARN) ||
400 			port_id == (portid_t)RTE_PORT_ALL) {
401 			printf("Valid port range is [0");
402 			RTE_ETH_FOREACH_DEV(pid)
403 				printf(", %d", pid);
404 			printf("]\n");
405 			return -1;
406 		}
407 		socket_id = (uint8_t)int_fld[FLD_SOCKET];
408 		if (new_socket_id(socket_id)) {
409 			print_invalid_socket_id_error();
410 			return -1;
411 		}
412 		port_numa[port_id] = socket_id;
413 	}
414 
415 	return 0;
416 }
417 
418 static int
419 parse_ringnuma_config(const char *q_arg)
420 {
421 	char s[256];
422 	const char *p, *p0 = q_arg;
423 	char *end;
424 	uint8_t i, ring_flag, socket_id;
425 	portid_t port_id;
426 	unsigned size;
427 	enum fieldnames {
428 		FLD_PORT = 0,
429 		FLD_FLAG,
430 		FLD_SOCKET,
431 		_NUM_FLD
432 	};
433 	unsigned long int_fld[_NUM_FLD];
434 	char *str_fld[_NUM_FLD];
435 	portid_t pid;
436 	#define RX_RING_ONLY 0x1
437 	#define TX_RING_ONLY 0x2
438 	#define RXTX_RING    0x3
439 
440 	/* reset from value set at definition */
441 	while ((p = strchr(p0,'(')) != NULL) {
442 		++p;
443 		if((p0 = strchr(p,')')) == NULL)
444 			return -1;
445 
446 		size = p0 - p;
447 		if(size >= sizeof(s))
448 			return -1;
449 
450 		snprintf(s, sizeof(s), "%.*s", size, p);
451 		if (rte_strsplit(s, sizeof(s), str_fld, _NUM_FLD, ',') != _NUM_FLD)
452 			return -1;
453 		for (i = 0; i < _NUM_FLD; i++) {
454 			errno = 0;
455 			int_fld[i] = strtoul(str_fld[i], &end, 0);
456 			if (errno != 0 || end == str_fld[i] || int_fld[i] > 255)
457 				return -1;
458 		}
459 		port_id = (portid_t)int_fld[FLD_PORT];
460 		if (port_id_is_invalid(port_id, ENABLED_WARN) ||
461 			port_id == (portid_t)RTE_PORT_ALL) {
462 			printf("Valid port range is [0");
463 			RTE_ETH_FOREACH_DEV(pid)
464 				printf(", %d", pid);
465 			printf("]\n");
466 			return -1;
467 		}
468 		socket_id = (uint8_t)int_fld[FLD_SOCKET];
469 		if (new_socket_id(socket_id)) {
470 			print_invalid_socket_id_error();
471 			return -1;
472 		}
473 		ring_flag = (uint8_t)int_fld[FLD_FLAG];
474 		if ((ring_flag < RX_RING_ONLY) || (ring_flag > RXTX_RING)) {
475 			printf("Invalid ring-flag=%d config for port =%d\n",
476 				ring_flag,port_id);
477 			return -1;
478 		}
479 
480 		switch (ring_flag & RXTX_RING) {
481 		case RX_RING_ONLY:
482 			rxring_numa[port_id] = socket_id;
483 			break;
484 		case TX_RING_ONLY:
485 			txring_numa[port_id] = socket_id;
486 			break;
487 		case RXTX_RING:
488 			rxring_numa[port_id] = socket_id;
489 			txring_numa[port_id] = socket_id;
490 			break;
491 		default:
492 			printf("Invalid ring-flag=%d config for port=%d\n",
493 				ring_flag,port_id);
494 			break;
495 		}
496 	}
497 
498 	return 0;
499 }
500 
501 static int
502 parse_event_printing_config(const char *optarg, int enable)
503 {
504 	uint32_t mask = 0;
505 
506 	if (!strcmp(optarg, "unknown"))
507 		mask = UINT32_C(1) << RTE_ETH_EVENT_UNKNOWN;
508 	else if (!strcmp(optarg, "intr_lsc"))
509 		mask = UINT32_C(1) << RTE_ETH_EVENT_INTR_LSC;
510 	else if (!strcmp(optarg, "queue_state"))
511 		mask = UINT32_C(1) << RTE_ETH_EVENT_QUEUE_STATE;
512 	else if (!strcmp(optarg, "intr_reset"))
513 		mask = UINT32_C(1) << RTE_ETH_EVENT_INTR_RESET;
514 	else if (!strcmp(optarg, "vf_mbox"))
515 		mask = UINT32_C(1) << RTE_ETH_EVENT_VF_MBOX;
516 	else if (!strcmp(optarg, "macsec"))
517 		mask = UINT32_C(1) << RTE_ETH_EVENT_MACSEC;
518 	else if (!strcmp(optarg, "intr_rmv"))
519 		mask = UINT32_C(1) << RTE_ETH_EVENT_INTR_RMV;
520 	else if (!strcmp(optarg, "all"))
521 		mask = ~UINT32_C(0);
522 	else {
523 		fprintf(stderr, "Invalid event: %s\n", optarg);
524 		return -1;
525 	}
526 	if (enable)
527 		event_print_mask |= mask;
528 	else
529 		event_print_mask &= ~mask;
530 	return 0;
531 }
532 
533 void
534 launch_args_parse(int argc, char** argv)
535 {
536 	int n, opt;
537 	char **argvopt;
538 	int opt_idx;
539 	enum { TX, RX };
540 
541 	static struct option lgopts[] = {
542 		{ "help",			0, 0, 0 },
543 #ifdef RTE_LIBRTE_CMDLINE
544 		{ "interactive",		0, 0, 0 },
545 		{ "cmdline-file",		1, 0, 0 },
546 		{ "auto-start",			0, 0, 0 },
547 		{ "eth-peers-configfile",	1, 0, 0 },
548 		{ "eth-peer",			1, 0, 0 },
549 #endif
550 		{ "tx-first",			0, 0, 0 },
551 		{ "stats-period",		1, 0, 0 },
552 		{ "ports",			1, 0, 0 },
553 		{ "nb-cores",			1, 0, 0 },
554 		{ "nb-ports",			1, 0, 0 },
555 		{ "coremask",			1, 0, 0 },
556 		{ "portmask",			1, 0, 0 },
557 		{ "numa",			0, 0, 0 },
558 		{ "no-numa",			0, 0, 0 },
559 		{ "mp-anon",			0, 0, 0 },
560 		{ "port-numa-config",           1, 0, 0 },
561 		{ "ring-numa-config",           1, 0, 0 },
562 		{ "socket-num",			1, 0, 0 },
563 		{ "mbuf-size",			1, 0, 0 },
564 		{ "total-num-mbufs",		1, 0, 0 },
565 		{ "max-pkt-len",		1, 0, 0 },
566 		{ "pkt-filter-mode",            1, 0, 0 },
567 		{ "pkt-filter-report-hash",     1, 0, 0 },
568 		{ "pkt-filter-size",            1, 0, 0 },
569 		{ "pkt-filter-drop-queue",      1, 0, 0 },
570 #ifdef RTE_LIBRTE_LATENCY_STATS
571 		{ "latencystats",               1, 0, 0 },
572 #endif
573 #ifdef RTE_LIBRTE_BITRATE
574 		{ "bitrate-stats",              1, 0, 0 },
575 #endif
576 		{ "disable-crc-strip",          0, 0, 0 },
577 		{ "enable-lro",                 0, 0, 0 },
578 		{ "enable-rx-cksum",            0, 0, 0 },
579 		{ "enable-rx-timestamp",        0, 0, 0 },
580 		{ "enable-scatter",             0, 0, 0 },
581 		{ "disable-hw-vlan",            0, 0, 0 },
582 		{ "disable-hw-vlan-filter",     0, 0, 0 },
583 		{ "disable-hw-vlan-strip",      0, 0, 0 },
584 		{ "disable-hw-vlan-extend",     0, 0, 0 },
585 		{ "enable-drop-en",            0, 0, 0 },
586 		{ "disable-rss",                0, 0, 0 },
587 		{ "port-topology",              1, 0, 0 },
588 		{ "forward-mode",               1, 0, 0 },
589 		{ "rss-ip",			0, 0, 0 },
590 		{ "rss-udp",			0, 0, 0 },
591 		{ "rxq",			1, 0, 0 },
592 		{ "txq",			1, 0, 0 },
593 		{ "rxd",			1, 0, 0 },
594 		{ "txd",			1, 0, 0 },
595 		{ "burst",			1, 0, 0 },
596 		{ "mbcache",			1, 0, 0 },
597 		{ "txpt",			1, 0, 0 },
598 		{ "txht",			1, 0, 0 },
599 		{ "txwt",			1, 0, 0 },
600 		{ "txfreet",			1, 0, 0 },
601 		{ "txrst",			1, 0, 0 },
602 		{ "txqflags",			1, 0, 0 },
603 		{ "rxpt",			1, 0, 0 },
604 		{ "rxht",			1, 0, 0 },
605 		{ "rxwt",			1, 0, 0 },
606 		{ "rxfreet",                    1, 0, 0 },
607 		{ "tx-queue-stats-mapping",	1, 0, 0 },
608 		{ "rx-queue-stats-mapping",	1, 0, 0 },
609 		{ "no-flush-rx",	0, 0, 0 },
610 		{ "flow-isolate-all",	        0, 0, 0 },
611 		{ "txpkts",			1, 0, 0 },
612 		{ "disable-link-check",		0, 0, 0 },
613 		{ "no-lsc-interrupt",		0, 0, 0 },
614 		{ "no-rmv-interrupt",		0, 0, 0 },
615 		{ "print-event",		1, 0, 0 },
616 		{ "mask-event",			1, 0, 0 },
617 		{ 0, 0, 0, 0 },
618 	};
619 
620 	argvopt = argv;
621 
622 #ifdef RTE_LIBRTE_CMDLINE
623 #define SHORTOPTS "i"
624 #else
625 #define SHORTOPTS ""
626 #endif
627 	while ((opt = getopt_long(argc, argvopt, SHORTOPTS "ah",
628 				 lgopts, &opt_idx)) != EOF) {
629 		switch (opt) {
630 #ifdef RTE_LIBRTE_CMDLINE
631 		case 'i':
632 			printf("Interactive-mode selected\n");
633 			interactive = 1;
634 			break;
635 #endif
636 		case 'a':
637 			printf("Auto-start selected\n");
638 			auto_start = 1;
639 			break;
640 
641 		case 0: /*long options */
642 			if (!strcmp(lgopts[opt_idx].name, "help")) {
643 				usage(argv[0]);
644 				rte_exit(EXIT_SUCCESS, "Displayed help\n");
645 			}
646 #ifdef RTE_LIBRTE_CMDLINE
647 			if (!strcmp(lgopts[opt_idx].name, "interactive")) {
648 				printf("Interactive-mode selected\n");
649 				interactive = 1;
650 			}
651 			if (!strcmp(lgopts[opt_idx].name, "cmdline-file")) {
652 				printf("CLI commands to be read from %s\n",
653 				       optarg);
654 				snprintf(cmdline_filename,
655 					 sizeof(cmdline_filename), "%s",
656 					 optarg);
657 			}
658 			if (!strcmp(lgopts[opt_idx].name, "auto-start")) {
659 				printf("Auto-start selected\n");
660 				auto_start = 1;
661 			}
662 			if (!strcmp(lgopts[opt_idx].name, "tx-first")) {
663 				printf("Ports to start sending a burst of "
664 						"packets first\n");
665 				tx_first = 1;
666 			}
667 			if (!strcmp(lgopts[opt_idx].name, "stats-period")) {
668 				char *end = NULL;
669 				unsigned int n;
670 
671 				n = strtoul(optarg, &end, 10);
672 				if ((optarg[0] == '\0') || (end == NULL) ||
673 						(*end != '\0'))
674 					break;
675 
676 				stats_period = n;
677 				break;
678 			}
679 			if (!strcmp(lgopts[opt_idx].name,
680 				    "eth-peers-configfile")) {
681 				if (init_peer_eth_addrs(optarg) != 0)
682 					rte_exit(EXIT_FAILURE,
683 						 "Cannot open logfile\n");
684 			}
685 			if (!strcmp(lgopts[opt_idx].name, "eth-peer")) {
686 				char *port_end;
687 				uint8_t c, peer_addr[6];
688 
689 				errno = 0;
690 				n = strtoul(optarg, &port_end, 10);
691 				if (errno != 0 || port_end == optarg || *port_end++ != ',')
692 					rte_exit(EXIT_FAILURE,
693 						 "Invalid eth-peer: %s", optarg);
694 				if (n >= RTE_MAX_ETHPORTS)
695 					rte_exit(EXIT_FAILURE,
696 						 "eth-peer: port %d >= RTE_MAX_ETHPORTS(%d)\n",
697 						 n, RTE_MAX_ETHPORTS);
698 
699 				if (cmdline_parse_etheraddr(NULL, port_end,
700 						&peer_addr, sizeof(peer_addr)) < 0)
701 					rte_exit(EXIT_FAILURE,
702 						 "Invalid ethernet address: %s\n",
703 						 port_end);
704 				for (c = 0; c < 6; c++)
705 					peer_eth_addrs[n].addr_bytes[c] =
706 						peer_addr[c];
707 				nb_peer_eth_addrs++;
708 			}
709 #endif
710 			if (!strcmp(lgopts[opt_idx].name, "nb-ports")) {
711 				n = atoi(optarg);
712 				if (n > 0 && n <= nb_ports)
713 					nb_fwd_ports = n;
714 				else
715 					rte_exit(EXIT_FAILURE,
716 						 "Invalid port %d\n", n);
717 			}
718 			if (!strcmp(lgopts[opt_idx].name, "nb-cores")) {
719 				n = atoi(optarg);
720 				if (n > 0 && n <= nb_lcores)
721 					nb_fwd_lcores = (uint8_t) n;
722 				else
723 					rte_exit(EXIT_FAILURE,
724 						 "nb-cores should be > 0 and <= %d\n",
725 						 nb_lcores);
726 			}
727 			if (!strcmp(lgopts[opt_idx].name, "coremask"))
728 				parse_fwd_coremask(optarg);
729 			if (!strcmp(lgopts[opt_idx].name, "portmask"))
730 				parse_fwd_portmask(optarg);
731 			if (!strcmp(lgopts[opt_idx].name, "no-numa"))
732 				numa_support = 0;
733 			if (!strcmp(lgopts[opt_idx].name, "numa"))
734 				numa_support = 1;
735 			if (!strcmp(lgopts[opt_idx].name, "mp-anon")) {
736 				mp_anon = 1;
737 			}
738 			if (!strcmp(lgopts[opt_idx].name, "port-numa-config")) {
739 				if (parse_portnuma_config(optarg))
740 					rte_exit(EXIT_FAILURE,
741 					   "invalid port-numa configuration\n");
742 			}
743 			if (!strcmp(lgopts[opt_idx].name, "ring-numa-config"))
744 				if (parse_ringnuma_config(optarg))
745 					rte_exit(EXIT_FAILURE,
746 					   "invalid ring-numa configuration\n");
747 			if (!strcmp(lgopts[opt_idx].name, "socket-num")) {
748 				n = atoi(optarg);
749 				if (!new_socket_id((uint8_t)n)) {
750 					socket_num = (uint8_t)n;
751 				} else {
752 					print_invalid_socket_id_error();
753 					rte_exit(EXIT_FAILURE,
754 						"Invalid socket id");
755 				}
756 			}
757 			if (!strcmp(lgopts[opt_idx].name, "mbuf-size")) {
758 				n = atoi(optarg);
759 				if (n > 0 && n <= 0xFFFF)
760 					mbuf_data_size = (uint16_t) n;
761 				else
762 					rte_exit(EXIT_FAILURE,
763 						 "mbuf-size should be > 0 and < 65536\n");
764 			}
765 			if (!strcmp(lgopts[opt_idx].name, "total-num-mbufs")) {
766 				n = atoi(optarg);
767 				if (n > 1024)
768 					param_total_num_mbufs = (unsigned)n;
769 				else
770 					rte_exit(EXIT_FAILURE,
771 						 "total-num-mbufs should be > 1024\n");
772 			}
773 			if (!strcmp(lgopts[opt_idx].name, "max-pkt-len")) {
774 				n = atoi(optarg);
775 				if (n >= ETHER_MIN_LEN) {
776 					rx_mode.max_rx_pkt_len = (uint32_t) n;
777 					if (n > ETHER_MAX_LEN)
778 					    rx_mode.jumbo_frame = 1;
779 				} else
780 					rte_exit(EXIT_FAILURE,
781 						 "Invalid max-pkt-len=%d - should be > %d\n",
782 						 n, ETHER_MIN_LEN);
783 			}
784 			if (!strcmp(lgopts[opt_idx].name, "pkt-filter-mode")) {
785 				if (!strcmp(optarg, "signature"))
786 					fdir_conf.mode =
787 						RTE_FDIR_MODE_SIGNATURE;
788 				else if (!strcmp(optarg, "perfect"))
789 					fdir_conf.mode = RTE_FDIR_MODE_PERFECT;
790 				else if (!strcmp(optarg, "perfect-mac-vlan"))
791 					fdir_conf.mode = RTE_FDIR_MODE_PERFECT_MAC_VLAN;
792 				else if (!strcmp(optarg, "perfect-tunnel"))
793 					fdir_conf.mode = RTE_FDIR_MODE_PERFECT_TUNNEL;
794 				else if (!strcmp(optarg, "none"))
795 					fdir_conf.mode = RTE_FDIR_MODE_NONE;
796 				else
797 					rte_exit(EXIT_FAILURE,
798 						 "pkt-mode-invalid %s invalid - must be: "
799 						 "none, signature, perfect, perfect-mac-vlan"
800 						 " or perfect-tunnel\n",
801 						 optarg);
802 			}
803 			if (!strcmp(lgopts[opt_idx].name,
804 				    "pkt-filter-report-hash")) {
805 				if (!strcmp(optarg, "none"))
806 					fdir_conf.status =
807 						RTE_FDIR_NO_REPORT_STATUS;
808 				else if (!strcmp(optarg, "match"))
809 					fdir_conf.status =
810 						RTE_FDIR_REPORT_STATUS;
811 				else if (!strcmp(optarg, "always"))
812 					fdir_conf.status =
813 						RTE_FDIR_REPORT_STATUS_ALWAYS;
814 				else
815 					rte_exit(EXIT_FAILURE,
816 						 "pkt-filter-report-hash %s invalid "
817 						 "- must be: none or match or always\n",
818 						 optarg);
819 			}
820 			if (!strcmp(lgopts[opt_idx].name, "pkt-filter-size")) {
821 				if (!strcmp(optarg, "64K"))
822 					fdir_conf.pballoc =
823 						RTE_FDIR_PBALLOC_64K;
824 				else if (!strcmp(optarg, "128K"))
825 					fdir_conf.pballoc =
826 						RTE_FDIR_PBALLOC_128K;
827 				else if (!strcmp(optarg, "256K"))
828 					fdir_conf.pballoc =
829 						RTE_FDIR_PBALLOC_256K;
830 				else
831 					rte_exit(EXIT_FAILURE, "pkt-filter-size %s invalid -"
832 						 " must be: 64K or 128K or 256K\n",
833 						 optarg);
834 			}
835 			if (!strcmp(lgopts[opt_idx].name,
836 				    "pkt-filter-drop-queue")) {
837 				n = atoi(optarg);
838 				if (n >= 0)
839 					fdir_conf.drop_queue = (uint8_t) n;
840 				else
841 					rte_exit(EXIT_FAILURE,
842 						 "drop queue %d invalid - must"
843 						 "be >= 0 \n", n);
844 			}
845 #ifdef RTE_LIBRTE_LATENCY_STATS
846 			if (!strcmp(lgopts[opt_idx].name,
847 				    "latencystats")) {
848 				n = atoi(optarg);
849 				if (n >= 0) {
850 					latencystats_lcore_id = (lcoreid_t) n;
851 					latencystats_enabled = 1;
852 				} else
853 					rte_exit(EXIT_FAILURE,
854 						 "invalid lcore id %d for latencystats"
855 						 " must be >= 0\n", n);
856 			}
857 #endif
858 #ifdef RTE_LIBRTE_BITRATE
859 			if (!strcmp(lgopts[opt_idx].name, "bitrate-stats")) {
860 				n = atoi(optarg);
861 				if (n >= 0) {
862 					bitrate_lcore_id = (lcoreid_t) n;
863 					bitrate_enabled = 1;
864 				} else
865 					rte_exit(EXIT_FAILURE,
866 						 "invalid lcore id %d for bitrate stats"
867 						 " must be >= 0\n", n);
868 			}
869 #endif
870 			if (!strcmp(lgopts[opt_idx].name, "disable-crc-strip"))
871 				rx_mode.hw_strip_crc = 0;
872 			if (!strcmp(lgopts[opt_idx].name, "enable-lro"))
873 				rx_mode.enable_lro = 1;
874 			if (!strcmp(lgopts[opt_idx].name, "enable-scatter"))
875 				rx_mode.enable_scatter = 1;
876 			if (!strcmp(lgopts[opt_idx].name, "enable-rx-cksum"))
877 				rx_mode.hw_ip_checksum = 1;
878 			if (!strcmp(lgopts[opt_idx].name,
879 					"enable-rx-timestamp"))
880 				rx_mode.hw_timestamp = 1;
881 
882 			if (!strcmp(lgopts[opt_idx].name, "disable-hw-vlan")) {
883 				rx_mode.hw_vlan_filter = 0;
884 				rx_mode.hw_vlan_strip  = 0;
885 				rx_mode.hw_vlan_extend = 0;
886 			}
887 
888 			if (!strcmp(lgopts[opt_idx].name,
889 					"disable-hw-vlan-filter"))
890 				rx_mode.hw_vlan_filter = 0;
891 
892 			if (!strcmp(lgopts[opt_idx].name,
893 					"disable-hw-vlan-strip"))
894 				rx_mode.hw_vlan_strip  = 0;
895 
896 			if (!strcmp(lgopts[opt_idx].name,
897 					"disable-hw-vlan-extend"))
898 				rx_mode.hw_vlan_extend = 0;
899 
900 			if (!strcmp(lgopts[opt_idx].name, "enable-drop-en"))
901 				rx_drop_en = 1;
902 
903 			if (!strcmp(lgopts[opt_idx].name, "disable-rss"))
904 				rss_hf = 0;
905 			if (!strcmp(lgopts[opt_idx].name, "port-topology")) {
906 				if (!strcmp(optarg, "paired"))
907 					port_topology = PORT_TOPOLOGY_PAIRED;
908 				else if (!strcmp(optarg, "chained"))
909 					port_topology = PORT_TOPOLOGY_CHAINED;
910 				else if (!strcmp(optarg, "loop"))
911 					port_topology = PORT_TOPOLOGY_LOOP;
912 				else
913 					rte_exit(EXIT_FAILURE, "port-topology %s invalid -"
914 						 " must be: paired, chained or loop\n",
915 						 optarg);
916 			}
917 			if (!strcmp(lgopts[opt_idx].name, "forward-mode"))
918 				set_pkt_forwarding_mode(optarg);
919 			if (!strcmp(lgopts[opt_idx].name, "rss-ip"))
920 				rss_hf = ETH_RSS_IP;
921 			if (!strcmp(lgopts[opt_idx].name, "rss-udp"))
922 				rss_hf = ETH_RSS_UDP;
923 			if (!strcmp(lgopts[opt_idx].name, "rxq")) {
924 				n = atoi(optarg);
925 				if (n >= 0 && n <= (int) MAX_QUEUE_ID)
926 					nb_rxq = (queueid_t) n;
927 				else
928 					rte_exit(EXIT_FAILURE, "rxq %d invalid - must be"
929 						  " >= 0 && <= %d\n", n,
930 						  (int) MAX_QUEUE_ID);
931 			}
932 			if (!strcmp(lgopts[opt_idx].name, "txq")) {
933 				n = atoi(optarg);
934 				if (n >= 0 && n <= (int) MAX_QUEUE_ID)
935 					nb_txq = (queueid_t) n;
936 				else
937 					rte_exit(EXIT_FAILURE, "txq %d invalid - must be"
938 						  " >= 0 && <= %d\n", n,
939 						  (int) MAX_QUEUE_ID);
940 			}
941 			if (!nb_rxq && !nb_txq) {
942 				rte_exit(EXIT_FAILURE, "Either rx or tx queues should "
943 						"be non-zero\n");
944 			}
945 			if (!strcmp(lgopts[opt_idx].name, "burst")) {
946 				n = atoi(optarg);
947 				if ((n >= 1) && (n <= MAX_PKT_BURST))
948 					nb_pkt_per_burst = (uint16_t) n;
949 				else
950 					rte_exit(EXIT_FAILURE,
951 						 "burst must >= 1 and <= %d]",
952 						 MAX_PKT_BURST);
953 			}
954 			if (!strcmp(lgopts[opt_idx].name, "mbcache")) {
955 				n = atoi(optarg);
956 				if ((n >= 0) &&
957 				    (n <= RTE_MEMPOOL_CACHE_MAX_SIZE))
958 					mb_mempool_cache = (uint16_t) n;
959 				else
960 					rte_exit(EXIT_FAILURE,
961 						 "mbcache must be >= 0 and <= %d\n",
962 						 RTE_MEMPOOL_CACHE_MAX_SIZE);
963 			}
964 			if (!strcmp(lgopts[opt_idx].name, "txfreet")) {
965 				n = atoi(optarg);
966 				if (n >= 0)
967 					tx_free_thresh = (int16_t)n;
968 				else
969 					rte_exit(EXIT_FAILURE, "txfreet must be >= 0\n");
970 			}
971 			if (!strcmp(lgopts[opt_idx].name, "txrst")) {
972 				n = atoi(optarg);
973 				if (n >= 0)
974 					tx_rs_thresh = (int16_t)n;
975 				else
976 					rte_exit(EXIT_FAILURE, "txrst must be >= 0\n");
977 			}
978 			if (!strcmp(lgopts[opt_idx].name, "txqflags")) {
979 				char *end = NULL;
980 				n = strtoul(optarg, &end, 16);
981 				if (n >= 0)
982 					txq_flags = (int32_t)n;
983 				else
984 					rte_exit(EXIT_FAILURE,
985 						 "txqflags must be >= 0\n");
986 			}
987 			if (!strcmp(lgopts[opt_idx].name, "rxd")) {
988 				n = atoi(optarg);
989 				if (n > 0) {
990 					if (rx_free_thresh >= n)
991 						rte_exit(EXIT_FAILURE,
992 							 "rxd must be > "
993 							 "rx_free_thresh(%d)\n",
994 							 (int)rx_free_thresh);
995 					else
996 						nb_rxd = (uint16_t) n;
997 				} else
998 					rte_exit(EXIT_FAILURE,
999 						 "rxd(%d) invalid - must be > 0\n",
1000 						 n);
1001 			}
1002 			if (!strcmp(lgopts[opt_idx].name, "txd")) {
1003 				n = atoi(optarg);
1004 				if (n > 0)
1005 					nb_txd = (uint16_t) n;
1006 				else
1007 					rte_exit(EXIT_FAILURE, "txd must be in > 0\n");
1008 			}
1009 			if (!strcmp(lgopts[opt_idx].name, "txpt")) {
1010 				n = atoi(optarg);
1011 				if (n >= 0)
1012 					tx_pthresh = (int8_t)n;
1013 				else
1014 					rte_exit(EXIT_FAILURE, "txpt must be >= 0\n");
1015 			}
1016 			if (!strcmp(lgopts[opt_idx].name, "txht")) {
1017 				n = atoi(optarg);
1018 				if (n >= 0)
1019 					tx_hthresh = (int8_t)n;
1020 				else
1021 					rte_exit(EXIT_FAILURE, "txht must be >= 0\n");
1022 			}
1023 			if (!strcmp(lgopts[opt_idx].name, "txwt")) {
1024 				n = atoi(optarg);
1025 				if (n >= 0)
1026 					tx_wthresh = (int8_t)n;
1027 				else
1028 					rte_exit(EXIT_FAILURE, "txwt must be >= 0\n");
1029 			}
1030 			if (!strcmp(lgopts[opt_idx].name, "rxpt")) {
1031 				n = atoi(optarg);
1032 				if (n >= 0)
1033 					rx_pthresh = (int8_t)n;
1034 				else
1035 					rte_exit(EXIT_FAILURE, "rxpt must be >= 0\n");
1036 			}
1037 			if (!strcmp(lgopts[opt_idx].name, "rxht")) {
1038 				n = atoi(optarg);
1039 				if (n >= 0)
1040 					rx_hthresh = (int8_t)n;
1041 				else
1042 					rte_exit(EXIT_FAILURE, "rxht must be >= 0\n");
1043 			}
1044 			if (!strcmp(lgopts[opt_idx].name, "rxwt")) {
1045 				n = atoi(optarg);
1046 				if (n >= 0)
1047 					rx_wthresh = (int8_t)n;
1048 				else
1049 					rte_exit(EXIT_FAILURE, "rxwt must be >= 0\n");
1050 			}
1051 			if (!strcmp(lgopts[opt_idx].name, "rxfreet")) {
1052 				n = atoi(optarg);
1053 				if (n >= 0)
1054 					rx_free_thresh = (int16_t)n;
1055 				else
1056 					rte_exit(EXIT_FAILURE, "rxfreet must be >= 0\n");
1057 			}
1058 			if (!strcmp(lgopts[opt_idx].name, "tx-queue-stats-mapping")) {
1059 				if (parse_queue_stats_mapping_config(optarg, TX)) {
1060 					rte_exit(EXIT_FAILURE,
1061 						 "invalid TX queue statistics mapping config entered\n");
1062 				}
1063 			}
1064 			if (!strcmp(lgopts[opt_idx].name, "rx-queue-stats-mapping")) {
1065 				if (parse_queue_stats_mapping_config(optarg, RX)) {
1066 					rte_exit(EXIT_FAILURE,
1067 						 "invalid RX queue statistics mapping config entered\n");
1068 				}
1069 			}
1070 			if (!strcmp(lgopts[opt_idx].name, "txpkts")) {
1071 				unsigned seg_lengths[RTE_MAX_SEGS_PER_PKT];
1072 				unsigned int nb_segs;
1073 
1074 				nb_segs = parse_item_list(optarg, "txpkt segments",
1075 						RTE_MAX_SEGS_PER_PKT, seg_lengths, 0);
1076 				if (nb_segs > 0)
1077 					set_tx_pkt_segments(seg_lengths, nb_segs);
1078 				else
1079 					rte_exit(EXIT_FAILURE, "bad txpkts\n");
1080 			}
1081 			if (!strcmp(lgopts[opt_idx].name, "no-flush-rx"))
1082 				no_flush_rx = 1;
1083 			if (!strcmp(lgopts[opt_idx].name, "disable-link-check"))
1084 				no_link_check = 1;
1085 			if (!strcmp(lgopts[opt_idx].name, "no-lsc-interrupt"))
1086 				lsc_interrupt = 0;
1087 			if (!strcmp(lgopts[opt_idx].name, "no-rmv-interrupt"))
1088 				rmv_interrupt = 0;
1089 			if (!strcmp(lgopts[opt_idx].name, "flow-isolate-all"))
1090 				flow_isolate_all = 1;
1091 			if (!strcmp(lgopts[opt_idx].name, "print-event"))
1092 				if (parse_event_printing_config(optarg, 1)) {
1093 					rte_exit(EXIT_FAILURE,
1094 						 "invalid print-event argument\n");
1095 				}
1096 			if (!strcmp(lgopts[opt_idx].name, "mask-event"))
1097 				if (parse_event_printing_config(optarg, 0)) {
1098 					rte_exit(EXIT_FAILURE,
1099 						 "invalid mask-event argument\n");
1100 				}
1101 
1102 			break;
1103 		case 'h':
1104 			usage(argv[0]);
1105 			rte_exit(EXIT_SUCCESS, "Displayed help\n");
1106 			break;
1107 		default:
1108 			usage(argv[0]);
1109 			rte_exit(EXIT_FAILURE,
1110 				 "Command line is incomplete or incorrect\n");
1111 			break;
1112 		}
1113 	}
1114 }
1115