2009-07-08 13:19:16 -07:00
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/*
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2014-01-08 10:42:12 -08:00
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* Copyright (c) 2008, 2009, 2010, 2011, 2012, 2013 Nicira, Inc.
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2009-07-08 13:19:16 -07:00
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*
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2009-06-15 15:11:30 -07:00
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at:
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2009-07-08 13:19:16 -07:00
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*
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2009-06-15 15:11:30 -07:00
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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2009-07-08 13:19:16 -07:00
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*/
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#include <config.h>
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#include "mac-learning.h"
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#include <inttypes.h>
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#include <stdlib.h>
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2009-11-06 17:13:51 -08:00
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#include "bitmap.h"
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2009-07-08 13:19:16 -07:00
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#include "coverage.h"
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#include "hash.h"
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#include "list.h"
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#include "poll-loop.h"
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#include "timeval.h"
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2012-04-09 14:33:56 -07:00
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#include "unaligned.h"
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2009-07-08 13:19:16 -07:00
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#include "util.h"
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2011-04-08 13:19:33 -07:00
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#include "vlan-bitmap.h"
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2010-07-16 11:02:49 -07:00
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coverage: Make the coverage counters catalog program-specific.
Until now, the collection of coverage counters supported by a given OVS
program was not specific to that program. That means that, for example,
even though ovs-dpctl does not have anything to do with mac_learning, it
still has a coverage counter for it. This is confusing, at best.
This commit fixes the problem on some systems, in particular on ones that
use GCC and the GNU linker. It uses the feature of the GNU linker
described in its manual as:
If an orphaned section's name is representable as a C identifier then
the linker will automatically see PROVIDE two symbols: __start_SECNAME
and __end_SECNAME, where SECNAME is the name of the section. These
indicate the start address and end address of the orphaned section
respectively.
Systems that don't support these features retain the earlier behavior.
This commit also fixes the annoyance that files that include coverage
counters must be listed on COVERAGE_FILES in lib/automake.mk.
This commit also fixes the annoyance that modifying any source file that
includes a coverage counter caused all programs that link against
libopenvswitch.a to relink, even programs that the source file was not
linked into. For example, modifying ofproto/ofproto.c (which includes
coverage counters) caused tests/test-aes128 to relink, even though
test-aes128 does not link again ofproto.o.
2010-11-01 14:14:27 -07:00
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COVERAGE_DEFINE(mac_learning_learned);
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COVERAGE_DEFINE(mac_learning_expired);
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2012-02-01 15:04:51 -08:00
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/* Returns the number of seconds since 'e' (within 'ml') was last learned. */
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2009-07-15 11:02:24 -07:00
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int
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2012-02-01 15:04:51 -08:00
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mac_entry_age(const struct mac_learning *ml, const struct mac_entry *e)
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2009-07-15 11:02:24 -07:00
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{
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time_t remaining = e->expires - time_now();
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2012-02-01 15:04:51 -08:00
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return ml->idle_time - remaining;
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2009-07-15 11:02:24 -07:00
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}
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2009-07-08 13:19:16 -07:00
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static uint32_t
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2011-07-22 11:50:26 -07:00
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mac_table_hash(const struct mac_learning *ml, const uint8_t mac[ETH_ADDR_LEN],
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uint16_t vlan)
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2009-07-08 13:19:16 -07:00
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{
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2013-07-22 15:47:19 -07:00
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unsigned int mac1 = get_unaligned_u32(ALIGNED_CAST(uint32_t *, mac));
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unsigned int mac2 = get_unaligned_u16(ALIGNED_CAST(uint16_t *, mac + 4));
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2012-04-09 14:33:56 -07:00
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return hash_3words(mac1, mac2 | (vlan << 16), ml->secret);
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2009-07-08 13:19:16 -07:00
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}
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static struct mac_entry *
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mac_entry_from_lru_node(struct list *list)
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{
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return CONTAINER_OF(list, struct mac_entry, lru_node);
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}
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static struct mac_entry *
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2011-07-21 17:41:58 -07:00
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mac_entry_lookup(const struct mac_learning *ml,
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const uint8_t mac[ETH_ADDR_LEN], uint16_t vlan)
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2009-07-08 13:19:16 -07:00
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{
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struct mac_entry *e;
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2011-07-21 17:41:58 -07:00
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2011-07-22 11:50:26 -07:00
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HMAP_FOR_EACH_WITH_HASH (e, hmap_node, mac_table_hash(ml, mac, vlan),
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2011-07-21 17:41:58 -07:00
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&ml->table) {
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if (e->vlan == vlan && eth_addr_equals(e->mac, mac)) {
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2009-07-08 13:19:16 -07:00
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return e;
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}
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}
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return NULL;
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}
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/* If the LRU list is not empty, stores the least-recently-used entry in '*e'
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* and returns true. Otherwise, if the LRU list is empty, stores NULL in '*e'
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* and return false. */
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static bool
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get_lru(struct mac_learning *ml, struct mac_entry **e)
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2013-07-22 11:11:54 -07:00
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OVS_REQ_RDLOCK(ml->rwlock)
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2009-07-08 13:19:16 -07:00
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{
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if (!list_is_empty(&ml->lrus)) {
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*e = mac_entry_from_lru_node(ml->lrus.next);
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return true;
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} else {
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*e = NULL;
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return false;
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}
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}
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2012-02-01 15:04:51 -08:00
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static unsigned int
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normalize_idle_time(unsigned int idle_time)
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{
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return (idle_time < 15 ? 15
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: idle_time > 3600 ? 3600
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: idle_time);
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}
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/* Creates and returns a new MAC learning table with an initial MAC aging
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2012-12-08 12:32:33 -08:00
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* timeout of 'idle_time' seconds and an initial maximum of MAC_DEFAULT_MAX
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* entries. */
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2009-07-08 13:19:16 -07:00
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struct mac_learning *
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2012-02-01 15:04:51 -08:00
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mac_learning_create(unsigned int idle_time)
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2009-07-08 13:19:16 -07:00
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{
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struct mac_learning *ml;
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ml = xmalloc(sizeof *ml);
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list_init(&ml->lrus);
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2011-07-21 17:41:58 -07:00
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hmap_init(&ml->table);
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2009-07-08 13:19:16 -07:00
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ml->secret = random_uint32();
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2010-01-19 10:41:46 -08:00
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ml->flood_vlans = NULL;
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2012-02-01 15:04:51 -08:00
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ml->idle_time = normalize_idle_time(idle_time);
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2012-12-08 12:32:33 -08:00
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ml->max_entries = MAC_DEFAULT_MAX;
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2013-08-01 18:04:07 -07:00
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ml->need_revalidate = false;
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2013-12-27 19:39:24 -08:00
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ovs_refcount_init(&ml->ref_cnt);
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2013-07-22 11:11:54 -07:00
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ovs_rwlock_init(&ml->rwlock);
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2009-07-08 13:19:16 -07:00
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return ml;
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}
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2013-06-18 19:41:51 -07:00
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struct mac_learning *
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mac_learning_ref(const struct mac_learning *ml_)
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2009-07-08 13:19:16 -07:00
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{
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2013-06-18 19:41:51 -07:00
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struct mac_learning *ml = CONST_CAST(struct mac_learning *, ml_);
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2009-11-06 17:13:51 -08:00
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if (ml) {
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2013-12-27 19:39:24 -08:00
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ovs_refcount_ref(&ml->ref_cnt);
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2013-06-18 19:41:51 -07:00
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}
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return ml;
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}
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/* Unreferences (and possibly destroys) MAC learning table 'ml'. */
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void
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mac_learning_unref(struct mac_learning *ml)
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{
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2013-12-27 19:39:24 -08:00
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if (ml && ovs_refcount_unref(&ml->ref_cnt) == 1) {
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2011-07-22 12:00:46 -07:00
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struct mac_entry *e, *next;
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HMAP_FOR_EACH_SAFE (e, next, hmap_node, &ml->table) {
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hmap_remove(&ml->table, &e->hmap_node);
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free(e);
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}
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2011-07-21 17:41:58 -07:00
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hmap_destroy(&ml->table);
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2011-07-22 12:00:46 -07:00
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2010-01-19 10:41:46 -08:00
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bitmap_free(ml->flood_vlans);
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2013-07-22 11:11:54 -07:00
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ovs_rwlock_destroy(&ml->rwlock);
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2013-12-27 19:39:24 -08:00
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ovs_refcount_destroy(&ml->ref_cnt);
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2011-04-08 13:19:56 -07:00
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free(ml);
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2009-11-06 17:13:51 -08:00
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}
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2009-07-08 13:19:16 -07:00
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}
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2010-01-19 10:41:46 -08:00
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/* Provides a bitmap of VLANs which have learning disabled, that is, VLANs on
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2011-04-06 15:31:22 -07:00
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* which all packets are flooded. Returns true if the set has changed from the
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* previous value. */
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2009-11-06 17:13:51 -08:00
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bool
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2011-04-06 15:31:22 -07:00
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mac_learning_set_flood_vlans(struct mac_learning *ml,
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const unsigned long *bitmap)
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2009-11-06 17:13:51 -08:00
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{
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2011-04-06 15:31:22 -07:00
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if (vlan_bitmap_equal(ml->flood_vlans, bitmap)) {
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return false;
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} else {
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bitmap_free(ml->flood_vlans);
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ml->flood_vlans = vlan_bitmap_clone(bitmap);
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return true;
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}
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2009-11-06 17:13:51 -08:00
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}
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2012-02-01 15:04:51 -08:00
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/* Changes the MAC aging timeout of 'ml' to 'idle_time' seconds. */
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void
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mac_learning_set_idle_time(struct mac_learning *ml, unsigned int idle_time)
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{
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idle_time = normalize_idle_time(idle_time);
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if (idle_time != ml->idle_time) {
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struct mac_entry *e;
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int delta;
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delta = (int) idle_time - (int) ml->idle_time;
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LIST_FOR_EACH (e, lru_node, &ml->lrus) {
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e->expires += delta;
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}
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ml->idle_time = idle_time;
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}
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}
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2012-12-08 12:32:33 -08:00
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/* Sets the maximum number of entries in 'ml' to 'max_entries', adjusting it
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* to be within a reasonable range. */
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void
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mac_learning_set_max_entries(struct mac_learning *ml, size_t max_entries)
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{
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ml->max_entries = (max_entries < 10 ? 10
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: max_entries > 1000 * 1000 ? 1000 * 1000
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: max_entries);
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}
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2009-11-06 17:13:51 -08:00
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static bool
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is_learning_vlan(const struct mac_learning *ml, uint16_t vlan)
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{
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2011-07-21 17:03:03 -07:00
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return !ml->flood_vlans || !bitmap_is_set(ml->flood_vlans, vlan);
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2009-11-06 17:13:51 -08:00
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}
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2011-03-22 09:47:02 -07:00
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/* Returns true if 'src_mac' may be learned on 'vlan' for 'ml'.
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* Returns false if 'ml' is NULL, if src_mac is not valid for learning, or if
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* 'vlan' is configured on 'ml' to flood all packets. */
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bool
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mac_learning_may_learn(const struct mac_learning *ml,
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const uint8_t src_mac[ETH_ADDR_LEN], uint16_t vlan)
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{
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return ml && is_learning_vlan(ml, vlan) && !eth_addr_is_multicast(src_mac);
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}
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/* Searches 'ml' for and returns a MAC learning entry for 'src_mac' in 'vlan',
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* inserting a new entry if necessary. The caller must have already verified,
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* by calling mac_learning_may_learn(), that 'src_mac' and 'vlan' are
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* learnable.
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2010-06-02 16:26:46 -07:00
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*
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2011-03-22 09:47:02 -07:00
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* If the returned MAC entry is new (as may be determined by calling
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* mac_entry_is_new()), then the caller must pass the new entry to
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* mac_learning_changed(). The caller must also initialize the new entry's
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* 'port' member. Otherwise calling those functions is at the caller's
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* discretion. */
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struct mac_entry *
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mac_learning_insert(struct mac_learning *ml,
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const uint8_t src_mac[ETH_ADDR_LEN], uint16_t vlan)
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2009-07-08 13:19:16 -07:00
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{
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struct mac_entry *e;
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2011-07-21 17:41:58 -07:00
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e = mac_entry_lookup(ml, src_mac, vlan);
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2009-07-08 13:19:16 -07:00
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if (!e) {
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2011-07-22 11:50:26 -07:00
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uint32_t hash = mac_table_hash(ml, src_mac, vlan);
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2012-12-08 12:32:33 -08:00
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if (hmap_count(&ml->table) >= ml->max_entries) {
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2011-07-22 12:00:46 -07:00
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get_lru(ml, &e);
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mac_learning_expire(ml, e);
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2009-07-08 13:19:16 -07:00
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}
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2011-07-22 11:50:26 -07:00
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2011-07-22 12:00:46 -07:00
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e = xmalloc(sizeof *e);
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2011-07-22 11:50:26 -07:00
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hmap_insert(&ml->table, &e->hmap_node, hash);
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2011-03-22 09:47:02 -07:00
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memcpy(e->mac, src_mac, ETH_ADDR_LEN);
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2009-07-08 13:19:16 -07:00
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e->vlan = vlan;
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2010-06-02 16:26:46 -07:00
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e->grat_arp_lock = TIME_MIN;
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2013-08-01 18:04:07 -07:00
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e->port.p = NULL;
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2011-07-22 12:00:46 -07:00
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} else {
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list_remove(&e->lru_node);
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2009-07-08 13:19:16 -07:00
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}
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2011-03-22 09:47:02 -07:00
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/* Mark 'e' as recently used. */
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list_push_back(&ml->lrus, &e->lru_node);
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2012-02-01 15:04:51 -08:00
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e->expires = time_now() + ml->idle_time;
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2010-06-02 16:26:46 -07:00
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2011-03-22 09:47:02 -07:00
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return e;
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2009-07-08 13:19:16 -07:00
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}
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2013-06-12 13:58:16 -07:00
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/* Changes 'e''s tag to a new, randomly selected one. Causes
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* mac_learning_run() to flag for revalidation the tag that would have been
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* previously used for this entry's MAC and VLAN (either before 'e' was
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* inserted, if it is new, or otherwise before its port was updated.)
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2011-03-22 09:47:02 -07:00
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*
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* The client should call this function after obtaining a MAC learning entry
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* from mac_learning_insert(), if the entry is either new or if its learned
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* port has changed. */
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2013-06-12 13:58:16 -07:00
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void
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2013-08-01 18:04:07 -07:00
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mac_learning_changed(struct mac_learning *ml)
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2009-07-08 13:19:16 -07:00
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{
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2011-03-22 09:47:02 -07:00
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COVERAGE_INC(mac_learning_learned);
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2013-08-01 18:04:07 -07:00
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ml->need_revalidate = true;
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2009-07-08 13:19:16 -07:00
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}
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2011-03-22 09:47:02 -07:00
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/* Looks up MAC 'dst' for VLAN 'vlan' in 'ml' and returns the associated MAC
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* learning entry, if any. If 'tag' is nonnull, then the tag that associates
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* 'dst' and 'vlan' with its currently learned port will be OR'd into
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* '*tag'. */
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struct mac_entry *
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|
mac_learning_lookup(const struct mac_learning *ml,
|
2013-08-01 18:04:07 -07:00
|
|
|
const uint8_t dst[ETH_ADDR_LEN], uint16_t vlan)
|
2009-07-08 13:19:16 -07:00
|
|
|
{
|
2011-03-22 09:47:02 -07:00
|
|
|
if (eth_addr_is_multicast(dst)) {
|
|
|
|
/* No tag because the treatment of multicast destinations never
|
|
|
|
* changes. */
|
|
|
|
return NULL;
|
|
|
|
} else if (!is_learning_vlan(ml, vlan)) {
|
|
|
|
/* We don't tag this property. The set of learning VLANs changes so
|
|
|
|
* rarely that we revalidate every flow when it changes. */
|
|
|
|
return NULL;
|
2009-07-08 13:19:16 -07:00
|
|
|
} else {
|
2011-07-21 17:41:58 -07:00
|
|
|
struct mac_entry *e = mac_entry_lookup(ml, dst, vlan);
|
|
|
|
|
2013-12-13 14:17:15 +01:00
|
|
|
ovs_assert(e == NULL || e->port.p != NULL);
|
2011-03-22 09:47:02 -07:00
|
|
|
return e;
|
2009-07-08 13:19:16 -07:00
|
|
|
}
|
|
|
|
}
|
|
|
|
|
2011-07-22 12:00:46 -07:00
|
|
|
/* Expires 'e' from the 'ml' hash table. */
|
2011-03-18 15:28:21 -07:00
|
|
|
void
|
|
|
|
mac_learning_expire(struct mac_learning *ml, struct mac_entry *e)
|
|
|
|
{
|
2011-07-21 17:41:58 -07:00
|
|
|
hmap_remove(&ml->table, &e->hmap_node);
|
2011-03-18 15:28:21 -07:00
|
|
|
list_remove(&e->lru_node);
|
2011-07-22 12:00:46 -07:00
|
|
|
free(e);
|
2011-03-18 15:28:21 -07:00
|
|
|
}
|
|
|
|
|
2012-01-25 11:44:30 -08:00
|
|
|
/* Expires all the mac-learning entries in 'ml'. If not NULL, the tags in 'ml'
|
|
|
|
* are added to 'tags'. Otherwise the tags in 'ml' are discarded. The client
|
|
|
|
* is responsible for revalidating any flows that depend on 'ml', if
|
|
|
|
* necessary. */
|
2009-07-08 13:19:16 -07:00
|
|
|
void
|
2013-08-01 18:04:07 -07:00
|
|
|
mac_learning_flush(struct mac_learning *ml)
|
2009-07-08 13:19:16 -07:00
|
|
|
{
|
|
|
|
struct mac_entry *e;
|
|
|
|
while (get_lru(ml, &e)){
|
2013-08-01 18:04:07 -07:00
|
|
|
ml->need_revalidate = true;
|
2011-03-18 15:28:21 -07:00
|
|
|
mac_learning_expire(ml, e);
|
2009-07-08 13:19:16 -07:00
|
|
|
}
|
2011-07-22 12:00:46 -07:00
|
|
|
hmap_shrink(&ml->table);
|
2009-07-08 13:19:16 -07:00
|
|
|
}
|
|
|
|
|
2013-08-01 18:04:07 -07:00
|
|
|
/* Does periodic work required by 'ml'. Returns true if something changed that
|
|
|
|
* may require flow revalidation. */
|
|
|
|
bool
|
|
|
|
mac_learning_run(struct mac_learning *ml)
|
2009-07-08 13:19:16 -07:00
|
|
|
{
|
2013-08-01 18:04:07 -07:00
|
|
|
bool need_revalidate;
|
2009-07-08 13:19:16 -07:00
|
|
|
struct mac_entry *e;
|
2013-06-12 13:58:16 -07:00
|
|
|
|
2012-12-08 12:32:33 -08:00
|
|
|
while (get_lru(ml, &e)
|
|
|
|
&& (hmap_count(&ml->table) > ml->max_entries
|
|
|
|
|| time_now() >= e->expires)) {
|
2009-07-08 13:19:16 -07:00
|
|
|
COVERAGE_INC(mac_learning_expired);
|
2013-08-01 18:04:07 -07:00
|
|
|
ml->need_revalidate = true;
|
2011-03-18 15:28:21 -07:00
|
|
|
mac_learning_expire(ml, e);
|
2009-07-08 13:19:16 -07:00
|
|
|
}
|
2013-08-01 18:04:07 -07:00
|
|
|
|
|
|
|
need_revalidate = ml->need_revalidate;
|
|
|
|
ml->need_revalidate = false;
|
|
|
|
return need_revalidate;
|
2009-07-08 13:19:16 -07:00
|
|
|
}
|
|
|
|
|
|
|
|
void
|
|
|
|
mac_learning_wait(struct mac_learning *ml)
|
|
|
|
{
|
2013-06-12 13:58:16 -07:00
|
|
|
if (hmap_count(&ml->table) > ml->max_entries
|
2013-08-01 18:04:07 -07:00
|
|
|
|| ml->need_revalidate) {
|
2012-12-08 12:32:33 -08:00
|
|
|
poll_immediate_wake();
|
|
|
|
} else if (!list_is_empty(&ml->lrus)) {
|
2009-07-08 13:19:16 -07:00
|
|
|
struct mac_entry *e = mac_entry_from_lru_node(ml->lrus.next);
|
2010-05-12 12:53:07 -07:00
|
|
|
poll_timer_wait_until(e->expires * 1000LL);
|
2009-07-08 13:19:16 -07:00
|
|
|
}
|
|
|
|
}
|