1 // SPDX-License-Identifier: GPL-2.0-or-later
2 /* -*- mode: c; c-basic-offset: 8; -*-
4 * vim: noexpandtab sw=8 ts=8 sts=0:
6 * Copyright (C) 2004 Oracle. All rights reserved.
10 * Callers for this were originally written against a very simple synchronus
11 * API. This implementation reflects those simple callers. Some day I'm sure
12 * we'll need to move to a more robust posting/callback mechanism.
14 * Transmit calls pass in kernel virtual addresses and block copying this into
15 * the socket's tx buffers via a usual blocking sendmsg. They'll block waiting
16 * for a failed socket to timeout. TX callers can also pass in a poniter to an
17 * 'int' which gets filled with an errno off the wire in response to the
20 * Handlers for unsolicited messages are registered. Each socket has a page
21 * that incoming data is copied into. First the header, then the data.
22 * Handlers are called from only one thread with a reference to this per-socket
23 * page. This page is destroyed after the handler call, so it can't be
24 * referenced beyond the call. Handlers may block but are discouraged from
27 * Any framing errors (bad magic, large payload lengths) close a connection.
29 * Our sock_container holds the state we associate with a socket. It's current
30 * framing state is held there as well as the refcounting we do around when it
31 * is safe to tear down the socket. The socket is only finally torn down from
32 * the container when the container loses all of its references -- so as long
33 * as you hold a ref on the container you can trust that the socket is valid
34 * for use with kernel socket APIs.
36 * Connections are initiated between a pair of nodes when the node with the
37 * higher node number gets a heartbeat callback which indicates that the lower
38 * numbered node has started heartbeating. The lower numbered node is passive
39 * and only accepts the connection if the higher numbered node is heartbeating.
42 #include <linux/kernel.h>
43 #include <linux/sched/mm.h>
44 #include <linux/jiffies.h>
45 #include <linux/slab.h>
46 #include <linux/idr.h>
47 #include <linux/kref.h>
48 #include <linux/net.h>
49 #include <linux/export.h>
52 #include <linux/uaccess.h>
54 #include "heartbeat.h"
56 #include "nodemanager.h"
57 #define MLOG_MASK_PREFIX ML_TCP
61 #include "tcp_internal.h"
63 #define SC_NODEF_FMT "node %s (num %u) at %pI4:%u"
64 #define SC_NODEF_ARGS(sc) sc->sc_node->nd_name, sc->sc_node->nd_num, \
65 &sc->sc_node->nd_ipv4_address, \
66 ntohs(sc->sc_node->nd_ipv4_port)
69 * In the following two log macros, the whitespace after the ',' just
70 * before ##args is intentional. Otherwise, gcc 2.95 will eat the
71 * previous token if args expands to nothing.
73 #define msglog(hdr, fmt, args...) do { \
74 typeof(hdr) __hdr = (hdr); \
75 mlog(ML_MSG, "[mag %u len %u typ %u stat %d sys_stat %d " \
76 "key %08x num %u] " fmt, \
77 be16_to_cpu(__hdr->magic), be16_to_cpu(__hdr->data_len), \
78 be16_to_cpu(__hdr->msg_type), be32_to_cpu(__hdr->status), \
79 be32_to_cpu(__hdr->sys_status), be32_to_cpu(__hdr->key), \
80 be32_to_cpu(__hdr->msg_num) , ##args); \
83 #define sclog(sc, fmt, args...) do { \
84 typeof(sc) __sc = (sc); \
85 mlog(ML_SOCKET, "[sc %p refs %d sock %p node %u page %p " \
86 "pg_off %zu] " fmt, __sc, \
87 kref_read(&__sc->sc_kref), __sc->sc_sock, \
88 __sc->sc_node->nd_num, __sc->sc_page, __sc->sc_page_off , \
92 static DEFINE_RWLOCK(o2net_handler_lock
);
93 static struct rb_root o2net_handler_tree
= RB_ROOT
;
95 static struct o2net_node o2net_nodes
[O2NM_MAX_NODES
];
97 /* XXX someday we'll need better accounting */
98 static struct socket
*o2net_listen_sock
;
101 * listen work is only queued by the listening socket callbacks on the
102 * o2net_wq. teardown detaches the callbacks before destroying the workqueue.
103 * quorum work is queued as sock containers are shutdown.. stop_listening
104 * tears down all the node's sock containers, preventing future shutdowns
105 * and queued quroum work, before canceling delayed quorum work and
106 * destroying the work queue.
108 static struct workqueue_struct
*o2net_wq
;
109 static struct work_struct o2net_listen_work
;
111 static struct o2hb_callback_func o2net_hb_up
, o2net_hb_down
;
112 #define O2NET_HB_PRI 0x1
114 static struct o2net_handshake
*o2net_hand
;
115 static struct o2net_msg
*o2net_keep_req
, *o2net_keep_resp
;
117 static int o2net_sys_err_translations
[O2NET_ERR_MAX
] =
118 {[O2NET_ERR_NONE
] = 0,
119 [O2NET_ERR_NO_HNDLR
] = -ENOPROTOOPT
,
120 [O2NET_ERR_OVERFLOW
] = -EOVERFLOW
,
121 [O2NET_ERR_DIED
] = -EHOSTDOWN
,};
123 /* can't quite avoid *all* internal declarations :/ */
124 static void o2net_sc_connect_completed(struct work_struct
*work
);
125 static void o2net_rx_until_empty(struct work_struct
*work
);
126 static void o2net_shutdown_sc(struct work_struct
*work
);
127 static void o2net_listen_data_ready(struct sock
*sk
);
128 static void o2net_sc_send_keep_req(struct work_struct
*work
);
129 static void o2net_idle_timer(struct timer_list
*t
);
130 static void o2net_sc_postpone_idle(struct o2net_sock_container
*sc
);
131 static void o2net_sc_reset_idle_timer(struct o2net_sock_container
*sc
);
133 #ifdef CONFIG_DEBUG_FS
134 static void o2net_init_nst(struct o2net_send_tracking
*nst
, u32 msgtype
,
135 u32 msgkey
, struct task_struct
*task
, u8 node
)
137 INIT_LIST_HEAD(&nst
->st_net_debug_item
);
139 nst
->st_msg_type
= msgtype
;
140 nst
->st_msg_key
= msgkey
;
144 static inline void o2net_set_nst_sock_time(struct o2net_send_tracking
*nst
)
146 nst
->st_sock_time
= ktime_get();
149 static inline void o2net_set_nst_send_time(struct o2net_send_tracking
*nst
)
151 nst
->st_send_time
= ktime_get();
154 static inline void o2net_set_nst_status_time(struct o2net_send_tracking
*nst
)
156 nst
->st_status_time
= ktime_get();
159 static inline void o2net_set_nst_sock_container(struct o2net_send_tracking
*nst
,
160 struct o2net_sock_container
*sc
)
165 static inline void o2net_set_nst_msg_id(struct o2net_send_tracking
*nst
,
171 static inline void o2net_set_sock_timer(struct o2net_sock_container
*sc
)
173 sc
->sc_tv_timer
= ktime_get();
176 static inline void o2net_set_data_ready_time(struct o2net_sock_container
*sc
)
178 sc
->sc_tv_data_ready
= ktime_get();
181 static inline void o2net_set_advance_start_time(struct o2net_sock_container
*sc
)
183 sc
->sc_tv_advance_start
= ktime_get();
186 static inline void o2net_set_advance_stop_time(struct o2net_sock_container
*sc
)
188 sc
->sc_tv_advance_stop
= ktime_get();
191 static inline void o2net_set_func_start_time(struct o2net_sock_container
*sc
)
193 sc
->sc_tv_func_start
= ktime_get();
196 static inline void o2net_set_func_stop_time(struct o2net_sock_container
*sc
)
198 sc
->sc_tv_func_stop
= ktime_get();
201 #else /* CONFIG_DEBUG_FS */
202 # define o2net_init_nst(a, b, c, d, e)
203 # define o2net_set_nst_sock_time(a)
204 # define o2net_set_nst_send_time(a)
205 # define o2net_set_nst_status_time(a)
206 # define o2net_set_nst_sock_container(a, b)
207 # define o2net_set_nst_msg_id(a, b)
208 # define o2net_set_sock_timer(a)
209 # define o2net_set_data_ready_time(a)
210 # define o2net_set_advance_start_time(a)
211 # define o2net_set_advance_stop_time(a)
212 # define o2net_set_func_start_time(a)
213 # define o2net_set_func_stop_time(a)
214 #endif /* CONFIG_DEBUG_FS */
216 #ifdef CONFIG_OCFS2_FS_STATS
217 static ktime_t
o2net_get_func_run_time(struct o2net_sock_container
*sc
)
219 return ktime_sub(sc
->sc_tv_func_stop
, sc
->sc_tv_func_start
);
222 static void o2net_update_send_stats(struct o2net_send_tracking
*nst
,
223 struct o2net_sock_container
*sc
)
225 sc
->sc_tv_status_total
= ktime_add(sc
->sc_tv_status_total
,
226 ktime_sub(ktime_get(),
227 nst
->st_status_time
));
228 sc
->sc_tv_send_total
= ktime_add(sc
->sc_tv_send_total
,
229 ktime_sub(nst
->st_status_time
,
231 sc
->sc_tv_acquiry_total
= ktime_add(sc
->sc_tv_acquiry_total
,
232 ktime_sub(nst
->st_send_time
,
237 static void o2net_update_recv_stats(struct o2net_sock_container
*sc
)
239 sc
->sc_tv_process_total
= ktime_add(sc
->sc_tv_process_total
,
240 o2net_get_func_run_time(sc
));
246 # define o2net_update_send_stats(a, b)
248 # define o2net_update_recv_stats(sc)
250 #endif /* CONFIG_OCFS2_FS_STATS */
252 static inline unsigned int o2net_reconnect_delay(void)
254 return o2nm_single_cluster
->cl_reconnect_delay_ms
;
257 static inline unsigned int o2net_keepalive_delay(void)
259 return o2nm_single_cluster
->cl_keepalive_delay_ms
;
262 static inline unsigned int o2net_idle_timeout(void)
264 return o2nm_single_cluster
->cl_idle_timeout_ms
;
267 static inline int o2net_sys_err_to_errno(enum o2net_system_error err
)
270 BUG_ON(err
>= O2NET_ERR_MAX
);
271 trans
= o2net_sys_err_translations
[err
];
273 /* Just in case we mess up the translation table above */
274 BUG_ON(err
!= O2NET_ERR_NONE
&& trans
== 0);
278 static struct o2net_node
* o2net_nn_from_num(u8 node_num
)
280 BUG_ON(node_num
>= ARRAY_SIZE(o2net_nodes
));
281 return &o2net_nodes
[node_num
];
284 static u8
o2net_num_from_nn(struct o2net_node
*nn
)
287 return nn
- o2net_nodes
;
290 /* ------------------------------------------------------------ */
292 static int o2net_prep_nsw(struct o2net_node
*nn
, struct o2net_status_wait
*nsw
)
296 spin_lock(&nn
->nn_lock
);
297 ret
= idr_alloc(&nn
->nn_status_idr
, nsw
, 0, 0, GFP_ATOMIC
);
300 list_add_tail(&nsw
->ns_node_item
, &nn
->nn_status_list
);
302 spin_unlock(&nn
->nn_lock
);
306 init_waitqueue_head(&nsw
->ns_wq
);
307 nsw
->ns_sys_status
= O2NET_ERR_NONE
;
312 static void o2net_complete_nsw_locked(struct o2net_node
*nn
,
313 struct o2net_status_wait
*nsw
,
314 enum o2net_system_error sys_status
,
317 assert_spin_locked(&nn
->nn_lock
);
319 if (!list_empty(&nsw
->ns_node_item
)) {
320 list_del_init(&nsw
->ns_node_item
);
321 nsw
->ns_sys_status
= sys_status
;
322 nsw
->ns_status
= status
;
323 idr_remove(&nn
->nn_status_idr
, nsw
->ns_id
);
324 wake_up(&nsw
->ns_wq
);
328 static void o2net_complete_nsw(struct o2net_node
*nn
,
329 struct o2net_status_wait
*nsw
,
330 u64 id
, enum o2net_system_error sys_status
,
333 spin_lock(&nn
->nn_lock
);
338 nsw
= idr_find(&nn
->nn_status_idr
, id
);
343 o2net_complete_nsw_locked(nn
, nsw
, sys_status
, status
);
346 spin_unlock(&nn
->nn_lock
);
350 static void o2net_complete_nodes_nsw(struct o2net_node
*nn
)
352 struct o2net_status_wait
*nsw
, *tmp
;
353 unsigned int num_kills
= 0;
355 assert_spin_locked(&nn
->nn_lock
);
357 list_for_each_entry_safe(nsw
, tmp
, &nn
->nn_status_list
, ns_node_item
) {
358 o2net_complete_nsw_locked(nn
, nsw
, O2NET_ERR_DIED
, 0);
362 mlog(0, "completed %d messages for node %u\n", num_kills
,
363 o2net_num_from_nn(nn
));
366 static int o2net_nsw_completed(struct o2net_node
*nn
,
367 struct o2net_status_wait
*nsw
)
370 spin_lock(&nn
->nn_lock
);
371 completed
= list_empty(&nsw
->ns_node_item
);
372 spin_unlock(&nn
->nn_lock
);
376 /* ------------------------------------------------------------ */
378 static void sc_kref_release(struct kref
*kref
)
380 struct o2net_sock_container
*sc
= container_of(kref
,
381 struct o2net_sock_container
, sc_kref
);
382 BUG_ON(timer_pending(&sc
->sc_idle_timeout
));
384 sclog(sc
, "releasing\n");
387 sock_release(sc
->sc_sock
);
391 o2nm_undepend_item(&sc
->sc_node
->nd_item
);
392 o2nm_node_put(sc
->sc_node
);
395 o2net_debug_del_sc(sc
);
398 __free_page(sc
->sc_page
);
402 static void sc_put(struct o2net_sock_container
*sc
)
405 kref_put(&sc
->sc_kref
, sc_kref_release
);
407 static void sc_get(struct o2net_sock_container
*sc
)
410 kref_get(&sc
->sc_kref
);
412 static struct o2net_sock_container
*sc_alloc(struct o2nm_node
*node
)
414 struct o2net_sock_container
*sc
, *ret
= NULL
;
415 struct page
*page
= NULL
;
418 page
= alloc_page(GFP_NOFS
);
419 sc
= kzalloc(sizeof(*sc
), GFP_NOFS
);
420 if (sc
== NULL
|| page
== NULL
)
423 kref_init(&sc
->sc_kref
);
427 /* pin the node item of the remote node */
428 status
= o2nm_depend_item(&node
->nd_item
);
434 INIT_WORK(&sc
->sc_connect_work
, o2net_sc_connect_completed
);
435 INIT_WORK(&sc
->sc_rx_work
, o2net_rx_until_empty
);
436 INIT_WORK(&sc
->sc_shutdown_work
, o2net_shutdown_sc
);
437 INIT_DELAYED_WORK(&sc
->sc_keepalive_work
, o2net_sc_send_keep_req
);
439 timer_setup(&sc
->sc_idle_timeout
, o2net_idle_timer
, 0);
441 sclog(sc
, "alloced\n");
445 o2net_debug_add_sc(sc
);
457 /* ------------------------------------------------------------ */
459 static void o2net_sc_queue_work(struct o2net_sock_container
*sc
,
460 struct work_struct
*work
)
463 if (!queue_work(o2net_wq
, work
))
466 static void o2net_sc_queue_delayed_work(struct o2net_sock_container
*sc
,
467 struct delayed_work
*work
,
471 if (!queue_delayed_work(o2net_wq
, work
, delay
))
474 static void o2net_sc_cancel_delayed_work(struct o2net_sock_container
*sc
,
475 struct delayed_work
*work
)
477 if (cancel_delayed_work(work
))
481 static atomic_t o2net_connected_peers
= ATOMIC_INIT(0);
483 int o2net_num_connected_peers(void)
485 return atomic_read(&o2net_connected_peers
);
488 static void o2net_set_nn_state(struct o2net_node
*nn
,
489 struct o2net_sock_container
*sc
,
490 unsigned valid
, int err
)
492 int was_valid
= nn
->nn_sc_valid
;
493 int was_err
= nn
->nn_persistent_error
;
494 struct o2net_sock_container
*old_sc
= nn
->nn_sc
;
496 assert_spin_locked(&nn
->nn_lock
);
499 atomic_dec(&o2net_connected_peers
);
500 else if (!old_sc
&& sc
)
501 atomic_inc(&o2net_connected_peers
);
503 /* the node num comparison and single connect/accept path should stop
504 * an non-null sc from being overwritten with another */
505 BUG_ON(sc
&& nn
->nn_sc
&& nn
->nn_sc
!= sc
);
506 mlog_bug_on_msg(err
&& valid
, "err %d valid %u\n", err
, valid
);
507 mlog_bug_on_msg(valid
&& !sc
, "valid %u sc %p\n", valid
, sc
);
509 if (was_valid
&& !valid
&& err
== 0)
512 mlog(ML_CONN
, "node %u sc: %p -> %p, valid %u -> %u, err %d -> %d\n",
513 o2net_num_from_nn(nn
), nn
->nn_sc
, sc
, nn
->nn_sc_valid
, valid
,
514 nn
->nn_persistent_error
, err
);
517 nn
->nn_sc_valid
= valid
? 1 : 0;
518 nn
->nn_persistent_error
= err
;
520 /* mirrors o2net_tx_can_proceed() */
521 if (nn
->nn_persistent_error
|| nn
->nn_sc_valid
)
522 wake_up(&nn
->nn_sc_wq
);
524 if (was_valid
&& !was_err
&& nn
->nn_persistent_error
) {
525 o2quo_conn_err(o2net_num_from_nn(nn
));
526 queue_delayed_work(o2net_wq
, &nn
->nn_still_up
,
527 msecs_to_jiffies(O2NET_QUORUM_DELAY_MS
));
530 if (was_valid
&& !valid
) {
532 printk(KERN_NOTICE
"o2net: No longer connected to "
533 SC_NODEF_FMT
"\n", SC_NODEF_ARGS(old_sc
));
534 o2net_complete_nodes_nsw(nn
);
537 if (!was_valid
&& valid
) {
538 o2quo_conn_up(o2net_num_from_nn(nn
));
539 cancel_delayed_work(&nn
->nn_connect_expired
);
540 printk(KERN_NOTICE
"o2net: %s " SC_NODEF_FMT
"\n",
541 o2nm_this_node() > sc
->sc_node
->nd_num
?
542 "Connected to" : "Accepted connection from",
546 /* trigger the connecting worker func as long as we're not valid,
547 * it will back off if it shouldn't connect. This can be called
548 * from node config teardown and so needs to be careful about
549 * the work queue actually being up. */
550 if (!valid
&& o2net_wq
) {
552 /* delay if we're within a RECONNECT_DELAY of the
554 delay
= (nn
->nn_last_connect_attempt
+
555 msecs_to_jiffies(o2net_reconnect_delay()))
557 if (delay
> msecs_to_jiffies(o2net_reconnect_delay()))
559 mlog(ML_CONN
, "queueing conn attempt in %lu jiffies\n", delay
);
560 queue_delayed_work(o2net_wq
, &nn
->nn_connect_work
, delay
);
563 * Delay the expired work after idle timeout.
565 * We might have lots of failed connection attempts that run
566 * through here but we only cancel the connect_expired work when
567 * a connection attempt succeeds. So only the first enqueue of
568 * the connect_expired work will do anything. The rest will see
569 * that it's already queued and do nothing.
571 delay
+= msecs_to_jiffies(o2net_idle_timeout());
572 queue_delayed_work(o2net_wq
, &nn
->nn_connect_expired
, delay
);
575 /* keep track of the nn's sc ref for the caller */
576 if ((old_sc
== NULL
) && sc
)
578 if (old_sc
&& (old_sc
!= sc
)) {
579 o2net_sc_queue_work(old_sc
, &old_sc
->sc_shutdown_work
);
584 /* see o2net_register_callbacks() */
585 static void o2net_data_ready(struct sock
*sk
)
587 void (*ready
)(struct sock
*sk
);
588 struct o2net_sock_container
*sc
;
590 read_lock_bh(&sk
->sk_callback_lock
);
591 sc
= sk
->sk_user_data
;
593 sclog(sc
, "data_ready hit\n");
594 o2net_set_data_ready_time(sc
);
595 o2net_sc_queue_work(sc
, &sc
->sc_rx_work
);
596 ready
= sc
->sc_data_ready
;
598 ready
= sk
->sk_data_ready
;
600 read_unlock_bh(&sk
->sk_callback_lock
);
605 /* see o2net_register_callbacks() */
606 static void o2net_state_change(struct sock
*sk
)
608 void (*state_change
)(struct sock
*sk
);
609 struct o2net_sock_container
*sc
;
611 read_lock_bh(&sk
->sk_callback_lock
);
612 sc
= sk
->sk_user_data
;
614 state_change
= sk
->sk_state_change
;
618 sclog(sc
, "state_change to %d\n", sk
->sk_state
);
620 state_change
= sc
->sc_state_change
;
622 switch(sk
->sk_state
) {
623 /* ignore connecting sockets as they make progress */
627 case TCP_ESTABLISHED
:
628 o2net_sc_queue_work(sc
, &sc
->sc_connect_work
);
631 printk(KERN_INFO
"o2net: Connection to " SC_NODEF_FMT
632 " shutdown, state %d\n",
633 SC_NODEF_ARGS(sc
), sk
->sk_state
);
634 o2net_sc_queue_work(sc
, &sc
->sc_shutdown_work
);
638 read_unlock_bh(&sk
->sk_callback_lock
);
643 * we register callbacks so we can queue work on events before calling
644 * the original callbacks. our callbacks our careful to test user_data
645 * to discover when they've reaced with o2net_unregister_callbacks().
647 static void o2net_register_callbacks(struct sock
*sk
,
648 struct o2net_sock_container
*sc
)
650 write_lock_bh(&sk
->sk_callback_lock
);
652 /* accepted sockets inherit the old listen socket data ready */
653 if (sk
->sk_data_ready
== o2net_listen_data_ready
) {
654 sk
->sk_data_ready
= sk
->sk_user_data
;
655 sk
->sk_user_data
= NULL
;
658 BUG_ON(sk
->sk_user_data
!= NULL
);
659 sk
->sk_user_data
= sc
;
662 sc
->sc_data_ready
= sk
->sk_data_ready
;
663 sc
->sc_state_change
= sk
->sk_state_change
;
664 sk
->sk_data_ready
= o2net_data_ready
;
665 sk
->sk_state_change
= o2net_state_change
;
667 mutex_init(&sc
->sc_send_lock
);
669 write_unlock_bh(&sk
->sk_callback_lock
);
672 static int o2net_unregister_callbacks(struct sock
*sk
,
673 struct o2net_sock_container
*sc
)
677 write_lock_bh(&sk
->sk_callback_lock
);
678 if (sk
->sk_user_data
== sc
) {
680 sk
->sk_user_data
= NULL
;
681 sk
->sk_data_ready
= sc
->sc_data_ready
;
682 sk
->sk_state_change
= sc
->sc_state_change
;
684 write_unlock_bh(&sk
->sk_callback_lock
);
690 * this is a little helper that is called by callers who have seen a problem
691 * with an sc and want to detach it from the nn if someone already hasn't beat
692 * them to it. if an error is given then the shutdown will be persistent
693 * and pending transmits will be canceled.
695 static void o2net_ensure_shutdown(struct o2net_node
*nn
,
696 struct o2net_sock_container
*sc
,
699 spin_lock(&nn
->nn_lock
);
701 o2net_set_nn_state(nn
, NULL
, 0, err
);
702 spin_unlock(&nn
->nn_lock
);
706 * This work queue function performs the blocking parts of socket shutdown. A
707 * few paths lead here. set_nn_state will trigger this callback if it sees an
708 * sc detached from the nn. state_change will also trigger this callback
709 * directly when it sees errors. In that case we need to call set_nn_state
710 * ourselves as state_change couldn't get the nn_lock and call set_nn_state
713 static void o2net_shutdown_sc(struct work_struct
*work
)
715 struct o2net_sock_container
*sc
=
716 container_of(work
, struct o2net_sock_container
,
718 struct o2net_node
*nn
= o2net_nn_from_num(sc
->sc_node
->nd_num
);
720 sclog(sc
, "shutting down\n");
722 /* drop the callbacks ref and call shutdown only once */
723 if (o2net_unregister_callbacks(sc
->sc_sock
->sk
, sc
)) {
724 /* we shouldn't flush as we're in the thread, the
725 * races with pending sc work structs are harmless */
726 del_timer_sync(&sc
->sc_idle_timeout
);
727 o2net_sc_cancel_delayed_work(sc
, &sc
->sc_keepalive_work
);
729 kernel_sock_shutdown(sc
->sc_sock
, SHUT_RDWR
);
732 /* not fatal so failed connects before the other guy has our
733 * heartbeat can be retried */
734 o2net_ensure_shutdown(nn
, sc
, 0);
738 /* ------------------------------------------------------------ */
740 static int o2net_handler_cmp(struct o2net_msg_handler
*nmh
, u32 msg_type
,
743 int ret
= memcmp(&nmh
->nh_key
, &key
, sizeof(key
));
746 ret
= memcmp(&nmh
->nh_msg_type
, &msg_type
, sizeof(msg_type
));
751 static struct o2net_msg_handler
*
752 o2net_handler_tree_lookup(u32 msg_type
, u32 key
, struct rb_node
***ret_p
,
753 struct rb_node
**ret_parent
)
755 struct rb_node
**p
= &o2net_handler_tree
.rb_node
;
756 struct rb_node
*parent
= NULL
;
757 struct o2net_msg_handler
*nmh
, *ret
= NULL
;
762 nmh
= rb_entry(parent
, struct o2net_msg_handler
, nh_node
);
763 cmp
= o2net_handler_cmp(nmh
, msg_type
, key
);
777 if (ret_parent
!= NULL
)
778 *ret_parent
= parent
;
783 static void o2net_handler_kref_release(struct kref
*kref
)
785 struct o2net_msg_handler
*nmh
;
786 nmh
= container_of(kref
, struct o2net_msg_handler
, nh_kref
);
791 static void o2net_handler_put(struct o2net_msg_handler
*nmh
)
793 kref_put(&nmh
->nh_kref
, o2net_handler_kref_release
);
796 /* max_len is protection for the handler func. incoming messages won't
797 * be given to the handler if their payload is longer than the max. */
798 int o2net_register_handler(u32 msg_type
, u32 key
, u32 max_len
,
799 o2net_msg_handler_func
*func
, void *data
,
800 o2net_post_msg_handler_func
*post_func
,
801 struct list_head
*unreg_list
)
803 struct o2net_msg_handler
*nmh
= NULL
;
804 struct rb_node
**p
, *parent
;
807 if (max_len
> O2NET_MAX_PAYLOAD_BYTES
) {
808 mlog(0, "max_len for message handler out of range: %u\n",
815 mlog(0, "no message type provided: %u, %p\n", msg_type
, func
);
821 mlog(0, "no message handler provided: %u, %p\n",
827 nmh
= kzalloc(sizeof(struct o2net_msg_handler
), GFP_NOFS
);
834 nmh
->nh_func_data
= data
;
835 nmh
->nh_post_func
= post_func
;
836 nmh
->nh_msg_type
= msg_type
;
837 nmh
->nh_max_len
= max_len
;
839 /* the tree and list get this ref.. they're both removed in
840 * unregister when this ref is dropped */
841 kref_init(&nmh
->nh_kref
);
842 INIT_LIST_HEAD(&nmh
->nh_unregister_item
);
844 write_lock(&o2net_handler_lock
);
845 if (o2net_handler_tree_lookup(msg_type
, key
, &p
, &parent
))
848 rb_link_node(&nmh
->nh_node
, parent
, p
);
849 rb_insert_color(&nmh
->nh_node
, &o2net_handler_tree
);
850 list_add_tail(&nmh
->nh_unregister_item
, unreg_list
);
852 mlog(ML_TCP
, "registered handler func %p type %u key %08x\n",
853 func
, msg_type
, key
);
854 /* we've had some trouble with handlers seemingly vanishing. */
855 mlog_bug_on_msg(o2net_handler_tree_lookup(msg_type
, key
, &p
,
857 "couldn't find handler we *just* registered "
858 "for type %u key %08x\n", msg_type
, key
);
860 write_unlock(&o2net_handler_lock
);
868 EXPORT_SYMBOL_GPL(o2net_register_handler
);
870 void o2net_unregister_handler_list(struct list_head
*list
)
872 struct o2net_msg_handler
*nmh
, *n
;
874 write_lock(&o2net_handler_lock
);
875 list_for_each_entry_safe(nmh
, n
, list
, nh_unregister_item
) {
876 mlog(ML_TCP
, "unregistering handler func %p type %u key %08x\n",
877 nmh
->nh_func
, nmh
->nh_msg_type
, nmh
->nh_key
);
878 rb_erase(&nmh
->nh_node
, &o2net_handler_tree
);
879 list_del_init(&nmh
->nh_unregister_item
);
880 kref_put(&nmh
->nh_kref
, o2net_handler_kref_release
);
882 write_unlock(&o2net_handler_lock
);
884 EXPORT_SYMBOL_GPL(o2net_unregister_handler_list
);
886 static struct o2net_msg_handler
*o2net_handler_get(u32 msg_type
, u32 key
)
888 struct o2net_msg_handler
*nmh
;
890 read_lock(&o2net_handler_lock
);
891 nmh
= o2net_handler_tree_lookup(msg_type
, key
, NULL
, NULL
);
893 kref_get(&nmh
->nh_kref
);
894 read_unlock(&o2net_handler_lock
);
899 /* ------------------------------------------------------------ */
901 static int o2net_recv_tcp_msg(struct socket
*sock
, void *data
, size_t len
)
903 struct kvec vec
= { .iov_len
= len
, .iov_base
= data
, };
904 struct msghdr msg
= { .msg_flags
= MSG_DONTWAIT
, };
905 iov_iter_kvec(&msg
.msg_iter
, READ
, &vec
, 1, len
);
906 return sock_recvmsg(sock
, &msg
, MSG_DONTWAIT
);
909 static int o2net_send_tcp_msg(struct socket
*sock
, struct kvec
*vec
,
910 size_t veclen
, size_t total
)
913 struct msghdr msg
= {.msg_flags
= 0,};
920 ret
= kernel_sendmsg(sock
, &msg
, vec
, veclen
, total
);
921 if (likely(ret
== total
))
923 mlog(ML_ERROR
, "sendmsg returned %d instead of %zu\n", ret
, total
);
925 ret
= -EPIPE
; /* should be smarter, I bet */
927 mlog(0, "returning error: %d\n", ret
);
931 static void o2net_sendpage(struct o2net_sock_container
*sc
,
932 void *kmalloced_virt
,
935 struct o2net_node
*nn
= o2net_nn_from_num(sc
->sc_node
->nd_num
);
939 mutex_lock(&sc
->sc_send_lock
);
940 ret
= sc
->sc_sock
->ops
->sendpage(sc
->sc_sock
,
941 virt_to_page(kmalloced_virt
),
942 offset_in_page(kmalloced_virt
),
944 mutex_unlock(&sc
->sc_send_lock
);
947 if (ret
== (ssize_t
)-EAGAIN
) {
948 mlog(0, "sendpage of size %zu to " SC_NODEF_FMT
949 " returned EAGAIN\n", size
, SC_NODEF_ARGS(sc
));
953 mlog(ML_ERROR
, "sendpage of size %zu to " SC_NODEF_FMT
954 " failed with %zd\n", size
, SC_NODEF_ARGS(sc
), ret
);
955 o2net_ensure_shutdown(nn
, sc
, 0);
960 static void o2net_init_msg(struct o2net_msg
*msg
, u16 data_len
, u16 msg_type
, u32 key
)
962 memset(msg
, 0, sizeof(struct o2net_msg
));
963 msg
->magic
= cpu_to_be16(O2NET_MSG_MAGIC
);
964 msg
->data_len
= cpu_to_be16(data_len
);
965 msg
->msg_type
= cpu_to_be16(msg_type
);
966 msg
->sys_status
= cpu_to_be32(O2NET_ERR_NONE
);
968 msg
->key
= cpu_to_be32(key
);
971 static int o2net_tx_can_proceed(struct o2net_node
*nn
,
972 struct o2net_sock_container
**sc_ret
,
977 spin_lock(&nn
->nn_lock
);
978 if (nn
->nn_persistent_error
) {
981 *error
= nn
->nn_persistent_error
;
982 } else if (nn
->nn_sc_valid
) {
983 kref_get(&nn
->nn_sc
->sc_kref
);
989 spin_unlock(&nn
->nn_lock
);
994 /* Get a map of all nodes to which this node is currently connected to */
995 void o2net_fill_node_map(unsigned long *map
, unsigned bytes
)
997 struct o2net_sock_container
*sc
;
1000 BUG_ON(bytes
< (BITS_TO_LONGS(O2NM_MAX_NODES
) * sizeof(unsigned long)));
1002 memset(map
, 0, bytes
);
1003 for (node
= 0; node
< O2NM_MAX_NODES
; ++node
) {
1004 if (!o2net_tx_can_proceed(o2net_nn_from_num(node
), &sc
, &ret
))
1012 EXPORT_SYMBOL_GPL(o2net_fill_node_map
);
1014 int o2net_send_message_vec(u32 msg_type
, u32 key
, struct kvec
*caller_vec
,
1015 size_t caller_veclen
, u8 target_node
, int *status
)
1018 struct o2net_msg
*msg
= NULL
;
1019 size_t veclen
, caller_bytes
= 0;
1020 struct kvec
*vec
= NULL
;
1021 struct o2net_sock_container
*sc
= NULL
;
1022 struct o2net_node
*nn
= o2net_nn_from_num(target_node
);
1023 struct o2net_status_wait nsw
= {
1024 .ns_node_item
= LIST_HEAD_INIT(nsw
.ns_node_item
),
1026 struct o2net_send_tracking nst
;
1028 o2net_init_nst(&nst
, msg_type
, key
, current
, target_node
);
1030 if (o2net_wq
== NULL
) {
1031 mlog(0, "attempt to tx without o2netd running\n");
1036 if (caller_veclen
== 0) {
1037 mlog(0, "bad kvec array length\n");
1042 caller_bytes
= iov_length((struct iovec
*)caller_vec
, caller_veclen
);
1043 if (caller_bytes
> O2NET_MAX_PAYLOAD_BYTES
) {
1044 mlog(0, "total payload len %zu too large\n", caller_bytes
);
1049 if (target_node
== o2nm_this_node()) {
1054 o2net_debug_add_nst(&nst
);
1056 o2net_set_nst_sock_time(&nst
);
1058 wait_event(nn
->nn_sc_wq
, o2net_tx_can_proceed(nn
, &sc
, &ret
));
1062 o2net_set_nst_sock_container(&nst
, sc
);
1064 veclen
= caller_veclen
+ 1;
1065 vec
= kmalloc_array(veclen
, sizeof(struct kvec
), GFP_ATOMIC
);
1067 mlog(0, "failed to %zu element kvec!\n", veclen
);
1072 msg
= kmalloc(sizeof(struct o2net_msg
), GFP_ATOMIC
);
1074 mlog(0, "failed to allocate a o2net_msg!\n");
1079 o2net_init_msg(msg
, caller_bytes
, msg_type
, key
);
1081 vec
[0].iov_len
= sizeof(struct o2net_msg
);
1082 vec
[0].iov_base
= msg
;
1083 memcpy(&vec
[1], caller_vec
, caller_veclen
* sizeof(struct kvec
));
1085 ret
= o2net_prep_nsw(nn
, &nsw
);
1089 msg
->msg_num
= cpu_to_be32(nsw
.ns_id
);
1090 o2net_set_nst_msg_id(&nst
, nsw
.ns_id
);
1092 o2net_set_nst_send_time(&nst
);
1094 /* finally, convert the message header to network byte-order
1096 mutex_lock(&sc
->sc_send_lock
);
1097 ret
= o2net_send_tcp_msg(sc
->sc_sock
, vec
, veclen
,
1098 sizeof(struct o2net_msg
) + caller_bytes
);
1099 mutex_unlock(&sc
->sc_send_lock
);
1100 msglog(msg
, "sending returned %d\n", ret
);
1102 mlog(0, "error returned from o2net_send_tcp_msg=%d\n", ret
);
1106 /* wait on other node's handler */
1107 o2net_set_nst_status_time(&nst
);
1108 wait_event(nsw
.ns_wq
, o2net_nsw_completed(nn
, &nsw
));
1110 o2net_update_send_stats(&nst
, sc
);
1112 /* Note that we avoid overwriting the callers status return
1113 * variable if a system error was reported on the other
1114 * side. Callers beware. */
1115 ret
= o2net_sys_err_to_errno(nsw
.ns_sys_status
);
1117 *status
= nsw
.ns_status
;
1119 mlog(0, "woken, returning system status %d, user status %d\n",
1120 ret
, nsw
.ns_status
);
1122 o2net_debug_del_nst(&nst
); /* must be before dropping sc and node */
1127 o2net_complete_nsw(nn
, &nsw
, 0, 0, 0);
1130 EXPORT_SYMBOL_GPL(o2net_send_message_vec
);
1132 int o2net_send_message(u32 msg_type
, u32 key
, void *data
, u32 len
,
1133 u8 target_node
, int *status
)
1139 return o2net_send_message_vec(msg_type
, key
, &vec
, 1,
1140 target_node
, status
);
1142 EXPORT_SYMBOL_GPL(o2net_send_message
);
1144 static int o2net_send_status_magic(struct socket
*sock
, struct o2net_msg
*hdr
,
1145 enum o2net_system_error syserr
, int err
)
1149 .iov_len
= sizeof(struct o2net_msg
),
1152 BUG_ON(syserr
>= O2NET_ERR_MAX
);
1154 /* leave other fields intact from the incoming message, msg_num
1156 hdr
->sys_status
= cpu_to_be32(syserr
);
1157 hdr
->status
= cpu_to_be32(err
);
1158 hdr
->magic
= cpu_to_be16(O2NET_MSG_STATUS_MAGIC
); // twiddle the magic
1161 msglog(hdr
, "about to send status magic %d\n", err
);
1162 /* hdr has been in host byteorder this whole time */
1163 return o2net_send_tcp_msg(sock
, &vec
, 1, sizeof(struct o2net_msg
));
1166 /* this returns -errno if the header was unknown or too large, etc.
1167 * after this is called the buffer us reused for the next message */
1168 static int o2net_process_message(struct o2net_sock_container
*sc
,
1169 struct o2net_msg
*hdr
)
1171 struct o2net_node
*nn
= o2net_nn_from_num(sc
->sc_node
->nd_num
);
1172 int ret
= 0, handler_status
;
1173 enum o2net_system_error syserr
;
1174 struct o2net_msg_handler
*nmh
= NULL
;
1175 void *ret_data
= NULL
;
1177 msglog(hdr
, "processing message\n");
1179 o2net_sc_postpone_idle(sc
);
1181 switch(be16_to_cpu(hdr
->magic
)) {
1182 case O2NET_MSG_STATUS_MAGIC
:
1183 /* special type for returning message status */
1184 o2net_complete_nsw(nn
, NULL
,
1185 be32_to_cpu(hdr
->msg_num
),
1186 be32_to_cpu(hdr
->sys_status
),
1187 be32_to_cpu(hdr
->status
));
1189 case O2NET_MSG_KEEP_REQ_MAGIC
:
1190 o2net_sendpage(sc
, o2net_keep_resp
,
1191 sizeof(*o2net_keep_resp
));
1193 case O2NET_MSG_KEEP_RESP_MAGIC
:
1195 case O2NET_MSG_MAGIC
:
1198 msglog(hdr
, "bad magic\n");
1203 /* find a handler for it */
1205 nmh
= o2net_handler_get(be16_to_cpu(hdr
->msg_type
),
1206 be32_to_cpu(hdr
->key
));
1208 mlog(ML_TCP
, "couldn't find handler for type %u key %08x\n",
1209 be16_to_cpu(hdr
->msg_type
), be32_to_cpu(hdr
->key
));
1210 syserr
= O2NET_ERR_NO_HNDLR
;
1214 syserr
= O2NET_ERR_NONE
;
1216 if (be16_to_cpu(hdr
->data_len
) > nmh
->nh_max_len
)
1217 syserr
= O2NET_ERR_OVERFLOW
;
1219 if (syserr
!= O2NET_ERR_NONE
)
1222 o2net_set_func_start_time(sc
);
1223 sc
->sc_msg_key
= be32_to_cpu(hdr
->key
);
1224 sc
->sc_msg_type
= be16_to_cpu(hdr
->msg_type
);
1225 handler_status
= (nmh
->nh_func
)(hdr
, sizeof(struct o2net_msg
) +
1226 be16_to_cpu(hdr
->data_len
),
1227 nmh
->nh_func_data
, &ret_data
);
1228 o2net_set_func_stop_time(sc
);
1230 o2net_update_recv_stats(sc
);
1233 /* this destroys the hdr, so don't use it after this */
1234 mutex_lock(&sc
->sc_send_lock
);
1235 ret
= o2net_send_status_magic(sc
->sc_sock
, hdr
, syserr
,
1237 mutex_unlock(&sc
->sc_send_lock
);
1239 mlog(0, "sending handler status %d, syserr %d returned %d\n",
1240 handler_status
, syserr
, ret
);
1243 BUG_ON(ret_data
!= NULL
&& nmh
->nh_post_func
== NULL
);
1244 if (nmh
->nh_post_func
)
1245 (nmh
->nh_post_func
)(handler_status
, nmh
->nh_func_data
,
1251 o2net_handler_put(nmh
);
1255 static int o2net_check_handshake(struct o2net_sock_container
*sc
)
1257 struct o2net_handshake
*hand
= page_address(sc
->sc_page
);
1258 struct o2net_node
*nn
= o2net_nn_from_num(sc
->sc_node
->nd_num
);
1260 if (hand
->protocol_version
!= cpu_to_be64(O2NET_PROTOCOL_VERSION
)) {
1261 printk(KERN_NOTICE
"o2net: " SC_NODEF_FMT
" Advertised net "
1262 "protocol version %llu but %llu is required. "
1263 "Disconnecting.\n", SC_NODEF_ARGS(sc
),
1264 (unsigned long long)be64_to_cpu(hand
->protocol_version
),
1265 O2NET_PROTOCOL_VERSION
);
1267 /* don't bother reconnecting if its the wrong version. */
1268 o2net_ensure_shutdown(nn
, sc
, -ENOTCONN
);
1273 * Ensure timeouts are consistent with other nodes, otherwise
1274 * we can end up with one node thinking that the other must be down,
1275 * but isn't. This can ultimately cause corruption.
1277 if (be32_to_cpu(hand
->o2net_idle_timeout_ms
) !=
1278 o2net_idle_timeout()) {
1279 printk(KERN_NOTICE
"o2net: " SC_NODEF_FMT
" uses a network "
1280 "idle timeout of %u ms, but we use %u ms locally. "
1281 "Disconnecting.\n", SC_NODEF_ARGS(sc
),
1282 be32_to_cpu(hand
->o2net_idle_timeout_ms
),
1283 o2net_idle_timeout());
1284 o2net_ensure_shutdown(nn
, sc
, -ENOTCONN
);
1288 if (be32_to_cpu(hand
->o2net_keepalive_delay_ms
) !=
1289 o2net_keepalive_delay()) {
1290 printk(KERN_NOTICE
"o2net: " SC_NODEF_FMT
" uses a keepalive "
1291 "delay of %u ms, but we use %u ms locally. "
1292 "Disconnecting.\n", SC_NODEF_ARGS(sc
),
1293 be32_to_cpu(hand
->o2net_keepalive_delay_ms
),
1294 o2net_keepalive_delay());
1295 o2net_ensure_shutdown(nn
, sc
, -ENOTCONN
);
1299 if (be32_to_cpu(hand
->o2hb_heartbeat_timeout_ms
) !=
1300 O2HB_MAX_WRITE_TIMEOUT_MS
) {
1301 printk(KERN_NOTICE
"o2net: " SC_NODEF_FMT
" uses a heartbeat "
1302 "timeout of %u ms, but we use %u ms locally. "
1303 "Disconnecting.\n", SC_NODEF_ARGS(sc
),
1304 be32_to_cpu(hand
->o2hb_heartbeat_timeout_ms
),
1305 O2HB_MAX_WRITE_TIMEOUT_MS
);
1306 o2net_ensure_shutdown(nn
, sc
, -ENOTCONN
);
1310 sc
->sc_handshake_ok
= 1;
1312 spin_lock(&nn
->nn_lock
);
1313 /* set valid and queue the idle timers only if it hasn't been
1314 * shut down already */
1315 if (nn
->nn_sc
== sc
) {
1316 o2net_sc_reset_idle_timer(sc
);
1317 atomic_set(&nn
->nn_timeout
, 0);
1318 o2net_set_nn_state(nn
, sc
, 1, 0);
1320 spin_unlock(&nn
->nn_lock
);
1322 /* shift everything up as though it wasn't there */
1323 sc
->sc_page_off
-= sizeof(struct o2net_handshake
);
1324 if (sc
->sc_page_off
)
1325 memmove(hand
, hand
+ 1, sc
->sc_page_off
);
1330 /* this demuxes the queued rx bytes into header or payload bits and calls
1331 * handlers as each full message is read off the socket. it returns -error,
1332 * == 0 eof, or > 0 for progress made.*/
1333 static int o2net_advance_rx(struct o2net_sock_container
*sc
)
1335 struct o2net_msg
*hdr
;
1340 sclog(sc
, "receiving\n");
1341 o2net_set_advance_start_time(sc
);
1343 if (unlikely(sc
->sc_handshake_ok
== 0)) {
1344 if(sc
->sc_page_off
< sizeof(struct o2net_handshake
)) {
1345 data
= page_address(sc
->sc_page
) + sc
->sc_page_off
;
1346 datalen
= sizeof(struct o2net_handshake
) - sc
->sc_page_off
;
1347 ret
= o2net_recv_tcp_msg(sc
->sc_sock
, data
, datalen
);
1349 sc
->sc_page_off
+= ret
;
1352 if (sc
->sc_page_off
== sizeof(struct o2net_handshake
)) {
1353 o2net_check_handshake(sc
);
1354 if (unlikely(sc
->sc_handshake_ok
== 0))
1360 /* do we need more header? */
1361 if (sc
->sc_page_off
< sizeof(struct o2net_msg
)) {
1362 data
= page_address(sc
->sc_page
) + sc
->sc_page_off
;
1363 datalen
= sizeof(struct o2net_msg
) - sc
->sc_page_off
;
1364 ret
= o2net_recv_tcp_msg(sc
->sc_sock
, data
, datalen
);
1366 sc
->sc_page_off
+= ret
;
1367 /* only swab incoming here.. we can
1368 * only get here once as we cross from
1369 * being under to over */
1370 if (sc
->sc_page_off
== sizeof(struct o2net_msg
)) {
1371 hdr
= page_address(sc
->sc_page
);
1372 if (be16_to_cpu(hdr
->data_len
) >
1373 O2NET_MAX_PAYLOAD_BYTES
)
1381 if (sc
->sc_page_off
< sizeof(struct o2net_msg
)) {
1382 /* oof, still don't have a header */
1386 /* this was swabbed above when we first read it */
1387 hdr
= page_address(sc
->sc_page
);
1389 msglog(hdr
, "at page_off %zu\n", sc
->sc_page_off
);
1391 /* do we need more payload? */
1392 if (sc
->sc_page_off
- sizeof(struct o2net_msg
) < be16_to_cpu(hdr
->data_len
)) {
1393 /* need more payload */
1394 data
= page_address(sc
->sc_page
) + sc
->sc_page_off
;
1395 datalen
= (sizeof(struct o2net_msg
) + be16_to_cpu(hdr
->data_len
)) -
1397 ret
= o2net_recv_tcp_msg(sc
->sc_sock
, data
, datalen
);
1399 sc
->sc_page_off
+= ret
;
1404 if (sc
->sc_page_off
- sizeof(struct o2net_msg
) == be16_to_cpu(hdr
->data_len
)) {
1405 /* we can only get here once, the first time we read
1406 * the payload.. so set ret to progress if the handler
1407 * works out. after calling this the message is toast */
1408 ret
= o2net_process_message(sc
, hdr
);
1411 sc
->sc_page_off
= 0;
1415 sclog(sc
, "ret = %d\n", ret
);
1416 o2net_set_advance_stop_time(sc
);
1420 /* this work func is triggerd by data ready. it reads until it can read no
1421 * more. it interprets 0, eof, as fatal. if data_ready hits while we're doing
1422 * our work the work struct will be marked and we'll be called again. */
1423 static void o2net_rx_until_empty(struct work_struct
*work
)
1425 struct o2net_sock_container
*sc
=
1426 container_of(work
, struct o2net_sock_container
, sc_rx_work
);
1430 ret
= o2net_advance_rx(sc
);
1433 if (ret
<= 0 && ret
!= -EAGAIN
) {
1434 struct o2net_node
*nn
= o2net_nn_from_num(sc
->sc_node
->nd_num
);
1435 sclog(sc
, "saw error %d, closing\n", ret
);
1436 /* not permanent so read failed handshake can retry */
1437 o2net_ensure_shutdown(nn
, sc
, 0);
1443 static void o2net_initialize_handshake(void)
1445 o2net_hand
->o2hb_heartbeat_timeout_ms
= cpu_to_be32(
1446 O2HB_MAX_WRITE_TIMEOUT_MS
);
1447 o2net_hand
->o2net_idle_timeout_ms
= cpu_to_be32(o2net_idle_timeout());
1448 o2net_hand
->o2net_keepalive_delay_ms
= cpu_to_be32(
1449 o2net_keepalive_delay());
1450 o2net_hand
->o2net_reconnect_delay_ms
= cpu_to_be32(
1451 o2net_reconnect_delay());
1454 /* ------------------------------------------------------------ */
1456 /* called when a connect completes and after a sock is accepted. the
1457 * rx path will see the response and mark the sc valid */
1458 static void o2net_sc_connect_completed(struct work_struct
*work
)
1460 struct o2net_sock_container
*sc
=
1461 container_of(work
, struct o2net_sock_container
,
1464 mlog(ML_MSG
, "sc sending handshake with ver %llu id %llx\n",
1465 (unsigned long long)O2NET_PROTOCOL_VERSION
,
1466 (unsigned long long)be64_to_cpu(o2net_hand
->connector_id
));
1468 o2net_initialize_handshake();
1469 o2net_sendpage(sc
, o2net_hand
, sizeof(*o2net_hand
));
1473 /* this is called as a work_struct func. */
1474 static void o2net_sc_send_keep_req(struct work_struct
*work
)
1476 struct o2net_sock_container
*sc
=
1477 container_of(work
, struct o2net_sock_container
,
1478 sc_keepalive_work
.work
);
1480 o2net_sendpage(sc
, o2net_keep_req
, sizeof(*o2net_keep_req
));
1484 /* socket shutdown does a del_timer_sync against this as it tears down.
1485 * we can't start this timer until we've got to the point in sc buildup
1486 * where shutdown is going to be involved */
1487 static void o2net_idle_timer(struct timer_list
*t
)
1489 struct o2net_sock_container
*sc
= from_timer(sc
, t
, sc_idle_timeout
);
1490 struct o2net_node
*nn
= o2net_nn_from_num(sc
->sc_node
->nd_num
);
1491 #ifdef CONFIG_DEBUG_FS
1492 unsigned long msecs
= ktime_to_ms(ktime_get()) -
1493 ktime_to_ms(sc
->sc_tv_timer
);
1495 unsigned long msecs
= o2net_idle_timeout();
1498 printk(KERN_NOTICE
"o2net: Connection to " SC_NODEF_FMT
" has been "
1499 "idle for %lu.%lu secs.\n",
1500 SC_NODEF_ARGS(sc
), msecs
/ 1000, msecs
% 1000);
1502 /* idle timerout happen, don't shutdown the connection, but
1503 * make fence decision. Maybe the connection can recover before
1504 * the decision is made.
1506 atomic_set(&nn
->nn_timeout
, 1);
1507 o2quo_conn_err(o2net_num_from_nn(nn
));
1508 queue_delayed_work(o2net_wq
, &nn
->nn_still_up
,
1509 msecs_to_jiffies(O2NET_QUORUM_DELAY_MS
));
1511 o2net_sc_reset_idle_timer(sc
);
1515 static void o2net_sc_reset_idle_timer(struct o2net_sock_container
*sc
)
1517 o2net_sc_cancel_delayed_work(sc
, &sc
->sc_keepalive_work
);
1518 o2net_sc_queue_delayed_work(sc
, &sc
->sc_keepalive_work
,
1519 msecs_to_jiffies(o2net_keepalive_delay()));
1520 o2net_set_sock_timer(sc
);
1521 mod_timer(&sc
->sc_idle_timeout
,
1522 jiffies
+ msecs_to_jiffies(o2net_idle_timeout()));
1525 static void o2net_sc_postpone_idle(struct o2net_sock_container
*sc
)
1527 struct o2net_node
*nn
= o2net_nn_from_num(sc
->sc_node
->nd_num
);
1529 /* clear fence decision since the connection recover from timeout*/
1530 if (atomic_read(&nn
->nn_timeout
)) {
1531 o2quo_conn_up(o2net_num_from_nn(nn
));
1532 cancel_delayed_work(&nn
->nn_still_up
);
1533 atomic_set(&nn
->nn_timeout
, 0);
1536 /* Only push out an existing timer */
1537 if (timer_pending(&sc
->sc_idle_timeout
))
1538 o2net_sc_reset_idle_timer(sc
);
1541 /* this work func is kicked whenever a path sets the nn state which doesn't
1542 * have valid set. This includes seeing hb come up, losing a connection,
1543 * having a connect attempt fail, etc. This centralizes the logic which decides
1544 * if a connect attempt should be made or if we should give up and all future
1545 * transmit attempts should fail */
1546 static void o2net_start_connect(struct work_struct
*work
)
1548 struct o2net_node
*nn
=
1549 container_of(work
, struct o2net_node
, nn_connect_work
.work
);
1550 struct o2net_sock_container
*sc
= NULL
;
1551 struct o2nm_node
*node
= NULL
, *mynode
= NULL
;
1552 struct socket
*sock
= NULL
;
1553 struct sockaddr_in myaddr
= {0, }, remoteaddr
= {0, };
1555 unsigned int timeout
;
1556 unsigned int nofs_flag
;
1559 * sock_create allocates the sock with GFP_KERNEL. We must
1560 * prevent the filesystem from being reentered by memory reclaim.
1562 nofs_flag
= memalloc_nofs_save();
1563 /* if we're greater we initiate tx, otherwise we accept */
1564 if (o2nm_this_node() <= o2net_num_from_nn(nn
))
1567 /* watch for racing with tearing a node down */
1568 node
= o2nm_get_node_by_num(o2net_num_from_nn(nn
));
1572 mynode
= o2nm_get_node_by_num(o2nm_this_node());
1576 spin_lock(&nn
->nn_lock
);
1578 * see if we already have one pending or have given up.
1579 * For nn_timeout, it is set when we close the connection
1580 * because of the idle time out. So it means that we have
1581 * at least connected to that node successfully once,
1582 * now try to connect to it again.
1584 timeout
= atomic_read(&nn
->nn_timeout
);
1585 stop
= (nn
->nn_sc
||
1586 (nn
->nn_persistent_error
&&
1587 (nn
->nn_persistent_error
!= -ENOTCONN
|| timeout
== 0)));
1588 spin_unlock(&nn
->nn_lock
);
1592 nn
->nn_last_connect_attempt
= jiffies
;
1594 sc
= sc_alloc(node
);
1596 mlog(0, "couldn't allocate sc\n");
1601 ret
= sock_create(PF_INET
, SOCK_STREAM
, IPPROTO_TCP
, &sock
);
1603 mlog(0, "can't create socket: %d\n", ret
);
1606 sc
->sc_sock
= sock
; /* freed by sc_kref_release */
1608 sock
->sk
->sk_allocation
= GFP_ATOMIC
;
1610 myaddr
.sin_family
= AF_INET
;
1611 myaddr
.sin_addr
.s_addr
= mynode
->nd_ipv4_address
;
1612 myaddr
.sin_port
= htons(0); /* any port */
1614 ret
= sock
->ops
->bind(sock
, (struct sockaddr
*)&myaddr
,
1617 mlog(ML_ERROR
, "bind failed with %d at address %pI4\n",
1618 ret
, &mynode
->nd_ipv4_address
);
1622 tcp_sock_set_nodelay(sc
->sc_sock
->sk
);
1623 tcp_sock_set_user_timeout(sock
->sk
, O2NET_TCP_USER_TIMEOUT
);
1625 o2net_register_callbacks(sc
->sc_sock
->sk
, sc
);
1627 spin_lock(&nn
->nn_lock
);
1628 /* handshake completion will set nn->nn_sc_valid */
1629 o2net_set_nn_state(nn
, sc
, 0, 0);
1630 spin_unlock(&nn
->nn_lock
);
1632 remoteaddr
.sin_family
= AF_INET
;
1633 remoteaddr
.sin_addr
.s_addr
= node
->nd_ipv4_address
;
1634 remoteaddr
.sin_port
= node
->nd_ipv4_port
;
1636 ret
= sc
->sc_sock
->ops
->connect(sc
->sc_sock
,
1637 (struct sockaddr
*)&remoteaddr
,
1640 if (ret
== -EINPROGRESS
)
1645 printk(KERN_NOTICE
"o2net: Connect attempt to " SC_NODEF_FMT
1646 " failed with errno %d\n", SC_NODEF_ARGS(sc
), ret
);
1647 /* 0 err so that another will be queued and attempted
1648 * from set_nn_state */
1649 o2net_ensure_shutdown(nn
, sc
, 0);
1654 o2nm_node_put(node
);
1656 o2nm_node_put(mynode
);
1658 memalloc_nofs_restore(nofs_flag
);
1662 static void o2net_connect_expired(struct work_struct
*work
)
1664 struct o2net_node
*nn
=
1665 container_of(work
, struct o2net_node
, nn_connect_expired
.work
);
1667 spin_lock(&nn
->nn_lock
);
1668 if (!nn
->nn_sc_valid
) {
1669 printk(KERN_NOTICE
"o2net: No connection established with "
1670 "node %u after %u.%u seconds, check network and"
1671 " cluster configuration.\n",
1672 o2net_num_from_nn(nn
),
1673 o2net_idle_timeout() / 1000,
1674 o2net_idle_timeout() % 1000);
1676 o2net_set_nn_state(nn
, NULL
, 0, 0);
1678 spin_unlock(&nn
->nn_lock
);
1681 static void o2net_still_up(struct work_struct
*work
)
1683 struct o2net_node
*nn
=
1684 container_of(work
, struct o2net_node
, nn_still_up
.work
);
1686 o2quo_hb_still_up(o2net_num_from_nn(nn
));
1689 /* ------------------------------------------------------------ */
1691 void o2net_disconnect_node(struct o2nm_node
*node
)
1693 struct o2net_node
*nn
= o2net_nn_from_num(node
->nd_num
);
1695 /* don't reconnect until it's heartbeating again */
1696 spin_lock(&nn
->nn_lock
);
1697 atomic_set(&nn
->nn_timeout
, 0);
1698 o2net_set_nn_state(nn
, NULL
, 0, -ENOTCONN
);
1699 spin_unlock(&nn
->nn_lock
);
1702 cancel_delayed_work(&nn
->nn_connect_expired
);
1703 cancel_delayed_work(&nn
->nn_connect_work
);
1704 cancel_delayed_work(&nn
->nn_still_up
);
1705 flush_workqueue(o2net_wq
);
1709 static void o2net_hb_node_down_cb(struct o2nm_node
*node
, int node_num
,
1712 o2quo_hb_down(node_num
);
1717 if (node_num
!= o2nm_this_node())
1718 o2net_disconnect_node(node
);
1720 BUG_ON(atomic_read(&o2net_connected_peers
) < 0);
1723 static void o2net_hb_node_up_cb(struct o2nm_node
*node
, int node_num
,
1726 struct o2net_node
*nn
= o2net_nn_from_num(node_num
);
1728 o2quo_hb_up(node_num
);
1732 /* ensure an immediate connect attempt */
1733 nn
->nn_last_connect_attempt
= jiffies
-
1734 (msecs_to_jiffies(o2net_reconnect_delay()) + 1);
1736 if (node_num
!= o2nm_this_node()) {
1737 /* believe it or not, accept and node heartbeating testing
1738 * can succeed for this node before we got here.. so
1739 * only use set_nn_state to clear the persistent error
1740 * if that hasn't already happened */
1741 spin_lock(&nn
->nn_lock
);
1742 atomic_set(&nn
->nn_timeout
, 0);
1743 if (nn
->nn_persistent_error
)
1744 o2net_set_nn_state(nn
, NULL
, 0, 0);
1745 spin_unlock(&nn
->nn_lock
);
1749 void o2net_unregister_hb_callbacks(void)
1751 o2hb_unregister_callback(NULL
, &o2net_hb_up
);
1752 o2hb_unregister_callback(NULL
, &o2net_hb_down
);
1755 int o2net_register_hb_callbacks(void)
1759 o2hb_setup_callback(&o2net_hb_down
, O2HB_NODE_DOWN_CB
,
1760 o2net_hb_node_down_cb
, NULL
, O2NET_HB_PRI
);
1761 o2hb_setup_callback(&o2net_hb_up
, O2HB_NODE_UP_CB
,
1762 o2net_hb_node_up_cb
, NULL
, O2NET_HB_PRI
);
1764 ret
= o2hb_register_callback(NULL
, &o2net_hb_up
);
1766 ret
= o2hb_register_callback(NULL
, &o2net_hb_down
);
1769 o2net_unregister_hb_callbacks();
1774 /* ------------------------------------------------------------ */
1776 static int o2net_accept_one(struct socket
*sock
, int *more
)
1779 struct sockaddr_in sin
;
1780 struct socket
*new_sock
= NULL
;
1781 struct o2nm_node
*node
= NULL
;
1782 struct o2nm_node
*local_node
= NULL
;
1783 struct o2net_sock_container
*sc
= NULL
;
1784 struct o2net_node
*nn
;
1785 unsigned int nofs_flag
;
1788 * sock_create_lite allocates the sock with GFP_KERNEL. We must
1789 * prevent the filesystem from being reentered by memory reclaim.
1791 nofs_flag
= memalloc_nofs_save();
1793 BUG_ON(sock
== NULL
);
1795 ret
= sock_create_lite(sock
->sk
->sk_family
, sock
->sk
->sk_type
,
1796 sock
->sk
->sk_protocol
, &new_sock
);
1800 new_sock
->type
= sock
->type
;
1801 new_sock
->ops
= sock
->ops
;
1802 ret
= sock
->ops
->accept(sock
, new_sock
, O_NONBLOCK
, false);
1807 new_sock
->sk
->sk_allocation
= GFP_ATOMIC
;
1809 tcp_sock_set_nodelay(new_sock
->sk
);
1810 tcp_sock_set_user_timeout(new_sock
->sk
, O2NET_TCP_USER_TIMEOUT
);
1812 ret
= new_sock
->ops
->getname(new_sock
, (struct sockaddr
*) &sin
, 1);
1816 node
= o2nm_get_node_by_ip(sin
.sin_addr
.s_addr
);
1818 printk(KERN_NOTICE
"o2net: Attempt to connect from unknown "
1819 "node at %pI4:%d\n", &sin
.sin_addr
.s_addr
,
1820 ntohs(sin
.sin_port
));
1825 if (o2nm_this_node() >= node
->nd_num
) {
1826 local_node
= o2nm_get_node_by_num(o2nm_this_node());
1828 printk(KERN_NOTICE
"o2net: Unexpected connect attempt "
1829 "seen at node '%s' (%u, %pI4:%d) from "
1830 "node '%s' (%u, %pI4:%d)\n",
1831 local_node
->nd_name
, local_node
->nd_num
,
1832 &(local_node
->nd_ipv4_address
),
1833 ntohs(local_node
->nd_ipv4_port
),
1835 node
->nd_num
, &sin
.sin_addr
.s_addr
,
1836 ntohs(sin
.sin_port
));
1841 /* this happens all the time when the other node sees our heartbeat
1842 * and tries to connect before we see their heartbeat */
1843 if (!o2hb_check_node_heartbeating_from_callback(node
->nd_num
)) {
1844 mlog(ML_CONN
, "attempt to connect from node '%s' at "
1845 "%pI4:%d but it isn't heartbeating\n",
1846 node
->nd_name
, &sin
.sin_addr
.s_addr
,
1847 ntohs(sin
.sin_port
));
1852 nn
= o2net_nn_from_num(node
->nd_num
);
1854 spin_lock(&nn
->nn_lock
);
1859 spin_unlock(&nn
->nn_lock
);
1861 printk(KERN_NOTICE
"o2net: Attempt to connect from node '%s' "
1862 "at %pI4:%d but it already has an open connection\n",
1863 node
->nd_name
, &sin
.sin_addr
.s_addr
,
1864 ntohs(sin
.sin_port
));
1868 sc
= sc_alloc(node
);
1874 sc
->sc_sock
= new_sock
;
1877 spin_lock(&nn
->nn_lock
);
1878 atomic_set(&nn
->nn_timeout
, 0);
1879 o2net_set_nn_state(nn
, sc
, 0, 0);
1880 spin_unlock(&nn
->nn_lock
);
1882 o2net_register_callbacks(sc
->sc_sock
->sk
, sc
);
1883 o2net_sc_queue_work(sc
, &sc
->sc_rx_work
);
1885 o2net_initialize_handshake();
1886 o2net_sendpage(sc
, o2net_hand
, sizeof(*o2net_hand
));
1890 sock_release(new_sock
);
1892 o2nm_node_put(node
);
1894 o2nm_node_put(local_node
);
1898 memalloc_nofs_restore(nofs_flag
);
1903 * This function is invoked in response to one or more
1904 * pending accepts at softIRQ level. We must drain the
1905 * entire que before returning.
1908 static void o2net_accept_many(struct work_struct
*work
)
1910 struct socket
*sock
= o2net_listen_sock
;
1914 * It is critical to note that due to interrupt moderation
1915 * at the network driver level, we can't assume to get a
1916 * softIRQ for every single conn since tcp SYN packets
1917 * can arrive back-to-back, and therefore many pending
1918 * accepts may result in just 1 softIRQ. If we terminate
1919 * the o2net_accept_one() loop upon seeing an err, what happens
1920 * to the rest of the conns in the queue? If no new SYN
1921 * arrives for hours, no softIRQ will be delivered,
1922 * and the connections will just sit in the queue.
1926 o2net_accept_one(sock
, &more
);
1933 static void o2net_listen_data_ready(struct sock
*sk
)
1935 void (*ready
)(struct sock
*sk
);
1937 read_lock_bh(&sk
->sk_callback_lock
);
1938 ready
= sk
->sk_user_data
;
1939 if (ready
== NULL
) { /* check for teardown race */
1940 ready
= sk
->sk_data_ready
;
1944 /* This callback may called twice when a new connection
1945 * is being established as a child socket inherits everything
1946 * from a parent LISTEN socket, including the data_ready cb of
1947 * the parent. This leads to a hazard. In o2net_accept_one()
1948 * we are still initializing the child socket but have not
1949 * changed the inherited data_ready callback yet when
1950 * data starts arriving.
1951 * We avoid this hazard by checking the state.
1952 * For the listening socket, the state will be TCP_LISTEN; for the new
1953 * socket, will be TCP_ESTABLISHED. Also, in this case,
1954 * sk->sk_user_data is not a valid function pointer.
1957 if (sk
->sk_state
== TCP_LISTEN
) {
1958 queue_work(o2net_wq
, &o2net_listen_work
);
1964 read_unlock_bh(&sk
->sk_callback_lock
);
1969 static int o2net_open_listening_sock(__be32 addr
, __be16 port
)
1971 struct socket
*sock
= NULL
;
1973 struct sockaddr_in sin
= {
1974 .sin_family
= PF_INET
,
1975 .sin_addr
= { .s_addr
= addr
},
1979 ret
= sock_create(PF_INET
, SOCK_STREAM
, IPPROTO_TCP
, &sock
);
1981 printk(KERN_ERR
"o2net: Error %d while creating socket\n", ret
);
1985 sock
->sk
->sk_allocation
= GFP_ATOMIC
;
1987 write_lock_bh(&sock
->sk
->sk_callback_lock
);
1988 sock
->sk
->sk_user_data
= sock
->sk
->sk_data_ready
;
1989 sock
->sk
->sk_data_ready
= o2net_listen_data_ready
;
1990 write_unlock_bh(&sock
->sk
->sk_callback_lock
);
1992 o2net_listen_sock
= sock
;
1993 INIT_WORK(&o2net_listen_work
, o2net_accept_many
);
1995 sock
->sk
->sk_reuse
= SK_CAN_REUSE
;
1996 ret
= sock
->ops
->bind(sock
, (struct sockaddr
*)&sin
, sizeof(sin
));
1998 printk(KERN_ERR
"o2net: Error %d while binding socket at "
1999 "%pI4:%u\n", ret
, &addr
, ntohs(port
));
2003 ret
= sock
->ops
->listen(sock
, 64);
2005 printk(KERN_ERR
"o2net: Error %d while listening on %pI4:%u\n",
2006 ret
, &addr
, ntohs(port
));
2010 o2net_listen_sock
= NULL
;
2018 * called from node manager when we should bring up our network listening
2019 * socket. node manager handles all the serialization to only call this
2020 * once and to match it with o2net_stop_listening(). note,
2021 * o2nm_this_node() doesn't work yet as we're being called while it
2024 int o2net_start_listening(struct o2nm_node
*node
)
2028 BUG_ON(o2net_wq
!= NULL
);
2029 BUG_ON(o2net_listen_sock
!= NULL
);
2031 mlog(ML_KTHREAD
, "starting o2net thread...\n");
2032 o2net_wq
= alloc_ordered_workqueue("o2net", WQ_MEM_RECLAIM
);
2033 if (o2net_wq
== NULL
) {
2034 mlog(ML_ERROR
, "unable to launch o2net thread\n");
2035 return -ENOMEM
; /* ? */
2038 ret
= o2net_open_listening_sock(node
->nd_ipv4_address
,
2039 node
->nd_ipv4_port
);
2041 destroy_workqueue(o2net_wq
);
2044 o2quo_conn_up(node
->nd_num
);
2049 /* again, o2nm_this_node() doesn't work here as we're involved in
2050 * tearing it down */
2051 void o2net_stop_listening(struct o2nm_node
*node
)
2053 struct socket
*sock
= o2net_listen_sock
;
2056 BUG_ON(o2net_wq
== NULL
);
2057 BUG_ON(o2net_listen_sock
== NULL
);
2059 /* stop the listening socket from generating work */
2060 write_lock_bh(&sock
->sk
->sk_callback_lock
);
2061 sock
->sk
->sk_data_ready
= sock
->sk
->sk_user_data
;
2062 sock
->sk
->sk_user_data
= NULL
;
2063 write_unlock_bh(&sock
->sk
->sk_callback_lock
);
2065 for (i
= 0; i
< ARRAY_SIZE(o2net_nodes
); i
++) {
2066 struct o2nm_node
*node
= o2nm_get_node_by_num(i
);
2068 o2net_disconnect_node(node
);
2069 o2nm_node_put(node
);
2073 /* finish all work and tear down the work queue */
2074 mlog(ML_KTHREAD
, "waiting for o2net thread to exit....\n");
2075 destroy_workqueue(o2net_wq
);
2078 sock_release(o2net_listen_sock
);
2079 o2net_listen_sock
= NULL
;
2081 o2quo_conn_err(node
->nd_num
);
2084 /* ------------------------------------------------------------ */
2086 int o2net_init(void)
2092 o2net_debugfs_init();
2094 o2net_hand
= kzalloc(sizeof(struct o2net_handshake
), GFP_KERNEL
);
2095 o2net_keep_req
= kzalloc(sizeof(struct o2net_msg
), GFP_KERNEL
);
2096 o2net_keep_resp
= kzalloc(sizeof(struct o2net_msg
), GFP_KERNEL
);
2097 if (!o2net_hand
|| !o2net_keep_req
|| !o2net_keep_resp
)
2100 o2net_hand
->protocol_version
= cpu_to_be64(O2NET_PROTOCOL_VERSION
);
2101 o2net_hand
->connector_id
= cpu_to_be64(1);
2103 o2net_keep_req
->magic
= cpu_to_be16(O2NET_MSG_KEEP_REQ_MAGIC
);
2104 o2net_keep_resp
->magic
= cpu_to_be16(O2NET_MSG_KEEP_RESP_MAGIC
);
2106 for (i
= 0; i
< ARRAY_SIZE(o2net_nodes
); i
++) {
2107 struct o2net_node
*nn
= o2net_nn_from_num(i
);
2109 atomic_set(&nn
->nn_timeout
, 0);
2110 spin_lock_init(&nn
->nn_lock
);
2111 INIT_DELAYED_WORK(&nn
->nn_connect_work
, o2net_start_connect
);
2112 INIT_DELAYED_WORK(&nn
->nn_connect_expired
,
2113 o2net_connect_expired
);
2114 INIT_DELAYED_WORK(&nn
->nn_still_up
, o2net_still_up
);
2115 /* until we see hb from a node we'll return einval */
2116 nn
->nn_persistent_error
= -ENOTCONN
;
2117 init_waitqueue_head(&nn
->nn_sc_wq
);
2118 idr_init(&nn
->nn_status_idr
);
2119 INIT_LIST_HEAD(&nn
->nn_status_list
);
2126 kfree(o2net_keep_req
);
2127 kfree(o2net_keep_resp
);
2128 o2net_debugfs_exit();
2133 void o2net_exit(void)
2137 kfree(o2net_keep_req
);
2138 kfree(o2net_keep_resp
);
2139 o2net_debugfs_exit();