xref: /linux/fs/ocfs2/cluster/tcp.c (revision f884ab15afdc5514e88105c92a4e2e1e6539869a)
1 /* -*- mode: c; c-basic-offset: 8; -*-
2  *
3  * vim: noexpandtab sw=8 ts=8 sts=0:
4  *
5  * Copyright (C) 2004 Oracle.  All rights reserved.
6  *
7  * This program is free software; you can redistribute it and/or
8  * modify it under the terms of the GNU General Public
9  * License as published by the Free Software Foundation; either
10  * version 2 of the License, or (at your option) any later version.
11  *
12  * This program is distributed in the hope that it will be useful,
13  * but WITHOUT ANY WARRANTY; without even the implied warranty of
14  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15  * General Public License for more details.
16  *
17  * You should have received a copy of the GNU General Public
18  * License along with this program; if not, write to the
19  * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20  * Boston, MA 021110-1307, USA.
21  *
22  * ----
23  *
24  * Callers for this were originally written against a very simple synchronus
25  * API.  This implementation reflects those simple callers.  Some day I'm sure
26  * we'll need to move to a more robust posting/callback mechanism.
27  *
28  * Transmit calls pass in kernel virtual addresses and block copying this into
29  * the socket's tx buffers via a usual blocking sendmsg.  They'll block waiting
30  * for a failed socket to timeout.  TX callers can also pass in a poniter to an
31  * 'int' which gets filled with an errno off the wire in response to the
32  * message they send.
33  *
34  * Handlers for unsolicited messages are registered.  Each socket has a page
35  * that incoming data is copied into.  First the header, then the data.
36  * Handlers are called from only one thread with a reference to this per-socket
37  * page.  This page is destroyed after the handler call, so it can't be
38  * referenced beyond the call.  Handlers may block but are discouraged from
39  * doing so.
40  *
41  * Any framing errors (bad magic, large payload lengths) close a connection.
42  *
43  * Our sock_container holds the state we associate with a socket.  It's current
44  * framing state is held there as well as the refcounting we do around when it
45  * is safe to tear down the socket.  The socket is only finally torn down from
46  * the container when the container loses all of its references -- so as long
47  * as you hold a ref on the container you can trust that the socket is valid
48  * for use with kernel socket APIs.
49  *
50  * Connections are initiated between a pair of nodes when the node with the
51  * higher node number gets a heartbeat callback which indicates that the lower
52  * numbered node has started heartbeating.  The lower numbered node is passive
53  * and only accepts the connection if the higher numbered node is heartbeating.
54  */
55 
56 #include <linux/kernel.h>
57 #include <linux/jiffies.h>
58 #include <linux/slab.h>
59 #include <linux/idr.h>
60 #include <linux/kref.h>
61 #include <linux/net.h>
62 #include <linux/export.h>
63 #include <net/tcp.h>
64 
65 #include <asm/uaccess.h>
66 
67 #include "heartbeat.h"
68 #include "tcp.h"
69 #include "nodemanager.h"
70 #define MLOG_MASK_PREFIX ML_TCP
71 #include "masklog.h"
72 #include "quorum.h"
73 
74 #include "tcp_internal.h"
75 
76 #define SC_NODEF_FMT "node %s (num %u) at %pI4:%u"
77 #define SC_NODEF_ARGS(sc) sc->sc_node->nd_name, sc->sc_node->nd_num,	\
78 			  &sc->sc_node->nd_ipv4_address,		\
79 			  ntohs(sc->sc_node->nd_ipv4_port)
80 
81 /*
82  * In the following two log macros, the whitespace after the ',' just
83  * before ##args is intentional. Otherwise, gcc 2.95 will eat the
84  * previous token if args expands to nothing.
85  */
86 #define msglog(hdr, fmt, args...) do {					\
87 	typeof(hdr) __hdr = (hdr);					\
88 	mlog(ML_MSG, "[mag %u len %u typ %u stat %d sys_stat %d "	\
89 	     "key %08x num %u] " fmt,					\
90 	     be16_to_cpu(__hdr->magic), be16_to_cpu(__hdr->data_len), 	\
91 	     be16_to_cpu(__hdr->msg_type), be32_to_cpu(__hdr->status),	\
92 	     be32_to_cpu(__hdr->sys_status), be32_to_cpu(__hdr->key),	\
93 	     be32_to_cpu(__hdr->msg_num) ,  ##args);			\
94 } while (0)
95 
96 #define sclog(sc, fmt, args...) do {					\
97 	typeof(sc) __sc = (sc);						\
98 	mlog(ML_SOCKET, "[sc %p refs %d sock %p node %u page %p "	\
99 	     "pg_off %zu] " fmt, __sc,					\
100 	     atomic_read(&__sc->sc_kref.refcount), __sc->sc_sock,	\
101 	    __sc->sc_node->nd_num, __sc->sc_page, __sc->sc_page_off ,	\
102 	    ##args);							\
103 } while (0)
104 
105 static DEFINE_RWLOCK(o2net_handler_lock);
106 static struct rb_root o2net_handler_tree = RB_ROOT;
107 
108 static struct o2net_node o2net_nodes[O2NM_MAX_NODES];
109 
110 /* XXX someday we'll need better accounting */
111 static struct socket *o2net_listen_sock = NULL;
112 
113 /*
114  * listen work is only queued by the listening socket callbacks on the
115  * o2net_wq.  teardown detaches the callbacks before destroying the workqueue.
116  * quorum work is queued as sock containers are shutdown.. stop_listening
117  * tears down all the node's sock containers, preventing future shutdowns
118  * and queued quroum work, before canceling delayed quorum work and
119  * destroying the work queue.
120  */
121 static struct workqueue_struct *o2net_wq;
122 static struct work_struct o2net_listen_work;
123 
124 static struct o2hb_callback_func o2net_hb_up, o2net_hb_down;
125 #define O2NET_HB_PRI 0x1
126 
127 static struct o2net_handshake *o2net_hand;
128 static struct o2net_msg *o2net_keep_req, *o2net_keep_resp;
129 
130 static int o2net_sys_err_translations[O2NET_ERR_MAX] =
131 		{[O2NET_ERR_NONE]	= 0,
132 		 [O2NET_ERR_NO_HNDLR]	= -ENOPROTOOPT,
133 		 [O2NET_ERR_OVERFLOW]	= -EOVERFLOW,
134 		 [O2NET_ERR_DIED]	= -EHOSTDOWN,};
135 
136 /* can't quite avoid *all* internal declarations :/ */
137 static void o2net_sc_connect_completed(struct work_struct *work);
138 static void o2net_rx_until_empty(struct work_struct *work);
139 static void o2net_shutdown_sc(struct work_struct *work);
140 static void o2net_listen_data_ready(struct sock *sk, int bytes);
141 static void o2net_sc_send_keep_req(struct work_struct *work);
142 static void o2net_idle_timer(unsigned long data);
143 static void o2net_sc_postpone_idle(struct o2net_sock_container *sc);
144 static void o2net_sc_reset_idle_timer(struct o2net_sock_container *sc);
145 
146 #ifdef CONFIG_DEBUG_FS
147 static void o2net_init_nst(struct o2net_send_tracking *nst, u32 msgtype,
148 			   u32 msgkey, struct task_struct *task, u8 node)
149 {
150 	INIT_LIST_HEAD(&nst->st_net_debug_item);
151 	nst->st_task = task;
152 	nst->st_msg_type = msgtype;
153 	nst->st_msg_key = msgkey;
154 	nst->st_node = node;
155 }
156 
157 static inline void o2net_set_nst_sock_time(struct o2net_send_tracking *nst)
158 {
159 	nst->st_sock_time = ktime_get();
160 }
161 
162 static inline void o2net_set_nst_send_time(struct o2net_send_tracking *nst)
163 {
164 	nst->st_send_time = ktime_get();
165 }
166 
167 static inline void o2net_set_nst_status_time(struct o2net_send_tracking *nst)
168 {
169 	nst->st_status_time = ktime_get();
170 }
171 
172 static inline void o2net_set_nst_sock_container(struct o2net_send_tracking *nst,
173 						struct o2net_sock_container *sc)
174 {
175 	nst->st_sc = sc;
176 }
177 
178 static inline void o2net_set_nst_msg_id(struct o2net_send_tracking *nst,
179 					u32 msg_id)
180 {
181 	nst->st_id = msg_id;
182 }
183 
184 static inline void o2net_set_sock_timer(struct o2net_sock_container *sc)
185 {
186 	sc->sc_tv_timer = ktime_get();
187 }
188 
189 static inline void o2net_set_data_ready_time(struct o2net_sock_container *sc)
190 {
191 	sc->sc_tv_data_ready = ktime_get();
192 }
193 
194 static inline void o2net_set_advance_start_time(struct o2net_sock_container *sc)
195 {
196 	sc->sc_tv_advance_start = ktime_get();
197 }
198 
199 static inline void o2net_set_advance_stop_time(struct o2net_sock_container *sc)
200 {
201 	sc->sc_tv_advance_stop = ktime_get();
202 }
203 
204 static inline void o2net_set_func_start_time(struct o2net_sock_container *sc)
205 {
206 	sc->sc_tv_func_start = ktime_get();
207 }
208 
209 static inline void o2net_set_func_stop_time(struct o2net_sock_container *sc)
210 {
211 	sc->sc_tv_func_stop = ktime_get();
212 }
213 
214 #else  /* CONFIG_DEBUG_FS */
215 # define o2net_init_nst(a, b, c, d, e)
216 # define o2net_set_nst_sock_time(a)
217 # define o2net_set_nst_send_time(a)
218 # define o2net_set_nst_status_time(a)
219 # define o2net_set_nst_sock_container(a, b)
220 # define o2net_set_nst_msg_id(a, b)
221 # define o2net_set_sock_timer(a)
222 # define o2net_set_data_ready_time(a)
223 # define o2net_set_advance_start_time(a)
224 # define o2net_set_advance_stop_time(a)
225 # define o2net_set_func_start_time(a)
226 # define o2net_set_func_stop_time(a)
227 #endif /* CONFIG_DEBUG_FS */
228 
229 #ifdef CONFIG_OCFS2_FS_STATS
230 static ktime_t o2net_get_func_run_time(struct o2net_sock_container *sc)
231 {
232 	return ktime_sub(sc->sc_tv_func_stop, sc->sc_tv_func_start);
233 }
234 
235 static void o2net_update_send_stats(struct o2net_send_tracking *nst,
236 				    struct o2net_sock_container *sc)
237 {
238 	sc->sc_tv_status_total = ktime_add(sc->sc_tv_status_total,
239 					   ktime_sub(ktime_get(),
240 						     nst->st_status_time));
241 	sc->sc_tv_send_total = ktime_add(sc->sc_tv_send_total,
242 					 ktime_sub(nst->st_status_time,
243 						   nst->st_send_time));
244 	sc->sc_tv_acquiry_total = ktime_add(sc->sc_tv_acquiry_total,
245 					    ktime_sub(nst->st_send_time,
246 						      nst->st_sock_time));
247 	sc->sc_send_count++;
248 }
249 
250 static void o2net_update_recv_stats(struct o2net_sock_container *sc)
251 {
252 	sc->sc_tv_process_total = ktime_add(sc->sc_tv_process_total,
253 					    o2net_get_func_run_time(sc));
254 	sc->sc_recv_count++;
255 }
256 
257 #else
258 
259 # define o2net_update_send_stats(a, b)
260 
261 # define o2net_update_recv_stats(sc)
262 
263 #endif /* CONFIG_OCFS2_FS_STATS */
264 
265 static inline int o2net_reconnect_delay(void)
266 {
267 	return o2nm_single_cluster->cl_reconnect_delay_ms;
268 }
269 
270 static inline int o2net_keepalive_delay(void)
271 {
272 	return o2nm_single_cluster->cl_keepalive_delay_ms;
273 }
274 
275 static inline int o2net_idle_timeout(void)
276 {
277 	return o2nm_single_cluster->cl_idle_timeout_ms;
278 }
279 
280 static inline int o2net_sys_err_to_errno(enum o2net_system_error err)
281 {
282 	int trans;
283 	BUG_ON(err >= O2NET_ERR_MAX);
284 	trans = o2net_sys_err_translations[err];
285 
286 	/* Just in case we mess up the translation table above */
287 	BUG_ON(err != O2NET_ERR_NONE && trans == 0);
288 	return trans;
289 }
290 
291 static struct o2net_node * o2net_nn_from_num(u8 node_num)
292 {
293 	BUG_ON(node_num >= ARRAY_SIZE(o2net_nodes));
294 	return &o2net_nodes[node_num];
295 }
296 
297 static u8 o2net_num_from_nn(struct o2net_node *nn)
298 {
299 	BUG_ON(nn == NULL);
300 	return nn - o2net_nodes;
301 }
302 
303 /* ------------------------------------------------------------ */
304 
305 static int o2net_prep_nsw(struct o2net_node *nn, struct o2net_status_wait *nsw)
306 {
307 	int ret;
308 
309 	spin_lock(&nn->nn_lock);
310 	ret = idr_alloc(&nn->nn_status_idr, nsw, 0, 0, GFP_ATOMIC);
311 	if (ret >= 0) {
312 		nsw->ns_id = ret;
313 		list_add_tail(&nsw->ns_node_item, &nn->nn_status_list);
314 	}
315 	spin_unlock(&nn->nn_lock);
316 	if (ret < 0)
317 		return ret;
318 
319 	init_waitqueue_head(&nsw->ns_wq);
320 	nsw->ns_sys_status = O2NET_ERR_NONE;
321 	nsw->ns_status = 0;
322 	return 0;
323 }
324 
325 static void o2net_complete_nsw_locked(struct o2net_node *nn,
326 				      struct o2net_status_wait *nsw,
327 				      enum o2net_system_error sys_status,
328 				      s32 status)
329 {
330 	assert_spin_locked(&nn->nn_lock);
331 
332 	if (!list_empty(&nsw->ns_node_item)) {
333 		list_del_init(&nsw->ns_node_item);
334 		nsw->ns_sys_status = sys_status;
335 		nsw->ns_status = status;
336 		idr_remove(&nn->nn_status_idr, nsw->ns_id);
337 		wake_up(&nsw->ns_wq);
338 	}
339 }
340 
341 static void o2net_complete_nsw(struct o2net_node *nn,
342 			       struct o2net_status_wait *nsw,
343 			       u64 id, enum o2net_system_error sys_status,
344 			       s32 status)
345 {
346 	spin_lock(&nn->nn_lock);
347 	if (nsw == NULL) {
348 		if (id > INT_MAX)
349 			goto out;
350 
351 		nsw = idr_find(&nn->nn_status_idr, id);
352 		if (nsw == NULL)
353 			goto out;
354 	}
355 
356 	o2net_complete_nsw_locked(nn, nsw, sys_status, status);
357 
358 out:
359 	spin_unlock(&nn->nn_lock);
360 	return;
361 }
362 
363 static void o2net_complete_nodes_nsw(struct o2net_node *nn)
364 {
365 	struct o2net_status_wait *nsw, *tmp;
366 	unsigned int num_kills = 0;
367 
368 	assert_spin_locked(&nn->nn_lock);
369 
370 	list_for_each_entry_safe(nsw, tmp, &nn->nn_status_list, ns_node_item) {
371 		o2net_complete_nsw_locked(nn, nsw, O2NET_ERR_DIED, 0);
372 		num_kills++;
373 	}
374 
375 	mlog(0, "completed %d messages for node %u\n", num_kills,
376 	     o2net_num_from_nn(nn));
377 }
378 
379 static int o2net_nsw_completed(struct o2net_node *nn,
380 			       struct o2net_status_wait *nsw)
381 {
382 	int completed;
383 	spin_lock(&nn->nn_lock);
384 	completed = list_empty(&nsw->ns_node_item);
385 	spin_unlock(&nn->nn_lock);
386 	return completed;
387 }
388 
389 /* ------------------------------------------------------------ */
390 
391 static void sc_kref_release(struct kref *kref)
392 {
393 	struct o2net_sock_container *sc = container_of(kref,
394 					struct o2net_sock_container, sc_kref);
395 	BUG_ON(timer_pending(&sc->sc_idle_timeout));
396 
397 	sclog(sc, "releasing\n");
398 
399 	if (sc->sc_sock) {
400 		sock_release(sc->sc_sock);
401 		sc->sc_sock = NULL;
402 	}
403 
404 	o2nm_undepend_item(&sc->sc_node->nd_item);
405 	o2nm_node_put(sc->sc_node);
406 	sc->sc_node = NULL;
407 
408 	o2net_debug_del_sc(sc);
409 	kfree(sc);
410 }
411 
412 static void sc_put(struct o2net_sock_container *sc)
413 {
414 	sclog(sc, "put\n");
415 	kref_put(&sc->sc_kref, sc_kref_release);
416 }
417 static void sc_get(struct o2net_sock_container *sc)
418 {
419 	sclog(sc, "get\n");
420 	kref_get(&sc->sc_kref);
421 }
422 static struct o2net_sock_container *sc_alloc(struct o2nm_node *node)
423 {
424 	struct o2net_sock_container *sc, *ret = NULL;
425 	struct page *page = NULL;
426 	int status = 0;
427 
428 	page = alloc_page(GFP_NOFS);
429 	sc = kzalloc(sizeof(*sc), GFP_NOFS);
430 	if (sc == NULL || page == NULL)
431 		goto out;
432 
433 	kref_init(&sc->sc_kref);
434 	o2nm_node_get(node);
435 	sc->sc_node = node;
436 
437 	/* pin the node item of the remote node */
438 	status = o2nm_depend_item(&node->nd_item);
439 	if (status) {
440 		mlog_errno(status);
441 		o2nm_node_put(node);
442 		goto out;
443 	}
444 	INIT_WORK(&sc->sc_connect_work, o2net_sc_connect_completed);
445 	INIT_WORK(&sc->sc_rx_work, o2net_rx_until_empty);
446 	INIT_WORK(&sc->sc_shutdown_work, o2net_shutdown_sc);
447 	INIT_DELAYED_WORK(&sc->sc_keepalive_work, o2net_sc_send_keep_req);
448 
449 	init_timer(&sc->sc_idle_timeout);
450 	sc->sc_idle_timeout.function = o2net_idle_timer;
451 	sc->sc_idle_timeout.data = (unsigned long)sc;
452 
453 	sclog(sc, "alloced\n");
454 
455 	ret = sc;
456 	sc->sc_page = page;
457 	o2net_debug_add_sc(sc);
458 	sc = NULL;
459 	page = NULL;
460 
461 out:
462 	if (page)
463 		__free_page(page);
464 	kfree(sc);
465 
466 	return ret;
467 }
468 
469 /* ------------------------------------------------------------ */
470 
471 static void o2net_sc_queue_work(struct o2net_sock_container *sc,
472 				struct work_struct *work)
473 {
474 	sc_get(sc);
475 	if (!queue_work(o2net_wq, work))
476 		sc_put(sc);
477 }
478 static void o2net_sc_queue_delayed_work(struct o2net_sock_container *sc,
479 					struct delayed_work *work,
480 					int delay)
481 {
482 	sc_get(sc);
483 	if (!queue_delayed_work(o2net_wq, work, delay))
484 		sc_put(sc);
485 }
486 static void o2net_sc_cancel_delayed_work(struct o2net_sock_container *sc,
487 					 struct delayed_work *work)
488 {
489 	if (cancel_delayed_work(work))
490 		sc_put(sc);
491 }
492 
493 static atomic_t o2net_connected_peers = ATOMIC_INIT(0);
494 
495 int o2net_num_connected_peers(void)
496 {
497 	return atomic_read(&o2net_connected_peers);
498 }
499 
500 static void o2net_set_nn_state(struct o2net_node *nn,
501 			       struct o2net_sock_container *sc,
502 			       unsigned valid, int err)
503 {
504 	int was_valid = nn->nn_sc_valid;
505 	int was_err = nn->nn_persistent_error;
506 	struct o2net_sock_container *old_sc = nn->nn_sc;
507 
508 	assert_spin_locked(&nn->nn_lock);
509 
510 	if (old_sc && !sc)
511 		atomic_dec(&o2net_connected_peers);
512 	else if (!old_sc && sc)
513 		atomic_inc(&o2net_connected_peers);
514 
515 	/* the node num comparison and single connect/accept path should stop
516 	 * an non-null sc from being overwritten with another */
517 	BUG_ON(sc && nn->nn_sc && nn->nn_sc != sc);
518 	mlog_bug_on_msg(err && valid, "err %d valid %u\n", err, valid);
519 	mlog_bug_on_msg(valid && !sc, "valid %u sc %p\n", valid, sc);
520 
521 	if (was_valid && !valid && err == 0)
522 		err = -ENOTCONN;
523 
524 	mlog(ML_CONN, "node %u sc: %p -> %p, valid %u -> %u, err %d -> %d\n",
525 	     o2net_num_from_nn(nn), nn->nn_sc, sc, nn->nn_sc_valid, valid,
526 	     nn->nn_persistent_error, err);
527 
528 	nn->nn_sc = sc;
529 	nn->nn_sc_valid = valid ? 1 : 0;
530 	nn->nn_persistent_error = err;
531 
532 	/* mirrors o2net_tx_can_proceed() */
533 	if (nn->nn_persistent_error || nn->nn_sc_valid)
534 		wake_up(&nn->nn_sc_wq);
535 
536 	if (!was_err && nn->nn_persistent_error) {
537 		o2quo_conn_err(o2net_num_from_nn(nn));
538 		queue_delayed_work(o2net_wq, &nn->nn_still_up,
539 				   msecs_to_jiffies(O2NET_QUORUM_DELAY_MS));
540 	}
541 
542 	if (was_valid && !valid) {
543 		printk(KERN_NOTICE "o2net: No longer connected to "
544 		       SC_NODEF_FMT "\n", SC_NODEF_ARGS(old_sc));
545 		o2net_complete_nodes_nsw(nn);
546 	}
547 
548 	if (!was_valid && valid) {
549 		o2quo_conn_up(o2net_num_from_nn(nn));
550 		cancel_delayed_work(&nn->nn_connect_expired);
551 		printk(KERN_NOTICE "o2net: %s " SC_NODEF_FMT "\n",
552 		       o2nm_this_node() > sc->sc_node->nd_num ?
553 		       "Connected to" : "Accepted connection from",
554 		       SC_NODEF_ARGS(sc));
555 	}
556 
557 	/* trigger the connecting worker func as long as we're not valid,
558 	 * it will back off if it shouldn't connect.  This can be called
559 	 * from node config teardown and so needs to be careful about
560 	 * the work queue actually being up. */
561 	if (!valid && o2net_wq) {
562 		unsigned long delay;
563 		/* delay if we're within a RECONNECT_DELAY of the
564 		 * last attempt */
565 		delay = (nn->nn_last_connect_attempt +
566 			 msecs_to_jiffies(o2net_reconnect_delay()))
567 			- jiffies;
568 		if (delay > msecs_to_jiffies(o2net_reconnect_delay()))
569 			delay = 0;
570 		mlog(ML_CONN, "queueing conn attempt in %lu jiffies\n", delay);
571 		queue_delayed_work(o2net_wq, &nn->nn_connect_work, delay);
572 
573 		/*
574 		 * Delay the expired work after idle timeout.
575 		 *
576 		 * We might have lots of failed connection attempts that run
577 		 * through here but we only cancel the connect_expired work when
578 		 * a connection attempt succeeds.  So only the first enqueue of
579 		 * the connect_expired work will do anything.  The rest will see
580 		 * that it's already queued and do nothing.
581 		 */
582 		delay += msecs_to_jiffies(o2net_idle_timeout());
583 		queue_delayed_work(o2net_wq, &nn->nn_connect_expired, delay);
584 	}
585 
586 	/* keep track of the nn's sc ref for the caller */
587 	if ((old_sc == NULL) && sc)
588 		sc_get(sc);
589 	if (old_sc && (old_sc != sc)) {
590 		o2net_sc_queue_work(old_sc, &old_sc->sc_shutdown_work);
591 		sc_put(old_sc);
592 	}
593 }
594 
595 /* see o2net_register_callbacks() */
596 static void o2net_data_ready(struct sock *sk, int bytes)
597 {
598 	void (*ready)(struct sock *sk, int bytes);
599 
600 	read_lock(&sk->sk_callback_lock);
601 	if (sk->sk_user_data) {
602 		struct o2net_sock_container *sc = sk->sk_user_data;
603 		sclog(sc, "data_ready hit\n");
604 		o2net_set_data_ready_time(sc);
605 		o2net_sc_queue_work(sc, &sc->sc_rx_work);
606 		ready = sc->sc_data_ready;
607 	} else {
608 		ready = sk->sk_data_ready;
609 	}
610 	read_unlock(&sk->sk_callback_lock);
611 
612 	ready(sk, bytes);
613 }
614 
615 /* see o2net_register_callbacks() */
616 static void o2net_state_change(struct sock *sk)
617 {
618 	void (*state_change)(struct sock *sk);
619 	struct o2net_sock_container *sc;
620 
621 	read_lock(&sk->sk_callback_lock);
622 	sc = sk->sk_user_data;
623 	if (sc == NULL) {
624 		state_change = sk->sk_state_change;
625 		goto out;
626 	}
627 
628 	sclog(sc, "state_change to %d\n", sk->sk_state);
629 
630 	state_change = sc->sc_state_change;
631 
632 	switch(sk->sk_state) {
633 		/* ignore connecting sockets as they make progress */
634 		case TCP_SYN_SENT:
635 		case TCP_SYN_RECV:
636 			break;
637 		case TCP_ESTABLISHED:
638 			o2net_sc_queue_work(sc, &sc->sc_connect_work);
639 			break;
640 		default:
641 			printk(KERN_INFO "o2net: Connection to " SC_NODEF_FMT
642 			      " shutdown, state %d\n",
643 			      SC_NODEF_ARGS(sc), sk->sk_state);
644 			o2net_sc_queue_work(sc, &sc->sc_shutdown_work);
645 			break;
646 	}
647 out:
648 	read_unlock(&sk->sk_callback_lock);
649 	state_change(sk);
650 }
651 
652 /*
653  * we register callbacks so we can queue work on events before calling
654  * the original callbacks.  our callbacks our careful to test user_data
655  * to discover when they've reaced with o2net_unregister_callbacks().
656  */
657 static void o2net_register_callbacks(struct sock *sk,
658 				     struct o2net_sock_container *sc)
659 {
660 	write_lock_bh(&sk->sk_callback_lock);
661 
662 	/* accepted sockets inherit the old listen socket data ready */
663 	if (sk->sk_data_ready == o2net_listen_data_ready) {
664 		sk->sk_data_ready = sk->sk_user_data;
665 		sk->sk_user_data = NULL;
666 	}
667 
668 	BUG_ON(sk->sk_user_data != NULL);
669 	sk->sk_user_data = sc;
670 	sc_get(sc);
671 
672 	sc->sc_data_ready = sk->sk_data_ready;
673 	sc->sc_state_change = sk->sk_state_change;
674 	sk->sk_data_ready = o2net_data_ready;
675 	sk->sk_state_change = o2net_state_change;
676 
677 	mutex_init(&sc->sc_send_lock);
678 
679 	write_unlock_bh(&sk->sk_callback_lock);
680 }
681 
682 static int o2net_unregister_callbacks(struct sock *sk,
683 			           struct o2net_sock_container *sc)
684 {
685 	int ret = 0;
686 
687 	write_lock_bh(&sk->sk_callback_lock);
688 	if (sk->sk_user_data == sc) {
689 		ret = 1;
690 		sk->sk_user_data = NULL;
691 		sk->sk_data_ready = sc->sc_data_ready;
692 		sk->sk_state_change = sc->sc_state_change;
693 	}
694 	write_unlock_bh(&sk->sk_callback_lock);
695 
696 	return ret;
697 }
698 
699 /*
700  * this is a little helper that is called by callers who have seen a problem
701  * with an sc and want to detach it from the nn if someone already hasn't beat
702  * them to it.  if an error is given then the shutdown will be persistent
703  * and pending transmits will be canceled.
704  */
705 static void o2net_ensure_shutdown(struct o2net_node *nn,
706 			           struct o2net_sock_container *sc,
707 				   int err)
708 {
709 	spin_lock(&nn->nn_lock);
710 	if (nn->nn_sc == sc)
711 		o2net_set_nn_state(nn, NULL, 0, err);
712 	spin_unlock(&nn->nn_lock);
713 }
714 
715 /*
716  * This work queue function performs the blocking parts of socket shutdown.  A
717  * few paths lead here.  set_nn_state will trigger this callback if it sees an
718  * sc detached from the nn.  state_change will also trigger this callback
719  * directly when it sees errors.  In that case we need to call set_nn_state
720  * ourselves as state_change couldn't get the nn_lock and call set_nn_state
721  * itself.
722  */
723 static void o2net_shutdown_sc(struct work_struct *work)
724 {
725 	struct o2net_sock_container *sc =
726 		container_of(work, struct o2net_sock_container,
727 			     sc_shutdown_work);
728 	struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num);
729 
730 	sclog(sc, "shutting down\n");
731 
732 	/* drop the callbacks ref and call shutdown only once */
733 	if (o2net_unregister_callbacks(sc->sc_sock->sk, sc)) {
734 		/* we shouldn't flush as we're in the thread, the
735 		 * races with pending sc work structs are harmless */
736 		del_timer_sync(&sc->sc_idle_timeout);
737 		o2net_sc_cancel_delayed_work(sc, &sc->sc_keepalive_work);
738 		sc_put(sc);
739 		kernel_sock_shutdown(sc->sc_sock, SHUT_RDWR);
740 	}
741 
742 	/* not fatal so failed connects before the other guy has our
743 	 * heartbeat can be retried */
744 	o2net_ensure_shutdown(nn, sc, 0);
745 	sc_put(sc);
746 }
747 
748 /* ------------------------------------------------------------ */
749 
750 static int o2net_handler_cmp(struct o2net_msg_handler *nmh, u32 msg_type,
751 			     u32 key)
752 {
753 	int ret = memcmp(&nmh->nh_key, &key, sizeof(key));
754 
755 	if (ret == 0)
756 		ret = memcmp(&nmh->nh_msg_type, &msg_type, sizeof(msg_type));
757 
758 	return ret;
759 }
760 
761 static struct o2net_msg_handler *
762 o2net_handler_tree_lookup(u32 msg_type, u32 key, struct rb_node ***ret_p,
763 			  struct rb_node **ret_parent)
764 {
765         struct rb_node **p = &o2net_handler_tree.rb_node;
766         struct rb_node *parent = NULL;
767 	struct o2net_msg_handler *nmh, *ret = NULL;
768 	int cmp;
769 
770         while (*p) {
771                 parent = *p;
772                 nmh = rb_entry(parent, struct o2net_msg_handler, nh_node);
773 		cmp = o2net_handler_cmp(nmh, msg_type, key);
774 
775                 if (cmp < 0)
776                         p = &(*p)->rb_left;
777                 else if (cmp > 0)
778                         p = &(*p)->rb_right;
779                 else {
780 			ret = nmh;
781                         break;
782 		}
783         }
784 
785         if (ret_p != NULL)
786                 *ret_p = p;
787         if (ret_parent != NULL)
788                 *ret_parent = parent;
789 
790         return ret;
791 }
792 
793 static void o2net_handler_kref_release(struct kref *kref)
794 {
795 	struct o2net_msg_handler *nmh;
796 	nmh = container_of(kref, struct o2net_msg_handler, nh_kref);
797 
798 	kfree(nmh);
799 }
800 
801 static void o2net_handler_put(struct o2net_msg_handler *nmh)
802 {
803 	kref_put(&nmh->nh_kref, o2net_handler_kref_release);
804 }
805 
806 /* max_len is protection for the handler func.  incoming messages won't
807  * be given to the handler if their payload is longer than the max. */
808 int o2net_register_handler(u32 msg_type, u32 key, u32 max_len,
809 			   o2net_msg_handler_func *func, void *data,
810 			   o2net_post_msg_handler_func *post_func,
811 			   struct list_head *unreg_list)
812 {
813 	struct o2net_msg_handler *nmh = NULL;
814 	struct rb_node **p, *parent;
815 	int ret = 0;
816 
817 	if (max_len > O2NET_MAX_PAYLOAD_BYTES) {
818 		mlog(0, "max_len for message handler out of range: %u\n",
819 			max_len);
820 		ret = -EINVAL;
821 		goto out;
822 	}
823 
824 	if (!msg_type) {
825 		mlog(0, "no message type provided: %u, %p\n", msg_type, func);
826 		ret = -EINVAL;
827 		goto out;
828 
829 	}
830 	if (!func) {
831 		mlog(0, "no message handler provided: %u, %p\n",
832 		       msg_type, func);
833 		ret = -EINVAL;
834 		goto out;
835 	}
836 
837        	nmh = kzalloc(sizeof(struct o2net_msg_handler), GFP_NOFS);
838 	if (nmh == NULL) {
839 		ret = -ENOMEM;
840 		goto out;
841 	}
842 
843 	nmh->nh_func = func;
844 	nmh->nh_func_data = data;
845 	nmh->nh_post_func = post_func;
846 	nmh->nh_msg_type = msg_type;
847 	nmh->nh_max_len = max_len;
848 	nmh->nh_key = key;
849 	/* the tree and list get this ref.. they're both removed in
850 	 * unregister when this ref is dropped */
851 	kref_init(&nmh->nh_kref);
852 	INIT_LIST_HEAD(&nmh->nh_unregister_item);
853 
854 	write_lock(&o2net_handler_lock);
855 	if (o2net_handler_tree_lookup(msg_type, key, &p, &parent))
856 		ret = -EEXIST;
857 	else {
858 	        rb_link_node(&nmh->nh_node, parent, p);
859 		rb_insert_color(&nmh->nh_node, &o2net_handler_tree);
860 		list_add_tail(&nmh->nh_unregister_item, unreg_list);
861 
862 		mlog(ML_TCP, "registered handler func %p type %u key %08x\n",
863 		     func, msg_type, key);
864 		/* we've had some trouble with handlers seemingly vanishing. */
865 		mlog_bug_on_msg(o2net_handler_tree_lookup(msg_type, key, &p,
866 							  &parent) == NULL,
867 			        "couldn't find handler we *just* registered "
868 				"for type %u key %08x\n", msg_type, key);
869 	}
870 	write_unlock(&o2net_handler_lock);
871 	if (ret)
872 		goto out;
873 
874 out:
875 	if (ret)
876 		kfree(nmh);
877 
878 	return ret;
879 }
880 EXPORT_SYMBOL_GPL(o2net_register_handler);
881 
882 void o2net_unregister_handler_list(struct list_head *list)
883 {
884 	struct o2net_msg_handler *nmh, *n;
885 
886 	write_lock(&o2net_handler_lock);
887 	list_for_each_entry_safe(nmh, n, list, nh_unregister_item) {
888 		mlog(ML_TCP, "unregistering handler func %p type %u key %08x\n",
889 		     nmh->nh_func, nmh->nh_msg_type, nmh->nh_key);
890 		rb_erase(&nmh->nh_node, &o2net_handler_tree);
891 		list_del_init(&nmh->nh_unregister_item);
892 		kref_put(&nmh->nh_kref, o2net_handler_kref_release);
893 	}
894 	write_unlock(&o2net_handler_lock);
895 }
896 EXPORT_SYMBOL_GPL(o2net_unregister_handler_list);
897 
898 static struct o2net_msg_handler *o2net_handler_get(u32 msg_type, u32 key)
899 {
900 	struct o2net_msg_handler *nmh;
901 
902 	read_lock(&o2net_handler_lock);
903 	nmh = o2net_handler_tree_lookup(msg_type, key, NULL, NULL);
904 	if (nmh)
905 		kref_get(&nmh->nh_kref);
906 	read_unlock(&o2net_handler_lock);
907 
908 	return nmh;
909 }
910 
911 /* ------------------------------------------------------------ */
912 
913 static int o2net_recv_tcp_msg(struct socket *sock, void *data, size_t len)
914 {
915 	int ret;
916 	mm_segment_t oldfs;
917 	struct kvec vec = {
918 		.iov_len = len,
919 		.iov_base = data,
920 	};
921 	struct msghdr msg = {
922 		.msg_iovlen = 1,
923 		.msg_iov = (struct iovec *)&vec,
924        		.msg_flags = MSG_DONTWAIT,
925 	};
926 
927 	oldfs = get_fs();
928 	set_fs(get_ds());
929 	ret = sock_recvmsg(sock, &msg, len, msg.msg_flags);
930 	set_fs(oldfs);
931 
932 	return ret;
933 }
934 
935 static int o2net_send_tcp_msg(struct socket *sock, struct kvec *vec,
936 			      size_t veclen, size_t total)
937 {
938 	int ret;
939 	mm_segment_t oldfs;
940 	struct msghdr msg = {
941 		.msg_iov = (struct iovec *)vec,
942 		.msg_iovlen = veclen,
943 	};
944 
945 	if (sock == NULL) {
946 		ret = -EINVAL;
947 		goto out;
948 	}
949 
950 	oldfs = get_fs();
951 	set_fs(get_ds());
952 	ret = sock_sendmsg(sock, &msg, total);
953 	set_fs(oldfs);
954 	if (ret != total) {
955 		mlog(ML_ERROR, "sendmsg returned %d instead of %zu\n", ret,
956 		     total);
957 		if (ret >= 0)
958 			ret = -EPIPE; /* should be smarter, I bet */
959 		goto out;
960 	}
961 
962 	ret = 0;
963 out:
964 	if (ret < 0)
965 		mlog(0, "returning error: %d\n", ret);
966 	return ret;
967 }
968 
969 static void o2net_sendpage(struct o2net_sock_container *sc,
970 			   void *kmalloced_virt,
971 			   size_t size)
972 {
973 	struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num);
974 	ssize_t ret;
975 
976 	while (1) {
977 		mutex_lock(&sc->sc_send_lock);
978 		ret = sc->sc_sock->ops->sendpage(sc->sc_sock,
979 						 virt_to_page(kmalloced_virt),
980 						 (long)kmalloced_virt & ~PAGE_MASK,
981 						 size, MSG_DONTWAIT);
982 		mutex_unlock(&sc->sc_send_lock);
983 		if (ret == size)
984 			break;
985 		if (ret == (ssize_t)-EAGAIN) {
986 			mlog(0, "sendpage of size %zu to " SC_NODEF_FMT
987 			     " returned EAGAIN\n", size, SC_NODEF_ARGS(sc));
988 			cond_resched();
989 			continue;
990 		}
991 		mlog(ML_ERROR, "sendpage of size %zu to " SC_NODEF_FMT
992 		     " failed with %zd\n", size, SC_NODEF_ARGS(sc), ret);
993 		o2net_ensure_shutdown(nn, sc, 0);
994 		break;
995 	}
996 }
997 
998 static void o2net_init_msg(struct o2net_msg *msg, u16 data_len, u16 msg_type, u32 key)
999 {
1000 	memset(msg, 0, sizeof(struct o2net_msg));
1001 	msg->magic = cpu_to_be16(O2NET_MSG_MAGIC);
1002 	msg->data_len = cpu_to_be16(data_len);
1003 	msg->msg_type = cpu_to_be16(msg_type);
1004 	msg->sys_status = cpu_to_be32(O2NET_ERR_NONE);
1005 	msg->status = 0;
1006 	msg->key = cpu_to_be32(key);
1007 }
1008 
1009 static int o2net_tx_can_proceed(struct o2net_node *nn,
1010 			        struct o2net_sock_container **sc_ret,
1011 				int *error)
1012 {
1013 	int ret = 0;
1014 
1015 	spin_lock(&nn->nn_lock);
1016 	if (nn->nn_persistent_error) {
1017 		ret = 1;
1018 		*sc_ret = NULL;
1019 		*error = nn->nn_persistent_error;
1020 	} else if (nn->nn_sc_valid) {
1021 		kref_get(&nn->nn_sc->sc_kref);
1022 
1023 		ret = 1;
1024 		*sc_ret = nn->nn_sc;
1025 		*error = 0;
1026 	}
1027 	spin_unlock(&nn->nn_lock);
1028 
1029 	return ret;
1030 }
1031 
1032 /* Get a map of all nodes to which this node is currently connected to */
1033 void o2net_fill_node_map(unsigned long *map, unsigned bytes)
1034 {
1035 	struct o2net_sock_container *sc;
1036 	int node, ret;
1037 
1038 	BUG_ON(bytes < (BITS_TO_LONGS(O2NM_MAX_NODES) * sizeof(unsigned long)));
1039 
1040 	memset(map, 0, bytes);
1041 	for (node = 0; node < O2NM_MAX_NODES; ++node) {
1042 		o2net_tx_can_proceed(o2net_nn_from_num(node), &sc, &ret);
1043 		if (!ret) {
1044 			set_bit(node, map);
1045 			sc_put(sc);
1046 		}
1047 	}
1048 }
1049 EXPORT_SYMBOL_GPL(o2net_fill_node_map);
1050 
1051 int o2net_send_message_vec(u32 msg_type, u32 key, struct kvec *caller_vec,
1052 			   size_t caller_veclen, u8 target_node, int *status)
1053 {
1054 	int ret = 0;
1055 	struct o2net_msg *msg = NULL;
1056 	size_t veclen, caller_bytes = 0;
1057 	struct kvec *vec = NULL;
1058 	struct o2net_sock_container *sc = NULL;
1059 	struct o2net_node *nn = o2net_nn_from_num(target_node);
1060 	struct o2net_status_wait nsw = {
1061 		.ns_node_item = LIST_HEAD_INIT(nsw.ns_node_item),
1062 	};
1063 	struct o2net_send_tracking nst;
1064 
1065 	o2net_init_nst(&nst, msg_type, key, current, target_node);
1066 
1067 	if (o2net_wq == NULL) {
1068 		mlog(0, "attempt to tx without o2netd running\n");
1069 		ret = -ESRCH;
1070 		goto out;
1071 	}
1072 
1073 	if (caller_veclen == 0) {
1074 		mlog(0, "bad kvec array length\n");
1075 		ret = -EINVAL;
1076 		goto out;
1077 	}
1078 
1079 	caller_bytes = iov_length((struct iovec *)caller_vec, caller_veclen);
1080 	if (caller_bytes > O2NET_MAX_PAYLOAD_BYTES) {
1081 		mlog(0, "total payload len %zu too large\n", caller_bytes);
1082 		ret = -EINVAL;
1083 		goto out;
1084 	}
1085 
1086 	if (target_node == o2nm_this_node()) {
1087 		ret = -ELOOP;
1088 		goto out;
1089 	}
1090 
1091 	o2net_debug_add_nst(&nst);
1092 
1093 	o2net_set_nst_sock_time(&nst);
1094 
1095 	wait_event(nn->nn_sc_wq, o2net_tx_can_proceed(nn, &sc, &ret));
1096 	if (ret)
1097 		goto out;
1098 
1099 	o2net_set_nst_sock_container(&nst, sc);
1100 
1101 	veclen = caller_veclen + 1;
1102 	vec = kmalloc(sizeof(struct kvec) * veclen, GFP_ATOMIC);
1103 	if (vec == NULL) {
1104 		mlog(0, "failed to %zu element kvec!\n", veclen);
1105 		ret = -ENOMEM;
1106 		goto out;
1107 	}
1108 
1109 	msg = kmalloc(sizeof(struct o2net_msg), GFP_ATOMIC);
1110 	if (!msg) {
1111 		mlog(0, "failed to allocate a o2net_msg!\n");
1112 		ret = -ENOMEM;
1113 		goto out;
1114 	}
1115 
1116 	o2net_init_msg(msg, caller_bytes, msg_type, key);
1117 
1118 	vec[0].iov_len = sizeof(struct o2net_msg);
1119 	vec[0].iov_base = msg;
1120 	memcpy(&vec[1], caller_vec, caller_veclen * sizeof(struct kvec));
1121 
1122 	ret = o2net_prep_nsw(nn, &nsw);
1123 	if (ret)
1124 		goto out;
1125 
1126 	msg->msg_num = cpu_to_be32(nsw.ns_id);
1127 	o2net_set_nst_msg_id(&nst, nsw.ns_id);
1128 
1129 	o2net_set_nst_send_time(&nst);
1130 
1131 	/* finally, convert the message header to network byte-order
1132 	 * and send */
1133 	mutex_lock(&sc->sc_send_lock);
1134 	ret = o2net_send_tcp_msg(sc->sc_sock, vec, veclen,
1135 				 sizeof(struct o2net_msg) + caller_bytes);
1136 	mutex_unlock(&sc->sc_send_lock);
1137 	msglog(msg, "sending returned %d\n", ret);
1138 	if (ret < 0) {
1139 		mlog(0, "error returned from o2net_send_tcp_msg=%d\n", ret);
1140 		goto out;
1141 	}
1142 
1143 	/* wait on other node's handler */
1144 	o2net_set_nst_status_time(&nst);
1145 	wait_event(nsw.ns_wq, o2net_nsw_completed(nn, &nsw));
1146 
1147 	o2net_update_send_stats(&nst, sc);
1148 
1149 	/* Note that we avoid overwriting the callers status return
1150 	 * variable if a system error was reported on the other
1151 	 * side. Callers beware. */
1152 	ret = o2net_sys_err_to_errno(nsw.ns_sys_status);
1153 	if (status && !ret)
1154 		*status = nsw.ns_status;
1155 
1156 	mlog(0, "woken, returning system status %d, user status %d\n",
1157 	     ret, nsw.ns_status);
1158 out:
1159 	o2net_debug_del_nst(&nst); /* must be before dropping sc and node */
1160 	if (sc)
1161 		sc_put(sc);
1162 	kfree(vec);
1163 	kfree(msg);
1164 	o2net_complete_nsw(nn, &nsw, 0, 0, 0);
1165 	return ret;
1166 }
1167 EXPORT_SYMBOL_GPL(o2net_send_message_vec);
1168 
1169 int o2net_send_message(u32 msg_type, u32 key, void *data, u32 len,
1170 		       u8 target_node, int *status)
1171 {
1172 	struct kvec vec = {
1173 		.iov_base = data,
1174 		.iov_len = len,
1175 	};
1176 	return o2net_send_message_vec(msg_type, key, &vec, 1,
1177 				      target_node, status);
1178 }
1179 EXPORT_SYMBOL_GPL(o2net_send_message);
1180 
1181 static int o2net_send_status_magic(struct socket *sock, struct o2net_msg *hdr,
1182 				   enum o2net_system_error syserr, int err)
1183 {
1184 	struct kvec vec = {
1185 		.iov_base = hdr,
1186 		.iov_len = sizeof(struct o2net_msg),
1187 	};
1188 
1189 	BUG_ON(syserr >= O2NET_ERR_MAX);
1190 
1191 	/* leave other fields intact from the incoming message, msg_num
1192 	 * in particular */
1193 	hdr->sys_status = cpu_to_be32(syserr);
1194 	hdr->status = cpu_to_be32(err);
1195 	hdr->magic = cpu_to_be16(O2NET_MSG_STATUS_MAGIC);  // twiddle the magic
1196 	hdr->data_len = 0;
1197 
1198 	msglog(hdr, "about to send status magic %d\n", err);
1199 	/* hdr has been in host byteorder this whole time */
1200 	return o2net_send_tcp_msg(sock, &vec, 1, sizeof(struct o2net_msg));
1201 }
1202 
1203 /* this returns -errno if the header was unknown or too large, etc.
1204  * after this is called the buffer us reused for the next message */
1205 static int o2net_process_message(struct o2net_sock_container *sc,
1206 				 struct o2net_msg *hdr)
1207 {
1208 	struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num);
1209 	int ret = 0, handler_status;
1210 	enum  o2net_system_error syserr;
1211 	struct o2net_msg_handler *nmh = NULL;
1212 	void *ret_data = NULL;
1213 
1214 	msglog(hdr, "processing message\n");
1215 
1216 	o2net_sc_postpone_idle(sc);
1217 
1218 	switch(be16_to_cpu(hdr->magic)) {
1219 		case O2NET_MSG_STATUS_MAGIC:
1220 			/* special type for returning message status */
1221 			o2net_complete_nsw(nn, NULL,
1222 					   be32_to_cpu(hdr->msg_num),
1223 					   be32_to_cpu(hdr->sys_status),
1224 					   be32_to_cpu(hdr->status));
1225 			goto out;
1226 		case O2NET_MSG_KEEP_REQ_MAGIC:
1227 			o2net_sendpage(sc, o2net_keep_resp,
1228 				       sizeof(*o2net_keep_resp));
1229 			goto out;
1230 		case O2NET_MSG_KEEP_RESP_MAGIC:
1231 			goto out;
1232 		case O2NET_MSG_MAGIC:
1233 			break;
1234 		default:
1235 			msglog(hdr, "bad magic\n");
1236 			ret = -EINVAL;
1237 			goto out;
1238 			break;
1239 	}
1240 
1241 	/* find a handler for it */
1242 	handler_status = 0;
1243 	nmh = o2net_handler_get(be16_to_cpu(hdr->msg_type),
1244 				be32_to_cpu(hdr->key));
1245 	if (!nmh) {
1246 		mlog(ML_TCP, "couldn't find handler for type %u key %08x\n",
1247 		     be16_to_cpu(hdr->msg_type), be32_to_cpu(hdr->key));
1248 		syserr = O2NET_ERR_NO_HNDLR;
1249 		goto out_respond;
1250 	}
1251 
1252 	syserr = O2NET_ERR_NONE;
1253 
1254 	if (be16_to_cpu(hdr->data_len) > nmh->nh_max_len)
1255 		syserr = O2NET_ERR_OVERFLOW;
1256 
1257 	if (syserr != O2NET_ERR_NONE)
1258 		goto out_respond;
1259 
1260 	o2net_set_func_start_time(sc);
1261 	sc->sc_msg_key = be32_to_cpu(hdr->key);
1262 	sc->sc_msg_type = be16_to_cpu(hdr->msg_type);
1263 	handler_status = (nmh->nh_func)(hdr, sizeof(struct o2net_msg) +
1264 					     be16_to_cpu(hdr->data_len),
1265 					nmh->nh_func_data, &ret_data);
1266 	o2net_set_func_stop_time(sc);
1267 
1268 	o2net_update_recv_stats(sc);
1269 
1270 out_respond:
1271 	/* this destroys the hdr, so don't use it after this */
1272 	mutex_lock(&sc->sc_send_lock);
1273 	ret = o2net_send_status_magic(sc->sc_sock, hdr, syserr,
1274 				      handler_status);
1275 	mutex_unlock(&sc->sc_send_lock);
1276 	hdr = NULL;
1277 	mlog(0, "sending handler status %d, syserr %d returned %d\n",
1278 	     handler_status, syserr, ret);
1279 
1280 	if (nmh) {
1281 		BUG_ON(ret_data != NULL && nmh->nh_post_func == NULL);
1282 		if (nmh->nh_post_func)
1283 			(nmh->nh_post_func)(handler_status, nmh->nh_func_data,
1284 					    ret_data);
1285 	}
1286 
1287 out:
1288 	if (nmh)
1289 		o2net_handler_put(nmh);
1290 	return ret;
1291 }
1292 
1293 static int o2net_check_handshake(struct o2net_sock_container *sc)
1294 {
1295 	struct o2net_handshake *hand = page_address(sc->sc_page);
1296 	struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num);
1297 
1298 	if (hand->protocol_version != cpu_to_be64(O2NET_PROTOCOL_VERSION)) {
1299 		printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " Advertised net "
1300 		       "protocol version %llu but %llu is required. "
1301 		       "Disconnecting.\n", SC_NODEF_ARGS(sc),
1302 		       (unsigned long long)be64_to_cpu(hand->protocol_version),
1303 		       O2NET_PROTOCOL_VERSION);
1304 
1305 		/* don't bother reconnecting if its the wrong version. */
1306 		o2net_ensure_shutdown(nn, sc, -ENOTCONN);
1307 		return -1;
1308 	}
1309 
1310 	/*
1311 	 * Ensure timeouts are consistent with other nodes, otherwise
1312 	 * we can end up with one node thinking that the other must be down,
1313 	 * but isn't. This can ultimately cause corruption.
1314 	 */
1315 	if (be32_to_cpu(hand->o2net_idle_timeout_ms) !=
1316 				o2net_idle_timeout()) {
1317 		printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " uses a network "
1318 		       "idle timeout of %u ms, but we use %u ms locally. "
1319 		       "Disconnecting.\n", SC_NODEF_ARGS(sc),
1320 		       be32_to_cpu(hand->o2net_idle_timeout_ms),
1321 		       o2net_idle_timeout());
1322 		o2net_ensure_shutdown(nn, sc, -ENOTCONN);
1323 		return -1;
1324 	}
1325 
1326 	if (be32_to_cpu(hand->o2net_keepalive_delay_ms) !=
1327 			o2net_keepalive_delay()) {
1328 		printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " uses a keepalive "
1329 		       "delay of %u ms, but we use %u ms locally. "
1330 		       "Disconnecting.\n", SC_NODEF_ARGS(sc),
1331 		       be32_to_cpu(hand->o2net_keepalive_delay_ms),
1332 		       o2net_keepalive_delay());
1333 		o2net_ensure_shutdown(nn, sc, -ENOTCONN);
1334 		return -1;
1335 	}
1336 
1337 	if (be32_to_cpu(hand->o2hb_heartbeat_timeout_ms) !=
1338 			O2HB_MAX_WRITE_TIMEOUT_MS) {
1339 		printk(KERN_NOTICE "o2net: " SC_NODEF_FMT " uses a heartbeat "
1340 		       "timeout of %u ms, but we use %u ms locally. "
1341 		       "Disconnecting.\n", SC_NODEF_ARGS(sc),
1342 		       be32_to_cpu(hand->o2hb_heartbeat_timeout_ms),
1343 		       O2HB_MAX_WRITE_TIMEOUT_MS);
1344 		o2net_ensure_shutdown(nn, sc, -ENOTCONN);
1345 		return -1;
1346 	}
1347 
1348 	sc->sc_handshake_ok = 1;
1349 
1350 	spin_lock(&nn->nn_lock);
1351 	/* set valid and queue the idle timers only if it hasn't been
1352 	 * shut down already */
1353 	if (nn->nn_sc == sc) {
1354 		o2net_sc_reset_idle_timer(sc);
1355 		atomic_set(&nn->nn_timeout, 0);
1356 		o2net_set_nn_state(nn, sc, 1, 0);
1357 	}
1358 	spin_unlock(&nn->nn_lock);
1359 
1360 	/* shift everything up as though it wasn't there */
1361 	sc->sc_page_off -= sizeof(struct o2net_handshake);
1362 	if (sc->sc_page_off)
1363 		memmove(hand, hand + 1, sc->sc_page_off);
1364 
1365 	return 0;
1366 }
1367 
1368 /* this demuxes the queued rx bytes into header or payload bits and calls
1369  * handlers as each full message is read off the socket.  it returns -error,
1370  * == 0 eof, or > 0 for progress made.*/
1371 static int o2net_advance_rx(struct o2net_sock_container *sc)
1372 {
1373 	struct o2net_msg *hdr;
1374 	int ret = 0;
1375 	void *data;
1376 	size_t datalen;
1377 
1378 	sclog(sc, "receiving\n");
1379 	o2net_set_advance_start_time(sc);
1380 
1381 	if (unlikely(sc->sc_handshake_ok == 0)) {
1382 		if(sc->sc_page_off < sizeof(struct o2net_handshake)) {
1383 			data = page_address(sc->sc_page) + sc->sc_page_off;
1384 			datalen = sizeof(struct o2net_handshake) - sc->sc_page_off;
1385 			ret = o2net_recv_tcp_msg(sc->sc_sock, data, datalen);
1386 			if (ret > 0)
1387 				sc->sc_page_off += ret;
1388 		}
1389 
1390 		if (sc->sc_page_off == sizeof(struct o2net_handshake)) {
1391 			o2net_check_handshake(sc);
1392 			if (unlikely(sc->sc_handshake_ok == 0))
1393 				ret = -EPROTO;
1394 		}
1395 		goto out;
1396 	}
1397 
1398 	/* do we need more header? */
1399 	if (sc->sc_page_off < sizeof(struct o2net_msg)) {
1400 		data = page_address(sc->sc_page) + sc->sc_page_off;
1401 		datalen = sizeof(struct o2net_msg) - sc->sc_page_off;
1402 		ret = o2net_recv_tcp_msg(sc->sc_sock, data, datalen);
1403 		if (ret > 0) {
1404 			sc->sc_page_off += ret;
1405 			/* only swab incoming here.. we can
1406 			 * only get here once as we cross from
1407 			 * being under to over */
1408 			if (sc->sc_page_off == sizeof(struct o2net_msg)) {
1409 				hdr = page_address(sc->sc_page);
1410 				if (be16_to_cpu(hdr->data_len) >
1411 				    O2NET_MAX_PAYLOAD_BYTES)
1412 					ret = -EOVERFLOW;
1413 			}
1414 		}
1415 		if (ret <= 0)
1416 			goto out;
1417 	}
1418 
1419 	if (sc->sc_page_off < sizeof(struct o2net_msg)) {
1420 		/* oof, still don't have a header */
1421 		goto out;
1422 	}
1423 
1424 	/* this was swabbed above when we first read it */
1425 	hdr = page_address(sc->sc_page);
1426 
1427 	msglog(hdr, "at page_off %zu\n", sc->sc_page_off);
1428 
1429 	/* do we need more payload? */
1430 	if (sc->sc_page_off - sizeof(struct o2net_msg) < be16_to_cpu(hdr->data_len)) {
1431 		/* need more payload */
1432 		data = page_address(sc->sc_page) + sc->sc_page_off;
1433 		datalen = (sizeof(struct o2net_msg) + be16_to_cpu(hdr->data_len)) -
1434 			  sc->sc_page_off;
1435 		ret = o2net_recv_tcp_msg(sc->sc_sock, data, datalen);
1436 		if (ret > 0)
1437 			sc->sc_page_off += ret;
1438 		if (ret <= 0)
1439 			goto out;
1440 	}
1441 
1442 	if (sc->sc_page_off - sizeof(struct o2net_msg) == be16_to_cpu(hdr->data_len)) {
1443 		/* we can only get here once, the first time we read
1444 		 * the payload.. so set ret to progress if the handler
1445 		 * works out. after calling this the message is toast */
1446 		ret = o2net_process_message(sc, hdr);
1447 		if (ret == 0)
1448 			ret = 1;
1449 		sc->sc_page_off = 0;
1450 	}
1451 
1452 out:
1453 	sclog(sc, "ret = %d\n", ret);
1454 	o2net_set_advance_stop_time(sc);
1455 	return ret;
1456 }
1457 
1458 /* this work func is triggerd by data ready.  it reads until it can read no
1459  * more.  it interprets 0, eof, as fatal.  if data_ready hits while we're doing
1460  * our work the work struct will be marked and we'll be called again. */
1461 static void o2net_rx_until_empty(struct work_struct *work)
1462 {
1463 	struct o2net_sock_container *sc =
1464 		container_of(work, struct o2net_sock_container, sc_rx_work);
1465 	int ret;
1466 
1467 	do {
1468 		ret = o2net_advance_rx(sc);
1469 	} while (ret > 0);
1470 
1471 	if (ret <= 0 && ret != -EAGAIN) {
1472 		struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num);
1473 		sclog(sc, "saw error %d, closing\n", ret);
1474 		/* not permanent so read failed handshake can retry */
1475 		o2net_ensure_shutdown(nn, sc, 0);
1476 	}
1477 
1478 	sc_put(sc);
1479 }
1480 
1481 static int o2net_set_nodelay(struct socket *sock)
1482 {
1483 	int ret, val = 1;
1484 	mm_segment_t oldfs;
1485 
1486 	oldfs = get_fs();
1487 	set_fs(KERNEL_DS);
1488 
1489 	/*
1490 	 * Dear unsuspecting programmer,
1491 	 *
1492 	 * Don't use sock_setsockopt() for SOL_TCP.  It doesn't check its level
1493 	 * argument and assumes SOL_SOCKET so, say, your TCP_NODELAY will
1494 	 * silently turn into SO_DEBUG.
1495 	 *
1496 	 * Yours,
1497 	 * Keeper of hilariously fragile interfaces.
1498 	 */
1499 	ret = sock->ops->setsockopt(sock, SOL_TCP, TCP_NODELAY,
1500 				    (char __user *)&val, sizeof(val));
1501 
1502 	set_fs(oldfs);
1503 	return ret;
1504 }
1505 
1506 static void o2net_initialize_handshake(void)
1507 {
1508 	o2net_hand->o2hb_heartbeat_timeout_ms = cpu_to_be32(
1509 		O2HB_MAX_WRITE_TIMEOUT_MS);
1510 	o2net_hand->o2net_idle_timeout_ms = cpu_to_be32(o2net_idle_timeout());
1511 	o2net_hand->o2net_keepalive_delay_ms = cpu_to_be32(
1512 		o2net_keepalive_delay());
1513 	o2net_hand->o2net_reconnect_delay_ms = cpu_to_be32(
1514 		o2net_reconnect_delay());
1515 }
1516 
1517 /* ------------------------------------------------------------ */
1518 
1519 /* called when a connect completes and after a sock is accepted.  the
1520  * rx path will see the response and mark the sc valid */
1521 static void o2net_sc_connect_completed(struct work_struct *work)
1522 {
1523 	struct o2net_sock_container *sc =
1524 		container_of(work, struct o2net_sock_container,
1525 			     sc_connect_work);
1526 
1527 	mlog(ML_MSG, "sc sending handshake with ver %llu id %llx\n",
1528               (unsigned long long)O2NET_PROTOCOL_VERSION,
1529 	      (unsigned long long)be64_to_cpu(o2net_hand->connector_id));
1530 
1531 	o2net_initialize_handshake();
1532 	o2net_sendpage(sc, o2net_hand, sizeof(*o2net_hand));
1533 	sc_put(sc);
1534 }
1535 
1536 /* this is called as a work_struct func. */
1537 static void o2net_sc_send_keep_req(struct work_struct *work)
1538 {
1539 	struct o2net_sock_container *sc =
1540 		container_of(work, struct o2net_sock_container,
1541 			     sc_keepalive_work.work);
1542 
1543 	o2net_sendpage(sc, o2net_keep_req, sizeof(*o2net_keep_req));
1544 	sc_put(sc);
1545 }
1546 
1547 /* socket shutdown does a del_timer_sync against this as it tears down.
1548  * we can't start this timer until we've got to the point in sc buildup
1549  * where shutdown is going to be involved */
1550 static void o2net_idle_timer(unsigned long data)
1551 {
1552 	struct o2net_sock_container *sc = (struct o2net_sock_container *)data;
1553 	struct o2net_node *nn = o2net_nn_from_num(sc->sc_node->nd_num);
1554 #ifdef CONFIG_DEBUG_FS
1555 	unsigned long msecs = ktime_to_ms(ktime_get()) -
1556 		ktime_to_ms(sc->sc_tv_timer);
1557 #else
1558 	unsigned long msecs = o2net_idle_timeout();
1559 #endif
1560 
1561 	printk(KERN_NOTICE "o2net: Connection to " SC_NODEF_FMT " has been "
1562 	       "idle for %lu.%lu secs, shutting it down.\n", SC_NODEF_ARGS(sc),
1563 	       msecs / 1000, msecs % 1000);
1564 
1565 	/*
1566 	 * Initialize the nn_timeout so that the next connection attempt
1567 	 * will continue in o2net_start_connect.
1568 	 */
1569 	atomic_set(&nn->nn_timeout, 1);
1570 
1571 	o2net_sc_queue_work(sc, &sc->sc_shutdown_work);
1572 }
1573 
1574 static void o2net_sc_reset_idle_timer(struct o2net_sock_container *sc)
1575 {
1576 	o2net_sc_cancel_delayed_work(sc, &sc->sc_keepalive_work);
1577 	o2net_sc_queue_delayed_work(sc, &sc->sc_keepalive_work,
1578 		      msecs_to_jiffies(o2net_keepalive_delay()));
1579 	o2net_set_sock_timer(sc);
1580 	mod_timer(&sc->sc_idle_timeout,
1581 	       jiffies + msecs_to_jiffies(o2net_idle_timeout()));
1582 }
1583 
1584 static void o2net_sc_postpone_idle(struct o2net_sock_container *sc)
1585 {
1586 	/* Only push out an existing timer */
1587 	if (timer_pending(&sc->sc_idle_timeout))
1588 		o2net_sc_reset_idle_timer(sc);
1589 }
1590 
1591 /* this work func is kicked whenever a path sets the nn state which doesn't
1592  * have valid set.  This includes seeing hb come up, losing a connection,
1593  * having a connect attempt fail, etc. This centralizes the logic which decides
1594  * if a connect attempt should be made or if we should give up and all future
1595  * transmit attempts should fail */
1596 static void o2net_start_connect(struct work_struct *work)
1597 {
1598 	struct o2net_node *nn =
1599 		container_of(work, struct o2net_node, nn_connect_work.work);
1600 	struct o2net_sock_container *sc = NULL;
1601 	struct o2nm_node *node = NULL, *mynode = NULL;
1602 	struct socket *sock = NULL;
1603 	struct sockaddr_in myaddr = {0, }, remoteaddr = {0, };
1604 	int ret = 0, stop;
1605 	unsigned int timeout;
1606 
1607 	/* if we're greater we initiate tx, otherwise we accept */
1608 	if (o2nm_this_node() <= o2net_num_from_nn(nn))
1609 		goto out;
1610 
1611 	/* watch for racing with tearing a node down */
1612 	node = o2nm_get_node_by_num(o2net_num_from_nn(nn));
1613 	if (node == NULL) {
1614 		ret = 0;
1615 		goto out;
1616 	}
1617 
1618 	mynode = o2nm_get_node_by_num(o2nm_this_node());
1619 	if (mynode == NULL) {
1620 		ret = 0;
1621 		goto out;
1622 	}
1623 
1624 	spin_lock(&nn->nn_lock);
1625 	/*
1626 	 * see if we already have one pending or have given up.
1627 	 * For nn_timeout, it is set when we close the connection
1628 	 * because of the idle time out. So it means that we have
1629 	 * at least connected to that node successfully once,
1630 	 * now try to connect to it again.
1631 	 */
1632 	timeout = atomic_read(&nn->nn_timeout);
1633 	stop = (nn->nn_sc ||
1634 		(nn->nn_persistent_error &&
1635 		(nn->nn_persistent_error != -ENOTCONN || timeout == 0)));
1636 	spin_unlock(&nn->nn_lock);
1637 	if (stop)
1638 		goto out;
1639 
1640 	nn->nn_last_connect_attempt = jiffies;
1641 
1642 	sc = sc_alloc(node);
1643 	if (sc == NULL) {
1644 		mlog(0, "couldn't allocate sc\n");
1645 		ret = -ENOMEM;
1646 		goto out;
1647 	}
1648 
1649 	ret = sock_create(PF_INET, SOCK_STREAM, IPPROTO_TCP, &sock);
1650 	if (ret < 0) {
1651 		mlog(0, "can't create socket: %d\n", ret);
1652 		goto out;
1653 	}
1654 	sc->sc_sock = sock; /* freed by sc_kref_release */
1655 
1656 	sock->sk->sk_allocation = GFP_ATOMIC;
1657 
1658 	myaddr.sin_family = AF_INET;
1659 	myaddr.sin_addr.s_addr = mynode->nd_ipv4_address;
1660 	myaddr.sin_port = htons(0); /* any port */
1661 
1662 	ret = sock->ops->bind(sock, (struct sockaddr *)&myaddr,
1663 			      sizeof(myaddr));
1664 	if (ret) {
1665 		mlog(ML_ERROR, "bind failed with %d at address %pI4\n",
1666 		     ret, &mynode->nd_ipv4_address);
1667 		goto out;
1668 	}
1669 
1670 	ret = o2net_set_nodelay(sc->sc_sock);
1671 	if (ret) {
1672 		mlog(ML_ERROR, "setting TCP_NODELAY failed with %d\n", ret);
1673 		goto out;
1674 	}
1675 
1676 	o2net_register_callbacks(sc->sc_sock->sk, sc);
1677 
1678 	spin_lock(&nn->nn_lock);
1679 	/* handshake completion will set nn->nn_sc_valid */
1680 	o2net_set_nn_state(nn, sc, 0, 0);
1681 	spin_unlock(&nn->nn_lock);
1682 
1683 	remoteaddr.sin_family = AF_INET;
1684 	remoteaddr.sin_addr.s_addr = node->nd_ipv4_address;
1685 	remoteaddr.sin_port = node->nd_ipv4_port;
1686 
1687 	ret = sc->sc_sock->ops->connect(sc->sc_sock,
1688 					(struct sockaddr *)&remoteaddr,
1689 					sizeof(remoteaddr),
1690 					O_NONBLOCK);
1691 	if (ret == -EINPROGRESS)
1692 		ret = 0;
1693 
1694 out:
1695 	if (ret) {
1696 		printk(KERN_NOTICE "o2net: Connect attempt to " SC_NODEF_FMT
1697 		       " failed with errno %d\n", SC_NODEF_ARGS(sc), ret);
1698 		/* 0 err so that another will be queued and attempted
1699 		 * from set_nn_state */
1700 		if (sc)
1701 			o2net_ensure_shutdown(nn, sc, 0);
1702 	}
1703 	if (sc)
1704 		sc_put(sc);
1705 	if (node)
1706 		o2nm_node_put(node);
1707 	if (mynode)
1708 		o2nm_node_put(mynode);
1709 
1710 	return;
1711 }
1712 
1713 static void o2net_connect_expired(struct work_struct *work)
1714 {
1715 	struct o2net_node *nn =
1716 		container_of(work, struct o2net_node, nn_connect_expired.work);
1717 
1718 	spin_lock(&nn->nn_lock);
1719 	if (!nn->nn_sc_valid) {
1720 		printk(KERN_NOTICE "o2net: No connection established with "
1721 		       "node %u after %u.%u seconds, giving up.\n",
1722 		     o2net_num_from_nn(nn),
1723 		     o2net_idle_timeout() / 1000,
1724 		     o2net_idle_timeout() % 1000);
1725 
1726 		o2net_set_nn_state(nn, NULL, 0, -ENOTCONN);
1727 	}
1728 	spin_unlock(&nn->nn_lock);
1729 }
1730 
1731 static void o2net_still_up(struct work_struct *work)
1732 {
1733 	struct o2net_node *nn =
1734 		container_of(work, struct o2net_node, nn_still_up.work);
1735 
1736 	o2quo_hb_still_up(o2net_num_from_nn(nn));
1737 }
1738 
1739 /* ------------------------------------------------------------ */
1740 
1741 void o2net_disconnect_node(struct o2nm_node *node)
1742 {
1743 	struct o2net_node *nn = o2net_nn_from_num(node->nd_num);
1744 
1745 	/* don't reconnect until it's heartbeating again */
1746 	spin_lock(&nn->nn_lock);
1747 	atomic_set(&nn->nn_timeout, 0);
1748 	o2net_set_nn_state(nn, NULL, 0, -ENOTCONN);
1749 	spin_unlock(&nn->nn_lock);
1750 
1751 	if (o2net_wq) {
1752 		cancel_delayed_work(&nn->nn_connect_expired);
1753 		cancel_delayed_work(&nn->nn_connect_work);
1754 		cancel_delayed_work(&nn->nn_still_up);
1755 		flush_workqueue(o2net_wq);
1756 	}
1757 }
1758 
1759 static void o2net_hb_node_down_cb(struct o2nm_node *node, int node_num,
1760 				  void *data)
1761 {
1762 	o2quo_hb_down(node_num);
1763 
1764 	if (!node)
1765 		return;
1766 
1767 	if (node_num != o2nm_this_node())
1768 		o2net_disconnect_node(node);
1769 
1770 	BUG_ON(atomic_read(&o2net_connected_peers) < 0);
1771 }
1772 
1773 static void o2net_hb_node_up_cb(struct o2nm_node *node, int node_num,
1774 				void *data)
1775 {
1776 	struct o2net_node *nn = o2net_nn_from_num(node_num);
1777 
1778 	o2quo_hb_up(node_num);
1779 
1780 	BUG_ON(!node);
1781 
1782 	/* ensure an immediate connect attempt */
1783 	nn->nn_last_connect_attempt = jiffies -
1784 		(msecs_to_jiffies(o2net_reconnect_delay()) + 1);
1785 
1786 	if (node_num != o2nm_this_node()) {
1787 		/* believe it or not, accept and node hearbeating testing
1788 		 * can succeed for this node before we got here.. so
1789 		 * only use set_nn_state to clear the persistent error
1790 		 * if that hasn't already happened */
1791 		spin_lock(&nn->nn_lock);
1792 		atomic_set(&nn->nn_timeout, 0);
1793 		if (nn->nn_persistent_error)
1794 			o2net_set_nn_state(nn, NULL, 0, 0);
1795 		spin_unlock(&nn->nn_lock);
1796 	}
1797 }
1798 
1799 void o2net_unregister_hb_callbacks(void)
1800 {
1801 	o2hb_unregister_callback(NULL, &o2net_hb_up);
1802 	o2hb_unregister_callback(NULL, &o2net_hb_down);
1803 }
1804 
1805 int o2net_register_hb_callbacks(void)
1806 {
1807 	int ret;
1808 
1809 	o2hb_setup_callback(&o2net_hb_down, O2HB_NODE_DOWN_CB,
1810 			    o2net_hb_node_down_cb, NULL, O2NET_HB_PRI);
1811 	o2hb_setup_callback(&o2net_hb_up, O2HB_NODE_UP_CB,
1812 			    o2net_hb_node_up_cb, NULL, O2NET_HB_PRI);
1813 
1814 	ret = o2hb_register_callback(NULL, &o2net_hb_up);
1815 	if (ret == 0)
1816 		ret = o2hb_register_callback(NULL, &o2net_hb_down);
1817 
1818 	if (ret)
1819 		o2net_unregister_hb_callbacks();
1820 
1821 	return ret;
1822 }
1823 
1824 /* ------------------------------------------------------------ */
1825 
1826 static int o2net_accept_one(struct socket *sock)
1827 {
1828 	int ret, slen;
1829 	struct sockaddr_in sin;
1830 	struct socket *new_sock = NULL;
1831 	struct o2nm_node *node = NULL;
1832 	struct o2nm_node *local_node = NULL;
1833 	struct o2net_sock_container *sc = NULL;
1834 	struct o2net_node *nn;
1835 
1836 	BUG_ON(sock == NULL);
1837 	ret = sock_create_lite(sock->sk->sk_family, sock->sk->sk_type,
1838 			       sock->sk->sk_protocol, &new_sock);
1839 	if (ret)
1840 		goto out;
1841 
1842 	new_sock->type = sock->type;
1843 	new_sock->ops = sock->ops;
1844 	ret = sock->ops->accept(sock, new_sock, O_NONBLOCK);
1845 	if (ret < 0)
1846 		goto out;
1847 
1848 	new_sock->sk->sk_allocation = GFP_ATOMIC;
1849 
1850 	ret = o2net_set_nodelay(new_sock);
1851 	if (ret) {
1852 		mlog(ML_ERROR, "setting TCP_NODELAY failed with %d\n", ret);
1853 		goto out;
1854 	}
1855 
1856 	slen = sizeof(sin);
1857 	ret = new_sock->ops->getname(new_sock, (struct sockaddr *) &sin,
1858 				       &slen, 1);
1859 	if (ret < 0)
1860 		goto out;
1861 
1862 	node = o2nm_get_node_by_ip(sin.sin_addr.s_addr);
1863 	if (node == NULL) {
1864 		printk(KERN_NOTICE "o2net: Attempt to connect from unknown "
1865 		       "node at %pI4:%d\n", &sin.sin_addr.s_addr,
1866 		       ntohs(sin.sin_port));
1867 		ret = -EINVAL;
1868 		goto out;
1869 	}
1870 
1871 	if (o2nm_this_node() >= node->nd_num) {
1872 		local_node = o2nm_get_node_by_num(o2nm_this_node());
1873 		printk(KERN_NOTICE "o2net: Unexpected connect attempt seen "
1874 		       "at node '%s' (%u, %pI4:%d) from node '%s' (%u, "
1875 		       "%pI4:%d)\n", local_node->nd_name, local_node->nd_num,
1876 		       &(local_node->nd_ipv4_address),
1877 		       ntohs(local_node->nd_ipv4_port), node->nd_name,
1878 		       node->nd_num, &sin.sin_addr.s_addr, ntohs(sin.sin_port));
1879 		ret = -EINVAL;
1880 		goto out;
1881 	}
1882 
1883 	/* this happens all the time when the other node sees our heartbeat
1884 	 * and tries to connect before we see their heartbeat */
1885 	if (!o2hb_check_node_heartbeating_from_callback(node->nd_num)) {
1886 		mlog(ML_CONN, "attempt to connect from node '%s' at "
1887 		     "%pI4:%d but it isn't heartbeating\n",
1888 		     node->nd_name, &sin.sin_addr.s_addr,
1889 		     ntohs(sin.sin_port));
1890 		ret = -EINVAL;
1891 		goto out;
1892 	}
1893 
1894 	nn = o2net_nn_from_num(node->nd_num);
1895 
1896 	spin_lock(&nn->nn_lock);
1897 	if (nn->nn_sc)
1898 		ret = -EBUSY;
1899 	else
1900 		ret = 0;
1901 	spin_unlock(&nn->nn_lock);
1902 	if (ret) {
1903 		printk(KERN_NOTICE "o2net: Attempt to connect from node '%s' "
1904 		       "at %pI4:%d but it already has an open connection\n",
1905 		       node->nd_name, &sin.sin_addr.s_addr,
1906 		       ntohs(sin.sin_port));
1907 		goto out;
1908 	}
1909 
1910 	sc = sc_alloc(node);
1911 	if (sc == NULL) {
1912 		ret = -ENOMEM;
1913 		goto out;
1914 	}
1915 
1916 	sc->sc_sock = new_sock;
1917 	new_sock = NULL;
1918 
1919 	spin_lock(&nn->nn_lock);
1920 	atomic_set(&nn->nn_timeout, 0);
1921 	o2net_set_nn_state(nn, sc, 0, 0);
1922 	spin_unlock(&nn->nn_lock);
1923 
1924 	o2net_register_callbacks(sc->sc_sock->sk, sc);
1925 	o2net_sc_queue_work(sc, &sc->sc_rx_work);
1926 
1927 	o2net_initialize_handshake();
1928 	o2net_sendpage(sc, o2net_hand, sizeof(*o2net_hand));
1929 
1930 out:
1931 	if (new_sock)
1932 		sock_release(new_sock);
1933 	if (node)
1934 		o2nm_node_put(node);
1935 	if (local_node)
1936 		o2nm_node_put(local_node);
1937 	if (sc)
1938 		sc_put(sc);
1939 	return ret;
1940 }
1941 
1942 static void o2net_accept_many(struct work_struct *work)
1943 {
1944 	struct socket *sock = o2net_listen_sock;
1945 	while (o2net_accept_one(sock) == 0)
1946 		cond_resched();
1947 }
1948 
1949 static void o2net_listen_data_ready(struct sock *sk, int bytes)
1950 {
1951 	void (*ready)(struct sock *sk, int bytes);
1952 
1953 	read_lock(&sk->sk_callback_lock);
1954 	ready = sk->sk_user_data;
1955 	if (ready == NULL) { /* check for teardown race */
1956 		ready = sk->sk_data_ready;
1957 		goto out;
1958 	}
1959 
1960 	/* ->sk_data_ready is also called for a newly established child socket
1961 	 * before it has been accepted and the acceptor has set up their
1962 	 * data_ready.. we only want to queue listen work for our listening
1963 	 * socket */
1964 	if (sk->sk_state == TCP_LISTEN) {
1965 		mlog(ML_TCP, "bytes: %d\n", bytes);
1966 		queue_work(o2net_wq, &o2net_listen_work);
1967 	}
1968 
1969 out:
1970 	read_unlock(&sk->sk_callback_lock);
1971 	ready(sk, bytes);
1972 }
1973 
1974 static int o2net_open_listening_sock(__be32 addr, __be16 port)
1975 {
1976 	struct socket *sock = NULL;
1977 	int ret;
1978 	struct sockaddr_in sin = {
1979 		.sin_family = PF_INET,
1980 		.sin_addr = { .s_addr = addr },
1981 		.sin_port = port,
1982 	};
1983 
1984 	ret = sock_create(PF_INET, SOCK_STREAM, IPPROTO_TCP, &sock);
1985 	if (ret < 0) {
1986 		printk(KERN_ERR "o2net: Error %d while creating socket\n", ret);
1987 		goto out;
1988 	}
1989 
1990 	sock->sk->sk_allocation = GFP_ATOMIC;
1991 
1992 	write_lock_bh(&sock->sk->sk_callback_lock);
1993 	sock->sk->sk_user_data = sock->sk->sk_data_ready;
1994 	sock->sk->sk_data_ready = o2net_listen_data_ready;
1995 	write_unlock_bh(&sock->sk->sk_callback_lock);
1996 
1997 	o2net_listen_sock = sock;
1998 	INIT_WORK(&o2net_listen_work, o2net_accept_many);
1999 
2000 	sock->sk->sk_reuse = SK_CAN_REUSE;
2001 	ret = sock->ops->bind(sock, (struct sockaddr *)&sin, sizeof(sin));
2002 	if (ret < 0) {
2003 		printk(KERN_ERR "o2net: Error %d while binding socket at "
2004 		       "%pI4:%u\n", ret, &addr, ntohs(port));
2005 		goto out;
2006 	}
2007 
2008 	ret = sock->ops->listen(sock, 64);
2009 	if (ret < 0)
2010 		printk(KERN_ERR "o2net: Error %d while listening on %pI4:%u\n",
2011 		       ret, &addr, ntohs(port));
2012 
2013 out:
2014 	if (ret) {
2015 		o2net_listen_sock = NULL;
2016 		if (sock)
2017 			sock_release(sock);
2018 	}
2019 	return ret;
2020 }
2021 
2022 /*
2023  * called from node manager when we should bring up our network listening
2024  * socket.  node manager handles all the serialization to only call this
2025  * once and to match it with o2net_stop_listening().  note,
2026  * o2nm_this_node() doesn't work yet as we're being called while it
2027  * is being set up.
2028  */
2029 int o2net_start_listening(struct o2nm_node *node)
2030 {
2031 	int ret = 0;
2032 
2033 	BUG_ON(o2net_wq != NULL);
2034 	BUG_ON(o2net_listen_sock != NULL);
2035 
2036 	mlog(ML_KTHREAD, "starting o2net thread...\n");
2037 	o2net_wq = create_singlethread_workqueue("o2net");
2038 	if (o2net_wq == NULL) {
2039 		mlog(ML_ERROR, "unable to launch o2net thread\n");
2040 		return -ENOMEM; /* ? */
2041 	}
2042 
2043 	ret = o2net_open_listening_sock(node->nd_ipv4_address,
2044 					node->nd_ipv4_port);
2045 	if (ret) {
2046 		destroy_workqueue(o2net_wq);
2047 		o2net_wq = NULL;
2048 	} else
2049 		o2quo_conn_up(node->nd_num);
2050 
2051 	return ret;
2052 }
2053 
2054 /* again, o2nm_this_node() doesn't work here as we're involved in
2055  * tearing it down */
2056 void o2net_stop_listening(struct o2nm_node *node)
2057 {
2058 	struct socket *sock = o2net_listen_sock;
2059 	size_t i;
2060 
2061 	BUG_ON(o2net_wq == NULL);
2062 	BUG_ON(o2net_listen_sock == NULL);
2063 
2064 	/* stop the listening socket from generating work */
2065 	write_lock_bh(&sock->sk->sk_callback_lock);
2066 	sock->sk->sk_data_ready = sock->sk->sk_user_data;
2067 	sock->sk->sk_user_data = NULL;
2068 	write_unlock_bh(&sock->sk->sk_callback_lock);
2069 
2070 	for (i = 0; i < ARRAY_SIZE(o2net_nodes); i++) {
2071 		struct o2nm_node *node = o2nm_get_node_by_num(i);
2072 		if (node) {
2073 			o2net_disconnect_node(node);
2074 			o2nm_node_put(node);
2075 		}
2076 	}
2077 
2078 	/* finish all work and tear down the work queue */
2079 	mlog(ML_KTHREAD, "waiting for o2net thread to exit....\n");
2080 	destroy_workqueue(o2net_wq);
2081 	o2net_wq = NULL;
2082 
2083 	sock_release(o2net_listen_sock);
2084 	o2net_listen_sock = NULL;
2085 
2086 	o2quo_conn_err(node->nd_num);
2087 }
2088 
2089 /* ------------------------------------------------------------ */
2090 
2091 int o2net_init(void)
2092 {
2093 	unsigned long i;
2094 
2095 	o2quo_init();
2096 
2097 	if (o2net_debugfs_init())
2098 		return -ENOMEM;
2099 
2100 	o2net_hand = kzalloc(sizeof(struct o2net_handshake), GFP_KERNEL);
2101 	o2net_keep_req = kzalloc(sizeof(struct o2net_msg), GFP_KERNEL);
2102 	o2net_keep_resp = kzalloc(sizeof(struct o2net_msg), GFP_KERNEL);
2103 	if (!o2net_hand || !o2net_keep_req || !o2net_keep_resp) {
2104 		kfree(o2net_hand);
2105 		kfree(o2net_keep_req);
2106 		kfree(o2net_keep_resp);
2107 		return -ENOMEM;
2108 	}
2109 
2110 	o2net_hand->protocol_version = cpu_to_be64(O2NET_PROTOCOL_VERSION);
2111 	o2net_hand->connector_id = cpu_to_be64(1);
2112 
2113 	o2net_keep_req->magic = cpu_to_be16(O2NET_MSG_KEEP_REQ_MAGIC);
2114 	o2net_keep_resp->magic = cpu_to_be16(O2NET_MSG_KEEP_RESP_MAGIC);
2115 
2116 	for (i = 0; i < ARRAY_SIZE(o2net_nodes); i++) {
2117 		struct o2net_node *nn = o2net_nn_from_num(i);
2118 
2119 		atomic_set(&nn->nn_timeout, 0);
2120 		spin_lock_init(&nn->nn_lock);
2121 		INIT_DELAYED_WORK(&nn->nn_connect_work, o2net_start_connect);
2122 		INIT_DELAYED_WORK(&nn->nn_connect_expired,
2123 				  o2net_connect_expired);
2124 		INIT_DELAYED_WORK(&nn->nn_still_up, o2net_still_up);
2125 		/* until we see hb from a node we'll return einval */
2126 		nn->nn_persistent_error = -ENOTCONN;
2127 		init_waitqueue_head(&nn->nn_sc_wq);
2128 		idr_init(&nn->nn_status_idr);
2129 		INIT_LIST_HEAD(&nn->nn_status_list);
2130 	}
2131 
2132 	return 0;
2133 }
2134 
2135 void o2net_exit(void)
2136 {
2137 	o2quo_exit();
2138 	kfree(o2net_hand);
2139 	kfree(o2net_keep_req);
2140 	kfree(o2net_keep_resp);
2141 	o2net_debugfs_exit();
2142 }
2143