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https://gitlab.nic.cz/labs/bird.git
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ad16e35177
Most error handling code was was for cases that cannot happen, or they would be code bugs (and should use ASSERT()). Keep error handling for just for I/O errors, like in rest of BIRD.
120 lines
2.9 KiB
C
120 lines
2.9 KiB
C
/*
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* BIRD -- The BGP Monitoring Protocol (BMP)
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*
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* (c) 2020 Akamai Technologies, Inc. (Pawel Maslanka, pmaslank@akamai.com)
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*
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* Can be freely distributed and used under the terms of the GNU GPL.
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*/
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#include "proto/bmp/map.h"
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/* Peer Index Table */
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#define PEER_KEY(n) (n)->peer_as, (n)->peer_ip
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#define PEER_NEXT(n) (n)->next
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#define PEER_EQ(as1,ip1,as2,ip2) \
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(as1) == (as2) && ipa_equal(ip1, ip2)
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#define PEER_FN(as,ip) ipa_hash(ip)
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#define PEER_REHASH bmp_peer_rehash
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#define PEER_PARAMS /8, *2, 2, 2, 6, 20
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HASH_DEFINE_REHASH_FN(PEER, struct bmp_peer_map_key)
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#define PEER_INIT_ORDER 6
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void
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bmp_peer_map_init(struct bmp_peer_map *map, pool *mpool)
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{
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map->mpool = mpool;
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HASH_INIT(map->peer_hash, map->mpool, PEER_INIT_ORDER);
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}
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struct bmp_peer_map_key
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bmp_peer_map_key_create(const ip_addr peer_ip, const u32 peer_as)
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{
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struct bmp_peer_map_key key;
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key.next = NULL;
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key.peer_ip = peer_ip;
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key.peer_as = peer_as;
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return key;
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}
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void
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bmp_peer_map_flush(struct bmp_peer_map *map)
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{
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struct bmp_peer_map_entry *entry;
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HASH_WALK_DELSAFE(map->peer_hash, next, e)
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{
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entry = (struct bmp_peer_map_entry *) e;
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mb_free(entry->data.buf);
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HASH_DELETE(map->peer_hash, PEER, PEER_KEY(&entry->key));
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mb_free(entry);
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}
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HASH_WALK_DELSAFE_END;
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HASH_MAY_RESIZE_DOWN(map->peer_hash, PEER, map->mpool);
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}
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void
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bmp_peer_map_free(struct bmp_peer_map *map)
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{
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bmp_peer_map_flush(map);
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HASH_FREE(map->peer_hash);
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}
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void
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bmp_peer_map_insert(struct bmp_peer_map *map, const struct bmp_peer_map_key key,
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const byte *data, const size_t data_size)
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{
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struct bmp_peer_map_entry *entry
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= (void *) HASH_FIND(map->peer_hash, PEER, PEER_KEY(&key));
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if (entry)
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{
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mb_free(entry->data.buf);
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entry->data.buf = mb_alloc(map->mpool, data_size);
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memcpy(entry->data.buf, data, data_size);
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entry->data.buf_size = data_size;
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return;
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}
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entry = mb_alloc(map->mpool, sizeof (struct bmp_peer_map_entry));
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entry->data.buf = mb_alloc(map->mpool, data_size);
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memcpy(entry->data.buf, data, data_size);
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entry->data.buf_size = data_size;
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entry->key = key;
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HASH_INSERT2(map->peer_hash, PEER, map->mpool, &entry->key);
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}
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void
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bmp_peer_map_remove(struct bmp_peer_map *map, const struct bmp_peer_map_key key)
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{
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struct bmp_peer_map_entry *entry
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= (void *) HASH_DELETE(map->peer_hash, PEER, PEER_KEY(&key));
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if (!entry)
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return;
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mb_free(entry->data.buf);
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mb_free(entry);
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}
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const struct bmp_peer_map_entry *
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bmp_peer_map_get(struct bmp_peer_map *map, const struct bmp_peer_map_key key)
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{
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return (struct bmp_peer_map_entry *) HASH_FIND(map->peer_hash, PEER, PEER_KEY(&key));
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}
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void
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bmp_peer_map_walk(const struct bmp_peer_map *map, bmp_peer_map_walk_action action)
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{
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struct bmp_peer_map_entry *entry;
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HASH_WALK_FILTER(map->peer_hash, next, e, _)
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{
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entry = (struct bmp_peer_map_entry *) e;
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action(entry->key, entry->data.buf, entry->data.buf_size);
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}
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HASH_WALK_FILTER_END;
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}
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