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829a7d02 1/*
8917f72c 2 * Copyright (c) 2008, 2009, 2010, 2011, 2012, 2013, 2014 Nicira, Inc.
829a7d02
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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/* Based on sample implementation in 802.1D-1998. Above copyright and license
18 * applies to all modifications. */
19
20#include <config.h>
21
22#include "stp.h"
23#include <sys/types.h>
24#include <netinet/in.h>
25#include <arpa/inet.h>
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26#include <inttypes.h>
27#include <stdlib.h>
28#include "byte-order.h"
f23d157c 29#include "connectivity.h"
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30#include "ofpbuf.h"
31#include "packets.h"
f23d157c 32#include "seq.h"
fe4a02e4 33#include "unixctl.h"
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34#include "util.h"
35#include "vlog.h"
36
37VLOG_DEFINE_THIS_MODULE(stp);
38
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39static struct vlog_rate_limit stp_rl = VLOG_RATE_LIMIT_INIT(60, 60);
40
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41#define STP_PROTOCOL_ID 0x0000
42#define STP_PROTOCOL_VERSION 0x00
43#define STP_TYPE_CONFIG 0x00
44#define STP_TYPE_TCN 0x80
45
13b6bae6 46OVS_PACKED(
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47struct stp_bpdu_header {
48 ovs_be16 protocol_id; /* STP_PROTOCOL_ID. */
49 uint8_t protocol_version; /* STP_PROTOCOL_VERSION. */
50 uint8_t bpdu_type; /* One of STP_TYPE_*. */
13b6bae6 51});
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52BUILD_ASSERT_DECL(sizeof(struct stp_bpdu_header) == 4);
53
54enum stp_config_bpdu_flags {
55 STP_CONFIG_TOPOLOGY_CHANGE_ACK = 0x80,
56 STP_CONFIG_TOPOLOGY_CHANGE = 0x01
57};
58
13b6bae6 59OVS_PACKED(
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60struct stp_config_bpdu {
61 struct stp_bpdu_header header; /* Type STP_TYPE_CONFIG. */
62 uint8_t flags; /* STP_CONFIG_* flags. */
63 ovs_be64 root_id; /* 8.5.1.1: Bridge believed to be root. */
64 ovs_be32 root_path_cost; /* 8.5.1.2: Cost of path to root. */
65 ovs_be64 bridge_id; /* 8.5.1.3: ID of transmitting bridge. */
66 ovs_be16 port_id; /* 8.5.1.4: Port transmitting the BPDU. */
67 ovs_be16 message_age; /* 8.5.1.5: Age of BPDU at tx time. */
68 ovs_be16 max_age; /* 8.5.1.6: Timeout for received data. */
69 ovs_be16 hello_time; /* 8.5.1.7: Time between BPDU generation. */
70 ovs_be16 forward_delay; /* 8.5.1.8: State progression delay. */
13b6bae6 71});
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72BUILD_ASSERT_DECL(sizeof(struct stp_config_bpdu) == 35);
73
13b6bae6 74OVS_PACKED(
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75struct stp_tcn_bpdu {
76 struct stp_bpdu_header header; /* Type STP_TYPE_TCN. */
13b6bae6 77});
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78BUILD_ASSERT_DECL(sizeof(struct stp_tcn_bpdu) == 4);
79
80struct stp_timer {
81 bool active; /* Timer in use? */
82 int value; /* Current value of timer, counting up. */
83};
84
85struct stp_port {
86 struct stp *stp;
11306274 87 char *port_name; /* Human-readable name for log messages. */
3310b570 88 void *aux; /* Auxiliary data the user may retrieve. */
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89 int port_id; /* 8.5.5.1: Unique port identifier. */
90 enum stp_state state; /* 8.5.5.2: Current state. */
91 int path_cost; /* 8.5.5.3: Cost of tx/rx on this port. */
92 stp_identifier designated_root; /* 8.5.5.4. */
93 int designated_cost; /* 8.5.5.5: Path cost to root on port. */
94 stp_identifier designated_bridge; /* 8.5.5.6. */
95 int designated_port; /* 8.5.5.7: Port to send config msgs on. */
96 bool topology_change_ack; /* 8.5.5.8: Flag for next config BPDU. */
97 bool config_pending; /* 8.5.5.9: Send BPDU when hold expires? */
98 bool change_detection_enabled; /* 8.5.5.10: Detect topology changes? */
99
100 struct stp_timer message_age_timer; /* 8.5.6.1: Age of received info. */
101 struct stp_timer forward_delay_timer; /* 8.5.6.2: State change timer. */
102 struct stp_timer hold_timer; /* 8.5.6.3: BPDU rate limit timer. */
103
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104 int tx_count; /* Number of BPDUs transmitted. */
105 int rx_count; /* Number of valid BPDUs received. */
106 int error_count; /* Number of bad BPDUs received. */
107
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108 bool state_changed;
109};
110
111struct stp {
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112 struct list node; /* Node in all_stps list. */
113
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114 /* Static bridge data. */
115 char *name; /* Human-readable name for log messages. */
116 stp_identifier bridge_id; /* 8.5.3.7: This bridge. */
117 int max_age; /* 8.5.3.4: Time to drop received data. */
118 int hello_time; /* 8.5.3.5: Time between sending BPDUs. */
119 int forward_delay; /* 8.5.3.6: Delay between state changes. */
120 int bridge_max_age; /* 8.5.3.8: max_age when we're root. */
121 int bridge_hello_time; /* 8.5.3.9: hello_time as root. */
122 int bridge_forward_delay; /* 8.5.3.10: forward_delay as root. */
123 int rq_max_age; /* User-requested max age, in ms. */
124 int rq_hello_time; /* User-requested hello time, in ms. */
125 int rq_forward_delay; /* User-requested forward delay, in ms. */
126 int elapsed_remainder; /* Left-over msecs from last stp_tick(). */
127
128 /* Dynamic bridge data. */
129 stp_identifier designated_root; /* 8.5.3.1: Bridge believed to be root. */
130 unsigned int root_path_cost; /* 8.5.3.2: Cost of path to root. */
131 struct stp_port *root_port; /* 8.5.3.3: Lowest cost port to root. */
132 bool topology_change_detected; /* 8.5.3.11: Detected a topology change? */
133 bool topology_change; /* 8.5.3.12: Received topology change? */
134
135 /* Bridge timers. */
136 struct stp_timer hello_timer; /* 8.5.4.1: Hello timer. */
137 struct stp_timer tcn_timer; /* 8.5.4.2: Topology change timer. */
138 struct stp_timer topology_change_timer; /* 8.5.4.3. */
139
140 /* Ports. */
141 struct stp_port ports[STP_MAX_PORTS];
142
143 /* Interface to client. */
6ae50723 144 bool fdb_needs_flush; /* MAC learning tables needs flushing. */
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145 struct stp_port *first_changed_port;
146 void (*send_bpdu)(struct ofpbuf *bpdu, int port_no, void *aux);
147 void *aux;
bd54dbcd 148
37bec3d3 149 struct ovs_refcount ref_cnt;
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150};
151
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152static struct ovs_mutex mutex;
153static struct list all_stps__ = LIST_INITIALIZER(&all_stps__);
344e21d4 154static struct list *const all_stps OVS_GUARDED_BY(mutex) = &all_stps__;
fe4a02e4 155
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156#define FOR_EACH_ENABLED_PORT(PORT, STP) \
157 for ((PORT) = stp_next_enabled_port((STP), (STP)->ports); \
158 (PORT); \
159 (PORT) = stp_next_enabled_port((STP), (PORT) + 1))
160static struct stp_port *
161stp_next_enabled_port(const struct stp *stp, const struct stp_port *port)
bd3950dd 162 OVS_REQUIRES(mutex)
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163{
164 for (; port < &stp->ports[ARRAY_SIZE(stp->ports)]; port++) {
165 if (port->state != STP_DISABLED) {
ebc56baa 166 return CONST_CAST(struct stp_port *, port);
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167 }
168 }
169 return NULL;
170}
171
172#define MESSAGE_AGE_INCREMENT 1
173
bd3950dd 174static void stp_transmit_config(struct stp_port *) OVS_REQUIRES(mutex);
829a7d02 175static bool stp_supersedes_port_info(const struct stp_port *,
bd54dbcd 176 const struct stp_config_bpdu *)
bd3950dd 177 OVS_REQUIRES(mutex);
829a7d02 178static void stp_record_config_information(struct stp_port *,
bd54dbcd 179 const struct stp_config_bpdu *)
bd3950dd 180 OVS_REQUIRES(mutex);
829a7d02 181static void stp_record_config_timeout_values(struct stp *,
bd54dbcd 182 const struct stp_config_bpdu *)
bd3950dd 183 OVS_REQUIRES(mutex);
bd54dbcd 184static bool stp_is_designated_port(const struct stp_port *)
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185 OVS_REQUIRES(mutex);
186static void stp_config_bpdu_generation(struct stp *) OVS_REQUIRES(mutex);
187static void stp_transmit_tcn(struct stp *) OVS_REQUIRES(mutex);
188static void stp_configuration_update(struct stp *) OVS_REQUIRES(mutex);
829a7d02 189static bool stp_supersedes_root(const struct stp_port *root,
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190 const struct stp_port *) OVS_REQUIRES(mutex);
191static void stp_root_selection(struct stp *) OVS_REQUIRES(mutex);
192static void stp_designated_port_selection(struct stp *) OVS_REQUIRES(mutex);
bd54dbcd 193static void stp_become_designated_port(struct stp_port *)
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194 OVS_REQUIRES(mutex);
195static void stp_port_state_selection(struct stp *) OVS_REQUIRES(mutex);
196static void stp_make_forwarding(struct stp_port *) OVS_REQUIRES(mutex);
197static void stp_make_blocking(struct stp_port *) OVS_REQUIRES(mutex);
bd54dbcd 198static void stp_set_port_state(struct stp_port *, enum stp_state)
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199 OVS_REQUIRES(mutex);
200static void stp_topology_change_detection(struct stp *) OVS_REQUIRES(mutex);
bd54dbcd 201static void stp_topology_change_acknowledged(struct stp *)
bd3950dd 202 OVS_REQUIRES(mutex);
bd54dbcd 203static void stp_acknowledge_topology_change(struct stp_port *)
bd3950dd 204 OVS_REQUIRES(mutex);
829a7d02 205static void stp_received_config_bpdu(struct stp *, struct stp_port *,
bd54dbcd 206 const struct stp_config_bpdu *)
bd3950dd 207 OVS_REQUIRES(mutex);
bd54dbcd 208static void stp_received_tcn_bpdu(struct stp *, struct stp_port *)
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209 OVS_REQUIRES(mutex);
210static void stp_hello_timer_expiry(struct stp *) OVS_REQUIRES(mutex);
bd54dbcd 211static void stp_message_age_timer_expiry(struct stp_port *)
bd3950dd 212 OVS_REQUIRES(mutex);
bd54dbcd 213static bool stp_is_designated_for_some_port(const struct stp *)
bd3950dd 214 OVS_REQUIRES(mutex);
bd54dbcd 215static void stp_forward_delay_timer_expiry(struct stp_port *)
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216 OVS_REQUIRES(mutex);
217static void stp_tcn_timer_expiry(struct stp *) OVS_REQUIRES(mutex);
bd54dbcd 218static void stp_topology_change_timer_expiry(struct stp *)
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219 OVS_REQUIRES(mutex);
220static void stp_hold_timer_expiry(struct stp_port *) OVS_REQUIRES(mutex);
bd54dbcd 221static void stp_initialize_port(struct stp_port *, enum stp_state)
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222 OVS_REQUIRES(mutex);
223static void stp_become_root_bridge(struct stp *) OVS_REQUIRES(mutex);
224static void stp_update_bridge_timers(struct stp *) OVS_REQUIRES(mutex);
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225
226static int clamp(int x, int min, int max);
227static int ms_to_timer(int ms);
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228static int timer_to_ms(int timer);
229static void stp_start_timer(struct stp_timer *, int value);
230static void stp_stop_timer(struct stp_timer *);
231static bool stp_timer_expired(struct stp_timer *, int elapsed, int timeout);
232
bd54dbcd 233static void stp_send_bpdu(struct stp_port *, const void *, size_t)
bd3950dd 234 OVS_REQUIRES(mutex);
fe4a02e4
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235static void stp_unixctl_tcn(struct unixctl_conn *, int argc,
236 const char *argv[], void *aux);
237
238void
239stp_init(void)
240{
241 unixctl_command_register("stp/tcn", "[bridge]", 0, 1, stp_unixctl_tcn,
242 NULL);
243}
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244
245/* Creates and returns a new STP instance that initially has no ports enabled.
246 *
247 * 'bridge_id' should be a 48-bit MAC address as returned by
248 * eth_addr_to_uint64(). 'bridge_id' may also have a priority value in its top
249 * 16 bits; if those bits are set to 0, STP_DEFAULT_BRIDGE_PRIORITY is used.
250 * (This priority may be changed with stp_set_bridge_priority().)
251 *
252 * When the bridge needs to send out a BPDU, it calls 'send_bpdu'. This
253 * callback may be called from stp_tick() or stp_received_bpdu(). The
254 * arguments to 'send_bpdu' are an STP BPDU encapsulated in 'bpdu',
255 * the spanning tree port number 'port_no' that should transmit the
256 * packet, and auxiliary data to be passed to the callback in 'aux'.
257 */
258struct stp *
259stp_create(const char *name, stp_identifier bridge_id,
260 void (*send_bpdu)(struct ofpbuf *bpdu, int port_no, void *aux),
261 void *aux)
262{
bd54dbcd 263 static struct ovsthread_once once = OVSTHREAD_ONCE_INITIALIZER;
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264 struct stp *stp;
265 struct stp_port *p;
266
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267 if (ovsthread_once_start(&once)) {
268 /* We need a recursive mutex because stp_send_bpdu() could loop back
269 * into the stp module through a patch port. This happens
270 * intentionally as part of the unit tests. Ideally we'd ditch
271 * the call back function, but for now this is what we have. */
834d6caf 272 ovs_mutex_init_recursive(&mutex);
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273 ovsthread_once_done(&once);
274 }
275
276 ovs_mutex_lock(&mutex);
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277 stp = xzalloc(sizeof *stp);
278 stp->name = xstrdup(name);
279 stp->bridge_id = bridge_id;
280 if (!(stp->bridge_id >> 48)) {
281 stp->bridge_id |= (uint64_t) STP_DEFAULT_BRIDGE_PRIORITY << 48;
282 }
283
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284 stp->rq_max_age = STP_DEFAULT_MAX_AGE;
285 stp->rq_hello_time = STP_DEFAULT_HELLO_TIME;
286 stp->rq_forward_delay = STP_DEFAULT_FWD_DELAY;
829a7d02
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287 stp_update_bridge_timers(stp);
288 stp->max_age = stp->bridge_max_age;
289 stp->hello_time = stp->bridge_hello_time;
290 stp->forward_delay = stp->bridge_forward_delay;
291
292 stp->designated_root = stp->bridge_id;
293 stp->root_path_cost = 0;
294 stp->root_port = NULL;
295 stp->topology_change_detected = false;
296 stp->topology_change = false;
297
298 stp_stop_timer(&stp->tcn_timer);
299 stp_stop_timer(&stp->topology_change_timer);
300 stp_start_timer(&stp->hello_timer, 0);
301
302 stp->send_bpdu = send_bpdu;
303 stp->aux = aux;
304
305 stp->first_changed_port = &stp->ports[ARRAY_SIZE(stp->ports)];
306 for (p = stp->ports; p < &stp->ports[ARRAY_SIZE(stp->ports)]; p++) {
307 p->stp = stp;
308 p->port_id = (stp_port_no(p) + 1) | (STP_DEFAULT_PORT_PRIORITY << 8);
309 p->path_cost = 19; /* Recommended default for 100 Mb/s link. */
310 stp_initialize_port(p, STP_DISABLED);
311 }
37bec3d3 312 ovs_refcount_init(&stp->ref_cnt);
bd54dbcd
EJ
313
314 list_push_back(all_stps, &stp->node);
315 ovs_mutex_unlock(&mutex);
316 return stp;
317}
318
319struct stp *
320stp_ref(const struct stp *stp_)
321{
322 struct stp *stp = CONST_CAST(struct stp *, stp_);
323 if (stp) {
37bec3d3 324 ovs_refcount_ref(&stp->ref_cnt);
bd54dbcd 325 }
829a7d02
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326 return stp;
327}
328
329/* Destroys 'stp'. */
330void
bd54dbcd 331stp_unref(struct stp *stp)
829a7d02 332{
24f83812 333 if (stp && ovs_refcount_unref_relaxed(&stp->ref_cnt) == 1) {
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334 size_t i;
335
bd54dbcd 336 ovs_mutex_lock(&mutex);
fe4a02e4 337 list_remove(&stp->node);
bd54dbcd 338 ovs_mutex_unlock(&mutex);
829a7d02 339 free(stp->name);
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340
341 for (i = 0; i < STP_MAX_PORTS; i++) {
342 free(stp->ports[i].port_name);
343 }
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344 free(stp);
345 }
346}
347
348/* Runs 'stp' given that 'ms' milliseconds have passed. */
349void
350stp_tick(struct stp *stp, int ms)
351{
352 struct stp_port *p;
353 int elapsed;
354
bd54dbcd 355 ovs_mutex_lock(&mutex);
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356 /* Convert 'ms' to STP timer ticks. Preserve any leftover milliseconds
357 * from previous stp_tick() calls so that we don't lose STP ticks when we
358 * are called too frequently. */
359 ms = clamp(ms, 0, INT_MAX - 1000) + stp->elapsed_remainder;
360 elapsed = ms_to_timer(ms);
ba25773f 361 stp->elapsed_remainder = ms - timer_to_ms(elapsed);
829a7d02 362 if (!elapsed) {
bd54dbcd 363 goto out;
829a7d02
JP
364 }
365
366 if (stp_timer_expired(&stp->hello_timer, elapsed, stp->hello_time)) {
367 stp_hello_timer_expiry(stp);
368 }
369 if (stp_timer_expired(&stp->tcn_timer, elapsed, stp->bridge_hello_time)) {
370 stp_tcn_timer_expiry(stp);
371 }
372 if (stp_timer_expired(&stp->topology_change_timer, elapsed,
373 stp->max_age + stp->forward_delay)) {
374 stp_topology_change_timer_expiry(stp);
375 }
376 FOR_EACH_ENABLED_PORT (p, stp) {
377 if (stp_timer_expired(&p->message_age_timer, elapsed, stp->max_age)) {
378 stp_message_age_timer_expiry(p);
379 }
380 }
381 FOR_EACH_ENABLED_PORT (p, stp) {
382 if (stp_timer_expired(&p->forward_delay_timer, elapsed,
383 stp->forward_delay)) {
384 stp_forward_delay_timer_expiry(p);
385 }
386 if (stp_timer_expired(&p->hold_timer, elapsed, ms_to_timer(1000))) {
387 stp_hold_timer_expiry(p);
388 }
389 }
bd54dbcd
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390
391out:
392 ovs_mutex_unlock(&mutex);
829a7d02
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393}
394
395static void
396set_bridge_id(struct stp *stp, stp_identifier new_bridge_id)
bd3950dd 397 OVS_REQUIRES(mutex)
829a7d02
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398{
399 if (new_bridge_id != stp->bridge_id) {
400 bool root;
401 struct stp_port *p;
402
403 root = stp_is_root_bridge(stp);
404 FOR_EACH_ENABLED_PORT (p, stp) {
405 if (stp_is_designated_port(p)) {
406 p->designated_bridge = new_bridge_id;
407 }
408 }
409 stp->bridge_id = new_bridge_id;
410 stp_configuration_update(stp);
411 stp_port_state_selection(stp);
412 if (stp_is_root_bridge(stp) && !root) {
413 stp_become_root_bridge(stp);
414 }
415 }
416}
417
418void
419stp_set_bridge_id(struct stp *stp, stp_identifier bridge_id)
420{
421 const uint64_t mac_bits = (UINT64_C(1) << 48) - 1;
422 const uint64_t pri_bits = ~mac_bits;
bd54dbcd 423 ovs_mutex_lock(&mutex);
829a7d02 424 set_bridge_id(stp, (stp->bridge_id & pri_bits) | (bridge_id & mac_bits));
bd54dbcd 425 ovs_mutex_unlock(&mutex);
829a7d02
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426}
427
428void
429stp_set_bridge_priority(struct stp *stp, uint16_t new_priority)
430{
431 const uint64_t mac_bits = (UINT64_C(1) << 48) - 1;
bd54dbcd 432 ovs_mutex_lock(&mutex);
829a7d02
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433 set_bridge_id(stp, ((stp->bridge_id & mac_bits)
434 | ((uint64_t) new_priority << 48)));
bd54dbcd 435 ovs_mutex_unlock(&mutex);
829a7d02
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436}
437
438/* Sets the desired hello time for 'stp' to 'ms', in milliseconds. The actual
439 * hello time is clamped to the range of 1 to 10 seconds and subject to the
440 * relationship (bridge_max_age >= 2 * (bridge_hello_time + 1 s)). The bridge
441 * hello time is only used when 'stp' is the root bridge. */
442void
443stp_set_hello_time(struct stp *stp, int ms)
444{
bd54dbcd 445 ovs_mutex_lock(&mutex);
829a7d02
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446 stp->rq_hello_time = ms;
447 stp_update_bridge_timers(stp);
bd54dbcd 448 ovs_mutex_unlock(&mutex);
829a7d02
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449}
450
451/* Sets the desired max age for 'stp' to 'ms', in milliseconds. The actual max
452 * age is clamped to the range of 6 to 40 seconds and subject to the
453 * relationships (2 * (bridge_forward_delay - 1 s) >= bridge_max_age) and
454 * (bridge_max_age >= 2 * (bridge_hello_time + 1 s)). The bridge max age is
455 * only used when 'stp' is the root bridge. */
456void
457stp_set_max_age(struct stp *stp, int ms)
458{
bd54dbcd 459 ovs_mutex_lock(&mutex);
829a7d02
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460 stp->rq_max_age = ms;
461 stp_update_bridge_timers(stp);
bd54dbcd 462 ovs_mutex_unlock(&mutex);
829a7d02
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463}
464
465/* Sets the desired forward delay for 'stp' to 'ms', in milliseconds. The
466 * actual forward delay is clamped to the range of 4 to 30 seconds and subject
467 * to the relationship (2 * (bridge_forward_delay - 1 s) >= bridge_max_age).
468 * The bridge forward delay is only used when 'stp' is the root bridge. */
469void
470stp_set_forward_delay(struct stp *stp, int ms)
471{
bd54dbcd 472 ovs_mutex_lock(&mutex);
829a7d02
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473 stp->rq_forward_delay = ms;
474 stp_update_bridge_timers(stp);
bd54dbcd 475 ovs_mutex_unlock(&mutex);
829a7d02
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476}
477
478/* Returns the name given to 'stp' in the call to stp_create(). */
479const char *
480stp_get_name(const struct stp *stp)
481{
bd54dbcd
EJ
482 char *name;
483
484 ovs_mutex_lock(&mutex);
485 name = stp->name;
486 ovs_mutex_unlock(&mutex);
487 return name;
829a7d02
JP
488}
489
490/* Returns the bridge ID for 'stp'. */
491stp_identifier
492stp_get_bridge_id(const struct stp *stp)
493{
bd54dbcd
EJ
494 stp_identifier bridge_id;
495
496 ovs_mutex_lock(&mutex);
497 bridge_id = stp->bridge_id;
498 ovs_mutex_unlock(&mutex);
499 return bridge_id;
829a7d02
JP
500}
501
502/* Returns the bridge ID of the bridge currently believed to be the root. */
503stp_identifier
504stp_get_designated_root(const struct stp *stp)
505{
bd54dbcd
EJ
506 stp_identifier designated_root;
507
508 ovs_mutex_lock(&mutex);
509 designated_root = stp->designated_root;
510 ovs_mutex_unlock(&mutex);
511 return designated_root;
829a7d02
JP
512}
513
514/* Returns true if 'stp' believes itself to the be root of the spanning tree,
515 * false otherwise. */
516bool
517stp_is_root_bridge(const struct stp *stp)
518{
bd54dbcd
EJ
519 bool is_root;
520
521 ovs_mutex_lock(&mutex);
522 is_root = stp->bridge_id == stp->designated_root;
523 ovs_mutex_unlock(&mutex);
524 return is_root;
829a7d02
JP
525}
526
527/* Returns the cost of the path from 'stp' to the root of the spanning tree. */
528int
529stp_get_root_path_cost(const struct stp *stp)
530{
bd54dbcd
EJ
531 int cost;
532
533 ovs_mutex_lock(&mutex);
534 cost = stp->root_path_cost;
535 ovs_mutex_unlock(&mutex);
536 return cost;
829a7d02
JP
537}
538
539/* Returns the bridge hello time, in ms. The returned value is not necessarily
540 * the value passed to stp_set_hello_time(): it is clamped to the valid range
541 * and quantized to the STP timer resolution. */
542int
543stp_get_hello_time(const struct stp *stp)
544{
bd54dbcd
EJ
545 int time;
546
547 ovs_mutex_lock(&mutex);
548 time = timer_to_ms(stp->bridge_hello_time);
549 ovs_mutex_unlock(&mutex);
550 return time;
829a7d02
JP
551}
552
553/* Returns the bridge max age, in ms. The returned value is not necessarily
554 * the value passed to stp_set_max_age(): it is clamped to the valid range,
555 * quantized to the STP timer resolution, and adjusted to match the constraints
556 * due to the hello time. */
557int
558stp_get_max_age(const struct stp *stp)
559{
bd54dbcd
EJ
560 int time;
561
562 ovs_mutex_lock(&mutex);
563 time = timer_to_ms(stp->bridge_max_age);
564 ovs_mutex_unlock(&mutex);
565 return time;
829a7d02
JP
566}
567
568/* Returns the bridge forward delay, in ms. The returned value is not
569 * necessarily the value passed to stp_set_forward_delay(): it is clamped to
570 * the valid range, quantized to the STP timer resolution, and adjusted to
571 * match the constraints due to the forward delay. */
572int
573stp_get_forward_delay(const struct stp *stp)
574{
bd54dbcd
EJ
575 int time;
576
577 ovs_mutex_lock(&mutex);
578 time = timer_to_ms(stp->bridge_forward_delay);
579 ovs_mutex_unlock(&mutex);
580 return time;
829a7d02
JP
581}
582
6ae50723
EJ
583/* Returns true if something has happened to 'stp' which necessitates flushing
584 * the client's MAC learning table. Calling this function resets 'stp' so that
585 * future calls will return false until flushing is required again. */
586bool
587stp_check_and_reset_fdb_flush(struct stp *stp)
588{
bd54dbcd
EJ
589 bool needs_flush;
590
591 ovs_mutex_lock(&mutex);
592 needs_flush = stp->fdb_needs_flush;
6ae50723 593 stp->fdb_needs_flush = false;
bd54dbcd 594 ovs_mutex_unlock(&mutex);
6ae50723
EJ
595 return needs_flush;
596}
597
829a7d02
JP
598/* Returns the port in 'stp' with index 'port_no', which must be between 0 and
599 * STP_MAX_PORTS. */
600struct stp_port *
601stp_get_port(struct stp *stp, int port_no)
602{
bd54dbcd
EJ
603 struct stp_port *port;
604
605 ovs_mutex_lock(&mutex);
cb22974d 606 ovs_assert(port_no >= 0 && port_no < ARRAY_SIZE(stp->ports));
bd54dbcd
EJ
607 port = &stp->ports[port_no];
608 ovs_mutex_unlock(&mutex);
609 return port;
829a7d02
JP
610}
611
612/* Returns the port connecting 'stp' to the root bridge, or a null pointer if
613 * there is no such port. */
614struct stp_port *
615stp_get_root_port(struct stp *stp)
616{
bd54dbcd
EJ
617 struct stp_port *port;
618
619 ovs_mutex_lock(&mutex);
620 port = stp->root_port;
621 ovs_mutex_unlock(&mutex);
622 return port;
829a7d02
JP
623}
624
625/* Finds a port whose state has changed. If successful, stores the port whose
626 * state changed in '*portp' and returns true. If no port has changed, stores
627 * NULL in '*portp' and returns false. */
628bool
629stp_get_changed_port(struct stp *stp, struct stp_port **portp)
630{
bd54dbcd
EJ
631 struct stp_port *end, *p;
632 bool changed = false;
829a7d02 633
bd54dbcd
EJ
634 ovs_mutex_lock(&mutex);
635 end = &stp->ports[ARRAY_SIZE(stp->ports)];
829a7d02
JP
636 for (p = stp->first_changed_port; p < end; p++) {
637 if (p->state_changed) {
638 p->state_changed = false;
639 stp->first_changed_port = p + 1;
640 *portp = p;
bd54dbcd
EJ
641 changed = true;
642 goto out;
829a7d02
JP
643 }
644 }
645 stp->first_changed_port = end;
646 *portp = NULL;
bd54dbcd
EJ
647
648out:
649 ovs_mutex_unlock(&mutex);
650 return changed;
829a7d02
JP
651}
652
653/* Returns the name for the given 'state' (for use in debugging and log
654 * messages). */
655const char *
656stp_state_name(enum stp_state state)
657{
658 switch (state) {
659 case STP_DISABLED:
660 return "disabled";
661 case STP_LISTENING:
662 return "listening";
663 case STP_LEARNING:
664 return "learning";
665 case STP_FORWARDING:
666 return "forwarding";
667 case STP_BLOCKING:
668 return "blocking";
669 default:
428b2edd 670 OVS_NOT_REACHED();
829a7d02
JP
671 }
672}
673
674/* Returns true if 'state' is one in which packets received on a port should
675 * be forwarded, false otherwise.
676 *
677 * Returns true if 'state' is STP_DISABLED, since presumably in that case the
678 * port should still work, just not have STP applied to it. */
679bool
680stp_forward_in_state(enum stp_state state)
681{
682 return (state & (STP_DISABLED | STP_FORWARDING)) != 0;
683}
684
685/* Returns true if 'state' is one in which MAC learning should be done on
686 * packets received on a port, false otherwise.
687 *
688 * Returns true if 'state' is STP_DISABLED, since presumably in that case the
689 * port should still work, just not have STP applied to it. */
690bool
691stp_learn_in_state(enum stp_state state)
692{
693 return (state & (STP_DISABLED | STP_LEARNING | STP_FORWARDING)) != 0;
694}
695
bacdb85a
AW
696/* Returns true if 'state' is one in which bpdus should be forwarded on a
697 * port, false otherwise.
698 *
699 * Returns true if 'state' is STP_DISABLED, since in that case the port does
700 * not generate the bpdu and should just forward it (e.g. patch port on pif
701 * bridge). */
0d1cee12 702bool
bacdb85a 703stp_should_forward_bpdu(enum stp_state state)
0d1cee12
K
704{
705 return (state &
bacdb85a
AW
706 ( STP_DISABLED | STP_LISTENING | STP_LEARNING
707 | STP_FORWARDING)) != 0;
0d1cee12
K
708}
709
3310b570
JP
710/* Returns the name for the given 'role' (for use in debugging and log
711 * messages). */
712const char *
713stp_role_name(enum stp_role role)
714{
715 switch (role) {
716 case STP_ROLE_ROOT:
717 return "root";
718 case STP_ROLE_DESIGNATED:
719 return "designated";
720 case STP_ROLE_ALTERNATE:
721 return "alternate";
722 case STP_ROLE_DISABLED:
723 return "disabled";
724 default:
428b2edd 725 OVS_NOT_REACHED();
3310b570
JP
726 }
727}
728
829a7d02
JP
729/* Notifies the STP entity that bridge protocol data unit 'bpdu', which is
730 * 'bpdu_size' bytes in length, was received on port 'p'.
731 *
732 * This function may call the 'send_bpdu' function provided to stp_create(). */
733void
734stp_received_bpdu(struct stp_port *p, const void *bpdu, size_t bpdu_size)
735{
736 struct stp *stp = p->stp;
737 const struct stp_bpdu_header *header;
738
bd54dbcd 739 ovs_mutex_lock(&mutex);
829a7d02 740 if (p->state == STP_DISABLED) {
bd54dbcd 741 goto out;
829a7d02
JP
742 }
743
744 if (bpdu_size < sizeof(struct stp_bpdu_header)) {
34582733 745 VLOG_WARN("%s: received runt %"PRIuSIZE"-byte BPDU", stp->name, bpdu_size);
80740385 746 p->error_count++;
bd54dbcd 747 goto out;
829a7d02
JP
748 }
749
750 header = bpdu;
751 if (header->protocol_id != htons(STP_PROTOCOL_ID)) {
752 VLOG_WARN("%s: received BPDU with unexpected protocol ID %"PRIu16,
753 stp->name, ntohs(header->protocol_id));
80740385 754 p->error_count++;
bd54dbcd 755 goto out;
829a7d02
JP
756 }
757 if (header->protocol_version != STP_PROTOCOL_VERSION) {
758 VLOG_DBG("%s: received BPDU with unexpected protocol version %"PRIu8,
759 stp->name, header->protocol_version);
760 }
761
762 switch (header->bpdu_type) {
763 case STP_TYPE_CONFIG:
764 if (bpdu_size < sizeof(struct stp_config_bpdu)) {
34582733 765 VLOG_WARN("%s: received config BPDU with invalid size %"PRIuSIZE,
829a7d02 766 stp->name, bpdu_size);
80740385 767 p->error_count++;
bd54dbcd 768 goto out;
829a7d02
JP
769 }
770 stp_received_config_bpdu(stp, p, bpdu);
771 break;
772
773 case STP_TYPE_TCN:
774 if (bpdu_size != sizeof(struct stp_tcn_bpdu)) {
34582733 775 VLOG_WARN("%s: received TCN BPDU with invalid size %"PRIuSIZE,
829a7d02 776 stp->name, bpdu_size);
80740385 777 p->error_count++;
bd54dbcd 778 goto out;
829a7d02
JP
779 }
780 stp_received_tcn_bpdu(stp, p);
781 break;
782
783 default:
784 VLOG_WARN("%s: received BPDU of unexpected type %"PRIu8,
785 stp->name, header->bpdu_type);
80740385 786 p->error_count++;
bd54dbcd 787 goto out;
829a7d02 788 }
80740385 789 p->rx_count++;
bd54dbcd
EJ
790
791out:
792 ovs_mutex_unlock(&mutex);
829a7d02
JP
793}
794
795/* Returns the STP entity in which 'p' is nested. */
796struct stp *
797stp_port_get_stp(struct stp_port *p)
798{
bd54dbcd
EJ
799 struct stp *stp;
800
801 ovs_mutex_lock(&mutex);
802 stp = p->stp;
803 ovs_mutex_unlock(&mutex);
804 return stp;
829a7d02
JP
805}
806
11306274
AW
807void
808stp_port_set_name(struct stp_port *p, const char *name)
809{
810 char *old;
811
812 ovs_mutex_lock(&mutex);
813 old = p->port_name;
814 p->port_name = xstrdup(name);
815 free(old);
816 ovs_mutex_unlock(&mutex);
817}
818
3310b570
JP
819/* Sets the 'aux' member of 'p'.
820 *
821 * The 'aux' member will be reset to NULL when stp_port_disable() is
822 * called or stp_port_enable() is called when the port is in a Disabled
823 * state. */
824void
825stp_port_set_aux(struct stp_port *p, void *aux)
826{
bd54dbcd 827 ovs_mutex_lock(&mutex);
3310b570 828 p->aux = aux;
bd54dbcd 829 ovs_mutex_unlock(&mutex);
3310b570
JP
830}
831
832/* Returns the 'aux' member of 'p'. */
833void *
834stp_port_get_aux(struct stp_port *p)
835{
bd54dbcd
EJ
836 void *aux;
837
838 ovs_mutex_lock(&mutex);
839 aux = p->aux;
840 ovs_mutex_unlock(&mutex);
841 return aux;
3310b570
JP
842}
843
829a7d02
JP
844/* Returns the index of port 'p' within its bridge. */
845int
846stp_port_no(const struct stp_port *p)
847{
bd54dbcd
EJ
848 struct stp *stp;
849 int index;
850
851 ovs_mutex_lock(&mutex);
852 stp = p->stp;
cb22974d 853 ovs_assert(p >= stp->ports && p < &stp->ports[ARRAY_SIZE(stp->ports)]);
bd54dbcd
EJ
854 index = p - p->stp->ports;
855 ovs_mutex_unlock(&mutex);
856 return index;
829a7d02
JP
857}
858
3310b570
JP
859/* Returns the port ID for 'p'. */
860int
861stp_port_get_id(const struct stp_port *p)
862{
bd54dbcd
EJ
863 int port_id;
864
865 ovs_mutex_lock(&mutex);
866 port_id = p->port_id;
867 ovs_mutex_unlock(&mutex);
868 return port_id;
3310b570
JP
869}
870
829a7d02
JP
871/* Returns the state of port 'p'. */
872enum stp_state
873stp_port_get_state(const struct stp_port *p)
874{
bd54dbcd
EJ
875 enum stp_state state;
876
877 ovs_mutex_lock(&mutex);
878 state = p->state;
879 ovs_mutex_unlock(&mutex);
880 return state;
829a7d02
JP
881}
882
3310b570
JP
883/* Returns the role of port 'p'. */
884enum stp_role
885stp_port_get_role(const struct stp_port *p)
886{
bd54dbcd
EJ
887 struct stp_port *root_port;
888 enum stp_role role;
3310b570 889
bd54dbcd
EJ
890 ovs_mutex_lock(&mutex);
891 root_port = p->stp->root_port;
3310b570 892 if (root_port && root_port->port_id == p->port_id) {
bd54dbcd 893 role = STP_ROLE_ROOT;
3310b570 894 } else if (stp_is_designated_port(p)) {
bd54dbcd 895 role = STP_ROLE_DESIGNATED;
3310b570 896 } else if (p->state == STP_DISABLED) {
bd54dbcd 897 role = STP_ROLE_DISABLED;
3310b570 898 } else {
bd54dbcd 899 role = STP_ROLE_ALTERNATE;
3310b570 900 }
bd54dbcd
EJ
901 ovs_mutex_unlock(&mutex);
902 return role;
3310b570
JP
903}
904
80740385 905/* Retrieves BPDU transmit and receive counts for 'p'. */
bd54dbcd
EJ
906void
907stp_port_get_counts(const struct stp_port *p,
908 int *tx_count, int *rx_count, int *error_count)
80740385 909{
bd54dbcd 910 ovs_mutex_lock(&mutex);
80740385
JP
911 *tx_count = p->tx_count;
912 *rx_count = p->rx_count;
913 *error_count = p->error_count;
bd54dbcd 914 ovs_mutex_unlock(&mutex);
80740385
JP
915}
916
829a7d02
JP
917/* Disables STP on port 'p'. */
918void
919stp_port_disable(struct stp_port *p)
920{
bd54dbcd
EJ
921 struct stp *stp;
922
923 ovs_mutex_lock(&mutex);
924 stp = p->stp;
829a7d02
JP
925 if (p->state != STP_DISABLED) {
926 bool root = stp_is_root_bridge(stp);
927 stp_become_designated_port(p);
928 stp_set_port_state(p, STP_DISABLED);
929 p->topology_change_ack = false;
930 p->config_pending = false;
931 stp_stop_timer(&p->message_age_timer);
932 stp_stop_timer(&p->forward_delay_timer);
933 stp_configuration_update(stp);
934 stp_port_state_selection(stp);
935 if (stp_is_root_bridge(stp) && !root) {
936 stp_become_root_bridge(stp);
937 }
3310b570 938 p->aux = NULL;
829a7d02 939 }
bd54dbcd 940 ovs_mutex_unlock(&mutex);
829a7d02
JP
941}
942
943/* Enables STP on port 'p'. The port will initially be in "blocking" state. */
944void
945stp_port_enable(struct stp_port *p)
946{
bd54dbcd 947 ovs_mutex_lock(&mutex);
829a7d02
JP
948 if (p->state == STP_DISABLED) {
949 stp_initialize_port(p, STP_BLOCKING);
950 stp_port_state_selection(p->stp);
951 }
bd54dbcd 952 ovs_mutex_unlock(&mutex);
829a7d02
JP
953}
954
955/* Sets the priority of port 'p' to 'new_priority'. Lower numerical values
956 * are interpreted as higher priorities. */
957void
958stp_port_set_priority(struct stp_port *p, uint8_t new_priority)
959{
bd54dbcd
EJ
960 uint16_t new_port_id;
961
962 ovs_mutex_lock(&mutex);
963 new_port_id = (p->port_id & 0xff) | (new_priority << 8);
829a7d02
JP
964 if (p->port_id != new_port_id) {
965 struct stp *stp = p->stp;
966 if (stp_is_designated_port(p)) {
967 p->designated_port = new_port_id;
968 }
969 p->port_id = new_port_id;
970 if (stp->bridge_id == p->designated_bridge
971 && p->port_id < p->designated_port) {
972 stp_become_designated_port(p);
973 stp_port_state_selection(stp);
974 }
975 }
bd54dbcd 976 ovs_mutex_unlock(&mutex);
829a7d02
JP
977}
978
3310b570
JP
979/* Convert 'speed' (measured in Mb/s) into the path cost. */
980uint16_t
981stp_convert_speed_to_cost(unsigned int speed)
982{
bd54dbcd
EJ
983 uint16_t ret;
984
985 ovs_mutex_lock(&mutex);
986 ret = speed >= 10000 ? 2 /* 10 Gb/s. */
987 : speed >= 1000 ? 4 /* 1 Gb/s. */
988 : speed >= 100 ? 19 /* 100 Mb/s. */
989 : speed >= 16 ? 62 /* 16 Mb/s. */
990 : speed >= 10 ? 100 /* 10 Mb/s. */
991 : speed >= 4 ? 250 /* 4 Mb/s. */
992 : 19; /* 100 Mb/s (guess). */
993 ovs_mutex_unlock(&mutex);
994 return ret;
3310b570
JP
995}
996
829a7d02
JP
997/* Sets the path cost of port 'p' to 'path_cost'. Lower values are generally
998 * used to indicate faster links. Use stp_port_set_speed() to automatically
999 * generate a default path cost from a link speed. */
1000void
1001stp_port_set_path_cost(struct stp_port *p, uint16_t path_cost)
1002{
bd54dbcd 1003 ovs_mutex_lock(&mutex);
829a7d02
JP
1004 if (p->path_cost != path_cost) {
1005 struct stp *stp = p->stp;
1006 p->path_cost = path_cost;
1007 stp_configuration_update(stp);
1008 stp_port_state_selection(stp);
1009 }
bd54dbcd 1010 ovs_mutex_unlock(&mutex);
829a7d02
JP
1011}
1012
1013/* Sets the path cost of port 'p' based on 'speed' (measured in Mb/s). */
1014void
1015stp_port_set_speed(struct stp_port *p, unsigned int speed)
1016{
3310b570 1017 stp_port_set_path_cost(p, stp_convert_speed_to_cost(speed));
829a7d02
JP
1018}
1019
1020/* Enables topology change detection on port 'p'. */
1021void
1022stp_port_enable_change_detection(struct stp_port *p)
1023{
1024 p->change_detection_enabled = true;
1025}
1026
1027/* Disables topology change detection on port 'p'. */
1028void
1029stp_port_disable_change_detection(struct stp_port *p)
1030{
1031 p->change_detection_enabled = false;
1032}
1033\f
1034static void
bd3950dd 1035stp_transmit_config(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1036{
1037 struct stp *stp = p->stp;
1038 bool root = stp_is_root_bridge(stp);
1039 if (!root && !stp->root_port) {
1040 return;
1041 }
1042 if (p->hold_timer.active) {
11306274
AW
1043 VLOG_DBG_RL(&stp_rl, "bridge: %s, port: %s, transmit config bpdu pending",
1044 stp->name, p->port_name);
829a7d02
JP
1045 p->config_pending = true;
1046 } else {
1047 struct stp_config_bpdu config;
1048 memset(&config, 0, sizeof config);
1049 config.header.protocol_id = htons(STP_PROTOCOL_ID);
1050 config.header.protocol_version = STP_PROTOCOL_VERSION;
1051 config.header.bpdu_type = STP_TYPE_CONFIG;
1052 config.flags = 0;
1053 if (p->topology_change_ack) {
3310b570 1054 config.flags |= STP_CONFIG_TOPOLOGY_CHANGE_ACK;
829a7d02
JP
1055 }
1056 if (stp->topology_change) {
3310b570 1057 config.flags |= STP_CONFIG_TOPOLOGY_CHANGE;
829a7d02
JP
1058 }
1059 config.root_id = htonll(stp->designated_root);
1060 config.root_path_cost = htonl(stp->root_path_cost);
1061 config.bridge_id = htonll(stp->bridge_id);
1062 config.port_id = htons(p->port_id);
1063 if (root) {
1064 config.message_age = htons(0);
1065 } else {
1066 config.message_age = htons(stp->root_port->message_age_timer.value
1067 + MESSAGE_AGE_INCREMENT);
1068 }
1069 config.max_age = htons(stp->max_age);
1070 config.hello_time = htons(stp->hello_time);
1071 config.forward_delay = htons(stp->forward_delay);
1072 if (ntohs(config.message_age) < stp->max_age) {
1073 p->topology_change_ack = false;
1074 p->config_pending = false;
11306274
AW
1075 VLOG_DBG_RL(&stp_rl, "bridge: %s, port: %s, transmit config bpdu",
1076 stp->name, p->port_name);
829a7d02
JP
1077 stp_send_bpdu(p, &config, sizeof config);
1078 stp_start_timer(&p->hold_timer, 0);
1079 }
1080 }
1081}
1082
1083static bool
1084stp_supersedes_port_info(const struct stp_port *p,
1085 const struct stp_config_bpdu *config)
bd3950dd 1086 OVS_REQUIRES(mutex)
829a7d02
JP
1087{
1088 if (ntohll(config->root_id) != p->designated_root) {
1089 return ntohll(config->root_id) < p->designated_root;
1090 } else if (ntohl(config->root_path_cost) != p->designated_cost) {
1091 return ntohl(config->root_path_cost) < p->designated_cost;
1092 } else if (ntohll(config->bridge_id) != p->designated_bridge) {
1093 return ntohll(config->bridge_id) < p->designated_bridge;
1094 } else {
1095 return (ntohll(config->bridge_id) != p->stp->bridge_id
1096 || ntohs(config->port_id) <= p->designated_port);
1097 }
1098}
1099
1100static void
1101stp_record_config_information(struct stp_port *p,
1102 const struct stp_config_bpdu *config)
bd3950dd 1103 OVS_REQUIRES(mutex)
829a7d02
JP
1104{
1105 p->designated_root = ntohll(config->root_id);
1106 p->designated_cost = ntohl(config->root_path_cost);
1107 p->designated_bridge = ntohll(config->bridge_id);
1108 p->designated_port = ntohs(config->port_id);
1109 stp_start_timer(&p->message_age_timer, ntohs(config->message_age));
1110}
1111
1112static void
1113stp_record_config_timeout_values(struct stp *stp,
1114 const struct stp_config_bpdu *config)
bd3950dd 1115 OVS_REQUIRES(mutex)
829a7d02
JP
1116{
1117 stp->max_age = ntohs(config->max_age);
1118 stp->hello_time = ntohs(config->hello_time);
1119 stp->forward_delay = ntohs(config->forward_delay);
3310b570 1120 stp->topology_change = config->flags & STP_CONFIG_TOPOLOGY_CHANGE;
829a7d02
JP
1121}
1122
1123static bool
bd3950dd 1124stp_is_designated_port(const struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1125{
1126 return (p->designated_bridge == p->stp->bridge_id
1127 && p->designated_port == p->port_id);
1128}
1129
1130static void
bd3950dd 1131stp_config_bpdu_generation(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1132{
1133 struct stp_port *p;
1134
1135 FOR_EACH_ENABLED_PORT (p, stp) {
1136 if (stp_is_designated_port(p)) {
1137 stp_transmit_config(p);
1138 }
1139 }
1140}
1141
1142static void
bd3950dd 1143stp_transmit_tcn(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1144{
1145 struct stp_port *p = stp->root_port;
1146 struct stp_tcn_bpdu tcn_bpdu;
11306274 1147
829a7d02
JP
1148 if (!p) {
1149 return;
1150 }
11306274
AW
1151 VLOG_DBG_RL(&stp_rl, "bridge: %s, root port: %s, transmit tcn", stp->name,
1152 p->port_name);
829a7d02
JP
1153 tcn_bpdu.header.protocol_id = htons(STP_PROTOCOL_ID);
1154 tcn_bpdu.header.protocol_version = STP_PROTOCOL_VERSION;
1155 tcn_bpdu.header.bpdu_type = STP_TYPE_TCN;
1156 stp_send_bpdu(p, &tcn_bpdu, sizeof tcn_bpdu);
1157}
1158
1159static void
bd3950dd 1160stp_configuration_update(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1161{
1162 stp_root_selection(stp);
1163 stp_designated_port_selection(stp);
f23d157c 1164 seq_change(connectivity_seq_get());
829a7d02
JP
1165}
1166
1167static bool
1168stp_supersedes_root(const struct stp_port *root, const struct stp_port *p)
bd3950dd 1169 OVS_REQUIRES(mutex)
829a7d02
JP
1170{
1171 int p_cost = p->designated_cost + p->path_cost;
1172 int root_cost = root->designated_cost + root->path_cost;
1173
1174 if (p->designated_root != root->designated_root) {
1175 return p->designated_root < root->designated_root;
1176 } else if (p_cost != root_cost) {
1177 return p_cost < root_cost;
1178 } else if (p->designated_bridge != root->designated_bridge) {
1179 return p->designated_bridge < root->designated_bridge;
1180 } else if (p->designated_port != root->designated_port) {
1181 return p->designated_port < root->designated_port;
1182 } else {
1183 return p->port_id < root->port_id;
1184 }
1185}
1186
1187static void
bd3950dd 1188stp_root_selection(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1189{
1190 struct stp_port *p, *root;
1191
1192 root = NULL;
1193 FOR_EACH_ENABLED_PORT (p, stp) {
1194 if (stp_is_designated_port(p)
1195 || p->designated_root >= stp->bridge_id) {
1196 continue;
1197 }
1198 if (root && !stp_supersedes_root(root, p)) {
1199 continue;
1200 }
1201 root = p;
1202 }
1203 stp->root_port = root;
1204 if (!root) {
1205 stp->designated_root = stp->bridge_id;
1206 stp->root_path_cost = 0;
1207 } else {
1208 stp->designated_root = root->designated_root;
1209 stp->root_path_cost = root->designated_cost + root->path_cost;
1210 }
1211}
1212
1213static void
bd3950dd 1214stp_designated_port_selection(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1215{
1216 struct stp_port *p;
1217
1218 FOR_EACH_ENABLED_PORT (p, stp) {
1219 if (stp_is_designated_port(p)
1220 || p->designated_root != stp->designated_root
1221 || stp->root_path_cost < p->designated_cost
1222 || (stp->root_path_cost == p->designated_cost
1223 && (stp->bridge_id < p->designated_bridge
1224 || (stp->bridge_id == p->designated_bridge
1225 && p->port_id <= p->designated_port))))
1226 {
1227 stp_become_designated_port(p);
1228 }
1229 }
1230}
1231
1232static void
bd3950dd 1233stp_become_designated_port(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1234{
1235 struct stp *stp = p->stp;
1236 p->designated_root = stp->designated_root;
1237 p->designated_cost = stp->root_path_cost;
1238 p->designated_bridge = stp->bridge_id;
1239 p->designated_port = p->port_id;
1240}
1241
1242static void
bd3950dd 1243stp_port_state_selection(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1244{
1245 struct stp_port *p;
1246
1247 FOR_EACH_ENABLED_PORT (p, stp) {
1248 if (p == stp->root_port) {
1249 p->config_pending = false;
1250 p->topology_change_ack = false;
1251 stp_make_forwarding(p);
1252 } else if (stp_is_designated_port(p)) {
1253 stp_stop_timer(&p->message_age_timer);
1254 stp_make_forwarding(p);
1255 } else {
1256 p->config_pending = false;
1257 p->topology_change_ack = false;
1258 stp_make_blocking(p);
1259 }
1260 }
1261}
1262
1263static void
bd3950dd 1264stp_make_forwarding(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1265{
1266 if (p->state == STP_BLOCKING) {
1267 stp_set_port_state(p, STP_LISTENING);
1268 stp_start_timer(&p->forward_delay_timer, 0);
1269 }
1270}
1271
1272static void
bd3950dd 1273stp_make_blocking(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1274{
1275 if (!(p->state & (STP_DISABLED | STP_BLOCKING))) {
1276 if (p->state & (STP_FORWARDING | STP_LEARNING)) {
1277 if (p->change_detection_enabled) {
1278 stp_topology_change_detection(p->stp);
1279 }
1280 }
1281 stp_set_port_state(p, STP_BLOCKING);
1282 stp_stop_timer(&p->forward_delay_timer);
1283 }
1284}
1285
1286static void
1287stp_set_port_state(struct stp_port *p, enum stp_state state)
bd3950dd 1288 OVS_REQUIRES(mutex)
829a7d02
JP
1289{
1290 if (state != p->state && !p->state_changed) {
1291 p->state_changed = true;
1292 if (p < p->stp->first_changed_port) {
1293 p->stp->first_changed_port = p;
1294 }
f23d157c 1295 seq_change(connectivity_seq_get());
829a7d02
JP
1296 }
1297 p->state = state;
1298}
1299
1300static void
bd3950dd 1301stp_topology_change_detection(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02 1302{
634408e0
EJ
1303 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1304
829a7d02
JP
1305 if (stp_is_root_bridge(stp)) {
1306 stp->topology_change = true;
1307 stp_start_timer(&stp->topology_change_timer, 0);
1308 } else if (!stp->topology_change_detected) {
1309 stp_transmit_tcn(stp);
1310 stp_start_timer(&stp->tcn_timer, 0);
1311 }
6ae50723 1312 stp->fdb_needs_flush = true;
829a7d02 1313 stp->topology_change_detected = true;
f23d157c 1314 seq_change(connectivity_seq_get());
634408e0 1315 VLOG_INFO_RL(&rl, "%s: detected topology change.", stp->name);
829a7d02
JP
1316}
1317
1318static void
bd3950dd 1319stp_topology_change_acknowledged(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1320{
1321 stp->topology_change_detected = false;
1322 stp_stop_timer(&stp->tcn_timer);
1323}
1324
1325static void
bd3950dd 1326stp_acknowledge_topology_change(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1327{
1328 p->topology_change_ack = true;
1329 stp_transmit_config(p);
1330}
1331
1332static void
1333stp_received_config_bpdu(struct stp *stp, struct stp_port *p,
1334 const struct stp_config_bpdu *config)
bd3950dd 1335 OVS_REQUIRES(mutex)
829a7d02
JP
1336{
1337 if (ntohs(config->message_age) >= ntohs(config->max_age)) {
1338 VLOG_WARN("%s: received config BPDU with message age (%u) greater "
1339 "than max age (%u)",
1340 stp->name,
1341 ntohs(config->message_age), ntohs(config->max_age));
1342 return;
1343 }
1344 if (p->state != STP_DISABLED) {
1345 bool root = stp_is_root_bridge(stp);
1346 if (stp_supersedes_port_info(p, config)) {
1347 stp_record_config_information(p, config);
1348 stp_configuration_update(stp);
1349 stp_port_state_selection(stp);
1350 if (!stp_is_root_bridge(stp) && root) {
1351 stp_stop_timer(&stp->hello_timer);
1352 if (stp->topology_change_detected) {
1353 stp_stop_timer(&stp->topology_change_timer);
1354 stp_transmit_tcn(stp);
1355 stp_start_timer(&stp->tcn_timer, 0);
1356 }
1357 }
1358 if (p == stp->root_port) {
1359 stp_record_config_timeout_values(stp, config);
1360 stp_config_bpdu_generation(stp);
3310b570 1361 if (config->flags & STP_CONFIG_TOPOLOGY_CHANGE_ACK) {
829a7d02
JP
1362 stp_topology_change_acknowledged(stp);
1363 }
6ae50723
EJ
1364 if (config->flags & STP_CONFIG_TOPOLOGY_CHANGE) {
1365 stp->fdb_needs_flush = true;
1366 }
829a7d02
JP
1367 }
1368 } else if (stp_is_designated_port(p)) {
1369 stp_transmit_config(p);
1370 }
1371 }
1372}
1373
1374static void
1375stp_received_tcn_bpdu(struct stp *stp, struct stp_port *p)
bd3950dd 1376 OVS_REQUIRES(mutex)
829a7d02
JP
1377{
1378 if (p->state != STP_DISABLED) {
1379 if (stp_is_designated_port(p)) {
1380 stp_topology_change_detection(stp);
1381 stp_acknowledge_topology_change(p);
1382 }
1383 }
1384}
1385
1386static void
bd3950dd 1387stp_hello_timer_expiry(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1388{
1389 stp_config_bpdu_generation(stp);
1390 stp_start_timer(&stp->hello_timer, 0);
1391}
1392
1393static void
bd3950dd 1394stp_message_age_timer_expiry(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1395{
1396 struct stp *stp = p->stp;
1397 bool root = stp_is_root_bridge(stp);
11306274
AW
1398
1399 VLOG_DBG_RL(&stp_rl, "bridge: %s, port: %s, message age timer expired",
1400 stp->name, p->port_name);
829a7d02
JP
1401 stp_become_designated_port(p);
1402 stp_configuration_update(stp);
1403 stp_port_state_selection(stp);
1404 if (stp_is_root_bridge(stp) && !root) {
1405 stp->max_age = stp->bridge_max_age;
1406 stp->hello_time = stp->bridge_hello_time;
1407 stp->forward_delay = stp->bridge_forward_delay;
1408 stp_topology_change_detection(stp);
1409 stp_stop_timer(&stp->tcn_timer);
1410 stp_config_bpdu_generation(stp);
1411 stp_start_timer(&stp->hello_timer, 0);
1412 }
1413}
1414
1415static bool
bd3950dd 1416stp_is_designated_for_some_port(const struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1417{
1418 const struct stp_port *p;
1419
1420 FOR_EACH_ENABLED_PORT (p, stp) {
1421 if (p->designated_bridge == stp->bridge_id) {
1422 return true;
1423 }
1424 }
1425 return false;
1426}
1427
1428static void
bd3950dd 1429stp_forward_delay_timer_expiry(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1430{
1431 if (p->state == STP_LISTENING) {
1432 stp_set_port_state(p, STP_LEARNING);
1433 stp_start_timer(&p->forward_delay_timer, 0);
1434 } else if (p->state == STP_LEARNING) {
1435 stp_set_port_state(p, STP_FORWARDING);
1436 if (stp_is_designated_for_some_port(p->stp)) {
1437 if (p->change_detection_enabled) {
1438 stp_topology_change_detection(p->stp);
1439 }
1440 }
1441 }
1442}
1443
1444static void
bd3950dd 1445stp_tcn_timer_expiry(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1446{
1447 stp_transmit_tcn(stp);
1448 stp_start_timer(&stp->tcn_timer, 0);
1449}
1450
1451static void
bd3950dd 1452stp_topology_change_timer_expiry(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1453{
1454 stp->topology_change_detected = false;
1455 stp->topology_change = false;
1456}
1457
1458static void
bd3950dd 1459stp_hold_timer_expiry(struct stp_port *p) OVS_REQUIRES(mutex)
829a7d02
JP
1460{
1461 if (p->config_pending) {
1462 stp_transmit_config(p);
1463 }
1464}
1465
1466static void
1467stp_initialize_port(struct stp_port *p, enum stp_state state)
bd3950dd 1468 OVS_REQUIRES(mutex)
829a7d02 1469{
cb22974d 1470 ovs_assert(state & (STP_DISABLED | STP_BLOCKING));
829a7d02 1471 stp_become_designated_port(p);
fb20b0bf
JR
1472
1473 if (!p->state && state == STP_DISABLED) {
1474 p->state = state; /* Do not trigger state change when initializing. */
1475 } else {
1476 stp_set_port_state(p, state);
1477 }
829a7d02
JP
1478 p->topology_change_ack = false;
1479 p->config_pending = false;
1480 p->change_detection_enabled = true;
3310b570 1481 p->aux = NULL;
829a7d02
JP
1482 stp_stop_timer(&p->message_age_timer);
1483 stp_stop_timer(&p->forward_delay_timer);
1484 stp_stop_timer(&p->hold_timer);
80740385 1485 p->tx_count = p->rx_count = p->error_count = 0;
829a7d02
JP
1486}
1487
1488static void
bd3950dd 1489stp_become_root_bridge(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1490{
1491 stp->max_age = stp->bridge_max_age;
1492 stp->hello_time = stp->bridge_hello_time;
1493 stp->forward_delay = stp->bridge_forward_delay;
1494 stp_topology_change_detection(stp);
1495 stp_stop_timer(&stp->tcn_timer);
1496 stp_config_bpdu_generation(stp);
1497 stp_start_timer(&stp->hello_timer, 0);
1498}
1499
1500static void
bd3950dd 1501stp_start_timer(struct stp_timer *timer, int value) OVS_REQUIRES(mutex)
829a7d02
JP
1502{
1503 timer->value = value;
1504 timer->active = true;
1505}
1506
1507static void
bd3950dd 1508stp_stop_timer(struct stp_timer *timer) OVS_REQUIRES(mutex)
829a7d02
JP
1509{
1510 timer->active = false;
1511}
1512
1513static bool
1514stp_timer_expired(struct stp_timer *timer, int elapsed, int timeout)
bd3950dd 1515 OVS_REQUIRES(mutex)
829a7d02
JP
1516{
1517 if (timer->active) {
1518 timer->value += elapsed;
1519 if (timer->value >= timeout) {
1520 timer->active = false;
1521 return true;
1522 }
1523 }
1524 return false;
1525}
1526
1527/* Returns the number of whole STP timer ticks in 'ms' milliseconds. There
1528 * are 256 STP timer ticks per second. */
1529static int
1530ms_to_timer(int ms)
1531{
1532 return ms * 0x100 / 1000;
1533}
1534
829a7d02
JP
1535/* Returns the number of whole milliseconds in 'timer' STP timer ticks. There
1536 * are 256 STP timer ticks per second. */
1537static int
1538timer_to_ms(int timer)
1539{
1540 return timer * 1000 / 0x100;
1541}
1542
1543static int
1544clamp(int x, int min, int max)
1545{
1546 return x < min ? min : x > max ? max : x;
1547}
1548
1549static void
bd3950dd 1550stp_update_bridge_timers(struct stp *stp) OVS_REQUIRES(mutex)
829a7d02
JP
1551{
1552 int ht, ma, fd;
1553
1554 ht = clamp(stp->rq_hello_time, 1000, 10000);
1555 ma = clamp(stp->rq_max_age, MAX(2 * (ht + 1000), 6000), 40000);
1556 fd = clamp(stp->rq_forward_delay, ma / 2 + 1000, 30000);
1557
1558 stp->bridge_hello_time = ms_to_timer(ht);
1559 stp->bridge_max_age = ms_to_timer(ma);
1560 stp->bridge_forward_delay = ms_to_timer(fd);
1561
1562 if (stp_is_root_bridge(stp)) {
1563 stp->max_age = stp->bridge_max_age;
1564 stp->hello_time = stp->bridge_hello_time;
1565 stp->forward_delay = stp->bridge_forward_delay;
1566 }
1567}
1568
1569static void
1570stp_send_bpdu(struct stp_port *p, const void *bpdu, size_t bpdu_size)
bd3950dd 1571 OVS_REQUIRES(mutex)
829a7d02
JP
1572{
1573 struct eth_header *eth;
1574 struct llc_header *llc;
1575 struct ofpbuf *pkt;
1576
1577 /* Skeleton. */
1578 pkt = ofpbuf_new(ETH_HEADER_LEN + LLC_HEADER_LEN + bpdu_size);
cf3b7538 1579 eth = ofpbuf_put_zeros(pkt, sizeof *eth);
829a7d02 1580 llc = ofpbuf_put_zeros(pkt, sizeof *llc);
cf3b7538 1581 ofpbuf_set_frame(pkt, eth);
437d0d22 1582 ofpbuf_set_l3(pkt, ofpbuf_put(pkt, bpdu, bpdu_size));
829a7d02
JP
1583
1584 /* 802.2 header. */
1585 memcpy(eth->eth_dst, eth_addr_stp, ETH_ADDR_LEN);
1586 /* p->stp->send_bpdu() must fill in source address. */
1f317cb5 1587 eth->eth_type = htons(ofpbuf_size(pkt) - ETH_HEADER_LEN);
829a7d02
JP
1588
1589 /* LLC header. */
1590 llc->llc_dsap = STP_LLC_DSAP;
1591 llc->llc_ssap = STP_LLC_SSAP;
1592 llc->llc_cntl = STP_LLC_CNTL;
1593
1594 p->stp->send_bpdu(pkt, stp_port_no(p), p->stp->aux);
80740385 1595 p->tx_count++;
829a7d02 1596}
fe4a02e4
EJ
1597\f
1598/* Unixctl. */
1599
1600static struct stp *
bd3950dd 1601stp_find(const char *name) OVS_REQUIRES(mutex)
fe4a02e4
EJ
1602{
1603 struct stp *stp;
1604
bd54dbcd 1605 LIST_FOR_EACH (stp, node, all_stps) {
fe4a02e4
EJ
1606 if (!strcmp(stp->name, name)) {
1607 return stp;
1608 }
1609 }
1610 return NULL;
1611}
1612
1613static void
1614stp_unixctl_tcn(struct unixctl_conn *conn, int argc,
1615 const char *argv[], void *aux OVS_UNUSED)
1616{
bd54dbcd 1617 ovs_mutex_lock(&mutex);
fe4a02e4
EJ
1618 if (argc > 1) {
1619 struct stp *stp = stp_find(argv[1]);
1620
1621 if (!stp) {
bde9f75d 1622 unixctl_command_reply_error(conn, "no such stp object");
bd54dbcd 1623 goto out;
fe4a02e4
EJ
1624 }
1625 stp_topology_change_detection(stp);
1626 } else {
1627 struct stp *stp;
1628
bd54dbcd 1629 LIST_FOR_EACH (stp, node, all_stps) {
fe4a02e4
EJ
1630 stp_topology_change_detection(stp);
1631 }
1632 }
1633
bde9f75d 1634 unixctl_command_reply(conn, "OK");
bd54dbcd
EJ
1635
1636out:
1637 ovs_mutex_unlock(&mutex);
fe4a02e4 1638}