mirror of https://gitee.com/openkylin/linux.git
Merge master.kernel.org:/pub/scm/linux/kernel/git/davem/net-2.6
This commit is contained in:
commit
6027994423
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@ -71,7 +71,7 @@ struct ipfrag_skb_cb
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/* Describe an entry in the "incomplete datagrams" queue. */
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struct ipq {
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struct ipq *next; /* linked list pointers */
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struct hlist_node list;
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struct list_head lru_list; /* lru list member */
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u32 user;
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u32 saddr;
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@ -89,7 +89,6 @@ struct ipq {
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spinlock_t lock;
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atomic_t refcnt;
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struct timer_list timer; /* when will this queue expire? */
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struct ipq **pprev;
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int iif;
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struct timeval stamp;
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};
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@ -99,7 +98,7 @@ struct ipq {
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#define IPQ_HASHSZ 64
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/* Per-bucket lock is easy to add now. */
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static struct ipq *ipq_hash[IPQ_HASHSZ];
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static struct hlist_head ipq_hash[IPQ_HASHSZ];
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static DEFINE_RWLOCK(ipfrag_lock);
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static u32 ipfrag_hash_rnd;
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static LIST_HEAD(ipq_lru_list);
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@ -107,9 +106,7 @@ int ip_frag_nqueues = 0;
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static __inline__ void __ipq_unlink(struct ipq *qp)
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{
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if(qp->next)
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qp->next->pprev = qp->pprev;
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*qp->pprev = qp->next;
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hlist_del(&qp->list);
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list_del(&qp->lru_list);
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ip_frag_nqueues--;
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}
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@ -139,27 +136,18 @@ static void ipfrag_secret_rebuild(unsigned long dummy)
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get_random_bytes(&ipfrag_hash_rnd, sizeof(u32));
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for (i = 0; i < IPQ_HASHSZ; i++) {
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struct ipq *q;
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struct hlist_node *p, *n;
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q = ipq_hash[i];
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while (q) {
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struct ipq *next = q->next;
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hlist_for_each_entry_safe(q, p, n, &ipq_hash[i], list) {
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unsigned int hval = ipqhashfn(q->id, q->saddr,
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q->daddr, q->protocol);
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if (hval != i) {
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/* Unlink. */
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if (q->next)
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q->next->pprev = q->pprev;
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*q->pprev = q->next;
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hlist_del(&q->list);
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/* Relink to new hash chain. */
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if ((q->next = ipq_hash[hval]) != NULL)
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q->next->pprev = &q->next;
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ipq_hash[hval] = q;
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q->pprev = &ipq_hash[hval];
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hlist_add_head(&q->list, &ipq_hash[hval]);
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}
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q = next;
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}
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}
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write_unlock(&ipfrag_lock);
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@ -310,14 +298,16 @@ static void ip_expire(unsigned long arg)
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static struct ipq *ip_frag_intern(unsigned int hash, struct ipq *qp_in)
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{
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struct ipq *qp;
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#ifdef CONFIG_SMP
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struct hlist_node *n;
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#endif
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write_lock(&ipfrag_lock);
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#ifdef CONFIG_SMP
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/* With SMP race we have to recheck hash table, because
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* such entry could be created on other cpu, while we
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* promoted read lock to write lock.
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*/
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for(qp = ipq_hash[hash]; qp; qp = qp->next) {
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hlist_for_each_entry(qp, n, &ipq_hash[hash], list) {
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if(qp->id == qp_in->id &&
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qp->saddr == qp_in->saddr &&
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qp->daddr == qp_in->daddr &&
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@ -337,10 +327,7 @@ static struct ipq *ip_frag_intern(unsigned int hash, struct ipq *qp_in)
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atomic_inc(&qp->refcnt);
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atomic_inc(&qp->refcnt);
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if((qp->next = ipq_hash[hash]) != NULL)
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qp->next->pprev = &qp->next;
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ipq_hash[hash] = qp;
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qp->pprev = &ipq_hash[hash];
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hlist_add_head(&qp->list, &ipq_hash[hash]);
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INIT_LIST_HEAD(&qp->lru_list);
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list_add_tail(&qp->lru_list, &ipq_lru_list);
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ip_frag_nqueues++;
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@ -392,9 +379,10 @@ static inline struct ipq *ip_find(struct iphdr *iph, u32 user)
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__u8 protocol = iph->protocol;
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unsigned int hash = ipqhashfn(id, saddr, daddr, protocol);
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struct ipq *qp;
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struct hlist_node *n;
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read_lock(&ipfrag_lock);
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for(qp = ipq_hash[hash]; qp; qp = qp->next) {
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hlist_for_each_entry(qp, n, &ipq_hash[hash], list) {
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if(qp->id == id &&
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qp->saddr == saddr &&
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qp->daddr == daddr &&
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@ -74,7 +74,7 @@ struct ip6frag_skb_cb
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struct frag_queue
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{
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struct frag_queue *next;
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struct hlist_node list;
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struct list_head lru_list; /* lru list member */
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__u32 id; /* fragment id */
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@ -95,14 +95,13 @@ struct frag_queue
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#define FIRST_IN 2
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#define LAST_IN 1
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__u16 nhoffset;
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struct frag_queue **pprev;
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};
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/* Hash table. */
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#define IP6Q_HASHSZ 64
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static struct frag_queue *ip6_frag_hash[IP6Q_HASHSZ];
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static struct hlist_head ip6_frag_hash[IP6Q_HASHSZ];
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static DEFINE_RWLOCK(ip6_frag_lock);
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static u32 ip6_frag_hash_rnd;
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static LIST_HEAD(ip6_frag_lru_list);
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@ -110,9 +109,7 @@ int ip6_frag_nqueues = 0;
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static __inline__ void __fq_unlink(struct frag_queue *fq)
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{
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if(fq->next)
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fq->next->pprev = fq->pprev;
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*fq->pprev = fq->next;
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hlist_del(&fq->list);
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list_del(&fq->lru_list);
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ip6_frag_nqueues--;
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}
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@ -163,28 +160,21 @@ static void ip6_frag_secret_rebuild(unsigned long dummy)
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get_random_bytes(&ip6_frag_hash_rnd, sizeof(u32));
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for (i = 0; i < IP6Q_HASHSZ; i++) {
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struct frag_queue *q;
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struct hlist_node *p, *n;
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q = ip6_frag_hash[i];
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while (q) {
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struct frag_queue *next = q->next;
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hlist_for_each_entry_safe(q, p, n, &ip6_frag_hash[i], list) {
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unsigned int hval = ip6qhashfn(q->id,
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&q->saddr,
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&q->daddr);
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if (hval != i) {
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/* Unlink. */
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if (q->next)
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q->next->pprev = q->pprev;
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*q->pprev = q->next;
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hlist_del(&q->list);
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/* Relink to new hash chain. */
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if ((q->next = ip6_frag_hash[hval]) != NULL)
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q->next->pprev = &q->next;
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ip6_frag_hash[hval] = q;
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q->pprev = &ip6_frag_hash[hval];
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}
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hlist_add_head(&q->list,
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&ip6_frag_hash[hval]);
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q = next;
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}
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}
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}
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write_unlock(&ip6_frag_lock);
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@ -337,10 +327,13 @@ static struct frag_queue *ip6_frag_intern(unsigned int hash,
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struct frag_queue *fq_in)
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{
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struct frag_queue *fq;
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#ifdef CONFIG_SMP
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struct hlist_node *n;
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#endif
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write_lock(&ip6_frag_lock);
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#ifdef CONFIG_SMP
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for (fq = ip6_frag_hash[hash]; fq; fq = fq->next) {
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hlist_for_each_entry(fq, n, &ip6_frag_hash[hash], list) {
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if (fq->id == fq_in->id &&
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ipv6_addr_equal(&fq_in->saddr, &fq->saddr) &&
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ipv6_addr_equal(&fq_in->daddr, &fq->daddr)) {
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@ -358,10 +351,7 @@ static struct frag_queue *ip6_frag_intern(unsigned int hash,
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atomic_inc(&fq->refcnt);
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atomic_inc(&fq->refcnt);
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if((fq->next = ip6_frag_hash[hash]) != NULL)
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fq->next->pprev = &fq->next;
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ip6_frag_hash[hash] = fq;
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fq->pprev = &ip6_frag_hash[hash];
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hlist_add_head(&fq->list, &ip6_frag_hash[hash]);
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INIT_LIST_HEAD(&fq->lru_list);
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list_add_tail(&fq->lru_list, &ip6_frag_lru_list);
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ip6_frag_nqueues++;
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fq_find(u32 id, struct in6_addr *src, struct in6_addr *dst)
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{
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struct frag_queue *fq;
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struct hlist_node *n;
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unsigned int hash = ip6qhashfn(id, src, dst);
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read_lock(&ip6_frag_lock);
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for(fq = ip6_frag_hash[hash]; fq; fq = fq->next) {
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hlist_for_each_entry(fq, n, &ip6_frag_hash[hash], list) {
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if (fq->id == id &&
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ipv6_addr_equal(src, &fq->saddr) &&
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ipv6_addr_equal(dst, &fq->daddr)) {
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@ -387,7 +387,7 @@ nf_ct_invert_tuple(struct nf_conntrack_tuple *inverse,
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static void nf_ct_unlink_expect(struct nf_conntrack_expect *exp)
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{
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ASSERT_WRITE_LOCK(&nf_conntrack_lock);
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NF_CT_ASSERT(!timer_pending(&exp_timeout));
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NF_CT_ASSERT(!timer_pending(&exp->timeout));
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list_del(&exp->list);
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NF_CT_STAT_INC(expect_delete);
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exp->master->expecting--;
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