2 * IUCV protocol stack for Linux on zSeries
4 * Copyright IBM Corp. 2006, 2009
6 * Author(s): Jennifer Hunt <jenhunt@us.ibm.com>
7 * Hendrik Brueckner <brueckner@linux.vnet.ibm.com>
9 * Ursula Braun <ursula.braun@de.ibm.com>
12 #define KMSG_COMPONENT "af_iucv"
13 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
15 #include <linux/module.h>
16 #include <linux/types.h>
17 #include <linux/list.h>
18 #include <linux/errno.h>
19 #include <linux/kernel.h>
20 #include <linux/sched.h>
21 #include <linux/slab.h>
22 #include <linux/skbuff.h>
23 #include <linux/init.h>
24 #include <linux/poll.h>
26 #include <asm/ebcdic.h>
27 #include <asm/cpcmd.h>
28 #include <linux/kmod.h>
30 #include <net/iucv/iucv.h>
31 #include <net/iucv/af_iucv.h>
35 static char iucv_userid
[80];
37 static struct proto_ops iucv_sock_ops
;
39 static struct proto iucv_proto
= {
42 .obj_size
= sizeof(struct iucv_sock
),
45 /* special AF_IUCV IPRM messages */
46 static const u8 iprm_shutdown
[8] =
47 {0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01};
49 #define TRGCLS_SIZE (sizeof(((struct iucv_message *)0)->class))
51 /* macros to set/get socket control buffer at correct offset */
52 #define CB_TAG(skb) ((skb)->cb) /* iucv message tag */
53 #define CB_TAG_LEN (sizeof(((struct iucv_message *) 0)->tag))
54 #define CB_TRGCLS(skb) ((skb)->cb + CB_TAG_LEN) /* iucv msg target class */
55 #define CB_TRGCLS_LEN (TRGCLS_SIZE)
57 #define __iucv_sock_wait(sk, condition, timeo, ret) \
59 DEFINE_WAIT(__wait); \
60 long __timeo = timeo; \
62 while (!(condition)) { \
63 prepare_to_wait(sk->sk_sleep, &__wait, TASK_INTERRUPTIBLE); \
68 if (signal_pending(current)) { \
69 ret = sock_intr_errno(__timeo); \
73 __timeo = schedule_timeout(__timeo); \
75 ret = sock_error(sk); \
79 finish_wait(sk->sk_sleep, &__wait); \
82 #define iucv_sock_wait(sk, condition, timeo) \
86 __iucv_sock_wait(sk, condition, timeo, __ret); \
90 static void iucv_sock_kill(struct sock
*sk
);
91 static void iucv_sock_close(struct sock
*sk
);
93 /* Call Back functions */
94 static void iucv_callback_rx(struct iucv_path
*, struct iucv_message
*);
95 static void iucv_callback_txdone(struct iucv_path
*, struct iucv_message
*);
96 static void iucv_callback_connack(struct iucv_path
*, u8 ipuser
[16]);
97 static int iucv_callback_connreq(struct iucv_path
*, u8 ipvmid
[8],
99 static void iucv_callback_connrej(struct iucv_path
*, u8 ipuser
[16]);
100 static void iucv_callback_shutdown(struct iucv_path
*, u8 ipuser
[16]);
102 static struct iucv_sock_list iucv_sk_list
= {
103 .lock
= __RW_LOCK_UNLOCKED(iucv_sk_list
.lock
),
104 .autobind_name
= ATOMIC_INIT(0)
107 static struct iucv_handler af_iucv_handler
= {
108 .path_pending
= iucv_callback_connreq
,
109 .path_complete
= iucv_callback_connack
,
110 .path_severed
= iucv_callback_connrej
,
111 .message_pending
= iucv_callback_rx
,
112 .message_complete
= iucv_callback_txdone
,
113 .path_quiesced
= iucv_callback_shutdown
,
116 static inline void high_nmcpy(unsigned char *dst
, char *src
)
121 static inline void low_nmcpy(unsigned char *dst
, char *src
)
123 memcpy(&dst
[8], src
, 8);
126 static int afiucv_pm_prepare(struct device
*dev
)
128 #ifdef CONFIG_PM_DEBUG
129 printk(KERN_WARNING
"afiucv_pm_prepare\n");
134 static void afiucv_pm_complete(struct device
*dev
)
136 #ifdef CONFIG_PM_DEBUG
137 printk(KERN_WARNING
"afiucv_pm_complete\n");
143 * afiucv_pm_freeze() - Freeze PM callback
144 * @dev: AFIUCV dummy device
146 * Sever all established IUCV communication pathes
148 static int afiucv_pm_freeze(struct device
*dev
)
150 struct iucv_sock
*iucv
;
152 struct hlist_node
*node
;
155 #ifdef CONFIG_PM_DEBUG
156 printk(KERN_WARNING
"afiucv_pm_freeze\n");
158 read_lock(&iucv_sk_list
.lock
);
159 sk_for_each(sk
, node
, &iucv_sk_list
.head
) {
161 skb_queue_purge(&iucv
->send_skb_q
);
162 skb_queue_purge(&iucv
->backlog_skb_q
);
163 switch (sk
->sk_state
) {
169 err
= iucv_path_sever(iucv
->path
, NULL
);
170 iucv_path_free(iucv
->path
);
182 read_unlock(&iucv_sk_list
.lock
);
187 * afiucv_pm_restore_thaw() - Thaw and restore PM callback
188 * @dev: AFIUCV dummy device
190 * socket clean up after freeze
192 static int afiucv_pm_restore_thaw(struct device
*dev
)
194 struct iucv_sock
*iucv
;
196 struct hlist_node
*node
;
198 #ifdef CONFIG_PM_DEBUG
199 printk(KERN_WARNING
"afiucv_pm_restore_thaw\n");
201 read_lock(&iucv_sk_list
.lock
);
202 sk_for_each(sk
, node
, &iucv_sk_list
.head
) {
204 switch (sk
->sk_state
) {
207 sk
->sk_state
= IUCV_DISCONN
;
208 sk
->sk_state_change(sk
);
220 read_unlock(&iucv_sk_list
.lock
);
224 static struct dev_pm_ops afiucv_pm_ops
= {
225 .prepare
= afiucv_pm_prepare
,
226 .complete
= afiucv_pm_complete
,
227 .freeze
= afiucv_pm_freeze
,
228 .thaw
= afiucv_pm_restore_thaw
,
229 .restore
= afiucv_pm_restore_thaw
,
232 static struct device_driver af_iucv_driver
= {
233 .owner
= THIS_MODULE
,
236 .pm
= &afiucv_pm_ops
,
239 /* dummy device used as trigger for PM functions */
240 static struct device
*af_iucv_dev
;
243 * iucv_msg_length() - Returns the length of an iucv message.
244 * @msg: Pointer to struct iucv_message, MUST NOT be NULL
246 * The function returns the length of the specified iucv message @msg of data
247 * stored in a buffer and of data stored in the parameter list (PRMDATA).
249 * For IUCV_IPRMDATA, AF_IUCV uses the following convention to transport socket
251 * PRMDATA[0..6] socket data (max 7 bytes);
252 * PRMDATA[7] socket data length value (len is 0xff - PRMDATA[7])
254 * The socket data length is computed by substracting the socket data length
256 * If the socket data len is greater 7, then PRMDATA can be used for special
257 * notifications (see iucv_sock_shutdown); and further,
258 * if the socket data len is > 7, the function returns 8.
260 * Use this function to allocate socket buffers to store iucv message data.
262 static inline size_t iucv_msg_length(struct iucv_message
*msg
)
266 if (msg
->flags
& IUCV_IPRMDATA
) {
267 datalen
= 0xff - msg
->rmmsg
[7];
268 return (datalen
< 8) ? datalen
: 8;
274 * iucv_sock_in_state() - check for specific states
275 * @sk: sock structure
276 * @state: first iucv sk state
277 * @state: second iucv sk state
279 * Returns true if the socket in either in the first or second state.
281 static int iucv_sock_in_state(struct sock
*sk
, int state
, int state2
)
283 return (sk
->sk_state
== state
|| sk
->sk_state
== state2
);
287 * iucv_below_msglim() - function to check if messages can be sent
288 * @sk: sock structure
290 * Returns true if the send queue length is lower than the message limit.
291 * Always returns true if the socket is not connected (no iucv path for
292 * checking the message limit).
294 static inline int iucv_below_msglim(struct sock
*sk
)
296 struct iucv_sock
*iucv
= iucv_sk(sk
);
298 if (sk
->sk_state
!= IUCV_CONNECTED
)
300 return (skb_queue_len(&iucv
->send_skb_q
) < iucv
->path
->msglim
);
304 * iucv_sock_wake_msglim() - Wake up thread waiting on msg limit
306 static void iucv_sock_wake_msglim(struct sock
*sk
)
308 read_lock(&sk
->sk_callback_lock
);
309 if (sk_has_sleeper(sk
))
310 wake_up_interruptible_all(sk
->sk_sleep
);
311 sk_wake_async(sk
, SOCK_WAKE_SPACE
, POLL_OUT
);
312 read_unlock(&sk
->sk_callback_lock
);
316 static void iucv_sock_timeout(unsigned long arg
)
318 struct sock
*sk
= (struct sock
*)arg
;
321 sk
->sk_err
= ETIMEDOUT
;
322 sk
->sk_state_change(sk
);
329 static void iucv_sock_clear_timer(struct sock
*sk
)
331 sk_stop_timer(sk
, &sk
->sk_timer
);
334 static struct sock
*__iucv_get_sock_by_name(char *nm
)
337 struct hlist_node
*node
;
339 sk_for_each(sk
, node
, &iucv_sk_list
.head
)
340 if (!memcmp(&iucv_sk(sk
)->src_name
, nm
, 8))
346 static void iucv_sock_destruct(struct sock
*sk
)
348 skb_queue_purge(&sk
->sk_receive_queue
);
349 skb_queue_purge(&sk
->sk_write_queue
);
353 static void iucv_sock_cleanup_listen(struct sock
*parent
)
357 /* Close non-accepted connections */
358 while ((sk
= iucv_accept_dequeue(parent
, NULL
))) {
363 parent
->sk_state
= IUCV_CLOSED
;
364 sock_set_flag(parent
, SOCK_ZAPPED
);
368 static void iucv_sock_kill(struct sock
*sk
)
370 if (!sock_flag(sk
, SOCK_ZAPPED
) || sk
->sk_socket
)
373 iucv_sock_unlink(&iucv_sk_list
, sk
);
374 sock_set_flag(sk
, SOCK_DEAD
);
378 /* Close an IUCV socket */
379 static void iucv_sock_close(struct sock
*sk
)
381 unsigned char user_data
[16];
382 struct iucv_sock
*iucv
= iucv_sk(sk
);
386 iucv_sock_clear_timer(sk
);
389 switch (sk
->sk_state
) {
391 iucv_sock_cleanup_listen(sk
);
398 sk
->sk_state
= IUCV_CLOSING
;
399 sk
->sk_state_change(sk
);
401 if (!skb_queue_empty(&iucv
->send_skb_q
)) {
402 if (sock_flag(sk
, SOCK_LINGER
) && sk
->sk_lingertime
)
403 timeo
= sk
->sk_lingertime
;
405 timeo
= IUCV_DISCONN_TIMEOUT
;
406 err
= iucv_sock_wait(sk
,
407 iucv_sock_in_state(sk
, IUCV_CLOSED
, 0),
411 case IUCV_CLOSING
: /* fall through */
412 sk
->sk_state
= IUCV_CLOSED
;
413 sk
->sk_state_change(sk
);
416 low_nmcpy(user_data
, iucv
->src_name
);
417 high_nmcpy(user_data
, iucv
->dst_name
);
418 ASCEBC(user_data
, sizeof(user_data
));
419 err
= iucv_path_sever(iucv
->path
, user_data
);
420 iucv_path_free(iucv
->path
);
424 sk
->sk_err
= ECONNRESET
;
425 sk
->sk_state_change(sk
);
427 skb_queue_purge(&iucv
->send_skb_q
);
428 skb_queue_purge(&iucv
->backlog_skb_q
);
430 sock_set_flag(sk
, SOCK_ZAPPED
);
434 sock_set_flag(sk
, SOCK_ZAPPED
);
442 static void iucv_sock_init(struct sock
*sk
, struct sock
*parent
)
445 sk
->sk_type
= parent
->sk_type
;
448 static struct sock
*iucv_sock_alloc(struct socket
*sock
, int proto
, gfp_t prio
)
452 sk
= sk_alloc(&init_net
, PF_IUCV
, prio
, &iucv_proto
);
456 sock_init_data(sock
, sk
);
457 INIT_LIST_HEAD(&iucv_sk(sk
)->accept_q
);
458 spin_lock_init(&iucv_sk(sk
)->accept_q_lock
);
459 skb_queue_head_init(&iucv_sk(sk
)->send_skb_q
);
460 INIT_LIST_HEAD(&iucv_sk(sk
)->message_q
.list
);
461 spin_lock_init(&iucv_sk(sk
)->message_q
.lock
);
462 skb_queue_head_init(&iucv_sk(sk
)->backlog_skb_q
);
463 iucv_sk(sk
)->send_tag
= 0;
464 iucv_sk(sk
)->flags
= 0;
465 iucv_sk(sk
)->msglimit
= IUCV_QUEUELEN_DEFAULT
;
466 iucv_sk(sk
)->path
= NULL
;
467 memset(&iucv_sk(sk
)->src_user_id
, 0, 32);
469 sk
->sk_destruct
= iucv_sock_destruct
;
470 sk
->sk_sndtimeo
= IUCV_CONN_TIMEOUT
;
471 sk
->sk_allocation
= GFP_DMA
;
473 sock_reset_flag(sk
, SOCK_ZAPPED
);
475 sk
->sk_protocol
= proto
;
476 sk
->sk_state
= IUCV_OPEN
;
478 setup_timer(&sk
->sk_timer
, iucv_sock_timeout
, (unsigned long)sk
);
480 iucv_sock_link(&iucv_sk_list
, sk
);
484 /* Create an IUCV socket */
485 static int iucv_sock_create(struct net
*net
, struct socket
*sock
, int protocol
)
489 if (protocol
&& protocol
!= PF_IUCV
)
490 return -EPROTONOSUPPORT
;
492 sock
->state
= SS_UNCONNECTED
;
494 switch (sock
->type
) {
496 sock
->ops
= &iucv_sock_ops
;
499 /* currently, proto ops can handle both sk types */
500 sock
->ops
= &iucv_sock_ops
;
503 return -ESOCKTNOSUPPORT
;
506 sk
= iucv_sock_alloc(sock
, protocol
, GFP_KERNEL
);
510 iucv_sock_init(sk
, NULL
);
515 void iucv_sock_link(struct iucv_sock_list
*l
, struct sock
*sk
)
517 write_lock_bh(&l
->lock
);
518 sk_add_node(sk
, &l
->head
);
519 write_unlock_bh(&l
->lock
);
522 void iucv_sock_unlink(struct iucv_sock_list
*l
, struct sock
*sk
)
524 write_lock_bh(&l
->lock
);
525 sk_del_node_init(sk
);
526 write_unlock_bh(&l
->lock
);
529 void iucv_accept_enqueue(struct sock
*parent
, struct sock
*sk
)
532 struct iucv_sock
*par
= iucv_sk(parent
);
535 spin_lock_irqsave(&par
->accept_q_lock
, flags
);
536 list_add_tail(&iucv_sk(sk
)->accept_q
, &par
->accept_q
);
537 spin_unlock_irqrestore(&par
->accept_q_lock
, flags
);
538 iucv_sk(sk
)->parent
= parent
;
539 parent
->sk_ack_backlog
++;
542 void iucv_accept_unlink(struct sock
*sk
)
545 struct iucv_sock
*par
= iucv_sk(iucv_sk(sk
)->parent
);
547 spin_lock_irqsave(&par
->accept_q_lock
, flags
);
548 list_del_init(&iucv_sk(sk
)->accept_q
);
549 spin_unlock_irqrestore(&par
->accept_q_lock
, flags
);
550 iucv_sk(sk
)->parent
->sk_ack_backlog
--;
551 iucv_sk(sk
)->parent
= NULL
;
555 struct sock
*iucv_accept_dequeue(struct sock
*parent
, struct socket
*newsock
)
557 struct iucv_sock
*isk
, *n
;
560 list_for_each_entry_safe(isk
, n
, &iucv_sk(parent
)->accept_q
, accept_q
) {
561 sk
= (struct sock
*) isk
;
564 if (sk
->sk_state
== IUCV_CLOSED
) {
565 iucv_accept_unlink(sk
);
570 if (sk
->sk_state
== IUCV_CONNECTED
||
571 sk
->sk_state
== IUCV_SEVERED
||
573 iucv_accept_unlink(sk
);
575 sock_graft(sk
, newsock
);
577 if (sk
->sk_state
== IUCV_SEVERED
)
578 sk
->sk_state
= IUCV_DISCONN
;
589 /* Bind an unbound socket */
590 static int iucv_sock_bind(struct socket
*sock
, struct sockaddr
*addr
,
593 struct sockaddr_iucv
*sa
= (struct sockaddr_iucv
*) addr
;
594 struct sock
*sk
= sock
->sk
;
595 struct iucv_sock
*iucv
;
598 /* Verify the input sockaddr */
599 if (!addr
|| addr
->sa_family
!= AF_IUCV
)
603 if (sk
->sk_state
!= IUCV_OPEN
) {
608 write_lock_bh(&iucv_sk_list
.lock
);
611 if (__iucv_get_sock_by_name(sa
->siucv_name
)) {
620 /* Bind the socket */
621 memcpy(iucv
->src_name
, sa
->siucv_name
, 8);
623 /* Copy the user id */
624 memcpy(iucv
->src_user_id
, iucv_userid
, 8);
625 sk
->sk_state
= IUCV_BOUND
;
629 /* Release the socket list lock */
630 write_unlock_bh(&iucv_sk_list
.lock
);
636 /* Automatically bind an unbound socket */
637 static int iucv_sock_autobind(struct sock
*sk
)
639 struct iucv_sock
*iucv
= iucv_sk(sk
);
640 char query_buffer
[80];
644 /* Set the userid and name */
645 cpcmd("QUERY USERID", query_buffer
, sizeof(query_buffer
), &err
);
649 memcpy(iucv
->src_user_id
, query_buffer
, 8);
651 write_lock_bh(&iucv_sk_list
.lock
);
653 sprintf(name
, "%08x", atomic_inc_return(&iucv_sk_list
.autobind_name
));
654 while (__iucv_get_sock_by_name(name
)) {
655 sprintf(name
, "%08x",
656 atomic_inc_return(&iucv_sk_list
.autobind_name
));
659 write_unlock_bh(&iucv_sk_list
.lock
);
661 memcpy(&iucv
->src_name
, name
, 8);
666 /* Connect an unconnected socket */
667 static int iucv_sock_connect(struct socket
*sock
, struct sockaddr
*addr
,
670 struct sockaddr_iucv
*sa
= (struct sockaddr_iucv
*) addr
;
671 struct sock
*sk
= sock
->sk
;
672 struct iucv_sock
*iucv
;
673 unsigned char user_data
[16];
676 if (addr
->sa_family
!= AF_IUCV
|| alen
< sizeof(struct sockaddr_iucv
))
679 if (sk
->sk_state
!= IUCV_OPEN
&& sk
->sk_state
!= IUCV_BOUND
)
682 if (sk
->sk_type
!= SOCK_STREAM
&& sk
->sk_type
!= SOCK_SEQPACKET
)
685 if (sk
->sk_state
== IUCV_OPEN
) {
686 err
= iucv_sock_autobind(sk
);
693 /* Set the destination information */
694 memcpy(iucv_sk(sk
)->dst_user_id
, sa
->siucv_user_id
, 8);
695 memcpy(iucv_sk(sk
)->dst_name
, sa
->siucv_name
, 8);
697 high_nmcpy(user_data
, sa
->siucv_name
);
698 low_nmcpy(user_data
, iucv_sk(sk
)->src_name
);
699 ASCEBC(user_data
, sizeof(user_data
));
703 iucv
->path
= iucv_path_alloc(iucv
->msglimit
,
704 IUCV_IPRMDATA
, GFP_KERNEL
);
709 err
= iucv_path_connect(iucv
->path
, &af_iucv_handler
,
710 sa
->siucv_user_id
, NULL
, user_data
, sk
);
712 iucv_path_free(iucv
->path
);
715 case 0x0b: /* Target communicator is not logged on */
718 case 0x0d: /* Max connections for this guest exceeded */
719 case 0x0e: /* Max connections for target guest exceeded */
722 case 0x0f: /* Missing IUCV authorization */
732 if (sk
->sk_state
!= IUCV_CONNECTED
) {
733 err
= iucv_sock_wait(sk
, iucv_sock_in_state(sk
, IUCV_CONNECTED
,
735 sock_sndtimeo(sk
, flags
& O_NONBLOCK
));
738 if (sk
->sk_state
== IUCV_DISCONN
) {
743 iucv_path_sever(iucv
->path
, NULL
);
744 iucv_path_free(iucv
->path
);
753 /* Move a socket into listening state. */
754 static int iucv_sock_listen(struct socket
*sock
, int backlog
)
756 struct sock
*sk
= sock
->sk
;
762 if (sk
->sk_state
!= IUCV_BOUND
)
765 if (sock
->type
!= SOCK_STREAM
&& sock
->type
!= SOCK_SEQPACKET
)
768 sk
->sk_max_ack_backlog
= backlog
;
769 sk
->sk_ack_backlog
= 0;
770 sk
->sk_state
= IUCV_LISTEN
;
778 /* Accept a pending connection */
779 static int iucv_sock_accept(struct socket
*sock
, struct socket
*newsock
,
782 DECLARE_WAITQUEUE(wait
, current
);
783 struct sock
*sk
= sock
->sk
, *nsk
;
787 lock_sock_nested(sk
, SINGLE_DEPTH_NESTING
);
789 if (sk
->sk_state
!= IUCV_LISTEN
) {
794 timeo
= sock_rcvtimeo(sk
, flags
& O_NONBLOCK
);
796 /* Wait for an incoming connection */
797 add_wait_queue_exclusive(sk
->sk_sleep
, &wait
);
798 while (!(nsk
= iucv_accept_dequeue(sk
, newsock
))) {
799 set_current_state(TASK_INTERRUPTIBLE
);
806 timeo
= schedule_timeout(timeo
);
807 lock_sock_nested(sk
, SINGLE_DEPTH_NESTING
);
809 if (sk
->sk_state
!= IUCV_LISTEN
) {
814 if (signal_pending(current
)) {
815 err
= sock_intr_errno(timeo
);
820 set_current_state(TASK_RUNNING
);
821 remove_wait_queue(sk
->sk_sleep
, &wait
);
826 newsock
->state
= SS_CONNECTED
;
833 static int iucv_sock_getname(struct socket
*sock
, struct sockaddr
*addr
,
836 struct sockaddr_iucv
*siucv
= (struct sockaddr_iucv
*) addr
;
837 struct sock
*sk
= sock
->sk
;
839 addr
->sa_family
= AF_IUCV
;
840 *len
= sizeof(struct sockaddr_iucv
);
843 memcpy(siucv
->siucv_user_id
, iucv_sk(sk
)->dst_user_id
, 8);
844 memcpy(siucv
->siucv_name
, &iucv_sk(sk
)->dst_name
, 8);
846 memcpy(siucv
->siucv_user_id
, iucv_sk(sk
)->src_user_id
, 8);
847 memcpy(siucv
->siucv_name
, iucv_sk(sk
)->src_name
, 8);
849 memset(&siucv
->siucv_port
, 0, sizeof(siucv
->siucv_port
));
850 memset(&siucv
->siucv_addr
, 0, sizeof(siucv
->siucv_addr
));
851 memset(siucv
->siucv_nodeid
, 0, sizeof(siucv
->siucv_nodeid
));
857 * iucv_send_iprm() - Send socket data in parameter list of an iucv message.
859 * @msg: Pointer to a struct iucv_message
860 * @skb: The socket data to send, skb->len MUST BE <= 7
862 * Send the socket data in the parameter list in the iucv message
863 * (IUCV_IPRMDATA). The socket data is stored at index 0 to 6 in the parameter
864 * list and the socket data len at index 7 (last byte).
865 * See also iucv_msg_length().
867 * Returns the error code from the iucv_message_send() call.
869 static int iucv_send_iprm(struct iucv_path
*path
, struct iucv_message
*msg
,
874 memcpy(prmdata
, (void *) skb
->data
, skb
->len
);
875 prmdata
[7] = 0xff - (u8
) skb
->len
;
876 return iucv_message_send(path
, msg
, IUCV_IPRMDATA
, 0,
877 (void *) prmdata
, 8);
880 static int iucv_sock_sendmsg(struct kiocb
*iocb
, struct socket
*sock
,
881 struct msghdr
*msg
, size_t len
)
883 struct sock
*sk
= sock
->sk
;
884 struct iucv_sock
*iucv
= iucv_sk(sk
);
886 struct iucv_message txmsg
;
887 struct cmsghdr
*cmsg
;
893 int noblock
= msg
->msg_flags
& MSG_DONTWAIT
;
895 err
= sock_error(sk
);
899 if (msg
->msg_flags
& MSG_OOB
)
902 /* SOCK_SEQPACKET: we do not support segmented records */
903 if (sk
->sk_type
== SOCK_SEQPACKET
&& !(msg
->msg_flags
& MSG_EOR
))
908 if (sk
->sk_shutdown
& SEND_SHUTDOWN
) {
913 /* Return if the socket is not in connected state */
914 if (sk
->sk_state
!= IUCV_CONNECTED
) {
919 /* initialize defaults */
920 cmsg_done
= 0; /* check for duplicate headers */
923 /* iterate over control messages */
924 for (cmsg
= CMSG_FIRSTHDR(msg
); cmsg
;
925 cmsg
= CMSG_NXTHDR(msg
, cmsg
)) {
927 if (!CMSG_OK(msg
, cmsg
)) {
932 if (cmsg
->cmsg_level
!= SOL_IUCV
)
935 if (cmsg
->cmsg_type
& cmsg_done
) {
939 cmsg_done
|= cmsg
->cmsg_type
;
941 switch (cmsg
->cmsg_type
) {
942 case SCM_IUCV_TRGCLS
:
943 if (cmsg
->cmsg_len
!= CMSG_LEN(TRGCLS_SIZE
)) {
948 /* set iucv message target class */
950 (void *) CMSG_DATA(cmsg
), TRGCLS_SIZE
);
961 /* allocate one skb for each iucv message:
962 * this is fine for SOCK_SEQPACKET (unless we want to support
963 * segmented records using the MSG_EOR flag), but
964 * for SOCK_STREAM we might want to improve it in future */
965 skb
= sock_alloc_send_skb(sk
, len
, noblock
, &err
);
968 if (memcpy_fromiovec(skb_put(skb
, len
), msg
->msg_iov
, len
)) {
973 /* wait if outstanding messages for iucv path has reached */
974 timeo
= sock_sndtimeo(sk
, noblock
);
975 err
= iucv_sock_wait(sk
, iucv_below_msglim(sk
), timeo
);
979 /* return -ECONNRESET if the socket is no longer connected */
980 if (sk
->sk_state
!= IUCV_CONNECTED
) {
985 /* increment and save iucv message tag for msg_completion cbk */
986 txmsg
.tag
= iucv
->send_tag
++;
987 memcpy(CB_TAG(skb
), &txmsg
.tag
, CB_TAG_LEN
);
988 skb_queue_tail(&iucv
->send_skb_q
, skb
);
990 if (((iucv
->path
->flags
& IUCV_IPRMDATA
) & iucv
->flags
)
992 err
= iucv_send_iprm(iucv
->path
, &txmsg
, skb
);
994 /* on success: there is no message_complete callback
995 * for an IPRMDATA msg; remove skb from send queue */
997 skb_unlink(skb
, &iucv
->send_skb_q
);
1001 /* this error should never happen since the
1002 * IUCV_IPRMDATA path flag is set... sever path */
1004 iucv_path_sever(iucv
->path
, NULL
);
1005 skb_unlink(skb
, &iucv
->send_skb_q
);
1010 err
= iucv_message_send(iucv
->path
, &txmsg
, 0, 0,
1011 (void *) skb
->data
, skb
->len
);
1015 memcpy(user_id
, iucv
->dst_user_id
, 8);
1017 memcpy(appl_id
, iucv
->dst_name
, 8);
1018 pr_err("Application %s on z/VM guest %s"
1019 " exceeds message limit\n",
1024 skb_unlink(skb
, &iucv
->send_skb_q
);
1038 static int iucv_fragment_skb(struct sock
*sk
, struct sk_buff
*skb
, int len
)
1040 int dataleft
, size
, copied
= 0;
1041 struct sk_buff
*nskb
;
1045 if (dataleft
>= sk
->sk_rcvbuf
/ 4)
1046 size
= sk
->sk_rcvbuf
/ 4;
1050 nskb
= alloc_skb(size
, GFP_ATOMIC
| GFP_DMA
);
1054 /* copy target class to control buffer of new skb */
1055 memcpy(CB_TRGCLS(nskb
), CB_TRGCLS(skb
), CB_TRGCLS_LEN
);
1057 /* copy data fragment */
1058 memcpy(nskb
->data
, skb
->data
+ copied
, size
);
1062 skb_reset_transport_header(nskb
);
1063 skb_reset_network_header(nskb
);
1066 skb_queue_tail(&iucv_sk(sk
)->backlog_skb_q
, nskb
);
1072 static void iucv_process_message(struct sock
*sk
, struct sk_buff
*skb
,
1073 struct iucv_path
*path
,
1074 struct iucv_message
*msg
)
1079 len
= iucv_msg_length(msg
);
1081 /* store msg target class in the second 4 bytes of skb ctrl buffer */
1082 /* Note: the first 4 bytes are reserved for msg tag */
1083 memcpy(CB_TRGCLS(skb
), &msg
->class, CB_TRGCLS_LEN
);
1085 /* check for special IPRM messages (e.g. iucv_sock_shutdown) */
1086 if ((msg
->flags
& IUCV_IPRMDATA
) && len
> 7) {
1087 if (memcmp(msg
->rmmsg
, iprm_shutdown
, 8) == 0) {
1092 rc
= iucv_message_receive(path
, msg
, msg
->flags
& IUCV_IPRMDATA
,
1093 skb
->data
, len
, NULL
);
1098 /* we need to fragment iucv messages for SOCK_STREAM only;
1099 * for SOCK_SEQPACKET, it is only relevant if we support
1100 * record segmentation using MSG_EOR (see also recvmsg()) */
1101 if (sk
->sk_type
== SOCK_STREAM
&&
1102 skb
->truesize
>= sk
->sk_rcvbuf
/ 4) {
1103 rc
= iucv_fragment_skb(sk
, skb
, len
);
1107 iucv_path_sever(path
, NULL
);
1110 skb
= skb_dequeue(&iucv_sk(sk
)->backlog_skb_q
);
1112 skb_reset_transport_header(skb
);
1113 skb_reset_network_header(skb
);
1118 if (sock_queue_rcv_skb(sk
, skb
))
1119 skb_queue_head(&iucv_sk(sk
)->backlog_skb_q
, skb
);
1122 static void iucv_process_message_q(struct sock
*sk
)
1124 struct iucv_sock
*iucv
= iucv_sk(sk
);
1125 struct sk_buff
*skb
;
1126 struct sock_msg_q
*p
, *n
;
1128 list_for_each_entry_safe(p
, n
, &iucv
->message_q
.list
, list
) {
1129 skb
= alloc_skb(iucv_msg_length(&p
->msg
), GFP_ATOMIC
| GFP_DMA
);
1132 iucv_process_message(sk
, skb
, p
->path
, &p
->msg
);
1135 if (!skb_queue_empty(&iucv
->backlog_skb_q
))
1140 static int iucv_sock_recvmsg(struct kiocb
*iocb
, struct socket
*sock
,
1141 struct msghdr
*msg
, size_t len
, int flags
)
1143 int noblock
= flags
& MSG_DONTWAIT
;
1144 struct sock
*sk
= sock
->sk
;
1145 struct iucv_sock
*iucv
= iucv_sk(sk
);
1146 unsigned int copied
, rlen
;
1147 struct sk_buff
*skb
, *rskb
, *cskb
;
1150 if ((sk
->sk_state
== IUCV_DISCONN
|| sk
->sk_state
== IUCV_SEVERED
) &&
1151 skb_queue_empty(&iucv
->backlog_skb_q
) &&
1152 skb_queue_empty(&sk
->sk_receive_queue
) &&
1153 list_empty(&iucv
->message_q
.list
))
1156 if (flags
& (MSG_OOB
))
1159 /* receive/dequeue next skb:
1160 * the function understands MSG_PEEK and, thus, does not dequeue skb */
1161 skb
= skb_recv_datagram(sk
, flags
, noblock
, &err
);
1163 if (sk
->sk_shutdown
& RCV_SHUTDOWN
)
1168 rlen
= skb
->len
; /* real length of skb */
1169 copied
= min_t(unsigned int, rlen
, len
);
1172 if (memcpy_toiovec(msg
->msg_iov
, cskb
->data
, copied
)) {
1173 if (!(flags
& MSG_PEEK
))
1174 skb_queue_head(&sk
->sk_receive_queue
, skb
);
1178 /* SOCK_SEQPACKET: set MSG_TRUNC if recv buf size is too small */
1179 if (sk
->sk_type
== SOCK_SEQPACKET
) {
1181 msg
->msg_flags
|= MSG_TRUNC
;
1182 /* each iucv message contains a complete record */
1183 msg
->msg_flags
|= MSG_EOR
;
1186 /* create control message to store iucv msg target class:
1187 * get the trgcls from the control buffer of the skb due to
1188 * fragmentation of original iucv message. */
1189 err
= put_cmsg(msg
, SOL_IUCV
, SCM_IUCV_TRGCLS
,
1190 CB_TRGCLS_LEN
, CB_TRGCLS(skb
));
1192 if (!(flags
& MSG_PEEK
))
1193 skb_queue_head(&sk
->sk_receive_queue
, skb
);
1197 /* Mark read part of skb as used */
1198 if (!(flags
& MSG_PEEK
)) {
1200 /* SOCK_STREAM: re-queue skb if it contains unreceived data */
1201 if (sk
->sk_type
== SOCK_STREAM
) {
1202 skb_pull(skb
, copied
);
1204 skb_queue_head(&sk
->sk_receive_queue
, skb
);
1211 /* Queue backlog skbs */
1212 rskb
= skb_dequeue(&iucv
->backlog_skb_q
);
1214 if (sock_queue_rcv_skb(sk
, rskb
)) {
1215 skb_queue_head(&iucv
->backlog_skb_q
,
1219 rskb
= skb_dequeue(&iucv
->backlog_skb_q
);
1222 if (skb_queue_empty(&iucv
->backlog_skb_q
)) {
1223 spin_lock_bh(&iucv
->message_q
.lock
);
1224 if (!list_empty(&iucv
->message_q
.list
))
1225 iucv_process_message_q(sk
);
1226 spin_unlock_bh(&iucv
->message_q
.lock
);
1231 /* SOCK_SEQPACKET: return real length if MSG_TRUNC is set */
1232 if (sk
->sk_type
== SOCK_SEQPACKET
&& (flags
& MSG_TRUNC
))
1238 static inline unsigned int iucv_accept_poll(struct sock
*parent
)
1240 struct iucv_sock
*isk
, *n
;
1243 list_for_each_entry_safe(isk
, n
, &iucv_sk(parent
)->accept_q
, accept_q
) {
1244 sk
= (struct sock
*) isk
;
1246 if (sk
->sk_state
== IUCV_CONNECTED
)
1247 return POLLIN
| POLLRDNORM
;
1253 unsigned int iucv_sock_poll(struct file
*file
, struct socket
*sock
,
1256 struct sock
*sk
= sock
->sk
;
1257 unsigned int mask
= 0;
1259 sock_poll_wait(file
, sk
->sk_sleep
, wait
);
1261 if (sk
->sk_state
== IUCV_LISTEN
)
1262 return iucv_accept_poll(sk
);
1264 if (sk
->sk_err
|| !skb_queue_empty(&sk
->sk_error_queue
))
1267 if (sk
->sk_shutdown
& RCV_SHUTDOWN
)
1270 if (sk
->sk_shutdown
== SHUTDOWN_MASK
)
1273 if (!skb_queue_empty(&sk
->sk_receive_queue
) ||
1274 (sk
->sk_shutdown
& RCV_SHUTDOWN
))
1275 mask
|= POLLIN
| POLLRDNORM
;
1277 if (sk
->sk_state
== IUCV_CLOSED
)
1280 if (sk
->sk_state
== IUCV_DISCONN
|| sk
->sk_state
== IUCV_SEVERED
)
1283 if (sock_writeable(sk
))
1284 mask
|= POLLOUT
| POLLWRNORM
| POLLWRBAND
;
1286 set_bit(SOCK_ASYNC_NOSPACE
, &sk
->sk_socket
->flags
);
1291 static int iucv_sock_shutdown(struct socket
*sock
, int how
)
1293 struct sock
*sk
= sock
->sk
;
1294 struct iucv_sock
*iucv
= iucv_sk(sk
);
1295 struct iucv_message txmsg
;
1300 if ((how
& ~SHUTDOWN_MASK
) || !how
)
1304 switch (sk
->sk_state
) {
1313 sk
->sk_shutdown
|= how
;
1317 if (how
== SEND_SHUTDOWN
|| how
== SHUTDOWN_MASK
) {
1320 err
= iucv_message_send(iucv
->path
, &txmsg
, IUCV_IPRMDATA
, 0,
1321 (void *) iprm_shutdown
, 8);
1337 if (how
== RCV_SHUTDOWN
|| how
== SHUTDOWN_MASK
) {
1338 err
= iucv_path_quiesce(iucv_sk(sk
)->path
, NULL
);
1342 skb_queue_purge(&sk
->sk_receive_queue
);
1345 /* Wake up anyone sleeping in poll */
1346 sk
->sk_state_change(sk
);
1353 static int iucv_sock_release(struct socket
*sock
)
1355 struct sock
*sk
= sock
->sk
;
1361 iucv_sock_close(sk
);
1363 /* Unregister with IUCV base support */
1364 if (iucv_sk(sk
)->path
) {
1365 iucv_path_sever(iucv_sk(sk
)->path
, NULL
);
1366 iucv_path_free(iucv_sk(sk
)->path
);
1367 iucv_sk(sk
)->path
= NULL
;
1375 /* getsockopt and setsockopt */
1376 static int iucv_sock_setsockopt(struct socket
*sock
, int level
, int optname
,
1377 char __user
*optval
, int optlen
)
1379 struct sock
*sk
= sock
->sk
;
1380 struct iucv_sock
*iucv
= iucv_sk(sk
);
1384 if (level
!= SOL_IUCV
)
1385 return -ENOPROTOOPT
;
1387 if (optlen
< sizeof(int))
1390 if (get_user(val
, (int __user
*) optval
))
1397 case SO_IPRMDATA_MSG
:
1399 iucv
->flags
|= IUCV_IPRMDATA
;
1401 iucv
->flags
&= ~IUCV_IPRMDATA
;
1404 switch (sk
->sk_state
) {
1407 if (val
< 1 || val
> (u16
)(~0))
1410 iucv
->msglimit
= val
;
1426 static int iucv_sock_getsockopt(struct socket
*sock
, int level
, int optname
,
1427 char __user
*optval
, int __user
*optlen
)
1429 struct sock
*sk
= sock
->sk
;
1430 struct iucv_sock
*iucv
= iucv_sk(sk
);
1433 if (level
!= SOL_IUCV
)
1434 return -ENOPROTOOPT
;
1436 if (get_user(len
, optlen
))
1442 len
= min_t(unsigned int, len
, sizeof(int));
1445 case SO_IPRMDATA_MSG
:
1446 val
= (iucv
->flags
& IUCV_IPRMDATA
) ? 1 : 0;
1450 val
= (iucv
->path
!= NULL
) ? iucv
->path
->msglim
/* connected */
1451 : iucv
->msglimit
; /* default */
1455 return -ENOPROTOOPT
;
1458 if (put_user(len
, optlen
))
1460 if (copy_to_user(optval
, &val
, len
))
1467 /* Callback wrappers - called from iucv base support */
1468 static int iucv_callback_connreq(struct iucv_path
*path
,
1469 u8 ipvmid
[8], u8 ipuser
[16])
1471 unsigned char user_data
[16];
1472 unsigned char nuser_data
[16];
1473 unsigned char src_name
[8];
1474 struct hlist_node
*node
;
1475 struct sock
*sk
, *nsk
;
1476 struct iucv_sock
*iucv
, *niucv
;
1479 memcpy(src_name
, ipuser
, 8);
1480 EBCASC(src_name
, 8);
1481 /* Find out if this path belongs to af_iucv. */
1482 read_lock(&iucv_sk_list
.lock
);
1485 sk_for_each(sk
, node
, &iucv_sk_list
.head
)
1486 if (sk
->sk_state
== IUCV_LISTEN
&&
1487 !memcmp(&iucv_sk(sk
)->src_name
, src_name
, 8)) {
1489 * Found a listening socket with
1490 * src_name == ipuser[0-7].
1495 read_unlock(&iucv_sk_list
.lock
);
1497 /* No socket found, not one of our paths. */
1502 /* Check if parent socket is listening */
1503 low_nmcpy(user_data
, iucv
->src_name
);
1504 high_nmcpy(user_data
, iucv
->dst_name
);
1505 ASCEBC(user_data
, sizeof(user_data
));
1506 if (sk
->sk_state
!= IUCV_LISTEN
) {
1507 err
= iucv_path_sever(path
, user_data
);
1508 iucv_path_free(path
);
1512 /* Check for backlog size */
1513 if (sk_acceptq_is_full(sk
)) {
1514 err
= iucv_path_sever(path
, user_data
);
1515 iucv_path_free(path
);
1519 /* Create the new socket */
1520 nsk
= iucv_sock_alloc(NULL
, sk
->sk_type
, GFP_ATOMIC
);
1522 err
= iucv_path_sever(path
, user_data
);
1523 iucv_path_free(path
);
1527 niucv
= iucv_sk(nsk
);
1528 iucv_sock_init(nsk
, sk
);
1530 /* Set the new iucv_sock */
1531 memcpy(niucv
->dst_name
, ipuser
+ 8, 8);
1532 EBCASC(niucv
->dst_name
, 8);
1533 memcpy(niucv
->dst_user_id
, ipvmid
, 8);
1534 memcpy(niucv
->src_name
, iucv
->src_name
, 8);
1535 memcpy(niucv
->src_user_id
, iucv
->src_user_id
, 8);
1538 /* Call iucv_accept */
1539 high_nmcpy(nuser_data
, ipuser
+ 8);
1540 memcpy(nuser_data
+ 8, niucv
->src_name
, 8);
1541 ASCEBC(nuser_data
+ 8, 8);
1543 /* set message limit for path based on msglimit of accepting socket */
1544 niucv
->msglimit
= iucv
->msglimit
;
1545 path
->msglim
= iucv
->msglimit
;
1546 err
= iucv_path_accept(path
, &af_iucv_handler
, nuser_data
, nsk
);
1548 err
= iucv_path_sever(path
, user_data
);
1549 iucv_path_free(path
);
1550 iucv_sock_kill(nsk
);
1554 iucv_accept_enqueue(sk
, nsk
);
1556 /* Wake up accept */
1557 nsk
->sk_state
= IUCV_CONNECTED
;
1558 sk
->sk_data_ready(sk
, 1);
1565 static void iucv_callback_connack(struct iucv_path
*path
, u8 ipuser
[16])
1567 struct sock
*sk
= path
->private;
1569 sk
->sk_state
= IUCV_CONNECTED
;
1570 sk
->sk_state_change(sk
);
1573 static void iucv_callback_rx(struct iucv_path
*path
, struct iucv_message
*msg
)
1575 struct sock
*sk
= path
->private;
1576 struct iucv_sock
*iucv
= iucv_sk(sk
);
1577 struct sk_buff
*skb
;
1578 struct sock_msg_q
*save_msg
;
1581 if (sk
->sk_shutdown
& RCV_SHUTDOWN
) {
1582 iucv_message_reject(path
, msg
);
1586 spin_lock(&iucv
->message_q
.lock
);
1588 if (!list_empty(&iucv
->message_q
.list
) ||
1589 !skb_queue_empty(&iucv
->backlog_skb_q
))
1592 len
= atomic_read(&sk
->sk_rmem_alloc
);
1593 len
+= iucv_msg_length(msg
) + sizeof(struct sk_buff
);
1594 if (len
> sk
->sk_rcvbuf
)
1597 skb
= alloc_skb(iucv_msg_length(msg
), GFP_ATOMIC
| GFP_DMA
);
1601 iucv_process_message(sk
, skb
, path
, msg
);
1605 save_msg
= kzalloc(sizeof(struct sock_msg_q
), GFP_ATOMIC
| GFP_DMA
);
1608 save_msg
->path
= path
;
1609 save_msg
->msg
= *msg
;
1611 list_add_tail(&save_msg
->list
, &iucv
->message_q
.list
);
1614 spin_unlock(&iucv
->message_q
.lock
);
1617 static void iucv_callback_txdone(struct iucv_path
*path
,
1618 struct iucv_message
*msg
)
1620 struct sock
*sk
= path
->private;
1621 struct sk_buff
*this = NULL
;
1622 struct sk_buff_head
*list
= &iucv_sk(sk
)->send_skb_q
;
1623 struct sk_buff
*list_skb
= list
->next
;
1624 unsigned long flags
;
1626 if (!skb_queue_empty(list
)) {
1627 spin_lock_irqsave(&list
->lock
, flags
);
1629 while (list_skb
!= (struct sk_buff
*)list
) {
1630 if (!memcmp(&msg
->tag
, CB_TAG(list_skb
), CB_TAG_LEN
)) {
1634 list_skb
= list_skb
->next
;
1637 __skb_unlink(this, list
);
1639 spin_unlock_irqrestore(&list
->lock
, flags
);
1643 /* wake up any process waiting for sending */
1644 iucv_sock_wake_msglim(sk
);
1649 if (sk
->sk_state
== IUCV_CLOSING
) {
1650 if (skb_queue_empty(&iucv_sk(sk
)->send_skb_q
)) {
1651 sk
->sk_state
= IUCV_CLOSED
;
1652 sk
->sk_state_change(sk
);
1658 static void iucv_callback_connrej(struct iucv_path
*path
, u8 ipuser
[16])
1660 struct sock
*sk
= path
->private;
1662 if (!list_empty(&iucv_sk(sk
)->accept_q
))
1663 sk
->sk_state
= IUCV_SEVERED
;
1665 sk
->sk_state
= IUCV_DISCONN
;
1667 sk
->sk_state_change(sk
);
1670 /* called if the other communication side shuts down its RECV direction;
1671 * in turn, the callback sets SEND_SHUTDOWN to disable sending of data.
1673 static void iucv_callback_shutdown(struct iucv_path
*path
, u8 ipuser
[16])
1675 struct sock
*sk
= path
->private;
1678 if (sk
->sk_state
!= IUCV_CLOSED
) {
1679 sk
->sk_shutdown
|= SEND_SHUTDOWN
;
1680 sk
->sk_state_change(sk
);
1685 static struct proto_ops iucv_sock_ops
= {
1687 .owner
= THIS_MODULE
,
1688 .release
= iucv_sock_release
,
1689 .bind
= iucv_sock_bind
,
1690 .connect
= iucv_sock_connect
,
1691 .listen
= iucv_sock_listen
,
1692 .accept
= iucv_sock_accept
,
1693 .getname
= iucv_sock_getname
,
1694 .sendmsg
= iucv_sock_sendmsg
,
1695 .recvmsg
= iucv_sock_recvmsg
,
1696 .poll
= iucv_sock_poll
,
1697 .ioctl
= sock_no_ioctl
,
1698 .mmap
= sock_no_mmap
,
1699 .socketpair
= sock_no_socketpair
,
1700 .shutdown
= iucv_sock_shutdown
,
1701 .setsockopt
= iucv_sock_setsockopt
,
1702 .getsockopt
= iucv_sock_getsockopt
,
1705 static struct net_proto_family iucv_sock_family_ops
= {
1707 .owner
= THIS_MODULE
,
1708 .create
= iucv_sock_create
,
1711 static int __init
afiucv_init(void)
1715 if (!MACHINE_IS_VM
) {
1716 pr_err("The af_iucv module cannot be loaded"
1718 err
= -EPROTONOSUPPORT
;
1721 cpcmd("QUERY USERID", iucv_userid
, sizeof(iucv_userid
), &err
);
1722 if (unlikely(err
)) {
1724 err
= -EPROTONOSUPPORT
;
1728 err
= iucv_register(&af_iucv_handler
, 0);
1731 err
= proto_register(&iucv_proto
, 0);
1734 err
= sock_register(&iucv_sock_family_ops
);
1737 /* establish dummy device */
1738 err
= driver_register(&af_iucv_driver
);
1741 af_iucv_dev
= kzalloc(sizeof(struct device
), GFP_KERNEL
);
1746 dev_set_name(af_iucv_dev
, "af_iucv");
1747 af_iucv_dev
->bus
= &iucv_bus
;
1748 af_iucv_dev
->parent
= iucv_root
;
1749 af_iucv_dev
->release
= (void (*)(struct device
*))kfree
;
1750 af_iucv_dev
->driver
= &af_iucv_driver
;
1751 err
= device_register(af_iucv_dev
);
1758 driver_unregister(&af_iucv_driver
);
1760 sock_unregister(PF_IUCV
);
1762 proto_unregister(&iucv_proto
);
1764 iucv_unregister(&af_iucv_handler
, 0);
1769 static void __exit
afiucv_exit(void)
1771 device_unregister(af_iucv_dev
);
1772 driver_unregister(&af_iucv_driver
);
1773 sock_unregister(PF_IUCV
);
1774 proto_unregister(&iucv_proto
);
1775 iucv_unregister(&af_iucv_handler
, 0);
1778 module_init(afiucv_init
);
1779 module_exit(afiucv_exit
);
1781 MODULE_AUTHOR("Jennifer Hunt <jenhunt@us.ibm.com>");
1782 MODULE_DESCRIPTION("IUCV Sockets ver " VERSION
);
1783 MODULE_VERSION(VERSION
);
1784 MODULE_LICENSE("GPL");
1785 MODULE_ALIAS_NETPROTO(PF_IUCV
);