fib_trie: Add tnode struct as a container for fields not needed in key_vector
This change pulls the fields not explicitly needed in the key_vector and placed them in the new tnode structure. By doing this we will eventually be able to reduce the key_vector down to 16 bytes on 64 bit systems, and 12 bytes on 32 bit systems. Signed-off-by: Alexander Duyck <alexander.h.duyck@redhat.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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2e1ac88a48
Коммит
dc35dbeda3
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@ -111,7 +111,11 @@ struct key_vector {
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};
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};
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};
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};
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#define TNODE_SIZE(n) offsetof(struct key_vector, tnode[n])
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struct tnode {
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struct key_vector kv[1];
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};
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#define TNODE_SIZE(n) offsetof(struct tnode, kv[0].tnode[n])
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#define LEAF_SIZE TNODE_SIZE(1)
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#define LEAF_SIZE TNODE_SIZE(1)
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#ifdef CONFIG_IP_FIB_TRIE_STATS
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#ifdef CONFIG_IP_FIB_TRIE_STATS
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@ -288,7 +292,7 @@ static void __node_free_rcu(struct rcu_head *head)
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#define node_free(n) call_rcu(&n->rcu, __node_free_rcu)
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#define node_free(n) call_rcu(&n->rcu, __node_free_rcu)
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static struct key_vector *tnode_alloc(int bits)
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static struct tnode *tnode_alloc(int bits)
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{
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{
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size_t size;
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size_t size;
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@ -317,48 +321,50 @@ static inline void empty_child_dec(struct key_vector *n)
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static struct key_vector *leaf_new(t_key key, struct fib_alias *fa)
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static struct key_vector *leaf_new(t_key key, struct fib_alias *fa)
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{
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{
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struct key_vector *l = kmem_cache_alloc(trie_leaf_kmem, GFP_KERNEL);
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struct tnode *kv = kmem_cache_alloc(trie_leaf_kmem, GFP_KERNEL);
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if (l) {
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struct key_vector *l = kv->kv;
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l->parent = NULL;
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/* set key and pos to reflect full key value
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if (!kv)
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* any trailing zeros in the key should be ignored
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return NULL;
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* as the nodes are searched
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*/
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/* initialize key vector */
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l->key = key;
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l->key = key;
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l->slen = fa->fa_slen;
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l->pos = 0;
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l->pos = 0;
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l->bits = 0;
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/* set bits to 0 indicating we are not a tnode */
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l->slen = fa->fa_slen;
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l->bits = 0;
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/* link leaf to fib alias */
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INIT_HLIST_HEAD(&l->leaf);
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hlist_add_head(&fa->fa_list, &l->leaf);
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/* link leaf to fib alias */
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INIT_HLIST_HEAD(&l->leaf);
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hlist_add_head(&fa->fa_list, &l->leaf);
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}
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return l;
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return l;
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}
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}
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static struct key_vector *tnode_new(t_key key, int pos, int bits)
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static struct key_vector *tnode_new(t_key key, int pos, int bits)
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{
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{
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struct key_vector *tn = tnode_alloc(bits);
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struct tnode *tnode = tnode_alloc(bits);
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unsigned int shift = pos + bits;
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unsigned int shift = pos + bits;
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struct key_vector *tn = tnode->kv;
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/* verify bits and pos their msb bits clear and values are valid */
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/* verify bits and pos their msb bits clear and values are valid */
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BUG_ON(!bits || (shift > KEYLENGTH));
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BUG_ON(!bits || (shift > KEYLENGTH));
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if (tn) {
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pr_debug("AT %p s=%zu %zu\n", tnode, TNODE_SIZE(0),
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tn->parent = NULL;
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tn->slen = pos;
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tn->pos = pos;
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tn->bits = bits;
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tn->key = (shift < KEYLENGTH) ? (key >> shift) << shift : 0;
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if (bits == KEYLENGTH)
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tn->full_children = 1;
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else
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tn->empty_children = 1ul << bits;
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}
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pr_debug("AT %p s=%zu %zu\n", tn, TNODE_SIZE(0),
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sizeof(struct key_vector *) << bits);
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sizeof(struct key_vector *) << bits);
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if (!tnode)
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return NULL;
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if (bits == KEYLENGTH)
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tn->full_children = 1;
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else
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tn->empty_children = 1ul << bits;
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tn->key = (shift < KEYLENGTH) ? (key >> shift) << shift : 0;
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tn->pos = pos;
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tn->bits = bits;
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tn->slen = pos;
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return tn;
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return tn;
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}
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}
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