]> git.proxmox.com Git - mirror_ovs.git/blob - utilities/ovs-ofctl.c
Merge 'next' into 'master'.
[mirror_ovs.git] / utilities / ovs-ofctl.c
1 /*
2 * Copyright (c) 2008, 2009, 2010, 2011 Nicira Networks.
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at:
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #include <config.h>
18 #include <errno.h>
19 #include <getopt.h>
20 #include <inttypes.h>
21 #include <sys/socket.h>
22 #include <net/if.h>
23 #include <signal.h>
24 #include <stdlib.h>
25 #include <string.h>
26 #include <unistd.h>
27 #include <sys/stat.h>
28 #include <sys/time.h>
29
30 #include "byte-order.h"
31 #include "classifier.h"
32 #include "command-line.h"
33 #include "compiler.h"
34 #include "dirs.h"
35 #include "dynamic-string.h"
36 #include "netlink.h"
37 #include "nx-match.h"
38 #include "odp-util.h"
39 #include "ofp-parse.h"
40 #include "ofp-print.h"
41 #include "ofp-util.h"
42 #include "ofpbuf.h"
43 #include "ofproto/ofproto.h"
44 #include "openflow/nicira-ext.h"
45 #include "openflow/openflow.h"
46 #include "random.h"
47 #include "stream-ssl.h"
48 #include "timeval.h"
49 #include "util.h"
50 #include "vconn.h"
51 #include "vlog.h"
52
53 VLOG_DEFINE_THIS_MODULE(ofctl);
54
55 /* --strict: Use strict matching for flow mod commands? */
56 static bool strict;
57
58 /* -F, --flow-format: Flow format to use. Either one of NXFF_* to force a
59 * particular flow format or -1 to let ovs-ofctl choose intelligently. */
60 static int preferred_flow_format = -1;
61
62 /* -m, --more: Additional verbosity for ofp-print functions. */
63 static int verbosity;
64
65 static const struct command all_commands[];
66
67 static void usage(void) NO_RETURN;
68 static void parse_options(int argc, char *argv[]);
69
70 int
71 main(int argc, char *argv[])
72 {
73 set_program_name(argv[0]);
74 parse_options(argc, argv);
75 signal(SIGPIPE, SIG_IGN);
76 run_command(argc - optind, argv + optind, all_commands);
77 return 0;
78 }
79
80 static void
81 parse_options(int argc, char *argv[])
82 {
83 enum {
84 OPT_STRICT = UCHAR_MAX + 1,
85 VLOG_OPTION_ENUMS
86 };
87 static struct option long_options[] = {
88 {"timeout", required_argument, NULL, 't'},
89 {"strict", no_argument, NULL, OPT_STRICT},
90 {"flow-format", required_argument, NULL, 'F'},
91 {"more", no_argument, NULL, 'm'},
92 {"help", no_argument, NULL, 'h'},
93 {"version", no_argument, NULL, 'V'},
94 VLOG_LONG_OPTIONS,
95 STREAM_SSL_LONG_OPTIONS,
96 {NULL, 0, NULL, 0},
97 };
98 char *short_options = long_options_to_short_options(long_options);
99
100 for (;;) {
101 unsigned long int timeout;
102 int c;
103
104 c = getopt_long(argc, argv, short_options, long_options, NULL);
105 if (c == -1) {
106 break;
107 }
108
109 switch (c) {
110 case 't':
111 timeout = strtoul(optarg, NULL, 10);
112 if (timeout <= 0) {
113 ovs_fatal(0, "value %s on -t or --timeout is not at least 1",
114 optarg);
115 } else {
116 time_alarm(timeout);
117 }
118 break;
119
120 case 'F':
121 preferred_flow_format = ofputil_flow_format_from_string(optarg);
122 if (preferred_flow_format < 0) {
123 ovs_fatal(0, "unknown flow format `%s'", optarg);
124 }
125 break;
126
127 case 'm':
128 verbosity++;
129 break;
130
131 case 'h':
132 usage();
133
134 case 'V':
135 OVS_PRINT_VERSION(OFP_VERSION, OFP_VERSION);
136 exit(EXIT_SUCCESS);
137
138 case OPT_STRICT:
139 strict = true;
140 break;
141
142 VLOG_OPTION_HANDLERS
143 STREAM_SSL_OPTION_HANDLERS
144
145 case '?':
146 exit(EXIT_FAILURE);
147
148 default:
149 abort();
150 }
151 }
152 free(short_options);
153 }
154
155 static void
156 usage(void)
157 {
158 printf("%s: OpenFlow switch management utility\n"
159 "usage: %s [OPTIONS] COMMAND [ARG...]\n"
160 "\nFor OpenFlow switches:\n"
161 " show SWITCH show OpenFlow information\n"
162 " dump-desc SWITCH print switch description\n"
163 " dump-tables SWITCH print table stats\n"
164 " mod-port SWITCH IFACE ACT modify port behavior\n"
165 " dump-ports SWITCH [PORT] print port statistics\n"
166 " dump-flows SWITCH print all flow entries\n"
167 " dump-flows SWITCH FLOW print matching FLOWs\n"
168 " dump-aggregate SWITCH print aggregate flow statistics\n"
169 " dump-aggregate SWITCH FLOW print aggregate stats for FLOWs\n"
170 " queue-stats SWITCH [PORT [QUEUE]] dump queue stats\n"
171 " add-flow SWITCH FLOW add flow described by FLOW\n"
172 " add-flows SWITCH FILE add flows from FILE\n"
173 " mod-flows SWITCH FLOW modify actions of matching FLOWs\n"
174 " del-flows SWITCH [FLOW] delete matching FLOWs\n"
175 " monitor SWITCH [MISSLEN] print packets received from SWITCH\n"
176 "\nFor OpenFlow switches and controllers:\n"
177 " probe VCONN probe whether VCONN is up\n"
178 " ping VCONN [N] latency of N-byte echos\n"
179 " benchmark VCONN N COUNT bandwidth of COUNT N-byte echos\n"
180 "where each SWITCH is an active OpenFlow connection method.\n",
181 program_name, program_name);
182 vconn_usage(true, false, false);
183 vlog_usage();
184 printf("\nOther options:\n"
185 " --strict use strict match for flow commands\n"
186 " -F, --flow-format=FORMAT force particular flow format\n"
187 " -m, --more be more verbose printing OpenFlow\n"
188 " -t, --timeout=SECS give up after SECS seconds\n"
189 " -h, --help display this help message\n"
190 " -V, --version display version information\n");
191 exit(EXIT_SUCCESS);
192 }
193
194 static void run(int retval, const char *message, ...)
195 PRINTF_FORMAT(2, 3);
196
197 static void run(int retval, const char *message, ...)
198 {
199 if (retval) {
200 va_list args;
201
202 va_start(args, message);
203 ovs_fatal_valist(retval, message, args);
204 }
205 }
206 \f
207 /* Generic commands. */
208
209 static void
210 open_vconn_socket(const char *name, struct vconn **vconnp)
211 {
212 char *vconn_name = xasprintf("unix:%s", name);
213 VLOG_DBG("connecting to %s", vconn_name);
214 run(vconn_open_block(vconn_name, OFP_VERSION, vconnp),
215 "connecting to %s", vconn_name);
216 free(vconn_name);
217 }
218
219 static void
220 open_vconn__(const char *name, const char *default_suffix,
221 struct vconn **vconnp)
222 {
223 char *datapath_name, *datapath_type, *socket_name;
224 char *bridge_path;
225 struct stat s;
226
227 bridge_path = xasprintf("%s/%s.%s", ovs_rundir(), name, default_suffix);
228
229 ofproto_parse_name(name, &datapath_name, &datapath_type);
230 socket_name = xasprintf("%s/%s.%s",
231 ovs_rundir(), datapath_name, default_suffix);
232 free(datapath_name);
233 free(datapath_type);
234
235 if (strstr(name, ":")) {
236 run(vconn_open_block(name, OFP_VERSION, vconnp),
237 "connecting to %s", name);
238 } else if (!stat(name, &s) && S_ISSOCK(s.st_mode)) {
239 open_vconn_socket(name, vconnp);
240 } else if (!stat(bridge_path, &s) && S_ISSOCK(s.st_mode)) {
241 open_vconn_socket(bridge_path, vconnp);
242 } else if (!stat(socket_name, &s)) {
243 if (!S_ISSOCK(s.st_mode)) {
244 ovs_fatal(0, "cannot connect to %s: %s is not a socket",
245 name, socket_name);
246 }
247 open_vconn_socket(socket_name, vconnp);
248 } else {
249 ovs_fatal(0, "%s is not a valid connection method", name);
250 }
251
252 free(bridge_path);
253 free(socket_name);
254 }
255
256 static void
257 open_vconn(const char *name, struct vconn **vconnp)
258 {
259 return open_vconn__(name, "mgmt", vconnp);
260 }
261
262 static void *
263 alloc_stats_request(size_t body_len, uint16_t type, struct ofpbuf **bufferp)
264 {
265 struct ofp_stats_request *rq;
266 rq = make_openflow((offsetof(struct ofp_stats_request, body)
267 + body_len), OFPT_STATS_REQUEST, bufferp);
268 rq->type = htons(type);
269 rq->flags = htons(0);
270 return rq->body;
271 }
272
273 static void
274 send_openflow_buffer(struct vconn *vconn, struct ofpbuf *buffer)
275 {
276 update_openflow_length(buffer);
277 run(vconn_send_block(vconn, buffer), "failed to send packet to switch");
278 }
279
280 static void
281 dump_transaction(const char *vconn_name, struct ofpbuf *request)
282 {
283 struct vconn *vconn;
284 struct ofpbuf *reply;
285
286 update_openflow_length(request);
287 open_vconn(vconn_name, &vconn);
288 run(vconn_transact(vconn, request, &reply), "talking to %s", vconn_name);
289 ofp_print(stdout, reply->data, reply->size, verbosity + 1);
290 vconn_close(vconn);
291 }
292
293 static void
294 dump_trivial_transaction(const char *vconn_name, uint8_t request_type)
295 {
296 struct ofpbuf *request;
297 make_openflow(sizeof(struct ofp_header), request_type, &request);
298 dump_transaction(vconn_name, request);
299 }
300
301 static void
302 dump_stats_transaction(const char *vconn_name, struct ofpbuf *request)
303 {
304 ovs_be32 send_xid = ((struct ofp_header *) request->data)->xid;
305 struct vconn *vconn;
306 bool done = false;
307
308 open_vconn(vconn_name, &vconn);
309 send_openflow_buffer(vconn, request);
310 while (!done) {
311 ovs_be32 recv_xid;
312 struct ofpbuf *reply;
313
314 run(vconn_recv_block(vconn, &reply), "OpenFlow packet receive failed");
315 recv_xid = ((struct ofp_header *) reply->data)->xid;
316 if (send_xid == recv_xid) {
317 struct ofp_stats_reply *osr;
318
319 ofp_print(stdout, reply->data, reply->size, verbosity + 1);
320
321 osr = ofpbuf_at(reply, 0, sizeof *osr);
322 done = !osr || !(ntohs(osr->flags) & OFPSF_REPLY_MORE);
323 } else {
324 VLOG_DBG("received reply with xid %08"PRIx32" "
325 "!= expected %08"PRIx32, recv_xid, send_xid);
326 }
327 ofpbuf_delete(reply);
328 }
329 vconn_close(vconn);
330 }
331
332 static void
333 dump_trivial_stats_transaction(const char *vconn_name, uint8_t stats_type)
334 {
335 struct ofpbuf *request;
336 alloc_stats_request(0, stats_type, &request);
337 dump_stats_transaction(vconn_name, request);
338 }
339
340 /* Sends 'request', which should be a request that only has a reply if an error
341 * occurs, and waits for it to succeed or fail. If an error does occur, prints
342 * it and exits with an error. */
343 static void
344 transact_multiple_noreply(struct vconn *vconn, struct list *requests)
345 {
346 struct ofpbuf *request, *reply;
347
348 LIST_FOR_EACH (request, list_node, requests) {
349 update_openflow_length(request);
350 }
351
352 run(vconn_transact_multiple_noreply(vconn, requests, &reply),
353 "talking to %s", vconn_get_name(vconn));
354 if (reply) {
355 ofp_print(stderr, reply->data, reply->size, verbosity + 2);
356 exit(1);
357 }
358 ofpbuf_delete(reply);
359 }
360
361 /* Sends 'request', which should be a request that only has a reply if an error
362 * occurs, and waits for it to succeed or fail. If an error does occur, prints
363 * it and exits with an error. */
364 static void
365 transact_noreply(struct vconn *vconn, struct ofpbuf *request)
366 {
367 struct list requests;
368
369 list_init(&requests);
370 list_push_back(&requests, &request->list_node);
371 transact_multiple_noreply(vconn, &requests);
372 }
373
374 static void
375 do_show(int argc OVS_UNUSED, char *argv[])
376 {
377 dump_trivial_transaction(argv[1], OFPT_FEATURES_REQUEST);
378 dump_trivial_transaction(argv[1], OFPT_GET_CONFIG_REQUEST);
379 }
380
381 static void
382 do_dump_desc(int argc OVS_UNUSED, char *argv[])
383 {
384 dump_trivial_stats_transaction(argv[1], OFPST_DESC);
385 }
386
387 static void
388 do_dump_tables(int argc OVS_UNUSED, char *argv[])
389 {
390 dump_trivial_stats_transaction(argv[1], OFPST_TABLE);
391 }
392
393 /* Opens a connection to 'vconn_name', fetches the ofp_phy_port structure for
394 * 'port_name' (which may be a port name or number), and copies it into
395 * '*oppp'. */
396 static void
397 fetch_ofp_phy_port(const char *vconn_name, const char *port_name,
398 struct ofp_phy_port *oppp)
399 {
400 struct ofpbuf *request, *reply;
401 struct ofp_switch_features *osf;
402 unsigned int port_no;
403 struct vconn *vconn;
404 int n_ports;
405 int port_idx;
406
407 /* Try to interpret the argument as a port number. */
408 if (!str_to_uint(port_name, 10, &port_no)) {
409 port_no = UINT_MAX;
410 }
411
412 /* Fetch the switch's ofp_switch_features. */
413 make_openflow(sizeof(struct ofp_header), OFPT_FEATURES_REQUEST, &request);
414 open_vconn(vconn_name, &vconn);
415 run(vconn_transact(vconn, request, &reply), "talking to %s", vconn_name);
416
417 osf = reply->data;
418 if (reply->size < sizeof *osf) {
419 ovs_fatal(0, "%s: received too-short features reply (only %zu bytes)",
420 vconn_name, reply->size);
421 }
422 n_ports = (reply->size - sizeof *osf) / sizeof *osf->ports;
423
424 for (port_idx = 0; port_idx < n_ports; port_idx++) {
425 const struct ofp_phy_port *opp = &osf->ports[port_idx];
426
427 if (port_no != UINT_MAX
428 ? htons(port_no) == opp->port_no
429 : !strncmp(opp->name, port_name, sizeof opp->name)) {
430 *oppp = *opp;
431 ofpbuf_delete(reply);
432 vconn_close(vconn);
433 return;
434 }
435 }
436 ovs_fatal(0, "%s: couldn't find port `%s'", vconn_name, port_name);
437 }
438
439 /* Returns the port number corresponding to 'port_name' (which may be a port
440 * name or number) within the switch 'vconn_name'. */
441 static uint16_t
442 str_to_port_no(const char *vconn_name, const char *port_name)
443 {
444 unsigned int port_no;
445
446 if (str_to_uint(port_name, 10, &port_no)) {
447 return port_no;
448 } else {
449 struct ofp_phy_port opp;
450
451 fetch_ofp_phy_port(vconn_name, port_name, &opp);
452 return ntohs(opp.port_no);
453 }
454 }
455
456 static bool
457 try_set_flow_format(struct vconn *vconn, enum nx_flow_format flow_format)
458 {
459 struct ofpbuf *sff, *reply;
460
461 sff = ofputil_make_set_flow_format(flow_format);
462 run(vconn_transact_noreply(vconn, sff, &reply),
463 "talking to %s", vconn_get_name(vconn));
464 if (reply) {
465 char *s = ofp_to_string(reply->data, reply->size, 2);
466 VLOG_DBG("%s: failed to set flow format %s, controller replied: %s",
467 vconn_get_name(vconn),
468 ofputil_flow_format_to_string(flow_format),
469 s);
470 free(s);
471 ofpbuf_delete(reply);
472 return false;
473 }
474 return true;
475 }
476
477 static void
478 set_flow_format(struct vconn *vconn, enum nx_flow_format flow_format)
479 {
480 struct ofpbuf *sff = ofputil_make_set_flow_format(flow_format);
481 transact_noreply(vconn, sff);
482 VLOG_DBG("%s: using user-specified flow format %s",
483 vconn_get_name(vconn),
484 ofputil_flow_format_to_string(flow_format));
485 }
486
487 static enum nx_flow_format
488 negotiate_highest_flow_format(struct vconn *vconn,
489 enum nx_flow_format min_format)
490 {
491 if (preferred_flow_format != -1) {
492 if (preferred_flow_format < min_format) {
493 ovs_fatal(0, "%s: cannot use requested flow format %s for "
494 "specified flow", vconn_get_name(vconn),
495 ofputil_flow_format_to_string(min_format));
496 }
497
498 set_flow_format(vconn, preferred_flow_format);
499 return preferred_flow_format;
500 } else {
501 enum nx_flow_format flow_format;
502
503 if (try_set_flow_format(vconn, NXFF_NXM)) {
504 flow_format = NXFF_NXM;
505 } else {
506 flow_format = NXFF_OPENFLOW10;
507 }
508
509 if (flow_format < min_format) {
510 ovs_fatal(0, "%s: cannot use switch's most advanced flow format "
511 "%s for specified flow", vconn_get_name(vconn),
512 ofputil_flow_format_to_string(min_format));
513 }
514
515 VLOG_DBG("%s: negotiated flow format %s", vconn_get_name(vconn),
516 ofputil_flow_format_to_string(flow_format));
517 return flow_format;
518 }
519 }
520
521 static void
522 do_dump_flows__(int argc, char *argv[], bool aggregate)
523 {
524 enum nx_flow_format min_flow_format, flow_format;
525 struct flow_stats_request fsr;
526 struct ofpbuf *request;
527 struct vconn *vconn;
528
529 parse_ofp_flow_stats_request_str(&fsr, aggregate, argc > 2 ? argv[2] : "");
530
531 open_vconn(argv[1], &vconn);
532 min_flow_format = ofputil_min_flow_format(&fsr.match);
533 flow_format = negotiate_highest_flow_format(vconn, min_flow_format);
534 request = ofputil_encode_flow_stats_request(&fsr, flow_format);
535 dump_stats_transaction(argv[1], request);
536 vconn_close(vconn);
537 }
538
539 static void
540 do_dump_flows(int argc, char *argv[])
541 {
542 return do_dump_flows__(argc, argv, false);
543 }
544
545 static void
546 do_dump_aggregate(int argc, char *argv[])
547 {
548 return do_dump_flows__(argc, argv, true);
549 }
550
551 static void
552 do_queue_stats(int argc, char *argv[])
553 {
554 struct ofp_queue_stats_request *req;
555 struct ofpbuf *request;
556
557 req = alloc_stats_request(sizeof *req, OFPST_QUEUE, &request);
558
559 if (argc > 2 && argv[2][0] && strcasecmp(argv[2], "all")) {
560 req->port_no = htons(str_to_port_no(argv[1], argv[2]));
561 } else {
562 req->port_no = htons(OFPP_ALL);
563 }
564 if (argc > 3 && argv[3][0] && strcasecmp(argv[3], "all")) {
565 req->queue_id = htonl(atoi(argv[3]));
566 } else {
567 req->queue_id = htonl(OFPQ_ALL);
568 }
569
570 memset(req->pad, 0, sizeof req->pad);
571
572 dump_stats_transaction(argv[1], request);
573 }
574
575 /* Sets up the flow format for a vconn that will be used to modify the flow
576 * table. Returns the flow format used, after possibly adding an OpenFlow
577 * request to 'requests'.
578 *
579 * If 'preferred_flow_format' is -1, returns NXFF_OPENFLOW10 without modifying
580 * 'requests', since NXFF_OPENFLOW10 is the default flow format for any
581 * OpenFlow connection.
582 *
583 * If 'preferred_flow_format' is a specific format, adds a request to set that
584 * format to 'requests' and returns the format. */
585 static enum nx_flow_format
586 set_initial_format_for_flow_mod(struct list *requests)
587 {
588 if (preferred_flow_format < 0) {
589 return NXFF_OPENFLOW10;
590 } else {
591 struct ofpbuf *sff;
592
593 sff = ofputil_make_set_flow_format(preferred_flow_format);
594 list_push_back(requests, &sff->list_node);
595 return preferred_flow_format;
596 }
597 }
598
599 /* Checks that 'flow_format' is acceptable as a flow format after a flow_mod
600 * operation, given the global 'preferred_flow_format'. */
601 static void
602 check_final_format_for_flow_mod(enum nx_flow_format flow_format)
603 {
604 if (preferred_flow_format >= 0 && flow_format > preferred_flow_format) {
605 ovs_fatal(0, "flow cannot be expressed in flow format %s "
606 "(flow format %s or better is required)",
607 ofputil_flow_format_to_string(preferred_flow_format),
608 ofputil_flow_format_to_string(flow_format));
609 }
610 }
611
612 static void
613 do_flow_mod_file__(int argc OVS_UNUSED, char *argv[], uint16_t command)
614 {
615 enum nx_flow_format flow_format;
616 bool flow_mod_table_id;
617 struct list requests;
618 struct vconn *vconn;
619 FILE *file;
620
621 file = !strcmp(argv[2], "-") ? stdin : fopen(argv[2], "r");
622 if (file == NULL) {
623 ovs_fatal(errno, "%s: open", argv[2]);
624 }
625
626 list_init(&requests);
627 flow_format = set_initial_format_for_flow_mod(&requests);
628 flow_mod_table_id = false;
629
630 open_vconn(argv[1], &vconn);
631 while (parse_ofp_flow_mod_file(&requests, &flow_format, &flow_mod_table_id,
632 file, command)) {
633 check_final_format_for_flow_mod(flow_format);
634 transact_multiple_noreply(vconn, &requests);
635 }
636 vconn_close(vconn);
637
638 if (file != stdin) {
639 fclose(file);
640 }
641 }
642
643 static void
644 do_flow_mod__(int argc, char *argv[], uint16_t command)
645 {
646 enum nx_flow_format flow_format;
647 bool flow_mod_table_id;
648 struct list requests;
649 struct vconn *vconn;
650
651 if (argc > 2 && !strcmp(argv[2], "-")) {
652 do_flow_mod_file__(argc, argv, command);
653 return;
654 }
655
656 list_init(&requests);
657 flow_format = set_initial_format_for_flow_mod(&requests);
658 flow_mod_table_id = false;
659
660 parse_ofp_flow_mod_str(&requests, &flow_format, &flow_mod_table_id,
661 argc > 2 ? argv[2] : "", command);
662 check_final_format_for_flow_mod(flow_format);
663
664 open_vconn(argv[1], &vconn);
665 transact_multiple_noreply(vconn, &requests);
666 vconn_close(vconn);
667 }
668
669 static void
670 do_add_flow(int argc, char *argv[])
671 {
672 do_flow_mod__(argc, argv, OFPFC_ADD);
673 }
674
675 static void
676 do_add_flows(int argc, char *argv[])
677 {
678 do_flow_mod_file__(argc, argv, OFPFC_ADD);
679 }
680
681 static void
682 do_mod_flows(int argc, char *argv[])
683 {
684 do_flow_mod__(argc, argv, strict ? OFPFC_MODIFY_STRICT : OFPFC_MODIFY);
685 }
686
687 static void
688 do_del_flows(int argc, char *argv[])
689 {
690 do_flow_mod__(argc, argv, strict ? OFPFC_DELETE_STRICT : OFPFC_DELETE);
691 }
692
693 static void
694 monitor_vconn(struct vconn *vconn)
695 {
696 for (;;) {
697 struct ofpbuf *b;
698 run(vconn_recv_block(vconn, &b), "vconn_recv");
699 ofp_print(stderr, b->data, b->size, verbosity + 2);
700 ofpbuf_delete(b);
701 }
702 }
703
704 static void
705 do_monitor(int argc, char *argv[])
706 {
707 struct vconn *vconn;
708
709 open_vconn(argv[1], &vconn);
710 if (argc > 2) {
711 int miss_send_len = atoi(argv[2]);
712 struct ofp_switch_config *osc;
713 struct ofpbuf *buf;
714
715 osc = make_openflow(sizeof *osc, OFPT_SET_CONFIG, &buf);
716 osc->miss_send_len = htons(miss_send_len);
717 transact_noreply(vconn, buf);
718 }
719 monitor_vconn(vconn);
720 }
721
722 static void
723 do_snoop(int argc OVS_UNUSED, char *argv[])
724 {
725 struct vconn *vconn;
726
727 open_vconn__(argv[1], "snoop", &vconn);
728 monitor_vconn(vconn);
729 }
730
731 static void
732 do_dump_ports(int argc, char *argv[])
733 {
734 struct ofp_port_stats_request *req;
735 struct ofpbuf *request;
736 uint16_t port;
737
738 req = alloc_stats_request(sizeof *req, OFPST_PORT, &request);
739 port = argc > 2 ? str_to_port_no(argv[1], argv[2]) : OFPP_NONE;
740 req->port_no = htons(port);
741 dump_stats_transaction(argv[1], request);
742 }
743
744 static void
745 do_probe(int argc OVS_UNUSED, char *argv[])
746 {
747 struct ofpbuf *request;
748 struct vconn *vconn;
749 struct ofpbuf *reply;
750
751 make_openflow(sizeof(struct ofp_header), OFPT_ECHO_REQUEST, &request);
752 open_vconn(argv[1], &vconn);
753 run(vconn_transact(vconn, request, &reply), "talking to %s", argv[1]);
754 if (reply->size != sizeof(struct ofp_header)) {
755 ovs_fatal(0, "reply does not match request");
756 }
757 ofpbuf_delete(reply);
758 vconn_close(vconn);
759 }
760
761 static void
762 do_mod_port(int argc OVS_UNUSED, char *argv[])
763 {
764 struct ofp_port_mod *opm;
765 struct ofp_phy_port opp;
766 struct ofpbuf *request;
767 struct vconn *vconn;
768
769 fetch_ofp_phy_port(argv[1], argv[2], &opp);
770
771 opm = make_openflow(sizeof(struct ofp_port_mod), OFPT_PORT_MOD, &request);
772 opm->port_no = opp.port_no;
773 memcpy(opm->hw_addr, opp.hw_addr, sizeof opm->hw_addr);
774 opm->config = htonl(0);
775 opm->mask = htonl(0);
776 opm->advertise = htonl(0);
777
778 if (!strcasecmp(argv[3], "up")) {
779 opm->mask |= htonl(OFPPC_PORT_DOWN);
780 } else if (!strcasecmp(argv[3], "down")) {
781 opm->mask |= htonl(OFPPC_PORT_DOWN);
782 opm->config |= htonl(OFPPC_PORT_DOWN);
783 } else if (!strcasecmp(argv[3], "flood")) {
784 opm->mask |= htonl(OFPPC_NO_FLOOD);
785 } else if (!strcasecmp(argv[3], "noflood")) {
786 opm->mask |= htonl(OFPPC_NO_FLOOD);
787 opm->config |= htonl(OFPPC_NO_FLOOD);
788 } else {
789 ovs_fatal(0, "unknown mod-port command '%s'", argv[3]);
790 }
791
792 open_vconn(argv[1], &vconn);
793 transact_noreply(vconn, request);
794 vconn_close(vconn);
795 }
796
797 static void
798 do_ping(int argc, char *argv[])
799 {
800 size_t max_payload = 65535 - sizeof(struct ofp_header);
801 unsigned int payload;
802 struct vconn *vconn;
803 int i;
804
805 payload = argc > 2 ? atoi(argv[2]) : 64;
806 if (payload > max_payload) {
807 ovs_fatal(0, "payload must be between 0 and %zu bytes", max_payload);
808 }
809
810 open_vconn(argv[1], &vconn);
811 for (i = 0; i < 10; i++) {
812 struct timeval start, end;
813 struct ofpbuf *request, *reply;
814 struct ofp_header *rq_hdr, *rpy_hdr;
815
816 rq_hdr = make_openflow(sizeof(struct ofp_header) + payload,
817 OFPT_ECHO_REQUEST, &request);
818 random_bytes(rq_hdr + 1, payload);
819
820 xgettimeofday(&start);
821 run(vconn_transact(vconn, ofpbuf_clone(request), &reply), "transact");
822 xgettimeofday(&end);
823
824 rpy_hdr = reply->data;
825 if (reply->size != request->size
826 || memcmp(rpy_hdr + 1, rq_hdr + 1, payload)
827 || rpy_hdr->xid != rq_hdr->xid
828 || rpy_hdr->type != OFPT_ECHO_REPLY) {
829 printf("Reply does not match request. Request:\n");
830 ofp_print(stdout, request, request->size, verbosity + 2);
831 printf("Reply:\n");
832 ofp_print(stdout, reply, reply->size, verbosity + 2);
833 }
834 printf("%zu bytes from %s: xid=%08"PRIx32" time=%.1f ms\n",
835 reply->size - sizeof *rpy_hdr, argv[1], ntohl(rpy_hdr->xid),
836 (1000*(double)(end.tv_sec - start.tv_sec))
837 + (.001*(end.tv_usec - start.tv_usec)));
838 ofpbuf_delete(request);
839 ofpbuf_delete(reply);
840 }
841 vconn_close(vconn);
842 }
843
844 static void
845 do_benchmark(int argc OVS_UNUSED, char *argv[])
846 {
847 size_t max_payload = 65535 - sizeof(struct ofp_header);
848 struct timeval start, end;
849 unsigned int payload_size, message_size;
850 struct vconn *vconn;
851 double duration;
852 int count;
853 int i;
854
855 payload_size = atoi(argv[2]);
856 if (payload_size > max_payload) {
857 ovs_fatal(0, "payload must be between 0 and %zu bytes", max_payload);
858 }
859 message_size = sizeof(struct ofp_header) + payload_size;
860
861 count = atoi(argv[3]);
862
863 printf("Sending %d packets * %u bytes (with header) = %u bytes total\n",
864 count, message_size, count * message_size);
865
866 open_vconn(argv[1], &vconn);
867 xgettimeofday(&start);
868 for (i = 0; i < count; i++) {
869 struct ofpbuf *request, *reply;
870 struct ofp_header *rq_hdr;
871
872 rq_hdr = make_openflow(message_size, OFPT_ECHO_REQUEST, &request);
873 memset(rq_hdr + 1, 0, payload_size);
874 run(vconn_transact(vconn, request, &reply), "transact");
875 ofpbuf_delete(reply);
876 }
877 xgettimeofday(&end);
878 vconn_close(vconn);
879
880 duration = ((1000*(double)(end.tv_sec - start.tv_sec))
881 + (.001*(end.tv_usec - start.tv_usec)));
882 printf("Finished in %.1f ms (%.0f packets/s) (%.0f bytes/s)\n",
883 duration, count / (duration / 1000.0),
884 count * message_size / (duration / 1000.0));
885 }
886
887 static void
888 do_help(int argc OVS_UNUSED, char *argv[] OVS_UNUSED)
889 {
890 usage();
891 }
892 \f
893 /* replace-flows and diff-flows commands. */
894
895 /* A flow table entry, possibly with two different versions. */
896 struct fte {
897 struct cls_rule rule; /* Within a "struct classifier". */
898 struct fte_version *versions[2];
899 };
900
901 /* One version of a Flow Table Entry. */
902 struct fte_version {
903 ovs_be64 cookie;
904 uint16_t idle_timeout;
905 uint16_t hard_timeout;
906 uint16_t flags;
907 union ofp_action *actions;
908 size_t n_actions;
909 };
910
911 /* Frees 'version' and the data that it owns. */
912 static void
913 fte_version_free(struct fte_version *version)
914 {
915 if (version) {
916 free(version->actions);
917 free(version);
918 }
919 }
920
921 /* Returns true if 'a' and 'b' are the same, false if they differ.
922 *
923 * Ignores differences in 'flags' because there's no way to retrieve flags from
924 * an OpenFlow switch. We have to assume that they are the same. */
925 static bool
926 fte_version_equals(const struct fte_version *a, const struct fte_version *b)
927 {
928 return (a->cookie == b->cookie
929 && a->idle_timeout == b->idle_timeout
930 && a->hard_timeout == b->hard_timeout
931 && a->n_actions == b->n_actions
932 && !memcmp(a->actions, b->actions,
933 a->n_actions * sizeof *a->actions));
934 }
935
936 /* Prints 'version' on stdout. Expects the caller to have printed the rule
937 * associated with the version. */
938 static void
939 fte_version_print(const struct fte_version *version)
940 {
941 struct ds s;
942
943 if (version->cookie != htonll(0)) {
944 printf(" cookie=0x%"PRIx64, ntohll(version->cookie));
945 }
946 if (version->idle_timeout != OFP_FLOW_PERMANENT) {
947 printf(" idle_timeout=%"PRIu16, version->idle_timeout);
948 }
949 if (version->hard_timeout != OFP_FLOW_PERMANENT) {
950 printf(" hard_timeout=%"PRIu16, version->hard_timeout);
951 }
952
953 ds_init(&s);
954 ofp_print_actions(&s, (const struct ofp_action_header *) version->actions,
955 version->n_actions * sizeof *version->actions);
956 printf(" %s\n", ds_cstr(&s));
957 ds_destroy(&s);
958 }
959
960 static struct fte *
961 fte_from_cls_rule(const struct cls_rule *cls_rule)
962 {
963 return cls_rule ? CONTAINER_OF(cls_rule, struct fte, rule) : NULL;
964 }
965
966 /* Frees 'fte' and its versions. */
967 static void
968 fte_free(struct fte *fte)
969 {
970 if (fte) {
971 fte_version_free(fte->versions[0]);
972 fte_version_free(fte->versions[1]);
973 free(fte);
974 }
975 }
976
977 /* Frees all of the FTEs within 'cls'. */
978 static void
979 fte_free_all(struct classifier *cls)
980 {
981 struct cls_cursor cursor;
982 struct fte *fte, *next;
983
984 cls_cursor_init(&cursor, cls, NULL);
985 CLS_CURSOR_FOR_EACH_SAFE (fte, next, rule, &cursor) {
986 classifier_remove(cls, &fte->rule);
987 fte_free(fte);
988 }
989 }
990
991 /* Searches 'cls' for an FTE matching 'rule', inserting a new one if
992 * necessary. Sets 'version' as the version of that rule with the given
993 * 'index', replacing any existing version, if any.
994 *
995 * Takes ownership of 'version'. */
996 static void
997 fte_insert(struct classifier *cls, const struct cls_rule *rule,
998 struct fte_version *version, int index)
999 {
1000 struct fte *old, *fte;
1001
1002 fte = xzalloc(sizeof *fte);
1003 fte->rule = *rule;
1004 fte->versions[index] = version;
1005
1006 old = fte_from_cls_rule(classifier_replace(cls, &fte->rule));
1007 if (old) {
1008 fte_version_free(old->versions[index]);
1009 fte->versions[!index] = old->versions[!index];
1010 free(old);
1011 }
1012 }
1013
1014 /* Reads the flows in 'filename' as flow table entries in 'cls' for the version
1015 * with the specified 'index'. Returns the minimum flow format required to
1016 * represent the flows that were read. */
1017 static enum nx_flow_format
1018 read_flows_from_file(const char *filename, struct classifier *cls, int index)
1019 {
1020 enum nx_flow_format min_flow_format;
1021 struct ds s;
1022 FILE *file;
1023
1024 file = !strcmp(filename, "-") ? stdin : fopen(filename, "r");
1025 if (file == NULL) {
1026 ovs_fatal(errno, "%s: open", filename);
1027 }
1028
1029 ds_init(&s);
1030 min_flow_format = NXFF_OPENFLOW10;
1031 while (!ds_get_preprocessed_line(&s, file)) {
1032 struct fte_version *version;
1033 enum nx_flow_format min_ff;
1034 struct ofpbuf actions;
1035 struct flow_mod fm;
1036
1037 ofpbuf_init(&actions, 64);
1038 parse_ofp_str(&fm, &actions, ds_cstr(&s));
1039
1040 version = xmalloc(sizeof *version);
1041 version->cookie = fm.cookie;
1042 version->idle_timeout = fm.idle_timeout;
1043 version->hard_timeout = fm.hard_timeout;
1044 version->flags = fm.flags & (OFPFF_SEND_FLOW_REM | OFPFF_EMERG);
1045 version->n_actions = actions.size / sizeof *version->actions;
1046 version->actions = ofpbuf_steal_data(&actions);
1047
1048 min_ff = ofputil_min_flow_format(&fm.cr);
1049 min_flow_format = MAX(min_flow_format, min_ff);
1050 check_final_format_for_flow_mod(min_flow_format);
1051
1052 fte_insert(cls, &fm.cr, version, index);
1053 }
1054 ds_destroy(&s);
1055
1056 if (file != stdin) {
1057 fclose(file);
1058 }
1059
1060 return min_flow_format;
1061 }
1062
1063 /* Reads the OpenFlow flow table from 'vconn', which has currently active flow
1064 * format 'flow_format', and adds them as flow table entries in 'cls' for the
1065 * version with the specified 'index'. */
1066 static void
1067 read_flows_from_switch(struct vconn *vconn, enum nx_flow_format flow_format,
1068 struct classifier *cls, int index)
1069 {
1070 struct flow_stats_request fsr;
1071 struct ofpbuf *request;
1072 ovs_be32 send_xid;
1073 bool done;
1074
1075 fsr.aggregate = false;
1076 cls_rule_init_catchall(&fsr.match, 0);
1077 fsr.out_port = OFPP_NONE;
1078 fsr.table_id = 0xff;
1079 request = ofputil_encode_flow_stats_request(&fsr, flow_format);
1080 send_xid = ((struct ofp_header *) request->data)->xid;
1081 send_openflow_buffer(vconn, request);
1082
1083 done = false;
1084 while (!done) {
1085 ovs_be32 recv_xid;
1086 struct ofpbuf *reply;
1087
1088 run(vconn_recv_block(vconn, &reply), "OpenFlow packet receive failed");
1089 recv_xid = ((struct ofp_header *) reply->data)->xid;
1090 if (send_xid == recv_xid) {
1091 const struct ofputil_msg_type *type;
1092 const struct ofp_stats_reply *osr;
1093 enum ofputil_msg_code code;
1094
1095 ofputil_decode_msg_type(reply->data, &type);
1096 code = ofputil_msg_type_code(type);
1097 if (code != OFPUTIL_OFPST_FLOW_REPLY &&
1098 code != OFPUTIL_NXST_FLOW_REPLY) {
1099 ovs_fatal(0, "received bad reply: %s",
1100 ofp_to_string(reply->data, reply->size,
1101 verbosity + 1));
1102 }
1103
1104 osr = reply->data;
1105 if (!(osr->flags & htons(OFPSF_REPLY_MORE))) {
1106 done = true;
1107 }
1108
1109 for (;;) {
1110 struct fte_version *version;
1111 struct ofputil_flow_stats fs;
1112 int retval;
1113
1114 retval = ofputil_decode_flow_stats_reply(&fs, reply);
1115 if (retval) {
1116 if (retval != EOF) {
1117 ovs_fatal(0, "parse error in reply");
1118 }
1119 break;
1120 }
1121
1122 version = xmalloc(sizeof *version);
1123 version->cookie = fs.cookie;
1124 version->idle_timeout = fs.idle_timeout;
1125 version->hard_timeout = fs.hard_timeout;
1126 version->flags = 0;
1127 version->n_actions = fs.n_actions;
1128 version->actions = xmemdup(fs.actions,
1129 fs.n_actions * sizeof *fs.actions);
1130
1131 fte_insert(cls, &fs.rule, version, index);
1132 }
1133 } else {
1134 VLOG_DBG("received reply with xid %08"PRIx32" "
1135 "!= expected %08"PRIx32, recv_xid, send_xid);
1136 }
1137 ofpbuf_delete(reply);
1138 }
1139 }
1140
1141 static void
1142 fte_make_flow_mod(const struct fte *fte, int index, uint16_t command,
1143 enum nx_flow_format flow_format, struct list *packets)
1144 {
1145 const struct fte_version *version = fte->versions[index];
1146 struct flow_mod fm;
1147 struct ofpbuf *ofm;
1148
1149 fm.cr = fte->rule;
1150 fm.cookie = version->cookie;
1151 fm.table_id = 0xff;
1152 fm.command = command;
1153 fm.idle_timeout = version->idle_timeout;
1154 fm.hard_timeout = version->hard_timeout;
1155 fm.buffer_id = UINT32_MAX;
1156 fm.out_port = OFPP_NONE;
1157 fm.flags = version->flags;
1158 if (command == OFPFC_ADD || command == OFPFC_MODIFY ||
1159 command == OFPFC_MODIFY_STRICT) {
1160 fm.actions = version->actions;
1161 fm.n_actions = version->n_actions;
1162 } else {
1163 fm.actions = NULL;
1164 fm.n_actions = 0;
1165 }
1166
1167 ofm = ofputil_encode_flow_mod(&fm, flow_format, false);
1168 list_push_back(packets, &ofm->list_node);
1169 }
1170
1171 static void
1172 do_replace_flows(int argc OVS_UNUSED, char *argv[])
1173 {
1174 enum { FILE_IDX = 0, SWITCH_IDX = 1 };
1175 enum nx_flow_format min_flow_format, flow_format;
1176 struct cls_cursor cursor;
1177 struct classifier cls;
1178 struct list requests;
1179 struct vconn *vconn;
1180 struct fte *fte;
1181
1182 classifier_init(&cls);
1183 min_flow_format = read_flows_from_file(argv[2], &cls, FILE_IDX);
1184
1185 open_vconn(argv[1], &vconn);
1186 flow_format = negotiate_highest_flow_format(vconn, min_flow_format);
1187 read_flows_from_switch(vconn, flow_format, &cls, SWITCH_IDX);
1188
1189 list_init(&requests);
1190
1191 /* Delete flows that exist on the switch but not in the file. */
1192 cls_cursor_init(&cursor, &cls, NULL);
1193 CLS_CURSOR_FOR_EACH (fte, rule, &cursor) {
1194 struct fte_version *file_ver = fte->versions[FILE_IDX];
1195 struct fte_version *sw_ver = fte->versions[SWITCH_IDX];
1196
1197 if (sw_ver && !file_ver) {
1198 fte_make_flow_mod(fte, SWITCH_IDX, OFPFC_DELETE_STRICT,
1199 flow_format, &requests);
1200 }
1201 }
1202
1203 /* Add flows that exist in the file but not on the switch.
1204 * Update flows that exist in both places but differ. */
1205 cls_cursor_init(&cursor, &cls, NULL);
1206 CLS_CURSOR_FOR_EACH (fte, rule, &cursor) {
1207 struct fte_version *file_ver = fte->versions[FILE_IDX];
1208 struct fte_version *sw_ver = fte->versions[SWITCH_IDX];
1209
1210 if (file_ver && (!sw_ver || !fte_version_equals(sw_ver, file_ver))) {
1211 fte_make_flow_mod(fte, FILE_IDX, OFPFC_ADD, flow_format,
1212 &requests);
1213 }
1214 }
1215 transact_multiple_noreply(vconn, &requests);
1216 vconn_close(vconn);
1217
1218 fte_free_all(&cls);
1219 }
1220
1221 static void
1222 read_flows_from_source(const char *source, struct classifier *cls, int index)
1223 {
1224 struct stat s;
1225
1226 if (source[0] == '/' || source[0] == '.'
1227 || (!strchr(source, ':') && !stat(source, &s))) {
1228 read_flows_from_file(source, cls, index);
1229 } else {
1230 enum nx_flow_format flow_format;
1231 struct vconn *vconn;
1232
1233 open_vconn(source, &vconn);
1234 flow_format = negotiate_highest_flow_format(vconn, NXFF_OPENFLOW10);
1235 read_flows_from_switch(vconn, flow_format, cls, index);
1236 vconn_close(vconn);
1237 }
1238 }
1239
1240 static void
1241 do_diff_flows(int argc OVS_UNUSED, char *argv[])
1242 {
1243 bool differences = false;
1244 struct cls_cursor cursor;
1245 struct classifier cls;
1246 struct fte *fte;
1247
1248 classifier_init(&cls);
1249 read_flows_from_source(argv[1], &cls, 0);
1250 read_flows_from_source(argv[2], &cls, 1);
1251
1252 cls_cursor_init(&cursor, &cls, NULL);
1253 CLS_CURSOR_FOR_EACH (fte, rule, &cursor) {
1254 struct fte_version *a = fte->versions[0];
1255 struct fte_version *b = fte->versions[1];
1256
1257 if (!a || !b || !fte_version_equals(a, b)) {
1258 char *rule_s = cls_rule_to_string(&fte->rule);
1259 if (a) {
1260 printf("-%s", rule_s);
1261 fte_version_print(a);
1262 }
1263 if (b) {
1264 printf("+%s", rule_s);
1265 fte_version_print(b);
1266 }
1267 free(rule_s);
1268
1269 differences = true;
1270 }
1271 }
1272
1273 fte_free_all(&cls);
1274
1275 if (differences) {
1276 exit(2);
1277 }
1278 }
1279 \f
1280 /* Undocumented commands for unit testing. */
1281
1282 static void
1283 print_packet_list(struct list *packets)
1284 {
1285 struct ofpbuf *packet, *next;
1286
1287 LIST_FOR_EACH_SAFE (packet, next, list_node, packets) {
1288 ofp_print(stdout, packet->data, packet->size, verbosity);
1289 list_remove(&packet->list_node);
1290 ofpbuf_delete(packet);
1291 }
1292 }
1293
1294 /* "parse-flow FLOW": parses the argument as a flow (like add-flow) and prints
1295 * it back to stdout. */
1296 static void
1297 do_parse_flow(int argc OVS_UNUSED, char *argv[])
1298 {
1299 enum nx_flow_format flow_format;
1300 bool flow_mod_table_id;
1301 struct list packets;
1302
1303 flow_format = NXFF_OPENFLOW10;
1304 if (preferred_flow_format > 0) {
1305 flow_format = preferred_flow_format;
1306 }
1307 flow_mod_table_id = false;
1308
1309 list_init(&packets);
1310 parse_ofp_flow_mod_str(&packets, &flow_format, &flow_mod_table_id,
1311 argv[1], OFPFC_ADD);
1312 print_packet_list(&packets);
1313 }
1314
1315 /* "parse-flows FILENAME": reads the named file as a sequence of flows (like
1316 * add-flows) and prints each of the flows back to stdout. */
1317 static void
1318 do_parse_flows(int argc OVS_UNUSED, char *argv[])
1319 {
1320 enum nx_flow_format flow_format;
1321 bool flow_mod_table_id;
1322 struct list packets;
1323 FILE *file;
1324
1325 file = fopen(argv[1], "r");
1326 if (file == NULL) {
1327 ovs_fatal(errno, "%s: open", argv[2]);
1328 }
1329
1330 flow_format = NXFF_OPENFLOW10;
1331 if (preferred_flow_format > 0) {
1332 flow_format = preferred_flow_format;
1333 }
1334 flow_mod_table_id = false;
1335
1336 list_init(&packets);
1337 while (parse_ofp_flow_mod_file(&packets, &flow_format, &flow_mod_table_id,
1338 file, OFPFC_ADD)) {
1339 print_packet_list(&packets);
1340 }
1341 fclose(file);
1342 }
1343
1344 /* "parse-nx-match": reads a series of nx_match specifications as strings from
1345 * stdin, does some internal fussing with them, and then prints them back as
1346 * strings on stdout. */
1347 static void
1348 do_parse_nx_match(int argc OVS_UNUSED, char *argv[] OVS_UNUSED)
1349 {
1350 struct ds in;
1351
1352 ds_init(&in);
1353 while (!ds_get_line(&in, stdin)) {
1354 struct ofpbuf nx_match;
1355 struct cls_rule rule;
1356 int match_len;
1357 int error;
1358 char *s;
1359
1360 /* Delete comments, skip blank lines. */
1361 s = ds_cstr(&in);
1362 if (*s == '#') {
1363 puts(s);
1364 continue;
1365 }
1366 if (strchr(s, '#')) {
1367 *strchr(s, '#') = '\0';
1368 }
1369 if (s[strspn(s, " ")] == '\0') {
1370 putchar('\n');
1371 continue;
1372 }
1373
1374 /* Convert string to nx_match. */
1375 ofpbuf_init(&nx_match, 0);
1376 match_len = nx_match_from_string(ds_cstr(&in), &nx_match);
1377
1378 /* Convert nx_match to cls_rule. */
1379 error = nx_pull_match(&nx_match, match_len, 0, &rule);
1380 if (!error) {
1381 char *out;
1382
1383 /* Convert cls_rule back to nx_match. */
1384 ofpbuf_uninit(&nx_match);
1385 ofpbuf_init(&nx_match, 0);
1386 match_len = nx_put_match(&nx_match, &rule);
1387
1388 /* Convert nx_match to string. */
1389 out = nx_match_to_string(nx_match.data, match_len);
1390 puts(out);
1391 free(out);
1392 } else {
1393 printf("nx_pull_match() returned error %x\n", error);
1394 }
1395
1396 ofpbuf_uninit(&nx_match);
1397 }
1398 ds_destroy(&in);
1399 }
1400
1401 /* "ofp-print HEXSTRING [VERBOSITY]": Converts the hex digits in HEXSTRING into
1402 * binary data, interpreting them as an OpenFlow message, and prints the
1403 * OpenFlow message on stdout, at VERBOSITY (level 2 by default). */
1404 static void
1405 do_ofp_print(int argc, char *argv[])
1406 {
1407 struct ofpbuf packet;
1408
1409 ofpbuf_init(&packet, strlen(argv[1]) / 2);
1410 if (ofpbuf_put_hex(&packet, argv[1], NULL)[0] != '\0') {
1411 ovs_fatal(0, "trailing garbage following hex bytes");
1412 }
1413 ofp_print(stdout, packet.data, packet.size, argc > 2 ? atoi(argv[2]) : 2);
1414 ofpbuf_uninit(&packet);
1415 }
1416
1417 static const struct command all_commands[] = {
1418 { "show", 1, 1, do_show },
1419 { "monitor", 1, 2, do_monitor },
1420 { "snoop", 1, 1, do_snoop },
1421 { "dump-desc", 1, 1, do_dump_desc },
1422 { "dump-tables", 1, 1, do_dump_tables },
1423 { "dump-flows", 1, 2, do_dump_flows },
1424 { "dump-aggregate", 1, 2, do_dump_aggregate },
1425 { "queue-stats", 1, 3, do_queue_stats },
1426 { "add-flow", 2, 2, do_add_flow },
1427 { "add-flows", 2, 2, do_add_flows },
1428 { "mod-flows", 2, 2, do_mod_flows },
1429 { "del-flows", 1, 2, do_del_flows },
1430 { "replace-flows", 2, 2, do_replace_flows },
1431 { "diff-flows", 2, 2, do_diff_flows },
1432 { "dump-ports", 1, 2, do_dump_ports },
1433 { "mod-port", 3, 3, do_mod_port },
1434 { "probe", 1, 1, do_probe },
1435 { "ping", 1, 2, do_ping },
1436 { "benchmark", 3, 3, do_benchmark },
1437 { "help", 0, INT_MAX, do_help },
1438
1439 /* Undocumented commands for testing. */
1440 { "parse-flow", 1, 1, do_parse_flow },
1441 { "parse-flows", 1, 1, do_parse_flows },
1442 { "parse-nx-match", 0, 0, do_parse_nx_match },
1443 { "ofp-print", 1, 2, do_ofp_print },
1444
1445 { NULL, 0, 0, NULL },
1446 };