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[NET]: Size listen hash tables using backlog hint
We currently allocate a fixed size (TCP_SYNQ_HSIZE=512) slots hash table for each LISTEN socket, regardless of various parameters (listen backlog for example) On x86_64, this means order-1 allocations (might fail), even for 'small' sockets, expecting few connections. On the contrary, a huge server wanting a backlog of 50000 is slowed down a bit because of this fixed limit. This patch makes the sizing of listen hash table a dynamic parameter, depending of : - net.core.somaxconn tunable (default is 128) - net.ipv4.tcp_max_syn_backlog tunable (default : 256, 1024 or 128) - backlog value given by user application (2nd parameter of listen()) For large allocations (bigger than PAGE_SIZE), we use vmalloc() instead of kmalloc(). We still limit memory allocation with the two existing tunables (somaxconn & tcp_max_syn_backlog). So for standard setups, this patch actually reduce RAM usage. Signed-off-by: Eric Dumazet <dada1@cosmosbay.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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3c62f75aac
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@ -28,8 +28,8 @@ struct proto;
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struct request_sock_ops {
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int family;
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kmem_cache_t *slab;
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int obj_size;
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kmem_cache_t *slab;
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int (*rtx_syn_ack)(struct sock *sk,
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struct request_sock *req,
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struct dst_entry *dst);
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@ -51,13 +51,13 @@ struct request_sock {
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u32 rcv_wnd; /* rcv_wnd offered first time */
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u32 ts_recent;
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unsigned long expires;
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struct request_sock_ops *rsk_ops;
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const struct request_sock_ops *rsk_ops;
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struct sock *sk;
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u32 secid;
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u32 peer_secid;
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};
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static inline struct request_sock *reqsk_alloc(struct request_sock_ops *ops)
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static inline struct request_sock *reqsk_alloc(const struct request_sock_ops *ops)
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{
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struct request_sock *req = kmem_cache_alloc(ops->slab, SLAB_ATOMIC);
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@ -121,7 +121,7 @@ struct request_sock_queue {
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};
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extern int reqsk_queue_alloc(struct request_sock_queue *queue,
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const int nr_table_entries);
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unsigned int nr_table_entries);
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static inline struct listen_sock *reqsk_queue_yank_listen_sk(struct request_sock_queue *queue)
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{
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@ -138,7 +138,6 @@ extern void tcp_time_wait(struct sock *sk, int state, int timeo);
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#define MAX_TCP_SYNCNT 127
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#define TCP_SYNQ_INTERVAL (HZ/5) /* Period of SYNACK timer */
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#define TCP_SYNQ_HSIZE 512 /* Size of SYNACK hash table */
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#define TCP_PAWS_24DAYS (60 * 60 * 24 * 24)
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#define TCP_PAWS_MSL 60 /* Per-host timestamps are invalidated
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@ -15,6 +15,7 @@
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#include <linux/random.h>
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#include <linux/slab.h>
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#include <linux/string.h>
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#include <linux/vmalloc.h>
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#include <net/request_sock.h>
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@ -29,22 +30,31 @@
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* it is absolutely not enough even at 100conn/sec. 256 cures most
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* of problems. This value is adjusted to 128 for very small machines
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* (<=32Mb of memory) and to 1024 on normal or better ones (>=256Mb).
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* Further increasing requires to change hash table size.
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* Note : Dont forget somaxconn that may limit backlog too.
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*/
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int sysctl_max_syn_backlog = 256;
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int reqsk_queue_alloc(struct request_sock_queue *queue,
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const int nr_table_entries)
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unsigned int nr_table_entries)
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{
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const int lopt_size = sizeof(struct listen_sock) +
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nr_table_entries * sizeof(struct request_sock *);
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struct listen_sock *lopt = kzalloc(lopt_size, GFP_KERNEL);
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size_t lopt_size = sizeof(struct listen_sock);
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struct listen_sock *lopt;
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nr_table_entries = min_t(u32, nr_table_entries, sysctl_max_syn_backlog);
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nr_table_entries = max_t(u32, nr_table_entries, 8);
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nr_table_entries = roundup_pow_of_two(nr_table_entries + 1);
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lopt_size += nr_table_entries * sizeof(struct request_sock *);
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if (lopt_size > PAGE_SIZE)
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lopt = __vmalloc(lopt_size,
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GFP_KERNEL | __GFP_HIGHMEM | __GFP_ZERO,
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PAGE_KERNEL);
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else
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lopt = kzalloc(lopt_size, GFP_KERNEL);
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if (lopt == NULL)
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return -ENOMEM;
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for (lopt->max_qlen_log = 6;
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(1 << lopt->max_qlen_log) < sysctl_max_syn_backlog;
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for (lopt->max_qlen_log = 3;
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(1 << lopt->max_qlen_log) < nr_table_entries;
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lopt->max_qlen_log++);
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get_random_bytes(&lopt->hash_rnd, sizeof(lopt->hash_rnd));
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@ -65,9 +75,11 @@ void reqsk_queue_destroy(struct request_sock_queue *queue)
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{
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/* make all the listen_opt local to us */
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struct listen_sock *lopt = reqsk_queue_yank_listen_sk(queue);
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size_t lopt_size = sizeof(struct listen_sock) +
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lopt->nr_table_entries * sizeof(struct request_sock *);
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if (lopt->qlen != 0) {
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int i;
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unsigned int i;
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for (i = 0; i < lopt->nr_table_entries; i++) {
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struct request_sock *req;
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@ -81,7 +93,10 @@ void reqsk_queue_destroy(struct request_sock_queue *queue)
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}
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BUG_TRAP(lopt->qlen == 0);
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kfree(lopt);
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if (lopt_size > PAGE_SIZE)
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vfree(lopt);
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else
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kfree(lopt);
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}
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EXPORT_SYMBOL(reqsk_queue_destroy);
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@ -1022,7 +1022,7 @@ static void dccp_v4_reqsk_destructor(struct request_sock *req)
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kfree(inet_rsk(req)->opt);
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}
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static struct request_sock_ops dccp_request_sock_ops = {
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static struct request_sock_ops dccp_request_sock_ops _read_mostly = {
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.family = PF_INET,
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.obj_size = sizeof(struct dccp_request_sock),
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.rtx_syn_ack = dccp_v4_send_response,
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@ -262,12 +262,12 @@ int dccp_destroy_sock(struct sock *sk)
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EXPORT_SYMBOL_GPL(dccp_destroy_sock);
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static inline int dccp_listen_start(struct sock *sk)
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static inline int dccp_listen_start(struct sock *sk, int backlog)
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{
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struct dccp_sock *dp = dccp_sk(sk);
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dp->dccps_role = DCCP_ROLE_LISTEN;
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return inet_csk_listen_start(sk, TCP_SYNQ_HSIZE);
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return inet_csk_listen_start(sk, backlog);
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}
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int dccp_disconnect(struct sock *sk, int flags)
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@ -788,7 +788,7 @@ int inet_dccp_listen(struct socket *sock, int backlog)
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* FIXME: here it probably should be sk->sk_prot->listen_start
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* see tcp_listen_start
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*/
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err = dccp_listen_start(sk);
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err = dccp_listen_start(sk, backlog);
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if (err)
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goto out;
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}
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@ -204,7 +204,7 @@ int inet_listen(struct socket *sock, int backlog)
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* we can only allow the backlog to be adjusted.
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*/
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if (old_state != TCP_LISTEN) {
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err = inet_csk_listen_start(sk, TCP_SYNQ_HSIZE);
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err = inet_csk_listen_start(sk, backlog);
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if (err)
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goto out;
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}
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@ -343,7 +343,7 @@ struct dst_entry* inet_csk_route_req(struct sock *sk,
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EXPORT_SYMBOL_GPL(inet_csk_route_req);
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static inline u32 inet_synq_hash(const __be32 raddr, const __be16 rport,
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const u32 rnd, const u16 synq_hsize)
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const u32 rnd, const u32 synq_hsize)
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{
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return jhash_2words((__force u32)raddr, (__force u32)rport, rnd) & (synq_hsize - 1);
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}
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@ -715,7 +715,7 @@ static struct ip_options *tcp_v4_save_options(struct sock *sk,
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return dopt;
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}
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struct request_sock_ops tcp_request_sock_ops = {
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struct request_sock_ops tcp_request_sock_ops __read_mostly = {
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.family = PF_INET,
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.obj_size = sizeof(struct tcp_request_sock),
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.rtx_syn_ack = tcp_v4_send_synack,
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@ -1385,7 +1385,7 @@ static void *listening_get_next(struct seq_file *seq, void *cur)
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if (st->state == TCP_SEQ_STATE_OPENREQ) {
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struct request_sock *req = cur;
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icsk = inet_csk(st->syn_wait_sk);
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icsk = inet_csk(st->syn_wait_sk);
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req = req->dl_next;
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while (1) {
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while (req) {
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@ -1395,7 +1395,7 @@ static void *listening_get_next(struct seq_file *seq, void *cur)
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}
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req = req->dl_next;
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}
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if (++st->sbucket >= TCP_SYNQ_HSIZE)
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if (++st->sbucket >= icsk->icsk_accept_queue.listen_opt->nr_table_entries)
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break;
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get_req:
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req = icsk->icsk_accept_queue.listen_opt->syn_table[st->sbucket];
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@ -526,7 +526,7 @@ static void tcp_v6_reqsk_destructor(struct request_sock *req)
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kfree_skb(inet6_rsk(req)->pktopts);
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}
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static struct request_sock_ops tcp6_request_sock_ops = {
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static struct request_sock_ops tcp6_request_sock_ops _read_mostly = {
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.family = AF_INET6,
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.obj_size = sizeof(struct tcp6_request_sock),
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.rtx_syn_ack = tcp_v6_send_synack,
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