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1 /* Copyright (c) 2008, 2009, 2010, 2011 Nicira Networks
2 *
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at:
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16 #include <config.h>
17 #include "bridge.h"
18 #include <assert.h>
19 #include <errno.h>
20 #include <inttypes.h>
21 #include <stdlib.h>
22 #include "bitmap.h"
23 #include "bond.h"
24 #include "cfm.h"
25 #include "coverage.h"
26 #include "daemon.h"
27 #include "dirs.h"
28 #include "dynamic-string.h"
29 #include "hash.h"
30 #include "hmap.h"
31 #include "jsonrpc.h"
32 #include "lacp.h"
33 #include "list.h"
34 #include "netdev.h"
35 #include "ofp-print.h"
36 #include "ofpbuf.h"
37 #include "ofproto/ofproto.h"
38 #include "poll-loop.h"
39 #include "sha1.h"
40 #include "shash.h"
41 #include "socket-util.h"
42 #include "stream-ssl.h"
43 #include "sset.h"
44 #include "system-stats.h"
45 #include "timeval.h"
46 #include "util.h"
47 #include "unixctl.h"
48 #include "vswitchd/vswitch-idl.h"
49 #include "xenserver.h"
50 #include "vlog.h"
51 #include "sflow_api.h"
52 #include "vlan-bitmap.h"
53
54 VLOG_DEFINE_THIS_MODULE(bridge);
55
56 COVERAGE_DEFINE(bridge_reconfigure);
57
58 struct iface {
59 /* These members are always valid. */
60 struct list port_elem; /* Element in struct port's "ifaces" list. */
61 struct hmap_node name_node; /* In struct bridge's "iface_by_name" hmap. */
62 struct port *port; /* Containing port. */
63 char *name; /* Host network device name. */
64 tag_type tag; /* Tag associated with this interface. */
65
66 /* These members are valid only after bridge_reconfigure() causes them to
67 * be initialized. */
68 struct hmap_node ofp_port_node; /* In struct bridge's "ifaces" hmap. */
69 int ofp_port; /* OpenFlow port number, -1 if unknown. */
70 struct netdev *netdev; /* Network device. */
71 const char *type; /* Usually same as cfg->type. */
72 const struct ovsrec_interface *cfg;
73 };
74
75 struct mirror {
76 struct uuid uuid; /* UUID of this "mirror" record in database. */
77 struct hmap_node hmap_node; /* In struct bridge's "mirrors" hmap. */
78 struct bridge *bridge;
79 char *name;
80 };
81
82 struct port {
83 struct bridge *bridge;
84 struct hmap_node hmap_node; /* Element in struct bridge's "ports" hmap. */
85 char *name;
86
87 const struct ovsrec_port *cfg;
88
89 /* An ordinary bridge port has 1 interface.
90 * A bridge port for bonding has at least 2 interfaces. */
91 struct list ifaces; /* List of "struct iface"s. */
92 };
93
94 struct bridge {
95 struct hmap_node node; /* In 'all_bridges'. */
96 char *name; /* User-specified arbitrary name. */
97 char *type; /* Datapath type. */
98 uint8_t ea[ETH_ADDR_LEN]; /* Bridge Ethernet Address. */
99 uint8_t default_ea[ETH_ADDR_LEN]; /* Default MAC. */
100 const struct ovsrec_bridge *cfg;
101
102 /* OpenFlow switch processing. */
103 struct ofproto *ofproto; /* OpenFlow switch. */
104
105 /* Bridge ports. */
106 struct hmap ports; /* "struct port"s indexed by name. */
107 struct hmap ifaces; /* "struct iface"s indexed by ofp_port. */
108 struct hmap iface_by_name; /* "struct iface"s indexed by name. */
109
110 /* Port mirroring. */
111 struct hmap mirrors; /* "struct mirror" indexed by UUID. */
112
113 /* Synthetic local port if necessary. */
114 struct ovsrec_port synth_local_port;
115 struct ovsrec_interface synth_local_iface;
116 struct ovsrec_interface *synth_local_ifacep;
117 };
118
119 /* All bridges, indexed by name. */
120 static struct hmap all_bridges = HMAP_INITIALIZER(&all_bridges);
121
122 /* OVSDB IDL used to obtain configuration. */
123 static struct ovsdb_idl *idl;
124
125 /* Each time this timer expires, the bridge fetches systems and interface
126 * statistics and pushes them into the database. */
127 #define STATS_INTERVAL (5 * 1000) /* In milliseconds. */
128 static long long int stats_timer = LLONG_MIN;
129
130 /* Stores the time after which rate limited statistics may be written to the
131 * database. Only updated when changes to the database require rate limiting.
132 */
133 #define DB_LIMIT_INTERVAL (1 * 1000) /* In milliseconds. */
134 static long long int db_limiter = LLONG_MIN;
135
136 static void add_del_bridges(const struct ovsrec_open_vswitch *);
137 static void bridge_del_ofprotos(void);
138 static bool bridge_add_ofprotos(struct bridge *);
139 static void bridge_create(const struct ovsrec_bridge *);
140 static void bridge_destroy(struct bridge *);
141 static struct bridge *bridge_lookup(const char *name);
142 static unixctl_cb_func bridge_unixctl_dump_flows;
143 static unixctl_cb_func bridge_unixctl_reconnect;
144 static size_t bridge_get_controllers(const struct bridge *br,
145 struct ovsrec_controller ***controllersp);
146 static void bridge_add_del_ports(struct bridge *);
147 static void bridge_add_ofproto_ports(struct bridge *);
148 static void bridge_del_ofproto_ports(struct bridge *);
149 static void bridge_refresh_ofp_port(struct bridge *);
150 static void bridge_configure_datapath_id(struct bridge *);
151 static void bridge_configure_netflow(struct bridge *);
152 static void bridge_configure_sflow(struct bridge *, int *sflow_bridge_number);
153 static void bridge_configure_remotes(struct bridge *,
154 const struct sockaddr_in *managers,
155 size_t n_managers);
156 static void bridge_pick_local_hw_addr(struct bridge *,
157 uint8_t ea[ETH_ADDR_LEN],
158 struct iface **hw_addr_iface);
159 static uint64_t bridge_pick_datapath_id(struct bridge *,
160 const uint8_t bridge_ea[ETH_ADDR_LEN],
161 struct iface *hw_addr_iface);
162 static uint64_t dpid_from_hash(const void *, size_t nbytes);
163 static bool bridge_has_bond_fake_iface(const struct bridge *,
164 const char *name);
165 static bool port_is_bond_fake_iface(const struct port *);
166
167 static unixctl_cb_func cfm_unixctl_show;
168 static unixctl_cb_func qos_unixctl_show;
169
170 static struct port *port_create(struct bridge *, const struct ovsrec_port *);
171 static void port_add_ifaces(struct port *);
172 static void port_del_ifaces(struct port *);
173 static void port_destroy(struct port *);
174 static struct port *port_lookup(const struct bridge *, const char *name);
175 static void port_configure(struct port *);
176 static struct lacp_settings *port_configure_lacp(struct port *,
177 struct lacp_settings *);
178 static void port_configure_bond(struct port *, struct bond_settings *,
179 uint32_t *bond_stable_ids);
180
181 static void bridge_configure_mirrors(struct bridge *);
182 static struct mirror *mirror_create(struct bridge *,
183 const struct ovsrec_mirror *);
184 static void mirror_destroy(struct mirror *);
185 static bool mirror_configure(struct mirror *, const struct ovsrec_mirror *);
186
187 static void iface_configure_lacp(struct iface *, struct lacp_slave_settings *);
188 static struct iface *iface_create(struct port *port,
189 const struct ovsrec_interface *if_cfg);
190 static void iface_destroy(struct iface *);
191 static struct iface *iface_lookup(const struct bridge *, const char *name);
192 static struct iface *iface_find(const char *name);
193 static struct iface *iface_from_ofp_port(const struct bridge *,
194 uint16_t ofp_port);
195 static void iface_set_mac(struct iface *);
196 static void iface_set_ofport(const struct ovsrec_interface *, int64_t ofport);
197 static void iface_configure_qos(struct iface *, const struct ovsrec_qos *);
198 static void iface_configure_cfm(struct iface *);
199 static bool iface_refresh_cfm_stats(struct iface *iface);
200 static bool iface_get_carrier(const struct iface *);
201 static bool iface_is_synthetic(const struct iface *);
202
203 static void shash_from_ovs_idl_map(char **keys, char **values, size_t n,
204 struct shash *);
205 static void shash_to_ovs_idl_map(struct shash *,
206 char ***keys, char ***values, size_t *n);
207 \f
208 /* Public functions. */
209
210 /* Initializes the bridge module, configuring it to obtain its configuration
211 * from an OVSDB server accessed over 'remote', which should be a string in a
212 * form acceptable to ovsdb_idl_create(). */
213 void
214 bridge_init(const char *remote)
215 {
216 /* Create connection to database. */
217 idl = ovsdb_idl_create(remote, &ovsrec_idl_class, true);
218
219 ovsdb_idl_omit_alert(idl, &ovsrec_open_vswitch_col_cur_cfg);
220 ovsdb_idl_omit_alert(idl, &ovsrec_open_vswitch_col_statistics);
221 ovsdb_idl_omit(idl, &ovsrec_open_vswitch_col_external_ids);
222 ovsdb_idl_omit(idl, &ovsrec_open_vswitch_col_ovs_version);
223 ovsdb_idl_omit(idl, &ovsrec_open_vswitch_col_db_version);
224 ovsdb_idl_omit(idl, &ovsrec_open_vswitch_col_system_type);
225 ovsdb_idl_omit(idl, &ovsrec_open_vswitch_col_system_version);
226
227 ovsdb_idl_omit_alert(idl, &ovsrec_bridge_col_datapath_id);
228 ovsdb_idl_omit(idl, &ovsrec_bridge_col_external_ids);
229
230 ovsdb_idl_omit(idl, &ovsrec_port_col_external_ids);
231 ovsdb_idl_omit(idl, &ovsrec_port_col_fake_bridge);
232
233 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_admin_state);
234 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_duplex);
235 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_link_speed);
236 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_link_state);
237 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_mtu);
238 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_ofport);
239 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_statistics);
240 ovsdb_idl_omit_alert(idl, &ovsrec_interface_col_status);
241 ovsdb_idl_omit(idl, &ovsrec_interface_col_external_ids);
242
243 ovsdb_idl_omit_alert(idl, &ovsrec_controller_col_is_connected);
244 ovsdb_idl_omit_alert(idl, &ovsrec_controller_col_role);
245 ovsdb_idl_omit_alert(idl, &ovsrec_controller_col_status);
246 ovsdb_idl_omit(idl, &ovsrec_controller_col_external_ids);
247
248 ovsdb_idl_omit_alert(idl, &ovsrec_maintenance_point_col_fault);
249
250 ovsdb_idl_omit_alert(idl, &ovsrec_monitor_col_fault);
251
252 ovsdb_idl_omit(idl, &ovsrec_qos_col_external_ids);
253
254 ovsdb_idl_omit(idl, &ovsrec_queue_col_external_ids);
255
256 ovsdb_idl_omit(idl, &ovsrec_mirror_col_external_ids);
257
258 ovsdb_idl_omit(idl, &ovsrec_netflow_col_external_ids);
259
260 ovsdb_idl_omit(idl, &ovsrec_sflow_col_external_ids);
261
262 ovsdb_idl_omit(idl, &ovsrec_manager_col_external_ids);
263 ovsdb_idl_omit(idl, &ovsrec_manager_col_inactivity_probe);
264 ovsdb_idl_omit(idl, &ovsrec_manager_col_is_connected);
265 ovsdb_idl_omit(idl, &ovsrec_manager_col_max_backoff);
266 ovsdb_idl_omit(idl, &ovsrec_manager_col_status);
267
268 ovsdb_idl_omit(idl, &ovsrec_ssl_col_external_ids);
269
270 /* Register unixctl commands. */
271 unixctl_command_register("cfm/show", cfm_unixctl_show, NULL);
272 unixctl_command_register("qos/show", qos_unixctl_show, NULL);
273 unixctl_command_register("bridge/dump-flows", bridge_unixctl_dump_flows,
274 NULL);
275 unixctl_command_register("bridge/reconnect", bridge_unixctl_reconnect,
276 NULL);
277 lacp_init();
278 bond_init();
279 }
280
281 void
282 bridge_exit(void)
283 {
284 struct bridge *br, *next_br;
285
286 HMAP_FOR_EACH_SAFE (br, next_br, node, &all_bridges) {
287 bridge_destroy(br);
288 }
289 ovsdb_idl_destroy(idl);
290 }
291
292 /* Looks at the list of managers in 'ovs_cfg' and extracts their remote IP
293 * addresses and ports into '*managersp' and '*n_managersp'. The caller is
294 * responsible for freeing '*managersp' (with free()).
295 *
296 * You may be asking yourself "why does ovs-vswitchd care?", because
297 * ovsdb-server is responsible for connecting to the managers, and ovs-vswitchd
298 * should not be and in fact is not directly involved in that. But
299 * ovs-vswitchd needs to make sure that ovsdb-server can reach the managers, so
300 * it has to tell in-band control where the managers are to enable that.
301 * (Thus, only managers connected in-band are collected.)
302 */
303 static void
304 collect_in_band_managers(const struct ovsrec_open_vswitch *ovs_cfg,
305 struct sockaddr_in **managersp, size_t *n_managersp)
306 {
307 struct sockaddr_in *managers = NULL;
308 size_t n_managers = 0;
309 struct sset targets;
310 size_t i;
311
312 /* Collect all of the potential targets from the "targets" columns of the
313 * rows pointed to by "manager_options", excluding any that are
314 * out-of-band. */
315 sset_init(&targets);
316 for (i = 0; i < ovs_cfg->n_manager_options; i++) {
317 struct ovsrec_manager *m = ovs_cfg->manager_options[i];
318
319 if (m->connection_mode && !strcmp(m->connection_mode, "out-of-band")) {
320 sset_find_and_delete(&targets, m->target);
321 } else {
322 sset_add(&targets, m->target);
323 }
324 }
325
326 /* Now extract the targets' IP addresses. */
327 if (!sset_is_empty(&targets)) {
328 const char *target;
329
330 managers = xmalloc(sset_count(&targets) * sizeof *managers);
331 SSET_FOR_EACH (target, &targets) {
332 struct sockaddr_in *sin = &managers[n_managers];
333
334 if ((!strncmp(target, "tcp:", 4)
335 && inet_parse_active(target + 4, JSONRPC_TCP_PORT, sin)) ||
336 (!strncmp(target, "ssl:", 4)
337 && inet_parse_active(target + 4, JSONRPC_SSL_PORT, sin))) {
338 n_managers++;
339 }
340 }
341 }
342 sset_destroy(&targets);
343
344 *managersp = managers;
345 *n_managersp = n_managers;
346 }
347
348 static void
349 bridge_reconfigure(const struct ovsrec_open_vswitch *ovs_cfg)
350 {
351 struct sockaddr_in *managers;
352 struct bridge *br, *next;
353 int sflow_bridge_number;
354 size_t n_managers;
355
356 COVERAGE_INC(bridge_reconfigure);
357
358 /* Create and destroy "struct bridge"s, "struct port"s, and "struct
359 * iface"s according to 'ovs_cfg', with only very minimal configuration
360 * otherwise.
361 *
362 * This is purely an update to bridge data structures. Nothing is pushed
363 * down to ofproto or lower layers. */
364 add_del_bridges(ovs_cfg);
365 HMAP_FOR_EACH (br, node, &all_bridges) {
366 bridge_add_del_ports(br);
367 }
368
369 /* Delete all datapaths and datapath ports that are no longer configured.
370 *
371 * The kernel will reject any attempt to add a given port to a datapath if
372 * that port already belongs to a different datapath, so we must do all
373 * port deletions before any port additions. A datapath always has a
374 * "local port" so we must delete not-configured datapaths too. */
375 bridge_del_ofprotos();
376 HMAP_FOR_EACH (br, node, &all_bridges) {
377 if (br->ofproto) {
378 bridge_del_ofproto_ports(br);
379 }
380 }
381
382 /* Create datapaths and datapath ports that are missing.
383 *
384 * After this is done, we have our final set of bridges, ports, and
385 * interfaces. Every "struct bridge" has an ofproto, every "struct port"
386 * has at least one iface, every "struct iface" has a valid ofp_port and
387 * netdev. */
388 HMAP_FOR_EACH_SAFE (br, next, node, &all_bridges) {
389 if (!br->ofproto && !bridge_add_ofprotos(br)) {
390 bridge_destroy(br);
391 }
392 }
393 HMAP_FOR_EACH (br, node, &all_bridges) {
394 bridge_refresh_ofp_port(br);
395 bridge_add_ofproto_ports(br);
396 }
397
398 /* Complete the configuration. */
399 sflow_bridge_number = 0;
400 collect_in_band_managers(ovs_cfg, &managers, &n_managers);
401 HMAP_FOR_EACH (br, node, &all_bridges) {
402 struct port *port;
403
404 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
405 struct iface *iface;
406
407 port_configure(port);
408
409 HMAP_FOR_EACH (iface, ofp_port_node, &br->ifaces) {
410 iface_configure_cfm(iface);
411 iface_configure_qos(iface, port->cfg->qos);
412 iface_set_mac(iface);
413 }
414 }
415 bridge_configure_mirrors(br);
416 bridge_configure_datapath_id(br);
417 bridge_configure_remotes(br, managers, n_managers);
418 bridge_configure_netflow(br);
419 bridge_configure_sflow(br, &sflow_bridge_number);
420 }
421 free(managers);
422
423 /* ovs-vswitchd has completed initialization, so allow the process that
424 * forked us to exit successfully. */
425 daemonize_complete();
426 }
427
428 /* Iterate over all ofprotos and delete any of them that do not have a
429 * configured bridge or that are the wrong type. */
430 static void
431 bridge_del_ofprotos(void)
432 {
433 struct sset names;
434 struct sset types;
435 const char *type;
436
437 sset_init(&names);
438 sset_init(&types);
439 ofproto_enumerate_types(&types);
440 SSET_FOR_EACH (type, &types) {
441 const char *name;
442
443 ofproto_enumerate_names(type, &names);
444 SSET_FOR_EACH (name, &names) {
445 struct bridge *br = bridge_lookup(name);
446 if (!br || strcmp(type, br->type)) {
447 ofproto_delete(name, type);
448 }
449 }
450 }
451 sset_destroy(&names);
452 sset_destroy(&types);
453 }
454
455 static bool
456 bridge_add_ofprotos(struct bridge *br)
457 {
458 int error = ofproto_create(br->name, br->type, &br->ofproto);
459 if (error) {
460 VLOG_ERR("failed to create bridge %s: %s", br->name, strerror(error));
461 return false;
462 }
463 return true;
464 }
465
466 static void
467 port_configure(struct port *port)
468 {
469 const struct ovsrec_port *cfg = port->cfg;
470 struct bond_settings bond_settings;
471 struct lacp_settings lacp_settings;
472 struct ofproto_bundle_settings s;
473 struct iface *iface;
474
475 /* Get name. */
476 s.name = port->name;
477
478 /* Get slaves. */
479 s.n_slaves = 0;
480 s.slaves = xmalloc(list_size(&port->ifaces) * sizeof *s.slaves);
481 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
482 s.slaves[s.n_slaves++] = iface->ofp_port;
483 }
484
485 /* Get VLAN tag. */
486 s.vlan = -1;
487 if (cfg->tag) {
488 if (list_is_short(&port->ifaces)) {
489 if (*cfg->tag >= 0 && *cfg->tag <= 4095) {
490 s.vlan = *cfg->tag;
491 VLOG_DBG("port %s: assigning VLAN tag %d", port->name, s.vlan);
492 }
493 } else {
494 /* It's possible that bonded, VLAN-tagged ports make sense. Maybe
495 * they even work as-is. But they have not been tested. */
496 VLOG_WARN("port %s: VLAN tags not supported on bonded ports",
497 port->name);
498 }
499 }
500
501 /* Get VLAN trunks. */
502 s.trunks = NULL;
503 if (s.vlan < 0 && cfg->n_trunks) {
504 s.trunks = vlan_bitmap_from_array(cfg->trunks, cfg->n_trunks);
505 } else if (s.vlan >= 0 && cfg->n_trunks) {
506 VLOG_ERR("port %s: ignoring trunks in favor of implicit vlan",
507 port->name);
508 }
509
510 /* Get LACP settings. */
511 s.lacp = port_configure_lacp(port, &lacp_settings);
512 if (s.lacp) {
513 size_t i = 0;
514
515 s.lacp_slaves = xmalloc(s.n_slaves * sizeof *s.lacp_slaves);
516 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
517 iface_configure_lacp(iface, &s.lacp_slaves[i++]);
518 }
519 } else {
520 s.lacp_slaves = NULL;
521 }
522
523 /* Get bond settings. */
524 if (s.n_slaves > 1) {
525 s.bond = &bond_settings;
526 s.bond_stable_ids = xmalloc(s.n_slaves * sizeof *s.bond_stable_ids);
527 port_configure_bond(port, &bond_settings, s.bond_stable_ids);
528 } else {
529 s.bond = NULL;
530 s.bond_stable_ids = NULL;
531
532 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
533 netdev_set_miimon_interval(iface->netdev, 0);
534 }
535 }
536
537 /* Register. */
538 ofproto_bundle_register(port->bridge->ofproto, port, &s);
539
540 /* Clean up. */
541 free(s.trunks);
542 free(s.lacp_slaves);
543 free(s.bond_stable_ids);
544 }
545
546 /* Pick local port hardware address and datapath ID for 'br'. */
547 static void
548 bridge_configure_datapath_id(struct bridge *br)
549 {
550 uint8_t ea[ETH_ADDR_LEN];
551 uint64_t dpid;
552 struct iface *local_iface;
553 struct iface *hw_addr_iface;
554 char *dpid_string;
555
556 bridge_pick_local_hw_addr(br, ea, &hw_addr_iface);
557 local_iface = iface_from_ofp_port(br, OFPP_LOCAL);
558 if (local_iface) {
559 int error = netdev_set_etheraddr(local_iface->netdev, ea);
560 if (error) {
561 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
562 VLOG_ERR_RL(&rl, "bridge %s: failed to set bridge "
563 "Ethernet address: %s",
564 br->name, strerror(error));
565 }
566 }
567 memcpy(br->ea, ea, ETH_ADDR_LEN);
568
569 dpid = bridge_pick_datapath_id(br, ea, hw_addr_iface);
570 ofproto_set_datapath_id(br->ofproto, dpid);
571
572 dpid_string = xasprintf("%016"PRIx64, dpid);
573 ovsrec_bridge_set_datapath_id(br->cfg, dpid_string);
574 free(dpid_string);
575 }
576
577 /* Set NetFlow configuration on 'br'. */
578 static void
579 bridge_configure_netflow(struct bridge *br)
580 {
581 struct ovsrec_netflow *cfg = br->cfg->netflow;
582 struct netflow_options opts;
583
584 if (!cfg) {
585 ofproto_set_netflow(br->ofproto, NULL);
586 return;
587 }
588
589 memset(&opts, 0, sizeof opts);
590
591 /* Get default NetFlow configuration from datapath.
592 * Apply overrides from 'cfg'. */
593 ofproto_get_netflow_ids(br->ofproto, &opts.engine_type, &opts.engine_id);
594 if (cfg->engine_type) {
595 opts.engine_type = *cfg->engine_type;
596 }
597 if (cfg->engine_id) {
598 opts.engine_id = *cfg->engine_id;
599 }
600
601 /* Configure active timeout interval. */
602 opts.active_timeout = cfg->active_timeout;
603 if (!opts.active_timeout) {
604 opts.active_timeout = -1;
605 } else if (opts.active_timeout < 0) {
606 VLOG_WARN("bridge %s: active timeout interval set to negative "
607 "value, using default instead (%d seconds)", br->name,
608 NF_ACTIVE_TIMEOUT_DEFAULT);
609 opts.active_timeout = -1;
610 }
611
612 /* Add engine ID to interface number to disambiguate bridgs? */
613 opts.add_id_to_iface = cfg->add_id_to_interface;
614 if (opts.add_id_to_iface) {
615 if (opts.engine_id > 0x7f) {
616 VLOG_WARN("bridge %s: NetFlow port mangling may conflict with "
617 "another vswitch, choose an engine id less than 128",
618 br->name);
619 }
620 if (hmap_count(&br->ports) > 508) {
621 VLOG_WARN("bridge %s: NetFlow port mangling will conflict with "
622 "another port when more than 508 ports are used",
623 br->name);
624 }
625 }
626
627 /* Collectors. */
628 sset_init(&opts.collectors);
629 sset_add_array(&opts.collectors, cfg->targets, cfg->n_targets);
630
631 /* Configure. */
632 if (ofproto_set_netflow(br->ofproto, &opts)) {
633 VLOG_ERR("bridge %s: problem setting netflow collectors", br->name);
634 }
635 sset_destroy(&opts.collectors);
636 }
637
638 /* Set sFlow configuration on 'br'. */
639 static void
640 bridge_configure_sflow(struct bridge *br, int *sflow_bridge_number)
641 {
642 const struct ovsrec_sflow *cfg = br->cfg->sflow;
643 struct ovsrec_controller **controllers;
644 struct ofproto_sflow_options oso;
645 size_t n_controllers;
646 size_t i;
647
648 if (!cfg) {
649 ofproto_set_sflow(br->ofproto, NULL);
650 return;
651 }
652
653 memset(&oso, 0, sizeof oso);
654
655 sset_init(&oso.targets);
656 sset_add_array(&oso.targets, cfg->targets, cfg->n_targets);
657
658 oso.sampling_rate = SFL_DEFAULT_SAMPLING_RATE;
659 if (cfg->sampling) {
660 oso.sampling_rate = *cfg->sampling;
661 }
662
663 oso.polling_interval = SFL_DEFAULT_POLLING_INTERVAL;
664 if (cfg->polling) {
665 oso.polling_interval = *cfg->polling;
666 }
667
668 oso.header_len = SFL_DEFAULT_HEADER_SIZE;
669 if (cfg->header) {
670 oso.header_len = *cfg->header;
671 }
672
673 oso.sub_id = (*sflow_bridge_number)++;
674 oso.agent_device = cfg->agent;
675
676 oso.control_ip = NULL;
677 n_controllers = bridge_get_controllers(br, &controllers);
678 for (i = 0; i < n_controllers; i++) {
679 if (controllers[i]->local_ip) {
680 oso.control_ip = controllers[i]->local_ip;
681 break;
682 }
683 }
684 ofproto_set_sflow(br->ofproto, &oso);
685
686 sset_destroy(&oso.targets);
687 }
688
689 static bool
690 bridge_has_bond_fake_iface(const struct bridge *br, const char *name)
691 {
692 const struct port *port = port_lookup(br, name);
693 return port && port_is_bond_fake_iface(port);
694 }
695
696 static bool
697 port_is_bond_fake_iface(const struct port *port)
698 {
699 return port->cfg->bond_fake_iface && !list_is_short(&port->ifaces);
700 }
701
702 static void
703 add_del_bridges(const struct ovsrec_open_vswitch *cfg)
704 {
705 struct bridge *br, *next;
706 struct shash new_br;
707 size_t i;
708
709 /* Collect new bridges' names and types. */
710 shash_init(&new_br);
711 for (i = 0; i < cfg->n_bridges; i++) {
712 const struct ovsrec_bridge *br_cfg = cfg->bridges[i];
713 if (!shash_add_once(&new_br, br_cfg->name, br_cfg)) {
714 VLOG_WARN("bridge %s specified twice", br_cfg->name);
715 }
716 }
717
718 /* Get rid of deleted bridges or those whose types have changed.
719 * Update 'cfg' of bridges that still exist. */
720 HMAP_FOR_EACH_SAFE (br, next, node, &all_bridges) {
721 br->cfg = shash_find_data(&new_br, br->name);
722 if (!br->cfg || strcmp(br->type, ofproto_normalize_type(
723 br->cfg->datapath_type))) {
724 bridge_destroy(br);
725 }
726 }
727
728 /* Add new bridges. */
729 for (i = 0; i < cfg->n_bridges; i++) {
730 const struct ovsrec_bridge *br_cfg = cfg->bridges[i];
731 struct bridge *br = bridge_lookup(br_cfg->name);
732 if (!br) {
733 bridge_create(br_cfg);
734 }
735 }
736
737 shash_destroy(&new_br);
738 }
739
740 /* Delete each ofproto port on 'br' that doesn't have a corresponding "struct
741 * iface".
742 *
743 * The kernel will reject any attempt to add a given port to a datapath if that
744 * port already belongs to a different datapath, so we must do all port
745 * deletions before any port additions. */
746 static void
747 bridge_del_ofproto_ports(struct bridge *br)
748 {
749 struct ofproto_port_dump dump;
750 struct ofproto_port ofproto_port;
751
752 OFPROTO_PORT_FOR_EACH (&ofproto_port, &dump, br->ofproto) {
753 const char *name = ofproto_port.name;
754 struct iface *iface;
755 const char *type;
756 int error;
757
758 /* Ignore the local port. We can't change it anyhow. */
759 if (!strcmp(name, br->name)) {
760 continue;
761 }
762
763 /* Get the type that 'ofproto_port' should have (ordinarily the
764 * type of its corresponding iface) or NULL if it should be
765 * deleted. */
766 iface = iface_lookup(br, name);
767 type = (iface ? iface->type
768 : bridge_has_bond_fake_iface(br, name) ? "internal"
769 : NULL);
770
771 /* If it's the wrong type then delete the ofproto port. */
772 if (type
773 && !strcmp(ofproto_port.type, type)
774 && (!iface || !iface->netdev
775 || !strcmp(netdev_get_type(iface->netdev), type))) {
776 continue;
777 }
778 error = ofproto_port_del(br->ofproto, ofproto_port.ofp_port);
779 if (error) {
780 VLOG_WARN("bridge %s: failed to remove %s interface (%s)",
781 br->name, name, strerror(error));
782 }
783 if (iface) {
784 netdev_close(iface->netdev);
785 iface->netdev = NULL;
786 }
787 }
788 }
789
790 static void
791 iface_set_ofp_port(struct iface *iface, int ofp_port)
792 {
793 struct bridge *br = iface->port->bridge;
794
795 assert(iface->ofp_port < 0 && ofp_port >= 0);
796 iface->ofp_port = ofp_port;
797 hmap_insert(&br->ifaces, &iface->ofp_port_node, hash_int(ofp_port, 0));
798 iface_set_ofport(iface->cfg, ofp_port);
799 }
800
801 static void
802 bridge_refresh_ofp_port(struct bridge *br)
803 {
804 struct ofproto_port_dump dump;
805 struct ofproto_port ofproto_port;
806 struct port *port;
807
808 /* Clear all the "ofp_port"es. */
809 hmap_clear(&br->ifaces);
810 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
811 struct iface *iface;
812
813 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
814 iface->ofp_port = -1;
815 }
816 }
817
818 /* Obtain the correct "ofp_port"s from ofproto. */
819 OFPROTO_PORT_FOR_EACH (&ofproto_port, &dump, br->ofproto) {
820 struct iface *iface = iface_lookup(br, ofproto_port.name);
821 if (iface) {
822 if (iface->ofp_port >= 0) {
823 VLOG_WARN("bridge %s: interface %s reported twice",
824 br->name, ofproto_port.name);
825 } else if (iface_from_ofp_port(br, ofproto_port.ofp_port)) {
826 VLOG_WARN("bridge %s: interface %"PRIu16" reported twice",
827 br->name, ofproto_port.ofp_port);
828 } else {
829 iface_set_ofp_port(iface, ofproto_port.ofp_port);
830 }
831 }
832 }
833 }
834
835 /* Add an ofproto port for any "struct iface" that doesn't have one.
836 * Delete any "struct iface" for which this fails.
837 * Delete any "struct port" that thereby ends up with no ifaces. */
838 static void
839 bridge_add_ofproto_ports(struct bridge *br)
840 {
841 struct port *port, *next_port;
842
843 HMAP_FOR_EACH_SAFE (port, next_port, hmap_node, &br->ports) {
844 struct iface *iface, *next_iface;
845 struct ofproto_port ofproto_port;
846
847 LIST_FOR_EACH_SAFE (iface, next_iface, port_elem, &port->ifaces) {
848 struct shash args;
849 int error;
850
851 /* Open the netdev or reconfigure it. */
852 shash_init(&args);
853 shash_from_ovs_idl_map(iface->cfg->key_options,
854 iface->cfg->value_options,
855 iface->cfg->n_options, &args);
856 if (!iface->netdev) {
857 struct netdev_options options;
858 options.name = iface->name;
859 options.type = iface->type;
860 options.args = &args;
861 options.ethertype = NETDEV_ETH_TYPE_NONE;
862 error = netdev_open(&options, &iface->netdev);
863 } else {
864 error = netdev_set_config(iface->netdev, &args);
865 }
866 shash_destroy(&args);
867 if (error) {
868 VLOG_WARN("could not %s network device %s (%s)",
869 iface->netdev ? "reconfigure" : "open",
870 iface->name, strerror(error));
871 }
872
873 /* Add the port, if necessary. */
874 if (iface->netdev && iface->ofp_port < 0) {
875 uint16_t ofp_port;
876 int error;
877
878 error = ofproto_port_add(br->ofproto, iface->netdev,
879 &ofp_port);
880 if (!error) {
881 iface_set_ofp_port(iface, ofp_port);
882 } else {
883 netdev_close(iface->netdev);
884 iface->netdev = NULL;
885 }
886 }
887
888 /* Delete the iface if */
889 if (iface->netdev && iface->ofp_port >= 0) {
890 VLOG_DBG("bridge %s: interface %s is on port %d",
891 br->name, iface->name, iface->ofp_port);
892 } else {
893 if (iface->netdev) {
894 VLOG_ERR("bridge %s: missing %s interface, dropping",
895 br->name, iface->name);
896 } else {
897 /* We already reported a related error, don't bother
898 * duplicating it. */
899 }
900 iface_set_ofport(iface->cfg, -1);
901 iface_destroy(iface);
902 }
903 }
904 if (list_is_empty(&port->ifaces)) {
905 VLOG_WARN("%s port has no interfaces, dropping", port->name);
906 port_destroy(port);
907 continue;
908 }
909
910 /* Add bond fake iface if necessary. */
911 if (port_is_bond_fake_iface(port)) {
912 if (ofproto_port_query_by_name(br->ofproto, port->name,
913 &ofproto_port)) {
914 struct netdev_options options;
915 struct netdev *netdev;
916 int error;
917
918 options.name = port->name;
919 options.type = "internal";
920 options.args = NULL;
921 options.ethertype = NETDEV_ETH_TYPE_NONE;
922 error = netdev_open(&options, &netdev);
923 if (!error) {
924 ofproto_port_add(br->ofproto, netdev, NULL);
925 netdev_close(netdev);
926 } else {
927 VLOG_WARN("could not open network device %s (%s)",
928 port->name, strerror(error));
929 }
930 } else {
931 /* Already exists, nothing to do. */
932 ofproto_port_destroy(&ofproto_port);
933 }
934 }
935 }
936 }
937
938 static const char *
939 get_ovsrec_key_value(const struct ovsdb_idl_row *row,
940 const struct ovsdb_idl_column *column,
941 const char *key)
942 {
943 const struct ovsdb_datum *datum;
944 union ovsdb_atom atom;
945 unsigned int idx;
946
947 datum = ovsdb_idl_get(row, column, OVSDB_TYPE_STRING, OVSDB_TYPE_STRING);
948 atom.string = (char *) key;
949 idx = ovsdb_datum_find_key(datum, &atom, OVSDB_TYPE_STRING);
950 return idx == UINT_MAX ? NULL : datum->values[idx].string;
951 }
952
953 static const char *
954 bridge_get_other_config(const struct ovsrec_bridge *br_cfg, const char *key)
955 {
956 return get_ovsrec_key_value(&br_cfg->header_,
957 &ovsrec_bridge_col_other_config, key);
958 }
959
960 static void
961 bridge_pick_local_hw_addr(struct bridge *br, uint8_t ea[ETH_ADDR_LEN],
962 struct iface **hw_addr_iface)
963 {
964 const char *hwaddr;
965 struct port *port;
966 int error;
967
968 *hw_addr_iface = NULL;
969
970 /* Did the user request a particular MAC? */
971 hwaddr = bridge_get_other_config(br->cfg, "hwaddr");
972 if (hwaddr && eth_addr_from_string(hwaddr, ea)) {
973 if (eth_addr_is_multicast(ea)) {
974 VLOG_ERR("bridge %s: cannot set MAC address to multicast "
975 "address "ETH_ADDR_FMT, br->name, ETH_ADDR_ARGS(ea));
976 } else if (eth_addr_is_zero(ea)) {
977 VLOG_ERR("bridge %s: cannot set MAC address to zero", br->name);
978 } else {
979 return;
980 }
981 }
982
983 /* Otherwise choose the minimum non-local MAC address among all of the
984 * interfaces. */
985 memset(ea, 0xff, ETH_ADDR_LEN);
986 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
987 uint8_t iface_ea[ETH_ADDR_LEN];
988 struct iface *candidate;
989 struct iface *iface;
990
991 /* Mirror output ports don't participate. */
992 if (ofproto_is_mirror_output_bundle(br->ofproto, port)) {
993 continue;
994 }
995
996 /* Choose the MAC address to represent the port. */
997 iface = NULL;
998 if (port->cfg->mac && eth_addr_from_string(port->cfg->mac, iface_ea)) {
999 /* Find the interface with this Ethernet address (if any) so that
1000 * we can provide the correct devname to the caller. */
1001 LIST_FOR_EACH (candidate, port_elem, &port->ifaces) {
1002 uint8_t candidate_ea[ETH_ADDR_LEN];
1003 if (!netdev_get_etheraddr(candidate->netdev, candidate_ea)
1004 && eth_addr_equals(iface_ea, candidate_ea)) {
1005 iface = candidate;
1006 }
1007 }
1008 } else {
1009 /* Choose the interface whose MAC address will represent the port.
1010 * The Linux kernel bonding code always chooses the MAC address of
1011 * the first slave added to a bond, and the Fedora networking
1012 * scripts always add slaves to a bond in alphabetical order, so
1013 * for compatibility we choose the interface with the name that is
1014 * first in alphabetical order. */
1015 LIST_FOR_EACH (candidate, port_elem, &port->ifaces) {
1016 if (!iface || strcmp(candidate->name, iface->name) < 0) {
1017 iface = candidate;
1018 }
1019 }
1020
1021 /* The local port doesn't count (since we're trying to choose its
1022 * MAC address anyway). */
1023 if (iface->ofp_port == OFPP_LOCAL) {
1024 continue;
1025 }
1026
1027 /* Grab MAC. */
1028 error = netdev_get_etheraddr(iface->netdev, iface_ea);
1029 if (error) {
1030 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1031 VLOG_ERR_RL(&rl, "failed to obtain Ethernet address of %s: %s",
1032 iface->name, strerror(error));
1033 continue;
1034 }
1035 }
1036
1037 /* Compare against our current choice. */
1038 if (!eth_addr_is_multicast(iface_ea) &&
1039 !eth_addr_is_local(iface_ea) &&
1040 !eth_addr_is_reserved(iface_ea) &&
1041 !eth_addr_is_zero(iface_ea) &&
1042 eth_addr_compare_3way(iface_ea, ea) < 0)
1043 {
1044 memcpy(ea, iface_ea, ETH_ADDR_LEN);
1045 *hw_addr_iface = iface;
1046 }
1047 }
1048 if (eth_addr_is_multicast(ea)) {
1049 memcpy(ea, br->default_ea, ETH_ADDR_LEN);
1050 *hw_addr_iface = NULL;
1051 VLOG_WARN("bridge %s: using default bridge Ethernet "
1052 "address "ETH_ADDR_FMT, br->name, ETH_ADDR_ARGS(ea));
1053 } else {
1054 VLOG_DBG("bridge %s: using bridge Ethernet address "ETH_ADDR_FMT,
1055 br->name, ETH_ADDR_ARGS(ea));
1056 }
1057 }
1058
1059 /* Choose and returns the datapath ID for bridge 'br' given that the bridge
1060 * Ethernet address is 'bridge_ea'. If 'bridge_ea' is the Ethernet address of
1061 * an interface on 'br', then that interface must be passed in as
1062 * 'hw_addr_iface'; if 'bridge_ea' was derived some other way, then
1063 * 'hw_addr_iface' must be passed in as a null pointer. */
1064 static uint64_t
1065 bridge_pick_datapath_id(struct bridge *br,
1066 const uint8_t bridge_ea[ETH_ADDR_LEN],
1067 struct iface *hw_addr_iface)
1068 {
1069 /*
1070 * The procedure for choosing a bridge MAC address will, in the most
1071 * ordinary case, also choose a unique MAC that we can use as a datapath
1072 * ID. In some special cases, though, multiple bridges will end up with
1073 * the same MAC address. This is OK for the bridges, but it will confuse
1074 * the OpenFlow controller, because each datapath needs a unique datapath
1075 * ID.
1076 *
1077 * Datapath IDs must be unique. It is also very desirable that they be
1078 * stable from one run to the next, so that policy set on a datapath
1079 * "sticks".
1080 */
1081 const char *datapath_id;
1082 uint64_t dpid;
1083
1084 datapath_id = bridge_get_other_config(br->cfg, "datapath-id");
1085 if (datapath_id && dpid_from_string(datapath_id, &dpid)) {
1086 return dpid;
1087 }
1088
1089 if (hw_addr_iface) {
1090 int vlan;
1091 if (!netdev_get_vlan_vid(hw_addr_iface->netdev, &vlan)) {
1092 /*
1093 * A bridge whose MAC address is taken from a VLAN network device
1094 * (that is, a network device created with vconfig(8) or similar
1095 * tool) will have the same MAC address as a bridge on the VLAN
1096 * device's physical network device.
1097 *
1098 * Handle this case by hashing the physical network device MAC
1099 * along with the VLAN identifier.
1100 */
1101 uint8_t buf[ETH_ADDR_LEN + 2];
1102 memcpy(buf, bridge_ea, ETH_ADDR_LEN);
1103 buf[ETH_ADDR_LEN] = vlan >> 8;
1104 buf[ETH_ADDR_LEN + 1] = vlan;
1105 return dpid_from_hash(buf, sizeof buf);
1106 } else {
1107 /*
1108 * Assume that this bridge's MAC address is unique, since it
1109 * doesn't fit any of the cases we handle specially.
1110 */
1111 }
1112 } else {
1113 /*
1114 * A purely internal bridge, that is, one that has no non-virtual
1115 * network devices on it at all, is more difficult because it has no
1116 * natural unique identifier at all.
1117 *
1118 * When the host is a XenServer, we handle this case by hashing the
1119 * host's UUID with the name of the bridge. Names of bridges are
1120 * persistent across XenServer reboots, although they can be reused if
1121 * an internal network is destroyed and then a new one is later
1122 * created, so this is fairly effective.
1123 *
1124 * When the host is not a XenServer, we punt by using a random MAC
1125 * address on each run.
1126 */
1127 const char *host_uuid = xenserver_get_host_uuid();
1128 if (host_uuid) {
1129 char *combined = xasprintf("%s,%s", host_uuid, br->name);
1130 dpid = dpid_from_hash(combined, strlen(combined));
1131 free(combined);
1132 return dpid;
1133 }
1134 }
1135
1136 return eth_addr_to_uint64(bridge_ea);
1137 }
1138
1139 static uint64_t
1140 dpid_from_hash(const void *data, size_t n)
1141 {
1142 uint8_t hash[SHA1_DIGEST_SIZE];
1143
1144 BUILD_ASSERT_DECL(sizeof hash >= ETH_ADDR_LEN);
1145 sha1_bytes(data, n, hash);
1146 eth_addr_mark_random(hash);
1147 return eth_addr_to_uint64(hash);
1148 }
1149
1150 static void
1151 iface_refresh_status(struct iface *iface)
1152 {
1153 struct shash sh;
1154
1155 enum netdev_flags flags;
1156 uint32_t current;
1157 int64_t bps;
1158 int mtu;
1159 int64_t mtu_64;
1160 int error;
1161
1162 if (iface_is_synthetic(iface)) {
1163 return;
1164 }
1165
1166 shash_init(&sh);
1167
1168 if (!netdev_get_status(iface->netdev, &sh)) {
1169 size_t n;
1170 char **keys, **values;
1171
1172 shash_to_ovs_idl_map(&sh, &keys, &values, &n);
1173 ovsrec_interface_set_status(iface->cfg, keys, values, n);
1174
1175 free(keys);
1176 free(values);
1177 } else {
1178 ovsrec_interface_set_status(iface->cfg, NULL, NULL, 0);
1179 }
1180
1181 shash_destroy_free_data(&sh);
1182
1183 error = netdev_get_flags(iface->netdev, &flags);
1184 if (!error) {
1185 ovsrec_interface_set_admin_state(iface->cfg, flags & NETDEV_UP ? "up" : "down");
1186 }
1187 else {
1188 ovsrec_interface_set_admin_state(iface->cfg, NULL);
1189 }
1190
1191 error = netdev_get_features(iface->netdev, &current, NULL, NULL, NULL);
1192 if (!error) {
1193 ovsrec_interface_set_duplex(iface->cfg,
1194 netdev_features_is_full_duplex(current)
1195 ? "full" : "half");
1196 /* warning: uint64_t -> int64_t conversion */
1197 bps = netdev_features_to_bps(current);
1198 ovsrec_interface_set_link_speed(iface->cfg, &bps, 1);
1199 }
1200 else {
1201 ovsrec_interface_set_duplex(iface->cfg, NULL);
1202 ovsrec_interface_set_link_speed(iface->cfg, NULL, 0);
1203 }
1204
1205 ovsrec_interface_set_link_state(iface->cfg,
1206 iface_get_carrier(iface) ? "up" : "down");
1207
1208 error = netdev_get_mtu(iface->netdev, &mtu);
1209 if (!error && mtu != INT_MAX) {
1210 mtu_64 = mtu;
1211 ovsrec_interface_set_mtu(iface->cfg, &mtu_64, 1);
1212 }
1213 else {
1214 ovsrec_interface_set_mtu(iface->cfg, NULL, 0);
1215 }
1216 }
1217
1218 /* Writes 'iface''s CFM statistics to the database. Returns true if anything
1219 * changed, false otherwise. */
1220 static bool
1221 iface_refresh_cfm_stats(struct iface *iface)
1222 {
1223 const struct ovsrec_monitor *mon;
1224 const struct cfm *cfm;
1225 bool changed = false;
1226 size_t i;
1227
1228 mon = iface->cfg->monitor;
1229 cfm = ofproto_port_get_cfm(iface->port->bridge->ofproto, iface->ofp_port);
1230
1231 if (!cfm || !mon) {
1232 return false;
1233 }
1234
1235 for (i = 0; i < mon->n_remote_mps; i++) {
1236 const struct ovsrec_maintenance_point *mp;
1237 const struct remote_mp *rmp;
1238
1239 mp = mon->remote_mps[i];
1240 rmp = cfm_get_remote_mp(cfm, mp->mpid);
1241
1242 if (mp->n_fault != 1 || mp->fault[0] != rmp->fault) {
1243 ovsrec_maintenance_point_set_fault(mp, &rmp->fault, 1);
1244 changed = true;
1245 }
1246 }
1247
1248 if (mon->n_fault != 1 || mon->fault[0] != cfm->fault) {
1249 ovsrec_monitor_set_fault(mon, &cfm->fault, 1);
1250 changed = true;
1251 }
1252
1253 return changed;
1254 }
1255
1256 static bool
1257 iface_refresh_lacp_stats(struct iface *iface)
1258 {
1259 struct ofproto *ofproto = iface->port->bridge->ofproto;
1260 int old = iface->cfg->lacp_current ? *iface->cfg->lacp_current : -1;
1261 int new = ofproto_port_is_lacp_current(ofproto, iface->ofp_port);
1262
1263 if (old != new) {
1264 bool current = new;
1265 ovsrec_interface_set_lacp_current(iface->cfg, &current, new >= 0);
1266 }
1267 return old != new;
1268 }
1269
1270 static void
1271 iface_refresh_stats(struct iface *iface)
1272 {
1273 struct iface_stat {
1274 char *name;
1275 int offset;
1276 };
1277 static const struct iface_stat iface_stats[] = {
1278 { "rx_packets", offsetof(struct netdev_stats, rx_packets) },
1279 { "tx_packets", offsetof(struct netdev_stats, tx_packets) },
1280 { "rx_bytes", offsetof(struct netdev_stats, rx_bytes) },
1281 { "tx_bytes", offsetof(struct netdev_stats, tx_bytes) },
1282 { "rx_dropped", offsetof(struct netdev_stats, rx_dropped) },
1283 { "tx_dropped", offsetof(struct netdev_stats, tx_dropped) },
1284 { "rx_errors", offsetof(struct netdev_stats, rx_errors) },
1285 { "tx_errors", offsetof(struct netdev_stats, tx_errors) },
1286 { "rx_frame_err", offsetof(struct netdev_stats, rx_frame_errors) },
1287 { "rx_over_err", offsetof(struct netdev_stats, rx_over_errors) },
1288 { "rx_crc_err", offsetof(struct netdev_stats, rx_crc_errors) },
1289 { "collisions", offsetof(struct netdev_stats, collisions) },
1290 };
1291 enum { N_STATS = ARRAY_SIZE(iface_stats) };
1292 const struct iface_stat *s;
1293
1294 char *keys[N_STATS];
1295 int64_t values[N_STATS];
1296 int n;
1297
1298 struct netdev_stats stats;
1299
1300 if (iface_is_synthetic(iface)) {
1301 return;
1302 }
1303
1304 /* Intentionally ignore return value, since errors will set 'stats' to
1305 * all-1s, and we will deal with that correctly below. */
1306 netdev_get_stats(iface->netdev, &stats);
1307
1308 n = 0;
1309 for (s = iface_stats; s < &iface_stats[N_STATS]; s++) {
1310 uint64_t value = *(uint64_t *) (((char *) &stats) + s->offset);
1311 if (value != UINT64_MAX) {
1312 keys[n] = s->name;
1313 values[n] = value;
1314 n++;
1315 }
1316 }
1317
1318 ovsrec_interface_set_statistics(iface->cfg, keys, values, n);
1319 }
1320
1321 static void
1322 refresh_system_stats(const struct ovsrec_open_vswitch *cfg)
1323 {
1324 struct ovsdb_datum datum;
1325 struct shash stats;
1326
1327 shash_init(&stats);
1328 get_system_stats(&stats);
1329
1330 ovsdb_datum_from_shash(&datum, &stats);
1331 ovsdb_idl_txn_write(&cfg->header_, &ovsrec_open_vswitch_col_statistics,
1332 &datum);
1333 }
1334
1335 static inline const char *
1336 nx_role_to_str(enum nx_role role)
1337 {
1338 switch (role) {
1339 case NX_ROLE_OTHER:
1340 return "other";
1341 case NX_ROLE_MASTER:
1342 return "master";
1343 case NX_ROLE_SLAVE:
1344 return "slave";
1345 default:
1346 return "*** INVALID ROLE ***";
1347 }
1348 }
1349
1350 static void
1351 bridge_refresh_controller_status(const struct bridge *br)
1352 {
1353 struct shash info;
1354 const struct ovsrec_controller *cfg;
1355
1356 ofproto_get_ofproto_controller_info(br->ofproto, &info);
1357
1358 OVSREC_CONTROLLER_FOR_EACH(cfg, idl) {
1359 struct ofproto_controller_info *cinfo =
1360 shash_find_data(&info, cfg->target);
1361
1362 if (cinfo) {
1363 ovsrec_controller_set_is_connected(cfg, cinfo->is_connected);
1364 ovsrec_controller_set_role(cfg, nx_role_to_str(cinfo->role));
1365 ovsrec_controller_set_status(cfg, (char **) cinfo->pairs.keys,
1366 (char **) cinfo->pairs.values,
1367 cinfo->pairs.n);
1368 } else {
1369 ovsrec_controller_set_is_connected(cfg, false);
1370 ovsrec_controller_set_role(cfg, NULL);
1371 ovsrec_controller_set_status(cfg, NULL, NULL, 0);
1372 }
1373 }
1374
1375 ofproto_free_ofproto_controller_info(&info);
1376 }
1377
1378 void
1379 bridge_run(void)
1380 {
1381 const struct ovsrec_open_vswitch *cfg;
1382
1383 bool datapath_destroyed;
1384 bool database_changed;
1385 struct bridge *br;
1386
1387 /* Let each bridge do the work that it needs to do. */
1388 datapath_destroyed = false;
1389 HMAP_FOR_EACH (br, node, &all_bridges) {
1390 int error = ofproto_run(br->ofproto);
1391 if (error) {
1392 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1393 VLOG_ERR_RL(&rl, "bridge %s: datapath was destroyed externally, "
1394 "forcing reconfiguration", br->name);
1395 datapath_destroyed = true;
1396 }
1397 }
1398
1399 /* (Re)configure if necessary. */
1400 database_changed = ovsdb_idl_run(idl);
1401 cfg = ovsrec_open_vswitch_first(idl);
1402
1403 /* Re-configure SSL. We do this on every trip through the main loop,
1404 * instead of just when the database changes, because the contents of the
1405 * key and certificate files can change without the database changing.
1406 *
1407 * We do this before bridge_reconfigure() because that function might
1408 * initiate SSL connections and thus requires SSL to be configured. */
1409 if (cfg && cfg->ssl) {
1410 const struct ovsrec_ssl *ssl = cfg->ssl;
1411
1412 stream_ssl_set_key_and_cert(ssl->private_key, ssl->certificate);
1413 stream_ssl_set_ca_cert_file(ssl->ca_cert, ssl->bootstrap_ca_cert);
1414 }
1415
1416 if (database_changed || datapath_destroyed) {
1417 if (cfg) {
1418 struct ovsdb_idl_txn *txn = ovsdb_idl_txn_create(idl);
1419
1420 bridge_reconfigure(cfg);
1421
1422 ovsrec_open_vswitch_set_cur_cfg(cfg, cfg->next_cfg);
1423 ovsdb_idl_txn_commit(txn);
1424 ovsdb_idl_txn_destroy(txn); /* XXX */
1425 } else {
1426 /* We still need to reconfigure to avoid dangling pointers to
1427 * now-destroyed ovsrec structures inside bridge data. */
1428 static const struct ovsrec_open_vswitch null_cfg;
1429
1430 bridge_reconfigure(&null_cfg);
1431 }
1432 }
1433
1434 /* Refresh system and interface stats if necessary. */
1435 if (time_msec() >= stats_timer) {
1436 if (cfg) {
1437 struct ovsdb_idl_txn *txn;
1438
1439 txn = ovsdb_idl_txn_create(idl);
1440 HMAP_FOR_EACH (br, node, &all_bridges) {
1441 struct port *port;
1442
1443 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
1444 struct iface *iface;
1445
1446 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
1447 iface_refresh_stats(iface);
1448 iface_refresh_status(iface);
1449 }
1450 }
1451 bridge_refresh_controller_status(br);
1452 }
1453 refresh_system_stats(cfg);
1454 ovsdb_idl_txn_commit(txn);
1455 ovsdb_idl_txn_destroy(txn); /* XXX */
1456 }
1457
1458 stats_timer = time_msec() + STATS_INTERVAL;
1459 }
1460
1461 if (time_msec() >= db_limiter) {
1462 struct ovsdb_idl_txn *txn;
1463 bool changed = false;
1464
1465 txn = ovsdb_idl_txn_create(idl);
1466 HMAP_FOR_EACH (br, node, &all_bridges) {
1467 struct port *port;
1468
1469 HMAP_FOR_EACH (port, hmap_node, &br->ports) {
1470 struct iface *iface;
1471
1472 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
1473 changed = iface_refresh_cfm_stats(iface) || changed;
1474 changed = iface_refresh_lacp_stats(iface) || changed;
1475 }
1476 }
1477 }
1478
1479 if (changed) {
1480 db_limiter = time_msec() + DB_LIMIT_INTERVAL;
1481 }
1482
1483 ovsdb_idl_txn_commit(txn);
1484 ovsdb_idl_txn_destroy(txn);
1485 }
1486 }
1487
1488 void
1489 bridge_wait(void)
1490 {
1491 struct bridge *br;
1492
1493 HMAP_FOR_EACH (br, node, &all_bridges) {
1494 ofproto_wait(br->ofproto);
1495 }
1496 ovsdb_idl_wait(idl);
1497 poll_timer_wait_until(stats_timer);
1498
1499 if (db_limiter > time_msec()) {
1500 poll_timer_wait_until(db_limiter);
1501 }
1502 }
1503 \f
1504 /* CFM unixctl user interface functions. */
1505 static void
1506 cfm_unixctl_show(struct unixctl_conn *conn,
1507 const char *args, void *aux OVS_UNUSED)
1508 {
1509 struct ds ds = DS_EMPTY_INITIALIZER;
1510 struct iface *iface;
1511 const struct cfm *cfm;
1512
1513 iface = iface_find(args);
1514 if (!iface) {
1515 unixctl_command_reply(conn, 501, "no such interface");
1516 return;
1517 }
1518
1519 cfm = ofproto_port_get_cfm(iface->port->bridge->ofproto, iface->ofp_port);
1520
1521 if (!cfm) {
1522 unixctl_command_reply(conn, 501, "CFM not enabled");
1523 return;
1524 }
1525
1526 cfm_dump_ds(cfm, &ds);
1527 unixctl_command_reply(conn, 200, ds_cstr(&ds));
1528 ds_destroy(&ds);
1529 }
1530 \f
1531 /* QoS unixctl user interface functions. */
1532
1533 struct qos_unixctl_show_cbdata {
1534 struct ds *ds;
1535 struct iface *iface;
1536 };
1537
1538 static void
1539 qos_unixctl_show_cb(unsigned int queue_id,
1540 const struct shash *details,
1541 void *aux)
1542 {
1543 struct qos_unixctl_show_cbdata *data = aux;
1544 struct ds *ds = data->ds;
1545 struct iface *iface = data->iface;
1546 struct netdev_queue_stats stats;
1547 struct shash_node *node;
1548 int error;
1549
1550 ds_put_cstr(ds, "\n");
1551 if (queue_id) {
1552 ds_put_format(ds, "Queue %u:\n", queue_id);
1553 } else {
1554 ds_put_cstr(ds, "Default:\n");
1555 }
1556
1557 SHASH_FOR_EACH (node, details) {
1558 ds_put_format(ds, "\t%s: %s\n", node->name, (char *)node->data);
1559 }
1560
1561 error = netdev_get_queue_stats(iface->netdev, queue_id, &stats);
1562 if (!error) {
1563 if (stats.tx_packets != UINT64_MAX) {
1564 ds_put_format(ds, "\ttx_packets: %"PRIu64"\n", stats.tx_packets);
1565 }
1566
1567 if (stats.tx_bytes != UINT64_MAX) {
1568 ds_put_format(ds, "\ttx_bytes: %"PRIu64"\n", stats.tx_bytes);
1569 }
1570
1571 if (stats.tx_errors != UINT64_MAX) {
1572 ds_put_format(ds, "\ttx_errors: %"PRIu64"\n", stats.tx_errors);
1573 }
1574 } else {
1575 ds_put_format(ds, "\tFailed to get statistics for queue %u: %s",
1576 queue_id, strerror(error));
1577 }
1578 }
1579
1580 static void
1581 qos_unixctl_show(struct unixctl_conn *conn,
1582 const char *args, void *aux OVS_UNUSED)
1583 {
1584 struct ds ds = DS_EMPTY_INITIALIZER;
1585 struct shash sh = SHASH_INITIALIZER(&sh);
1586 struct iface *iface;
1587 const char *type;
1588 struct shash_node *node;
1589 struct qos_unixctl_show_cbdata data;
1590 int error;
1591
1592 iface = iface_find(args);
1593 if (!iface) {
1594 unixctl_command_reply(conn, 501, "no such interface");
1595 return;
1596 }
1597
1598 netdev_get_qos(iface->netdev, &type, &sh);
1599
1600 if (*type != '\0') {
1601 ds_put_format(&ds, "QoS: %s %s\n", iface->name, type);
1602
1603 SHASH_FOR_EACH (node, &sh) {
1604 ds_put_format(&ds, "%s: %s\n", node->name, (char *)node->data);
1605 }
1606
1607 data.ds = &ds;
1608 data.iface = iface;
1609 error = netdev_dump_queues(iface->netdev, qos_unixctl_show_cb, &data);
1610
1611 if (error) {
1612 ds_put_format(&ds, "failed to dump queues: %s", strerror(error));
1613 }
1614 unixctl_command_reply(conn, 200, ds_cstr(&ds));
1615 } else {
1616 ds_put_format(&ds, "QoS not configured on %s\n", iface->name);
1617 unixctl_command_reply(conn, 501, ds_cstr(&ds));
1618 }
1619
1620 shash_destroy_free_data(&sh);
1621 ds_destroy(&ds);
1622 }
1623 \f
1624 /* Bridge reconfiguration functions. */
1625 static void
1626 bridge_create(const struct ovsrec_bridge *br_cfg)
1627 {
1628 struct bridge *br;
1629
1630 assert(!bridge_lookup(br_cfg->name));
1631 br = xzalloc(sizeof *br);
1632
1633 br->name = xstrdup(br_cfg->name);
1634 br->type = xstrdup(ofproto_normalize_type(br_cfg->datapath_type));
1635 br->cfg = br_cfg;
1636
1637 /* Derive the default Ethernet address from the bridge's UUID. This should
1638 * be unique and it will be stable between ovs-vswitchd runs. */
1639 memcpy(br->default_ea, &br_cfg->header_.uuid, ETH_ADDR_LEN);
1640 eth_addr_mark_random(br->default_ea);
1641
1642 hmap_init(&br->ports);
1643 hmap_init(&br->ifaces);
1644 hmap_init(&br->iface_by_name);
1645 hmap_init(&br->mirrors);
1646
1647 hmap_insert(&all_bridges, &br->node, hash_string(br->name, 0));
1648 }
1649
1650 static void
1651 bridge_destroy(struct bridge *br)
1652 {
1653 if (br) {
1654 struct mirror *mirror, *next_mirror;
1655 struct port *port, *next_port;
1656
1657 HMAP_FOR_EACH_SAFE (port, next_port, hmap_node, &br->ports) {
1658 port_destroy(port);
1659 }
1660 HMAP_FOR_EACH_SAFE (mirror, next_mirror, hmap_node, &br->mirrors) {
1661 mirror_destroy(mirror);
1662 }
1663 hmap_remove(&all_bridges, &br->node);
1664 ofproto_destroy(br->ofproto);
1665 hmap_destroy(&br->ifaces);
1666 hmap_destroy(&br->ports);
1667 hmap_destroy(&br->iface_by_name);
1668 hmap_destroy(&br->mirrors);
1669 free(br->name);
1670 free(br->type);
1671 free(br);
1672 }
1673 }
1674
1675 static struct bridge *
1676 bridge_lookup(const char *name)
1677 {
1678 struct bridge *br;
1679
1680 HMAP_FOR_EACH_WITH_HASH (br, node, hash_string(name, 0), &all_bridges) {
1681 if (!strcmp(br->name, name)) {
1682 return br;
1683 }
1684 }
1685 return NULL;
1686 }
1687
1688 /* Handle requests for a listing of all flows known by the OpenFlow
1689 * stack, including those normally hidden. */
1690 static void
1691 bridge_unixctl_dump_flows(struct unixctl_conn *conn,
1692 const char *args, void *aux OVS_UNUSED)
1693 {
1694 struct bridge *br;
1695 struct ds results;
1696
1697 br = bridge_lookup(args);
1698 if (!br) {
1699 unixctl_command_reply(conn, 501, "Unknown bridge");
1700 return;
1701 }
1702
1703 ds_init(&results);
1704 ofproto_get_all_flows(br->ofproto, &results);
1705
1706 unixctl_command_reply(conn, 200, ds_cstr(&results));
1707 ds_destroy(&results);
1708 }
1709
1710 /* "bridge/reconnect [BRIDGE]": makes BRIDGE drop all of its controller
1711 * connections and reconnect. If BRIDGE is not specified, then all bridges
1712 * drop their controller connections and reconnect. */
1713 static void
1714 bridge_unixctl_reconnect(struct unixctl_conn *conn,
1715 const char *args, void *aux OVS_UNUSED)
1716 {
1717 struct bridge *br;
1718 if (args[0] != '\0') {
1719 br = bridge_lookup(args);
1720 if (!br) {
1721 unixctl_command_reply(conn, 501, "Unknown bridge");
1722 return;
1723 }
1724 ofproto_reconnect_controllers(br->ofproto);
1725 } else {
1726 HMAP_FOR_EACH (br, node, &all_bridges) {
1727 ofproto_reconnect_controllers(br->ofproto);
1728 }
1729 }
1730 unixctl_command_reply(conn, 200, NULL);
1731 }
1732
1733 static size_t
1734 bridge_get_controllers(const struct bridge *br,
1735 struct ovsrec_controller ***controllersp)
1736 {
1737 struct ovsrec_controller **controllers;
1738 size_t n_controllers;
1739
1740 controllers = br->cfg->controller;
1741 n_controllers = br->cfg->n_controller;
1742
1743 if (n_controllers == 1 && !strcmp(controllers[0]->target, "none")) {
1744 controllers = NULL;
1745 n_controllers = 0;
1746 }
1747
1748 if (controllersp) {
1749 *controllersp = controllers;
1750 }
1751 return n_controllers;
1752 }
1753
1754 /* Adds and deletes "struct port"s and "struct iface"s under 'br' to match
1755 * those configured in 'br->cfg'. */
1756 static void
1757 bridge_add_del_ports(struct bridge *br)
1758 {
1759 struct port *port, *next;
1760 struct shash_node *node;
1761 struct shash new_ports;
1762 size_t i;
1763
1764 /* Collect new ports. */
1765 shash_init(&new_ports);
1766 for (i = 0; i < br->cfg->n_ports; i++) {
1767 const char *name = br->cfg->ports[i]->name;
1768 if (!shash_add_once(&new_ports, name, br->cfg->ports[i])) {
1769 VLOG_WARN("bridge %s: %s specified twice as bridge port",
1770 br->name, name);
1771 }
1772 }
1773 if (bridge_get_controllers(br, NULL)
1774 && !shash_find(&new_ports, br->name)) {
1775 VLOG_WARN("bridge %s: no port named %s, synthesizing one",
1776 br->name, br->name);
1777
1778 br->synth_local_port.interfaces = &br->synth_local_ifacep;
1779 br->synth_local_port.n_interfaces = 1;
1780 br->synth_local_port.name = br->name;
1781
1782 br->synth_local_iface.name = br->name;
1783 br->synth_local_iface.type = "internal";
1784
1785 br->synth_local_ifacep = &br->synth_local_iface;
1786
1787 shash_add(&new_ports, br->name, &br->synth_local_port);
1788 }
1789
1790 /* Get rid of deleted ports.
1791 * Get rid of deleted interfaces on ports that still exist.
1792 * Update 'cfg' of ports that still exist. */
1793 HMAP_FOR_EACH_SAFE (port, next, hmap_node, &br->ports) {
1794 port->cfg = shash_find_data(&new_ports, port->name);
1795 if (!port->cfg) {
1796 port_destroy(port);
1797 } else {
1798 port_del_ifaces(port);
1799 }
1800 }
1801
1802 /* Create new ports.
1803 * Add new interfaces to existing ports. */
1804 SHASH_FOR_EACH (node, &new_ports) {
1805 struct port *port = port_lookup(br, node->name);
1806 if (!port) {
1807 struct ovsrec_port *cfg = node->data;
1808 port = port_create(br, cfg);
1809 }
1810 port_add_ifaces(port);
1811 if (list_is_empty(&port->ifaces)) {
1812 VLOG_WARN("bridge %s: port %s has no interfaces, dropping",
1813 br->name, port->name);
1814 port_destroy(port);
1815 }
1816 }
1817 shash_destroy(&new_ports);
1818 }
1819
1820 /* Initializes 'oc' appropriately as a management service controller for
1821 * 'br'.
1822 *
1823 * The caller must free oc->target when it is no longer needed. */
1824 static void
1825 bridge_ofproto_controller_for_mgmt(const struct bridge *br,
1826 struct ofproto_controller *oc)
1827 {
1828 oc->target = xasprintf("punix:%s/%s.mgmt", ovs_rundir(), br->name);
1829 oc->max_backoff = 0;
1830 oc->probe_interval = 60;
1831 oc->band = OFPROTO_OUT_OF_BAND;
1832 oc->rate_limit = 0;
1833 oc->burst_limit = 0;
1834 }
1835
1836 /* Converts ovsrec_controller 'c' into an ofproto_controller in 'oc'. */
1837 static void
1838 bridge_ofproto_controller_from_ovsrec(const struct ovsrec_controller *c,
1839 struct ofproto_controller *oc)
1840 {
1841 oc->target = c->target;
1842 oc->max_backoff = c->max_backoff ? *c->max_backoff / 1000 : 8;
1843 oc->probe_interval = c->inactivity_probe ? *c->inactivity_probe / 1000 : 5;
1844 oc->band = (!c->connection_mode || !strcmp(c->connection_mode, "in-band")
1845 ? OFPROTO_IN_BAND : OFPROTO_OUT_OF_BAND);
1846 oc->rate_limit = c->controller_rate_limit ? *c->controller_rate_limit : 0;
1847 oc->burst_limit = (c->controller_burst_limit
1848 ? *c->controller_burst_limit : 0);
1849 }
1850
1851 /* Configures the IP stack for 'br''s local interface properly according to the
1852 * configuration in 'c'. */
1853 static void
1854 bridge_configure_local_iface_netdev(struct bridge *br,
1855 struct ovsrec_controller *c)
1856 {
1857 struct netdev *netdev;
1858 struct in_addr mask, gateway;
1859
1860 struct iface *local_iface;
1861 struct in_addr ip;
1862
1863 /* If there's no local interface or no IP address, give up. */
1864 local_iface = iface_from_ofp_port(br, OFPP_LOCAL);
1865 if (!local_iface || !c->local_ip || !inet_aton(c->local_ip, &ip)) {
1866 return;
1867 }
1868
1869 /* Bring up the local interface. */
1870 netdev = local_iface->netdev;
1871 netdev_turn_flags_on(netdev, NETDEV_UP, true);
1872
1873 /* Configure the IP address and netmask. */
1874 if (!c->local_netmask
1875 || !inet_aton(c->local_netmask, &mask)
1876 || !mask.s_addr) {
1877 mask.s_addr = guess_netmask(ip.s_addr);
1878 }
1879 if (!netdev_set_in4(netdev, ip, mask)) {
1880 VLOG_INFO("bridge %s: configured IP address "IP_FMT", netmask "IP_FMT,
1881 br->name, IP_ARGS(&ip.s_addr), IP_ARGS(&mask.s_addr));
1882 }
1883
1884 /* Configure the default gateway. */
1885 if (c->local_gateway
1886 && inet_aton(c->local_gateway, &gateway)
1887 && gateway.s_addr) {
1888 if (!netdev_add_router(netdev, gateway)) {
1889 VLOG_INFO("bridge %s: configured gateway "IP_FMT,
1890 br->name, IP_ARGS(&gateway.s_addr));
1891 }
1892 }
1893 }
1894
1895 static void
1896 bridge_configure_remotes(struct bridge *br,
1897 const struct sockaddr_in *managers, size_t n_managers)
1898 {
1899 const char *disable_ib_str, *queue_id_str;
1900 bool disable_in_band = false;
1901 int queue_id;
1902
1903 struct ovsrec_controller **controllers;
1904 size_t n_controllers;
1905
1906 enum ofproto_fail_mode fail_mode;
1907
1908 struct ofproto_controller *ocs;
1909 size_t n_ocs;
1910 size_t i;
1911
1912 /* Check if we should disable in-band control on this bridge. */
1913 disable_ib_str = bridge_get_other_config(br->cfg, "disable-in-band");
1914 if (disable_ib_str && !strcmp(disable_ib_str, "true")) {
1915 disable_in_band = true;
1916 }
1917
1918 /* Set OpenFlow queue ID for in-band control. */
1919 queue_id_str = bridge_get_other_config(br->cfg, "in-band-queue");
1920 queue_id = queue_id_str ? strtol(queue_id_str, NULL, 10) : -1;
1921 ofproto_set_in_band_queue(br->ofproto, queue_id);
1922
1923 if (disable_in_band) {
1924 ofproto_set_extra_in_band_remotes(br->ofproto, NULL, 0);
1925 } else {
1926 ofproto_set_extra_in_band_remotes(br->ofproto, managers, n_managers);
1927 }
1928
1929 n_controllers = bridge_get_controllers(br, &controllers);
1930
1931 ocs = xmalloc((n_controllers + 1) * sizeof *ocs);
1932 n_ocs = 0;
1933
1934 bridge_ofproto_controller_for_mgmt(br, &ocs[n_ocs++]);
1935 for (i = 0; i < n_controllers; i++) {
1936 struct ovsrec_controller *c = controllers[i];
1937
1938 if (!strncmp(c->target, "punix:", 6)
1939 || !strncmp(c->target, "unix:", 5)) {
1940 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
1941
1942 /* Prevent remote ovsdb-server users from accessing arbitrary Unix
1943 * domain sockets and overwriting arbitrary local files. */
1944 VLOG_ERR_RL(&rl, "bridge %s: not adding Unix domain socket "
1945 "controller \"%s\" due to possibility for remote "
1946 "exploit", br->name, c->target);
1947 continue;
1948 }
1949
1950 bridge_configure_local_iface_netdev(br, c);
1951 bridge_ofproto_controller_from_ovsrec(c, &ocs[n_ocs]);
1952 if (disable_in_band) {
1953 ocs[n_ocs].band = OFPROTO_OUT_OF_BAND;
1954 }
1955 n_ocs++;
1956 }
1957
1958 ofproto_set_controllers(br->ofproto, ocs, n_ocs);
1959 free(ocs[0].target); /* From bridge_ofproto_controller_for_mgmt(). */
1960 free(ocs);
1961
1962 /* Set the fail-mode. */
1963 fail_mode = !br->cfg->fail_mode
1964 || !strcmp(br->cfg->fail_mode, "standalone")
1965 ? OFPROTO_FAIL_STANDALONE
1966 : OFPROTO_FAIL_SECURE;
1967 ofproto_set_fail_mode(br->ofproto, fail_mode);
1968
1969 /* Configure OpenFlow controller connection snooping. */
1970 if (!ofproto_has_snoops(br->ofproto)) {
1971 struct sset snoops;
1972
1973 sset_init(&snoops);
1974 sset_add_and_free(&snoops, xasprintf("punix:%s/%s.snoop",
1975 ovs_rundir(), br->name));
1976 ofproto_set_snoops(br->ofproto, &snoops);
1977 sset_destroy(&snoops);
1978 }
1979 }
1980 \f
1981 /* Port functions. */
1982
1983 static struct port *
1984 port_create(struct bridge *br, const struct ovsrec_port *cfg)
1985 {
1986 struct port *port;
1987
1988 port = xzalloc(sizeof *port);
1989 port->bridge = br;
1990 port->name = xstrdup(cfg->name);
1991 port->cfg = cfg;
1992 list_init(&port->ifaces);
1993
1994 hmap_insert(&br->ports, &port->hmap_node, hash_string(port->name, 0));
1995
1996 VLOG_INFO("created port %s on bridge %s", port->name, br->name);
1997
1998 return port;
1999 }
2000
2001 static const char *
2002 get_port_other_config(const struct ovsrec_port *port, const char *key,
2003 const char *default_value)
2004 {
2005 const char *value;
2006
2007 value = get_ovsrec_key_value(&port->header_, &ovsrec_port_col_other_config,
2008 key);
2009 return value ? value : default_value;
2010 }
2011
2012 static const char *
2013 get_interface_other_config(const struct ovsrec_interface *iface,
2014 const char *key, const char *default_value)
2015 {
2016 const char *value;
2017
2018 value = get_ovsrec_key_value(&iface->header_,
2019 &ovsrec_interface_col_other_config, key);
2020 return value ? value : default_value;
2021 }
2022
2023 /* Deletes interfaces from 'port' that are no longer configured for it. */
2024 static void
2025 port_del_ifaces(struct port *port)
2026 {
2027 struct iface *iface, *next;
2028 struct sset new_ifaces;
2029 size_t i;
2030
2031 /* Collect list of new interfaces. */
2032 sset_init(&new_ifaces);
2033 for (i = 0; i < port->cfg->n_interfaces; i++) {
2034 const char *name = port->cfg->interfaces[i]->name;
2035 const char *type = port->cfg->interfaces[i]->name;
2036 if (strcmp(type, "null")) {
2037 sset_add(&new_ifaces, name);
2038 }
2039 }
2040
2041 /* Get rid of deleted interfaces. */
2042 LIST_FOR_EACH_SAFE (iface, next, port_elem, &port->ifaces) {
2043 if (!sset_contains(&new_ifaces, iface->name)) {
2044 iface_destroy(iface);
2045 }
2046 }
2047
2048 sset_destroy(&new_ifaces);
2049 }
2050
2051 /* Adds new interfaces to 'port' and updates 'type' and 'cfg' members of
2052 * existing ones. */
2053 static void
2054 port_add_ifaces(struct port *port)
2055 {
2056 struct shash new_ifaces;
2057 struct shash_node *node;
2058 size_t i;
2059
2060 /* Collect new ifaces. */
2061 shash_init(&new_ifaces);
2062 for (i = 0; i < port->cfg->n_interfaces; i++) {
2063 const struct ovsrec_interface *cfg = port->cfg->interfaces[i];
2064 if (strcmp(cfg->type, "null")
2065 && !shash_add_once(&new_ifaces, cfg->name, cfg)) {
2066 VLOG_WARN("port %s: %s specified twice as port interface",
2067 port->name, cfg->name);
2068 iface_set_ofport(cfg, -1);
2069 }
2070 }
2071
2072 /* Create new interfaces.
2073 * Update interface types and 'cfg' members. */
2074 SHASH_FOR_EACH (node, &new_ifaces) {
2075 const struct ovsrec_interface *cfg = node->data;
2076 const char *iface_name = node->name;
2077 struct iface *iface;
2078
2079 iface = iface_lookup(port->bridge, iface_name);
2080 if (!iface) {
2081 iface = iface_create(port, cfg);
2082 } else {
2083 iface->cfg = cfg;
2084 }
2085
2086 /* Determine interface type. The local port always has type
2087 * "internal". Other ports take their type from the database and
2088 * default to "system" if none is specified. */
2089 iface->type = (!strcmp(iface_name, port->bridge->name) ? "internal"
2090 : cfg->type[0] ? cfg->type
2091 : "system");
2092 }
2093 shash_destroy(&new_ifaces);
2094 }
2095
2096 static void
2097 port_destroy(struct port *port)
2098 {
2099 if (port) {
2100 struct bridge *br = port->bridge;
2101 struct iface *iface, *next;
2102
2103 if (br->ofproto) {
2104 ofproto_bundle_unregister(br->ofproto, port);
2105 }
2106
2107 LIST_FOR_EACH_SAFE (iface, next, port_elem, &port->ifaces) {
2108 iface_destroy(iface);
2109 }
2110
2111 hmap_remove(&br->ports, &port->hmap_node);
2112
2113 VLOG_INFO("destroyed port %s on bridge %s", port->name, br->name);
2114
2115 free(port->name);
2116 free(port);
2117 }
2118 }
2119
2120 static struct port *
2121 port_lookup(const struct bridge *br, const char *name)
2122 {
2123 struct port *port;
2124
2125 HMAP_FOR_EACH_WITH_HASH (port, hmap_node, hash_string(name, 0),
2126 &br->ports) {
2127 if (!strcmp(port->name, name)) {
2128 return port;
2129 }
2130 }
2131 return NULL;
2132 }
2133
2134 static bool
2135 enable_lacp(struct port *port, bool *activep)
2136 {
2137 if (!port->cfg->lacp) {
2138 /* XXX when LACP implementation has been sufficiently tested, enable by
2139 * default and make active on bonded ports. */
2140 return false;
2141 } else if (!strcmp(port->cfg->lacp, "off")) {
2142 return false;
2143 } else if (!strcmp(port->cfg->lacp, "active")) {
2144 *activep = true;
2145 return true;
2146 } else if (!strcmp(port->cfg->lacp, "passive")) {
2147 *activep = false;
2148 return true;
2149 } else {
2150 VLOG_WARN("port %s: unknown LACP mode %s",
2151 port->name, port->cfg->lacp);
2152 return false;
2153 }
2154 }
2155
2156 static struct lacp_settings *
2157 port_configure_lacp(struct port *port, struct lacp_settings *s)
2158 {
2159 const char *lacp_time;
2160 long long int custom_time;
2161 int priority;
2162
2163 if (!enable_lacp(port, &s->active)) {
2164 return NULL;
2165 }
2166
2167 s->name = port->name;
2168 memcpy(s->id, port->bridge->ea, ETH_ADDR_LEN);
2169
2170 /* Prefer bondable links if unspecified. */
2171 priority = atoi(get_port_other_config(port->cfg, "lacp-system-priority",
2172 "0"));
2173 s->priority = (priority > 0 && priority <= UINT16_MAX
2174 ? priority
2175 : UINT16_MAX - !list_is_short(&port->ifaces));
2176
2177 s->heartbeat = !strcmp(get_port_other_config(port->cfg,
2178 "lacp-heartbeat",
2179 "false"), "true");
2180
2181
2182 lacp_time = get_port_other_config(port->cfg, "lacp-time", "slow");
2183 custom_time = atoi(lacp_time);
2184 if (!strcmp(lacp_time, "fast")) {
2185 s->lacp_time = LACP_TIME_FAST;
2186 } else if (!strcmp(lacp_time, "slow")) {
2187 s->lacp_time = LACP_TIME_SLOW;
2188 } else if (custom_time > 0) {
2189 s->lacp_time = LACP_TIME_CUSTOM;
2190 s->custom_time = custom_time;
2191 } else {
2192 s->lacp_time = LACP_TIME_SLOW;
2193 }
2194
2195 return s;
2196 }
2197
2198 static void
2199 iface_configure_lacp(struct iface *iface, struct lacp_slave_settings *s)
2200 {
2201 int priority, portid, key;
2202
2203 portid = atoi(get_interface_other_config(iface->cfg, "lacp-port-id", "0"));
2204 priority = atoi(get_interface_other_config(iface->cfg,
2205 "lacp-port-priority", "0"));
2206 key = atoi(get_interface_other_config(iface->cfg, "lacp-aggregation-key",
2207 "0"));
2208
2209 if (portid <= 0 || portid > UINT16_MAX) {
2210 portid = iface->ofp_port;
2211 }
2212
2213 if (priority <= 0 || priority > UINT16_MAX) {
2214 priority = UINT16_MAX;
2215 }
2216
2217 if (key < 0 || key > UINT16_MAX) {
2218 key = 0;
2219 }
2220
2221 s->name = iface->name;
2222 s->id = portid;
2223 s->priority = priority;
2224 s->key = key;
2225 }
2226
2227 static void
2228 port_configure_bond(struct port *port, struct bond_settings *s,
2229 uint32_t *bond_stable_ids)
2230 {
2231 const char *detect_s;
2232 struct iface *iface;
2233 int miimon_interval;
2234 size_t i;
2235
2236 s->name = port->name;
2237 s->balance = BM_SLB;
2238 if (port->cfg->bond_mode
2239 && !bond_mode_from_string(&s->balance, port->cfg->bond_mode)) {
2240 VLOG_WARN("port %s: unknown bond_mode %s, defaulting to %s",
2241 port->name, port->cfg->bond_mode,
2242 bond_mode_to_string(s->balance));
2243 }
2244
2245 miimon_interval = atoi(get_port_other_config(port->cfg,
2246 "bond-miimon-interval", "0"));
2247 if (miimon_interval <= 0) {
2248 miimon_interval = 200;
2249 }
2250
2251 detect_s = get_port_other_config(port->cfg, "bond-detect-mode", "carrier");
2252 if (!strcmp(detect_s, "carrier")) {
2253 miimon_interval = 0;
2254 } else if (strcmp(detect_s, "miimon")) {
2255 VLOG_WARN("port %s: unsupported bond-detect-mode %s, "
2256 "defaulting to carrier", port->name, detect_s);
2257 miimon_interval = 0;
2258 }
2259
2260 s->up_delay = MAX(0, port->cfg->bond_updelay);
2261 s->down_delay = MAX(0, port->cfg->bond_downdelay);
2262 s->basis = atoi(get_port_other_config(port->cfg, "bond-hash-basis", "0"));
2263 s->rebalance_interval = atoi(
2264 get_port_other_config(port->cfg, "bond-rebalance-interval", "10000"));
2265 if (s->rebalance_interval < 1000) {
2266 s->rebalance_interval = 1000;
2267 }
2268
2269 s->fake_iface = port->cfg->bond_fake_iface;
2270
2271 i = 0;
2272 LIST_FOR_EACH (iface, port_elem, &port->ifaces) {
2273 long long stable_id;
2274
2275 stable_id = atoll(get_interface_other_config(iface->cfg,
2276 "bond-stable-id", "0"));
2277 if (stable_id <= 0 || stable_id >= UINT32_MAX) {
2278 stable_id = iface->ofp_port;
2279 }
2280 bond_stable_ids[i++] = stable_id;
2281
2282 netdev_set_miimon_interval(iface->netdev, miimon_interval);
2283 }
2284 }
2285 \f
2286 /* Interface functions. */
2287
2288 static struct iface *
2289 iface_create(struct port *port, const struct ovsrec_interface *if_cfg)
2290 {
2291 struct bridge *br = port->bridge;
2292 struct iface *iface;
2293 char *name = if_cfg->name;
2294
2295 iface = xzalloc(sizeof *iface);
2296 iface->port = port;
2297 iface->name = xstrdup(name);
2298 iface->ofp_port = -1;
2299 iface->tag = tag_create_random();
2300 iface->netdev = NULL;
2301 iface->cfg = if_cfg;
2302
2303 hmap_insert(&br->iface_by_name, &iface->name_node, hash_string(name, 0));
2304
2305 list_push_back(&port->ifaces, &iface->port_elem);
2306
2307 VLOG_DBG("attached network device %s to port %s", iface->name, port->name);
2308
2309 return iface;
2310 }
2311
2312 static void
2313 iface_destroy(struct iface *iface)
2314 {
2315 if (iface) {
2316 struct port *port = iface->port;
2317 struct bridge *br = port->bridge;
2318
2319 if (br->ofproto && iface->ofp_port >= 0) {
2320 ofproto_port_unregister(br->ofproto, iface->ofp_port);
2321 }
2322
2323 if (iface->ofp_port >= 0) {
2324 hmap_remove(&br->ifaces, &iface->ofp_port_node);
2325 }
2326
2327 list_remove(&iface->port_elem);
2328 hmap_remove(&br->iface_by_name, &iface->name_node);
2329
2330 netdev_close(iface->netdev);
2331
2332 free(iface->name);
2333 free(iface);
2334 }
2335 }
2336
2337 static struct iface *
2338 iface_lookup(const struct bridge *br, const char *name)
2339 {
2340 struct iface *iface;
2341
2342 HMAP_FOR_EACH_WITH_HASH (iface, name_node, hash_string(name, 0),
2343 &br->iface_by_name) {
2344 if (!strcmp(iface->name, name)) {
2345 return iface;
2346 }
2347 }
2348
2349 return NULL;
2350 }
2351
2352 static struct iface *
2353 iface_find(const char *name)
2354 {
2355 const struct bridge *br;
2356
2357 HMAP_FOR_EACH (br, node, &all_bridges) {
2358 struct iface *iface = iface_lookup(br, name);
2359
2360 if (iface) {
2361 return iface;
2362 }
2363 }
2364 return NULL;
2365 }
2366
2367 static struct iface *
2368 iface_from_ofp_port(const struct bridge *br, uint16_t ofp_port)
2369 {
2370 struct iface *iface;
2371
2372 HMAP_FOR_EACH_IN_BUCKET (iface, ofp_port_node,
2373 hash_int(ofp_port, 0), &br->ifaces) {
2374 if (iface->ofp_port == ofp_port) {
2375 return iface;
2376 }
2377 }
2378 return NULL;
2379 }
2380
2381 /* Set Ethernet address of 'iface', if one is specified in the configuration
2382 * file. */
2383 static void
2384 iface_set_mac(struct iface *iface)
2385 {
2386 uint8_t ea[ETH_ADDR_LEN];
2387
2388 if (!strcmp(iface->type, "internal")
2389 && iface->cfg->mac && eth_addr_from_string(iface->cfg->mac, ea)) {
2390 if (iface->ofp_port == OFPP_LOCAL) {
2391 VLOG_ERR("interface %s: ignoring mac in Interface record "
2392 "(use Bridge record to set local port's mac)",
2393 iface->name);
2394 } else if (eth_addr_is_multicast(ea)) {
2395 VLOG_ERR("interface %s: cannot set MAC to multicast address",
2396 iface->name);
2397 } else {
2398 int error = netdev_set_etheraddr(iface->netdev, ea);
2399 if (error) {
2400 VLOG_ERR("interface %s: setting MAC failed (%s)",
2401 iface->name, strerror(error));
2402 }
2403 }
2404 }
2405 }
2406
2407 /* Sets the ofport column of 'if_cfg' to 'ofport'. */
2408 static void
2409 iface_set_ofport(const struct ovsrec_interface *if_cfg, int64_t ofport)
2410 {
2411 if (if_cfg && !ovsdb_idl_row_is_synthetic(&if_cfg->header_)) {
2412 ovsrec_interface_set_ofport(if_cfg, &ofport, 1);
2413 }
2414 }
2415
2416 /* Adds the 'n' key-value pairs in 'keys' in 'values' to 'shash'.
2417 *
2418 * The value strings in '*shash' are taken directly from values[], not copied,
2419 * so the caller should not modify or free them. */
2420 static void
2421 shash_from_ovs_idl_map(char **keys, char **values, size_t n,
2422 struct shash *shash)
2423 {
2424 size_t i;
2425
2426 shash_init(shash);
2427 for (i = 0; i < n; i++) {
2428 shash_add(shash, keys[i], values[i]);
2429 }
2430 }
2431
2432 /* Creates 'keys' and 'values' arrays from 'shash'.
2433 *
2434 * Sets 'keys' and 'values' to heap allocated arrays representing the key-value
2435 * pairs in 'shash'. The caller takes ownership of 'keys' and 'values'. They
2436 * are populated with with strings taken directly from 'shash' and thus have
2437 * the same ownership of the key-value pairs in shash.
2438 */
2439 static void
2440 shash_to_ovs_idl_map(struct shash *shash,
2441 char ***keys, char ***values, size_t *n)
2442 {
2443 size_t i, count;
2444 char **k, **v;
2445 struct shash_node *sn;
2446
2447 count = shash_count(shash);
2448
2449 k = xmalloc(count * sizeof *k);
2450 v = xmalloc(count * sizeof *v);
2451
2452 i = 0;
2453 SHASH_FOR_EACH(sn, shash) {
2454 k[i] = sn->name;
2455 v[i] = sn->data;
2456 i++;
2457 }
2458
2459 *n = count;
2460 *keys = k;
2461 *values = v;
2462 }
2463
2464 struct iface_delete_queues_cbdata {
2465 struct netdev *netdev;
2466 const struct ovsdb_datum *queues;
2467 };
2468
2469 static bool
2470 queue_ids_include(const struct ovsdb_datum *queues, int64_t target)
2471 {
2472 union ovsdb_atom atom;
2473
2474 atom.integer = target;
2475 return ovsdb_datum_find_key(queues, &atom, OVSDB_TYPE_INTEGER) != UINT_MAX;
2476 }
2477
2478 static void
2479 iface_delete_queues(unsigned int queue_id,
2480 const struct shash *details OVS_UNUSED, void *cbdata_)
2481 {
2482 struct iface_delete_queues_cbdata *cbdata = cbdata_;
2483
2484 if (!queue_ids_include(cbdata->queues, queue_id)) {
2485 netdev_delete_queue(cbdata->netdev, queue_id);
2486 }
2487 }
2488
2489 static void
2490 iface_configure_qos(struct iface *iface, const struct ovsrec_qos *qos)
2491 {
2492 if (!qos || qos->type[0] == '\0' || qos->n_queues < 1) {
2493 netdev_set_qos(iface->netdev, NULL, NULL);
2494 } else {
2495 struct iface_delete_queues_cbdata cbdata;
2496 struct shash details;
2497 size_t i;
2498
2499 /* Configure top-level Qos for 'iface'. */
2500 shash_from_ovs_idl_map(qos->key_other_config, qos->value_other_config,
2501 qos->n_other_config, &details);
2502 netdev_set_qos(iface->netdev, qos->type, &details);
2503 shash_destroy(&details);
2504
2505 /* Deconfigure queues that were deleted. */
2506 cbdata.netdev = iface->netdev;
2507 cbdata.queues = ovsrec_qos_get_queues(qos, OVSDB_TYPE_INTEGER,
2508 OVSDB_TYPE_UUID);
2509 netdev_dump_queues(iface->netdev, iface_delete_queues, &cbdata);
2510
2511 /* Configure queues for 'iface'. */
2512 for (i = 0; i < qos->n_queues; i++) {
2513 const struct ovsrec_queue *queue = qos->value_queues[i];
2514 unsigned int queue_id = qos->key_queues[i];
2515
2516 shash_from_ovs_idl_map(queue->key_other_config,
2517 queue->value_other_config,
2518 queue->n_other_config, &details);
2519 netdev_set_queue(iface->netdev, queue_id, &details);
2520 shash_destroy(&details);
2521 }
2522 }
2523
2524 netdev_set_policing(iface->netdev,
2525 iface->cfg->ingress_policing_rate,
2526 iface->cfg->ingress_policing_burst);
2527 }
2528
2529 static void
2530 iface_configure_cfm(struct iface *iface)
2531 {
2532 size_t i;
2533 struct cfm cfm;
2534 uint16_t *remote_mps;
2535 struct ovsrec_monitor *mon;
2536 uint8_t maid[CCM_MAID_LEN];
2537
2538 mon = iface->cfg->monitor;
2539
2540 if (!mon) {
2541 ofproto_port_clear_cfm(iface->port->bridge->ofproto, iface->ofp_port);
2542 return;
2543 }
2544
2545 if (!cfm_generate_maid(mon->md_name, mon->ma_name, maid)) {
2546 VLOG_WARN("interface %s: Failed to generate MAID.", iface->name);
2547 return;
2548 }
2549
2550 cfm.mpid = mon->mpid;
2551 cfm.interval = mon->interval ? *mon->interval : 1000;
2552
2553 memcpy(cfm.maid, maid, sizeof cfm.maid);
2554
2555 remote_mps = xzalloc(mon->n_remote_mps * sizeof *remote_mps);
2556 for(i = 0; i < mon->n_remote_mps; i++) {
2557 remote_mps[i] = mon->remote_mps[i]->mpid;
2558 }
2559
2560 ofproto_port_set_cfm(iface->port->bridge->ofproto, iface->ofp_port,
2561 &cfm, remote_mps, mon->n_remote_mps);
2562 free(remote_mps);
2563 }
2564
2565 /* Read carrier or miimon status directly from 'iface''s netdev, according to
2566 * how 'iface''s port is configured.
2567 *
2568 * Returns true if 'iface' is up, false otherwise. */
2569 static bool
2570 iface_get_carrier(const struct iface *iface)
2571 {
2572 /* XXX */
2573 return netdev_get_carrier(iface->netdev);
2574 }
2575
2576 /* Returns true if 'iface' is synthetic, that is, if we constructed it locally
2577 * instead of obtaining it from the database. */
2578 static bool
2579 iface_is_synthetic(const struct iface *iface)
2580 {
2581 return ovsdb_idl_row_is_synthetic(&iface->cfg->header_);
2582 }
2583 \f
2584 /* Port mirroring. */
2585
2586 static struct mirror *
2587 mirror_find_by_uuid(struct bridge *br, const struct uuid *uuid)
2588 {
2589 struct mirror *m;
2590
2591 HMAP_FOR_EACH_IN_BUCKET (m, hmap_node, uuid_hash(uuid), &br->mirrors) {
2592 if (uuid_equals(uuid, &m->uuid)) {
2593 return m;
2594 }
2595 }
2596 return NULL;
2597 }
2598
2599 static void
2600 bridge_configure_mirrors(struct bridge *br)
2601 {
2602 const struct ovsdb_datum *mc;
2603 unsigned long *flood_vlans;
2604 struct mirror *m, *next;
2605 size_t i;
2606
2607 /* Get rid of deleted mirrors. */
2608 mc = ovsrec_bridge_get_mirrors(br->cfg, OVSDB_TYPE_UUID);
2609 HMAP_FOR_EACH_SAFE (m, next, hmap_node, &br->mirrors) {
2610 union ovsdb_atom atom;
2611
2612 atom.uuid = m->uuid;
2613 if (ovsdb_datum_find_key(mc, &atom, OVSDB_TYPE_UUID) == UINT_MAX) {
2614 mirror_destroy(m);
2615 }
2616 }
2617
2618 /* Add new mirrors and reconfigure existing ones. */
2619 for (i = 0; i < br->cfg->n_mirrors; i++) {
2620 const struct ovsrec_mirror *cfg = br->cfg->mirrors[i];
2621 struct mirror *m = mirror_find_by_uuid(br, &cfg->header_.uuid);
2622 if (!m) {
2623 m = mirror_create(br, cfg);
2624 }
2625 if (!mirror_configure(m, cfg)) {
2626 mirror_destroy(m);
2627 }
2628 }
2629
2630 /* Update flooded vlans (for RSPAN). */
2631 flood_vlans = vlan_bitmap_from_array(br->cfg->flood_vlans,
2632 br->cfg->n_flood_vlans);
2633 ofproto_set_flood_vlans(br->ofproto, flood_vlans);
2634 bitmap_free(flood_vlans);
2635 }
2636
2637 static struct mirror *
2638 mirror_create(struct bridge *br, const struct ovsrec_mirror *cfg)
2639 {
2640 struct mirror *m;
2641
2642 m = xzalloc(sizeof *m);
2643 m->uuid = cfg->header_.uuid;
2644 hmap_insert(&br->mirrors, &m->hmap_node, uuid_hash(&m->uuid));
2645 m->bridge = br;
2646 m->name = xstrdup(cfg->name);
2647
2648 return m;
2649 }
2650
2651 static void
2652 mirror_destroy(struct mirror *m)
2653 {
2654 if (m) {
2655 struct bridge *br = m->bridge;
2656
2657 if (br->ofproto) {
2658 ofproto_mirror_unregister(br->ofproto, m);
2659 }
2660
2661 hmap_remove(&br->mirrors, &m->hmap_node);
2662 free(m->name);
2663 free(m);
2664 }
2665 }
2666
2667 static void
2668 mirror_collect_ports(struct mirror *m,
2669 struct ovsrec_port **in_ports, int n_in_ports,
2670 void ***out_portsp, size_t *n_out_portsp)
2671 {
2672 void **out_ports = xmalloc(n_in_ports * sizeof *out_ports);
2673 size_t n_out_ports = 0;
2674 size_t i;
2675
2676 for (i = 0; i < n_in_ports; i++) {
2677 const char *name = in_ports[i]->name;
2678 struct port *port = port_lookup(m->bridge, name);
2679 if (port) {
2680 out_ports[n_out_ports++] = port;
2681 } else {
2682 VLOG_WARN("bridge %s: mirror %s cannot match on nonexistent "
2683 "port %s", m->bridge->name, m->name, name);
2684 }
2685 }
2686 *out_portsp = out_ports;
2687 *n_out_portsp = n_out_ports;
2688 }
2689
2690 static bool
2691 mirror_configure(struct mirror *m, const struct ovsrec_mirror *cfg)
2692 {
2693 struct ofproto_mirror_settings s;
2694
2695 /* Set name. */
2696 if (strcmp(cfg->name, m->name)) {
2697 free(m->name);
2698 m->name = xstrdup(cfg->name);
2699 }
2700 s.name = m->name;
2701
2702 /* Get output port or VLAN. */
2703 if (cfg->output_port) {
2704 s.out_bundle = port_lookup(m->bridge, cfg->output_port->name);
2705 if (!s.out_bundle) {
2706 VLOG_ERR("bridge %s: mirror %s outputs to port not on bridge",
2707 m->bridge->name, m->name);
2708 return false;
2709 }
2710 s.out_vlan = UINT16_MAX;
2711
2712 if (cfg->output_vlan) {
2713 VLOG_ERR("bridge %s: mirror %s specifies both output port and "
2714 "output vlan; ignoring output vlan",
2715 m->bridge->name, m->name);
2716 }
2717 } else if (cfg->output_vlan) {
2718 /* The database should prevent invalid VLAN values. */
2719 s.out_bundle = NULL;
2720 s.out_vlan = *cfg->output_vlan;
2721 } else {
2722 VLOG_ERR("bridge %s: mirror %s does not specify output; ignoring",
2723 m->bridge->name, m->name);
2724 return false;
2725 }
2726
2727 /* Get port selection. */
2728 if (cfg->select_all) {
2729 size_t n_ports = hmap_count(&m->bridge->ports);
2730 void **ports = xmalloc(n_ports * sizeof *ports);
2731 struct port *port;
2732 size_t i;
2733
2734 i = 0;
2735 HMAP_FOR_EACH (port, hmap_node, &m->bridge->ports) {
2736 ports[i++] = port;
2737 }
2738
2739 s.srcs = ports;
2740 s.n_srcs = n_ports;
2741
2742 s.dsts = ports;
2743 s.n_dsts = n_ports;
2744 } else {
2745 /* Get ports, dropping ports that don't exist.
2746 * The IDL ensures that there are no duplicates. */
2747 mirror_collect_ports(m, cfg->select_src_port, cfg->n_select_src_port,
2748 &s.srcs, &s.n_srcs);
2749 mirror_collect_ports(m, cfg->select_dst_port, cfg->n_select_dst_port,
2750 &s.dsts, &s.n_dsts);
2751
2752 }
2753
2754 /* Get VLAN selection. */
2755 s.src_vlans = vlan_bitmap_from_array(cfg->select_vlan, cfg->n_select_vlan);
2756
2757 /* Configure. */
2758 ofproto_mirror_register(m->bridge->ofproto, m, &s);
2759
2760 /* Clean up. */
2761 if (s.srcs != s.dsts) {
2762 free(s.dsts);
2763 }
2764 free(s.srcs);
2765 free(s.src_vlans);
2766
2767 return true;
2768 }