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LU-11470 lnet: drop all rule
[fs/lustre-release.git] / lnet / lnet / lib-msg.c
1 /*
2  * GPL HEADER START
3  *
4  * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5  *
6  * This program is free software; you can redistribute it and/or modify
7  * it under the terms of the GNU General Public License version 2 only,
8  * as published by the Free Software Foundation.
9  *
10  * This program is distributed in the hope that it will be useful, but
11  * WITHOUT ANY WARRANTY; without even the implied warranty of
12  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
13  * General Public License version 2 for more details (a copy is included
14  * in the LICENSE file that accompanied this code).
15  *
16  * You should have received a copy of the GNU General Public License
17  * version 2 along with this program; If not, see
18  * http://www.gnu.org/licenses/gpl-2.0.html
19  *
20  * GPL HEADER END
21  */
22 /*
23  * Copyright (c) 2003, 2010, Oracle and/or its affiliates. All rights reserved.
24  * Use is subject to license terms.
25  *
26  * Copyright (c) 2012, 2017, Intel Corporation.
27  */
28 /*
29  * This file is part of Lustre, http://www.lustre.org/
30  * Lustre is a trademark of Sun Microsystems, Inc.
31  *
32  * lnet/lnet/lib-msg.c
33  *
34  * Message decoding, parsing and finalizing routines
35  */
36
37 #define DEBUG_SUBSYSTEM S_LNET
38
39 #include <lnet/lib-lnet.h>
40
41 void
42 lnet_build_unlink_event(struct lnet_libmd *md, struct lnet_event *ev)
43 {
44         ENTRY;
45
46         memset(ev, 0, sizeof(*ev));
47
48         ev->status   = 0;
49         ev->unlinked = 1;
50         ev->type     = LNET_EVENT_UNLINK;
51         lnet_md_deconstruct(md, &ev->md);
52         lnet_md2handle(&ev->md_handle, md);
53         EXIT;
54 }
55
56 /*
57  * Don't need any lock, must be called after lnet_commit_md
58  */
59 void
60 lnet_build_msg_event(struct lnet_msg *msg, enum lnet_event_kind ev_type)
61 {
62         struct lnet_hdr *hdr = &msg->msg_hdr;
63         struct lnet_event *ev = &msg->msg_ev;
64
65         LASSERT(!msg->msg_routing);
66
67         ev->type = ev_type;
68         ev->msg_type = msg->msg_type;
69
70         if (ev_type == LNET_EVENT_SEND) {
71                 /* event for active message */
72                 ev->target.nid    = le64_to_cpu(hdr->dest_nid);
73                 ev->target.pid    = le32_to_cpu(hdr->dest_pid);
74                 ev->initiator.nid = LNET_NID_ANY;
75                 ev->initiator.pid = the_lnet.ln_pid;
76                 ev->source.nid    = LNET_NID_ANY;
77                 ev->source.pid    = the_lnet.ln_pid;
78                 ev->sender        = LNET_NID_ANY;
79         } else {
80                 /* event for passive message */
81                 ev->target.pid    = hdr->dest_pid;
82                 ev->target.nid    = hdr->dest_nid;
83                 ev->initiator.pid = hdr->src_pid;
84                 /* Multi-Rail: resolve src_nid to "primary" peer NID */
85                 ev->initiator.nid = msg->msg_initiator;
86                 /* Multi-Rail: track source NID. */
87                 ev->source.pid    = hdr->src_pid;
88                 ev->source.nid    = hdr->src_nid;
89                 ev->rlength       = hdr->payload_length;
90                 ev->sender        = msg->msg_from;
91                 ev->mlength       = msg->msg_wanted;
92                 ev->offset        = msg->msg_offset;
93         }
94
95         switch (ev_type) {
96         default:
97                 LBUG();
98
99         case LNET_EVENT_PUT: /* passive PUT */
100                 ev->pt_index   = hdr->msg.put.ptl_index;
101                 ev->match_bits = hdr->msg.put.match_bits;
102                 ev->hdr_data   = hdr->msg.put.hdr_data;
103                 return;
104
105         case LNET_EVENT_GET: /* passive GET */
106                 ev->pt_index   = hdr->msg.get.ptl_index;
107                 ev->match_bits = hdr->msg.get.match_bits;
108                 ev->hdr_data   = 0;
109                 return;
110
111         case LNET_EVENT_ACK: /* ACK */
112                 ev->match_bits = hdr->msg.ack.match_bits;
113                 ev->mlength    = hdr->msg.ack.mlength;
114                 return;
115
116         case LNET_EVENT_REPLY: /* REPLY */
117                 return;
118
119         case LNET_EVENT_SEND: /* active message */
120                 if (msg->msg_type == LNET_MSG_PUT) {
121                         ev->pt_index   = le32_to_cpu(hdr->msg.put.ptl_index);
122                         ev->match_bits = le64_to_cpu(hdr->msg.put.match_bits);
123                         ev->offset     = le32_to_cpu(hdr->msg.put.offset);
124                         ev->mlength    =
125                         ev->rlength    = le32_to_cpu(hdr->payload_length);
126                         ev->hdr_data   = le64_to_cpu(hdr->msg.put.hdr_data);
127
128                 } else {
129                         LASSERT(msg->msg_type == LNET_MSG_GET);
130                         ev->pt_index   = le32_to_cpu(hdr->msg.get.ptl_index);
131                         ev->match_bits = le64_to_cpu(hdr->msg.get.match_bits);
132                         ev->mlength    =
133                         ev->rlength    = le32_to_cpu(hdr->msg.get.sink_length);
134                         ev->offset     = le32_to_cpu(hdr->msg.get.src_offset);
135                         ev->hdr_data   = 0;
136                 }
137                 return;
138         }
139 }
140
141 void
142 lnet_msg_commit(struct lnet_msg *msg, int cpt)
143 {
144         struct lnet_msg_container *container = the_lnet.ln_msg_containers[cpt];
145         struct lnet_counters_common *common;
146         s64 timeout_ns;
147
148         /* set the message deadline */
149         timeout_ns = lnet_transaction_timeout * NSEC_PER_SEC;
150         msg->msg_deadline = ktime_add_ns(ktime_get(), timeout_ns);
151
152         /* routed message can be committed for both receiving and sending */
153         LASSERT(!msg->msg_tx_committed);
154
155         if (msg->msg_sending) {
156                 LASSERT(!msg->msg_receiving);
157                 msg->msg_tx_cpt = cpt;
158                 msg->msg_tx_committed = 1;
159                 if (msg->msg_rx_committed) { /* routed message REPLY */
160                         LASSERT(msg->msg_onactivelist);
161                         return;
162                 }
163         } else {
164                 LASSERT(!msg->msg_sending);
165                 msg->msg_rx_cpt = cpt;
166                 msg->msg_rx_committed = 1;
167         }
168
169         LASSERT(!msg->msg_onactivelist);
170
171         msg->msg_onactivelist = 1;
172         list_add_tail(&msg->msg_activelist, &container->msc_active);
173
174         common = &the_lnet.ln_counters[cpt]->lct_common;
175         common->lcc_msgs_alloc++;
176         if (common->lcc_msgs_alloc > common->lcc_msgs_max)
177                 common->lcc_msgs_max = common->lcc_msgs_alloc;
178 }
179
180 static void
181 lnet_msg_decommit_tx(struct lnet_msg *msg, int status)
182 {
183         struct lnet_counters_common *common;
184         struct lnet_event *ev = &msg->msg_ev;
185
186         LASSERT(msg->msg_tx_committed);
187         if (status != 0)
188                 goto out;
189
190         common = &(the_lnet.ln_counters[msg->msg_tx_cpt]->lct_common);
191         switch (ev->type) {
192         default: /* routed message */
193                 LASSERT(msg->msg_routing);
194                 LASSERT(msg->msg_rx_committed);
195                 LASSERT(ev->type == 0);
196
197                 common->lcc_route_length += msg->msg_len;
198                 common->lcc_route_count++;
199                 goto incr_stats;
200
201         case LNET_EVENT_PUT:
202                 /* should have been decommitted */
203                 LASSERT(!msg->msg_rx_committed);
204                 /* overwritten while sending ACK */
205                 LASSERT(msg->msg_type == LNET_MSG_ACK);
206                 msg->msg_type = LNET_MSG_PUT; /* fix type */
207                 break;
208
209         case LNET_EVENT_SEND:
210                 LASSERT(!msg->msg_rx_committed);
211                 if (msg->msg_type == LNET_MSG_PUT)
212                         common->lcc_send_length += msg->msg_len;
213                 break;
214
215         case LNET_EVENT_GET:
216                 LASSERT(msg->msg_rx_committed);
217                 /* overwritten while sending reply, we should never be
218                  * here for optimized GET */
219                 LASSERT(msg->msg_type == LNET_MSG_REPLY);
220                 msg->msg_type = LNET_MSG_GET; /* fix type */
221                 break;
222         }
223
224         common->lcc_send_count++;
225
226 incr_stats:
227         if (msg->msg_txpeer)
228                 lnet_incr_stats(&msg->msg_txpeer->lpni_stats,
229                                 msg->msg_type,
230                                 LNET_STATS_TYPE_SEND);
231         if (msg->msg_txni)
232                 lnet_incr_stats(&msg->msg_txni->ni_stats,
233                                 msg->msg_type,
234                                 LNET_STATS_TYPE_SEND);
235  out:
236         lnet_return_tx_credits_locked(msg);
237         msg->msg_tx_committed = 0;
238 }
239
240 static void
241 lnet_msg_decommit_rx(struct lnet_msg *msg, int status)
242 {
243         struct lnet_counters_common *common;
244         struct lnet_event *ev = &msg->msg_ev;
245
246         LASSERT(!msg->msg_tx_committed); /* decommitted or never committed */
247         LASSERT(msg->msg_rx_committed);
248
249         if (status != 0)
250                 goto out;
251
252         common = &(the_lnet.ln_counters[msg->msg_rx_cpt]->lct_common);
253         switch (ev->type) {
254         default:
255                 LASSERT(ev->type == 0);
256                 LASSERT(msg->msg_routing);
257                 goto incr_stats;
258
259         case LNET_EVENT_ACK:
260                 LASSERT(msg->msg_type == LNET_MSG_ACK);
261                 break;
262
263         case LNET_EVENT_GET:
264                 /* type is "REPLY" if it's an optimized GET on passive side,
265                  * because optimized GET will never be committed for sending,
266                  * so message type wouldn't be changed back to "GET" by
267                  * lnet_msg_decommit_tx(), see details in lnet_parse_get() */
268                 LASSERT(msg->msg_type == LNET_MSG_REPLY ||
269                         msg->msg_type == LNET_MSG_GET);
270                 common->lcc_send_length += msg->msg_wanted;
271                 break;
272
273         case LNET_EVENT_PUT:
274                 LASSERT(msg->msg_type == LNET_MSG_PUT);
275                 break;
276
277         case LNET_EVENT_REPLY:
278                 /* type is "GET" if it's an optimized GET on active side,
279                  * see details in lnet_create_reply_msg() */
280                 LASSERT(msg->msg_type == LNET_MSG_GET ||
281                         msg->msg_type == LNET_MSG_REPLY);
282                 break;
283         }
284
285         common->lcc_recv_count++;
286
287 incr_stats:
288         if (msg->msg_rxpeer)
289                 lnet_incr_stats(&msg->msg_rxpeer->lpni_stats,
290                                 msg->msg_type,
291                                 LNET_STATS_TYPE_RECV);
292         if (msg->msg_rxni)
293                 lnet_incr_stats(&msg->msg_rxni->ni_stats,
294                                 msg->msg_type,
295                                 LNET_STATS_TYPE_RECV);
296         if (ev->type == LNET_EVENT_PUT || ev->type == LNET_EVENT_REPLY)
297                 common->lcc_recv_length += msg->msg_wanted;
298
299  out:
300         lnet_return_rx_credits_locked(msg);
301         msg->msg_rx_committed = 0;
302 }
303
304 void
305 lnet_msg_decommit(struct lnet_msg *msg, int cpt, int status)
306 {
307         int     cpt2 = cpt;
308
309         LASSERT(msg->msg_tx_committed || msg->msg_rx_committed);
310         LASSERT(msg->msg_onactivelist);
311
312         if (msg->msg_tx_committed) { /* always decommit for sending first */
313                 LASSERT(cpt == msg->msg_tx_cpt);
314                 lnet_msg_decommit_tx(msg, status);
315         }
316
317         if (msg->msg_rx_committed) {
318                 /* forwarding msg committed for both receiving and sending */
319                 if (cpt != msg->msg_rx_cpt) {
320                         lnet_net_unlock(cpt);
321                         cpt2 = msg->msg_rx_cpt;
322                         lnet_net_lock(cpt2);
323                 }
324                 lnet_msg_decommit_rx(msg, status);
325         }
326
327         list_del(&msg->msg_activelist);
328         msg->msg_onactivelist = 0;
329
330         the_lnet.ln_counters[cpt2]->lct_common.lcc_msgs_alloc--;
331
332         if (cpt2 != cpt) {
333                 lnet_net_unlock(cpt2);
334                 lnet_net_lock(cpt);
335         }
336 }
337
338 void
339 lnet_msg_attach_md(struct lnet_msg *msg, struct lnet_libmd *md,
340                    unsigned int offset, unsigned int mlen)
341 {
342         /* NB: @offset and @len are only useful for receiving */
343         /* Here, we attach the MD on lnet_msg and mark it busy and
344          * decrementing its threshold. Come what may, the lnet_msg "owns"
345          * the MD until a call to lnet_msg_detach_md or lnet_finalize()
346          * signals completion. */
347         LASSERT(!msg->msg_routing);
348
349         msg->msg_md = md;
350         if (msg->msg_receiving) { /* committed for receiving */
351                 msg->msg_offset = offset;
352                 msg->msg_wanted = mlen;
353         }
354
355         md->md_refcount++;
356         if (md->md_threshold != LNET_MD_THRESH_INF) {
357                 LASSERT(md->md_threshold > 0);
358                 md->md_threshold--;
359         }
360
361         /* build umd in event */
362         lnet_md2handle(&msg->msg_ev.md_handle, md);
363         lnet_md_deconstruct(md, &msg->msg_ev.md);
364 }
365
366 static int
367 lnet_complete_msg_locked(struct lnet_msg *msg, int cpt)
368 {
369         struct lnet_handle_wire ack_wmd;
370         int                rc;
371         int                status = msg->msg_ev.status;
372
373         LASSERT(msg->msg_onactivelist);
374
375         if (status == 0 && msg->msg_ack) {
376                 /* Only send an ACK if the PUT completed successfully */
377
378                 lnet_msg_decommit(msg, cpt, 0);
379
380                 msg->msg_ack = 0;
381                 lnet_net_unlock(cpt);
382
383                 LASSERT(msg->msg_ev.type == LNET_EVENT_PUT);
384                 LASSERT(!msg->msg_routing);
385
386                 ack_wmd = msg->msg_hdr.msg.put.ack_wmd;
387
388                 lnet_prep_send(msg, LNET_MSG_ACK, msg->msg_ev.source, 0, 0);
389
390                 msg->msg_hdr.msg.ack.dst_wmd = ack_wmd;
391                 msg->msg_hdr.msg.ack.match_bits = msg->msg_ev.match_bits;
392                 msg->msg_hdr.msg.ack.mlength = cpu_to_le32(msg->msg_ev.mlength);
393
394                 /* NB: we probably want to use NID of msg::msg_from as 3rd
395                  * parameter (router NID) if it's routed message */
396                 rc = lnet_send(msg->msg_ev.target.nid, msg, msg->msg_from);
397
398                 lnet_net_lock(cpt);
399                 /*
400                  * NB: message is committed for sending, we should return
401                  * on success because LND will finalize this message later.
402                  *
403                  * Also, there is possibility that message is committed for
404                  * sending and also failed before delivering to LND,
405                  * i.e: ENOMEM, in that case we can't fall through either
406                  * because CPT for sending can be different with CPT for
407                  * receiving, so we should return back to lnet_finalize()
408                  * to make sure we are locking the correct partition.
409                  */
410                 return rc;
411
412         } else if (status == 0 &&       /* OK so far */
413                    (msg->msg_routing && !msg->msg_sending)) {
414                 /* not forwarded */
415                 LASSERT(!msg->msg_receiving);   /* called back recv already */
416                 lnet_net_unlock(cpt);
417
418                 rc = lnet_send(LNET_NID_ANY, msg, LNET_NID_ANY);
419
420                 lnet_net_lock(cpt);
421                 /*
422                  * NB: message is committed for sending, we should return
423                  * on success because LND will finalize this message later.
424                  *
425                  * Also, there is possibility that message is committed for
426                  * sending and also failed before delivering to LND,
427                  * i.e: ENOMEM, in that case we can't fall through either:
428                  * - The rule is message must decommit for sending first if
429                  *   the it's committed for both sending and receiving
430                  * - CPT for sending can be different with CPT for receiving,
431                  *   so we should return back to lnet_finalize() to make
432                  *   sure we are locking the correct partition.
433                  */
434                 return rc;
435         }
436
437         lnet_msg_decommit(msg, cpt, status);
438         lnet_msg_free(msg);
439         return 0;
440 }
441
442 static void
443 lnet_dec_healthv_locked(atomic_t *healthv)
444 {
445         int h = atomic_read(healthv);
446
447         if (h < lnet_health_sensitivity) {
448                 atomic_set(healthv, 0);
449         } else {
450                 h -= lnet_health_sensitivity;
451                 atomic_set(healthv, h);
452         }
453 }
454
455 static void
456 lnet_handle_local_failure(struct lnet_ni *local_ni)
457 {
458         /*
459          * the lnet_net_lock(0) is used to protect the addref on the ni
460          * and the recovery queue.
461          */
462         lnet_net_lock(0);
463         /* the mt could've shutdown and cleaned up the queues */
464         if (the_lnet.ln_mt_state != LNET_MT_STATE_RUNNING) {
465                 lnet_net_unlock(0);
466                 return;
467         }
468
469         lnet_dec_healthv_locked(&local_ni->ni_healthv);
470         /*
471          * add the NI to the recovery queue if it's not already there
472          * and it's health value is actually below the maximum. It's
473          * possible that the sensitivity might be set to 0, and the health
474          * value will not be reduced. In this case, there is no reason to
475          * invoke recovery
476          */
477         if (list_empty(&local_ni->ni_recovery) &&
478             atomic_read(&local_ni->ni_healthv) < LNET_MAX_HEALTH_VALUE) {
479                 CERROR("ni %s added to recovery queue. Health = %d\n",
480                         libcfs_nid2str(local_ni->ni_nid),
481                         atomic_read(&local_ni->ni_healthv));
482                 list_add_tail(&local_ni->ni_recovery,
483                               &the_lnet.ln_mt_localNIRecovq);
484                 lnet_ni_addref_locked(local_ni, 0);
485         }
486         lnet_net_unlock(0);
487 }
488
489 void
490 lnet_handle_remote_failure_locked(struct lnet_peer_ni *lpni)
491 {
492         /* lpni could be NULL if we're in the LOLND case */
493         if (!lpni)
494                 return;
495
496         lnet_dec_healthv_locked(&lpni->lpni_healthv);
497         /*
498          * add the peer NI to the recovery queue if it's not already there
499          * and it's health value is actually below the maximum. It's
500          * possible that the sensitivity might be set to 0, and the health
501          * value will not be reduced. In this case, there is no reason to
502          * invoke recovery
503          */
504         lnet_peer_ni_add_to_recoveryq_locked(lpni);
505 }
506
507 static void
508 lnet_handle_remote_failure(struct lnet_peer_ni *lpni)
509 {
510         /* lpni could be NULL if we're in the LOLND case */
511         if (!lpni)
512                 return;
513
514         lnet_net_lock(0);
515         /* the mt could've shutdown and cleaned up the queues */
516         if (the_lnet.ln_mt_state != LNET_MT_STATE_RUNNING) {
517                 lnet_net_unlock(0);
518                 return;
519         }
520         lnet_handle_remote_failure_locked(lpni);
521         lnet_net_unlock(0);
522 }
523
524 static void
525 lnet_incr_hstats(struct lnet_msg *msg, enum lnet_msg_hstatus hstatus)
526 {
527         struct lnet_ni *ni = msg->msg_txni;
528         struct lnet_peer_ni *lpni = msg->msg_txpeer;
529         struct lnet_counters_health *health;
530
531         health = &the_lnet.ln_counters[0]->lct_health;
532
533         switch (hstatus) {
534         case LNET_MSG_STATUS_LOCAL_INTERRUPT:
535                 atomic_inc(&ni->ni_hstats.hlt_local_interrupt);
536                 health->lch_local_interrupt_count++;
537                 break;
538         case LNET_MSG_STATUS_LOCAL_DROPPED:
539                 atomic_inc(&ni->ni_hstats.hlt_local_dropped);
540                 health->lch_local_dropped_count++;
541                 break;
542         case LNET_MSG_STATUS_LOCAL_ABORTED:
543                 atomic_inc(&ni->ni_hstats.hlt_local_aborted);
544                 health->lch_local_aborted_count++;
545                 break;
546         case LNET_MSG_STATUS_LOCAL_NO_ROUTE:
547                 atomic_inc(&ni->ni_hstats.hlt_local_no_route);
548                 health->lch_local_no_route_count++;
549                 break;
550         case LNET_MSG_STATUS_LOCAL_TIMEOUT:
551                 atomic_inc(&ni->ni_hstats.hlt_local_timeout);
552                 health->lch_local_timeout_count++;
553                 break;
554         case LNET_MSG_STATUS_LOCAL_ERROR:
555                 atomic_inc(&ni->ni_hstats.hlt_local_error);
556                 health->lch_local_error_count++;
557                 break;
558         case LNET_MSG_STATUS_REMOTE_DROPPED:
559                 if (lpni)
560                         atomic_inc(&lpni->lpni_hstats.hlt_remote_dropped);
561                 health->lch_remote_dropped_count++;
562                 break;
563         case LNET_MSG_STATUS_REMOTE_ERROR:
564                 if (lpni)
565                         atomic_inc(&lpni->lpni_hstats.hlt_remote_error);
566                 health->lch_remote_error_count++;
567                 break;
568         case LNET_MSG_STATUS_REMOTE_TIMEOUT:
569                 if (lpni)
570                         atomic_inc(&lpni->lpni_hstats.hlt_remote_timeout);
571                 health->lch_remote_timeout_count++;
572                 break;
573         case LNET_MSG_STATUS_NETWORK_TIMEOUT:
574                 if (lpni)
575                         atomic_inc(&lpni->lpni_hstats.hlt_network_timeout);
576                 health->lch_network_timeout_count++;
577                 break;
578         case LNET_MSG_STATUS_OK:
579                 break;
580         default:
581                 LBUG();
582         }
583 }
584
585 /*
586  * Do a health check on the message:
587  * return -1 if we're not going to handle the error or
588  *   if we've reached the maximum number of retries.
589  *   success case will return -1 as well
590  * return 0 if it the message is requeued for send
591  */
592 static int
593 lnet_health_check(struct lnet_msg *msg)
594 {
595         enum lnet_msg_hstatus hstatus = msg->msg_health_status;
596         bool lo = false;
597         struct lnet_ni *ni;
598         struct lnet_peer_ni *lpni;
599
600         /* if we're shutting down no point in handling health. */
601         if (the_lnet.ln_mt_state != LNET_MT_STATE_RUNNING)
602                 return -1;
603
604         LASSERT(msg->msg_tx_committed || msg->msg_rx_committed);
605
606         /*
607          * if we're sending to the LOLND then the msg_txpeer will not be
608          * set. So no need to sanity check it.
609          */
610         if (msg->msg_tx_committed &&
611             LNET_NETTYP(LNET_NIDNET(msg->msg_txni->ni_nid)) != LOLND)
612                 LASSERT(msg->msg_txpeer);
613         else if (msg->msg_tx_committed &&
614                  LNET_NETTYP(LNET_NIDNET(msg->msg_txni->ni_nid)) == LOLND)
615                 lo = true;
616
617         if (hstatus != LNET_MSG_STATUS_OK &&
618             ktime_compare(ktime_get(), msg->msg_deadline) >= 0)
619                 return -1;
620
621         /*
622          * stats are only incremented for errors so avoid wasting time
623          * incrementing statistics if there is no error.
624          */
625         if (hstatus != LNET_MSG_STATUS_OK) {
626                 lnet_net_lock(0);
627                 lnet_incr_hstats(msg, hstatus);
628                 lnet_net_unlock(0);
629         }
630
631         /*
632          * always prefer txni/txpeer if they message is committed for both
633          * directions.
634          */
635         if (msg->msg_tx_committed) {
636                 ni = msg->msg_txni;
637                 lpni = msg->msg_txpeer;
638         } else {
639                 ni = msg->msg_rxni;
640                 lpni = msg->msg_rxpeer;
641         }
642
643         if (!lo)
644                 LASSERT(ni && lpni);
645         else
646                 LASSERT(ni);
647
648         CDEBUG(D_NET, "health check: %s->%s: %s: %s\n",
649                libcfs_nid2str(ni->ni_nid),
650                (lo) ? "self" : libcfs_nid2str(lpni->lpni_nid),
651                lnet_msgtyp2str(msg->msg_type),
652                lnet_health_error2str(hstatus));
653
654         switch (hstatus) {
655         case LNET_MSG_STATUS_OK:
656                 /*
657                  * increment the local ni health weather we successfully
658                  * received or sent a message on it.
659                  */
660                 lnet_inc_healthv(&ni->ni_healthv);
661                 /*
662                  * It's possible msg_txpeer is NULL in the LOLND
663                  * case. Only increment the peer's health if we're
664                  * receiving a message from it. It's the only sure way to
665                  * know that a remote interface is up.
666                  * If this interface is part of a router, then take that
667                  * as indication that the router is fully healthy.
668                  */
669                 if (lpni && msg->msg_rx_committed) {
670                         /*
671                          * If we're receiving a message from the router or
672                          * I'm a router, then set that lpni's health to
673                          * maximum so we can commence communication
674                          */
675                         if (lnet_isrouter(lpni) || the_lnet.ln_routing)
676                                 lnet_set_healthv(&lpni->lpni_healthv,
677                                                  LNET_MAX_HEALTH_VALUE);
678                         else
679                                 lnet_inc_healthv(&lpni->lpni_healthv);
680                 }
681
682                 /* we can finalize this message */
683                 return -1;
684         case LNET_MSG_STATUS_LOCAL_INTERRUPT:
685         case LNET_MSG_STATUS_LOCAL_DROPPED:
686         case LNET_MSG_STATUS_LOCAL_ABORTED:
687         case LNET_MSG_STATUS_LOCAL_NO_ROUTE:
688         case LNET_MSG_STATUS_LOCAL_TIMEOUT:
689                 lnet_handle_local_failure(ni);
690                 if (msg->msg_tx_committed)
691                         /* add to the re-send queue */
692                         goto resend;
693                 break;
694
695         /*
696          * These errors will not trigger a resend so simply
697          * finalize the message
698          */
699         case LNET_MSG_STATUS_LOCAL_ERROR:
700                 lnet_handle_local_failure(ni);
701                 return -1;
702
703         /*
704          * TODO: since the remote dropped the message we can
705          * attempt a resend safely.
706          */
707         case LNET_MSG_STATUS_REMOTE_DROPPED:
708                 lnet_handle_remote_failure(lpni);
709                 if (msg->msg_tx_committed)
710                         goto resend;
711                 break;
712
713         case LNET_MSG_STATUS_REMOTE_ERROR:
714         case LNET_MSG_STATUS_REMOTE_TIMEOUT:
715         case LNET_MSG_STATUS_NETWORK_TIMEOUT:
716                 lnet_handle_remote_failure(lpni);
717                 return -1;
718         default:
719                 LBUG();
720         }
721
722 resend:
723         /* we can only resend tx_committed messages */
724         LASSERT(msg->msg_tx_committed);
725
726         /* don't resend recovery messages */
727         if (msg->msg_recovery) {
728                 CDEBUG(D_NET, "msg %s->%s is a recovery ping. retry# %d\n",
729                         libcfs_nid2str(msg->msg_from),
730                         libcfs_nid2str(msg->msg_target.nid),
731                         msg->msg_retry_count);
732                 return -1;
733         }
734
735         /*
736          * if we explicitly indicated we don't want to resend then just
737          * return
738          */
739         if (msg->msg_no_resend) {
740                 CDEBUG(D_NET, "msg %s->%s requested no resend. retry# %d\n",
741                         libcfs_nid2str(msg->msg_from),
742                         libcfs_nid2str(msg->msg_target.nid),
743                         msg->msg_retry_count);
744                 return -1;
745         }
746
747         /* check if the message has exceeded the number of retries */
748         if (msg->msg_retry_count >= lnet_retry_count) {
749                 CNETERR("msg %s->%s exceeded retry count %d\n",
750                         libcfs_nid2str(msg->msg_from),
751                         libcfs_nid2str(msg->msg_target.nid),
752                         msg->msg_retry_count);
753                 return -1;
754         }
755         msg->msg_retry_count++;
756
757         lnet_net_lock(msg->msg_tx_cpt);
758
759         /* check again under lock */
760         if (the_lnet.ln_mt_state != LNET_MT_STATE_RUNNING) {
761                 lnet_net_unlock(msg->msg_tx_cpt);
762                 return -1;
763         }
764
765         /*
766          * remove message from the active list and reset it in preparation
767          * for a resend. Two exception to this
768          *
769          * 1. the router case, whe a message is committed for rx when
770          * received, then tx when it is sent. When committed to both tx and
771          * rx we don't want to remove it from the active list.
772          *
773          * 2. The REPLY case since it uses the same msg block for the GET
774          * that was received.
775          */
776         if (!msg->msg_routing && msg->msg_type != LNET_MSG_REPLY) {
777                 list_del_init(&msg->msg_activelist);
778                 msg->msg_onactivelist = 0;
779         }
780         /*
781          * The msg_target.nid which was originally set
782          * when calling LNetGet() or LNetPut() might've
783          * been overwritten if we're routing this message.
784          * Call lnet_return_tx_credits_locked() to return
785          * the credit this message consumed. The message will
786          * consume another credit when it gets resent.
787          */
788         msg->msg_target.nid = msg->msg_hdr.dest_nid;
789         lnet_msg_decommit_tx(msg, -EAGAIN);
790         msg->msg_sending = 0;
791         msg->msg_receiving = 0;
792         msg->msg_target_is_router = 0;
793
794         CDEBUG(D_NET, "%s->%s:%s:%s - queuing for resend\n",
795                libcfs_nid2str(msg->msg_hdr.src_nid),
796                libcfs_nid2str(msg->msg_hdr.dest_nid),
797                lnet_msgtyp2str(msg->msg_type),
798                lnet_health_error2str(hstatus));
799
800         list_add_tail(&msg->msg_list, the_lnet.ln_mt_resendqs[msg->msg_tx_cpt]);
801         lnet_net_unlock(msg->msg_tx_cpt);
802
803         wake_up(&the_lnet.ln_mt_waitq);
804         return 0;
805 }
806
807 static void
808 lnet_msg_detach_md(struct lnet_msg *msg, int cpt, int status)
809 {
810         struct lnet_libmd *md = msg->msg_md;
811         int unlink;
812
813         /* Now it's safe to drop my caller's ref */
814         md->md_refcount--;
815         LASSERT(md->md_refcount >= 0);
816
817         unlink = lnet_md_unlinkable(md);
818         if (md->md_eq != NULL) {
819                 msg->msg_ev.status   = status;
820                 msg->msg_ev.unlinked = unlink;
821                 lnet_eq_enqueue_event(md->md_eq, &msg->msg_ev);
822         }
823
824         if (unlink) {
825                 lnet_detach_rsp_tracker(md, cpt);
826                 lnet_md_unlink(md);
827         }
828
829         msg->msg_md = NULL;
830 }
831
832 static bool
833 lnet_is_health_check(struct lnet_msg *msg)
834 {
835         bool hc = true;
836         int status = msg->msg_ev.status;
837
838         if ((!msg->msg_tx_committed && !msg->msg_rx_committed) ||
839             !msg->msg_onactivelist) {
840                 CDEBUG(D_NET, "msg %p not committed for send or receive\n",
841                        msg);
842                 return false;
843         }
844
845         if ((msg->msg_tx_committed && !msg->msg_txpeer) ||
846             (msg->msg_rx_committed && !msg->msg_rxpeer)) {
847                 CDEBUG(D_NET, "msg %p failed too early to retry and send\n",
848                        msg);
849                 return false;
850         }
851
852         /* Check for status inconsistencies */
853         if ((!status && msg->msg_health_status != LNET_MSG_STATUS_OK) ||
854              (status && msg->msg_health_status == LNET_MSG_STATUS_OK)) {
855                 CDEBUG(D_NET, "Msg %p is in inconsistent state, don't perform health "
856                        "checking (%d, %d)\n", msg, status,
857                        msg->msg_health_status);
858                 hc = false;
859         }
860
861         CDEBUG(D_NET, "health check = %d, status = %d, hstatus = %d\n",
862                hc, status, msg->msg_health_status);
863
864         return hc;
865 }
866
867 char *
868 lnet_health_error2str(enum lnet_msg_hstatus hstatus)
869 {
870         switch (hstatus) {
871         case LNET_MSG_STATUS_LOCAL_INTERRUPT:
872                 return "LOCAL_INTERRUPT";
873         case LNET_MSG_STATUS_LOCAL_DROPPED:
874                 return "LOCAL_DROPPED";
875         case LNET_MSG_STATUS_LOCAL_ABORTED:
876                 return "LOCAL_ABORTED";
877         case LNET_MSG_STATUS_LOCAL_NO_ROUTE:
878                 return "LOCAL_NO_ROUTE";
879         case LNET_MSG_STATUS_LOCAL_TIMEOUT:
880                 return "LOCAL_TIMEOUT";
881         case LNET_MSG_STATUS_LOCAL_ERROR:
882                 return "LOCAL_ERROR";
883         case LNET_MSG_STATUS_REMOTE_DROPPED:
884                 return "REMOTE_DROPPED";
885         case LNET_MSG_STATUS_REMOTE_ERROR:
886                 return "REMOTE_ERROR";
887         case LNET_MSG_STATUS_REMOTE_TIMEOUT:
888                 return "REMOTE_TIMEOUT";
889         case LNET_MSG_STATUS_NETWORK_TIMEOUT:
890                 return "NETWORK_TIMEOUT";
891         case LNET_MSG_STATUS_OK:
892                 return "OK";
893         default:
894                 return "<UNKNOWN>";
895         }
896 }
897
898 bool
899 lnet_send_error_simulation(struct lnet_msg *msg,
900                            enum lnet_msg_hstatus *hstatus)
901 {
902         if (!msg)
903                 return false;
904
905         if (list_empty(&the_lnet.ln_drop_rules))
906             return false;
907
908         /* match only health rules */
909         if (!lnet_drop_rule_match(&msg->msg_hdr, LNET_NID_ANY,
910                                   hstatus))
911                 return false;
912
913         CDEBUG(D_NET, "src %s(%s)->dst %s: %s simulate health error: %s\n",
914                 libcfs_nid2str(msg->msg_hdr.src_nid),
915                 libcfs_nid2str(msg->msg_txni->ni_nid),
916                 libcfs_nid2str(msg->msg_hdr.dest_nid),
917                 lnet_msgtyp2str(msg->msg_type),
918                 lnet_health_error2str(*hstatus));
919
920         return true;
921 }
922 EXPORT_SYMBOL(lnet_send_error_simulation);
923
924 void
925 lnet_finalize(struct lnet_msg *msg, int status)
926 {
927         struct lnet_msg_container *container;
928         int my_slot;
929         int cpt;
930         int rc;
931         int i;
932
933         LASSERT(!in_interrupt());
934
935         if (msg == NULL)
936                 return;
937
938         msg->msg_ev.status = status;
939
940         if (lnet_is_health_check(msg)) {
941                 /*
942                  * Check the health status of the message. If it has one
943                  * of the errors that we're supposed to handle, and it has
944                  * not timed out, then
945                  *      1. Decrement the appropriate health_value
946                  *      2. queue the message on the resend queue
947
948                  * if the message send is success, timed out or failed in the
949                  * health check for any reason then we'll just finalize the
950                  * message. Otherwise just return since the message has been
951                  * put on the resend queue.
952                  */
953                 if (!lnet_health_check(msg))
954                         /* Message is queued for resend */
955                         return;
956         }
957
958         /*
959          * We're not going to resend this message so detach its MD and invoke
960          * the appropriate callbacks
961          */
962         if (msg->msg_md != NULL) {
963                 cpt = lnet_cpt_of_cookie(msg->msg_md->md_lh.lh_cookie);
964                 lnet_res_lock(cpt);
965                 lnet_msg_detach_md(msg, cpt, status);
966                 lnet_res_unlock(cpt);
967         }
968
969 again:
970         if (!msg->msg_tx_committed && !msg->msg_rx_committed) {
971                 /* not committed to network yet */
972                 LASSERT(!msg->msg_onactivelist);
973                 lnet_msg_free(msg);
974                 return;
975         }
976
977         /*
978          * NB: routed message can be committed for both receiving and sending,
979          * we should finalize in LIFO order and keep counters correct.
980          * (finalize sending first then finalize receiving)
981          */
982         cpt = msg->msg_tx_committed ? msg->msg_tx_cpt : msg->msg_rx_cpt;
983         lnet_net_lock(cpt);
984
985         container = the_lnet.ln_msg_containers[cpt];
986         list_add_tail(&msg->msg_list, &container->msc_finalizing);
987
988         /* Recursion breaker.  Don't complete the message here if I am (or
989          * enough other threads are) already completing messages */
990
991         my_slot = -1;
992         for (i = 0; i < container->msc_nfinalizers; i++) {
993                 if (container->msc_finalizers[i] == current)
994                         break;
995
996                 if (my_slot < 0 && container->msc_finalizers[i] == NULL)
997                         my_slot = i;
998         }
999
1000         if (i < container->msc_nfinalizers || my_slot < 0) {
1001                 lnet_net_unlock(cpt);
1002                 return;
1003         }
1004
1005         container->msc_finalizers[my_slot] = current;
1006
1007         rc = 0;
1008         while (!list_empty(&container->msc_finalizing)) {
1009                 msg = list_entry(container->msc_finalizing.next,
1010                                  struct lnet_msg, msg_list);
1011
1012                 list_del_init(&msg->msg_list);
1013
1014                 /* NB drops and regains the lnet lock if it actually does
1015                  * anything, so my finalizing friends can chomp along too */
1016                 rc = lnet_complete_msg_locked(msg, cpt);
1017                 if (rc != 0)
1018                         break;
1019         }
1020
1021         if (unlikely(!list_empty(&the_lnet.ln_delay_rules))) {
1022                 lnet_net_unlock(cpt);
1023                 lnet_delay_rule_check();
1024                 lnet_net_lock(cpt);
1025         }
1026
1027         container->msc_finalizers[my_slot] = NULL;
1028         lnet_net_unlock(cpt);
1029
1030         if (rc != 0)
1031                 goto again;
1032 }
1033 EXPORT_SYMBOL(lnet_finalize);
1034
1035 void
1036 lnet_msg_container_cleanup(struct lnet_msg_container *container)
1037 {
1038         int     count = 0;
1039
1040         if (container->msc_init == 0)
1041                 return;
1042
1043         while (!list_empty(&container->msc_active)) {
1044                 struct lnet_msg *msg;
1045
1046                 msg  = list_entry(container->msc_active.next,
1047                                   struct lnet_msg, msg_activelist);
1048                 LASSERT(msg->msg_onactivelist);
1049                 msg->msg_onactivelist = 0;
1050                 list_del_init(&msg->msg_activelist);
1051                 lnet_msg_free(msg);
1052                 count++;
1053         }
1054
1055         if (count > 0)
1056                 CERROR("%d active msg on exit\n", count);
1057
1058         if (container->msc_finalizers != NULL) {
1059                 LIBCFS_FREE(container->msc_finalizers,
1060                             container->msc_nfinalizers *
1061                             sizeof(*container->msc_finalizers));
1062                 container->msc_finalizers = NULL;
1063         }
1064         container->msc_init = 0;
1065 }
1066
1067 int
1068 lnet_msg_container_setup(struct lnet_msg_container *container, int cpt)
1069 {
1070         int rc = 0;
1071
1072         container->msc_init = 1;
1073
1074         INIT_LIST_HEAD(&container->msc_active);
1075         INIT_LIST_HEAD(&container->msc_finalizing);
1076
1077         /* number of CPUs */
1078         container->msc_nfinalizers = cfs_cpt_weight(lnet_cpt_table(), cpt);
1079         if (container->msc_nfinalizers == 0)
1080                 container->msc_nfinalizers = 1;
1081
1082         LIBCFS_CPT_ALLOC(container->msc_finalizers, lnet_cpt_table(), cpt,
1083                          container->msc_nfinalizers *
1084                          sizeof(*container->msc_finalizers));
1085
1086         if (container->msc_finalizers == NULL) {
1087                 CERROR("Failed to allocate message finalizers\n");
1088                 lnet_msg_container_cleanup(container);
1089                 return -ENOMEM;
1090         }
1091
1092         return rc;
1093 }
1094
1095 void
1096 lnet_msg_containers_destroy(void)
1097 {
1098         struct lnet_msg_container *container;
1099         int     i;
1100
1101         if (the_lnet.ln_msg_containers == NULL)
1102                 return;
1103
1104         cfs_percpt_for_each(container, i, the_lnet.ln_msg_containers)
1105                 lnet_msg_container_cleanup(container);
1106
1107         cfs_percpt_free(the_lnet.ln_msg_containers);
1108         the_lnet.ln_msg_containers = NULL;
1109 }
1110
1111 int
1112 lnet_msg_containers_create(void)
1113 {
1114         struct lnet_msg_container *container;
1115         int     rc;
1116         int     i;
1117
1118         the_lnet.ln_msg_containers = cfs_percpt_alloc(lnet_cpt_table(),
1119                                                       sizeof(*container));
1120
1121         if (the_lnet.ln_msg_containers == NULL) {
1122                 CERROR("Failed to allocate cpu-partition data for network\n");
1123                 return -ENOMEM;
1124         }
1125
1126         cfs_percpt_for_each(container, i, the_lnet.ln_msg_containers) {
1127                 rc = lnet_msg_container_setup(container, i);
1128                 if (rc != 0) {
1129                         lnet_msg_containers_destroy();
1130                         return rc;
1131                 }
1132         }
1133
1134         return 0;
1135 }