1 // SPDX-License-Identifier: GPL-2.0-only
3 * linux/net/sunrpc/svcsock.c
5 * These are the RPC server socket internals.
7 * The server scheduling algorithm does not always distribute the load
8 * evenly when servicing a single client. May need to modify the
9 * svc_xprt_enqueue procedure...
11 * TCP support is largely untested and may be a little slow. The problem
12 * is that we currently do two separate recvfrom's, one for the 4-byte
13 * record length, and the second for the actual record. This could possibly
14 * be improved by always reading a minimum size of around 100 bytes and
15 * tucking any superfluous bytes away in a temporary store. Still, that
16 * leaves write requests out in the rain. An alternative may be to peek at
17 * the first skb in the queue, and if it matches the next TCP sequence
18 * number, to extract the record marker. Yuck.
20 * Copyright (C) 1995, 1996 Olaf Kirch <okir@monad.swb.de>
23 #include <linux/kernel.h>
24 #include <linux/sched.h>
25 #include <linux/module.h>
26 #include <linux/errno.h>
27 #include <linux/fcntl.h>
28 #include <linux/net.h>
30 #include <linux/inet.h>
31 #include <linux/udp.h>
32 #include <linux/tcp.h>
33 #include <linux/unistd.h>
34 #include <linux/slab.h>
35 #include <linux/netdevice.h>
36 #include <linux/skbuff.h>
37 #include <linux/file.h>
38 #include <linux/freezer.h>
40 #include <net/checksum.h>
45 #include <net/tcp_states.h>
46 #include <linux/uaccess.h>
47 #include <asm/ioctls.h>
48 #include <trace/events/skb.h>
50 #include <linux/sunrpc/types.h>
51 #include <linux/sunrpc/clnt.h>
52 #include <linux/sunrpc/xdr.h>
53 #include <linux/sunrpc/msg_prot.h>
54 #include <linux/sunrpc/svcsock.h>
55 #include <linux/sunrpc/stats.h>
56 #include <linux/sunrpc/xprt.h>
60 #define RPCDBG_FACILITY RPCDBG_SVCXPRT
63 static struct svc_sock
*svc_setup_socket(struct svc_serv
*, struct socket
*,
65 static int svc_udp_recvfrom(struct svc_rqst
*);
66 static int svc_udp_sendto(struct svc_rqst
*);
67 static void svc_sock_detach(struct svc_xprt
*);
68 static void svc_tcp_sock_detach(struct svc_xprt
*);
69 static void svc_sock_free(struct svc_xprt
*);
71 static struct svc_xprt
*svc_create_socket(struct svc_serv
*, int,
72 struct net
*, struct sockaddr
*,
74 #ifdef CONFIG_DEBUG_LOCK_ALLOC
75 static struct lock_class_key svc_key
[2];
76 static struct lock_class_key svc_slock_key
[2];
78 static void svc_reclassify_socket(struct socket
*sock
)
80 struct sock
*sk
= sock
->sk
;
82 if (WARN_ON_ONCE(!sock_allow_reclassification(sk
)))
85 switch (sk
->sk_family
) {
87 sock_lock_init_class_and_name(sk
, "slock-AF_INET-NFSD",
89 "sk_xprt.xpt_lock-AF_INET-NFSD",
94 sock_lock_init_class_and_name(sk
, "slock-AF_INET6-NFSD",
96 "sk_xprt.xpt_lock-AF_INET6-NFSD",
105 static void svc_reclassify_socket(struct socket
*sock
)
111 * Release an skbuff after use
113 static void svc_release_skb(struct svc_rqst
*rqstp
)
115 struct sk_buff
*skb
= rqstp
->rq_xprt_ctxt
;
118 struct svc_sock
*svsk
=
119 container_of(rqstp
->rq_xprt
, struct svc_sock
, sk_xprt
);
120 rqstp
->rq_xprt_ctxt
= NULL
;
122 dprintk("svc: service %p, releasing skb %p\n", rqstp
, skb
);
123 skb_free_datagram_locked(svsk
->sk_sk
, skb
);
127 static void svc_release_udp_skb(struct svc_rqst
*rqstp
)
129 struct sk_buff
*skb
= rqstp
->rq_xprt_ctxt
;
132 rqstp
->rq_xprt_ctxt
= NULL
;
134 dprintk("svc: service %p, releasing skb %p\n", rqstp
, skb
);
139 union svc_pktinfo_u
{
140 struct in_pktinfo pkti
;
141 struct in6_pktinfo pkti6
;
143 #define SVC_PKTINFO_SPACE \
144 CMSG_SPACE(sizeof(union svc_pktinfo_u))
146 static void svc_set_cmsg_data(struct svc_rqst
*rqstp
, struct cmsghdr
*cmh
)
148 struct svc_sock
*svsk
=
149 container_of(rqstp
->rq_xprt
, struct svc_sock
, sk_xprt
);
150 switch (svsk
->sk_sk
->sk_family
) {
152 struct in_pktinfo
*pki
= CMSG_DATA(cmh
);
154 cmh
->cmsg_level
= SOL_IP
;
155 cmh
->cmsg_type
= IP_PKTINFO
;
156 pki
->ipi_ifindex
= 0;
157 pki
->ipi_spec_dst
.s_addr
=
158 svc_daddr_in(rqstp
)->sin_addr
.s_addr
;
159 cmh
->cmsg_len
= CMSG_LEN(sizeof(*pki
));
164 struct in6_pktinfo
*pki
= CMSG_DATA(cmh
);
165 struct sockaddr_in6
*daddr
= svc_daddr_in6(rqstp
);
167 cmh
->cmsg_level
= SOL_IPV6
;
168 cmh
->cmsg_type
= IPV6_PKTINFO
;
169 pki
->ipi6_ifindex
= daddr
->sin6_scope_id
;
170 pki
->ipi6_addr
= daddr
->sin6_addr
;
171 cmh
->cmsg_len
= CMSG_LEN(sizeof(*pki
));
178 * send routine intended to be shared by the fore- and back-channel
180 int svc_send_common(struct socket
*sock
, struct xdr_buf
*xdr
,
181 struct page
*headpage
, unsigned long headoffset
,
182 struct page
*tailpage
, unsigned long tailoffset
)
186 struct page
**ppage
= xdr
->pages
;
187 size_t base
= xdr
->page_base
;
188 unsigned int pglen
= xdr
->page_len
;
189 unsigned int flags
= MSG_MORE
| MSG_SENDPAGE_NOTLAST
;
196 if (slen
== xdr
->head
[0].iov_len
)
198 len
= kernel_sendpage(sock
, headpage
, headoffset
,
199 xdr
->head
[0].iov_len
, flags
);
200 if (len
!= xdr
->head
[0].iov_len
)
202 slen
-= xdr
->head
[0].iov_len
;
207 size
= PAGE_SIZE
- base
< pglen
? PAGE_SIZE
- base
: pglen
;
211 result
= kernel_sendpage(sock
, *ppage
, base
, size
, flags
);
218 size
= PAGE_SIZE
< pglen
? PAGE_SIZE
: pglen
;
224 if (xdr
->tail
[0].iov_len
) {
225 result
= kernel_sendpage(sock
, tailpage
, tailoffset
,
226 xdr
->tail
[0].iov_len
, 0);
237 * Generic sendto routine
239 static int svc_sendto(struct svc_rqst
*rqstp
, struct xdr_buf
*xdr
)
241 struct svc_sock
*svsk
=
242 container_of(rqstp
->rq_xprt
, struct svc_sock
, sk_xprt
);
243 struct socket
*sock
= svsk
->sk_sock
;
246 long all
[SVC_PKTINFO_SPACE
/ sizeof(long)];
248 struct cmsghdr
*cmh
= &buffer
.hdr
;
250 unsigned long tailoff
;
251 unsigned long headoff
;
252 RPC_IFDEBUG(char buf
[RPC_MAX_ADDRBUFLEN
]);
254 if (rqstp
->rq_prot
== IPPROTO_UDP
) {
255 struct msghdr msg
= {
256 .msg_name
= &rqstp
->rq_addr
,
257 .msg_namelen
= rqstp
->rq_addrlen
,
259 .msg_controllen
= sizeof(buffer
),
260 .msg_flags
= MSG_MORE
,
263 svc_set_cmsg_data(rqstp
, cmh
);
265 if (sock_sendmsg(sock
, &msg
) < 0)
269 tailoff
= ((unsigned long)xdr
->tail
[0].iov_base
) & (PAGE_SIZE
-1);
271 len
= svc_send_common(sock
, xdr
, rqstp
->rq_respages
[0], headoff
,
272 rqstp
->rq_respages
[0], tailoff
);
275 dprintk("svc: socket %p sendto([%p %zu... ], %d) = %d (addr %s)\n",
276 svsk
, xdr
->head
[0].iov_base
, xdr
->head
[0].iov_len
,
277 xdr
->len
, len
, svc_print_addr(rqstp
, buf
, sizeof(buf
)));
283 * Report socket names for nfsdfs
285 static int svc_one_sock_name(struct svc_sock
*svsk
, char *buf
, int remaining
)
287 const struct sock
*sk
= svsk
->sk_sk
;
288 const char *proto_name
= sk
->sk_protocol
== IPPROTO_UDP
?
292 switch (sk
->sk_family
) {
294 len
= snprintf(buf
, remaining
, "ipv4 %s %pI4 %d\n",
296 &inet_sk(sk
)->inet_rcv_saddr
,
297 inet_sk(sk
)->inet_num
);
299 #if IS_ENABLED(CONFIG_IPV6)
301 len
= snprintf(buf
, remaining
, "ipv6 %s %pI6 %d\n",
303 &sk
->sk_v6_rcv_saddr
,
304 inet_sk(sk
)->inet_num
);
308 len
= snprintf(buf
, remaining
, "*unknown-%d*\n",
312 if (len
>= remaining
) {
314 return -ENAMETOOLONG
;
320 * Generic recvfrom routine.
322 static ssize_t
svc_recvfrom(struct svc_rqst
*rqstp
, struct kvec
*iov
,
323 unsigned int nr
, size_t buflen
, unsigned int base
)
325 struct svc_sock
*svsk
=
326 container_of(rqstp
->rq_xprt
, struct svc_sock
, sk_xprt
);
327 struct msghdr msg
= { NULL
};
330 rqstp
->rq_xprt_hlen
= 0;
332 clear_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
);
333 iov_iter_kvec(&msg
.msg_iter
, READ
, iov
, nr
, buflen
);
335 iov_iter_advance(&msg
.msg_iter
, base
);
338 len
= sock_recvmsg(svsk
->sk_sock
, &msg
, MSG_DONTWAIT
);
339 /* If we read a full record, then assume there may be more
340 * data to read (stream based sockets only!)
343 set_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
);
345 dprintk("svc: socket %p recvfrom(%p, %zu) = %zd\n",
346 svsk
, iov
[0].iov_base
, iov
[0].iov_len
, len
);
351 * Set socket snd and rcv buffer lengths
353 static void svc_sock_setbufsize(struct svc_sock
*svsk
, unsigned int nreqs
)
355 unsigned int max_mesg
= svsk
->sk_xprt
.xpt_server
->sv_max_mesg
;
356 struct socket
*sock
= svsk
->sk_sock
;
358 nreqs
= min(nreqs
, INT_MAX
/ 2 / max_mesg
);
361 sock
->sk
->sk_sndbuf
= nreqs
* max_mesg
* 2;
362 sock
->sk
->sk_rcvbuf
= nreqs
* max_mesg
* 2;
363 sock
->sk
->sk_write_space(sock
->sk
);
364 release_sock(sock
->sk
);
367 static void svc_sock_secure_port(struct svc_rqst
*rqstp
)
369 if (svc_port_is_privileged(svc_addr(rqstp
)))
370 set_bit(RQ_SECURE
, &rqstp
->rq_flags
);
372 clear_bit(RQ_SECURE
, &rqstp
->rq_flags
);
376 * INET callback when data has been received on the socket.
378 static void svc_data_ready(struct sock
*sk
)
380 struct svc_sock
*svsk
= (struct svc_sock
*)sk
->sk_user_data
;
383 dprintk("svc: socket %p(inet %p), busy=%d\n",
385 test_bit(XPT_BUSY
, &svsk
->sk_xprt
.xpt_flags
));
387 /* Refer to svc_setup_socket() for details. */
390 if (!test_and_set_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
))
391 svc_xprt_enqueue(&svsk
->sk_xprt
);
396 * INET callback when space is newly available on the socket.
398 static void svc_write_space(struct sock
*sk
)
400 struct svc_sock
*svsk
= (struct svc_sock
*)(sk
->sk_user_data
);
403 dprintk("svc: socket %p(inet %p), write_space busy=%d\n",
404 svsk
, sk
, test_bit(XPT_BUSY
, &svsk
->sk_xprt
.xpt_flags
));
406 /* Refer to svc_setup_socket() for details. */
408 svsk
->sk_owspace(sk
);
409 svc_xprt_enqueue(&svsk
->sk_xprt
);
413 static int svc_tcp_has_wspace(struct svc_xprt
*xprt
)
415 struct svc_sock
*svsk
= container_of(xprt
, struct svc_sock
, sk_xprt
);
417 if (test_bit(XPT_LISTENER
, &xprt
->xpt_flags
))
419 return !test_bit(SOCK_NOSPACE
, &svsk
->sk_sock
->flags
);
422 static void svc_tcp_kill_temp_xprt(struct svc_xprt
*xprt
)
424 struct svc_sock
*svsk
;
426 struct linger no_linger
= {
431 svsk
= container_of(xprt
, struct svc_sock
, sk_xprt
);
432 sock
= svsk
->sk_sock
;
433 kernel_setsockopt(sock
, SOL_SOCKET
, SO_LINGER
,
434 (char *)&no_linger
, sizeof(no_linger
));
438 * See net/ipv6/ip_sockglue.c : ip_cmsg_recv_pktinfo
440 static int svc_udp_get_dest_address4(struct svc_rqst
*rqstp
,
443 struct in_pktinfo
*pki
= CMSG_DATA(cmh
);
444 struct sockaddr_in
*daddr
= svc_daddr_in(rqstp
);
446 if (cmh
->cmsg_type
!= IP_PKTINFO
)
449 daddr
->sin_family
= AF_INET
;
450 daddr
->sin_addr
.s_addr
= pki
->ipi_spec_dst
.s_addr
;
455 * See net/ipv6/datagram.c : ip6_datagram_recv_ctl
457 static int svc_udp_get_dest_address6(struct svc_rqst
*rqstp
,
460 struct in6_pktinfo
*pki
= CMSG_DATA(cmh
);
461 struct sockaddr_in6
*daddr
= svc_daddr_in6(rqstp
);
463 if (cmh
->cmsg_type
!= IPV6_PKTINFO
)
466 daddr
->sin6_family
= AF_INET6
;
467 daddr
->sin6_addr
= pki
->ipi6_addr
;
468 daddr
->sin6_scope_id
= pki
->ipi6_ifindex
;
473 * Copy the UDP datagram's destination address to the rqstp structure.
474 * The 'destination' address in this case is the address to which the
475 * peer sent the datagram, i.e. our local address. For multihomed
476 * hosts, this can change from msg to msg. Note that only the IP
477 * address changes, the port number should remain the same.
479 static int svc_udp_get_dest_address(struct svc_rqst
*rqstp
,
482 switch (cmh
->cmsg_level
) {
484 return svc_udp_get_dest_address4(rqstp
, cmh
);
486 return svc_udp_get_dest_address6(rqstp
, cmh
);
493 * Receive a datagram from a UDP socket.
495 static int svc_udp_recvfrom(struct svc_rqst
*rqstp
)
497 struct svc_sock
*svsk
=
498 container_of(rqstp
->rq_xprt
, struct svc_sock
, sk_xprt
);
499 struct svc_serv
*serv
= svsk
->sk_xprt
.xpt_server
;
503 long all
[SVC_PKTINFO_SPACE
/ sizeof(long)];
505 struct cmsghdr
*cmh
= &buffer
.hdr
;
506 struct msghdr msg
= {
507 .msg_name
= svc_addr(rqstp
),
509 .msg_controllen
= sizeof(buffer
),
510 .msg_flags
= MSG_DONTWAIT
,
515 if (test_and_clear_bit(XPT_CHNGBUF
, &svsk
->sk_xprt
.xpt_flags
))
516 /* udp sockets need large rcvbuf as all pending
517 * requests are still in that buffer. sndbuf must
518 * also be large enough that there is enough space
519 * for one reply per thread. We count all threads
520 * rather than threads in a particular pool, which
521 * provides an upper bound on the number of threads
522 * which will access the socket.
524 svc_sock_setbufsize(svsk
, serv
->sv_nrthreads
+ 3);
526 clear_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
);
528 err
= kernel_recvmsg(svsk
->sk_sock
, &msg
, NULL
,
529 0, 0, MSG_PEEK
| MSG_DONTWAIT
);
531 skb
= skb_recv_udp(svsk
->sk_sk
, 0, 1, &err
);
534 if (err
!= -EAGAIN
) {
535 /* possibly an icmp error */
536 dprintk("svc: recvfrom returned error %d\n", -err
);
537 set_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
);
541 len
= svc_addr_len(svc_addr(rqstp
));
542 rqstp
->rq_addrlen
= len
;
543 if (skb
->tstamp
== 0) {
544 skb
->tstamp
= ktime_get_real();
545 /* Don't enable netstamp, sunrpc doesn't
546 need that much accuracy */
548 sock_write_timestamp(svsk
->sk_sk
, skb
->tstamp
);
549 set_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
); /* there may be more data... */
552 rqstp
->rq_arg
.len
= len
;
554 rqstp
->rq_prot
= IPPROTO_UDP
;
556 if (!svc_udp_get_dest_address(rqstp
, cmh
)) {
557 net_warn_ratelimited("svc: received unknown control message %d/%d; dropping RPC reply datagram\n",
558 cmh
->cmsg_level
, cmh
->cmsg_type
);
561 rqstp
->rq_daddrlen
= svc_addr_len(svc_daddr(rqstp
));
563 if (skb_is_nonlinear(skb
)) {
564 /* we have to copy */
566 if (csum_partial_copy_to_xdr(&rqstp
->rq_arg
, skb
)) {
574 /* we can use it in-place */
575 rqstp
->rq_arg
.head
[0].iov_base
= skb
->data
;
576 rqstp
->rq_arg
.head
[0].iov_len
= len
;
577 if (skb_checksum_complete(skb
))
579 rqstp
->rq_xprt_ctxt
= skb
;
582 rqstp
->rq_arg
.page_base
= 0;
583 if (len
<= rqstp
->rq_arg
.head
[0].iov_len
) {
584 rqstp
->rq_arg
.head
[0].iov_len
= len
;
585 rqstp
->rq_arg
.page_len
= 0;
586 rqstp
->rq_respages
= rqstp
->rq_pages
+1;
588 rqstp
->rq_arg
.page_len
= len
- rqstp
->rq_arg
.head
[0].iov_len
;
589 rqstp
->rq_respages
= rqstp
->rq_pages
+ 1 +
590 DIV_ROUND_UP(rqstp
->rq_arg
.page_len
, PAGE_SIZE
);
592 rqstp
->rq_next_page
= rqstp
->rq_respages
+1;
595 serv
->sv_stats
->netudpcnt
++;
604 svc_udp_sendto(struct svc_rqst
*rqstp
)
608 error
= svc_sendto(rqstp
, &rqstp
->rq_res
);
609 if (error
== -ECONNREFUSED
)
610 /* ICMP error on earlier request. */
611 error
= svc_sendto(rqstp
, &rqstp
->rq_res
);
616 static int svc_udp_has_wspace(struct svc_xprt
*xprt
)
618 struct svc_sock
*svsk
= container_of(xprt
, struct svc_sock
, sk_xprt
);
619 struct svc_serv
*serv
= xprt
->xpt_server
;
620 unsigned long required
;
623 * Set the SOCK_NOSPACE flag before checking the available
626 set_bit(SOCK_NOSPACE
, &svsk
->sk_sock
->flags
);
627 required
= atomic_read(&svsk
->sk_xprt
.xpt_reserved
) + serv
->sv_max_mesg
;
628 if (required
*2 > sock_wspace(svsk
->sk_sk
))
630 clear_bit(SOCK_NOSPACE
, &svsk
->sk_sock
->flags
);
634 static struct svc_xprt
*svc_udp_accept(struct svc_xprt
*xprt
)
640 static void svc_udp_kill_temp_xprt(struct svc_xprt
*xprt
)
644 static struct svc_xprt
*svc_udp_create(struct svc_serv
*serv
,
646 struct sockaddr
*sa
, int salen
,
649 return svc_create_socket(serv
, IPPROTO_UDP
, net
, sa
, salen
, flags
);
652 static const struct svc_xprt_ops svc_udp_ops
= {
653 .xpo_create
= svc_udp_create
,
654 .xpo_recvfrom
= svc_udp_recvfrom
,
655 .xpo_sendto
= svc_udp_sendto
,
656 .xpo_release_rqst
= svc_release_udp_skb
,
657 .xpo_detach
= svc_sock_detach
,
658 .xpo_free
= svc_sock_free
,
659 .xpo_has_wspace
= svc_udp_has_wspace
,
660 .xpo_accept
= svc_udp_accept
,
661 .xpo_secure_port
= svc_sock_secure_port
,
662 .xpo_kill_temp_xprt
= svc_udp_kill_temp_xprt
,
665 static struct svc_xprt_class svc_udp_class
= {
667 .xcl_owner
= THIS_MODULE
,
668 .xcl_ops
= &svc_udp_ops
,
669 .xcl_max_payload
= RPCSVC_MAXPAYLOAD_UDP
,
670 .xcl_ident
= XPRT_TRANSPORT_UDP
,
673 static void svc_udp_init(struct svc_sock
*svsk
, struct svc_serv
*serv
)
675 int err
, level
, optname
, one
= 1;
677 svc_xprt_init(sock_net(svsk
->sk_sock
->sk
), &svc_udp_class
,
678 &svsk
->sk_xprt
, serv
);
679 clear_bit(XPT_CACHE_AUTH
, &svsk
->sk_xprt
.xpt_flags
);
680 svsk
->sk_sk
->sk_data_ready
= svc_data_ready
;
681 svsk
->sk_sk
->sk_write_space
= svc_write_space
;
683 /* initialise setting must have enough space to
684 * receive and respond to one request.
685 * svc_udp_recvfrom will re-adjust if necessary
687 svc_sock_setbufsize(svsk
, 3);
689 /* data might have come in before data_ready set up */
690 set_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
);
691 set_bit(XPT_CHNGBUF
, &svsk
->sk_xprt
.xpt_flags
);
693 /* make sure we get destination address info */
694 switch (svsk
->sk_sk
->sk_family
) {
697 optname
= IP_PKTINFO
;
701 optname
= IPV6_RECVPKTINFO
;
706 err
= kernel_setsockopt(svsk
->sk_sock
, level
, optname
,
707 (char *)&one
, sizeof(one
));
708 dprintk("svc: kernel_setsockopt returned %d\n", err
);
712 * A data_ready event on a listening socket means there's a connection
713 * pending. Do not use state_change as a substitute for it.
715 static void svc_tcp_listen_data_ready(struct sock
*sk
)
717 struct svc_sock
*svsk
= (struct svc_sock
*)sk
->sk_user_data
;
719 dprintk("svc: socket %p TCP (listen) state change %d\n",
723 /* Refer to svc_setup_socket() for details. */
729 * This callback may called twice when a new connection
730 * is established as a child socket inherits everything
731 * from a parent LISTEN socket.
732 * 1) data_ready method of the parent socket will be called
733 * when one of child sockets become ESTABLISHED.
734 * 2) data_ready method of the child socket may be called
735 * when it receives data before the socket is accepted.
736 * In case of 2, we should ignore it silently.
738 if (sk
->sk_state
== TCP_LISTEN
) {
740 set_bit(XPT_CONN
, &svsk
->sk_xprt
.xpt_flags
);
741 svc_xprt_enqueue(&svsk
->sk_xprt
);
743 printk("svc: socket %p: no user data\n", sk
);
748 * A state change on a connected socket means it's dying or dead.
750 static void svc_tcp_state_change(struct sock
*sk
)
752 struct svc_sock
*svsk
= (struct svc_sock
*)sk
->sk_user_data
;
754 dprintk("svc: socket %p TCP (connected) state change %d (svsk %p)\n",
755 sk
, sk
->sk_state
, sk
->sk_user_data
);
758 printk("svc: socket %p: no user data\n", sk
);
760 /* Refer to svc_setup_socket() for details. */
763 if (sk
->sk_state
!= TCP_ESTABLISHED
) {
764 set_bit(XPT_CLOSE
, &svsk
->sk_xprt
.xpt_flags
);
765 svc_xprt_enqueue(&svsk
->sk_xprt
);
771 * Accept a TCP connection
773 static struct svc_xprt
*svc_tcp_accept(struct svc_xprt
*xprt
)
775 struct svc_sock
*svsk
= container_of(xprt
, struct svc_sock
, sk_xprt
);
776 struct sockaddr_storage addr
;
777 struct sockaddr
*sin
= (struct sockaddr
*) &addr
;
778 struct svc_serv
*serv
= svsk
->sk_xprt
.xpt_server
;
779 struct socket
*sock
= svsk
->sk_sock
;
780 struct socket
*newsock
;
781 struct svc_sock
*newsvsk
;
783 RPC_IFDEBUG(char buf
[RPC_MAX_ADDRBUFLEN
]);
785 dprintk("svc: tcp_accept %p sock %p\n", svsk
, sock
);
789 clear_bit(XPT_CONN
, &svsk
->sk_xprt
.xpt_flags
);
790 err
= kernel_accept(sock
, &newsock
, O_NONBLOCK
);
793 printk(KERN_WARNING
"%s: no more sockets!\n",
795 else if (err
!= -EAGAIN
)
796 net_warn_ratelimited("%s: accept failed (err %d)!\n",
797 serv
->sv_name
, -err
);
800 set_bit(XPT_CONN
, &svsk
->sk_xprt
.xpt_flags
);
802 err
= kernel_getpeername(newsock
, sin
);
804 net_warn_ratelimited("%s: peername failed (err %d)!\n",
805 serv
->sv_name
, -err
);
806 goto failed
; /* aborted connection or whatever */
810 /* Ideally, we would want to reject connections from unauthorized
811 * hosts here, but when we get encryption, the IP of the host won't
812 * tell us anything. For now just warn about unpriv connections.
814 if (!svc_port_is_privileged(sin
)) {
815 dprintk("%s: connect from unprivileged port: %s\n",
817 __svc_print_addr(sin
, buf
, sizeof(buf
)));
819 dprintk("%s: connect from %s\n", serv
->sv_name
,
820 __svc_print_addr(sin
, buf
, sizeof(buf
)));
822 /* Reset the inherited callbacks before calling svc_setup_socket */
823 newsock
->sk
->sk_state_change
= svsk
->sk_ostate
;
824 newsock
->sk
->sk_data_ready
= svsk
->sk_odata
;
825 newsock
->sk
->sk_write_space
= svsk
->sk_owspace
;
827 /* make sure that a write doesn't block forever when
830 newsock
->sk
->sk_sndtimeo
= HZ
*30;
832 newsvsk
= svc_setup_socket(serv
, newsock
,
833 (SVC_SOCK_ANONYMOUS
| SVC_SOCK_TEMPORARY
));
836 svc_xprt_set_remote(&newsvsk
->sk_xprt
, sin
, slen
);
837 err
= kernel_getsockname(newsock
, sin
);
839 if (unlikely(err
< 0)) {
840 dprintk("svc_tcp_accept: kernel_getsockname error %d\n", -err
);
841 slen
= offsetof(struct sockaddr
, sa_data
);
843 svc_xprt_set_local(&newsvsk
->sk_xprt
, sin
, slen
);
845 if (sock_is_loopback(newsock
->sk
))
846 set_bit(XPT_LOCAL
, &newsvsk
->sk_xprt
.xpt_flags
);
848 clear_bit(XPT_LOCAL
, &newsvsk
->sk_xprt
.xpt_flags
);
850 serv
->sv_stats
->nettcpconn
++;
852 return &newsvsk
->sk_xprt
;
855 sock_release(newsock
);
859 static unsigned int svc_tcp_restore_pages(struct svc_sock
*svsk
, struct svc_rqst
*rqstp
)
861 unsigned int i
, len
, npages
;
863 if (svsk
->sk_datalen
== 0)
865 len
= svsk
->sk_datalen
;
866 npages
= (len
+ PAGE_SIZE
- 1) >> PAGE_SHIFT
;
867 for (i
= 0; i
< npages
; i
++) {
868 if (rqstp
->rq_pages
[i
] != NULL
)
869 put_page(rqstp
->rq_pages
[i
]);
870 BUG_ON(svsk
->sk_pages
[i
] == NULL
);
871 rqstp
->rq_pages
[i
] = svsk
->sk_pages
[i
];
872 svsk
->sk_pages
[i
] = NULL
;
874 rqstp
->rq_arg
.head
[0].iov_base
= page_address(rqstp
->rq_pages
[0]);
878 static void svc_tcp_save_pages(struct svc_sock
*svsk
, struct svc_rqst
*rqstp
)
880 unsigned int i
, len
, npages
;
882 if (svsk
->sk_datalen
== 0)
884 len
= svsk
->sk_datalen
;
885 npages
= (len
+ PAGE_SIZE
- 1) >> PAGE_SHIFT
;
886 for (i
= 0; i
< npages
; i
++) {
887 svsk
->sk_pages
[i
] = rqstp
->rq_pages
[i
];
888 rqstp
->rq_pages
[i
] = NULL
;
892 static void svc_tcp_clear_pages(struct svc_sock
*svsk
)
894 unsigned int i
, len
, npages
;
896 if (svsk
->sk_datalen
== 0)
898 len
= svsk
->sk_datalen
;
899 npages
= (len
+ PAGE_SIZE
- 1) >> PAGE_SHIFT
;
900 for (i
= 0; i
< npages
; i
++) {
901 if (svsk
->sk_pages
[i
] == NULL
) {
905 put_page(svsk
->sk_pages
[i
]);
906 svsk
->sk_pages
[i
] = NULL
;
910 svsk
->sk_datalen
= 0;
914 * Receive fragment record header.
915 * If we haven't gotten the record length yet, get the next four bytes.
917 static int svc_tcp_recv_record(struct svc_sock
*svsk
, struct svc_rqst
*rqstp
)
919 struct svc_serv
*serv
= svsk
->sk_xprt
.xpt_server
;
923 if (svsk
->sk_tcplen
< sizeof(rpc_fraghdr
)) {
926 want
= sizeof(rpc_fraghdr
) - svsk
->sk_tcplen
;
927 iov
.iov_base
= ((char *) &svsk
->sk_reclen
) + svsk
->sk_tcplen
;
929 len
= svc_recvfrom(rqstp
, &iov
, 1, want
, 0);
932 svsk
->sk_tcplen
+= len
;
935 dprintk("svc: short recvfrom while reading record "
936 "length (%d of %d)\n", len
, want
);
940 dprintk("svc: TCP record, %d bytes\n", svc_sock_reclen(svsk
));
941 if (svc_sock_reclen(svsk
) + svsk
->sk_datalen
>
943 net_notice_ratelimited("RPC: fragment too large: %d\n",
944 svc_sock_reclen(svsk
));
949 return svc_sock_reclen(svsk
);
951 dprintk("RPC: TCP recv_record got %d\n", len
);
954 set_bit(XPT_CLOSE
, &svsk
->sk_xprt
.xpt_flags
);
958 static int receive_cb_reply(struct svc_sock
*svsk
, struct svc_rqst
*rqstp
)
960 struct rpc_xprt
*bc_xprt
= svsk
->sk_xprt
.xpt_bc_xprt
;
961 struct rpc_rqst
*req
= NULL
;
962 struct kvec
*src
, *dst
;
963 __be32
*p
= (__be32
*)rqstp
->rq_arg
.head
[0].iov_base
;
972 spin_lock(&bc_xprt
->queue_lock
);
973 req
= xprt_lookup_rqst(bc_xprt
, xid
);
975 goto unlock_notfound
;
977 memcpy(&req
->rq_private_buf
, &req
->rq_rcv_buf
, sizeof(struct xdr_buf
));
979 * XXX!: cheating for now! Only copying HEAD.
980 * But we know this is good enough for now (in fact, for any
981 * callback reply in the forseeable future).
983 dst
= &req
->rq_private_buf
.head
[0];
984 src
= &rqstp
->rq_arg
.head
[0];
985 if (dst
->iov_len
< src
->iov_len
)
986 goto unlock_eagain
; /* whatever; just giving up. */
987 memcpy(dst
->iov_base
, src
->iov_base
, src
->iov_len
);
988 xprt_complete_rqst(req
->rq_task
, rqstp
->rq_arg
.len
);
989 rqstp
->rq_arg
.len
= 0;
990 spin_unlock(&bc_xprt
->queue_lock
);
994 "%s: Got unrecognized reply: "
995 "calldir 0x%x xpt_bc_xprt %p xid %08x\n",
996 __func__
, ntohl(calldir
),
997 bc_xprt
, ntohl(xid
));
999 spin_unlock(&bc_xprt
->queue_lock
);
1003 static int copy_pages_to_kvecs(struct kvec
*vec
, struct page
**pages
, int len
)
1009 vec
[i
].iov_base
= page_address(pages
[i
]);
1010 vec
[i
].iov_len
= PAGE_SIZE
;
1017 static void svc_tcp_fragment_received(struct svc_sock
*svsk
)
1019 /* If we have more data, signal svc_xprt_enqueue() to try again */
1020 dprintk("svc: TCP %s record (%d bytes)\n",
1021 svc_sock_final_rec(svsk
) ? "final" : "nonfinal",
1022 svc_sock_reclen(svsk
));
1023 svsk
->sk_tcplen
= 0;
1024 svsk
->sk_reclen
= 0;
1028 * Receive data from a TCP socket.
1030 static int svc_tcp_recvfrom(struct svc_rqst
*rqstp
)
1032 struct svc_sock
*svsk
=
1033 container_of(rqstp
->rq_xprt
, struct svc_sock
, sk_xprt
);
1034 struct svc_serv
*serv
= svsk
->sk_xprt
.xpt_server
;
1037 unsigned int want
, base
;
1042 dprintk("svc: tcp_recv %p data %d conn %d close %d\n",
1043 svsk
, test_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
),
1044 test_bit(XPT_CONN
, &svsk
->sk_xprt
.xpt_flags
),
1045 test_bit(XPT_CLOSE
, &svsk
->sk_xprt
.xpt_flags
));
1047 len
= svc_tcp_recv_record(svsk
, rqstp
);
1051 base
= svc_tcp_restore_pages(svsk
, rqstp
);
1052 want
= svc_sock_reclen(svsk
) - (svsk
->sk_tcplen
- sizeof(rpc_fraghdr
));
1054 vec
= rqstp
->rq_vec
;
1056 pnum
= copy_pages_to_kvecs(&vec
[0], &rqstp
->rq_pages
[0], base
+ want
);
1058 rqstp
->rq_respages
= &rqstp
->rq_pages
[pnum
];
1059 rqstp
->rq_next_page
= rqstp
->rq_respages
+ 1;
1061 /* Now receive data */
1062 len
= svc_recvfrom(rqstp
, vec
, pnum
, base
+ want
, base
);
1064 svsk
->sk_tcplen
+= len
;
1065 svsk
->sk_datalen
+= len
;
1067 if (len
!= want
|| !svc_sock_final_rec(svsk
)) {
1068 svc_tcp_save_pages(svsk
, rqstp
);
1069 if (len
< 0 && len
!= -EAGAIN
)
1072 svc_tcp_fragment_received(svsk
);
1074 dprintk("svc: incomplete TCP record (%d of %d)\n",
1075 (int)(svsk
->sk_tcplen
- sizeof(rpc_fraghdr
)),
1076 svc_sock_reclen(svsk
));
1080 if (svsk
->sk_datalen
< 8) {
1081 svsk
->sk_datalen
= 0;
1082 goto err_delete
; /* client is nuts. */
1085 rqstp
->rq_arg
.len
= svsk
->sk_datalen
;
1086 rqstp
->rq_arg
.page_base
= 0;
1087 if (rqstp
->rq_arg
.len
<= rqstp
->rq_arg
.head
[0].iov_len
) {
1088 rqstp
->rq_arg
.head
[0].iov_len
= rqstp
->rq_arg
.len
;
1089 rqstp
->rq_arg
.page_len
= 0;
1091 rqstp
->rq_arg
.page_len
= rqstp
->rq_arg
.len
- rqstp
->rq_arg
.head
[0].iov_len
;
1093 rqstp
->rq_xprt_ctxt
= NULL
;
1094 rqstp
->rq_prot
= IPPROTO_TCP
;
1095 if (test_bit(XPT_LOCAL
, &svsk
->sk_xprt
.xpt_flags
))
1096 set_bit(RQ_LOCAL
, &rqstp
->rq_flags
);
1098 clear_bit(RQ_LOCAL
, &rqstp
->rq_flags
);
1100 p
= (__be32
*)rqstp
->rq_arg
.head
[0].iov_base
;
1103 len
= receive_cb_reply(svsk
, rqstp
);
1105 /* Reset TCP read info */
1106 svsk
->sk_datalen
= 0;
1107 svc_tcp_fragment_received(svsk
);
1112 svc_xprt_copy_addrs(rqstp
, &svsk
->sk_xprt
);
1114 serv
->sv_stats
->nettcpcnt
++;
1116 return rqstp
->rq_arg
.len
;
1121 dprintk("RPC: TCP recvfrom got EAGAIN\n");
1124 printk(KERN_NOTICE
"%s: recvfrom returned errno %d\n",
1125 svsk
->sk_xprt
.xpt_server
->sv_name
, -len
);
1126 set_bit(XPT_CLOSE
, &svsk
->sk_xprt
.xpt_flags
);
1128 return 0; /* record not complete */
1132 * Send out data on TCP socket.
1134 static int svc_tcp_sendto(struct svc_rqst
*rqstp
)
1136 struct xdr_buf
*xbufp
= &rqstp
->rq_res
;
1140 /* Set up the first element of the reply kvec.
1141 * Any other kvecs that may be in use have been taken
1142 * care of by the server implementation itself.
1144 reclen
= htonl(0x80000000|((xbufp
->len
) - 4));
1145 memcpy(xbufp
->head
[0].iov_base
, &reclen
, 4);
1147 sent
= svc_sendto(rqstp
, &rqstp
->rq_res
);
1148 if (sent
!= xbufp
->len
) {
1150 "rpc-srv/tcp: %s: %s %d when sending %d bytes "
1151 "- shutting down socket\n",
1152 rqstp
->rq_xprt
->xpt_server
->sv_name
,
1153 (sent
<0)?"got error":"sent only",
1155 set_bit(XPT_CLOSE
, &rqstp
->rq_xprt
->xpt_flags
);
1156 svc_xprt_enqueue(rqstp
->rq_xprt
);
1162 static struct svc_xprt
*svc_tcp_create(struct svc_serv
*serv
,
1164 struct sockaddr
*sa
, int salen
,
1167 return svc_create_socket(serv
, IPPROTO_TCP
, net
, sa
, salen
, flags
);
1170 static const struct svc_xprt_ops svc_tcp_ops
= {
1171 .xpo_create
= svc_tcp_create
,
1172 .xpo_recvfrom
= svc_tcp_recvfrom
,
1173 .xpo_sendto
= svc_tcp_sendto
,
1174 .xpo_release_rqst
= svc_release_skb
,
1175 .xpo_detach
= svc_tcp_sock_detach
,
1176 .xpo_free
= svc_sock_free
,
1177 .xpo_has_wspace
= svc_tcp_has_wspace
,
1178 .xpo_accept
= svc_tcp_accept
,
1179 .xpo_secure_port
= svc_sock_secure_port
,
1180 .xpo_kill_temp_xprt
= svc_tcp_kill_temp_xprt
,
1183 static struct svc_xprt_class svc_tcp_class
= {
1185 .xcl_owner
= THIS_MODULE
,
1186 .xcl_ops
= &svc_tcp_ops
,
1187 .xcl_max_payload
= RPCSVC_MAXPAYLOAD_TCP
,
1188 .xcl_ident
= XPRT_TRANSPORT_TCP
,
1191 void svc_init_xprt_sock(void)
1193 svc_reg_xprt_class(&svc_tcp_class
);
1194 svc_reg_xprt_class(&svc_udp_class
);
1197 void svc_cleanup_xprt_sock(void)
1199 svc_unreg_xprt_class(&svc_tcp_class
);
1200 svc_unreg_xprt_class(&svc_udp_class
);
1203 static void svc_tcp_init(struct svc_sock
*svsk
, struct svc_serv
*serv
)
1205 struct sock
*sk
= svsk
->sk_sk
;
1207 svc_xprt_init(sock_net(svsk
->sk_sock
->sk
), &svc_tcp_class
,
1208 &svsk
->sk_xprt
, serv
);
1209 set_bit(XPT_CACHE_AUTH
, &svsk
->sk_xprt
.xpt_flags
);
1210 set_bit(XPT_CONG_CTRL
, &svsk
->sk_xprt
.xpt_flags
);
1211 if (sk
->sk_state
== TCP_LISTEN
) {
1212 dprintk("setting up TCP socket for listening\n");
1213 strcpy(svsk
->sk_xprt
.xpt_remotebuf
, "listener");
1214 set_bit(XPT_LISTENER
, &svsk
->sk_xprt
.xpt_flags
);
1215 sk
->sk_data_ready
= svc_tcp_listen_data_ready
;
1216 set_bit(XPT_CONN
, &svsk
->sk_xprt
.xpt_flags
);
1218 dprintk("setting up TCP socket for reading\n");
1219 sk
->sk_state_change
= svc_tcp_state_change
;
1220 sk
->sk_data_ready
= svc_data_ready
;
1221 sk
->sk_write_space
= svc_write_space
;
1223 svsk
->sk_reclen
= 0;
1224 svsk
->sk_tcplen
= 0;
1225 svsk
->sk_datalen
= 0;
1226 memset(&svsk
->sk_pages
[0], 0, sizeof(svsk
->sk_pages
));
1228 tcp_sk(sk
)->nonagle
|= TCP_NAGLE_OFF
;
1230 set_bit(XPT_DATA
, &svsk
->sk_xprt
.xpt_flags
);
1231 switch (sk
->sk_state
) {
1233 case TCP_ESTABLISHED
:
1236 set_bit(XPT_CLOSE
, &svsk
->sk_xprt
.xpt_flags
);
1241 void svc_sock_update_bufs(struct svc_serv
*serv
)
1244 * The number of server threads has changed. Update
1245 * rcvbuf and sndbuf accordingly on all sockets
1247 struct svc_sock
*svsk
;
1249 spin_lock_bh(&serv
->sv_lock
);
1250 list_for_each_entry(svsk
, &serv
->sv_permsocks
, sk_xprt
.xpt_list
)
1251 set_bit(XPT_CHNGBUF
, &svsk
->sk_xprt
.xpt_flags
);
1252 spin_unlock_bh(&serv
->sv_lock
);
1254 EXPORT_SYMBOL_GPL(svc_sock_update_bufs
);
1257 * Initialize socket for RPC use and create svc_sock struct
1259 static struct svc_sock
*svc_setup_socket(struct svc_serv
*serv
,
1260 struct socket
*sock
,
1263 struct svc_sock
*svsk
;
1265 int pmap_register
= !(flags
& SVC_SOCK_ANONYMOUS
);
1268 dprintk("svc: svc_setup_socket %p\n", sock
);
1269 svsk
= kzalloc(sizeof(*svsk
), GFP_KERNEL
);
1271 return ERR_PTR(-ENOMEM
);
1275 /* Register socket with portmapper */
1277 err
= svc_register(serv
, sock_net(sock
->sk
), inet
->sk_family
,
1279 ntohs(inet_sk(inet
)->inet_sport
));
1283 return ERR_PTR(err
);
1286 svsk
->sk_sock
= sock
;
1288 svsk
->sk_ostate
= inet
->sk_state_change
;
1289 svsk
->sk_odata
= inet
->sk_data_ready
;
1290 svsk
->sk_owspace
= inet
->sk_write_space
;
1292 * This barrier is necessary in order to prevent race condition
1293 * with svc_data_ready(), svc_listen_data_ready() and others
1294 * when calling callbacks above.
1297 inet
->sk_user_data
= svsk
;
1299 /* Initialize the socket */
1300 if (sock
->type
== SOCK_DGRAM
)
1301 svc_udp_init(svsk
, serv
);
1303 svc_tcp_init(svsk
, serv
);
1305 dprintk("svc: svc_setup_socket created %p (inet %p), "
1306 "listen %d close %d\n",
1308 test_bit(XPT_LISTENER
, &svsk
->sk_xprt
.xpt_flags
),
1309 test_bit(XPT_CLOSE
, &svsk
->sk_xprt
.xpt_flags
));
1314 bool svc_alien_sock(struct net
*net
, int fd
)
1317 struct socket
*sock
= sockfd_lookup(fd
, &err
);
1322 if (sock_net(sock
->sk
) != net
)
1328 EXPORT_SYMBOL_GPL(svc_alien_sock
);
1331 * svc_addsock - add a listener socket to an RPC service
1332 * @serv: pointer to RPC service to which to add a new listener
1333 * @fd: file descriptor of the new listener
1334 * @name_return: pointer to buffer to fill in with name of listener
1335 * @len: size of the buffer
1338 * Fills in socket name and returns positive length of name if successful.
1339 * Name is terminated with '\n'. On error, returns a negative errno
1342 int svc_addsock(struct svc_serv
*serv
, const int fd
, char *name_return
,
1343 const size_t len
, const struct cred
*cred
)
1346 struct socket
*so
= sockfd_lookup(fd
, &err
);
1347 struct svc_sock
*svsk
= NULL
;
1348 struct sockaddr_storage addr
;
1349 struct sockaddr
*sin
= (struct sockaddr
*)&addr
;
1354 err
= -EAFNOSUPPORT
;
1355 if ((so
->sk
->sk_family
!= PF_INET
) && (so
->sk
->sk_family
!= PF_INET6
))
1357 err
= -EPROTONOSUPPORT
;
1358 if (so
->sk
->sk_protocol
!= IPPROTO_TCP
&&
1359 so
->sk
->sk_protocol
!= IPPROTO_UDP
)
1362 if (so
->state
> SS_UNCONNECTED
)
1365 if (!try_module_get(THIS_MODULE
))
1367 svsk
= svc_setup_socket(serv
, so
, SVC_SOCK_DEFAULTS
);
1369 module_put(THIS_MODULE
);
1370 err
= PTR_ERR(svsk
);
1373 salen
= kernel_getsockname(svsk
->sk_sock
, sin
);
1375 svc_xprt_set_local(&svsk
->sk_xprt
, sin
, salen
);
1376 svsk
->sk_xprt
.xpt_cred
= get_cred(cred
);
1377 svc_add_new_perm_xprt(serv
, &svsk
->sk_xprt
);
1378 return svc_one_sock_name(svsk
, name_return
, len
);
1383 EXPORT_SYMBOL_GPL(svc_addsock
);
1386 * Create socket for RPC service.
1388 static struct svc_xprt
*svc_create_socket(struct svc_serv
*serv
,
1391 struct sockaddr
*sin
, int len
,
1394 struct svc_sock
*svsk
;
1395 struct socket
*sock
;
1398 struct sockaddr_storage addr
;
1399 struct sockaddr
*newsin
= (struct sockaddr
*)&addr
;
1403 RPC_IFDEBUG(char buf
[RPC_MAX_ADDRBUFLEN
]);
1405 dprintk("svc: svc_create_socket(%s, %d, %s)\n",
1406 serv
->sv_program
->pg_name
, protocol
,
1407 __svc_print_addr(sin
, buf
, sizeof(buf
)));
1409 if (protocol
!= IPPROTO_UDP
&& protocol
!= IPPROTO_TCP
) {
1410 printk(KERN_WARNING
"svc: only UDP and TCP "
1411 "sockets supported\n");
1412 return ERR_PTR(-EINVAL
);
1415 type
= (protocol
== IPPROTO_UDP
)? SOCK_DGRAM
: SOCK_STREAM
;
1416 switch (sin
->sa_family
) {
1424 return ERR_PTR(-EINVAL
);
1427 error
= __sock_create(net
, family
, type
, protocol
, &sock
, 1);
1429 return ERR_PTR(error
);
1431 svc_reclassify_socket(sock
);
1434 * If this is an PF_INET6 listener, we want to avoid
1435 * getting requests from IPv4 remotes. Those should
1436 * be shunted to a PF_INET listener via rpcbind.
1439 if (family
== PF_INET6
)
1440 kernel_setsockopt(sock
, SOL_IPV6
, IPV6_V6ONLY
,
1441 (char *)&val
, sizeof(val
));
1443 if (type
== SOCK_STREAM
)
1444 sock
->sk
->sk_reuse
= SK_CAN_REUSE
; /* allow address reuse */
1445 error
= kernel_bind(sock
, sin
, len
);
1449 error
= kernel_getsockname(sock
, newsin
);
1454 if (protocol
== IPPROTO_TCP
) {
1455 if ((error
= kernel_listen(sock
, 64)) < 0)
1459 svsk
= svc_setup_socket(serv
, sock
, flags
);
1461 error
= PTR_ERR(svsk
);
1464 svc_xprt_set_local(&svsk
->sk_xprt
, newsin
, newlen
);
1465 return (struct svc_xprt
*)svsk
;
1467 dprintk("svc: svc_create_socket error = %d\n", -error
);
1469 return ERR_PTR(error
);
1473 * Detach the svc_sock from the socket so that no
1474 * more callbacks occur.
1476 static void svc_sock_detach(struct svc_xprt
*xprt
)
1478 struct svc_sock
*svsk
= container_of(xprt
, struct svc_sock
, sk_xprt
);
1479 struct sock
*sk
= svsk
->sk_sk
;
1481 dprintk("svc: svc_sock_detach(%p)\n", svsk
);
1483 /* put back the old socket callbacks */
1485 sk
->sk_state_change
= svsk
->sk_ostate
;
1486 sk
->sk_data_ready
= svsk
->sk_odata
;
1487 sk
->sk_write_space
= svsk
->sk_owspace
;
1488 sk
->sk_user_data
= NULL
;
1493 * Disconnect the socket, and reset the callbacks
1495 static void svc_tcp_sock_detach(struct svc_xprt
*xprt
)
1497 struct svc_sock
*svsk
= container_of(xprt
, struct svc_sock
, sk_xprt
);
1499 dprintk("svc: svc_tcp_sock_detach(%p)\n", svsk
);
1501 svc_sock_detach(xprt
);
1503 if (!test_bit(XPT_LISTENER
, &xprt
->xpt_flags
)) {
1504 svc_tcp_clear_pages(svsk
);
1505 kernel_sock_shutdown(svsk
->sk_sock
, SHUT_RDWR
);
1510 * Free the svc_sock's socket resources and the svc_sock itself.
1512 static void svc_sock_free(struct svc_xprt
*xprt
)
1514 struct svc_sock
*svsk
= container_of(xprt
, struct svc_sock
, sk_xprt
);
1515 dprintk("svc: svc_sock_free(%p)\n", svsk
);
1517 if (svsk
->sk_sock
->file
)
1518 sockfd_put(svsk
->sk_sock
);
1520 sock_release(svsk
->sk_sock
);