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[fs/lustre-release.git] / lnet / lnet / lib-move.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-move.c
33  *
34  * Data movement routines
35  */
36
37 #define DEBUG_SUBSYSTEM S_LNET
38
39 #include <linux/pagemap.h>
40
41 #include <lnet/lib-lnet.h>
42 #include <linux/nsproxy.h>
43 #include <net/net_namespace.h>
44
45 static int local_nid_dist_zero = 1;
46 module_param(local_nid_dist_zero, int, 0444);
47 MODULE_PARM_DESC(local_nid_dist_zero, "Reserved");
48
49 struct lnet_send_data {
50         struct lnet_ni *sd_best_ni;
51         struct lnet_peer_ni *sd_best_lpni;
52         struct lnet_peer_ni *sd_final_dst_lpni;
53         struct lnet_peer *sd_peer;
54         struct lnet_peer *sd_gw_peer;
55         struct lnet_peer_ni *sd_gw_lpni;
56         struct lnet_peer_net *sd_peer_net;
57         struct lnet_msg *sd_msg;
58         lnet_nid_t sd_dst_nid;
59         lnet_nid_t sd_src_nid;
60         lnet_nid_t sd_rtr_nid;
61         int sd_cpt;
62         int sd_md_cpt;
63         __u32 sd_send_case;
64 };
65
66 static inline struct lnet_comm_count *
67 get_stats_counts(struct lnet_element_stats *stats,
68                  enum lnet_stats_type stats_type)
69 {
70         switch (stats_type) {
71         case LNET_STATS_TYPE_SEND:
72                 return &stats->el_send_stats;
73         case LNET_STATS_TYPE_RECV:
74                 return &stats->el_recv_stats;
75         case LNET_STATS_TYPE_DROP:
76                 return &stats->el_drop_stats;
77         default:
78                 CERROR("Unknown stats type\n");
79         }
80
81         return NULL;
82 }
83
84 void lnet_incr_stats(struct lnet_element_stats *stats,
85                      enum lnet_msg_type msg_type,
86                      enum lnet_stats_type stats_type)
87 {
88         struct lnet_comm_count *counts = get_stats_counts(stats, stats_type);
89         if (!counts)
90                 return;
91
92         switch (msg_type) {
93         case LNET_MSG_ACK:
94                 atomic_inc(&counts->co_ack_count);
95                 break;
96         case LNET_MSG_PUT:
97                 atomic_inc(&counts->co_put_count);
98                 break;
99         case LNET_MSG_GET:
100                 atomic_inc(&counts->co_get_count);
101                 break;
102         case LNET_MSG_REPLY:
103                 atomic_inc(&counts->co_reply_count);
104                 break;
105         case LNET_MSG_HELLO:
106                 atomic_inc(&counts->co_hello_count);
107                 break;
108         default:
109                 CERROR("There is a BUG in the code. Unknown message type\n");
110                 break;
111         }
112 }
113
114 __u32 lnet_sum_stats(struct lnet_element_stats *stats,
115                      enum lnet_stats_type stats_type)
116 {
117         struct lnet_comm_count *counts = get_stats_counts(stats, stats_type);
118         if (!counts)
119                 return 0;
120
121         return (atomic_read(&counts->co_ack_count) +
122                 atomic_read(&counts->co_put_count) +
123                 atomic_read(&counts->co_get_count) +
124                 atomic_read(&counts->co_reply_count) +
125                 atomic_read(&counts->co_hello_count));
126 }
127
128 static inline void assign_stats(struct lnet_ioctl_comm_count *msg_stats,
129                                 struct lnet_comm_count *counts)
130 {
131         msg_stats->ico_get_count = atomic_read(&counts->co_get_count);
132         msg_stats->ico_put_count = atomic_read(&counts->co_put_count);
133         msg_stats->ico_reply_count = atomic_read(&counts->co_reply_count);
134         msg_stats->ico_ack_count = atomic_read(&counts->co_ack_count);
135         msg_stats->ico_hello_count = atomic_read(&counts->co_hello_count);
136 }
137
138 void lnet_usr_translate_stats(struct lnet_ioctl_element_msg_stats *msg_stats,
139                               struct lnet_element_stats *stats)
140 {
141         struct lnet_comm_count *counts;
142
143         LASSERT(msg_stats);
144         LASSERT(stats);
145
146         counts = get_stats_counts(stats, LNET_STATS_TYPE_SEND);
147         if (!counts)
148                 return;
149         assign_stats(&msg_stats->im_send_stats, counts);
150
151         counts = get_stats_counts(stats, LNET_STATS_TYPE_RECV);
152         if (!counts)
153                 return;
154         assign_stats(&msg_stats->im_recv_stats, counts);
155
156         counts = get_stats_counts(stats, LNET_STATS_TYPE_DROP);
157         if (!counts)
158                 return;
159         assign_stats(&msg_stats->im_drop_stats, counts);
160 }
161
162 int
163 lnet_fail_nid(lnet_nid_t nid, unsigned int threshold)
164 {
165         struct lnet_test_peer *tp;
166         struct list_head *el;
167         struct list_head *next;
168         LIST_HEAD(cull);
169
170         /* NB: use lnet_net_lock(0) to serialize operations on test peers */
171         if (threshold != 0) {
172                 /* Adding a new entry */
173                 LIBCFS_ALLOC(tp, sizeof(*tp));
174                 if (tp == NULL)
175                         return -ENOMEM;
176
177                 tp->tp_nid = nid;
178                 tp->tp_threshold = threshold;
179
180                 lnet_net_lock(0);
181                 list_add_tail(&tp->tp_list, &the_lnet.ln_test_peers);
182                 lnet_net_unlock(0);
183                 return 0;
184         }
185
186         lnet_net_lock(0);
187
188         list_for_each_safe(el, next, &the_lnet.ln_test_peers) {
189                 tp = list_entry(el, struct lnet_test_peer, tp_list);
190
191                 if (tp->tp_threshold == 0 ||    /* needs culling anyway */
192                     nid == LNET_NID_ANY ||      /* removing all entries */
193                     tp->tp_nid == nid) {        /* matched this one */
194                         list_move(&tp->tp_list, &cull);
195                 }
196         }
197
198         lnet_net_unlock(0);
199
200         while (!list_empty(&cull)) {
201                 tp = list_entry(cull.next, struct lnet_test_peer, tp_list);
202
203                 list_del(&tp->tp_list);
204                 LIBCFS_FREE(tp, sizeof(*tp));
205         }
206         return 0;
207 }
208
209 static int
210 fail_peer (lnet_nid_t nid, int outgoing)
211 {
212         struct lnet_test_peer *tp;
213         struct list_head *el;
214         struct list_head *next;
215         LIST_HEAD(cull);
216         int fail = 0;
217
218         /* NB: use lnet_net_lock(0) to serialize operations on test peers */
219         lnet_net_lock(0);
220
221         list_for_each_safe(el, next, &the_lnet.ln_test_peers) {
222                 tp = list_entry(el, struct lnet_test_peer, tp_list);
223
224                 if (tp->tp_threshold == 0) {
225                         /* zombie entry */
226                         if (outgoing) {
227                                 /* only cull zombies on outgoing tests,
228                                  * since we may be at interrupt priority on
229                                  * incoming messages. */
230                                 list_move(&tp->tp_list, &cull);
231                         }
232                         continue;
233                 }
234
235                 if (tp->tp_nid == LNET_NID_ANY ||       /* fail every peer */
236                     nid == tp->tp_nid) {                /* fail this peer */
237                         fail = 1;
238
239                         if (tp->tp_threshold != LNET_MD_THRESH_INF) {
240                                 tp->tp_threshold--;
241                                 if (outgoing &&
242                                     tp->tp_threshold == 0) {
243                                         /* see above */
244                                         list_move(&tp->tp_list, &cull);
245                                 }
246                         }
247                         break;
248                 }
249         }
250
251         lnet_net_unlock(0);
252
253         while (!list_empty(&cull)) {
254                 tp = list_entry(cull.next, struct lnet_test_peer, tp_list);
255                 list_del(&tp->tp_list);
256
257                 LIBCFS_FREE(tp, sizeof(*tp));
258         }
259
260         return fail;
261 }
262
263 unsigned int
264 lnet_iov_nob(unsigned int niov, struct kvec *iov)
265 {
266         unsigned int nob = 0;
267
268         LASSERT(niov == 0 || iov != NULL);
269         while (niov-- > 0)
270                 nob += (iov++)->iov_len;
271
272         return (nob);
273 }
274 EXPORT_SYMBOL(lnet_iov_nob);
275
276 void
277 lnet_copy_iov2iov(unsigned int ndiov, struct kvec *diov, unsigned int doffset,
278                   unsigned int nsiov, struct kvec *siov, unsigned int soffset,
279                   unsigned int nob)
280 {
281         /* NB diov, siov are READ-ONLY */
282         unsigned int this_nob;
283
284         if (nob == 0)
285                 return;
286
287         /* skip complete frags before 'doffset' */
288         LASSERT(ndiov > 0);
289         while (doffset >= diov->iov_len) {
290                 doffset -= diov->iov_len;
291                 diov++;
292                 ndiov--;
293                 LASSERT(ndiov > 0);
294         }
295
296         /* skip complete frags before 'soffset' */
297         LASSERT(nsiov > 0);
298         while (soffset >= siov->iov_len) {
299                 soffset -= siov->iov_len;
300                 siov++;
301                 nsiov--;
302                 LASSERT(nsiov > 0);
303         }
304
305         do {
306                 LASSERT(ndiov > 0);
307                 LASSERT(nsiov > 0);
308                 this_nob = min3((unsigned int)diov->iov_len - doffset,
309                                 (unsigned int)siov->iov_len - soffset,
310                                 nob);
311
312                 memcpy((char *)diov->iov_base + doffset,
313                        (char *)siov->iov_base + soffset, this_nob);
314                 nob -= this_nob;
315
316                 if (diov->iov_len > doffset + this_nob) {
317                         doffset += this_nob;
318                 } else {
319                         diov++;
320                         ndiov--;
321                         doffset = 0;
322                 }
323
324                 if (siov->iov_len > soffset + this_nob) {
325                         soffset += this_nob;
326                 } else {
327                         siov++;
328                         nsiov--;
329                         soffset = 0;
330                 }
331         } while (nob > 0);
332 }
333 EXPORT_SYMBOL(lnet_copy_iov2iov);
334
335 int
336 lnet_extract_iov(int dst_niov, struct kvec *dst,
337                  int src_niov, struct kvec *src,
338                  unsigned int offset, unsigned int len)
339 {
340         /* Initialise 'dst' to the subset of 'src' starting at 'offset',
341          * for exactly 'len' bytes, and return the number of entries.
342          * NB not destructive to 'src' */
343         unsigned int    frag_len;
344         unsigned int    niov;
345
346         if (len == 0)                           /* no data => */
347                 return (0);                     /* no frags */
348
349         LASSERT(src_niov > 0);
350         while (offset >= src->iov_len) {      /* skip initial frags */
351                 offset -= src->iov_len;
352                 src_niov--;
353                 src++;
354                 LASSERT(src_niov > 0);
355         }
356
357         niov = 1;
358         for (;;) {
359                 LASSERT(src_niov > 0);
360                 LASSERT((int)niov <= dst_niov);
361
362                 frag_len = src->iov_len - offset;
363                 dst->iov_base = ((char *)src->iov_base) + offset;
364
365                 if (len <= frag_len) {
366                         dst->iov_len = len;
367                         return (niov);
368                 }
369
370                 dst->iov_len = frag_len;
371
372                 len -= frag_len;
373                 dst++;
374                 src++;
375                 niov++;
376                 src_niov--;
377                 offset = 0;
378         }
379 }
380 EXPORT_SYMBOL(lnet_extract_iov);
381
382
383 unsigned int
384 lnet_kiov_nob(unsigned int niov, lnet_kiov_t *kiov)
385 {
386         unsigned int  nob = 0;
387
388         LASSERT(niov == 0 || kiov != NULL);
389         while (niov-- > 0)
390                 nob += (kiov++)->kiov_len;
391
392         return (nob);
393 }
394 EXPORT_SYMBOL(lnet_kiov_nob);
395
396 void
397 lnet_copy_kiov2kiov(unsigned int ndiov, lnet_kiov_t *diov, unsigned int doffset,
398                     unsigned int nsiov, lnet_kiov_t *siov, unsigned int soffset,
399                     unsigned int nob)
400 {
401         /* NB diov, siov are READ-ONLY */
402         unsigned int    this_nob;
403         char           *daddr = NULL;
404         char           *saddr = NULL;
405
406         if (nob == 0)
407                 return;
408
409         LASSERT (!in_interrupt ());
410
411         LASSERT (ndiov > 0);
412         while (doffset >= diov->kiov_len) {
413                 doffset -= diov->kiov_len;
414                 diov++;
415                 ndiov--;
416                 LASSERT(ndiov > 0);
417         }
418
419         LASSERT(nsiov > 0);
420         while (soffset >= siov->kiov_len) {
421                 soffset -= siov->kiov_len;
422                 siov++;
423                 nsiov--;
424                 LASSERT(nsiov > 0);
425         }
426
427         do {
428                 LASSERT(ndiov > 0);
429                 LASSERT(nsiov > 0);
430                 this_nob = min3(diov->kiov_len - doffset,
431                                 siov->kiov_len - soffset,
432                                 nob);
433
434                 if (daddr == NULL)
435                         daddr = ((char *)kmap(diov->kiov_page)) +
436                                 diov->kiov_offset + doffset;
437                 if (saddr == NULL)
438                         saddr = ((char *)kmap(siov->kiov_page)) +
439                                 siov->kiov_offset + soffset;
440
441                 /* Vanishing risk of kmap deadlock when mapping 2 pages.
442                  * However in practice at least one of the kiovs will be mapped
443                  * kernel pages and the map/unmap will be NOOPs */
444
445                 memcpy (daddr, saddr, this_nob);
446                 nob -= this_nob;
447
448                 if (diov->kiov_len > doffset + this_nob) {
449                         daddr += this_nob;
450                         doffset += this_nob;
451                 } else {
452                         kunmap(diov->kiov_page);
453                         daddr = NULL;
454                         diov++;
455                         ndiov--;
456                         doffset = 0;
457                 }
458
459                 if (siov->kiov_len > soffset + this_nob) {
460                         saddr += this_nob;
461                         soffset += this_nob;
462                 } else {
463                         kunmap(siov->kiov_page);
464                         saddr = NULL;
465                         siov++;
466                         nsiov--;
467                         soffset = 0;
468                 }
469         } while (nob > 0);
470
471         if (daddr != NULL)
472                 kunmap(diov->kiov_page);
473         if (saddr != NULL)
474                 kunmap(siov->kiov_page);
475 }
476 EXPORT_SYMBOL(lnet_copy_kiov2kiov);
477
478 void
479 lnet_copy_kiov2iov (unsigned int niov, struct kvec *iov, unsigned int iovoffset,
480                     unsigned int nkiov, lnet_kiov_t *kiov, unsigned int kiovoffset,
481                     unsigned int nob)
482 {
483         /* NB iov, kiov are READ-ONLY */
484         unsigned int    this_nob;
485         char           *addr = NULL;
486
487         if (nob == 0)
488                 return;
489
490         LASSERT (!in_interrupt ());
491
492         LASSERT (niov > 0);
493         while (iovoffset >= iov->iov_len) {
494                 iovoffset -= iov->iov_len;
495                 iov++;
496                 niov--;
497                 LASSERT(niov > 0);
498         }
499
500         LASSERT(nkiov > 0);
501         while (kiovoffset >= kiov->kiov_len) {
502                 kiovoffset -= kiov->kiov_len;
503                 kiov++;
504                 nkiov--;
505                 LASSERT(nkiov > 0);
506         }
507
508         do {
509                 LASSERT(niov > 0);
510                 LASSERT(nkiov > 0);
511                 this_nob = min3((unsigned int)iov->iov_len - iovoffset,
512                                 (unsigned int)kiov->kiov_len - kiovoffset,
513                                 nob);
514
515                 if (addr == NULL)
516                         addr = ((char *)kmap(kiov->kiov_page)) +
517                                 kiov->kiov_offset + kiovoffset;
518
519                 memcpy((char *)iov->iov_base + iovoffset, addr, this_nob);
520                 nob -= this_nob;
521
522                 if (iov->iov_len > iovoffset + this_nob) {
523                         iovoffset += this_nob;
524                 } else {
525                         iov++;
526                         niov--;
527                         iovoffset = 0;
528                 }
529
530                 if (kiov->kiov_len > kiovoffset + this_nob) {
531                         addr += this_nob;
532                         kiovoffset += this_nob;
533                 } else {
534                         kunmap(kiov->kiov_page);
535                         addr = NULL;
536                         kiov++;
537                         nkiov--;
538                         kiovoffset = 0;
539                 }
540
541         } while (nob > 0);
542
543         if (addr != NULL)
544                 kunmap(kiov->kiov_page);
545 }
546 EXPORT_SYMBOL(lnet_copy_kiov2iov);
547
548 void
549 lnet_copy_iov2kiov(unsigned int nkiov, lnet_kiov_t *kiov, unsigned int kiovoffset,
550                    unsigned int niov, struct kvec *iov, unsigned int iovoffset,
551                    unsigned int nob)
552 {
553         /* NB kiov, iov are READ-ONLY */
554         unsigned int    this_nob;
555         char           *addr = NULL;
556
557         if (nob == 0)
558                 return;
559
560         LASSERT (!in_interrupt ());
561
562         LASSERT (nkiov > 0);
563         while (kiovoffset >= kiov->kiov_len) {
564                 kiovoffset -= kiov->kiov_len;
565                 kiov++;
566                 nkiov--;
567                 LASSERT(nkiov > 0);
568         }
569
570         LASSERT(niov > 0);
571         while (iovoffset >= iov->iov_len) {
572                 iovoffset -= iov->iov_len;
573                 iov++;
574                 niov--;
575                 LASSERT(niov > 0);
576         }
577
578         do {
579                 LASSERT(nkiov > 0);
580                 LASSERT(niov > 0);
581                 this_nob = min3((unsigned int)kiov->kiov_len - kiovoffset,
582                                 (unsigned int)iov->iov_len - iovoffset,
583                                 nob);
584
585                 if (addr == NULL)
586                         addr = ((char *)kmap(kiov->kiov_page)) +
587                                 kiov->kiov_offset + kiovoffset;
588
589                 memcpy (addr, (char *)iov->iov_base + iovoffset, this_nob);
590                 nob -= this_nob;
591
592                 if (kiov->kiov_len > kiovoffset + this_nob) {
593                         addr += this_nob;
594                         kiovoffset += this_nob;
595                 } else {
596                         kunmap(kiov->kiov_page);
597                         addr = NULL;
598                         kiov++;
599                         nkiov--;
600                         kiovoffset = 0;
601                 }
602
603                 if (iov->iov_len > iovoffset + this_nob) {
604                         iovoffset += this_nob;
605                 } else {
606                         iov++;
607                         niov--;
608                         iovoffset = 0;
609                 }
610         } while (nob > 0);
611
612         if (addr != NULL)
613                 kunmap(kiov->kiov_page);
614 }
615 EXPORT_SYMBOL(lnet_copy_iov2kiov);
616
617 int
618 lnet_extract_kiov(int dst_niov, lnet_kiov_t *dst,
619                   int src_niov, lnet_kiov_t *src,
620                   unsigned int offset, unsigned int len)
621 {
622         /* Initialise 'dst' to the subset of 'src' starting at 'offset',
623          * for exactly 'len' bytes, and return the number of entries.
624          * NB not destructive to 'src' */
625         unsigned int    frag_len;
626         unsigned int    niov;
627
628         if (len == 0)                           /* no data => */
629                 return (0);                     /* no frags */
630
631         LASSERT(src_niov > 0);
632         while (offset >= src->kiov_len) {      /* skip initial frags */
633                 offset -= src->kiov_len;
634                 src_niov--;
635                 src++;
636                 LASSERT(src_niov > 0);
637         }
638
639         niov = 1;
640         for (;;) {
641                 LASSERT(src_niov > 0);
642                 LASSERT((int)niov <= dst_niov);
643
644                 frag_len = src->kiov_len - offset;
645                 dst->kiov_page = src->kiov_page;
646                 dst->kiov_offset = src->kiov_offset + offset;
647
648                 if (len <= frag_len) {
649                         dst->kiov_len = len;
650                         LASSERT(dst->kiov_offset + dst->kiov_len <= PAGE_SIZE);
651                         return niov;
652                 }
653
654                 dst->kiov_len = frag_len;
655                 LASSERT(dst->kiov_offset + dst->kiov_len <= PAGE_SIZE);
656
657                 len -= frag_len;
658                 dst++;
659                 src++;
660                 niov++;
661                 src_niov--;
662                 offset = 0;
663         }
664 }
665 EXPORT_SYMBOL(lnet_extract_kiov);
666
667 void
668 lnet_ni_recv(struct lnet_ni *ni, void *private, struct lnet_msg *msg,
669              int delayed, unsigned int offset, unsigned int mlen,
670              unsigned int rlen)
671 {
672         unsigned int  niov = 0;
673         struct kvec *iov = NULL;
674         lnet_kiov_t  *kiov = NULL;
675         int           rc;
676
677         LASSERT (!in_interrupt ());
678         LASSERT (mlen == 0 || msg != NULL);
679
680         if (msg != NULL) {
681                 LASSERT(msg->msg_receiving);
682                 LASSERT(!msg->msg_sending);
683                 LASSERT(rlen == msg->msg_len);
684                 LASSERT(mlen <= msg->msg_len);
685                 LASSERT(msg->msg_offset == offset);
686                 LASSERT(msg->msg_wanted == mlen);
687
688                 msg->msg_receiving = 0;
689
690                 if (mlen != 0) {
691                         niov = msg->msg_niov;
692                         iov  = msg->msg_iov;
693                         kiov = msg->msg_kiov;
694
695                         LASSERT (niov > 0);
696                         LASSERT ((iov == NULL) != (kiov == NULL));
697                 }
698         }
699
700         rc = (ni->ni_net->net_lnd->lnd_recv)(ni, private, msg, delayed,
701                                              niov, iov, kiov, offset, mlen,
702                                              rlen);
703         if (rc < 0)
704                 lnet_finalize(msg, rc);
705 }
706
707 static void
708 lnet_setpayloadbuffer(struct lnet_msg *msg)
709 {
710         struct lnet_libmd *md = msg->msg_md;
711
712         LASSERT(msg->msg_len > 0);
713         LASSERT(!msg->msg_routing);
714         LASSERT(md != NULL);
715         LASSERT(msg->msg_niov == 0);
716         LASSERT(msg->msg_iov == NULL);
717         LASSERT(msg->msg_kiov == NULL);
718
719         msg->msg_niov = md->md_niov;
720         if ((md->md_options & LNET_MD_KIOV) != 0)
721                 msg->msg_kiov = md->md_iov.kiov;
722         else
723                 msg->msg_iov = md->md_iov.iov;
724 }
725
726 void
727 lnet_prep_send(struct lnet_msg *msg, int type, struct lnet_process_id target,
728                unsigned int offset, unsigned int len)
729 {
730         msg->msg_type = type;
731         msg->msg_target = target;
732         msg->msg_len = len;
733         msg->msg_offset = offset;
734
735         if (len != 0)
736                 lnet_setpayloadbuffer(msg);
737
738         memset (&msg->msg_hdr, 0, sizeof (msg->msg_hdr));
739         msg->msg_hdr.type           = cpu_to_le32(type);
740         /* dest_nid will be overwritten by lnet_select_pathway() */
741         msg->msg_hdr.dest_nid       = cpu_to_le64(target.nid);
742         msg->msg_hdr.dest_pid       = cpu_to_le32(target.pid);
743         /* src_nid will be set later */
744         msg->msg_hdr.src_pid        = cpu_to_le32(the_lnet.ln_pid);
745         msg->msg_hdr.payload_length = cpu_to_le32(len);
746 }
747
748 static void
749 lnet_ni_send(struct lnet_ni *ni, struct lnet_msg *msg)
750 {
751         void   *priv = msg->msg_private;
752         int rc;
753
754         LASSERT (!in_interrupt ());
755         LASSERT (LNET_NETTYP(LNET_NIDNET(ni->ni_nid)) == LOLND ||
756                  (msg->msg_txcredit && msg->msg_peertxcredit));
757
758         rc = (ni->ni_net->net_lnd->lnd_send)(ni, priv, msg);
759         if (rc < 0) {
760                 msg->msg_no_resend = true;
761                 lnet_finalize(msg, rc);
762         }
763 }
764
765 static int
766 lnet_ni_eager_recv(struct lnet_ni *ni, struct lnet_msg *msg)
767 {
768         int     rc;
769
770         LASSERT(!msg->msg_sending);
771         LASSERT(msg->msg_receiving);
772         LASSERT(!msg->msg_rx_ready_delay);
773         LASSERT(ni->ni_net->net_lnd->lnd_eager_recv != NULL);
774
775         msg->msg_rx_ready_delay = 1;
776         rc = (ni->ni_net->net_lnd->lnd_eager_recv)(ni, msg->msg_private, msg,
777                                                   &msg->msg_private);
778         if (rc != 0) {
779                 CERROR("recv from %s / send to %s aborted: "
780                        "eager_recv failed %d\n",
781                        libcfs_nid2str(msg->msg_rxpeer->lpni_nid),
782                        libcfs_id2str(msg->msg_target), rc);
783                 LASSERT(rc < 0); /* required by my callers */
784         }
785
786         return rc;
787 }
788
789 static bool
790 lnet_is_peer_deadline_passed(struct lnet_peer_ni *lpni, time64_t now)
791 {
792         time64_t deadline;
793
794         deadline = lpni->lpni_last_alive +
795                    lpni->lpni_net->net_tunables.lct_peer_timeout;
796
797         /*
798          * assume peer_ni is alive as long as we're within the configured
799          * peer timeout
800          */
801         if (deadline > now)
802                 return false;
803
804         return true;
805 }
806
807 /* NB: returns 1 when alive, 0 when dead, negative when error;
808  *     may drop the lnet_net_lock */
809 static int
810 lnet_peer_alive_locked(struct lnet_ni *ni, struct lnet_peer_ni *lpni,
811                        struct lnet_msg *msg)
812 {
813         time64_t now = ktime_get_seconds();
814
815         if (!lnet_peer_aliveness_enabled(lpni))
816                 return -ENODEV;
817
818         /*
819          * If we're resending a message, let's attempt to send it even if
820          * the peer is down to fulfill our resend quota on the message
821          */
822         if (msg->msg_retry_count > 0)
823                 return 1;
824
825         /* try and send recovery messages irregardless */
826         if (msg->msg_recovery)
827                 return 1;
828
829         /* always send any responses */
830         if (msg->msg_type == LNET_MSG_ACK ||
831             msg->msg_type == LNET_MSG_REPLY)
832                 return 1;
833
834         if (!lnet_is_peer_deadline_passed(lpni, now))
835                 return true;
836
837         return lnet_is_peer_ni_alive(lpni);
838 }
839
840 /**
841  * \param msg The message to be sent.
842  * \param do_send True if lnet_ni_send() should be called in this function.
843  *        lnet_send() is going to lnet_net_unlock immediately after this, so
844  *        it sets do_send FALSE and I don't do the unlock/send/lock bit.
845  *
846  * \retval LNET_CREDIT_OK If \a msg sent or OK to send.
847  * \retval LNET_CREDIT_WAIT If \a msg blocked for credit.
848  * \retval -EHOSTUNREACH If the next hop of the message appears dead.
849  * \retval -ECANCELED If the MD of the message has been unlinked.
850  */
851 static int
852 lnet_post_send_locked(struct lnet_msg *msg, int do_send)
853 {
854         struct lnet_peer_ni     *lp = msg->msg_txpeer;
855         struct lnet_ni          *ni = msg->msg_txni;
856         int                     cpt = msg->msg_tx_cpt;
857         struct lnet_tx_queue    *tq = ni->ni_tx_queues[cpt];
858
859         /* non-lnet_send() callers have checked before */
860         LASSERT(!do_send || msg->msg_tx_delayed);
861         LASSERT(!msg->msg_receiving);
862         LASSERT(msg->msg_tx_committed);
863         /* can't get here if we're sending to the loopback interface */
864         LASSERT(lp->lpni_nid != the_lnet.ln_loni->ni_nid);
865
866         /* NB 'lp' is always the next hop */
867         if ((msg->msg_target.pid & LNET_PID_USERFLAG) == 0 &&
868             lnet_peer_alive_locked(ni, lp, msg) == 0) {
869                 the_lnet.ln_counters[cpt]->lct_common.lcc_drop_count++;
870                 the_lnet.ln_counters[cpt]->lct_common.lcc_drop_length +=
871                         msg->msg_len;
872                 lnet_net_unlock(cpt);
873                 if (msg->msg_txpeer)
874                         lnet_incr_stats(&msg->msg_txpeer->lpni_stats,
875                                         msg->msg_type,
876                                         LNET_STATS_TYPE_DROP);
877                 if (msg->msg_txni)
878                         lnet_incr_stats(&msg->msg_txni->ni_stats,
879                                         msg->msg_type,
880                                         LNET_STATS_TYPE_DROP);
881
882                 CNETERR("Dropping message for %s: peer not alive\n",
883                         libcfs_id2str(msg->msg_target));
884                 msg->msg_health_status = LNET_MSG_STATUS_REMOTE_DROPPED;
885                 if (do_send)
886                         lnet_finalize(msg, -EHOSTUNREACH);
887
888                 lnet_net_lock(cpt);
889                 return -EHOSTUNREACH;
890         }
891
892         if (msg->msg_md != NULL &&
893             (msg->msg_md->md_flags & LNET_MD_FLAG_ABORTED) != 0) {
894                 lnet_net_unlock(cpt);
895
896                 CNETERR("Aborting message for %s: LNetM[DE]Unlink() already "
897                         "called on the MD/ME.\n",
898                         libcfs_id2str(msg->msg_target));
899                 if (do_send) {
900                         msg->msg_no_resend = true;
901                         CDEBUG(D_NET, "msg %p to %s canceled and will not be resent\n",
902                                msg, libcfs_id2str(msg->msg_target));
903                         lnet_finalize(msg, -ECANCELED);
904                 }
905
906                 lnet_net_lock(cpt);
907                 return -ECANCELED;
908         }
909
910         if (!msg->msg_peertxcredit) {
911                 spin_lock(&lp->lpni_lock);
912                 LASSERT((lp->lpni_txcredits < 0) ==
913                         !list_empty(&lp->lpni_txq));
914
915                 msg->msg_peertxcredit = 1;
916                 lp->lpni_txqnob += msg->msg_len + sizeof(struct lnet_hdr);
917                 lp->lpni_txcredits--;
918
919                 if (lp->lpni_txcredits < lp->lpni_mintxcredits)
920                         lp->lpni_mintxcredits = lp->lpni_txcredits;
921
922                 if (lp->lpni_txcredits < 0) {
923                         msg->msg_tx_delayed = 1;
924                         list_add_tail(&msg->msg_list, &lp->lpni_txq);
925                         spin_unlock(&lp->lpni_lock);
926                         return LNET_CREDIT_WAIT;
927                 }
928                 spin_unlock(&lp->lpni_lock);
929         }
930
931         if (!msg->msg_txcredit) {
932                 LASSERT((tq->tq_credits < 0) ==
933                         !list_empty(&tq->tq_delayed));
934
935                 msg->msg_txcredit = 1;
936                 tq->tq_credits--;
937                 atomic_dec(&ni->ni_tx_credits);
938
939                 if (tq->tq_credits < tq->tq_credits_min)
940                         tq->tq_credits_min = tq->tq_credits;
941
942                 if (tq->tq_credits < 0) {
943                         msg->msg_tx_delayed = 1;
944                         list_add_tail(&msg->msg_list, &tq->tq_delayed);
945                         return LNET_CREDIT_WAIT;
946                 }
947         }
948
949         /* unset the tx_delay flag as we're going to send it now */
950         msg->msg_tx_delayed = 0;
951
952         if (do_send) {
953                 lnet_net_unlock(cpt);
954                 lnet_ni_send(ni, msg);
955                 lnet_net_lock(cpt);
956         }
957         return LNET_CREDIT_OK;
958 }
959
960
961 static struct lnet_rtrbufpool *
962 lnet_msg2bufpool(struct lnet_msg *msg)
963 {
964         struct lnet_rtrbufpool  *rbp;
965         int                     cpt;
966
967         LASSERT(msg->msg_rx_committed);
968
969         cpt = msg->msg_rx_cpt;
970         rbp = &the_lnet.ln_rtrpools[cpt][0];
971
972         LASSERT(msg->msg_len <= LNET_MTU);
973         while (msg->msg_len > (unsigned int)rbp->rbp_npages * PAGE_SIZE) {
974                 rbp++;
975                 LASSERT(rbp < &the_lnet.ln_rtrpools[cpt][LNET_NRBPOOLS]);
976         }
977
978         return rbp;
979 }
980
981 static int
982 lnet_post_routed_recv_locked(struct lnet_msg *msg, int do_recv)
983 {
984         /* lnet_parse is going to lnet_net_unlock immediately after this, so it
985          * sets do_recv FALSE and I don't do the unlock/send/lock bit.
986          * I return LNET_CREDIT_WAIT if msg blocked and LNET_CREDIT_OK if
987          * received or OK to receive */
988         struct lnet_peer_ni *lpni = msg->msg_rxpeer;
989         struct lnet_peer *lp;
990         struct lnet_rtrbufpool *rbp;
991         struct lnet_rtrbuf *rb;
992
993         LASSERT(msg->msg_iov == NULL);
994         LASSERT(msg->msg_kiov == NULL);
995         LASSERT(msg->msg_niov == 0);
996         LASSERT(msg->msg_routing);
997         LASSERT(msg->msg_receiving);
998         LASSERT(!msg->msg_sending);
999         LASSERT(lpni->lpni_peer_net);
1000         LASSERT(lpni->lpni_peer_net->lpn_peer);
1001
1002         lp = lpni->lpni_peer_net->lpn_peer;
1003
1004         /* non-lnet_parse callers only receive delayed messages */
1005         LASSERT(!do_recv || msg->msg_rx_delayed);
1006
1007         if (!msg->msg_peerrtrcredit) {
1008                 /* lpni_lock protects the credit manipulation */
1009                 spin_lock(&lpni->lpni_lock);
1010                 /* lp_lock protects the lp_rtrq */
1011                 spin_lock(&lp->lp_lock);
1012
1013                 msg->msg_peerrtrcredit = 1;
1014                 lpni->lpni_rtrcredits--;
1015                 if (lpni->lpni_rtrcredits < lpni->lpni_minrtrcredits)
1016                         lpni->lpni_minrtrcredits = lpni->lpni_rtrcredits;
1017
1018                 if (lpni->lpni_rtrcredits < 0) {
1019                         /* must have checked eager_recv before here */
1020                         LASSERT(msg->msg_rx_ready_delay);
1021                         msg->msg_rx_delayed = 1;
1022                         list_add_tail(&msg->msg_list, &lp->lp_rtrq);
1023                         spin_unlock(&lp->lp_lock);
1024                         spin_unlock(&lpni->lpni_lock);
1025                         return LNET_CREDIT_WAIT;
1026                 }
1027                 spin_unlock(&lp->lp_lock);
1028                 spin_unlock(&lpni->lpni_lock);
1029         }
1030
1031         rbp = lnet_msg2bufpool(msg);
1032
1033         if (!msg->msg_rtrcredit) {
1034                 msg->msg_rtrcredit = 1;
1035                 rbp->rbp_credits--;
1036                 if (rbp->rbp_credits < rbp->rbp_mincredits)
1037                         rbp->rbp_mincredits = rbp->rbp_credits;
1038
1039                 if (rbp->rbp_credits < 0) {
1040                         /* must have checked eager_recv before here */
1041                         LASSERT(msg->msg_rx_ready_delay);
1042                         msg->msg_rx_delayed = 1;
1043                         list_add_tail(&msg->msg_list, &rbp->rbp_msgs);
1044                         return LNET_CREDIT_WAIT;
1045                 }
1046         }
1047
1048         LASSERT(!list_empty(&rbp->rbp_bufs));
1049         rb = list_entry(rbp->rbp_bufs.next, struct lnet_rtrbuf, rb_list);
1050         list_del(&rb->rb_list);
1051
1052         msg->msg_niov = rbp->rbp_npages;
1053         msg->msg_kiov = &rb->rb_kiov[0];
1054
1055         /* unset the msg-rx_delayed flag since we're receiving the message */
1056         msg->msg_rx_delayed = 0;
1057
1058         if (do_recv) {
1059                 int cpt = msg->msg_rx_cpt;
1060
1061                 lnet_net_unlock(cpt);
1062                 lnet_ni_recv(msg->msg_rxni, msg->msg_private, msg, 1,
1063                              0, msg->msg_len, msg->msg_len);
1064                 lnet_net_lock(cpt);
1065         }
1066         return LNET_CREDIT_OK;
1067 }
1068
1069 void
1070 lnet_return_tx_credits_locked(struct lnet_msg *msg)
1071 {
1072         struct lnet_peer_ni     *txpeer = msg->msg_txpeer;
1073         struct lnet_ni          *txni = msg->msg_txni;
1074         struct lnet_msg         *msg2;
1075
1076         if (msg->msg_txcredit) {
1077                 struct lnet_ni       *ni = msg->msg_txni;
1078                 struct lnet_tx_queue *tq = ni->ni_tx_queues[msg->msg_tx_cpt];
1079
1080                 /* give back NI txcredits */
1081                 msg->msg_txcredit = 0;
1082
1083                 LASSERT((tq->tq_credits < 0) ==
1084                         !list_empty(&tq->tq_delayed));
1085
1086                 tq->tq_credits++;
1087                 atomic_inc(&ni->ni_tx_credits);
1088                 if (tq->tq_credits <= 0) {
1089                         msg2 = list_entry(tq->tq_delayed.next,
1090                                           struct lnet_msg, msg_list);
1091                         list_del(&msg2->msg_list);
1092
1093                         LASSERT(msg2->msg_txni == ni);
1094                         LASSERT(msg2->msg_tx_delayed);
1095                         LASSERT(msg2->msg_tx_cpt == msg->msg_tx_cpt);
1096
1097                         (void) lnet_post_send_locked(msg2, 1);
1098                 }
1099         }
1100
1101         if (msg->msg_peertxcredit) {
1102                 /* give back peer txcredits */
1103                 msg->msg_peertxcredit = 0;
1104
1105                 spin_lock(&txpeer->lpni_lock);
1106                 LASSERT((txpeer->lpni_txcredits < 0) ==
1107                         !list_empty(&txpeer->lpni_txq));
1108
1109                 txpeer->lpni_txqnob -= msg->msg_len + sizeof(struct lnet_hdr);
1110                 LASSERT(txpeer->lpni_txqnob >= 0);
1111
1112                 txpeer->lpni_txcredits++;
1113                 if (txpeer->lpni_txcredits <= 0) {
1114                         int msg2_cpt;
1115
1116                         msg2 = list_entry(txpeer->lpni_txq.next,
1117                                               struct lnet_msg, msg_list);
1118                         list_del(&msg2->msg_list);
1119                         spin_unlock(&txpeer->lpni_lock);
1120
1121                         LASSERT(msg2->msg_txpeer == txpeer);
1122                         LASSERT(msg2->msg_tx_delayed);
1123
1124                         msg2_cpt = msg2->msg_tx_cpt;
1125
1126                         /*
1127                          * The msg_cpt can be different from the msg2_cpt
1128                          * so we need to make sure we lock the correct cpt
1129                          * for msg2.
1130                          * Once we call lnet_post_send_locked() it is no
1131                          * longer safe to access msg2, since it could've
1132                          * been freed by lnet_finalize(), but we still
1133                          * need to relock the correct cpt, so we cache the
1134                          * msg2_cpt for the purpose of the check that
1135                          * follows the call to lnet_pose_send_locked().
1136                          */
1137                         if (msg2_cpt != msg->msg_tx_cpt) {
1138                                 lnet_net_unlock(msg->msg_tx_cpt);
1139                                 lnet_net_lock(msg2_cpt);
1140                         }
1141                         (void) lnet_post_send_locked(msg2, 1);
1142                         if (msg2_cpt != msg->msg_tx_cpt) {
1143                                 lnet_net_unlock(msg2_cpt);
1144                                 lnet_net_lock(msg->msg_tx_cpt);
1145                         }
1146                 } else {
1147                         spin_unlock(&txpeer->lpni_lock);
1148                 }
1149         }
1150
1151         if (txni != NULL) {
1152                 msg->msg_txni = NULL;
1153                 lnet_ni_decref_locked(txni, msg->msg_tx_cpt);
1154         }
1155
1156         if (txpeer != NULL) {
1157                 msg->msg_txpeer = NULL;
1158                 lnet_peer_ni_decref_locked(txpeer);
1159         }
1160 }
1161
1162 void
1163 lnet_schedule_blocked_locked(struct lnet_rtrbufpool *rbp)
1164 {
1165         struct lnet_msg *msg;
1166
1167         if (list_empty(&rbp->rbp_msgs))
1168                 return;
1169         msg = list_entry(rbp->rbp_msgs.next,
1170                          struct lnet_msg, msg_list);
1171         list_del(&msg->msg_list);
1172
1173         (void)lnet_post_routed_recv_locked(msg, 1);
1174 }
1175
1176 void
1177 lnet_drop_routed_msgs_locked(struct list_head *list, int cpt)
1178 {
1179         struct lnet_msg *msg;
1180         struct lnet_msg *tmp;
1181
1182         lnet_net_unlock(cpt);
1183
1184         list_for_each_entry_safe(msg, tmp, list, msg_list) {
1185                 lnet_ni_recv(msg->msg_rxni, msg->msg_private, NULL,
1186                              0, 0, 0, msg->msg_hdr.payload_length);
1187                 list_del_init(&msg->msg_list);
1188                 msg->msg_no_resend = true;
1189                 msg->msg_health_status = LNET_MSG_STATUS_REMOTE_ERROR;
1190                 lnet_finalize(msg, -ECANCELED);
1191         }
1192
1193         lnet_net_lock(cpt);
1194 }
1195
1196 void
1197 lnet_return_rx_credits_locked(struct lnet_msg *msg)
1198 {
1199         struct lnet_peer_ni *rxpeerni = msg->msg_rxpeer;
1200         struct lnet_peer *lp;
1201         struct lnet_ni *rxni = msg->msg_rxni;
1202         struct lnet_msg *msg2;
1203
1204         if (msg->msg_rtrcredit) {
1205                 /* give back global router credits */
1206                 struct lnet_rtrbuf *rb;
1207                 struct lnet_rtrbufpool *rbp;
1208
1209                 /* NB If a msg ever blocks for a buffer in rbp_msgs, it stays
1210                  * there until it gets one allocated, or aborts the wait
1211                  * itself */
1212                 LASSERT(msg->msg_kiov != NULL);
1213
1214                 rb = list_entry(msg->msg_kiov, struct lnet_rtrbuf, rb_kiov[0]);
1215                 rbp = rb->rb_pool;
1216
1217                 msg->msg_kiov = NULL;
1218                 msg->msg_rtrcredit = 0;
1219
1220                 LASSERT(rbp == lnet_msg2bufpool(msg));
1221
1222                 LASSERT((rbp->rbp_credits > 0) ==
1223                         !list_empty(&rbp->rbp_bufs));
1224
1225                 /* If routing is now turned off, we just drop this buffer and
1226                  * don't bother trying to return credits.  */
1227                 if (!the_lnet.ln_routing) {
1228                         lnet_destroy_rtrbuf(rb, rbp->rbp_npages);
1229                         goto routing_off;
1230                 }
1231
1232                 /* It is possible that a user has lowered the desired number of
1233                  * buffers in this pool.  Make sure we never put back
1234                  * more buffers than the stated number. */
1235                 if (unlikely(rbp->rbp_credits >= rbp->rbp_req_nbuffers)) {
1236                         /* Discard this buffer so we don't have too
1237                          * many. */
1238                         lnet_destroy_rtrbuf(rb, rbp->rbp_npages);
1239                         rbp->rbp_nbuffers--;
1240                 } else {
1241                         list_add(&rb->rb_list, &rbp->rbp_bufs);
1242                         rbp->rbp_credits++;
1243                         if (rbp->rbp_credits <= 0)
1244                                 lnet_schedule_blocked_locked(rbp);
1245                 }
1246         }
1247
1248 routing_off:
1249         if (msg->msg_peerrtrcredit) {
1250                 LASSERT(rxpeerni);
1251                 LASSERT(rxpeerni->lpni_peer_net);
1252                 LASSERT(rxpeerni->lpni_peer_net->lpn_peer);
1253
1254                 lp = rxpeerni->lpni_peer_net->lpn_peer;
1255
1256                 /* give back peer router credits */
1257                 msg->msg_peerrtrcredit = 0;
1258
1259                 spin_lock(&rxpeerni->lpni_lock);
1260                 spin_lock(&lp->lp_lock);
1261
1262                 rxpeerni->lpni_rtrcredits++;
1263
1264                 /* drop all messages which are queued to be routed on that
1265                  * peer. */
1266                 if (!the_lnet.ln_routing) {
1267                         LIST_HEAD(drop);
1268                         list_splice_init(&lp->lp_rtrq, &drop);
1269                         spin_unlock(&lp->lp_lock);
1270                         spin_unlock(&rxpeerni->lpni_lock);
1271                         lnet_drop_routed_msgs_locked(&drop, msg->msg_rx_cpt);
1272                 } else if (!list_empty(&lp->lp_rtrq)) {
1273                         int msg2_cpt;
1274
1275                         msg2 = list_entry(lp->lp_rtrq.next,
1276                                           struct lnet_msg, msg_list);
1277                         list_del(&msg2->msg_list);
1278                         msg2_cpt = msg2->msg_rx_cpt;
1279                         spin_unlock(&lp->lp_lock);
1280                         spin_unlock(&rxpeerni->lpni_lock);
1281                         /*
1282                          * messages on the lp_rtrq can be from any NID in
1283                          * the peer, which means they might have different
1284                          * cpts. We need to make sure we lock the right
1285                          * one.
1286                          */
1287                         if (msg2_cpt != msg->msg_rx_cpt) {
1288                                 lnet_net_unlock(msg->msg_rx_cpt);
1289                                 lnet_net_lock(msg2_cpt);
1290                         }
1291                         (void) lnet_post_routed_recv_locked(msg2, 1);
1292                         if (msg2_cpt != msg->msg_rx_cpt) {
1293                                 lnet_net_unlock(msg2_cpt);
1294                                 lnet_net_lock(msg->msg_rx_cpt);
1295                         }
1296                 } else {
1297                         spin_unlock(&lp->lp_lock);
1298                         spin_unlock(&rxpeerni->lpni_lock);
1299                 }
1300         }
1301         if (rxni != NULL) {
1302                 msg->msg_rxni = NULL;
1303                 lnet_ni_decref_locked(rxni, msg->msg_rx_cpt);
1304         }
1305         if (rxpeerni != NULL) {
1306                 msg->msg_rxpeer = NULL;
1307                 lnet_peer_ni_decref_locked(rxpeerni);
1308         }
1309 }
1310
1311 static int
1312 lnet_compare_gw_lpnis(struct lnet_peer_ni *p1, struct lnet_peer_ni *p2)
1313 {
1314         if (p1->lpni_txqnob < p2->lpni_txqnob)
1315                 return 1;
1316
1317         if (p1->lpni_txqnob > p2->lpni_txqnob)
1318                 return -1;
1319
1320         if (p1->lpni_txcredits > p2->lpni_txcredits)
1321                 return 1;
1322
1323         if (p1->lpni_txcredits < p2->lpni_txcredits)
1324                 return -1;
1325
1326         return 0;
1327 }
1328
1329 static struct lnet_peer_ni *
1330 lnet_select_peer_ni(struct lnet_ni *best_ni, lnet_nid_t dst_nid,
1331                     struct lnet_peer *peer,
1332                     struct lnet_peer_net *peer_net)
1333 {
1334         /*
1335          * Look at the peer NIs for the destination peer that connect
1336          * to the chosen net. If a peer_ni is preferred when using the
1337          * best_ni to communicate, we use that one. If there is no
1338          * preferred peer_ni, or there are multiple preferred peer_ni,
1339          * the available transmit credits are used. If the transmit
1340          * credits are equal, we round-robin over the peer_ni.
1341          */
1342         struct lnet_peer_ni *lpni = NULL;
1343         struct lnet_peer_ni *best_lpni = NULL;
1344         int best_lpni_credits = INT_MIN;
1345         bool preferred = false;
1346         bool ni_is_pref;
1347         int best_lpni_healthv = 0;
1348         int lpni_healthv;
1349
1350         while ((lpni = lnet_get_next_peer_ni_locked(peer, peer_net, lpni))) {
1351                 /*
1352                  * if the best_ni we've chosen aleady has this lpni
1353                  * preferred, then let's use it
1354                  */
1355                 if (best_ni) {
1356                         ni_is_pref = lnet_peer_is_pref_nid_locked(lpni,
1357                                                                 best_ni->ni_nid);
1358                         CDEBUG(D_NET, "%s ni_is_pref = %d\n",
1359                                libcfs_nid2str(best_ni->ni_nid), ni_is_pref);
1360                 } else {
1361                         ni_is_pref = false;
1362                 }
1363
1364                 lpni_healthv = atomic_read(&lpni->lpni_healthv);
1365
1366                 if (best_lpni)
1367                         CDEBUG(D_NET, "%s c:[%d, %d], s:[%d, %d]\n",
1368                                 libcfs_nid2str(lpni->lpni_nid),
1369                                 lpni->lpni_txcredits, best_lpni_credits,
1370                                 lpni->lpni_seq, best_lpni->lpni_seq);
1371
1372                 /* pick the healthiest peer ni */
1373                 if (lpni_healthv < best_lpni_healthv) {
1374                         continue;
1375                 } else if (lpni_healthv > best_lpni_healthv) {
1376                         best_lpni_healthv = lpni_healthv;
1377                 /* if this is a preferred peer use it */
1378                 } else if (!preferred && ni_is_pref) {
1379                         preferred = true;
1380                 } else if (preferred && !ni_is_pref) {
1381                         /*
1382                          * this is not the preferred peer so let's ignore
1383                          * it.
1384                          */
1385                         continue;
1386                 } else if (lpni->lpni_txcredits < best_lpni_credits) {
1387                         /*
1388                          * We already have a peer that has more credits
1389                          * available than this one. No need to consider
1390                          * this peer further.
1391                          */
1392                         continue;
1393                 } else if (lpni->lpni_txcredits == best_lpni_credits) {
1394                         /*
1395                          * The best peer found so far and the current peer
1396                          * have the same number of available credits let's
1397                          * make sure to select between them using Round
1398                          * Robin
1399                          */
1400                         if (best_lpni) {
1401                                 if (best_lpni->lpni_seq <= lpni->lpni_seq)
1402                                         continue;
1403                         }
1404                 }
1405
1406                 best_lpni = lpni;
1407                 best_lpni_credits = lpni->lpni_txcredits;
1408         }
1409
1410         /* if we still can't find a peer ni then we can't reach it */
1411         if (!best_lpni) {
1412                 __u32 net_id = (peer_net) ? peer_net->lpn_net_id :
1413                         LNET_NIDNET(dst_nid);
1414                 CDEBUG(D_NET, "no peer_ni found on peer net %s\n",
1415                                 libcfs_net2str(net_id));
1416                 return NULL;
1417         }
1418
1419         CDEBUG(D_NET, "sd_best_lpni = %s\n",
1420                libcfs_nid2str(best_lpni->lpni_nid));
1421
1422         return best_lpni;
1423 }
1424
1425 /*
1426  * Prerequisite: the best_ni should already be set in the sd
1427  */
1428 static inline struct lnet_peer_ni *
1429 lnet_find_best_lpni_on_net(struct lnet_ni *lni, lnet_nid_t dst_nid,
1430                            struct lnet_peer *peer, __u32 net_id)
1431 {
1432         struct lnet_peer_net *peer_net;
1433
1434         /*
1435          * The gateway is Multi-Rail capable so now we must select the
1436          * proper peer_ni
1437          */
1438         peer_net = lnet_peer_get_net_locked(peer, net_id);
1439
1440         if (!peer_net) {
1441                 CERROR("gateway peer %s has no NI on net %s\n",
1442                        libcfs_nid2str(peer->lp_primary_nid),
1443                        libcfs_net2str(net_id));
1444                 return NULL;
1445         }
1446
1447         return lnet_select_peer_ni(lni, dst_nid, peer, peer_net);
1448 }
1449
1450 /* Compare route priorities and hop counts */
1451 static int
1452 lnet_compare_routes(struct lnet_route *r1, struct lnet_route *r2)
1453 {
1454         int r1_hops = (r1->lr_hops == LNET_UNDEFINED_HOPS) ? 1 : r1->lr_hops;
1455         int r2_hops = (r2->lr_hops == LNET_UNDEFINED_HOPS) ? 1 : r2->lr_hops;
1456
1457         if (r1->lr_priority < r2->lr_priority)
1458                 return 1;
1459
1460         if (r1->lr_priority > r2->lr_priority)
1461                 return -1;
1462
1463         if (r1_hops < r2_hops)
1464                 return 1;
1465
1466         if (r1_hops > r2_hops)
1467                 return -1;
1468
1469         return 0;
1470 }
1471
1472 static struct lnet_route *
1473 lnet_find_route_locked(struct lnet_remotenet *rnet, __u32 src_net,
1474                        struct lnet_route **prev_route,
1475                        struct lnet_peer_ni **gwni)
1476 {
1477         struct lnet_peer_ni *lpni, *best_gw_ni = NULL;
1478         struct lnet_route *best_route;
1479         struct lnet_route *last_route;
1480         struct lnet_route *route;
1481         int rc;
1482         __u32 restrict_net;
1483         __u32 any_net = LNET_NIDNET(LNET_NID_ANY);
1484
1485         best_route = last_route = NULL;
1486         list_for_each_entry(route, &rnet->lrn_routes, lr_list) {
1487                 if (!lnet_is_route_alive(route))
1488                         continue;
1489
1490                 /* If the src_net is specified then we need to find an lpni
1491                  * on that network
1492                  */
1493                 restrict_net = src_net == any_net ? route->lr_lnet : src_net;
1494                 if (!best_route) {
1495                         lpni = lnet_find_best_lpni_on_net(NULL, LNET_NID_ANY,
1496                                                           route->lr_gateway,
1497                                                           restrict_net);
1498                         if (lpni) {
1499                                 best_route = last_route = route;
1500                                 best_gw_ni = lpni;
1501                         } else
1502                                 CERROR("Gateway %s does not have a peer NI on net %s\n",
1503                                        libcfs_nid2str(route->lr_gateway->lp_primary_nid),
1504                                        libcfs_net2str(restrict_net));
1505
1506                         continue;
1507                 }
1508
1509                 /* no protection on below fields, but it's harmless */
1510                 if (last_route->lr_seq - route->lr_seq < 0)
1511                         last_route = route;
1512
1513                 rc = lnet_compare_routes(route, best_route);
1514                 if (rc == -1)
1515                         continue;
1516
1517                 lpni = lnet_find_best_lpni_on_net(NULL, LNET_NID_ANY,
1518                                                   route->lr_gateway,
1519                                                   restrict_net);
1520                 if (!lpni) {
1521                         CERROR("Gateway %s does not have a peer NI on net %s\n",
1522                                libcfs_nid2str(route->lr_gateway->lp_primary_nid),
1523                                libcfs_net2str(restrict_net));
1524                         continue;
1525                 }
1526
1527                 if (rc == 1) {
1528                         best_route = route;
1529                         best_gw_ni = lpni;
1530                         continue;
1531                 }
1532
1533                 rc = lnet_compare_gw_lpnis(lpni, best_gw_ni);
1534                 if (rc == -1)
1535                         continue;
1536
1537                 if (rc == 1 || route->lr_seq <= best_route->lr_seq) {
1538                         best_route = route;
1539                         best_gw_ni = lpni;
1540                         continue;
1541                 }
1542         }
1543
1544         *prev_route = last_route;
1545         *gwni = best_gw_ni;
1546
1547         return best_route;
1548 }
1549
1550 static struct lnet_ni *
1551 lnet_get_best_ni(struct lnet_net *local_net, struct lnet_ni *best_ni,
1552                  struct lnet_peer *peer, struct lnet_peer_net *peer_net,
1553                  int md_cpt)
1554 {
1555         struct lnet_ni *ni = NULL;
1556         unsigned int shortest_distance;
1557         int best_credits;
1558         int best_healthv;
1559
1560         /*
1561          * If there is no peer_ni that we can send to on this network,
1562          * then there is no point in looking for a new best_ni here.
1563         */
1564         if (!lnet_get_next_peer_ni_locked(peer, peer_net, NULL))
1565                 return best_ni;
1566
1567         if (best_ni == NULL) {
1568                 shortest_distance = UINT_MAX;
1569                 best_credits = INT_MIN;
1570                 best_healthv = 0;
1571         } else {
1572                 shortest_distance = cfs_cpt_distance(lnet_cpt_table(), md_cpt,
1573                                                      best_ni->ni_dev_cpt);
1574                 best_credits = atomic_read(&best_ni->ni_tx_credits);
1575                 best_healthv = atomic_read(&best_ni->ni_healthv);
1576         }
1577
1578         while ((ni = lnet_get_next_ni_locked(local_net, ni))) {
1579                 unsigned int distance;
1580                 int ni_credits;
1581                 int ni_healthv;
1582                 int ni_fatal;
1583
1584                 ni_credits = atomic_read(&ni->ni_tx_credits);
1585                 ni_healthv = atomic_read(&ni->ni_healthv);
1586                 ni_fatal = atomic_read(&ni->ni_fatal_error_on);
1587
1588                 /*
1589                  * calculate the distance from the CPT on which
1590                  * the message memory is allocated to the CPT of
1591                  * the NI's physical device
1592                  */
1593                 distance = cfs_cpt_distance(lnet_cpt_table(),
1594                                             md_cpt,
1595                                             ni->ni_dev_cpt);
1596
1597                 CDEBUG(D_NET, "compare ni %s [c:%d, d:%d, s:%d] with best_ni %s [c:%d, d:%d, s:%d]\n",
1598                        libcfs_nid2str(ni->ni_nid), ni_credits, distance,
1599                        ni->ni_seq, (best_ni) ? libcfs_nid2str(best_ni->ni_nid)
1600                         : "not seleced", best_credits, shortest_distance,
1601                         (best_ni) ? best_ni->ni_seq : 0);
1602
1603                 /*
1604                  * All distances smaller than the NUMA range
1605                  * are treated equally.
1606                  */
1607                 if (distance < lnet_numa_range)
1608                         distance = lnet_numa_range;
1609
1610                 /*
1611                  * Select on health, shorter distance, available
1612                  * credits, then round-robin.
1613                  */
1614                 if (ni_fatal) {
1615                         continue;
1616                 } else if (ni_healthv < best_healthv) {
1617                         continue;
1618                 } else if (ni_healthv > best_healthv) {
1619                         best_healthv = ni_healthv;
1620                         /*
1621                          * If we're going to prefer this ni because it's
1622                          * the healthiest, then we should set the
1623                          * shortest_distance in the algorithm in case
1624                          * there are multiple NIs with the same health but
1625                          * different distances.
1626                          */
1627                         if (distance < shortest_distance)
1628                                 shortest_distance = distance;
1629                 } else if (distance > shortest_distance) {
1630                         continue;
1631                 } else if (distance < shortest_distance) {
1632                         shortest_distance = distance;
1633                 } else if (ni_credits < best_credits) {
1634                         continue;
1635                 } else if (ni_credits == best_credits) {
1636                         if (best_ni && best_ni->ni_seq <= ni->ni_seq)
1637                                 continue;
1638                 }
1639                 best_ni = ni;
1640                 best_credits = ni_credits;
1641         }
1642
1643         CDEBUG(D_NET, "selected best_ni %s\n",
1644                (best_ni) ? libcfs_nid2str(best_ni->ni_nid) : "no selection");
1645
1646         return best_ni;
1647 }
1648
1649 /*
1650  * Traffic to the LNET_RESERVED_PORTAL may not trigger peer discovery,
1651  * because such traffic is required to perform discovery. We therefore
1652  * exclude all GET and PUT on that portal. We also exclude all ACK and
1653  * REPLY traffic, but that is because the portal is not tracked in the
1654  * message structure for these message types. We could restrict this
1655  * further by also checking for LNET_PROTO_PING_MATCHBITS.
1656  */
1657 static bool
1658 lnet_msg_discovery(struct lnet_msg *msg)
1659 {
1660         if (msg->msg_type == LNET_MSG_PUT) {
1661                 if (msg->msg_hdr.msg.put.ptl_index != LNET_RESERVED_PORTAL)
1662                         return true;
1663         } else if (msg->msg_type == LNET_MSG_GET) {
1664                 if (msg->msg_hdr.msg.get.ptl_index != LNET_RESERVED_PORTAL)
1665                         return true;
1666         }
1667         return false;
1668 }
1669
1670 #define SRC_SPEC        0x0001
1671 #define SRC_ANY         0x0002
1672 #define LOCAL_DST       0x0004
1673 #define REMOTE_DST      0x0008
1674 #define MR_DST          0x0010
1675 #define NMR_DST         0x0020
1676 #define SND_RESP        0x0040
1677
1678 /* The following to defines are used for return codes */
1679 #define REPEAT_SEND     0x1000
1680 #define PASS_THROUGH    0x2000
1681
1682 /* The different cases lnet_select pathway needs to handle */
1683 #define SRC_SPEC_LOCAL_MR_DST   (SRC_SPEC | LOCAL_DST | MR_DST)
1684 #define SRC_SPEC_ROUTER_MR_DST  (SRC_SPEC | REMOTE_DST | MR_DST)
1685 #define SRC_SPEC_LOCAL_NMR_DST  (SRC_SPEC | LOCAL_DST | NMR_DST)
1686 #define SRC_SPEC_ROUTER_NMR_DST (SRC_SPEC | REMOTE_DST | NMR_DST)
1687 #define SRC_ANY_LOCAL_MR_DST    (SRC_ANY | LOCAL_DST | MR_DST)
1688 #define SRC_ANY_ROUTER_MR_DST   (SRC_ANY | REMOTE_DST | MR_DST)
1689 #define SRC_ANY_LOCAL_NMR_DST   (SRC_ANY | LOCAL_DST | NMR_DST)
1690 #define SRC_ANY_ROUTER_NMR_DST  (SRC_ANY | REMOTE_DST | NMR_DST)
1691
1692 static int
1693 lnet_handle_lo_send(struct lnet_send_data *sd)
1694 {
1695         struct lnet_msg *msg = sd->sd_msg;
1696         int cpt = sd->sd_cpt;
1697
1698         /* No send credit hassles with LOLND */
1699         lnet_ni_addref_locked(the_lnet.ln_loni, cpt);
1700         msg->msg_hdr.dest_nid = cpu_to_le64(the_lnet.ln_loni->ni_nid);
1701         if (!msg->msg_routing)
1702                 msg->msg_hdr.src_nid =
1703                         cpu_to_le64(the_lnet.ln_loni->ni_nid);
1704         msg->msg_target.nid = the_lnet.ln_loni->ni_nid;
1705         lnet_msg_commit(msg, cpt);
1706         msg->msg_txni = the_lnet.ln_loni;
1707
1708         return LNET_CREDIT_OK;
1709 }
1710
1711 static int
1712 lnet_handle_send(struct lnet_send_data *sd)
1713 {
1714         struct lnet_ni *best_ni = sd->sd_best_ni;
1715         struct lnet_peer_ni *best_lpni = sd->sd_best_lpni;
1716         struct lnet_peer_ni *final_dst_lpni = sd->sd_final_dst_lpni;
1717         struct lnet_msg *msg = sd->sd_msg;
1718         int cpt2;
1719         __u32 send_case = sd->sd_send_case;
1720         int rc;
1721         __u32 routing = send_case & REMOTE_DST;
1722          struct lnet_rsp_tracker *rspt;
1723
1724         /*
1725          * Increment sequence number of the selected peer so that we
1726          * pick the next one in Round Robin.
1727          */
1728         best_lpni->lpni_seq++;
1729
1730         /*
1731          * grab a reference on the peer_ni so it sticks around even if
1732          * we need to drop and relock the lnet_net_lock below.
1733          */
1734         lnet_peer_ni_addref_locked(best_lpni);
1735
1736         /*
1737          * Use lnet_cpt_of_nid() to determine the CPT used to commit the
1738          * message. This ensures that we get a CPT that is correct for
1739          * the NI when the NI has been restricted to a subset of all CPTs.
1740          * If the selected CPT differs from the one currently locked, we
1741          * must unlock and relock the lnet_net_lock(), and then check whether
1742          * the configuration has changed. We don't have a hold on the best_ni
1743          * yet, and it may have vanished.
1744          */
1745         cpt2 = lnet_cpt_of_nid_locked(best_lpni->lpni_nid, best_ni);
1746         if (sd->sd_cpt != cpt2) {
1747                 __u32 seq = lnet_get_dlc_seq_locked();
1748                 lnet_net_unlock(sd->sd_cpt);
1749                 sd->sd_cpt = cpt2;
1750                 lnet_net_lock(sd->sd_cpt);
1751                 if (seq != lnet_get_dlc_seq_locked()) {
1752                         lnet_peer_ni_decref_locked(best_lpni);
1753                         return REPEAT_SEND;
1754                 }
1755         }
1756
1757         /*
1758          * store the best_lpni in the message right away to avoid having
1759          * to do the same operation under different conditions
1760          */
1761         msg->msg_txpeer = best_lpni;
1762         msg->msg_txni = best_ni;
1763
1764         /*
1765          * grab a reference for the best_ni since now it's in use in this
1766          * send. The reference will be dropped in lnet_finalize()
1767          */
1768         lnet_ni_addref_locked(msg->msg_txni, sd->sd_cpt);
1769
1770         /*
1771          * Always set the target.nid to the best peer picked. Either the
1772          * NID will be one of the peer NIDs selected, or the same NID as
1773          * what was originally set in the target or it will be the NID of
1774          * a router if this message should be routed
1775          */
1776         msg->msg_target.nid = msg->msg_txpeer->lpni_nid;
1777
1778         /*
1779          * lnet_msg_commit assigns the correct cpt to the message, which
1780          * is used to decrement the correct refcount on the ni when it's
1781          * time to return the credits
1782          */
1783         lnet_msg_commit(msg, sd->sd_cpt);
1784
1785         /*
1786          * If we are routing the message then we keep the src_nid that was
1787          * set by the originator. If we are not routing then we are the
1788          * originator and set it here.
1789          */
1790         if (!msg->msg_routing)
1791                 msg->msg_hdr.src_nid = cpu_to_le64(msg->msg_txni->ni_nid);
1792
1793         if (routing) {
1794                 msg->msg_target_is_router = 1;
1795                 msg->msg_target.pid = LNET_PID_LUSTRE;
1796                 /*
1797                  * since we're routing we want to ensure that the
1798                  * msg_hdr.dest_nid is set to the final destination. When
1799                  * the router receives this message it knows how to route
1800                  * it.
1801                  *
1802                  * final_dst_lpni is set at the beginning of the
1803                  * lnet_select_pathway() function and is never changed.
1804                  * It's safe to use it here.
1805                  */
1806                 msg->msg_hdr.dest_nid = cpu_to_le64(final_dst_lpni->lpni_nid);
1807         } else {
1808                 /*
1809                  * if we're not routing set the dest_nid to the best peer
1810                  * ni NID that we picked earlier in the algorithm.
1811                  */
1812                 msg->msg_hdr.dest_nid = cpu_to_le64(msg->msg_txpeer->lpni_nid);
1813         }
1814
1815         /*
1816          * if we have response tracker block update it with the next hop
1817          * nid
1818          */
1819         if (msg->msg_md) {
1820                 rspt = msg->msg_md->md_rspt_ptr;
1821                 if (rspt) {
1822                         rspt->rspt_next_hop_nid = msg->msg_txpeer->lpni_nid;
1823                         CDEBUG(D_NET, "rspt_next_hop_nid = %s\n",
1824                                libcfs_nid2str(rspt->rspt_next_hop_nid));
1825                 }
1826         }
1827
1828         rc = lnet_post_send_locked(msg, 0);
1829
1830         if (!rc)
1831                 CDEBUG(D_NET, "TRACE: %s(%s:%s) -> %s(%s:%s) %s : %s try# %d\n",
1832                        libcfs_nid2str(msg->msg_hdr.src_nid),
1833                        libcfs_nid2str(msg->msg_txni->ni_nid),
1834                        libcfs_nid2str(sd->sd_src_nid),
1835                        libcfs_nid2str(msg->msg_hdr.dest_nid),
1836                        libcfs_nid2str(sd->sd_dst_nid),
1837                        libcfs_nid2str(msg->msg_txpeer->lpni_nid),
1838                        libcfs_nid2str(sd->sd_rtr_nid),
1839                        lnet_msgtyp2str(msg->msg_type), msg->msg_retry_count);
1840
1841         return rc;
1842 }
1843
1844 static inline void
1845 lnet_set_non_mr_pref_nid(struct lnet_peer_ni *lpni, struct lnet_ni *lni,
1846                          struct lnet_msg *msg)
1847 {
1848         if (msg->msg_type != LNET_MSG_REPLY && msg->msg_type != LNET_MSG_ACK &&
1849             lpni->lpni_pref_nnids == 0) {
1850                 CDEBUG(D_NET, "Setting preferred local NID %s on NMR peer %s\n",
1851                        libcfs_nid2str(lni->ni_nid),
1852                        libcfs_nid2str(lpni->lpni_nid));
1853                 lnet_peer_ni_set_non_mr_pref_nid(lpni, lni->ni_nid);
1854         }
1855 }
1856
1857 /*
1858  * Source Specified
1859  * Local Destination
1860  * non-mr peer
1861  *
1862  * use the source and destination NIDs as the pathway
1863  */
1864 static int
1865 lnet_handle_spec_local_nmr_dst(struct lnet_send_data *sd)
1866 {
1867         /* the destination lpni is set before we get here. */
1868
1869         /* find local NI */
1870         sd->sd_best_ni = lnet_nid2ni_locked(sd->sd_src_nid, sd->sd_cpt);
1871         if (!sd->sd_best_ni) {
1872                 CERROR("Can't send to %s: src %s is not a "
1873                        "local nid\n", libcfs_nid2str(sd->sd_dst_nid),
1874                                 libcfs_nid2str(sd->sd_src_nid));
1875                 return -EINVAL;
1876         }
1877
1878         lnet_set_non_mr_pref_nid(sd->sd_best_lpni, sd->sd_best_ni, sd->sd_msg);
1879
1880         return lnet_handle_send(sd);
1881 }
1882
1883 /*
1884  * Source Specified
1885  * Local Destination
1886  * MR Peer
1887  *
1888  * Don't run the selection algorithm on the peer NIs. By specifying the
1889  * local NID, we're also saying that we should always use the destination NID
1890  * provided. This handles the case where we should be using the same
1891  * destination NID for the all the messages which belong to the same RPC
1892  * request.
1893  */
1894 static int
1895 lnet_handle_spec_local_mr_dst(struct lnet_send_data *sd)
1896 {
1897         sd->sd_best_ni = lnet_nid2ni_locked(sd->sd_src_nid, sd->sd_cpt);
1898         if (!sd->sd_best_ni) {
1899                 CERROR("Can't send to %s: src %s is not a "
1900                        "local nid\n", libcfs_nid2str(sd->sd_dst_nid),
1901                                 libcfs_nid2str(sd->sd_src_nid));
1902                 return -EINVAL;
1903         }
1904
1905         if (sd->sd_best_lpni &&
1906             sd->sd_best_lpni->lpni_nid == the_lnet.ln_loni->ni_nid)
1907                 return lnet_handle_lo_send(sd);
1908         else if (sd->sd_best_lpni)
1909                 return lnet_handle_send(sd);
1910
1911         CERROR("can't send to %s. no NI on %s\n",
1912                libcfs_nid2str(sd->sd_dst_nid),
1913                libcfs_net2str(sd->sd_best_ni->ni_net->net_id));
1914
1915         return -EHOSTUNREACH;
1916 }
1917
1918 struct lnet_ni *
1919 lnet_find_best_ni_on_spec_net(struct lnet_ni *cur_best_ni,
1920                               struct lnet_peer *peer,
1921                               struct lnet_peer_net *peer_net,
1922                               int cpt,
1923                               bool incr_seq)
1924 {
1925         struct lnet_net *local_net;
1926         struct lnet_ni *best_ni;
1927
1928         local_net = lnet_get_net_locked(peer_net->lpn_net_id);
1929         if (!local_net)
1930                 return NULL;
1931
1932         /*
1933          * Iterate through the NIs in this local Net and select
1934          * the NI to send from. The selection is determined by
1935          * these 3 criterion in the following priority:
1936          *      1. NUMA
1937          *      2. NI available credits
1938          *      3. Round Robin
1939          */
1940         best_ni = lnet_get_best_ni(local_net, cur_best_ni,
1941                                    peer, peer_net, cpt);
1942
1943         if (incr_seq && best_ni)
1944                 best_ni->ni_seq++;
1945
1946         return best_ni;
1947 }
1948
1949 static int
1950 lnet_initiate_peer_discovery(struct lnet_peer_ni *lpni,
1951                              struct lnet_msg *msg, lnet_nid_t rtr_nid,
1952                              int cpt)
1953 {
1954         struct lnet_peer *peer;
1955         lnet_nid_t primary_nid;
1956         int rc;
1957
1958         lnet_peer_ni_addref_locked(lpni);
1959
1960         peer = lpni->lpni_peer_net->lpn_peer;
1961
1962         if (lnet_peer_gw_discovery(peer)) {
1963                 lnet_peer_ni_decref_locked(lpni);
1964                 return 0;
1965         }
1966
1967         if (!lnet_msg_discovery(msg) || lnet_peer_is_uptodate(peer)) {
1968                 lnet_peer_ni_decref_locked(lpni);
1969                 return 0;
1970         }
1971
1972         rc = lnet_discover_peer_locked(lpni, cpt, false);
1973         if (rc) {
1974                 lnet_peer_ni_decref_locked(lpni);
1975                 return rc;
1976         }
1977         /* The peer may have changed. */
1978         peer = lpni->lpni_peer_net->lpn_peer;
1979         spin_lock(&peer->lp_lock);
1980         if (lnet_peer_is_uptodate_locked(peer)) {
1981                 spin_unlock(&peer->lp_lock);
1982                 lnet_peer_ni_decref_locked(lpni);
1983                 return 0;
1984         }
1985         /* queue message and return */
1986         msg->msg_rtr_nid_param = rtr_nid;
1987         msg->msg_sending = 0;
1988         msg->msg_txpeer = NULL;
1989         list_add_tail(&msg->msg_list, &peer->lp_dc_pendq);
1990         primary_nid = peer->lp_primary_nid;
1991         spin_unlock(&peer->lp_lock);
1992
1993         lnet_peer_ni_decref_locked(lpni);
1994
1995         CDEBUG(D_NET, "msg %p delayed. %s pending discovery\n",
1996                 msg, libcfs_nid2str(primary_nid));
1997
1998         return LNET_DC_WAIT;
1999 }
2000
2001 static int
2002 lnet_handle_find_routed_path(struct lnet_send_data *sd,
2003                              lnet_nid_t dst_nid,
2004                              struct lnet_peer_ni **gw_lpni,
2005                              struct lnet_peer **gw_peer)
2006 {
2007         int rc;
2008         __u32 local_lnet;
2009         struct lnet_peer *gw;
2010         struct lnet_peer *lp;
2011         struct lnet_peer_net *lpn;
2012         struct lnet_peer_net *best_lpn = NULL;
2013         struct lnet_remotenet *rnet, *best_rnet = NULL;
2014         struct lnet_route *best_route = NULL;
2015         struct lnet_route *last_route = NULL;
2016         struct lnet_peer_ni *lpni = NULL;
2017         struct lnet_peer_ni *gwni = NULL;
2018         lnet_nid_t src_nid = sd->sd_src_nid;
2019
2020         /* If a router nid was specified then we are replying to a GET or
2021          * sending an ACK. In this case we use the gateway associated with the
2022          * specified router nid.
2023          */
2024         if (sd->sd_rtr_nid != LNET_NID_ANY) {
2025                 gwni = lnet_find_peer_ni_locked(sd->sd_rtr_nid);
2026                 if (!gwni) {
2027                         CERROR("No peer NI for gateway %s\n",
2028                                libcfs_nid2str(sd->sd_rtr_nid));
2029                         return -EHOSTUNREACH;
2030                 }
2031                 gw = gwni->lpni_peer_net->lpn_peer;
2032                 lnet_peer_ni_decref_locked(gwni);
2033                 local_lnet = LNET_NIDNET(sd->sd_rtr_nid);
2034         } else {
2035                 /* we've already looked up the initial lpni using dst_nid */
2036                 lpni = sd->sd_best_lpni;
2037                 /* the peer tree must be in existence */
2038                 LASSERT(lpni && lpni->lpni_peer_net &&
2039                         lpni->lpni_peer_net->lpn_peer);
2040                 lp = lpni->lpni_peer_net->lpn_peer;
2041
2042                 list_for_each_entry(lpn, &lp->lp_peer_nets, lpn_peer_nets) {
2043                         /* is this remote network reachable?  */
2044                         rnet = lnet_find_rnet_locked(lpn->lpn_net_id);
2045                         if (!rnet)
2046                                 continue;
2047
2048                         if (!best_lpn) {
2049                                 best_lpn = lpn;
2050                                 best_rnet = rnet;
2051                         }
2052
2053                         if (best_lpn->lpn_seq <= lpn->lpn_seq)
2054                                 continue;
2055
2056                         best_lpn = lpn;
2057                         best_rnet = rnet;
2058                 }
2059
2060                 if (!best_lpn) {
2061                         CERROR("peer %s has no available nets\n",
2062                                libcfs_nid2str(sd->sd_dst_nid));
2063                         return -EHOSTUNREACH;
2064                 }
2065
2066                 sd->sd_best_lpni = lnet_find_best_lpni_on_net(sd->sd_best_ni,
2067                                                               sd->sd_dst_nid,
2068                                                               lp,
2069                                                               best_lpn->lpn_net_id);
2070                 if (!sd->sd_best_lpni) {
2071                         CERROR("peer %s down\n",
2072                                libcfs_nid2str(sd->sd_dst_nid));
2073                         return -EHOSTUNREACH;
2074                 }
2075
2076                 best_route = lnet_find_route_locked(best_rnet,
2077                                                     LNET_NIDNET(src_nid),
2078                                                     &last_route, &gwni);
2079                 if (!best_route) {
2080                         CERROR("no route to %s from %s\n",
2081                                libcfs_nid2str(dst_nid),
2082                                libcfs_nid2str(src_nid));
2083                         return -EHOSTUNREACH;
2084                 }
2085
2086                 if (!gwni) {
2087                         CERROR("Internal Error. Route expected to %s from %s\n",
2088                                libcfs_nid2str(dst_nid),
2089                                libcfs_nid2str(src_nid));
2090                         return -EFAULT;
2091                 }
2092
2093                 gw = best_route->lr_gateway;
2094                 LASSERT(gw == gwni->lpni_peer_net->lpn_peer);
2095                 local_lnet = best_route->lr_lnet;
2096
2097         }
2098
2099         /*
2100          * Discover this gateway if it hasn't already been discovered.
2101          * This means we might delay the message until discovery has
2102          * completed
2103          */
2104         sd->sd_msg->msg_src_nid_param = sd->sd_src_nid;
2105         rc = lnet_initiate_peer_discovery(gwni, sd->sd_msg, sd->sd_rtr_nid,
2106                                           sd->sd_cpt);
2107         if (rc)
2108                 return rc;
2109
2110         if (!sd->sd_best_ni)
2111                 sd->sd_best_ni = lnet_find_best_ni_on_spec_net(NULL, gw,
2112                                         lnet_peer_get_net_locked(gw,
2113                                                                  local_lnet),
2114                                         sd->sd_md_cpt,
2115                                         true);
2116
2117         if (!sd->sd_best_ni) {
2118                 CERROR("Internal Error. Expected local ni on %s but non found :%s\n",
2119                        libcfs_net2str(local_lnet),
2120                        libcfs_nid2str(sd->sd_src_nid));
2121                 return -EFAULT;
2122         }
2123
2124         *gw_lpni = gwni;
2125         *gw_peer = gw;
2126
2127         /*
2128          * increment the sequence numbers since now we're sure we're
2129          * going to use this path
2130          */
2131         if (sd->sd_rtr_nid == LNET_NID_ANY) {
2132                 LASSERT(best_route && last_route);
2133                 best_route->lr_seq = last_route->lr_seq + 1;
2134                 best_lpn->lpn_seq++;
2135         }
2136
2137         return 0;
2138 }
2139
2140 /*
2141  * Handle two cases:
2142  *
2143  * Case 1:
2144  *  Source specified
2145  *  Remote destination
2146  *  Non-MR destination
2147  *
2148  * Case 2:
2149  *  Source specified
2150  *  Remote destination
2151  *  MR destination
2152  *
2153  * The handling of these two cases is similar. Even though the destination
2154  * can be MR or non-MR, we'll deal directly with the router.
2155  */
2156 static int
2157 lnet_handle_spec_router_dst(struct lnet_send_data *sd)
2158 {
2159         int rc;
2160         struct lnet_peer_ni *gw_lpni = NULL;
2161         struct lnet_peer *gw_peer = NULL;
2162
2163         /* find local NI */
2164         sd->sd_best_ni = lnet_nid2ni_locked(sd->sd_src_nid, sd->sd_cpt);
2165         if (!sd->sd_best_ni) {
2166                 CERROR("Can't send to %s: src %s is not a "
2167                        "local nid\n", libcfs_nid2str(sd->sd_dst_nid),
2168                                 libcfs_nid2str(sd->sd_src_nid));
2169                 return -EINVAL;
2170         }
2171
2172         rc = lnet_handle_find_routed_path(sd, sd->sd_dst_nid, &gw_lpni,
2173                                      &gw_peer);
2174         if (rc)
2175                 return rc;
2176
2177         if (sd->sd_send_case & NMR_DST)
2178                 /*
2179                  * since the final destination is non-MR let's set its preferred
2180                  * NID before we send
2181                  */
2182                 lnet_set_non_mr_pref_nid(sd->sd_best_lpni, sd->sd_best_ni,
2183                                          sd->sd_msg);
2184
2185         /*
2186          * We're going to send to the gw found so let's set its
2187          * info
2188          */
2189         sd->sd_peer = gw_peer;
2190         sd->sd_best_lpni = gw_lpni;
2191
2192         return lnet_handle_send(sd);
2193 }
2194
2195 struct lnet_ni *
2196 lnet_find_best_ni_on_local_net(struct lnet_peer *peer, int md_cpt,
2197                                bool discovery)
2198 {
2199         struct lnet_peer_net *peer_net = NULL;
2200         struct lnet_ni *best_ni = NULL;
2201
2202         /*
2203          * The peer can have multiple interfaces, some of them can be on
2204          * the local network and others on a routed network. We should
2205          * prefer the local network. However if the local network is not
2206          * available then we need to try the routed network
2207          */
2208
2209         /* go through all the peer nets and find the best_ni */
2210         list_for_each_entry(peer_net, &peer->lp_peer_nets, lpn_peer_nets) {
2211                 /*
2212                  * The peer's list of nets can contain non-local nets. We
2213                  * want to only examine the local ones.
2214                  */
2215                 if (!lnet_get_net_locked(peer_net->lpn_net_id))
2216                         continue;
2217                 best_ni = lnet_find_best_ni_on_spec_net(best_ni, peer,
2218                                                    peer_net, md_cpt, false);
2219
2220                 /*
2221                  * if this is a discovery message and lp_disc_net_id is
2222                  * specified then use that net to send the discovery on.
2223                  */
2224                 if (peer->lp_disc_net_id == peer_net->lpn_net_id &&
2225                     discovery)
2226                         break;
2227         }
2228
2229         if (best_ni)
2230                 /* increment sequence number so we can round robin */
2231                 best_ni->ni_seq++;
2232
2233         return best_ni;
2234 }
2235
2236 static struct lnet_ni *
2237 lnet_find_existing_preferred_best_ni(struct lnet_peer_ni *lpni, int cpt)
2238 {
2239         struct lnet_ni *best_ni = NULL;
2240         struct lnet_peer_net *peer_net = lpni->lpni_peer_net;
2241         struct lnet_peer_ni *lpni_entry;
2242
2243         /*
2244          * We must use a consistent source address when sending to a
2245          * non-MR peer. However, a non-MR peer can have multiple NIDs
2246          * on multiple networks, and we may even need to talk to this
2247          * peer on multiple networks -- certain types of
2248          * load-balancing configuration do this.
2249          *
2250          * So we need to pick the NI the peer prefers for this
2251          * particular network.
2252          */
2253         LASSERT(peer_net);
2254         list_for_each_entry(lpni_entry, &peer_net->lpn_peer_nis,
2255                             lpni_peer_nis) {
2256                 if (lpni_entry->lpni_pref_nnids == 0)
2257                         continue;
2258                 LASSERT(lpni_entry->lpni_pref_nnids == 1);
2259                 best_ni = lnet_nid2ni_locked(lpni_entry->lpni_pref.nid, cpt);
2260                 break;
2261         }
2262
2263         return best_ni;
2264 }
2265
2266 /* Prerequisite: sd->sd_peer and sd->sd_best_lpni should be set */
2267 static int
2268 lnet_select_preferred_best_ni(struct lnet_send_data *sd)
2269 {
2270         struct lnet_ni *best_ni = NULL;
2271         struct lnet_peer_ni *best_lpni = sd->sd_best_lpni;
2272
2273         /*
2274          * We must use a consistent source address when sending to a
2275          * non-MR peer. However, a non-MR peer can have multiple NIDs
2276          * on multiple networks, and we may even need to talk to this
2277          * peer on multiple networks -- certain types of
2278          * load-balancing configuration do this.
2279          *
2280          * So we need to pick the NI the peer prefers for this
2281          * particular network.
2282          */
2283
2284         best_ni = lnet_find_existing_preferred_best_ni(sd->sd_best_lpni,
2285                                                        sd->sd_cpt);
2286
2287         /* if best_ni is still not set just pick one */
2288         if (!best_ni) {
2289                 best_ni =
2290                   lnet_find_best_ni_on_spec_net(NULL, sd->sd_peer,
2291                                                 sd->sd_best_lpni->lpni_peer_net,
2292                                                 sd->sd_md_cpt, true);
2293                 /* If there is no best_ni we don't have a route */
2294                 if (!best_ni) {
2295                         CERROR("no path to %s from net %s\n",
2296                                 libcfs_nid2str(best_lpni->lpni_nid),
2297                                 libcfs_net2str(best_lpni->lpni_net->net_id));
2298                         return -EHOSTUNREACH;
2299                 }
2300         }
2301
2302         sd->sd_best_ni = best_ni;
2303
2304         /* Set preferred NI if necessary. */
2305         lnet_set_non_mr_pref_nid(sd->sd_best_lpni, sd->sd_best_ni, sd->sd_msg);
2306
2307         return 0;
2308 }
2309
2310
2311 /*
2312  * Source not specified
2313  * Local destination
2314  * Non-MR Peer
2315  *
2316  * always use the same source NID for NMR peers
2317  * If we've talked to that peer before then we already have a preferred
2318  * source NI associated with it. Otherwise, we select a preferred local NI
2319  * and store it in the peer
2320  */
2321 static int
2322 lnet_handle_any_local_nmr_dst(struct lnet_send_data *sd)
2323 {
2324         int rc;
2325
2326         /* sd->sd_best_lpni is already set to the final destination */
2327
2328         /*
2329          * At this point we should've created the peer ni and peer. If we
2330          * can't find it, then something went wrong. Instead of assert
2331          * output a relevant message and fail the send
2332          */
2333         if (!sd->sd_best_lpni) {
2334                 CERROR("Internal fault. Unable to send msg %s to %s. "
2335                        "NID not known\n",
2336                        lnet_msgtyp2str(sd->sd_msg->msg_type),
2337                        libcfs_nid2str(sd->sd_dst_nid));
2338                 return -EFAULT;
2339         }
2340
2341         rc = lnet_select_preferred_best_ni(sd);
2342         if (!rc)
2343                 rc = lnet_handle_send(sd);
2344
2345         return rc;
2346 }
2347
2348 static int
2349 lnet_handle_any_mr_dsta(struct lnet_send_data *sd)
2350 {
2351         /*
2352          * NOTE we've already handled the remote peer case. So we only
2353          * need to worry about the local case here.
2354          *
2355          * if we're sending a response, ACK or reply, we need to send it
2356          * to the destination NID given to us. At this point we already
2357          * have the peer_ni we're suppose to send to, so just find the
2358          * best_ni on the peer net and use that. Since we're sending to an
2359          * MR peer then we can just run the selection algorithm on our
2360          * local NIs and pick the best one.
2361          */
2362         if (sd->sd_send_case & SND_RESP) {
2363                 sd->sd_best_ni =
2364                   lnet_find_best_ni_on_spec_net(NULL, sd->sd_peer,
2365                                                 sd->sd_best_lpni->lpni_peer_net,
2366                                                 sd->sd_md_cpt, true);
2367
2368                 if (!sd->sd_best_ni) {
2369                         /*
2370                          * We're not going to deal with not able to send
2371                          * a response to the provided final destination
2372                          */
2373                         CERROR("Can't send response to %s. "
2374                                "No local NI available\n",
2375                                 libcfs_nid2str(sd->sd_dst_nid));
2376                         return -EHOSTUNREACH;
2377                 }
2378
2379                 return lnet_handle_send(sd);
2380         }
2381
2382         /*
2383          * If we get here that means we're sending a fresh request, PUT or
2384          * GET, so we need to run our standard selection algorithm.
2385          * First find the best local interface that's on any of the peer's
2386          * networks.
2387          */
2388         sd->sd_best_ni = lnet_find_best_ni_on_local_net(sd->sd_peer,
2389                                         sd->sd_md_cpt,
2390                                         lnet_msg_discovery(sd->sd_msg));
2391         if (sd->sd_best_ni) {
2392                 sd->sd_best_lpni =
2393                   lnet_find_best_lpni_on_net(sd->sd_best_ni, sd->sd_dst_nid,
2394                                              sd->sd_peer,
2395                                              sd->sd_best_ni->ni_net->net_id);
2396
2397                 /*
2398                  * if we're successful in selecting a peer_ni on the local
2399                  * network, then send to it. Otherwise fall through and
2400                  * try and see if we can reach it over another routed
2401                  * network
2402                  */
2403                 if (sd->sd_best_lpni &&
2404                     sd->sd_best_lpni->lpni_nid == the_lnet.ln_loni->ni_nid) {
2405                         /*
2406                          * in case we initially started with a routed
2407                          * destination, let's reset to local
2408                          */
2409                         sd->sd_send_case &= ~REMOTE_DST;
2410                         sd->sd_send_case |= LOCAL_DST;
2411                         return lnet_handle_lo_send(sd);
2412                 } else if (sd->sd_best_lpni) {
2413                         /*
2414                          * in case we initially started with a routed
2415                          * destination, let's reset to local
2416                          */
2417                         sd->sd_send_case &= ~REMOTE_DST;
2418                         sd->sd_send_case |= LOCAL_DST;
2419                         return lnet_handle_send(sd);
2420                 }
2421
2422                 CERROR("Internal Error. Expected to have a best_lpni: "
2423                        "%s -> %s\n",
2424                        libcfs_nid2str(sd->sd_src_nid),
2425                        libcfs_nid2str(sd->sd_dst_nid));
2426
2427                 return -EFAULT;
2428         }
2429
2430         /*
2431          * Peer doesn't have a local network. Let's see if there is
2432          * a remote network we can reach it on.
2433          */
2434         return PASS_THROUGH;
2435 }
2436
2437 /*
2438  * Case 1:
2439  *      Source NID not specified
2440  *      Local destination
2441  *      MR peer
2442  *
2443  * Case 2:
2444  *      Source NID not speified
2445  *      Remote destination
2446  *      MR peer
2447  *
2448  * In both of these cases if we're sending a response, ACK or REPLY, then
2449  * we need to send to the destination NID provided.
2450  *
2451  * In the remote case let's deal with MR routers.
2452  *
2453  */
2454
2455 static int
2456 lnet_handle_any_mr_dst(struct lnet_send_data *sd)
2457 {
2458         int rc = 0;
2459         struct lnet_peer *gw_peer = NULL;
2460         struct lnet_peer_ni *gw_lpni = NULL;
2461
2462         /*
2463          * handle sending a response to a remote peer here so we don't
2464          * have to worry about it if we hit lnet_handle_any_mr_dsta()
2465          */
2466         if (sd->sd_send_case & REMOTE_DST &&
2467             sd->sd_send_case & SND_RESP) {
2468                 struct lnet_peer_ni *gw;
2469                 struct lnet_peer *gw_peer;
2470
2471                 rc = lnet_handle_find_routed_path(sd, sd->sd_dst_nid, &gw,
2472                                                   &gw_peer);
2473                 if (rc < 0) {
2474                         CERROR("Can't send response to %s. "
2475                                "No route available\n",
2476                                 libcfs_nid2str(sd->sd_dst_nid));
2477                         return -EHOSTUNREACH;
2478                 } else if (rc > 0) {
2479                         return rc;
2480                 }
2481
2482                 sd->sd_best_lpni = gw;
2483                 sd->sd_peer = gw_peer;
2484
2485                 return lnet_handle_send(sd);
2486         }
2487
2488         /*
2489          * Even though the NID for the peer might not be on a local network,
2490          * since the peer is MR there could be other interfaces on the
2491          * local network. In that case we'd still like to prefer the local
2492          * network over the routed network. If we're unable to do that
2493          * then we select the best router among the different routed networks,
2494          * and if the router is MR then we can deal with it as such.
2495          */
2496         rc = lnet_handle_any_mr_dsta(sd);
2497         if (rc != PASS_THROUGH)
2498                 return rc;
2499
2500         /*
2501          * Now that we must route to the destination, we must consider the
2502          * MR case, where the destination has multiple interfaces, some of
2503          * which we can route to and others we do not. For this reason we
2504          * need to select the destination which we can route to and if
2505          * there are multiple, we need to round robin.
2506          */
2507         rc = lnet_handle_find_routed_path(sd, sd->sd_dst_nid, &gw_lpni,
2508                                           &gw_peer);
2509         if (rc)
2510                 return rc;
2511
2512         sd->sd_send_case &= ~LOCAL_DST;
2513         sd->sd_send_case |= REMOTE_DST;
2514
2515         sd->sd_peer = gw_peer;
2516         sd->sd_best_lpni = gw_lpni;
2517
2518         return lnet_handle_send(sd);
2519 }
2520
2521 /*
2522  * Source not specified
2523  * Remote destination
2524  * Non-MR peer
2525  *
2526  * Must send to the specified peer NID using the same source NID that
2527  * we've used before. If it's the first time to talk to that peer then
2528  * find the source NI and assign it as preferred to that peer
2529  */
2530 static int
2531 lnet_handle_any_router_nmr_dst(struct lnet_send_data *sd)
2532 {
2533         int rc;
2534         struct lnet_peer_ni *gw_lpni = NULL;
2535         struct lnet_peer *gw_peer = NULL;
2536
2537         /*
2538          * Let's see if we have a preferred NI to talk to this NMR peer
2539          */
2540         sd->sd_best_ni = lnet_find_existing_preferred_best_ni(sd->sd_best_lpni,
2541                                                               sd->sd_cpt);
2542
2543         /*
2544          * find the router and that'll find the best NI if we didn't find
2545          * it already.
2546          */
2547         rc = lnet_handle_find_routed_path(sd, sd->sd_dst_nid, &gw_lpni,
2548                                           &gw_peer);
2549         if (rc)
2550                 return rc;
2551
2552         /*
2553          * set the best_ni we've chosen as the preferred one for
2554          * this peer
2555          */
2556         lnet_set_non_mr_pref_nid(sd->sd_best_lpni, sd->sd_best_ni, sd->sd_msg);
2557
2558         /* we'll be sending to the gw */
2559         sd->sd_best_lpni = gw_lpni;
2560         sd->sd_peer = gw_peer;
2561
2562         return lnet_handle_send(sd);
2563 }
2564
2565 static int
2566 lnet_handle_send_case_locked(struct lnet_send_data *sd)
2567 {
2568         /*
2569          * turn off the SND_RESP bit.
2570          * It will be checked in the case handling
2571          */
2572         __u32 send_case = sd->sd_send_case &= ~SND_RESP ;
2573
2574         CDEBUG(D_NET, "Source %s%s to %s %s %s destination\n",
2575                 (send_case & SRC_SPEC) ? "Specified: " : "ANY",
2576                 (send_case & SRC_SPEC) ? libcfs_nid2str(sd->sd_src_nid) : "",
2577                 (send_case & MR_DST) ? "MR: " : "NMR: ",
2578                 libcfs_nid2str(sd->sd_dst_nid),
2579                 (send_case & LOCAL_DST) ? "local" : "routed");
2580
2581         switch (send_case) {
2582         /*
2583          * For all cases where the source is specified, we should always
2584          * use the destination NID, whether it's an MR destination or not,
2585          * since we're continuing a series of related messages for the
2586          * same RPC
2587          */
2588         case SRC_SPEC_LOCAL_NMR_DST:
2589                 return lnet_handle_spec_local_nmr_dst(sd);
2590         case SRC_SPEC_LOCAL_MR_DST:
2591                 return lnet_handle_spec_local_mr_dst(sd);
2592         case SRC_SPEC_ROUTER_NMR_DST:
2593         case SRC_SPEC_ROUTER_MR_DST:
2594                 return lnet_handle_spec_router_dst(sd);
2595         case SRC_ANY_LOCAL_NMR_DST:
2596                 return lnet_handle_any_local_nmr_dst(sd);
2597         case SRC_ANY_LOCAL_MR_DST:
2598         case SRC_ANY_ROUTER_MR_DST:
2599                 return lnet_handle_any_mr_dst(sd);
2600         case SRC_ANY_ROUTER_NMR_DST:
2601                 return lnet_handle_any_router_nmr_dst(sd);
2602         default:
2603                 CERROR("Unknown send case\n");
2604                 return -1;
2605         }
2606 }
2607
2608 static int
2609 lnet_select_pathway(lnet_nid_t src_nid, lnet_nid_t dst_nid,
2610                     struct lnet_msg *msg, lnet_nid_t rtr_nid)
2611 {
2612         struct lnet_peer_ni     *lpni;
2613         struct lnet_peer        *peer;
2614         struct lnet_send_data   send_data;
2615         int                     cpt, rc;
2616         int                     md_cpt;
2617         __u32                   send_case = 0;
2618
2619         memset(&send_data, 0, sizeof(send_data));
2620
2621         /*
2622          * get an initial CPT to use for locking. The idea here is not to
2623          * serialize the calls to select_pathway, so that as many
2624          * operations can run concurrently as possible. To do that we use
2625          * the CPT where this call is being executed. Later on when we
2626          * determine the CPT to use in lnet_message_commit, we switch the
2627          * lock and check if there was any configuration change.  If none,
2628          * then we proceed, if there is, then we restart the operation.
2629          */
2630         cpt = lnet_net_lock_current();
2631
2632         md_cpt = lnet_cpt_of_md(msg->msg_md, msg->msg_offset);
2633         if (md_cpt == CFS_CPT_ANY)
2634                 md_cpt = cpt;
2635
2636 again:
2637
2638         /*
2639          * If we're being asked to send to the loopback interface, there
2640          * is no need to go through any selection. We can just shortcut
2641          * the entire process and send over lolnd
2642          */
2643         send_data.sd_msg = msg;
2644         send_data.sd_cpt = cpt;
2645         if (LNET_NETTYP(LNET_NIDNET(dst_nid)) == LOLND) {
2646                 rc = lnet_handle_lo_send(&send_data);
2647                 lnet_net_unlock(cpt);
2648                 return rc;
2649         }
2650
2651         /*
2652          * find an existing peer_ni, or create one and mark it as having been
2653          * created due to network traffic. This call will create the
2654          * peer->peer_net->peer_ni tree.
2655          */
2656         lpni = lnet_nid2peerni_locked(dst_nid, LNET_NID_ANY, cpt);
2657         if (IS_ERR(lpni)) {
2658                 lnet_net_unlock(cpt);
2659                 return PTR_ERR(lpni);
2660         }
2661
2662         /*
2663          * Cache the original src_nid. If we need to resend the message
2664          * then we'll need to know whether the src_nid was originally
2665          * specified for this message. If it was originally specified,
2666          * then we need to keep using the same src_nid since it's
2667          * continuing the same sequence of messages.
2668          */
2669         msg->msg_src_nid_param = src_nid;
2670
2671         /*
2672          * If necessary, perform discovery on the peer that owns this peer_ni.
2673          * Note, this can result in the ownership of this peer_ni changing
2674          * to another peer object.
2675          */
2676         rc = lnet_initiate_peer_discovery(lpni, msg, rtr_nid, cpt);
2677         if (rc) {
2678                 lnet_peer_ni_decref_locked(lpni);
2679                 lnet_net_unlock(cpt);
2680                 return rc;
2681         }
2682         lnet_peer_ni_decref_locked(lpni);
2683
2684         peer = lpni->lpni_peer_net->lpn_peer;
2685
2686         /*
2687          * Identify the different send cases
2688          */
2689         if (src_nid == LNET_NID_ANY)
2690                 send_case |= SRC_ANY;
2691         else
2692                 send_case |= SRC_SPEC;
2693
2694         if (lnet_get_net_locked(LNET_NIDNET(dst_nid)))
2695                 send_case |= LOCAL_DST;
2696         else
2697                 send_case |= REMOTE_DST;
2698
2699         /*
2700          * if this is a non-MR peer or if we're recovering a peer ni then
2701          * let's consider this an NMR case so we can hit the destination
2702          * NID.
2703          */
2704         if (!lnet_peer_is_multi_rail(peer) || msg->msg_recovery)
2705                 send_case |= NMR_DST;
2706         else
2707                 send_case |= MR_DST;
2708
2709         if (msg->msg_type == LNET_MSG_REPLY ||
2710             msg->msg_type == LNET_MSG_ACK)
2711                 send_case |= SND_RESP;
2712
2713         /* assign parameters to the send_data */
2714         send_data.sd_rtr_nid = rtr_nid;
2715         send_data.sd_src_nid = src_nid;
2716         send_data.sd_dst_nid = dst_nid;
2717         send_data.sd_best_lpni = lpni;
2718         /*
2719          * keep a pointer to the final destination in case we're going to
2720          * route, so we'll need to access it later
2721          */
2722         send_data.sd_final_dst_lpni = lpni;
2723         send_data.sd_peer = peer;
2724         send_data.sd_md_cpt = md_cpt;
2725         send_data.sd_send_case = send_case;
2726
2727         rc = lnet_handle_send_case_locked(&send_data);
2728
2729         /*
2730          * Update the local cpt since send_data.sd_cpt might've been
2731          * updated as a result of calling lnet_handle_send_case_locked().
2732          */
2733         cpt = send_data.sd_cpt;
2734
2735         if (rc == REPEAT_SEND)
2736                 goto again;
2737
2738         lnet_net_unlock(cpt);
2739
2740         return rc;
2741 }
2742
2743 int
2744 lnet_send(lnet_nid_t src_nid, struct lnet_msg *msg, lnet_nid_t rtr_nid)
2745 {
2746         lnet_nid_t              dst_nid = msg->msg_target.nid;
2747         int                     rc;
2748
2749         /*
2750          * NB: rtr_nid is set to LNET_NID_ANY for all current use-cases,
2751          * but we might want to use pre-determined router for ACK/REPLY
2752          * in the future
2753          */
2754         /* NB: ni != NULL == interface pre-determined (ACK/REPLY) */
2755         LASSERT(msg->msg_txpeer == NULL);
2756         LASSERT(msg->msg_txni == NULL);
2757         LASSERT(!msg->msg_sending);
2758         LASSERT(!msg->msg_target_is_router);
2759         LASSERT(!msg->msg_receiving);
2760
2761         msg->msg_sending = 1;
2762
2763         LASSERT(!msg->msg_tx_committed);
2764
2765         rc = lnet_select_pathway(src_nid, dst_nid, msg, rtr_nid);
2766         if (rc < 0) {
2767                 if (rc == -EHOSTUNREACH)
2768                         msg->msg_health_status = LNET_MSG_STATUS_REMOTE_ERROR;
2769                 else
2770                         msg->msg_health_status = LNET_MSG_STATUS_LOCAL_ERROR;
2771                 return rc;
2772         }
2773
2774         if (rc == LNET_CREDIT_OK)
2775                 lnet_ni_send(msg->msg_txni, msg);
2776
2777         /* rc == LNET_CREDIT_OK or LNET_CREDIT_WAIT or LNET_DC_WAIT */
2778         return 0;
2779 }
2780
2781 enum lnet_mt_event_type {
2782         MT_TYPE_LOCAL_NI = 0,
2783         MT_TYPE_PEER_NI
2784 };
2785
2786 struct lnet_mt_event_info {
2787         enum lnet_mt_event_type mt_type;
2788         lnet_nid_t mt_nid;
2789 };
2790
2791 /* called with res_lock held */
2792 void
2793 lnet_detach_rsp_tracker(struct lnet_libmd *md, int cpt)
2794 {
2795         struct lnet_rsp_tracker *rspt;
2796
2797         /*
2798          * msg has a refcount on the MD so the MD is not going away.
2799          * The rspt queue for the cpt is protected by
2800          * the lnet_net_lock(cpt). cpt is the cpt of the MD cookie.
2801          */
2802         if (!md->md_rspt_ptr)
2803                 return;
2804
2805         rspt = md->md_rspt_ptr;
2806
2807         /* debug code */
2808         LASSERT(rspt->rspt_cpt == cpt);
2809
2810         md->md_rspt_ptr = NULL;
2811
2812         if (LNetMDHandleIsInvalid(rspt->rspt_mdh)) {
2813                 /*
2814                  * The monitor thread has invalidated this handle because the
2815                  * response timed out, but it failed to lookup the MD. That
2816                  * means this response tracker is on the zombie list. We can
2817                  * safely remove it under the resource lock (held by caller) and
2818                  * free the response tracker block.
2819                  */
2820                 list_del(&rspt->rspt_on_list);
2821                 lnet_rspt_free(rspt, cpt);
2822         } else {
2823                 /*
2824                  * invalidate the handle to indicate that a response has been
2825                  * received, which will then lead the monitor thread to clean up
2826                  * the rspt block.
2827                  */
2828                 LNetInvalidateMDHandle(&rspt->rspt_mdh);
2829         }
2830 }
2831
2832 void
2833 lnet_clean_zombie_rstqs(void)
2834 {
2835         struct lnet_rsp_tracker *rspt, *tmp;
2836         int i;
2837
2838         cfs_cpt_for_each(i, lnet_cpt_table()) {
2839                 list_for_each_entry_safe(rspt, tmp,
2840                                          the_lnet.ln_mt_zombie_rstqs[i],
2841                                          rspt_on_list) {
2842                         list_del(&rspt->rspt_on_list);
2843                         lnet_rspt_free(rspt, i);
2844                 }
2845         }
2846
2847         cfs_percpt_free(the_lnet.ln_mt_zombie_rstqs);
2848 }
2849
2850 static void
2851 lnet_finalize_expired_responses(void)
2852 {
2853         struct lnet_libmd *md;
2854         struct lnet_rsp_tracker *rspt, *tmp;
2855         ktime_t now;
2856         int i;
2857
2858         if (the_lnet.ln_mt_rstq == NULL)
2859                 return;
2860
2861         cfs_cpt_for_each(i, lnet_cpt_table()) {
2862                 LIST_HEAD(local_queue);
2863
2864                 lnet_net_lock(i);
2865                 if (!the_lnet.ln_mt_rstq[i]) {
2866                         lnet_net_unlock(i);
2867                         continue;
2868                 }
2869                 list_splice_init(the_lnet.ln_mt_rstq[i], &local_queue);
2870                 lnet_net_unlock(i);
2871
2872                 now = ktime_get();
2873
2874                 list_for_each_entry_safe(rspt, tmp, &local_queue, rspt_on_list) {
2875                         /*
2876                          * The rspt mdh will be invalidated when a response
2877                          * is received or whenever we want to discard the
2878                          * block the monitor thread will walk the queue
2879                          * and clean up any rsts with an invalid mdh.
2880                          * The monitor thread will walk the queue until
2881                          * the first unexpired rspt block. This means that
2882                          * some rspt blocks which received their
2883                          * corresponding responses will linger in the
2884                          * queue until they are cleaned up eventually.
2885                          */
2886                         lnet_res_lock(i);
2887                         if (LNetMDHandleIsInvalid(rspt->rspt_mdh)) {
2888                                 lnet_res_unlock(i);
2889                                 list_del(&rspt->rspt_on_list);
2890                                 lnet_rspt_free(rspt, i);
2891                                 continue;
2892                         }
2893
2894                         if (ktime_compare(now, rspt->rspt_deadline) >= 0 ||
2895                             the_lnet.ln_mt_state == LNET_MT_STATE_SHUTDOWN) {
2896                                 struct lnet_peer_ni *lpni;
2897                                 lnet_nid_t nid;
2898
2899                                 md = lnet_handle2md(&rspt->rspt_mdh);
2900                                 if (!md) {
2901                                         /* MD has been queued for unlink, but
2902                                          * rspt hasn't been detached (Note we've
2903                                          * checked above that the rspt_mdh is
2904                                          * valid). Since we cannot lookup the MD
2905                                          * we're unable to detach the rspt
2906                                          * ourselves. Thus, move the rspt to the
2907                                          * zombie list where we'll wait for
2908                                          * either:
2909                                          *   1. The remaining operations on the
2910                                          *   MD to complete. In this case the
2911                                          *   final operation will result in
2912                                          *   lnet_msg_detach_md()->
2913                                          *   lnet_detach_rsp_tracker() where
2914                                          *   we will clean up this response
2915                                          *   tracker.
2916                                          *   2. LNet to shutdown. In this case
2917                                          *   we'll wait until after all LND Nets
2918                                          *   have shutdown and then we can
2919                                          *   safely free any remaining response
2920                                          *   tracker blocks on the zombie list.
2921                                          * Note: We need to hold the resource
2922                                          * lock when adding to the zombie list
2923                                          * because we may have concurrent access
2924                                          * with lnet_detach_rsp_tracker().
2925                                          */
2926                                         LNetInvalidateMDHandle(&rspt->rspt_mdh);
2927                                         list_move(&rspt->rspt_on_list,
2928                                                   the_lnet.ln_mt_zombie_rstqs[i]);
2929                                         lnet_res_unlock(i);
2930                                         continue;
2931                                 }
2932                                 LASSERT(md->md_rspt_ptr == rspt);
2933                                 md->md_rspt_ptr = NULL;
2934                                 lnet_res_unlock(i);
2935
2936                                 LNetMDUnlink(rspt->rspt_mdh);
2937
2938                                 nid = rspt->rspt_next_hop_nid;
2939
2940                                 list_del(&rspt->rspt_on_list);
2941                                 lnet_rspt_free(rspt, i);
2942
2943                                 /* If we're shutting down we just want to clean
2944                                  * up the rspt blocks
2945                                  */
2946                                 if (the_lnet.ln_mt_state == LNET_MT_STATE_SHUTDOWN)
2947                                         continue;
2948
2949                                 lnet_net_lock(i);
2950                                 the_lnet.ln_counters[i]->lct_health.lch_response_timeout_count++;
2951                                 lnet_net_unlock(i);
2952
2953                                 CDEBUG(D_NET,
2954                                        "Response timeout: md = %p: nid = %s\n",
2955                                        md, libcfs_nid2str(nid));
2956
2957                                 /*
2958                                  * If there is a timeout on the response
2959                                  * from the next hop decrement its health
2960                                  * value so that we don't use it
2961                                  */
2962                                 lnet_net_lock(0);
2963                                 lpni = lnet_find_peer_ni_locked(nid);
2964                                 if (lpni) {
2965                                         lnet_handle_remote_failure_locked(lpni);
2966                                         lnet_peer_ni_decref_locked(lpni);
2967                                 }
2968                                 lnet_net_unlock(0);
2969                         } else {
2970                                 lnet_res_unlock(i);
2971                                 break;
2972                         }
2973                 }
2974
2975                 if (!list_empty(&local_queue)) {
2976                         lnet_net_lock(i);
2977                         list_splice(&local_queue, the_lnet.ln_mt_rstq[i]);
2978                         lnet_net_unlock(i);
2979                 }
2980         }
2981 }
2982
2983 static void
2984 lnet_resend_pending_msgs_locked(struct list_head *resendq, int cpt)
2985 {
2986         struct lnet_msg *msg;
2987
2988         while (!list_empty(resendq)) {
2989                 struct lnet_peer_ni *lpni;
2990
2991                 msg = list_entry(resendq->next, struct lnet_msg,
2992                                  msg_list);
2993
2994                 list_del_init(&msg->msg_list);
2995
2996                 lpni = lnet_find_peer_ni_locked(msg->msg_hdr.dest_nid);
2997                 if (!lpni) {
2998                         lnet_net_unlock(cpt);
2999                         CERROR("Expected that a peer is already created for %s\n",
3000                                libcfs_nid2str(msg->msg_hdr.dest_nid));
3001                         msg->msg_no_resend = true;
3002                         lnet_finalize(msg, -EFAULT);
3003                         lnet_net_lock(cpt);
3004                 } else {
3005                         struct lnet_peer *peer;
3006                         int rc;
3007                         lnet_nid_t src_nid = LNET_NID_ANY;
3008
3009                         /*
3010                          * if this message is not being routed and the
3011                          * peer is non-MR then we must use the same
3012                          * src_nid that was used in the original send.
3013                          * Otherwise if we're routing the message (IE
3014                          * we're a router) then we can use any of our
3015                          * local interfaces. It doesn't matter to the
3016                          * final destination.
3017                          */
3018                         peer = lpni->lpni_peer_net->lpn_peer;
3019                         if (!msg->msg_routing &&
3020                             !lnet_peer_is_multi_rail(peer))
3021                                 src_nid = le64_to_cpu(msg->msg_hdr.src_nid);
3022
3023                         /*
3024                          * If we originally specified a src NID, then we
3025                          * must attempt to reuse it in the resend as well.
3026                          */
3027                         if (msg->msg_src_nid_param != LNET_NID_ANY)
3028                                 src_nid = msg->msg_src_nid_param;
3029                         lnet_peer_ni_decref_locked(lpni);
3030
3031                         lnet_net_unlock(cpt);
3032                         CDEBUG(D_NET, "resending %s->%s: %s recovery %d try# %d\n",
3033                                libcfs_nid2str(src_nid),
3034                                libcfs_id2str(msg->msg_target),
3035                                lnet_msgtyp2str(msg->msg_type),
3036                                msg->msg_recovery,
3037                                msg->msg_retry_count);
3038                         rc = lnet_send(src_nid, msg, LNET_NID_ANY);
3039                         if (rc) {
3040                                 CERROR("Error sending %s to %s: %d\n",
3041                                        lnet_msgtyp2str(msg->msg_type),
3042                                        libcfs_id2str(msg->msg_target), rc);
3043                                 msg->msg_no_resend = true;
3044                                 lnet_finalize(msg, rc);
3045                         }
3046                         lnet_net_lock(cpt);
3047                         if (!rc)
3048                                 the_lnet.ln_counters[cpt]->lct_health.lch_resend_count++;
3049                 }
3050         }
3051 }
3052
3053 static void
3054 lnet_resend_pending_msgs(void)
3055 {
3056         int i;
3057
3058         cfs_cpt_for_each(i, lnet_cpt_table()) {
3059                 lnet_net_lock(i);
3060                 lnet_resend_pending_msgs_locked(the_lnet.ln_mt_resendqs[i], i);
3061                 lnet_net_unlock(i);
3062         }
3063 }
3064
3065 /* called with cpt and ni_lock held */
3066 static void
3067 lnet_unlink_ni_recovery_mdh_locked(struct lnet_ni *ni, int cpt, bool force)
3068 {
3069         struct lnet_handle_md recovery_mdh;
3070
3071         LNetInvalidateMDHandle(&recovery_mdh);
3072
3073         if (ni->ni_recovery_state & LNET_NI_RECOVERY_PENDING ||
3074             force) {
3075                 recovery_mdh = ni->ni_ping_mdh;
3076                 LNetInvalidateMDHandle(&ni->ni_ping_mdh);
3077         }
3078         lnet_ni_unlock(ni);
3079         lnet_net_unlock(cpt);
3080         if (!LNetMDHandleIsInvalid(recovery_mdh))
3081                 LNetMDUnlink(recovery_mdh);
3082         lnet_net_lock(cpt);
3083         lnet_ni_lock(ni);
3084 }
3085
3086 static void
3087 lnet_recover_local_nis(void)
3088 {
3089         struct lnet_mt_event_info *ev_info;
3090         LIST_HEAD(processed_list);
3091         LIST_HEAD(local_queue);
3092         struct lnet_handle_md mdh;
3093         struct lnet_ni *tmp;
3094         struct lnet_ni *ni;
3095         lnet_nid_t nid;
3096         int healthv;
3097         int rc;
3098
3099         /*
3100          * splice the recovery queue on a local queue. We will iterate
3101          * through the local queue and update it as needed. Once we're
3102          * done with the traversal, we'll splice the local queue back on
3103          * the head of the ln_mt_localNIRecovq. Any newly added local NIs
3104          * will be traversed in the next iteration.
3105          */
3106         lnet_net_lock(0);
3107         list_splice_init(&the_lnet.ln_mt_localNIRecovq,
3108                          &local_queue);
3109         lnet_net_unlock(0);
3110
3111         list_for_each_entry_safe(ni, tmp, &local_queue, ni_recovery) {
3112                 /*
3113                  * if an NI is being deleted or it is now healthy, there
3114                  * is no need to keep it around in the recovery queue.
3115                  * The monitor thread is the only thread responsible for
3116                  * removing the NI from the recovery queue.
3117                  * Multiple threads can be adding NIs to the recovery
3118                  * queue.
3119                  */
3120                 healthv = atomic_read(&ni->ni_healthv);
3121
3122                 lnet_net_lock(0);
3123                 lnet_ni_lock(ni);
3124                 if (ni->ni_state != LNET_NI_STATE_ACTIVE ||
3125                     healthv == LNET_MAX_HEALTH_VALUE) {
3126                         list_del_init(&ni->ni_recovery);
3127                         lnet_unlink_ni_recovery_mdh_locked(ni, 0, false);
3128                         lnet_ni_unlock(ni);
3129                         lnet_ni_decref_locked(ni, 0);
3130                         lnet_net_unlock(0);
3131                         continue;
3132                 }
3133
3134                 /*
3135                  * if the local NI failed recovery we must unlink the md.
3136                  * But we want to keep the local_ni on the recovery queue
3137                  * so we can continue the attempts to recover it.
3138                  */
3139                 if (ni->ni_recovery_state & LNET_NI_RECOVERY_FAILED) {
3140                         lnet_unlink_ni_recovery_mdh_locked(ni, 0, true);
3141                         ni->ni_recovery_state &= ~LNET_NI_RECOVERY_FAILED;
3142                 }
3143
3144                 lnet_ni_unlock(ni);
3145                 lnet_net_unlock(0);
3146
3147
3148                 CDEBUG(D_NET, "attempting to recover local ni: %s\n",
3149                        libcfs_nid2str(ni->ni_nid));
3150
3151                 lnet_ni_lock(ni);
3152                 if (!(ni->ni_recovery_state & LNET_NI_RECOVERY_PENDING)) {
3153                         ni->ni_recovery_state |= LNET_NI_RECOVERY_PENDING;
3154                         lnet_ni_unlock(ni);
3155
3156                         LIBCFS_ALLOC(ev_info, sizeof(*ev_info));
3157                         if (!ev_info) {
3158                                 CERROR("out of memory. Can't recover %s\n",
3159                                        libcfs_nid2str(ni->ni_nid));
3160                                 lnet_ni_lock(ni);
3161                                 ni->ni_recovery_state &=
3162                                   ~LNET_NI_RECOVERY_PENDING;
3163                                 lnet_ni_unlock(ni);
3164                                 continue;
3165                         }
3166
3167                         mdh = ni->ni_ping_mdh;
3168                         /*
3169                          * Invalidate the ni mdh in case it's deleted.
3170                          * We'll unlink the mdh in this case below.
3171                          */
3172                         LNetInvalidateMDHandle(&ni->ni_ping_mdh);
3173                         nid = ni->ni_nid;
3174
3175                         /*
3176                          * remove the NI from the local queue and drop the
3177                          * reference count to it while we're recovering
3178                          * it. The reason for that, is that the NI could
3179                          * be deleted, and the way the code is structured
3180                          * is if we don't drop the NI, then the deletion
3181                          * code will enter a loop waiting for the
3182                          * reference count to be removed while holding the
3183                          * ln_mutex_lock(). When we look up the peer to
3184                          * send to in lnet_select_pathway() we will try to
3185                          * lock the ln_mutex_lock() as well, leading to
3186                          * a deadlock. By dropping the refcount and
3187                          * removing it from the list, we allow for the NI
3188                          * to be removed, then we use the cached NID to
3189                          * look it up again. If it's gone, then we just
3190                          * continue examining the rest of the queue.
3191                          */
3192                         lnet_net_lock(0);
3193                         list_del_init(&ni->ni_recovery);
3194                         lnet_ni_decref_locked(ni, 0);
3195                         lnet_net_unlock(0);
3196
3197                         ev_info->mt_type = MT_TYPE_LOCAL_NI;
3198                         ev_info->mt_nid = nid;
3199                         rc = lnet_send_ping(nid, &mdh, LNET_INTERFACES_MIN,
3200                                             ev_info, the_lnet.ln_mt_eqh, true);
3201                         /* lookup the nid again */
3202                         lnet_net_lock(0);
3203                         ni = lnet_nid2ni_locked(nid, 0);
3204                         if (!ni) {
3205                                 /*
3206                                  * the NI has been deleted when we dropped
3207                                  * the ref count
3208                                  */
3209                                 lnet_net_unlock(0);
3210                                 LNetMDUnlink(mdh);
3211                                 continue;
3212                         }
3213                         /*
3214                          * Same note as in lnet_recover_peer_nis(). When
3215                          * we're sending the ping, the NI is free to be
3216                          * deleted or manipulated. By this point it
3217                          * could've been added back on the recovery queue,
3218                          * and a refcount taken on it.
3219                          * So we can't just add it blindly again or we'll
3220                          * corrupt the queue. We must check under lock if
3221                          * it's not on any list and if not then add it
3222                          * to the processed list, which will eventually be
3223                          * spliced back on to the recovery queue.
3224                          */
3225                         ni->ni_ping_mdh = mdh;
3226                         if (list_empty(&ni->ni_recovery)) {
3227                                 list_add_tail(&ni->ni_recovery, &processed_list);
3228                                 lnet_ni_addref_locked(ni, 0);
3229                         }
3230                         lnet_net_unlock(0);
3231
3232                         lnet_ni_lock(ni);
3233                         if (rc)
3234                                 ni->ni_recovery_state &= ~LNET_NI_RECOVERY_PENDING;
3235                 }
3236                 lnet_ni_unlock(ni);
3237         }
3238
3239         /*
3240          * put back the remaining NIs on the ln_mt_localNIRecovq to be
3241          * reexamined in the next iteration.
3242          */
3243         list_splice_init(&processed_list, &local_queue);
3244         lnet_net_lock(0);
3245         list_splice(&local_queue, &the_lnet.ln_mt_localNIRecovq);
3246         lnet_net_unlock(0);
3247 }
3248
3249 static int
3250 lnet_resendqs_create(void)
3251 {
3252         struct list_head **resendqs;
3253         resendqs = lnet_create_array_of_queues();
3254
3255         if (!resendqs)
3256                 return -ENOMEM;
3257
3258         lnet_net_lock(LNET_LOCK_EX);
3259         the_lnet.ln_mt_resendqs = resendqs;
3260         lnet_net_unlock(LNET_LOCK_EX);
3261
3262         return 0;
3263 }
3264
3265 static void
3266 lnet_clean_local_ni_recoveryq(void)
3267 {
3268         struct lnet_ni *ni;
3269
3270         /* This is only called when the monitor thread has stopped */
3271         lnet_net_lock(0);
3272
3273         while (!list_empty(&the_lnet.ln_mt_localNIRecovq)) {
3274                 ni = list_entry(the_lnet.ln_mt_localNIRecovq.next,
3275                                 struct lnet_ni, ni_recovery);
3276                 list_del_init(&ni->ni_recovery);
3277                 lnet_ni_lock(ni);
3278                 lnet_unlink_ni_recovery_mdh_locked(ni, 0, true);
3279                 lnet_ni_unlock(ni);
3280                 lnet_ni_decref_locked(ni, 0);
3281         }
3282
3283         lnet_net_unlock(0);
3284 }
3285
3286 static void
3287 lnet_unlink_lpni_recovery_mdh_locked(struct lnet_peer_ni *lpni, int cpt,
3288                                      bool force)
3289 {
3290         struct lnet_handle_md recovery_mdh;
3291
3292         LNetInvalidateMDHandle(&recovery_mdh);
3293
3294         if (lpni->lpni_state & LNET_PEER_NI_RECOVERY_PENDING || force) {
3295                 recovery_mdh = lpni->lpni_recovery_ping_mdh;
3296                 LNetInvalidateMDHandle(&lpni->lpni_recovery_ping_mdh);
3297         }
3298         spin_unlock(&lpni->lpni_lock);
3299         lnet_net_unlock(cpt);
3300         if (!LNetMDHandleIsInvalid(recovery_mdh))
3301                 LNetMDUnlink(recovery_mdh);
3302         lnet_net_lock(cpt);
3303         spin_lock(&lpni->lpni_lock);
3304 }
3305
3306 static void
3307 lnet_clean_peer_ni_recoveryq(void)
3308 {
3309         struct lnet_peer_ni *lpni, *tmp;
3310
3311         lnet_net_lock(LNET_LOCK_EX);
3312
3313         list_for_each_entry_safe(lpni, tmp, &the_lnet.ln_mt_peerNIRecovq,
3314                                  lpni_recovery) {
3315                 list_del_init(&lpni->lpni_recovery);
3316                 spin_lock(&lpni->lpni_lock);
3317                 lnet_unlink_lpni_recovery_mdh_locked(lpni, LNET_LOCK_EX, true);
3318                 spin_unlock(&lpni->lpni_lock);
3319                 lnet_peer_ni_decref_locked(lpni);
3320         }
3321
3322         lnet_net_unlock(LNET_LOCK_EX);
3323 }
3324
3325 static void
3326 lnet_clean_resendqs(void)
3327 {
3328         struct lnet_msg *msg, *tmp;
3329         LIST_HEAD(msgs);
3330         int i;
3331
3332         cfs_cpt_for_each(i, lnet_cpt_table()) {
3333                 lnet_net_lock(i);
3334                 list_splice_init(the_lnet.ln_mt_resendqs[i], &msgs);
3335                 lnet_net_unlock(i);
3336                 list_for_each_entry_safe(msg, tmp, &msgs, msg_list) {
3337                         list_del_init(&msg->msg_list);
3338                         msg->msg_no_resend = true;
3339                         lnet_finalize(msg, -ESHUTDOWN);
3340                 }
3341         }
3342
3343         cfs_percpt_free(the_lnet.ln_mt_resendqs);
3344 }
3345
3346 static void
3347 lnet_recover_peer_nis(void)
3348 {
3349         struct lnet_mt_event_info *ev_info;
3350         LIST_HEAD(processed_list);
3351         LIST_HEAD(local_queue);
3352         struct lnet_handle_md mdh;
3353         struct lnet_peer_ni *lpni;
3354         struct lnet_peer_ni *tmp;
3355         lnet_nid_t nid;
3356         int healthv;
3357         int rc;
3358
3359         /*
3360          * Always use cpt 0 for locking across all interactions with
3361          * ln_mt_peerNIRecovq
3362          */
3363         lnet_net_lock(0);
3364         list_splice_init(&the_lnet.ln_mt_peerNIRecovq,
3365                          &local_queue);
3366         lnet_net_unlock(0);
3367
3368         list_for_each_entry_safe(lpni, tmp, &local_queue,
3369                                  lpni_recovery) {
3370                 /*
3371                  * The same protection strategy is used here as is in the
3372                  * local recovery case.
3373                  */
3374                 lnet_net_lock(0);
3375                 healthv = atomic_read(&lpni->lpni_healthv);
3376                 spin_lock(&lpni->lpni_lock);
3377                 if (lpni->lpni_state & LNET_PEER_NI_DELETING ||
3378                     healthv == LNET_MAX_HEALTH_VALUE) {
3379                         list_del_init(&lpni->lpni_recovery);
3380                         lnet_unlink_lpni_recovery_mdh_locked(lpni, 0, false);
3381                         spin_unlock(&lpni->lpni_lock);
3382                         lnet_peer_ni_decref_locked(lpni);
3383                         lnet_net_unlock(0);
3384                         continue;
3385                 }
3386
3387                 /*
3388                  * If the peer NI has failed recovery we must unlink the
3389                  * md. But we want to keep the peer ni on the recovery
3390                  * queue so we can try to continue recovering it
3391                  */
3392                 if (lpni->lpni_state & LNET_PEER_NI_RECOVERY_FAILED) {
3393                         lnet_unlink_lpni_recovery_mdh_locked(lpni, 0, true);
3394                         lpni->lpni_state &= ~LNET_PEER_NI_RECOVERY_FAILED;
3395                 }
3396
3397                 spin_unlock(&lpni->lpni_lock);
3398                 lnet_net_unlock(0);
3399
3400                 /*
3401                  * NOTE: we're racing with peer deletion from user space.
3402                  * It's possible that a peer is deleted after we check its
3403                  * state. In this case the recovery can create a new peer
3404                  */
3405                 spin_lock(&lpni->lpni_lock);
3406                 if (!(lpni->lpni_state & LNET_PEER_NI_RECOVERY_PENDING) &&
3407                     !(lpni->lpni_state & LNET_PEER_NI_DELETING)) {
3408                         lpni->lpni_state |= LNET_PEER_NI_RECOVERY_PENDING;
3409                         spin_unlock(&lpni->lpni_lock);
3410
3411                         LIBCFS_ALLOC(ev_info, sizeof(*ev_info));
3412                         if (!ev_info) {
3413                                 CERROR("out of memory. Can't recover %s\n",
3414                                        libcfs_nid2str(lpni->lpni_nid));
3415                                 spin_lock(&lpni->lpni_lock);
3416                                 lpni->lpni_state &= ~LNET_PEER_NI_RECOVERY_PENDING;
3417                                 spin_unlock(&lpni->lpni_lock);
3418                                 continue;
3419                         }
3420
3421                         /* look at the comments in lnet_recover_local_nis() */
3422                         mdh = lpni->lpni_recovery_ping_mdh;
3423                         LNetInvalidateMDHandle(&lpni->lpni_recovery_ping_mdh);
3424                         nid = lpni->lpni_nid;
3425                         lnet_net_lock(0);
3426                         list_del_init(&lpni->lpni_recovery);
3427                         lnet_peer_ni_decref_locked(lpni);
3428                         lnet_net_unlock(0);
3429
3430                         ev_info->mt_type = MT_TYPE_PEER_NI;
3431                         ev_info->mt_nid = nid;
3432                         rc = lnet_send_ping(nid, &mdh, LNET_INTERFACES_MIN,
3433                                             ev_info, the_lnet.ln_mt_eqh, true);
3434                         lnet_net_lock(0);
3435                         /*
3436                          * lnet_find_peer_ni_locked() grabs a refcount for
3437                          * us. No need to take it explicitly.
3438                          */
3439                         lpni = lnet_find_peer_ni_locked(nid);
3440                         if (!lpni) {
3441                                 lnet_net_unlock(0);
3442                                 LNetMDUnlink(mdh);
3443                                 continue;
3444                         }
3445
3446                         lpni->lpni_recovery_ping_mdh = mdh;
3447                         /*
3448                          * While we're unlocked the lpni could've been
3449                          * readded on the recovery queue. In this case we
3450                          * don't need to add it to the local queue, since
3451                          * it's already on there and the thread that added
3452                          * it would've incremented the refcount on the
3453                          * peer, which means we need to decref the refcount
3454                          * that was implicitly grabbed by find_peer_ni_locked.
3455                          * Otherwise, if the lpni is still not on
3456                          * the recovery queue, then we'll add it to the
3457                          * processed list.
3458                          */
3459                         if (list_empty(&lpni->lpni_recovery))
3460                                 list_add_tail(&lpni->lpni_recovery, &processed_list);
3461                         else
3462                                 lnet_peer_ni_decref_locked(lpni);
3463                         lnet_net_unlock(0);
3464
3465                         spin_lock(&lpni->lpni_lock);
3466                         if (rc)
3467                                 lpni->lpni_state &= ~LNET_PEER_NI_RECOVERY_PENDING;
3468                 }
3469                 spin_unlock(&lpni->lpni_lock);
3470         }
3471
3472         list_splice_init(&processed_list, &local_queue);
3473         lnet_net_lock(0);
3474         list_splice(&local_queue, &the_lnet.ln_mt_peerNIRecovq);
3475         lnet_net_unlock(0);
3476 }
3477
3478 static int
3479 lnet_monitor_thread(void *arg)
3480 {
3481         time64_t recovery_timeout = 0;
3482         time64_t rsp_timeout = 0;
3483         int interval;
3484         time64_t now;
3485
3486         wait_for_completion(&the_lnet.ln_started);
3487         /*
3488          * The monitor thread takes care of the following:
3489          *  1. Checks the aliveness of routers
3490          *  2. Checks if there are messages on the resend queue to resend
3491          *     them.
3492          *  3. Check if there are any NIs on the local recovery queue and
3493          *     pings them
3494          *  4. Checks if there are any NIs on the remote recovery queue
3495          *     and pings them.
3496          */
3497         cfs_block_allsigs();
3498
3499         while (the_lnet.ln_mt_state == LNET_MT_STATE_RUNNING) {
3500                 now = ktime_get_real_seconds();
3501
3502                 if (lnet_router_checker_active())
3503                         lnet_check_routers();
3504
3505                 lnet_resend_pending_msgs();
3506
3507                 if (now >= rsp_timeout) {
3508                         lnet_finalize_expired_responses();
3509                         rsp_timeout = now + (lnet_transaction_timeout / 2);
3510                 }
3511
3512                 if (now >= recovery_timeout) {
3513                         lnet_recover_local_nis();
3514                         lnet_recover_peer_nis();
3515                         recovery_timeout = now + lnet_recovery_interval;
3516                 }
3517
3518                 /*
3519                  * TODO do we need to check if we should sleep without
3520                  * timeout?  Technically, an active system will always
3521                  * have messages in flight so this check will always
3522                  * evaluate to false. And on an idle system do we care
3523                  * if we wake up every 1 second? Although, we've seen
3524                  * cases where we get a complaint that an idle thread
3525                  * is waking up unnecessarily.
3526                  *
3527                  * Take into account the current net_count when you wake
3528                  * up for alive router checking, since we need to check
3529                  * possibly as many networks as we have configured.
3530                  */
3531                 interval = min(lnet_recovery_interval,
3532                                min((unsigned int) alive_router_check_interval /
3533                                         lnet_current_net_count,
3534                                    lnet_transaction_timeout / 2));
3535                 wait_for_completion_interruptible_timeout(
3536                         &the_lnet.ln_mt_wait_complete,
3537                         cfs_time_seconds(interval));
3538                 /* Must re-init the completion before testing anything,
3539                  * including ln_mt_state.
3540                  */
3541                 reinit_completion(&the_lnet.ln_mt_wait_complete);
3542         }
3543
3544         /* Shutting down */
3545         lnet_net_lock(LNET_LOCK_EX);
3546         the_lnet.ln_mt_state = LNET_MT_STATE_SHUTDOWN;
3547         lnet_net_unlock(LNET_LOCK_EX);
3548
3549         /* signal that the monitor thread is exiting */
3550         up(&the_lnet.ln_mt_signal);
3551
3552         return 0;
3553 }
3554
3555 /*
3556  * lnet_send_ping
3557  * Sends a ping.
3558  * Returns == 0 if success
3559  * Returns > 0 if LNetMDBind or prior fails
3560  * Returns < 0 if LNetGet fails
3561  */
3562 int
3563 lnet_send_ping(lnet_nid_t dest_nid,
3564                struct lnet_handle_md *mdh, int nnis,
3565                void *user_data, struct lnet_handle_eq eqh, bool recovery)
3566 {
3567         struct lnet_md md = { NULL };
3568         struct lnet_process_id id;
3569         struct lnet_ping_buffer *pbuf;
3570         int rc;
3571
3572         if (dest_nid == LNET_NID_ANY) {
3573                 rc = -EHOSTUNREACH;
3574                 goto fail_error;
3575         }
3576
3577         pbuf = lnet_ping_buffer_alloc(nnis, GFP_NOFS);
3578         if (!pbuf) {
3579                 rc = ENOMEM;
3580                 goto fail_error;
3581         }
3582
3583         /* initialize md content */
3584         md.start     = &pbuf->pb_info;
3585         md.length    = LNET_PING_INFO_SIZE(nnis);
3586         md.threshold = 2; /* GET/REPLY */
3587         md.max_size  = 0;
3588         md.options   = LNET_MD_TRUNCATE;
3589         md.user_ptr  = user_data;
3590         md.eq_handle = eqh;
3591
3592         rc = LNetMDBind(md, LNET_UNLINK, mdh);
3593         if (rc) {
3594                 lnet_ping_buffer_decref(pbuf);
3595                 CERROR("Can't bind MD: %d\n", rc);
3596                 rc = -rc; /* change the rc to positive */
3597                 goto fail_error;
3598         }
3599         id.pid = LNET_PID_LUSTRE;
3600         id.nid = dest_nid;
3601
3602         rc = LNetGet(LNET_NID_ANY, *mdh, id,
3603                      LNET_RESERVED_PORTAL,
3604                      LNET_PROTO_PING_MATCHBITS, 0, recovery);
3605
3606         if (rc)
3607                 goto fail_unlink_md;
3608
3609         return 0;
3610
3611 fail_unlink_md:
3612         LNetMDUnlink(*mdh);
3613         LNetInvalidateMDHandle(mdh);
3614 fail_error:
3615         return rc;
3616 }
3617
3618 static void
3619 lnet_handle_recovery_reply(struct lnet_mt_event_info *ev_info,
3620                            int status, bool unlink_event)
3621 {
3622         lnet_nid_t nid = ev_info->mt_nid;
3623
3624         if (ev_info->mt_type == MT_TYPE_LOCAL_NI) {
3625                 struct lnet_ni *ni;
3626
3627                 lnet_net_lock(0);
3628                 ni = lnet_nid2ni_locked(nid, 0);
3629                 if (!ni) {
3630                         lnet_net_unlock(0);
3631                         return;
3632                 }
3633                 lnet_ni_lock(ni);
3634                 ni->ni_recovery_state &= ~LNET_NI_RECOVERY_PENDING;
3635                 if (status)
3636                         ni->ni_recovery_state |= LNET_NI_RECOVERY_FAILED;
3637                 lnet_ni_unlock(ni);
3638                 lnet_net_unlock(0);
3639
3640                 if (status != 0) {
3641                         CERROR("local NI (%s) recovery failed with %d\n",
3642                                libcfs_nid2str(nid), status);
3643                         return;
3644                 }
3645                 /*
3646                  * need to increment healthv for the ni here, because in
3647                  * the lnet_finalize() path we don't have access to this
3648                  * NI. And in order to get access to it, we'll need to
3649                  * carry forward too much information.
3650                  * In the peer case, it'll naturally be incremented
3651                  */
3652                 if (!unlink_event)
3653                         lnet_inc_healthv(&ni->ni_healthv);
3654         } else {
3655                 struct lnet_peer_ni *lpni;
3656                 int cpt;
3657
3658                 cpt = lnet_net_lock_current();
3659                 lpni = lnet_find_peer_ni_locked(nid);
3660                 if (!lpni) {
3661                         lnet_net_unlock(cpt);
3662                         return;
3663                 }
3664                 spin_lock(&lpni->lpni_lock);
3665                 lpni->lpni_state &= ~LNET_PEER_NI_RECOVERY_PENDING;
3666                 if (status)
3667                         lpni->lpni_state |= LNET_PEER_NI_RECOVERY_FAILED;
3668                 spin_unlock(&lpni->lpni_lock);
3669                 lnet_peer_ni_decref_locked(lpni);
3670                 lnet_net_unlock(cpt);
3671
3672                 if (status != 0)
3673                         CERROR("peer NI (%s) recovery failed with %d\n",
3674                                libcfs_nid2str(nid), status);
3675         }
3676 }
3677
3678 void
3679 lnet_mt_event_handler(struct lnet_event *event)
3680 {
3681         struct lnet_mt_event_info *ev_info = event->md.user_ptr;
3682         struct lnet_ping_buffer *pbuf;
3683
3684         /* TODO: remove assert */
3685         LASSERT(event->type == LNET_EVENT_REPLY ||
3686                 event->type == LNET_EVENT_SEND ||
3687                 event->type == LNET_EVENT_UNLINK);
3688
3689         CDEBUG(D_NET, "Received event: %d status: %d\n", event->type,
3690                event->status);
3691
3692         switch (event->type) {
3693         case LNET_EVENT_UNLINK:
3694                 CDEBUG(D_NET, "%s recovery ping unlinked\n",
3695                        libcfs_nid2str(ev_info->mt_nid));
3696                 /* fallthrough */
3697         case LNET_EVENT_REPLY:
3698                 lnet_handle_recovery_reply(ev_info, event->status,
3699                                            event->type == LNET_EVENT_UNLINK);
3700                 break;
3701         case LNET_EVENT_SEND:
3702                 CDEBUG(D_NET, "%s recovery message sent %s:%d\n",
3703                                libcfs_nid2str(ev_info->mt_nid),
3704                                (event->status) ? "unsuccessfully" :
3705                                "successfully", event->status);
3706                 break;
3707         default:
3708                 CERROR("Unexpected event: %d\n", event->type);
3709                 break;
3710         }
3711         if (event->unlinked) {
3712                 LIBCFS_FREE(ev_info, sizeof(*ev_info));
3713                 pbuf = LNET_PING_INFO_TO_BUFFER(event->md.start);
3714                 lnet_ping_buffer_decref(pbuf);
3715         }
3716 }
3717
3718 static int
3719 lnet_rsp_tracker_create(void)
3720 {
3721         struct list_head **rstqs;
3722         rstqs = lnet_create_array_of_queues();
3723
3724         if (!rstqs)
3725                 return -ENOMEM;
3726
3727         the_lnet.ln_mt_rstq = rstqs;
3728
3729         return 0;
3730 }
3731
3732 static void
3733 lnet_rsp_tracker_clean(void)
3734 {
3735         lnet_finalize_expired_responses();
3736
3737         cfs_percpt_free(the_lnet.ln_mt_rstq);
3738         the_lnet.ln_mt_rstq = NULL;
3739 }
3740
3741 int lnet_monitor_thr_start(void)
3742 {
3743         int rc = 0;
3744         struct task_struct *task;
3745
3746         if (the_lnet.ln_mt_state != LNET_MT_STATE_SHUTDOWN)
3747                 return -EALREADY;
3748
3749         rc = lnet_resendqs_create();
3750         if (rc)
3751                 return rc;
3752
3753         rc = lnet_rsp_tracker_create();
3754         if (rc)
3755                 goto clean_queues;
3756
3757         sema_init(&the_lnet.ln_mt_signal, 0);
3758
3759         lnet_net_lock(LNET_LOCK_EX);
3760         the_lnet.ln_mt_state = LNET_MT_STATE_RUNNING;
3761         lnet_net_unlock(LNET_LOCK_EX);
3762         task = kthread_run(lnet_monitor_thread, NULL, "monitor_thread");
3763         if (IS_ERR(task)) {
3764                 rc = PTR_ERR(task);
3765                 CERROR("Can't start monitor thread: %d\n", rc);
3766                 goto clean_thread;
3767         }
3768
3769         return 0;
3770
3771 clean_thread:
3772         lnet_net_lock(LNET_LOCK_EX);
3773         the_lnet.ln_mt_state = LNET_MT_STATE_STOPPING;
3774         lnet_net_unlock(LNET_LOCK_EX);
3775         /* block until event callback signals exit */
3776         down(&the_lnet.ln_mt_signal);
3777         /* clean up */
3778         lnet_net_lock(LNET_LOCK_EX);
3779         the_lnet.ln_mt_state = LNET_MT_STATE_SHUTDOWN;
3780         lnet_net_unlock(LNET_LOCK_EX);
3781         lnet_rsp_tracker_clean();
3782         lnet_clean_local_ni_recoveryq();
3783         lnet_clean_peer_ni_recoveryq();
3784         lnet_clean_resendqs();
3785         LNetInvalidateEQHandle(&the_lnet.ln_mt_eqh);
3786         return rc;
3787 clean_queues:
3788         lnet_rsp_tracker_clean();
3789         lnet_clean_local_ni_recoveryq();
3790         lnet_clean_peer_ni_recoveryq();
3791         lnet_clean_resendqs();
3792         return rc;
3793 }
3794
3795 void lnet_monitor_thr_stop(void)
3796 {
3797         if (the_lnet.ln_mt_state == LNET_MT_STATE_SHUTDOWN)
3798                 return;
3799
3800         LASSERT(the_lnet.ln_mt_state == LNET_MT_STATE_RUNNING);
3801         lnet_net_lock(LNET_LOCK_EX);
3802         the_lnet.ln_mt_state = LNET_MT_STATE_STOPPING;
3803         lnet_net_unlock(LNET_LOCK_EX);
3804
3805         /* tell the monitor thread that we're shutting down */
3806         complete(&the_lnet.ln_mt_wait_complete);
3807
3808         /* block until monitor thread signals that it's done */
3809         down(&the_lnet.ln_mt_signal);
3810         LASSERT(the_lnet.ln_mt_state == LNET_MT_STATE_SHUTDOWN);
3811
3812         /* perform cleanup tasks */
3813         lnet_rsp_tracker_clean();
3814         lnet_clean_local_ni_recoveryq();
3815         lnet_clean_peer_ni_recoveryq();
3816         lnet_clean_resendqs();
3817 }
3818
3819 void
3820 lnet_drop_message(struct lnet_ni *ni, int cpt, void *private, unsigned int nob,
3821                   __u32 msg_type)
3822 {
3823         lnet_net_lock(cpt);
3824         lnet_incr_stats(&ni->ni_stats, msg_type, LNET_STATS_TYPE_DROP);
3825         the_lnet.ln_counters[cpt]->lct_common.lcc_drop_count++;
3826         the_lnet.ln_counters[cpt]->lct_common.lcc_drop_length += nob;
3827         lnet_net_unlock(cpt);
3828
3829         lnet_ni_recv(ni, private, NULL, 0, 0, 0, nob);
3830 }
3831
3832 static void
3833 lnet_recv_put(struct lnet_ni *ni, struct lnet_msg *msg)
3834 {
3835         struct lnet_hdr *hdr = &msg->msg_hdr;
3836
3837         if (msg->msg_wanted != 0)
3838                 lnet_setpayloadbuffer(msg);
3839
3840         lnet_build_msg_event(msg, LNET_EVENT_PUT);
3841
3842         /* Must I ACK?  If so I'll grab the ack_wmd out of the header and put
3843          * it back into the ACK during lnet_finalize() */
3844         msg->msg_ack = (!lnet_is_wire_handle_none(&hdr->msg.put.ack_wmd) &&
3845                         (msg->msg_md->md_options & LNET_MD_ACK_DISABLE) == 0);
3846
3847         lnet_ni_recv(ni, msg->msg_private, msg, msg->msg_rx_delayed,
3848                      msg->msg_offset, msg->msg_wanted, hdr->payload_length);
3849 }
3850
3851 static int
3852 lnet_parse_put(struct lnet_ni *ni, struct lnet_msg *msg)
3853 {
3854         struct lnet_hdr         *hdr = &msg->msg_hdr;
3855         struct lnet_match_info  info;
3856         int                     rc;
3857         bool                    ready_delay;
3858
3859         /* Convert put fields to host byte order */
3860         hdr->msg.put.match_bits = le64_to_cpu(hdr->msg.put.match_bits);
3861         hdr->msg.put.ptl_index  = le32_to_cpu(hdr->msg.put.ptl_index);
3862         hdr->msg.put.offset     = le32_to_cpu(hdr->msg.put.offset);
3863
3864         /* Primary peer NID. */
3865         info.mi_id.nid  = msg->msg_initiator;
3866         info.mi_id.pid  = hdr->src_pid;
3867         info.mi_opc     = LNET_MD_OP_PUT;
3868         info.mi_portal  = hdr->msg.put.ptl_index;
3869         info.mi_rlength = hdr->payload_length;
3870         info.mi_roffset = hdr->msg.put.offset;
3871         info.mi_mbits   = hdr->msg.put.match_bits;
3872         info.mi_cpt     = lnet_cpt_of_nid(msg->msg_initiator, ni);
3873
3874         msg->msg_rx_ready_delay = ni->ni_net->net_lnd->lnd_eager_recv == NULL;
3875         ready_delay = msg->msg_rx_ready_delay;
3876
3877  again:
3878         rc = lnet_ptl_match_md(&info, msg);
3879         switch (rc) {
3880         default:
3881                 LBUG();
3882
3883         case LNET_MATCHMD_OK:
3884                 lnet_recv_put(ni, msg);
3885                 return 0;
3886
3887         case LNET_MATCHMD_NONE:
3888                 if (ready_delay)
3889                         /* no eager_recv or has already called it, should
3890                          * have been attached on delayed list */
3891                         return 0;
3892
3893                 rc = lnet_ni_eager_recv(ni, msg);
3894                 if (rc == 0) {
3895                         ready_delay = true;
3896                         goto again;
3897                 }
3898                 /* fall through */
3899
3900         case LNET_MATCHMD_DROP:
3901                 CNETERR("Dropping PUT from %s portal %d match %llu"
3902                         " offset %d length %d: %d\n",
3903                         libcfs_id2str(info.mi_id), info.mi_portal,
3904                         info.mi_mbits, info.mi_roffset, info.mi_rlength, rc);
3905
3906                 return -ENOENT; /* -ve: OK but no match */
3907         }
3908 }
3909
3910 static int
3911 lnet_parse_get(struct lnet_ni *ni, struct lnet_msg *msg, int rdma_get)
3912 {
3913         struct lnet_match_info info;
3914         struct lnet_hdr *hdr = &msg->msg_hdr;
3915         struct lnet_process_id source_id;
3916         struct lnet_handle_wire reply_wmd;
3917         int rc;
3918
3919         /* Convert get fields to host byte order */
3920         hdr->msg.get.match_bits   = le64_to_cpu(hdr->msg.get.match_bits);
3921         hdr->msg.get.ptl_index    = le32_to_cpu(hdr->msg.get.ptl_index);
3922         hdr->msg.get.sink_length  = le32_to_cpu(hdr->msg.get.sink_length);
3923         hdr->msg.get.src_offset   = le32_to_cpu(hdr->msg.get.src_offset);
3924
3925         source_id.nid = hdr->src_nid;
3926         source_id.pid = hdr->src_pid;
3927         /* Primary peer NID */
3928         info.mi_id.nid  = msg->msg_initiator;
3929         info.mi_id.pid  = hdr->src_pid;
3930         info.mi_opc     = LNET_MD_OP_GET;
3931         info.mi_portal  = hdr->msg.get.ptl_index;
3932         info.mi_rlength = hdr->msg.get.sink_length;
3933         info.mi_roffset = hdr->msg.get.src_offset;
3934         info.mi_mbits   = hdr->msg.get.match_bits;
3935         info.mi_cpt     = lnet_cpt_of_nid(msg->msg_initiator, ni);
3936
3937         rc = lnet_ptl_match_md(&info, msg);
3938         if (rc == LNET_MATCHMD_DROP) {
3939                 CNETERR("Dropping GET from %s portal %d match %llu"
3940                         " offset %d length %d\n",
3941                         libcfs_id2str(info.mi_id), info.mi_portal,
3942                         info.mi_mbits, info.mi_roffset, info.mi_rlength);
3943                 return -ENOENT; /* -ve: OK but no match */
3944         }
3945
3946         LASSERT(rc == LNET_MATCHMD_OK);
3947
3948         lnet_build_msg_event(msg, LNET_EVENT_GET);
3949
3950         reply_wmd = hdr->msg.get.return_wmd;
3951
3952         lnet_prep_send(msg, LNET_MSG_REPLY, source_id,
3953                        msg->msg_offset, msg->msg_wanted);
3954
3955         msg->msg_hdr.msg.reply.dst_wmd = reply_wmd;
3956
3957         if (rdma_get) {
3958                 /* The LND completes the REPLY from her recv procedure */
3959                 lnet_ni_recv(ni, msg->msg_private, msg, 0,
3960                              msg->msg_offset, msg->msg_len, msg->msg_len);
3961                 return 0;
3962         }
3963
3964         lnet_ni_recv(ni, msg->msg_private, NULL, 0, 0, 0, 0);
3965         msg->msg_receiving = 0;
3966
3967         rc = lnet_send(ni->ni_nid, msg, msg->msg_from);
3968         if (rc < 0) {
3969                 /* didn't get as far as lnet_ni_send() */
3970                 CERROR("%s: Unable to send REPLY for GET from %s: %d\n",
3971                        libcfs_nid2str(ni->ni_nid),
3972                        libcfs_id2str(info.mi_id), rc);
3973
3974                 lnet_finalize(msg, rc);
3975         }
3976
3977         return 0;
3978 }
3979
3980 static int
3981 lnet_parse_reply(struct lnet_ni *ni, struct lnet_msg *msg)
3982 {
3983         void *private = msg->msg_private;
3984         struct lnet_hdr *hdr = &msg->msg_hdr;
3985         struct lnet_process_id src = {0};
3986         struct lnet_libmd *md;
3987         unsigned int rlength;
3988         unsigned int mlength;
3989         int cpt;
3990
3991         cpt = lnet_cpt_of_cookie(hdr->msg.reply.dst_wmd.wh_object_cookie);
3992         lnet_res_lock(cpt);
3993
3994         src.nid = hdr->src_nid;
3995         src.pid = hdr->src_pid;
3996
3997         /* NB handles only looked up by creator (no flips) */
3998         md = lnet_wire_handle2md(&hdr->msg.reply.dst_wmd);
3999         if (md == NULL || md->md_threshold == 0 || md->md_me != NULL) {
4000                 CNETERR("%s: Dropping REPLY from %s for %s "
4001                         "MD %#llx.%#llx\n",
4002                         libcfs_nid2str(ni->ni_nid), libcfs_id2str(src),
4003                         (md == NULL) ? "invalid" : "inactive",
4004                         hdr->msg.reply.dst_wmd.wh_interface_cookie,
4005                         hdr->msg.reply.dst_wmd.wh_object_cookie);
4006                 if (md != NULL && md->md_me != NULL)
4007                         CERROR("REPLY MD also attached to portal %d\n",
4008                                md->md_me->me_portal);
4009
4010                 lnet_res_unlock(cpt);
4011                 return -ENOENT; /* -ve: OK but no match */
4012         }
4013
4014         LASSERT(md->md_offset == 0);
4015
4016         rlength = hdr->payload_length;
4017         mlength = min(rlength, md->md_length);
4018
4019         if (mlength < rlength &&
4020             (md->md_options & LNET_MD_TRUNCATE) == 0) {
4021                 CNETERR("%s: Dropping REPLY from %s length %d "
4022                         "for MD %#llx would overflow (%d)\n",
4023                         libcfs_nid2str(ni->ni_nid), libcfs_id2str(src),
4024                         rlength, hdr->msg.reply.dst_wmd.wh_object_cookie,
4025                         mlength);
4026                 lnet_res_unlock(cpt);
4027                 return -ENOENT; /* -ve: OK but no match */
4028         }
4029
4030         CDEBUG(D_NET, "%s: Reply from %s of length %d/%d into md %#llx\n",
4031                libcfs_nid2str(ni->ni_nid), libcfs_id2str(src),
4032                mlength, rlength, hdr->msg.reply.dst_wmd.wh_object_cookie);
4033
4034         lnet_msg_attach_md(msg, md, 0, mlength);
4035
4036         if (mlength != 0)
4037                 lnet_setpayloadbuffer(msg);
4038
4039         lnet_res_unlock(cpt);
4040
4041         lnet_build_msg_event(msg, LNET_EVENT_REPLY);
4042
4043         lnet_ni_recv(ni, private, msg, 0, 0, mlength, rlength);
4044         return 0;
4045 }
4046
4047 static int
4048 lnet_parse_ack(struct lnet_ni *ni, struct lnet_msg *msg)
4049 {
4050         struct lnet_hdr *hdr = &msg->msg_hdr;
4051         struct lnet_process_id src = {0};
4052         struct lnet_libmd *md;
4053         int cpt;
4054
4055         src.nid = hdr->src_nid;
4056         src.pid = hdr->src_pid;
4057
4058         /* Convert ack fields to host byte order */
4059         hdr->msg.ack.match_bits = le64_to_cpu(hdr->msg.ack.match_bits);
4060         hdr->msg.ack.mlength = le32_to_cpu(hdr->msg.ack.mlength);
4061
4062         cpt = lnet_cpt_of_cookie(hdr->msg.ack.dst_wmd.wh_object_cookie);
4063         lnet_res_lock(cpt);
4064
4065         /* NB handles only looked up by creator (no flips) */
4066         md = lnet_wire_handle2md(&hdr->msg.ack.dst_wmd);
4067         if (md == NULL || md->md_threshold == 0 || md->md_me != NULL) {
4068                 /* Don't moan; this is expected */
4069                 CDEBUG(D_NET,
4070                        "%s: Dropping ACK from %s to %s MD %#llx.%#llx\n",
4071                        libcfs_nid2str(ni->ni_nid), libcfs_id2str(src),
4072                        (md == NULL) ? "invalid" : "inactive",
4073                        hdr->msg.ack.dst_wmd.wh_interface_cookie,
4074                        hdr->msg.ack.dst_wmd.wh_object_cookie);
4075                 if (md != NULL && md->md_me != NULL)
4076                         CERROR("Source MD also attached to portal %d\n",
4077                                md->md_me->me_portal);
4078
4079                 lnet_res_unlock(cpt);
4080                 return -ENOENT;                  /* -ve! */
4081         }
4082
4083         CDEBUG(D_NET, "%s: ACK from %s into md %#llx\n",
4084                libcfs_nid2str(ni->ni_nid), libcfs_id2str(src),
4085                hdr->msg.ack.dst_wmd.wh_object_cookie);
4086
4087         lnet_msg_attach_md(msg, md, 0, 0);
4088
4089         lnet_res_unlock(cpt);
4090
4091         lnet_build_msg_event(msg, LNET_EVENT_ACK);
4092
4093         lnet_ni_recv(ni, msg->msg_private, msg, 0, 0, 0, msg->msg_len);
4094         return 0;
4095 }
4096
4097 /**
4098  * \retval LNET_CREDIT_OK       If \a msg is forwarded
4099  * \retval LNET_CREDIT_WAIT     If \a msg is blocked because w/o buffer
4100  * \retval -ve                  error code
4101  */
4102 int
4103 lnet_parse_forward_locked(struct lnet_ni *ni, struct lnet_msg *msg)
4104 {
4105         int     rc = 0;
4106
4107         if (!the_lnet.ln_routing)
4108                 return -ECANCELED;
4109
4110         if (msg->msg_rxpeer->lpni_rtrcredits <= 0 ||
4111             lnet_msg2bufpool(msg)->rbp_credits <= 0) {
4112                 if (ni->ni_net->net_lnd->lnd_eager_recv == NULL) {
4113                         msg->msg_rx_ready_delay = 1;
4114                 } else {
4115                         lnet_net_unlock(msg->msg_rx_cpt);
4116                         rc = lnet_ni_eager_recv(ni, msg);
4117                         lnet_net_lock(msg->msg_rx_cpt);
4118                 }
4119         }
4120
4121         if (rc == 0)
4122                 rc = lnet_post_routed_recv_locked(msg, 0);
4123         return rc;
4124 }
4125
4126 int
4127 lnet_parse_local(struct lnet_ni *ni, struct lnet_msg *msg)
4128 {
4129         int     rc;
4130
4131         switch (msg->msg_type) {
4132         case LNET_MSG_ACK:
4133                 rc = lnet_parse_ack(ni, msg);
4134                 break;
4135         case LNET_MSG_PUT:
4136                 rc = lnet_parse_put(ni, msg);
4137                 break;
4138         case LNET_MSG_GET:
4139                 rc = lnet_parse_get(ni, msg, msg->msg_rdma_get);
4140                 break;
4141         case LNET_MSG_REPLY:
4142                 rc = lnet_parse_reply(ni, msg);
4143                 break;
4144         default: /* prevent an unused label if !kernel */
4145                 LASSERT(0);
4146                 return -EPROTO;
4147         }
4148
4149         LASSERT(rc == 0 || rc == -ENOENT);
4150         return rc;
4151 }
4152
4153 char *
4154 lnet_msgtyp2str (int type)
4155 {
4156         switch (type) {
4157         case LNET_MSG_ACK:
4158                 return ("ACK");
4159         case LNET_MSG_PUT:
4160                 return ("PUT");
4161         case LNET_MSG_GET:
4162                 return ("GET");
4163         case LNET_MSG_REPLY:
4164                 return ("REPLY");
4165         case LNET_MSG_HELLO:
4166                 return ("HELLO");
4167         default:
4168                 return ("<UNKNOWN>");
4169         }
4170 }
4171
4172 void
4173 lnet_print_hdr(struct lnet_hdr *hdr)
4174 {
4175         struct lnet_process_id src = {
4176                 .nid = hdr->src_nid,
4177                 .pid = hdr->src_pid,
4178         };
4179         struct lnet_process_id dst = {
4180                 .nid = hdr->dest_nid,
4181                 .pid = hdr->dest_pid,
4182         };
4183         char *type_str = lnet_msgtyp2str(hdr->type);
4184
4185         CWARN("P3 Header at %p of type %s\n", hdr, type_str);
4186         CWARN("    From %s\n", libcfs_id2str(src));
4187         CWARN("    To   %s\n", libcfs_id2str(dst));
4188
4189         switch (hdr->type) {
4190         default:
4191                 break;
4192
4193         case LNET_MSG_PUT:
4194                 CWARN("    Ptl index %d, ack md %#llx.%#llx, "
4195                       "match bits %llu\n",
4196                       hdr->msg.put.ptl_index,
4197                       hdr->msg.put.ack_wmd.wh_interface_cookie,
4198                       hdr->msg.put.ack_wmd.wh_object_cookie,
4199                       hdr->msg.put.match_bits);
4200                 CWARN("    Length %d, offset %d, hdr data %#llx\n",
4201                       hdr->payload_length, hdr->msg.put.offset,
4202                       hdr->msg.put.hdr_data);
4203                 break;
4204
4205         case LNET_MSG_GET:
4206                 CWARN("    Ptl index %d, return md %#llx.%#llx, "
4207                       "match bits %llu\n", hdr->msg.get.ptl_index,
4208                       hdr->msg.get.return_wmd.wh_interface_cookie,
4209                       hdr->msg.get.return_wmd.wh_object_cookie,
4210                       hdr->msg.get.match_bits);
4211                 CWARN("    Length %d, src offset %d\n",
4212                       hdr->msg.get.sink_length,
4213                       hdr->msg.get.src_offset);
4214                 break;
4215
4216         case LNET_MSG_ACK:
4217                 CWARN("    dst md %#llx.%#llx, "
4218                       "manipulated length %d\n",
4219                       hdr->msg.ack.dst_wmd.wh_interface_cookie,
4220                       hdr->msg.ack.dst_wmd.wh_object_cookie,
4221                       hdr->msg.ack.mlength);
4222                 break;
4223
4224         case LNET_MSG_REPLY:
4225                 CWARN("    dst md %#llx.%#llx, "
4226                       "length %d\n",
4227                       hdr->msg.reply.dst_wmd.wh_interface_cookie,
4228                       hdr->msg.reply.dst_wmd.wh_object_cookie,
4229                       hdr->payload_length);
4230         }
4231
4232 }
4233
4234 int
4235 lnet_parse(struct lnet_ni *ni, struct lnet_hdr *hdr, lnet_nid_t from_nid,
4236            void *private, int rdma_req)
4237 {
4238         struct lnet_peer_ni *lpni;
4239         struct lnet_msg *msg;
4240         __u32 payload_length;
4241         lnet_pid_t dest_pid;
4242         lnet_nid_t dest_nid;
4243         lnet_nid_t src_nid;
4244         bool push = false;
4245         int for_me;
4246         __u32 type;
4247         int rc = 0;
4248         int cpt;
4249
4250         LASSERT (!in_interrupt ());
4251
4252         type = le32_to_cpu(hdr->type);
4253         src_nid = le64_to_cpu(hdr->src_nid);
4254         dest_nid = le64_to_cpu(hdr->dest_nid);
4255         dest_pid = le32_to_cpu(hdr->dest_pid);
4256         payload_length = le32_to_cpu(hdr->payload_length);
4257
4258         for_me = (ni->ni_nid == dest_nid);
4259         cpt = lnet_cpt_of_nid(from_nid, ni);
4260
4261         CDEBUG(D_NET, "TRACE: %s(%s) <- %s : %s - %s\n",
4262                 libcfs_nid2str(dest_nid),
4263                 libcfs_nid2str(ni->ni_nid),
4264                 libcfs_nid2str(src_nid),
4265                 lnet_msgtyp2str(type),
4266                 (for_me) ? "for me" : "routed");
4267
4268         switch (type) {
4269         case LNET_MSG_ACK:
4270         case LNET_MSG_GET:
4271                 if (payload_length > 0) {
4272                         CERROR("%s, src %s: bad %s payload %d (0 expected)\n",
4273                                libcfs_nid2str(from_nid),
4274                                libcfs_nid2str(src_nid),
4275                                lnet_msgtyp2str(type), payload_length);
4276                         return -EPROTO;
4277                 }
4278                 break;
4279
4280         case LNET_MSG_PUT:
4281         case LNET_MSG_REPLY:
4282                 if (payload_length >
4283                     (__u32)(for_me ? LNET_MAX_PAYLOAD : LNET_MTU)) {
4284                         CERROR("%s, src %s: bad %s payload %d "
4285                                "(%d max expected)\n",
4286                                libcfs_nid2str(from_nid),
4287                                libcfs_nid2str(src_nid),
4288                                lnet_msgtyp2str(type),
4289                                payload_length,
4290                                for_me ? LNET_MAX_PAYLOAD : LNET_MTU);
4291                         return -EPROTO;
4292                 }
4293                 break;
4294
4295         default:
4296                 CERROR("%s, src %s: Bad message type 0x%x\n",
4297                        libcfs_nid2str(from_nid),
4298                        libcfs_nid2str(src_nid), type);
4299                 return -EPROTO;
4300         }
4301
4302         if (the_lnet.ln_routing &&
4303             ni->ni_net->net_last_alive != ktime_get_real_seconds()) {
4304                 lnet_ni_lock(ni);
4305                 spin_lock(&ni->ni_net->net_lock);
4306                 ni->ni_net->net_last_alive = ktime_get_real_seconds();
4307                 spin_unlock(&ni->ni_net->net_lock);
4308                 if (ni->ni_status != NULL &&
4309                     ni->ni_status->ns_status == LNET_NI_STATUS_DOWN) {
4310                         ni->ni_status->ns_status = LNET_NI_STATUS_UP;
4311                         push = true;
4312                 }
4313                 lnet_ni_unlock(ni);
4314         }
4315
4316         if (push)
4317                 lnet_push_update_to_peers(1);
4318
4319         /* Regard a bad destination NID as a protocol error.  Senders should
4320          * know what they're doing; if they don't they're misconfigured, buggy
4321          * or malicious so we chop them off at the knees :) */
4322
4323         if (!for_me) {
4324                 if (LNET_NIDNET(dest_nid) == LNET_NIDNET(ni->ni_nid)) {
4325                         /* should have gone direct */
4326                         CERROR("%s, src %s: Bad dest nid %s "
4327                                "(should have been sent direct)\n",
4328                                 libcfs_nid2str(from_nid),
4329                                 libcfs_nid2str(src_nid),
4330                                 libcfs_nid2str(dest_nid));
4331                         return -EPROTO;
4332                 }
4333
4334                 if (lnet_islocalnid(dest_nid)) {
4335                         /* dest is another local NI; sender should have used
4336                          * this node's NID on its own network */
4337                         CERROR("%s, src %s: Bad dest nid %s "
4338                                "(it's my nid but on a different network)\n",
4339                                 libcfs_nid2str(from_nid),
4340                                 libcfs_nid2str(src_nid),
4341                                 libcfs_nid2str(dest_nid));
4342                         return -EPROTO;
4343                 }
4344
4345                 if (rdma_req && type == LNET_MSG_GET) {
4346                         CERROR("%s, src %s: Bad optimized GET for %s "
4347                                "(final destination must be me)\n",
4348                                 libcfs_nid2str(from_nid),
4349                                 libcfs_nid2str(src_nid),
4350                                 libcfs_nid2str(dest_nid));
4351                         return -EPROTO;
4352                 }
4353
4354                 if (!the_lnet.ln_routing) {
4355                         CERROR("%s, src %s: Dropping message for %s "
4356                                "(routing not enabled)\n",
4357                                 libcfs_nid2str(from_nid),
4358                                 libcfs_nid2str(src_nid),
4359                                 libcfs_nid2str(dest_nid));
4360                         goto drop;
4361                 }
4362         }
4363
4364         /* Message looks OK; we're not going to return an error, so we MUST
4365          * call back lnd_recv() come what may... */
4366
4367         if (!list_empty(&the_lnet.ln_test_peers) &&     /* normally we don't */
4368             fail_peer(src_nid, 0)) {                    /* shall we now? */
4369                 CERROR("%s, src %s: Dropping %s to simulate failure\n",
4370                        libcfs_nid2str(from_nid), libcfs_nid2str(src_nid),
4371                        lnet_msgtyp2str(type));
4372                 goto drop;
4373         }
4374
4375         if (!list_empty(&the_lnet.ln_drop_rules) &&
4376             lnet_drop_rule_match(hdr, ni->ni_nid, NULL)) {
4377                 CDEBUG(D_NET,
4378                        "%s, src %s, dst %s: Dropping %s to simulate silent message loss\n",
4379                        libcfs_nid2str(from_nid), libcfs_nid2str(src_nid),
4380                        libcfs_nid2str(dest_nid), lnet_msgtyp2str(type));
4381                 goto drop;
4382         }
4383
4384         if (lnet_drop_asym_route && for_me &&
4385             LNET_NIDNET(src_nid) != LNET_NIDNET(from_nid)) {
4386                 struct lnet_net *net;
4387                 struct lnet_remotenet *rnet;
4388                 bool found = true;
4389
4390                 /* we are dealing with a routed message,
4391                  * so see if route to reach src_nid goes through from_nid
4392                  */
4393                 lnet_net_lock(cpt);
4394                 net = lnet_get_net_locked(LNET_NIDNET(ni->ni_nid));
4395                 if (!net) {
4396                         lnet_net_unlock(cpt);
4397                         CERROR("net %s not found\n",
4398                                libcfs_net2str(LNET_NIDNET(ni->ni_nid)));
4399                         return -EPROTO;
4400                 }
4401
4402                 rnet = lnet_find_rnet_locked(LNET_NIDNET(src_nid));
4403                 if (rnet) {
4404                         struct lnet_peer *gw = NULL;
4405                         struct lnet_peer_ni *lpni = NULL;
4406                         struct lnet_route *route;
4407
4408                         list_for_each_entry(route, &rnet->lrn_routes, lr_list) {
4409                                 found = false;
4410                                 gw = route->lr_gateway;
4411                                 if (route->lr_lnet != net->net_id)
4412                                         continue;
4413                                 /*
4414                                  * if the nid is one of the gateway's NIDs
4415                                  * then this is a valid gateway
4416                                  */
4417                                 while ((lpni = lnet_get_next_peer_ni_locked(gw,
4418                                                 NULL, lpni)) != NULL) {
4419                                         if (lpni->lpni_nid == from_nid) {
4420                                                 found = true;
4421                                                 break;
4422                                         }
4423                                 }
4424                         }
4425                 }
4426                 lnet_net_unlock(cpt);
4427                 if (!found) {
4428                         /* we would not use from_nid to route a message to
4429                          * src_nid
4430                          * => asymmetric routing detected but forbidden
4431                          */
4432                         CERROR("%s, src %s: Dropping asymmetrical route %s\n",
4433                                libcfs_nid2str(from_nid),
4434                                libcfs_nid2str(src_nid), lnet_msgtyp2str(type));
4435                         goto drop;
4436                 }
4437         }
4438
4439         msg = lnet_msg_alloc();
4440         if (msg == NULL) {
4441                 CERROR("%s, src %s: Dropping %s (out of memory)\n",
4442                        libcfs_nid2str(from_nid), libcfs_nid2str(src_nid),
4443                        lnet_msgtyp2str(type));
4444                 goto drop;
4445         }
4446
4447         /* msg zeroed in lnet_msg_alloc; i.e. flags all clear,
4448          * pointers NULL etc */
4449
4450         msg->msg_type = type;
4451         msg->msg_private = private;
4452         msg->msg_receiving = 1;
4453         msg->msg_rdma_get = rdma_req;
4454         msg->msg_len = msg->msg_wanted = payload_length;
4455         msg->msg_offset = 0;
4456         msg->msg_hdr = *hdr;
4457         /* for building message event */
4458         msg->msg_from = from_nid;
4459         if (!for_me) {
4460                 msg->msg_target.pid     = dest_pid;
4461                 msg->msg_target.nid     = dest_nid;
4462                 msg->msg_routing        = 1;
4463
4464         } else {
4465                 /* convert common msg->hdr fields to host byteorder */
4466                 msg->msg_hdr.type       = type;
4467                 msg->msg_hdr.src_nid    = src_nid;
4468                 msg->msg_hdr.src_pid    = le32_to_cpu(msg->msg_hdr.src_pid);
4469                 msg->msg_hdr.dest_nid   = dest_nid;
4470                 msg->msg_hdr.dest_pid   = dest_pid;
4471                 msg->msg_hdr.payload_length = payload_length;
4472         }
4473
4474         lnet_net_lock(cpt);
4475         lpni = lnet_nid2peerni_locked(from_nid, ni->ni_nid, cpt);
4476         if (IS_ERR(lpni)) {
4477                 lnet_net_unlock(cpt);
4478                 CERROR("%s, src %s: Dropping %s "
4479                        "(error %ld looking up sender)\n",
4480                        libcfs_nid2str(from_nid), libcfs_nid2str(src_nid),
4481                        lnet_msgtyp2str(type), PTR_ERR(lpni));
4482                 lnet_msg_free(msg);
4483                 if (rc == -ESHUTDOWN)
4484                         /* We are shutting down.  Don't do anything more */
4485                         return 0;
4486                 goto drop;
4487         }
4488
4489         if (the_lnet.ln_routing)
4490                 lpni->lpni_last_alive = ktime_get_seconds();
4491
4492         msg->msg_rxpeer = lpni;
4493         msg->msg_rxni = ni;
4494         lnet_ni_addref_locked(ni, cpt);
4495         /* Multi-Rail: Primary NID of source. */
4496         msg->msg_initiator = lnet_peer_primary_nid_locked(src_nid);
4497
4498         /*
4499          * mark the status of this lpni as UP since we received a message
4500          * from it. The ping response reports back the ns_status which is
4501          * marked on the remote as up or down and we cache it here.
4502          */
4503         msg->msg_rxpeer->lpni_ns_status = LNET_NI_STATUS_UP;
4504
4505         lnet_msg_commit(msg, cpt);
4506
4507         /* message delay simulation */
4508         if (unlikely(!list_empty(&the_lnet.ln_delay_rules) &&
4509                      lnet_delay_rule_match_locked(hdr, msg))) {
4510                 lnet_net_unlock(cpt);
4511                 return 0;
4512         }
4513
4514         if (!for_me) {
4515                 rc = lnet_parse_forward_locked(ni, msg);
4516                 lnet_net_unlock(cpt);
4517
4518                 if (rc < 0)
4519                         goto free_drop;
4520
4521                 if (rc == LNET_CREDIT_OK) {
4522                         lnet_ni_recv(ni, msg->msg_private, msg, 0,
4523                                      0, payload_length, payload_length);
4524                 }
4525                 return 0;
4526         }
4527
4528         lnet_net_unlock(cpt);
4529
4530         rc = lnet_parse_local(ni, msg);
4531         if (rc != 0)
4532                 goto free_drop;
4533         return 0;
4534
4535  free_drop:
4536         LASSERT(msg->msg_md == NULL);
4537         lnet_finalize(msg, rc);
4538
4539  drop:
4540         lnet_drop_message(ni, cpt, private, payload_length, type);
4541         return 0;
4542 }
4543 EXPORT_SYMBOL(lnet_parse);
4544
4545 void
4546 lnet_drop_delayed_msg_list(struct list_head *head, char *reason)
4547 {
4548         while (!list_empty(head)) {
4549                 struct lnet_process_id id = {0};
4550                 struct lnet_msg *msg;
4551
4552                 msg = list_entry(head->next, struct lnet_msg, msg_list);
4553                 list_del(&msg->msg_list);
4554
4555                 id.nid = msg->msg_hdr.src_nid;
4556                 id.pid = msg->msg_hdr.src_pid;
4557
4558                 LASSERT(msg->msg_md == NULL);
4559                 LASSERT(msg->msg_rx_delayed);
4560                 LASSERT(msg->msg_rxpeer != NULL);
4561                 LASSERT(msg->msg_hdr.type == LNET_MSG_PUT);
4562
4563                 CWARN("Dropping delayed PUT from %s portal %d match %llu"
4564                       " offset %d length %d: %s\n",
4565                       libcfs_id2str(id),
4566                       msg->msg_hdr.msg.put.ptl_index,
4567                       msg->msg_hdr.msg.put.match_bits,
4568                       msg->msg_hdr.msg.put.offset,
4569                       msg->msg_hdr.payload_length, reason);
4570
4571                 /* NB I can't drop msg's ref on msg_rxpeer until after I've
4572                  * called lnet_drop_message(), so I just hang onto msg as well
4573                  * until that's done */
4574
4575                 lnet_drop_message(msg->msg_rxni, msg->msg_rx_cpt,
4576                                   msg->msg_private, msg->msg_len,
4577                                   msg->msg_type);
4578
4579                 msg->msg_no_resend = true;
4580                 /*
4581                  * NB: message will not generate event because w/o attached MD,
4582                  * but we still should give error code so lnet_msg_decommit()
4583                  * can skip counters operations and other checks.
4584                  */
4585                 lnet_finalize(msg, -ENOENT);
4586         }
4587 }
4588
4589 void
4590 lnet_recv_delayed_msg_list(struct list_head *head)
4591 {
4592         while (!list_empty(head)) {
4593                 struct lnet_msg *msg;
4594                 struct lnet_process_id id;
4595
4596                 msg = list_entry(head->next, struct lnet_msg, msg_list);
4597                 list_del(&msg->msg_list);
4598
4599                 /* md won't disappear under me, since each msg
4600                  * holds a ref on it */
4601
4602                 id.nid = msg->msg_hdr.src_nid;
4603                 id.pid = msg->msg_hdr.src_pid;
4604
4605                 LASSERT(msg->msg_rx_delayed);
4606                 LASSERT(msg->msg_md != NULL);
4607                 LASSERT(msg->msg_rxpeer != NULL);
4608                 LASSERT(msg->msg_rxni != NULL);
4609                 LASSERT(msg->msg_hdr.type == LNET_MSG_PUT);
4610
4611                 CDEBUG(D_NET, "Resuming delayed PUT from %s portal %d "
4612                        "match %llu offset %d length %d.\n",
4613                         libcfs_id2str(id), msg->msg_hdr.msg.put.ptl_index,
4614                         msg->msg_hdr.msg.put.match_bits,
4615                         msg->msg_hdr.msg.put.offset,
4616                         msg->msg_hdr.payload_length);
4617
4618                 lnet_recv_put(msg->msg_rxni, msg);
4619         }
4620 }
4621
4622 static void
4623 lnet_attach_rsp_tracker(struct lnet_rsp_tracker *rspt, int cpt,
4624                         struct lnet_libmd *md, struct lnet_handle_md mdh)
4625 {
4626         s64 timeout_ns;
4627         struct lnet_rsp_tracker *local_rspt;
4628
4629         /*
4630          * MD has a refcount taken by message so it's not going away.
4631          * The MD however can be looked up. We need to secure the access
4632          * to the md_rspt_ptr by taking the res_lock.
4633          * The rspt can be accessed without protection up to when it gets
4634          * added to the list.
4635          */
4636
4637         lnet_res_lock(cpt);
4638         local_rspt = md->md_rspt_ptr;
4639         timeout_ns = lnet_transaction_timeout * NSEC_PER_SEC;
4640         if (local_rspt != NULL) {
4641                 /*
4642                  * we already have an rspt attached to the md, so we'll
4643                  * update the deadline on that one.
4644                  */
4645                 lnet_rspt_free(rspt, cpt);
4646         } else {
4647                 /* new md */
4648                 rspt->rspt_mdh = mdh;
4649                 rspt->rspt_cpt = cpt;
4650                 /* store the rspt so we can access it when we get the REPLY */
4651                 md->md_rspt_ptr = rspt;
4652                 local_rspt = rspt;
4653         }
4654         local_rspt->rspt_deadline = ktime_add_ns(ktime_get(), timeout_ns);
4655
4656         /*
4657          * add to the list of tracked responses. It's added to tail of the
4658          * list in order to expire all the older entries first.
4659          */
4660         lnet_net_lock(cpt);
4661         list_move_tail(&local_rspt->rspt_on_list, the_lnet.ln_mt_rstq[cpt]);
4662         lnet_net_unlock(cpt);
4663         lnet_res_unlock(cpt);
4664 }
4665
4666 /**
4667  * Initiate an asynchronous PUT operation.
4668  *
4669  * There are several events associated with a PUT: completion of the send on
4670  * the initiator node (LNET_EVENT_SEND), and when the send completes
4671  * successfully, the receipt of an acknowledgment (LNET_EVENT_ACK) indicating
4672  * that the operation was accepted by the target. The event LNET_EVENT_PUT is
4673  * used at the target node to indicate the completion of incoming data
4674  * delivery.
4675  *
4676  * The local events will be logged in the EQ associated with the MD pointed to
4677  * by \a mdh handle. Using a MD without an associated EQ results in these
4678  * events being discarded. In this case, the caller must have another
4679  * mechanism (e.g., a higher level protocol) for determining when it is safe
4680  * to modify the memory region associated with the MD.
4681  *
4682  * Note that LNet does not guarantee the order of LNET_EVENT_SEND and
4683  * LNET_EVENT_ACK, though intuitively ACK should happen after SEND.
4684  *
4685  * \param self Indicates the NID of a local interface through which to send
4686  * the PUT request. Use LNET_NID_ANY to let LNet choose one by itself.
4687  * \param mdh A handle for the MD that describes the memory to be sent. The MD
4688  * must be "free floating" (See LNetMDBind()).
4689  * \param ack Controls whether an acknowledgment is requested.
4690  * Acknowledgments are only sent when they are requested by the initiating
4691  * process and the target MD enables them.
4692  * \param target A process identifier for the target process.
4693  * \param portal The index in the \a target's portal table.
4694  * \param match_bits The match bits to use for MD selection at the target
4695  * process.
4696  * \param offset The offset into the target MD (only used when the target
4697  * MD has the LNET_MD_MANAGE_REMOTE option set).
4698  * \param hdr_data 64 bits of user data that can be included in the message
4699  * header. This data is written to an event queue entry at the target if an
4700  * EQ is present on the matching MD.
4701  *
4702  * \retval  0      Success, and only in this case events will be generated
4703  * and logged to EQ (if it exists).
4704  * \retval -EIO    Simulated failure.
4705  * \retval -ENOMEM Memory allocation failure.
4706  * \retval -ENOENT Invalid MD object.
4707  *
4708  * \see struct lnet_event::hdr_data and lnet_event_kind_t.
4709  */
4710 int
4711 LNetPut(lnet_nid_t self, struct lnet_handle_md mdh, enum lnet_ack_req ack,
4712         struct lnet_process_id target, unsigned int portal,
4713         __u64 match_bits, unsigned int offset,
4714         __u64 hdr_data)
4715 {
4716         struct lnet_msg *msg;
4717         struct lnet_libmd *md;
4718         int cpt;
4719         int rc;
4720         struct lnet_rsp_tracker *rspt = NULL;
4721
4722         LASSERT(the_lnet.ln_refcount > 0);
4723
4724         if (!list_empty(&the_lnet.ln_test_peers) &&     /* normally we don't */
4725             fail_peer(target.nid, 1)) {                 /* shall we now? */
4726                 CERROR("Dropping PUT to %s: simulated failure\n",
4727                        libcfs_id2str(target));
4728                 return -EIO;
4729         }
4730
4731         msg = lnet_msg_alloc();
4732         if (msg == NULL) {
4733                 CERROR("Dropping PUT to %s: ENOMEM on struct lnet_msg\n",
4734                        libcfs_id2str(target));
4735                 return -ENOMEM;
4736         }
4737         msg->msg_vmflush = !!memory_pressure_get();
4738
4739         cpt = lnet_cpt_of_cookie(mdh.cookie);
4740
4741         if (ack == LNET_ACK_REQ) {
4742                 rspt = lnet_rspt_alloc(cpt);
4743                 if (!rspt) {
4744                         CERROR("Dropping PUT to %s: ENOMEM on response tracker\n",
4745                                 libcfs_id2str(target));
4746                         return -ENOMEM;
4747                 }
4748                 INIT_LIST_HEAD(&rspt->rspt_on_list);
4749         }
4750
4751         lnet_res_lock(cpt);
4752
4753         md = lnet_handle2md(&mdh);
4754         if (md == NULL || md->md_threshold == 0 || md->md_me != NULL) {
4755                 CERROR("Dropping PUT (%llu:%d:%s): MD (%d) invalid\n",
4756                        match_bits, portal, libcfs_id2str(target),
4757                        md == NULL ? -1 : md->md_threshold);
4758                 if (md != NULL && md->md_me != NULL)
4759                         CERROR("Source MD also attached to portal %d\n",
4760                                md->md_me->me_portal);
4761                 lnet_res_unlock(cpt);
4762
4763                 lnet_rspt_free(rspt, cpt);
4764                 lnet_msg_free(msg);
4765                 return -ENOENT;
4766         }
4767
4768         CDEBUG(D_NET, "LNetPut -> %s\n", libcfs_id2str(target));
4769
4770         lnet_msg_attach_md(msg, md, 0, 0);
4771
4772         lnet_prep_send(msg, LNET_MSG_PUT, target, 0, md->md_length);
4773
4774         msg->msg_hdr.msg.put.match_bits = cpu_to_le64(match_bits);
4775         msg->msg_hdr.msg.put.ptl_index = cpu_to_le32(portal);
4776         msg->msg_hdr.msg.put.offset = cpu_to_le32(offset);
4777         msg->msg_hdr.msg.put.hdr_data = hdr_data;
4778
4779         /* NB handles only looked up by creator (no flips) */
4780         if (ack == LNET_ACK_REQ) {
4781                 msg->msg_hdr.msg.put.ack_wmd.wh_interface_cookie =
4782                         the_lnet.ln_interface_cookie;
4783                 msg->msg_hdr.msg.put.ack_wmd.wh_object_cookie =
4784                         md->md_lh.lh_cookie;
4785         } else {
4786                 msg->msg_hdr.msg.put.ack_wmd.wh_interface_cookie =
4787                         LNET_WIRE_HANDLE_COOKIE_NONE;
4788                 msg->msg_hdr.msg.put.ack_wmd.wh_object_cookie =
4789                         LNET_WIRE_HANDLE_COOKIE_NONE;
4790         }
4791
4792         lnet_res_unlock(cpt);
4793
4794         lnet_build_msg_event(msg, LNET_EVENT_SEND);
4795
4796         if (ack == LNET_ACK_REQ)
4797                 lnet_attach_rsp_tracker(rspt, cpt, md, mdh);
4798
4799         if (CFS_FAIL_CHECK_ORSET(CFS_FAIL_PTLRPC_OST_BULK_CB2,
4800                                  CFS_FAIL_ONCE))
4801                 rc = -EIO;
4802         else
4803                 rc = lnet_send(self, msg, LNET_NID_ANY);
4804
4805         if (rc != 0) {
4806                 CNETERR("Error sending PUT to %s: %d\n",
4807                         libcfs_id2str(target), rc);
4808                 msg->msg_no_resend = true;
4809                 lnet_finalize(msg, rc);
4810         }
4811
4812         /* completion will be signalled by an event */
4813         return 0;
4814 }
4815 EXPORT_SYMBOL(LNetPut);
4816
4817 /*
4818  * The LND can DMA direct to the GET md (i.e. no REPLY msg).  This
4819  * returns a msg for the LND to pass to lnet_finalize() when the sink
4820  * data has been received.
4821  *
4822  * CAVEAT EMPTOR: 'getmsg' is the original GET, which is freed when
4823  * lnet_finalize() is called on it, so the LND must call this first
4824  */
4825 struct lnet_msg *
4826 lnet_create_reply_msg(struct lnet_ni *ni, struct lnet_msg *getmsg)
4827 {
4828         struct lnet_msg *msg = lnet_msg_alloc();
4829         struct lnet_libmd *getmd = getmsg->msg_md;
4830         struct lnet_process_id peer_id = getmsg->msg_target;
4831         int cpt;
4832
4833         LASSERT(!getmsg->msg_target_is_router);
4834         LASSERT(!getmsg->msg_routing);
4835
4836         if (msg == NULL) {
4837                 CERROR("%s: Dropping REPLY from %s: can't allocate msg\n",
4838                        libcfs_nid2str(ni->ni_nid), libcfs_id2str(peer_id));
4839                 goto drop;
4840         }
4841
4842         cpt = lnet_cpt_of_cookie(getmd->md_lh.lh_cookie);
4843         lnet_res_lock(cpt);
4844
4845         LASSERT(getmd->md_refcount > 0);
4846
4847         if (getmd->md_threshold == 0) {
4848                 CERROR("%s: Dropping REPLY from %s for inactive MD %p\n",
4849                         libcfs_nid2str(ni->ni_nid), libcfs_id2str(peer_id),
4850                         getmd);
4851                 lnet_res_unlock(cpt);
4852                 goto drop;
4853         }
4854
4855         LASSERT(getmd->md_offset == 0);
4856
4857         CDEBUG(D_NET, "%s: Reply from %s md %p\n",
4858                libcfs_nid2str(ni->ni_nid), libcfs_id2str(peer_id), getmd);
4859
4860         /* setup information for lnet_build_msg_event */
4861         msg->msg_initiator = getmsg->msg_txpeer->lpni_peer_net->lpn_peer->lp_primary_nid;
4862         msg->msg_from = peer_id.nid;
4863         msg->msg_type = LNET_MSG_GET; /* flag this msg as an "optimized" GET */
4864         msg->msg_hdr.src_nid = peer_id.nid;
4865         msg->msg_hdr.payload_length = getmd->md_length;
4866         msg->msg_receiving = 1; /* required by lnet_msg_attach_md */
4867
4868         lnet_msg_attach_md(msg, getmd, getmd->md_offset, getmd->md_length);
4869         lnet_res_unlock(cpt);
4870
4871         cpt = lnet_cpt_of_nid(peer_id.nid, ni);
4872
4873         lnet_net_lock(cpt);
4874         lnet_msg_commit(msg, cpt);
4875         lnet_net_unlock(cpt);
4876
4877         lnet_build_msg_event(msg, LNET_EVENT_REPLY);
4878
4879         return msg;
4880
4881  drop:
4882         cpt = lnet_cpt_of_nid(peer_id.nid, ni);
4883
4884         lnet_net_lock(cpt);
4885         lnet_incr_stats(&ni->ni_stats, LNET_MSG_GET, LNET_STATS_TYPE_DROP);
4886         the_lnet.ln_counters[cpt]->lct_common.lcc_drop_count++;
4887         the_lnet.ln_counters[cpt]->lct_common.lcc_drop_length +=
4888                 getmd->md_length;
4889         lnet_net_unlock(cpt);
4890
4891         if (msg != NULL)
4892                 lnet_msg_free(msg);
4893
4894         return NULL;
4895 }
4896 EXPORT_SYMBOL(lnet_create_reply_msg);
4897
4898 void
4899 lnet_set_reply_msg_len(struct lnet_ni *ni, struct lnet_msg *reply,
4900                        unsigned int len)
4901 {
4902         /* Set the REPLY length, now the RDMA that elides the REPLY message has
4903          * completed and I know it. */
4904         LASSERT(reply != NULL);
4905         LASSERT(reply->msg_type == LNET_MSG_GET);
4906         LASSERT(reply->msg_ev.type == LNET_EVENT_REPLY);
4907
4908         /* NB I trusted my peer to RDMA.  If she tells me she's written beyond
4909          * the end of my buffer, I might as well be dead. */
4910         LASSERT(len <= reply->msg_ev.mlength);
4911
4912         reply->msg_ev.mlength = len;
4913 }
4914 EXPORT_SYMBOL(lnet_set_reply_msg_len);
4915
4916 /**
4917  * Initiate an asynchronous GET operation.
4918  *
4919  * On the initiator node, an LNET_EVENT_SEND is logged when the GET request
4920  * is sent, and an LNET_EVENT_REPLY is logged when the data returned from
4921  * the target node in the REPLY has been written to local MD.
4922  *
4923  * On the target node, an LNET_EVENT_GET is logged when the GET request
4924  * arrives and is accepted into a MD.
4925  *
4926  * \param self,target,portal,match_bits,offset See the discussion in LNetPut().
4927  * \param mdh A handle for the MD that describes the memory into which the
4928  * requested data will be received. The MD must be "free floating" (See LNetMDBind()).
4929  *
4930  * \retval  0      Success, and only in this case events will be generated
4931  * and logged to EQ (if it exists) of the MD.
4932  * \retval -EIO    Simulated failure.
4933  * \retval -ENOMEM Memory allocation failure.
4934  * \retval -ENOENT Invalid MD object.
4935  */
4936 int
4937 LNetGet(lnet_nid_t self, struct lnet_handle_md mdh,
4938         struct lnet_process_id target, unsigned int portal,
4939         __u64 match_bits, unsigned int offset, bool recovery)
4940 {
4941         struct lnet_msg *msg;
4942         struct lnet_libmd *md;
4943         struct lnet_rsp_tracker *rspt;
4944         int cpt;
4945         int rc;
4946
4947         LASSERT(the_lnet.ln_refcount > 0);
4948
4949         if (!list_empty(&the_lnet.ln_test_peers) &&     /* normally we don't */
4950             fail_peer(target.nid, 1))                   /* shall we now? */
4951         {
4952                 CERROR("Dropping GET to %s: simulated failure\n",
4953                        libcfs_id2str(target));
4954                 return -EIO;
4955         }
4956
4957         msg = lnet_msg_alloc();
4958         if (!msg) {
4959                 CERROR("Dropping GET to %s: ENOMEM on struct lnet_msg\n",
4960                        libcfs_id2str(target));
4961                 return -ENOMEM;
4962         }
4963
4964         cpt = lnet_cpt_of_cookie(mdh.cookie);
4965
4966         rspt = lnet_rspt_alloc(cpt);
4967         if (!rspt) {
4968                 CERROR("Dropping GET to %s: ENOMEM on response tracker\n",
4969                        libcfs_id2str(target));
4970                 return -ENOMEM;
4971         }
4972         INIT_LIST_HEAD(&rspt->rspt_on_list);
4973
4974         msg->msg_recovery = recovery;
4975
4976         lnet_res_lock(cpt);
4977
4978         md = lnet_handle2md(&mdh);
4979         if (md == NULL || md->md_threshold == 0 || md->md_me != NULL) {
4980                 CERROR("Dropping GET (%llu:%d:%s): MD (%d) invalid\n",
4981                        match_bits, portal, libcfs_id2str(target),
4982                        md == NULL ? -1 : md->md_threshold);
4983                 if (md != NULL && md->md_me != NULL)
4984                         CERROR("REPLY MD also attached to portal %d\n",
4985                                md->md_me->me_portal);
4986
4987                 lnet_res_unlock(cpt);
4988
4989                 lnet_msg_free(msg);
4990                 lnet_rspt_free(rspt, cpt);
4991                 return -ENOENT;
4992         }
4993
4994         CDEBUG(D_NET, "LNetGet -> %s\n", libcfs_id2str(target));
4995
4996         lnet_msg_attach_md(msg, md, 0, 0);
4997
4998         lnet_prep_send(msg, LNET_MSG_GET, target, 0, 0);
4999
5000         msg->msg_hdr.msg.get.match_bits = cpu_to_le64(match_bits);
5001         msg->msg_hdr.msg.get.ptl_index = cpu_to_le32(portal);
5002         msg->msg_hdr.msg.get.src_offset = cpu_to_le32(offset);
5003         msg->msg_hdr.msg.get.sink_length = cpu_to_le32(md->md_length);
5004
5005         /* NB handles only looked up by creator (no flips) */
5006         msg->msg_hdr.msg.get.return_wmd.wh_interface_cookie =
5007                 the_lnet.ln_interface_cookie;
5008         msg->msg_hdr.msg.get.return_wmd.wh_object_cookie =
5009                 md->md_lh.lh_cookie;
5010
5011         lnet_res_unlock(cpt);
5012
5013         lnet_build_msg_event(msg, LNET_EVENT_SEND);
5014
5015         lnet_attach_rsp_tracker(rspt, cpt, md, mdh);
5016
5017         rc = lnet_send(self, msg, LNET_NID_ANY);
5018         if (rc < 0) {
5019                 CNETERR("Error sending GET to %s: %d\n",
5020                         libcfs_id2str(target), rc);
5021                 msg->msg_no_resend = true;
5022                 lnet_finalize(msg, rc);
5023         }
5024
5025         /* completion will be signalled by an event */
5026         return 0;
5027 }
5028 EXPORT_SYMBOL(LNetGet);
5029
5030 /**
5031  * Calculate distance to node at \a dstnid.
5032  *
5033  * \param dstnid Target NID.
5034  * \param srcnidp If not NULL, NID of the local interface to reach \a dstnid
5035  * is saved here.
5036  * \param orderp If not NULL, order of the route to reach \a dstnid is saved
5037  * here.
5038  *
5039  * \retval 0 If \a dstnid belongs to a local interface, and reserved option
5040  * local_nid_dist_zero is set, which is the default.
5041  * \retval positives Distance to target NID, i.e. number of hops plus one.
5042  * \retval -EHOSTUNREACH If \a dstnid is not reachable.
5043  */
5044 int
5045 LNetDist(lnet_nid_t dstnid, lnet_nid_t *srcnidp, __u32 *orderp)
5046 {
5047         struct list_head        *e;
5048         struct lnet_ni *ni = NULL;
5049         struct lnet_remotenet *rnet;
5050         __u32                   dstnet = LNET_NIDNET(dstnid);
5051         int                     hops;
5052         int                     cpt;
5053         __u32                   order = 2;
5054         struct list_head        *rn_list;
5055
5056         /* if !local_nid_dist_zero, I don't return a distance of 0 ever
5057          * (when lustre sees a distance of 0, it substitutes 0@lo), so I
5058          * keep order 0 free for 0@lo and order 1 free for a local NID
5059          * match */
5060
5061         LASSERT(the_lnet.ln_refcount > 0);
5062
5063         cpt = lnet_net_lock_current();
5064
5065         while ((ni = lnet_get_next_ni_locked(NULL, ni))) {
5066                 if (ni->ni_nid == dstnid) {
5067                         if (srcnidp != NULL)
5068                                 *srcnidp = dstnid;
5069                         if (orderp != NULL) {
5070                                 if (LNET_NETTYP(LNET_NIDNET(dstnid)) == LOLND)
5071                                         *orderp = 0;
5072                                 else
5073                                         *orderp = 1;
5074                         }
5075                         lnet_net_unlock(cpt);
5076
5077                         return local_nid_dist_zero ? 0 : 1;
5078                 }
5079
5080                 if (LNET_NIDNET(ni->ni_nid) == dstnet) {
5081                         /* Check if ni was originally created in
5082                          * current net namespace.
5083                          * If not, assign order above 0xffff0000,
5084                          * to make this ni not a priority. */
5085                         if (current->nsproxy &&
5086                             !net_eq(ni->ni_net_ns, current->nsproxy->net_ns))
5087                                         order += 0xffff0000;
5088                         if (srcnidp != NULL)
5089                                 *srcnidp = ni->ni_nid;
5090                         if (orderp != NULL)
5091                                 *orderp = order;
5092                         lnet_net_unlock(cpt);
5093                         return 1;
5094                 }
5095
5096                 order++;
5097         }
5098
5099         rn_list = lnet_net2rnethash(dstnet);
5100         list_for_each(e, rn_list) {
5101                 rnet = list_entry(e, struct lnet_remotenet, lrn_list);
5102
5103                 if (rnet->lrn_net == dstnet) {
5104                         struct lnet_route *route;
5105                         struct lnet_route *shortest = NULL;
5106                         __u32 shortest_hops = LNET_UNDEFINED_HOPS;
5107                         __u32 route_hops;
5108
5109                         LASSERT(!list_empty(&rnet->lrn_routes));
5110
5111                         list_for_each_entry(route, &rnet->lrn_routes,
5112                                             lr_list) {
5113                                 route_hops = route->lr_hops;
5114                                 if (route_hops == LNET_UNDEFINED_HOPS)
5115                                         route_hops = 1;
5116                                 if (shortest == NULL ||
5117                                     route_hops < shortest_hops) {
5118                                         shortest = route;
5119                                         shortest_hops = route_hops;
5120                                 }
5121                         }
5122
5123                         LASSERT(shortest != NULL);
5124                         hops = shortest_hops;
5125                         if (srcnidp != NULL) {
5126                                 struct lnet_net *net;
5127                                 net = lnet_get_net_locked(shortest->lr_lnet);
5128                                 LASSERT(net);
5129                                 ni = lnet_get_next_ni_locked(net, NULL);
5130                                 *srcnidp = ni->ni_nid;
5131                         }
5132                         if (orderp != NULL)
5133                                 *orderp = order;
5134                         lnet_net_unlock(cpt);
5135                         return hops + 1;
5136                 }
5137                 order++;
5138         }
5139
5140         lnet_net_unlock(cpt);
5141         return -EHOSTUNREACH;
5142 }
5143 EXPORT_SYMBOL(LNetDist);