Whamcloud - gitweb
LU-15220 lustre: use 'fallthrough' pseudo keyword for switch
[fs/lustre-release.git] / lustre / ptlrpc / niobuf.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) 2002, 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  */
31
32 #define DEBUG_SUBSYSTEM S_RPC
33 #include <libcfs/linux/linux-mem.h>
34 #include <obd_support.h>
35 #include <lustre_net.h>
36 #include <lustre_lib.h>
37 #include <obd.h>
38 #include <obd_class.h>
39 #include "ptlrpc_internal.h"
40 #include <lnet/lib-lnet.h> /* for CFS_FAIL_PTLRPC_OST_BULK_CB2 */
41
42 /**
43  * Helper function. Sends \a len bytes from \a base at offset \a offset
44  * over \a conn connection to portal \a portal.
45  * Returns 0 on success or error code.
46  */
47 static int ptl_send_buf(struct lnet_handle_md *mdh, void *base, int len,
48                         enum lnet_ack_req ack, struct ptlrpc_cb_id *cbid,
49                         lnet_nid_t self, struct lnet_process_id peer_id,
50                         int portal, __u64 xid, unsigned int offset,
51                         struct lnet_handle_md *bulk_cookie)
52 {
53         int              rc;
54         struct lnet_md         md;
55         ENTRY;
56
57         LASSERT (portal != 0);
58         CDEBUG (D_INFO, "peer_id %s\n", libcfs_id2str(peer_id));
59         md.start     = base;
60         md.length    = len;
61         md.threshold = (ack == LNET_ACK_REQ) ? 2 : 1;
62         md.options   = PTLRPC_MD_OPTIONS;
63         md.user_ptr  = cbid;
64         md.handler   = ptlrpc_handler;
65         LNetInvalidateMDHandle(&md.bulk_handle);
66
67         if (bulk_cookie) {
68                 md.bulk_handle = *bulk_cookie;
69                 md.options |= LNET_MD_BULK_HANDLE;
70         }
71
72         if (unlikely(ack == LNET_ACK_REQ &&
73                      OBD_FAIL_CHECK_ORSET(OBD_FAIL_PTLRPC_ACK, OBD_FAIL_ONCE))){
74                 /* don't ask for the ack to simulate failing client */
75                 ack = LNET_NOACK_REQ;
76         }
77
78         rc = LNetMDBind(&md, LNET_UNLINK, mdh);
79         if (unlikely(rc != 0)) {
80                 CERROR ("LNetMDBind failed: %d\n", rc);
81                 LASSERT (rc == -ENOMEM);
82                 RETURN (-ENOMEM);
83         }
84
85         CDEBUG(D_NET, "Sending %d bytes to portal %d, xid %lld, offset %u\n",
86                len, portal, xid, offset);
87
88         percpu_ref_get(&ptlrpc_pending);
89
90         rc = LNetPut(self, *mdh, ack,
91                      peer_id, portal, xid, offset, 0);
92         if (unlikely(rc != 0)) {
93                 int rc2;
94                 /* We're going to get an UNLINK event when I unlink below,
95                  * which will complete just like any other failed send, so
96                  * I fall through and return success here! */
97                 CERROR("LNetPut(%s, %d, %lld) failed: %d\n",
98                        libcfs_id2str(peer_id), portal, xid, rc);
99                 rc2 = LNetMDUnlink(*mdh);
100                 LASSERTF(rc2 == 0, "rc2 = %d\n", rc2);
101         }
102
103         RETURN (0);
104 }
105
106 #define mdunlink_iterate_helper(mds, count) \
107                 __mdunlink_iterate_helper(mds, count, false) 
108 static void __mdunlink_iterate_helper(struct lnet_handle_md *bd_mds,
109                                       int count, bool discard)
110 {
111         int i;
112
113         for (i = 0; i < count; i++)
114                 __LNetMDUnlink(bd_mds[i], discard);
115 }
116
117 #ifdef HAVE_SERVER_SUPPORT
118 /**
119  * Prepare bulk descriptor for specified incoming request \a req that
120  * can fit \a nfrags * pages. \a type is bulk type. \a portal is where
121  * the bulk to be sent. Used on server-side after request was already
122  * received.
123  * Returns pointer to newly allocatrd initialized bulk descriptor or NULL on
124  * error.
125  */
126 struct ptlrpc_bulk_desc *ptlrpc_prep_bulk_exp(struct ptlrpc_request *req,
127                                               unsigned nfrags, unsigned max_brw,
128                                               unsigned int type,
129                                               unsigned portal,
130                                               const struct ptlrpc_bulk_frag_ops
131                                                 *ops)
132 {
133         struct obd_export *exp = req->rq_export;
134         struct ptlrpc_bulk_desc *desc;
135
136         ENTRY;
137         LASSERT(ptlrpc_is_bulk_op_active(type));
138
139         desc = ptlrpc_new_bulk(nfrags, max_brw, type, portal, ops);
140         if (desc == NULL)
141                 RETURN(NULL);
142
143         desc->bd_export = class_export_get(exp);
144         desc->bd_req = req;
145
146         desc->bd_cbid.cbid_fn  = server_bulk_callback;
147         desc->bd_cbid.cbid_arg = desc;
148
149         /* NB we don't assign rq_bulk here; server-side requests are
150          * re-used, and the handler frees the bulk desc explicitly. */
151
152         return desc;
153 }
154 EXPORT_SYMBOL(ptlrpc_prep_bulk_exp);
155
156 /**
157  * Starts bulk transfer for descriptor \a desc on the server.
158  * Returns 0 on success or error code.
159  */
160 int ptlrpc_start_bulk_transfer(struct ptlrpc_bulk_desc *desc)
161 {
162         struct obd_export        *exp = desc->bd_export;
163         lnet_nid_t                self_nid;
164         struct lnet_process_id    peer_id;
165         int                       rc = 0;
166         __u64                     mbits;
167         int                       posted_md;
168         int                       total_md;
169         struct lnet_md                 md;
170         ENTRY;
171
172         if (OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_BULK_PUT_NET))
173                 RETURN(0);
174
175         /* NB no locking required until desc is on the network */
176         LASSERT(ptlrpc_is_bulk_op_active(desc->bd_type));
177
178         LASSERT(desc->bd_cbid.cbid_fn == server_bulk_callback);
179         LASSERT(desc->bd_cbid.cbid_arg == desc);
180
181         /*
182          * Multi-Rail: get the preferred self and peer NIDs from the
183          * request, so they are based on the route taken by the
184          * message.
185          */
186         self_nid = desc->bd_req->rq_self;
187         peer_id = desc->bd_req->rq_source;
188
189         /* NB total length may be 0 for a read past EOF, so we send 0
190          * length bulks, since the client expects bulk events.
191          *
192          * The client may not need all of the bulk mbits for the RPC. The RPC
193          * used the mbits of the highest bulk mbits needed, and the server masks
194          * off high bits to get bulk count for this RPC. LU-1431 */
195         mbits = desc->bd_req->rq_mbits & ~((__u64)desc->bd_md_max_brw - 1);
196         total_md = desc->bd_req->rq_mbits - mbits + 1;
197         desc->bd_refs = total_md;
198         desc->bd_failure = 0;
199
200         md.user_ptr = &desc->bd_cbid;
201         md.handler = ptlrpc_handler;
202         md.threshold = 2; /* SENT and ACK/REPLY */
203
204         for (posted_md = 0; posted_md < total_md; mbits++) {
205                 md.options = PTLRPC_MD_OPTIONS;
206
207                 /* NB it's assumed that source and sink buffer frags are
208                  * page-aligned. Otherwise we'd have to send client bulk
209                  * sizes over and split server buffer accordingly */
210                 ptlrpc_fill_bulk_md(&md, desc, posted_md);
211                 rc = LNetMDBind(&md, LNET_UNLINK, &desc->bd_mds[posted_md]);
212                 if (rc != 0) {
213                         CERROR("%s: LNetMDBind failed for MD %u: rc = %d\n",
214                                exp->exp_obd->obd_name, posted_md, rc);
215                         LASSERT(rc == -ENOMEM);
216                         if (posted_md == 0) {
217                                 desc->bd_md_count = 0;
218                                 RETURN(-ENOMEM);
219                         }
220                         break;
221                 }
222                 percpu_ref_get(&ptlrpc_pending);
223
224                 /* sanity.sh 224c: lets skip last md */
225                 if (posted_md == desc->bd_md_max_brw - 1)
226                         OBD_FAIL_CHECK_RESET(OBD_FAIL_PTLRPC_CLIENT_BULK_CB3,
227                                              CFS_FAIL_PTLRPC_OST_BULK_CB2);
228
229                 /* Network is about to get at the memory */
230                 if (ptlrpc_is_bulk_put_source(desc->bd_type))
231                         rc = LNetPut(self_nid, desc->bd_mds[posted_md],
232                                      LNET_ACK_REQ, peer_id,
233                                      desc->bd_portal, mbits, 0, 0);
234                 else
235                         rc = LNetGet(self_nid, desc->bd_mds[posted_md],
236                                      peer_id, desc->bd_portal, mbits, 0, false);
237
238                 posted_md++;
239                 if (rc != 0) {
240                         CERROR("%s: failed bulk transfer with %s:%u x%llu: "
241                                "rc = %d\n", exp->exp_obd->obd_name,
242                                libcfs_id2str(peer_id), desc->bd_portal,
243                                mbits, rc);
244                         break;
245                 }
246         }
247
248         if (rc != 0) {
249                 /* Can't send, so we unlink the MD bound above.  The UNLINK
250                  * event this creates will signal completion with failure,
251                  * so we return SUCCESS here! */
252                 spin_lock(&desc->bd_lock);
253                 desc->bd_refs -= total_md - posted_md;
254                 spin_unlock(&desc->bd_lock);
255                 LASSERT(desc->bd_refs >= 0);
256
257                 mdunlink_iterate_helper(desc->bd_mds, posted_md);
258                 RETURN(0);
259         }
260
261         CDEBUG(D_NET, "Transferring %u pages %u bytes via portal %d "
262                "id %s mbits %#llx-%#llx\n", desc->bd_iov_count,
263                desc->bd_nob, desc->bd_portal, libcfs_id2str(peer_id),
264                mbits - posted_md, mbits - 1);
265
266         RETURN(0);
267 }
268
269 /**
270  * Server side bulk abort. Idempotent. Not thread-safe (i.e. only
271  * serialises with completion callback)
272  */
273 void ptlrpc_abort_bulk(struct ptlrpc_bulk_desc *desc)
274 {
275         LASSERT(!in_interrupt());           /* might sleep */
276
277         if (!ptlrpc_server_bulk_active(desc))   /* completed or */
278                 return;                         /* never started */
279
280         /* We used to poison the pages with 0xab here because we did not want to
281          * send any meaningful data over the wire for evicted clients (bug 9297)
282          * However, this is no longer safe now that we use the page cache on the
283          * OSS (bug 20560) */
284
285         /* The unlink ensures the callback happens ASAP and is the last
286          * one.  If it fails, it must be because completion just happened,
287          * but we must still wait_event_idle_timeout() in this case, to give
288          * us a chance to run server_bulk_callback()
289          */
290         __mdunlink_iterate_helper(desc->bd_mds, desc->bd_md_max_brw, true);
291
292         for (;;) {
293                 /* Network access will complete in finite time but the HUGE
294                  * timeout lets us CWARN for visibility of sluggish NALs */
295                 int seconds = PTLRPC_REQ_LONG_UNLINK;
296
297                 while (seconds > 0 &&
298                        wait_event_idle_timeout(desc->bd_waitq,
299                                                !ptlrpc_server_bulk_active(desc),
300                                                cfs_time_seconds(1)) == 0)
301                         seconds -= 1;
302                 if (seconds > 0)
303                         return;
304
305                 CWARN("Unexpectedly long timeout: desc %p\n", desc);
306         }
307 }
308 #endif /* HAVE_SERVER_SUPPORT */
309
310 /**
311  * Register bulk at the sender for later transfer.
312  * Returns 0 on success or error code.
313  */
314 int ptlrpc_register_bulk(struct ptlrpc_request *req)
315 {
316         struct ptlrpc_bulk_desc *desc = req->rq_bulk;
317         struct lnet_processid peer;
318         int rc = 0;
319         int posted_md;
320         int total_md;
321         __u64 mbits;
322         struct lnet_me *me;
323         struct lnet_md md;
324         ENTRY;
325
326         if (OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_BULK_GET_NET))
327                 RETURN(0);
328
329         /* NB no locking required until desc is on the network */
330         LASSERT(desc->bd_nob > 0);
331         LASSERT(desc->bd_md_max_brw <= PTLRPC_BULK_OPS_COUNT);
332         LASSERT(desc->bd_iov_count <= PTLRPC_MAX_BRW_PAGES);
333         LASSERT(desc->bd_req != NULL);
334         LASSERT(ptlrpc_is_bulk_op_passive(desc->bd_type));
335
336         /* cleanup the state of the bulk for it will be reused */
337         if (req->rq_resend || req->rq_send_state == LUSTRE_IMP_REPLAY)
338                 desc->bd_nob_transferred = 0;
339         else if (desc->bd_nob_transferred != 0)
340                 /* If the network failed after an RPC was sent, this condition
341                  * could happen.  Rather than assert (was here before), return
342                  * an EIO error. */
343                 RETURN(-EIO);
344
345         desc->bd_failure = 0;
346
347         peer = desc->bd_import->imp_connection->c_peer;
348
349         LASSERT(desc->bd_cbid.cbid_fn == client_bulk_callback);
350         LASSERT(desc->bd_cbid.cbid_arg == desc);
351
352         total_md = desc->bd_md_count;
353         /* rq_mbits is matchbits of the final bulk */
354         mbits = req->rq_mbits - desc->bd_md_count + 1;
355
356         LASSERTF(mbits == (req->rq_mbits & PTLRPC_BULK_OPS_MASK),
357                  "first mbits = x%llu, last mbits = x%llu\n",
358                  mbits, req->rq_mbits);
359         LASSERTF(!(desc->bd_registered &&
360                    req->rq_send_state != LUSTRE_IMP_REPLAY) ||
361                  mbits != desc->bd_last_mbits,
362                  "registered: %d  rq_mbits: %llu bd_last_mbits: %llu\n",
363                  desc->bd_registered, mbits, desc->bd_last_mbits);
364
365         desc->bd_registered = 1;
366         desc->bd_last_mbits = mbits;
367         desc->bd_refs = total_md;
368         md.user_ptr = &desc->bd_cbid;
369         md.handler = ptlrpc_handler;
370         md.threshold = 1;                       /* PUT or GET */
371
372         for (posted_md = 0; posted_md < desc->bd_md_count;
373              posted_md++, mbits++) {
374                 md.options = PTLRPC_MD_OPTIONS |
375                              (ptlrpc_is_bulk_op_get(desc->bd_type) ?
376                               LNET_MD_OP_GET : LNET_MD_OP_PUT);
377                 ptlrpc_fill_bulk_md(&md, desc, posted_md);
378
379                 if (posted_md > 0 && posted_md + 1 == desc->bd_md_count &&
380                     OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_BULK_ATTACH)) {
381                         rc = -ENOMEM;
382                 } else {
383                         me = LNetMEAttach(desc->bd_portal, &peer, mbits, 0,
384                                   LNET_UNLINK, LNET_INS_AFTER);
385                         rc = PTR_ERR_OR_ZERO(me);
386                 }
387                 if (rc != 0) {
388                         CERROR("%s: LNetMEAttach failed x%llu/%d: rc = %d\n",
389                                desc->bd_import->imp_obd->obd_name, mbits,
390                                posted_md, rc);
391                         break;
392                 }
393                 percpu_ref_get(&ptlrpc_pending);
394
395                 /* About to let the network at it... */
396                 rc = LNetMDAttach(me, &md, LNET_UNLINK,
397                                   &desc->bd_mds[posted_md]);
398                 if (rc != 0) {
399                         CERROR("%s: LNetMDAttach failed x%llu/%d: rc = %d\n",
400                                desc->bd_import->imp_obd->obd_name, mbits,
401                                posted_md, rc);
402                         break;
403                 }
404         }
405
406         if (rc != 0) {
407                 LASSERT(rc == -ENOMEM);
408                 spin_lock(&desc->bd_lock);
409                 desc->bd_refs -= total_md - posted_md;
410                 spin_unlock(&desc->bd_lock);
411                 LASSERT(desc->bd_refs >= 0);
412                 mdunlink_iterate_helper(desc->bd_mds, desc->bd_md_max_brw);
413                 req->rq_status = -ENOMEM;
414                 desc->bd_registered = 0;
415                 RETURN(-ENOMEM);
416         }
417
418         spin_lock(&desc->bd_lock);
419         /* Holler if peer manages to touch buffers before he knows the mbits */
420         if (desc->bd_refs != total_md)
421                 CWARN("%s: Peer %s touched %d buffers while I registered\n",
422                       desc->bd_import->imp_obd->obd_name, libcfs_idstr(&peer),
423                       total_md - desc->bd_refs);
424         spin_unlock(&desc->bd_lock);
425
426         CDEBUG(D_NET,
427                "Setup %u bulk %s buffers: %u pages %u bytes, mbits x%#llx-%#llx, portal %u\n",
428                desc->bd_refs,
429                ptlrpc_is_bulk_op_get(desc->bd_type) ? "get-source" : "put-sink",
430                desc->bd_iov_count, desc->bd_nob,
431                desc->bd_last_mbits, req->rq_mbits, desc->bd_portal);
432
433         RETURN(0);
434 }
435
436 /**
437  * Disconnect a bulk desc from the network. Idempotent. Not
438  * thread-safe (i.e. only interlocks with completion callback).
439  * Returns 1 on success or 0 if network unregistration failed for whatever
440  * reason.
441  */
442 int ptlrpc_unregister_bulk(struct ptlrpc_request *req, int async)
443 {
444         struct ptlrpc_bulk_desc *desc = req->rq_bulk;
445         ENTRY;
446
447         LASSERT(!in_interrupt());     /* might sleep */
448
449         if (desc)
450                 desc->bd_registered = 0;
451
452         /* Let's setup deadline for reply unlink. */
453         if (OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_LONG_BULK_UNLINK) &&
454             async && req->rq_bulk_deadline == 0 && cfs_fail_val == 0)
455                 req->rq_bulk_deadline = ktime_get_real_seconds() +
456                                         PTLRPC_REQ_LONG_UNLINK;
457
458         if (ptlrpc_client_bulk_active(req) == 0)        /* completed or */
459                 RETURN(1);                              /* never registered */
460
461         LASSERT(desc->bd_req == req);  /* bd_req NULL until registered */
462
463         /* the unlink ensures the callback happens ASAP and is the last
464          * one.  If it fails, it must be because completion just happened,
465          * but we must still wait_event_idle_timeout() in this case to give
466          * us a chance to run client_bulk_callback()
467          */
468         mdunlink_iterate_helper(desc->bd_mds, desc->bd_md_max_brw);
469
470         if (ptlrpc_client_bulk_active(req) == 0)        /* completed or */
471                 RETURN(1);                              /* never registered */
472
473         /* Move to "Unregistering" phase as bulk was not unlinked yet. */
474         ptlrpc_rqphase_move(req, RQ_PHASE_UNREG_BULK);
475
476         /* Do not wait for unlink to finish. */
477         if (async)
478                 RETURN(0);
479
480         for (;;) {
481                 /* The wq argument is ignored by user-space wait_event macros */
482                 wait_queue_head_t *wq = (req->rq_set != NULL) ?
483                                         &req->rq_set->set_waitq :
484                                         &req->rq_reply_waitq;
485                 /*
486                  * Network access will complete in finite time but the HUGE
487                  * timeout lets us CWARN for visibility of sluggish NALs.
488                  */
489                 int seconds = PTLRPC_REQ_LONG_UNLINK;
490
491                 while (seconds > 0 &&
492                        wait_event_idle_timeout(*wq,
493                                                !ptlrpc_client_bulk_active(req),
494                                                cfs_time_seconds(1)) == 0)
495                         seconds -= 1;
496                 if (seconds > 0) {
497                         ptlrpc_rqphase_move(req, req->rq_next_phase);
498                         RETURN(1);
499                 }
500
501                 DEBUG_REQ(D_WARNING, req, "Unexpectedly long timeout: desc %p",
502                           desc);
503         }
504         RETURN(0);
505 }
506
507 static void ptlrpc_at_set_reply(struct ptlrpc_request *req, int flags)
508 {
509         struct ptlrpc_service_part      *svcpt = req->rq_rqbd->rqbd_svcpt;
510         struct ptlrpc_service           *svc = svcpt->scp_service;
511         timeout_t service_timeout;
512
513         service_timeout = clamp_t(timeout_t, ktime_get_real_seconds() -
514                                              req->rq_arrival_time.tv_sec, 1,
515                                   (AT_OFF ? obd_timeout * 3 / 2 : at_max));
516         if (!(flags & PTLRPC_REPLY_EARLY) &&
517             (req->rq_type != PTL_RPC_MSG_ERR) &&
518             (req->rq_reqmsg != NULL) &&
519             !(lustre_msg_get_flags(req->rq_reqmsg) &
520               (MSG_RESENT | MSG_REPLAY |
521                MSG_REQ_REPLAY_DONE | MSG_LOCK_REPLAY_DONE))) {
522                 /* early replies, errors and recovery requests don't count
523                  * toward our service time estimate
524                  */
525                 timeout_t oldse = at_measured(&svcpt->scp_at_estimate,
526                                               service_timeout);
527
528                 if (oldse != 0) {
529                         DEBUG_REQ(D_ADAPTTO, req,
530                                   "svc %s changed estimate from %d to %d",
531                                   svc->srv_name, oldse,
532                                   at_get(&svcpt->scp_at_estimate));
533                 }
534         }
535         /* Report actual service time for client latency calc */
536         lustre_msg_set_service_timeout(req->rq_repmsg, service_timeout);
537         /* Report service time estimate for future client reqs, but report 0
538          * (to be ignored by client) if it's an error reply during recovery.
539          * b=15815
540          */
541         if (req->rq_type == PTL_RPC_MSG_ERR &&
542             (req->rq_export == NULL ||
543              req->rq_export->exp_obd->obd_recovering)) {
544                 lustre_msg_set_timeout(req->rq_repmsg, 0);
545         } else {
546                 timeout_t timeout;
547
548                 if (req->rq_export && req->rq_reqmsg != NULL &&
549                     (flags & PTLRPC_REPLY_EARLY) &&
550                     lustre_msg_get_flags(req->rq_reqmsg) &
551                     (MSG_REPLAY | MSG_REQ_REPLAY_DONE | MSG_LOCK_REPLAY_DONE)) {
552                         struct obd_device *exp_obd = req->rq_export->exp_obd;
553
554                         timeout = ktime_get_real_seconds() -
555                                   req->rq_arrival_time.tv_sec +
556                                   min_t(timeout_t, at_extra,
557                                         exp_obd->obd_recovery_timeout / 4);
558                 } else {
559                         timeout = at_get(&svcpt->scp_at_estimate);
560                 }
561                 lustre_msg_set_timeout(req->rq_repmsg, timeout);
562         }
563
564         if (req->rq_reqmsg &&
565             !(lustre_msghdr_get_flags(req->rq_reqmsg) & MSGHDR_AT_SUPPORT)) {
566                 CDEBUG(D_ADAPTTO, "No early reply support: flags=%#x "
567                        "req_flags=%#x magic=%x/%x len=%d\n",
568                        flags, lustre_msg_get_flags(req->rq_reqmsg),
569                        lustre_msg_get_magic(req->rq_reqmsg),
570                        lustre_msg_get_magic(req->rq_repmsg), req->rq_replen);
571         }
572 }
573
574 /**
575  * Send request reply from request \a req reply buffer.
576  * \a flags defines reply types
577  * Returns 0 on success or error code
578  */
579 int ptlrpc_send_reply(struct ptlrpc_request *req, int flags)
580 {
581         struct ptlrpc_reply_state *rs = req->rq_reply_state;
582         struct ptlrpc_connection  *conn;
583         int                        rc;
584
585         /* We must already have a reply buffer (only ptlrpc_error() may be
586          * called without one). The reply generated by sptlrpc layer (e.g.
587          * error notify, etc.) might have NULL rq->reqmsg; Otherwise we must
588          * have a request buffer which is either the actual (swabbed) incoming
589          * request, or a saved copy if this is a req saved in
590          * target_queue_final_reply().
591          */
592         LASSERT (req->rq_no_reply == 0);
593         LASSERT (req->rq_reqbuf != NULL);
594         LASSERT (rs != NULL);
595         LASSERT ((flags & PTLRPC_REPLY_MAYBE_DIFFICULT) || !rs->rs_difficult);
596         LASSERT (req->rq_repmsg != NULL);
597         LASSERT (req->rq_repmsg == rs->rs_msg);
598         LASSERT (rs->rs_cb_id.cbid_fn == reply_out_callback);
599         LASSERT (rs->rs_cb_id.cbid_arg == rs);
600
601         /* There may be no rq_export during failover */
602
603         if (unlikely(req->rq_export && req->rq_export->exp_obd &&
604                      req->rq_export->exp_obd->obd_fail)) {
605                 /* Failed obd's only send ENODEV */
606                 req->rq_type = PTL_RPC_MSG_ERR;
607                 req->rq_status = -ENODEV;
608                 CDEBUG(D_HA, "sending ENODEV from failed obd %d\n",
609                        req->rq_export->exp_obd->obd_minor);
610         }
611
612         if (req->rq_type != PTL_RPC_MSG_ERR)
613                 req->rq_type = PTL_RPC_MSG_REPLY;
614
615         lustre_msg_set_type(req->rq_repmsg, req->rq_type);
616         lustre_msg_set_status(req->rq_repmsg,
617                               ptlrpc_status_hton(req->rq_status));
618         lustre_msg_set_opc(req->rq_repmsg,
619                 req->rq_reqmsg ? lustre_msg_get_opc(req->rq_reqmsg) : 0);
620
621         target_pack_pool_reply(req);
622
623         ptlrpc_at_set_reply(req, flags);
624
625         if (req->rq_export == NULL || req->rq_export->exp_connection == NULL)
626                 conn = ptlrpc_connection_get(req->rq_peer, req->rq_self, NULL);
627         else
628                 conn = ptlrpc_connection_addref(req->rq_export->exp_connection);
629
630         if (unlikely(conn == NULL)) {
631                 CERROR("not replying on NULL connection\n"); /* bug 9635 */
632                 return -ENOTCONN;
633         }
634         ptlrpc_rs_addref(rs);                   /* +1 ref for the network */
635
636         rc = sptlrpc_svc_wrap_reply(req);
637         if (unlikely(rc))
638                 goto out;
639
640         req->rq_sent = ktime_get_real_seconds();
641
642         rc = ptl_send_buf(&rs->rs_md_h, rs->rs_repbuf, rs->rs_repdata_len,
643                           (rs->rs_difficult && !rs->rs_no_ack) ?
644                           LNET_ACK_REQ : LNET_NOACK_REQ,
645                           &rs->rs_cb_id, req->rq_self, req->rq_source,
646                           ptlrpc_req2svc(req)->srv_rep_portal,
647                           req->rq_rep_mbits ? req->rq_rep_mbits : req->rq_xid,
648                           req->rq_reply_off, NULL);
649 out:
650         if (unlikely(rc != 0))
651                 ptlrpc_req_drop_rs(req);
652         ptlrpc_connection_put(conn);
653         return rc;
654 }
655
656 int ptlrpc_reply (struct ptlrpc_request *req)
657 {
658         if (req->rq_no_reply)
659                 return 0;
660         else
661                 return (ptlrpc_send_reply(req, 0));
662 }
663
664 /**
665  * For request \a req send an error reply back. Create empty
666  * reply buffers if necessary.
667  */
668 int ptlrpc_send_error(struct ptlrpc_request *req, int may_be_difficult)
669 {
670         int rc;
671         ENTRY;
672
673         if (req->rq_no_reply)
674                 RETURN(0);
675
676         if (!req->rq_repmsg) {
677                 rc = lustre_pack_reply(req, 1, NULL, NULL);
678                 if (rc)
679                         RETURN(rc);
680         }
681
682         if (req->rq_status != -ENOSPC && req->rq_status != -EACCES &&
683             req->rq_status != -EPERM && req->rq_status != -ENOENT &&
684             req->rq_status != -EINPROGRESS && req->rq_status != -EDQUOT)
685                 req->rq_type = PTL_RPC_MSG_ERR;
686
687         rc = ptlrpc_send_reply(req, may_be_difficult);
688         RETURN(rc);
689 }
690
691 int ptlrpc_error(struct ptlrpc_request *req)
692 {
693         return ptlrpc_send_error(req, 0);
694 }
695
696 /**
697  * Send request \a request.
698  * if \a noreply is set, don't expect any reply back and don't set up
699  * reply buffers.
700  * Returns 0 on success or error code.
701  */
702 int ptl_send_rpc(struct ptlrpc_request *request, int noreply)
703 {
704         int rc;
705         __u32 opc;
706         int mpflag = 0;
707         bool rep_mbits = false;
708         struct lnet_handle_md bulk_cookie;
709         struct lnet_processid peer;
710         struct ptlrpc_connection *connection;
711         struct lnet_me *reply_me = NULL;
712         struct lnet_md reply_md;
713         struct obd_import *imp = request->rq_import;
714         struct obd_device *obd = imp->imp_obd;
715         ENTRY;
716
717         LNetInvalidateMDHandle(&bulk_cookie);
718
719         if (OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_DROP_RPC))
720                 RETURN(0);
721
722         if (unlikely(OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_DELAY_RECOV) &&
723                      lustre_msg_get_opc(request->rq_reqmsg) == MDS_CONNECT &&
724                      strcmp(obd->obd_type->typ_name, LUSTRE_OSP_NAME) == 0)) {
725                 RETURN(0);
726         }
727
728         LASSERT(request->rq_type == PTL_RPC_MSG_REQUEST);
729         LASSERT(request->rq_wait_ctx == 0);
730
731         /* If this is a re-transmit, we're required to have disengaged
732          * cleanly from the previous attempt */
733         LASSERT(!request->rq_receiving_reply);
734         LASSERT(!((lustre_msg_get_flags(request->rq_reqmsg) & MSG_REPLAY) &&
735                   (imp->imp_state == LUSTRE_IMP_FULL)));
736
737         if (unlikely(obd != NULL && obd->obd_fail)) {
738                 CDEBUG(D_HA, "muting rpc for failed imp obd %s\n",
739                        obd->obd_name);
740                 /* this prevents us from waiting in ptlrpc_queue_wait */
741                 spin_lock(&request->rq_lock);
742                 request->rq_err = 1;
743                 spin_unlock(&request->rq_lock);
744                 request->rq_status = -ENODEV;
745                 RETURN(-ENODEV);
746         }
747
748         connection = imp->imp_connection;
749
750         lustre_msg_set_handle(request->rq_reqmsg,
751                               &imp->imp_remote_handle);
752         lustre_msg_set_type(request->rq_reqmsg, PTL_RPC_MSG_REQUEST);
753         lustre_msg_set_conn_cnt(request->rq_reqmsg,
754                                 imp->imp_conn_cnt);
755         lustre_msghdr_set_flags(request->rq_reqmsg,
756                                 imp->imp_msghdr_flags);
757
758         /* If it's the first time to resend the request for EINPROGRESS,
759          * we need to allocate a new XID (see after_reply()), it's different
760          * from the resend for reply timeout. */
761         if (request->rq_nr_resend != 0 &&
762             list_empty(&request->rq_unreplied_list)) {
763                 __u64 min_xid = 0;
764                 /* resend for EINPROGRESS, allocate new xid to avoid reply
765                  * reconstruction */
766                 spin_lock(&imp->imp_lock);
767                 ptlrpc_assign_next_xid_nolock(request);
768                 min_xid = ptlrpc_known_replied_xid(imp);
769                 spin_unlock(&imp->imp_lock);
770
771                 lustre_msg_set_last_xid(request->rq_reqmsg, min_xid);
772                 DEBUG_REQ(D_RPCTRACE, request,
773                           "Allocating new XID for resend on EINPROGRESS");
774         }
775
776         opc = lustre_msg_get_opc(request->rq_reqmsg);
777         if (opc != OST_CONNECT && opc != MDS_CONNECT &&
778             opc != MGS_CONNECT && OCD_HAS_FLAG(&imp->imp_connect_data, FLAGS2))
779                 rep_mbits = imp->imp_connect_data.ocd_connect_flags2 &
780                         OBD_CONNECT2_REP_MBITS;
781
782         if ((request->rq_bulk != NULL) || rep_mbits) {
783                 ptlrpc_set_mbits(request);
784                 lustre_msg_set_mbits(request->rq_reqmsg, request->rq_mbits);
785         }
786
787         if (list_empty(&request->rq_unreplied_list) ||
788             request->rq_xid <= imp->imp_known_replied_xid) {
789                 DEBUG_REQ(D_ERROR, request,
790                           "xid=%llu, replied=%llu, list_empty=%d",
791                           request->rq_xid, imp->imp_known_replied_xid,
792                           list_empty(&request->rq_unreplied_list));
793                 LBUG();
794         }
795
796         /** For enabled AT all request should have AT_SUPPORT in the
797          * FULL import state when OBD_CONNECT_AT is set */
798         LASSERT(AT_OFF || imp->imp_state != LUSTRE_IMP_FULL ||
799                 (imp->imp_msghdr_flags & MSGHDR_AT_SUPPORT) ||
800                 !(imp->imp_connect_data.ocd_connect_flags &
801                   OBD_CONNECT_AT));
802
803         if (request->rq_resend) {
804                 lustre_msg_add_flags(request->rq_reqmsg, MSG_RESENT);
805                 if (request->rq_resend_cb != NULL)
806                         request->rq_resend_cb(request, &request->rq_async_args);
807         }
808         if (request->rq_memalloc)
809                 mpflag = memalloc_noreclaim_save();
810
811         rc = sptlrpc_cli_wrap_request(request);
812         if (rc)
813                 GOTO(out, rc);
814
815         /* bulk register should be done after wrap_request() */
816         if (request->rq_bulk != NULL) {
817                 rc = ptlrpc_register_bulk (request);
818                 if (rc != 0)
819                         GOTO(cleanup_bulk, rc);
820                 /*
821                  * All the mds in the request will have the same cpt
822                  * encoded in the cookie. So we can just get the first
823                  * one.
824                  */
825                 bulk_cookie = request->rq_bulk->bd_mds[0];
826         }
827
828         if (!noreply) {
829                 LASSERT (request->rq_replen != 0);
830                 if (request->rq_repbuf == NULL) {
831                         LASSERT(request->rq_repdata == NULL);
832                         LASSERT(request->rq_repmsg == NULL);
833                         rc = sptlrpc_cli_alloc_repbuf(request,
834                                                       request->rq_replen);
835                         if (rc) {
836                                 /* this prevents us from looping in
837                                  * ptlrpc_queue_wait */
838                                 spin_lock(&request->rq_lock);
839                                 request->rq_err = 1;
840                                 spin_unlock(&request->rq_lock);
841                                 request->rq_status = rc;
842                                 GOTO(cleanup_bulk, rc);
843                         }
844                 } else {
845                         request->rq_repdata = NULL;
846                         request->rq_repmsg = NULL;
847                 }
848
849                 peer = connection->c_peer;
850                 if (request->rq_bulk &&
851                     OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_BULK_REPLY_ATTACH)) {
852                         reply_me = ERR_PTR(-ENOMEM);
853                 } else {
854                         reply_me = LNetMEAttach(request->rq_reply_portal,
855                                                 &peer,
856                                                 rep_mbits ? request->rq_mbits :
857                                                 request->rq_xid,
858                                                 0, LNET_UNLINK, LNET_INS_AFTER);
859                 }
860
861                 if (IS_ERR(reply_me)) {
862                         rc = PTR_ERR(reply_me);
863                         CERROR("LNetMEAttach failed: %d\n", rc);
864                         LASSERT(rc == -ENOMEM);
865                         GOTO(cleanup_bulk, rc = -ENOMEM);
866                 }
867         }
868
869         spin_lock(&request->rq_lock);
870         /* We are responsible for unlinking the reply buffer */
871         request->rq_reply_unlinked = noreply;
872         request->rq_receiving_reply = !noreply;
873         /* Clear any flags that may be present from previous sends. */
874         request->rq_req_unlinked = 0;
875         request->rq_replied = 0;
876         request->rq_err = 0;
877         request->rq_timedout = 0;
878         request->rq_net_err = 0;
879         request->rq_resend = 0;
880         request->rq_restart = 0;
881         request->rq_reply_truncated = 0;
882         spin_unlock(&request->rq_lock);
883
884         if (!noreply) {
885                 reply_md.start     = request->rq_repbuf;
886                 reply_md.length    = request->rq_repbuf_len;
887                 /* Allow multiple early replies */
888                 reply_md.threshold = LNET_MD_THRESH_INF;
889                 /* Manage remote for early replies */
890                 reply_md.options   = PTLRPC_MD_OPTIONS | LNET_MD_OP_PUT |
891                         LNET_MD_MANAGE_REMOTE |
892                         LNET_MD_TRUNCATE; /* allow to make EOVERFLOW error */;
893                 reply_md.user_ptr  = &request->rq_reply_cbid;
894                 reply_md.handler = ptlrpc_handler;
895
896                 /* We must see the unlink callback to set rq_reply_unlinked,
897                  * so we can't auto-unlink */
898                 rc = LNetMDAttach(reply_me, &reply_md, LNET_RETAIN,
899                                   &request->rq_reply_md_h);
900                 if (rc != 0) {
901                         CERROR("LNetMDAttach failed: %d\n", rc);
902                         LASSERT(rc == -ENOMEM);
903                         spin_lock(&request->rq_lock);
904                         /* ...but the MD attach didn't succeed... */
905                         request->rq_receiving_reply = 0;
906                         spin_unlock(&request->rq_lock);
907                         GOTO(cleanup_bulk, rc = -ENOMEM);
908                 }
909                 percpu_ref_get(&ptlrpc_pending);
910
911                 CDEBUG(D_NET,
912                        "Setup reply buffer: %u bytes, xid %llu, portal %u\n",
913                        request->rq_repbuf_len, request->rq_xid,
914                        request->rq_reply_portal);
915         }
916
917         /* add references on request for request_out_callback */
918         ptlrpc_request_addref(request);
919         if (obd != NULL && obd->obd_svc_stats != NULL)
920                 lprocfs_counter_add(obd->obd_svc_stats, PTLRPC_REQACTIVE_CNTR,
921                                     atomic_read(&imp->imp_inflight));
922
923         OBD_FAIL_TIMEOUT(OBD_FAIL_PTLRPC_DELAY_SEND, request->rq_timeout + 5);
924
925         request->rq_sent_ns = ktime_get_real();
926         request->rq_sent = ktime_get_real_seconds();
927         /* We give the server rq_timeout secs to process the req, and
928          * add the network latency for our local timeout.
929          */
930         request->rq_deadline = request->rq_sent + request->rq_timeout +
931                 ptlrpc_at_get_net_latency(request);
932
933         DEBUG_REQ(D_INFO, request, "send flags=%x",
934                   lustre_msg_get_flags(request->rq_reqmsg));
935         rc = ptl_send_buf(&request->rq_req_md_h,
936                           request->rq_reqbuf, request->rq_reqdata_len,
937                           LNET_NOACK_REQ, &request->rq_req_cbid,
938                           LNET_NID_ANY,
939                           lnet_pid_to_pid4(&connection->c_peer),
940                           request->rq_request_portal,
941                           request->rq_xid, 0, &bulk_cookie);
942         if (likely(rc == 0))
943                 GOTO(out, rc);
944
945         request->rq_req_unlinked = 1;
946         ptlrpc_req_finished(request);
947         if (noreply)
948                 GOTO(out, rc);
949
950         LNetMDUnlink(request->rq_reply_md_h);
951
952         /* UNLINKED callback called synchronously */
953         LASSERT(!request->rq_receiving_reply);
954
955  cleanup_bulk:
956         /* We do sync unlink here as there was no real transfer here so
957          * the chance to have long unlink to sluggish net is smaller here. */
958         ptlrpc_unregister_bulk(request, 0);
959  out:
960         if (rc == -ENOMEM) {
961                 /* set rq_sent so that this request is treated
962                  * as a delayed send in the upper layers */
963                 request->rq_sent = ktime_get_real_seconds();
964         }
965
966         if (request->rq_memalloc)
967                 memalloc_noreclaim_restore(mpflag);
968
969         return rc;
970 }
971 EXPORT_SYMBOL(ptl_send_rpc);
972
973 /**
974  * Register request buffer descriptor for request receiving.
975  */
976 int ptlrpc_register_rqbd(struct ptlrpc_request_buffer_desc *rqbd)
977 {
978         struct ptlrpc_service *service = rqbd->rqbd_svcpt->scp_service;
979         static struct lnet_processid match_id = {
980                 .nid = LNET_ANY_NID,
981                 .pid = LNET_PID_ANY
982         };
983         int rc;
984         struct lnet_md md;
985         struct lnet_me *me;
986
987         CDEBUG(D_NET, "%s: registering portal %d\n", service->srv_name,
988                service->srv_req_portal);
989
990         if (OBD_FAIL_CHECK(OBD_FAIL_PTLRPC_RQBD))
991                 return -ENOMEM;
992
993         /* NB: CPT affinity service should use new LNet flag LNET_INS_LOCAL,
994          * which means buffer can only be attached on local CPT, and LND
995          * threads can find it by grabbing a local lock */
996         me = LNetMEAttach(service->srv_req_portal,
997                           &match_id, 0, ~0, LNET_UNLINK,
998                           rqbd->rqbd_svcpt->scp_cpt >= 0 ?
999                           LNET_INS_LOCAL : LNET_INS_AFTER);
1000         if (IS_ERR(me)) {
1001                 CERROR("%s: LNetMEAttach failed: rc = %ld\n",
1002                        service->srv_name, PTR_ERR(me));
1003                 return PTR_ERR(me);
1004         }
1005
1006         LASSERT(rqbd->rqbd_refcount == 0);
1007         rqbd->rqbd_refcount = 1;
1008
1009         md.start     = rqbd->rqbd_buffer;
1010         md.length    = service->srv_buf_size;
1011         md.max_size  = service->srv_max_req_size;
1012         md.threshold = LNET_MD_THRESH_INF;
1013         md.options   = PTLRPC_MD_OPTIONS | LNET_MD_OP_PUT | LNET_MD_MAX_SIZE;
1014         md.user_ptr  = &rqbd->rqbd_cbid;
1015         md.handler   = ptlrpc_handler;
1016
1017         rc = LNetMDAttach(me, &md, LNET_UNLINK, &rqbd->rqbd_md_h);
1018         if (rc == 0) {
1019                 percpu_ref_get(&ptlrpc_pending);
1020                 return 0;
1021         }
1022
1023         CERROR("%s: LNetMDAttach failed: rc = %d\n", service->srv_name, rc);
1024         LASSERT(rc == -ENOMEM);
1025         rqbd->rqbd_refcount = 0;
1026
1027         return rc;
1028 }