5ced9b5f7a62a2dc7025a697b79e04b5c4e37e0b
[cascardo/ovs.git] / ofproto / ofproto-dpif.c
1 /*
2  * Copyright (c) 2009, 2010, 2011, 2012, 2013, 2014 Nicira, Inc.
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at:
7  *
8  *     http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16
17 #include <config.h>
18
19 #include "ofproto/ofproto-dpif.h"
20 #include "ofproto/ofproto-provider.h"
21
22 #include <errno.h>
23
24 #include "bfd.h"
25 #include "bond.h"
26 #include "bundle.h"
27 #include "byte-order.h"
28 #include "connectivity.h"
29 #include "connmgr.h"
30 #include "coverage.h"
31 #include "cfm.h"
32 #include "dpif.h"
33 #include "dynamic-string.h"
34 #include "fail-open.h"
35 #include "guarded-list.h"
36 #include "hmapx.h"
37 #include "lacp.h"
38 #include "learn.h"
39 #include "mac-learning.h"
40 #include "mcast-snooping.h"
41 #include "meta-flow.h"
42 #include "multipath.h"
43 #include "netdev-vport.h"
44 #include "netdev.h"
45 #include "netlink.h"
46 #include "nx-match.h"
47 #include "odp-util.h"
48 #include "odp-execute.h"
49 #include "ofp-util.h"
50 #include "ofpbuf.h"
51 #include "ofp-actions.h"
52 #include "ofp-parse.h"
53 #include "ofp-print.h"
54 #include "ofproto-dpif-ipfix.h"
55 #include "ofproto-dpif-mirror.h"
56 #include "ofproto-dpif-monitor.h"
57 #include "ofproto-dpif-rid.h"
58 #include "ofproto-dpif-sflow.h"
59 #include "ofproto-dpif-upcall.h"
60 #include "ofproto-dpif-xlate.h"
61 #include "poll-loop.h"
62 #include "seq.h"
63 #include "simap.h"
64 #include "smap.h"
65 #include "timer.h"
66 #include "tunnel.h"
67 #include "unaligned.h"
68 #include "unixctl.h"
69 #include "vlan-bitmap.h"
70 #include "vlog.h"
71
72 VLOG_DEFINE_THIS_MODULE(ofproto_dpif);
73
74 COVERAGE_DEFINE(ofproto_dpif_expired);
75 COVERAGE_DEFINE(packet_in_overflow);
76
77 struct flow_miss;
78
79 struct rule_dpif {
80     struct rule up;
81
82     /* These statistics:
83      *
84      *   - Do include packets and bytes from datapath flows which have not
85      *   recently been processed by a revalidator. */
86     struct ovs_mutex stats_mutex;
87     struct dpif_flow_stats stats OVS_GUARDED;
88
89     /* If non-zero then the recirculation id that has
90      * been allocated for use with this rule.
91      * The recirculation id and associated internal flow should
92      * be freed when the rule is freed */
93     uint32_t recirc_id;
94 };
95
96 /* RULE_CAST() depends on this. */
97 BUILD_ASSERT_DECL(offsetof(struct rule_dpif, up) == 0);
98
99 static void rule_get_stats(struct rule *, uint64_t *packets, uint64_t *bytes,
100                            long long int *used);
101 static struct rule_dpif *rule_dpif_cast(const struct rule *);
102 static void rule_expire(struct rule_dpif *);
103
104 struct group_dpif {
105     struct ofgroup up;
106
107     /* These statistics:
108      *
109      *   - Do include packets and bytes from datapath flows which have not
110      *   recently been processed by a revalidator. */
111     struct ovs_mutex stats_mutex;
112     uint64_t packet_count OVS_GUARDED;  /* Number of packets received. */
113     uint64_t byte_count OVS_GUARDED;    /* Number of bytes received. */
114 };
115
116 struct ofbundle {
117     struct hmap_node hmap_node; /* In struct ofproto's "bundles" hmap. */
118     struct ofproto_dpif *ofproto; /* Owning ofproto. */
119     void *aux;                  /* Key supplied by ofproto's client. */
120     char *name;                 /* Identifier for log messages. */
121
122     /* Configuration. */
123     struct list ports;          /* Contains "struct ofport"s. */
124     enum port_vlan_mode vlan_mode; /* VLAN mode */
125     int vlan;                   /* -1=trunk port, else a 12-bit VLAN ID. */
126     unsigned long *trunks;      /* Bitmap of trunked VLANs, if 'vlan' == -1.
127                                  * NULL if all VLANs are trunked. */
128     struct lacp *lacp;          /* LACP if LACP is enabled, otherwise NULL. */
129     struct bond *bond;          /* Nonnull iff more than one port. */
130     bool use_priority_tags;     /* Use 802.1p tag for frames in VLAN 0? */
131
132     /* Status. */
133     bool floodable;          /* True if no port has OFPUTIL_PC_NO_FLOOD set. */
134 };
135
136 static void bundle_remove(struct ofport *);
137 static void bundle_update(struct ofbundle *);
138 static void bundle_destroy(struct ofbundle *);
139 static void bundle_del_port(struct ofport_dpif *);
140 static void bundle_run(struct ofbundle *);
141 static void bundle_wait(struct ofbundle *);
142
143 static void stp_run(struct ofproto_dpif *ofproto);
144 static void stp_wait(struct ofproto_dpif *ofproto);
145 static int set_stp_port(struct ofport *,
146                         const struct ofproto_port_stp_settings *);
147
148 struct ofport_dpif {
149     struct hmap_node odp_port_node; /* In dpif_backer's "odp_to_ofport_map". */
150     struct ofport up;
151
152     odp_port_t odp_port;
153     struct ofbundle *bundle;    /* Bundle that contains this port, if any. */
154     struct list bundle_node;    /* In struct ofbundle's "ports" list. */
155     struct cfm *cfm;            /* Connectivity Fault Management, if any. */
156     struct bfd *bfd;            /* BFD, if any. */
157     bool may_enable;            /* May be enabled in bonds. */
158     bool is_tunnel;             /* This port is a tunnel. */
159     bool is_layer3;             /* This is a layer 3 port. */
160     long long int carrier_seq;  /* Carrier status changes. */
161     struct ofport_dpif *peer;   /* Peer if patch port. */
162
163     /* Spanning tree. */
164     struct stp_port *stp_port;  /* Spanning Tree Protocol, if any. */
165     enum stp_state stp_state;   /* Always STP_DISABLED if STP not in use. */
166     long long int stp_state_entered;
167
168     /* Queue to DSCP mapping. */
169     struct ofproto_port_queue *qdscp;
170     size_t n_qdscp;
171
172     /* Linux VLAN device support (e.g. "eth0.10" for VLAN 10.)
173      *
174      * This is deprecated.  It is only for compatibility with broken device
175      * drivers in old versions of Linux that do not properly support VLANs when
176      * VLAN devices are not used.  When broken device drivers are no longer in
177      * widespread use, we will delete these interfaces. */
178     ofp_port_t realdev_ofp_port;
179     int vlandev_vid;
180 };
181
182 /* Linux VLAN device support (e.g. "eth0.10" for VLAN 10.)
183  *
184  * This is deprecated.  It is only for compatibility with broken device drivers
185  * in old versions of Linux that do not properly support VLANs when VLAN
186  * devices are not used.  When broken device drivers are no longer in
187  * widespread use, we will delete these interfaces. */
188 struct vlan_splinter {
189     struct hmap_node realdev_vid_node;
190     struct hmap_node vlandev_node;
191     ofp_port_t realdev_ofp_port;
192     ofp_port_t vlandev_ofp_port;
193     int vid;
194 };
195
196 static void vsp_remove(struct ofport_dpif *);
197 static void vsp_add(struct ofport_dpif *, ofp_port_t realdev_ofp_port, int vid);
198
199 static odp_port_t ofp_port_to_odp_port(const struct ofproto_dpif *,
200                                        ofp_port_t);
201
202 static ofp_port_t odp_port_to_ofp_port(const struct ofproto_dpif *,
203                                        odp_port_t);
204
205 static struct ofport_dpif *
206 ofport_dpif_cast(const struct ofport *ofport)
207 {
208     return ofport ? CONTAINER_OF(ofport, struct ofport_dpif, up) : NULL;
209 }
210
211 static void port_run(struct ofport_dpif *);
212 static int set_bfd(struct ofport *, const struct smap *);
213 static int set_cfm(struct ofport *, const struct cfm_settings *);
214 static void ofport_update_peer(struct ofport_dpif *);
215
216 /* Reasons that we might need to revalidate every datapath flow, and
217  * corresponding coverage counters.
218  *
219  * A value of 0 means that there is no need to revalidate.
220  *
221  * It would be nice to have some cleaner way to integrate with coverage
222  * counters, but with only a few reasons I guess this is good enough for
223  * now. */
224 enum revalidate_reason {
225     REV_RECONFIGURE = 1,       /* Switch configuration changed. */
226     REV_STP,                   /* Spanning tree protocol port status change. */
227     REV_BOND,                  /* Bonding changed. */
228     REV_PORT_TOGGLED,          /* Port enabled or disabled by CFM, LACP, ...*/
229     REV_FLOW_TABLE,            /* Flow table changed. */
230     REV_MAC_LEARNING,          /* Mac learning changed. */
231     REV_MCAST_SNOOPING,        /* Multicast snooping changed. */
232 };
233 COVERAGE_DEFINE(rev_reconfigure);
234 COVERAGE_DEFINE(rev_stp);
235 COVERAGE_DEFINE(rev_bond);
236 COVERAGE_DEFINE(rev_port_toggled);
237 COVERAGE_DEFINE(rev_flow_table);
238 COVERAGE_DEFINE(rev_mac_learning);
239 COVERAGE_DEFINE(rev_mcast_snooping);
240
241 /* All datapaths of a given type share a single dpif backer instance. */
242 struct dpif_backer {
243     char *type;
244     int refcount;
245     struct dpif *dpif;
246     struct udpif *udpif;
247
248     struct ovs_rwlock odp_to_ofport_lock;
249     struct hmap odp_to_ofport_map OVS_GUARDED; /* Contains "struct ofport"s. */
250
251     struct simap tnl_backers;      /* Set of dpif ports backing tunnels. */
252
253     enum revalidate_reason need_revalidate; /* Revalidate all flows. */
254
255     bool recv_set_enable; /* Enables or disables receiving packets. */
256
257     /* Recirculation. */
258     struct recirc_id_pool *rid_pool;       /* Recirculation ID pool. */
259     bool enable_recirc;   /* True if the datapath supports recirculation */
260
261     /* True if the datapath supports variable-length
262      * OVS_USERSPACE_ATTR_USERDATA in OVS_ACTION_ATTR_USERSPACE actions.
263      * False if the datapath supports only 8-byte (or shorter) userdata. */
264     bool variable_length_userdata;
265
266     /* Maximum number of MPLS label stack entries that the datapath supports
267      * in a match */
268     size_t max_mpls_depth;
269 };
270
271 /* All existing ofproto_backer instances, indexed by ofproto->up.type. */
272 static struct shash all_dpif_backers = SHASH_INITIALIZER(&all_dpif_backers);
273
274 struct ofproto_dpif {
275     struct hmap_node all_ofproto_dpifs_node; /* In 'all_ofproto_dpifs'. */
276     struct ofproto up;
277     struct dpif_backer *backer;
278
279     uint64_t dump_seq; /* Last read of udpif_dump_seq(). */
280
281     /* Special OpenFlow rules. */
282     struct rule_dpif *miss_rule; /* Sends flow table misses to controller. */
283     struct rule_dpif *no_packet_in_rule; /* Drops flow table misses. */
284     struct rule_dpif *drop_frags_rule; /* Used in OFPC_FRAG_DROP mode. */
285
286     /* Bridging. */
287     struct netflow *netflow;
288     struct dpif_sflow *sflow;
289     struct dpif_ipfix *ipfix;
290     struct hmap bundles;        /* Contains "struct ofbundle"s. */
291     struct mac_learning *ml;
292     struct mcast_snooping *ms;
293     bool has_bonded_bundles;
294     bool lacp_enabled;
295     struct mbridge *mbridge;
296
297     struct ovs_mutex stats_mutex;
298     struct netdev_stats stats OVS_GUARDED; /* To account packets generated and
299                                             * consumed in userspace. */
300
301     /* Spanning tree. */
302     struct stp *stp;
303     long long int stp_last_tick;
304
305     /* VLAN splinters. */
306     struct ovs_mutex vsp_mutex;
307     struct hmap realdev_vid_map OVS_GUARDED; /* (realdev,vid) -> vlandev. */
308     struct hmap vlandev_map OVS_GUARDED;     /* vlandev -> (realdev,vid). */
309
310     /* Ports. */
311     struct sset ports;             /* Set of standard port names. */
312     struct sset ghost_ports;       /* Ports with no datapath port. */
313     struct sset port_poll_set;     /* Queued names for port_poll() reply. */
314     int port_poll_errno;           /* Last errno for port_poll() reply. */
315     uint64_t change_seq;           /* Connectivity status changes. */
316
317     /* Work queues. */
318     struct guarded_list pins;      /* Contains "struct ofputil_packet_in"s. */
319     struct seq *pins_seq;          /* For notifying 'pins' reception. */
320     uint64_t pins_seqno;
321 };
322
323 /* All existing ofproto_dpif instances, indexed by ->up.name. */
324 static struct hmap all_ofproto_dpifs = HMAP_INITIALIZER(&all_ofproto_dpifs);
325
326 static void ofproto_dpif_unixctl_init(void);
327
328 static inline struct ofproto_dpif *
329 ofproto_dpif_cast(const struct ofproto *ofproto)
330 {
331     ovs_assert(ofproto->ofproto_class == &ofproto_dpif_class);
332     return CONTAINER_OF(ofproto, struct ofproto_dpif, up);
333 }
334
335 size_t
336 ofproto_dpif_get_max_mpls_depth(const struct ofproto_dpif *ofproto)
337 {
338     return ofproto->backer->max_mpls_depth;
339 }
340
341 bool
342 ofproto_dpif_get_enable_recirc(const struct ofproto_dpif *ofproto)
343 {
344     return ofproto->backer->enable_recirc;
345 }
346
347 static struct ofport_dpif *get_ofp_port(const struct ofproto_dpif *ofproto,
348                                         ofp_port_t ofp_port);
349 static void ofproto_trace(struct ofproto_dpif *, struct flow *,
350                           const struct ofpbuf *packet,
351                           const struct ofpact[], size_t ofpacts_len,
352                           struct ds *);
353
354 /* Global variables. */
355 static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
356
357 /* Initial mappings of port to bridge mappings. */
358 static struct shash init_ofp_ports = SHASH_INITIALIZER(&init_ofp_ports);
359
360 /* Executes 'fm'.  The caller retains ownership of 'fm' and everything in
361  * it. */
362 void
363 ofproto_dpif_flow_mod(struct ofproto_dpif *ofproto,
364                       struct ofputil_flow_mod *fm)
365 {
366     ofproto_flow_mod(&ofproto->up, fm);
367 }
368
369 /* Appends 'pin' to the queue of "packet ins" to be sent to the controller.
370  * Takes ownership of 'pin' and pin->packet. */
371 void
372 ofproto_dpif_send_packet_in(struct ofproto_dpif *ofproto,
373                             struct ofproto_packet_in *pin)
374 {
375     if (!guarded_list_push_back(&ofproto->pins, &pin->list_node, 1024)) {
376         COVERAGE_INC(packet_in_overflow);
377         free(CONST_CAST(void *, pin->up.packet));
378         free(pin);
379     }
380
381     /* Wakes up main thread for packet-in I/O. */
382     seq_change(ofproto->pins_seq);
383 }
384
385 /* The default "table-miss" behaviour for OpenFlow1.3+ is to drop the
386  * packet rather than to send the packet to the controller.
387  *
388  * This function returns false to indicate that a packet_in message
389  * for a "table-miss" should be sent to at least one controller.
390  * False otherwise. */
391 bool
392 ofproto_dpif_wants_packet_in_on_miss(struct ofproto_dpif *ofproto)
393 {
394     return connmgr_wants_packet_in_on_miss(ofproto->up.connmgr);
395 }
396 \f
397 /* Factory functions. */
398
399 static void
400 init(const struct shash *iface_hints)
401 {
402     struct shash_node *node;
403
404     /* Make a local copy, since we don't own 'iface_hints' elements. */
405     SHASH_FOR_EACH(node, iface_hints) {
406         const struct iface_hint *orig_hint = node->data;
407         struct iface_hint *new_hint = xmalloc(sizeof *new_hint);
408
409         new_hint->br_name = xstrdup(orig_hint->br_name);
410         new_hint->br_type = xstrdup(orig_hint->br_type);
411         new_hint->ofp_port = orig_hint->ofp_port;
412
413         shash_add(&init_ofp_ports, node->name, new_hint);
414     }
415 }
416
417 static void
418 enumerate_types(struct sset *types)
419 {
420     dp_enumerate_types(types);
421 }
422
423 static int
424 enumerate_names(const char *type, struct sset *names)
425 {
426     struct ofproto_dpif *ofproto;
427
428     sset_clear(names);
429     HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
430         if (strcmp(type, ofproto->up.type)) {
431             continue;
432         }
433         sset_add(names, ofproto->up.name);
434     }
435
436     return 0;
437 }
438
439 static int
440 del(const char *type, const char *name)
441 {
442     struct dpif *dpif;
443     int error;
444
445     error = dpif_open(name, type, &dpif);
446     if (!error) {
447         error = dpif_delete(dpif);
448         dpif_close(dpif);
449     }
450     return error;
451 }
452 \f
453 static const char *
454 port_open_type(const char *datapath_type, const char *port_type)
455 {
456     return dpif_port_open_type(datapath_type, port_type);
457 }
458
459 /* Type functions. */
460
461 static void process_dpif_port_changes(struct dpif_backer *);
462 static void process_dpif_all_ports_changed(struct dpif_backer *);
463 static void process_dpif_port_change(struct dpif_backer *,
464                                      const char *devname);
465 static void process_dpif_port_error(struct dpif_backer *, int error);
466
467 static struct ofproto_dpif *
468 lookup_ofproto_dpif_by_port_name(const char *name)
469 {
470     struct ofproto_dpif *ofproto;
471
472     HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
473         if (sset_contains(&ofproto->ports, name)) {
474             return ofproto;
475         }
476     }
477
478     return NULL;
479 }
480
481 static int
482 type_run(const char *type)
483 {
484     struct dpif_backer *backer;
485
486     backer = shash_find_data(&all_dpif_backers, type);
487     if (!backer) {
488         /* This is not necessarily a problem, since backers are only
489          * created on demand. */
490         return 0;
491     }
492
493     dpif_run(backer->dpif);
494     udpif_run(backer->udpif);
495
496     /* If vswitchd started with other_config:flow_restore_wait set as "true",
497      * and the configuration has now changed to "false", enable receiving
498      * packets from the datapath. */
499     if (!backer->recv_set_enable && !ofproto_get_flow_restore_wait()) {
500         int error;
501
502         backer->recv_set_enable = true;
503
504         error = dpif_recv_set(backer->dpif, backer->recv_set_enable);
505         if (error) {
506             VLOG_ERR("Failed to enable receiving packets in dpif.");
507             return error;
508         }
509         dpif_flow_flush(backer->dpif);
510         backer->need_revalidate = REV_RECONFIGURE;
511     }
512
513     if (backer->recv_set_enable) {
514         udpif_set_threads(backer->udpif, n_handlers, n_revalidators);
515     }
516
517     if (backer->need_revalidate) {
518         struct ofproto_dpif *ofproto;
519         struct simap_node *node;
520         struct simap tmp_backers;
521
522         /* Handle tunnel garbage collection. */
523         simap_init(&tmp_backers);
524         simap_swap(&backer->tnl_backers, &tmp_backers);
525
526         HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
527             struct ofport_dpif *iter;
528
529             if (backer != ofproto->backer) {
530                 continue;
531             }
532
533             HMAP_FOR_EACH (iter, up.hmap_node, &ofproto->up.ports) {
534                 char namebuf[NETDEV_VPORT_NAME_BUFSIZE];
535                 const char *dp_port;
536
537                 if (!iter->is_tunnel) {
538                     continue;
539                 }
540
541                 dp_port = netdev_vport_get_dpif_port(iter->up.netdev,
542                                                      namebuf, sizeof namebuf);
543                 node = simap_find(&tmp_backers, dp_port);
544                 if (node) {
545                     simap_put(&backer->tnl_backers, dp_port, node->data);
546                     simap_delete(&tmp_backers, node);
547                     node = simap_find(&backer->tnl_backers, dp_port);
548                 } else {
549                     node = simap_find(&backer->tnl_backers, dp_port);
550                     if (!node) {
551                         odp_port_t odp_port = ODPP_NONE;
552
553                         if (!dpif_port_add(backer->dpif, iter->up.netdev,
554                                            &odp_port)) {
555                             simap_put(&backer->tnl_backers, dp_port,
556                                       odp_to_u32(odp_port));
557                             node = simap_find(&backer->tnl_backers, dp_port);
558                         }
559                     }
560                 }
561
562                 iter->odp_port = node ? u32_to_odp(node->data) : ODPP_NONE;
563                 if (tnl_port_reconfigure(iter, iter->up.netdev,
564                                          iter->odp_port)) {
565                     backer->need_revalidate = REV_RECONFIGURE;
566                 }
567             }
568         }
569
570         SIMAP_FOR_EACH (node, &tmp_backers) {
571             dpif_port_del(backer->dpif, u32_to_odp(node->data));
572         }
573         simap_destroy(&tmp_backers);
574
575         switch (backer->need_revalidate) {
576         case REV_RECONFIGURE:    COVERAGE_INC(rev_reconfigure);    break;
577         case REV_STP:            COVERAGE_INC(rev_stp);            break;
578         case REV_BOND:           COVERAGE_INC(rev_bond);           break;
579         case REV_PORT_TOGGLED:   COVERAGE_INC(rev_port_toggled);   break;
580         case REV_FLOW_TABLE:     COVERAGE_INC(rev_flow_table);     break;
581         case REV_MAC_LEARNING:   COVERAGE_INC(rev_mac_learning);   break;
582         case REV_MCAST_SNOOPING: COVERAGE_INC(rev_mcast_snooping); break;
583         }
584         backer->need_revalidate = 0;
585
586         HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
587             struct ofport_dpif *ofport;
588             struct ofbundle *bundle;
589
590             if (ofproto->backer != backer) {
591                 continue;
592             }
593
594             xlate_txn_start();
595             xlate_ofproto_set(ofproto, ofproto->up.name,
596                               ofproto->backer->dpif, ofproto->miss_rule,
597                               ofproto->no_packet_in_rule, ofproto->ml,
598                               ofproto->stp, ofproto->ms, ofproto->mbridge,
599                               ofproto->sflow, ofproto->ipfix,
600                               ofproto->netflow, ofproto->up.frag_handling,
601                               ofproto->up.forward_bpdu,
602                               connmgr_has_in_band(ofproto->up.connmgr),
603                               ofproto->backer->enable_recirc,
604                               ofproto->backer->variable_length_userdata,
605                               ofproto->backer->max_mpls_depth);
606
607             HMAP_FOR_EACH (bundle, hmap_node, &ofproto->bundles) {
608                 xlate_bundle_set(ofproto, bundle, bundle->name,
609                                  bundle->vlan_mode, bundle->vlan,
610                                  bundle->trunks, bundle->use_priority_tags,
611                                  bundle->bond, bundle->lacp,
612                                  bundle->floodable);
613             }
614
615             HMAP_FOR_EACH (ofport, up.hmap_node, &ofproto->up.ports) {
616                 int stp_port = ofport->stp_port
617                     ? stp_port_no(ofport->stp_port)
618                     : -1;
619                 xlate_ofport_set(ofproto, ofport->bundle, ofport,
620                                  ofport->up.ofp_port, ofport->odp_port,
621                                  ofport->up.netdev, ofport->cfm,
622                                  ofport->bfd, ofport->peer, stp_port,
623                                  ofport->qdscp, ofport->n_qdscp,
624                                  ofport->up.pp.config, ofport->up.pp.state,
625                                  ofport->is_tunnel, ofport->may_enable);
626             }
627             xlate_txn_commit();
628         }
629
630         udpif_revalidate(backer->udpif);
631     }
632
633     process_dpif_port_changes(backer);
634
635     return 0;
636 }
637
638 /* Check for and handle port changes in 'backer''s dpif. */
639 static void
640 process_dpif_port_changes(struct dpif_backer *backer)
641 {
642     for (;;) {
643         char *devname;
644         int error;
645
646         error = dpif_port_poll(backer->dpif, &devname);
647         switch (error) {
648         case EAGAIN:
649             return;
650
651         case ENOBUFS:
652             process_dpif_all_ports_changed(backer);
653             break;
654
655         case 0:
656             process_dpif_port_change(backer, devname);
657             free(devname);
658             break;
659
660         default:
661             process_dpif_port_error(backer, error);
662             break;
663         }
664     }
665 }
666
667 static void
668 process_dpif_all_ports_changed(struct dpif_backer *backer)
669 {
670     struct ofproto_dpif *ofproto;
671     struct dpif_port dpif_port;
672     struct dpif_port_dump dump;
673     struct sset devnames;
674     const char *devname;
675
676     sset_init(&devnames);
677     HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
678         if (ofproto->backer == backer) {
679             struct ofport *ofport;
680
681             HMAP_FOR_EACH (ofport, hmap_node, &ofproto->up.ports) {
682                 sset_add(&devnames, netdev_get_name(ofport->netdev));
683             }
684         }
685     }
686     DPIF_PORT_FOR_EACH (&dpif_port, &dump, backer->dpif) {
687         sset_add(&devnames, dpif_port.name);
688     }
689
690     SSET_FOR_EACH (devname, &devnames) {
691         process_dpif_port_change(backer, devname);
692     }
693     sset_destroy(&devnames);
694 }
695
696 static void
697 process_dpif_port_change(struct dpif_backer *backer, const char *devname)
698 {
699     struct ofproto_dpif *ofproto;
700     struct dpif_port port;
701
702     /* Don't report on the datapath's device. */
703     if (!strcmp(devname, dpif_base_name(backer->dpif))) {
704         return;
705     }
706
707     HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node,
708                    &all_ofproto_dpifs) {
709         if (simap_contains(&ofproto->backer->tnl_backers, devname)) {
710             return;
711         }
712     }
713
714     ofproto = lookup_ofproto_dpif_by_port_name(devname);
715     if (dpif_port_query_by_name(backer->dpif, devname, &port)) {
716         /* The port was removed.  If we know the datapath,
717          * report it through poll_set().  If we don't, it may be
718          * notifying us of a removal we initiated, so ignore it.
719          * If there's a pending ENOBUFS, let it stand, since
720          * everything will be reevaluated. */
721         if (ofproto && ofproto->port_poll_errno != ENOBUFS) {
722             sset_add(&ofproto->port_poll_set, devname);
723             ofproto->port_poll_errno = 0;
724         }
725     } else if (!ofproto) {
726         /* The port was added, but we don't know with which
727          * ofproto we should associate it.  Delete it. */
728         dpif_port_del(backer->dpif, port.port_no);
729     } else {
730         struct ofport_dpif *ofport;
731
732         ofport = ofport_dpif_cast(shash_find_data(
733                                       &ofproto->up.port_by_name, devname));
734         if (ofport
735             && ofport->odp_port != port.port_no
736             && !odp_port_to_ofport(backer, port.port_no))
737         {
738             /* 'ofport''s datapath port number has changed from
739              * 'ofport->odp_port' to 'port.port_no'.  Update our internal data
740              * structures to match. */
741             ovs_rwlock_wrlock(&backer->odp_to_ofport_lock);
742             hmap_remove(&backer->odp_to_ofport_map, &ofport->odp_port_node);
743             ofport->odp_port = port.port_no;
744             hmap_insert(&backer->odp_to_ofport_map, &ofport->odp_port_node,
745                         hash_odp_port(port.port_no));
746             ovs_rwlock_unlock(&backer->odp_to_ofport_lock);
747             backer->need_revalidate = REV_RECONFIGURE;
748         }
749     }
750     dpif_port_destroy(&port);
751 }
752
753 /* Propagate 'error' to all ofprotos based on 'backer'. */
754 static void
755 process_dpif_port_error(struct dpif_backer *backer, int error)
756 {
757     struct ofproto_dpif *ofproto;
758
759     HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
760         if (ofproto->backer == backer) {
761             sset_clear(&ofproto->port_poll_set);
762             ofproto->port_poll_errno = error;
763         }
764     }
765 }
766
767 static void
768 type_wait(const char *type)
769 {
770     struct dpif_backer *backer;
771
772     backer = shash_find_data(&all_dpif_backers, type);
773     if (!backer) {
774         /* This is not necessarily a problem, since backers are only
775          * created on demand. */
776         return;
777     }
778
779     dpif_wait(backer->dpif);
780 }
781 \f
782 /* Basic life-cycle. */
783
784 static int add_internal_flows(struct ofproto_dpif *);
785
786 static struct ofproto *
787 alloc(void)
788 {
789     struct ofproto_dpif *ofproto = xmalloc(sizeof *ofproto);
790     return &ofproto->up;
791 }
792
793 static void
794 dealloc(struct ofproto *ofproto_)
795 {
796     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
797     free(ofproto);
798 }
799
800 static void
801 close_dpif_backer(struct dpif_backer *backer)
802 {
803     ovs_assert(backer->refcount > 0);
804
805     if (--backer->refcount) {
806         return;
807     }
808
809     udpif_destroy(backer->udpif);
810
811     simap_destroy(&backer->tnl_backers);
812     ovs_rwlock_destroy(&backer->odp_to_ofport_lock);
813     hmap_destroy(&backer->odp_to_ofport_map);
814     shash_find_and_delete(&all_dpif_backers, backer->type);
815     recirc_id_pool_destroy(backer->rid_pool);
816     free(backer->type);
817     dpif_close(backer->dpif);
818     free(backer);
819 }
820
821 /* Datapath port slated for removal from datapath. */
822 struct odp_garbage {
823     struct list list_node;
824     odp_port_t odp_port;
825 };
826
827 static bool check_variable_length_userdata(struct dpif_backer *backer);
828 static size_t check_max_mpls_depth(struct dpif_backer *backer);
829 static bool check_recirc(struct dpif_backer *backer);
830
831 static int
832 open_dpif_backer(const char *type, struct dpif_backer **backerp)
833 {
834     struct dpif_backer *backer;
835     struct dpif_port_dump port_dump;
836     struct dpif_port port;
837     struct shash_node *node;
838     struct list garbage_list;
839     struct odp_garbage *garbage, *next;
840
841     struct sset names;
842     char *backer_name;
843     const char *name;
844     int error;
845
846     backer = shash_find_data(&all_dpif_backers, type);
847     if (backer) {
848         backer->refcount++;
849         *backerp = backer;
850         return 0;
851     }
852
853     backer_name = xasprintf("ovs-%s", type);
854
855     /* Remove any existing datapaths, since we assume we're the only
856      * userspace controlling the datapath. */
857     sset_init(&names);
858     dp_enumerate_names(type, &names);
859     SSET_FOR_EACH(name, &names) {
860         struct dpif *old_dpif;
861
862         /* Don't remove our backer if it exists. */
863         if (!strcmp(name, backer_name)) {
864             continue;
865         }
866
867         if (dpif_open(name, type, &old_dpif)) {
868             VLOG_WARN("couldn't open old datapath %s to remove it", name);
869         } else {
870             dpif_delete(old_dpif);
871             dpif_close(old_dpif);
872         }
873     }
874     sset_destroy(&names);
875
876     backer = xmalloc(sizeof *backer);
877
878     error = dpif_create_and_open(backer_name, type, &backer->dpif);
879     free(backer_name);
880     if (error) {
881         VLOG_ERR("failed to open datapath of type %s: %s", type,
882                  ovs_strerror(error));
883         free(backer);
884         return error;
885     }
886     backer->udpif = udpif_create(backer, backer->dpif);
887
888     backer->type = xstrdup(type);
889     backer->refcount = 1;
890     hmap_init(&backer->odp_to_ofport_map);
891     ovs_rwlock_init(&backer->odp_to_ofport_lock);
892     backer->need_revalidate = 0;
893     simap_init(&backer->tnl_backers);
894     backer->recv_set_enable = !ofproto_get_flow_restore_wait();
895     *backerp = backer;
896
897     if (backer->recv_set_enable) {
898         dpif_flow_flush(backer->dpif);
899     }
900
901     /* Loop through the ports already on the datapath and remove any
902      * that we don't need anymore. */
903     list_init(&garbage_list);
904     dpif_port_dump_start(&port_dump, backer->dpif);
905     while (dpif_port_dump_next(&port_dump, &port)) {
906         node = shash_find(&init_ofp_ports, port.name);
907         if (!node && strcmp(port.name, dpif_base_name(backer->dpif))) {
908             garbage = xmalloc(sizeof *garbage);
909             garbage->odp_port = port.port_no;
910             list_push_front(&garbage_list, &garbage->list_node);
911         }
912     }
913     dpif_port_dump_done(&port_dump);
914
915     LIST_FOR_EACH_SAFE (garbage, next, list_node, &garbage_list) {
916         dpif_port_del(backer->dpif, garbage->odp_port);
917         list_remove(&garbage->list_node);
918         free(garbage);
919     }
920
921     shash_add(&all_dpif_backers, type, backer);
922
923     error = dpif_recv_set(backer->dpif, backer->recv_set_enable);
924     if (error) {
925         VLOG_ERR("failed to listen on datapath of type %s: %s",
926                  type, ovs_strerror(error));
927         close_dpif_backer(backer);
928         return error;
929     }
930     backer->enable_recirc = check_recirc(backer);
931     backer->variable_length_userdata = check_variable_length_userdata(backer);
932     backer->max_mpls_depth = check_max_mpls_depth(backer);
933     backer->rid_pool = recirc_id_pool_create();
934
935     if (backer->recv_set_enable) {
936         udpif_set_threads(backer->udpif, n_handlers, n_revalidators);
937     }
938
939     return error;
940 }
941
942 /* Tests whether 'backer''s datapath supports recirculation.  Only newer
943  * datapaths support OVS_KEY_ATTR_RECIRC_ID in keys.  We need to disable some
944  * features on older datapaths that don't support this feature.
945  *
946  * Returns false if 'backer' definitely does not support recirculation, true if
947  * it seems to support recirculation or if at least the error we get is
948  * ambiguous. */
949 static bool
950 check_recirc(struct dpif_backer *backer)
951 {
952     struct flow flow;
953     struct odputil_keybuf keybuf;
954     struct ofpbuf key;
955     int error;
956     bool enable_recirc = false;
957
958     memset(&flow, 0, sizeof flow);
959     flow.recirc_id = 1;
960     flow.dp_hash = 1;
961
962     ofpbuf_use_stack(&key, &keybuf, sizeof keybuf);
963     odp_flow_key_from_flow(&key, &flow, NULL, 0, true);
964
965     error = dpif_flow_put(backer->dpif, DPIF_FP_CREATE,
966                           ofpbuf_data(&key), ofpbuf_size(&key), NULL, 0, NULL,
967                           0, NULL);
968     if (error && error != EEXIST) {
969         if (error != EINVAL) {
970             VLOG_WARN("%s: Reciculation flow probe failed (%s)",
971                       dpif_name(backer->dpif), ovs_strerror(error));
972         }
973         goto done;
974     }
975
976     error = dpif_flow_del(backer->dpif, ofpbuf_data(&key), ofpbuf_size(&key),
977                           NULL);
978     if (error) {
979         VLOG_WARN("%s: failed to delete recirculation feature probe flow",
980                   dpif_name(backer->dpif));
981     }
982
983     enable_recirc = true;
984
985 done:
986     if (enable_recirc) {
987         VLOG_INFO("%s: Datapath supports recirculation",
988                   dpif_name(backer->dpif));
989     } else {
990         VLOG_INFO("%s: Datapath does not support recirculation",
991                   dpif_name(backer->dpif));
992     }
993
994     return enable_recirc;
995 }
996
997 /* Tests whether 'backer''s datapath supports variable-length
998  * OVS_USERSPACE_ATTR_USERDATA in OVS_ACTION_ATTR_USERSPACE actions.  We need
999  * to disable some features on older datapaths that don't support this
1000  * feature.
1001  *
1002  * Returns false if 'backer' definitely does not support variable-length
1003  * userdata, true if it seems to support them or if at least the error we get
1004  * is ambiguous. */
1005 static bool
1006 check_variable_length_userdata(struct dpif_backer *backer)
1007 {
1008     struct eth_header *eth;
1009     struct ofpbuf actions;
1010     struct dpif_execute execute;
1011     struct ofpbuf packet;
1012     size_t start;
1013     int error;
1014
1015     /* Compose a userspace action that will cause an ERANGE error on older
1016      * datapaths that don't support variable-length userdata.
1017      *
1018      * We really test for using userdata longer than 8 bytes, but older
1019      * datapaths accepted these, silently truncating the userdata to 8 bytes.
1020      * The same older datapaths rejected userdata shorter than 8 bytes, so we
1021      * test for that instead as a proxy for longer userdata support. */
1022     ofpbuf_init(&actions, 64);
1023     start = nl_msg_start_nested(&actions, OVS_ACTION_ATTR_USERSPACE);
1024     nl_msg_put_u32(&actions, OVS_USERSPACE_ATTR_PID,
1025                    dpif_port_get_pid(backer->dpif, ODPP_NONE, 0));
1026     nl_msg_put_unspec_zero(&actions, OVS_USERSPACE_ATTR_USERDATA, 4);
1027     nl_msg_end_nested(&actions, start);
1028
1029     /* Compose a dummy ethernet packet. */
1030     ofpbuf_init(&packet, ETH_HEADER_LEN);
1031     eth = ofpbuf_put_zeros(&packet, ETH_HEADER_LEN);
1032     eth->eth_type = htons(0x1234);
1033
1034     /* Execute the actions.  On older datapaths this fails with ERANGE, on
1035      * newer datapaths it succeeds. */
1036     execute.actions = ofpbuf_data(&actions);
1037     execute.actions_len = ofpbuf_size(&actions);
1038     execute.packet = &packet;
1039     execute.md = PKT_METADATA_INITIALIZER(0);
1040     execute.needs_help = false;
1041
1042     error = dpif_execute(backer->dpif, &execute);
1043
1044     ofpbuf_uninit(&packet);
1045     ofpbuf_uninit(&actions);
1046
1047     switch (error) {
1048     case 0:
1049         /* Variable-length userdata is supported.
1050          *
1051          * Purge received packets to avoid processing the nonsense packet we
1052          * sent to userspace, then report success. */
1053         dpif_recv_purge(backer->dpif);
1054         return true;
1055
1056     case ERANGE:
1057         /* Variable-length userdata is not supported. */
1058         VLOG_WARN("%s: datapath does not support variable-length userdata "
1059                   "feature (needs Linux 3.10+ or kernel module from OVS "
1060                   "1..11+).  The NXAST_SAMPLE action will be ignored.",
1061                   dpif_name(backer->dpif));
1062         return false;
1063
1064     default:
1065         /* Something odd happened.  We're not sure whether variable-length
1066          * userdata is supported.  Default to "yes". */
1067         VLOG_WARN("%s: variable-length userdata feature probe failed (%s)",
1068                   dpif_name(backer->dpif), ovs_strerror(error));
1069         return true;
1070     }
1071 }
1072
1073 /* Tests the MPLS label stack depth supported by 'backer''s datapath.
1074  *
1075  * Returns the number of elements in a struct flow's mpls_lse field
1076  * if the datapath supports at least that many entries in an
1077  * MPLS label stack.
1078  * Otherwise returns the number of MPLS push actions supported by
1079  * the datapath. */
1080 static size_t
1081 check_max_mpls_depth(struct dpif_backer *backer)
1082 {
1083     struct flow flow;
1084     int n;
1085
1086     for (n = 0; n < FLOW_MAX_MPLS_LABELS; n++) {
1087         struct odputil_keybuf keybuf;
1088         struct ofpbuf key;
1089         int error;
1090
1091         memset(&flow, 0, sizeof flow);
1092         flow.dl_type = htons(ETH_TYPE_MPLS);
1093         flow_set_mpls_bos(&flow, n, 1);
1094
1095         ofpbuf_use_stack(&key, &keybuf, sizeof keybuf);
1096         odp_flow_key_from_flow(&key, &flow, NULL, 0, false);
1097
1098         error = dpif_flow_put(backer->dpif, DPIF_FP_CREATE,
1099                               ofpbuf_data(&key), ofpbuf_size(&key), NULL, 0, NULL, 0, NULL);
1100         if (error && error != EEXIST) {
1101             if (error != EINVAL) {
1102                 VLOG_WARN("%s: MPLS stack length feature probe failed (%s)",
1103                           dpif_name(backer->dpif), ovs_strerror(error));
1104             }
1105             break;
1106         }
1107
1108         error = dpif_flow_del(backer->dpif, ofpbuf_data(&key), ofpbuf_size(&key), NULL);
1109         if (error) {
1110             VLOG_WARN("%s: failed to delete MPLS feature probe flow",
1111                       dpif_name(backer->dpif));
1112         }
1113     }
1114
1115     VLOG_INFO("%s: MPLS label stack length probed as %d",
1116               dpif_name(backer->dpif), n);
1117     return n;
1118 }
1119
1120 static int
1121 construct(struct ofproto *ofproto_)
1122 {
1123     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1124     struct shash_node *node, *next;
1125     int error;
1126
1127     error = open_dpif_backer(ofproto->up.type, &ofproto->backer);
1128     if (error) {
1129         return error;
1130     }
1131
1132     ofproto->netflow = NULL;
1133     ofproto->sflow = NULL;
1134     ofproto->ipfix = NULL;
1135     ofproto->stp = NULL;
1136     ofproto->dump_seq = 0;
1137     hmap_init(&ofproto->bundles);
1138     ofproto->ml = mac_learning_create(MAC_ENTRY_DEFAULT_IDLE_TIME);
1139     ofproto->ms = NULL;
1140     ofproto->mbridge = mbridge_create();
1141     ofproto->has_bonded_bundles = false;
1142     ofproto->lacp_enabled = false;
1143     ovs_mutex_init_adaptive(&ofproto->stats_mutex);
1144     ovs_mutex_init(&ofproto->vsp_mutex);
1145
1146     guarded_list_init(&ofproto->pins);
1147
1148     ofproto_dpif_unixctl_init();
1149
1150     hmap_init(&ofproto->vlandev_map);
1151     hmap_init(&ofproto->realdev_vid_map);
1152
1153     sset_init(&ofproto->ports);
1154     sset_init(&ofproto->ghost_ports);
1155     sset_init(&ofproto->port_poll_set);
1156     ofproto->port_poll_errno = 0;
1157     ofproto->change_seq = 0;
1158     ofproto->pins_seq = seq_create();
1159     ofproto->pins_seqno = seq_read(ofproto->pins_seq);
1160
1161
1162     SHASH_FOR_EACH_SAFE (node, next, &init_ofp_ports) {
1163         struct iface_hint *iface_hint = node->data;
1164
1165         if (!strcmp(iface_hint->br_name, ofproto->up.name)) {
1166             /* Check if the datapath already has this port. */
1167             if (dpif_port_exists(ofproto->backer->dpif, node->name)) {
1168                 sset_add(&ofproto->ports, node->name);
1169             }
1170
1171             free(iface_hint->br_name);
1172             free(iface_hint->br_type);
1173             free(iface_hint);
1174             shash_delete(&init_ofp_ports, node);
1175         }
1176     }
1177
1178     hmap_insert(&all_ofproto_dpifs, &ofproto->all_ofproto_dpifs_node,
1179                 hash_string(ofproto->up.name, 0));
1180     memset(&ofproto->stats, 0, sizeof ofproto->stats);
1181
1182     ofproto_init_tables(ofproto_, N_TABLES);
1183     error = add_internal_flows(ofproto);
1184
1185     ofproto->up.tables[TBL_INTERNAL].flags = OFTABLE_HIDDEN | OFTABLE_READONLY;
1186
1187     return error;
1188 }
1189
1190 static int
1191 add_internal_miss_flow(struct ofproto_dpif *ofproto, int id,
1192                   const struct ofpbuf *ofpacts, struct rule_dpif **rulep)
1193 {
1194     struct match match;
1195     int error;
1196     struct rule *rule;
1197
1198     match_init_catchall(&match);
1199     match_set_reg(&match, 0, id);
1200
1201     error = ofproto_dpif_add_internal_flow(ofproto, &match, 0, 0, ofpacts,
1202                                            &rule);
1203     *rulep = error ? NULL : rule_dpif_cast(rule);
1204
1205     return error;
1206 }
1207
1208 static int
1209 add_internal_flows(struct ofproto_dpif *ofproto)
1210 {
1211     struct ofpact_controller *controller;
1212     uint64_t ofpacts_stub[128 / 8];
1213     struct ofpbuf ofpacts;
1214     struct rule *unused_rulep OVS_UNUSED;
1215     struct ofpact_resubmit *resubmit;
1216     struct match match;
1217     int error;
1218     int id;
1219
1220     ofpbuf_use_stack(&ofpacts, ofpacts_stub, sizeof ofpacts_stub);
1221     id = 1;
1222
1223     controller = ofpact_put_CONTROLLER(&ofpacts);
1224     controller->max_len = UINT16_MAX;
1225     controller->controller_id = 0;
1226     controller->reason = OFPR_NO_MATCH;
1227     ofpact_pad(&ofpacts);
1228
1229     error = add_internal_miss_flow(ofproto, id++, &ofpacts,
1230                                    &ofproto->miss_rule);
1231     if (error) {
1232         return error;
1233     }
1234
1235     ofpbuf_clear(&ofpacts);
1236     error = add_internal_miss_flow(ofproto, id++, &ofpacts,
1237                                    &ofproto->no_packet_in_rule);
1238     if (error) {
1239         return error;
1240     }
1241
1242     error = add_internal_miss_flow(ofproto, id++, &ofpacts,
1243                                    &ofproto->drop_frags_rule);
1244     if (error) {
1245         return error;
1246     }
1247
1248     /* Continue non-recirculation rule lookups from table 0.
1249      *
1250      * (priority=2), recirc=0, actions=resubmit(, 0)
1251      */
1252     resubmit = ofpact_put_RESUBMIT(&ofpacts);
1253     resubmit->ofpact.compat = 0;
1254     resubmit->in_port = OFPP_IN_PORT;
1255     resubmit->table_id = 0;
1256
1257     match_init_catchall(&match);
1258     match_set_recirc_id(&match, 0);
1259
1260     error = ofproto_dpif_add_internal_flow(ofproto, &match, 2, 0, &ofpacts,
1261                                            &unused_rulep);
1262     if (error) {
1263         return error;
1264     }
1265
1266     /* Drop any run away recirc rule lookups. Recirc_id has to be
1267      * non-zero when reaching this rule.
1268      *
1269      * (priority=1), *, actions=drop
1270      */
1271     ofpbuf_clear(&ofpacts);
1272     match_init_catchall(&match);
1273     error = ofproto_dpif_add_internal_flow(ofproto, &match, 1, 0, &ofpacts,
1274                                            &unused_rulep);
1275
1276     return error;
1277 }
1278
1279 static void
1280 destruct(struct ofproto *ofproto_)
1281 {
1282     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1283     struct ofproto_packet_in *pin, *next_pin;
1284     struct rule_dpif *rule;
1285     struct oftable *table;
1286     struct list pins;
1287
1288     ofproto->backer->need_revalidate = REV_RECONFIGURE;
1289     xlate_txn_start();
1290     xlate_remove_ofproto(ofproto);
1291     xlate_txn_commit();
1292
1293     /* Ensure that the upcall processing threads have no remaining references
1294      * to the ofproto or anything in it. */
1295     udpif_synchronize(ofproto->backer->udpif);
1296
1297     hmap_remove(&all_ofproto_dpifs, &ofproto->all_ofproto_dpifs_node);
1298
1299     OFPROTO_FOR_EACH_TABLE (table, &ofproto->up) {
1300         CLS_FOR_EACH_SAFE (rule, up.cr, &table->cls) {
1301             ofproto_rule_delete(&ofproto->up, &rule->up);
1302         }
1303     }
1304
1305     guarded_list_pop_all(&ofproto->pins, &pins);
1306     LIST_FOR_EACH_SAFE (pin, next_pin, list_node, &pins) {
1307         list_remove(&pin->list_node);
1308         free(CONST_CAST(void *, pin->up.packet));
1309         free(pin);
1310     }
1311     guarded_list_destroy(&ofproto->pins);
1312
1313     mbridge_unref(ofproto->mbridge);
1314
1315     netflow_unref(ofproto->netflow);
1316     dpif_sflow_unref(ofproto->sflow);
1317     hmap_destroy(&ofproto->bundles);
1318     mac_learning_unref(ofproto->ml);
1319     mcast_snooping_unref(ofproto->ms);
1320
1321     hmap_destroy(&ofproto->vlandev_map);
1322     hmap_destroy(&ofproto->realdev_vid_map);
1323
1324     sset_destroy(&ofproto->ports);
1325     sset_destroy(&ofproto->ghost_ports);
1326     sset_destroy(&ofproto->port_poll_set);
1327
1328     ovs_mutex_destroy(&ofproto->stats_mutex);
1329     ovs_mutex_destroy(&ofproto->vsp_mutex);
1330
1331     seq_destroy(ofproto->pins_seq);
1332
1333     close_dpif_backer(ofproto->backer);
1334 }
1335
1336 static int
1337 run(struct ofproto *ofproto_)
1338 {
1339     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1340     uint64_t new_seq, new_dump_seq;
1341
1342     if (mbridge_need_revalidate(ofproto->mbridge)) {
1343         ofproto->backer->need_revalidate = REV_RECONFIGURE;
1344         ovs_rwlock_wrlock(&ofproto->ml->rwlock);
1345         mac_learning_flush(ofproto->ml);
1346         ovs_rwlock_unlock(&ofproto->ml->rwlock);
1347         mcast_snooping_mdb_flush(ofproto->ms);
1348     }
1349
1350     /* Always updates the ofproto->pins_seqno to avoid frequent wakeup during
1351      * flow restore.  Even though nothing is processed during flow restore,
1352      * all queued 'pins' will be handled immediately when flow restore
1353      * completes. */
1354     ofproto->pins_seqno = seq_read(ofproto->pins_seq);
1355
1356     /* Do not perform any periodic activity required by 'ofproto' while
1357      * waiting for flow restore to complete. */
1358     if (!ofproto_get_flow_restore_wait()) {
1359         struct ofproto_packet_in *pin, *next_pin;
1360         struct list pins;
1361
1362         guarded_list_pop_all(&ofproto->pins, &pins);
1363         LIST_FOR_EACH_SAFE (pin, next_pin, list_node, &pins) {
1364             connmgr_send_packet_in(ofproto->up.connmgr, pin);
1365             list_remove(&pin->list_node);
1366             free(CONST_CAST(void *, pin->up.packet));
1367             free(pin);
1368         }
1369     }
1370
1371     if (ofproto->netflow) {
1372         netflow_run(ofproto->netflow);
1373     }
1374     if (ofproto->sflow) {
1375         dpif_sflow_run(ofproto->sflow);
1376     }
1377     if (ofproto->ipfix) {
1378         dpif_ipfix_run(ofproto->ipfix);
1379     }
1380
1381     new_seq = seq_read(connectivity_seq_get());
1382     if (ofproto->change_seq != new_seq) {
1383         struct ofport_dpif *ofport;
1384
1385         HMAP_FOR_EACH (ofport, up.hmap_node, &ofproto->up.ports) {
1386             port_run(ofport);
1387         }
1388
1389         ofproto->change_seq = new_seq;
1390     }
1391     if (ofproto->lacp_enabled || ofproto->has_bonded_bundles) {
1392         struct ofbundle *bundle;
1393
1394         HMAP_FOR_EACH (bundle, hmap_node, &ofproto->bundles) {
1395             bundle_run(bundle);
1396         }
1397     }
1398
1399     stp_run(ofproto);
1400     ovs_rwlock_wrlock(&ofproto->ml->rwlock);
1401     if (mac_learning_run(ofproto->ml)) {
1402         ofproto->backer->need_revalidate = REV_MAC_LEARNING;
1403     }
1404     ovs_rwlock_unlock(&ofproto->ml->rwlock);
1405
1406     if (mcast_snooping_run(ofproto->ms)) {
1407         ofproto->backer->need_revalidate = REV_MCAST_SNOOPING;
1408     }
1409
1410     new_dump_seq = seq_read(udpif_dump_seq(ofproto->backer->udpif));
1411     if (ofproto->dump_seq != new_dump_seq) {
1412         struct rule *rule, *next_rule;
1413
1414         /* We know stats are relatively fresh, so now is a good time to do some
1415          * periodic work. */
1416         ofproto->dump_seq = new_dump_seq;
1417
1418         /* Expire OpenFlow flows whose idle_timeout or hard_timeout
1419          * has passed. */
1420         ovs_mutex_lock(&ofproto_mutex);
1421         LIST_FOR_EACH_SAFE (rule, next_rule, expirable,
1422                             &ofproto->up.expirable) {
1423             rule_expire(rule_dpif_cast(rule));
1424         }
1425         ovs_mutex_unlock(&ofproto_mutex);
1426
1427         /* All outstanding data in existing flows has been accounted, so it's a
1428          * good time to do bond rebalancing. */
1429         if (ofproto->has_bonded_bundles) {
1430             struct ofbundle *bundle;
1431
1432             HMAP_FOR_EACH (bundle, hmap_node, &ofproto->bundles) {
1433                 if (bundle->bond) {
1434                     bond_rebalance(bundle->bond);
1435                 }
1436             }
1437         }
1438     }
1439
1440     return 0;
1441 }
1442
1443 static void
1444 wait(struct ofproto *ofproto_)
1445 {
1446     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1447
1448     if (ofproto_get_flow_restore_wait()) {
1449         return;
1450     }
1451
1452     if (ofproto->sflow) {
1453         dpif_sflow_wait(ofproto->sflow);
1454     }
1455     if (ofproto->ipfix) {
1456         dpif_ipfix_wait(ofproto->ipfix);
1457     }
1458     if (ofproto->lacp_enabled || ofproto->has_bonded_bundles) {
1459         struct ofbundle *bundle;
1460
1461         HMAP_FOR_EACH (bundle, hmap_node, &ofproto->bundles) {
1462             bundle_wait(bundle);
1463         }
1464     }
1465     if (ofproto->netflow) {
1466         netflow_wait(ofproto->netflow);
1467     }
1468     ovs_rwlock_rdlock(&ofproto->ml->rwlock);
1469     mac_learning_wait(ofproto->ml);
1470     ovs_rwlock_unlock(&ofproto->ml->rwlock);
1471     mcast_snooping_wait(ofproto->ms);
1472     stp_wait(ofproto);
1473     if (ofproto->backer->need_revalidate) {
1474         /* Shouldn't happen, but if it does just go around again. */
1475         VLOG_DBG_RL(&rl, "need revalidate in ofproto_wait_cb()");
1476         poll_immediate_wake();
1477     }
1478
1479     seq_wait(udpif_dump_seq(ofproto->backer->udpif), ofproto->dump_seq);
1480     seq_wait(ofproto->pins_seq, ofproto->pins_seqno);
1481 }
1482
1483 static void
1484 type_get_memory_usage(const char *type, struct simap *usage)
1485 {
1486     struct dpif_backer *backer;
1487
1488     backer = shash_find_data(&all_dpif_backers, type);
1489     if (backer) {
1490         udpif_get_memory_usage(backer->udpif, usage);
1491     }
1492 }
1493
1494 static void
1495 flush(struct ofproto *ofproto_)
1496 {
1497     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1498     struct dpif_backer *backer = ofproto->backer;
1499
1500     if (backer) {
1501         udpif_flush(backer->udpif);
1502     }
1503 }
1504
1505 static void
1506 get_features(struct ofproto *ofproto_ OVS_UNUSED,
1507              bool *arp_match_ip, enum ofputil_action_bitmap *actions)
1508 {
1509     *arp_match_ip = true;
1510     *actions = (OFPUTIL_A_OUTPUT |
1511                 OFPUTIL_A_SET_VLAN_VID |
1512                 OFPUTIL_A_SET_VLAN_PCP |
1513                 OFPUTIL_A_STRIP_VLAN |
1514                 OFPUTIL_A_SET_DL_SRC |
1515                 OFPUTIL_A_SET_DL_DST |
1516                 OFPUTIL_A_SET_NW_SRC |
1517                 OFPUTIL_A_SET_NW_DST |
1518                 OFPUTIL_A_SET_NW_TOS |
1519                 OFPUTIL_A_SET_TP_SRC |
1520                 OFPUTIL_A_SET_TP_DST |
1521                 OFPUTIL_A_ENQUEUE);
1522 }
1523
1524 static void
1525 get_tables(struct ofproto *ofproto, struct ofp12_table_stats *ots)
1526 {
1527     int i;
1528
1529     strcpy(ots->name, "classifier");
1530
1531     for (i = 0; i < ofproto->n_tables; i++) {
1532         unsigned long missed, matched;
1533
1534         atomic_read(&ofproto->tables[i].n_matched, &matched);
1535         ots[i].matched_count = htonll(matched);
1536         atomic_read(&ofproto->tables[i].n_missed, &missed);
1537         ots[i].lookup_count = htonll(matched + missed);
1538     }
1539 }
1540
1541 static struct ofport *
1542 port_alloc(void)
1543 {
1544     struct ofport_dpif *port = xmalloc(sizeof *port);
1545     return &port->up;
1546 }
1547
1548 static void
1549 port_dealloc(struct ofport *port_)
1550 {
1551     struct ofport_dpif *port = ofport_dpif_cast(port_);
1552     free(port);
1553 }
1554
1555 static int
1556 port_construct(struct ofport *port_)
1557 {
1558     struct ofport_dpif *port = ofport_dpif_cast(port_);
1559     struct ofproto_dpif *ofproto = ofproto_dpif_cast(port->up.ofproto);
1560     const struct netdev *netdev = port->up.netdev;
1561     char namebuf[NETDEV_VPORT_NAME_BUFSIZE];
1562     struct dpif_port dpif_port;
1563     int error;
1564
1565     ofproto->backer->need_revalidate = REV_RECONFIGURE;
1566     port->bundle = NULL;
1567     port->cfm = NULL;
1568     port->bfd = NULL;
1569     port->may_enable = true;
1570     port->stp_port = NULL;
1571     port->stp_state = STP_DISABLED;
1572     port->is_tunnel = false;
1573     port->peer = NULL;
1574     port->qdscp = NULL;
1575     port->n_qdscp = 0;
1576     port->realdev_ofp_port = 0;
1577     port->vlandev_vid = 0;
1578     port->carrier_seq = netdev_get_carrier_resets(netdev);
1579     port->is_layer3 = netdev_vport_is_layer3(netdev);
1580
1581     if (netdev_vport_is_patch(netdev)) {
1582         /* By bailing out here, we don't submit the port to the sFlow module
1583          * to be considered for counter polling export.  This is correct
1584          * because the patch port represents an interface that sFlow considers
1585          * to be "internal" to the switch as a whole, and therefore not an
1586          * candidate for counter polling. */
1587         port->odp_port = ODPP_NONE;
1588         ofport_update_peer(port);
1589         return 0;
1590     }
1591
1592     error = dpif_port_query_by_name(ofproto->backer->dpif,
1593                                     netdev_vport_get_dpif_port(netdev, namebuf,
1594                                                                sizeof namebuf),
1595                                     &dpif_port);
1596     if (error) {
1597         return error;
1598     }
1599
1600     port->odp_port = dpif_port.port_no;
1601
1602     if (netdev_get_tunnel_config(netdev)) {
1603         tnl_port_add(port, port->up.netdev, port->odp_port);
1604         port->is_tunnel = true;
1605     } else {
1606         /* Sanity-check that a mapping doesn't already exist.  This
1607          * shouldn't happen for non-tunnel ports. */
1608         if (odp_port_to_ofp_port(ofproto, port->odp_port) != OFPP_NONE) {
1609             VLOG_ERR("port %s already has an OpenFlow port number",
1610                      dpif_port.name);
1611             dpif_port_destroy(&dpif_port);
1612             return EBUSY;
1613         }
1614
1615         ovs_rwlock_wrlock(&ofproto->backer->odp_to_ofport_lock);
1616         hmap_insert(&ofproto->backer->odp_to_ofport_map, &port->odp_port_node,
1617                     hash_odp_port(port->odp_port));
1618         ovs_rwlock_unlock(&ofproto->backer->odp_to_ofport_lock);
1619     }
1620     dpif_port_destroy(&dpif_port);
1621
1622     if (ofproto->sflow) {
1623         dpif_sflow_add_port(ofproto->sflow, port_, port->odp_port);
1624     }
1625
1626     return 0;
1627 }
1628
1629 static void
1630 port_destruct(struct ofport *port_)
1631 {
1632     struct ofport_dpif *port = ofport_dpif_cast(port_);
1633     struct ofproto_dpif *ofproto = ofproto_dpif_cast(port->up.ofproto);
1634     const char *devname = netdev_get_name(port->up.netdev);
1635     char namebuf[NETDEV_VPORT_NAME_BUFSIZE];
1636     const char *dp_port_name;
1637
1638     ofproto->backer->need_revalidate = REV_RECONFIGURE;
1639     xlate_txn_start();
1640     xlate_ofport_remove(port);
1641     xlate_txn_commit();
1642
1643     dp_port_name = netdev_vport_get_dpif_port(port->up.netdev, namebuf,
1644                                               sizeof namebuf);
1645     if (dpif_port_exists(ofproto->backer->dpif, dp_port_name)) {
1646         /* The underlying device is still there, so delete it.  This
1647          * happens when the ofproto is being destroyed, since the caller
1648          * assumes that removal of attached ports will happen as part of
1649          * destruction. */
1650         if (!port->is_tunnel) {
1651             dpif_port_del(ofproto->backer->dpif, port->odp_port);
1652         }
1653     }
1654
1655     if (port->peer) {
1656         port->peer->peer = NULL;
1657         port->peer = NULL;
1658     }
1659
1660     if (port->odp_port != ODPP_NONE && !port->is_tunnel) {
1661         ovs_rwlock_wrlock(&ofproto->backer->odp_to_ofport_lock);
1662         hmap_remove(&ofproto->backer->odp_to_ofport_map, &port->odp_port_node);
1663         ovs_rwlock_unlock(&ofproto->backer->odp_to_ofport_lock);
1664     }
1665
1666     tnl_port_del(port);
1667     sset_find_and_delete(&ofproto->ports, devname);
1668     sset_find_and_delete(&ofproto->ghost_ports, devname);
1669     bundle_remove(port_);
1670     set_cfm(port_, NULL);
1671     set_bfd(port_, NULL);
1672     if (port->stp_port) {
1673         stp_port_disable(port->stp_port);
1674     }
1675     if (ofproto->sflow) {
1676         dpif_sflow_del_port(ofproto->sflow, port->odp_port);
1677     }
1678
1679     free(port->qdscp);
1680 }
1681
1682 static void
1683 port_modified(struct ofport *port_)
1684 {
1685     struct ofport_dpif *port = ofport_dpif_cast(port_);
1686
1687     if (port->bundle && port->bundle->bond) {
1688         bond_slave_set_netdev(port->bundle->bond, port, port->up.netdev);
1689     }
1690
1691     if (port->cfm) {
1692         cfm_set_netdev(port->cfm, port->up.netdev);
1693     }
1694
1695     if (port->bfd) {
1696         bfd_set_netdev(port->bfd, port->up.netdev);
1697     }
1698
1699     ofproto_dpif_monitor_port_update(port, port->bfd, port->cfm,
1700                                      port->up.pp.hw_addr);
1701
1702     if (port->is_tunnel && tnl_port_reconfigure(port, port->up.netdev,
1703                                                 port->odp_port)) {
1704         ofproto_dpif_cast(port->up.ofproto)->backer->need_revalidate =
1705             REV_RECONFIGURE;
1706     }
1707
1708     ofport_update_peer(port);
1709 }
1710
1711 static void
1712 port_reconfigured(struct ofport *port_, enum ofputil_port_config old_config)
1713 {
1714     struct ofport_dpif *port = ofport_dpif_cast(port_);
1715     struct ofproto_dpif *ofproto = ofproto_dpif_cast(port->up.ofproto);
1716     enum ofputil_port_config changed = old_config ^ port->up.pp.config;
1717
1718     if (changed & (OFPUTIL_PC_NO_RECV | OFPUTIL_PC_NO_RECV_STP |
1719                    OFPUTIL_PC_NO_FWD | OFPUTIL_PC_NO_FLOOD |
1720                    OFPUTIL_PC_NO_PACKET_IN)) {
1721         ofproto->backer->need_revalidate = REV_RECONFIGURE;
1722
1723         if (changed & OFPUTIL_PC_NO_FLOOD && port->bundle) {
1724             bundle_update(port->bundle);
1725         }
1726     }
1727 }
1728
1729 static int
1730 set_sflow(struct ofproto *ofproto_,
1731           const struct ofproto_sflow_options *sflow_options)
1732 {
1733     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1734     struct dpif_sflow *ds = ofproto->sflow;
1735
1736     if (sflow_options) {
1737         if (!ds) {
1738             struct ofport_dpif *ofport;
1739
1740             ds = ofproto->sflow = dpif_sflow_create();
1741             HMAP_FOR_EACH (ofport, up.hmap_node, &ofproto->up.ports) {
1742                 dpif_sflow_add_port(ds, &ofport->up, ofport->odp_port);
1743             }
1744             ofproto->backer->need_revalidate = REV_RECONFIGURE;
1745         }
1746         dpif_sflow_set_options(ds, sflow_options);
1747     } else {
1748         if (ds) {
1749             dpif_sflow_unref(ds);
1750             ofproto->backer->need_revalidate = REV_RECONFIGURE;
1751             ofproto->sflow = NULL;
1752         }
1753     }
1754     return 0;
1755 }
1756
1757 static int
1758 set_ipfix(
1759     struct ofproto *ofproto_,
1760     const struct ofproto_ipfix_bridge_exporter_options *bridge_exporter_options,
1761     const struct ofproto_ipfix_flow_exporter_options *flow_exporters_options,
1762     size_t n_flow_exporters_options)
1763 {
1764     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1765     struct dpif_ipfix *di = ofproto->ipfix;
1766     bool has_options = bridge_exporter_options || flow_exporters_options;
1767
1768     if (has_options && !di) {
1769         di = ofproto->ipfix = dpif_ipfix_create();
1770     }
1771
1772     if (di) {
1773         /* Call set_options in any case to cleanly flush the flow
1774          * caches in the last exporters that are to be destroyed. */
1775         dpif_ipfix_set_options(
1776             di, bridge_exporter_options, flow_exporters_options,
1777             n_flow_exporters_options);
1778
1779         if (!has_options) {
1780             dpif_ipfix_unref(di);
1781             ofproto->ipfix = NULL;
1782         }
1783     }
1784
1785     return 0;
1786 }
1787
1788 static int
1789 set_cfm(struct ofport *ofport_, const struct cfm_settings *s)
1790 {
1791     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
1792     int error = 0;
1793
1794     if (s) {
1795         if (!ofport->cfm) {
1796             struct ofproto_dpif *ofproto;
1797
1798             ofproto = ofproto_dpif_cast(ofport->up.ofproto);
1799             ofproto->backer->need_revalidate = REV_RECONFIGURE;
1800             ofport->cfm = cfm_create(ofport->up.netdev);
1801         }
1802
1803         if (cfm_configure(ofport->cfm, s)) {
1804             error = 0;
1805             goto out;
1806         }
1807
1808         error = EINVAL;
1809     }
1810     cfm_unref(ofport->cfm);
1811     ofport->cfm = NULL;
1812 out:
1813     ofproto_dpif_monitor_port_update(ofport, ofport->bfd, ofport->cfm,
1814                                      ofport->up.pp.hw_addr);
1815     return error;
1816 }
1817
1818 static bool
1819 cfm_status_changed(struct ofport *ofport_)
1820 {
1821     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
1822
1823     return ofport->cfm ? cfm_check_status_change(ofport->cfm) : true;
1824 }
1825
1826 static int
1827 get_cfm_status(const struct ofport *ofport_,
1828                struct cfm_status *status)
1829 {
1830     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
1831     int ret = 0;
1832
1833     if (ofport->cfm) {
1834         cfm_get_status(ofport->cfm, status);
1835     } else {
1836         ret = ENOENT;
1837     }
1838
1839     return ret;
1840 }
1841
1842 static int
1843 set_bfd(struct ofport *ofport_, const struct smap *cfg)
1844 {
1845     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport_->ofproto);
1846     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
1847     struct bfd *old;
1848
1849     old = ofport->bfd;
1850     ofport->bfd = bfd_configure(old, netdev_get_name(ofport->up.netdev),
1851                                 cfg, ofport->up.netdev);
1852     if (ofport->bfd != old) {
1853         ofproto->backer->need_revalidate = REV_RECONFIGURE;
1854     }
1855     ofproto_dpif_monitor_port_update(ofport, ofport->bfd, ofport->cfm,
1856                                      ofport->up.pp.hw_addr);
1857     return 0;
1858 }
1859
1860 static bool
1861 bfd_status_changed(struct ofport *ofport_)
1862 {
1863     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
1864
1865     return ofport->bfd ? bfd_check_status_change(ofport->bfd) : true;
1866 }
1867
1868 static int
1869 get_bfd_status(struct ofport *ofport_, struct smap *smap)
1870 {
1871     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
1872     int ret = 0;
1873
1874     if (ofport->bfd) {
1875         bfd_get_status(ofport->bfd, smap);
1876     } else {
1877         ret = ENOENT;
1878     }
1879
1880     return ret;
1881 }
1882 \f
1883 /* Spanning Tree. */
1884
1885 static void
1886 send_bpdu_cb(struct ofpbuf *pkt, int port_num, void *ofproto_)
1887 {
1888     struct ofproto_dpif *ofproto = ofproto_;
1889     struct stp_port *sp = stp_get_port(ofproto->stp, port_num);
1890     struct ofport_dpif *ofport;
1891
1892     ofport = stp_port_get_aux(sp);
1893     if (!ofport) {
1894         VLOG_WARN_RL(&rl, "%s: cannot send BPDU on unknown port %d",
1895                      ofproto->up.name, port_num);
1896     } else {
1897         struct eth_header *eth = ofpbuf_l2(pkt);
1898
1899         netdev_get_etheraddr(ofport->up.netdev, eth->eth_src);
1900         if (eth_addr_is_zero(eth->eth_src)) {
1901             VLOG_WARN_RL(&rl, "%s: cannot send BPDU on port %d "
1902                          "with unknown MAC", ofproto->up.name, port_num);
1903         } else {
1904             ofproto_dpif_send_packet(ofport, pkt);
1905         }
1906     }
1907     ofpbuf_delete(pkt);
1908 }
1909
1910 /* Configures STP on 'ofproto_' using the settings defined in 's'. */
1911 static int
1912 set_stp(struct ofproto *ofproto_, const struct ofproto_stp_settings *s)
1913 {
1914     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1915
1916     /* Only revalidate flows if the configuration changed. */
1917     if (!s != !ofproto->stp) {
1918         ofproto->backer->need_revalidate = REV_RECONFIGURE;
1919     }
1920
1921     if (s) {
1922         if (!ofproto->stp) {
1923             ofproto->stp = stp_create(ofproto_->name, s->system_id,
1924                                       send_bpdu_cb, ofproto);
1925             ofproto->stp_last_tick = time_msec();
1926         }
1927
1928         stp_set_bridge_id(ofproto->stp, s->system_id);
1929         stp_set_bridge_priority(ofproto->stp, s->priority);
1930         stp_set_hello_time(ofproto->stp, s->hello_time);
1931         stp_set_max_age(ofproto->stp, s->max_age);
1932         stp_set_forward_delay(ofproto->stp, s->fwd_delay);
1933     }  else {
1934         struct ofport *ofport;
1935
1936         HMAP_FOR_EACH (ofport, hmap_node, &ofproto->up.ports) {
1937             set_stp_port(ofport, NULL);
1938         }
1939
1940         stp_unref(ofproto->stp);
1941         ofproto->stp = NULL;
1942     }
1943
1944     return 0;
1945 }
1946
1947 static int
1948 get_stp_status(struct ofproto *ofproto_, struct ofproto_stp_status *s)
1949 {
1950     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
1951
1952     if (ofproto->stp) {
1953         s->enabled = true;
1954         s->bridge_id = stp_get_bridge_id(ofproto->stp);
1955         s->designated_root = stp_get_designated_root(ofproto->stp);
1956         s->root_path_cost = stp_get_root_path_cost(ofproto->stp);
1957     } else {
1958         s->enabled = false;
1959     }
1960
1961     return 0;
1962 }
1963
1964 static void
1965 update_stp_port_state(struct ofport_dpif *ofport)
1966 {
1967     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
1968     enum stp_state state;
1969
1970     /* Figure out new state. */
1971     state = ofport->stp_port ? stp_port_get_state(ofport->stp_port)
1972                              : STP_DISABLED;
1973
1974     /* Update state. */
1975     if (ofport->stp_state != state) {
1976         enum ofputil_port_state of_state;
1977         bool fwd_change;
1978
1979         VLOG_DBG_RL(&rl, "port %s: STP state changed from %s to %s",
1980                     netdev_get_name(ofport->up.netdev),
1981                     stp_state_name(ofport->stp_state),
1982                     stp_state_name(state));
1983         if (stp_learn_in_state(ofport->stp_state)
1984                 != stp_learn_in_state(state)) {
1985             /* xxx Learning action flows should also be flushed. */
1986             ovs_rwlock_wrlock(&ofproto->ml->rwlock);
1987             mac_learning_flush(ofproto->ml);
1988             ovs_rwlock_unlock(&ofproto->ml->rwlock);
1989             mcast_snooping_mdb_flush(ofproto->ms);
1990         }
1991         fwd_change = stp_forward_in_state(ofport->stp_state)
1992                         != stp_forward_in_state(state);
1993
1994         ofproto->backer->need_revalidate = REV_STP;
1995         ofport->stp_state = state;
1996         ofport->stp_state_entered = time_msec();
1997
1998         if (fwd_change && ofport->bundle) {
1999             bundle_update(ofport->bundle);
2000         }
2001
2002         /* Update the STP state bits in the OpenFlow port description. */
2003         of_state = ofport->up.pp.state & ~OFPUTIL_PS_STP_MASK;
2004         of_state |= (state == STP_LISTENING ? OFPUTIL_PS_STP_LISTEN
2005                      : state == STP_LEARNING ? OFPUTIL_PS_STP_LEARN
2006                      : state == STP_FORWARDING ? OFPUTIL_PS_STP_FORWARD
2007                      : state == STP_BLOCKING ?  OFPUTIL_PS_STP_BLOCK
2008                      : 0);
2009         ofproto_port_set_state(&ofport->up, of_state);
2010     }
2011 }
2012
2013 /* Configures STP on 'ofport_' using the settings defined in 's'.  The
2014  * caller is responsible for assigning STP port numbers and ensuring
2015  * there are no duplicates. */
2016 static int
2017 set_stp_port(struct ofport *ofport_,
2018              const struct ofproto_port_stp_settings *s)
2019 {
2020     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
2021     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
2022     struct stp_port *sp = ofport->stp_port;
2023
2024     if (!s || !s->enable) {
2025         if (sp) {
2026             ofport->stp_port = NULL;
2027             stp_port_disable(sp);
2028             update_stp_port_state(ofport);
2029         }
2030         return 0;
2031     } else if (sp && stp_port_no(sp) != s->port_num
2032             && ofport == stp_port_get_aux(sp)) {
2033         /* The port-id changed, so disable the old one if it's not
2034          * already in use by another port. */
2035         stp_port_disable(sp);
2036     }
2037
2038     sp = ofport->stp_port = stp_get_port(ofproto->stp, s->port_num);
2039     stp_port_enable(sp);
2040
2041     stp_port_set_name(sp, netdev_get_name(ofport->up.netdev));
2042     stp_port_set_aux(sp, ofport);
2043     stp_port_set_priority(sp, s->priority);
2044     stp_port_set_path_cost(sp, s->path_cost);
2045
2046     update_stp_port_state(ofport);
2047
2048     return 0;
2049 }
2050
2051 static int
2052 get_stp_port_status(struct ofport *ofport_,
2053                     struct ofproto_port_stp_status *s)
2054 {
2055     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
2056     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
2057     struct stp_port *sp = ofport->stp_port;
2058
2059     if (!ofproto->stp || !sp) {
2060         s->enabled = false;
2061         return 0;
2062     }
2063
2064     s->enabled = true;
2065     s->port_id = stp_port_get_id(sp);
2066     s->state = stp_port_get_state(sp);
2067     s->sec_in_state = (time_msec() - ofport->stp_state_entered) / 1000;
2068     s->role = stp_port_get_role(sp);
2069
2070     return 0;
2071 }
2072
2073 static int
2074 get_stp_port_stats(struct ofport *ofport_,
2075                    struct ofproto_port_stp_stats *s)
2076 {
2077     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
2078     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
2079     struct stp_port *sp = ofport->stp_port;
2080
2081     if (!ofproto->stp || !sp) {
2082         s->enabled = false;
2083         return 0;
2084     }
2085
2086     s->enabled = true;
2087     stp_port_get_counts(sp, &s->tx_count, &s->rx_count, &s->error_count);
2088
2089     return 0;
2090 }
2091
2092 static void
2093 stp_run(struct ofproto_dpif *ofproto)
2094 {
2095     if (ofproto->stp) {
2096         long long int now = time_msec();
2097         long long int elapsed = now - ofproto->stp_last_tick;
2098         struct stp_port *sp;
2099
2100         if (elapsed > 0) {
2101             stp_tick(ofproto->stp, MIN(INT_MAX, elapsed));
2102             ofproto->stp_last_tick = now;
2103         }
2104         while (stp_get_changed_port(ofproto->stp, &sp)) {
2105             struct ofport_dpif *ofport = stp_port_get_aux(sp);
2106
2107             if (ofport) {
2108                 update_stp_port_state(ofport);
2109             }
2110         }
2111
2112         if (stp_check_and_reset_fdb_flush(ofproto->stp)) {
2113             ovs_rwlock_wrlock(&ofproto->ml->rwlock);
2114             mac_learning_flush(ofproto->ml);
2115             ovs_rwlock_unlock(&ofproto->ml->rwlock);
2116             mcast_snooping_mdb_flush(ofproto->ms);
2117         }
2118     }
2119 }
2120
2121 static void
2122 stp_wait(struct ofproto_dpif *ofproto)
2123 {
2124     if (ofproto->stp) {
2125         poll_timer_wait(1000);
2126     }
2127 }
2128 \f
2129 static int
2130 set_queues(struct ofport *ofport_, const struct ofproto_port_queue *qdscp,
2131            size_t n_qdscp)
2132 {
2133     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
2134     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
2135
2136     if (ofport->n_qdscp != n_qdscp
2137         || (n_qdscp && memcmp(ofport->qdscp, qdscp,
2138                               n_qdscp * sizeof *qdscp))) {
2139         ofproto->backer->need_revalidate = REV_RECONFIGURE;
2140         free(ofport->qdscp);
2141         ofport->qdscp = n_qdscp
2142             ? xmemdup(qdscp, n_qdscp * sizeof *qdscp)
2143             : NULL;
2144         ofport->n_qdscp = n_qdscp;
2145     }
2146
2147     return 0;
2148 }
2149 \f
2150 /* Bundles. */
2151
2152 /* Expires all MAC learning entries associated with 'bundle' and forces its
2153  * ofproto to revalidate every flow.
2154  *
2155  * Normally MAC learning entries are removed only from the ofproto associated
2156  * with 'bundle', but if 'all_ofprotos' is true, then the MAC learning entries
2157  * are removed from every ofproto.  When patch ports and SLB bonds are in use
2158  * and a VM migration happens and the gratuitous ARPs are somehow lost, this
2159  * avoids a MAC_ENTRY_IDLE_TIME delay before the migrated VM can communicate
2160  * with the host from which it migrated. */
2161 static void
2162 bundle_flush_macs(struct ofbundle *bundle, bool all_ofprotos)
2163 {
2164     struct ofproto_dpif *ofproto = bundle->ofproto;
2165     struct mac_learning *ml = ofproto->ml;
2166     struct mac_entry *mac, *next_mac;
2167
2168     ofproto->backer->need_revalidate = REV_RECONFIGURE;
2169     ovs_rwlock_wrlock(&ml->rwlock);
2170     LIST_FOR_EACH_SAFE (mac, next_mac, lru_node, &ml->lrus) {
2171         if (mac->port.p == bundle) {
2172             if (all_ofprotos) {
2173                 struct ofproto_dpif *o;
2174
2175                 HMAP_FOR_EACH (o, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
2176                     if (o != ofproto) {
2177                         struct mac_entry *e;
2178
2179                         ovs_rwlock_wrlock(&o->ml->rwlock);
2180                         e = mac_learning_lookup(o->ml, mac->mac, mac->vlan);
2181                         if (e) {
2182                             mac_learning_expire(o->ml, e);
2183                         }
2184                         ovs_rwlock_unlock(&o->ml->rwlock);
2185                     }
2186                 }
2187             }
2188
2189             mac_learning_expire(ml, mac);
2190         }
2191     }
2192     ovs_rwlock_unlock(&ml->rwlock);
2193 }
2194
2195 static struct ofbundle *
2196 bundle_lookup(const struct ofproto_dpif *ofproto, void *aux)
2197 {
2198     struct ofbundle *bundle;
2199
2200     HMAP_FOR_EACH_IN_BUCKET (bundle, hmap_node, hash_pointer(aux, 0),
2201                              &ofproto->bundles) {
2202         if (bundle->aux == aux) {
2203             return bundle;
2204         }
2205     }
2206     return NULL;
2207 }
2208
2209 static void
2210 bundle_update(struct ofbundle *bundle)
2211 {
2212     struct ofport_dpif *port;
2213
2214     bundle->floodable = true;
2215     LIST_FOR_EACH (port, bundle_node, &bundle->ports) {
2216         if (port->up.pp.config & OFPUTIL_PC_NO_FLOOD
2217             || port->is_layer3
2218             || !stp_forward_in_state(port->stp_state)) {
2219             bundle->floodable = false;
2220             break;
2221         }
2222     }
2223 }
2224
2225 static void
2226 bundle_del_port(struct ofport_dpif *port)
2227 {
2228     struct ofbundle *bundle = port->bundle;
2229
2230     bundle->ofproto->backer->need_revalidate = REV_RECONFIGURE;
2231
2232     list_remove(&port->bundle_node);
2233     port->bundle = NULL;
2234
2235     if (bundle->lacp) {
2236         lacp_slave_unregister(bundle->lacp, port);
2237     }
2238     if (bundle->bond) {
2239         bond_slave_unregister(bundle->bond, port);
2240     }
2241
2242     bundle_update(bundle);
2243 }
2244
2245 static bool
2246 bundle_add_port(struct ofbundle *bundle, ofp_port_t ofp_port,
2247                 struct lacp_slave_settings *lacp)
2248 {
2249     struct ofport_dpif *port;
2250
2251     port = get_ofp_port(bundle->ofproto, ofp_port);
2252     if (!port) {
2253         return false;
2254     }
2255
2256     if (port->bundle != bundle) {
2257         bundle->ofproto->backer->need_revalidate = REV_RECONFIGURE;
2258         if (port->bundle) {
2259             bundle_remove(&port->up);
2260         }
2261
2262         port->bundle = bundle;
2263         list_push_back(&bundle->ports, &port->bundle_node);
2264         if (port->up.pp.config & OFPUTIL_PC_NO_FLOOD
2265             || port->is_layer3
2266             || !stp_forward_in_state(port->stp_state)) {
2267             bundle->floodable = false;
2268         }
2269     }
2270     if (lacp) {
2271         bundle->ofproto->backer->need_revalidate = REV_RECONFIGURE;
2272         lacp_slave_register(bundle->lacp, port, lacp);
2273     }
2274
2275     return true;
2276 }
2277
2278 static void
2279 bundle_destroy(struct ofbundle *bundle)
2280 {
2281     struct ofproto_dpif *ofproto;
2282     struct ofport_dpif *port, *next_port;
2283
2284     if (!bundle) {
2285         return;
2286     }
2287
2288     ofproto = bundle->ofproto;
2289     mbridge_unregister_bundle(ofproto->mbridge, bundle->aux);
2290
2291     xlate_txn_start();
2292     xlate_bundle_remove(bundle);
2293     xlate_txn_commit();
2294
2295     LIST_FOR_EACH_SAFE (port, next_port, bundle_node, &bundle->ports) {
2296         bundle_del_port(port);
2297     }
2298
2299     bundle_flush_macs(bundle, true);
2300     hmap_remove(&ofproto->bundles, &bundle->hmap_node);
2301     free(bundle->name);
2302     free(bundle->trunks);
2303     lacp_unref(bundle->lacp);
2304     bond_unref(bundle->bond);
2305     free(bundle);
2306 }
2307
2308 static int
2309 bundle_set(struct ofproto *ofproto_, void *aux,
2310            const struct ofproto_bundle_settings *s)
2311 {
2312     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2313     bool need_flush = false;
2314     struct ofport_dpif *port;
2315     struct ofbundle *bundle;
2316     unsigned long *trunks;
2317     int vlan;
2318     size_t i;
2319     bool ok;
2320
2321     if (!s) {
2322         bundle_destroy(bundle_lookup(ofproto, aux));
2323         return 0;
2324     }
2325
2326     ovs_assert(s->n_slaves == 1 || s->bond != NULL);
2327     ovs_assert((s->lacp != NULL) == (s->lacp_slaves != NULL));
2328
2329     bundle = bundle_lookup(ofproto, aux);
2330     if (!bundle) {
2331         bundle = xmalloc(sizeof *bundle);
2332
2333         bundle->ofproto = ofproto;
2334         hmap_insert(&ofproto->bundles, &bundle->hmap_node,
2335                     hash_pointer(aux, 0));
2336         bundle->aux = aux;
2337         bundle->name = NULL;
2338
2339         list_init(&bundle->ports);
2340         bundle->vlan_mode = PORT_VLAN_TRUNK;
2341         bundle->vlan = -1;
2342         bundle->trunks = NULL;
2343         bundle->use_priority_tags = s->use_priority_tags;
2344         bundle->lacp = NULL;
2345         bundle->bond = NULL;
2346
2347         bundle->floodable = true;
2348         mbridge_register_bundle(ofproto->mbridge, bundle);
2349     }
2350
2351     if (!bundle->name || strcmp(s->name, bundle->name)) {
2352         free(bundle->name);
2353         bundle->name = xstrdup(s->name);
2354     }
2355
2356     /* LACP. */
2357     if (s->lacp) {
2358         ofproto->lacp_enabled = true;
2359         if (!bundle->lacp) {
2360             ofproto->backer->need_revalidate = REV_RECONFIGURE;
2361             bundle->lacp = lacp_create();
2362         }
2363         lacp_configure(bundle->lacp, s->lacp);
2364     } else {
2365         lacp_unref(bundle->lacp);
2366         bundle->lacp = NULL;
2367     }
2368
2369     /* Update set of ports. */
2370     ok = true;
2371     for (i = 0; i < s->n_slaves; i++) {
2372         if (!bundle_add_port(bundle, s->slaves[i],
2373                              s->lacp ? &s->lacp_slaves[i] : NULL)) {
2374             ok = false;
2375         }
2376     }
2377     if (!ok || list_size(&bundle->ports) != s->n_slaves) {
2378         struct ofport_dpif *next_port;
2379
2380         LIST_FOR_EACH_SAFE (port, next_port, bundle_node, &bundle->ports) {
2381             for (i = 0; i < s->n_slaves; i++) {
2382                 if (s->slaves[i] == port->up.ofp_port) {
2383                     goto found;
2384                 }
2385             }
2386
2387             bundle_del_port(port);
2388         found: ;
2389         }
2390     }
2391     ovs_assert(list_size(&bundle->ports) <= s->n_slaves);
2392
2393     if (list_is_empty(&bundle->ports)) {
2394         bundle_destroy(bundle);
2395         return EINVAL;
2396     }
2397
2398     /* Set VLAN tagging mode */
2399     if (s->vlan_mode != bundle->vlan_mode
2400         || s->use_priority_tags != bundle->use_priority_tags) {
2401         bundle->vlan_mode = s->vlan_mode;
2402         bundle->use_priority_tags = s->use_priority_tags;
2403         need_flush = true;
2404     }
2405
2406     /* Set VLAN tag. */
2407     vlan = (s->vlan_mode == PORT_VLAN_TRUNK ? -1
2408             : s->vlan >= 0 && s->vlan <= 4095 ? s->vlan
2409             : 0);
2410     if (vlan != bundle->vlan) {
2411         bundle->vlan = vlan;
2412         need_flush = true;
2413     }
2414
2415     /* Get trunked VLANs. */
2416     switch (s->vlan_mode) {
2417     case PORT_VLAN_ACCESS:
2418         trunks = NULL;
2419         break;
2420
2421     case PORT_VLAN_TRUNK:
2422         trunks = CONST_CAST(unsigned long *, s->trunks);
2423         break;
2424
2425     case PORT_VLAN_NATIVE_UNTAGGED:
2426     case PORT_VLAN_NATIVE_TAGGED:
2427         if (vlan != 0 && (!s->trunks
2428                           || !bitmap_is_set(s->trunks, vlan)
2429                           || bitmap_is_set(s->trunks, 0))) {
2430             /* Force trunking the native VLAN and prohibit trunking VLAN 0. */
2431             if (s->trunks) {
2432                 trunks = bitmap_clone(s->trunks, 4096);
2433             } else {
2434                 trunks = bitmap_allocate1(4096);
2435             }
2436             bitmap_set1(trunks, vlan);
2437             bitmap_set0(trunks, 0);
2438         } else {
2439             trunks = CONST_CAST(unsigned long *, s->trunks);
2440         }
2441         break;
2442
2443     default:
2444         OVS_NOT_REACHED();
2445     }
2446     if (!vlan_bitmap_equal(trunks, bundle->trunks)) {
2447         free(bundle->trunks);
2448         if (trunks == s->trunks) {
2449             bundle->trunks = vlan_bitmap_clone(trunks);
2450         } else {
2451             bundle->trunks = trunks;
2452             trunks = NULL;
2453         }
2454         need_flush = true;
2455     }
2456     if (trunks != s->trunks) {
2457         free(trunks);
2458     }
2459
2460     /* Bonding. */
2461     if (!list_is_short(&bundle->ports)) {
2462         bundle->ofproto->has_bonded_bundles = true;
2463         if (bundle->bond) {
2464             if (bond_reconfigure(bundle->bond, s->bond)) {
2465                 ofproto->backer->need_revalidate = REV_RECONFIGURE;
2466             }
2467         } else {
2468             bundle->bond = bond_create(s->bond, ofproto);
2469             ofproto->backer->need_revalidate = REV_RECONFIGURE;
2470         }
2471
2472         LIST_FOR_EACH (port, bundle_node, &bundle->ports) {
2473             bond_slave_register(bundle->bond, port,
2474                                 port->up.ofp_port, port->up.netdev);
2475         }
2476     } else {
2477         bond_unref(bundle->bond);
2478         bundle->bond = NULL;
2479     }
2480
2481     /* If we changed something that would affect MAC learning, un-learn
2482      * everything on this port and force flow revalidation. */
2483     if (need_flush) {
2484         bundle_flush_macs(bundle, false);
2485     }
2486
2487     return 0;
2488 }
2489
2490 static void
2491 bundle_remove(struct ofport *port_)
2492 {
2493     struct ofport_dpif *port = ofport_dpif_cast(port_);
2494     struct ofbundle *bundle = port->bundle;
2495
2496     if (bundle) {
2497         bundle_del_port(port);
2498         if (list_is_empty(&bundle->ports)) {
2499             bundle_destroy(bundle);
2500         } else if (list_is_short(&bundle->ports)) {
2501             bond_unref(bundle->bond);
2502             bundle->bond = NULL;
2503         }
2504     }
2505 }
2506
2507 static void
2508 send_pdu_cb(void *port_, const void *pdu, size_t pdu_size)
2509 {
2510     static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 10);
2511     struct ofport_dpif *port = port_;
2512     uint8_t ea[ETH_ADDR_LEN];
2513     int error;
2514
2515     error = netdev_get_etheraddr(port->up.netdev, ea);
2516     if (!error) {
2517         struct ofpbuf packet;
2518         void *packet_pdu;
2519
2520         ofpbuf_init(&packet, 0);
2521         packet_pdu = eth_compose(&packet, eth_addr_lacp, ea, ETH_TYPE_LACP,
2522                                  pdu_size);
2523         memcpy(packet_pdu, pdu, pdu_size);
2524
2525         ofproto_dpif_send_packet(port, &packet);
2526         ofpbuf_uninit(&packet);
2527     } else {
2528         VLOG_ERR_RL(&rl, "port %s: cannot obtain Ethernet address of iface "
2529                     "%s (%s)", port->bundle->name,
2530                     netdev_get_name(port->up.netdev), ovs_strerror(error));
2531     }
2532 }
2533
2534 static void
2535 bundle_send_learning_packets(struct ofbundle *bundle)
2536 {
2537     struct ofproto_dpif *ofproto = bundle->ofproto;
2538     struct ofpbuf *learning_packet;
2539     int error, n_packets, n_errors;
2540     struct mac_entry *e;
2541     struct list packets;
2542
2543     list_init(&packets);
2544     ovs_rwlock_rdlock(&ofproto->ml->rwlock);
2545     LIST_FOR_EACH (e, lru_node, &ofproto->ml->lrus) {
2546         if (e->port.p != bundle) {
2547             void *port_void;
2548
2549             learning_packet = bond_compose_learning_packet(bundle->bond,
2550                                                            e->mac, e->vlan,
2551                                                            &port_void);
2552             /* Temporarily use 'frame' as a private pointer (see below). */
2553             ovs_assert(learning_packet->frame == ofpbuf_data(learning_packet));
2554             learning_packet->frame = port_void;
2555             list_push_back(&packets, &learning_packet->list_node);
2556         }
2557     }
2558     ovs_rwlock_unlock(&ofproto->ml->rwlock);
2559
2560     error = n_packets = n_errors = 0;
2561     LIST_FOR_EACH (learning_packet, list_node, &packets) {
2562         int ret;
2563         void *port_void = learning_packet->frame;
2564
2565         /* Restore 'frame'. */
2566         learning_packet->frame = ofpbuf_data(learning_packet);
2567         ret = ofproto_dpif_send_packet(port_void, learning_packet);
2568         if (ret) {
2569             error = ret;
2570             n_errors++;
2571         }
2572         n_packets++;
2573     }
2574     ofpbuf_list_delete(&packets);
2575
2576     if (n_errors) {
2577         static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
2578         VLOG_WARN_RL(&rl, "bond %s: %d errors sending %d gratuitous learning "
2579                      "packets, last error was: %s",
2580                      bundle->name, n_errors, n_packets, ovs_strerror(error));
2581     } else {
2582         VLOG_DBG("bond %s: sent %d gratuitous learning packets",
2583                  bundle->name, n_packets);
2584     }
2585 }
2586
2587 static void
2588 bundle_run(struct ofbundle *bundle)
2589 {
2590     if (bundle->lacp) {
2591         lacp_run(bundle->lacp, send_pdu_cb);
2592     }
2593     if (bundle->bond) {
2594         struct ofport_dpif *port;
2595
2596         LIST_FOR_EACH (port, bundle_node, &bundle->ports) {
2597             bond_slave_set_may_enable(bundle->bond, port, port->may_enable);
2598         }
2599
2600         if (bond_run(bundle->bond, lacp_status(bundle->lacp))) {
2601             bundle->ofproto->backer->need_revalidate = REV_BOND;
2602         }
2603
2604         if (bond_should_send_learning_packets(bundle->bond)) {
2605             bundle_send_learning_packets(bundle);
2606         }
2607     }
2608 }
2609
2610 static void
2611 bundle_wait(struct ofbundle *bundle)
2612 {
2613     if (bundle->lacp) {
2614         lacp_wait(bundle->lacp);
2615     }
2616     if (bundle->bond) {
2617         bond_wait(bundle->bond);
2618     }
2619 }
2620 \f
2621 /* Mirrors. */
2622
2623 static int
2624 mirror_set__(struct ofproto *ofproto_, void *aux,
2625              const struct ofproto_mirror_settings *s)
2626 {
2627     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2628     struct ofbundle **srcs, **dsts;
2629     int error;
2630     size_t i;
2631
2632     if (!s) {
2633         mirror_destroy(ofproto->mbridge, aux);
2634         return 0;
2635     }
2636
2637     srcs = xmalloc(s->n_srcs * sizeof *srcs);
2638     dsts = xmalloc(s->n_dsts * sizeof *dsts);
2639
2640     for (i = 0; i < s->n_srcs; i++) {
2641         srcs[i] = bundle_lookup(ofproto, s->srcs[i]);
2642     }
2643
2644     for (i = 0; i < s->n_dsts; i++) {
2645         dsts[i] = bundle_lookup(ofproto, s->dsts[i]);
2646     }
2647
2648     error = mirror_set(ofproto->mbridge, aux, s->name, srcs, s->n_srcs, dsts,
2649                        s->n_dsts, s->src_vlans,
2650                        bundle_lookup(ofproto, s->out_bundle), s->out_vlan);
2651     free(srcs);
2652     free(dsts);
2653     return error;
2654 }
2655
2656 static int
2657 mirror_get_stats__(struct ofproto *ofproto, void *aux,
2658                    uint64_t *packets, uint64_t *bytes)
2659 {
2660     return mirror_get_stats(ofproto_dpif_cast(ofproto)->mbridge, aux, packets,
2661                             bytes);
2662 }
2663
2664 static int
2665 set_flood_vlans(struct ofproto *ofproto_, unsigned long *flood_vlans)
2666 {
2667     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2668     ovs_rwlock_wrlock(&ofproto->ml->rwlock);
2669     if (mac_learning_set_flood_vlans(ofproto->ml, flood_vlans)) {
2670         mac_learning_flush(ofproto->ml);
2671     }
2672     ovs_rwlock_unlock(&ofproto->ml->rwlock);
2673     return 0;
2674 }
2675
2676 static bool
2677 is_mirror_output_bundle(const struct ofproto *ofproto_, void *aux)
2678 {
2679     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2680     struct ofbundle *bundle = bundle_lookup(ofproto, aux);
2681     return bundle && mirror_bundle_out(ofproto->mbridge, bundle) != 0;
2682 }
2683
2684 static void
2685 forward_bpdu_changed(struct ofproto *ofproto_)
2686 {
2687     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2688     ofproto->backer->need_revalidate = REV_RECONFIGURE;
2689 }
2690
2691 static void
2692 set_mac_table_config(struct ofproto *ofproto_, unsigned int idle_time,
2693                      size_t max_entries)
2694 {
2695     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2696     ovs_rwlock_wrlock(&ofproto->ml->rwlock);
2697     mac_learning_set_idle_time(ofproto->ml, idle_time);
2698     mac_learning_set_max_entries(ofproto->ml, max_entries);
2699     ovs_rwlock_unlock(&ofproto->ml->rwlock);
2700 }
2701
2702 /* Configures multicast snooping on 'ofport' using the settings
2703  * defined in 's'. */
2704 static int
2705 set_mcast_snooping(struct ofproto *ofproto_,
2706                    const struct ofproto_mcast_snooping_settings *s)
2707 {
2708     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2709
2710     /* Only revalidate flows if the configuration changed. */
2711     if (!s != !ofproto->ms) {
2712         ofproto->backer->need_revalidate = REV_RECONFIGURE;
2713     }
2714
2715     if (s) {
2716         if (!ofproto->ms) {
2717             ofproto->ms = mcast_snooping_create();
2718         }
2719
2720         ovs_rwlock_wrlock(&ofproto->ms->rwlock);
2721         mcast_snooping_set_idle_time(ofproto->ms, s->idle_time);
2722         mcast_snooping_set_max_entries(ofproto->ms, s->max_entries);
2723         if (mcast_snooping_set_flood_unreg(ofproto->ms, s->flood_unreg)) {
2724             ofproto->backer->need_revalidate = REV_RECONFIGURE;
2725         }
2726         ovs_rwlock_unlock(&ofproto->ms->rwlock);
2727     } else {
2728         mcast_snooping_unref(ofproto->ms);
2729         ofproto->ms = NULL;
2730     }
2731
2732     return 0;
2733 }
2734
2735 /* Configures multicast snooping port's flood setting on 'ofproto'. */
2736 static int
2737 set_mcast_snooping_port(struct ofproto *ofproto_, void *aux, bool flood)
2738 {
2739     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2740     struct ofbundle *bundle = bundle_lookup(ofproto, aux);
2741
2742     if (ofproto->ms) {
2743         ovs_rwlock_wrlock(&ofproto->ms->rwlock);
2744         mcast_snooping_set_port_flood(ofproto->ms, bundle->vlan, bundle,
2745                                       flood);
2746         ovs_rwlock_unlock(&ofproto->ms->rwlock);
2747     }
2748     return 0;
2749 }
2750
2751 \f
2752 /* Ports. */
2753
2754 static struct ofport_dpif *
2755 get_ofp_port(const struct ofproto_dpif *ofproto, ofp_port_t ofp_port)
2756 {
2757     struct ofport *ofport = ofproto_get_port(&ofproto->up, ofp_port);
2758     return ofport ? ofport_dpif_cast(ofport) : NULL;
2759 }
2760
2761 static void
2762 ofproto_port_from_dpif_port(struct ofproto_dpif *ofproto,
2763                             struct ofproto_port *ofproto_port,
2764                             struct dpif_port *dpif_port)
2765 {
2766     ofproto_port->name = dpif_port->name;
2767     ofproto_port->type = dpif_port->type;
2768     ofproto_port->ofp_port = odp_port_to_ofp_port(ofproto, dpif_port->port_no);
2769 }
2770
2771 static void
2772 ofport_update_peer(struct ofport_dpif *ofport)
2773 {
2774     const struct ofproto_dpif *ofproto;
2775     struct dpif_backer *backer;
2776     char *peer_name;
2777
2778     if (!netdev_vport_is_patch(ofport->up.netdev)) {
2779         return;
2780     }
2781
2782     backer = ofproto_dpif_cast(ofport->up.ofproto)->backer;
2783     backer->need_revalidate = REV_RECONFIGURE;
2784
2785     if (ofport->peer) {
2786         ofport->peer->peer = NULL;
2787         ofport->peer = NULL;
2788     }
2789
2790     peer_name = netdev_vport_patch_peer(ofport->up.netdev);
2791     if (!peer_name) {
2792         return;
2793     }
2794
2795     HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
2796         struct ofport *peer_ofport;
2797         struct ofport_dpif *peer;
2798         char *peer_peer;
2799
2800         if (ofproto->backer != backer) {
2801             continue;
2802         }
2803
2804         peer_ofport = shash_find_data(&ofproto->up.port_by_name, peer_name);
2805         if (!peer_ofport) {
2806             continue;
2807         }
2808
2809         peer = ofport_dpif_cast(peer_ofport);
2810         peer_peer = netdev_vport_patch_peer(peer->up.netdev);
2811         if (peer_peer && !strcmp(netdev_get_name(ofport->up.netdev),
2812                                  peer_peer)) {
2813             ofport->peer = peer;
2814             ofport->peer->peer = ofport;
2815         }
2816         free(peer_peer);
2817
2818         break;
2819     }
2820     free(peer_name);
2821 }
2822
2823 static void
2824 port_run(struct ofport_dpif *ofport)
2825 {
2826     long long int carrier_seq = netdev_get_carrier_resets(ofport->up.netdev);
2827     bool carrier_changed = carrier_seq != ofport->carrier_seq;
2828     bool enable = netdev_get_carrier(ofport->up.netdev);
2829     bool cfm_enable = false;
2830     bool bfd_enable = false;
2831
2832     ofport->carrier_seq = carrier_seq;
2833
2834     if (ofport->cfm) {
2835         int cfm_opup = cfm_get_opup(ofport->cfm);
2836
2837         cfm_enable = !cfm_get_fault(ofport->cfm);
2838
2839         if (cfm_opup >= 0) {
2840             cfm_enable = cfm_enable && cfm_opup;
2841         }
2842     }
2843
2844     if (ofport->bfd) {
2845         bfd_enable = bfd_forwarding(ofport->bfd);
2846     }
2847
2848     if (ofport->bfd || ofport->cfm) {
2849         enable = enable && (cfm_enable || bfd_enable);
2850     }
2851
2852     if (ofport->bundle) {
2853         enable = enable && lacp_slave_may_enable(ofport->bundle->lacp, ofport);
2854         if (carrier_changed) {
2855             lacp_slave_carrier_changed(ofport->bundle->lacp, ofport);
2856         }
2857     }
2858
2859     if (ofport->may_enable != enable) {
2860         struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
2861         ofproto->backer->need_revalidate = REV_PORT_TOGGLED;
2862     }
2863
2864     ofport->may_enable = enable;
2865 }
2866
2867 static int
2868 port_query_by_name(const struct ofproto *ofproto_, const char *devname,
2869                    struct ofproto_port *ofproto_port)
2870 {
2871     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2872     struct dpif_port dpif_port;
2873     int error;
2874
2875     if (sset_contains(&ofproto->ghost_ports, devname)) {
2876         const char *type = netdev_get_type_from_name(devname);
2877
2878         /* We may be called before ofproto->up.port_by_name is populated with
2879          * the appropriate ofport.  For this reason, we must get the name and
2880          * type from the netdev layer directly. */
2881         if (type) {
2882             const struct ofport *ofport;
2883
2884             ofport = shash_find_data(&ofproto->up.port_by_name, devname);
2885             ofproto_port->ofp_port = ofport ? ofport->ofp_port : OFPP_NONE;
2886             ofproto_port->name = xstrdup(devname);
2887             ofproto_port->type = xstrdup(type);
2888             return 0;
2889         }
2890         return ENODEV;
2891     }
2892
2893     if (!sset_contains(&ofproto->ports, devname)) {
2894         return ENODEV;
2895     }
2896     error = dpif_port_query_by_name(ofproto->backer->dpif,
2897                                     devname, &dpif_port);
2898     if (!error) {
2899         ofproto_port_from_dpif_port(ofproto, ofproto_port, &dpif_port);
2900     }
2901     return error;
2902 }
2903
2904 static int
2905 port_add(struct ofproto *ofproto_, struct netdev *netdev)
2906 {
2907     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2908     const char *devname = netdev_get_name(netdev);
2909     char namebuf[NETDEV_VPORT_NAME_BUFSIZE];
2910     const char *dp_port_name;
2911
2912     if (netdev_vport_is_patch(netdev)) {
2913         sset_add(&ofproto->ghost_ports, netdev_get_name(netdev));
2914         return 0;
2915     }
2916
2917     dp_port_name = netdev_vport_get_dpif_port(netdev, namebuf, sizeof namebuf);
2918     if (!dpif_port_exists(ofproto->backer->dpif, dp_port_name)) {
2919         odp_port_t port_no = ODPP_NONE;
2920         int error;
2921
2922         error = dpif_port_add(ofproto->backer->dpif, netdev, &port_no);
2923         if (error) {
2924             return error;
2925         }
2926         if (netdev_get_tunnel_config(netdev)) {
2927             simap_put(&ofproto->backer->tnl_backers,
2928                       dp_port_name, odp_to_u32(port_no));
2929         }
2930     }
2931
2932     if (netdev_get_tunnel_config(netdev)) {
2933         sset_add(&ofproto->ghost_ports, devname);
2934     } else {
2935         sset_add(&ofproto->ports, devname);
2936     }
2937     return 0;
2938 }
2939
2940 static int
2941 port_del(struct ofproto *ofproto_, ofp_port_t ofp_port)
2942 {
2943     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
2944     struct ofport_dpif *ofport = get_ofp_port(ofproto, ofp_port);
2945     int error = 0;
2946
2947     if (!ofport) {
2948         return 0;
2949     }
2950
2951     sset_find_and_delete(&ofproto->ghost_ports,
2952                          netdev_get_name(ofport->up.netdev));
2953     ofproto->backer->need_revalidate = REV_RECONFIGURE;
2954     if (!ofport->is_tunnel && !netdev_vport_is_patch(ofport->up.netdev)) {
2955         error = dpif_port_del(ofproto->backer->dpif, ofport->odp_port);
2956         if (!error) {
2957             /* The caller is going to close ofport->up.netdev.  If this is a
2958              * bonded port, then the bond is using that netdev, so remove it
2959              * from the bond.  The client will need to reconfigure everything
2960              * after deleting ports, so then the slave will get re-added. */
2961             bundle_remove(&ofport->up);
2962         }
2963     }
2964     return error;
2965 }
2966
2967 static int
2968 port_get_stats(const struct ofport *ofport_, struct netdev_stats *stats)
2969 {
2970     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
2971     int error;
2972
2973     error = netdev_get_stats(ofport->up.netdev, stats);
2974
2975     if (!error && ofport_->ofp_port == OFPP_LOCAL) {
2976         struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
2977
2978         ovs_mutex_lock(&ofproto->stats_mutex);
2979         /* ofproto->stats.tx_packets represents packets that we created
2980          * internally and sent to some port (e.g. packets sent with
2981          * ofproto_dpif_send_packet()).  Account for them as if they had
2982          * come from OFPP_LOCAL and got forwarded. */
2983
2984         if (stats->rx_packets != UINT64_MAX) {
2985             stats->rx_packets += ofproto->stats.tx_packets;
2986         }
2987
2988         if (stats->rx_bytes != UINT64_MAX) {
2989             stats->rx_bytes += ofproto->stats.tx_bytes;
2990         }
2991
2992         /* ofproto->stats.rx_packets represents packets that were received on
2993          * some port and we processed internally and dropped (e.g. STP).
2994          * Account for them as if they had been forwarded to OFPP_LOCAL. */
2995
2996         if (stats->tx_packets != UINT64_MAX) {
2997             stats->tx_packets += ofproto->stats.rx_packets;
2998         }
2999
3000         if (stats->tx_bytes != UINT64_MAX) {
3001             stats->tx_bytes += ofproto->stats.rx_bytes;
3002         }
3003         ovs_mutex_unlock(&ofproto->stats_mutex);
3004     }
3005
3006     return error;
3007 }
3008
3009 struct port_dump_state {
3010     uint32_t bucket;
3011     uint32_t offset;
3012     bool ghost;
3013
3014     struct ofproto_port port;
3015     bool has_port;
3016 };
3017
3018 static int
3019 port_dump_start(const struct ofproto *ofproto_ OVS_UNUSED, void **statep)
3020 {
3021     *statep = xzalloc(sizeof(struct port_dump_state));
3022     return 0;
3023 }
3024
3025 static int
3026 port_dump_next(const struct ofproto *ofproto_, void *state_,
3027                struct ofproto_port *port)
3028 {
3029     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
3030     struct port_dump_state *state = state_;
3031     const struct sset *sset;
3032     struct sset_node *node;
3033
3034     if (state->has_port) {
3035         ofproto_port_destroy(&state->port);
3036         state->has_port = false;
3037     }
3038     sset = state->ghost ? &ofproto->ghost_ports : &ofproto->ports;
3039     while ((node = sset_at_position(sset, &state->bucket, &state->offset))) {
3040         int error;
3041
3042         error = port_query_by_name(ofproto_, node->name, &state->port);
3043         if (!error) {
3044             *port = state->port;
3045             state->has_port = true;
3046             return 0;
3047         } else if (error != ENODEV) {
3048             return error;
3049         }
3050     }
3051
3052     if (!state->ghost) {
3053         state->ghost = true;
3054         state->bucket = 0;
3055         state->offset = 0;
3056         return port_dump_next(ofproto_, state_, port);
3057     }
3058
3059     return EOF;
3060 }
3061
3062 static int
3063 port_dump_done(const struct ofproto *ofproto_ OVS_UNUSED, void *state_)
3064 {
3065     struct port_dump_state *state = state_;
3066
3067     if (state->has_port) {
3068         ofproto_port_destroy(&state->port);
3069     }
3070     free(state);
3071     return 0;
3072 }
3073
3074 static int
3075 port_poll(const struct ofproto *ofproto_, char **devnamep)
3076 {
3077     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
3078
3079     if (ofproto->port_poll_errno) {
3080         int error = ofproto->port_poll_errno;
3081         ofproto->port_poll_errno = 0;
3082         return error;
3083     }
3084
3085     if (sset_is_empty(&ofproto->port_poll_set)) {
3086         return EAGAIN;
3087     }
3088
3089     *devnamep = sset_pop(&ofproto->port_poll_set);
3090     return 0;
3091 }
3092
3093 static void
3094 port_poll_wait(const struct ofproto *ofproto_)
3095 {
3096     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
3097     dpif_port_poll_wait(ofproto->backer->dpif);
3098 }
3099
3100 static int
3101 port_is_lacp_current(const struct ofport *ofport_)
3102 {
3103     const struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
3104     return (ofport->bundle && ofport->bundle->lacp
3105             ? lacp_slave_is_current(ofport->bundle->lacp, ofport)
3106             : -1);
3107 }
3108 \f
3109 /* If 'rule' is an OpenFlow rule, that has expired according to OpenFlow rules,
3110  * then delete it entirely. */
3111 static void
3112 rule_expire(struct rule_dpif *rule)
3113     OVS_REQUIRES(ofproto_mutex)
3114 {
3115     uint16_t hard_timeout, idle_timeout;
3116     long long int now = time_msec();
3117     int reason = -1;
3118
3119     hard_timeout = rule->up.hard_timeout;
3120     idle_timeout = rule->up.idle_timeout;
3121
3122     /* Has 'rule' expired? */
3123     if (hard_timeout) {
3124         long long int modified;
3125
3126         ovs_mutex_lock(&rule->up.mutex);
3127         modified = rule->up.modified;
3128         ovs_mutex_unlock(&rule->up.mutex);
3129
3130         if (now > modified + hard_timeout * 1000) {
3131             reason = OFPRR_HARD_TIMEOUT;
3132         }
3133     }
3134
3135     if (reason < 0 && idle_timeout) {
3136         long long int used;
3137
3138         ovs_mutex_lock(&rule->stats_mutex);
3139         used = rule->stats.used;
3140         ovs_mutex_unlock(&rule->stats_mutex);
3141
3142         if (now > used + idle_timeout * 1000) {
3143             reason = OFPRR_IDLE_TIMEOUT;
3144         }
3145     }
3146
3147     if (reason >= 0) {
3148         COVERAGE_INC(ofproto_dpif_expired);
3149         ofproto_rule_expire(&rule->up, reason);
3150     }
3151 }
3152
3153 /* Executes, within 'ofproto', the actions in 'rule' or 'ofpacts' on 'packet'.
3154  * 'flow' must reflect the data in 'packet'. */
3155 int
3156 ofproto_dpif_execute_actions(struct ofproto_dpif *ofproto,
3157                              const struct flow *flow,
3158                              struct rule_dpif *rule,
3159                              const struct ofpact *ofpacts, size_t ofpacts_len,
3160                              struct ofpbuf *packet)
3161 {
3162     struct dpif_flow_stats stats;
3163     struct xlate_out xout;
3164     struct xlate_in xin;
3165     ofp_port_t in_port;
3166     struct dpif_execute execute;
3167     int error;
3168
3169     ovs_assert((rule != NULL) != (ofpacts != NULL));
3170
3171     dpif_flow_stats_extract(flow, packet, time_msec(), &stats);
3172
3173     if (rule) {
3174         rule_dpif_credit_stats(rule, &stats);
3175     }
3176
3177     xlate_in_init(&xin, ofproto, flow, rule, stats.tcp_flags, packet);
3178     xin.ofpacts = ofpacts;
3179     xin.ofpacts_len = ofpacts_len;
3180     xin.resubmit_stats = &stats;
3181     xlate_actions(&xin, &xout);
3182
3183     execute.actions = ofpbuf_data(&xout.odp_actions);
3184     execute.actions_len = ofpbuf_size(&xout.odp_actions);
3185     execute.packet = packet;
3186     execute.md = pkt_metadata_from_flow(flow);
3187     execute.needs_help = (xout.slow & SLOW_ACTION) != 0;
3188
3189     /* Fix up in_port. */
3190     in_port = flow->in_port.ofp_port;
3191     if (in_port == OFPP_NONE) {
3192         in_port = OFPP_LOCAL;
3193     }
3194     execute.md.in_port.odp_port = ofp_port_to_odp_port(ofproto, in_port);
3195
3196     error = dpif_execute(ofproto->backer->dpif, &execute);
3197
3198     xlate_out_uninit(&xout);
3199
3200     return error;
3201 }
3202
3203 void
3204 rule_dpif_credit_stats(struct rule_dpif *rule,
3205                        const struct dpif_flow_stats *stats)
3206 {
3207     ovs_mutex_lock(&rule->stats_mutex);
3208     rule->stats.n_packets += stats->n_packets;
3209     rule->stats.n_bytes += stats->n_bytes;
3210     rule->stats.used = MAX(rule->stats.used, stats->used);
3211     ovs_mutex_unlock(&rule->stats_mutex);
3212 }
3213
3214 ovs_be64
3215 rule_dpif_get_flow_cookie(const struct rule_dpif *rule)
3216     OVS_REQUIRES(rule->up.mutex)
3217 {
3218     return rule->up.flow_cookie;
3219 }
3220
3221 void
3222 rule_dpif_reduce_timeouts(struct rule_dpif *rule, uint16_t idle_timeout,
3223                      uint16_t hard_timeout)
3224 {
3225     ofproto_rule_reduce_timeouts(&rule->up, idle_timeout, hard_timeout);
3226 }
3227
3228 /* Returns 'rule''s actions.  The caller owns a reference on the returned
3229  * actions and must eventually release it (with rule_actions_unref()) to avoid
3230  * a memory leak. */
3231 const struct rule_actions *
3232 rule_dpif_get_actions(const struct rule_dpif *rule)
3233 {
3234     return rule_get_actions(&rule->up);
3235 }
3236
3237 /* Sets 'rule''s recirculation id. */
3238 static void
3239 rule_dpif_set_recirc_id(struct rule_dpif *rule, uint32_t id)
3240     OVS_REQUIRES(rule->up.mutex)
3241 {
3242     ovs_assert(!rule->recirc_id);
3243     rule->recirc_id = id;
3244 }
3245
3246 /* Returns 'rule''s recirculation id. */
3247 uint32_t
3248 rule_dpif_get_recirc_id(struct rule_dpif *rule)
3249     OVS_REQUIRES(rule->up.mutex)
3250 {
3251     if (!rule->recirc_id) {
3252         struct ofproto_dpif *ofproto = ofproto_dpif_cast(rule->up.ofproto);
3253
3254         rule_dpif_set_recirc_id(rule, ofproto_dpif_alloc_recirc_id(ofproto));
3255     }
3256     return rule->recirc_id;
3257 }
3258
3259 /* Sets 'rule''s recirculation id. */
3260 void
3261 rule_set_recirc_id(struct rule *rule_, uint32_t id)
3262 {
3263     struct rule_dpif *rule = rule_dpif_cast(rule_);
3264
3265     ovs_mutex_lock(&rule->up.mutex);
3266     rule_dpif_set_recirc_id(rule, id);
3267     ovs_mutex_unlock(&rule->up.mutex);
3268 }
3269
3270 /* Lookup 'flow' in table 0 of 'ofproto''s classifier.
3271  * If 'wc' is non-null, sets the fields that were relevant as part of
3272  * the lookup. Returns the table_id where a match or miss occurred.
3273  *
3274  * The return value will be zero unless there was a miss and
3275  * OFPTC11_TABLE_MISS_CONTINUE is in effect for the sequence of tables
3276  * where misses occur.
3277  *
3278  * The rule is returned in '*rule', which is valid at least until the next
3279  * RCU quiescent period.  If the '*rule' needs to stay around longer,
3280  * a non-zero 'take_ref' must be passed in to cause a reference to be taken
3281  * on it before this returns. */
3282 uint8_t
3283 rule_dpif_lookup(struct ofproto_dpif *ofproto, struct flow *flow,
3284                  struct flow_wildcards *wc, struct rule_dpif **rule,
3285                  bool take_ref, const struct dpif_flow_stats *stats)
3286 {
3287     enum rule_dpif_lookup_verdict verdict;
3288     enum ofputil_port_config config = 0;
3289     uint8_t table_id;
3290
3291     if (ofproto_dpif_get_enable_recirc(ofproto)) {
3292         /* Always exactly match recirc_id since datapath supports
3293          * recirculation.  */
3294         if (wc) {
3295             wc->masks.recirc_id = UINT32_MAX;
3296         }
3297
3298         /* Start looking up from internal table for post recirculation flows
3299          * or packets. We can also simply send all, including normal flows
3300          * or packets to the internal table. They will not match any post
3301          * recirculation rules except the 'catch all' rule that resubmit
3302          * them to table 0.
3303          *
3304          * As an optimization, we send normal flows and packets to table 0
3305          * directly, saving one table lookup.  */
3306         table_id = flow->recirc_id ? TBL_INTERNAL : 0;
3307     } else {
3308         table_id = 0;
3309     }
3310
3311     verdict = rule_dpif_lookup_from_table(ofproto, flow, wc, true,
3312                                           &table_id, rule, take_ref, stats);
3313
3314     switch (verdict) {
3315     case RULE_DPIF_LOOKUP_VERDICT_MATCH:
3316         return table_id;
3317     case RULE_DPIF_LOOKUP_VERDICT_CONTROLLER: {
3318         struct ofport_dpif *port;
3319
3320         port = get_ofp_port(ofproto, flow->in_port.ofp_port);
3321         if (!port) {
3322             VLOG_WARN_RL(&rl, "packet-in on unknown OpenFlow port %"PRIu16,
3323                          flow->in_port.ofp_port);
3324         }
3325         config = port ? port->up.pp.config : 0;
3326         break;
3327     }
3328     case RULE_DPIF_LOOKUP_VERDICT_DROP:
3329         config = OFPUTIL_PC_NO_PACKET_IN;
3330         break;
3331     case RULE_DPIF_LOOKUP_VERDICT_DEFAULT:
3332         if (!connmgr_wants_packet_in_on_miss(ofproto->up.connmgr)) {
3333             config = OFPUTIL_PC_NO_PACKET_IN;
3334         }
3335         break;
3336     default:
3337         OVS_NOT_REACHED();
3338     }
3339
3340     choose_miss_rule(config, ofproto->miss_rule,
3341                      ofproto->no_packet_in_rule, rule, take_ref);
3342     return table_id;
3343 }
3344
3345 /* The returned rule is valid at least until the next RCU quiescent period.
3346  * If the '*rule' needs to stay around longer, a non-zero 'take_ref' must be
3347  * passed in to cause a reference to be taken on it before this returns. */
3348 static struct rule_dpif *
3349 rule_dpif_lookup_in_table(struct ofproto_dpif *ofproto, uint8_t table_id,
3350                           const struct flow *flow, struct flow_wildcards *wc,
3351                           bool take_ref)
3352 {
3353     struct classifier *cls = &ofproto->up.tables[table_id].cls;
3354     const struct cls_rule *cls_rule;
3355     struct rule_dpif *rule;
3356     struct flow ofpc_normal_flow;
3357
3358     if (ofproto->up.frag_handling != OFPC_FRAG_NX_MATCH) {
3359         /* We always unwildcard dl_type and nw_frag (for IP), so they
3360          * need not be unwildcarded here. */
3361
3362         if (flow->nw_frag & FLOW_NW_FRAG_ANY) {
3363             if (ofproto->up.frag_handling == OFPC_FRAG_NORMAL) {
3364                 /* We must pretend that transport ports are unavailable. */
3365                 ofpc_normal_flow = *flow;
3366                 ofpc_normal_flow.tp_src = htons(0);
3367                 ofpc_normal_flow.tp_dst = htons(0);
3368                 flow = &ofpc_normal_flow;
3369             } else {
3370                 /* Must be OFPC_FRAG_DROP (we don't have OFPC_FRAG_REASM).
3371                  * Use the drop_frags_rule (which cannot disappear). */
3372                 cls_rule = &ofproto->drop_frags_rule->up.cr;
3373                 rule = rule_dpif_cast(rule_from_cls_rule(cls_rule));
3374                 if (take_ref) {
3375                     rule_dpif_ref(rule);
3376                 }
3377                 return rule;
3378             }
3379         }
3380     }
3381
3382     do {
3383         cls_rule = classifier_lookup(cls, flow, wc);
3384
3385         rule = rule_dpif_cast(rule_from_cls_rule(cls_rule));
3386
3387         /* Try again if the rule was released before we get the reference. */
3388     } while (rule && take_ref && !rule_dpif_try_ref(rule));
3389
3390     return rule;
3391 }
3392
3393 /* Look up 'flow' in 'ofproto''s classifier starting from table '*table_id'.
3394  * Stores the rule that was found in '*rule', or NULL if none was found.
3395  * Updates 'wc', if nonnull, to reflect the fields that were used during the
3396  * lookup.
3397  *
3398  * If 'honor_table_miss' is true, the first lookup occurs in '*table_id', but
3399  * if none is found then the table miss configuration for that table is
3400  * honored, which can result in additional lookups in other OpenFlow tables.
3401  * In this case the function updates '*table_id' to reflect the final OpenFlow
3402  * table that was searched.
3403  *
3404  * If 'honor_table_miss' is false, then only one table lookup occurs, in
3405  * '*table_id'.
3406  *
3407  * Returns:
3408  *
3409  *    - RULE_DPIF_LOOKUP_VERDICT_MATCH if a rule (in '*rule') was found.
3410  *
3411  *    - RULE_OFPTC_TABLE_MISS_CONTROLLER if no rule was found and either:
3412  *      + 'honor_table_miss' is false
3413  *      + a table miss configuration specified that the packet should be
3414  *        sent to the controller in this case.
3415  *
3416  *    - RULE_DPIF_LOOKUP_VERDICT_DROP if no rule was found, 'honor_table_miss'
3417  *      is true and a table miss configuration specified that the packet
3418  *      should be dropped in this case.
3419  *
3420  *    - RULE_DPIF_LOOKUP_VERDICT_DEFAULT if no rule was found,
3421  *      'honor_table_miss' is true and a table miss configuration has
3422  *      not been specified in this case.
3423  *
3424  * The rule is returned in '*rule', which is valid at least until the next
3425  * RCU quiescent period.  If the '*rule' needs to stay around longer,
3426  * a non-zero 'take_ref' must be passed in to cause a reference to be taken
3427  * on it before this returns. */
3428 enum rule_dpif_lookup_verdict
3429 rule_dpif_lookup_from_table(struct ofproto_dpif *ofproto,
3430                             const struct flow *flow,
3431                             struct flow_wildcards *wc,
3432                             bool honor_table_miss,
3433                             uint8_t *table_id, struct rule_dpif **rule,
3434                             bool take_ref, const struct dpif_flow_stats *stats)
3435 {
3436     uint8_t next_id;
3437
3438     for (next_id = *table_id;
3439          next_id < ofproto->up.n_tables;
3440          next_id++, next_id += (next_id == TBL_INTERNAL))
3441     {
3442         *table_id = next_id;
3443         *rule = rule_dpif_lookup_in_table(ofproto, *table_id, flow, wc,
3444                                           take_ref);
3445         if (stats) {
3446             struct oftable *tbl = &ofproto->up.tables[next_id];
3447             atomic_ulong *stat = *rule ? &tbl->n_matched : &tbl->n_missed;
3448             unsigned long orig;
3449             atomic_add(stat, stats->n_packets, &orig);
3450         }
3451         if (*rule) {
3452             return RULE_DPIF_LOOKUP_VERDICT_MATCH;
3453         } else if (!honor_table_miss) {
3454             return RULE_DPIF_LOOKUP_VERDICT_CONTROLLER;
3455         } else {
3456             switch (ofproto_table_get_config(&ofproto->up, *table_id)) {
3457             case OFPROTO_TABLE_MISS_CONTINUE:
3458                 break;
3459
3460             case OFPROTO_TABLE_MISS_CONTROLLER:
3461                 return RULE_DPIF_LOOKUP_VERDICT_CONTROLLER;
3462
3463             case OFPROTO_TABLE_MISS_DROP:
3464                 return RULE_DPIF_LOOKUP_VERDICT_DROP;
3465
3466             case OFPROTO_TABLE_MISS_DEFAULT:
3467                 return RULE_DPIF_LOOKUP_VERDICT_DEFAULT;
3468             }
3469         }
3470     }
3471
3472     return RULE_DPIF_LOOKUP_VERDICT_CONTROLLER;
3473 }
3474
3475 /* Given a port configuration (specified as zero if there's no port), chooses
3476  * which of 'miss_rule' and 'no_packet_in_rule' should be used in case of a
3477  * flow table miss.
3478  *
3479  * The rule is returned in '*rule', which is valid at least until the next
3480  * RCU quiescent period.  If the '*rule' needs to stay around longer,
3481  * a reference must be taken on it (rule_dpif_ref()).
3482  */
3483 void
3484 choose_miss_rule(enum ofputil_port_config config, struct rule_dpif *miss_rule,
3485                  struct rule_dpif *no_packet_in_rule, struct rule_dpif **rule,
3486                  bool take_ref)
3487 {
3488     *rule = config & OFPUTIL_PC_NO_PACKET_IN ? no_packet_in_rule : miss_rule;
3489     if (take_ref) {
3490         rule_dpif_ref(*rule);
3491     }
3492 }
3493
3494 static void
3495 complete_operation(struct rule_dpif *rule)
3496     OVS_REQUIRES(ofproto_mutex)
3497 {
3498     struct ofproto_dpif *ofproto = ofproto_dpif_cast(rule->up.ofproto);
3499
3500     ofproto->backer->need_revalidate = REV_FLOW_TABLE;
3501 }
3502
3503 static struct rule_dpif *rule_dpif_cast(const struct rule *rule)
3504 {
3505     return rule ? CONTAINER_OF(rule, struct rule_dpif, up) : NULL;
3506 }
3507
3508 static struct rule *
3509 rule_alloc(void)
3510 {
3511     struct rule_dpif *rule = xmalloc(sizeof *rule);
3512     return &rule->up;
3513 }
3514
3515 static void
3516 rule_dealloc(struct rule *rule_)
3517 {
3518     struct rule_dpif *rule = rule_dpif_cast(rule_);
3519     free(rule);
3520 }
3521
3522 static enum ofperr
3523 rule_construct(struct rule *rule_)
3524     OVS_NO_THREAD_SAFETY_ANALYSIS
3525 {
3526     struct rule_dpif *rule = rule_dpif_cast(rule_);
3527     ovs_mutex_init_adaptive(&rule->stats_mutex);
3528     rule->stats.n_packets = 0;
3529     rule->stats.n_bytes = 0;
3530     rule->stats.used = rule->up.modified;
3531     rule->recirc_id = 0;
3532
3533     return 0;
3534 }
3535
3536 static enum ofperr
3537 rule_insert(struct rule *rule_)
3538     OVS_REQUIRES(ofproto_mutex)
3539 {
3540     struct rule_dpif *rule = rule_dpif_cast(rule_);
3541     complete_operation(rule);
3542     return 0;
3543 }
3544
3545 static void
3546 rule_delete(struct rule *rule_)
3547     OVS_REQUIRES(ofproto_mutex)
3548 {
3549     struct rule_dpif *rule = rule_dpif_cast(rule_);
3550     complete_operation(rule);
3551 }
3552
3553 static void
3554 rule_destruct(struct rule *rule_)
3555 {
3556     struct rule_dpif *rule = rule_dpif_cast(rule_);
3557
3558     ovs_mutex_destroy(&rule->stats_mutex);
3559     if (rule->recirc_id) {
3560         struct ofproto_dpif *ofproto = ofproto_dpif_cast(rule->up.ofproto);
3561
3562         ofproto_dpif_free_recirc_id(ofproto, rule->recirc_id);
3563     }
3564 }
3565
3566 static void
3567 rule_get_stats(struct rule *rule_, uint64_t *packets, uint64_t *bytes,
3568                long long int *used)
3569 {
3570     struct rule_dpif *rule = rule_dpif_cast(rule_);
3571
3572     ovs_mutex_lock(&rule->stats_mutex);
3573     *packets = rule->stats.n_packets;
3574     *bytes = rule->stats.n_bytes;
3575     *used = rule->stats.used;
3576     ovs_mutex_unlock(&rule->stats_mutex);
3577 }
3578
3579 static void
3580 rule_dpif_execute(struct rule_dpif *rule, const struct flow *flow,
3581                   struct ofpbuf *packet)
3582 {
3583     struct ofproto_dpif *ofproto = ofproto_dpif_cast(rule->up.ofproto);
3584
3585     ofproto_dpif_execute_actions(ofproto, flow, rule, NULL, 0, packet);
3586 }
3587
3588 static enum ofperr
3589 rule_execute(struct rule *rule, const struct flow *flow,
3590              struct ofpbuf *packet)
3591 {
3592     rule_dpif_execute(rule_dpif_cast(rule), flow, packet);
3593     ofpbuf_delete(packet);
3594     return 0;
3595 }
3596
3597 static void
3598 rule_modify_actions(struct rule *rule_, bool reset_counters)
3599     OVS_REQUIRES(ofproto_mutex)
3600 {
3601     struct rule_dpif *rule = rule_dpif_cast(rule_);
3602
3603     if (reset_counters) {
3604         ovs_mutex_lock(&rule->stats_mutex);
3605         rule->stats.n_packets = 0;
3606         rule->stats.n_bytes = 0;
3607         ovs_mutex_unlock(&rule->stats_mutex);
3608     }
3609
3610     complete_operation(rule);
3611 }
3612
3613 static struct group_dpif *group_dpif_cast(const struct ofgroup *group)
3614 {
3615     return group ? CONTAINER_OF(group, struct group_dpif, up) : NULL;
3616 }
3617
3618 static struct ofgroup *
3619 group_alloc(void)
3620 {
3621     struct group_dpif *group = xzalloc(sizeof *group);
3622     return &group->up;
3623 }
3624
3625 static void
3626 group_dealloc(struct ofgroup *group_)
3627 {
3628     struct group_dpif *group = group_dpif_cast(group_);
3629     free(group);
3630 }
3631
3632 static void
3633 group_construct_stats(struct group_dpif *group)
3634     OVS_REQUIRES(group->stats_mutex)
3635 {
3636     struct ofputil_bucket *bucket;
3637     const struct list *buckets;
3638
3639     group->packet_count = 0;
3640     group->byte_count = 0;
3641
3642     group_dpif_get_buckets(group, &buckets);
3643     LIST_FOR_EACH (bucket, list_node, buckets) {
3644         bucket->stats.packet_count = 0;
3645         bucket->stats.byte_count = 0;
3646     }
3647 }
3648
3649 void
3650 group_dpif_credit_stats(struct group_dpif *group,
3651                         struct ofputil_bucket *bucket,
3652                         const struct dpif_flow_stats *stats)
3653 {
3654     ovs_mutex_lock(&group->stats_mutex);
3655     group->packet_count += stats->n_packets;
3656     group->byte_count += stats->n_bytes;
3657     if (bucket) {
3658         bucket->stats.packet_count += stats->n_packets;
3659         bucket->stats.byte_count += stats->n_bytes;
3660     } else { /* Credit to all buckets */
3661         const struct list *buckets;
3662
3663         group_dpif_get_buckets(group, &buckets);
3664         LIST_FOR_EACH (bucket, list_node, buckets) {
3665             bucket->stats.packet_count += stats->n_packets;
3666             bucket->stats.byte_count += stats->n_bytes;
3667         }
3668     }
3669     ovs_mutex_unlock(&group->stats_mutex);
3670 }
3671
3672 static enum ofperr
3673 group_construct(struct ofgroup *group_)
3674 {
3675     struct group_dpif *group = group_dpif_cast(group_);
3676     const struct ofputil_bucket *bucket;
3677
3678     /* Prevent group chaining because our locking structure makes it hard to
3679      * implement deadlock-free.  (See xlate_group_resource_check().) */
3680     LIST_FOR_EACH (bucket, list_node, &group->up.buckets) {
3681         const struct ofpact *a;
3682
3683         OFPACT_FOR_EACH (a, bucket->ofpacts, bucket->ofpacts_len) {
3684             if (a->type == OFPACT_GROUP) {
3685                 return OFPERR_OFPGMFC_CHAINING_UNSUPPORTED;
3686             }
3687         }
3688     }
3689
3690     ovs_mutex_init_adaptive(&group->stats_mutex);
3691     ovs_mutex_lock(&group->stats_mutex);
3692     group_construct_stats(group);
3693     ovs_mutex_unlock(&group->stats_mutex);
3694     return 0;
3695 }
3696
3697 static void
3698 group_destruct(struct ofgroup *group_)
3699 {
3700     struct group_dpif *group = group_dpif_cast(group_);
3701     ovs_mutex_destroy(&group->stats_mutex);
3702 }
3703
3704 static enum ofperr
3705 group_modify(struct ofgroup *group_)
3706 {
3707     struct ofproto_dpif *ofproto = ofproto_dpif_cast(group_->ofproto);
3708
3709     ofproto->backer->need_revalidate = REV_FLOW_TABLE;
3710
3711     return 0;
3712 }
3713
3714 static enum ofperr
3715 group_get_stats(const struct ofgroup *group_, struct ofputil_group_stats *ogs)
3716 {
3717     struct group_dpif *group = group_dpif_cast(group_);
3718     struct ofputil_bucket *bucket;
3719     const struct list *buckets;
3720     struct bucket_counter *bucket_stats;
3721
3722     ovs_mutex_lock(&group->stats_mutex);
3723     ogs->packet_count = group->packet_count;
3724     ogs->byte_count = group->byte_count;
3725
3726     group_dpif_get_buckets(group, &buckets);
3727     bucket_stats = ogs->bucket_stats;
3728     LIST_FOR_EACH (bucket, list_node, buckets) {
3729         bucket_stats->packet_count = bucket->stats.packet_count;
3730         bucket_stats->byte_count = bucket->stats.byte_count;
3731         bucket_stats++;
3732     }
3733     ovs_mutex_unlock(&group->stats_mutex);
3734
3735     return 0;
3736 }
3737
3738 /* If the group exists, this function increments the groups's reference count.
3739  *
3740  * Make sure to call group_dpif_unref() after no longer needing to maintain
3741  * a reference to the group. */
3742 bool
3743 group_dpif_lookup(struct ofproto_dpif *ofproto, uint32_t group_id,
3744                   struct group_dpif **group)
3745 {
3746     struct ofgroup *ofgroup;
3747     bool found;
3748
3749     found = ofproto_group_lookup(&ofproto->up, group_id, &ofgroup);
3750     *group = found ?  group_dpif_cast(ofgroup) : NULL;
3751
3752     return found;
3753 }
3754
3755 void
3756 group_dpif_get_buckets(const struct group_dpif *group,
3757                        const struct list **buckets)
3758 {
3759     *buckets = &group->up.buckets;
3760 }
3761
3762 enum ofp11_group_type
3763 group_dpif_get_type(const struct group_dpif *group)
3764 {
3765     return group->up.type;
3766 }
3767 \f
3768 /* Sends 'packet' out 'ofport'.
3769  * May modify 'packet'.
3770  * Returns 0 if successful, otherwise a positive errno value. */
3771 int
3772 ofproto_dpif_send_packet(const struct ofport_dpif *ofport, struct ofpbuf *packet)
3773 {
3774     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport->up.ofproto);
3775     int error;
3776
3777     error = xlate_send_packet(ofport, packet);
3778
3779     ovs_mutex_lock(&ofproto->stats_mutex);
3780     ofproto->stats.tx_packets++;
3781     ofproto->stats.tx_bytes += ofpbuf_size(packet);
3782     ovs_mutex_unlock(&ofproto->stats_mutex);
3783     return error;
3784 }
3785 \f
3786 static bool
3787 set_frag_handling(struct ofproto *ofproto_,
3788                   enum ofp_config_flags frag_handling)
3789 {
3790     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
3791     if (frag_handling != OFPC_FRAG_REASM) {
3792         ofproto->backer->need_revalidate = REV_RECONFIGURE;
3793         return true;
3794     } else {
3795         return false;
3796     }
3797 }
3798
3799 static enum ofperr
3800 packet_out(struct ofproto *ofproto_, struct ofpbuf *packet,
3801            const struct flow *flow,
3802            const struct ofpact *ofpacts, size_t ofpacts_len)
3803 {
3804     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
3805
3806     ofproto_dpif_execute_actions(ofproto, flow, NULL, ofpacts,
3807                                  ofpacts_len, packet);
3808     return 0;
3809 }
3810 \f
3811 /* NetFlow. */
3812
3813 static int
3814 set_netflow(struct ofproto *ofproto_,
3815             const struct netflow_options *netflow_options)
3816 {
3817     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
3818
3819     if (netflow_options) {
3820         if (!ofproto->netflow) {
3821             ofproto->netflow = netflow_create();
3822             ofproto->backer->need_revalidate = REV_RECONFIGURE;
3823         }
3824         return netflow_set_options(ofproto->netflow, netflow_options);
3825     } else if (ofproto->netflow) {
3826         ofproto->backer->need_revalidate = REV_RECONFIGURE;
3827         netflow_unref(ofproto->netflow);
3828         ofproto->netflow = NULL;
3829     }
3830
3831     return 0;
3832 }
3833
3834 static void
3835 get_netflow_ids(const struct ofproto *ofproto_,
3836                 uint8_t *engine_type, uint8_t *engine_id)
3837 {
3838     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofproto_);
3839
3840     dpif_get_netflow_ids(ofproto->backer->dpif, engine_type, engine_id);
3841 }
3842 \f
3843 static struct ofproto_dpif *
3844 ofproto_dpif_lookup(const char *name)
3845 {
3846     struct ofproto_dpif *ofproto;
3847
3848     HMAP_FOR_EACH_WITH_HASH (ofproto, all_ofproto_dpifs_node,
3849                              hash_string(name, 0), &all_ofproto_dpifs) {
3850         if (!strcmp(ofproto->up.name, name)) {
3851             return ofproto;
3852         }
3853     }
3854     return NULL;
3855 }
3856
3857 static void
3858 ofproto_unixctl_fdb_flush(struct unixctl_conn *conn, int argc,
3859                           const char *argv[], void *aux OVS_UNUSED)
3860 {
3861     struct ofproto_dpif *ofproto;
3862
3863     if (argc > 1) {
3864         ofproto = ofproto_dpif_lookup(argv[1]);
3865         if (!ofproto) {
3866             unixctl_command_reply_error(conn, "no such bridge");
3867             return;
3868         }
3869         ovs_rwlock_wrlock(&ofproto->ml->rwlock);
3870         mac_learning_flush(ofproto->ml);
3871         ovs_rwlock_unlock(&ofproto->ml->rwlock);
3872     } else {
3873         HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
3874             ovs_rwlock_wrlock(&ofproto->ml->rwlock);
3875             mac_learning_flush(ofproto->ml);
3876             ovs_rwlock_unlock(&ofproto->ml->rwlock);
3877         }
3878     }
3879
3880     unixctl_command_reply(conn, "table successfully flushed");
3881 }
3882
3883 static void
3884 ofproto_unixctl_mcast_snooping_flush(struct unixctl_conn *conn, int argc,
3885                                      const char *argv[], void *aux OVS_UNUSED)
3886 {
3887     struct ofproto_dpif *ofproto;
3888
3889     if (argc > 1) {
3890         ofproto = ofproto_dpif_lookup(argv[1]);
3891         if (!ofproto) {
3892             unixctl_command_reply_error(conn, "no such bridge");
3893             return;
3894         }
3895
3896         if (!mcast_snooping_enabled(ofproto->ms)) {
3897             unixctl_command_reply_error(conn, "multicast snooping is disabled");
3898             return;
3899         }
3900         mcast_snooping_mdb_flush(ofproto->ms);
3901     } else {
3902         HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
3903             if (!mcast_snooping_enabled(ofproto->ms)) {
3904                 continue;
3905             }
3906             mcast_snooping_mdb_flush(ofproto->ms);
3907         }
3908     }
3909
3910     unixctl_command_reply(conn, "table successfully flushed");
3911 }
3912
3913 static struct ofport_dpif *
3914 ofbundle_get_a_port(const struct ofbundle *bundle)
3915 {
3916     return CONTAINER_OF(list_front(&bundle->ports), struct ofport_dpif,
3917                         bundle_node);
3918 }
3919
3920 static void
3921 ofproto_unixctl_fdb_show(struct unixctl_conn *conn, int argc OVS_UNUSED,
3922                          const char *argv[], void *aux OVS_UNUSED)
3923 {
3924     struct ds ds = DS_EMPTY_INITIALIZER;
3925     const struct ofproto_dpif *ofproto;
3926     const struct mac_entry *e;
3927
3928     ofproto = ofproto_dpif_lookup(argv[1]);
3929     if (!ofproto) {
3930         unixctl_command_reply_error(conn, "no such bridge");
3931         return;
3932     }
3933
3934     ds_put_cstr(&ds, " port  VLAN  MAC                Age\n");
3935     ovs_rwlock_rdlock(&ofproto->ml->rwlock);
3936     LIST_FOR_EACH (e, lru_node, &ofproto->ml->lrus) {
3937         struct ofbundle *bundle = e->port.p;
3938         char name[OFP_MAX_PORT_NAME_LEN];
3939
3940         ofputil_port_to_string(ofbundle_get_a_port(bundle)->up.ofp_port,
3941                                name, sizeof name);
3942         ds_put_format(&ds, "%5s  %4d  "ETH_ADDR_FMT"  %3d\n",
3943                       name, e->vlan, ETH_ADDR_ARGS(e->mac),
3944                       mac_entry_age(ofproto->ml, e));
3945     }
3946     ovs_rwlock_unlock(&ofproto->ml->rwlock);
3947     unixctl_command_reply(conn, ds_cstr(&ds));
3948     ds_destroy(&ds);
3949 }
3950
3951 static void
3952 ofproto_unixctl_mcast_snooping_show(struct unixctl_conn *conn,
3953                                     int argc OVS_UNUSED,
3954                                     const char *argv[],
3955                                     void *aux OVS_UNUSED)
3956 {
3957     struct ds ds = DS_EMPTY_INITIALIZER;
3958     const struct ofproto_dpif *ofproto;
3959     const struct ofbundle *bundle;
3960     const struct mcast_group *grp;
3961     struct mcast_group_bundle *b;
3962     struct mcast_mrouter_bundle *mrouter;
3963
3964     ofproto = ofproto_dpif_lookup(argv[1]);
3965     if (!ofproto) {
3966         unixctl_command_reply_error(conn, "no such bridge");
3967         return;
3968     }
3969
3970     if (!mcast_snooping_enabled(ofproto->ms)) {
3971         unixctl_command_reply_error(conn, "multicast snooping is disabled");
3972         return;
3973     }
3974
3975     ds_put_cstr(&ds, " port  VLAN  GROUP                Age\n");
3976     ovs_rwlock_rdlock(&ofproto->ms->rwlock);
3977     LIST_FOR_EACH (grp, group_node, &ofproto->ms->group_lru) {
3978         LIST_FOR_EACH(b, bundle_node, &grp->bundle_lru) {
3979             char name[OFP_MAX_PORT_NAME_LEN];
3980
3981             bundle = b->port;
3982             ofputil_port_to_string(ofbundle_get_a_port(bundle)->up.ofp_port,
3983                                    name, sizeof name);
3984             ds_put_format(&ds, "%5s  %4d  "IP_FMT"         %3d\n",
3985                           name, grp->vlan, IP_ARGS(grp->ip4),
3986                           mcast_bundle_age(ofproto->ms, b));
3987         }
3988     }
3989
3990     /* ports connected to multicast routers */
3991     LIST_FOR_EACH(mrouter, mrouter_node, &ofproto->ms->mrouter_lru) {
3992         char name[OFP_MAX_PORT_NAME_LEN];
3993
3994         bundle = mrouter->port;
3995         ofputil_port_to_string(ofbundle_get_a_port(bundle)->up.ofp_port,
3996                                name, sizeof name);
3997             ds_put_format(&ds, "%5s  %4d  querier             %3d\n",
3998                       name, mrouter->vlan,
3999                       mcast_mrouter_age(ofproto->ms, mrouter));
4000     }
4001     ovs_rwlock_unlock(&ofproto->ms->rwlock);
4002     unixctl_command_reply(conn, ds_cstr(&ds));
4003     ds_destroy(&ds);
4004 }
4005
4006 struct trace_ctx {
4007     struct xlate_out xout;
4008     struct xlate_in xin;
4009     const struct flow *key;
4010     struct flow flow;
4011     struct flow_wildcards wc;
4012     struct ds *result;
4013 };
4014
4015 static void
4016 trace_format_rule(struct ds *result, int level, const struct rule_dpif *rule)
4017 {
4018     const struct rule_actions *actions;
4019     ovs_be64 cookie;
4020
4021     ds_put_char_multiple(result, '\t', level);
4022     if (!rule) {
4023         ds_put_cstr(result, "No match\n");
4024         return;
4025     }
4026
4027     ovs_mutex_lock(&rule->up.mutex);
4028     cookie = rule->up.flow_cookie;
4029     ovs_mutex_unlock(&rule->up.mutex);
4030
4031     ds_put_format(result, "Rule: table=%"PRIu8" cookie=%#"PRIx64" ",
4032                   rule ? rule->up.table_id : 0, ntohll(cookie));
4033     cls_rule_format(&rule->up.cr, result);
4034     ds_put_char(result, '\n');
4035
4036     actions = rule_dpif_get_actions(rule);
4037
4038     ds_put_char_multiple(result, '\t', level);
4039     ds_put_cstr(result, "OpenFlow actions=");
4040     ofpacts_format(actions->ofpacts, actions->ofpacts_len, result);
4041     ds_put_char(result, '\n');
4042 }
4043
4044 static void
4045 trace_format_flow(struct ds *result, int level, const char *title,
4046                   struct trace_ctx *trace)
4047 {
4048     ds_put_char_multiple(result, '\t', level);
4049     ds_put_format(result, "%s: ", title);
4050     /* Do not report unchanged flows for resubmits. */
4051     if ((level > 0 && flow_equal(&trace->xin.flow, &trace->flow))
4052         || (level == 0 && flow_equal(&trace->xin.flow, trace->key))) {
4053         ds_put_cstr(result, "unchanged");
4054     } else {
4055         flow_format(result, &trace->xin.flow);
4056         trace->flow = trace->xin.flow;
4057     }
4058     ds_put_char(result, '\n');
4059 }
4060
4061 static void
4062 trace_format_regs(struct ds *result, int level, const char *title,
4063                   struct trace_ctx *trace)
4064 {
4065     size_t i;
4066
4067     ds_put_char_multiple(result, '\t', level);
4068     ds_put_format(result, "%s:", title);
4069     for (i = 0; i < FLOW_N_REGS; i++) {
4070         ds_put_format(result, " reg%"PRIuSIZE"=0x%"PRIx32, i, trace->flow.regs[i]);
4071     }
4072     ds_put_char(result, '\n');
4073 }
4074
4075 static void
4076 trace_format_odp(struct ds *result, int level, const char *title,
4077                  struct trace_ctx *trace)
4078 {
4079     struct ofpbuf *odp_actions = &trace->xout.odp_actions;
4080
4081     ds_put_char_multiple(result, '\t', level);
4082     ds_put_format(result, "%s: ", title);
4083     format_odp_actions(result, ofpbuf_data(odp_actions),
4084                                ofpbuf_size(odp_actions));
4085     ds_put_char(result, '\n');
4086 }
4087
4088 static void
4089 trace_format_megaflow(struct ds *result, int level, const char *title,
4090                       struct trace_ctx *trace)
4091 {
4092     struct match match;
4093
4094     ds_put_char_multiple(result, '\t', level);
4095     ds_put_format(result, "%s: ", title);
4096     flow_wildcards_or(&trace->wc, &trace->xout.wc, &trace->wc);
4097     match_init(&match, trace->key, &trace->wc);
4098     match_format(&match, result, OFP_DEFAULT_PRIORITY);
4099     ds_put_char(result, '\n');
4100 }
4101
4102 static void
4103 trace_resubmit(struct xlate_in *xin, struct rule_dpif *rule, int recurse)
4104 {
4105     struct trace_ctx *trace = CONTAINER_OF(xin, struct trace_ctx, xin);
4106     struct ds *result = trace->result;
4107
4108     ds_put_char(result, '\n');
4109     trace_format_flow(result, recurse + 1, "Resubmitted flow", trace);
4110     trace_format_regs(result, recurse + 1, "Resubmitted regs", trace);
4111     trace_format_odp(result,  recurse + 1, "Resubmitted  odp", trace);
4112     trace_format_megaflow(result, recurse + 1, "Resubmitted megaflow", trace);
4113     trace_format_rule(result, recurse + 1, rule);
4114 }
4115
4116 static void
4117 trace_report(struct xlate_in *xin, const char *s, int recurse)
4118 {
4119     struct trace_ctx *trace = CONTAINER_OF(xin, struct trace_ctx, xin);
4120     struct ds *result = trace->result;
4121
4122     ds_put_char_multiple(result, '\t', recurse);
4123     ds_put_cstr(result, s);
4124     ds_put_char(result, '\n');
4125 }
4126
4127 /* Parses the 'argc' elements of 'argv', ignoring argv[0].  The following
4128  * forms are supported:
4129  *
4130  *     - [dpname] odp_flow [-generate | packet]
4131  *     - bridge br_flow [-generate | packet]
4132  *
4133  * On success, initializes '*ofprotop' and 'flow' and returns NULL.  On failure
4134  * returns a nonnull malloced error message. */
4135 static char * WARN_UNUSED_RESULT
4136 parse_flow_and_packet(int argc, const char *argv[],
4137                       struct ofproto_dpif **ofprotop, struct flow *flow,
4138                       struct ofpbuf **packetp)
4139 {
4140     const struct dpif_backer *backer = NULL;
4141     const char *error = NULL;
4142     char *m_err = NULL;
4143     struct simap port_names = SIMAP_INITIALIZER(&port_names);
4144     struct ofpbuf *packet;
4145     struct ofpbuf odp_key;
4146     struct ofpbuf odp_mask;
4147
4148     ofpbuf_init(&odp_key, 0);
4149     ofpbuf_init(&odp_mask, 0);
4150
4151     /* Handle "-generate" or a hex string as the last argument. */
4152     if (!strcmp(argv[argc - 1], "-generate")) {
4153         packet = ofpbuf_new(0);
4154         argc--;
4155     } else {
4156         error = eth_from_hex(argv[argc - 1], &packet);
4157         if (!error) {
4158             argc--;
4159         } else if (argc == 4) {
4160             /* The 3-argument form must end in "-generate' or a hex string. */
4161             goto exit;
4162         }
4163         error = NULL;
4164     }
4165
4166     /* odp_flow can have its in_port specified as a name instead of port no.
4167      * We do not yet know whether a given flow is a odp_flow or a br_flow.
4168      * But, to know whether a flow is odp_flow through odp_flow_from_string(),
4169      * we need to create a simap of name to port no. */
4170     if (argc == 3) {
4171         const char *dp_type;
4172         if (!strncmp(argv[1], "ovs-", 4)) {
4173             dp_type = argv[1] + 4;
4174         } else {
4175             dp_type = argv[1];
4176         }
4177         backer = shash_find_data(&all_dpif_backers, dp_type);
4178     } else if (argc == 2) {
4179         struct shash_node *node;
4180         if (shash_count(&all_dpif_backers) == 1) {
4181             node = shash_first(&all_dpif_backers);
4182             backer = node->data;
4183         }
4184     } else {
4185         error = "Syntax error";
4186         goto exit;
4187     }
4188     if (backer && backer->dpif) {
4189         struct dpif_port dpif_port;
4190         struct dpif_port_dump port_dump;
4191         DPIF_PORT_FOR_EACH (&dpif_port, &port_dump, backer->dpif) {
4192             simap_put(&port_names, dpif_port.name,
4193                       odp_to_u32(dpif_port.port_no));
4194         }
4195     }
4196
4197     /* Parse the flow and determine whether a datapath or
4198      * bridge is specified. If function odp_flow_key_from_string()
4199      * returns 0, the flow is a odp_flow. If function
4200      * parse_ofp_exact_flow() returns NULL, the flow is a br_flow. */
4201     if (!odp_flow_from_string(argv[argc - 1], &port_names,
4202                               &odp_key, &odp_mask)) {
4203         if (!backer) {
4204             error = "Cannot find the datapath";
4205             goto exit;
4206         }
4207
4208         if (xlate_receive(backer, NULL, ofpbuf_data(&odp_key),
4209                           ofpbuf_size(&odp_key), flow,
4210                           ofprotop, NULL, NULL, NULL, NULL)) {
4211             error = "Invalid datapath flow";
4212             goto exit;
4213         }
4214     } else {
4215         char *err = parse_ofp_exact_flow(flow, NULL, argv[argc - 1], NULL);
4216
4217         if (err) {
4218             m_err = xasprintf("Bad flow syntax: %s", err);
4219             free(err);
4220             goto exit;
4221         } else {
4222             if (argc != 3) {
4223                 error = "Must specify bridge name";
4224                 goto exit;
4225             }
4226
4227             *ofprotop = ofproto_dpif_lookup(argv[1]);
4228             if (!*ofprotop) {
4229                 error = "Unknown bridge name";
4230                 goto exit;
4231             }
4232         }
4233     }
4234
4235     /* Generate a packet, if requested. */
4236     if (packet) {
4237         if (!ofpbuf_size(packet)) {
4238             flow_compose(packet, flow);
4239         } else {
4240             struct pkt_metadata md = pkt_metadata_from_flow(flow);
4241
4242             /* Use the metadata from the flow and the packet argument
4243              * to reconstruct the flow. */
4244             flow_extract(packet, &md, flow);
4245         }
4246     }
4247
4248 exit:
4249     if (error && !m_err) {
4250         m_err = xstrdup(error);
4251     }
4252     if (m_err) {
4253         ofpbuf_delete(packet);
4254         packet = NULL;
4255     }
4256     *packetp = packet;
4257     ofpbuf_uninit(&odp_key);
4258     ofpbuf_uninit(&odp_mask);
4259     simap_destroy(&port_names);
4260     return m_err;
4261 }
4262
4263 static void
4264 ofproto_unixctl_trace(struct unixctl_conn *conn, int argc, const char *argv[],
4265                       void *aux OVS_UNUSED)
4266 {
4267     struct ofproto_dpif *ofproto;
4268     struct ofpbuf *packet;
4269     char *error;
4270     struct flow flow;
4271
4272     error = parse_flow_and_packet(argc, argv, &ofproto, &flow, &packet);
4273     if (!error) {
4274         struct ds result;
4275
4276         ds_init(&result);
4277         ofproto_trace(ofproto, &flow, packet, NULL, 0, &result);
4278         unixctl_command_reply(conn, ds_cstr(&result));
4279         ds_destroy(&result);
4280         ofpbuf_delete(packet);
4281     } else {
4282         unixctl_command_reply_error(conn, error);
4283         free(error);
4284     }
4285 }
4286
4287 static void
4288 ofproto_unixctl_trace_actions(struct unixctl_conn *conn, int argc,
4289                               const char *argv[], void *aux OVS_UNUSED)
4290 {
4291     enum ofputil_protocol usable_protocols;
4292     struct ofproto_dpif *ofproto;
4293     bool enforce_consistency;
4294     struct ofpbuf ofpacts;
4295     struct ofpbuf *packet;
4296     struct ds result;
4297     struct flow flow;
4298     uint16_t in_port;
4299
4300     /* Three kinds of error return values! */
4301     enum ofperr retval;
4302     char *error;
4303
4304     packet = NULL;
4305     ds_init(&result);
4306     ofpbuf_init(&ofpacts, 0);
4307
4308     /* Parse actions. */
4309     error = parse_ofpacts(argv[--argc], &ofpacts, &usable_protocols);
4310     if (error) {
4311         unixctl_command_reply_error(conn, error);
4312         free(error);
4313         goto exit;
4314     }
4315
4316     /* OpenFlow 1.1 and later suggest that the switch enforces certain forms of
4317      * consistency between the flow and the actions.  With -consistent, we
4318      * enforce consistency even for a flow supported in OpenFlow 1.0. */
4319     if (!strcmp(argv[1], "-consistent")) {
4320         enforce_consistency = true;
4321         argv++;
4322         argc--;
4323     } else {
4324         enforce_consistency = false;
4325     }
4326
4327     error = parse_flow_and_packet(argc, argv, &ofproto, &flow, &packet);
4328     if (error) {
4329         unixctl_command_reply_error(conn, error);
4330         free(error);
4331         goto exit;
4332     }
4333
4334     /* Do the same checks as handle_packet_out() in ofproto.c.
4335      *
4336      * We pass a 'table_id' of 0 to ofproto_check_ofpacts(), which isn't
4337      * strictly correct because these actions aren't in any table, but it's OK
4338      * because it 'table_id' is used only to check goto_table instructions, but
4339      * packet-outs take a list of actions and therefore it can't include
4340      * instructions.
4341      *
4342      * We skip the "meter" check here because meter is an instruction, not an
4343      * action, and thus cannot appear in ofpacts. */
4344     in_port = ofp_to_u16(flow.in_port.ofp_port);
4345     if (in_port >= ofproto->up.max_ports && in_port < ofp_to_u16(OFPP_MAX)) {
4346         unixctl_command_reply_error(conn, "invalid in_port");
4347         goto exit;
4348     }
4349     if (enforce_consistency) {
4350         retval = ofpacts_check_consistency(ofpbuf_data(&ofpacts), ofpbuf_size(&ofpacts),
4351                                            &flow, u16_to_ofp(ofproto->up.max_ports),
4352                                            0, 0, usable_protocols);
4353     } else {
4354         retval = ofpacts_check(ofpbuf_data(&ofpacts), ofpbuf_size(&ofpacts), &flow,
4355                                u16_to_ofp(ofproto->up.max_ports), 0, 0,
4356                                &usable_protocols);
4357     }
4358
4359     if (retval) {
4360         ds_clear(&result);
4361         ds_put_format(&result, "Bad actions: %s", ofperr_to_string(retval));
4362         unixctl_command_reply_error(conn, ds_cstr(&result));
4363         goto exit;
4364     }
4365
4366     ofproto_trace(ofproto, &flow, packet,
4367                   ofpbuf_data(&ofpacts), ofpbuf_size(&ofpacts), &result);
4368     unixctl_command_reply(conn, ds_cstr(&result));
4369
4370 exit:
4371     ds_destroy(&result);
4372     ofpbuf_delete(packet);
4373     ofpbuf_uninit(&ofpacts);
4374 }
4375
4376 /* Implements a "trace" through 'ofproto''s flow table, appending a textual
4377  * description of the results to 'ds'.
4378  *
4379  * The trace follows a packet with the specified 'flow' through the flow
4380  * table.  'packet' may be nonnull to trace an actual packet, with consequent
4381  * side effects (if it is nonnull then its flow must be 'flow').
4382  *
4383  * If 'ofpacts' is nonnull then its 'ofpacts_len' bytes specify the actions to
4384  * trace, otherwise the actions are determined by a flow table lookup. */
4385 static void
4386 ofproto_trace(struct ofproto_dpif *ofproto, struct flow *flow,
4387               const struct ofpbuf *packet,
4388               const struct ofpact ofpacts[], size_t ofpacts_len,
4389               struct ds *ds)
4390 {
4391     struct rule_dpif *rule;
4392     struct trace_ctx trace;
4393
4394     ds_put_format(ds, "Bridge: %s\n", ofproto->up.name);
4395     ds_put_cstr(ds, "Flow: ");
4396     flow_format(ds, flow);
4397     ds_put_char(ds, '\n');
4398
4399     flow_wildcards_init_catchall(&trace.wc);
4400     if (ofpacts) {
4401         rule = NULL;
4402     } else {
4403         rule_dpif_lookup(ofproto, flow, &trace.wc, &rule, false, NULL);
4404
4405         trace_format_rule(ds, 0, rule);
4406         if (rule == ofproto->miss_rule) {
4407             ds_put_cstr(ds, "\nNo match, flow generates \"packet in\"s.\n");
4408         } else if (rule == ofproto->no_packet_in_rule) {
4409             ds_put_cstr(ds, "\nNo match, packets dropped because "
4410                         "OFPPC_NO_PACKET_IN is set on in_port.\n");
4411         } else if (rule == ofproto->drop_frags_rule) {
4412             ds_put_cstr(ds, "\nPackets dropped because they are IP fragments "
4413                         "and the fragment handling mode is \"drop\".\n");
4414         }
4415     }
4416
4417     if (rule || ofpacts) {
4418         trace.result = ds;
4419         trace.key = flow; /* Original flow key, used for megaflow. */
4420         trace.flow = *flow; /* May be modified by actions. */
4421         xlate_in_init(&trace.xin, ofproto, flow, rule, ntohs(flow->tcp_flags),
4422                       packet);
4423         if (ofpacts) {
4424             trace.xin.ofpacts = ofpacts;
4425             trace.xin.ofpacts_len = ofpacts_len;
4426         }
4427         trace.xin.resubmit_hook = trace_resubmit;
4428         trace.xin.report_hook = trace_report;
4429
4430         xlate_actions(&trace.xin, &trace.xout);
4431
4432         ds_put_char(ds, '\n');
4433         trace_format_flow(ds, 0, "Final flow", &trace);
4434         trace_format_megaflow(ds, 0, "Megaflow", &trace);
4435
4436         ds_put_cstr(ds, "Datapath actions: ");
4437         format_odp_actions(ds, ofpbuf_data(&trace.xout.odp_actions),
4438                            ofpbuf_size(&trace.xout.odp_actions));
4439
4440         if (trace.xout.slow) {
4441             enum slow_path_reason slow;
4442
4443             ds_put_cstr(ds, "\nThis flow is handled by the userspace "
4444                         "slow path because it:");
4445
4446             slow = trace.xout.slow;
4447             while (slow) {
4448                 enum slow_path_reason bit = rightmost_1bit(slow);
4449
4450                 ds_put_format(ds, "\n\t- %s.",
4451                               slow_path_reason_to_explanation(bit));
4452
4453                 slow &= ~bit;
4454             }
4455         }
4456
4457         xlate_out_uninit(&trace.xout);
4458     }
4459 }
4460
4461 /* Store the current ofprotos in 'ofproto_shash'.  Returns a sorted list
4462  * of the 'ofproto_shash' nodes.  It is the responsibility of the caller
4463  * to destroy 'ofproto_shash' and free the returned value. */
4464 static const struct shash_node **
4465 get_ofprotos(struct shash *ofproto_shash)
4466 {
4467     const struct ofproto_dpif *ofproto;
4468
4469     HMAP_FOR_EACH (ofproto, all_ofproto_dpifs_node, &all_ofproto_dpifs) {
4470         char *name = xasprintf("%s@%s", ofproto->up.type, ofproto->up.name);
4471         shash_add_nocopy(ofproto_shash, name, ofproto);
4472     }
4473
4474     return shash_sort(ofproto_shash);
4475 }
4476
4477 static void
4478 ofproto_unixctl_dpif_dump_dps(struct unixctl_conn *conn, int argc OVS_UNUSED,
4479                               const char *argv[] OVS_UNUSED,
4480                               void *aux OVS_UNUSED)
4481 {
4482     struct ds ds = DS_EMPTY_INITIALIZER;
4483     struct shash ofproto_shash;
4484     const struct shash_node **sorted_ofprotos;
4485     int i;
4486
4487     shash_init(&ofproto_shash);
4488     sorted_ofprotos = get_ofprotos(&ofproto_shash);
4489     for (i = 0; i < shash_count(&ofproto_shash); i++) {
4490         const struct shash_node *node = sorted_ofprotos[i];
4491         ds_put_format(&ds, "%s\n", node->name);
4492     }
4493
4494     shash_destroy(&ofproto_shash);
4495     free(sorted_ofprotos);
4496
4497     unixctl_command_reply(conn, ds_cstr(&ds));
4498     ds_destroy(&ds);
4499 }
4500
4501 static void
4502 dpif_show_backer(const struct dpif_backer *backer, struct ds *ds)
4503 {
4504     const struct shash_node **ofprotos;
4505     struct dpif_dp_stats dp_stats;
4506     struct shash ofproto_shash;
4507     size_t i;
4508
4509     dpif_get_dp_stats(backer->dpif, &dp_stats);
4510
4511     ds_put_format(ds, "%s: hit:%"PRIu64" missed:%"PRIu64"\n",
4512                   dpif_name(backer->dpif), dp_stats.n_hit, dp_stats.n_missed);
4513
4514     shash_init(&ofproto_shash);
4515     ofprotos = get_ofprotos(&ofproto_shash);
4516     for (i = 0; i < shash_count(&ofproto_shash); i++) {
4517         struct ofproto_dpif *ofproto = ofprotos[i]->data;
4518         const struct shash_node **ports;
4519         size_t j;
4520
4521         if (ofproto->backer != backer) {
4522             continue;
4523         }
4524
4525         ds_put_format(ds, "\t%s:\n", ofproto->up.name);
4526
4527         ports = shash_sort(&ofproto->up.port_by_name);
4528         for (j = 0; j < shash_count(&ofproto->up.port_by_name); j++) {
4529             const struct shash_node *node = ports[j];
4530             struct ofport *ofport = node->data;
4531             struct smap config;
4532             odp_port_t odp_port;
4533
4534             ds_put_format(ds, "\t\t%s %u/", netdev_get_name(ofport->netdev),
4535                           ofport->ofp_port);
4536
4537             odp_port = ofp_port_to_odp_port(ofproto, ofport->ofp_port);
4538             if (odp_port != ODPP_NONE) {
4539                 ds_put_format(ds, "%"PRIu32":", odp_port);
4540             } else {
4541                 ds_put_cstr(ds, "none:");
4542             }
4543
4544             ds_put_format(ds, " (%s", netdev_get_type(ofport->netdev));
4545
4546             smap_init(&config);
4547             if (!netdev_get_config(ofport->netdev, &config)) {
4548                 const struct smap_node **nodes;
4549                 size_t i;
4550
4551                 nodes = smap_sort(&config);
4552                 for (i = 0; i < smap_count(&config); i++) {
4553                     const struct smap_node *node = nodes[i];
4554                     ds_put_format(ds, "%c %s=%s", i ? ',' : ':',
4555                                   node->key, node->value);
4556                 }
4557                 free(nodes);
4558             }
4559             smap_destroy(&config);
4560
4561             ds_put_char(ds, ')');
4562             ds_put_char(ds, '\n');
4563         }
4564         free(ports);
4565     }
4566     shash_destroy(&ofproto_shash);
4567     free(ofprotos);
4568 }
4569
4570 static void
4571 ofproto_unixctl_dpif_show(struct unixctl_conn *conn, int argc OVS_UNUSED,
4572                           const char *argv[] OVS_UNUSED, void *aux OVS_UNUSED)
4573 {
4574     struct ds ds = DS_EMPTY_INITIALIZER;
4575     const struct shash_node **backers;
4576     int i;
4577
4578     backers = shash_sort(&all_dpif_backers);
4579     for (i = 0; i < shash_count(&all_dpif_backers); i++) {
4580         dpif_show_backer(backers[i]->data, &ds);
4581     }
4582     free(backers);
4583
4584     unixctl_command_reply(conn, ds_cstr(&ds));
4585     ds_destroy(&ds);
4586 }
4587
4588 static bool
4589 ofproto_dpif_contains_flow(const struct ofproto_dpif *ofproto,
4590                            const struct nlattr *key, size_t key_len)
4591 {
4592     struct ofproto_dpif *ofp;
4593     struct flow flow;
4594
4595     xlate_receive(ofproto->backer, NULL, key, key_len, &flow, &ofp,
4596                   NULL, NULL, NULL, NULL);
4597     return ofp == ofproto;
4598 }
4599
4600 static void
4601 ofproto_unixctl_dpif_dump_flows(struct unixctl_conn *conn,
4602                                 int argc OVS_UNUSED, const char *argv[],
4603                                 void *aux OVS_UNUSED)
4604 {
4605     const struct ofproto_dpif *ofproto;
4606
4607     struct ds ds = DS_EMPTY_INITIALIZER;
4608     bool verbosity = false;
4609
4610     struct dpif_port dpif_port;
4611     struct dpif_port_dump port_dump;
4612     struct hmap portno_names;
4613
4614     struct dpif_flow_dump *flow_dump;
4615     struct dpif_flow_dump_thread *flow_dump_thread;
4616     struct dpif_flow f;
4617     int error;
4618
4619     ofproto = ofproto_dpif_lookup(argv[argc - 1]);
4620     if (!ofproto) {
4621         unixctl_command_reply_error(conn, "no such bridge");
4622         return;
4623     }
4624
4625     if (argc > 2 && !strcmp(argv[1], "-m")) {
4626         verbosity = true;
4627     }
4628
4629     hmap_init(&portno_names);
4630     DPIF_PORT_FOR_EACH (&dpif_port, &port_dump, ofproto->backer->dpif) {
4631         odp_portno_names_set(&portno_names, dpif_port.port_no, dpif_port.name);
4632     }
4633
4634     ds_init(&ds);
4635     flow_dump = dpif_flow_dump_create(ofproto->backer->dpif);
4636     flow_dump_thread = dpif_flow_dump_thread_create(flow_dump);
4637     while (dpif_flow_dump_next(flow_dump_thread, &f, 1)) {
4638         if (!ofproto_dpif_contains_flow(ofproto, f.key, f.key_len)) {
4639             continue;
4640         }
4641
4642         odp_flow_format(f.key, f.key_len, f.mask, f.mask_len,
4643                         &portno_names, &ds, verbosity);
4644         ds_put_cstr(&ds, ", ");
4645         dpif_flow_stats_format(&f.stats, &ds);
4646         ds_put_cstr(&ds, ", actions:");
4647         format_odp_actions(&ds, f.actions, f.actions_len);
4648         ds_put_char(&ds, '\n');
4649     }
4650     dpif_flow_dump_thread_destroy(flow_dump_thread);
4651     error = dpif_flow_dump_destroy(flow_dump);
4652
4653     if (error) {
4654         ds_clear(&ds);
4655         ds_put_format(&ds, "dpif/dump_flows failed: %s", ovs_strerror(errno));
4656         unixctl_command_reply_error(conn, ds_cstr(&ds));
4657     } else {
4658         unixctl_command_reply(conn, ds_cstr(&ds));
4659     }
4660     odp_portno_names_destroy(&portno_names);
4661     hmap_destroy(&portno_names);
4662     ds_destroy(&ds);
4663 }
4664
4665 static void
4666 ofproto_dpif_unixctl_init(void)
4667 {
4668     static bool registered;
4669     if (registered) {
4670         return;
4671     }
4672     registered = true;
4673
4674     unixctl_command_register(
4675         "ofproto/trace",
4676         "{[dp_name] odp_flow | bridge br_flow} [-generate|packet]",
4677         1, 3, ofproto_unixctl_trace, NULL);
4678     unixctl_command_register(
4679         "ofproto/trace-packet-out",
4680         "[-consistent] {[dp_name] odp_flow | bridge br_flow} [-generate|packet] actions",
4681         2, 6, ofproto_unixctl_trace_actions, NULL);
4682     unixctl_command_register("fdb/flush", "[bridge]", 0, 1,
4683                              ofproto_unixctl_fdb_flush, NULL);
4684     unixctl_command_register("fdb/show", "bridge", 1, 1,
4685                              ofproto_unixctl_fdb_show, NULL);
4686     unixctl_command_register("mdb/flush", "[bridge]", 0, 1,
4687                              ofproto_unixctl_mcast_snooping_flush, NULL);
4688     unixctl_command_register("mdb/show", "bridge", 1, 1,
4689                              ofproto_unixctl_mcast_snooping_show, NULL);
4690     unixctl_command_register("dpif/dump-dps", "", 0, 0,
4691                              ofproto_unixctl_dpif_dump_dps, NULL);
4692     unixctl_command_register("dpif/show", "", 0, 0, ofproto_unixctl_dpif_show,
4693                              NULL);
4694     unixctl_command_register("dpif/dump-flows", "[-m] bridge", 1, 2,
4695                              ofproto_unixctl_dpif_dump_flows, NULL);
4696 }
4697
4698 /* Returns true if 'table' is the table used for internal rules,
4699  * false otherwise. */
4700 bool
4701 table_is_internal(uint8_t table_id)
4702 {
4703     return table_id == TBL_INTERNAL;
4704 }
4705 \f
4706 /* Linux VLAN device support (e.g. "eth0.10" for VLAN 10.)
4707  *
4708  * This is deprecated.  It is only for compatibility with broken device drivers
4709  * in old versions of Linux that do not properly support VLANs when VLAN
4710  * devices are not used.  When broken device drivers are no longer in
4711  * widespread use, we will delete these interfaces. */
4712
4713 static int
4714 set_realdev(struct ofport *ofport_, ofp_port_t realdev_ofp_port, int vid)
4715 {
4716     struct ofproto_dpif *ofproto = ofproto_dpif_cast(ofport_->ofproto);
4717     struct ofport_dpif *ofport = ofport_dpif_cast(ofport_);
4718
4719     if (realdev_ofp_port == ofport->realdev_ofp_port
4720         && vid == ofport->vlandev_vid) {
4721         return 0;
4722     }
4723
4724     ofproto->backer->need_revalidate = REV_RECONFIGURE;
4725
4726     if (ofport->realdev_ofp_port) {
4727         vsp_remove(ofport);
4728     }
4729     if (realdev_ofp_port && ofport->bundle) {
4730         /* vlandevs are enslaved to their realdevs, so they are not allowed to
4731          * themselves be part of a bundle. */
4732         bundle_set(ofport_->ofproto, ofport->bundle, NULL);
4733     }
4734
4735     ofport->realdev_ofp_port = realdev_ofp_port;
4736     ofport->vlandev_vid = vid;
4737
4738     if (realdev_ofp_port) {
4739         vsp_add(ofport, realdev_ofp_port, vid);
4740     }
4741
4742     return 0;
4743 }
4744
4745 static uint32_t
4746 hash_realdev_vid(ofp_port_t realdev_ofp_port, int vid)
4747 {
4748     return hash_2words(ofp_to_u16(realdev_ofp_port), vid);
4749 }
4750
4751 bool
4752 ofproto_has_vlan_splinters(const struct ofproto_dpif *ofproto)
4753     OVS_EXCLUDED(ofproto->vsp_mutex)
4754 {
4755     /* hmap_is_empty is thread safe. */
4756     return !hmap_is_empty(&ofproto->realdev_vid_map);
4757 }
4758
4759
4760 static ofp_port_t
4761 vsp_realdev_to_vlandev__(const struct ofproto_dpif *ofproto,
4762                          ofp_port_t realdev_ofp_port, ovs_be16 vlan_tci)
4763     OVS_REQUIRES(ofproto->vsp_mutex)
4764 {
4765     if (!hmap_is_empty(&ofproto->realdev_vid_map)) {
4766         int vid = vlan_tci_to_vid(vlan_tci);
4767         const struct vlan_splinter *vsp;
4768
4769         HMAP_FOR_EACH_WITH_HASH (vsp, realdev_vid_node,
4770                                  hash_realdev_vid(realdev_ofp_port, vid),
4771                                  &ofproto->realdev_vid_map) {
4772             if (vsp->realdev_ofp_port == realdev_ofp_port
4773                 && vsp->vid == vid) {
4774                 return vsp->vlandev_ofp_port;
4775             }
4776         }
4777     }
4778     return realdev_ofp_port;
4779 }
4780
4781 /* Returns the OFP port number of the Linux VLAN device that corresponds to
4782  * 'vlan_tci' on the network device with port number 'realdev_ofp_port' in
4783  * 'struct ofport_dpif'.  For example, given 'realdev_ofp_port' of eth0 and
4784  * 'vlan_tci' 9, it would return the port number of eth0.9.
4785  *
4786  * Unless VLAN splinters are enabled for port 'realdev_ofp_port', this
4787  * function just returns its 'realdev_ofp_port' argument. */
4788 ofp_port_t
4789 vsp_realdev_to_vlandev(const struct ofproto_dpif *ofproto,
4790                        ofp_port_t realdev_ofp_port, ovs_be16 vlan_tci)
4791     OVS_EXCLUDED(ofproto->vsp_mutex)
4792 {
4793     ofp_port_t ret;
4794
4795     /* hmap_is_empty is thread safe, see if we can return immediately. */
4796     if (hmap_is_empty(&ofproto->realdev_vid_map)) {
4797         return realdev_ofp_port;
4798     }
4799     ovs_mutex_lock(&ofproto->vsp_mutex);
4800     ret = vsp_realdev_to_vlandev__(ofproto, realdev_ofp_port, vlan_tci);
4801     ovs_mutex_unlock(&ofproto->vsp_mutex);
4802     return ret;
4803 }
4804
4805 static struct vlan_splinter *
4806 vlandev_find(const struct ofproto_dpif *ofproto, ofp_port_t vlandev_ofp_port)
4807 {
4808     struct vlan_splinter *vsp;
4809
4810     HMAP_FOR_EACH_WITH_HASH (vsp, vlandev_node,
4811                              hash_ofp_port(vlandev_ofp_port),
4812                              &ofproto->vlandev_map) {
4813         if (vsp->vlandev_ofp_port == vlandev_ofp_port) {
4814             return vsp;
4815         }
4816     }
4817
4818     return NULL;
4819 }
4820
4821 /* Returns the OpenFlow port number of the "real" device underlying the Linux
4822  * VLAN device with OpenFlow port number 'vlandev_ofp_port' and stores the
4823  * VLAN VID of the Linux VLAN device in '*vid'.  For example, given
4824  * 'vlandev_ofp_port' of eth0.9, it would return the OpenFlow port number of
4825  * eth0 and store 9 in '*vid'.
4826  *
4827  * Returns 0 and does not modify '*vid' if 'vlandev_ofp_port' is not a Linux
4828  * VLAN device.  Unless VLAN splinters are enabled, this is what this function
4829  * always does.*/
4830 static ofp_port_t
4831 vsp_vlandev_to_realdev(const struct ofproto_dpif *ofproto,
4832                        ofp_port_t vlandev_ofp_port, int *vid)
4833     OVS_REQUIRES(ofproto->vsp_mutex)
4834 {
4835     if (!hmap_is_empty(&ofproto->vlandev_map)) {
4836         const struct vlan_splinter *vsp;
4837
4838         vsp = vlandev_find(ofproto, vlandev_ofp_port);
4839         if (vsp) {
4840             if (vid) {
4841                 *vid = vsp->vid;
4842             }
4843             return vsp->realdev_ofp_port;
4844         }
4845     }
4846     return 0;
4847 }
4848
4849 /* Given 'flow', a flow representing a packet received on 'ofproto', checks
4850  * whether 'flow->in_port' represents a Linux VLAN device.  If so, changes
4851  * 'flow->in_port' to the "real" device backing the VLAN device, sets
4852  * 'flow->vlan_tci' to the VLAN VID, and returns true.  Otherwise (which is
4853  * always the case unless VLAN splinters are enabled), returns false without
4854  * making any changes. */
4855 bool
4856 vsp_adjust_flow(const struct ofproto_dpif *ofproto, struct flow *flow)
4857     OVS_EXCLUDED(ofproto->vsp_mutex)
4858 {
4859     ofp_port_t realdev;
4860     int vid;
4861
4862     /* hmap_is_empty is thread safe. */
4863     if (hmap_is_empty(&ofproto->vlandev_map)) {
4864         return false;
4865     }
4866
4867     ovs_mutex_lock(&ofproto->vsp_mutex);
4868     realdev = vsp_vlandev_to_realdev(ofproto, flow->in_port.ofp_port, &vid);
4869     ovs_mutex_unlock(&ofproto->vsp_mutex);
4870     if (!realdev) {
4871         return false;
4872     }
4873
4874     /* Cause the flow to be processed as if it came in on the real device with
4875      * the VLAN device's VLAN ID. */
4876     flow->in_port.ofp_port = realdev;
4877     flow->vlan_tci = htons((vid & VLAN_VID_MASK) | VLAN_CFI);
4878     return true;
4879 }
4880
4881 static void
4882 vsp_remove(struct ofport_dpif *port)
4883 {
4884     struct ofproto_dpif *ofproto = ofproto_dpif_cast(port->up.ofproto);
4885     struct vlan_splinter *vsp;
4886
4887     ovs_mutex_lock(&ofproto->vsp_mutex);
4888     vsp = vlandev_find(ofproto, port->up.ofp_port);
4889     if (vsp) {
4890         hmap_remove(&ofproto->vlandev_map, &vsp->vlandev_node);
4891         hmap_remove(&ofproto->realdev_vid_map, &vsp->realdev_vid_node);
4892         free(vsp);
4893
4894         port->realdev_ofp_port = 0;
4895     } else {
4896         VLOG_ERR("missing vlan device record");
4897     }
4898     ovs_mutex_unlock(&ofproto->vsp_mutex);
4899 }
4900
4901 static void
4902 vsp_add(struct ofport_dpif *port, ofp_port_t realdev_ofp_port, int vid)
4903 {
4904     struct ofproto_dpif *ofproto = ofproto_dpif_cast(port->up.ofproto);
4905
4906     ovs_mutex_lock(&ofproto->vsp_mutex);
4907     if (!vsp_vlandev_to_realdev(ofproto, port->up.ofp_port, NULL)
4908         && (vsp_realdev_to_vlandev__(ofproto, realdev_ofp_port, htons(vid))
4909             == realdev_ofp_port)) {
4910         struct vlan_splinter *vsp;
4911
4912         vsp = xmalloc(sizeof *vsp);
4913         vsp->realdev_ofp_port = realdev_ofp_port;
4914         vsp->vlandev_ofp_port = port->up.ofp_port;
4915         vsp->vid = vid;
4916
4917         port->realdev_ofp_port = realdev_ofp_port;
4918
4919         hmap_insert(&ofproto->vlandev_map, &vsp->vlandev_node,
4920                     hash_ofp_port(port->up.ofp_port));
4921         hmap_insert(&ofproto->realdev_vid_map, &vsp->realdev_vid_node,
4922                     hash_realdev_vid(realdev_ofp_port, vid));
4923     } else {
4924         VLOG_ERR("duplicate vlan device record");
4925     }
4926     ovs_mutex_unlock(&ofproto->vsp_mutex);
4927 }
4928
4929 static odp_port_t
4930 ofp_port_to_odp_port(const struct ofproto_dpif *ofproto, ofp_port_t ofp_port)
4931 {
4932     const struct ofport_dpif *ofport = get_ofp_port(ofproto, ofp_port);
4933     return ofport ? ofport->odp_port : ODPP_NONE;
4934 }
4935
4936 struct ofport_dpif *
4937 odp_port_to_ofport(const struct dpif_backer *backer, odp_port_t odp_port)
4938 {
4939     struct ofport_dpif *port;
4940
4941     ovs_rwlock_rdlock(&backer->odp_to_ofport_lock);
4942     HMAP_FOR_EACH_IN_BUCKET (port, odp_port_node, hash_odp_port(odp_port),
4943                              &backer->odp_to_ofport_map) {
4944         if (port->odp_port == odp_port) {
4945             ovs_rwlock_unlock(&backer->odp_to_ofport_lock);
4946             return port;
4947         }
4948     }
4949
4950     ovs_rwlock_unlock(&backer->odp_to_ofport_lock);
4951     return NULL;
4952 }
4953
4954 static ofp_port_t
4955 odp_port_to_ofp_port(const struct ofproto_dpif *ofproto, odp_port_t odp_port)
4956 {
4957     struct ofport_dpif *port;
4958
4959     port = odp_port_to_ofport(ofproto->backer, odp_port);
4960     if (port && &ofproto->up == port->up.ofproto) {
4961         return port->up.ofp_port;
4962     } else {
4963         return OFPP_NONE;
4964     }
4965 }
4966
4967 uint32_t
4968 ofproto_dpif_alloc_recirc_id(struct ofproto_dpif *ofproto)
4969 {
4970     struct dpif_backer *backer = ofproto->backer;
4971
4972     return  recirc_id_alloc(backer->rid_pool);
4973 }
4974
4975 void
4976 ofproto_dpif_free_recirc_id(struct ofproto_dpif *ofproto, uint32_t recirc_id)
4977 {
4978     struct dpif_backer *backer = ofproto->backer;
4979
4980     recirc_id_free(backer->rid_pool, recirc_id);
4981 }
4982
4983 int
4984 ofproto_dpif_add_internal_flow(struct ofproto_dpif *ofproto,
4985                                const struct match *match, int priority,
4986                                uint16_t idle_timeout,
4987                                const struct ofpbuf *ofpacts,
4988                                struct rule **rulep)
4989 {
4990     struct ofputil_flow_mod fm;
4991     struct rule_dpif *rule;
4992     int error;
4993
4994     fm.match = *match;
4995     fm.priority = priority;
4996     fm.new_cookie = htonll(0);
4997     fm.cookie = htonll(0);
4998     fm.cookie_mask = htonll(0);
4999     fm.modify_cookie = false;
5000     fm.table_id = TBL_INTERNAL;
5001     fm.command = OFPFC_ADD;
5002     fm.idle_timeout = idle_timeout;
5003     fm.hard_timeout = 0;
5004     fm.buffer_id = 0;
5005     fm.out_port = 0;
5006     fm.flags = OFPUTIL_FF_HIDDEN_FIELDS | OFPUTIL_FF_NO_READONLY;
5007     fm.ofpacts = ofpbuf_data(ofpacts);
5008     fm.ofpacts_len = ofpbuf_size(ofpacts);
5009
5010     error = ofproto_flow_mod(&ofproto->up, &fm);
5011     if (error) {
5012         VLOG_ERR_RL(&rl, "failed to add internal flow (%s)",
5013                     ofperr_to_string(error));
5014         *rulep = NULL;
5015         return error;
5016     }
5017
5018     rule = rule_dpif_lookup_in_table(ofproto, TBL_INTERNAL, &fm.match.flow,
5019                                      &fm.match.wc, false);
5020     if (rule) {
5021         *rulep = &rule->up;
5022     } else {
5023         OVS_NOT_REACHED();
5024     }
5025     return 0;
5026 }
5027
5028 int
5029 ofproto_dpif_delete_internal_flow(struct ofproto_dpif *ofproto,
5030                                   struct match *match, int priority)
5031 {
5032     struct ofputil_flow_mod fm;
5033     int error;
5034
5035     fm.match = *match;
5036     fm.priority = priority;
5037     fm.new_cookie = htonll(0);
5038     fm.cookie = htonll(0);
5039     fm.cookie_mask = htonll(0);
5040     fm.modify_cookie = false;
5041     fm.table_id = TBL_INTERNAL;
5042     fm.flags = OFPUTIL_FF_HIDDEN_FIELDS | OFPUTIL_FF_NO_READONLY;
5043     fm.command = OFPFC_DELETE_STRICT;
5044
5045     error = ofproto_flow_mod(&ofproto->up, &fm);
5046     if (error) {
5047         VLOG_ERR_RL(&rl, "failed to delete internal flow (%s)",
5048                     ofperr_to_string(error));
5049         return error;
5050     }
5051
5052     return 0;
5053 }
5054
5055 const struct ofproto_class ofproto_dpif_class = {
5056     init,
5057     enumerate_types,
5058     enumerate_names,
5059     del,
5060     port_open_type,
5061     type_run,
5062     type_wait,
5063     alloc,
5064     construct,
5065     destruct,
5066     dealloc,
5067     run,
5068     wait,
5069     NULL,                       /* get_memory_usage. */
5070     type_get_memory_usage,
5071     flush,
5072     get_features,
5073     get_tables,
5074     port_alloc,
5075     port_construct,
5076     port_destruct,
5077     port_dealloc,
5078     port_modified,
5079     port_reconfigured,
5080     port_query_by_name,
5081     port_add,
5082     port_del,
5083     port_get_stats,
5084     port_dump_start,
5085     port_dump_next,
5086     port_dump_done,
5087     port_poll,
5088     port_poll_wait,
5089     port_is_lacp_current,
5090     NULL,                       /* rule_choose_table */
5091     rule_alloc,
5092     rule_construct,
5093     rule_insert,
5094     rule_delete,
5095     rule_destruct,
5096     rule_dealloc,
5097     rule_get_stats,
5098     rule_execute,
5099     NULL,                       /* rule_premodify_actions */
5100     rule_modify_actions,
5101     set_frag_handling,
5102     packet_out,
5103     set_netflow,
5104     get_netflow_ids,
5105     set_sflow,
5106     set_ipfix,
5107     set_cfm,
5108     cfm_status_changed,
5109     get_cfm_status,
5110     set_bfd,
5111     bfd_status_changed,
5112     get_bfd_status,
5113     set_stp,
5114     get_stp_status,
5115     set_stp_port,
5116     get_stp_port_status,
5117     get_stp_port_stats,
5118     set_queues,
5119     bundle_set,
5120     bundle_remove,
5121     mirror_set__,
5122     mirror_get_stats__,
5123     set_flood_vlans,
5124     is_mirror_output_bundle,
5125     forward_bpdu_changed,
5126     set_mac_table_config,
5127     set_mcast_snooping,
5128     set_mcast_snooping_port,
5129     set_realdev,
5130     NULL,                       /* meter_get_features */
5131     NULL,                       /* meter_set */
5132     NULL,                       /* meter_get */
5133     NULL,                       /* meter_del */
5134     group_alloc,                /* group_alloc */
5135     group_construct,            /* group_construct */
5136     group_destruct,             /* group_destruct */
5137     group_dealloc,              /* group_dealloc */
5138     group_modify,               /* group_modify */
5139     group_get_stats,            /* group_get_stats */
5140 };