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Add functions to determine how port should be opened based on type.
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064af421 1/*
e0edde6f 2 * Copyright (c) 2009, 2010, 2011, 2012 Nicira, Inc.
43253595 3 * Copyright (c) 2010 Jean Tourrilhes - HP-Labs.
064af421 4 *
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5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at:
064af421 8 *
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9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
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16 */
17
18#include <config.h>
19#include "ofproto.h"
20#include <errno.h>
21#include <inttypes.h>
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22#include <stdbool.h>
23#include <stdlib.h>
52a90c29 24#include "bitmap.h"
10a24935 25#include "byte-order.h"
064af421 26#include "classifier.h"
19a87e36 27#include "connmgr.h"
064af421 28#include "coverage.h"
4f2cad2c 29#include "dynamic-string.h"
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30#include "hash.h"
31#include "hmap.h"
254750ce 32#include "meta-flow.h"
064af421 33#include "netdev.h"
09246b99 34#include "nx-match.h"
f25d0cf3 35#include "ofp-actions.h"
90bf1e07 36#include "ofp-errors.h"
982697a4 37#include "ofp-msgs.h"
064af421 38#include "ofp-print.h"
fa37b408 39#include "ofp-util.h"
064af421 40#include "ofpbuf.h"
5bee6e26 41#include "ofproto-provider.h"
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42#include "openflow/nicira-ext.h"
43#include "openflow/openflow.h"
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44#include "packets.h"
45#include "pinsched.h"
46#include "pktbuf.h"
47#include "poll-loop.h"
254750ce 48#include "random.h"
064af421 49#include "shash.h"
0d085684 50#include "simap.h"
b3c01ed3 51#include "sset.h"
064af421 52#include "timeval.h"
c4617b3c 53#include "unaligned.h"
4f2cad2c 54#include "unixctl.h"
5136ce49 55#include "vlog.h"
064af421 56
d98e6007 57VLOG_DEFINE_THIS_MODULE(ofproto);
064af421 58
d76f09ea 59COVERAGE_DEFINE(ofproto_error);
d76f09ea 60COVERAGE_DEFINE(ofproto_flush);
d76f09ea 61COVERAGE_DEFINE(ofproto_no_packet_in);
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62COVERAGE_DEFINE(ofproto_packet_out);
63COVERAGE_DEFINE(ofproto_queue_req);
64COVERAGE_DEFINE(ofproto_recv_openflow);
65COVERAGE_DEFINE(ofproto_reinit_ports);
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66COVERAGE_DEFINE(ofproto_uninstallable);
67COVERAGE_DEFINE(ofproto_update_port);
68
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69enum ofproto_state {
70 S_OPENFLOW, /* Processing OpenFlow commands. */
254750ce 71 S_EVICT, /* Evicting flows from over-limit tables. */
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72 S_FLUSH, /* Deleting all flow table rules. */
73};
74
75enum ofoperation_type {
76 OFOPERATION_ADD,
77 OFOPERATION_DELETE,
78 OFOPERATION_MODIFY
79};
80
81/* A single OpenFlow request can execute any number of operations. The
82 * ofopgroup maintain OpenFlow state common to all of the operations, e.g. the
83 * ofconn to which an error reply should be sent if necessary.
84 *
85 * ofproto initiates some operations internally. These operations are still
86 * assigned to groups but will not have an associated ofconn. */
87struct ofopgroup {
88 struct ofproto *ofproto; /* Owning ofproto. */
89 struct list ofproto_node; /* In ofproto's "pending" list. */
90 struct list ops; /* List of "struct ofoperation"s. */
e615b0a3 91 int n_running; /* Number of ops still pending. */
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92
93 /* Data needed to send OpenFlow reply on failure or to send a buffered
94 * packet on success.
95 *
96 * If list_is_empty(ofconn_node) then this ofopgroup never had an
97 * associated ofconn or its ofconn's connection dropped after it initiated
98 * the operation. In the latter case 'ofconn' is a wild pointer that
99 * refers to freed memory, so the 'ofconn' member must be used only if
100 * !list_is_empty(ofconn_node).
101 */
102 struct list ofconn_node; /* In ofconn's list of pending opgroups. */
103 struct ofconn *ofconn; /* ofconn for reply (but see note above). */
104 struct ofp_header *request; /* Original request (truncated at 64 bytes). */
105 uint32_t buffer_id; /* Buffer id from original request. */
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106};
107
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108static struct ofopgroup *ofopgroup_create_unattached(struct ofproto *);
109static struct ofopgroup *ofopgroup_create(struct ofproto *, struct ofconn *,
110 const struct ofp_header *,
111 uint32_t buffer_id);
7ee20df1 112static void ofopgroup_submit(struct ofopgroup *);
e615b0a3 113static void ofopgroup_complete(struct ofopgroup *);
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114
115/* A single flow table operation. */
116struct ofoperation {
117 struct ofopgroup *group; /* Owning group. */
118 struct list group_node; /* In ofopgroup's "ops" list. */
119 struct hmap_node hmap_node; /* In ofproto's "deletions" hmap. */
120 struct rule *rule; /* Rule being operated upon. */
121 enum ofoperation_type type; /* Type of operation. */
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122
123 /* OFOPERATION_ADD. */
124 struct rule *victim; /* Rule being replaced, if any.. */
125
126 /* OFOPERATION_MODIFY: The old actions, if the actions are changing. */
127 struct ofpact *ofpacts;
128 size_t ofpacts_len;
129
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130 /* OFOPERATION_DELETE. */
131 enum ofp_flow_removed_reason reason; /* Reason flow was removed. */
132
7ee20df1 133 ovs_be64 flow_cookie; /* Rule's old flow cookie. */
e615b0a3 134 enum ofperr error; /* 0 if no error. */
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135};
136
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137static struct ofoperation *ofoperation_create(struct ofopgroup *,
138 struct rule *,
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139 enum ofoperation_type,
140 enum ofp_flow_removed_reason);
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141static void ofoperation_destroy(struct ofoperation *);
142
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143/* oftable. */
144static void oftable_init(struct oftable *);
145static void oftable_destroy(struct oftable *);
878ae780 146
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147static void oftable_set_name(struct oftable *, const char *name);
148
149static void oftable_disable_eviction(struct oftable *);
150static void oftable_enable_eviction(struct oftable *,
151 const struct mf_subfield *fields,
152 size_t n_fields);
153
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154static void oftable_remove_rule(struct rule *);
155static struct rule *oftable_replace_rule(struct rule *);
156static void oftable_substitute_rule(struct rule *old, struct rule *new);
064af421 157
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158/* A set of rules within a single OpenFlow table (oftable) that have the same
159 * values for the oftable's eviction_fields. A rule to be evicted, when one is
160 * needed, is taken from the eviction group that contains the greatest number
161 * of rules.
162 *
163 * An oftable owns any number of eviction groups, each of which contains any
164 * number of rules.
165 *
166 * Membership in an eviction group is imprecise, based on the hash of the
167 * oftable's eviction_fields (in the eviction_group's id_node.hash member).
168 * That is, if two rules have different eviction_fields, but those
169 * eviction_fields hash to the same value, then they will belong to the same
170 * eviction_group anyway.
171 *
172 * (When eviction is not enabled on an oftable, we don't track any eviction
173 * groups, to save time and space.) */
174struct eviction_group {
175 struct hmap_node id_node; /* In oftable's "eviction_groups_by_id". */
176 struct heap_node size_node; /* In oftable's "eviction_groups_by_size". */
177 struct heap rules; /* Contains "struct rule"s. */
178};
179
180static struct rule *choose_rule_to_evict(struct oftable *);
181static void ofproto_evict(struct ofproto *);
182static uint32_t rule_eviction_priority(struct rule *);
f29152ca 183
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184/* ofport. */
185static void ofport_destroy__(struct ofport *);
186static void ofport_destroy(struct ofport *);
187
188static void update_port(struct ofproto *, const char *devname);
189static int init_ports(struct ofproto *);
190static void reinit_ports(struct ofproto *);
7ee20df1 191
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192/* rule. */
193static void ofproto_rule_destroy__(struct rule *);
194static void ofproto_rule_send_removed(struct rule *, uint8_t reason);
195static bool rule_is_modifiable(const struct rule *);
254750ce 196
d0918789 197/* OpenFlow. */
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198static enum ofperr add_flow(struct ofproto *, struct ofconn *,
199 const struct ofputil_flow_mod *,
200 const struct ofp_header *);
254750ce 201static void delete_flow__(struct rule *, struct ofopgroup *);
7ee20df1 202static bool handle_openflow(struct ofconn *, struct ofpbuf *);
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203static enum ofperr handle_flow_mod__(struct ofproto *, struct ofconn *,
204 const struct ofputil_flow_mod *,
d0918789 205 const struct ofp_header *);
f29152ca 206
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207/* ofproto. */
208static uint64_t pick_datapath_id(const struct ofproto *);
209static uint64_t pick_fallback_dpid(void);
210static void ofproto_destroy__(struct ofproto *);
ada3428f 211static void update_mtu(struct ofproto *, struct ofport *);
f29152ca 212
d0918789 213/* unixctl. */
abe529af 214static void ofproto_unixctl_init(void);
f29152ca 215
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216/* All registered ofproto classes, in probe order. */
217static const struct ofproto_class **ofproto_classes;
218static size_t n_ofproto_classes;
219static size_t allocated_ofproto_classes;
7aa697dd 220
f797957a 221/* Map from datapath name to struct ofproto, for use by unixctl commands. */
abe529af 222static struct hmap all_ofprotos = HMAP_INITIALIZER(&all_ofprotos);
ebe482fd 223
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224/* Initial mappings of port to OpenFlow number mappings. */
225static struct shash init_ofp_ports = SHASH_INITIALIZER(&init_ofp_ports);
226
abe529af 227static struct vlog_rate_limit rl = VLOG_RATE_LIMIT_INIT(1, 5);
f29152ca 228
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229/* Must be called to initialize the ofproto library.
230 *
231 * The caller may pass in 'iface_hints', which contains an shash of
232 * "iface_hint" elements indexed by the interface's name. The provider
233 * may use these hints to describe the startup configuration in order to
234 * reinitialize its state. The caller owns the provided data, so a
235 * provider will make copies of anything required. An ofproto provider
236 * will remove any existing state that is not described by the hint, and
237 * may choose to remove it all. */
238void
239ofproto_init(const struct shash *iface_hints)
abe529af 240{
e1b1d06a 241 struct shash_node *node;
b0408fca 242 size_t i;
f29152ca 243
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244 ofproto_class_register(&ofproto_dpif_class);
245
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246 /* Make a local copy, since we don't own 'iface_hints' elements. */
247 SHASH_FOR_EACH(node, iface_hints) {
248 const struct iface_hint *orig_hint = node->data;
249 struct iface_hint *new_hint = xmalloc(sizeof *new_hint);
250 const char *br_type = ofproto_normalize_type(orig_hint->br_type);
251
252 new_hint->br_name = xstrdup(orig_hint->br_name);
253 new_hint->br_type = xstrdup(br_type);
254 new_hint->ofp_port = orig_hint->ofp_port;
255
256 shash_add(&init_ofp_ports, node->name, new_hint);
257 }
258
b0408fca 259 for (i = 0; i < n_ofproto_classes; i++) {
e1b1d06a 260 ofproto_classes[i]->init(&init_ofp_ports);
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261 }
262}
f29152ca 263
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264/* 'type' should be a normalized datapath type, as returned by
265 * ofproto_normalize_type(). Returns the corresponding ofproto_class
266 * structure, or a null pointer if there is none registered for 'type'. */
267static const struct ofproto_class *
268ofproto_class_find__(const char *type)
269{
270 size_t i;
f29152ca 271
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272 for (i = 0; i < n_ofproto_classes; i++) {
273 const struct ofproto_class *class = ofproto_classes[i];
274 struct sset types;
275 bool found;
064af421 276
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277 sset_init(&types);
278 class->enumerate_types(&types);
279 found = sset_contains(&types, type);
280 sset_destroy(&types);
bcf84111 281
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282 if (found) {
283 return class;
284 }
285 }
286 VLOG_WARN("unknown datapath type %s", type);
287 return NULL;
288}
064af421 289
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290/* Registers a new ofproto class. After successful registration, new ofprotos
291 * of that type can be created using ofproto_create(). */
292int
293ofproto_class_register(const struct ofproto_class *new_class)
294{
295 size_t i;
7aa697dd 296
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297 for (i = 0; i < n_ofproto_classes; i++) {
298 if (ofproto_classes[i] == new_class) {
299 return EEXIST;
300 }
301 }
064af421 302
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303 if (n_ofproto_classes >= allocated_ofproto_classes) {
304 ofproto_classes = x2nrealloc(ofproto_classes,
305 &allocated_ofproto_classes,
306 sizeof *ofproto_classes);
307 }
308 ofproto_classes[n_ofproto_classes++] = new_class;
309 return 0;
310}
064af421 311
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312/* Unregisters a datapath provider. 'type' must have been previously
313 * registered and not currently be in use by any ofprotos. After
314 * unregistration new datapaths of that type cannot be opened using
315 * ofproto_create(). */
316int
317ofproto_class_unregister(const struct ofproto_class *class)
318{
319 size_t i;
76ce9432 320
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321 for (i = 0; i < n_ofproto_classes; i++) {
322 if (ofproto_classes[i] == class) {
323 for (i++; i < n_ofproto_classes; i++) {
324 ofproto_classes[i - 1] = ofproto_classes[i];
325 }
326 n_ofproto_classes--;
327 return 0;
328 }
329 }
330 VLOG_WARN("attempted to unregister an ofproto class that is not "
331 "registered");
332 return EAFNOSUPPORT;
333}
4a4cdb3b 334
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335/* Clears 'types' and enumerates all registered ofproto types into it. The
336 * caller must first initialize the sset. */
337void
338ofproto_enumerate_types(struct sset *types)
339{
abe529af 340 size_t i;
064af421 341
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342 for (i = 0; i < n_ofproto_classes; i++) {
343 ofproto_classes[i]->enumerate_types(types);
344 }
f79e673f 345}
064af421 346
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347/* Returns the fully spelled out name for the given ofproto 'type'.
348 *
349 * Normalized type string can be compared with strcmp(). Unnormalized type
350 * string might be the same even if they have different spellings. */
351const char *
352ofproto_normalize_type(const char *type)
353{
abe529af 354 return type && type[0] ? type : "system";
f79e673f 355}
064af421 356
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357/* Clears 'names' and enumerates the names of all known created ofprotos with
358 * the given 'type'. The caller must first initialize the sset. Returns 0 if
359 * successful, otherwise a positive errno value.
360 *
361 * Some kinds of datapaths might not be practically enumerable. This is not
362 * considered an error. */
363int
364ofproto_enumerate_names(const char *type, struct sset *names)
365{
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366 const struct ofproto_class *class = ofproto_class_find__(type);
367 return class ? class->enumerate_names(type, names) : EAFNOSUPPORT;
368 }
7aa697dd 369
064af421 370int
abe529af 371ofproto_create(const char *datapath_name, const char *datapath_type,
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372 struct ofproto **ofprotop)
373{
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374 const struct ofproto_class *class;
375 struct ofproto *ofproto;
064af421 376 int error;
c2f0373a 377 int i;
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378
379 *ofprotop = NULL;
380
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381 ofproto_unixctl_init();
382
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383 datapath_type = ofproto_normalize_type(datapath_type);
384 class = ofproto_class_find__(datapath_type);
385 if (!class) {
386 VLOG_WARN("could not create datapath %s of unknown type %s",
387 datapath_name, datapath_type);
388 return EAFNOSUPPORT;
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389 }
390
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391 ofproto = class->alloc();
392 if (!ofproto) {
393 VLOG_ERR("failed to allocate datapath %s of type %s",
394 datapath_name, datapath_type);
395 return ENOMEM;
396 }
397
398 /* Initialize. */
399 memset(ofproto, 0, sizeof *ofproto);
400 ofproto->ofproto_class = class;
401 ofproto->name = xstrdup(datapath_name);
402 ofproto->type = xstrdup(datapath_type);
403 hmap_insert(&all_ofprotos, &ofproto->hmap_node,
404 hash_string(ofproto->name, 0));
405 ofproto->datapath_id = 0;
084f5290 406 ofproto_set_flow_eviction_threshold(ofproto,
9cac5195 407 OFPROTO_FLOW_EVICTION_THRESHOLD_DEFAULT);
8402c74b 408 ofproto->forward_bpdu = false;
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409 ofproto->fallback_dpid = pick_fallback_dpid();
410 ofproto->mfr_desc = xstrdup(DEFAULT_MFR_DESC);
411 ofproto->hw_desc = xstrdup(DEFAULT_HW_DESC);
412 ofproto->sw_desc = xstrdup(DEFAULT_SW_DESC);
413 ofproto->serial_desc = xstrdup(DEFAULT_SERIAL_DESC);
414 ofproto->dp_desc = xstrdup(DEFAULT_DP_DESC);
7257b535 415 ofproto->frag_handling = OFPC_FRAG_NORMAL;
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416 hmap_init(&ofproto->ports);
417 shash_init(&ofproto->port_by_name);
e1b1d06a 418 simap_init(&ofproto->ofp_requests);
91858960 419 ofproto->max_ports = OFPP_MAX;
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420 ofproto->tables = NULL;
421 ofproto->n_tables = 0;
abe529af 422 ofproto->connmgr = connmgr_create(ofproto, datapath_name, datapath_name);
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423 ofproto->state = S_OPENFLOW;
424 list_init(&ofproto->pending);
dd5616b3 425 ofproto->n_pending = 0;
7ee20df1 426 hmap_init(&ofproto->deletions);
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427 ofproto->n_add = ofproto->n_delete = ofproto->n_modify = 0;
428 ofproto->first_op = ofproto->last_op = LLONG_MIN;
429 ofproto->next_op_report = LLONG_MAX;
430 ofproto->op_backoff = LLONG_MIN;
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431 ofproto->vlan_bitmap = NULL;
432 ofproto->vlans_changed = false;
ada3428f 433 ofproto->min_mtu = INT_MAX;
abe529af 434
0f5f95a9 435 error = ofproto->ofproto_class->construct(ofproto);
19a87e36 436 if (error) {
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437 VLOG_ERR("failed to open datapath %s: %s",
438 datapath_name, strerror(error));
439 ofproto_destroy__(ofproto);
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440 return error;
441 }
073e2a6f 442
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443 /* The "max_ports" member should have been set by ->construct(ofproto).
444 * Port 0 is not a valid OpenFlow port, so mark that as unavailable. */
445 ofproto->ofp_port_ids = bitmap_allocate(ofproto->max_ports);
446 bitmap_set1(ofproto->ofp_port_ids, 0);
447
c2f0373a 448 /* Check that hidden tables, if any, are at the end. */
0f5f95a9 449 assert(ofproto->n_tables);
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450 for (i = 0; i + 1 < ofproto->n_tables; i++) {
451 enum oftable_flags flags = ofproto->tables[i].flags;
452 enum oftable_flags next_flags = ofproto->tables[i + 1].flags;
453
454 assert(!(flags & OFTABLE_HIDDEN) || next_flags & OFTABLE_HIDDEN);
455 }
19a87e36 456
abe529af 457 ofproto->datapath_id = pick_datapath_id(ofproto);
abe529af 458 init_ports(ofproto);
7aa697dd 459
abe529af 460 *ofprotop = ofproto;
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461 return 0;
462}
463
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464/* Must be called (only) by an ofproto implementation in its constructor
465 * function. See the large comment on 'construct' in struct ofproto_class for
466 * details. */
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467void
468ofproto_init_tables(struct ofproto *ofproto, int n_tables)
469{
470 struct oftable *table;
471
472 assert(!ofproto->n_tables);
473 assert(n_tables >= 1 && n_tables <= 255);
474
475 ofproto->n_tables = n_tables;
476 ofproto->tables = xmalloc(n_tables * sizeof *ofproto->tables);
477 OFPROTO_FOR_EACH_TABLE (table, ofproto) {
478 oftable_init(table);
479 }
480}
481
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482/* To be optionally called (only) by an ofproto implementation in its
483 * constructor function. See the large comment on 'construct' in struct
484 * ofproto_class for details.
485 *
486 * Sets the maximum number of ports to 'max_ports'. The ofproto generic layer
487 * will then ensure that actions passed into the ofproto implementation will
488 * not refer to OpenFlow ports numbered 'max_ports' or higher. If this
489 * function is not called, there will be no such restriction.
490 *
491 * Reserved ports numbered OFPP_MAX and higher are special and not subject to
492 * the 'max_ports' restriction. */
493void
494ofproto_init_max_ports(struct ofproto *ofproto, uint16_t max_ports)
495{
496 assert(max_ports <= OFPP_MAX);
497 ofproto->max_ports = max_ports;
498}
499
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500uint64_t
501ofproto_get_datapath_id(const struct ofproto *ofproto)
502{
503 return ofproto->datapath_id;
504}
505
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506void
507ofproto_set_datapath_id(struct ofproto *p, uint64_t datapath_id)
508{
509 uint64_t old_dpid = p->datapath_id;
fa60c019 510 p->datapath_id = datapath_id ? datapath_id : pick_datapath_id(p);
064af421 511 if (p->datapath_id != old_dpid) {
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512 /* Force all active connections to reconnect, since there is no way to
513 * notify a controller that the datapath ID has changed. */
fa05809b 514 ofproto_reconnect_controllers(p);
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515 }
516}
517
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518void
519ofproto_set_controllers(struct ofproto *p,
520 const struct ofproto_controller *controllers,
1d9ffc17 521 size_t n_controllers, uint32_t allowed_versions)
76ce9432 522{
1d9ffc17
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523 connmgr_set_controllers(p->connmgr, controllers, n_controllers,
524 allowed_versions);
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525}
526
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527void
528ofproto_set_fail_mode(struct ofproto *p, enum ofproto_fail_mode fail_mode)
529{
19a87e36 530 connmgr_set_fail_mode(p->connmgr, fail_mode);
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531}
532
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533/* Drops the connections between 'ofproto' and all of its controllers, forcing
534 * them to reconnect. */
535void
536ofproto_reconnect_controllers(struct ofproto *ofproto)
537{
19a87e36 538 connmgr_reconnect(ofproto->connmgr);
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539}
540
541/* Sets the 'n' TCP port addresses in 'extras' as ones to which 'ofproto''s
542 * in-band control should guarantee access, in the same way that in-band
543 * control guarantees access to OpenFlow controllers. */
544void
545ofproto_set_extra_in_band_remotes(struct ofproto *ofproto,
546 const struct sockaddr_in *extras, size_t n)
547{
19a87e36 548 connmgr_set_extra_in_band_remotes(ofproto->connmgr, extras, n);
917e50e1
BP
549}
550
b1da6250
BP
551/* Sets the OpenFlow queue used by flows set up by in-band control on
552 * 'ofproto' to 'queue_id'. If 'queue_id' is negative, then in-band control
553 * flows will use the default queue. */
554void
555ofproto_set_in_band_queue(struct ofproto *ofproto, int queue_id)
556{
19a87e36 557 connmgr_set_in_band_queue(ofproto->connmgr, queue_id);
b1da6250
BP
558}
559
084f5290
SH
560/* Sets the number of flows at which eviction from the kernel flow table
561 * will occur. */
562void
563ofproto_set_flow_eviction_threshold(struct ofproto *ofproto, unsigned threshold)
564{
565 if (threshold < OFPROTO_FLOW_EVICTION_THRESHOLD_MIN) {
566 ofproto->flow_eviction_threshold = OFPROTO_FLOW_EVICTION_THRESHOLD_MIN;
567 } else {
568 ofproto->flow_eviction_threshold = threshold;
569 }
570}
571
b53055f4 572/* If forward_bpdu is true, the NORMAL action will forward frames with
8402c74b
SS
573 * reserved (e.g. STP) destination Ethernet addresses. if forward_bpdu is false,
574 * the NORMAL action will drop these frames. */
575void
576ofproto_set_forward_bpdu(struct ofproto *ofproto, bool forward_bpdu)
577{
578 bool old_val = ofproto->forward_bpdu;
579 ofproto->forward_bpdu = forward_bpdu;
580 if (old_val != ofproto->forward_bpdu) {
581 if (ofproto->ofproto_class->forward_bpdu_changed) {
582 ofproto->ofproto_class->forward_bpdu_changed(ofproto);
583 }
b53055f4 584 }
8402c74b
SS
585}
586
e764773c
BP
587/* Sets the MAC aging timeout for the OFPP_NORMAL action on 'ofproto' to
588 * 'idle_time', in seconds. */
589void
590ofproto_set_mac_idle_time(struct ofproto *ofproto, unsigned idle_time)
591{
592 if (ofproto->ofproto_class->set_mac_idle_time) {
593 ofproto->ofproto_class->set_mac_idle_time(ofproto, idle_time);
594 }
595}
596
064af421
BP
597void
598ofproto_set_desc(struct ofproto *p,
5a719c38
JP
599 const char *mfr_desc, const char *hw_desc,
600 const char *sw_desc, const char *serial_desc,
8abc4ed7 601 const char *dp_desc)
064af421 602{
5a719c38
JP
603 struct ofp_desc_stats *ods;
604
605 if (mfr_desc) {
606 if (strlen(mfr_desc) >= sizeof ods->mfr_desc) {
fbfa2911
BP
607 VLOG_WARN("%s: truncating mfr_desc, must be less than %zu bytes",
608 p->name, sizeof ods->mfr_desc);
5a719c38
JP
609 }
610 free(p->mfr_desc);
611 p->mfr_desc = xstrdup(mfr_desc);
064af421 612 }
5a719c38
JP
613 if (hw_desc) {
614 if (strlen(hw_desc) >= sizeof ods->hw_desc) {
fbfa2911
BP
615 VLOG_WARN("%s: truncating hw_desc, must be less than %zu bytes",
616 p->name, sizeof ods->hw_desc);
5a719c38
JP
617 }
618 free(p->hw_desc);
619 p->hw_desc = xstrdup(hw_desc);
064af421 620 }
5a719c38
JP
621 if (sw_desc) {
622 if (strlen(sw_desc) >= sizeof ods->sw_desc) {
fbfa2911
BP
623 VLOG_WARN("%s: truncating sw_desc, must be less than %zu bytes",
624 p->name, sizeof ods->sw_desc);
5a719c38
JP
625 }
626 free(p->sw_desc);
627 p->sw_desc = xstrdup(sw_desc);
628 }
629 if (serial_desc) {
630 if (strlen(serial_desc) >= sizeof ods->serial_num) {
fbfa2911
BP
631 VLOG_WARN("%s: truncating serial_desc, must be less than %zu "
632 "bytes", p->name, sizeof ods->serial_num);
5a719c38
JP
633 }
634 free(p->serial_desc);
635 p->serial_desc = xstrdup(serial_desc);
064af421 636 }
8abc4ed7 637 if (dp_desc) {
5a719c38 638 if (strlen(dp_desc) >= sizeof ods->dp_desc) {
fbfa2911
BP
639 VLOG_WARN("%s: truncating dp_desc, must be less than %zu bytes",
640 p->name, sizeof ods->dp_desc);
5a719c38 641 }
8abc4ed7
JP
642 free(p->dp_desc);
643 p->dp_desc = xstrdup(dp_desc);
644 }
064af421
BP
645}
646
064af421 647int
81e2083f 648ofproto_set_snoops(struct ofproto *ofproto, const struct sset *snoops)
064af421 649{
19a87e36 650 return connmgr_set_snoops(ofproto->connmgr, snoops);
064af421
BP
651}
652
653int
0193b2af
JG
654ofproto_set_netflow(struct ofproto *ofproto,
655 const struct netflow_options *nf_options)
064af421 656{
abe529af
BP
657 if (nf_options && sset_is_empty(&nf_options->collectors)) {
658 nf_options = NULL;
659 }
660
661 if (ofproto->ofproto_class->set_netflow) {
662 return ofproto->ofproto_class->set_netflow(ofproto, nf_options);
064af421 663 } else {
abe529af 664 return nf_options ? EOPNOTSUPP : 0;
064af421
BP
665 }
666}
667
abe529af 668int
72b06300
BP
669ofproto_set_sflow(struct ofproto *ofproto,
670 const struct ofproto_sflow_options *oso)
671{
abe529af
BP
672 if (oso && sset_is_empty(&oso->targets)) {
673 oso = NULL;
674 }
72b06300 675
abe529af
BP
676 if (ofproto->ofproto_class->set_sflow) {
677 return ofproto->ofproto_class->set_sflow(ofproto, oso);
72b06300 678 } else {
abe529af 679 return oso ? EOPNOTSUPP : 0;
72b06300
BP
680 }
681}
e7934396 682\f
21f7563c
JP
683/* Spanning Tree Protocol (STP) configuration. */
684
685/* Configures STP on 'ofproto' using the settings defined in 's'. If
686 * 's' is NULL, disables STP.
687 *
688 * Returns 0 if successful, otherwise a positive errno value. */
689int
690ofproto_set_stp(struct ofproto *ofproto,
691 const struct ofproto_stp_settings *s)
692{
693 return (ofproto->ofproto_class->set_stp
694 ? ofproto->ofproto_class->set_stp(ofproto, s)
695 : EOPNOTSUPP);
696}
697
698/* Retrieves STP status of 'ofproto' and stores it in 's'. If the
699 * 'enabled' member of 's' is false, then the other members are not
700 * meaningful.
701 *
702 * Returns 0 if successful, otherwise a positive errno value. */
703int
704ofproto_get_stp_status(struct ofproto *ofproto,
705 struct ofproto_stp_status *s)
706{
707 return (ofproto->ofproto_class->get_stp_status
708 ? ofproto->ofproto_class->get_stp_status(ofproto, s)
709 : EOPNOTSUPP);
710}
711
712/* Configures STP on 'ofp_port' of 'ofproto' using the settings defined
713 * in 's'. The caller is responsible for assigning STP port numbers
714 * (using the 'port_num' member in the range of 1 through 255, inclusive)
715 * and ensuring there are no duplicates. If the 's' is NULL, then STP
716 * is disabled on the port.
717 *
718 * Returns 0 if successful, otherwise a positive errno value.*/
719int
720ofproto_port_set_stp(struct ofproto *ofproto, uint16_t ofp_port,
721 const struct ofproto_port_stp_settings *s)
722{
723 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
724 if (!ofport) {
725 VLOG_WARN("%s: cannot configure STP on nonexistent port %"PRIu16,
726 ofproto->name, ofp_port);
727 return ENODEV;
728 }
729
730 return (ofproto->ofproto_class->set_stp_port
731 ? ofproto->ofproto_class->set_stp_port(ofport, s)
732 : EOPNOTSUPP);
733}
734
735/* Retrieves STP port status of 'ofp_port' on 'ofproto' and stores it in
736 * 's'. If the 'enabled' member in 's' is false, then the other members
737 * are not meaningful.
738 *
739 * Returns 0 if successful, otherwise a positive errno value.*/
740int
741ofproto_port_get_stp_status(struct ofproto *ofproto, uint16_t ofp_port,
742 struct ofproto_port_stp_status *s)
743{
744 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
745 if (!ofport) {
b0a5c43b
JP
746 VLOG_WARN_RL(&rl, "%s: cannot get STP status on nonexistent "
747 "port %"PRIu16, ofproto->name, ofp_port);
21f7563c
JP
748 return ENODEV;
749 }
750
751 return (ofproto->ofproto_class->get_stp_port_status
752 ? ofproto->ofproto_class->get_stp_port_status(ofport, s)
753 : EOPNOTSUPP);
754}
755\f
8b36f51e
EJ
756/* Queue DSCP configuration. */
757
758/* Registers meta-data associated with the 'n_qdscp' Qualities of Service
759 * 'queues' attached to 'ofport'. This data is not intended to be sufficient
760 * to implement QoS. Instead, it is used to implement features which require
761 * knowledge of what queues exist on a port, and some basic information about
762 * them.
763 *
764 * Returns 0 if successful, otherwise a positive errno value. */
765int
766ofproto_port_set_queues(struct ofproto *ofproto, uint16_t ofp_port,
767 const struct ofproto_port_queue *queues,
768 size_t n_queues)
769{
770 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
771
772 if (!ofport) {
773 VLOG_WARN("%s: cannot set queues on nonexistent port %"PRIu16,
774 ofproto->name, ofp_port);
775 return ENODEV;
776 }
777
778 return (ofproto->ofproto_class->set_queues
779 ? ofproto->ofproto_class->set_queues(ofport, queues, n_queues)
780 : EOPNOTSUPP);
781}
782\f
e7934396
BP
783/* Connectivity Fault Management configuration. */
784
892815f5 785/* Clears the CFM configuration from 'ofp_port' on 'ofproto'. */
e7934396 786void
892815f5 787ofproto_port_clear_cfm(struct ofproto *ofproto, uint16_t ofp_port)
e7934396 788{
abe529af
BP
789 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
790 if (ofport && ofproto->ofproto_class->set_cfm) {
a5610457 791 ofproto->ofproto_class->set_cfm(ofport, NULL);
e7934396
BP
792 }
793}
72b06300 794
892815f5 795/* Configures connectivity fault management on 'ofp_port' in 'ofproto'. Takes
93b8df38
EJ
796 * basic configuration from the configuration members in 'cfm', and the remote
797 * maintenance point ID from remote_mpid. Ignores the statistics members of
798 * 'cfm'.
e7934396 799 *
892815f5 800 * This function has no effect if 'ofproto' does not have a port 'ofp_port'. */
e7934396 801void
892815f5 802ofproto_port_set_cfm(struct ofproto *ofproto, uint16_t ofp_port,
a5610457 803 const struct cfm_settings *s)
e7934396
BP
804{
805 struct ofport *ofport;
abe529af 806 int error;
e7934396 807
abe529af 808 ofport = ofproto_get_port(ofproto, ofp_port);
e7934396 809 if (!ofport) {
892815f5
BP
810 VLOG_WARN("%s: cannot configure CFM on nonexistent port %"PRIu16,
811 ofproto->name, ofp_port);
e7934396
BP
812 return;
813 }
814
93b8df38
EJ
815 /* XXX: For configuration simplicity, we only support one remote_mpid
816 * outside of the CFM module. It's not clear if this is the correct long
817 * term solution or not. */
abe529af 818 error = (ofproto->ofproto_class->set_cfm
a5610457 819 ? ofproto->ofproto_class->set_cfm(ofport, s)
abe529af
BP
820 : EOPNOTSUPP);
821 if (error) {
822 VLOG_WARN("%s: CFM configuration on port %"PRIu16" (%s) failed (%s)",
823 ofproto->name, ofp_port, netdev_get_name(ofport->netdev),
824 strerror(error));
e7934396 825 }
e7934396 826}
e7934396 827
fa066f01
BP
828/* Checks the status of LACP negotiation for 'ofp_port' within ofproto.
829 * Returns 1 if LACP partner information for 'ofp_port' is up-to-date,
830 * 0 if LACP partner information is not current (generally indicating a
831 * connectivity problem), or -1 if LACP is not enabled on 'ofp_port'. */
832int
833ofproto_port_is_lacp_current(struct ofproto *ofproto, uint16_t ofp_port)
834{
abe529af
BP
835 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
836 return (ofport && ofproto->ofproto_class->port_is_lacp_current
837 ? ofproto->ofproto_class->port_is_lacp_current(ofport)
fa066f01 838 : -1);
e7934396 839}
e7934396 840\f
fa066f01 841/* Bundles. */
e7934396 842
abe529af
BP
843/* Registers a "bundle" associated with client data pointer 'aux' in 'ofproto'.
844 * A bundle is the same concept as a Port in OVSDB, that is, it consists of one
845 * or more "slave" devices (Interfaces, in OVSDB) along with a VLAN
846 * configuration plus, if there is more than one slave, a bonding
847 * configuration.
848 *
849 * If 'aux' is already registered then this function updates its configuration
850 * to 's'. Otherwise, this function registers a new bundle.
851 *
852 * Bundles only affect the NXAST_AUTOPATH action and output to the OFPP_NORMAL
853 * port. */
854int
855ofproto_bundle_register(struct ofproto *ofproto, void *aux,
856 const struct ofproto_bundle_settings *s)
fa066f01 857{
abe529af
BP
858 return (ofproto->ofproto_class->bundle_set
859 ? ofproto->ofproto_class->bundle_set(ofproto, aux, s)
860 : EOPNOTSUPP);
fa066f01
BP
861}
862
abe529af
BP
863/* Unregisters the bundle registered on 'ofproto' with auxiliary data 'aux'.
864 * If no such bundle has been registered, this has no effect. */
865int
866ofproto_bundle_unregister(struct ofproto *ofproto, void *aux)
e7934396 867{
abe529af 868 return ofproto_bundle_register(ofproto, aux, NULL);
e7934396 869}
fa066f01 870
e7934396 871\f
abe529af
BP
872/* Registers a mirror associated with client data pointer 'aux' in 'ofproto'.
873 * If 'aux' is already registered then this function updates its configuration
c06bba01 874 * to 's'. Otherwise, this function registers a new mirror. */
abe529af
BP
875int
876ofproto_mirror_register(struct ofproto *ofproto, void *aux,
877 const struct ofproto_mirror_settings *s)
064af421 878{
abe529af
BP
879 return (ofproto->ofproto_class->mirror_set
880 ? ofproto->ofproto_class->mirror_set(ofproto, aux, s)
881 : EOPNOTSUPP);
064af421
BP
882}
883
abe529af
BP
884/* Unregisters the mirror registered on 'ofproto' with auxiliary data 'aux'.
885 * If no mirror has been registered, this has no effect. */
886int
887ofproto_mirror_unregister(struct ofproto *ofproto, void *aux)
064af421 888{
abe529af 889 return ofproto_mirror_register(ofproto, aux, NULL);
064af421
BP
890}
891
9d24de3b
JP
892/* Retrieves statistics from mirror associated with client data pointer
893 * 'aux' in 'ofproto'. Stores packet and byte counts in 'packets' and
894 * 'bytes', respectively. If a particular counters is not supported,
895 * the appropriate argument is set to UINT64_MAX. */
896int
897ofproto_mirror_get_stats(struct ofproto *ofproto, void *aux,
898 uint64_t *packets, uint64_t *bytes)
899{
900 if (!ofproto->ofproto_class->mirror_get_stats) {
901 *packets = *bytes = UINT64_MAX;
902 return EOPNOTSUPP;
903 }
904
905 return ofproto->ofproto_class->mirror_get_stats(ofproto, aux,
906 packets, bytes);
907}
908
abe529af
BP
909/* Configures the VLANs whose bits are set to 1 in 'flood_vlans' as VLANs on
910 * which all packets are flooded, instead of using MAC learning. If
911 * 'flood_vlans' is NULL, then MAC learning applies to all VLANs.
912 *
913 * Flood VLANs affect only the treatment of packets output to the OFPP_NORMAL
914 * port. */
915int
916ofproto_set_flood_vlans(struct ofproto *ofproto, unsigned long *flood_vlans)
abdfe474 917{
abe529af
BP
918 return (ofproto->ofproto_class->set_flood_vlans
919 ? ofproto->ofproto_class->set_flood_vlans(ofproto, flood_vlans)
920 : EOPNOTSUPP);
abdfe474
JP
921}
922
abe529af
BP
923/* Returns true if 'aux' is a registered bundle that is currently in use as the
924 * output for a mirror. */
925bool
b4affc74 926ofproto_is_mirror_output_bundle(const struct ofproto *ofproto, void *aux)
abe529af
BP
927{
928 return (ofproto->ofproto_class->is_mirror_output_bundle
929 ? ofproto->ofproto_class->is_mirror_output_bundle(ofproto, aux)
930 : false);
931}
932\f
254750ce
BP
933/* Configuration of OpenFlow tables. */
934
935/* Returns the number of OpenFlow tables in 'ofproto'. */
936int
937ofproto_get_n_tables(const struct ofproto *ofproto)
938{
939 return ofproto->n_tables;
940}
941
942/* Configures the OpenFlow table in 'ofproto' with id 'table_id' with the
943 * settings from 's'. 'table_id' must be in the range 0 through the number of
944 * OpenFlow tables in 'ofproto' minus 1, inclusive.
945 *
946 * For read-only tables, only the name may be configured. */
947void
948ofproto_configure_table(struct ofproto *ofproto, int table_id,
949 const struct ofproto_table_settings *s)
950{
951 struct oftable *table;
952
953 assert(table_id >= 0 && table_id < ofproto->n_tables);
954 table = &ofproto->tables[table_id];
955
956 oftable_set_name(table, s->name);
957
958 if (table->flags & OFTABLE_READONLY) {
959 return;
960 }
961
962 if (s->groups) {
963 oftable_enable_eviction(table, s->groups, s->n_groups);
964 } else {
965 oftable_disable_eviction(table);
966 }
967
968 table->max_flows = s->max_flows;
969 if (classifier_count(&table->cls) > table->max_flows
970 && table->eviction_fields) {
971 /* 'table' contains more flows than allowed. We might not be able to
972 * evict them right away because of the asynchronous nature of flow
973 * table changes. Schedule eviction for later. */
974 switch (ofproto->state) {
975 case S_OPENFLOW:
976 ofproto->state = S_EVICT;
977 break;
978 case S_EVICT:
979 case S_FLUSH:
980 /* We're already deleting flows, nothing more to do. */
981 break;
982 }
983 }
984}
985\f
81e2083f
BP
986bool
987ofproto_has_snoops(const struct ofproto *ofproto)
988{
989 return connmgr_has_snoops(ofproto->connmgr);
990}
991
064af421 992void
81e2083f 993ofproto_get_snoops(const struct ofproto *ofproto, struct sset *snoops)
064af421 994{
19a87e36 995 connmgr_get_snoops(ofproto->connmgr, snoops);
064af421
BP
996}
997
7ee20df1
BP
998static void
999ofproto_flush__(struct ofproto *ofproto)
1000{
7ee20df1 1001 struct ofopgroup *group;
d0918789 1002 struct oftable *table;
7ee20df1
BP
1003
1004 if (ofproto->ofproto_class->flush) {
1005 ofproto->ofproto_class->flush(ofproto);
1006 }
1007
7024dffe 1008 group = ofopgroup_create_unattached(ofproto);
b772ded8 1009 OFPROTO_FOR_EACH_TABLE (table, ofproto) {
7ee20df1
BP
1010 struct rule *rule, *next_rule;
1011 struct cls_cursor cursor;
1012
5c67e4af
BP
1013 if (table->flags & OFTABLE_HIDDEN) {
1014 continue;
1015 }
1016
d0918789 1017 cls_cursor_init(&cursor, &table->cls, NULL);
7ee20df1
BP
1018 CLS_CURSOR_FOR_EACH_SAFE (rule, next_rule, cr, &cursor) {
1019 if (!rule->pending) {
2b07c8b1
BP
1020 ofoperation_create(group, rule, OFOPERATION_DELETE,
1021 OFPRR_DELETE);
d0918789 1022 oftable_remove_rule(rule);
7ee20df1
BP
1023 ofproto->ofproto_class->rule_destruct(rule);
1024 }
1025 }
1026 }
1027 ofopgroup_submit(group);
1028}
1029
abe529af
BP
1030static void
1031ofproto_destroy__(struct ofproto *ofproto)
1032{
d0918789 1033 struct oftable *table;
6c1491fb 1034
7ee20df1 1035 assert(list_is_empty(&ofproto->pending));
dd5616b3 1036 assert(!ofproto->n_pending);
7ee20df1 1037
abe529af 1038 connmgr_destroy(ofproto->connmgr);
fa066f01 1039
abe529af
BP
1040 hmap_remove(&all_ofprotos, &ofproto->hmap_node);
1041 free(ofproto->name);
955a7127 1042 free(ofproto->type);
abe529af
BP
1043 free(ofproto->mfr_desc);
1044 free(ofproto->hw_desc);
1045 free(ofproto->sw_desc);
1046 free(ofproto->serial_desc);
1047 free(ofproto->dp_desc);
abe529af
BP
1048 hmap_destroy(&ofproto->ports);
1049 shash_destroy(&ofproto->port_by_name);
e1b1d06a
JP
1050 bitmap_free(ofproto->ofp_port_ids);
1051 simap_destroy(&ofproto->ofp_requests);
6c1491fb 1052
b772ded8 1053 OFPROTO_FOR_EACH_TABLE (table, ofproto) {
d0918789 1054 oftable_destroy(table);
6c1491fb
BP
1055 }
1056 free(ofproto->tables);
fa066f01 1057
7ee20df1
BP
1058 hmap_destroy(&ofproto->deletions);
1059
52a90c29
BP
1060 free(ofproto->vlan_bitmap);
1061
abe529af
BP
1062 ofproto->ofproto_class->dealloc(ofproto);
1063}
fa066f01 1064
064af421
BP
1065void
1066ofproto_destroy(struct ofproto *p)
1067{
ca0f572c 1068 struct ofport *ofport, *next_ofport;
064af421
BP
1069
1070 if (!p) {
1071 return;
1072 }
1073
7ee20df1 1074 ofproto_flush__(p);
4e8e4213 1075 HMAP_FOR_EACH_SAFE (ofport, next_ofport, hmap_node, &p->ports) {
abe529af 1076 ofport_destroy(ofport);
064af421 1077 }
064af421 1078
abe529af
BP
1079 p->ofproto_class->destruct(p);
1080 ofproto_destroy__(p);
064af421
BP
1081}
1082
abe529af
BP
1083/* Destroys the datapath with the respective 'name' and 'type'. With the Linux
1084 * kernel datapath, for example, this destroys the datapath in the kernel, and
1085 * with the netdev-based datapath, it tears down the data structures that
1086 * represent the datapath.
1087 *
1088 * The datapath should not be currently open as an ofproto. */
064af421 1089int
abe529af 1090ofproto_delete(const char *name, const char *type)
064af421 1091{
abe529af
BP
1092 const struct ofproto_class *class = ofproto_class_find__(type);
1093 return (!class ? EAFNOSUPPORT
1094 : !class->del ? EACCES
1095 : class->del(type, name));
064af421
BP
1096}
1097
e9e28be3
BP
1098static void
1099process_port_change(struct ofproto *ofproto, int error, char *devname)
1100{
1101 if (error == ENOBUFS) {
1102 reinit_ports(ofproto);
1103 } else if (!error) {
1104 update_port(ofproto, devname);
1105 free(devname);
1106 }
1107}
1108
11a574a7
JP
1109int
1110ofproto_type_run(const char *datapath_type)
1111{
1112 const struct ofproto_class *class;
1113 int error;
1114
1115 datapath_type = ofproto_normalize_type(datapath_type);
1116 class = ofproto_class_find__(datapath_type);
1117
1118 error = class->type_run ? class->type_run(datapath_type) : 0;
1119 if (error && error != EAGAIN) {
1120 VLOG_ERR_RL(&rl, "%s: type_run failed (%s)",
1121 datapath_type, strerror(error));
1122 }
1123 return error;
1124}
1125
1126int
1127ofproto_type_run_fast(const char *datapath_type)
1128{
1129 const struct ofproto_class *class;
1130 int error;
1131
1132 datapath_type = ofproto_normalize_type(datapath_type);
1133 class = ofproto_class_find__(datapath_type);
1134
1135 error = class->type_run_fast ? class->type_run_fast(datapath_type) : 0;
1136 if (error && error != EAGAIN) {
1137 VLOG_ERR_RL(&rl, "%s: type_run_fast failed (%s)",
1138 datapath_type, strerror(error));
1139 }
1140 return error;
1141}
1142
1143void
1144ofproto_type_wait(const char *datapath_type)
1145{
1146 const struct ofproto_class *class;
1147
1148 datapath_type = ofproto_normalize_type(datapath_type);
1149 class = ofproto_class_find__(datapath_type);
1150
1151 if (class->type_wait) {
1152 class->type_wait(datapath_type);
1153 }
1154}
1155
064af421 1156int
abe529af 1157ofproto_run(struct ofproto *p)
064af421 1158{
7436ed80
BP
1159 struct sset changed_netdevs;
1160 const char *changed_netdev;
031d8bff 1161 struct ofport *ofport;
064af421 1162 int error;
064af421 1163
abe529af 1164 error = p->ofproto_class->run(p);
5fcc0d00
BP
1165 if (error && error != EAGAIN) {
1166 VLOG_ERR_RL(&rl, "%s: run failed (%s)", p->name, strerror(error));
149f577a
JG
1167 }
1168
5bf0e941 1169 if (p->ofproto_class->port_poll) {
7436ed80
BP
1170 char *devname;
1171
5bf0e941
BP
1172 while ((error = p->ofproto_class->port_poll(p, &devname)) != EAGAIN) {
1173 process_port_change(p, error, devname);
064af421 1174 }
e9e28be3 1175 }
031d8bff 1176
7436ed80
BP
1177 /* Update OpenFlow port status for any port whose netdev has changed.
1178 *
1179 * Refreshing a given 'ofport' can cause an arbitrary ofport to be
1180 * destroyed, so it's not safe to update ports directly from the
1181 * HMAP_FOR_EACH loop, or even to use HMAP_FOR_EACH_SAFE. Instead, we
1182 * need this two-phase approach. */
1183 sset_init(&changed_netdevs);
031d8bff
EJ
1184 HMAP_FOR_EACH (ofport, hmap_node, &p->ports) {
1185 unsigned int change_seq = netdev_change_seq(ofport->netdev);
1186 if (ofport->change_seq != change_seq) {
1187 ofport->change_seq = change_seq;
7436ed80 1188 sset_add(&changed_netdevs, netdev_get_name(ofport->netdev));
031d8bff 1189 }
064af421 1190 }
7436ed80
BP
1191 SSET_FOR_EACH (changed_netdev, &changed_netdevs) {
1192 update_port(p, changed_netdev);
1193 }
1194 sset_destroy(&changed_netdevs);
064af421 1195
7ee20df1
BP
1196 switch (p->state) {
1197 case S_OPENFLOW:
1198 connmgr_run(p->connmgr, handle_openflow);
1199 break;
1200
254750ce
BP
1201 case S_EVICT:
1202 connmgr_run(p->connmgr, NULL);
1203 ofproto_evict(p);
1204 if (list_is_empty(&p->pending) && hmap_is_empty(&p->deletions)) {
1205 p->state = S_OPENFLOW;
1206 }
1207 break;
1208
7ee20df1
BP
1209 case S_FLUSH:
1210 connmgr_run(p->connmgr, NULL);
1211 ofproto_flush__(p);
1212 if (list_is_empty(&p->pending) && hmap_is_empty(&p->deletions)) {
1213 connmgr_flushed(p->connmgr);
1214 p->state = S_OPENFLOW;
1215 }
1216 break;
1217
1218 default:
1219 NOT_REACHED();
1220 }
064af421 1221
a5b8d268
BP
1222 if (time_msec() >= p->next_op_report) {
1223 long long int ago = (time_msec() - p->first_op) / 1000;
1224 long long int interval = (p->last_op - p->first_op) / 1000;
1225 struct ds s;
1226
1227 ds_init(&s);
1228 ds_put_format(&s, "%d flow_mods ",
1229 p->n_add + p->n_delete + p->n_modify);
1230 if (interval == ago) {
1231 ds_put_format(&s, "in the last %lld s", ago);
1232 } else if (interval) {
1233 ds_put_format(&s, "in the %lld s starting %lld s ago",
1234 interval, ago);
1235 } else {
1236 ds_put_format(&s, "%lld s ago", ago);
1237 }
1238
1239 ds_put_cstr(&s, " (");
1240 if (p->n_add) {
1241 ds_put_format(&s, "%d adds, ", p->n_add);
1242 }
1243 if (p->n_delete) {
1244 ds_put_format(&s, "%d deletes, ", p->n_delete);
1245 }
1246 if (p->n_modify) {
1247 ds_put_format(&s, "%d modifications, ", p->n_modify);
1248 }
1249 s.length -= 2;
1250 ds_put_char(&s, ')');
1251
fbfa2911 1252 VLOG_INFO("%s: %s", p->name, ds_cstr(&s));
a5b8d268
BP
1253 ds_destroy(&s);
1254
1255 p->n_add = p->n_delete = p->n_modify = 0;
1256 p->next_op_report = LLONG_MAX;
1257 }
1258
5fcc0d00
BP
1259 return error;
1260}
1261
1262/* Performs periodic activity required by 'ofproto' that needs to be done
1263 * with the least possible latency.
1264 *
1265 * It makes sense to call this function a couple of times per poll loop, to
1266 * provide a significant performance boost on some benchmarks with the
1267 * ofproto-dpif implementation. */
1268int
1269ofproto_run_fast(struct ofproto *p)
1270{
1271 int error;
1272
1273 error = p->ofproto_class->run_fast ? p->ofproto_class->run_fast(p) : 0;
1274 if (error && error != EAGAIN) {
1275 VLOG_ERR_RL(&rl, "%s: fastpath run failed (%s)",
1276 p->name, strerror(error));
1277 }
1278 return error;
064af421
BP
1279}
1280
1281void
1282ofproto_wait(struct ofproto *p)
1283{
031d8bff
EJ
1284 struct ofport *ofport;
1285
abe529af 1286 p->ofproto_class->wait(p);
5bf0e941
BP
1287 if (p->ofproto_class->port_poll_wait) {
1288 p->ofproto_class->port_poll_wait(p);
e7934396 1289 }
031d8bff
EJ
1290
1291 HMAP_FOR_EACH (ofport, hmap_node, &p->ports) {
1292 if (ofport->change_seq != netdev_change_seq(ofport->netdev)) {
1293 poll_immediate_wake();
1294 }
1295 }
7ee20df1
BP
1296
1297 switch (p->state) {
1298 case S_OPENFLOW:
1299 connmgr_wait(p->connmgr, true);
1300 break;
1301
254750ce 1302 case S_EVICT:
7ee20df1
BP
1303 case S_FLUSH:
1304 connmgr_wait(p->connmgr, false);
1305 if (list_is_empty(&p->pending) && hmap_is_empty(&p->deletions)) {
1306 poll_immediate_wake();
1307 }
1308 break;
1309 }
064af421
BP
1310}
1311
064af421
BP
1312bool
1313ofproto_is_alive(const struct ofproto *p)
1314{
19a87e36 1315 return connmgr_has_controllers(p->connmgr);
064af421
BP
1316}
1317
0d085684
BP
1318/* Adds some memory usage statistics for 'ofproto' into 'usage', for use with
1319 * memory_report(). */
1320void
1321ofproto_get_memory_usage(const struct ofproto *ofproto, struct simap *usage)
1322{
1323 const struct oftable *table;
1324 unsigned int n_rules;
1325
1326 simap_increase(usage, "ports", hmap_count(&ofproto->ports));
1327 simap_increase(usage, "ops",
1328 ofproto->n_pending + hmap_count(&ofproto->deletions));
1329
1330 n_rules = 0;
1331 OFPROTO_FOR_EACH_TABLE (table, ofproto) {
1332 n_rules += classifier_count(&table->cls);
1333 }
1334 simap_increase(usage, "rules", n_rules);
1335
1336 if (ofproto->ofproto_class->get_memory_usage) {
1337 ofproto->ofproto_class->get_memory_usage(ofproto, usage);
1338 }
1339
1340 connmgr_get_memory_usage(ofproto->connmgr, usage);
1341}
1342
bffc0589 1343void
2cdcb898 1344ofproto_get_ofproto_controller_info(const struct ofproto *ofproto,
bffc0589
AE
1345 struct shash *info)
1346{
19a87e36 1347 connmgr_get_controller_info(ofproto->connmgr, info);
bffc0589
AE
1348}
1349
1350void
1351ofproto_free_ofproto_controller_info(struct shash *info)
1352{
72ba2ed3 1353 connmgr_free_controller_info(info);
bffc0589
AE
1354}
1355
b5827b24
BP
1356/* Makes a deep copy of 'old' into 'port'. */
1357void
1358ofproto_port_clone(struct ofproto_port *port, const struct ofproto_port *old)
1359{
1360 port->name = xstrdup(old->name);
1361 port->type = xstrdup(old->type);
1362 port->ofp_port = old->ofp_port;
1363}
1364
1365/* Frees memory allocated to members of 'ofproto_port'.
3a6ccc8c 1366 *
b5827b24
BP
1367 * Do not call this function on an ofproto_port obtained from
1368 * ofproto_port_dump_next(): that function retains ownership of the data in the
1369 * ofproto_port. */
1370void
1371ofproto_port_destroy(struct ofproto_port *ofproto_port)
1372{
1373 free(ofproto_port->name);
1374 free(ofproto_port->type);
1375}
1376
b5827b24 1377/* Initializes 'dump' to begin dumping the ports in an ofproto.
3a6ccc8c 1378 *
b5827b24
BP
1379 * This function provides no status indication. An error status for the entire
1380 * dump operation is provided when it is completed by calling
1381 * ofproto_port_dump_done().
1382 */
1383void
1384ofproto_port_dump_start(struct ofproto_port_dump *dump,
1385 const struct ofproto *ofproto)
1386{
abe529af
BP
1387 dump->ofproto = ofproto;
1388 dump->error = ofproto->ofproto_class->port_dump_start(ofproto,
1389 &dump->state);
b5827b24
BP
1390}
1391
1392/* Attempts to retrieve another port from 'dump', which must have been created
1393 * with ofproto_port_dump_start(). On success, stores a new ofproto_port into
1394 * 'port' and returns true. On failure, returns false.
1395 *
1396 * Failure might indicate an actual error or merely that the last port has been
1397 * dumped. An error status for the entire dump operation is provided when it
1398 * is completed by calling ofproto_port_dump_done().
1399 *
1400 * The ofproto owns the data stored in 'port'. It will remain valid until at
1401 * least the next time 'dump' is passed to ofproto_port_dump_next() or
1402 * ofproto_port_dump_done(). */
1403bool
1404ofproto_port_dump_next(struct ofproto_port_dump *dump,
1405 struct ofproto_port *port)
1406{
abe529af
BP
1407 const struct ofproto *ofproto = dump->ofproto;
1408
1409 if (dump->error) {
1410 return false;
1411 }
b5827b24 1412
abe529af
BP
1413 dump->error = ofproto->ofproto_class->port_dump_next(ofproto, dump->state,
1414 port);
1415 if (dump->error) {
1416 ofproto->ofproto_class->port_dump_done(ofproto, dump->state);
1417 return false;
b5827b24 1418 }
abe529af 1419 return true;
b5827b24
BP
1420}
1421
1422/* Completes port table dump operation 'dump', which must have been created
1423 * with ofproto_port_dump_start(). Returns 0 if the dump operation was
1424 * error-free, otherwise a positive errno value describing the problem. */
3a6ccc8c 1425int
b5827b24 1426ofproto_port_dump_done(struct ofproto_port_dump *dump)
3a6ccc8c 1427{
abe529af
BP
1428 const struct ofproto *ofproto = dump->ofproto;
1429 if (!dump->error) {
1430 dump->error = ofproto->ofproto_class->port_dump_done(ofproto,
1431 dump->state);
1432 }
1433 return dump->error == EOF ? 0 : dump->error;
b5827b24
BP
1434}
1435
0aeaabc8
JP
1436/* Returns the type to pass to netdev_open() when a datapath of type
1437 * 'datapath_type' has a port of type 'port_type', for a few special
1438 * cases when a netdev type differs from a port type. For example, when
1439 * using the userspace datapath, a port of type "internal" needs to be
1440 * opened as "tap".
1441 *
1442 * Returns either 'type' itself or a string literal, which must not be
1443 * freed. */
1444const char *
1445ofproto_port_open_type(const char *datapath_type, const char *port_type)
1446{
1447 const struct ofproto_class *class;
1448
1449 datapath_type = ofproto_normalize_type(datapath_type);
1450 class = ofproto_class_find__(datapath_type);
1451 if (!class) {
1452 return port_type;
1453 }
1454
1455 return (class->port_open_type
1456 ? class->port_open_type(datapath_type, port_type)
1457 : port_type);
1458}
1459
81816a5f
JP
1460/* Attempts to add 'netdev' as a port on 'ofproto'. If 'ofp_portp' is
1461 * non-null and '*ofp_portp' is not OFPP_NONE, attempts to use that as
1462 * the port's OpenFlow port number.
1463 *
1464 * If successful, returns 0 and sets '*ofp_portp' to the new port's
1465 * OpenFlow port number (if 'ofp_portp' is non-null). On failure,
1466 * returns a positive errno value and sets '*ofp_portp' to OFPP_NONE (if
1467 * 'ofp_portp' is non-null). */
b5827b24
BP
1468int
1469ofproto_port_add(struct ofproto *ofproto, struct netdev *netdev,
1470 uint16_t *ofp_portp)
1471{
81816a5f 1472 uint16_t ofp_port = ofp_portp ? *ofp_portp : OFPP_NONE;
3a6ccc8c
BP
1473 int error;
1474
e1b1d06a 1475 error = ofproto->ofproto_class->port_add(ofproto, netdev);
1fa24dea 1476 if (!error) {
e1b1d06a
JP
1477 const char *netdev_name = netdev_get_name(netdev);
1478
1479 simap_put(&ofproto->ofp_requests, netdev_name, ofp_port);
1480 update_port(ofproto, netdev_name);
1fa24dea 1481 }
b5827b24 1482 if (ofp_portp) {
e1b1d06a
JP
1483 struct ofproto_port ofproto_port;
1484
1485 ofproto_port_query_by_name(ofproto, netdev_get_name(netdev),
1486 &ofproto_port);
1487 *ofp_portp = error ? OFPP_NONE : ofproto_port.ofp_port;
1488 ofproto_port_destroy(&ofproto_port);
3a6ccc8c
BP
1489 }
1490 return error;
1491}
1492
b5827b24
BP
1493/* Looks up a port named 'devname' in 'ofproto'. On success, returns 0 and
1494 * initializes '*port' appropriately; on failure, returns a positive errno
1495 * value.
1496 *
abe529af 1497 * The caller owns the data in 'ofproto_port' and must free it with
b5827b24
BP
1498 * ofproto_port_destroy() when it is no longer needed. */
1499int
1500ofproto_port_query_by_name(const struct ofproto *ofproto, const char *devname,
1501 struct ofproto_port *port)
a4e2e1f2 1502{
b5827b24
BP
1503 int error;
1504
abe529af
BP
1505 error = ofproto->ofproto_class->port_query_by_name(ofproto, devname, port);
1506 if (error) {
1507 memset(port, 0, sizeof *port);
b5827b24
BP
1508 }
1509 return error;
a4e2e1f2
EJ
1510}
1511
b5827b24 1512/* Deletes port number 'ofp_port' from the datapath for 'ofproto'.
3a6ccc8c 1513 * Returns 0 if successful, otherwise a positive errno. */
064af421 1514int
b5827b24 1515ofproto_port_del(struct ofproto *ofproto, uint16_t ofp_port)
064af421 1516{
abe529af 1517 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
1264ec95 1518 const char *name = ofport ? netdev_get_name(ofport->netdev) : "<unknown>";
e1b1d06a 1519 struct simap_node *ofp_request_node;
3cf10406 1520 int error;
cdee00fd 1521
e1b1d06a
JP
1522 ofp_request_node = simap_find(&ofproto->ofp_requests, name);
1523 if (ofp_request_node) {
1524 simap_delete(&ofproto->ofp_requests, ofp_request_node);
1525 }
1526
abe529af 1527 error = ofproto->ofproto_class->port_del(ofproto, ofp_port);
892815f5 1528 if (!error && ofport) {
1264ec95
BP
1529 /* 'name' is the netdev's name and update_port() is going to close the
1530 * netdev. Just in case update_port() refers to 'name' after it
3a6ccc8c
BP
1531 * destroys 'ofport', make a copy of it around the update_port()
1532 * call. */
1533 char *devname = xstrdup(name);
1534 update_port(ofproto, devname);
1535 free(devname);
3cf10406
BP
1536 }
1537 return error;
064af421
BP
1538}
1539
6c1491fb 1540/* Adds a flow to OpenFlow flow table 0 in 'p' that matches 'cls_rule' and
fa8b054f
BP
1541 * performs the 'n_actions' actions in 'actions'. The new flow will not
1542 * timeout.
1543 *
1544 * If cls_rule->priority is in the range of priorities supported by OpenFlow
1545 * (0...65535, inclusive) then the flow will be visible to OpenFlow
1546 * controllers; otherwise, it will be hidden.
1547 *
f25d0cf3 1548 * The caller retains ownership of 'cls_rule' and 'ofpacts'.
6c1491fb
BP
1549 *
1550 * This is a helper function for in-band control and fail-open. */
064af421 1551void
81a76618
BP
1552ofproto_add_flow(struct ofproto *ofproto, const struct match *match,
1553 unsigned int priority,
f25d0cf3 1554 const struct ofpact *ofpacts, size_t ofpacts_len)
064af421 1555{
7ee20df1
BP
1556 const struct rule *rule;
1557
81a76618
BP
1558 rule = rule_from_cls_rule(classifier_find_match_exactly(
1559 &ofproto->tables[0].cls, match, priority));
f25d0cf3
BP
1560 if (!rule || !ofpacts_equal(rule->ofpacts, rule->ofpacts_len,
1561 ofpacts, ofpacts_len)) {
a9a2da38 1562 struct ofputil_flow_mod fm;
7ee20df1
BP
1563
1564 memset(&fm, 0, sizeof fm);
81a76618
BP
1565 fm.match = *match;
1566 fm.priority = priority;
7ee20df1 1567 fm.buffer_id = UINT32_MAX;
f25d0cf3
BP
1568 fm.ofpacts = xmemdup(ofpacts, ofpacts_len);
1569 fm.ofpacts_len = ofpacts_len;
7ee20df1 1570 add_flow(ofproto, NULL, &fm, NULL);
f25d0cf3 1571 free(fm.ofpacts);
7ee20df1 1572 }
064af421
BP
1573}
1574
75a75043 1575/* Executes the flow modification specified in 'fm'. Returns 0 on success, an
90bf1e07
BP
1576 * OFPERR_* OpenFlow error code on failure, or OFPROTO_POSTPONE if the
1577 * operation cannot be initiated now but may be retried later.
75a75043
BP
1578 *
1579 * This is a helper function for in-band control and fail-open. */
1580int
1581ofproto_flow_mod(struct ofproto *ofproto, const struct ofputil_flow_mod *fm)
1582{
1583 return handle_flow_mod__(ofproto, NULL, fm, NULL);
1584}
1585
6c1491fb
BP
1586/* Searches for a rule with matching criteria exactly equal to 'target' in
1587 * ofproto's table 0 and, if it finds one, deletes it.
1588 *
1589 * This is a helper function for in-band control and fail-open. */
7ee20df1 1590bool
81a76618
BP
1591ofproto_delete_flow(struct ofproto *ofproto,
1592 const struct match *target, unsigned int priority)
064af421
BP
1593{
1594 struct rule *rule;
1595
81a76618
BP
1596 rule = rule_from_cls_rule(classifier_find_match_exactly(
1597 &ofproto->tables[0].cls, target, priority));
7ee20df1
BP
1598 if (!rule) {
1599 /* No such rule -> success. */
1600 return true;
1601 } else if (rule->pending) {
1602 /* An operation on the rule is already pending -> failure.
1603 * Caller must retry later if it's important. */
1604 return false;
1605 } else {
1606 /* Initiate deletion -> success. */
7024dffe 1607 struct ofopgroup *group = ofopgroup_create_unattached(ofproto);
2b07c8b1 1608 ofoperation_create(group, rule, OFOPERATION_DELETE, OFPRR_DELETE);
d0918789 1609 oftable_remove_rule(rule);
254750ce 1610 ofproto->ofproto_class->rule_destruct(rule);
7ee20df1
BP
1611 ofopgroup_submit(group);
1612 return true;
bcf84111 1613 }
5ecc9d81 1614
142e1f5c
BP
1615}
1616
7ee20df1
BP
1617/* Starts the process of deleting all of the flows from all of ofproto's flow
1618 * tables and then reintroducing the flows required by in-band control and
1619 * fail-open. The process will complete in a later call to ofproto_run(). */
142e1f5c
BP
1620void
1621ofproto_flush_flows(struct ofproto *ofproto)
1622{
7ee20df1
BP
1623 COVERAGE_INC(ofproto_flush);
1624 ofproto->state = S_FLUSH;
064af421
BP
1625}
1626\f
1627static void
1628reinit_ports(struct ofproto *p)
1629{
abe529af 1630 struct ofproto_port_dump dump;
b3c01ed3 1631 struct sset devnames;
064af421 1632 struct ofport *ofport;
abe529af 1633 struct ofproto_port ofproto_port;
b3c01ed3 1634 const char *devname;
064af421 1635
898bf89d
JP
1636 COVERAGE_INC(ofproto_reinit_ports);
1637
b3c01ed3 1638 sset_init(&devnames);
4e8e4213 1639 HMAP_FOR_EACH (ofport, hmap_node, &p->ports) {
1264ec95 1640 sset_add(&devnames, netdev_get_name(ofport->netdev));
064af421 1641 }
abe529af
BP
1642 OFPROTO_PORT_FOR_EACH (&ofproto_port, &dump, p) {
1643 sset_add(&devnames, ofproto_port.name);
064af421 1644 }
064af421 1645
b3c01ed3
BP
1646 SSET_FOR_EACH (devname, &devnames) {
1647 update_port(p, devname);
064af421 1648 }
b3c01ed3 1649 sset_destroy(&devnames);
064af421
BP
1650}
1651
e1b1d06a
JP
1652static uint16_t
1653alloc_ofp_port(struct ofproto *ofproto, const char *netdev_name)
1654{
1655 uint16_t ofp_port;
1656
1657 ofp_port = simap_get(&ofproto->ofp_requests, netdev_name);
1658 ofp_port = ofp_port ? ofp_port : OFPP_NONE;
1659
1660 if (ofp_port >= ofproto->max_ports
1661 || bitmap_is_set(ofproto->ofp_port_ids, ofp_port)) {
1662 bool retry = ofproto->alloc_port_no ? true : false;
1663
1664 /* Search for a free OpenFlow port number. We try not to
1665 * immediately reuse them to prevent problems due to old
1666 * flows. */
1667 while (ofp_port >= ofproto->max_ports) {
1668 for (ofproto->alloc_port_no++;
1669 ofproto->alloc_port_no < ofproto->max_ports; ) {
1670 if (!bitmap_is_set(ofproto->ofp_port_ids,
1671 ofproto->alloc_port_no)) {
1672 ofp_port = ofproto->alloc_port_no;
1673 break;
1674 }
1675 }
1676 if (ofproto->alloc_port_no >= ofproto->max_ports) {
1677 if (retry) {
1678 ofproto->alloc_port_no = 0;
1679 retry = false;
1680 } else {
1681 return OFPP_NONE;
1682 }
1683 }
1684 }
1685 }
1686
1687 bitmap_set1(ofproto->ofp_port_ids, ofp_port);
1688 return ofp_port;
1689}
1690
1691static void
1692dealloc_ofp_port(const struct ofproto *ofproto, uint16_t ofp_port)
1693{
1694 bitmap_set0(ofproto->ofp_port_ids, ofp_port);
1695}
1696
fbfa2911
BP
1697/* Opens and returns a netdev for 'ofproto_port' in 'ofproto', or a null
1698 * pointer if the netdev cannot be opened. On success, also fills in
1699 * 'opp'. */
b33951b8 1700static struct netdev *
e1b1d06a
JP
1701ofport_open(struct ofproto *ofproto,
1702 struct ofproto_port *ofproto_port,
9e1fd49b 1703 struct ofputil_phy_port *pp)
064af421
BP
1704{
1705 enum netdev_flags flags;
064af421 1706 struct netdev *netdev;
064af421
BP
1707 int error;
1708
18812dff 1709 error = netdev_open(ofproto_port->name, ofproto_port->type, &netdev);
064af421 1710 if (error) {
fbfa2911 1711 VLOG_WARN_RL(&rl, "%s: ignoring port %s (%"PRIu16") because netdev %s "
064af421 1712 "cannot be opened (%s)",
fbfa2911 1713 ofproto->name,
abe529af
BP
1714 ofproto_port->name, ofproto_port->ofp_port,
1715 ofproto_port->name, strerror(error));
064af421
BP
1716 return NULL;
1717 }
1718
e1b1d06a
JP
1719 if (ofproto_port->ofp_port == OFPP_NONE) {
1720 if (!strcmp(ofproto->name, ofproto_port->name)) {
1721 ofproto_port->ofp_port = OFPP_LOCAL;
1722 } else {
1723 ofproto_port->ofp_port = alloc_ofp_port(ofproto,
1724 ofproto_port->name);
1725 }
1726 }
9e1fd49b
BP
1727 pp->port_no = ofproto_port->ofp_port;
1728 netdev_get_etheraddr(netdev, pp->hw_addr);
1729 ovs_strlcpy(pp->name, ofproto_port->name, sizeof pp->name);
064af421 1730 netdev_get_flags(netdev, &flags);
9e1fd49b
BP
1731 pp->config = flags & NETDEV_UP ? 0 : OFPUTIL_PC_PORT_DOWN;
1732 pp->state = netdev_get_carrier(netdev) ? 0 : OFPUTIL_PS_LINK_DOWN;
1733 netdev_get_features(netdev, &pp->curr, &pp->advertised,
1734 &pp->supported, &pp->peer);
d02a5f8e
BP
1735 pp->curr_speed = netdev_features_to_bps(pp->curr, 0);
1736 pp->max_speed = netdev_features_to_bps(pp->supported, 0);
118c4676 1737
b33951b8 1738 return netdev;
064af421
BP
1739}
1740
b33951b8 1741/* Returns true if most fields of 'a' and 'b' are equal. Differences in name,
9e1fd49b 1742 * port number, and 'config' bits other than OFPUTIL_PS_LINK_DOWN are
b33951b8
BP
1743 * disregarded. */
1744static bool
9e1fd49b
BP
1745ofport_equal(const struct ofputil_phy_port *a,
1746 const struct ofputil_phy_port *b)
064af421 1747{
9e1fd49b 1748 return (eth_addr_equals(a->hw_addr, b->hw_addr)
064af421 1749 && a->state == b->state
9e1fd49b 1750 && !((a->config ^ b->config) & OFPUTIL_PC_PORT_DOWN)
064af421
BP
1751 && a->curr == b->curr
1752 && a->advertised == b->advertised
1753 && a->supported == b->supported
9e1fd49b
BP
1754 && a->peer == b->peer
1755 && a->curr_speed == b->curr_speed
1756 && a->max_speed == b->max_speed);
064af421
BP
1757}
1758
b33951b8
BP
1759/* Adds an ofport to 'p' initialized based on the given 'netdev' and 'opp'.
1760 * The caller must ensure that 'p' does not have a conflicting ofport (that is,
1761 * one with the same name or port number). */
064af421 1762static void
b33951b8 1763ofport_install(struct ofproto *p,
9e1fd49b 1764 struct netdev *netdev, const struct ofputil_phy_port *pp)
064af421 1765{
b33951b8
BP
1766 const char *netdev_name = netdev_get_name(netdev);
1767 struct ofport *ofport;
abe529af 1768 int error;
72b06300 1769
b33951b8 1770 /* Create ofport. */
abe529af
BP
1771 ofport = p->ofproto_class->port_alloc();
1772 if (!ofport) {
1773 error = ENOMEM;
1774 goto error;
1775 }
0f7d71a5 1776 ofport->ofproto = p;
b33951b8 1777 ofport->netdev = netdev;
031d8bff 1778 ofport->change_seq = netdev_change_seq(netdev);
9e1fd49b
BP
1779 ofport->pp = *pp;
1780 ofport->ofp_port = pp->port_no;
b33951b8
BP
1781
1782 /* Add port to 'p'. */
abe529af 1783 hmap_insert(&p->ports, &ofport->hmap_node, hash_int(ofport->ofp_port, 0));
72b06300 1784 shash_add(&p->port_by_name, netdev_name, ofport);
abe529af 1785
ada3428f 1786 update_mtu(p, ofport);
9197df76 1787
abe529af
BP
1788 /* Let the ofproto_class initialize its private data. */
1789 error = p->ofproto_class->port_construct(ofport);
1790 if (error) {
1791 goto error;
1792 }
9e1fd49b 1793 connmgr_send_port_status(p->connmgr, pp, OFPPR_ADD);
abe529af
BP
1794 return;
1795
1796error:
1797 VLOG_WARN_RL(&rl, "%s: could not add port %s (%s)",
1798 p->name, netdev_name, strerror(error));
1799 if (ofport) {
1800 ofport_destroy__(ofport);
1801 } else {
1802 netdev_close(netdev);
72b06300 1803 }
064af421
BP
1804}
1805
b33951b8 1806/* Removes 'ofport' from 'p' and destroys it. */
064af421 1807static void
0f7d71a5 1808ofport_remove(struct ofport *ofport)
064af421 1809{
9e1fd49b 1810 connmgr_send_port_status(ofport->ofproto->connmgr, &ofport->pp,
fa066f01 1811 OFPPR_DELETE);
abe529af 1812 ofport_destroy(ofport);
b33951b8
BP
1813}
1814
1815/* If 'ofproto' contains an ofport named 'name', removes it from 'ofproto' and
1816 * destroys it. */
1817static void
1818ofport_remove_with_name(struct ofproto *ofproto, const char *name)
1819{
1820 struct ofport *port = shash_find_data(&ofproto->port_by_name, name);
1821 if (port) {
0f7d71a5 1822 ofport_remove(port);
b33951b8
BP
1823 }
1824}
1825
9e1fd49b 1826/* Updates 'port' with new 'pp' description.
b33951b8
BP
1827 *
1828 * Does not handle a name or port number change. The caller must implement
1829 * such a change as a delete followed by an add. */
1830static void
9e1fd49b 1831ofport_modified(struct ofport *port, struct ofputil_phy_port *pp)
b33951b8 1832{
9e1fd49b
BP
1833 memcpy(port->pp.hw_addr, pp->hw_addr, ETH_ADDR_LEN);
1834 port->pp.config = ((port->pp.config & ~OFPUTIL_PC_PORT_DOWN)
1835 | (pp->config & OFPUTIL_PC_PORT_DOWN));
1836 port->pp.state = pp->state;
1837 port->pp.curr = pp->curr;
1838 port->pp.advertised = pp->advertised;
1839 port->pp.supported = pp->supported;
1840 port->pp.peer = pp->peer;
1841 port->pp.curr_speed = pp->curr_speed;
1842 port->pp.max_speed = pp->max_speed;
b33951b8 1843
9e1fd49b 1844 connmgr_send_port_status(port->ofproto->connmgr, &port->pp, OFPPR_MODIFY);
064af421
BP
1845}
1846
5a2dfd47
JP
1847/* Update OpenFlow 'state' in 'port' and notify controller. */
1848void
9e1fd49b 1849ofproto_port_set_state(struct ofport *port, enum ofputil_port_state state)
5a2dfd47 1850{
9e1fd49b
BP
1851 if (port->pp.state != state) {
1852 port->pp.state = state;
1853 connmgr_send_port_status(port->ofproto->connmgr, &port->pp,
5a2dfd47
JP
1854 OFPPR_MODIFY);
1855 }
1856}
1857
abe529af
BP
1858void
1859ofproto_port_unregister(struct ofproto *ofproto, uint16_t ofp_port)
e7934396 1860{
abe529af
BP
1861 struct ofport *port = ofproto_get_port(ofproto, ofp_port);
1862 if (port) {
52a90c29
BP
1863 if (port->ofproto->ofproto_class->set_realdev) {
1864 port->ofproto->ofproto_class->set_realdev(port, 0, 0);
1865 }
b308140a
JP
1866 if (port->ofproto->ofproto_class->set_stp_port) {
1867 port->ofproto->ofproto_class->set_stp_port(port, NULL);
1868 }
abe529af 1869 if (port->ofproto->ofproto_class->set_cfm) {
a5610457 1870 port->ofproto->ofproto_class->set_cfm(port, NULL);
abe529af
BP
1871 }
1872 if (port->ofproto->ofproto_class->bundle_remove) {
1873 port->ofproto->ofproto_class->bundle_remove(port);
e7934396
BP
1874 }
1875 }
1876}
1877
1878static void
abe529af 1879ofport_destroy__(struct ofport *port)
e7934396 1880{
abe529af
BP
1881 struct ofproto *ofproto = port->ofproto;
1882 const char *name = netdev_get_name(port->netdev);
fa066f01 1883
abe529af
BP
1884 hmap_remove(&ofproto->ports, &port->hmap_node);
1885 shash_delete(&ofproto->port_by_name,
1886 shash_find(&ofproto->port_by_name, name));
fa066f01 1887
abe529af
BP
1888 netdev_close(port->netdev);
1889 ofproto->ofproto_class->port_dealloc(port);
e7934396
BP
1890}
1891
064af421 1892static void
abe529af 1893ofport_destroy(struct ofport *port)
064af421 1894{
fa066f01 1895 if (port) {
e1b1d06a 1896 dealloc_ofp_port(port->ofproto, port->ofp_port);
abe529af
BP
1897 port->ofproto->ofproto_class->port_destruct(port);
1898 ofport_destroy__(port);
1899 }
064af421
BP
1900}
1901
abe529af
BP
1902struct ofport *
1903ofproto_get_port(const struct ofproto *ofproto, uint16_t ofp_port)
ca0f572c
BP
1904{
1905 struct ofport *port;
1906
4e8e4213 1907 HMAP_FOR_EACH_IN_BUCKET (port, hmap_node,
abe529af
BP
1908 hash_int(ofp_port, 0), &ofproto->ports) {
1909 if (port->ofp_port == ofp_port) {
ca0f572c
BP
1910 return port;
1911 }
1912 }
1913 return NULL;
1914}
1915
6527c598
PS
1916int
1917ofproto_port_get_stats(const struct ofport *port, struct netdev_stats *stats)
1918{
1919 struct ofproto *ofproto = port->ofproto;
1920 int error;
1921
1922 if (ofproto->ofproto_class->port_get_stats) {
1923 error = ofproto->ofproto_class->port_get_stats(port, stats);
1924 } else {
1925 error = EOPNOTSUPP;
1926 }
1927
1928 return error;
1929}
1930
064af421 1931static void
b33951b8 1932update_port(struct ofproto *ofproto, const char *name)
064af421 1933{
abe529af 1934 struct ofproto_port ofproto_port;
9e1fd49b 1935 struct ofputil_phy_port pp;
b33951b8
BP
1936 struct netdev *netdev;
1937 struct ofport *port;
064af421
BP
1938
1939 COVERAGE_INC(ofproto_update_port);
c874dc6d 1940
b33951b8 1941 /* Fetch 'name''s location and properties from the datapath. */
abe529af 1942 netdev = (!ofproto_port_query_by_name(ofproto, name, &ofproto_port)
fbfa2911 1943 ? ofport_open(ofproto, &ofproto_port, &pp)
b33951b8
BP
1944 : NULL);
1945 if (netdev) {
abe529af 1946 port = ofproto_get_port(ofproto, ofproto_port.ofp_port);
b33951b8 1947 if (port && !strcmp(netdev_get_name(port->netdev), name)) {
e65942a0
BP
1948 struct netdev *old_netdev = port->netdev;
1949
b33951b8 1950 /* 'name' hasn't changed location. Any properties changed? */
9e1fd49b
BP
1951 if (!ofport_equal(&port->pp, &pp)) {
1952 ofport_modified(port, &pp);
abe529af
BP
1953 }
1954
ada3428f 1955 update_mtu(ofproto, port);
9197df76 1956
e65942a0
BP
1957 /* Install the newly opened netdev in case it has changed.
1958 * Don't close the old netdev yet in case port_modified has to
1959 * remove a retained reference to it.*/
abe529af 1960 port->netdev = netdev;
031d8bff 1961 port->change_seq = netdev_change_seq(netdev);
abe529af
BP
1962
1963 if (port->ofproto->ofproto_class->port_modified) {
1964 port->ofproto->ofproto_class->port_modified(port);
b33951b8 1965 }
e65942a0
BP
1966
1967 netdev_close(old_netdev);
b33951b8
BP
1968 } else {
1969 /* If 'port' is nonnull then its name differs from 'name' and thus
1970 * we should delete it. If we think there's a port named 'name'
1971 * then its port number must be wrong now so delete it too. */
1972 if (port) {
0f7d71a5 1973 ofport_remove(port);
b33951b8
BP
1974 }
1975 ofport_remove_with_name(ofproto, name);
9e1fd49b 1976 ofport_install(ofproto, netdev, &pp);
c874dc6d 1977 }
b33951b8
BP
1978 } else {
1979 /* Any port named 'name' is gone now. */
1980 ofport_remove_with_name(ofproto, name);
c874dc6d 1981 }
abe529af 1982 ofproto_port_destroy(&ofproto_port);
064af421
BP
1983}
1984
1985static int
1986init_ports(struct ofproto *p)
1987{
abe529af
BP
1988 struct ofproto_port_dump dump;
1989 struct ofproto_port ofproto_port;
e1b1d06a 1990 struct shash_node *node, *next;
abe529af
BP
1991
1992 OFPROTO_PORT_FOR_EACH (&ofproto_port, &dump, p) {
e1b1d06a
JP
1993 const char *name = ofproto_port.name;
1994
1995 if (shash_find(&p->port_by_name, name)) {
fbfa2911 1996 VLOG_WARN_RL(&rl, "%s: ignoring duplicate device %s in datapath",
e1b1d06a 1997 p->name, name);
abe529af 1998 } else {
9e1fd49b 1999 struct ofputil_phy_port pp;
b33951b8
BP
2000 struct netdev *netdev;
2001
e1b1d06a
JP
2002 /* Check if an OpenFlow port number had been requested. */
2003 node = shash_find(&init_ofp_ports, name);
2004 if (node) {
2005 const struct iface_hint *iface_hint = node->data;
2006 simap_put(&p->ofp_requests, name, iface_hint->ofp_port);
2007 }
2008
fbfa2911 2009 netdev = ofport_open(p, &ofproto_port, &pp);
b33951b8 2010 if (netdev) {
9e1fd49b 2011 ofport_install(p, netdev, &pp);
064af421
BP
2012 }
2013 }
2014 }
b0ec0f27 2015
e1b1d06a
JP
2016 SHASH_FOR_EACH_SAFE(node, next, &init_ofp_ports) {
2017 const struct iface_hint *iface_hint = node->data;
2018
2019 if (!strcmp(iface_hint->br_name, p->name)) {
2020 free(iface_hint->br_name);
2021 free(iface_hint->br_type);
2022 shash_delete(&init_ofp_ports, node);
2023 }
2024 }
2025
064af421
BP
2026 return 0;
2027}
9197df76
JP
2028
2029/* Find the minimum MTU of all non-datapath devices attached to 'p'.
2030 * Returns ETH_PAYLOAD_MAX or the minimum of the ports. */
2031static int
2032find_min_mtu(struct ofproto *p)
2033{
2034 struct ofport *ofport;
2035 int mtu = 0;
2036
2037 HMAP_FOR_EACH (ofport, hmap_node, &p->ports) {
2038 struct netdev *netdev = ofport->netdev;
2039 int dev_mtu;
2040
2041 /* Skip any internal ports, since that's what we're trying to
2042 * set. */
2043 if (!strcmp(netdev_get_type(netdev), "internal")) {
2044 continue;
2045 }
2046
2047 if (netdev_get_mtu(netdev, &dev_mtu)) {
2048 continue;
2049 }
2050 if (!mtu || dev_mtu < mtu) {
2051 mtu = dev_mtu;
2052 }
2053 }
2054
2055 return mtu ? mtu: ETH_PAYLOAD_MAX;
2056}
2057
ada3428f
PS
2058/* Update MTU of all datapath devices on 'p' to the minimum of the
2059 * non-datapath ports in event of 'port' added or changed. */
9197df76 2060static void
ada3428f 2061update_mtu(struct ofproto *p, struct ofport *port)
9197df76
JP
2062{
2063 struct ofport *ofport;
ada3428f
PS
2064 struct netdev *netdev = port->netdev;
2065 int dev_mtu, old_min;
2066
2067 if (netdev_get_mtu(netdev, &dev_mtu)) {
2068 port->mtu = 0;
2069 return;
2070 }
2071 if (!strcmp(netdev_get_type(port->netdev), "internal")) {
2072 if (dev_mtu > p->min_mtu) {
2073 if (!netdev_set_mtu(port->netdev, p->min_mtu)) {
2074 dev_mtu = p->min_mtu;
2075 }
2076 }
2077 port->mtu = dev_mtu;
2078 return;
2079 }
2080
2081 /* For non-internal port find new min mtu. */
2082 old_min = p->min_mtu;
2083 port->mtu = dev_mtu;
2084 p->min_mtu = find_min_mtu(p);
2085 if (p->min_mtu == old_min) {
2086 return;
2087 }
9197df76
JP
2088
2089 HMAP_FOR_EACH (ofport, hmap_node, &p->ports) {
2090 struct netdev *netdev = ofport->netdev;
2091
2092 if (!strcmp(netdev_get_type(netdev), "internal")) {
ada3428f
PS
2093 if (!netdev_set_mtu(netdev, p->min_mtu)) {
2094 ofport->mtu = p->min_mtu;
2095 }
9197df76
JP
2096 }
2097 }
2098}
064af421 2099\f
064af421 2100static void
abe529af 2101ofproto_rule_destroy__(struct rule *rule)
064af421 2102{
1eae3d33 2103 if (rule) {
48d28ac1 2104 cls_rule_destroy(&rule->cr);
f25d0cf3 2105 free(rule->ofpacts);
1eae3d33
BP
2106 rule->ofproto->ofproto_class->rule_dealloc(rule);
2107 }
064af421
BP
2108}
2109
7ee20df1
BP
2110/* This function allows an ofproto implementation to destroy any rules that
2111 * remain when its ->destruct() function is called. The caller must have
2112 * already uninitialized any derived members of 'rule' (step 5 described in the
5bee6e26
JP
2113 * large comment in ofproto/ofproto-provider.h titled "Life Cycle").
2114 * This function implements steps 6 and 7.
7ee20df1
BP
2115 *
2116 * This function should only be called from an ofproto implementation's
2117 * ->destruct() function. It is not suitable elsewhere. */
abe529af
BP
2118void
2119ofproto_rule_destroy(struct rule *rule)
064af421 2120{
7ee20df1 2121 assert(!rule->pending);
d0918789 2122 oftable_remove_rule(rule);
7ee20df1 2123 ofproto_rule_destroy__(rule);
064af421
BP
2124}
2125
bcf84111 2126/* Returns true if 'rule' has an OpenFlow OFPAT_OUTPUT or OFPAT_ENQUEUE action
f25d0cf3 2127 * that outputs to 'port' (output to OFPP_FLOOD and OFPP_ALL doesn't count). */
2b07c8b1
BP
2128bool
2129ofproto_rule_has_out_port(const struct rule *rule, uint16_t port)
064af421 2130{
f25d0cf3
BP
2131 return (port == OFPP_NONE
2132 || ofpacts_output_to_port(rule->ofpacts, rule->ofpacts_len, port));
064af421
BP
2133}
2134
2b07c8b1
BP
2135/* Returns true if a rule related to 'op' has an OpenFlow OFPAT_OUTPUT or
2136 * OFPAT_ENQUEUE action that outputs to 'out_port'. */
2137bool
2138ofoperation_has_out_port(const struct ofoperation *op, uint16_t out_port)
2139{
2140 if (ofproto_rule_has_out_port(op->rule, out_port)) {
2141 return true;
2142 }
2143
2144 switch (op->type) {
2145 case OFOPERATION_ADD:
2146 return op->victim && ofproto_rule_has_out_port(op->victim, out_port);
2147
2148 case OFOPERATION_DELETE:
2149 return false;
2150
2151 case OFOPERATION_MODIFY:
2152 return ofpacts_output_to_port(op->ofpacts, op->ofpacts_len, out_port);
2153 }
2154
2155 NOT_REACHED();
2156}
2157
bcf84111 2158/* Executes the actions indicated by 'rule' on 'packet' and credits 'rule''s
bcf84111
BP
2159 * statistics appropriately. 'packet' must have at least sizeof(struct
2160 * ofp_packet_in) bytes of headroom.
064af421 2161 *
bcf84111
BP
2162 * 'packet' doesn't necessarily have to match 'rule'. 'rule' will be credited
2163 * with statistics for 'packet' either way.
2164 *
2165 * Takes ownership of 'packet'. */
5bf0e941 2166static int
abe529af 2167rule_execute(struct rule *rule, uint16_t in_port, struct ofpbuf *packet)
eedc0097 2168{
bcf84111 2169 struct flow flow;
eedc0097 2170
abe529af 2171 assert(ofpbuf_headroom(packet) >= sizeof(struct ofp_packet_in));
eedc0097 2172
296e07ac 2173 flow_extract(packet, 0, NULL, in_port, &flow);
5bf0e941 2174 return rule->ofproto->ofproto_class->rule_execute(rule, &flow, packet);
350a665f
BP
2175}
2176
abe529af
BP
2177/* Returns true if 'rule' should be hidden from the controller.
2178 *
2179 * Rules with priority higher than UINT16_MAX are set up by ofproto itself
2180 * (e.g. by in-band control) and are intentionally hidden from the
2181 * controller. */
2b07c8b1
BP
2182bool
2183ofproto_rule_is_hidden(const struct rule *rule)
b6c9e612 2184{
abe529af 2185 return rule->cr.priority > UINT16_MAX;
7b064a79 2186}
5c67e4af
BP
2187
2188static enum oftable_flags
2189rule_get_flags(const struct rule *rule)
2190{
2191 return rule->ofproto->tables[rule->table_id].flags;
2192}
2193
2194static bool
2195rule_is_modifiable(const struct rule *rule)
2196{
2197 return !(rule_get_flags(rule) & OFTABLE_READONLY);
2198}
fa066f01 2199\f
90bf1e07 2200static enum ofperr
d1e2cf21 2201handle_echo_request(struct ofconn *ofconn, const struct ofp_header *oh)
064af421 2202{
b0421aa2 2203 ofconn_send_reply(ofconn, make_echo_reply(oh));
064af421 2204 return 0;
064af421
BP
2205}
2206
90bf1e07 2207static enum ofperr
d1e2cf21 2208handle_features_request(struct ofconn *ofconn, const struct ofp_header *oh)
064af421 2209{
64ff1d96 2210 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
9e1fd49b 2211 struct ofputil_switch_features features;
064af421 2212 struct ofport *port;
6c1491fb 2213 bool arp_match_ip;
9e1fd49b 2214 struct ofpbuf *b;
c2f0373a
BP
2215 int n_tables;
2216 int i;
064af421 2217
9e1fd49b
BP
2218 ofproto->ofproto_class->get_features(ofproto, &arp_match_ip,
2219 &features.actions);
2220 assert(features.actions & OFPUTIL_A_OUTPUT); /* sanity check */
064af421 2221
c2f0373a
BP
2222 /* Count only non-hidden tables in the number of tables. (Hidden tables,
2223 * if present, are always at the end.) */
2224 n_tables = ofproto->n_tables;
2225 for (i = 0; i < ofproto->n_tables; i++) {
2226 if (ofproto->tables[i].flags & OFTABLE_HIDDEN) {
2227 n_tables = i;
2228 break;
2229 }
2230 }
2231
9e1fd49b
BP
2232 features.datapath_id = ofproto->datapath_id;
2233 features.n_buffers = pktbuf_capacity();
c2f0373a 2234 features.n_tables = n_tables;
9e1fd49b
BP
2235 features.capabilities = (OFPUTIL_C_FLOW_STATS | OFPUTIL_C_TABLE_STATS |
2236 OFPUTIL_C_PORT_STATS | OFPUTIL_C_QUEUE_STATS);
6c1491fb 2237 if (arp_match_ip) {
9e1fd49b 2238 features.capabilities |= OFPUTIL_C_ARP_MATCH_IP;
6c1491fb 2239 }
064af421 2240
9e1fd49b
BP
2241 b = ofputil_encode_switch_features(&features, ofconn_get_protocol(ofconn),
2242 oh->xid);
64ff1d96 2243 HMAP_FOR_EACH (port, hmap_node, &ofproto->ports) {
9e1fd49b 2244 ofputil_put_switch_features_port(&port->pp, b);
064af421 2245 }
064af421 2246
9e1fd49b 2247 ofconn_send_reply(ofconn, b);
064af421
BP
2248 return 0;
2249}
064af421 2250
90bf1e07 2251static enum ofperr
d1e2cf21 2252handle_get_config_request(struct ofconn *ofconn, const struct ofp_header *oh)
064af421 2253{
64ff1d96 2254 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
064af421 2255 struct ofp_switch_config *osc;
f0fd1a17 2256 enum ofp_config_flags flags;
7257b535 2257 struct ofpbuf *buf;
959a2ecd 2258
064af421 2259 /* Send reply. */
982697a4
BP
2260 buf = ofpraw_alloc_reply(OFPRAW_OFPT_GET_CONFIG_REPLY, oh, 0);
2261 osc = ofpbuf_put_uninit(buf, sizeof *osc);
f0fd1a17
PS
2262 flags = ofproto->frag_handling;
2263 if (ofconn_get_invalid_ttl_to_controller(ofconn)) {
2264 flags |= OFPC_INVALID_TTL_TO_CONTROLLER;
2265 }
2266 osc->flags = htons(flags);
810605a2 2267 osc->miss_send_len = htons(ofconn_get_miss_send_len(ofconn));
b0421aa2 2268 ofconn_send_reply(ofconn, buf);
2d70a31a 2269
064af421
BP
2270 return 0;
2271}
064af421 2272
90bf1e07 2273static enum ofperr
982697a4 2274handle_set_config(struct ofconn *ofconn, const struct ofp_header *oh)
064af421 2275{
982697a4 2276 const struct ofp_switch_config *osc = ofpmsg_body(oh);
64ff1d96 2277 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
d1e2cf21 2278 uint16_t flags = ntohs(osc->flags);
2d70a31a 2279
7257b535
BP
2280 if (ofconn_get_type(ofconn) != OFCONN_PRIMARY
2281 || ofconn_get_role(ofconn) != NX_ROLE_SLAVE) {
2282 enum ofp_config_flags cur = ofproto->frag_handling;
2283 enum ofp_config_flags next = flags & OFPC_FRAG_MASK;
2284
2285 assert((cur & OFPC_FRAG_MASK) == cur);
2286 if (cur != next) {
2287 if (ofproto->ofproto_class->set_frag_handling(ofproto, next)) {
2288 ofproto->frag_handling = next;
2289 } else {
2290 VLOG_WARN_RL(&rl, "%s: unsupported fragment handling mode %s",
2291 ofproto->name,
2292 ofputil_frag_handling_to_string(next));
2293 }
064af421
BP
2294 }
2295 }
f0fd1a17 2296 ofconn_set_invalid_ttl_to_controller(ofconn,
05fe1764 2297 (flags & OFPC_INVALID_TTL_TO_CONTROLLER));
ebe482fd 2298
810605a2 2299 ofconn_set_miss_send_len(ofconn, ntohs(osc->miss_send_len));
0ad9b732 2300
064af421 2301 return 0;
064af421
BP
2302}
2303
9deba63b 2304/* Checks whether 'ofconn' is a slave controller. If so, returns an OpenFlow
90bf1e07
BP
2305 * error message code for the caller to propagate upward. Otherwise, returns
2306 * 0.
2307 *
2308 * The log message mentions 'msg_type'. */
2309static enum ofperr
2310reject_slave_controller(struct ofconn *ofconn)
9deba63b 2311{
1ce0a5fa
BP
2312 if (ofconn_get_type(ofconn) == OFCONN_PRIMARY
2313 && ofconn_get_role(ofconn) == NX_ROLE_SLAVE) {
90bf1e07 2314 return OFPERR_OFPBRC_EPERM;
9deba63b
BP
2315 } else {
2316 return 0;
2317 }
2318}
2319
90bf1e07 2320static enum ofperr
982697a4 2321handle_packet_out(struct ofconn *ofconn, const struct ofp_header *oh)
064af421 2322{
64ff1d96 2323 struct ofproto *p = ofconn_get_ofproto(ofconn);
c6a93eb7
BP
2324 struct ofputil_packet_out po;
2325 struct ofpbuf *payload;
f25d0cf3
BP
2326 uint64_t ofpacts_stub[1024 / 8];
2327 struct ofpbuf ofpacts;
ae412e7d 2328 struct flow flow;
90bf1e07 2329 enum ofperr error;
064af421 2330
ac51afaf
BP
2331 COVERAGE_INC(ofproto_packet_out);
2332
76589937 2333 error = reject_slave_controller(ofconn);
9deba63b 2334 if (error) {
f25d0cf3 2335 goto exit;
9deba63b
BP
2336 }
2337
c6a93eb7 2338 /* Decode message. */
f25d0cf3 2339 ofpbuf_use_stub(&ofpacts, ofpacts_stub, sizeof ofpacts_stub);
982697a4 2340 error = ofputil_decode_packet_out(&po, oh, &ofpacts);
064af421 2341 if (error) {
f25d0cf3 2342 goto exit_free_ofpacts;
064af421 2343 }
91858960 2344 if (po.in_port >= p->max_ports && po.in_port < OFPP_MAX) {
2e1bfcb6 2345 error = OFPERR_OFPBRC_BAD_PORT;
91858960
BP
2346 goto exit_free_ofpacts;
2347 }
064af421 2348
5cb7a798 2349
ac51afaf 2350 /* Get payload. */
c6a93eb7
BP
2351 if (po.buffer_id != UINT32_MAX) {
2352 error = ofconn_pktbuf_retrieve(ofconn, po.buffer_id, &payload, NULL);
2353 if (error || !payload) {
f25d0cf3 2354 goto exit_free_ofpacts;
064af421 2355 }
064af421 2356 } else {
c6a93eb7
BP
2357 payload = xmalloc(sizeof *payload);
2358 ofpbuf_use_const(payload, po.packet, po.packet_len);
e1154f71
BP
2359 }
2360
548de4dd 2361 /* Verify actions against packet, then send packet if successful. */
296e07ac 2362 flow_extract(payload, 0, NULL, po.in_port, &flow);
548de4dd
BP
2363 error = ofpacts_check(po.ofpacts, po.ofpacts_len, &flow, p->max_ports);
2364 if (!error) {
2365 error = p->ofproto_class->packet_out(p, payload, &flow,
2366 po.ofpacts, po.ofpacts_len);
2367 }
c6a93eb7 2368 ofpbuf_delete(payload);
abe529af 2369
f25d0cf3
BP
2370exit_free_ofpacts:
2371 ofpbuf_uninit(&ofpacts);
2372exit:
abe529af 2373 return error;
064af421
BP
2374}
2375
2376static void
9e1fd49b
BP
2377update_port_config(struct ofport *port,
2378 enum ofputil_port_config config,
2379 enum ofputil_port_config mask)
064af421 2380{
9e1fd49b
BP
2381 enum ofputil_port_config old_config = port->pp.config;
2382 enum ofputil_port_config toggle;
abe529af 2383
9e1fd49b
BP
2384 toggle = (config ^ port->pp.config) & mask;
2385 if (toggle & OFPUTIL_PC_PORT_DOWN) {
2386 if (config & OFPUTIL_PC_PORT_DOWN) {
064af421
BP
2387 netdev_turn_flags_off(port->netdev, NETDEV_UP, true);
2388 } else {
2389 netdev_turn_flags_on(port->netdev, NETDEV_UP, true);
2390 }
9e1fd49b 2391 toggle &= ~OFPUTIL_PC_PORT_DOWN;
064af421 2392 }
abe529af 2393
9e1fd49b
BP
2394 port->pp.config ^= toggle;
2395 if (port->pp.config != old_config) {
abe529af 2396 port->ofproto->ofproto_class->port_reconfigured(port, old_config);
064af421
BP
2397 }
2398}
2399
90bf1e07 2400static enum ofperr
d1e2cf21 2401handle_port_mod(struct ofconn *ofconn, const struct ofp_header *oh)
064af421 2402{
64ff1d96 2403 struct ofproto *p = ofconn_get_ofproto(ofconn);
9e1fd49b 2404 struct ofputil_port_mod pm;
064af421 2405 struct ofport *port;
9e1fd49b 2406 enum ofperr error;
064af421 2407
76589937 2408 error = reject_slave_controller(ofconn);
9deba63b
BP
2409 if (error) {
2410 return error;
2411 }
064af421 2412
9e1fd49b
BP
2413 error = ofputil_decode_port_mod(oh, &pm);
2414 if (error) {
2415 return error;
2416 }
2417
2418 port = ofproto_get_port(p, pm.port_no);
064af421 2419 if (!port) {
90bf1e07 2420 return OFPERR_OFPPMFC_BAD_PORT;
9e1fd49b 2421 } else if (!eth_addr_equals(port->pp.hw_addr, pm.hw_addr)) {
90bf1e07 2422 return OFPERR_OFPPMFC_BAD_HW_ADDR;
064af421 2423 } else {
9e1fd49b
BP
2424 update_port_config(port, pm.config, pm.mask);
2425 if (pm.advertise) {
2426 netdev_set_advertisements(port->netdev, pm.advertise);
064af421
BP
2427 }
2428 }
2429 return 0;
2430}
2431
90bf1e07 2432static enum ofperr
3269c562 2433handle_desc_stats_request(struct ofconn *ofconn,
982697a4 2434 const struct ofp_header *request)
064af421 2435{
64ff1d96 2436 struct ofproto *p = ofconn_get_ofproto(ofconn);
064af421
BP
2437 struct ofp_desc_stats *ods;
2438 struct ofpbuf *msg;
2439
982697a4
BP
2440 msg = ofpraw_alloc_stats_reply(request, 0);
2441 ods = ofpbuf_put_zeros(msg, sizeof *ods);
5a719c38
JP
2442 ovs_strlcpy(ods->mfr_desc, p->mfr_desc, sizeof ods->mfr_desc);
2443 ovs_strlcpy(ods->hw_desc, p->hw_desc, sizeof ods->hw_desc);
2444 ovs_strlcpy(ods->sw_desc, p->sw_desc, sizeof ods->sw_desc);
2445 ovs_strlcpy(ods->serial_num, p->serial_desc, sizeof ods->serial_num);
2446 ovs_strlcpy(ods->dp_desc, p->dp_desc, sizeof ods->dp_desc);
b0421aa2 2447 ofconn_send_reply(ofconn, msg);
064af421
BP
2448
2449 return 0;
2450}
2451
90bf1e07 2452static enum ofperr
3269c562 2453handle_table_stats_request(struct ofconn *ofconn,
982697a4 2454 const struct ofp_header *request)
064af421 2455{
64ff1d96 2456 struct ofproto *p = ofconn_get_ofproto(ofconn);
307975da 2457 struct ofp12_table_stats *ots;
064af421 2458 struct ofpbuf *msg;
c2f0373a 2459 int n_tables;
6c1491fb 2460 size_t i;
064af421 2461
307975da
SH
2462 /* Set up default values.
2463 *
2464 * ofp12_table_stats is used as a generic structure as
2465 * it is able to hold all the fields for ofp10_table_stats
2466 * and ofp11_table_stats (and of course itself).
2467 */
2468 ots = xcalloc(p->n_tables, sizeof *ots);
6c1491fb
BP
2469 for (i = 0; i < p->n_tables; i++) {
2470 ots[i].table_id = i;
35aa7a21 2471 sprintf(ots[i].name, "table%zu", i);
307975da
SH
2472 ots[i].match = htonll(OFPXMT12_MASK);
2473 ots[i].wildcards = htonll(OFPXMT12_MASK);
e78b61f6
BP
2474 ots[i].write_actions = htonl(OFPAT11_OUTPUT);
2475 ots[i].apply_actions = htonl(OFPAT11_OUTPUT);
307975da
SH
2476 ots[i].write_setfields = htonll(OFPXMT12_MASK);
2477 ots[i].apply_setfields = htonll(OFPXMT12_MASK);
2478 ots[i].metadata_match = htonll(UINT64_MAX);
2479 ots[i].metadata_write = htonll(UINT64_MAX);
2480 ots[i].instructions = htonl(OFPIT11_ALL);
2481 ots[i].config = htonl(OFPTC11_TABLE_MISS_MASK);
6c1491fb 2482 ots[i].max_entries = htonl(1000000); /* An arbitrary big number. */
d0918789 2483 ots[i].active_count = htonl(classifier_count(&p->tables[i].cls));
6c1491fb 2484 }
064af421 2485
6c1491fb 2486 p->ofproto_class->get_tables(p, ots);
064af421 2487
c2f0373a
BP
2488 /* Post-process the tables, dropping hidden tables. */
2489 n_tables = p->n_tables;
254750ce
BP
2490 for (i = 0; i < p->n_tables; i++) {
2491 const struct oftable *table = &p->tables[i];
2492
c2f0373a
BP
2493 if (table->flags & OFTABLE_HIDDEN) {
2494 n_tables = i;
2495 break;
2496 }
2497
254750ce
BP
2498 if (table->name) {
2499 ovs_strzcpy(ots[i].name, table->name, sizeof ots[i].name);
2500 }
2501
2502 if (table->max_flows < ntohl(ots[i].max_entries)) {
2503 ots[i].max_entries = htonl(table->max_flows);
2504 }
2505 }
2506
c2f0373a 2507 msg = ofputil_encode_table_stats_reply(ots, n_tables, request);
b0421aa2 2508 ofconn_send_reply(ofconn, msg);
307975da
SH
2509
2510 free(ots);
2511
064af421
BP
2512 return 0;
2513}
2514
abaad8cf 2515static void
63f2140a 2516append_port_stat(struct ofport *port, struct list *replies)
abaad8cf 2517{
f8e4867e 2518 struct ofputil_port_stats ops = { .port_no = port->pp.port_no };
abaad8cf 2519
d295e8e9
JP
2520 /* Intentionally ignore return value, since errors will set
2521 * 'stats' to all-1s, which is correct for OpenFlow, and
abaad8cf 2522 * netdev_get_stats() will log errors. */
f8e4867e
SH
2523 ofproto_port_get_stats(port, &ops.stats);
2524
2525 ofputil_append_port_stat(replies, &ops);
abaad8cf
JP
2526}
2527
90bf1e07 2528static enum ofperr
63f2140a 2529handle_port_stats_request(struct ofconn *ofconn,
982697a4 2530 const struct ofp_header *request)
064af421 2531{
64ff1d96 2532 struct ofproto *p = ofconn_get_ofproto(ofconn);
064af421 2533 struct ofport *port;
63f2140a 2534 struct list replies;
f8e4867e
SH
2535 uint16_t port_no;
2536 enum ofperr error;
2537
2538 error = ofputil_decode_port_stats_request(request, &port_no);
2539 if (error) {
2540 return error;
2541 }
064af421 2542
982697a4 2543 ofpmp_init(&replies, request);
f8e4867e
SH
2544 if (port_no != OFPP_NONE) {
2545 port = ofproto_get_port(p, port_no);
abaad8cf 2546 if (port) {
63f2140a 2547 append_port_stat(port, &replies);
abaad8cf
JP
2548 }
2549 } else {
4e8e4213 2550 HMAP_FOR_EACH (port, hmap_node, &p->ports) {
63f2140a 2551 append_port_stat(port, &replies);
abaad8cf 2552 }
064af421
BP
2553 }
2554
63f2140a 2555 ofconn_send_replies(ofconn, &replies);
064af421
BP
2556 return 0;
2557}
2558
2be393ed
JP
2559static enum ofperr
2560handle_port_desc_stats_request(struct ofconn *ofconn,
982697a4 2561 const struct ofp_header *request)
2be393ed
JP
2562{
2563 struct ofproto *p = ofconn_get_ofproto(ofconn);
2e3fa633 2564 enum ofp_version version;
2be393ed
JP
2565 struct ofport *port;
2566 struct list replies;
2567
982697a4 2568 ofpmp_init(&replies, request);
2be393ed 2569
2e3fa633 2570 version = ofputil_protocol_to_ofp_version(ofconn_get_protocol(ofconn));
2be393ed 2571 HMAP_FOR_EACH (port, hmap_node, &p->ports) {
2e3fa633 2572 ofputil_append_port_desc_stats_reply(version, &port->pp, &replies);
2be393ed
JP
2573 }
2574
2575 ofconn_send_replies(ofconn, &replies);
2576 return 0;
2577}
2578
c6ebb8fb 2579static void
f27f2134
BP
2580calc_flow_duration__(long long int start, long long int now,
2581 uint32_t *sec, uint32_t *nsec)
c6ebb8fb 2582{
f27f2134 2583 long long int msecs = now - start;
588cd7b5
BP
2584 *sec = msecs / 1000;
2585 *nsec = (msecs % 1000) * (1000 * 1000);
2586}
2587
48266274
BP
2588/* Checks whether 'table_id' is 0xff or a valid table ID in 'ofproto'. Returns
2589 * 0 if 'table_id' is OK, otherwise an OpenFlow error code. */
90bf1e07 2590static enum ofperr
48266274
BP
2591check_table_id(const struct ofproto *ofproto, uint8_t table_id)
2592{
2593 return (table_id == 0xff || table_id < ofproto->n_tables
2594 ? 0
c22c56bd 2595 : OFPERR_OFPBRC_BAD_TABLE_ID);
48266274
BP
2596
2597}
2598
5c67e4af 2599static struct oftable *
d4ce8a49 2600next_visible_table(const struct ofproto *ofproto, uint8_t table_id)
5c67e4af
BP
2601{
2602 struct oftable *table;
2603
2604 for (table = &ofproto->tables[table_id];
2605 table < &ofproto->tables[ofproto->n_tables];
2606 table++) {
2607 if (!(table->flags & OFTABLE_HIDDEN)) {
2608 return table;
2609 }
2610 }
2611
2612 return NULL;
2613}
2614
d0918789 2615static struct oftable *
d4ce8a49 2616first_matching_table(const struct ofproto *ofproto, uint8_t table_id)
064af421 2617{
6c1491fb 2618 if (table_id == 0xff) {
5c67e4af 2619 return next_visible_table(ofproto, 0);
6c1491fb
BP
2620 } else if (table_id < ofproto->n_tables) {
2621 return &ofproto->tables[table_id];
a02e5331 2622 } else {
6c1491fb 2623 return NULL;
a02e5331 2624 }
064af421
BP
2625}
2626
d0918789 2627static struct oftable *
d4ce8a49
BP
2628next_matching_table(const struct ofproto *ofproto,
2629 const struct oftable *table, uint8_t table_id)
6c1491fb 2630{
5c67e4af
BP
2631 return (table_id == 0xff
2632 ? next_visible_table(ofproto, (table - ofproto->tables) + 1)
6c1491fb
BP
2633 : NULL);
2634}
2635
d0918789 2636/* Assigns TABLE to each oftable, in turn, that matches TABLE_ID in OFPROTO:
6c1491fb
BP
2637 *
2638 * - If TABLE_ID is 0xff, this iterates over every classifier table in
5c67e4af 2639 * OFPROTO, skipping tables marked OFTABLE_HIDDEN.
6c1491fb
BP
2640 *
2641 * - If TABLE_ID is the number of a table in OFPROTO, then the loop iterates
5c67e4af
BP
2642 * only once, for that table. (This can be used to access tables marked
2643 * OFTABLE_HIDDEN.)
6c1491fb 2644 *
48266274
BP
2645 * - Otherwise, TABLE_ID isn't valid for OFPROTO, so the loop won't be
2646 * entered at all. (Perhaps you should have validated TABLE_ID with
2647 * check_table_id().)
6c1491fb
BP
2648 *
2649 * All parameters are evaluated multiple times.
2650 */
d0918789
BP
2651#define FOR_EACH_MATCHING_TABLE(TABLE, TABLE_ID, OFPROTO) \
2652 for ((TABLE) = first_matching_table(OFPROTO, TABLE_ID); \
2653 (TABLE) != NULL; \
2654 (TABLE) = next_matching_table(OFPROTO, TABLE, TABLE_ID))
6c1491fb 2655
9ed18e46
BP
2656/* Searches 'ofproto' for rules in table 'table_id' (or in all tables, if
2657 * 'table_id' is 0xff) that match 'match' in the "loose" way required for
2658 * OpenFlow OFPFC_MODIFY and OFPFC_DELETE requests and puts them on list
2659 * 'rules'.
2660 *
2661 * If 'out_port' is anything other than OFPP_NONE, then only rules that output
2662 * to 'out_port' are included.
2663 *
2664 * Hidden rules are always omitted.
2665 *
2666 * Returns 0 on success, otherwise an OpenFlow error code. */
90bf1e07 2667static enum ofperr
9ed18e46 2668collect_rules_loose(struct ofproto *ofproto, uint8_t table_id,
81a76618 2669 const struct match *match,
e729e793
JP
2670 ovs_be64 cookie, ovs_be64 cookie_mask,
2671 uint16_t out_port, struct list *rules)
9ed18e46 2672{
d0918789 2673 struct oftable *table;
81a76618 2674 struct cls_rule cr;
90bf1e07 2675 enum ofperr error;
48266274
BP
2676
2677 error = check_table_id(ofproto, table_id);
2678 if (error) {
2679 return error;
2680 }
9ed18e46
BP
2681
2682 list_init(rules);
81a76618 2683 cls_rule_init(&cr, match, 0);
d0918789 2684 FOR_EACH_MATCHING_TABLE (table, table_id, ofproto) {
9ed18e46
BP
2685 struct cls_cursor cursor;
2686 struct rule *rule;
2687
81a76618 2688 cls_cursor_init(&cursor, &table->cls, &cr);
9ed18e46 2689 CLS_CURSOR_FOR_EACH (rule, cr, &cursor) {
7ee20df1 2690 if (rule->pending) {
48d28ac1
BP
2691 error = OFPROTO_POSTPONE;
2692 goto exit;
7ee20df1 2693 }
2b07c8b1
BP
2694 if (!ofproto_rule_is_hidden(rule)
2695 && ofproto_rule_has_out_port(rule, out_port)
e729e793 2696 && !((rule->flow_cookie ^ cookie) & cookie_mask)) {
9ed18e46
BP
2697 list_push_back(rules, &rule->ofproto_node);
2698 }
2699 }
2700 }
48d28ac1
BP
2701
2702exit:
2703 cls_rule_destroy(&cr);
2704 return error;
9ed18e46
BP
2705}
2706
2707/* Searches 'ofproto' for rules in table 'table_id' (or in all tables, if
2708 * 'table_id' is 0xff) that match 'match' in the "strict" way required for
2709 * OpenFlow OFPFC_MODIFY_STRICT and OFPFC_DELETE_STRICT requests and puts them
2710 * on list 'rules'.
2711 *
2712 * If 'out_port' is anything other than OFPP_NONE, then only rules that output
2713 * to 'out_port' are included.
2714 *
2715 * Hidden rules are always omitted.
2716 *
2717 * Returns 0 on success, otherwise an OpenFlow error code. */
90bf1e07 2718static enum ofperr
9ed18e46 2719collect_rules_strict(struct ofproto *ofproto, uint8_t table_id,
81a76618 2720 const struct match *match, unsigned int priority,
e729e793
JP
2721 ovs_be64 cookie, ovs_be64 cookie_mask,
2722 uint16_t out_port, struct list *rules)
9ed18e46 2723{
d0918789 2724 struct oftable *table;
81a76618 2725 struct cls_rule cr;
48266274
BP
2726 int error;
2727
2728 error = check_table_id(ofproto, table_id);
2729 if (error) {
2730 return error;
2731 }
9ed18e46
BP
2732
2733 list_init(rules);
81a76618 2734 cls_rule_init(&cr, match, priority);
d0918789 2735 FOR_EACH_MATCHING_TABLE (table, table_id, ofproto) {
9ed18e46
BP
2736 struct rule *rule;
2737
d0918789 2738 rule = rule_from_cls_rule(classifier_find_rule_exactly(&table->cls,
81a76618 2739 &cr));
9ed18e46 2740 if (rule) {
7ee20df1 2741 if (rule->pending) {
48d28ac1
BP
2742 error = OFPROTO_POSTPONE;
2743 goto exit;
7ee20df1 2744 }
2b07c8b1
BP
2745 if (!ofproto_rule_is_hidden(rule)
2746 && ofproto_rule_has_out_port(rule, out_port)
e729e793 2747 && !((rule->flow_cookie ^ cookie) & cookie_mask)) {
9ed18e46
BP
2748 list_push_back(rules, &rule->ofproto_node);
2749 }
2750 }
2751 }
48d28ac1
BP
2752
2753exit:
2754 cls_rule_destroy(&cr);
9ed18e46
BP
2755 return 0;
2756}
2757
f27f2134
BP
2758/* Returns 'age_ms' (a duration in milliseconds), converted to seconds and
2759 * forced into the range of a uint16_t. */
2760static int
2761age_secs(long long int age_ms)
2762{
2763 return (age_ms < 0 ? 0
2764 : age_ms >= UINT16_MAX * 1000 ? UINT16_MAX
2765 : (unsigned int) age_ms / 1000);
2766}
2767
90bf1e07 2768static enum ofperr
63f2140a 2769handle_flow_stats_request(struct ofconn *ofconn,
982697a4 2770 const struct ofp_header *request)
064af421 2771{
64ff1d96 2772 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
81d1ea94 2773 struct ofputil_flow_stats_request fsr;
63f2140a 2774 struct list replies;
9ed18e46
BP
2775 struct list rules;
2776 struct rule *rule;
90bf1e07 2777 enum ofperr error;
09246b99 2778
982697a4 2779 error = ofputil_decode_flow_stats_request(&fsr, request);
09246b99
BP
2780 if (error) {
2781 return error;
2782 }
2783
9ed18e46 2784 error = collect_rules_loose(ofproto, fsr.table_id, &fsr.match,
e729e793 2785 fsr.cookie, fsr.cookie_mask,
9ed18e46
BP
2786 fsr.out_port, &rules);
2787 if (error) {
2788 return error;
2789 }
5ecc9d81 2790
982697a4 2791 ofpmp_init(&replies, request);
9ed18e46 2792 LIST_FOR_EACH (rule, ofproto_node, &rules) {
f27f2134 2793 long long int now = time_msec();
9ed18e46
BP
2794 struct ofputil_flow_stats fs;
2795
5cb7a798 2796 minimatch_expand(&rule->cr.match, &fs.match);
81a76618 2797 fs.priority = rule->cr.priority;
9ed18e46
BP
2798 fs.cookie = rule->flow_cookie;
2799 fs.table_id = rule->table_id;
f27f2134 2800 calc_flow_duration__(rule->created, now, &fs.duration_sec,
9ed18e46
BP
2801 &fs.duration_nsec);
2802 fs.idle_timeout = rule->idle_timeout;
2803 fs.hard_timeout = rule->hard_timeout;
f27f2134
BP
2804 fs.idle_age = age_secs(now - rule->used);
2805 fs.hard_age = age_secs(now - rule->modified);
9ed18e46
BP
2806 ofproto->ofproto_class->rule_get_stats(rule, &fs.packet_count,
2807 &fs.byte_count);
f25d0cf3
BP
2808 fs.ofpacts = rule->ofpacts;
2809 fs.ofpacts_len = rule->ofpacts_len;
9ed18e46 2810 ofputil_append_flow_stats_reply(&fs, &replies);
3c4486a5 2811 }
63f2140a 2812 ofconn_send_replies(ofconn, &replies);
5ecc9d81 2813
09246b99
BP
2814 return 0;
2815}
2816
4f2cad2c 2817static void
3394b5b6 2818flow_stats_ds(struct rule *rule, struct ds *results)
4f2cad2c 2819{
4f2cad2c 2820 uint64_t packet_count, byte_count;
4f2cad2c 2821
abe529af
BP
2822 rule->ofproto->ofproto_class->rule_get_stats(rule,
2823 &packet_count, &byte_count);
4f2cad2c 2824
6c1491fb
BP
2825 if (rule->table_id != 0) {
2826 ds_put_format(results, "table_id=%"PRIu8", ", rule->table_id);
2827 }
4f2cad2c
JP
2828 ds_put_format(results, "duration=%llds, ",
2829 (time_msec() - rule->created) / 1000);
52ae00b3 2830 ds_put_format(results, "priority=%u, ", rule->cr.priority);
4f2cad2c
JP
2831 ds_put_format(results, "n_packets=%"PRIu64", ", packet_count);
2832 ds_put_format(results, "n_bytes=%"PRIu64", ", byte_count);
cb833cf6 2833 cls_rule_format(&rule->cr, results);
a5df0e72 2834 ds_put_char(results, ',');
f25d0cf3
BP
2835 if (rule->ofpacts_len > 0) {
2836 ofpacts_format(rule->ofpacts, rule->ofpacts_len, results);
3c8552c1
JP
2837 } else {
2838 ds_put_cstr(results, "drop");
3dffcf07 2839 }
4f2cad2c
JP
2840 ds_put_cstr(results, "\n");
2841}
2842
d295e8e9 2843/* Adds a pretty-printed description of all flows to 'results', including
ee8b231c 2844 * hidden flows (e.g., set up by in-band control). */
4f2cad2c
JP
2845void
2846ofproto_get_all_flows(struct ofproto *p, struct ds *results)
2847{
d0918789 2848 struct oftable *table;
6c1491fb 2849
d0918789 2850 OFPROTO_FOR_EACH_TABLE (table, p) {
6c1491fb
BP
2851 struct cls_cursor cursor;
2852 struct rule *rule;
064af421 2853
d0918789 2854 cls_cursor_init(&cursor, &table->cls, NULL);
6c1491fb
BP
2855 CLS_CURSOR_FOR_EACH (rule, cr, &cursor) {
2856 flow_stats_ds(rule, results);
2857 }
064af421 2858 }
064af421
BP
2859}
2860
b5827b24
BP
2861/* Obtains the NetFlow engine type and engine ID for 'ofproto' into
2862 * '*engine_type' and '*engine_id', respectively. */
2863void
2864ofproto_get_netflow_ids(const struct ofproto *ofproto,
2865 uint8_t *engine_type, uint8_t *engine_id)
2866{
abe529af 2867 ofproto->ofproto_class->get_netflow_ids(ofproto, engine_type, engine_id);
b5827b24
BP
2868}
2869
b9380396
EJ
2870/* Checks the fault status of CFM for 'ofp_port' within 'ofproto'. Returns a
2871 * bitmask of 'cfm_fault_reason's to indicate a CFM fault (generally
2872 * indicating a connectivity problem). Returns zero if CFM is not faulted,
1c0333b6 2873 * and -1 if CFM is not enabled on 'ofp_port'. */
a5610457
EJ
2874int
2875ofproto_port_get_cfm_fault(const struct ofproto *ofproto, uint16_t ofp_port)
2876{
2877 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
2878 return (ofport && ofproto->ofproto_class->get_cfm_fault
2879 ? ofproto->ofproto_class->get_cfm_fault(ofport)
2880 : -1);
2881}
2882
1c0333b6
EJ
2883/* Checks the operational status reported by the remote CFM endpoint of
2884 * 'ofp_port' Returns 1 if operationally up, 0 if operationally down, and -1
2885 * if CFM is not enabled on 'ofp_port' or does not support operational status.
2886 */
2887int
2888ofproto_port_get_cfm_opup(const struct ofproto *ofproto, uint16_t ofp_port)
2889{
2890 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
2891 return (ofport && ofproto->ofproto_class->get_cfm_opup
2892 ? ofproto->ofproto_class->get_cfm_opup(ofport)
2893 : -1);
2894}
2895
1de11730
EJ
2896/* Gets the MPIDs of the remote maintenance points broadcasting to 'ofp_port'
2897 * within 'ofproto'. Populates 'rmps' with an array of MPIDs owned by
2898 * 'ofproto', and 'n_rmps' with the number of MPIDs in 'rmps'. Returns a
2899 * number less than 0 if CFM is not enabled on 'ofp_port'. */
2900int
2901ofproto_port_get_cfm_remote_mpids(const struct ofproto *ofproto,
2902 uint16_t ofp_port, const uint64_t **rmps,
2903 size_t *n_rmps)
2904{
2905 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
2906
2907 *rmps = NULL;
2908 *n_rmps = 0;
2909 return (ofport && ofproto->ofproto_class->get_cfm_remote_mpids
2910 ? ofproto->ofproto_class->get_cfm_remote_mpids(ofport, rmps,
2911 n_rmps)
2912 : -1);
2913}
2914
3967a833
MM
2915/* Checks the health of the CFM for 'ofp_port' within 'ofproto'. Returns an
2916 * integer value between 0 and 100 to indicate the health of the port as a
2917 * percentage which is the average of cfm health of all the remote_mpids or
2918 * returns -1 if CFM is not enabled on 'ofport'. */
2919int
2920ofproto_port_get_cfm_health(const struct ofproto *ofproto, uint16_t ofp_port)
2921{
2922 struct ofport *ofport = ofproto_get_port(ofproto, ofp_port);
2923 return (ofport && ofproto->ofproto_class->get_cfm_health
2924 ? ofproto->ofproto_class->get_cfm_health(ofport)
2925 : -1);
2926}
2927
90bf1e07 2928static enum ofperr
76c93b22 2929handle_aggregate_stats_request(struct ofconn *ofconn,
982697a4 2930 const struct ofp_header *oh)
27d34fce 2931{
76c93b22 2932 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
81d1ea94 2933 struct ofputil_flow_stats_request request;
76c93b22 2934 struct ofputil_aggregate_stats stats;
5e9d0469 2935 bool unknown_packets, unknown_bytes;
76c93b22 2936 struct ofpbuf *reply;
9ed18e46
BP
2937 struct list rules;
2938 struct rule *rule;
90bf1e07 2939 enum ofperr error;
27d34fce 2940
982697a4 2941 error = ofputil_decode_flow_stats_request(&request, oh);
76c93b22
BP
2942 if (error) {
2943 return error;
2944 }
5ecc9d81 2945
9ed18e46 2946 error = collect_rules_loose(ofproto, request.table_id, &request.match,
e729e793 2947 request.cookie, request.cookie_mask,
9ed18e46
BP
2948 request.out_port, &rules);
2949 if (error) {
2950 return error;
2951 }
3c4486a5 2952
9ed18e46 2953 memset(&stats, 0, sizeof stats);
5e9d0469 2954 unknown_packets = unknown_bytes = false;
9ed18e46
BP
2955 LIST_FOR_EACH (rule, ofproto_node, &rules) {
2956 uint64_t packet_count;
2957 uint64_t byte_count;
5ecc9d81 2958
9ed18e46
BP
2959 ofproto->ofproto_class->rule_get_stats(rule, &packet_count,
2960 &byte_count);
5ecc9d81 2961
5e9d0469
BP
2962 if (packet_count == UINT64_MAX) {
2963 unknown_packets = true;
2964 } else {
2965 stats.packet_count += packet_count;
2966 }
2967
2968 if (byte_count == UINT64_MAX) {
2969 unknown_bytes = true;
2970 } else {
2971 stats.byte_count += byte_count;
2972 }
2973
9ed18e46 2974 stats.flow_count++;
3c4486a5 2975 }
5e9d0469
BP
2976 if (unknown_packets) {
2977 stats.packet_count = UINT64_MAX;
2978 }
2979 if (unknown_bytes) {
2980 stats.byte_count = UINT64_MAX;
2981 }
27d34fce 2982
982697a4 2983 reply = ofputil_encode_aggregate_stats_reply(&stats, oh);
76c93b22 2984 ofconn_send_reply(ofconn, reply);
09246b99
BP
2985
2986 return 0;
2987}
2988
c1c9c9c4 2989struct queue_stats_cbdata {
ca0f572c 2990 struct ofport *ofport;
63f2140a 2991 struct list replies;
c1c9c9c4
BP
2992};
2993
2994static void
db9220c3 2995put_queue_stats(struct queue_stats_cbdata *cbdata, uint32_t queue_id,
c1c9c9c4
BP
2996 const struct netdev_queue_stats *stats)
2997{
c1c9c9c4 2998
64626975
SH
2999 struct ofputil_queue_stats oqs = {
3000 .port_no = cbdata->ofport->pp.port_no,
3001 .queue_id = queue_id,
3002 .stats = *stats,
3003 };
3004 ofputil_append_queue_stat(&cbdata->replies, &oqs);
c1c9c9c4
BP
3005}
3006
3007static void
db9220c3 3008handle_queue_stats_dump_cb(uint32_t queue_id,
c1c9c9c4
BP
3009 struct netdev_queue_stats *stats,
3010 void *cbdata_)
3011{
3012 struct queue_stats_cbdata *cbdata = cbdata_;
3013
3014 put_queue_stats(cbdata, queue_id, stats);
3015}
3016
0414d158 3017static enum ofperr
ca0f572c 3018handle_queue_stats_for_port(struct ofport *port, uint32_t queue_id,
c1c9c9c4
BP
3019 struct queue_stats_cbdata *cbdata)
3020{
ca0f572c 3021 cbdata->ofport = port;
c1c9c9c4
BP
3022 if (queue_id == OFPQ_ALL) {
3023 netdev_dump_queue_stats(port->netdev,
3024 handle_queue_stats_dump_cb, cbdata);
3025 } else {
3026 struct netdev_queue_stats stats;
3027
1ac788f6
BP
3028 if (!netdev_get_queue_stats(port->netdev, queue_id, &stats)) {
3029 put_queue_stats(cbdata, queue_id, &stats);
0414d158
BP
3030 } else {
3031 return OFPERR_OFPQOFC_BAD_QUEUE;
1ac788f6 3032 }
c1c9c9c4 3033 }
0414d158 3034 return 0;
c1c9c9c4
BP
3035}
3036
90bf1e07 3037static enum ofperr
63f2140a 3038handle_queue_stats_request(struct ofconn *ofconn,
982697a4 3039 const struct ofp_header *rq)
c1c9c9c4 3040{
64ff1d96 3041 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
c1c9c9c4 3042 struct queue_stats_cbdata cbdata;
0414d158 3043 struct ofport *port;
0414d158 3044 enum ofperr error;
64626975 3045 struct ofputil_queue_stats_request oqsr;
c1c9c9c4 3046
c1c9c9c4
BP
3047 COVERAGE_INC(ofproto_queue_req);
3048
982697a4 3049 ofpmp_init(&cbdata.replies, rq);
c1c9c9c4 3050
64626975
SH
3051 error = ofputil_decode_queue_stats_request(rq, &oqsr);
3052 if (error) {
3053 return error;
3054 }
3055
3056 if (oqsr.port_no == OFPP_ALL) {
0414d158 3057 error = OFPERR_OFPQOFC_BAD_QUEUE;
4e8e4213 3058 HMAP_FOR_EACH (port, hmap_node, &ofproto->ports) {
64626975 3059 if (!handle_queue_stats_for_port(port, oqsr.queue_id, &cbdata)) {
0414d158
BP
3060 error = 0;
3061 }
c1c9c9c4 3062 }
0414d158 3063 } else {
64626975 3064 port = ofproto_get_port(ofproto, oqsr.port_no);
0414d158 3065 error = (port
64626975 3066 ? handle_queue_stats_for_port(port, oqsr.queue_id, &cbdata)
0414d158
BP
3067 : OFPERR_OFPQOFC_BAD_PORT);
3068 }
3069 if (!error) {
3070 ofconn_send_replies(ofconn, &cbdata.replies);
c1c9c9c4 3071 } else {
63f2140a 3072 ofpbuf_list_delete(&cbdata.replies);
c1c9c9c4 3073 }
c1c9c9c4 3074
0414d158 3075 return error;
c1c9c9c4 3076}
7ee20df1
BP
3077
3078static bool
3079is_flow_deletion_pending(const struct ofproto *ofproto,
3080 const struct cls_rule *cls_rule,
3081 uint8_t table_id)
3082{
3083 if (!hmap_is_empty(&ofproto->deletions)) {
3084 struct ofoperation *op;
3085
3086 HMAP_FOR_EACH_WITH_HASH (op, hmap_node,
3087 cls_rule_hash(cls_rule, table_id),
3088 &ofproto->deletions) {
3089 if (cls_rule_equal(cls_rule, &op->rule->cr)) {
3090 return true;
3091 }
3092 }
3093 }
3094
3095 return false;
3096}
3097
79eee1eb
BP
3098/* Implements OFPFC_ADD and the cases for OFPFC_MODIFY and OFPFC_MODIFY_STRICT
3099 * in which no matching flow already exists in the flow table.
3100 *
3101 * Adds the flow specified by 'ofm', which is followed by 'n_actions'
75a75043 3102 * ofp_actions, to the ofproto's flow table. Returns 0 on success, an OpenFlow
90bf1e07
BP
3103 * error code on failure, or OFPROTO_POSTPONE if the operation cannot be
3104 * initiated now but may be retried later.
79eee1eb 3105 *
f25d0cf3
BP
3106 * Upon successful return, takes ownership of 'fm->ofpacts'. On failure,
3107 * ownership remains with the caller.
3108 *
79eee1eb
BP
3109 * 'ofconn' is used to retrieve the packet buffer specified in ofm->buffer_id,
3110 * if any. */
90bf1e07 3111static enum ofperr
a9a2da38 3112add_flow(struct ofproto *ofproto, struct ofconn *ofconn,
1b9d6420 3113 const struct ofputil_flow_mod *fm, const struct ofp_header *request)
064af421 3114{
d0918789 3115 struct oftable *table;
7ee20df1
BP
3116 struct ofopgroup *group;
3117 struct rule *victim;
81a76618 3118 struct cls_rule cr;
064af421 3119 struct rule *rule;
064af421
BP
3120 int error;
3121
48266274
BP
3122 error = check_table_id(ofproto, fm->table_id);
3123 if (error) {
3124 return error;
3125 }
3126
7ee20df1
BP
3127 /* Pick table. */
3128 if (fm->table_id == 0xff) {
3129 uint8_t table_id;
13521ff5 3130 if (ofproto->ofproto_class->rule_choose_table) {
81a76618
BP
3131 error = ofproto->ofproto_class->rule_choose_table(ofproto,
3132 &fm->match,
7ee20df1
BP
3133 &table_id);
3134 if (error) {
3135 return error;
3136 }
3137 assert(table_id < ofproto->n_tables);
3138 table = &ofproto->tables[table_id];
3139 } else {
3140 table = &ofproto->tables[0];
3141 }
3142 } else if (fm->table_id < ofproto->n_tables) {
3143 table = &ofproto->tables[fm->table_id];
3144 } else {
c22c56bd 3145 return OFPERR_OFPBRC_BAD_TABLE_ID;
064af421
BP
3146 }
3147
5c67e4af
BP
3148 if (table->flags & OFTABLE_READONLY) {
3149 return OFPERR_OFPBRC_EPERM;
3150 }
3151
81a76618
BP
3152 /* Allocate new rule and initialize classifier rule. */
3153 rule = ofproto->ofproto_class->rule_alloc();
3154 if (!rule) {
3155 VLOG_WARN_RL(&rl, "%s: failed to create rule (%s)",
3156 ofproto->name, strerror(error));
3157 return ENOMEM;
63adcc7d 3158 }
81a76618 3159 cls_rule_init(&rule->cr, &fm->match, fm->priority);
63adcc7d 3160
7ee20df1 3161 /* Serialize against pending deletion. */
81a76618 3162 if (is_flow_deletion_pending(ofproto, &cr, table - ofproto->tables)) {
48d28ac1 3163 cls_rule_destroy(&rule->cr);
81a76618 3164 ofproto->ofproto_class->rule_dealloc(rule);
7ee20df1 3165 return OFPROTO_POSTPONE;
afe75089 3166 }
064af421 3167
81a76618
BP
3168 /* Check for overlap, if requested. */
3169 if (fm->flags & OFPFF_CHECK_OVERLAP
3170 && classifier_rule_overlaps(&table->cls, &rule->cr)) {
48d28ac1 3171 cls_rule_destroy(&rule->cr);
81a76618
BP
3172 ofproto->ofproto_class->rule_dealloc(rule);
3173 return OFPERR_OFPFMFC_OVERLAP;
7ee20df1 3174 }
81a76618 3175
7ee20df1 3176 rule->ofproto = ofproto;
7ee20df1 3177 rule->pending = NULL;
623e1caf 3178 rule->flow_cookie = fm->new_cookie;
1745cd08 3179 rule->created = rule->modified = rule->used = time_msec();
7ee20df1
BP
3180 rule->idle_timeout = fm->idle_timeout;
3181 rule->hard_timeout = fm->hard_timeout;
3182 rule->table_id = table - ofproto->tables;
3183 rule->send_flow_removed = (fm->flags & OFPFF_SEND_FLOW_REM) != 0;
f25d0cf3
BP
3184 rule->ofpacts = xmemdup(fm->ofpacts, fm->ofpacts_len);
3185 rule->ofpacts_len = fm->ofpacts_len;
254750ce
BP
3186 rule->evictable = true;
3187 rule->eviction_group = NULL;
2b07c8b1
BP
3188 rule->monitor_flags = 0;
3189 rule->add_seqno = 0;
3190 rule->modify_seqno = 0;
7ee20df1
BP
3191
3192 /* Insert new rule. */
d0918789 3193 victim = oftable_replace_rule(rule);
5c67e4af
BP
3194 if (victim && !rule_is_modifiable(victim)) {
3195 error = OFPERR_OFPBRC_EPERM;
3196 } else if (victim && victim->pending) {
7ee20df1
BP
3197 error = OFPROTO_POSTPONE;
3198 } else {
a7d94793 3199 struct ofoperation *op;
254750ce
BP
3200 struct rule *evict;
3201
3202 if (classifier_count(&table->cls) > table->max_flows) {
3203 bool was_evictable;
3204
3205 was_evictable = rule->evictable;
3206 rule->evictable = false;
3207 evict = choose_rule_to_evict(table);
3208 rule->evictable = was_evictable;
3209
3210 if (!evict) {
be2b69d1 3211 error = OFPERR_OFPFMFC_TABLE_FULL;
254750ce
BP
3212 goto exit;
3213 } else if (evict->pending) {
3214 error = OFPROTO_POSTPONE;
3215 goto exit;
3216 }
3217 } else {
3218 evict = NULL;
3219 }
3220
7024dffe 3221 group = ofopgroup_create(ofproto, ofconn, request, fm->buffer_id);
2b07c8b1 3222 op = ofoperation_create(group, rule, OFOPERATION_ADD, 0);
a7d94793 3223 op->victim = victim;
7ee20df1
BP
3224
3225 error = ofproto->ofproto_class->rule_construct(rule);
3226 if (error) {
e615b0a3 3227 op->group->n_running--;
7ee20df1 3228 ofoperation_destroy(rule->pending);
254750ce
BP
3229 } else if (evict) {
3230 delete_flow__(evict, group);
7ee20df1
BP
3231 }
3232 ofopgroup_submit(group);
064af421 3233 }
79eee1eb 3234
254750ce 3235exit:
7ee20df1 3236 /* Back out if an error occurred. */
79eee1eb 3237 if (error) {
d0918789 3238 oftable_substitute_rule(rule, victim);
7ee20df1 3239 ofproto_rule_destroy__(rule);
79eee1eb 3240 }
7ee20df1 3241 return error;
064af421 3242}
79eee1eb
BP
3243\f
3244/* OFPFC_MODIFY and OFPFC_MODIFY_STRICT. */
064af421 3245
9ed18e46
BP
3246/* Modifies the rules listed in 'rules', changing their actions to match those
3247 * in 'fm'.
79eee1eb 3248 *
9ed18e46
BP
3249 * 'ofconn' is used to retrieve the packet buffer specified in fm->buffer_id,
3250 * if any.
3251 *
3252 * Returns 0 on success, otherwise an OpenFlow error code. */
90bf1e07 3253static enum ofperr
7024dffe
BP
3254modify_flows__(struct ofproto *ofproto, struct ofconn *ofconn,
3255 const struct ofputil_flow_mod *fm,
7ee20df1 3256 const struct ofp_header *request, struct list *rules)
79eee1eb 3257{
7ee20df1 3258 struct ofopgroup *group;
9ed18e46 3259 struct rule *rule;
5c67e4af 3260 enum ofperr error;
79eee1eb 3261
7024dffe 3262 group = ofopgroup_create(ofproto, ofconn, request, fm->buffer_id);
5c67e4af 3263 error = OFPERR_OFPBRC_EPERM;
9ed18e46 3264 LIST_FOR_EACH (rule, ofproto_node, rules) {
08043761
BP
3265 struct ofoperation *op;
3266 bool actions_changed;
3267 ovs_be64 new_cookie;
3268
5c67e4af
BP
3269 if (rule_is_modifiable(rule)) {
3270 /* At least one rule is modifiable, don't report EPERM error. */
3271 error = 0;
3272 } else {
3273 continue;
3274 }
3275
08043761
BP
3276 actions_changed = !ofpacts_equal(fm->ofpacts, fm->ofpacts_len,
3277 rule->ofpacts, rule->ofpacts_len);
3278 new_cookie = (fm->new_cookie != htonll(UINT64_MAX)
3279 ? fm->new_cookie
3280 : rule->flow_cookie);
3281 if (!actions_changed && new_cookie == rule->flow_cookie) {
3282 /* No change at all. */
3283 continue;
3284 }
a7d94793 3285
2b07c8b1 3286 op = ofoperation_create(group, rule, OFOPERATION_MODIFY, 0);
08043761
BP
3287 rule->flow_cookie = new_cookie;
3288 if (actions_changed) {
a7d94793
BP
3289 op->ofpacts = rule->ofpacts;
3290 op->ofpacts_len = rule->ofpacts_len;
f25d0cf3
BP
3291 rule->ofpacts = xmemdup(fm->ofpacts, fm->ofpacts_len);
3292 rule->ofpacts_len = fm->ofpacts_len;
3293 rule->ofproto->ofproto_class->rule_modify_actions(rule);
308881af 3294 } else {
08043761 3295 ofoperation_complete(op, 0);
623e1caf 3296 }
5ecc9d81 3297 }
7ee20df1 3298 ofopgroup_submit(group);
79eee1eb 3299
5c67e4af 3300 return error;
9ed18e46
BP
3301}
3302
9387b970
SH
3303static enum ofperr
3304modify_flows_add(struct ofproto *ofproto, struct ofconn *ofconn,
3305 const struct ofputil_flow_mod *fm,
3306 const struct ofp_header *request)
3307{
3308 if (fm->cookie_mask != htonll(0) || fm->new_cookie == htonll(UINT64_MAX)) {
3309 return 0;
3310 }
3311 return add_flow(ofproto, ofconn, fm, request);
3312}
3313
90bf1e07
BP
3314/* Implements OFPFC_MODIFY. Returns 0 on success or an OpenFlow error code on
3315 * failure.
9ed18e46
BP
3316 *
3317 * 'ofconn' is used to retrieve the packet buffer specified in fm->buffer_id,
3318 * if any. */
90bf1e07 3319static enum ofperr
7024dffe 3320modify_flows_loose(struct ofproto *ofproto, struct ofconn *ofconn,
1b9d6420 3321 const struct ofputil_flow_mod *fm,
7ee20df1 3322 const struct ofp_header *request)
9ed18e46 3323{
9ed18e46
BP
3324 struct list rules;
3325 int error;
3326
81a76618 3327 error = collect_rules_loose(ofproto, fm->table_id, &fm->match,
e729e793
JP
3328 fm->cookie, fm->cookie_mask,
3329 OFPP_NONE, &rules);
623e1caf
JP
3330 if (error) {
3331 return error;
3332 } else if (list_is_empty(&rules)) {
9387b970 3333 return modify_flows_add(ofproto, ofconn, fm, request);
623e1caf
JP
3334 } else {
3335 return modify_flows__(ofproto, ofconn, fm, request, &rules);
3336 }
79eee1eb
BP
3337}
3338
3339/* Implements OFPFC_MODIFY_STRICT. Returns 0 on success or an OpenFlow error
90bf1e07 3340 * code on failure.
79eee1eb 3341 *
9ed18e46 3342 * 'ofconn' is used to retrieve the packet buffer specified in fm->buffer_id,
79eee1eb 3343 * if any. */
90bf1e07 3344static enum ofperr
7024dffe 3345modify_flow_strict(struct ofproto *ofproto, struct ofconn *ofconn,
1b9d6420 3346 const struct ofputil_flow_mod *fm,
7ee20df1 3347 const struct ofp_header *request)
79eee1eb 3348{
9ed18e46 3349 struct list rules;
6c1491fb
BP
3350 int error;
3351
81a76618
BP
3352 error = collect_rules_strict(ofproto, fm->table_id, &fm->match,
3353 fm->priority, fm->cookie, fm->cookie_mask,
e729e793 3354 OFPP_NONE, &rules);
623e1caf
JP
3355
3356 if (error) {
3357 return error;
3358 } else if (list_is_empty(&rules)) {
9387b970 3359 return modify_flows_add(ofproto, ofconn, fm, request);
623e1caf
JP
3360 } else {
3361 return list_is_singleton(&rules) ? modify_flows__(ofproto, ofconn,
3362 fm, request, &rules)
3363 : 0;
3364 }
79eee1eb 3365}
9ed18e46
BP
3366\f
3367/* OFPFC_DELETE implementation. */
79eee1eb 3368
254750ce
BP
3369static void
3370delete_flow__(struct rule *rule, struct ofopgroup *group)
3371{
3372 struct ofproto *ofproto = rule->ofproto;
3373
3374 ofproto_rule_send_removed(rule, OFPRR_DELETE);
3375
2b07c8b1 3376 ofoperation_create(group, rule, OFOPERATION_DELETE, OFPRR_DELETE);
254750ce
BP
3377 oftable_remove_rule(rule);
3378 ofproto->ofproto_class->rule_destruct(rule);
3379}
3380
9ed18e46
BP
3381/* Deletes the rules listed in 'rules'.
3382 *
3383 * Returns 0 on success, otherwise an OpenFlow error code. */
90bf1e07 3384static enum ofperr
7024dffe
BP
3385delete_flows__(struct ofproto *ofproto, struct ofconn *ofconn,
3386 const struct ofp_header *request, struct list *rules)
064af421 3387{
9ed18e46 3388 struct rule *rule, *next;
7ee20df1 3389 struct ofopgroup *group;
79eee1eb 3390
7024dffe 3391 group = ofopgroup_create(ofproto, ofconn, request, UINT32_MAX);
9ed18e46 3392 LIST_FOR_EACH_SAFE (rule, next, ofproto_node, rules) {
254750ce 3393 delete_flow__(rule, group);
79eee1eb 3394 }
7ee20df1 3395 ofopgroup_submit(group);
79eee1eb 3396
9ed18e46 3397 return 0;
79eee1eb 3398}
79eee1eb
BP
3399
3400/* Implements OFPFC_DELETE. */
90bf1e07 3401static enum ofperr
7024dffe
BP
3402delete_flows_loose(struct ofproto *ofproto, struct ofconn *ofconn,
3403 const struct ofputil_flow_mod *fm,
7ee20df1 3404 const struct ofp_header *request)
79eee1eb 3405{
9ed18e46 3406 struct list rules;
90bf1e07 3407 enum ofperr error;
064af421 3408
81a76618 3409 error = collect_rules_loose(ofproto, fm->table_id, &fm->match,
e729e793
JP
3410 fm->cookie, fm->cookie_mask,
3411 fm->out_port, &rules);
9ed18e46 3412 return (error ? error
7024dffe
BP
3413 : !list_is_empty(&rules) ? delete_flows__(ofproto, ofconn, request,
3414 &rules)
9ed18e46 3415 : 0);
064af421
BP
3416}
3417
79eee1eb 3418/* Implements OFPFC_DELETE_STRICT. */
90bf1e07 3419static enum ofperr
7024dffe 3420delete_flow_strict(struct ofproto *ofproto, struct ofconn *ofconn,
1b9d6420 3421 const struct ofputil_flow_mod *fm,
7ee20df1 3422 const struct ofp_header *request)
79eee1eb 3423{
9ed18e46 3424 struct list rules;
90bf1e07 3425 enum ofperr error;
79eee1eb 3426
81a76618
BP
3427 error = collect_rules_strict(ofproto, fm->table_id, &fm->match,
3428 fm->priority, fm->cookie, fm->cookie_mask,
e729e793 3429 fm->out_port, &rules);
9ed18e46 3430 return (error ? error
7024dffe
BP
3431 : list_is_singleton(&rules) ? delete_flows__(ofproto, ofconn,
3432 request, &rules)
9ed18e46 3433 : 0);
abe529af
BP
3434}
3435
3436static void
3437ofproto_rule_send_removed(struct rule *rule, uint8_t reason)
3438{
3439 struct ofputil_flow_removed fr;
3440
2b07c8b1 3441 if (ofproto_rule_is_hidden(rule) || !rule->send_flow_removed) {
abe529af
BP
3442 return;
3443 }
3444
5cb7a798 3445 minimatch_expand(&rule->cr.match, &fr.match);
81a76618 3446 fr.priority = rule->cr.priority;
abe529af
BP
3447 fr.cookie = rule->flow_cookie;
3448 fr.reason = reason;
95216219 3449 fr.table_id = rule->table_id;
f27f2134
BP
3450 calc_flow_duration__(rule->created, time_msec(),
3451 &fr.duration_sec, &fr.duration_nsec);
abe529af 3452 fr.idle_timeout = rule->idle_timeout;
fa2bad0f 3453 fr.hard_timeout = rule->hard_timeout;
abe529af
BP
3454 rule->ofproto->ofproto_class->rule_get_stats(rule, &fr.packet_count,
3455 &fr.byte_count);
3456
3457 connmgr_send_flow_removed(rule->ofproto->connmgr, &fr);
3458}
3459
1745cd08
BP
3460void
3461ofproto_rule_update_used(struct rule *rule, long long int used)
3462{
3463 if (used > rule->used) {
254750ce
BP
3464 struct eviction_group *evg = rule->eviction_group;
3465
1745cd08 3466 rule->used = used;
254750ce
BP
3467 if (evg) {
3468 heap_change(&evg->rules, &rule->evg_node,
3469 rule_eviction_priority(rule));
3470 }
1745cd08
BP
3471 }
3472}
3473
abe529af
BP
3474/* Sends an OpenFlow "flow removed" message with the given 'reason' (either
3475 * OFPRR_HARD_TIMEOUT or OFPRR_IDLE_TIMEOUT), and then removes 'rule' from its
3476 * ofproto.
3477 *
e2a3d183
BP
3478 * 'rule' must not have a pending operation (that is, 'rule->pending' must be
3479 * NULL).
3480 *
abe529af
BP
3481 * ofproto implementation ->run() functions should use this function to expire
3482 * OpenFlow flows. */
3483void
3484ofproto_rule_expire(struct rule *rule, uint8_t reason)
3485{
7ee20df1
BP
3486 struct ofproto *ofproto = rule->ofproto;
3487 struct ofopgroup *group;
3488
abe529af 3489 assert(reason == OFPRR_HARD_TIMEOUT || reason == OFPRR_IDLE_TIMEOUT);
7ee20df1 3490
abe529af 3491 ofproto_rule_send_removed(rule, reason);
7ee20df1 3492
7024dffe 3493 group = ofopgroup_create_unattached(ofproto);
2b07c8b1 3494 ofoperation_create(group, rule, OFOPERATION_DELETE, reason);
d0918789 3495 oftable_remove_rule(rule);
254750ce 3496 ofproto->ofproto_class->rule_destruct(rule);
7ee20df1 3497 ofopgroup_submit(group);
79eee1eb
BP
3498}
3499\f
90bf1e07 3500static enum ofperr
2e4f5fcf 3501handle_flow_mod(struct ofconn *ofconn, const struct ofp_header *oh)
064af421 3502{
a5b8d268 3503 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
a9a2da38 3504 struct ofputil_flow_mod fm;
f25d0cf3
BP
3505 uint64_t ofpacts_stub[1024 / 8];
3506 struct ofpbuf ofpacts;
90bf1e07 3507 enum ofperr error;
a5b8d268 3508 long long int now;
064af421 3509
76589937 3510 error = reject_slave_controller(ofconn);
9deba63b 3511 if (error) {
f25d0cf3 3512 goto exit;
9deba63b 3513 }
3052b0c5 3514
f25d0cf3
BP
3515 ofpbuf_use_stub(&ofpacts, ofpacts_stub, sizeof ofpacts_stub);
3516 error = ofputil_decode_flow_mod(&fm, oh, ofconn_get_protocol(ofconn),
3517 &ofpacts);
064af421 3518 if (error) {
f25d0cf3 3519 goto exit_free_ofpacts;
064af421
BP
3520 }
3521
35805806 3522 if (fm.flags & OFPFF10_EMERG) {
3c6f631f
SH
3523 /* We do not support the OpenFlow 1.0 emergency flow cache, which
3524 * is not required in OpenFlow 1.0.1 and removed from OpenFlow 1.1.
3525 * There is no good error code, so just state that the flow table
3526 * is full. */
be2b69d1 3527 error = OFPERR_OFPFMFC_TABLE_FULL;
548de4dd
BP
3528 }
3529 if (!error) {
3530 error = ofpacts_check(fm.ofpacts, fm.ofpacts_len,
81a76618 3531 &fm.match.flow, ofproto->max_ports);
548de4dd
BP
3532 }
3533 if (!error) {
f25d0cf3 3534 error = handle_flow_mod__(ofconn_get_ofproto(ofconn), ofconn, &fm, oh);
49bdc010 3535 }
a5b8d268 3536 if (error) {
f25d0cf3 3537 goto exit_free_ofpacts;
a5b8d268
BP
3538 }
3539
3540 /* Record the operation for logging a summary report. */
3541 switch (fm.command) {
3542 case OFPFC_ADD:
3543 ofproto->n_add++;
3544 break;
3545
3546 case OFPFC_MODIFY:
3547 case OFPFC_MODIFY_STRICT:
3548 ofproto->n_modify++;
3549 break;
3550
3551 case OFPFC_DELETE:
3552 case OFPFC_DELETE_STRICT:
3553 ofproto->n_delete++;
3554 break;
3555 }
3556
3557 now = time_msec();
3558 if (ofproto->next_op_report == LLONG_MAX) {
3559 ofproto->first_op = now;
3560 ofproto->next_op_report = MAX(now + 10 * 1000,
3561 ofproto->op_backoff);
3562 ofproto->op_backoff = ofproto->next_op_report + 60 * 1000;
3563 }
3564 ofproto->last_op = now;
3565
f25d0cf3
BP
3566exit_free_ofpacts:
3567 ofpbuf_uninit(&ofpacts);
3568exit:
3569 return error;
75a75043
BP
3570}
3571
90bf1e07 3572static enum ofperr
75a75043
BP
3573handle_flow_mod__(struct ofproto *ofproto, struct ofconn *ofconn,
3574 const struct ofputil_flow_mod *fm,
3575 const struct ofp_header *oh)
3576{
3577 if (ofproto->n_pending >= 50) {
3578 assert(!list_is_empty(&ofproto->pending));
3579 return OFPROTO_POSTPONE;
3580 }
3581
3582 switch (fm->command) {
3052b0c5 3583 case OFPFC_ADD:
75a75043 3584 return add_flow(ofproto, ofconn, fm, oh);
3052b0c5
BP
3585
3586 case OFPFC_MODIFY:
75a75043 3587 return modify_flows_loose(ofproto, ofconn, fm, oh);
3052b0c5
BP
3588
3589 case OFPFC_MODIFY_STRICT:
75a75043 3590 return modify_flow_strict(ofproto, ofconn, fm, oh);
3052b0c5
BP
3591
3592 case OFPFC_DELETE:
75a75043 3593 return delete_flows_loose(ofproto, ofconn, fm, oh);
3052b0c5
BP
3594
3595 case OFPFC_DELETE_STRICT:
75a75043 3596 return delete_flow_strict(ofproto, ofconn, fm, oh);
3052b0c5
BP
3597
3598 default:
75a75043 3599 if (fm->command > 0xff) {
fbfa2911
BP
3600 VLOG_WARN_RL(&rl, "%s: flow_mod has explicit table_id but "
3601 "flow_mod_table_id extension is not enabled",
3602 ofproto->name);
6c1491fb 3603 }
90bf1e07 3604 return OFPERR_OFPFMFC_BAD_COMMAND;
3052b0c5
BP
3605 }
3606}
3607
90bf1e07 3608static enum ofperr
d1e2cf21 3609handle_role_request(struct ofconn *ofconn, const struct ofp_header *oh)
9deba63b 3610{
982697a4 3611 const struct nx_role_request *nrr = ofpmsg_body(oh);
9deba63b
BP
3612 struct nx_role_request *reply;
3613 struct ofpbuf *buf;
3614 uint32_t role;
3615
9deba63b
BP
3616 role = ntohl(nrr->role);
3617 if (role != NX_ROLE_OTHER && role != NX_ROLE_MASTER
3618 && role != NX_ROLE_SLAVE) {
2e0525bc 3619 return OFPERR_OFPRRFC_BAD_ROLE;
9deba63b
BP
3620 }
3621
7ee20df1
BP
3622 if (ofconn_get_role(ofconn) != role
3623 && ofconn_has_pending_opgroups(ofconn)) {
3624 return OFPROTO_POSTPONE;
3625 }
3626
1ce0a5fa 3627 ofconn_set_role(ofconn, role);
9deba63b 3628
982697a4
BP
3629 buf = ofpraw_alloc_reply(OFPRAW_NXT_ROLE_REPLY, oh, 0);
3630 reply = ofpbuf_put_zeros(buf, sizeof *reply);
9deba63b 3631 reply->role = htonl(role);
b0421aa2 3632 ofconn_send_reply(ofconn, buf);
9deba63b
BP
3633
3634 return 0;
3635}
3636
90bf1e07 3637static enum ofperr
6c1491fb
BP
3638handle_nxt_flow_mod_table_id(struct ofconn *ofconn,
3639 const struct ofp_header *oh)
3640{
982697a4 3641 const struct nx_flow_mod_table_id *msg = ofpmsg_body(oh);
27527aa0
BP
3642 enum ofputil_protocol cur, next;
3643
3644 cur = ofconn_get_protocol(ofconn);
3645 next = ofputil_protocol_set_tid(cur, msg->set != 0);
3646 ofconn_set_protocol(ofconn, next);
6c1491fb 3647
6c1491fb
BP
3648 return 0;
3649}
3650
90bf1e07 3651static enum ofperr
d1e2cf21 3652handle_nxt_set_flow_format(struct ofconn *ofconn, const struct ofp_header *oh)
09246b99 3653{
982697a4 3654 const struct nx_set_flow_format *msg = ofpmsg_body(oh);
27527aa0
BP
3655 enum ofputil_protocol cur, next;
3656 enum ofputil_protocol next_base;
09246b99 3657
27527aa0
BP
3658 next_base = ofputil_nx_flow_format_to_protocol(ntohl(msg->format));
3659 if (!next_base) {
90bf1e07 3660 return OFPERR_OFPBRC_EPERM;
09246b99 3661 }
7ee20df1 3662
27527aa0
BP
3663 cur = ofconn_get_protocol(ofconn);
3664 next = ofputil_protocol_set_base(cur, next_base);
3665 if (cur != next && ofconn_has_pending_opgroups(ofconn)) {
3666 /* Avoid sending async messages in surprising protocol. */
7ee20df1
BP
3667 return OFPROTO_POSTPONE;
3668 }
3669
27527aa0 3670 ofconn_set_protocol(ofconn, next);
7ee20df1 3671 return 0;
09246b99
BP
3672}
3673
90bf1e07 3674static enum ofperr
54834960
EJ
3675handle_nxt_set_packet_in_format(struct ofconn *ofconn,
3676 const struct ofp_header *oh)
3677{
982697a4 3678 const struct nx_set_packet_in_format *msg = ofpmsg_body(oh);
54834960
EJ
3679 uint32_t format;
3680
54834960 3681 format = ntohl(msg->format);
a15f0eeb 3682 if (format != NXPIF_OPENFLOW10 && format != NXPIF_NXM) {
90bf1e07 3683 return OFPERR_OFPBRC_EPERM;
54834960
EJ
3684 }
3685
3686 if (format != ofconn_get_packet_in_format(ofconn)
3687 && ofconn_has_pending_opgroups(ofconn)) {
3688 /* Avoid sending async message in surprsing packet in format. */
3689 return OFPROTO_POSTPONE;
3690 }
3691
3692 ofconn_set_packet_in_format(ofconn, format);
3693 return 0;
3694}
3695
80d5aefd
BP
3696static enum ofperr
3697handle_nxt_set_async_config(struct ofconn *ofconn, const struct ofp_header *oh)
3698{
982697a4 3699 const struct nx_async_config *msg = ofpmsg_body(oh);
80d5aefd
BP
3700 uint32_t master[OAM_N_TYPES];
3701 uint32_t slave[OAM_N_TYPES];
3702
3703 master[OAM_PACKET_IN] = ntohl(msg->packet_in_mask[0]);
3704 master[OAM_PORT_STATUS] = ntohl(msg->port_status_mask[0]);
3705 master[OAM_FLOW_REMOVED] = ntohl(msg->flow_removed_mask[0]);
3706
3707 slave[OAM_PACKET_IN] = ntohl(msg->packet_in_mask[1]);
3708 slave[OAM_PORT_STATUS] = ntohl(msg->port_status_mask[1]);
3709 slave[OAM_FLOW_REMOVED] = ntohl(msg->flow_removed_mask[1]);
3710
3711 ofconn_set_async_config(ofconn, master, slave);
4550b647
MM
3712 if (ofconn_get_type(ofconn) == OFCONN_SERVICE &&
3713 !ofconn_get_miss_send_len(ofconn)) {
3714 ofconn_set_miss_send_len(ofconn, OFP_DEFAULT_MISS_SEND_LEN);
3715 }
80d5aefd
BP
3716
3717 return 0;
3718}
3719
a7349929
BP
3720static enum ofperr
3721handle_nxt_set_controller_id(struct ofconn *ofconn,
3722 const struct ofp_header *oh)
3723{
982697a4 3724 const struct nx_controller_id *nci = ofpmsg_body(oh);
a7349929 3725
a7349929
BP
3726 if (!is_all_zeros(nci->zero, sizeof nci->zero)) {
3727 return OFPERR_NXBRC_MUST_BE_ZERO;
3728 }
3729
3730 ofconn_set_controller_id(ofconn, ntohs(nci->controller_id));
3731 return 0;
3732}
3733
90bf1e07 3734static enum ofperr
d1e2cf21 3735handle_barrier_request(struct ofconn *ofconn, const struct ofp_header *oh)
246e61ea 3736{
246e61ea
JP
3737 struct ofpbuf *buf;
3738
7ee20df1
BP
3739 if (ofconn_has_pending_opgroups(ofconn)) {
3740 return OFPROTO_POSTPONE;
3741 }
3742
982697a4
BP
3743 buf = ofpraw_alloc_reply((oh->version == OFP10_VERSION
3744 ? OFPRAW_OFPT10_BARRIER_REPLY
3745 : OFPRAW_OFPT11_BARRIER_REPLY), oh, 0);
b0421aa2 3746 ofconn_send_reply(ofconn, buf);
246e61ea
JP
3747 return 0;
3748}
3749
2b07c8b1
BP
3750static void
3751ofproto_compose_flow_refresh_update(const struct rule *rule,
3752 enum nx_flow_monitor_flags flags,
3753 struct list *msgs)
3754{
3755 struct ofoperation *op = rule->pending;
3756 struct ofputil_flow_update fu;
5cb7a798 3757 struct match match;
2b07c8b1
BP
3758
3759 if (op && op->type == OFOPERATION_ADD && !op->victim) {
3760 /* We'll report the final flow when the operation completes. Reporting
3761 * it now would cause a duplicate report later. */
3762 return;
3763 }
3764
3765 fu.event = (flags & (NXFMF_INITIAL | NXFMF_ADD)
3766 ? NXFME_ADDED : NXFME_MODIFIED);
3767 fu.reason = 0;
3768 fu.idle_timeout = rule->idle_timeout;
3769 fu.hard_timeout = rule->hard_timeout;
3770 fu.table_id = rule->table_id;
3771 fu.cookie = rule->flow_cookie;
5cb7a798
BP
3772 minimatch_expand(&rule->cr.match, &match);
3773 fu.match = &match;
6b140a4e 3774 fu.priority = rule->cr.priority;
2b07c8b1
BP
3775 if (!(flags & NXFMF_ACTIONS)) {
3776 fu.ofpacts = NULL;
3777 fu.ofpacts_len = 0;
3778 } else if (!op) {
3779 fu.ofpacts = rule->ofpacts;
3780 fu.ofpacts_len = rule->ofpacts_len;
3781 } else {
3782 /* An operation is in progress. Use the previous version of the flow's
3783 * actions, so that when the operation commits we report the change. */
3784 switch (op->type) {
3785 case OFOPERATION_ADD:
3786 /* We already verified that there was a victim. */
3787 fu.ofpacts = op->victim->ofpacts;
3788 fu.ofpacts_len = op->victim->ofpacts_len;
3789 break;
3790
3791 case OFOPERATION_MODIFY:
3792 if (op->ofpacts) {
3793 fu.ofpacts = op->ofpacts;
3794 fu.ofpacts_len = op->ofpacts_len;
3795 } else {
3796 fu.ofpacts = rule->ofpacts;
3797 fu.ofpacts_len = rule->ofpacts_len;
3798 }
3799 break;
3800
3801 case OFOPERATION_DELETE:
3802 fu.ofpacts = rule->ofpacts;
3803 fu.ofpacts_len = rule->ofpacts_len;
3804 break;
3805
3806 default:
3807 NOT_REACHED();
3808 }
3809 }
3810
3811 if (list_is_empty(msgs)) {
3812 ofputil_start_flow_update(msgs);
3813 }
3814 ofputil_append_flow_update(&fu, msgs);
3815}
3816
3817void
3818ofmonitor_compose_refresh_updates(struct list *rules, struct list *msgs)
3819{
3820 struct rule *rule;
3821
3822 LIST_FOR_EACH (rule, ofproto_node, rules) {
3823 enum nx_flow_monitor_flags flags = rule->monitor_flags;
3824 rule->monitor_flags = 0;
3825
3826 ofproto_compose_flow_refresh_update(rule, flags, msgs);
3827 }
3828}
3829
3830static void
3831ofproto_collect_ofmonitor_refresh_rule(const struct ofmonitor *m,
3832 struct rule *rule, uint64_t seqno,
3833 struct list *rules)
3834{
3835 enum nx_flow_monitor_flags update;
3836
3837 if (ofproto_rule_is_hidden(rule)) {
3838 return;
3839 }
3840
3841 if (!(rule->pending
3842 ? ofoperation_has_out_port(rule->pending, m->out_port)
3843 : ofproto_rule_has_out_port(rule, m->out_port))) {
3844 return;
3845 }
3846
3847 if (seqno) {
3848 if (rule->add_seqno > seqno) {
3849 update = NXFMF_ADD | NXFMF_MODIFY;
3850 } else if (rule->modify_seqno > seqno) {
3851 update = NXFMF_MODIFY;
3852 } else {
3853 return;
3854 }
3855
3856 if (!(m->flags & update)) {
3857 return;
3858 }
3859 } else {
3860 update = NXFMF_INITIAL;
3861 }
3862
3863 if (!rule->monitor_flags) {
3864 list_push_back(rules, &rule->ofproto_node);
3865 }
3866 rule->monitor_flags |= update | (m->flags & NXFMF_ACTIONS);
3867}
3868
3869static void
3870ofproto_collect_ofmonitor_refresh_rules(const struct ofmonitor *m,
3871 uint64_t seqno,
3872 struct list *rules)
3873{
3874 const struct ofproto *ofproto = ofconn_get_ofproto(m->ofconn);
3875 const struct ofoperation *op;
3876 const struct oftable *table;
81a76618 3877 struct cls_rule target;
2b07c8b1 3878
5cb7a798 3879 cls_rule_init_from_minimatch(&target, &m->match, 0);
2b07c8b1
BP
3880 FOR_EACH_MATCHING_TABLE (table, m->table_id, ofproto) {
3881 struct cls_cursor cursor;
3882 struct rule *rule;
3883
81a76618 3884 cls_cursor_init(&cursor, &table->cls, &target);
2b07c8b1
BP
3885 CLS_CURSOR_FOR_EACH (rule, cr, &cursor) {
3886 assert(!rule->pending); /* XXX */
3887 ofproto_collect_ofmonitor_refresh_rule(m, rule, seqno, rules);
3888 }
3889 }
3890
3891 HMAP_FOR_EACH (op, hmap_node, &ofproto->deletions) {
3892 struct rule *rule = op->rule;
3893
3894 if (((m->table_id == 0xff
3895 ? !(ofproto->tables[rule->table_id].flags & OFTABLE_HIDDEN)
3896 : m->table_id == rule->table_id))
81a76618 3897 && cls_rule_is_loose_match(&rule->cr, &target.match)) {
2b07c8b1
BP
3898 ofproto_collect_ofmonitor_refresh_rule(m, rule, seqno, rules);
3899 }
3900 }
48d28ac1 3901 cls_rule_destroy(&target);
2b07c8b1
BP
3902}
3903
3904static void
3905ofproto_collect_ofmonitor_initial_rules(struct ofmonitor *m,
3906 struct list *rules)
3907{
3908 if (m->flags & NXFMF_INITIAL) {
3909 ofproto_collect_ofmonitor_refresh_rules(m, 0, rules);
3910 }
3911}
3912
3913void
3914ofmonitor_collect_resume_rules(struct ofmonitor *m,
3915 uint64_t seqno, struct list *rules)
3916{
3917 ofproto_collect_ofmonitor_refresh_rules(m, seqno, rules);
3918}
3919
3920static enum ofperr
982697a4 3921handle_flow_monitor_request(struct ofconn *ofconn, const struct ofp_header *oh)
2b07c8b1
BP
3922{
3923 struct ofproto *ofproto = ofconn_get_ofproto(ofconn);
3924 struct ofmonitor **monitors;
3925 size_t n_monitors, allocated_monitors;
3926 struct list replies;
3927 enum ofperr error;
3928 struct list rules;
3929 struct ofpbuf b;
3930 size_t i;
3931
3932 error = 0;
982697a4 3933 ofpbuf_use_const(&b, oh, ntohs(oh->length));
2b07c8b1
BP
3934 monitors = NULL;
3935 n_monitors = allocated_monitors = 0;
3936 for (;;) {
3937 struct ofputil_flow_monitor_request request;
3938 struct ofmonitor *m;
3939 int retval;
3940
3941 retval = ofputil_decode_flow_monitor_request(&request, &b);
3942 if (retval == EOF) {
3943 break;
3944 } else if (retval) {
3945 error = retval;
3946 goto error;
3947 }
3948
3949 if (request.table_id != 0xff
3950 && request.table_id >= ofproto->n_tables) {
3951 error = OFPERR_OFPBRC_BAD_TABLE_ID;
3952 goto error;
3953 }
3954
3955 error = ofmonitor_create(&request, ofconn, &m);
3956 if (error) {
3957 goto error;
3958 }
3959
3960 if (n_monitors >= allocated_monitors) {
3961 monitors = x2nrealloc(monitors, &allocated_monitors,
3962 sizeof *monitors);
3963 }
3964 monitors[n_monitors++] = m;
3965 }
3966
3967 list_init(&rules);
3968 for (i = 0; i < n_monitors; i++) {
3969 ofproto_collect_ofmonitor_initial_rules(monitors[i], &rules);
3970 }
3971
982697a4 3972 ofpmp_init(&replies, oh);
2b07c8b1
BP
3973 ofmonitor_compose_refresh_updates(&rules, &replies);
3974 ofconn_send_replies(ofconn, &replies);
3975
3976 free(monitors);
3977
3978 return 0;
3979
3980error:
3981 for (i = 0; i < n_monitors; i++) {
3982 ofmonitor_destroy(monitors[i]);
3983 }
3984 free(monitors);
3985 return error;
3986}
3987
3988static enum ofperr
3989handle_flow_monitor_cancel(struct ofconn *ofconn, const struct ofp_header *oh)
3990{
3991 struct ofmonitor *m;
3992 uint32_t id;
3993
3994 id = ofputil_decode_flow_monitor_cancel(oh);
3995 m = ofmonitor_lookup(ofconn, id);
3996 if (!m) {
3997 return OFPERR_NXBRC_FM_BAD_ID;
3998 }
3999
4000 ofmonitor_destroy(m);
4001 return 0;
4002}
4003
90bf1e07 4004static enum ofperr
d1e2cf21 4005handle_openflow__(struct ofconn *ofconn, const struct ofpbuf *msg)
064af421 4006{
d1e2cf21 4007 const struct ofp_header *oh = msg->data;
982697a4 4008 enum ofptype type;
90bf1e07 4009 enum ofperr error;
064af421 4010
982697a4 4011 error = ofptype_decode(&type, oh);
d1e2cf21
BP
4012 if (error) {
4013 return error;
4014 }
064af421 4015
982697a4 4016 switch (type) {
d1e2cf21 4017 /* OpenFlow requests. */
982697a4 4018 case OFPTYPE_ECHO_REQUEST:
d1e2cf21 4019 return handle_echo_request(ofconn, oh);
064af421 4020
982697a4 4021 case OFPTYPE_FEATURES_REQUEST:
d1e2cf21 4022 return handle_features_request(ofconn, oh);
064af421 4023
982697a4 4024 case OFPTYPE_GET_CONFIG_REQUEST:
d1e2cf21 4025 return handle_get_config_request(ofconn, oh);
064af421 4026
982697a4
BP
4027 case OFPTYPE_SET_CONFIG:
4028 return handle_set_config(ofconn, oh);
064af421 4029
982697a4
BP
4030 case OFPTYPE_PACKET_OUT:
4031 return handle_packet_out(ofconn, oh);
064af421 4032
982697a4 4033 case OFPTYPE_PORT_MOD:
d1e2cf21 4034 return handle_port_mod(ofconn, oh);
064af421 4035
982697a4 4036 case OFPTYPE_FLOW_MOD:
2e4f5fcf 4037 return handle_flow_mod(ofconn, oh);
064af421 4038
982697a4 4039 case OFPTYPE_BARRIER_REQUEST:
d1e2cf21 4040 return handle_barrier_request(ofconn, oh);
064af421 4041
d1e2cf21 4042 /* OpenFlow replies. */
982697a4 4043 case OFPTYPE_ECHO_REPLY:
d1e2cf21 4044 return 0;
246e61ea 4045
d1e2cf21 4046 /* Nicira extension requests. */
982697a4 4047 case OFPTYPE_ROLE_REQUEST:
d1e2cf21
BP
4048 return handle_role_request(ofconn, oh);
4049
982697a4 4050 case OFPTYPE_FLOW_MOD_TABLE_ID:
6c1491fb 4051 return handle_nxt_flow_mod_table_id(ofconn, oh);
d1e2cf21 4052
982697a4 4053 case OFPTYPE_SET_FLOW_FORMAT:
d1e2cf21
BP
4054 return handle_nxt_set_flow_format(ofconn, oh);
4055
982697a4 4056 case OFPTYPE_SET_PACKET_IN_FORMAT:
54834960
EJ
4057 return handle_nxt_set_packet_in_format(ofconn, oh);
4058
982697a4 4059 case OFPTYPE_SET_CONTROLLER_ID:
a7349929
BP
4060 return handle_nxt_set_controller_id(ofconn, oh);
4061
982697a4 4062 case OFPTYPE_FLOW_AGE:
f27f2134
BP
4063 /* Nothing to do. */
4064 return 0;
4065
982697a4 4066 case OFPTYPE_FLOW_MONITOR_CANCEL:
2b07c8b1
BP
4067 return handle_flow_monitor_cancel(ofconn, oh);
4068
982697a4 4069 case OFPTYPE_SET_ASYNC_CONFIG:
80d5aefd
BP
4070 return handle_nxt_set_async_config(ofconn, oh);
4071
349adfb2 4072 /* Statistics requests. */
982697a4
BP
4073 case OFPTYPE_DESC_STATS_REQUEST:
4074 return handle_desc_stats_request(ofconn, oh);
4075
4076 case OFPTYPE_FLOW_STATS_REQUEST:
4077 return handle_flow_stats_request(ofconn, oh);
4078
4079 case OFPTYPE_AGGREGATE_STATS_REQUEST:
4080 return handle_aggregate_stats_request(ofconn, oh);
4081
4082 case OFPTYPE_TABLE_STATS_REQUEST:
4083 return handle_table_stats_request(ofconn, oh);
4084
4085 case OFPTYPE_PORT_STATS_REQUEST:
4086 return handle_port_stats_request(ofconn, oh);
4087
4088 case OFPTYPE_QUEUE_STATS_REQUEST:
4089 return handle_queue_stats_request(ofconn, oh);
4090
4091 case OFPTYPE_PORT_DESC_STATS_REQUEST:
4092 return handle_port_desc_stats_request(ofconn, oh);
4093
4094 case OFPTYPE_FLOW_MONITOR_STATS_REQUEST:
4095 return handle_flow_monitor_request(ofconn, oh);
4096
4097 case OFPTYPE_HELLO:
4098 case OFPTYPE_ERROR:
4099 case OFPTYPE_FEATURES_REPLY:
4100 case OFPTYPE_GET_CONFIG_REPLY:
4101 case OFPTYPE_PACKET_IN:
4102 case OFPTYPE_FLOW_REMOVED:
4103 case OFPTYPE_PORT_STATUS:
4104 case OFPTYPE_BARRIER_REPLY:
4105 case OFPTYPE_DESC_STATS_REPLY:
4106 case OFPTYPE_FLOW_STATS_REPLY:
4107 case OFPTYPE_QUEUE_STATS_REPLY:
4108 case OFPTYPE_PORT_STATS_REPLY:
4109 case OFPTYPE_TABLE_STATS_REPLY:
4110 case OFPTYPE_AGGREGATE_STATS_REPLY:
4111 case OFPTYPE_PORT_DESC_STATS_REPLY:
4112 case OFPTYPE_ROLE_REPLY:
4113 case OFPTYPE_FLOW_MONITOR_PAUSED:
4114 case OFPTYPE_FLOW_MONITOR_RESUMED:
4115 case OFPTYPE_FLOW_MONITOR_STATS_REPLY:
064af421 4116 default:
982697a4 4117 return OFPERR_OFPBRC_BAD_TYPE;
064af421 4118 }
d1e2cf21 4119}
064af421 4120
7ee20df1 4121static bool
d1e2cf21
BP
4122handle_openflow(struct ofconn *ofconn, struct ofpbuf *ofp_msg)
4123{
4124 int error = handle_openflow__(ofconn, ofp_msg);
7ee20df1 4125 if (error && error != OFPROTO_POSTPONE) {
1be5ff75 4126 ofconn_send_error(ofconn, ofp_msg->data, error);
064af421 4127 }
d1e2cf21 4128 COVERAGE_INC(ofproto_recv_openflow);
7ee20df1
BP
4129 return error != OFPROTO_POSTPONE;
4130}
4131\f
4132/* Asynchronous operations. */
4133
4134/* Creates and returns a new ofopgroup that is not associated with any
4135 * OpenFlow connection.
4136 *
4137 * The caller should add operations to the returned group with
4138 * ofoperation_create() and then submit it with ofopgroup_submit(). */
4139static struct ofopgroup *
7024dffe 4140ofopgroup_create_unattached(struct ofproto *ofproto)
7ee20df1
BP
4141{
4142 struct ofopgroup *group = xzalloc(sizeof *group);
4143 group->ofproto = ofproto;
4144 list_init(&group->ofproto_node);
4145 list_init(&group->ops);
4146 list_init(&group->ofconn_node);
4147 return group;
4148}
4149
7024dffe
BP
4150/* Creates and returns a new ofopgroup for 'ofproto'.
4151 *
4152 * If 'ofconn' is NULL, the new ofopgroup is not associated with any OpenFlow
4153 * connection. The 'request' and 'buffer_id' arguments are ignored.
4154 *
4155 * If 'ofconn' is nonnull, then the new ofopgroup is associated with 'ofconn'.
4156 * If the ofopgroup eventually fails, then the error reply will include
4157 * 'request'. If the ofopgroup eventually succeeds, then the packet with
4158 * buffer id 'buffer_id' on 'ofconn' will be sent by 'ofconn''s ofproto.
7ee20df1
BP
4159 *
4160 * The caller should add operations to the returned group with
4161 * ofoperation_create() and then submit it with ofopgroup_submit(). */
4162static struct ofopgroup *
7024dffe
BP
4163ofopgroup_create(struct ofproto *ofproto, struct ofconn *ofconn,
4164 const struct ofp_header *request, uint32_t buffer_id)
7ee20df1 4165{
7024dffe
BP
4166 struct ofopgroup *group = ofopgroup_create_unattached(ofproto);
4167 if (ofconn) {
4168 size_t request_len = ntohs(request->length);
7ee20df1 4169
7024dffe 4170 assert(ofconn_get_ofproto(ofconn) == ofproto);
7ee20df1 4171
7024dffe
BP
4172 ofconn_add_opgroup(ofconn, &group->ofconn_node);
4173 group->ofconn = ofconn;
4174 group->request = xmemdup(request, MIN(request_len, 64));
4175 group->buffer_id = buffer_id;
4176 }
7ee20df1
BP
4177 return group;
4178}
4179
4180/* Submits 'group' for processing.
4181 *
4182 * If 'group' contains no operations (e.g. none were ever added, or all of the
4183 * ones that were added completed synchronously), then it is destroyed
4184 * immediately. Otherwise it is added to the ofproto's list of pending
4185 * groups. */
4186static void
4187ofopgroup_submit(struct ofopgroup *group)
4188{
e615b0a3
BP
4189 if (!group->n_running) {
4190 ofopgroup_complete(group);
7ee20df1
BP
4191 } else {
4192 list_push_back(&group->ofproto->pending, &group->ofproto_node);
dd5616b3 4193 group->ofproto->n_pending++;
7ee20df1
BP
4194 }
4195}
4196
4197static void
e615b0a3 4198ofopgroup_complete(struct ofopgroup *group)
7ee20df1 4199{
e615b0a3 4200 struct ofproto *ofproto = group->ofproto;
2b07c8b1
BP
4201
4202 struct ofconn *abbrev_ofconn;
4203 ovs_be32 abbrev_xid;
4204
e615b0a3
BP
4205 struct ofoperation *op, *next_op;
4206 int error;
4207
4208 assert(!group->n_running);
4209
4210 error = 0;
4211 LIST_FOR_EACH (op, group_node, &group->ops) {
4212 if (op->error) {
4213 error = op->error;
4214 break;
4215 }
4216 }
4217
4218 if (!error && group->ofconn && group->buffer_id != UINT32_MAX) {
4219 LIST_FOR_EACH (op, group_node, &group->ops) {
4220 if (op->type != OFOPERATION_DELETE) {
4221 struct ofpbuf *packet;
4222 uint16_t in_port;
4223
4224 error = ofconn_pktbuf_retrieve(group->ofconn, group->buffer_id,
4225 &packet, &in_port);
4226 if (packet) {
4227 assert(!error);
4228 error = rule_execute(op->rule, in_port, packet);
4229 }
4230 break;
4231 }
4232 }
4233 }
4234
2b07c8b1
BP
4235 if (!error && !list_is_empty(&group->ofconn_node)) {
4236 abbrev_ofconn = group->ofconn;
4237 abbrev_xid = group->request->xid;
4238 } else {
4239 abbrev_ofconn = NULL;
4240 abbrev_xid = htonl(0);
4241 }
e615b0a3
BP
4242 LIST_FOR_EACH_SAFE (op, next_op, group_node, &group->ops) {
4243 struct rule *rule = op->rule;
2b07c8b1
BP
4244
4245 if (!op->error && !ofproto_rule_is_hidden(rule)) {
4246 /* Check that we can just cast from ofoperation_type to
4247 * nx_flow_update_event. */
1ec3db6f
EJ
4248 BUILD_ASSERT_DECL((enum nx_flow_update_event) OFOPERATION_ADD
4249 == NXFME_ADDED);
4250 BUILD_ASSERT_DECL((enum nx_flow_update_event) OFOPERATION_DELETE
4251 == NXFME_DELETED);
4252 BUILD_ASSERT_DECL((enum nx_flow_update_event) OFOPERATION_MODIFY
4253 == NXFME_MODIFIED);
2b07c8b1
BP
4254
4255 ofmonitor_report(ofproto->connmgr, rule,
4256 (enum nx_flow_update_event) op->type,
4257 op->reason, abbrev_ofconn, abbrev_xid);
4258 }
4259
e615b0a3
BP
4260 rule->pending = NULL;
4261
4262 switch (op->type) {
4263 case OFOPERATION_ADD:
4264 if (!op->error) {
5cb7a798
BP
4265 uint16_t vid_mask;
4266
e615b0a3 4267 ofproto_rule_destroy__(op->victim);
5cb7a798
BP
4268 vid_mask = minimask_get_vid_mask(&rule->cr.match.mask);
4269 if (vid_mask == VLAN_VID_MASK) {
e615b0a3 4270 if (ofproto->vlan_bitmap) {
5cb7a798 4271 uint16_t vid = miniflow_get_vid(&rule->cr.match.flow);
e615b0a3
BP
4272 if (!bitmap_is_set(ofproto->vlan_bitmap, vid)) {
4273 bitmap_set1(ofproto->vlan_bitmap, vid);
4274 ofproto->vlans_changed = true;
4275 }
4276 } else {
4277 ofproto->vlans_changed = true;
4278 }
4279 }
4280 } else {
4281 oftable_substitute_rule(rule, op->victim);
4282 ofproto_rule_destroy__(rule);
4283 }
4284 break;
4285
4286 case OFOPERATION_DELETE:
4287 assert(!op->error);
4288 ofproto_rule_destroy__(rule);
4289 op->rule = NULL;
4290 break;
4291
4292 case OFOPERATION_MODIFY:
4293 if (!op->error) {
4294 rule->modified = time_msec();
4295 } else {
41792464 4296 rule->flow_cookie = op->flow_cookie;
08043761
BP
4297 if (op->ofpacts) {
4298 free(rule->ofpacts);
4299 rule->ofpacts = op->ofpacts;
4300 rule->ofpacts_len = op->ofpacts_len;
4301 op->ofpacts = NULL;
4302 op->ofpacts_len = 0;
4303 }
e615b0a3
BP
4304 }
4305 break;
4306
4307 default:
4308 NOT_REACHED();
4309 }
4310
4311 ofoperation_destroy(op);
4312 }
4313
2b07c8b1
BP
4314 ofmonitor_flush(ofproto->connmgr);
4315
7ee20df1 4316 if (!list_is_empty(&group->ofproto_node)) {
e615b0a3
BP
4317 assert(ofproto->n_pending > 0);
4318 ofproto->n_pending--;
7ee20df1
BP
4319 list_remove(&group->ofproto_node);
4320 }
4321 if (!list_is_empty(&group->ofconn_node)) {
4322 list_remove(&group->ofconn_node);
e615b0a3
BP
4323 if (error) {
4324 ofconn_send_error(group->ofconn, group->request, error);
7ee20df1 4325 }
e615b0a3 4326 connmgr_retry(ofproto->connmgr);
7ee20df1
BP
4327 }
4328 free(group->request);
4329 free(group);
4330}
4331
4332/* Initiates a new operation on 'rule', of the specified 'type', within
a7d94793
BP
4333 * 'group'. Prior to calling, 'rule' must not have any pending operation.
4334 *
2b07c8b1
BP
4335 * For a 'type' of OFOPERATION_DELETE, 'reason' should specify the reason that
4336 * the flow is being deleted. For other 'type's, 'reason' is ignored (use 0).
4337 *
a7d94793
BP
4338 * Returns the newly created ofoperation (which is also available as
4339 * rule->pending). */
4340static struct ofoperation *
7ee20df1 4341ofoperation_create(struct ofopgroup *group, struct rule *rule,
2b07c8b1
BP
4342 enum ofoperation_type type,
4343 enum ofp_flow_removed_reason reason)
7ee20df1 4344{
a5b8d268 4345 struct ofproto *ofproto = group->ofproto;
7ee20df1
BP
4346 struct ofoperation *op;
4347
4348 assert(!rule->pending);
4349
4350 op = rule->pending = xzalloc(sizeof *op);
4351 op->group = group;
4352 list_push_back(&group->ops, &op->group_node);
4353 op->rule = rule;
4354 op->type = type;
2b07c8b1 4355 op->reason = reason;
7ee20df1
BP
4356 op->flow_cookie = rule->flow_cookie;
4357
e615b0a3
BP
4358 group->n_running++;
4359
7ee20df1 4360 if (type == OFOPERATION_DELETE) {
a5b8d268 4361 hmap_insert(&ofproto->deletions, &op->hmap_node,
7ee20df1
BP
4362 cls_rule_hash(&rule->cr, rule->table_id));
4363 }
a7d94793
BP
4364
4365 return op;
7ee20df1
BP
4366}
4367
4368static void
4369ofoperation_destroy(struct ofoperation *op)
4370{
4371 struct ofopgroup *group = op->group;
4372
4373 if (op->rule) {
4374 op->rule->pending = NULL;
4375 }
4376 if (op->type == OFOPERATION_DELETE) {
4377 hmap_remove(&group->ofproto->deletions, &op->hmap_node);
4378 }
4379 list_remove(&op->group_node);
f25d0cf3 4380 free(op->ofpacts);
7ee20df1 4381 free(op);
7ee20df1
BP
4382}
4383
4384/* Indicates that 'op' completed with status 'error', which is either 0 to
90bf1e07 4385 * indicate success or an OpenFlow error code on failure.
7ee20df1 4386 *
a6a62132
BP
4387 * If 'error' is 0, indicating success, the operation will be committed
4388 * permanently to the flow table. There is one interesting subcase:
4389 *
4390 * - If 'op' is an "add flow" operation that is replacing an existing rule in
4391 * the flow table (the "victim" rule) by a new one, then the caller must
4392 * have uninitialized any derived state in the victim rule, as in step 5 in
4393 * the "Life Cycle" in ofproto/ofproto-provider.h. ofoperation_complete()
4394 * performs steps 6 and 7 for the victim rule, most notably by calling its
4395 * ->rule_dealloc() function.
4396 *
4397 * If 'error' is nonzero, then generally the operation will be rolled back:
4398 *
4399 * - If 'op' is an "add flow" operation, ofproto removes the new rule or
4400 * restores the original rule. The caller must have uninitialized any
4401 * derived state in the new rule, as in step 5 of in the "Life Cycle" in
4402 * ofproto/ofproto-provider.h. ofoperation_complete() performs steps 6 and
4403 * and 7 for the new rule, calling its ->rule_dealloc() function.
4404 *
4405 * - If 'op' is a "modify flow" operation, ofproto restores the original
4406 * actions.
4407 *
4408 * - 'op' must not be a "delete flow" operation. Removing a rule is not
4409 * allowed to fail. It must always succeed.
7ee20df1 4410 *
5bee6e26
JP
4411 * Please see the large comment in ofproto/ofproto-provider.h titled
4412 * "Asynchronous Operation Support" for more information. */
7ee20df1 4413void
90bf1e07 4414ofoperation_complete(struct ofoperation *op, enum ofperr error)
7ee20df1
BP
4415{
4416 struct ofopgroup *group = op->group;
7ee20df1 4417
e615b0a3
BP
4418 assert(op->rule->pending == op);
4419 assert(group->n_running > 0);
4420 assert(!error || op->type != OFOPERATION_DELETE);
9075907c 4421
e615b0a3
BP
4422 op->error = error;
4423 if (!--group->n_running && !list_is_empty(&group->ofproto_node)) {
4424 ofopgroup_complete(group);
7ee20df1 4425 }
7ee20df1
BP
4426}
4427
4428struct rule *
4429ofoperation_get_victim(struct ofoperation *op)
4430{
4431 assert(op->type == OFOPERATION_ADD);
4432 return op->victim;
064af421
BP
4433}
4434\f
064af421 4435static uint64_t
fa60c019 4436pick_datapath_id(const struct ofproto *ofproto)
064af421 4437{
fa60c019 4438 const struct ofport *port;
064af421 4439
abe529af 4440 port = ofproto_get_port(ofproto, OFPP_LOCAL);
fa60c019
BP
4441 if (port) {
4442 uint8_t ea[ETH_ADDR_LEN];
4443 int error;
4444
4445 error = netdev_get_etheraddr(port->netdev, ea);
064af421
BP
4446 if (!error) {
4447 return eth_addr_to_uint64(ea);
4448 }
fbfa2911
BP
4449 VLOG_WARN("%s: could not get MAC address for %s (%s)",
4450 ofproto->name, netdev_get_name(port->netdev),
4451 strerror(error));
064af421 4452 }
fa60c019 4453 return ofproto->fallback_dpid;
064af421
BP
4454}
4455
4456static uint64_t
4457pick_fallback_dpid(void)
4458{
4459 uint8_t ea[ETH_ADDR_LEN];
70150daf 4460 eth_addr_nicira_random(ea);
064af421
BP
4461 return eth_addr_to_uint64(ea);
4462}
4463\f
254750ce
BP
4464/* Table overflow policy. */
4465
4466/* Chooses and returns a rule to evict from 'table'. Returns NULL if the table
4467 * is not configured to evict rules or if the table contains no evictable
4468 * rules. (Rules with 'evictable' set to false or with no timeouts are not
4469 * evictable.) */
4470static struct rule *
4471choose_rule_to_evict(struct oftable *table)
4472{
4473 struct eviction_group *evg;
4474
4475 if (!table->eviction_fields) {
4476 return NULL;
4477 }
4478
4479 /* In the common case, the outer and inner loops here will each be entered
4480 * exactly once:
4481 *
4482 * - The inner loop normally "return"s in its first iteration. If the
4483 * eviction group has any evictable rules, then it always returns in
4484 * some iteration.
4485 *
4486 * - The outer loop only iterates more than once if the largest eviction
4487 * group has no evictable rules.
4488 *
4489 * - The outer loop can exit only if table's 'max_flows' is all filled up
4490 * by unevictable rules'. */
4491 HEAP_FOR_EACH (evg, size_node, &table->eviction_groups_by_size) {
4492 struct rule *rule;
4493
4494 HEAP_FOR_EACH (rule, evg_node, &evg->rules) {
4495 if (rule->evictable) {
4496 return rule;
4497 }
4498 }
4499 }
4500
4501 return NULL;
4502}
4503
4504/* Searches 'ofproto' for tables that have more flows than their configured
4505 * maximum and that have flow eviction enabled, and evicts as many flows as
4506 * necessary and currently feasible from them.
4507 *
4508 * This triggers only when an OpenFlow table has N flows in it and then the
4509 * client configures a maximum number of flows less than N. */
4510static void
4511ofproto_evict(struct ofproto *ofproto)
4512{
4513 struct ofopgroup *group;
4514 struct oftable *table;
4515
4516 group = ofopgroup_create_unattached(ofproto);
4517 OFPROTO_FOR_EACH_TABLE (table, ofproto) {
4518 while (classifier_count(&table->cls) > table->max_flows
4519 && table->eviction_fields) {
4520 struct rule *rule;
4521
4522 rule = choose_rule_to_evict(table);
4523 if (!rule || rule->pending) {
4524 break;
4525 }
4526
2b07c8b1
BP
4527 ofoperation_create(group, rule,
4528 OFOPERATION_DELETE, OFPRR_EVICTION);
254750ce
BP
4529 oftable_remove_rule(rule);
4530 ofproto->ofproto_class->rule_destruct(rule);
4531 }
4532 }
4533 ofopgroup_submit(group);
4534}
4535\f
4536/* Eviction groups. */
4537
4538/* Returns the priority to use for an eviction_group that contains 'n_rules'
4539 * rules. The priority contains low-order random bits to ensure that eviction
4540 * groups with the same number of rules are prioritized randomly. */
4541static uint32_t
4542eviction_group_priority(size_t n_rules)
4543{
4544 uint16_t size = MIN(UINT16_MAX, n_rules);
4545 return (size << 16) | random_uint16();
4546}
4547
4548/* Updates 'evg', an eviction_group within 'table', following a change that
4549 * adds or removes rules in 'evg'. */
4550static void
4551eviction_group_resized(struct oftable *table, struct eviction_group *evg)
4552{
4553 heap_change(&table->eviction_groups_by_size, &evg->size_node,
4554 eviction_group_priority(heap_count(&evg->rules)));
4555}
4556
4557/* Destroys 'evg', an eviction_group within 'table':
4558 *
4559 * - Removes all the rules, if any, from 'evg'. (It doesn't destroy the
4560 * rules themselves, just removes them from the eviction group.)
4561 *
4562 * - Removes 'evg' from 'table'.
4563 *
4564 * - Frees 'evg'. */
4565static void
4566eviction_group_destroy(struct oftable *table, struct eviction_group *evg)
4567{
4568 while (!heap_is_empty(&evg->rules)) {
4569 struct rule *rule;
4570
4571 rule = CONTAINER_OF(heap_pop(&evg->rules), struct rule, evg_node);
4572 rule->eviction_group = NULL;
4573 }
4574 hmap_remove(&table->eviction_groups_by_id, &evg->id_node);
4575 heap_remove(&table->eviction_groups_by_size, &evg->size_node);
4576 heap_destroy(&evg->rules);
4577 free(evg);
4578}
4579
4580/* Removes 'rule' from its eviction group, if any. */
4581static void
4582eviction_group_remove_rule(struct rule *rule)
4583{
4584 if (rule->eviction_group) {
4585 struct oftable *table = &rule->ofproto->tables[rule->table_id];
4586 struct eviction_group *evg = rule->eviction_group;
4587
4588 rule->eviction_group = NULL;
4589 heap_remove(&evg->rules, &rule->evg_node);
4590 if (heap_is_empty(&evg->rules)) {
4591 eviction_group_destroy(table, evg);
4592 } else {
4593 eviction_group_resized(table, evg);
4594 }
4595 }
4596}
4597
4598/* Hashes the 'rule''s values for the eviction_fields of 'rule''s table, and
4599 * returns the hash value. */
4600static uint32_t
4601eviction_group_hash_rule(struct rule *rule)
4602{
4603 struct oftable *table = &rule->ofproto->tables[rule->table_id];
4604 const struct mf_subfield *sf;
5cb7a798 4605 struct flow flow;
254750ce
BP
4606 uint32_t hash;
4607
4608 hash = table->eviction_group_id_basis;
5cb7a798 4609 miniflow_expand(&rule->cr.match.flow, &flow);
254750ce
BP
4610 for (sf = table->eviction_fields;
4611 sf < &table->eviction_fields[table->n_eviction_fields];
4612 sf++)
4613 {
5cb7a798 4614 if (mf_are_prereqs_ok(sf->field, &flow)) {
254750ce
BP
4615 union mf_value value;
4616
5cb7a798 4617 mf_get_value(sf->field, &flow, &value);
254750ce
BP
4618 if (sf->ofs) {
4619 bitwise_zero(&value, sf->field->n_bytes, 0, sf->ofs);
4620 }
4621 if (sf->ofs + sf->n_bits < sf->field->n_bytes * 8) {
4622 unsigned int start = sf->ofs + sf->n_bits;
4623 bitwise_zero(&value, sf->field->n_bytes, start,
4624 sf->field->n_bytes * 8 - start);
4625 }
4626 hash = hash_bytes(&value, sf->field->n_bytes, hash);
4627 } else {
4628 hash = hash_int(hash, 0);
4629 }
4630 }
4631
4632 return hash;
4633}
4634
4635/* Returns an eviction group within 'table' with the given 'id', creating one
4636 * if necessary. */
4637static struct eviction_group *
4638eviction_group_find(struct oftable *table, uint32_t id)
4639{
4640 struct eviction_group *evg;
4641
4642 HMAP_FOR_EACH_WITH_HASH (evg, id_node, id, &table->eviction_groups_by_id) {
4643 return evg;
4644 }
4645
4646 evg = xmalloc(sizeof *evg);
4647 hmap_insert(&table->eviction_groups_by_id, &evg->id_node, id);
4648 heap_insert(&table->eviction_groups_by_size, &evg->size_node,
4649 eviction_group_priority(0));
4650 heap_init(&evg->rules);
4651
4652 return evg;
4653}
4654
4655/* Returns an eviction priority for 'rule'. The return value should be
4656 * interpreted so that higher priorities make a rule more attractive candidates
4657 * for eviction. */
4658static uint32_t
4659rule_eviction_priority(struct rule *rule)
4660{
4661 long long int hard_expiration;
4662 long long int idle_expiration;
4663 long long int expiration;
4664 uint32_t expiration_offset;
4665
4666 /* Calculate time of expiration. */
4667 hard_expiration = (rule->hard_timeout
4668 ? rule->modified + rule->hard_timeout * 1000
4669 : LLONG_MAX);
4670 idle_expiration = (rule->idle_timeout
4671 ? rule->used + rule->idle_timeout * 1000
4672 : LLONG_MAX);
4673 expiration = MIN(hard_expiration, idle_expiration);
4674 if (expiration == LLONG_MAX) {
4675 return 0;
4676 }
4677
4678 /* Calculate the time of expiration as a number of (approximate) seconds
4679 * after program startup.
4680 *
4681 * This should work OK for program runs that last UINT32_MAX seconds or
4682 * less. Therefore, please restart OVS at least once every 136 years. */
4683 expiration_offset = (expiration >> 10) - (time_boot_msec() >> 10);
4684
4685 /* Invert the expiration offset because we're using a max-heap. */
4686 return UINT32_MAX - expiration_offset;
4687}
4688
4689/* Adds 'rule' to an appropriate eviction group for its oftable's
4690 * configuration. Does nothing if 'rule''s oftable doesn't have eviction
4691 * enabled, or if 'rule' is a permanent rule (one that will never expire on its
4692 * own).
4693 *
4694 * The caller must ensure that 'rule' is not already in an eviction group. */
4695static void
4696eviction_group_add_rule(struct rule *rule)
4697{
4698 struct ofproto *ofproto = rule->ofproto;
4699 struct oftable *table = &ofproto->tables[rule->table_id];
4700
4701 if (table->eviction_fields
4702 && (rule->hard_timeout || rule->idle_timeout)) {
4703 struct eviction_group *evg;
4704
4705 evg = eviction_group_find(table, eviction_group_hash_rule(rule));
4706
4707 rule->eviction_group = evg;
4708 heap_insert(&evg->rules, &rule->evg_node,
4709 rule_eviction_priority(rule));
4710 eviction_group_resized(table, evg);
4711 }
4712}
4713\f
d0918789
BP
4714/* oftables. */
4715
4716/* Initializes 'table'. */
4717static void
4718oftable_init(struct oftable *table)
4719{
5c67e4af 4720 memset(table, 0, sizeof *table);
d0918789 4721 classifier_init(&table->cls);
ec1c5c7e 4722 table->max_flows = UINT_MAX;
d0918789
BP
4723}
4724
254750ce 4725/* Destroys 'table', including its classifier and eviction groups.
d0918789
BP
4726 *
4727 * The caller is responsible for freeing 'table' itself. */
4728static void
4729oftable_destroy(struct oftable *table)
4730{
4731 assert(classifier_is_empty(&table->cls));
254750ce 4732 oftable_disable_eviction(table);
d0918789 4733 classifier_destroy(&table->cls);
254750ce
BP
4734 free(table->name);
4735}
4736
4737/* Changes the name of 'table' to 'name'. If 'name' is NULL or the empty
4738 * string, then 'table' will use its default name.
4739 *
4740 * This only affects the name exposed for a table exposed through the OpenFlow
4741 * OFPST_TABLE (as printed by "ovs-ofctl dump-tables"). */
4742static void
4743oftable_set_name(struct oftable *table, const char *name)
4744{
4745 if (name && name[0]) {
4746 int len = strnlen(name, OFP_MAX_TABLE_NAME_LEN);
4747 if (!table->name || strncmp(name, table->name, len)) {
4748 free(table->name);
4749 table->name = xmemdup0(name, len);
4750 }
4751 } else {
4752 free(table->name);
4753 table->name = NULL;
4754 }
4755}
4756
4757/* oftables support a choice of two policies when adding a rule would cause the
4758 * number of flows in the table to exceed the configured maximum number: either
4759 * they can refuse to add the new flow or they can evict some existing flow.
4760 * This function configures the former policy on 'table'. */
4761static void
4762oftable_disable_eviction(struct oftable *table)
4763{
4764 if (table->eviction_fields) {
4765 struct eviction_group *evg, *next;
4766
4767 HMAP_FOR_EACH_SAFE (evg, next, id_node,
4768 &table->eviction_groups_by_id) {
4769 eviction_group_destroy(table, evg);
4770 }
4771 hmap_destroy(&table->eviction_groups_by_id);
4772 heap_destroy(&table->eviction_groups_by_size);
4773
4774 free(table->eviction_fields);
4775 table->eviction_fields = NULL;
4776 table->n_eviction_fields = 0;
4777 }
4778}
4779
4780/* oftables support a choice of two policies when adding a rule would cause the
4781 * number of flows in the table to exceed the configured maximum number: either
4782 * they can refuse to add the new flow or they can evict some existing flow.
4783 * This function configures the latter policy on 'table', with fairness based
4784 * on the values of the 'n_fields' fields specified in 'fields'. (Specifying
4785 * 'n_fields' as 0 disables fairness.) */
4786static void
4787oftable_enable_eviction(struct oftable *table,
4788 const struct mf_subfield *fields, size_t n_fields)
4789{
4790 struct cls_cursor cursor;
4791 struct rule *rule;
4792
4793 if (table->eviction_fields
4794 && n_fields == table->n_eviction_fields
4795 && (!n_fields
4796 || !memcmp(fields, table->eviction_fields,
4797 n_fields * sizeof *fields))) {
4798 /* No change. */
4799 return;
4800 }
4801
4802 oftable_disable_eviction(table);
4803
4804 table->n_eviction_fields = n_fields;
4805 table->eviction_fields = xmemdup(fields, n_fields * sizeof *fields);
4806
4807 table->eviction_group_id_basis = random_uint32();
4808 hmap_init(&table->eviction_groups_by_id);
4809 heap_init(&table->eviction_groups_by_size);
4810
4811 cls_cursor_init(&cursor, &table->cls, NULL);
4812 CLS_CURSOR_FOR_EACH (rule, cr, &cursor) {
4813 eviction_group_add_rule(rule);
4814 }
d0918789
BP
4815}
4816
4817/* Removes 'rule' from the oftable that contains it. */
4818static void
4819oftable_remove_rule(struct rule *rule)
4820{
4821 struct ofproto *ofproto = rule->ofproto;
4822 struct oftable *table = &ofproto->tables[rule->table_id];
4823
4824 classifier_remove(&table->cls, &rule->cr);
254750ce 4825 eviction_group_remove_rule(rule);
d0918789
BP
4826}
4827
4828/* Inserts 'rule' into its oftable. Removes any existing rule from 'rule''s
4829 * oftable that has an identical cls_rule. Returns the rule that was removed,
4830 * if any, and otherwise NULL. */
4831static struct rule *
4832oftable_replace_rule(struct rule *rule)
4833{
4834 struct ofproto *ofproto = rule->ofproto;
4835 struct oftable *table = &ofproto->tables[rule->table_id];
254750ce 4836 struct rule *victim;
d0918789 4837
254750ce
BP
4838 victim = rule_from_cls_rule(classifier_replace(&table->cls, &rule->cr));
4839 if (victim) {
4840 eviction_group_remove_rule(victim);
4841 }
4842 eviction_group_add_rule(rule);
4843 return victim;
d0918789
BP
4844}
4845
4846/* Removes 'old' from its oftable then, if 'new' is nonnull, inserts 'new'. */
4847static void
4848oftable_substitute_rule(struct rule *old, struct rule *new)
4849{
4850 if (new) {
4851 oftable_replace_rule(new);
4852 } else {
4853 oftable_remove_rule(old);
4854 }
4855}
4856\f
abe529af 4857/* unixctl commands. */
7aa697dd 4858
abe529af 4859struct ofproto *
2ac6bedd 4860ofproto_lookup(const char *name)
7aa697dd 4861{
2ac6bedd 4862 struct ofproto *ofproto;
7aa697dd 4863
2ac6bedd
BP
4864 HMAP_FOR_EACH_WITH_HASH (ofproto, hmap_node, hash_string(name, 0),
4865 &all_ofprotos) {
4866 if (!strcmp(ofproto->name, name)) {
4867 return ofproto;
4868 }
7aa697dd 4869 }
2ac6bedd 4870 return NULL;
7aa697dd
BP
4871}
4872
4873static void
0e15264f
BP
4874ofproto_unixctl_list(struct unixctl_conn *conn, int argc OVS_UNUSED,
4875 const char *argv[] OVS_UNUSED, void *aux OVS_UNUSED)
7aa697dd 4876{
7aa697dd 4877 struct ofproto *ofproto;
7aa697dd 4878 struct ds results;
7aa697dd 4879
7aa697dd 4880 ds_init(&results);
2ac6bedd
BP
4881 HMAP_FOR_EACH (ofproto, hmap_node, &all_ofprotos) {
4882 ds_put_format(&results, "%s\n", ofproto->name);
7aa697dd 4883 }
bde9f75d 4884 unixctl_command_reply(conn, ds_cstr(&results));
7aa697dd 4885 ds_destroy(&results);
7aa697dd
BP
4886}
4887
4888static void
4889ofproto_unixctl_init(void)
4890{
4891 static bool registered;
4892 if (registered) {
4893 return;
4894 }
4895 registered = true;
4896
0e15264f
BP
4897 unixctl_command_register("ofproto/list", "", 0, 0,
4898 ofproto_unixctl_list, NULL);
064af421 4899}
52a90c29
BP
4900\f
4901/* Linux VLAN device support (e.g. "eth0.10" for VLAN 10.)
4902 *
4903 * This is deprecated. It is only for compatibility with broken device drivers
4904 * in old versions of Linux that do not properly support VLANs when VLAN
4905 * devices are not used. When broken device drivers are no longer in
4906 * widespread use, we will delete these interfaces. */
4907
4908/* Sets a 1-bit in the 4096-bit 'vlan_bitmap' for each VLAN ID that is matched
4909 * (exactly) by an OpenFlow rule in 'ofproto'. */
4910void
4911ofproto_get_vlan_usage(struct ofproto *ofproto, unsigned long int *vlan_bitmap)
4912{
d0918789 4913 const struct oftable *oftable;
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4914
4915 free(ofproto->vlan_bitmap);
4916 ofproto->vlan_bitmap = bitmap_allocate(4096);
4917 ofproto->vlans_changed = false;
4918
d0918789 4919 OFPROTO_FOR_EACH_TABLE (oftable, ofproto) {
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4920 const struct cls_table *table;
4921
d0918789 4922 HMAP_FOR_EACH (table, hmap_node, &oftable->cls.tables) {
5cb7a798 4923 if (minimask_get_vid_mask(&table->mask) == VLAN_VID_MASK) {
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4924 const struct cls_rule *rule;
4925
4926 HMAP_FOR_EACH (rule, hmap_node, &table->rules) {
5cb7a798 4927 uint16_t vid = miniflow_get_vid(&rule->match.flow);
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4928 bitmap_set1(vlan_bitmap, vid);
4929 bitmap_set1(ofproto->vlan_bitmap, vid);
4930 }
4931 }
4932 }
4933 }
4934}
4935
4936/* Returns true if new VLANs have come into use by the flow table since the
4937 * last call to ofproto_get_vlan_usage().
4938 *
4939 * We don't track when old VLANs stop being used. */
4940bool
4941ofproto_has_vlan_usage_changed(const struct ofproto *ofproto)
4942{
4943 return ofproto->vlans_changed;
4944}
4945
4946/* Configures a VLAN splinter binding between the ports identified by OpenFlow
4947 * port numbers 'vlandev_ofp_port' and 'realdev_ofp_port'. If
4948 * 'realdev_ofp_port' is nonzero, then the VLAN device is enslaved to the real
4949 * device as a VLAN splinter for VLAN ID 'vid'. If 'realdev_ofp_port' is zero,
4950 * then the VLAN device is un-enslaved. */
4951int
4952ofproto_port_set_realdev(struct ofproto *ofproto, uint16_t vlandev_ofp_port,
4953 uint16_t realdev_ofp_port, int vid)
4954{
4955 struct ofport *ofport;
4956 int error;
4957
4958 assert(vlandev_ofp_port != realdev_ofp_port);
4959
4960 ofport = ofproto_get_port(ofproto, vlandev_ofp_port);
4961 if (!ofport) {
4962 VLOG_WARN("%s: cannot set realdev on nonexistent port %"PRIu16,
4963 ofproto->name, vlandev_ofp_port);
4964 return EINVAL;
4965 }
4966
4967 if (!ofproto->ofproto_class->set_realdev) {
4968 if (!vlandev_ofp_port) {
4969 return 0;
4970 }
4971 VLOG_WARN("%s: vlan splinters not supported", ofproto->name);
4972 return EOPNOTSUPP;
4973 }
4974
4975 error = ofproto->ofproto_class->set_realdev(ofport, realdev_ofp_port, vid);
4976 if (error) {
4977 VLOG_WARN("%s: setting realdev on port %"PRIu16" (%s) failed (%s)",
4978 ofproto->name, vlandev_ofp_port,
4979 netdev_get_name(ofport->netdev), strerror(error));
4980 }
4981 return error;
4982}