]> git.proxmox.com Git - mirror_ovs.git/blob - utilities/ovs-ofctl.c
command-line: add ovs_cmdl_context
[mirror_ovs.git] / utilities / ovs-ofctl.c
1 /*
2 * Copyright (c) 2008, 2009, 2010, 2011, 2012, 2013, 2014, 2015 Nicira, Inc.
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 <ctype.h>
19 #include <errno.h>
20 #include <getopt.h>
21 #include <inttypes.h>
22 #include <sys/socket.h>
23 #include <net/if.h>
24 #include <signal.h>
25 #include <stdlib.h>
26 #include <string.h>
27 #include <unistd.h>
28 #include <fcntl.h>
29 #include <sys/stat.h>
30 #include <sys/time.h>
31
32 #include "byte-order.h"
33 #include "classifier.h"
34 #include "command-line.h"
35 #include "daemon.h"
36 #include "compiler.h"
37 #include "dirs.h"
38 #include "dynamic-string.h"
39 #include "fatal-signal.h"
40 #include "nx-match.h"
41 #include "odp-util.h"
42 #include "ofp-actions.h"
43 #include "ofp-errors.h"
44 #include "ofp-msgs.h"
45 #include "ofp-parse.h"
46 #include "ofp-print.h"
47 #include "ofp-util.h"
48 #include "ofp-version-opt.h"
49 #include "ofpbuf.h"
50 #include "ofproto/ofproto.h"
51 #include "openflow/nicira-ext.h"
52 #include "openflow/openflow.h"
53 #include "dp-packet.h"
54 #include "packets.h"
55 #include "pcap-file.h"
56 #include "poll-loop.h"
57 #include "random.h"
58 #include "stream-ssl.h"
59 #include "socket-util.h"
60 #include "timeval.h"
61 #include "unixctl.h"
62 #include "util.h"
63 #include "openvswitch/vconn.h"
64 #include "openvswitch/vlog.h"
65 #include "meta-flow.h"
66 #include "sort.h"
67
68 VLOG_DEFINE_THIS_MODULE(ofctl);
69
70 /* --strict: Use strict matching for flow mod commands? Additionally governs
71 * use of nx_pull_match() instead of nx_pull_match_loose() in parse-nx-match.
72 */
73 static bool strict;
74
75 /* --readd: If true, on replace-flows, re-add even flows that have not changed
76 * (to reset flow counters). */
77 static bool readd;
78
79 /* -F, --flow-format: Allowed protocols. By default, any protocol is
80 * allowed. */
81 static enum ofputil_protocol allowed_protocols = OFPUTIL_P_ANY;
82
83 /* -P, --packet-in-format: Packet IN format to use in monitor and snoop
84 * commands. Either one of NXPIF_* to force a particular packet_in format, or
85 * -1 to let ovs-ofctl choose the default. */
86 static int preferred_packet_in_format = -1;
87
88 /* -m, --more: Additional verbosity for ofp-print functions. */
89 static int verbosity;
90
91 /* --timestamp: Print a timestamp before each received packet on "monitor" and
92 * "snoop" command? */
93 static bool timestamp;
94
95 /* --unixctl-path: Path to use for unixctl server, for "monitor" and "snoop"
96 commands. */
97 static char *unixctl_path;
98
99 /* --sort, --rsort: Sort order. */
100 enum sort_order { SORT_ASC, SORT_DESC };
101 struct sort_criterion {
102 const struct mf_field *field; /* NULL means to sort by priority. */
103 enum sort_order order;
104 };
105 static struct sort_criterion *criteria;
106 static size_t n_criteria, allocated_criteria;
107
108 static const struct ovs_cmdl_command *get_all_commands(void);
109
110 OVS_NO_RETURN static void usage(void);
111 static void parse_options(int argc, char *argv[]);
112
113 static bool recv_flow_stats_reply(struct vconn *, ovs_be32 send_xid,
114 struct ofpbuf **replyp,
115 struct ofputil_flow_stats *,
116 struct ofpbuf *ofpacts);
117 int
118 main(int argc, char *argv[])
119 {
120 struct ovs_cmdl_context ctx = { .argc = 0, };
121 set_program_name(argv[0]);
122 service_start(&argc, &argv);
123 parse_options(argc, argv);
124 fatal_ignore_sigpipe();
125 ctx.argc = argc - optind;
126 ctx.argv = argv + optind;
127 ovs_cmdl_run_command(&ctx, get_all_commands());
128 return 0;
129 }
130
131 static void
132 add_sort_criterion(enum sort_order order, const char *field)
133 {
134 struct sort_criterion *sc;
135
136 if (n_criteria >= allocated_criteria) {
137 criteria = x2nrealloc(criteria, &allocated_criteria, sizeof *criteria);
138 }
139
140 sc = &criteria[n_criteria++];
141 if (!field || !strcasecmp(field, "priority")) {
142 sc->field = NULL;
143 } else {
144 sc->field = mf_from_name(field);
145 if (!sc->field) {
146 ovs_fatal(0, "%s: unknown field name", field);
147 }
148 }
149 sc->order = order;
150 }
151
152 static void
153 parse_options(int argc, char *argv[])
154 {
155 enum {
156 OPT_STRICT = UCHAR_MAX + 1,
157 OPT_READD,
158 OPT_TIMESTAMP,
159 OPT_SORT,
160 OPT_RSORT,
161 OPT_UNIXCTL,
162 DAEMON_OPTION_ENUMS,
163 OFP_VERSION_OPTION_ENUMS,
164 VLOG_OPTION_ENUMS
165 };
166 static const struct option long_options[] = {
167 {"timeout", required_argument, NULL, 't'},
168 {"strict", no_argument, NULL, OPT_STRICT},
169 {"readd", no_argument, NULL, OPT_READD},
170 {"flow-format", required_argument, NULL, 'F'},
171 {"packet-in-format", required_argument, NULL, 'P'},
172 {"more", no_argument, NULL, 'm'},
173 {"timestamp", no_argument, NULL, OPT_TIMESTAMP},
174 {"sort", optional_argument, NULL, OPT_SORT},
175 {"rsort", optional_argument, NULL, OPT_RSORT},
176 {"unixctl", required_argument, NULL, OPT_UNIXCTL},
177 {"help", no_argument, NULL, 'h'},
178 {"option", no_argument, NULL, 'o'},
179 DAEMON_LONG_OPTIONS,
180 OFP_VERSION_LONG_OPTIONS,
181 VLOG_LONG_OPTIONS,
182 STREAM_SSL_LONG_OPTIONS,
183 {NULL, 0, NULL, 0},
184 };
185 char *short_options = ovs_cmdl_long_options_to_short_options(long_options);
186 uint32_t versions;
187 enum ofputil_protocol version_protocols;
188
189 /* For now, ovs-ofctl only enables OpenFlow 1.0 by default. This is
190 * because ovs-ofctl implements command such as "add-flow" as raw OpenFlow
191 * requests, but those requests have subtly different semantics in
192 * different OpenFlow versions. For example:
193 *
194 * - In OpenFlow 1.0, a "mod-flow" operation that does not find any
195 * existing flow to modify adds a new flow.
196 *
197 * - In OpenFlow 1.1, a "mod-flow" operation that does not find any
198 * existing flow to modify adds a new flow, but only if the mod-flow
199 * did not match on the flow cookie.
200 *
201 * - In OpenFlow 1.2 and a later, a "mod-flow" operation never adds a
202 * new flow.
203 */
204 set_allowed_ofp_versions("OpenFlow10");
205
206 for (;;) {
207 unsigned long int timeout;
208 int c;
209
210 c = getopt_long(argc, argv, short_options, long_options, NULL);
211 if (c == -1) {
212 break;
213 }
214
215 switch (c) {
216 case 't':
217 timeout = strtoul(optarg, NULL, 10);
218 if (timeout <= 0) {
219 ovs_fatal(0, "value %s on -t or --timeout is not at least 1",
220 optarg);
221 } else {
222 time_alarm(timeout);
223 }
224 break;
225
226 case 'F':
227 allowed_protocols = ofputil_protocols_from_string(optarg);
228 if (!allowed_protocols) {
229 ovs_fatal(0, "%s: invalid flow format(s)", optarg);
230 }
231 break;
232
233 case 'P':
234 preferred_packet_in_format =
235 ofputil_packet_in_format_from_string(optarg);
236 if (preferred_packet_in_format < 0) {
237 ovs_fatal(0, "unknown packet-in format `%s'", optarg);
238 }
239 break;
240
241 case 'm':
242 verbosity++;
243 break;
244
245 case 'h':
246 usage();
247
248 case 'o':
249 ovs_cmdl_print_options(long_options);
250 exit(EXIT_SUCCESS);
251
252 case OPT_STRICT:
253 strict = true;
254 break;
255
256 case OPT_READD:
257 readd = true;
258 break;
259
260 case OPT_TIMESTAMP:
261 timestamp = true;
262 break;
263
264 case OPT_SORT:
265 add_sort_criterion(SORT_ASC, optarg);
266 break;
267
268 case OPT_RSORT:
269 add_sort_criterion(SORT_DESC, optarg);
270 break;
271
272 case OPT_UNIXCTL:
273 unixctl_path = optarg;
274 break;
275
276 DAEMON_OPTION_HANDLERS
277 OFP_VERSION_OPTION_HANDLERS
278 VLOG_OPTION_HANDLERS
279 STREAM_SSL_OPTION_HANDLERS
280
281 case '?':
282 exit(EXIT_FAILURE);
283
284 default:
285 abort();
286 }
287 }
288
289 if (n_criteria) {
290 /* Always do a final sort pass based on priority. */
291 add_sort_criterion(SORT_DESC, "priority");
292 }
293
294 free(short_options);
295
296 versions = get_allowed_ofp_versions();
297 version_protocols = ofputil_protocols_from_version_bitmap(versions);
298 if (!(allowed_protocols & version_protocols)) {
299 char *protocols = ofputil_protocols_to_string(allowed_protocols);
300 struct ds version_s = DS_EMPTY_INITIALIZER;
301
302 ofputil_format_version_bitmap_names(&version_s, versions);
303 ovs_fatal(0, "None of the enabled OpenFlow versions (%s) supports "
304 "any of the enabled flow formats (%s). (Use -O to enable "
305 "additional OpenFlow versions or -F to enable additional "
306 "flow formats.)", ds_cstr(&version_s), protocols);
307 }
308 allowed_protocols &= version_protocols;
309 mask_allowed_ofp_versions(ofputil_protocols_to_version_bitmap(
310 allowed_protocols));
311 }
312
313 static void
314 usage(void)
315 {
316 printf("%s: OpenFlow switch management utility\n"
317 "usage: %s [OPTIONS] COMMAND [ARG...]\n"
318 "\nFor OpenFlow switches:\n"
319 " show SWITCH show OpenFlow information\n"
320 " dump-desc SWITCH print switch description\n"
321 " dump-tables SWITCH print table stats\n"
322 " dump-table-features SWITCH print table features\n"
323 " mod-port SWITCH IFACE ACT modify port behavior\n"
324 " mod-table SWITCH MOD modify flow table behavior\n"
325 " get-frags SWITCH print fragment handling behavior\n"
326 " set-frags SWITCH FRAG_MODE set fragment handling behavior\n"
327 " dump-ports SWITCH [PORT] print port statistics\n"
328 " dump-ports-desc SWITCH [PORT] print port descriptions\n"
329 " dump-flows SWITCH print all flow entries\n"
330 " dump-flows SWITCH FLOW print matching FLOWs\n"
331 " dump-aggregate SWITCH print aggregate flow statistics\n"
332 " dump-aggregate SWITCH FLOW print aggregate stats for FLOWs\n"
333 " queue-stats SWITCH [PORT [QUEUE]] dump queue stats\n"
334 " add-flow SWITCH FLOW add flow described by FLOW\n"
335 " add-flows SWITCH FILE add flows from FILE\n"
336 " mod-flows SWITCH FLOW modify actions of matching FLOWs\n"
337 " del-flows SWITCH [FLOW] delete matching FLOWs\n"
338 " replace-flows SWITCH FILE replace flows with those in FILE\n"
339 " diff-flows SOURCE1 SOURCE2 compare flows from two sources\n"
340 " packet-out SWITCH IN_PORT ACTIONS PACKET...\n"
341 " execute ACTIONS on PACKET\n"
342 " monitor SWITCH [MISSLEN] [invalid_ttl] [watch:[...]]\n"
343 " print packets received from SWITCH\n"
344 " snoop SWITCH snoop on SWITCH and its controller\n"
345 " add-group SWITCH GROUP add group described by GROUP\n"
346 " add-groups SWITCH FILE add group from FILE\n"
347 " mod-group SWITCH GROUP modify specific group\n"
348 " del-groups SWITCH [GROUP] delete matching GROUPs\n"
349 " insert-buckets SWITCH [GROUP] add buckets to GROUP\n"
350 " remove-buckets SWITCH [GROUP] remove buckets from GROUP\n"
351 " dump-group-features SWITCH print group features\n"
352 " dump-groups SWITCH [GROUP] print group description\n"
353 " dump-group-stats SWITCH [GROUP] print group statistics\n"
354 " queue-get-config SWITCH PORT print queue information for port\n"
355 " add-meter SWITCH METER add meter described by METER\n"
356 " mod-meter SWITCH METER modify specific METER\n"
357 " del-meter SWITCH METER delete METER\n"
358 " del-meters SWITCH delete all meters\n"
359 " dump-meter SWITCH METER print METER configuration\n"
360 " dump-meters SWITCH print all meter configuration\n"
361 " meter-stats SWITCH [METER] print meter statistics\n"
362 " meter-features SWITCH print meter features\n"
363 "\nFor OpenFlow switches and controllers:\n"
364 " probe TARGET probe whether TARGET is up\n"
365 " ping TARGET [N] latency of N-byte echos\n"
366 " benchmark TARGET N COUNT bandwidth of COUNT N-byte echos\n"
367 "SWITCH or TARGET is an active OpenFlow connection method.\n"
368 "\nOther commands:\n"
369 " ofp-parse FILE print messages read from FILE\n"
370 " ofp-parse-pcap PCAP print OpenFlow read from PCAP\n",
371 program_name, program_name);
372 vconn_usage(true, false, false);
373 daemon_usage();
374 ofp_version_usage();
375 vlog_usage();
376 printf("\nOther options:\n"
377 " --strict use strict match for flow commands\n"
378 " --readd replace flows that haven't changed\n"
379 " -F, --flow-format=FORMAT force particular flow format\n"
380 " -P, --packet-in-format=FRMT force particular packet in format\n"
381 " -m, --more be more verbose printing OpenFlow\n"
382 " --timestamp (monitor, snoop) print timestamps\n"
383 " -t, --timeout=SECS give up after SECS seconds\n"
384 " --sort[=field] sort in ascending order\n"
385 " --rsort[=field] sort in descending order\n"
386 " --unixctl=SOCKET set control socket name\n"
387 " -h, --help display this help message\n"
388 " -V, --version display version information\n");
389 exit(EXIT_SUCCESS);
390 }
391
392 static void
393 ofctl_exit(struct unixctl_conn *conn, int argc OVS_UNUSED,
394 const char *argv[] OVS_UNUSED, void *exiting_)
395 {
396 bool *exiting = exiting_;
397 *exiting = true;
398 unixctl_command_reply(conn, NULL);
399 }
400
401 static void run(int retval, const char *message, ...)
402 OVS_PRINTF_FORMAT(2, 3);
403
404 static void
405 run(int retval, const char *message, ...)
406 {
407 if (retval) {
408 va_list args;
409
410 va_start(args, message);
411 ovs_fatal_valist(retval, message, args);
412 }
413 }
414 \f
415 /* Generic commands. */
416
417 static int
418 open_vconn_socket(const char *name, struct vconn **vconnp)
419 {
420 char *vconn_name = xasprintf("unix:%s", name);
421 int error;
422
423 error = vconn_open(vconn_name, get_allowed_ofp_versions(), DSCP_DEFAULT,
424 vconnp);
425 if (error && error != ENOENT) {
426 ovs_fatal(0, "%s: failed to open socket (%s)", name,
427 ovs_strerror(error));
428 }
429 free(vconn_name);
430
431 return error;
432 }
433
434 enum open_target { MGMT, SNOOP };
435
436 static enum ofputil_protocol
437 open_vconn__(const char *name, enum open_target target,
438 struct vconn **vconnp)
439 {
440 const char *suffix = target == MGMT ? "mgmt" : "snoop";
441 char *datapath_name, *datapath_type, *socket_name;
442 enum ofputil_protocol protocol;
443 char *bridge_path;
444 int ofp_version;
445 int error;
446
447 bridge_path = xasprintf("%s/%s.%s", ovs_rundir(), name, suffix);
448
449 ofproto_parse_name(name, &datapath_name, &datapath_type);
450 socket_name = xasprintf("%s/%s.%s", ovs_rundir(), datapath_name, suffix);
451 free(datapath_name);
452 free(datapath_type);
453
454 if (strchr(name, ':')) {
455 run(vconn_open(name, get_allowed_ofp_versions(), DSCP_DEFAULT, vconnp),
456 "connecting to %s", name);
457 } else if (!open_vconn_socket(name, vconnp)) {
458 /* Fall Through. */
459 } else if (!open_vconn_socket(bridge_path, vconnp)) {
460 /* Fall Through. */
461 } else if (!open_vconn_socket(socket_name, vconnp)) {
462 /* Fall Through. */
463 } else {
464 ovs_fatal(0, "%s is not a bridge or a socket", name);
465 }
466
467 if (target == SNOOP) {
468 vconn_set_recv_any_version(*vconnp);
469 }
470
471 free(bridge_path);
472 free(socket_name);
473
474 VLOG_DBG("connecting to %s", vconn_get_name(*vconnp));
475 error = vconn_connect_block(*vconnp);
476 if (error) {
477 ovs_fatal(0, "%s: failed to connect to socket (%s)", name,
478 ovs_strerror(error));
479 }
480
481 ofp_version = vconn_get_version(*vconnp);
482 protocol = ofputil_protocol_from_ofp_version(ofp_version);
483 if (!protocol) {
484 ovs_fatal(0, "%s: unsupported OpenFlow version 0x%02x",
485 name, ofp_version);
486 }
487 return protocol;
488 }
489
490 static enum ofputil_protocol
491 open_vconn(const char *name, struct vconn **vconnp)
492 {
493 return open_vconn__(name, MGMT, vconnp);
494 }
495
496 static void
497 send_openflow_buffer(struct vconn *vconn, struct ofpbuf *buffer)
498 {
499 ofpmsg_update_length(buffer);
500 run(vconn_send_block(vconn, buffer), "failed to send packet to switch");
501 }
502
503 static void
504 dump_transaction(struct vconn *vconn, struct ofpbuf *request)
505 {
506 struct ofpbuf *reply;
507
508 ofpmsg_update_length(request);
509 run(vconn_transact(vconn, request, &reply), "talking to %s",
510 vconn_get_name(vconn));
511 ofp_print(stdout, reply->data, reply->size, verbosity + 1);
512 ofpbuf_delete(reply);
513 }
514
515 static void
516 dump_trivial_transaction(const char *vconn_name, enum ofpraw raw)
517 {
518 struct ofpbuf *request;
519 struct vconn *vconn;
520
521 open_vconn(vconn_name, &vconn);
522 request = ofpraw_alloc(raw, vconn_get_version(vconn), 0);
523 dump_transaction(vconn, request);
524 vconn_close(vconn);
525 }
526
527 static void
528 dump_stats_transaction(struct vconn *vconn, struct ofpbuf *request)
529 {
530 const struct ofp_header *request_oh = request->data;
531 ovs_be32 send_xid = request_oh->xid;
532 enum ofpraw request_raw;
533 enum ofpraw reply_raw;
534 bool done = false;
535
536 ofpraw_decode_partial(&request_raw, request->data, request->size);
537 reply_raw = ofpraw_stats_request_to_reply(request_raw,
538 request_oh->version);
539
540 send_openflow_buffer(vconn, request);
541 while (!done) {
542 ovs_be32 recv_xid;
543 struct ofpbuf *reply;
544
545 run(vconn_recv_block(vconn, &reply), "OpenFlow packet receive failed");
546 recv_xid = ((struct ofp_header *) reply->data)->xid;
547 if (send_xid == recv_xid) {
548 enum ofpraw raw;
549
550 ofp_print(stdout, reply->data, reply->size, verbosity + 1);
551
552 ofpraw_decode(&raw, reply->data);
553 if (ofptype_from_ofpraw(raw) == OFPTYPE_ERROR) {
554 done = true;
555 } else if (raw == reply_raw) {
556 done = !ofpmp_more(reply->data);
557 } else {
558 ovs_fatal(0, "received bad reply: %s",
559 ofp_to_string(reply->data, reply->size,
560 verbosity + 1));
561 }
562 } else {
563 VLOG_DBG("received reply with xid %08"PRIx32" "
564 "!= expected %08"PRIx32, recv_xid, send_xid);
565 }
566 ofpbuf_delete(reply);
567 }
568 }
569
570 static void
571 dump_trivial_stats_transaction(const char *vconn_name, enum ofpraw raw)
572 {
573 struct ofpbuf *request;
574 struct vconn *vconn;
575
576 open_vconn(vconn_name, &vconn);
577 request = ofpraw_alloc(raw, vconn_get_version(vconn), 0);
578 dump_stats_transaction(vconn, request);
579 vconn_close(vconn);
580 }
581
582 /* Sends all of the 'requests', which should be requests that only have replies
583 * if an error occurs, and waits for them to succeed or fail. If an error does
584 * occur, prints it and exits with an error.
585 *
586 * Destroys all of the 'requests'. */
587 static void
588 transact_multiple_noreply(struct vconn *vconn, struct ovs_list *requests)
589 {
590 struct ofpbuf *request, *reply;
591
592 LIST_FOR_EACH (request, list_node, requests) {
593 ofpmsg_update_length(request);
594 }
595
596 run(vconn_transact_multiple_noreply(vconn, requests, &reply),
597 "talking to %s", vconn_get_name(vconn));
598 if (reply) {
599 ofp_print(stderr, reply->data, reply->size, verbosity + 2);
600 exit(1);
601 }
602 ofpbuf_delete(reply);
603 }
604
605 /* Sends 'request', which should be a request that only has a reply if an error
606 * occurs, and waits for it to succeed or fail. If an error does occur, prints
607 * it and exits with an error.
608 *
609 * Destroys 'request'. */
610 static void
611 transact_noreply(struct vconn *vconn, struct ofpbuf *request)
612 {
613 struct ovs_list requests;
614
615 list_init(&requests);
616 list_push_back(&requests, &request->list_node);
617 transact_multiple_noreply(vconn, &requests);
618 }
619
620 static void
621 fetch_switch_config(struct vconn *vconn, struct ofp_switch_config *config_)
622 {
623 struct ofp_switch_config *config;
624 struct ofpbuf *request;
625 struct ofpbuf *reply;
626 enum ofptype type;
627
628 request = ofpraw_alloc(OFPRAW_OFPT_GET_CONFIG_REQUEST,
629 vconn_get_version(vconn), 0);
630 run(vconn_transact(vconn, request, &reply),
631 "talking to %s", vconn_get_name(vconn));
632
633 if (ofptype_pull(&type, reply) || type != OFPTYPE_GET_CONFIG_REPLY) {
634 ovs_fatal(0, "%s: bad reply to config request", vconn_get_name(vconn));
635 }
636
637 config = ofpbuf_pull(reply, sizeof *config);
638 *config_ = *config;
639
640 ofpbuf_delete(reply);
641 }
642
643 static void
644 set_switch_config(struct vconn *vconn, const struct ofp_switch_config *config)
645 {
646 struct ofpbuf *request;
647
648 request = ofpraw_alloc(OFPRAW_OFPT_SET_CONFIG, vconn_get_version(vconn), 0);
649 ofpbuf_put(request, config, sizeof *config);
650
651 transact_noreply(vconn, request);
652 }
653
654 static void
655 ofctl_show(struct ovs_cmdl_context *ctx)
656 {
657 const char *vconn_name = ctx->argv[1];
658 enum ofp_version version;
659 struct vconn *vconn;
660 struct ofpbuf *request;
661 struct ofpbuf *reply;
662 bool has_ports;
663
664 open_vconn(vconn_name, &vconn);
665 version = vconn_get_version(vconn);
666 request = ofpraw_alloc(OFPRAW_OFPT_FEATURES_REQUEST, version, 0);
667 run(vconn_transact(vconn, request, &reply), "talking to %s", vconn_name);
668
669 has_ports = ofputil_switch_features_has_ports(reply);
670 ofp_print(stdout, reply->data, reply->size, verbosity + 1);
671 ofpbuf_delete(reply);
672
673 if (!has_ports) {
674 request = ofputil_encode_port_desc_stats_request(version, OFPP_ANY);
675 dump_stats_transaction(vconn, request);
676 }
677 dump_trivial_transaction(vconn_name, OFPRAW_OFPT_GET_CONFIG_REQUEST);
678 vconn_close(vconn);
679 }
680
681 static void
682 ofctl_dump_desc(struct ovs_cmdl_context *ctx)
683 {
684 dump_trivial_stats_transaction(ctx->argv[1], OFPRAW_OFPST_DESC_REQUEST);
685 }
686
687 static void
688 ofctl_dump_tables(struct ovs_cmdl_context *ctx)
689 {
690 dump_trivial_stats_transaction(ctx->argv[1], OFPRAW_OFPST_TABLE_REQUEST);
691 }
692
693 static void
694 ofctl_dump_table_features(struct ovs_cmdl_context *ctx)
695 {
696 struct ofpbuf *request;
697 struct vconn *vconn;
698
699 open_vconn(ctx->argv[1], &vconn);
700 request = ofputil_encode_table_features_request(vconn_get_version(vconn));
701 if (request) {
702 dump_stats_transaction(vconn, request);
703 }
704
705 vconn_close(vconn);
706 }
707
708 static bool fetch_port_by_stats(struct vconn *,
709 const char *port_name, ofp_port_t port_no,
710 struct ofputil_phy_port *);
711
712 /* Uses OFPT_FEATURES_REQUEST to attempt to fetch information about the port
713 * named 'port_name' or numbered 'port_no' into '*pp'. Returns true if
714 * successful, false on failure.
715 *
716 * This is only appropriate for OpenFlow 1.0, 1.1, and 1.2, which include a
717 * list of ports in OFPT_FEATURES_REPLY. */
718 static bool
719 fetch_port_by_features(struct vconn *vconn,
720 const char *port_name, ofp_port_t port_no,
721 struct ofputil_phy_port *pp)
722 {
723 struct ofputil_switch_features features;
724 const struct ofp_header *oh;
725 struct ofpbuf *request, *reply;
726 enum ofperr error;
727 enum ofptype type;
728 struct ofpbuf b;
729 bool found = false;
730
731 /* Fetch the switch's ofp_switch_features. */
732 request = ofpraw_alloc(OFPRAW_OFPT_FEATURES_REQUEST,
733 vconn_get_version(vconn), 0);
734 run(vconn_transact(vconn, request, &reply),
735 "talking to %s", vconn_get_name(vconn));
736
737 oh = reply->data;
738 if (ofptype_decode(&type, reply->data)
739 || type != OFPTYPE_FEATURES_REPLY) {
740 ovs_fatal(0, "%s: received bad features reply", vconn_get_name(vconn));
741 }
742 if (!ofputil_switch_features_has_ports(reply)) {
743 /* The switch features reply does not contain a complete list of ports.
744 * Probably, there are more ports than will fit into a single 64 kB
745 * OpenFlow message. Use OFPST_PORT_DESC to get a complete list of
746 * ports. */
747 ofpbuf_delete(reply);
748 return fetch_port_by_stats(vconn, port_name, port_no, pp);
749 }
750
751 error = ofputil_decode_switch_features(oh, &features, &b);
752 if (error) {
753 ovs_fatal(0, "%s: failed to decode features reply (%s)",
754 vconn_get_name(vconn), ofperr_to_string(error));
755 }
756
757 while (!ofputil_pull_phy_port(oh->version, &b, pp)) {
758 if (port_no != OFPP_NONE
759 ? port_no == pp->port_no
760 : !strcmp(pp->name, port_name)) {
761 found = true;
762 break;
763 }
764 }
765 ofpbuf_delete(reply);
766 return found;
767 }
768
769 /* Uses a OFPST_PORT_DESC request to attempt to fetch information about the
770 * port named 'port_name' or numbered 'port_no' into '*pp'. Returns true if
771 * successful, false on failure.
772 *
773 * This is most appropriate for OpenFlow 1.3 and later. Open vSwitch 1.7 and
774 * later also implements OFPST_PORT_DESC, as an extension, for OpenFlow 1.0,
775 * 1.1, and 1.2, so this can be used as a fallback in those versions when there
776 * are too many ports than fit in an OFPT_FEATURES_REPLY. */
777 static bool
778 fetch_port_by_stats(struct vconn *vconn,
779 const char *port_name, ofp_port_t port_no,
780 struct ofputil_phy_port *pp)
781 {
782 struct ofpbuf *request;
783 ovs_be32 send_xid;
784 bool done = false;
785 bool found = false;
786
787 request = ofputil_encode_port_desc_stats_request(vconn_get_version(vconn),
788 port_no);
789 send_xid = ((struct ofp_header *) request->data)->xid;
790
791 send_openflow_buffer(vconn, request);
792 while (!done) {
793 ovs_be32 recv_xid;
794 struct ofpbuf *reply;
795
796 run(vconn_recv_block(vconn, &reply), "OpenFlow packet receive failed");
797 recv_xid = ((struct ofp_header *) reply->data)->xid;
798 if (send_xid == recv_xid) {
799 struct ofp_header *oh = reply->data;
800 enum ofptype type;
801 struct ofpbuf b;
802 uint16_t flags;
803
804 ofpbuf_use_const(&b, oh, ntohs(oh->length));
805 if (ofptype_pull(&type, &b)
806 || type != OFPTYPE_PORT_DESC_STATS_REPLY) {
807 ovs_fatal(0, "received bad reply: %s",
808 ofp_to_string(reply->data, reply->size,
809 verbosity + 1));
810 }
811
812 flags = ofpmp_flags(oh);
813 done = !(flags & OFPSF_REPLY_MORE);
814
815 if (found) {
816 /* We've already found the port, but we need to drain
817 * the queue of any other replies for this request. */
818 continue;
819 }
820
821 while (!ofputil_pull_phy_port(oh->version, &b, pp)) {
822 if (port_no != OFPP_NONE ? port_no == pp->port_no
823 : !strcmp(pp->name, port_name)) {
824 found = true;
825 break;
826 }
827 }
828 } else {
829 VLOG_DBG("received reply with xid %08"PRIx32" "
830 "!= expected %08"PRIx32, recv_xid, send_xid);
831 }
832 ofpbuf_delete(reply);
833 }
834
835 return found;
836 }
837
838 static bool
839 str_to_ofp(const char *s, ofp_port_t *ofp_port)
840 {
841 bool ret;
842 uint32_t port_;
843
844 ret = str_to_uint(s, 10, &port_);
845 *ofp_port = u16_to_ofp(port_);
846 return ret;
847 }
848
849 /* Opens a connection to 'vconn_name', fetches the port structure for
850 * 'port_name' (which may be a port name or number), and copies it into
851 * '*pp'. */
852 static void
853 fetch_ofputil_phy_port(const char *vconn_name, const char *port_name,
854 struct ofputil_phy_port *pp)
855 {
856 struct vconn *vconn;
857 ofp_port_t port_no;
858 bool found;
859
860 /* Try to interpret the argument as a port number. */
861 if (!str_to_ofp(port_name, &port_no)) {
862 port_no = OFPP_NONE;
863 }
864
865 /* OpenFlow 1.0, 1.1, and 1.2 put the list of ports in the
866 * OFPT_FEATURES_REPLY message. OpenFlow 1.3 and later versions put it
867 * into the OFPST_PORT_DESC reply. Try it the correct way. */
868 open_vconn(vconn_name, &vconn);
869 found = (vconn_get_version(vconn) < OFP13_VERSION
870 ? fetch_port_by_features(vconn, port_name, port_no, pp)
871 : fetch_port_by_stats(vconn, port_name, port_no, pp));
872 vconn_close(vconn);
873
874 if (!found) {
875 ovs_fatal(0, "%s: couldn't find port `%s'", vconn_name, port_name);
876 }
877 }
878
879 /* Returns the port number corresponding to 'port_name' (which may be a port
880 * name or number) within the switch 'vconn_name'. */
881 static ofp_port_t
882 str_to_port_no(const char *vconn_name, const char *port_name)
883 {
884 ofp_port_t port_no;
885
886 if (ofputil_port_from_string(port_name, &port_no)) {
887 return port_no;
888 } else {
889 struct ofputil_phy_port pp;
890
891 fetch_ofputil_phy_port(vconn_name, port_name, &pp);
892 return pp.port_no;
893 }
894 }
895
896 static bool
897 try_set_protocol(struct vconn *vconn, enum ofputil_protocol want,
898 enum ofputil_protocol *cur)
899 {
900 for (;;) {
901 struct ofpbuf *request, *reply;
902 enum ofputil_protocol next;
903
904 request = ofputil_encode_set_protocol(*cur, want, &next);
905 if (!request) {
906 return *cur == want;
907 }
908
909 run(vconn_transact_noreply(vconn, request, &reply),
910 "talking to %s", vconn_get_name(vconn));
911 if (reply) {
912 char *s = ofp_to_string(reply->data, reply->size, 2);
913 VLOG_DBG("%s: failed to set protocol, switch replied: %s",
914 vconn_get_name(vconn), s);
915 free(s);
916 ofpbuf_delete(reply);
917 return false;
918 }
919
920 *cur = next;
921 }
922 }
923
924 static enum ofputil_protocol
925 set_protocol_for_flow_dump(struct vconn *vconn,
926 enum ofputil_protocol cur_protocol,
927 enum ofputil_protocol usable_protocols)
928 {
929 char *usable_s;
930 int i;
931
932 for (i = 0; i < ofputil_n_flow_dump_protocols; i++) {
933 enum ofputil_protocol f = ofputil_flow_dump_protocols[i];
934 if (f & usable_protocols & allowed_protocols
935 && try_set_protocol(vconn, f, &cur_protocol)) {
936 return f;
937 }
938 }
939
940 usable_s = ofputil_protocols_to_string(usable_protocols);
941 if (usable_protocols & allowed_protocols) {
942 ovs_fatal(0, "switch does not support any of the usable flow "
943 "formats (%s)", usable_s);
944 } else {
945 char *allowed_s = ofputil_protocols_to_string(allowed_protocols);
946 ovs_fatal(0, "none of the usable flow formats (%s) is among the "
947 "allowed flow formats (%s)", usable_s, allowed_s);
948 }
949 }
950
951 static struct vconn *
952 prepare_dump_flows(int argc, char *argv[], bool aggregate,
953 struct ofpbuf **requestp)
954 {
955 enum ofputil_protocol usable_protocols, protocol;
956 struct ofputil_flow_stats_request fsr;
957 struct vconn *vconn;
958 char *error;
959
960 error = parse_ofp_flow_stats_request_str(&fsr, aggregate,
961 argc > 2 ? argv[2] : "",
962 &usable_protocols);
963 if (error) {
964 ovs_fatal(0, "%s", error);
965 }
966
967 protocol = open_vconn(argv[1], &vconn);
968 protocol = set_protocol_for_flow_dump(vconn, protocol, usable_protocols);
969 *requestp = ofputil_encode_flow_stats_request(&fsr, protocol);
970 return vconn;
971 }
972
973 static void
974 ofctl_dump_flows__(int argc, char *argv[], bool aggregate)
975 {
976 struct ofpbuf *request;
977 struct vconn *vconn;
978
979 vconn = prepare_dump_flows(argc, argv, aggregate, &request);
980 dump_stats_transaction(vconn, request);
981 vconn_close(vconn);
982 }
983
984 static int
985 compare_flows(const void *afs_, const void *bfs_)
986 {
987 const struct ofputil_flow_stats *afs = afs_;
988 const struct ofputil_flow_stats *bfs = bfs_;
989 const struct match *a = &afs->match;
990 const struct match *b = &bfs->match;
991 const struct sort_criterion *sc;
992
993 for (sc = criteria; sc < &criteria[n_criteria]; sc++) {
994 const struct mf_field *f = sc->field;
995 int ret;
996
997 if (!f) {
998 int a_pri = afs->priority;
999 int b_pri = bfs->priority;
1000 ret = a_pri < b_pri ? -1 : a_pri > b_pri;
1001 } else {
1002 bool ina, inb;
1003
1004 ina = mf_are_prereqs_ok(f, &a->flow) && !mf_is_all_wild(f, &a->wc);
1005 inb = mf_are_prereqs_ok(f, &b->flow) && !mf_is_all_wild(f, &b->wc);
1006 if (ina != inb) {
1007 /* Skip the test for sc->order, so that missing fields always
1008 * sort to the end whether we're sorting in ascending or
1009 * descending order. */
1010 return ina ? -1 : 1;
1011 } else {
1012 union mf_value aval, bval;
1013
1014 mf_get_value(f, &a->flow, &aval);
1015 mf_get_value(f, &b->flow, &bval);
1016 ret = memcmp(&aval, &bval, f->n_bytes);
1017 }
1018 }
1019
1020 if (ret) {
1021 return sc->order == SORT_ASC ? ret : -ret;
1022 }
1023 }
1024
1025 return 0;
1026 }
1027
1028 static void
1029 ofctl_dump_flows(struct ovs_cmdl_context *ctx)
1030 {
1031 if (!n_criteria) {
1032 ofctl_dump_flows__(ctx->argc, ctx->argv, false);
1033 return;
1034 } else {
1035 struct ofputil_flow_stats *fses;
1036 size_t n_fses, allocated_fses;
1037 struct ofpbuf *request;
1038 struct ofpbuf ofpacts;
1039 struct ofpbuf *reply;
1040 struct vconn *vconn;
1041 ovs_be32 send_xid;
1042 struct ds s;
1043 size_t i;
1044
1045 vconn = prepare_dump_flows(ctx->argc, ctx->argv, false, &request);
1046 send_xid = ((struct ofp_header *) request->data)->xid;
1047 send_openflow_buffer(vconn, request);
1048
1049 fses = NULL;
1050 n_fses = allocated_fses = 0;
1051 reply = NULL;
1052 ofpbuf_init(&ofpacts, 0);
1053 for (;;) {
1054 struct ofputil_flow_stats *fs;
1055
1056 if (n_fses >= allocated_fses) {
1057 fses = x2nrealloc(fses, &allocated_fses, sizeof *fses);
1058 }
1059
1060 fs = &fses[n_fses];
1061 if (!recv_flow_stats_reply(vconn, send_xid, &reply, fs,
1062 &ofpacts)) {
1063 break;
1064 }
1065 fs->ofpacts = xmemdup(fs->ofpacts, fs->ofpacts_len);
1066 n_fses++;
1067 }
1068 ofpbuf_uninit(&ofpacts);
1069
1070 qsort(fses, n_fses, sizeof *fses, compare_flows);
1071
1072 ds_init(&s);
1073 for (i = 0; i < n_fses; i++) {
1074 ds_clear(&s);
1075 ofp_print_flow_stats(&s, &fses[i]);
1076 puts(ds_cstr(&s));
1077 }
1078 ds_destroy(&s);
1079
1080 for (i = 0; i < n_fses; i++) {
1081 free(CONST_CAST(struct ofpact *, fses[i].ofpacts));
1082 }
1083 free(fses);
1084
1085 vconn_close(vconn);
1086 }
1087 }
1088
1089 static void
1090 ofctl_dump_aggregate(struct ovs_cmdl_context *ctx)
1091 {
1092 ofctl_dump_flows__(ctx->argc, ctx->argv, true);
1093 }
1094
1095 static void
1096 ofctl_queue_stats(struct ovs_cmdl_context *ctx)
1097 {
1098 struct ofpbuf *request;
1099 struct vconn *vconn;
1100 struct ofputil_queue_stats_request oqs;
1101
1102 open_vconn(ctx->argv[1], &vconn);
1103
1104 if (ctx->argc > 2 && ctx->argv[2][0] && strcasecmp(ctx->argv[2], "all")) {
1105 oqs.port_no = str_to_port_no(ctx->argv[1], ctx->argv[2]);
1106 } else {
1107 oqs.port_no = OFPP_ANY;
1108 }
1109 if (ctx->argc > 3 && ctx->argv[3][0] && strcasecmp(ctx->argv[3], "all")) {
1110 oqs.queue_id = atoi(ctx->argv[3]);
1111 } else {
1112 oqs.queue_id = OFPQ_ALL;
1113 }
1114
1115 request = ofputil_encode_queue_stats_request(vconn_get_version(vconn), &oqs);
1116 dump_stats_transaction(vconn, request);
1117 vconn_close(vconn);
1118 }
1119
1120 static void
1121 ofctl_queue_get_config(struct ovs_cmdl_context *ctx)
1122 {
1123 const char *vconn_name = ctx->argv[1];
1124 const char *port_name = ctx->argv[2];
1125 enum ofputil_protocol protocol;
1126 enum ofp_version version;
1127 struct ofpbuf *request;
1128 struct vconn *vconn;
1129 ofp_port_t port;
1130
1131 port = str_to_port_no(vconn_name, port_name);
1132
1133 protocol = open_vconn(vconn_name, &vconn);
1134 version = ofputil_protocol_to_ofp_version(protocol);
1135 request = ofputil_encode_queue_get_config_request(version, port);
1136 dump_transaction(vconn, request);
1137 vconn_close(vconn);
1138 }
1139
1140 static enum ofputil_protocol
1141 open_vconn_for_flow_mod(const char *remote, struct vconn **vconnp,
1142 enum ofputil_protocol usable_protocols)
1143 {
1144 enum ofputil_protocol cur_protocol;
1145 char *usable_s;
1146 int i;
1147
1148 if (!(usable_protocols & allowed_protocols)) {
1149 char *allowed_s = ofputil_protocols_to_string(allowed_protocols);
1150 usable_s = ofputil_protocols_to_string(usable_protocols);
1151 ovs_fatal(0, "none of the usable flow formats (%s) is among the "
1152 "allowed flow formats (%s)", usable_s, allowed_s);
1153 }
1154
1155 /* If the initial flow format is allowed and usable, keep it. */
1156 cur_protocol = open_vconn(remote, vconnp);
1157 if (usable_protocols & allowed_protocols & cur_protocol) {
1158 return cur_protocol;
1159 }
1160
1161 /* Otherwise try each flow format in turn. */
1162 for (i = 0; i < sizeof(enum ofputil_protocol) * CHAR_BIT; i++) {
1163 enum ofputil_protocol f = 1 << i;
1164
1165 if (f != cur_protocol
1166 && f & usable_protocols & allowed_protocols
1167 && try_set_protocol(*vconnp, f, &cur_protocol)) {
1168 return f;
1169 }
1170 }
1171
1172 usable_s = ofputil_protocols_to_string(usable_protocols);
1173 ovs_fatal(0, "switch does not support any of the usable flow "
1174 "formats (%s)", usable_s);
1175 }
1176
1177 static void
1178 ofctl_flow_mod__(const char *remote, struct ofputil_flow_mod *fms,
1179 size_t n_fms, enum ofputil_protocol usable_protocols)
1180 {
1181 enum ofputil_protocol protocol;
1182 struct vconn *vconn;
1183 size_t i;
1184
1185 protocol = open_vconn_for_flow_mod(remote, &vconn, usable_protocols);
1186
1187 for (i = 0; i < n_fms; i++) {
1188 struct ofputil_flow_mod *fm = &fms[i];
1189
1190 transact_noreply(vconn, ofputil_encode_flow_mod(fm, protocol));
1191 free(CONST_CAST(struct ofpact *, fm->ofpacts));
1192 }
1193 vconn_close(vconn);
1194 }
1195
1196 static void
1197 ofctl_flow_mod_file(int argc OVS_UNUSED, char *argv[], uint16_t command)
1198 {
1199 enum ofputil_protocol usable_protocols;
1200 struct ofputil_flow_mod *fms = NULL;
1201 size_t n_fms = 0;
1202 char *error;
1203
1204 error = parse_ofp_flow_mod_file(argv[2], command, &fms, &n_fms,
1205 &usable_protocols);
1206 if (error) {
1207 ovs_fatal(0, "%s", error);
1208 }
1209 ofctl_flow_mod__(argv[1], fms, n_fms, usable_protocols);
1210 free(fms);
1211 }
1212
1213 static void
1214 ofctl_flow_mod(int argc, char *argv[], uint16_t command)
1215 {
1216 if (argc > 2 && !strcmp(argv[2], "-")) {
1217 ofctl_flow_mod_file(argc, argv, command);
1218 } else {
1219 struct ofputil_flow_mod fm;
1220 char *error;
1221 enum ofputil_protocol usable_protocols;
1222
1223 error = parse_ofp_flow_mod_str(&fm, argc > 2 ? argv[2] : "", command,
1224 &usable_protocols);
1225 if (error) {
1226 ovs_fatal(0, "%s", error);
1227 }
1228 ofctl_flow_mod__(argv[1], &fm, 1, usable_protocols);
1229 }
1230 }
1231
1232 static void
1233 ofctl_add_flow(struct ovs_cmdl_context *ctx)
1234 {
1235 ofctl_flow_mod(ctx->argc, ctx->argv, OFPFC_ADD);
1236 }
1237
1238 static void
1239 ofctl_add_flows(struct ovs_cmdl_context *ctx)
1240 {
1241 ofctl_flow_mod_file(ctx->argc, ctx->argv, OFPFC_ADD);
1242 }
1243
1244 static void
1245 ofctl_mod_flows(struct ovs_cmdl_context *ctx)
1246 {
1247 ofctl_flow_mod(ctx->argc, ctx->argv, strict ? OFPFC_MODIFY_STRICT : OFPFC_MODIFY);
1248 }
1249
1250 static void
1251 ofctl_del_flows(struct ovs_cmdl_context *ctx)
1252 {
1253 ofctl_flow_mod(ctx->argc, ctx->argv, strict ? OFPFC_DELETE_STRICT : OFPFC_DELETE);
1254 }
1255
1256 static void
1257 set_packet_in_format(struct vconn *vconn,
1258 enum nx_packet_in_format packet_in_format)
1259 {
1260 struct ofpbuf *spif;
1261
1262 spif = ofputil_make_set_packet_in_format(vconn_get_version(vconn),
1263 packet_in_format);
1264 transact_noreply(vconn, spif);
1265 VLOG_DBG("%s: using user-specified packet in format %s",
1266 vconn_get_name(vconn),
1267 ofputil_packet_in_format_to_string(packet_in_format));
1268 }
1269
1270 static int
1271 monitor_set_invalid_ttl_to_controller(struct vconn *vconn)
1272 {
1273 struct ofp_switch_config config;
1274 enum ofp_config_flags flags;
1275
1276 fetch_switch_config(vconn, &config);
1277 flags = ntohs(config.flags);
1278 if (!(flags & OFPC_INVALID_TTL_TO_CONTROLLER)) {
1279 /* Set the invalid ttl config. */
1280 flags |= OFPC_INVALID_TTL_TO_CONTROLLER;
1281
1282 config.flags = htons(flags);
1283 set_switch_config(vconn, &config);
1284
1285 /* Then retrieve the configuration to see if it really took. OpenFlow
1286 * doesn't define error reporting for bad modes, so this is all we can
1287 * do. */
1288 fetch_switch_config(vconn, &config);
1289 flags = ntohs(config.flags);
1290 if (!(flags & OFPC_INVALID_TTL_TO_CONTROLLER)) {
1291 ovs_fatal(0, "setting invalid_ttl_to_controller failed (this "
1292 "switch probably doesn't support mode)");
1293 return -EOPNOTSUPP;
1294 }
1295 }
1296 return 0;
1297 }
1298
1299 /* Converts hex digits in 'hex' to an OpenFlow message in '*msgp'. The
1300 * caller must free '*msgp'. On success, returns NULL. On failure, returns
1301 * an error message and stores NULL in '*msgp'. */
1302 static const char *
1303 openflow_from_hex(const char *hex, struct ofpbuf **msgp)
1304 {
1305 struct ofp_header *oh;
1306 struct ofpbuf *msg;
1307
1308 msg = ofpbuf_new(strlen(hex) / 2);
1309 *msgp = NULL;
1310
1311 if (ofpbuf_put_hex(msg, hex, NULL)[0] != '\0') {
1312 ofpbuf_delete(msg);
1313 return "Trailing garbage in hex data";
1314 }
1315
1316 if (msg->size < sizeof(struct ofp_header)) {
1317 ofpbuf_delete(msg);
1318 return "Message too short for OpenFlow";
1319 }
1320
1321 oh = msg->data;
1322 if (msg->size != ntohs(oh->length)) {
1323 ofpbuf_delete(msg);
1324 return "Message size does not match length in OpenFlow header";
1325 }
1326
1327 *msgp = msg;
1328 return NULL;
1329 }
1330
1331 static void
1332 ofctl_send(struct unixctl_conn *conn, int argc,
1333 const char *argv[], void *vconn_)
1334 {
1335 struct vconn *vconn = vconn_;
1336 struct ds reply;
1337 bool ok;
1338 int i;
1339
1340 ok = true;
1341 ds_init(&reply);
1342 for (i = 1; i < argc; i++) {
1343 const char *error_msg;
1344 struct ofpbuf *msg;
1345 int error;
1346
1347 error_msg = openflow_from_hex(argv[i], &msg);
1348 if (error_msg) {
1349 ds_put_format(&reply, "%s\n", error_msg);
1350 ok = false;
1351 continue;
1352 }
1353
1354 fprintf(stderr, "send: ");
1355 ofp_print(stderr, msg->data, msg->size, verbosity);
1356
1357 error = vconn_send_block(vconn, msg);
1358 if (error) {
1359 ofpbuf_delete(msg);
1360 ds_put_format(&reply, "%s\n", ovs_strerror(error));
1361 ok = false;
1362 } else {
1363 ds_put_cstr(&reply, "sent\n");
1364 }
1365 }
1366
1367 if (ok) {
1368 unixctl_command_reply(conn, ds_cstr(&reply));
1369 } else {
1370 unixctl_command_reply_error(conn, ds_cstr(&reply));
1371 }
1372 ds_destroy(&reply);
1373 }
1374
1375 struct barrier_aux {
1376 struct vconn *vconn; /* OpenFlow connection for sending barrier. */
1377 struct unixctl_conn *conn; /* Connection waiting for barrier response. */
1378 };
1379
1380 static void
1381 ofctl_barrier(struct unixctl_conn *conn, int argc OVS_UNUSED,
1382 const char *argv[] OVS_UNUSED, void *aux_)
1383 {
1384 struct barrier_aux *aux = aux_;
1385 struct ofpbuf *msg;
1386 int error;
1387
1388 if (aux->conn) {
1389 unixctl_command_reply_error(conn, "already waiting for barrier reply");
1390 return;
1391 }
1392
1393 msg = ofputil_encode_barrier_request(vconn_get_version(aux->vconn));
1394 error = vconn_send_block(aux->vconn, msg);
1395 if (error) {
1396 ofpbuf_delete(msg);
1397 unixctl_command_reply_error(conn, ovs_strerror(error));
1398 } else {
1399 aux->conn = conn;
1400 }
1401 }
1402
1403 static void
1404 ofctl_set_output_file(struct unixctl_conn *conn, int argc OVS_UNUSED,
1405 const char *argv[], void *aux OVS_UNUSED)
1406 {
1407 int fd;
1408
1409 fd = open(argv[1], O_CREAT | O_TRUNC | O_WRONLY, 0666);
1410 if (fd < 0) {
1411 unixctl_command_reply_error(conn, ovs_strerror(errno));
1412 return;
1413 }
1414
1415 fflush(stderr);
1416 dup2(fd, STDERR_FILENO);
1417 close(fd);
1418 unixctl_command_reply(conn, NULL);
1419 }
1420
1421 static void
1422 ofctl_block(struct unixctl_conn *conn, int argc OVS_UNUSED,
1423 const char *argv[] OVS_UNUSED, void *blocked_)
1424 {
1425 bool *blocked = blocked_;
1426
1427 if (!*blocked) {
1428 *blocked = true;
1429 unixctl_command_reply(conn, NULL);
1430 } else {
1431 unixctl_command_reply(conn, "already blocking");
1432 }
1433 }
1434
1435 static void
1436 ofctl_unblock(struct unixctl_conn *conn, int argc OVS_UNUSED,
1437 const char *argv[] OVS_UNUSED, void *blocked_)
1438 {
1439 bool *blocked = blocked_;
1440
1441 if (*blocked) {
1442 *blocked = false;
1443 unixctl_command_reply(conn, NULL);
1444 } else {
1445 unixctl_command_reply(conn, "already unblocked");
1446 }
1447 }
1448
1449 /* Prints to stdout all of the messages received on 'vconn'.
1450 *
1451 * Iff 'reply_to_echo_requests' is true, sends a reply to any echo request
1452 * received on 'vconn'. */
1453 static void
1454 monitor_vconn(struct vconn *vconn, bool reply_to_echo_requests)
1455 {
1456 struct barrier_aux barrier_aux = { vconn, NULL };
1457 struct unixctl_server *server;
1458 bool exiting = false;
1459 bool blocked = false;
1460 int error;
1461
1462 daemon_save_fd(STDERR_FILENO);
1463 daemonize_start();
1464 error = unixctl_server_create(unixctl_path, &server);
1465 if (error) {
1466 ovs_fatal(error, "failed to create unixctl server");
1467 }
1468 unixctl_command_register("exit", "", 0, 0, ofctl_exit, &exiting);
1469 unixctl_command_register("ofctl/send", "OFMSG...", 1, INT_MAX,
1470 ofctl_send, vconn);
1471 unixctl_command_register("ofctl/barrier", "", 0, 0,
1472 ofctl_barrier, &barrier_aux);
1473 unixctl_command_register("ofctl/set-output-file", "FILE", 1, 1,
1474 ofctl_set_output_file, NULL);
1475
1476 unixctl_command_register("ofctl/block", "", 0, 0, ofctl_block, &blocked);
1477 unixctl_command_register("ofctl/unblock", "", 0, 0, ofctl_unblock,
1478 &blocked);
1479
1480 daemonize_complete();
1481
1482 for (;;) {
1483 struct ofpbuf *b;
1484 int retval;
1485
1486 unixctl_server_run(server);
1487
1488 while (!blocked) {
1489 enum ofptype type;
1490
1491 retval = vconn_recv(vconn, &b);
1492 if (retval == EAGAIN) {
1493 break;
1494 }
1495 run(retval, "vconn_recv");
1496
1497 if (timestamp) {
1498 char *s = xastrftime_msec("%Y-%m-%d %H:%M:%S.###: ",
1499 time_wall_msec(), true);
1500 fputs(s, stderr);
1501 free(s);
1502 }
1503
1504 ofptype_decode(&type, b->data);
1505 ofp_print(stderr, b->data, b->size, verbosity + 2);
1506 fflush(stderr);
1507
1508 switch ((int) type) {
1509 case OFPTYPE_BARRIER_REPLY:
1510 if (barrier_aux.conn) {
1511 unixctl_command_reply(barrier_aux.conn, NULL);
1512 barrier_aux.conn = NULL;
1513 }
1514 break;
1515
1516 case OFPTYPE_ECHO_REQUEST:
1517 if (reply_to_echo_requests) {
1518 struct ofpbuf *reply;
1519
1520 reply = make_echo_reply(b->data);
1521 retval = vconn_send_block(vconn, reply);
1522 if (retval) {
1523 ovs_fatal(retval, "failed to send echo reply");
1524 }
1525 }
1526 break;
1527 }
1528 ofpbuf_delete(b);
1529 }
1530
1531 if (exiting) {
1532 break;
1533 }
1534
1535 vconn_run(vconn);
1536 vconn_run_wait(vconn);
1537 if (!blocked) {
1538 vconn_recv_wait(vconn);
1539 }
1540 unixctl_server_wait(server);
1541 poll_block();
1542 }
1543 vconn_close(vconn);
1544 unixctl_server_destroy(server);
1545 }
1546
1547 static void
1548 ofctl_monitor(struct ovs_cmdl_context *ctx)
1549 {
1550 struct vconn *vconn;
1551 int i;
1552 enum ofputil_protocol usable_protocols;
1553
1554 open_vconn(ctx->argv[1], &vconn);
1555 for (i = 2; i < ctx->argc; i++) {
1556 const char *arg = ctx->argv[i];
1557
1558 if (isdigit((unsigned char) *arg)) {
1559 struct ofp_switch_config config;
1560
1561 fetch_switch_config(vconn, &config);
1562 config.miss_send_len = htons(atoi(arg));
1563 set_switch_config(vconn, &config);
1564 } else if (!strcmp(arg, "invalid_ttl")) {
1565 monitor_set_invalid_ttl_to_controller(vconn);
1566 } else if (!strncmp(arg, "watch:", 6)) {
1567 struct ofputil_flow_monitor_request fmr;
1568 struct ofpbuf *msg;
1569 char *error;
1570
1571 error = parse_flow_monitor_request(&fmr, arg + 6,
1572 &usable_protocols);
1573 if (error) {
1574 ovs_fatal(0, "%s", error);
1575 }
1576
1577 msg = ofpbuf_new(0);
1578 ofputil_append_flow_monitor_request(&fmr, msg);
1579 dump_stats_transaction(vconn, msg);
1580 fflush(stdout);
1581 } else {
1582 ovs_fatal(0, "%s: unsupported \"monitor\" argument", arg);
1583 }
1584 }
1585
1586 if (preferred_packet_in_format >= 0) {
1587 set_packet_in_format(vconn, preferred_packet_in_format);
1588 } else {
1589 enum ofp_version version = vconn_get_version(vconn);
1590
1591 switch (version) {
1592 case OFP10_VERSION: {
1593 struct ofpbuf *spif, *reply;
1594
1595 spif = ofputil_make_set_packet_in_format(vconn_get_version(vconn),
1596 NXPIF_NXM);
1597 run(vconn_transact_noreply(vconn, spif, &reply),
1598 "talking to %s", vconn_get_name(vconn));
1599 if (reply) {
1600 char *s = ofp_to_string(reply->data, reply->size, 2);
1601 VLOG_DBG("%s: failed to set packet in format to nxm, controller"
1602 " replied: %s. Falling back to the switch default.",
1603 vconn_get_name(vconn), s);
1604 free(s);
1605 ofpbuf_delete(reply);
1606 }
1607 break;
1608 }
1609 case OFP11_VERSION:
1610 case OFP12_VERSION:
1611 case OFP13_VERSION:
1612 case OFP14_VERSION:
1613 case OFP15_VERSION:
1614 break;
1615 default:
1616 OVS_NOT_REACHED();
1617 }
1618 }
1619
1620 monitor_vconn(vconn, true);
1621 }
1622
1623 static void
1624 ofctl_snoop(struct ovs_cmdl_context *ctx)
1625 {
1626 struct vconn *vconn;
1627
1628 open_vconn__(ctx->argv[1], SNOOP, &vconn);
1629 monitor_vconn(vconn, false);
1630 }
1631
1632 static void
1633 ofctl_dump_ports(struct ovs_cmdl_context *ctx)
1634 {
1635 struct ofpbuf *request;
1636 struct vconn *vconn;
1637 ofp_port_t port;
1638
1639 open_vconn(ctx->argv[1], &vconn);
1640 port = ctx->argc > 2 ? str_to_port_no(ctx->argv[1], ctx->argv[2]) : OFPP_ANY;
1641 request = ofputil_encode_dump_ports_request(vconn_get_version(vconn), port);
1642 dump_stats_transaction(vconn, request);
1643 vconn_close(vconn);
1644 }
1645
1646 static void
1647 ofctl_dump_ports_desc(struct ovs_cmdl_context *ctx)
1648 {
1649 struct ofpbuf *request;
1650 struct vconn *vconn;
1651 ofp_port_t port;
1652
1653 open_vconn(ctx->argv[1], &vconn);
1654 port = ctx->argc > 2 ? str_to_port_no(ctx->argv[1], ctx->argv[2]) : OFPP_ANY;
1655 request = ofputil_encode_port_desc_stats_request(vconn_get_version(vconn),
1656 port);
1657 dump_stats_transaction(vconn, request);
1658 vconn_close(vconn);
1659 }
1660
1661 static void
1662 ofctl_probe(struct ovs_cmdl_context *ctx)
1663 {
1664 struct ofpbuf *request;
1665 struct vconn *vconn;
1666 struct ofpbuf *reply;
1667
1668 open_vconn(ctx->argv[1], &vconn);
1669 request = make_echo_request(vconn_get_version(vconn));
1670 run(vconn_transact(vconn, request, &reply), "talking to %s", ctx->argv[1]);
1671 if (reply->size != sizeof(struct ofp_header)) {
1672 ovs_fatal(0, "reply does not match request");
1673 }
1674 ofpbuf_delete(reply);
1675 vconn_close(vconn);
1676 }
1677
1678 static void
1679 ofctl_packet_out(struct ovs_cmdl_context *ctx)
1680 {
1681 enum ofputil_protocol protocol;
1682 struct ofputil_packet_out po;
1683 struct ofpbuf ofpacts;
1684 struct vconn *vconn;
1685 char *error;
1686 int i;
1687 enum ofputil_protocol usable_protocols; /* XXX: Use in proto selection */
1688
1689 ofpbuf_init(&ofpacts, 64);
1690 error = ofpacts_parse_actions(ctx->argv[3], &ofpacts, &usable_protocols);
1691 if (error) {
1692 ovs_fatal(0, "%s", error);
1693 }
1694
1695 po.buffer_id = UINT32_MAX;
1696 po.in_port = str_to_port_no(ctx->argv[1], ctx->argv[2]);
1697 po.ofpacts = ofpacts.data;
1698 po.ofpacts_len = ofpacts.size;
1699
1700 protocol = open_vconn(ctx->argv[1], &vconn);
1701 for (i = 4; i < ctx->argc; i++) {
1702 struct dp_packet *packet;
1703 struct ofpbuf *opo;
1704 const char *error_msg;
1705
1706 error_msg = eth_from_hex(ctx->argv[i], &packet);
1707 if (error_msg) {
1708 ovs_fatal(0, "%s", error_msg);
1709 }
1710
1711 po.packet = dp_packet_data(packet);
1712 po.packet_len = dp_packet_size(packet);
1713 opo = ofputil_encode_packet_out(&po, protocol);
1714 transact_noreply(vconn, opo);
1715 dp_packet_delete(packet);
1716 }
1717 vconn_close(vconn);
1718 ofpbuf_uninit(&ofpacts);
1719 }
1720
1721 static void
1722 ofctl_mod_port(struct ovs_cmdl_context *ctx)
1723 {
1724 struct ofp_config_flag {
1725 const char *name; /* The flag's name. */
1726 enum ofputil_port_config bit; /* Bit to turn on or off. */
1727 bool on; /* Value to set the bit to. */
1728 };
1729 static const struct ofp_config_flag flags[] = {
1730 { "up", OFPUTIL_PC_PORT_DOWN, false },
1731 { "down", OFPUTIL_PC_PORT_DOWN, true },
1732 { "stp", OFPUTIL_PC_NO_STP, false },
1733 { "receive", OFPUTIL_PC_NO_RECV, false },
1734 { "receive-stp", OFPUTIL_PC_NO_RECV_STP, false },
1735 { "flood", OFPUTIL_PC_NO_FLOOD, false },
1736 { "forward", OFPUTIL_PC_NO_FWD, false },
1737 { "packet-in", OFPUTIL_PC_NO_PACKET_IN, false },
1738 };
1739
1740 const struct ofp_config_flag *flag;
1741 enum ofputil_protocol protocol;
1742 struct ofputil_port_mod pm;
1743 struct ofputil_phy_port pp;
1744 struct vconn *vconn;
1745 const char *command;
1746 bool not;
1747
1748 fetch_ofputil_phy_port(ctx->argv[1], ctx->argv[2], &pp);
1749
1750 pm.port_no = pp.port_no;
1751 memcpy(pm.hw_addr, pp.hw_addr, ETH_ADDR_LEN);
1752 pm.config = 0;
1753 pm.mask = 0;
1754 pm.advertise = 0;
1755
1756 if (!strncasecmp(ctx->argv[3], "no-", 3)) {
1757 command = ctx->argv[3] + 3;
1758 not = true;
1759 } else if (!strncasecmp(ctx->argv[3], "no", 2)) {
1760 command = ctx->argv[3] + 2;
1761 not = true;
1762 } else {
1763 command = ctx->argv[3];
1764 not = false;
1765 }
1766 for (flag = flags; flag < &flags[ARRAY_SIZE(flags)]; flag++) {
1767 if (!strcasecmp(command, flag->name)) {
1768 pm.mask = flag->bit;
1769 pm.config = flag->on ^ not ? flag->bit : 0;
1770 goto found;
1771 }
1772 }
1773 ovs_fatal(0, "unknown mod-port command '%s'", ctx->argv[3]);
1774
1775 found:
1776 protocol = open_vconn(ctx->argv[1], &vconn);
1777 transact_noreply(vconn, ofputil_encode_port_mod(&pm, protocol));
1778 vconn_close(vconn);
1779 }
1780
1781 static void
1782 ofctl_mod_table(struct ovs_cmdl_context *ctx)
1783 {
1784 enum ofputil_protocol protocol, usable_protocols;
1785 struct ofputil_table_mod tm;
1786 struct vconn *vconn;
1787 char *error;
1788 int i;
1789
1790 error = parse_ofp_table_mod(&tm, ctx->argv[2], ctx->argv[3], &usable_protocols);
1791 if (error) {
1792 ovs_fatal(0, "%s", error);
1793 }
1794
1795 protocol = open_vconn(ctx->argv[1], &vconn);
1796 if (!(protocol & usable_protocols)) {
1797 for (i = 0; i < sizeof(enum ofputil_protocol) * CHAR_BIT; i++) {
1798 enum ofputil_protocol f = 1 << i;
1799 if (f != protocol
1800 && f & usable_protocols
1801 && try_set_protocol(vconn, f, &protocol)) {
1802 protocol = f;
1803 break;
1804 }
1805 }
1806 }
1807
1808 if (!(protocol & usable_protocols)) {
1809 char *usable_s = ofputil_protocols_to_string(usable_protocols);
1810 ovs_fatal(0, "Switch does not support table mod message(%s)", usable_s);
1811 }
1812
1813 transact_noreply(vconn, ofputil_encode_table_mod(&tm, protocol));
1814 vconn_close(vconn);
1815 }
1816
1817 static void
1818 ofctl_get_frags(struct ovs_cmdl_context *ctx)
1819 {
1820 struct ofp_switch_config config;
1821 struct vconn *vconn;
1822
1823 open_vconn(ctx->argv[1], &vconn);
1824 fetch_switch_config(vconn, &config);
1825 puts(ofputil_frag_handling_to_string(ntohs(config.flags)));
1826 vconn_close(vconn);
1827 }
1828
1829 static void
1830 ofctl_set_frags(struct ovs_cmdl_context *ctx)
1831 {
1832 struct ofp_switch_config config;
1833 enum ofp_config_flags mode;
1834 struct vconn *vconn;
1835 ovs_be16 flags;
1836
1837 if (!ofputil_frag_handling_from_string(ctx->argv[2], &mode)) {
1838 ovs_fatal(0, "%s: unknown fragment handling mode", ctx->argv[2]);
1839 }
1840
1841 open_vconn(ctx->argv[1], &vconn);
1842 fetch_switch_config(vconn, &config);
1843 flags = htons(mode) | (config.flags & htons(~OFPC_FRAG_MASK));
1844 if (flags != config.flags) {
1845 /* Set the configuration. */
1846 config.flags = flags;
1847 set_switch_config(vconn, &config);
1848
1849 /* Then retrieve the configuration to see if it really took. OpenFlow
1850 * doesn't define error reporting for bad modes, so this is all we can
1851 * do. */
1852 fetch_switch_config(vconn, &config);
1853 if (flags != config.flags) {
1854 ovs_fatal(0, "%s: setting fragment handling mode failed (this "
1855 "switch probably doesn't support mode \"%s\")",
1856 ctx->argv[1], ofputil_frag_handling_to_string(mode));
1857 }
1858 }
1859 vconn_close(vconn);
1860 }
1861
1862 static void
1863 ofctl_ofp_parse(struct ovs_cmdl_context *ctx)
1864 {
1865 const char *filename = ctx->argv[1];
1866 struct ofpbuf b;
1867 FILE *file;
1868
1869 file = !strcmp(filename, "-") ? stdin : fopen(filename, "r");
1870 if (file == NULL) {
1871 ovs_fatal(errno, "%s: open", filename);
1872 }
1873
1874 ofpbuf_init(&b, 65536);
1875 for (;;) {
1876 struct ofp_header *oh;
1877 size_t length, tail_len;
1878 void *tail;
1879 size_t n;
1880
1881 ofpbuf_clear(&b);
1882 oh = ofpbuf_put_uninit(&b, sizeof *oh);
1883 n = fread(oh, 1, sizeof *oh, file);
1884 if (n == 0) {
1885 break;
1886 } else if (n < sizeof *oh) {
1887 ovs_fatal(0, "%s: unexpected end of file mid-message", filename);
1888 }
1889
1890 length = ntohs(oh->length);
1891 if (length < sizeof *oh) {
1892 ovs_fatal(0, "%s: %"PRIuSIZE"-byte message is too short for OpenFlow",
1893 filename, length);
1894 }
1895
1896 tail_len = length - sizeof *oh;
1897 tail = ofpbuf_put_uninit(&b, tail_len);
1898 n = fread(tail, 1, tail_len, file);
1899 if (n < tail_len) {
1900 ovs_fatal(0, "%s: unexpected end of file mid-message", filename);
1901 }
1902
1903 ofp_print(stdout, b.data, b.size, verbosity + 2);
1904 }
1905 ofpbuf_uninit(&b);
1906
1907 if (file != stdin) {
1908 fclose(file);
1909 }
1910 }
1911
1912 static bool
1913 is_openflow_port(ovs_be16 port_, char *ports[])
1914 {
1915 uint16_t port = ntohs(port_);
1916 if (ports[0]) {
1917 int i;
1918
1919 for (i = 0; ports[i]; i++) {
1920 if (port == atoi(ports[i])) {
1921 return true;
1922 }
1923 }
1924 return false;
1925 } else {
1926 return port == OFP_PORT || port == OFP_OLD_PORT;
1927 }
1928 }
1929
1930 static void
1931 ofctl_ofp_parse_pcap(struct ovs_cmdl_context *ctx)
1932 {
1933 struct tcp_reader *reader;
1934 FILE *file;
1935 int error;
1936 bool first;
1937
1938 file = ovs_pcap_open(ctx->argv[1], "rb");
1939 if (!file) {
1940 ovs_fatal(errno, "%s: open failed", ctx->argv[1]);
1941 }
1942
1943 reader = tcp_reader_open();
1944 first = true;
1945 for (;;) {
1946 struct dp_packet *packet;
1947 long long int when;
1948 struct flow flow;
1949
1950 error = ovs_pcap_read(file, &packet, &when);
1951 if (error) {
1952 break;
1953 }
1954 packet->md = PKT_METADATA_INITIALIZER(ODPP_NONE);
1955 flow_extract(packet, &flow);
1956 if (flow.dl_type == htons(ETH_TYPE_IP)
1957 && flow.nw_proto == IPPROTO_TCP
1958 && (is_openflow_port(flow.tp_src, ctx->argv + 2) ||
1959 is_openflow_port(flow.tp_dst, ctx->argv + 2))) {
1960 struct dp_packet *payload = tcp_reader_run(reader, &flow, packet);
1961 if (payload) {
1962 while (dp_packet_size(payload) >= sizeof(struct ofp_header)) {
1963 const struct ofp_header *oh;
1964 void *data = dp_packet_data(payload);
1965 int length;
1966
1967 /* Align OpenFlow on 8-byte boundary for safe access. */
1968 dp_packet_shift(payload, -((intptr_t) data & 7));
1969
1970 oh = dp_packet_data(payload);
1971 length = ntohs(oh->length);
1972 if (dp_packet_size(payload) < length) {
1973 break;
1974 }
1975
1976 if (!first) {
1977 putchar('\n');
1978 }
1979 first = false;
1980
1981 if (timestamp) {
1982 char *s = xastrftime_msec("%H:%M:%S.### ", when, true);
1983 fputs(s, stdout);
1984 free(s);
1985 }
1986
1987 printf(IP_FMT".%"PRIu16" > "IP_FMT".%"PRIu16":\n",
1988 IP_ARGS(flow.nw_src), ntohs(flow.tp_src),
1989 IP_ARGS(flow.nw_dst), ntohs(flow.tp_dst));
1990 ofp_print(stdout, dp_packet_data(payload), length, verbosity + 1);
1991 dp_packet_pull(payload, length);
1992 }
1993 }
1994 }
1995 dp_packet_delete(packet);
1996 }
1997 tcp_reader_close(reader);
1998 }
1999
2000 static void
2001 ofctl_ping(struct ovs_cmdl_context *ctx)
2002 {
2003 size_t max_payload = 65535 - sizeof(struct ofp_header);
2004 unsigned int payload;
2005 struct vconn *vconn;
2006 int i;
2007
2008 payload = ctx->argc > 2 ? atoi(ctx->argv[2]) : 64;
2009 if (payload > max_payload) {
2010 ovs_fatal(0, "payload must be between 0 and %"PRIuSIZE" bytes", max_payload);
2011 }
2012
2013 open_vconn(ctx->argv[1], &vconn);
2014 for (i = 0; i < 10; i++) {
2015 struct timeval start, end;
2016 struct ofpbuf *request, *reply;
2017 const struct ofp_header *rpy_hdr;
2018 enum ofptype type;
2019
2020 request = ofpraw_alloc(OFPRAW_OFPT_ECHO_REQUEST,
2021 vconn_get_version(vconn), payload);
2022 random_bytes(ofpbuf_put_uninit(request, payload), payload);
2023
2024 xgettimeofday(&start);
2025 run(vconn_transact(vconn, ofpbuf_clone(request), &reply), "transact");
2026 xgettimeofday(&end);
2027
2028 rpy_hdr = reply->data;
2029 if (ofptype_pull(&type, reply)
2030 || type != OFPTYPE_ECHO_REPLY
2031 || reply->size != payload
2032 || memcmp(request->msg, reply->msg, payload)) {
2033 printf("Reply does not match request. Request:\n");
2034 ofp_print(stdout, request, request->size, verbosity + 2);
2035 printf("Reply:\n");
2036 ofp_print(stdout, reply, reply->size, verbosity + 2);
2037 }
2038 printf("%"PRIu32" bytes from %s: xid=%08"PRIx32" time=%.1f ms\n",
2039 reply->size, ctx->argv[1], ntohl(rpy_hdr->xid),
2040 (1000*(double)(end.tv_sec - start.tv_sec))
2041 + (.001*(end.tv_usec - start.tv_usec)));
2042 ofpbuf_delete(request);
2043 ofpbuf_delete(reply);
2044 }
2045 vconn_close(vconn);
2046 }
2047
2048 static void
2049 ofctl_benchmark(struct ovs_cmdl_context *ctx)
2050 {
2051 size_t max_payload = 65535 - sizeof(struct ofp_header);
2052 struct timeval start, end;
2053 unsigned int payload_size, message_size;
2054 struct vconn *vconn;
2055 double duration;
2056 int count;
2057 int i;
2058
2059 payload_size = atoi(ctx->argv[2]);
2060 if (payload_size > max_payload) {
2061 ovs_fatal(0, "payload must be between 0 and %"PRIuSIZE" bytes", max_payload);
2062 }
2063 message_size = sizeof(struct ofp_header) + payload_size;
2064
2065 count = atoi(ctx->argv[3]);
2066
2067 printf("Sending %d packets * %u bytes (with header) = %u bytes total\n",
2068 count, message_size, count * message_size);
2069
2070 open_vconn(ctx->argv[1], &vconn);
2071 xgettimeofday(&start);
2072 for (i = 0; i < count; i++) {
2073 struct ofpbuf *request, *reply;
2074
2075 request = ofpraw_alloc(OFPRAW_OFPT_ECHO_REQUEST,
2076 vconn_get_version(vconn), payload_size);
2077 ofpbuf_put_zeros(request, payload_size);
2078 run(vconn_transact(vconn, request, &reply), "transact");
2079 ofpbuf_delete(reply);
2080 }
2081 xgettimeofday(&end);
2082 vconn_close(vconn);
2083
2084 duration = ((1000*(double)(end.tv_sec - start.tv_sec))
2085 + (.001*(end.tv_usec - start.tv_usec)));
2086 printf("Finished in %.1f ms (%.0f packets/s) (%.0f bytes/s)\n",
2087 duration, count / (duration / 1000.0),
2088 count * message_size / (duration / 1000.0));
2089 }
2090
2091 static void
2092 ofctl_group_mod__(const char *remote, struct ofputil_group_mod *gms,
2093 size_t n_gms, enum ofputil_protocol usable_protocols)
2094 {
2095 enum ofputil_protocol protocol;
2096 struct ofputil_group_mod *gm;
2097 enum ofp_version version;
2098 struct ofpbuf *request;
2099
2100 struct vconn *vconn;
2101 size_t i;
2102
2103 protocol = open_vconn_for_flow_mod(remote, &vconn, usable_protocols);
2104 version = ofputil_protocol_to_ofp_version(protocol);
2105
2106 for (i = 0; i < n_gms; i++) {
2107 gm = &gms[i];
2108 request = ofputil_encode_group_mod(version, gm);
2109 if (request) {
2110 transact_noreply(vconn, request);
2111 }
2112 }
2113
2114 vconn_close(vconn);
2115
2116 }
2117
2118
2119 static void
2120 ofctl_group_mod_file(int argc OVS_UNUSED, char *argv[], uint16_t command)
2121 {
2122 struct ofputil_group_mod *gms = NULL;
2123 enum ofputil_protocol usable_protocols;
2124 size_t n_gms = 0;
2125 char *error;
2126 int i;
2127
2128 error = parse_ofp_group_mod_file(argv[2], command, &gms, &n_gms,
2129 &usable_protocols);
2130 if (error) {
2131 ovs_fatal(0, "%s", error);
2132 }
2133 ofctl_group_mod__(argv[1], gms, n_gms, usable_protocols);
2134 for (i = 0; i < n_gms; i++) {
2135 ofputil_bucket_list_destroy(&gms[i].buckets);
2136 }
2137 free(gms);
2138 }
2139
2140 static void
2141 ofctl_group_mod(int argc, char *argv[], uint16_t command)
2142 {
2143 if (argc > 2 && !strcmp(argv[2], "-")) {
2144 ofctl_group_mod_file(argc, argv, command);
2145 } else {
2146 enum ofputil_protocol usable_protocols;
2147 struct ofputil_group_mod gm;
2148 char *error;
2149
2150 error = parse_ofp_group_mod_str(&gm, command, argc > 2 ? argv[2] : "",
2151 &usable_protocols);
2152 if (error) {
2153 ovs_fatal(0, "%s", error);
2154 }
2155 ofctl_group_mod__(argv[1], &gm, 1, usable_protocols);
2156 ofputil_bucket_list_destroy(&gm.buckets);
2157 }
2158 }
2159
2160 static void
2161 ofctl_add_group(struct ovs_cmdl_context *ctx)
2162 {
2163 ofctl_group_mod(ctx->argc, ctx->argv, OFPGC11_ADD);
2164 }
2165
2166 static void
2167 ofctl_add_groups(struct ovs_cmdl_context *ctx)
2168 {
2169 ofctl_group_mod_file(ctx->argc, ctx->argv, OFPGC11_ADD);
2170 }
2171
2172 static void
2173 ofctl_mod_group(struct ovs_cmdl_context *ctx)
2174 {
2175 ofctl_group_mod(ctx->argc, ctx->argv, OFPGC11_MODIFY);
2176 }
2177
2178 static void
2179 ofctl_del_groups(struct ovs_cmdl_context *ctx)
2180 {
2181 ofctl_group_mod(ctx->argc, ctx->argv, OFPGC11_DELETE);
2182 }
2183
2184 static void
2185 ofctl_insert_bucket(struct ovs_cmdl_context *ctx)
2186 {
2187 ofctl_group_mod(ctx->argc, ctx->argv, OFPGC15_INSERT_BUCKET);
2188 }
2189
2190 static void
2191 ofctl_remove_bucket(struct ovs_cmdl_context *ctx)
2192 {
2193 ofctl_group_mod(ctx->argc, ctx->argv, OFPGC15_REMOVE_BUCKET);
2194 }
2195
2196 static void
2197 ofctl_dump_group_stats(struct ovs_cmdl_context *ctx)
2198 {
2199 enum ofputil_protocol usable_protocols;
2200 struct ofputil_group_mod gm;
2201 struct ofpbuf *request;
2202 struct vconn *vconn;
2203 uint32_t group_id;
2204 char *error;
2205
2206 memset(&gm, 0, sizeof gm);
2207
2208 error = parse_ofp_group_mod_str(&gm, OFPGC11_DELETE,
2209 ctx->argc > 2 ? ctx->argv[2] : "",
2210 &usable_protocols);
2211 if (error) {
2212 ovs_fatal(0, "%s", error);
2213 }
2214
2215 group_id = gm.group_id;
2216
2217 open_vconn(ctx->argv[1], &vconn);
2218 request = ofputil_encode_group_stats_request(vconn_get_version(vconn),
2219 group_id);
2220 if (request) {
2221 dump_stats_transaction(vconn, request);
2222 }
2223
2224 vconn_close(vconn);
2225 }
2226
2227 static void
2228 ofctl_dump_group_desc(struct ovs_cmdl_context *ctx)
2229 {
2230 struct ofpbuf *request;
2231 struct vconn *vconn;
2232 uint32_t group_id;
2233
2234 open_vconn(ctx->argv[1], &vconn);
2235
2236 if (ctx->argc < 3 || !ofputil_group_from_string(ctx->argv[2], &group_id)) {
2237 group_id = OFPG11_ALL;
2238 }
2239
2240 request = ofputil_encode_group_desc_request(vconn_get_version(vconn),
2241 group_id);
2242 if (request) {
2243 dump_stats_transaction(vconn, request);
2244 }
2245
2246 vconn_close(vconn);
2247 }
2248
2249 static void
2250 ofctl_dump_group_features(struct ovs_cmdl_context *ctx)
2251 {
2252 struct ofpbuf *request;
2253 struct vconn *vconn;
2254
2255 open_vconn(ctx->argv[1], &vconn);
2256 request = ofputil_encode_group_features_request(vconn_get_version(vconn));
2257 if (request) {
2258 dump_stats_transaction(vconn, request);
2259 }
2260
2261 vconn_close(vconn);
2262 }
2263
2264 static void
2265 ofctl_help(struct ovs_cmdl_context *ctx OVS_UNUSED)
2266 {
2267 usage();
2268 }
2269
2270 static void
2271 ofctl_list_commands(struct ovs_cmdl_context *ctx OVS_UNUSED)
2272 {
2273 ovs_cmdl_print_commands(get_all_commands());
2274 }
2275 \f
2276 /* replace-flows and diff-flows commands. */
2277
2278 /* A flow table entry, possibly with two different versions. */
2279 struct fte {
2280 struct cls_rule rule; /* Within a "struct classifier". */
2281 struct fte_version *versions[2];
2282 };
2283
2284 /* One version of a Flow Table Entry. */
2285 struct fte_version {
2286 ovs_be64 cookie;
2287 uint16_t idle_timeout;
2288 uint16_t hard_timeout;
2289 uint16_t importance;
2290 uint16_t flags;
2291 struct ofpact *ofpacts;
2292 size_t ofpacts_len;
2293 };
2294
2295 /* Frees 'version' and the data that it owns. */
2296 static void
2297 fte_version_free(struct fte_version *version)
2298 {
2299 if (version) {
2300 free(CONST_CAST(struct ofpact *, version->ofpacts));
2301 free(version);
2302 }
2303 }
2304
2305 /* Returns true if 'a' and 'b' are the same, false if they differ.
2306 *
2307 * Ignores differences in 'flags' because there's no way to retrieve flags from
2308 * an OpenFlow switch. We have to assume that they are the same. */
2309 static bool
2310 fte_version_equals(const struct fte_version *a, const struct fte_version *b)
2311 {
2312 return (a->cookie == b->cookie
2313 && a->idle_timeout == b->idle_timeout
2314 && a->hard_timeout == b->hard_timeout
2315 && a->importance == b->importance
2316 && ofpacts_equal(a->ofpacts, a->ofpacts_len,
2317 b->ofpacts, b->ofpacts_len));
2318 }
2319
2320 /* Clears 's', then if 's' has a version 'index', formats 'fte' and version
2321 * 'index' into 's', followed by a new-line. */
2322 static void
2323 fte_version_format(const struct fte *fte, int index, struct ds *s)
2324 {
2325 const struct fte_version *version = fte->versions[index];
2326
2327 ds_clear(s);
2328 if (!version) {
2329 return;
2330 }
2331
2332 cls_rule_format(&fte->rule, s);
2333 if (version->cookie != htonll(0)) {
2334 ds_put_format(s, " cookie=0x%"PRIx64, ntohll(version->cookie));
2335 }
2336 if (version->idle_timeout != OFP_FLOW_PERMANENT) {
2337 ds_put_format(s, " idle_timeout=%"PRIu16, version->idle_timeout);
2338 }
2339 if (version->hard_timeout != OFP_FLOW_PERMANENT) {
2340 ds_put_format(s, " hard_timeout=%"PRIu16, version->hard_timeout);
2341 }
2342 if (version->importance != 0) {
2343 ds_put_format(s, " importance=%"PRIu16, version->importance);
2344 }
2345
2346 ds_put_cstr(s, " actions=");
2347 ofpacts_format(version->ofpacts, version->ofpacts_len, s);
2348
2349 ds_put_char(s, '\n');
2350 }
2351
2352 static struct fte *
2353 fte_from_cls_rule(const struct cls_rule *cls_rule)
2354 {
2355 return cls_rule ? CONTAINER_OF(cls_rule, struct fte, rule) : NULL;
2356 }
2357
2358 /* Frees 'fte' and its versions. */
2359 static void
2360 fte_free(struct fte *fte)
2361 {
2362 if (fte) {
2363 fte_version_free(fte->versions[0]);
2364 fte_version_free(fte->versions[1]);
2365 cls_rule_destroy(&fte->rule);
2366 free(fte);
2367 }
2368 }
2369
2370 /* Frees all of the FTEs within 'cls'. */
2371 static void
2372 fte_free_all(struct classifier *cls)
2373 {
2374 struct fte *fte;
2375
2376 classifier_defer(cls);
2377 CLS_FOR_EACH (fte, rule, cls) {
2378 classifier_remove(cls, &fte->rule);
2379 ovsrcu_postpone(fte_free, fte);
2380 }
2381 classifier_destroy(cls);
2382 }
2383
2384 /* Searches 'cls' for an FTE matching 'rule', inserting a new one if
2385 * necessary. Sets 'version' as the version of that rule with the given
2386 * 'index', replacing any existing version, if any.
2387 *
2388 * Takes ownership of 'version'. */
2389 static void
2390 fte_insert(struct classifier *cls, const struct match *match,
2391 int priority, struct fte_version *version, int index)
2392 {
2393 struct fte *old, *fte;
2394
2395 fte = xzalloc(sizeof *fte);
2396 cls_rule_init(&fte->rule, match, priority);
2397 fte->versions[index] = version;
2398
2399 old = fte_from_cls_rule(classifier_replace(cls, &fte->rule, NULL, 0));
2400 if (old) {
2401 fte->versions[!index] = old->versions[!index];
2402 old->versions[!index] = NULL;
2403
2404 ovsrcu_postpone(fte_free, old);
2405 }
2406 }
2407
2408 /* Reads the flows in 'filename' as flow table entries in 'cls' for the version
2409 * with the specified 'index'. Returns the flow formats able to represent the
2410 * flows that were read. */
2411 static enum ofputil_protocol
2412 read_flows_from_file(const char *filename, struct classifier *cls, int index)
2413 {
2414 enum ofputil_protocol usable_protocols;
2415 int line_number;
2416 struct ds s;
2417 FILE *file;
2418
2419 file = !strcmp(filename, "-") ? stdin : fopen(filename, "r");
2420 if (file == NULL) {
2421 ovs_fatal(errno, "%s: open", filename);
2422 }
2423
2424 ds_init(&s);
2425 usable_protocols = OFPUTIL_P_ANY;
2426 line_number = 0;
2427 classifier_defer(cls);
2428 while (!ds_get_preprocessed_line(&s, file, &line_number)) {
2429 struct fte_version *version;
2430 struct ofputil_flow_mod fm;
2431 char *error;
2432 enum ofputil_protocol usable;
2433
2434 error = parse_ofp_str(&fm, OFPFC_ADD, ds_cstr(&s), &usable);
2435 if (error) {
2436 ovs_fatal(0, "%s:%d: %s", filename, line_number, error);
2437 }
2438 usable_protocols &= usable;
2439
2440 version = xmalloc(sizeof *version);
2441 version->cookie = fm.new_cookie;
2442 version->idle_timeout = fm.idle_timeout;
2443 version->hard_timeout = fm.hard_timeout;
2444 version->importance = fm.importance;
2445 version->flags = fm.flags & (OFPUTIL_FF_SEND_FLOW_REM
2446 | OFPUTIL_FF_EMERG);
2447 version->ofpacts = fm.ofpacts;
2448 version->ofpacts_len = fm.ofpacts_len;
2449
2450 fte_insert(cls, &fm.match, fm.priority, version, index);
2451 }
2452 classifier_publish(cls);
2453 ds_destroy(&s);
2454
2455 if (file != stdin) {
2456 fclose(file);
2457 }
2458
2459 return usable_protocols;
2460 }
2461
2462 static bool
2463 recv_flow_stats_reply(struct vconn *vconn, ovs_be32 send_xid,
2464 struct ofpbuf **replyp,
2465 struct ofputil_flow_stats *fs, struct ofpbuf *ofpacts)
2466 {
2467 struct ofpbuf *reply = *replyp;
2468
2469 for (;;) {
2470 int retval;
2471 bool more;
2472
2473 /* Get a flow stats reply message, if we don't already have one. */
2474 if (!reply) {
2475 enum ofptype type;
2476 enum ofperr error;
2477
2478 do {
2479 run(vconn_recv_block(vconn, &reply),
2480 "OpenFlow packet receive failed");
2481 } while (((struct ofp_header *) reply->data)->xid != send_xid);
2482
2483 error = ofptype_decode(&type, reply->data);
2484 if (error || type != OFPTYPE_FLOW_STATS_REPLY) {
2485 ovs_fatal(0, "received bad reply: %s",
2486 ofp_to_string(reply->data, reply->size,
2487 verbosity + 1));
2488 }
2489 }
2490
2491 /* Pull an individual flow stats reply out of the message. */
2492 retval = ofputil_decode_flow_stats_reply(fs, reply, false, ofpacts);
2493 switch (retval) {
2494 case 0:
2495 *replyp = reply;
2496 return true;
2497
2498 case EOF:
2499 more = ofpmp_more(reply->header);
2500 ofpbuf_delete(reply);
2501 reply = NULL;
2502 if (!more) {
2503 *replyp = NULL;
2504 return false;
2505 }
2506 break;
2507
2508 default:
2509 ovs_fatal(0, "parse error in reply (%s)",
2510 ofperr_to_string(retval));
2511 }
2512 }
2513 }
2514
2515 /* Reads the OpenFlow flow table from 'vconn', which has currently active flow
2516 * format 'protocol', and adds them as flow table entries in 'cls' for the
2517 * version with the specified 'index'. */
2518 static void
2519 read_flows_from_switch(struct vconn *vconn,
2520 enum ofputil_protocol protocol,
2521 struct classifier *cls, int index)
2522 {
2523 struct ofputil_flow_stats_request fsr;
2524 struct ofputil_flow_stats fs;
2525 struct ofpbuf *request;
2526 struct ofpbuf ofpacts;
2527 struct ofpbuf *reply;
2528 ovs_be32 send_xid;
2529
2530 fsr.aggregate = false;
2531 match_init_catchall(&fsr.match);
2532 fsr.out_port = OFPP_ANY;
2533 fsr.table_id = 0xff;
2534 fsr.cookie = fsr.cookie_mask = htonll(0);
2535 request = ofputil_encode_flow_stats_request(&fsr, protocol);
2536 send_xid = ((struct ofp_header *) request->data)->xid;
2537 send_openflow_buffer(vconn, request);
2538
2539 reply = NULL;
2540 ofpbuf_init(&ofpacts, 0);
2541 classifier_defer(cls);
2542 while (recv_flow_stats_reply(vconn, send_xid, &reply, &fs, &ofpacts)) {
2543 struct fte_version *version;
2544
2545 version = xmalloc(sizeof *version);
2546 version->cookie = fs.cookie;
2547 version->idle_timeout = fs.idle_timeout;
2548 version->hard_timeout = fs.hard_timeout;
2549 version->importance = fs.importance;
2550 version->flags = 0;
2551 version->ofpacts_len = fs.ofpacts_len;
2552 version->ofpacts = xmemdup(fs.ofpacts, fs.ofpacts_len);
2553
2554 fte_insert(cls, &fs.match, fs.priority, version, index);
2555 }
2556 classifier_publish(cls);
2557 ofpbuf_uninit(&ofpacts);
2558 }
2559
2560 static void
2561 fte_make_flow_mod(const struct fte *fte, int index, uint16_t command,
2562 enum ofputil_protocol protocol, struct ovs_list *packets)
2563 {
2564 const struct fte_version *version = fte->versions[index];
2565 struct ofputil_flow_mod fm;
2566 struct ofpbuf *ofm;
2567
2568 minimatch_expand(&fte->rule.match, &fm.match);
2569 fm.priority = fte->rule.priority;
2570 fm.cookie = htonll(0);
2571 fm.cookie_mask = htonll(0);
2572 fm.new_cookie = version->cookie;
2573 fm.modify_cookie = true;
2574 fm.table_id = 0xff;
2575 fm.command = command;
2576 fm.idle_timeout = version->idle_timeout;
2577 fm.hard_timeout = version->hard_timeout;
2578 fm.importance = version->importance;
2579 fm.buffer_id = UINT32_MAX;
2580 fm.out_port = OFPP_ANY;
2581 fm.flags = version->flags;
2582 if (command == OFPFC_ADD || command == OFPFC_MODIFY ||
2583 command == OFPFC_MODIFY_STRICT) {
2584 fm.ofpacts = version->ofpacts;
2585 fm.ofpacts_len = version->ofpacts_len;
2586 } else {
2587 fm.ofpacts = NULL;
2588 fm.ofpacts_len = 0;
2589 }
2590 fm.delete_reason = OFPRR_DELETE;
2591
2592 ofm = ofputil_encode_flow_mod(&fm, protocol);
2593 list_push_back(packets, &ofm->list_node);
2594 }
2595
2596 static void
2597 ofctl_replace_flows(struct ovs_cmdl_context *ctx)
2598 {
2599 enum { FILE_IDX = 0, SWITCH_IDX = 1 };
2600 enum ofputil_protocol usable_protocols, protocol;
2601 struct classifier cls;
2602 struct ovs_list requests;
2603 struct vconn *vconn;
2604 struct fte *fte;
2605
2606 classifier_init(&cls, NULL);
2607 usable_protocols = read_flows_from_file(ctx->argv[2], &cls, FILE_IDX);
2608
2609 protocol = open_vconn(ctx->argv[1], &vconn);
2610 protocol = set_protocol_for_flow_dump(vconn, protocol, usable_protocols);
2611
2612 read_flows_from_switch(vconn, protocol, &cls, SWITCH_IDX);
2613
2614 list_init(&requests);
2615
2616 /* Delete flows that exist on the switch but not in the file. */
2617 CLS_FOR_EACH (fte, rule, &cls) {
2618 struct fte_version *file_ver = fte->versions[FILE_IDX];
2619 struct fte_version *sw_ver = fte->versions[SWITCH_IDX];
2620
2621 if (sw_ver && !file_ver) {
2622 fte_make_flow_mod(fte, SWITCH_IDX, OFPFC_DELETE_STRICT,
2623 protocol, &requests);
2624 }
2625 }
2626
2627 /* Add flows that exist in the file but not on the switch.
2628 * Update flows that exist in both places but differ. */
2629 CLS_FOR_EACH (fte, rule, &cls) {
2630 struct fte_version *file_ver = fte->versions[FILE_IDX];
2631 struct fte_version *sw_ver = fte->versions[SWITCH_IDX];
2632
2633 if (file_ver
2634 && (readd || !sw_ver || !fte_version_equals(sw_ver, file_ver))) {
2635 fte_make_flow_mod(fte, FILE_IDX, OFPFC_ADD, protocol, &requests);
2636 }
2637 }
2638 transact_multiple_noreply(vconn, &requests);
2639 vconn_close(vconn);
2640
2641 fte_free_all(&cls);
2642 }
2643
2644 static void
2645 read_flows_from_source(const char *source, struct classifier *cls, int index)
2646 {
2647 struct stat s;
2648
2649 if (source[0] == '/' || source[0] == '.'
2650 || (!strchr(source, ':') && !stat(source, &s))) {
2651 read_flows_from_file(source, cls, index);
2652 } else {
2653 enum ofputil_protocol protocol;
2654 struct vconn *vconn;
2655
2656 protocol = open_vconn(source, &vconn);
2657 protocol = set_protocol_for_flow_dump(vconn, protocol, OFPUTIL_P_ANY);
2658 read_flows_from_switch(vconn, protocol, cls, index);
2659 vconn_close(vconn);
2660 }
2661 }
2662
2663 static void
2664 ofctl_diff_flows(struct ovs_cmdl_context *ctx)
2665 {
2666 bool differences = false;
2667 struct classifier cls;
2668 struct ds a_s, b_s;
2669 struct fte *fte;
2670
2671 classifier_init(&cls, NULL);
2672 read_flows_from_source(ctx->argv[1], &cls, 0);
2673 read_flows_from_source(ctx->argv[2], &cls, 1);
2674
2675 ds_init(&a_s);
2676 ds_init(&b_s);
2677
2678 CLS_FOR_EACH (fte, rule, &cls) {
2679 struct fte_version *a = fte->versions[0];
2680 struct fte_version *b = fte->versions[1];
2681
2682 if (!a || !b || !fte_version_equals(a, b)) {
2683 fte_version_format(fte, 0, &a_s);
2684 fte_version_format(fte, 1, &b_s);
2685 if (strcmp(ds_cstr(&a_s), ds_cstr(&b_s))) {
2686 if (a_s.length) {
2687 printf("-%s", ds_cstr(&a_s));
2688 }
2689 if (b_s.length) {
2690 printf("+%s", ds_cstr(&b_s));
2691 }
2692 differences = true;
2693 }
2694 }
2695 }
2696
2697 ds_destroy(&a_s);
2698 ds_destroy(&b_s);
2699
2700 fte_free_all(&cls);
2701
2702 if (differences) {
2703 exit(2);
2704 }
2705 }
2706
2707 static void
2708 ofctl_meter_mod__(const char *bridge, const char *str, int command)
2709 {
2710 struct ofputil_meter_mod mm;
2711 struct vconn *vconn;
2712 enum ofputil_protocol protocol;
2713 enum ofputil_protocol usable_protocols;
2714 enum ofp_version version;
2715
2716 if (str) {
2717 char *error;
2718 error = parse_ofp_meter_mod_str(&mm, str, command, &usable_protocols);
2719 if (error) {
2720 ovs_fatal(0, "%s", error);
2721 }
2722 } else {
2723 usable_protocols = OFPUTIL_P_OF13_UP;
2724 mm.command = command;
2725 mm.meter.meter_id = OFPM13_ALL;
2726 }
2727
2728 protocol = open_vconn_for_flow_mod(bridge, &vconn, usable_protocols);
2729 version = ofputil_protocol_to_ofp_version(protocol);
2730 transact_noreply(vconn, ofputil_encode_meter_mod(version, &mm));
2731 vconn_close(vconn);
2732 }
2733
2734 static void
2735 ofctl_meter_request__(const char *bridge, const char *str,
2736 enum ofputil_meter_request_type type)
2737 {
2738 struct ofputil_meter_mod mm;
2739 struct vconn *vconn;
2740 enum ofputil_protocol usable_protocols;
2741 enum ofputil_protocol protocol;
2742 enum ofp_version version;
2743
2744 if (str) {
2745 char *error;
2746 error = parse_ofp_meter_mod_str(&mm, str, -1, &usable_protocols);
2747 if (error) {
2748 ovs_fatal(0, "%s", error);
2749 }
2750 } else {
2751 usable_protocols = OFPUTIL_P_OF13_UP;
2752 mm.meter.meter_id = OFPM13_ALL;
2753 }
2754
2755 protocol = open_vconn_for_flow_mod(bridge, &vconn, usable_protocols);
2756 version = ofputil_protocol_to_ofp_version(protocol);
2757 transact_noreply(vconn, ofputil_encode_meter_request(version,
2758 type,
2759 mm.meter.meter_id));
2760 vconn_close(vconn);
2761 }
2762
2763
2764 static void
2765 ofctl_add_meter(struct ovs_cmdl_context *ctx)
2766 {
2767 ofctl_meter_mod__(ctx->argv[1], ctx->argv[2], OFPMC13_ADD);
2768 }
2769
2770 static void
2771 ofctl_mod_meter(struct ovs_cmdl_context *ctx)
2772 {
2773 ofctl_meter_mod__(ctx->argv[1], ctx->argv[2], OFPMC13_MODIFY);
2774 }
2775
2776 static void
2777 ofctl_del_meters(struct ovs_cmdl_context *ctx)
2778 {
2779 ofctl_meter_mod__(ctx->argv[1], ctx->argc > 2 ? ctx->argv[2] : NULL, OFPMC13_DELETE);
2780 }
2781
2782 static void
2783 ofctl_dump_meters(struct ovs_cmdl_context *ctx)
2784 {
2785 ofctl_meter_request__(ctx->argv[1], ctx->argc > 2 ? ctx->argv[2] : NULL,
2786 OFPUTIL_METER_CONFIG);
2787 }
2788
2789 static void
2790 ofctl_meter_stats(struct ovs_cmdl_context *ctx)
2791 {
2792 ofctl_meter_request__(ctx->argv[1], ctx->argc > 2 ? ctx->argv[2] : NULL,
2793 OFPUTIL_METER_STATS);
2794 }
2795
2796 static void
2797 ofctl_meter_features(struct ovs_cmdl_context *ctx)
2798 {
2799 ofctl_meter_request__(ctx->argv[1], NULL, OFPUTIL_METER_FEATURES);
2800 }
2801
2802 \f
2803 /* Undocumented commands for unit testing. */
2804
2805 static void
2806 ofctl_parse_flows__(struct ofputil_flow_mod *fms, size_t n_fms,
2807 enum ofputil_protocol usable_protocols)
2808 {
2809 enum ofputil_protocol protocol = 0;
2810 char *usable_s;
2811 size_t i;
2812
2813 usable_s = ofputil_protocols_to_string(usable_protocols);
2814 printf("usable protocols: %s\n", usable_s);
2815 free(usable_s);
2816
2817 if (!(usable_protocols & allowed_protocols)) {
2818 ovs_fatal(0, "no usable protocol");
2819 }
2820 for (i = 0; i < sizeof(enum ofputil_protocol) * CHAR_BIT; i++) {
2821 protocol = 1 << i;
2822 if (protocol & usable_protocols & allowed_protocols) {
2823 break;
2824 }
2825 }
2826 ovs_assert(is_pow2(protocol));
2827
2828 printf("chosen protocol: %s\n", ofputil_protocol_to_string(protocol));
2829
2830 for (i = 0; i < n_fms; i++) {
2831 struct ofputil_flow_mod *fm = &fms[i];
2832 struct ofpbuf *msg;
2833
2834 msg = ofputil_encode_flow_mod(fm, protocol);
2835 ofp_print(stdout, msg->data, msg->size, verbosity);
2836 ofpbuf_delete(msg);
2837
2838 free(CONST_CAST(struct ofpact *, fm->ofpacts));
2839 }
2840 }
2841
2842 /* "parse-flow FLOW": parses the argument as a flow (like add-flow) and prints
2843 * it back to stdout. */
2844 static void
2845 ofctl_parse_flow(struct ovs_cmdl_context *ctx)
2846 {
2847 enum ofputil_protocol usable_protocols;
2848 struct ofputil_flow_mod fm;
2849 char *error;
2850
2851 error = parse_ofp_flow_mod_str(&fm, ctx->argv[1], OFPFC_ADD, &usable_protocols);
2852 if (error) {
2853 ovs_fatal(0, "%s", error);
2854 }
2855 ofctl_parse_flows__(&fm, 1, usable_protocols);
2856 }
2857
2858 /* "parse-flows FILENAME": reads the named file as a sequence of flows (like
2859 * add-flows) and prints each of the flows back to stdout. */
2860 static void
2861 ofctl_parse_flows(struct ovs_cmdl_context *ctx)
2862 {
2863 enum ofputil_protocol usable_protocols;
2864 struct ofputil_flow_mod *fms = NULL;
2865 size_t n_fms = 0;
2866 char *error;
2867
2868 error = parse_ofp_flow_mod_file(ctx->argv[1], OFPFC_ADD, &fms, &n_fms,
2869 &usable_protocols);
2870 if (error) {
2871 ovs_fatal(0, "%s", error);
2872 }
2873 ofctl_parse_flows__(fms, n_fms, usable_protocols);
2874 free(fms);
2875 }
2876
2877 static void
2878 ofctl_parse_nxm__(bool oxm, enum ofp_version version)
2879 {
2880 struct ds in;
2881
2882 ds_init(&in);
2883 while (!ds_get_test_line(&in, stdin)) {
2884 struct ofpbuf nx_match;
2885 struct match match;
2886 ovs_be64 cookie, cookie_mask;
2887 enum ofperr error;
2888 int match_len;
2889
2890 /* Convert string to nx_match. */
2891 ofpbuf_init(&nx_match, 0);
2892 if (oxm) {
2893 match_len = oxm_match_from_string(ds_cstr(&in), &nx_match);
2894 } else {
2895 match_len = nx_match_from_string(ds_cstr(&in), &nx_match);
2896 }
2897
2898 /* Convert nx_match to match. */
2899 if (strict) {
2900 if (oxm) {
2901 error = oxm_pull_match(&nx_match, &match);
2902 } else {
2903 error = nx_pull_match(&nx_match, match_len, &match,
2904 &cookie, &cookie_mask);
2905 }
2906 } else {
2907 if (oxm) {
2908 error = oxm_pull_match_loose(&nx_match, &match);
2909 } else {
2910 error = nx_pull_match_loose(&nx_match, match_len, &match,
2911 &cookie, &cookie_mask);
2912 }
2913 }
2914
2915
2916 if (!error) {
2917 char *out;
2918
2919 /* Convert match back to nx_match. */
2920 ofpbuf_uninit(&nx_match);
2921 ofpbuf_init(&nx_match, 0);
2922 if (oxm) {
2923 match_len = oxm_put_match(&nx_match, &match, version);
2924 out = oxm_match_to_string(&nx_match, match_len);
2925 } else {
2926 match_len = nx_put_match(&nx_match, &match,
2927 cookie, cookie_mask);
2928 out = nx_match_to_string(nx_match.data, match_len);
2929 }
2930
2931 puts(out);
2932 free(out);
2933
2934 if (verbosity > 0) {
2935 ovs_hex_dump(stdout, nx_match.data, nx_match.size, 0, false);
2936 }
2937 } else {
2938 printf("nx_pull_match() returned error %s\n",
2939 ofperr_get_name(error));
2940 }
2941
2942 ofpbuf_uninit(&nx_match);
2943 }
2944 ds_destroy(&in);
2945 }
2946
2947 /* "parse-nxm": reads a series of NXM nx_match specifications as strings from
2948 * stdin, does some internal fussing with them, and then prints them back as
2949 * strings on stdout. */
2950 static void
2951 ofctl_parse_nxm(struct ovs_cmdl_context *ctx OVS_UNUSED)
2952 {
2953 ofctl_parse_nxm__(false, 0);
2954 }
2955
2956 /* "parse-oxm VERSION": reads a series of OXM nx_match specifications as
2957 * strings from stdin, does some internal fussing with them, and then prints
2958 * them back as strings on stdout. VERSION must specify an OpenFlow version,
2959 * e.g. "OpenFlow12". */
2960 static void
2961 ofctl_parse_oxm(struct ovs_cmdl_context *ctx)
2962 {
2963 enum ofp_version version = ofputil_version_from_string(ctx->argv[1]);
2964 if (version < OFP12_VERSION) {
2965 ovs_fatal(0, "%s: not a valid version for OXM", ctx->argv[1]);
2966 }
2967
2968 ofctl_parse_nxm__(true, version);
2969 }
2970
2971 static void
2972 print_differences(const char *prefix,
2973 const void *a_, size_t a_len,
2974 const void *b_, size_t b_len)
2975 {
2976 const uint8_t *a = a_;
2977 const uint8_t *b = b_;
2978 size_t i;
2979
2980 for (i = 0; i < MIN(a_len, b_len); i++) {
2981 if (a[i] != b[i]) {
2982 printf("%s%2"PRIuSIZE": %02"PRIx8" -> %02"PRIx8"\n",
2983 prefix, i, a[i], b[i]);
2984 }
2985 }
2986 for (i = a_len; i < b_len; i++) {
2987 printf("%s%2"PRIuSIZE": (none) -> %02"PRIx8"\n", prefix, i, b[i]);
2988 }
2989 for (i = b_len; i < a_len; i++) {
2990 printf("%s%2"PRIuSIZE": %02"PRIx8" -> (none)\n", prefix, i, a[i]);
2991 }
2992 }
2993
2994 static void
2995 ofctl_parse_actions__(const char *version_s, bool instructions)
2996 {
2997 enum ofp_version version;
2998 struct ds in;
2999
3000 version = ofputil_version_from_string(version_s);
3001 if (!version) {
3002 ovs_fatal(0, "%s: not a valid OpenFlow version", version_s);
3003 }
3004
3005 ds_init(&in);
3006 while (!ds_get_preprocessed_line(&in, stdin, NULL)) {
3007 struct ofpbuf of_out;
3008 struct ofpbuf of_in;
3009 struct ofpbuf ofpacts;
3010 const char *table_id;
3011 char *actions;
3012 enum ofperr error;
3013 size_t size;
3014 struct ds s;
3015
3016 /* Parse table_id separated with the follow-up actions by ",", if
3017 * any. */
3018 actions = ds_cstr(&in);
3019 table_id = NULL;
3020 if (strstr(actions, ",")) {
3021 table_id = strsep(&actions, ",");
3022 }
3023
3024 /* Parse hex bytes. */
3025 ofpbuf_init(&of_in, 0);
3026 if (ofpbuf_put_hex(&of_in, actions, NULL)[0] != '\0') {
3027 ovs_fatal(0, "Trailing garbage in hex data");
3028 }
3029
3030 /* Convert to ofpacts. */
3031 ofpbuf_init(&ofpacts, 0);
3032 size = of_in.size;
3033 error = (instructions
3034 ? ofpacts_pull_openflow_instructions
3035 : ofpacts_pull_openflow_actions)(
3036 &of_in, of_in.size, version, &ofpacts);
3037 if (!error && instructions) {
3038 /* Verify actions, enforce consistency. */
3039 enum ofputil_protocol protocol;
3040 struct flow flow;
3041
3042 memset(&flow, 0, sizeof flow);
3043 protocol = ofputil_protocols_from_ofp_version(version);
3044 error = ofpacts_check_consistency(ofpacts.data, ofpacts.size,
3045 &flow, OFPP_MAX,
3046 table_id ? atoi(table_id) : 0,
3047 255, protocol);
3048 }
3049 if (error) {
3050 printf("bad %s %s: %s\n\n",
3051 version_s, instructions ? "instructions" : "actions",
3052 ofperr_get_name(error));
3053 ofpbuf_uninit(&ofpacts);
3054 ofpbuf_uninit(&of_in);
3055 continue;
3056 }
3057 ofpbuf_push_uninit(&of_in, size);
3058
3059 /* Print cls_rule. */
3060 ds_init(&s);
3061 ds_put_cstr(&s, "actions=");
3062 ofpacts_format(ofpacts.data, ofpacts.size, &s);
3063 puts(ds_cstr(&s));
3064 ds_destroy(&s);
3065
3066 /* Convert back to ofp10 actions and print differences from input. */
3067 ofpbuf_init(&of_out, 0);
3068 if (instructions) {
3069 ofpacts_put_openflow_instructions(ofpacts.data, ofpacts.size,
3070 &of_out, version);
3071 } else {
3072 ofpacts_put_openflow_actions(ofpacts.data, ofpacts.size,
3073 &of_out, version);
3074 }
3075
3076 print_differences("", of_in.data, of_in.size,
3077 of_out.data, of_out.size);
3078 putchar('\n');
3079
3080 ofpbuf_uninit(&ofpacts);
3081 ofpbuf_uninit(&of_in);
3082 ofpbuf_uninit(&of_out);
3083 }
3084 ds_destroy(&in);
3085 }
3086
3087 /* "parse-actions VERSION": reads a series of action specifications for the
3088 * given OpenFlow VERSION as hex bytes from stdin, converts them to ofpacts,
3089 * prints them as strings on stdout, and then converts them back to hex bytes
3090 * and prints any differences from the input. */
3091 static void
3092 ofctl_parse_actions(struct ovs_cmdl_context *ctx)
3093 {
3094 ofctl_parse_actions__(ctx->argv[1], false);
3095 }
3096
3097 /* "parse-actions VERSION": reads a series of instruction specifications for
3098 * the given OpenFlow VERSION as hex bytes from stdin, converts them to
3099 * ofpacts, prints them as strings on stdout, and then converts them back to
3100 * hex bytes and prints any differences from the input. */
3101 static void
3102 ofctl_parse_instructions(struct ovs_cmdl_context *ctx)
3103 {
3104 ofctl_parse_actions__(ctx->argv[1], true);
3105 }
3106
3107 /* "parse-ofp10-match": reads a series of ofp10_match specifications as hex
3108 * bytes from stdin, converts them to cls_rules, prints them as strings on
3109 * stdout, and then converts them back to hex bytes and prints any differences
3110 * from the input.
3111 *
3112 * The input hex bytes may contain "x"s to represent "don't-cares", bytes whose
3113 * values are ignored in the input and will be set to zero when OVS converts
3114 * them back to hex bytes. ovs-ofctl actually sets "x"s to random bits when
3115 * it does the conversion to hex, to ensure that in fact they are ignored. */
3116 static void
3117 ofctl_parse_ofp10_match(struct ovs_cmdl_context *ctx OVS_UNUSED)
3118 {
3119 struct ds expout;
3120 struct ds in;
3121
3122 ds_init(&in);
3123 ds_init(&expout);
3124 while (!ds_get_preprocessed_line(&in, stdin, NULL)) {
3125 struct ofpbuf match_in, match_expout;
3126 struct ofp10_match match_out;
3127 struct ofp10_match match_normal;
3128 struct match match;
3129 char *p;
3130
3131 /* Parse hex bytes to use for expected output. */
3132 ds_clear(&expout);
3133 ds_put_cstr(&expout, ds_cstr(&in));
3134 for (p = ds_cstr(&expout); *p; p++) {
3135 if (*p == 'x') {
3136 *p = '0';
3137 }
3138 }
3139 ofpbuf_init(&match_expout, 0);
3140 if (ofpbuf_put_hex(&match_expout, ds_cstr(&expout), NULL)[0] != '\0') {
3141 ovs_fatal(0, "Trailing garbage in hex data");
3142 }
3143 if (match_expout.size != sizeof(struct ofp10_match)) {
3144 ovs_fatal(0, "Input is %"PRIu32" bytes, expected %"PRIuSIZE,
3145 match_expout.size, sizeof(struct ofp10_match));
3146 }
3147
3148 /* Parse hex bytes for input. */
3149 for (p = ds_cstr(&in); *p; p++) {
3150 if (*p == 'x') {
3151 *p = "0123456789abcdef"[random_uint32() & 0xf];
3152 }
3153 }
3154 ofpbuf_init(&match_in, 0);
3155 if (ofpbuf_put_hex(&match_in, ds_cstr(&in), NULL)[0] != '\0') {
3156 ovs_fatal(0, "Trailing garbage in hex data");
3157 }
3158 if (match_in.size != sizeof(struct ofp10_match)) {
3159 ovs_fatal(0, "Input is %"PRIu32" bytes, expected %"PRIuSIZE,
3160 match_in.size, sizeof(struct ofp10_match));
3161 }
3162
3163 /* Convert to cls_rule and print. */
3164 ofputil_match_from_ofp10_match(match_in.data, &match);
3165 match_print(&match);
3166
3167 /* Convert back to ofp10_match and print differences from input. */
3168 ofputil_match_to_ofp10_match(&match, &match_out);
3169 print_differences("", match_expout.data, match_expout.size,
3170 &match_out, sizeof match_out);
3171
3172 /* Normalize, then convert and compare again. */
3173 ofputil_normalize_match(&match);
3174 ofputil_match_to_ofp10_match(&match, &match_normal);
3175 print_differences("normal: ", &match_out, sizeof match_out,
3176 &match_normal, sizeof match_normal);
3177 putchar('\n');
3178
3179 ofpbuf_uninit(&match_in);
3180 ofpbuf_uninit(&match_expout);
3181 }
3182 ds_destroy(&in);
3183 ds_destroy(&expout);
3184 }
3185
3186 /* "parse-ofp11-match": reads a series of ofp11_match specifications as hex
3187 * bytes from stdin, converts them to "struct match"es, prints them as strings
3188 * on stdout, and then converts them back to hex bytes and prints any
3189 * differences from the input. */
3190 static void
3191 ofctl_parse_ofp11_match(struct ovs_cmdl_context *ctx OVS_UNUSED)
3192 {
3193 struct ds in;
3194
3195 ds_init(&in);
3196 while (!ds_get_preprocessed_line(&in, stdin, NULL)) {
3197 struct ofpbuf match_in;
3198 struct ofp11_match match_out;
3199 struct match match;
3200 enum ofperr error;
3201
3202 /* Parse hex bytes. */
3203 ofpbuf_init(&match_in, 0);
3204 if (ofpbuf_put_hex(&match_in, ds_cstr(&in), NULL)[0] != '\0') {
3205 ovs_fatal(0, "Trailing garbage in hex data");
3206 }
3207 if (match_in.size != sizeof(struct ofp11_match)) {
3208 ovs_fatal(0, "Input is %"PRIu32" bytes, expected %"PRIuSIZE,
3209 match_in.size, sizeof(struct ofp11_match));
3210 }
3211
3212 /* Convert to match. */
3213 error = ofputil_match_from_ofp11_match(match_in.data, &match);
3214 if (error) {
3215 printf("bad ofp11_match: %s\n\n", ofperr_get_name(error));
3216 ofpbuf_uninit(&match_in);
3217 continue;
3218 }
3219
3220 /* Print match. */
3221 match_print(&match);
3222
3223 /* Convert back to ofp11_match and print differences from input. */
3224 ofputil_match_to_ofp11_match(&match, &match_out);
3225
3226 print_differences("", match_in.data, match_in.size,
3227 &match_out, sizeof match_out);
3228 putchar('\n');
3229
3230 ofpbuf_uninit(&match_in);
3231 }
3232 ds_destroy(&in);
3233 }
3234
3235 /* "parse-pcap PCAP": read packets from PCAP and print their flows. */
3236 static void
3237 ofctl_parse_pcap(struct ovs_cmdl_context *ctx)
3238 {
3239 FILE *pcap;
3240
3241 pcap = ovs_pcap_open(ctx->argv[1], "rb");
3242 if (!pcap) {
3243 ovs_fatal(errno, "%s: open failed", ctx->argv[1]);
3244 }
3245
3246 for (;;) {
3247 struct dp_packet *packet;
3248 struct flow flow;
3249 int error;
3250
3251 error = ovs_pcap_read(pcap, &packet, NULL);
3252 if (error == EOF) {
3253 break;
3254 } else if (error) {
3255 ovs_fatal(error, "%s: read failed", ctx->argv[1]);
3256 }
3257
3258 packet->md = PKT_METADATA_INITIALIZER(ODPP_NONE);
3259 flow_extract(packet, &flow);
3260 flow_print(stdout, &flow);
3261 putchar('\n');
3262 dp_packet_delete(packet);
3263 }
3264 }
3265
3266 /* "check-vlan VLAN_TCI VLAN_TCI_MASK": converts the specified vlan_tci and
3267 * mask values to and from various formats and prints the results. */
3268 static void
3269 ofctl_check_vlan(struct ovs_cmdl_context *ctx)
3270 {
3271 struct match match;
3272
3273 char *string_s;
3274 struct ofputil_flow_mod fm;
3275
3276 struct ofpbuf nxm;
3277 struct match nxm_match;
3278 int nxm_match_len;
3279 char *nxm_s;
3280
3281 struct ofp10_match of10_raw;
3282 struct match of10_match;
3283
3284 struct ofp11_match of11_raw;
3285 struct match of11_match;
3286
3287 enum ofperr error;
3288 char *error_s;
3289
3290 enum ofputil_protocol usable_protocols; /* Unused for now. */
3291
3292 match_init_catchall(&match);
3293 match.flow.vlan_tci = htons(strtoul(ctx->argv[1], NULL, 16));
3294 match.wc.masks.vlan_tci = htons(strtoul(ctx->argv[2], NULL, 16));
3295
3296 /* Convert to and from string. */
3297 string_s = match_to_string(&match, OFP_DEFAULT_PRIORITY);
3298 printf("%s -> ", string_s);
3299 fflush(stdout);
3300 error_s = parse_ofp_str(&fm, -1, string_s, &usable_protocols);
3301 if (error_s) {
3302 ovs_fatal(0, "%s", error_s);
3303 }
3304 printf("%04"PRIx16"/%04"PRIx16"\n",
3305 ntohs(fm.match.flow.vlan_tci),
3306 ntohs(fm.match.wc.masks.vlan_tci));
3307 free(string_s);
3308
3309 /* Convert to and from NXM. */
3310 ofpbuf_init(&nxm, 0);
3311 nxm_match_len = nx_put_match(&nxm, &match, htonll(0), htonll(0));
3312 nxm_s = nx_match_to_string(nxm.data, nxm_match_len);
3313 error = nx_pull_match(&nxm, nxm_match_len, &nxm_match, NULL, NULL);
3314 printf("NXM: %s -> ", nxm_s);
3315 if (error) {
3316 printf("%s\n", ofperr_to_string(error));
3317 } else {
3318 printf("%04"PRIx16"/%04"PRIx16"\n",
3319 ntohs(nxm_match.flow.vlan_tci),
3320 ntohs(nxm_match.wc.masks.vlan_tci));
3321 }
3322 free(nxm_s);
3323 ofpbuf_uninit(&nxm);
3324
3325 /* Convert to and from OXM. */
3326 ofpbuf_init(&nxm, 0);
3327 nxm_match_len = oxm_put_match(&nxm, &match, OFP12_VERSION);
3328 nxm_s = oxm_match_to_string(&nxm, nxm_match_len);
3329 error = oxm_pull_match(&nxm, &nxm_match);
3330 printf("OXM: %s -> ", nxm_s);
3331 if (error) {
3332 printf("%s\n", ofperr_to_string(error));
3333 } else {
3334 uint16_t vid = ntohs(nxm_match.flow.vlan_tci) &
3335 (VLAN_VID_MASK | VLAN_CFI);
3336 uint16_t mask = ntohs(nxm_match.wc.masks.vlan_tci) &
3337 (VLAN_VID_MASK | VLAN_CFI);
3338
3339 printf("%04"PRIx16"/%04"PRIx16",", vid, mask);
3340 if (vid && vlan_tci_to_pcp(nxm_match.wc.masks.vlan_tci)) {
3341 printf("%02"PRIx8"\n", vlan_tci_to_pcp(nxm_match.flow.vlan_tci));
3342 } else {
3343 printf("--\n");
3344 }
3345 }
3346 free(nxm_s);
3347 ofpbuf_uninit(&nxm);
3348
3349 /* Convert to and from OpenFlow 1.0. */
3350 ofputil_match_to_ofp10_match(&match, &of10_raw);
3351 ofputil_match_from_ofp10_match(&of10_raw, &of10_match);
3352 printf("OF1.0: %04"PRIx16"/%d,%02"PRIx8"/%d -> %04"PRIx16"/%04"PRIx16"\n",
3353 ntohs(of10_raw.dl_vlan),
3354 (of10_raw.wildcards & htonl(OFPFW10_DL_VLAN)) != 0,
3355 of10_raw.dl_vlan_pcp,
3356 (of10_raw.wildcards & htonl(OFPFW10_DL_VLAN_PCP)) != 0,
3357 ntohs(of10_match.flow.vlan_tci),
3358 ntohs(of10_match.wc.masks.vlan_tci));
3359
3360 /* Convert to and from OpenFlow 1.1. */
3361 ofputil_match_to_ofp11_match(&match, &of11_raw);
3362 ofputil_match_from_ofp11_match(&of11_raw, &of11_match);
3363 printf("OF1.1: %04"PRIx16"/%d,%02"PRIx8"/%d -> %04"PRIx16"/%04"PRIx16"\n",
3364 ntohs(of11_raw.dl_vlan),
3365 (of11_raw.wildcards & htonl(OFPFW11_DL_VLAN)) != 0,
3366 of11_raw.dl_vlan_pcp,
3367 (of11_raw.wildcards & htonl(OFPFW11_DL_VLAN_PCP)) != 0,
3368 ntohs(of11_match.flow.vlan_tci),
3369 ntohs(of11_match.wc.masks.vlan_tci));
3370 }
3371
3372 /* "print-error ENUM": Prints the type and code of ENUM for every OpenFlow
3373 * version. */
3374 static void
3375 ofctl_print_error(struct ovs_cmdl_context *ctx)
3376 {
3377 enum ofperr error;
3378 int version;
3379
3380 error = ofperr_from_name(ctx->argv[1]);
3381 if (!error) {
3382 ovs_fatal(0, "unknown error \"%s\"", ctx->argv[1]);
3383 }
3384
3385 for (version = 0; version <= UINT8_MAX; version++) {
3386 const char *name = ofperr_domain_get_name(version);
3387 if (name) {
3388 int vendor = ofperr_get_vendor(error, version);
3389 int type = ofperr_get_type(error, version);
3390 int code = ofperr_get_code(error, version);
3391
3392 if (vendor != -1 || type != -1 || code != -1) {
3393 printf("%s: vendor %#x, type %d, code %d\n",
3394 name, vendor, type, code);
3395 }
3396 }
3397 }
3398 }
3399
3400 /* "encode-error-reply ENUM REQUEST": Encodes an error reply to REQUEST for the
3401 * error named ENUM and prints the error reply in hex. */
3402 static void
3403 ofctl_encode_error_reply(struct ovs_cmdl_context *ctx)
3404 {
3405 const struct ofp_header *oh;
3406 struct ofpbuf request, *reply;
3407 enum ofperr error;
3408
3409 error = ofperr_from_name(ctx->argv[1]);
3410 if (!error) {
3411 ovs_fatal(0, "unknown error \"%s\"", ctx->argv[1]);
3412 }
3413
3414 ofpbuf_init(&request, 0);
3415 if (ofpbuf_put_hex(&request, ctx->argv[2], NULL)[0] != '\0') {
3416 ovs_fatal(0, "Trailing garbage in hex data");
3417 }
3418 if (request.size < sizeof(struct ofp_header)) {
3419 ovs_fatal(0, "Request too short");
3420 }
3421
3422 oh = request.data;
3423 if (request.size != ntohs(oh->length)) {
3424 ovs_fatal(0, "Request size inconsistent");
3425 }
3426
3427 reply = ofperr_encode_reply(error, request.data);
3428 ofpbuf_uninit(&request);
3429
3430 ovs_hex_dump(stdout, reply->data, reply->size, 0, false);
3431 ofpbuf_delete(reply);
3432 }
3433
3434 /* "ofp-print HEXSTRING [VERBOSITY]": Converts the hex digits in HEXSTRING into
3435 * binary data, interpreting them as an OpenFlow message, and prints the
3436 * OpenFlow message on stdout, at VERBOSITY (level 2 by default).
3437 *
3438 * Alternative usage: "ofp-print [VERBOSITY] - < HEXSTRING_FILE", where
3439 * HEXSTRING_FILE contains the HEXSTRING. */
3440 static void
3441 ofctl_ofp_print(struct ovs_cmdl_context *ctx)
3442 {
3443 struct ofpbuf packet;
3444 char *buffer;
3445 int verbosity = 2;
3446 struct ds line;
3447
3448 ds_init(&line);
3449
3450 if (!strcmp(ctx->argv[ctx->argc-1], "-")) {
3451 if (ds_get_line(&line, stdin)) {
3452 VLOG_FATAL("Failed to read stdin");
3453 }
3454
3455 buffer = line.string;
3456 verbosity = ctx->argc > 2 ? atoi(ctx->argv[1]) : verbosity;
3457 } else if (ctx->argc > 2) {
3458 buffer = ctx->argv[1];
3459 verbosity = atoi(ctx->argv[2]);
3460 } else {
3461 buffer = ctx->argv[1];
3462 }
3463
3464 ofpbuf_init(&packet, strlen(buffer) / 2);
3465 if (ofpbuf_put_hex(&packet, buffer, NULL)[0] != '\0') {
3466 ovs_fatal(0, "trailing garbage following hex bytes");
3467 }
3468 ofp_print(stdout, packet.data, packet.size, verbosity);
3469 ofpbuf_uninit(&packet);
3470 ds_destroy(&line);
3471 }
3472
3473 /* "encode-hello BITMAP...": Encodes each BITMAP as an OpenFlow hello message
3474 * and dumps each message in hex. */
3475 static void
3476 ofctl_encode_hello(struct ovs_cmdl_context *ctx)
3477 {
3478 uint32_t bitmap = strtol(ctx->argv[1], NULL, 0);
3479 struct ofpbuf *hello;
3480
3481 hello = ofputil_encode_hello(bitmap);
3482 ovs_hex_dump(stdout, hello->data, hello->size, 0, false);
3483 ofp_print(stdout, hello->data, hello->size, verbosity);
3484 ofpbuf_delete(hello);
3485 }
3486
3487 static const struct ovs_cmdl_command all_commands[] = {
3488 { "show", "switch",
3489 1, 1, ofctl_show },
3490 { "monitor", "switch [misslen] [invalid_ttl] [watch:[...]]",
3491 1, 3, ofctl_monitor },
3492 { "snoop", "switch",
3493 1, 1, ofctl_snoop },
3494 { "dump-desc", "switch",
3495 1, 1, ofctl_dump_desc },
3496 { "dump-tables", "switch",
3497 1, 1, ofctl_dump_tables },
3498 { "dump-table-features", "switch",
3499 1, 1, ofctl_dump_table_features },
3500 { "dump-flows", "switch",
3501 1, 2, ofctl_dump_flows },
3502 { "dump-aggregate", "switch",
3503 1, 2, ofctl_dump_aggregate },
3504 { "queue-stats", "switch [port [queue]]",
3505 1, 3, ofctl_queue_stats },
3506 { "queue-get-config", "switch port",
3507 2, 2, ofctl_queue_get_config },
3508 { "add-flow", "switch flow",
3509 2, 2, ofctl_add_flow },
3510 { "add-flows", "switch file",
3511 2, 2, ofctl_add_flows },
3512 { "mod-flows", "switch flow",
3513 2, 2, ofctl_mod_flows },
3514 { "del-flows", "switch [flow]",
3515 1, 2, ofctl_del_flows },
3516 { "replace-flows", "switch file",
3517 2, 2, ofctl_replace_flows },
3518 { "diff-flows", "source1 source2",
3519 2, 2, ofctl_diff_flows },
3520 { "add-meter", "switch meter",
3521 2, 2, ofctl_add_meter },
3522 { "mod-meter", "switch meter",
3523 2, 2, ofctl_mod_meter },
3524 { "del-meter", "switch meter",
3525 2, 2, ofctl_del_meters },
3526 { "del-meters", "switch",
3527 1, 1, ofctl_del_meters },
3528 { "dump-meter", "switch meter",
3529 2, 2, ofctl_dump_meters },
3530 { "dump-meters", "switch",
3531 1, 1, ofctl_dump_meters },
3532 { "meter-stats", "switch [meter]",
3533 1, 2, ofctl_meter_stats },
3534 { "meter-features", "switch",
3535 1, 1, ofctl_meter_features },
3536 { "packet-out", "switch in_port actions packet...",
3537 4, INT_MAX, ofctl_packet_out },
3538 { "dump-ports", "switch [port]",
3539 1, 2, ofctl_dump_ports },
3540 { "dump-ports-desc", "switch [port]",
3541 1, 2, ofctl_dump_ports_desc },
3542 { "mod-port", "switch iface act",
3543 3, 3, ofctl_mod_port },
3544 { "mod-table", "switch mod",
3545 3, 3, ofctl_mod_table },
3546 { "get-frags", "switch",
3547 1, 1, ofctl_get_frags },
3548 { "set-frags", "switch frag_mode",
3549 2, 2, ofctl_set_frags },
3550 { "probe", "target",
3551 1, 1, ofctl_probe },
3552 { "ping", "target [n]",
3553 1, 2, ofctl_ping },
3554 { "benchmark", "target n count",
3555 3, 3, ofctl_benchmark },
3556
3557 { "ofp-parse", "file",
3558 1, 1, ofctl_ofp_parse },
3559 { "ofp-parse-pcap", "pcap",
3560 1, INT_MAX, ofctl_ofp_parse_pcap },
3561
3562 { "add-group", "switch group",
3563 1, 2, ofctl_add_group },
3564 { "add-groups", "switch file",
3565 1, 2, ofctl_add_groups },
3566 { "mod-group", "switch group",
3567 1, 2, ofctl_mod_group },
3568 { "del-groups", "switch [group]",
3569 1, 2, ofctl_del_groups },
3570 { "insert-buckets", "switch [group]",
3571 1, 2, ofctl_insert_bucket },
3572 { "remove-buckets", "switch [group]",
3573 1, 2, ofctl_remove_bucket },
3574 { "dump-groups", "switch [group]",
3575 1, 2, ofctl_dump_group_desc },
3576 { "dump-group-stats", "switch [group]",
3577 1, 2, ofctl_dump_group_stats },
3578 { "dump-group-features", "switch",
3579 1, 1, ofctl_dump_group_features },
3580 { "help", NULL, 0, INT_MAX, ofctl_help },
3581 { "list-commands", NULL, 0, INT_MAX, ofctl_list_commands },
3582
3583 /* Undocumented commands for testing. */
3584 { "parse-flow", NULL, 1, 1, ofctl_parse_flow },
3585 { "parse-flows", NULL, 1, 1, ofctl_parse_flows },
3586 { "parse-nx-match", NULL, 0, 0, ofctl_parse_nxm },
3587 { "parse-nxm", NULL, 0, 0, ofctl_parse_nxm },
3588 { "parse-oxm", NULL, 1, 1, ofctl_parse_oxm },
3589 { "parse-actions", NULL, 1, 1, ofctl_parse_actions },
3590 { "parse-instructions", NULL, 1, 1, ofctl_parse_instructions },
3591 { "parse-ofp10-match", NULL, 0, 0, ofctl_parse_ofp10_match },
3592 { "parse-ofp11-match", NULL, 0, 0, ofctl_parse_ofp11_match },
3593 { "parse-pcap", NULL, 1, 1, ofctl_parse_pcap },
3594 { "check-vlan", NULL, 2, 2, ofctl_check_vlan },
3595 { "print-error", NULL, 1, 1, ofctl_print_error },
3596 { "encode-error-reply", NULL, 2, 2, ofctl_encode_error_reply },
3597 { "ofp-print", NULL, 1, 2, ofctl_ofp_print },
3598 { "encode-hello", NULL, 1, 1, ofctl_encode_hello },
3599
3600 { NULL, NULL, 0, 0, NULL },
3601 };
3602
3603 static const struct ovs_cmdl_command *get_all_commands(void)
3604 {
3605 return all_commands;
3606 }