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[fs/lustre-release.git] / lnet / klnds / ralnd / ralnd.c
1 /* -*- mode: c; c-basic-offset: 8; indent-tabs-mode: nil; -*-
2  * vim:expandtab:shiftwidth=8:tabstop=8:
3  *
4  * Copyright (C) 2004 Cluster File Systems, Inc.
5  *   Author: Eric Barton <eric@bartonsoftware.com>
6  *
7  *   This file is part of Lustre, http://www.lustre.org.
8  *
9  *   Lustre is free software; you can redistribute it and/or
10  *   modify it under the terms of version 2 of the GNU General Public
11  *   License as published by the Free Software Foundation.
12  *
13  *   Lustre is distributed in the hope that it will be useful,
14  *   but WITHOUT ANY WARRANTY; without even the implied warranty of
15  *   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16  *   GNU General Public License for more details.
17  *
18  *   You should have received a copy of the GNU General Public License
19  *   along with Lustre; if not, write to the Free Software
20  *   Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21  *
22  */
23 #include "ranal.h"
24
25 static int        kranal_devids[] = {RAPK_MAIN_DEVICE_ID,
26                                      RAPK_EXPANSION_DEVICE_ID};
27
28 nal_t                   kranal_api;
29 ptl_handle_ni_t         kranal_ni;
30 kra_data_t              kranal_data;
31 kra_tunables_t          kranal_tunables;
32
33 #define RANAL_SYSCTL_TIMEOUT           1
34 #define RANAL_SYSCTL_LISTENER_TIMEOUT  2
35 #define RANAL_SYSCTL_BACKLOG           3
36 #define RANAL_SYSCTL_PORT              4
37 #define RANAL_SYSCTL_MAX_IMMEDIATE     5
38
39 #define RANAL_SYSCTL                   202
40
41 static ctl_table kranal_ctl_table[] = {
42         {RANAL_SYSCTL_TIMEOUT, "timeout",
43          &kranal_tunables.kra_timeout, sizeof(int),
44          0644, NULL, &proc_dointvec},
45         {RANAL_SYSCTL_LISTENER_TIMEOUT, "listener_timeout",
46          &kranal_tunables.kra_listener_timeout, sizeof(int),
47          0644, NULL, &proc_dointvec},
48         {RANAL_SYSCTL_BACKLOG, "backlog",
49          &kranal_tunables.kra_backlog, sizeof(int),
50          0644, NULL, kranal_listener_procint},
51         {RANAL_SYSCTL_PORT, "port",
52          &kranal_tunables.kra_port, sizeof(int),
53          0644, NULL, kranal_listener_procint},
54         {RANAL_SYSCTL_MAX_IMMEDIATE, "max_immediate",
55          &kranal_tunables.kra_max_immediate, sizeof(int),
56          0644, NULL, &proc_dointvec},
57         { 0 }
58 };
59
60 static ctl_table kranal_top_ctl_table[] = {
61         {RANAL_SYSCTL, "ranal", NULL, 0, 0555, kranal_ctl_table},
62         { 0 }
63 };
64
65 int
66 kranal_sock_write (struct socket *sock, void *buffer, int nob)
67 {
68         int           rc;
69         mm_segment_t  oldmm = get_fs();
70         struct iovec  iov = {
71                 .iov_base = buffer,
72                 .iov_len  = nob
73         };
74         struct msghdr msg = {
75                 .msg_name       = NULL,
76                 .msg_namelen    = 0,
77                 .msg_iov        = &iov,
78                 .msg_iovlen     = 1,
79                 .msg_control    = NULL,
80                 .msg_controllen = 0,
81                 .msg_flags      = MSG_DONTWAIT
82         };
83
84         /* We've set up the socket's send buffer to be large enough for
85          * everything we send, so a single non-blocking send should
86          * complete without error. */
87
88         set_fs(KERNEL_DS);
89         rc = sock_sendmsg(sock, &msg, iov.iov_len);
90         set_fs(oldmm);
91
92         if (rc == nob)
93                 return 0;
94
95         if (rc >= 0)
96                 return -EAGAIN;
97
98         return rc;
99 }
100
101 int
102 kranal_sock_read (struct socket *sock, void *buffer, int nob, int timeout)
103 {
104         int            rc;
105         mm_segment_t   oldmm = get_fs();
106         long           ticks = timeout * HZ;
107         unsigned long  then;
108         struct timeval tv;
109
110         LASSERT (nob > 0);
111         LASSERT (ticks > 0);
112
113         for (;;) {
114                 struct iovec  iov = {
115                         .iov_base = buffer,
116                         .iov_len  = nob
117                 };
118                 struct msghdr msg = {
119                         .msg_name       = NULL,
120                         .msg_namelen    = 0,
121                         .msg_iov        = &iov,
122                         .msg_iovlen     = 1,
123                         .msg_control    = NULL,
124                         .msg_controllen = 0,
125                         .msg_flags      = 0
126                 };
127
128                 /* Set receive timeout to remaining time */
129                 tv = (struct timeval) {
130                         .tv_sec = ticks / HZ,
131                         .tv_usec = ((ticks % HZ) * 1000000) / HZ
132                 };
133                 set_fs(KERNEL_DS);
134                 rc = sock_setsockopt(sock, SOL_SOCKET, SO_RCVTIMEO,
135                                      (char *)&tv, sizeof(tv));
136                 set_fs(oldmm);
137                 if (rc != 0) {
138                         CERROR("Can't set socket recv timeout %d: %d\n",
139                                timeout, rc);
140                         return rc;
141                 }
142
143                 set_fs(KERNEL_DS);
144                 then = jiffies;
145                 rc = sock_recvmsg(sock, &msg, iov.iov_len, 0);
146                 ticks -= jiffies - then;
147                 set_fs(oldmm);
148
149                 if (rc < 0)
150                         return rc;
151
152                 if (rc == 0)
153                         return -ECONNABORTED;
154
155                 buffer = ((char *)buffer) + rc;
156                 nob -= rc;
157
158                 if (nob == 0)
159                         return 0;
160
161                 if (ticks <= 0)
162                         return -ETIMEDOUT;
163         }
164 }
165
166 int
167 kranal_create_sock(struct socket **sockp)
168 {
169         struct socket       *sock;
170         int                  rc;
171         int                  option;
172         mm_segment_t         oldmm = get_fs();
173
174         rc = sock_create(PF_INET, SOCK_STREAM, 0, &sock);
175         if (rc != 0) {
176                 CERROR("Can't create socket: %d\n", rc);
177                 return rc;
178         }
179
180         /* Ensure sending connection info doesn't block */
181         option = 2 * sizeof(kra_connreq_t);
182         set_fs(KERNEL_DS);
183         rc = sock_setsockopt(sock, SOL_SOCKET, SO_SNDBUF,
184                              (char *)&option, sizeof(option));
185         set_fs(oldmm);
186         if (rc != 0) {
187                 CERROR("Can't set send buffer %d: %d\n", option, rc);
188                 goto failed;
189         }
190
191         option = 1;
192         set_fs(KERNEL_DS);
193         rc = sock_setsockopt(sock, SOL_SOCKET, SO_REUSEADDR,
194                              (char *)&option, sizeof(option));
195         set_fs(oldmm);
196         if (rc != 0) {
197                 CERROR("Can't set SO_REUSEADDR: %d\n", rc);
198                 goto failed;
199         }
200
201         *sockp = sock;
202         return 0;
203
204  failed:
205         sock_release(sock);
206         return rc;
207 }
208
209 void
210 kranal_pause(int ticks)
211 {
212         set_current_state(TASK_UNINTERRUPTIBLE);
213         schedule_timeout(ticks);
214 }
215
216 void
217 kranal_pack_connreq(kra_connreq_t *connreq, kra_conn_t *conn, ptl_nid_t dstnid)
218 {
219         RAP_RETURN   rrc;
220
221         memset(connreq, 0, sizeof(*connreq));
222
223         connreq->racr_magic     = RANAL_MSG_MAGIC;
224         connreq->racr_version   = RANAL_MSG_VERSION;
225         connreq->racr_devid     = conn->rac_device->rad_id;
226         connreq->racr_srcnid    = kranal_lib.libnal_ni.ni_pid.nid;
227         connreq->racr_dstnid    = dstnid;
228         connreq->racr_peerstamp = kranal_data.kra_peerstamp;
229         connreq->racr_connstamp = conn->rac_my_connstamp;
230         connreq->racr_timeout   = conn->rac_timeout;
231
232         rrc = RapkGetRiParams(conn->rac_rihandle, &connreq->racr_riparams);
233         LASSERT(rrc == RAP_SUCCESS);
234 }
235
236 int
237 kranal_recv_connreq(struct socket *sock, kra_connreq_t *connreq, int timeout)
238 {
239         int         rc;
240
241         rc = kranal_sock_read(sock, connreq, sizeof(*connreq), timeout);
242         if (rc != 0) {
243                 CERROR("Read failed: %d\n", rc);
244                 return rc;
245         }
246
247         if (connreq->racr_magic != RANAL_MSG_MAGIC) {
248                 if (__swab32(connreq->racr_magic) != RANAL_MSG_MAGIC) {
249                         CERROR("Unexpected magic %08x\n", connreq->racr_magic);
250                         return -EPROTO;
251                 }
252
253                 __swab32s(&connreq->racr_magic);
254                 __swab16s(&connreq->racr_version);
255                 __swab16s(&connreq->racr_devid);
256                 __swab64s(&connreq->racr_srcnid);
257                 __swab64s(&connreq->racr_dstnid);
258                 __swab64s(&connreq->racr_peerstamp);
259                 __swab64s(&connreq->racr_connstamp);
260                 __swab32s(&connreq->racr_timeout);
261
262                 __swab32s(&connreq->racr_riparams.HostId);
263                 __swab32s(&connreq->racr_riparams.FmaDomainHndl);
264                 __swab32s(&connreq->racr_riparams.PTag);
265                 __swab32s(&connreq->racr_riparams.CompletionCookie);
266         }
267
268         if (connreq->racr_version != RANAL_MSG_VERSION) {
269                 CERROR("Unexpected version %d\n", connreq->racr_version);
270                 return -EPROTO;
271         }
272
273         if (connreq->racr_srcnid == PTL_NID_ANY ||
274             connreq->racr_dstnid == PTL_NID_ANY) {
275                 CERROR("Received PTL_NID_ANY\n");
276                 return -EPROTO;
277         }
278
279         if (connreq->racr_timeout < RANAL_MIN_TIMEOUT) {
280                 CERROR("Received timeout %d < MIN %d\n",
281                        connreq->racr_timeout, RANAL_MIN_TIMEOUT);
282                 return -EPROTO;
283         }
284
285         return 0;
286 }
287
288 int
289 kranal_close_stale_conns_locked (kra_peer_t *peer, kra_conn_t *newconn)
290 {
291         kra_conn_t         *conn;
292         struct list_head   *ctmp;
293         struct list_head   *cnxt;
294         int                 loopback;
295         int                 count = 0;
296
297         loopback = peer->rap_nid == kranal_lib.libnal_ni.ni_pid.nid;
298
299         list_for_each_safe (ctmp, cnxt, &peer->rap_conns) {
300                 conn = list_entry(ctmp, kra_conn_t, rac_list);
301
302                 if (conn == newconn)
303                         continue;
304
305                 if (conn->rac_peerstamp != newconn->rac_peerstamp) {
306                         CDEBUG(D_NET, "Closing stale conn nid:"LPX64
307                                " peerstamp:"LPX64"("LPX64")\n", peer->rap_nid,
308                                conn->rac_peerstamp, newconn->rac_peerstamp);
309                         LASSERT (conn->rac_peerstamp < newconn->rac_peerstamp);
310                         count++;
311                         kranal_close_conn_locked(conn, -ESTALE);
312                         continue;
313                 }
314
315                 if (conn->rac_device != newconn->rac_device)
316                         continue;
317
318                 if (loopback &&
319                     newconn->rac_my_connstamp == conn->rac_peer_connstamp &&
320                     newconn->rac_peer_connstamp == conn->rac_my_connstamp)
321                         continue;
322
323                 LASSERT (conn->rac_peer_connstamp < newconn->rac_peer_connstamp);
324
325                 CDEBUG(D_NET, "Closing stale conn nid:"LPX64
326                        " connstamp:"LPX64"("LPX64")\n", peer->rap_nid,
327                        conn->rac_peer_connstamp, newconn->rac_peer_connstamp);
328
329                 count++;
330                 kranal_close_conn_locked(conn, -ESTALE);
331         }
332
333         return count;
334 }
335
336 int
337 kranal_conn_isdup_locked(kra_peer_t *peer, kra_conn_t *newconn)
338 {
339         kra_conn_t       *conn;
340         struct list_head *tmp;
341         int               loopback;
342
343         loopback = peer->rap_nid == kranal_lib.libnal_ni.ni_pid.nid;
344
345         list_for_each(tmp, &peer->rap_conns) {
346                 conn = list_entry(tmp, kra_conn_t, rac_list);
347
348                 /* 'newconn' is from an earlier version of 'peer'!!! */
349                 if (newconn->rac_peerstamp < conn->rac_peerstamp)
350                         return 1;
351
352                 /* 'conn' is from an earlier version of 'peer': it will be
353                  * removed when we cull stale conns later on... */
354                 if (newconn->rac_peerstamp > conn->rac_peerstamp)
355                         continue;
356
357                 /* Different devices are OK */
358                 if (conn->rac_device != newconn->rac_device)
359                         continue;
360
361                 /* It's me connecting to myself */
362                 if (loopback &&
363                     newconn->rac_my_connstamp == conn->rac_peer_connstamp &&
364                     newconn->rac_peer_connstamp == conn->rac_my_connstamp)
365                         continue;
366
367                 /* 'newconn' is an earlier connection from 'peer'!!! */
368                 if (newconn->rac_peer_connstamp < conn->rac_peer_connstamp)
369                         return 2;
370
371                 /* 'conn' is an earlier connection from 'peer': it will be
372                  * removed when we cull stale conns later on... */
373                 if (newconn->rac_peer_connstamp > conn->rac_peer_connstamp)
374                         continue;
375
376                 /* 'newconn' has the SAME connection stamp; 'peer' isn't
377                  * playing the game... */
378                 return 3;
379         }
380
381         return 0;
382 }
383
384 void
385 kranal_set_conn_uniqueness (kra_conn_t *conn)
386 {
387         unsigned long  flags;
388
389         write_lock_irqsave(&kranal_data.kra_global_lock, flags);
390
391         conn->rac_my_connstamp = kranal_data.kra_connstamp++;
392
393         do {    /* allocate a unique cqid */
394                 conn->rac_cqid = kranal_data.kra_next_cqid++;
395         } while (kranal_cqid2conn_locked(conn->rac_cqid) != NULL);
396
397         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
398 }
399
400 int
401 kranal_create_conn(kra_conn_t **connp, kra_device_t *dev)
402 {
403         kra_conn_t    *conn;
404         RAP_RETURN     rrc;
405
406         LASSERT (!in_interrupt());
407         PORTAL_ALLOC(conn, sizeof(*conn));
408
409         if (conn == NULL)
410                 return -ENOMEM;
411
412         memset(conn, 0, sizeof(*conn));
413         atomic_set(&conn->rac_refcount, 1);
414         INIT_LIST_HEAD(&conn->rac_list);
415         INIT_LIST_HEAD(&conn->rac_hashlist);
416         INIT_LIST_HEAD(&conn->rac_schedlist);
417         INIT_LIST_HEAD(&conn->rac_fmaq);
418         INIT_LIST_HEAD(&conn->rac_rdmaq);
419         INIT_LIST_HEAD(&conn->rac_replyq);
420         spin_lock_init(&conn->rac_lock);
421
422         kranal_set_conn_uniqueness(conn);
423
424         conn->rac_device = dev;
425         conn->rac_timeout = MAX(kranal_tunables.kra_timeout, RANAL_MIN_TIMEOUT);
426         kranal_update_reaper_timeout(conn->rac_timeout);
427
428         rrc = RapkCreateRi(dev->rad_handle, conn->rac_cqid,
429                            &conn->rac_rihandle);
430         if (rrc != RAP_SUCCESS) {
431                 CERROR("RapkCreateRi failed: %d\n", rrc);
432                 PORTAL_FREE(conn, sizeof(*conn));
433                 return -ENETDOWN;
434         }
435
436         atomic_inc(&kranal_data.kra_nconns);
437         *connp = conn;
438         return 0;
439 }
440
441 void
442 kranal_destroy_conn(kra_conn_t *conn)
443 {
444         RAP_RETURN         rrc;
445
446         LASSERT (!in_interrupt());
447         LASSERT (!conn->rac_scheduled);
448         LASSERT (list_empty(&conn->rac_list));
449         LASSERT (list_empty(&conn->rac_hashlist));
450         LASSERT (list_empty(&conn->rac_schedlist));
451         LASSERT (atomic_read(&conn->rac_refcount) == 0);
452         LASSERT (list_empty(&conn->rac_fmaq));
453         LASSERT (list_empty(&conn->rac_rdmaq));
454         LASSERT (list_empty(&conn->rac_replyq));
455
456         rrc = RapkDestroyRi(conn->rac_device->rad_handle,
457                             conn->rac_rihandle);
458         LASSERT (rrc == RAP_SUCCESS);
459
460         if (conn->rac_peer != NULL)
461                 kranal_peer_decref(conn->rac_peer);
462
463         PORTAL_FREE(conn, sizeof(*conn));
464         atomic_dec(&kranal_data.kra_nconns);
465 }
466
467 void
468 kranal_terminate_conn_locked (kra_conn_t *conn)
469 {
470         LASSERT (!in_interrupt());
471         LASSERT (conn->rac_state == RANAL_CONN_CLOSING);
472         LASSERT (!list_empty(&conn->rac_hashlist));
473         LASSERT (list_empty(&conn->rac_list));
474
475         /* Remove from conn hash table: no new callbacks */
476         list_del_init(&conn->rac_hashlist);
477         kranal_conn_decref(conn);
478
479         conn->rac_state = RANAL_CONN_CLOSED;
480
481         /* schedule to clear out all uncompleted comms in context of dev's
482          * scheduler */
483         kranal_schedule_conn(conn);
484 }
485
486 void
487 kranal_close_conn_locked (kra_conn_t *conn, int error)
488 {
489         kra_peer_t        *peer = conn->rac_peer;
490
491         CDEBUG(error == 0 ? D_NET : D_ERROR,
492                "closing conn to "LPX64": error %d\n", peer->rap_nid, error);
493
494         LASSERT (!in_interrupt());
495         LASSERT (conn->rac_state == RANAL_CONN_ESTABLISHED);
496         LASSERT (!list_empty(&conn->rac_hashlist));
497         LASSERT (!list_empty(&conn->rac_list));
498
499         list_del_init(&conn->rac_list);
500
501         if (list_empty(&peer->rap_conns) &&
502             peer->rap_persistence == 0) {
503                 /* Non-persistent peer with no more conns... */
504                 kranal_unlink_peer_locked(peer);
505         }
506
507         /* Reset RX timeout to ensure we wait for an incoming CLOSE for the
508          * full timeout.  If we get a CLOSE we know the peer has stopped all
509          * RDMA.  Otherwise if we wait for the full timeout we can also be sure
510          * all RDMA has stopped. */
511         conn->rac_last_rx = jiffies;
512         mb();
513
514         conn->rac_state = RANAL_CONN_CLOSING;
515         kranal_schedule_conn(conn);             /* schedule sending CLOSE */
516
517         kranal_conn_decref(conn);               /* lose peer's ref */
518 }
519
520 void
521 kranal_close_conn (kra_conn_t *conn, int error)
522 {
523         unsigned long    flags;
524
525
526         write_lock_irqsave(&kranal_data.kra_global_lock, flags);
527
528         if (conn->rac_state == RANAL_CONN_ESTABLISHED)
529                 kranal_close_conn_locked(conn, error);
530
531         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
532 }
533
534 int
535 kranal_set_conn_params(kra_conn_t *conn, kra_connreq_t *connreq,
536                        __u32 peer_ip, int peer_port)
537 {
538         kra_device_t  *dev = conn->rac_device;
539         unsigned long  flags;
540         RAP_RETURN     rrc;
541
542         /* tell scheduler to release the setri_mutex... */
543         spin_lock_irqsave(&dev->rad_lock, flags);
544         dev->rad_setri_please++;
545         wake_up(&dev->rad_waitq);
546         spin_unlock_irqrestore(&dev->rad_lock, flags);
547         /* ...and grab it */
548         down(&dev->rad_setri_mutex);
549
550         rrc = RapkSetRiParams(conn->rac_rihandle, &connreq->racr_riparams);
551         if (rrc != RAP_SUCCESS) {
552                 CERROR("Error setting riparams from %u.%u.%u.%u/%d: %d\n",
553                        HIPQUAD(peer_ip), peer_port, rrc);
554                 return -EPROTO;
555         }
556
557         /* release the setri_mutex... */
558         up(&dev->rad_setri_mutex);
559         /* ...and tell scheduler we're all done */
560         spin_lock_irqsave(&dev->rad_lock, flags);
561         dev->rad_setri_please--;
562         wake_up(&dev->rad_waitq);
563         spin_unlock_irqrestore(&dev->rad_lock, flags);
564         
565         conn->rac_peerstamp = connreq->racr_peerstamp;
566         conn->rac_peer_connstamp = connreq->racr_connstamp;
567         conn->rac_keepalive = RANAL_TIMEOUT2KEEPALIVE(connreq->racr_timeout);
568         kranal_update_reaper_timeout(conn->rac_keepalive);
569         return 0;
570 }
571
572 int
573 kranal_passive_conn_handshake (struct socket *sock, ptl_nid_t *src_nidp,
574                                ptl_nid_t *dst_nidp, kra_conn_t **connp)
575 {
576         struct sockaddr_in   addr;
577         __u32                peer_ip;
578         unsigned int         peer_port;
579         kra_connreq_t        rx_connreq;
580         kra_connreq_t        tx_connreq;
581         kra_conn_t          *conn;
582         kra_device_t        *dev;
583         int                  rc;
584         int                  len;
585         int                  i;
586
587         len = sizeof(addr);
588         rc = sock->ops->getname(sock, (struct sockaddr *)&addr, &len, 2);
589         if (rc != 0) {
590                 CERROR("Can't get peer's IP: %d\n", rc);
591                 return rc;
592         }
593
594         peer_ip = ntohl(addr.sin_addr.s_addr);
595         peer_port = ntohs(addr.sin_port);
596
597         if (peer_port >= 1024) {
598                 CERROR("Refusing unprivileged connection from %u.%u.%u.%u/%d\n",
599                        HIPQUAD(peer_ip), peer_port);
600                 return -ECONNREFUSED;
601         }
602
603         rc = kranal_recv_connreq(sock, &rx_connreq,
604                                  kranal_tunables.kra_listener_timeout);
605         if (rc != 0) {
606                 CERROR("Can't rx connreq from %u.%u.%u.%u/%d: %d\n",
607                        HIPQUAD(peer_ip), peer_port, rc);
608                 return rc;
609         }
610
611         for (i = 0;;i++) {
612                 if (i == kranal_data.kra_ndevs) {
613                         CERROR("Can't match dev %d from %u.%u.%u.%u/%d\n",
614                                rx_connreq.racr_devid, HIPQUAD(peer_ip), peer_port);
615                         return -ENODEV;
616                 }
617                 dev = &kranal_data.kra_devices[i];
618                 if (dev->rad_id == rx_connreq.racr_devid)
619                         break;
620         }
621
622         rc = kranal_create_conn(&conn, dev);
623         if (rc != 0)
624                 return rc;
625
626         kranal_pack_connreq(&tx_connreq, conn, rx_connreq.racr_srcnid);
627
628         rc = kranal_sock_write(sock, &tx_connreq, sizeof(tx_connreq));
629         if (rc != 0) {
630                 CERROR("Can't tx connreq to %u.%u.%u.%u/%d: %d\n",
631                        HIPQUAD(peer_ip), peer_port, rc);
632                 kranal_conn_decref(conn);
633                 return rc;
634         }
635
636         rc = kranal_set_conn_params(conn, &rx_connreq, peer_ip, peer_port);
637         if (rc != 0) {
638                 kranal_conn_decref(conn);
639                 return rc;
640         }
641
642         *connp = conn;
643         *src_nidp = rx_connreq.racr_srcnid;
644         *dst_nidp = rx_connreq.racr_dstnid;
645         return 0;
646 }
647
648 int
649 ranal_connect_sock(kra_peer_t *peer, struct socket **sockp)
650 {
651         struct sockaddr_in  locaddr;
652         struct sockaddr_in  srvaddr;
653         struct socket      *sock;
654         unsigned int        port;
655         int                 rc;
656
657         for (port = 1023; port >= 512; port--) {
658
659                 memset(&locaddr, 0, sizeof(locaddr));
660                 locaddr.sin_family      = AF_INET;
661                 locaddr.sin_port        = htons(port);
662                 locaddr.sin_addr.s_addr = htonl(INADDR_ANY);
663
664                 memset (&srvaddr, 0, sizeof (srvaddr));
665                 srvaddr.sin_family      = AF_INET;
666                 srvaddr.sin_port        = htons (peer->rap_port);
667                 srvaddr.sin_addr.s_addr = htonl (peer->rap_ip);
668
669                 rc = kranal_create_sock(&sock);
670                 if (rc != 0)
671                         return rc;
672
673                 rc = sock->ops->bind(sock,
674                                      (struct sockaddr *)&locaddr, sizeof(locaddr));
675                 if (rc != 0) {
676                         sock_release(sock);
677
678                         if (rc == -EADDRINUSE) {
679                                 CDEBUG(D_NET, "Port %d already in use\n", port);
680                                 continue;
681                         }
682
683                         CERROR("Can't bind to reserved port %d: %d\n", port, rc);
684                         return rc;
685                 }
686
687                 rc = sock->ops->connect(sock,
688                                         (struct sockaddr *)&srvaddr, sizeof(srvaddr),
689                                         0);
690                 if (rc == 0) {
691                         *sockp = sock;
692                         return 0;
693                 }
694
695                 sock_release(sock);
696
697                 if (rc != -EADDRNOTAVAIL) {
698                         CERROR("Can't connect port %d to %u.%u.%u.%u/%d: %d\n",
699                                port, HIPQUAD(peer->rap_ip), peer->rap_port, rc);
700                         return rc;
701                 }
702
703                 CDEBUG(D_NET, "Port %d not available for %u.%u.%u.%u/%d\n",
704                        port, HIPQUAD(peer->rap_ip), peer->rap_port);
705         }
706
707         /* all ports busy */
708         return -EHOSTUNREACH;
709 }
710
711
712 int
713 kranal_active_conn_handshake(kra_peer_t *peer,
714                              ptl_nid_t *dst_nidp, kra_conn_t **connp)
715 {
716         kra_connreq_t       connreq;
717         kra_conn_t         *conn;
718         kra_device_t       *dev;
719         struct socket      *sock;
720         int                 rc;
721         unsigned int        idx;
722
723         /* spread connections over all devices using both peer NIDs to ensure
724          * all nids use all devices */
725         idx = peer->rap_nid + kranal_lib.libnal_ni.ni_pid.nid;
726         dev = &kranal_data.kra_devices[idx % kranal_data.kra_ndevs];
727
728         rc = kranal_create_conn(&conn, dev);
729         if (rc != 0)
730                 return rc;
731
732         kranal_pack_connreq(&connreq, conn, peer->rap_nid);
733
734         rc = ranal_connect_sock(peer, &sock);
735         if (rc != 0)
736                 goto failed_0;
737
738         /* CAVEAT EMPTOR: the passive side receives with a SHORT rx timeout
739          * immediately after accepting a connection, so we connect and then
740          * send immediately. */
741
742         rc = kranal_sock_write(sock, &connreq, sizeof(connreq));
743         if (rc != 0) {
744                 CERROR("Can't tx connreq to %u.%u.%u.%u/%d: %d\n",
745                        HIPQUAD(peer->rap_ip), peer->rap_port, rc);
746                 goto failed_1;
747         }
748
749         rc = kranal_recv_connreq(sock, &connreq, kranal_tunables.kra_timeout);
750         if (rc != 0) {
751                 CERROR("Can't rx connreq from %u.%u.%u.%u/%d: %d\n",
752                        HIPQUAD(peer->rap_ip), peer->rap_port, rc);
753                 goto failed_1;
754         }
755
756         sock_release(sock);
757         rc = -EPROTO;
758
759         if (connreq.racr_srcnid != peer->rap_nid) {
760                 CERROR("Unexpected srcnid from %u.%u.%u.%u/%d: "
761                        "received "LPX64" expected "LPX64"\n",
762                        HIPQUAD(peer->rap_ip), peer->rap_port,
763                        connreq.racr_srcnid, peer->rap_nid);
764                 goto failed_0;
765         }
766
767         if (connreq.racr_devid != dev->rad_id) {
768                 CERROR("Unexpected device id from %u.%u.%u.%u/%d: "
769                        "received %d expected %d\n",
770                        HIPQUAD(peer->rap_ip), peer->rap_port,
771                        connreq.racr_devid, dev->rad_id);
772                 goto failed_0;
773         }
774
775         rc = kranal_set_conn_params(conn, &connreq,
776                                     peer->rap_ip, peer->rap_port);
777         if (rc != 0)
778                 goto failed_0;
779
780         *connp = conn;
781         *dst_nidp = connreq.racr_dstnid;
782         return 0;
783
784  failed_1:
785         sock_release(sock);
786  failed_0:
787         kranal_conn_decref(conn);
788         return rc;
789 }
790
791 int
792 kranal_conn_handshake (struct socket *sock, kra_peer_t *peer)
793 {
794         kra_peer_t        *peer2;
795         kra_tx_t          *tx;
796         ptl_nid_t          peer_nid;
797         ptl_nid_t          dst_nid;
798         unsigned long      flags;
799         kra_conn_t        *conn;
800         int                rc;
801         int                nstale;
802         int                new_peer = 0;
803
804         if (sock == NULL) {
805                 /* active: connd wants to connect to 'peer' */
806                 LASSERT (peer != NULL);
807                 LASSERT (peer->rap_connecting);
808
809                 rc = kranal_active_conn_handshake(peer, &dst_nid, &conn);
810                 if (rc != 0)
811                         return rc;
812
813                 write_lock_irqsave(&kranal_data.kra_global_lock, flags);
814
815                 if (!kranal_peer_active(peer)) {
816                         /* raced with peer getting unlinked */
817                         write_unlock_irqrestore(&kranal_data.kra_global_lock,
818                                                 flags);
819                         kranal_conn_decref(conn);
820                         return -ESTALE;
821                 }
822
823                 peer_nid = peer->rap_nid;
824         } else {
825                 /* passive: listener accepted 'sock' */
826                 LASSERT (peer == NULL);
827
828                 rc = kranal_passive_conn_handshake(sock, &peer_nid,
829                                                    &dst_nid, &conn);
830                 if (rc != 0)
831                         return rc;
832
833                 /* assume this is a new peer */
834                 peer = kranal_create_peer(peer_nid);
835                 if (peer == NULL) {
836                         CERROR("Can't allocate peer for "LPX64"\n", peer_nid);
837                         kranal_conn_decref(conn);
838                         return -ENOMEM;
839                 }
840
841                 write_lock_irqsave(&kranal_data.kra_global_lock, flags);
842
843                 peer2 = kranal_find_peer_locked(peer_nid);
844                 if (peer2 == NULL) {
845                         new_peer = 1;
846                 } else {
847                         /* peer_nid already in the peer table */
848                         kranal_peer_decref(peer);
849                         peer = peer2;
850                 }
851         }
852
853         LASSERT ((!new_peer) != (!kranal_peer_active(peer)));
854
855         /* Refuse connection if peer thinks we are a different NID.  We check
856          * this while holding the global lock, to synch with connection
857          * destruction on NID change. */
858         if (dst_nid != kranal_lib.libnal_ni.ni_pid.nid) {
859                 write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
860
861                 CERROR("Stale/bad connection with "LPX64
862                        ": dst_nid "LPX64", expected "LPX64"\n",
863                        peer_nid, dst_nid, kranal_lib.libnal_ni.ni_pid.nid);
864                 rc = -ESTALE;
865                 goto failed;
866         }
867
868         /* Refuse to duplicate an existing connection (both sides might try to
869          * connect at once).  NB we return success!  We _are_ connected so we
870          * _don't_ have any blocked txs to complete with failure. */
871         rc = kranal_conn_isdup_locked(peer, conn);
872         if (rc != 0) {
873                 LASSERT (!list_empty(&peer->rap_conns));
874                 LASSERT (list_empty(&peer->rap_tx_queue));
875                 write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
876                 CWARN("Not creating duplicate connection to "LPX64": %d\n",
877                       peer_nid, rc);
878                 rc = 0;
879                 goto failed;
880         }
881
882         if (new_peer) {
883                 /* peer table takes my ref on the new peer */
884                 list_add_tail(&peer->rap_list,
885                               kranal_nid2peerlist(peer_nid));
886         }
887
888         /* initialise timestamps before reaper looks at them */
889         conn->rac_last_tx = conn->rac_last_rx = jiffies;
890
891         kranal_peer_addref(peer);               /* +1 ref for conn */
892         conn->rac_peer = peer;
893         list_add_tail(&conn->rac_list, &peer->rap_conns);
894
895         kranal_conn_addref(conn);               /* +1 ref for conn table */
896         list_add_tail(&conn->rac_hashlist,
897                       kranal_cqid2connlist(conn->rac_cqid));
898
899         /* Schedule all packets blocking for a connection */
900         while (!list_empty(&peer->rap_tx_queue)) {
901                 tx = list_entry(peer->rap_tx_queue.next,
902                                 kra_tx_t, tx_list);
903
904                 list_del(&tx->tx_list);
905                 kranal_post_fma(conn, tx);
906         }
907
908         nstale = kranal_close_stale_conns_locked(peer, conn);
909
910         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
911
912         /* CAVEAT EMPTOR: passive peer can disappear NOW */
913
914         if (nstale != 0)
915                 CWARN("Closed %d stale conns to "LPX64"\n", nstale, peer_nid);
916
917         CDEBUG(D_WARNING, "New connection to "LPX64" on devid[%d] = %d\n",
918                peer_nid, conn->rac_device->rad_idx, conn->rac_device->rad_id);
919
920         /* Ensure conn gets checked.  Transmits may have been queued and an
921          * FMA event may have happened before it got in the cq hash table */
922         kranal_schedule_conn(conn);
923         return 0;
924
925  failed:
926         if (new_peer)
927                 kranal_peer_decref(peer);
928         kranal_conn_decref(conn);
929         return rc;
930 }
931
932 void
933 kranal_connect (kra_peer_t *peer)
934 {
935         kra_tx_t          *tx;
936         unsigned long      flags;
937         struct list_head   zombies;
938         int                rc;
939
940         LASSERT (peer->rap_connecting);
941
942         CDEBUG(D_NET, "About to handshake "LPX64"\n", peer->rap_nid);
943
944         rc = kranal_conn_handshake(NULL, peer);
945
946         CDEBUG(D_NET, "Done handshake "LPX64":%d \n", peer->rap_nid, rc);
947
948         write_lock_irqsave(&kranal_data.kra_global_lock, flags);
949
950         LASSERT (peer->rap_connecting);
951         peer->rap_connecting = 0;
952
953         if (rc == 0) {
954                 /* kranal_conn_handshake() queues blocked txs immediately on
955                  * success to avoid messages jumping the queue */
956                 LASSERT (list_empty(&peer->rap_tx_queue));
957
958                 /* reset reconnection timeouts */
959                 peer->rap_reconnect_interval = RANAL_MIN_RECONNECT_INTERVAL;
960                 peer->rap_reconnect_time = CURRENT_SECONDS;
961
962                 write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
963                 return;
964         }
965
966         LASSERT (peer->rap_reconnect_interval != 0);
967         peer->rap_reconnect_time = CURRENT_SECONDS + peer->rap_reconnect_interval;
968         peer->rap_reconnect_interval = MAX(RANAL_MAX_RECONNECT_INTERVAL,
969                                            1 * peer->rap_reconnect_interval);
970
971         /* Grab all blocked packets while we have the global lock */
972         list_add(&zombies, &peer->rap_tx_queue);
973         list_del_init(&peer->rap_tx_queue);
974
975         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
976
977         if (list_empty(&zombies))
978                 return;
979
980         CWARN("Dropping packets for "LPX64": connection failed\n",
981               peer->rap_nid);
982
983         do {
984                 tx = list_entry(zombies.next, kra_tx_t, tx_list);
985
986                 list_del(&tx->tx_list);
987                 kranal_tx_done(tx, -EHOSTUNREACH);
988
989         } while (!list_empty(&zombies));
990 }
991
992 void
993 kranal_free_acceptsock (kra_acceptsock_t *ras)
994 {
995         sock_release(ras->ras_sock);
996         PORTAL_FREE(ras, sizeof(*ras));
997 }
998
999 int
1000 kranal_listener (void *arg)
1001 {
1002         struct sockaddr_in addr;
1003         wait_queue_t       wait;
1004         struct socket     *sock;
1005         kra_acceptsock_t  *ras;
1006         int                port;
1007         char               name[16];
1008         int                rc;
1009         unsigned long      flags;
1010
1011         /* Parent thread holds kra_nid_mutex, and is, or is about to
1012          * block on kra_listener_signal */
1013
1014         port = kranal_tunables.kra_port;
1015         snprintf(name, sizeof(name), "kranal_lstn%03d", port);
1016         kportal_daemonize(name);
1017         kportal_blockallsigs();
1018
1019         init_waitqueue_entry(&wait, current);
1020
1021         rc = kranal_create_sock(&sock);
1022         if (rc != 0)
1023                 goto out_0;
1024
1025         memset(&addr, 0, sizeof(addr));
1026         addr.sin_family      = AF_INET;
1027         addr.sin_port        = htons(port);
1028         addr.sin_addr.s_addr = INADDR_ANY;
1029
1030         rc = sock->ops->bind(sock, (struct sockaddr *)&addr, sizeof(addr));
1031         if (rc != 0) {
1032                 CERROR("Can't bind to port %d\n", port);
1033                 goto out_1;
1034         }
1035
1036         rc = sock->ops->listen(sock, kranal_tunables.kra_backlog);
1037         if (rc != 0) {
1038                 CERROR("Can't set listen backlog %d: %d\n",
1039                        kranal_tunables.kra_backlog, rc);
1040                 goto out_1;
1041         }
1042
1043         LASSERT (kranal_data.kra_listener_sock == NULL);
1044         kranal_data.kra_listener_sock = sock;
1045
1046         /* unblock waiting parent */
1047         LASSERT (kranal_data.kra_listener_shutdown == 0);
1048         up(&kranal_data.kra_listener_signal);
1049
1050         /* Wake me any time something happens on my socket */
1051         add_wait_queue(sock->sk->sk_sleep, &wait);
1052         ras = NULL;
1053
1054         while (kranal_data.kra_listener_shutdown == 0) {
1055
1056                 if (ras == NULL) {
1057                         PORTAL_ALLOC(ras, sizeof(*ras));
1058                         if (ras == NULL) {
1059                                 CERROR("Out of Memory: pausing...\n");
1060                                 kranal_pause(HZ);
1061                                 continue;
1062                         }
1063                         ras->ras_sock = NULL;
1064                 }
1065
1066                 if (ras->ras_sock == NULL) {
1067                         ras->ras_sock = sock_alloc();
1068                         if (ras->ras_sock == NULL) {
1069                                 CERROR("Can't allocate socket: pausing...\n");
1070                                 kranal_pause(HZ);
1071                                 continue;
1072                         }
1073                         /* XXX this should add a ref to sock->ops->owner, if
1074                          * TCP could be a module */
1075                         ras->ras_sock->type = sock->type;
1076                         ras->ras_sock->ops = sock->ops;
1077                 }
1078
1079                 set_current_state(TASK_INTERRUPTIBLE);
1080
1081                 rc = sock->ops->accept(sock, ras->ras_sock, O_NONBLOCK);
1082
1083                 /* Sleep for socket activity? */
1084                 if (rc == -EAGAIN &&
1085                     kranal_data.kra_listener_shutdown == 0)
1086                         schedule();
1087
1088                 set_current_state(TASK_RUNNING);
1089
1090                 if (rc == 0) {
1091                         spin_lock_irqsave(&kranal_data.kra_connd_lock, flags);
1092
1093                         list_add_tail(&ras->ras_list,
1094                                       &kranal_data.kra_connd_acceptq);
1095
1096                         spin_unlock_irqrestore(&kranal_data.kra_connd_lock, flags);
1097                         wake_up(&kranal_data.kra_connd_waitq);
1098
1099                         ras = NULL;
1100                         continue;
1101                 }
1102
1103                 if (rc != -EAGAIN) {
1104                         CERROR("Accept failed: %d, pausing...\n", rc);
1105                         kranal_pause(HZ);
1106                 }
1107         }
1108
1109         if (ras != NULL) {
1110                 if (ras->ras_sock != NULL)
1111                         sock_release(ras->ras_sock);
1112                 PORTAL_FREE(ras, sizeof(*ras));
1113         }
1114
1115         rc = 0;
1116         remove_wait_queue(sock->sk->sk_sleep, &wait);
1117  out_1:
1118         sock_release(sock);
1119         kranal_data.kra_listener_sock = NULL;
1120  out_0:
1121         /* set completion status and unblock thread waiting for me
1122          * (parent on startup failure, executioner on normal shutdown) */
1123         kranal_data.kra_listener_shutdown = rc;
1124         up(&kranal_data.kra_listener_signal);
1125
1126         return 0;
1127 }
1128
1129 int
1130 kranal_start_listener (void)
1131 {
1132         long           pid;
1133         int            rc;
1134
1135         CDEBUG(D_NET, "Starting listener\n");
1136
1137         /* Called holding kra_nid_mutex: listener stopped */
1138         LASSERT (kranal_data.kra_listener_sock == NULL);
1139
1140         kranal_data.kra_listener_shutdown = 0;
1141         pid = kernel_thread(kranal_listener, NULL, 0);
1142         if (pid < 0) {
1143                 CERROR("Can't spawn listener: %ld\n", pid);
1144                 return (int)pid;
1145         }
1146
1147         /* Block until listener has started up. */
1148         down(&kranal_data.kra_listener_signal);
1149
1150         rc = kranal_data.kra_listener_shutdown;
1151         LASSERT ((rc != 0) == (kranal_data.kra_listener_sock == NULL));
1152
1153         CDEBUG(D_NET, "Listener %ld started OK\n", pid);
1154         return rc;
1155 }
1156
1157 void
1158 kranal_stop_listener(int clear_acceptq)
1159 {
1160         struct list_head  zombie_accepts;
1161         unsigned long     flags;
1162         kra_acceptsock_t *ras;
1163
1164         CDEBUG(D_NET, "Stopping listener\n");
1165
1166         /* Called holding kra_nid_mutex: listener running */
1167         LASSERT (kranal_data.kra_listener_sock != NULL);
1168
1169         kranal_data.kra_listener_shutdown = 1;
1170         wake_up_all(kranal_data.kra_listener_sock->sk->sk_sleep);
1171
1172         /* Block until listener has torn down. */
1173         down(&kranal_data.kra_listener_signal);
1174
1175         LASSERT (kranal_data.kra_listener_sock == NULL);
1176         CDEBUG(D_NET, "Listener stopped\n");
1177
1178         if (!clear_acceptq)
1179                 return;
1180
1181         /* Close any unhandled accepts */
1182         spin_lock_irqsave(&kranal_data.kra_connd_lock, flags);
1183
1184         list_add(&zombie_accepts, &kranal_data.kra_connd_acceptq);
1185         list_del_init(&kranal_data.kra_connd_acceptq);
1186
1187         spin_unlock_irqrestore(&kranal_data.kra_connd_lock, flags);
1188
1189         while (!list_empty(&zombie_accepts)) {
1190                 ras = list_entry(zombie_accepts.next,
1191                                  kra_acceptsock_t, ras_list);
1192                 list_del(&ras->ras_list);
1193                 kranal_free_acceptsock(ras);
1194         }
1195 }
1196
1197 int
1198 kranal_listener_procint(ctl_table *table, int write, struct file *filp,
1199                         void *buffer, size_t *lenp)
1200 {
1201         int   *tunable = (int *)table->data;
1202         int    old_val;
1203         int    rc;
1204
1205         /* No race with nal initialisation since the nal is setup all the time
1206          * it's loaded.  When that changes, change this! */
1207         LASSERT (kranal_data.kra_init == RANAL_INIT_ALL);
1208
1209         down(&kranal_data.kra_nid_mutex);
1210
1211         LASSERT (tunable == &kranal_tunables.kra_port ||
1212                  tunable == &kranal_tunables.kra_backlog);
1213         old_val = *tunable;
1214
1215         rc = proc_dointvec(table, write, filp, buffer, lenp);
1216
1217         if (write &&
1218             (*tunable != old_val ||
1219              kranal_data.kra_listener_sock == NULL)) {
1220
1221                 if (kranal_data.kra_listener_sock != NULL)
1222                         kranal_stop_listener(0);
1223
1224                 rc = kranal_start_listener();
1225
1226                 if (rc != 0) {
1227                         CWARN("Unable to start listener with new tunable:"
1228                               " reverting to old value\n");
1229                         *tunable = old_val;
1230                         kranal_start_listener();
1231                 }
1232         }
1233
1234         up(&kranal_data.kra_nid_mutex);
1235
1236         LASSERT (kranal_data.kra_init == RANAL_INIT_ALL);
1237         return rc;
1238 }
1239
1240 int
1241 kranal_set_mynid(ptl_nid_t nid)
1242 {
1243         unsigned long    flags;
1244         lib_ni_t        *ni = &kranal_lib.libnal_ni;
1245         int              rc = 0;
1246
1247         CDEBUG(D_NET, "setting mynid to "LPX64" (old nid="LPX64")\n",
1248                nid, ni->ni_pid.nid);
1249
1250         down(&kranal_data.kra_nid_mutex);
1251
1252         if (nid == ni->ni_pid.nid) {
1253                 /* no change of NID */
1254                 up(&kranal_data.kra_nid_mutex);
1255                 return 0;
1256         }
1257
1258         if (kranal_data.kra_listener_sock != NULL)
1259                 kranal_stop_listener(1);
1260
1261         write_lock_irqsave(&kranal_data.kra_global_lock, flags);
1262         kranal_data.kra_peerstamp++;
1263         ni->ni_pid.nid = nid;
1264         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
1265
1266         /* Delete all existing peers and their connections after new
1267          * NID/connstamp set to ensure no old connections in our brave
1268          * new world. */
1269         kranal_del_peer(PTL_NID_ANY, 0);
1270
1271         if (nid != PTL_NID_ANY)
1272                 rc = kranal_start_listener();
1273
1274         up(&kranal_data.kra_nid_mutex);
1275         return rc;
1276 }
1277
1278 kra_peer_t *
1279 kranal_create_peer (ptl_nid_t nid)
1280 {
1281         kra_peer_t *peer;
1282
1283         LASSERT (nid != PTL_NID_ANY);
1284
1285         PORTAL_ALLOC(peer, sizeof(*peer));
1286         if (peer == NULL)
1287                 return NULL;
1288
1289         memset(peer, 0, sizeof(*peer));         /* zero flags etc */
1290
1291         peer->rap_nid = nid;
1292         atomic_set(&peer->rap_refcount, 1);     /* 1 ref for caller */
1293
1294         INIT_LIST_HEAD(&peer->rap_list);
1295         INIT_LIST_HEAD(&peer->rap_connd_list);
1296         INIT_LIST_HEAD(&peer->rap_conns);
1297         INIT_LIST_HEAD(&peer->rap_tx_queue);
1298
1299         peer->rap_reconnect_time = CURRENT_SECONDS;
1300         peer->rap_reconnect_interval = RANAL_MIN_RECONNECT_INTERVAL;
1301
1302         atomic_inc(&kranal_data.kra_npeers);
1303         return peer;
1304 }
1305
1306 void
1307 kranal_destroy_peer (kra_peer_t *peer)
1308 {
1309         CDEBUG(D_NET, "peer "LPX64" %p deleted\n", peer->rap_nid, peer);
1310
1311         LASSERT (atomic_read(&peer->rap_refcount) == 0);
1312         LASSERT (peer->rap_persistence == 0);
1313         LASSERT (!kranal_peer_active(peer));
1314         LASSERT (!peer->rap_connecting);
1315         LASSERT (list_empty(&peer->rap_conns));
1316         LASSERT (list_empty(&peer->rap_tx_queue));
1317         LASSERT (list_empty(&peer->rap_connd_list));
1318
1319         PORTAL_FREE(peer, sizeof(*peer));
1320
1321         /* NB a peer's connections keep a reference on their peer until
1322          * they are destroyed, so we can be assured that _all_ state to do
1323          * with this peer has been cleaned up when its refcount drops to
1324          * zero. */
1325         atomic_dec(&kranal_data.kra_npeers);
1326 }
1327
1328 kra_peer_t *
1329 kranal_find_peer_locked (ptl_nid_t nid)
1330 {
1331         struct list_head *peer_list = kranal_nid2peerlist(nid);
1332         struct list_head *tmp;
1333         kra_peer_t       *peer;
1334
1335         list_for_each (tmp, peer_list) {
1336
1337                 peer = list_entry(tmp, kra_peer_t, rap_list);
1338
1339                 LASSERT (peer->rap_persistence > 0 ||     /* persistent peer */
1340                          !list_empty(&peer->rap_conns));  /* active conn */
1341
1342                 if (peer->rap_nid != nid)
1343                         continue;
1344
1345                 CDEBUG(D_NET, "got peer [%p] -> "LPX64" (%d)\n",
1346                        peer, nid, atomic_read(&peer->rap_refcount));
1347                 return peer;
1348         }
1349         return NULL;
1350 }
1351
1352 kra_peer_t *
1353 kranal_find_peer (ptl_nid_t nid)
1354 {
1355         kra_peer_t     *peer;
1356
1357         read_lock(&kranal_data.kra_global_lock);
1358         peer = kranal_find_peer_locked(nid);
1359         if (peer != NULL)                       /* +1 ref for caller? */
1360                 kranal_peer_addref(peer);
1361         read_unlock(&kranal_data.kra_global_lock);
1362
1363         return peer;
1364 }
1365
1366 void
1367 kranal_unlink_peer_locked (kra_peer_t *peer)
1368 {
1369         LASSERT (peer->rap_persistence == 0);
1370         LASSERT (list_empty(&peer->rap_conns));
1371
1372         LASSERT (kranal_peer_active(peer));
1373         list_del_init(&peer->rap_list);
1374
1375         /* lose peerlist's ref */
1376         kranal_peer_decref(peer);
1377 }
1378
1379 int
1380 kranal_get_peer_info (int index, ptl_nid_t *nidp, __u32 *ipp, int *portp,
1381                       int *persistencep)
1382 {
1383         kra_peer_t        *peer;
1384         struct list_head  *ptmp;
1385         int                i;
1386
1387         read_lock(&kranal_data.kra_global_lock);
1388
1389         for (i = 0; i < kranal_data.kra_peer_hash_size; i++) {
1390
1391                 list_for_each(ptmp, &kranal_data.kra_peers[i]) {
1392
1393                         peer = list_entry(ptmp, kra_peer_t, rap_list);
1394                         LASSERT (peer->rap_persistence > 0 ||
1395                                  !list_empty(&peer->rap_conns));
1396
1397                         if (index-- > 0)
1398                                 continue;
1399
1400                         *nidp = peer->rap_nid;
1401                         *ipp = peer->rap_ip;
1402                         *portp = peer->rap_port;
1403                         *persistencep = peer->rap_persistence;
1404
1405                         read_unlock(&kranal_data.kra_global_lock);
1406                         return 0;
1407                 }
1408         }
1409
1410         read_unlock(&kranal_data.kra_global_lock);
1411         return -ENOENT;
1412 }
1413
1414 int
1415 kranal_add_persistent_peer (ptl_nid_t nid, __u32 ip, int port)
1416 {
1417         unsigned long      flags;
1418         kra_peer_t        *peer;
1419         kra_peer_t        *peer2;
1420
1421         if (nid == PTL_NID_ANY)
1422                 return -EINVAL;
1423
1424         peer = kranal_create_peer(nid);
1425         if (peer == NULL)
1426                 return -ENOMEM;
1427
1428         write_lock_irqsave(&kranal_data.kra_global_lock, flags);
1429
1430         peer2 = kranal_find_peer_locked(nid);
1431         if (peer2 != NULL) {
1432                 kranal_peer_decref(peer);
1433                 peer = peer2;
1434         } else {
1435                 /* peer table takes existing ref on peer */
1436                 list_add_tail(&peer->rap_list,
1437                               kranal_nid2peerlist(nid));
1438         }
1439
1440         peer->rap_ip = ip;
1441         peer->rap_port = port;
1442         peer->rap_persistence++;
1443
1444         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
1445         return 0;
1446 }
1447
1448 void
1449 kranal_del_peer_locked (kra_peer_t *peer, int single_share)
1450 {
1451         struct list_head *ctmp;
1452         struct list_head *cnxt;
1453         kra_conn_t       *conn;
1454
1455         if (!single_share)
1456                 peer->rap_persistence = 0;
1457         else if (peer->rap_persistence > 0)
1458                 peer->rap_persistence--;
1459
1460         if (peer->rap_persistence != 0)
1461                 return;
1462
1463         if (list_empty(&peer->rap_conns)) {
1464                 kranal_unlink_peer_locked(peer);
1465         } else {
1466                 list_for_each_safe(ctmp, cnxt, &peer->rap_conns) {
1467                         conn = list_entry(ctmp, kra_conn_t, rac_list);
1468
1469                         kranal_close_conn_locked(conn, 0);
1470                 }
1471                 /* peer unlinks itself when last conn is closed */
1472         }
1473 }
1474
1475 int
1476 kranal_del_peer (ptl_nid_t nid, int single_share)
1477 {
1478         unsigned long      flags;
1479         struct list_head  *ptmp;
1480         struct list_head  *pnxt;
1481         kra_peer_t        *peer;
1482         int                lo;
1483         int                hi;
1484         int                i;
1485         int                rc = -ENOENT;
1486
1487         write_lock_irqsave(&kranal_data.kra_global_lock, flags);
1488
1489         if (nid != PTL_NID_ANY)
1490                 lo = hi = kranal_nid2peerlist(nid) - kranal_data.kra_peers;
1491         else {
1492                 lo = 0;
1493                 hi = kranal_data.kra_peer_hash_size - 1;
1494         }
1495
1496         for (i = lo; i <= hi; i++) {
1497                 list_for_each_safe (ptmp, pnxt, &kranal_data.kra_peers[i]) {
1498                         peer = list_entry(ptmp, kra_peer_t, rap_list);
1499                         LASSERT (peer->rap_persistence > 0 ||
1500                                  !list_empty(&peer->rap_conns));
1501
1502                         if (!(nid == PTL_NID_ANY || peer->rap_nid == nid))
1503                                 continue;
1504
1505                         kranal_del_peer_locked(peer, single_share);
1506                         rc = 0;         /* matched something */
1507
1508                         if (single_share)
1509                                 goto out;
1510                 }
1511         }
1512  out:
1513         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
1514
1515         return rc;
1516 }
1517
1518 kra_conn_t *
1519 kranal_get_conn_by_idx (int index)
1520 {
1521         kra_peer_t        *peer;
1522         struct list_head  *ptmp;
1523         kra_conn_t        *conn;
1524         struct list_head  *ctmp;
1525         int                i;
1526
1527         read_lock (&kranal_data.kra_global_lock);
1528
1529         for (i = 0; i < kranal_data.kra_peer_hash_size; i++) {
1530                 list_for_each (ptmp, &kranal_data.kra_peers[i]) {
1531
1532                         peer = list_entry(ptmp, kra_peer_t, rap_list);
1533                         LASSERT (peer->rap_persistence > 0 ||
1534                                  !list_empty(&peer->rap_conns));
1535
1536                         list_for_each (ctmp, &peer->rap_conns) {
1537                                 if (index-- > 0)
1538                                         continue;
1539
1540                                 conn = list_entry(ctmp, kra_conn_t, rac_list);
1541                                 CDEBUG(D_NET, "++conn[%p] -> "LPX64" (%d)\n",
1542                                        conn, conn->rac_peer->rap_nid,
1543                                        atomic_read(&conn->rac_refcount));
1544                                 atomic_inc(&conn->rac_refcount);
1545                                 read_unlock(&kranal_data.kra_global_lock);
1546                                 return conn;
1547                         }
1548                 }
1549         }
1550
1551         read_unlock(&kranal_data.kra_global_lock);
1552         return NULL;
1553 }
1554
1555 int
1556 kranal_close_peer_conns_locked (kra_peer_t *peer, int why)
1557 {
1558         kra_conn_t         *conn;
1559         struct list_head   *ctmp;
1560         struct list_head   *cnxt;
1561         int                 count = 0;
1562
1563         list_for_each_safe (ctmp, cnxt, &peer->rap_conns) {
1564                 conn = list_entry(ctmp, kra_conn_t, rac_list);
1565
1566                 count++;
1567                 kranal_close_conn_locked(conn, why);
1568         }
1569
1570         return count;
1571 }
1572
1573 int
1574 kranal_close_matching_conns (ptl_nid_t nid)
1575 {
1576         unsigned long       flags;
1577         kra_peer_t         *peer;
1578         struct list_head   *ptmp;
1579         struct list_head   *pnxt;
1580         int                 lo;
1581         int                 hi;
1582         int                 i;
1583         int                 count = 0;
1584
1585         write_lock_irqsave(&kranal_data.kra_global_lock, flags);
1586
1587         if (nid != PTL_NID_ANY)
1588                 lo = hi = kranal_nid2peerlist(nid) - kranal_data.kra_peers;
1589         else {
1590                 lo = 0;
1591                 hi = kranal_data.kra_peer_hash_size - 1;
1592         }
1593
1594         for (i = lo; i <= hi; i++) {
1595                 list_for_each_safe (ptmp, pnxt, &kranal_data.kra_peers[i]) {
1596
1597                         peer = list_entry(ptmp, kra_peer_t, rap_list);
1598                         LASSERT (peer->rap_persistence > 0 ||
1599                                  !list_empty(&peer->rap_conns));
1600
1601                         if (!(nid == PTL_NID_ANY || nid == peer->rap_nid))
1602                                 continue;
1603
1604                         count += kranal_close_peer_conns_locked(peer, 0);
1605                 }
1606         }
1607
1608         write_unlock_irqrestore(&kranal_data.kra_global_lock, flags);
1609
1610         /* wildcards always succeed */
1611         if (nid == PTL_NID_ANY)
1612                 return 0;
1613
1614         return (count == 0) ? -ENOENT : 0;
1615 }
1616
1617 int
1618 kranal_cmd(struct portals_cfg *pcfg, void * private)
1619 {
1620         int rc = -EINVAL;
1621
1622         LASSERT (pcfg != NULL);
1623
1624         switch(pcfg->pcfg_command) {
1625         case NAL_CMD_GET_PEER: {
1626                 ptl_nid_t   nid = 0;
1627                 __u32       ip = 0;
1628                 int         port = 0;
1629                 int         share_count = 0;
1630
1631                 rc = kranal_get_peer_info(pcfg->pcfg_count,
1632                                           &nid, &ip, &port, &share_count);
1633                 pcfg->pcfg_nid   = nid;
1634                 pcfg->pcfg_size  = 0;
1635                 pcfg->pcfg_id    = ip;
1636                 pcfg->pcfg_misc  = port;
1637                 pcfg->pcfg_count = 0;
1638                 pcfg->pcfg_wait  = share_count;
1639                 break;
1640         }
1641         case NAL_CMD_ADD_PEER: {
1642                 rc = kranal_add_persistent_peer(pcfg->pcfg_nid,
1643                                                 pcfg->pcfg_id, /* IP */
1644                                                 pcfg->pcfg_misc); /* port */
1645                 break;
1646         }
1647         case NAL_CMD_DEL_PEER: {
1648                 rc = kranal_del_peer(pcfg->pcfg_nid,
1649                                      /* flags == single_share */
1650                                      pcfg->pcfg_flags != 0);
1651                 break;
1652         }
1653         case NAL_CMD_GET_CONN: {
1654                 kra_conn_t *conn = kranal_get_conn_by_idx(pcfg->pcfg_count);
1655
1656                 if (conn == NULL)
1657                         rc = -ENOENT;
1658                 else {
1659                         rc = 0;
1660                         pcfg->pcfg_nid   = conn->rac_peer->rap_nid;
1661                         pcfg->pcfg_id    = conn->rac_device->rad_id;
1662                         pcfg->pcfg_misc  = 0;
1663                         pcfg->pcfg_flags = 0;
1664                         kranal_conn_decref(conn);
1665                 }
1666                 break;
1667         }
1668         case NAL_CMD_CLOSE_CONNECTION: {
1669                 rc = kranal_close_matching_conns(pcfg->pcfg_nid);
1670                 break;
1671         }
1672         case NAL_CMD_REGISTER_MYNID: {
1673                 if (pcfg->pcfg_nid == PTL_NID_ANY)
1674                         rc = -EINVAL;
1675                 else
1676                         rc = kranal_set_mynid(pcfg->pcfg_nid);
1677                 break;
1678         }
1679         }
1680
1681         return rc;
1682 }
1683
1684 void
1685 kranal_free_txdescs(struct list_head *freelist)
1686 {
1687         kra_tx_t    *tx;
1688
1689         while (!list_empty(freelist)) {
1690                 tx = list_entry(freelist->next, kra_tx_t, tx_list);
1691
1692                 list_del(&tx->tx_list);
1693                 PORTAL_FREE(tx->tx_phys, PTL_MD_MAX_IOV * sizeof(*tx->tx_phys));
1694                 PORTAL_FREE(tx, sizeof(*tx));
1695         }
1696 }
1697
1698 int
1699 kranal_alloc_txdescs(struct list_head *freelist, int n)
1700 {
1701         int            isnblk = (freelist == &kranal_data.kra_idle_nblk_txs);
1702         int            i;
1703         kra_tx_t      *tx;
1704
1705         LASSERT (freelist == &kranal_data.kra_idle_txs ||
1706                  freelist == &kranal_data.kra_idle_nblk_txs);
1707         LASSERT (list_empty(freelist));
1708
1709         for (i = 0; i < n; i++) {
1710
1711                 PORTAL_ALLOC(tx, sizeof(*tx));
1712                 if (tx == NULL) {
1713                         CERROR("Can't allocate %stx[%d]\n",
1714                                isnblk ? "nblk " : "", i);
1715                         kranal_free_txdescs(freelist);
1716                         return -ENOMEM;
1717                 }
1718
1719                 PORTAL_ALLOC(tx->tx_phys,
1720                              PTL_MD_MAX_IOV * sizeof(*tx->tx_phys));
1721                 if (tx->tx_phys == NULL) {
1722                         CERROR("Can't allocate %stx[%d]->tx_phys\n",
1723                                isnblk ? "nblk " : "", i);
1724
1725                         PORTAL_FREE(tx, sizeof(*tx));
1726                         kranal_free_txdescs(freelist);
1727                         return -ENOMEM;
1728                 }
1729
1730                 tx->tx_isnblk = isnblk;
1731                 tx->tx_buftype = RANAL_BUF_NONE;
1732                 tx->tx_msg.ram_type = RANAL_MSG_NONE;
1733
1734                 list_add(&tx->tx_list, freelist);
1735         }
1736
1737         return 0;
1738 }
1739
1740 int
1741 kranal_device_init(int id, kra_device_t *dev)
1742 {
1743         const int         total_ntx = RANAL_NTX + RANAL_NTX_NBLK;
1744         RAP_RETURN        rrc;
1745
1746         /* The awful serialise RapkSetRiParams with the device scheduler
1747          * work-around! */
1748         dev->rad_setri_please = 0;
1749         init_MUTEX(&dev->rad_setri_mutex);
1750
1751         dev->rad_id = id;
1752         rrc = RapkGetDeviceByIndex(id, kranal_device_callback,
1753                                    &dev->rad_handle);
1754         if (rrc != RAP_SUCCESS) {
1755                 CERROR("Can't get Rapidarray Device %d: %d\n", id, rrc);
1756                 goto failed_0;
1757         }
1758
1759         rrc = RapkReserveRdma(dev->rad_handle, total_ntx);
1760         if (rrc != RAP_SUCCESS) {
1761                 CERROR("Can't reserve %d RDMA descriptors"
1762                        " for device %d: %d\n", total_ntx, id, rrc);
1763                 goto failed_1;
1764         }
1765
1766         rrc = RapkCreateCQ(dev->rad_handle, total_ntx, RAP_CQTYPE_SEND,
1767                            &dev->rad_rdma_cqh);
1768         if (rrc != RAP_SUCCESS) {
1769                 CERROR("Can't create rdma cq size %d"
1770                        " for device %d: %d\n", total_ntx, id, rrc);
1771                 goto failed_1;
1772         }
1773
1774         rrc = RapkCreateCQ(dev->rad_handle, RANAL_FMA_CQ_SIZE, RAP_CQTYPE_RECV,
1775                            &dev->rad_fma_cqh);
1776         if (rrc != RAP_SUCCESS) {
1777                 CERROR("Can't create fma cq size %d"
1778                        " for device %d: %d\n", RANAL_FMA_CQ_SIZE, id, rrc);
1779                 goto failed_2;
1780         }
1781
1782         return 0;
1783
1784  failed_2:
1785         RapkDestroyCQ(dev->rad_handle, dev->rad_rdma_cqh);
1786  failed_1:
1787         RapkReleaseDevice(dev->rad_handle);
1788  failed_0:
1789         return -ENODEV;
1790 }
1791
1792 void
1793 kranal_device_fini(kra_device_t *dev)
1794 {
1795         LASSERT(dev->rad_scheduler == NULL);
1796         RapkDestroyCQ(dev->rad_handle, dev->rad_fma_cqh);
1797         RapkDestroyCQ(dev->rad_handle, dev->rad_rdma_cqh);
1798         RapkReleaseDevice(dev->rad_handle);
1799 }
1800
1801 void
1802 kranal_api_shutdown (nal_t *nal)
1803 {
1804         int           i;
1805         unsigned long flags;
1806
1807         if (nal->nal_refct != 0) {
1808                 /* This module got the first ref */
1809                 PORTAL_MODULE_UNUSE;
1810                 return;
1811         }
1812
1813         CDEBUG(D_MALLOC, "before NAL cleanup: kmem %d\n",
1814                atomic_read(&portal_kmemory));
1815
1816         LASSERT (nal == &kranal_api);
1817
1818         switch (kranal_data.kra_init) {
1819         default:
1820                 CERROR("Unexpected state %d\n", kranal_data.kra_init);
1821                 LBUG();
1822
1823         case RANAL_INIT_ALL:
1824                 /* stop calls to nal_cmd */
1825                 libcfs_nal_cmd_unregister(RANAL);
1826                 /* No new persistent peers */
1827
1828                 /* resetting my NID to unadvertises me, removes my
1829                  * listener and nukes all current peers */
1830                 kranal_set_mynid(PTL_NID_ANY);
1831                 /* no new peers or conns */
1832
1833                 /* Wait for all peer/conn state to clean up */
1834                 i = 2;
1835                 while (atomic_read(&kranal_data.kra_nconns) != 0 ||
1836                        atomic_read(&kranal_data.kra_npeers) != 0) {
1837                         i++;
1838                         CDEBUG(((i & (-i)) == i) ? D_WARNING : D_NET, /* power of 2? */
1839                                "waiting for %d peers and %d conns to close down\n",
1840                                atomic_read(&kranal_data.kra_npeers),
1841                                atomic_read(&kranal_data.kra_nconns));
1842                         kranal_pause(HZ);
1843                 }
1844                 /* fall through */
1845
1846         case RANAL_INIT_LIB:
1847                 lib_fini(&kranal_lib);
1848                 /* fall through */
1849
1850         case RANAL_INIT_DATA:
1851                 break;
1852         }
1853
1854         /* flag threads to terminate; wake and wait for them to die */
1855         kranal_data.kra_shutdown = 1;
1856
1857         for (i = 0; i < kranal_data.kra_ndevs; i++) {
1858                 kra_device_t *dev = &kranal_data.kra_devices[i];
1859
1860                 LASSERT (list_empty(&dev->rad_connq));
1861
1862                 spin_lock_irqsave(&dev->rad_lock, flags);
1863                 wake_up(&dev->rad_waitq);
1864                 spin_unlock_irqrestore(&dev->rad_lock, flags);
1865         }
1866
1867         spin_lock_irqsave(&kranal_data.kra_reaper_lock, flags);
1868         wake_up_all(&kranal_data.kra_reaper_waitq);
1869         spin_unlock_irqrestore(&kranal_data.kra_reaper_lock, flags);
1870
1871         LASSERT (list_empty(&kranal_data.kra_connd_peers));
1872         spin_lock_irqsave(&kranal_data.kra_connd_lock, flags);
1873         wake_up_all(&kranal_data.kra_connd_waitq);
1874         spin_unlock_irqrestore(&kranal_data.kra_connd_lock, flags);
1875
1876         i = 2;
1877         while (atomic_read(&kranal_data.kra_nthreads) != 0) {
1878                 i++;
1879                 CDEBUG(((i & (-i)) == i) ? D_WARNING : D_NET, /* power of 2? */
1880                        "Waiting for %d threads to terminate\n",
1881                        atomic_read(&kranal_data.kra_nthreads));
1882                 kranal_pause(HZ);
1883         }
1884
1885         LASSERT (atomic_read(&kranal_data.kra_npeers) == 0);
1886         if (kranal_data.kra_peers != NULL) {
1887                 for (i = 0; i < kranal_data.kra_peer_hash_size; i++)
1888                         LASSERT (list_empty(&kranal_data.kra_peers[i]));
1889
1890                 PORTAL_FREE(kranal_data.kra_peers,
1891                             sizeof (struct list_head) *
1892                             kranal_data.kra_peer_hash_size);
1893         }
1894
1895         LASSERT (atomic_read(&kranal_data.kra_nconns) == 0);
1896         if (kranal_data.kra_conns != NULL) {
1897                 for (i = 0; i < kranal_data.kra_conn_hash_size; i++)
1898                         LASSERT (list_empty(&kranal_data.kra_conns[i]));
1899
1900                 PORTAL_FREE(kranal_data.kra_conns,
1901                             sizeof (struct list_head) *
1902                             kranal_data.kra_conn_hash_size);
1903         }
1904
1905         for (i = 0; i < kranal_data.kra_ndevs; i++)
1906                 kranal_device_fini(&kranal_data.kra_devices[i]);
1907
1908         kranal_free_txdescs(&kranal_data.kra_idle_txs);
1909         kranal_free_txdescs(&kranal_data.kra_idle_nblk_txs);
1910
1911         CDEBUG(D_MALLOC, "after NAL cleanup: kmem %d\n",
1912                atomic_read(&portal_kmemory));
1913         printk(KERN_INFO "Lustre: RapidArray NAL unloaded (final mem %d)\n",
1914                atomic_read(&portal_kmemory));
1915
1916         kranal_data.kra_init = RANAL_INIT_NOTHING;
1917 }
1918
1919 int
1920 kranal_api_startup (nal_t *nal, ptl_pid_t requested_pid,
1921                     ptl_ni_limits_t *requested_limits,
1922                     ptl_ni_limits_t *actual_limits)
1923 {
1924         struct timeval    tv;
1925         ptl_process_id_t  process_id;
1926         int               pkmem = atomic_read(&portal_kmemory);
1927         int               rc;
1928         int               i;
1929         kra_device_t     *dev;
1930
1931         LASSERT (nal == &kranal_api);
1932
1933         if (nal->nal_refct != 0) {
1934                 if (actual_limits != NULL)
1935                         *actual_limits = kranal_lib.libnal_ni.ni_actual_limits;
1936                 /* This module got the first ref */
1937                 PORTAL_MODULE_USE;
1938                 return PTL_OK;
1939         }
1940
1941         LASSERT (kranal_data.kra_init == RANAL_INIT_NOTHING);
1942
1943         memset(&kranal_data, 0, sizeof(kranal_data)); /* zero pointers, flags etc */
1944
1945         /* CAVEAT EMPTOR: Every 'Fma' message includes the sender's NID and
1946          * a unique (for all time) connstamp so we can uniquely identify
1947          * the sender.  The connstamp is an incrementing counter
1948          * initialised with seconds + microseconds at startup time.  So we
1949          * rely on NOT creating connections more frequently on average than
1950          * 1MHz to ensure we don't use old connstamps when we reboot. */
1951         do_gettimeofday(&tv);
1952         kranal_data.kra_connstamp =
1953         kranal_data.kra_peerstamp = (((__u64)tv.tv_sec) * 1000000) + tv.tv_usec;
1954
1955         init_MUTEX(&kranal_data.kra_nid_mutex);
1956         init_MUTEX_LOCKED(&kranal_data.kra_listener_signal);
1957
1958         rwlock_init(&kranal_data.kra_global_lock);
1959
1960         for (i = 0; i < RANAL_MAXDEVS; i++ ) {
1961                 kra_device_t  *dev = &kranal_data.kra_devices[i];
1962
1963                 dev->rad_idx = i;
1964                 INIT_LIST_HEAD(&dev->rad_connq);
1965                 init_waitqueue_head(&dev->rad_waitq);
1966                 spin_lock_init(&dev->rad_lock);
1967         }
1968
1969         kranal_data.kra_new_min_timeout = MAX_SCHEDULE_TIMEOUT;
1970         init_waitqueue_head(&kranal_data.kra_reaper_waitq);
1971         spin_lock_init(&kranal_data.kra_reaper_lock);
1972
1973         INIT_LIST_HEAD(&kranal_data.kra_connd_acceptq);
1974         INIT_LIST_HEAD(&kranal_data.kra_connd_peers);
1975         init_waitqueue_head(&kranal_data.kra_connd_waitq);
1976         spin_lock_init(&kranal_data.kra_connd_lock);
1977
1978         INIT_LIST_HEAD(&kranal_data.kra_idle_txs);
1979         INIT_LIST_HEAD(&kranal_data.kra_idle_nblk_txs);
1980         init_waitqueue_head(&kranal_data.kra_idle_tx_waitq);
1981         spin_lock_init(&kranal_data.kra_tx_lock);
1982
1983         /* OK to call kranal_api_shutdown() to cleanup now */
1984         kranal_data.kra_init = RANAL_INIT_DATA;
1985
1986         kranal_data.kra_peer_hash_size = RANAL_PEER_HASH_SIZE;
1987         PORTAL_ALLOC(kranal_data.kra_peers,
1988                      sizeof(struct list_head) * kranal_data.kra_peer_hash_size);
1989         if (kranal_data.kra_peers == NULL)
1990                 goto failed;
1991
1992         for (i = 0; i < kranal_data.kra_peer_hash_size; i++)
1993                 INIT_LIST_HEAD(&kranal_data.kra_peers[i]);
1994
1995         kranal_data.kra_conn_hash_size = RANAL_PEER_HASH_SIZE;
1996         PORTAL_ALLOC(kranal_data.kra_conns,
1997                      sizeof(struct list_head) * kranal_data.kra_conn_hash_size);
1998         if (kranal_data.kra_conns == NULL)
1999                 goto failed;
2000
2001         for (i = 0; i < kranal_data.kra_conn_hash_size; i++)
2002                 INIT_LIST_HEAD(&kranal_data.kra_conns[i]);
2003
2004         rc = kranal_alloc_txdescs(&kranal_data.kra_idle_txs, RANAL_NTX);
2005         if (rc != 0)
2006                 goto failed;
2007
2008         rc = kranal_alloc_txdescs(&kranal_data.kra_idle_nblk_txs,RANAL_NTX_NBLK);
2009         if (rc != 0)
2010                 goto failed;
2011
2012         process_id.pid = requested_pid;
2013         process_id.nid = PTL_NID_ANY;           /* don't know my NID yet */
2014
2015         rc = lib_init(&kranal_lib, nal, process_id,
2016                       requested_limits, actual_limits);
2017         if (rc != PTL_OK) {
2018                 CERROR("lib_init failed: error %d\n", rc);
2019                 goto failed;
2020         }
2021
2022         /* lib interface initialised */
2023         kranal_data.kra_init = RANAL_INIT_LIB;
2024         /*****************************************************/
2025
2026         rc = kranal_thread_start(kranal_reaper, NULL);
2027         if (rc != 0) {
2028                 CERROR("Can't spawn ranal reaper: %d\n", rc);
2029                 goto failed;
2030         }
2031
2032         for (i = 0; i < RANAL_N_CONND; i++) {
2033                 rc = kranal_thread_start(kranal_connd, (void *)(unsigned long)i);
2034                 if (rc != 0) {
2035                         CERROR("Can't spawn ranal connd[%d]: %d\n",
2036                                i, rc);
2037                         goto failed;
2038                 }
2039         }
2040
2041         LASSERT (kranal_data.kra_ndevs == 0);
2042
2043         for (i = 0; i < sizeof(kranal_devids)/sizeof(kranal_devids[0]); i++) {
2044                 LASSERT (i < RANAL_MAXDEVS);
2045
2046                 dev = &kranal_data.kra_devices[kranal_data.kra_ndevs];
2047
2048                 rc = kranal_device_init(kranal_devids[i], dev);
2049                 if (rc == 0)
2050                         kranal_data.kra_ndevs++;
2051
2052                 rc = kranal_thread_start(kranal_scheduler, dev);
2053                 if (rc != 0) {
2054                         CERROR("Can't spawn ranal scheduler[%d]: %d\n",
2055                                i, rc);
2056                         goto failed;
2057                 }
2058         }
2059
2060         if (kranal_data.kra_ndevs == 0)
2061                 goto failed;
2062
2063         rc = libcfs_nal_cmd_register(RANAL, &kranal_cmd, NULL);
2064         if (rc != 0) {
2065                 CERROR("Can't initialise command interface (rc = %d)\n", rc);
2066                 goto failed;
2067         }
2068
2069         /* flag everything initialised */
2070         kranal_data.kra_init = RANAL_INIT_ALL;
2071         /*****************************************************/
2072
2073         CDEBUG(D_MALLOC, "initial kmem %d\n", atomic_read(&portal_kmemory));
2074         printk(KERN_INFO "Lustre: RapidArray NAL loaded "
2075                "(initial mem %d)\n", pkmem);
2076
2077         return PTL_OK;
2078
2079  failed:
2080         kranal_api_shutdown(&kranal_api);
2081         return PTL_FAIL;
2082 }
2083
2084 void __exit
2085 kranal_module_fini (void)
2086 {
2087         if (kranal_tunables.kra_sysctl != NULL)
2088                 unregister_sysctl_table(kranal_tunables.kra_sysctl);
2089
2090         PtlNIFini(kranal_ni);
2091
2092         ptl_unregister_nal(RANAL);
2093 }
2094
2095 int __init
2096 kranal_module_init (void)
2097 {
2098         int    rc;
2099
2100         /* the following must be sizeof(int) for
2101          * proc_dointvec/kranal_listener_procint() */
2102         LASSERT (sizeof(kranal_tunables.kra_timeout) == sizeof(int));
2103         LASSERT (sizeof(kranal_tunables.kra_listener_timeout) == sizeof(int));
2104         LASSERT (sizeof(kranal_tunables.kra_backlog) == sizeof(int));
2105         LASSERT (sizeof(kranal_tunables.kra_port) == sizeof(int));
2106         LASSERT (sizeof(kranal_tunables.kra_max_immediate) == sizeof(int));
2107
2108         kranal_api.nal_ni_init = kranal_api_startup;
2109         kranal_api.nal_ni_fini = kranal_api_shutdown;
2110
2111         /* Initialise dynamic tunables to defaults once only */
2112         kranal_tunables.kra_timeout = RANAL_TIMEOUT;
2113         kranal_tunables.kra_listener_timeout = RANAL_LISTENER_TIMEOUT;
2114         kranal_tunables.kra_backlog = RANAL_BACKLOG;
2115         kranal_tunables.kra_port = RANAL_PORT;
2116         kranal_tunables.kra_max_immediate = RANAL_MAX_IMMEDIATE;
2117
2118         rc = ptl_register_nal(RANAL, &kranal_api);
2119         if (rc != PTL_OK) {
2120                 CERROR("Can't register RANAL: %d\n", rc);
2121                 return -ENOMEM;               /* or something... */
2122         }
2123
2124         /* Pure gateways want the NAL started up at module load time... */
2125         rc = PtlNIInit(RANAL, LUSTRE_SRV_PTL_PID, NULL, NULL, &kranal_ni);
2126         if (rc != PTL_OK && rc != PTL_IFACE_DUP) {
2127                 ptl_unregister_nal(RANAL);
2128                 return -ENODEV;
2129         }
2130
2131         kranal_tunables.kra_sysctl =
2132                 register_sysctl_table(kranal_top_ctl_table, 0);
2133         if (kranal_tunables.kra_sysctl == NULL) {
2134                 CERROR("Can't register sysctl table\n");
2135                 PtlNIFini(kranal_ni);
2136                 ptl_unregister_nal(RANAL);
2137                 return -ENOMEM;
2138         }
2139
2140         return 0;
2141 }
2142
2143 MODULE_AUTHOR("Cluster File Systems, Inc. <info@clusterfs.com>");
2144 MODULE_DESCRIPTION("Kernel RapidArray NAL v0.01");
2145 MODULE_LICENSE("GPL");
2146
2147 module_init(kranal_module_init);
2148 module_exit(kranal_module_fini);