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LU-2924 Only wake up ldlm_poold as frequently as the check interval
[fs/lustre-release.git] / lustre / ldlm / ldlm_lib.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.sun.com/software/products/lustre/docs/GPLv2.pdf
19  *
20  * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
21  * CA 95054 USA or visit www.sun.com if you need additional information or
22  * have any questions.
23  *
24  * GPL HEADER END
25  */
26 /*
27  * Copyright (c) 2003, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2010, 2013, Intel Corporation.
31  */
32 /*
33  * This file is part of Lustre, http://www.lustre.org/
34  * Lustre is a trademark of Sun Microsystems, Inc.
35  */
36
37 /**
38  * This file deals with various client/target related logic including recovery.
39  *
40  * TODO: This code more logically belongs in the ptlrpc module than in ldlm and
41  * should be moved.
42  */
43
44 #define DEBUG_SUBSYSTEM S_LDLM
45
46 #ifdef __KERNEL__
47 # include <libcfs/libcfs.h>
48 #else
49 # include <liblustre.h>
50 #endif
51 #include <obd.h>
52 #include <obd_class.h>
53 #include <lustre_dlm.h>
54 #include <lustre_net.h>
55 #include <lustre_sec.h>
56 #include "ldlm_internal.h"
57
58 /* @priority: If non-zero, move the selected connection to the list head.
59  * @create: If zero, only search in existing connections.
60  */
61 static int import_set_conn(struct obd_import *imp, struct obd_uuid *uuid,
62                            int priority, int create)
63 {
64         struct ptlrpc_connection *ptlrpc_conn;
65         struct obd_import_conn *imp_conn = NULL, *item;
66         int rc = 0;
67         ENTRY;
68
69         if (!create && !priority) {
70                 CDEBUG(D_HA, "Nothing to do\n");
71                 RETURN(-EINVAL);
72         }
73
74         ptlrpc_conn = ptlrpc_uuid_to_connection(uuid);
75         if (!ptlrpc_conn) {
76                 CDEBUG(D_HA, "can't find connection %s\n", uuid->uuid);
77                 RETURN (-ENOENT);
78         }
79
80         if (create) {
81                 OBD_ALLOC(imp_conn, sizeof(*imp_conn));
82                 if (!imp_conn) {
83                         GOTO(out_put, rc = -ENOMEM);
84                 }
85         }
86
87         spin_lock(&imp->imp_lock);
88         cfs_list_for_each_entry(item, &imp->imp_conn_list, oic_item) {
89                 if (obd_uuid_equals(uuid, &item->oic_uuid)) {
90                         if (priority) {
91                                 cfs_list_del(&item->oic_item);
92                                 cfs_list_add(&item->oic_item,
93                                              &imp->imp_conn_list);
94                                 item->oic_last_attempt = 0;
95                         }
96                         CDEBUG(D_HA, "imp %p@%s: found existing conn %s%s\n",
97                                imp, imp->imp_obd->obd_name, uuid->uuid,
98                                (priority ? ", moved to head" : ""));
99                         spin_unlock(&imp->imp_lock);
100                         GOTO(out_free, rc = 0);
101                 }
102         }
103         /* No existing import connection found for \a uuid. */
104         if (create) {
105                 imp_conn->oic_conn = ptlrpc_conn;
106                 imp_conn->oic_uuid = *uuid;
107                 imp_conn->oic_last_attempt = 0;
108                 if (priority)
109                         cfs_list_add(&imp_conn->oic_item, &imp->imp_conn_list);
110                 else
111                         cfs_list_add_tail(&imp_conn->oic_item,
112                                           &imp->imp_conn_list);
113                 CDEBUG(D_HA, "imp %p@%s: add connection %s at %s\n",
114                        imp, imp->imp_obd->obd_name, uuid->uuid,
115                        (priority ? "head" : "tail"));
116         } else {
117                 spin_unlock(&imp->imp_lock);
118                 GOTO(out_free, rc = -ENOENT);
119         }
120
121         spin_unlock(&imp->imp_lock);
122         RETURN(0);
123 out_free:
124         if (imp_conn)
125                 OBD_FREE(imp_conn, sizeof(*imp_conn));
126 out_put:
127         ptlrpc_connection_put(ptlrpc_conn);
128         RETURN(rc);
129 }
130
131 int import_set_conn_priority(struct obd_import *imp, struct obd_uuid *uuid)
132 {
133         return import_set_conn(imp, uuid, 1, 0);
134 }
135
136 int client_import_add_conn(struct obd_import *imp, struct obd_uuid *uuid,
137                            int priority)
138 {
139         return import_set_conn(imp, uuid, priority, 1);
140 }
141 EXPORT_SYMBOL(client_import_add_conn);
142
143 int client_import_del_conn(struct obd_import *imp, struct obd_uuid *uuid)
144 {
145         struct obd_import_conn *imp_conn;
146         struct obd_export *dlmexp;
147         int rc = -ENOENT;
148         ENTRY;
149
150         spin_lock(&imp->imp_lock);
151         if (cfs_list_empty(&imp->imp_conn_list)) {
152                 LASSERT(!imp->imp_connection);
153                 GOTO(out, rc);
154         }
155
156         cfs_list_for_each_entry(imp_conn, &imp->imp_conn_list, oic_item) {
157                 if (!obd_uuid_equals(uuid, &imp_conn->oic_uuid))
158                         continue;
159                 LASSERT(imp_conn->oic_conn);
160
161                 if (imp_conn == imp->imp_conn_current) {
162                         LASSERT(imp_conn->oic_conn == imp->imp_connection);
163
164                         if (imp->imp_state != LUSTRE_IMP_CLOSED &&
165                             imp->imp_state != LUSTRE_IMP_DISCON) {
166                                 CERROR("can't remove current connection\n");
167                                 GOTO(out, rc = -EBUSY);
168                         }
169
170                         ptlrpc_connection_put(imp->imp_connection);
171                         imp->imp_connection = NULL;
172
173                         dlmexp = class_conn2export(&imp->imp_dlm_handle);
174                         if (dlmexp && dlmexp->exp_connection) {
175                                 LASSERT(dlmexp->exp_connection ==
176                                         imp_conn->oic_conn);
177                                 ptlrpc_connection_put(dlmexp->exp_connection);
178                                 dlmexp->exp_connection = NULL;
179                         }
180                 }
181
182                 cfs_list_del(&imp_conn->oic_item);
183                 ptlrpc_connection_put(imp_conn->oic_conn);
184                 OBD_FREE(imp_conn, sizeof(*imp_conn));
185                 CDEBUG(D_HA, "imp %p@%s: remove connection %s\n",
186                        imp, imp->imp_obd->obd_name, uuid->uuid);
187                 rc = 0;
188                 break;
189         }
190 out:
191         spin_unlock(&imp->imp_lock);
192         if (rc == -ENOENT)
193                 CERROR("connection %s not found\n", uuid->uuid);
194         RETURN(rc);
195 }
196 EXPORT_SYMBOL(client_import_del_conn);
197
198 /**
199  * Find conn UUID by peer NID. \a peer is a server NID. This function is used
200  * to find a conn uuid of \a imp which can reach \a peer.
201  */
202 int client_import_find_conn(struct obd_import *imp, lnet_nid_t peer,
203                             struct obd_uuid *uuid)
204 {
205         struct obd_import_conn *conn;
206         int rc = -ENOENT;
207         ENTRY;
208
209         spin_lock(&imp->imp_lock);
210         cfs_list_for_each_entry(conn, &imp->imp_conn_list, oic_item) {
211                 /* Check if conn UUID does have this peer NID. */
212                 if (class_check_uuid(&conn->oic_uuid, peer)) {
213                         *uuid = conn->oic_uuid;
214                         rc = 0;
215                         break;
216                 }
217         }
218         spin_unlock(&imp->imp_lock);
219         RETURN(rc);
220 }
221 EXPORT_SYMBOL(client_import_find_conn);
222
223 void client_destroy_import(struct obd_import *imp)
224 {
225         /* Drop security policy instance after all RPCs have finished/aborted
226          * to let all busy contexts be released. */
227         class_import_get(imp);
228         class_destroy_import(imp);
229         sptlrpc_import_sec_put(imp);
230         class_import_put(imp);
231 }
232 EXPORT_SYMBOL(client_destroy_import);
233
234 /**
235  * Check whether or not the OSC is on MDT.
236  * In the config log,
237  * osc on MDT
238  *      setup 0:{fsname}-OSTxxxx-osc[-MDTxxxx] 1:lustre-OST0000_UUID 2:NID
239  * osc on client
240  *      setup 0:{fsname}-OSTxxxx-osc 1:lustre-OST0000_UUID 2:NID
241  *
242  **/
243 static int osc_on_mdt(char *obdname)
244 {
245         char *ptr;
246
247         ptr = strrchr(obdname, '-');
248         if (ptr == NULL)
249                 return 0;
250
251         if (strncmp(ptr + 1, "MDT", 3) == 0)
252                 return 1;
253
254         return 0;
255 }
256
257 /* Configure an RPC client OBD device.
258  *
259  * lcfg parameters:
260  * 1 - client UUID
261  * 2 - server UUID
262  * 3 - inactive-on-startup
263  */
264 int client_obd_setup(struct obd_device *obddev, struct lustre_cfg *lcfg)
265 {
266         struct client_obd *cli = &obddev->u.cli;
267         struct obd_import *imp;
268         struct obd_uuid server_uuid;
269         int rq_portal, rp_portal, connect_op;
270         char *name = obddev->obd_type->typ_name;
271         ldlm_ns_type_t ns_type = LDLM_NS_TYPE_UNKNOWN;
272         int rc;
273         char    *cli_name = lustre_cfg_buf(lcfg, 0);
274         ENTRY;
275
276         /* In a more perfect world, we would hang a ptlrpc_client off of
277          * obd_type and just use the values from there. */
278         if (!strcmp(name, LUSTRE_OSC_NAME) ||
279             (!(strcmp(name, LUSTRE_OSP_NAME)) &&
280              (is_osp_on_mdt(cli_name) &&
281                strstr(lustre_cfg_buf(lcfg, 1), "OST") != NULL))) {
282                 /* OSC or OSP_on_MDT for OSTs */
283                 rq_portal = OST_REQUEST_PORTAL;
284                 rp_portal = OSC_REPLY_PORTAL;
285                 connect_op = OST_CONNECT;
286                 cli->cl_sp_me = LUSTRE_SP_CLI;
287                 cli->cl_sp_to = LUSTRE_SP_OST;
288                 ns_type = LDLM_NS_TYPE_OSC;
289         } else if (!strcmp(name, LUSTRE_MDC_NAME) ||
290                    !strcmp(name, LUSTRE_LWP_NAME) ||
291                    (!strcmp(name, LUSTRE_OSP_NAME) &&
292                     (is_osp_on_mdt(cli_name) &&
293                      strstr(lustre_cfg_buf(lcfg, 1), "OST") == NULL))) {
294                 /* MDC or OSP_on_MDT for other MDTs */
295                 rq_portal = MDS_REQUEST_PORTAL;
296                 rp_portal = MDC_REPLY_PORTAL;
297                 connect_op = MDS_CONNECT;
298                 cli->cl_sp_me = LUSTRE_SP_CLI;
299                 cli->cl_sp_to = LUSTRE_SP_MDT;
300                 ns_type = LDLM_NS_TYPE_MDC;
301         } else if (!strcmp(name, LUSTRE_MGC_NAME)) {
302                 rq_portal = MGS_REQUEST_PORTAL;
303                 rp_portal = MGC_REPLY_PORTAL;
304                 connect_op = MGS_CONNECT;
305                 cli->cl_sp_me = LUSTRE_SP_MGC;
306                 cli->cl_sp_to = LUSTRE_SP_MGS;
307                 cli->cl_flvr_mgc.sf_rpc = SPTLRPC_FLVR_INVALID;
308                 ns_type = LDLM_NS_TYPE_MGC;
309         } else {
310                 CERROR("unknown client OBD type \"%s\", can't setup\n",
311                        name);
312                 RETURN(-EINVAL);
313         }
314
315         if (LUSTRE_CFG_BUFLEN(lcfg, 1) < 1) {
316                 CERROR("requires a TARGET UUID\n");
317                 RETURN(-EINVAL);
318         }
319
320         if (LUSTRE_CFG_BUFLEN(lcfg, 1) > 37) {
321                 CERROR("client UUID must be less than 38 characters\n");
322                 RETURN(-EINVAL);
323         }
324
325         if (LUSTRE_CFG_BUFLEN(lcfg, 2) < 1) {
326                 CERROR("setup requires a SERVER UUID\n");
327                 RETURN(-EINVAL);
328         }
329
330         if (LUSTRE_CFG_BUFLEN(lcfg, 2) > 37) {
331                 CERROR("target UUID must be less than 38 characters\n");
332                 RETURN(-EINVAL);
333         }
334
335         init_rwsem(&cli->cl_sem);
336         sema_init(&cli->cl_mgc_sem, 1);
337         cli->cl_conn_count = 0;
338         memcpy(server_uuid.uuid, lustre_cfg_buf(lcfg, 2),
339                min_t(unsigned int, LUSTRE_CFG_BUFLEN(lcfg, 2),
340                      sizeof(server_uuid)));
341
342         cli->cl_dirty = 0;
343         cli->cl_avail_grant = 0;
344         /* FIXME: Should limit this for the sum of all cl_dirty_max. */
345         cli->cl_dirty_max = OSC_MAX_DIRTY_DEFAULT * 1024 * 1024;
346         if (cli->cl_dirty_max >> CFS_PAGE_SHIFT > cfs_num_physpages / 8)
347                 cli->cl_dirty_max = cfs_num_physpages << (CFS_PAGE_SHIFT - 3);
348         CFS_INIT_LIST_HEAD(&cli->cl_cache_waiters);
349         CFS_INIT_LIST_HEAD(&cli->cl_loi_ready_list);
350         CFS_INIT_LIST_HEAD(&cli->cl_loi_hp_ready_list);
351         CFS_INIT_LIST_HEAD(&cli->cl_loi_write_list);
352         CFS_INIT_LIST_HEAD(&cli->cl_loi_read_list);
353         client_obd_list_lock_init(&cli->cl_loi_list_lock);
354         cfs_atomic_set(&cli->cl_pending_w_pages, 0);
355         cfs_atomic_set(&cli->cl_pending_r_pages, 0);
356         cli->cl_r_in_flight = 0;
357         cli->cl_w_in_flight = 0;
358
359         spin_lock_init(&cli->cl_read_rpc_hist.oh_lock);
360         spin_lock_init(&cli->cl_write_rpc_hist.oh_lock);
361         spin_lock_init(&cli->cl_read_page_hist.oh_lock);
362         spin_lock_init(&cli->cl_write_page_hist.oh_lock);
363         spin_lock_init(&cli->cl_read_offset_hist.oh_lock);
364         spin_lock_init(&cli->cl_write_offset_hist.oh_lock);
365
366         /* lru for osc. */
367         CFS_INIT_LIST_HEAD(&cli->cl_lru_osc);
368         cfs_atomic_set(&cli->cl_lru_shrinkers, 0);
369         cfs_atomic_set(&cli->cl_lru_busy, 0);
370         cfs_atomic_set(&cli->cl_lru_in_list, 0);
371         CFS_INIT_LIST_HEAD(&cli->cl_lru_list);
372         client_obd_list_lock_init(&cli->cl_lru_list_lock);
373
374         cfs_waitq_init(&cli->cl_destroy_waitq);
375         cfs_atomic_set(&cli->cl_destroy_in_flight, 0);
376 #ifdef ENABLE_CHECKSUM
377         /* Turn on checksumming by default. */
378         cli->cl_checksum = 1;
379         /*
380          * The supported checksum types will be worked out at connect time
381          * Set cl_chksum* to CRC32 for now to avoid returning screwed info
382          * through procfs.
383          */
384         cli->cl_cksum_type = cli->cl_supp_cksum_types = OBD_CKSUM_CRC32;
385 #endif
386         cfs_atomic_set(&cli->cl_resends, OSC_DEFAULT_RESENDS);
387
388         /* This value may be reduced at connect time in
389          * ptlrpc_connect_interpret() . We initialize it to only
390          * 1MB until we know what the performance looks like.
391          * In the future this should likely be increased. LU-1431 */
392         cli->cl_max_pages_per_rpc = min_t(int, PTLRPC_MAX_BRW_PAGES,
393                                           LNET_MTU >> CFS_PAGE_SHIFT);
394
395         if (!strcmp(name, LUSTRE_MDC_NAME)) {
396                 cli->cl_max_rpcs_in_flight = MDC_MAX_RIF_DEFAULT;
397         } else if (cfs_num_physpages >> (20 - CFS_PAGE_SHIFT) <= 128 /* MB */) {
398                 cli->cl_max_rpcs_in_flight = 2;
399         } else if (cfs_num_physpages >> (20 - CFS_PAGE_SHIFT) <= 256 /* MB */) {
400                 cli->cl_max_rpcs_in_flight = 3;
401         } else if (cfs_num_physpages >> (20 - CFS_PAGE_SHIFT) <= 512 /* MB */) {
402                 cli->cl_max_rpcs_in_flight = 4;
403         } else {
404                 if (osc_on_mdt(obddev->obd_name))
405                         cli->cl_max_rpcs_in_flight = MDS_OSC_MAX_RIF_DEFAULT;
406                 else
407                         cli->cl_max_rpcs_in_flight = OSC_MAX_RIF_DEFAULT;
408         }
409         rc = ldlm_get_ref();
410         if (rc) {
411                 CERROR("ldlm_get_ref failed: %d\n", rc);
412                 GOTO(err, rc);
413         }
414
415         ptlrpc_init_client(rq_portal, rp_portal, name,
416                            &obddev->obd_ldlm_client);
417
418         imp = class_new_import(obddev);
419         if (imp == NULL)
420                 GOTO(err_ldlm, rc = -ENOENT);
421         imp->imp_client = &obddev->obd_ldlm_client;
422         imp->imp_connect_op = connect_op;
423         memcpy(cli->cl_target_uuid.uuid, lustre_cfg_buf(lcfg, 1),
424                LUSTRE_CFG_BUFLEN(lcfg, 1));
425         class_import_put(imp);
426
427         rc = client_import_add_conn(imp, &server_uuid, 1);
428         if (rc) {
429                 CERROR("can't add initial connection\n");
430                 GOTO(err_import, rc);
431         }
432
433         cli->cl_import = imp;
434         /* cli->cl_max_mds_{easize,cookiesize} updated by mdc_init_ea_size() */
435         cli->cl_max_mds_easize = sizeof(struct lov_mds_md_v3);
436         cli->cl_max_mds_cookiesize = sizeof(struct llog_cookie);
437
438         if (LUSTRE_CFG_BUFLEN(lcfg, 3) > 0) {
439                 if (!strcmp(lustre_cfg_string(lcfg, 3), "inactive")) {
440                         CDEBUG(D_HA, "marking %s %s->%s as inactive\n",
441                                name, obddev->obd_name,
442                                cli->cl_target_uuid.uuid);
443                         spin_lock(&imp->imp_lock);
444                         imp->imp_deactive = 1;
445                         spin_unlock(&imp->imp_lock);
446                 }
447         }
448
449         obddev->obd_namespace = ldlm_namespace_new(obddev, obddev->obd_name,
450                                                    LDLM_NAMESPACE_CLIENT,
451                                                    LDLM_NAMESPACE_GREEDY,
452                                                    ns_type);
453         if (obddev->obd_namespace == NULL) {
454                 CERROR("Unable to create client namespace - %s\n",
455                        obddev->obd_name);
456                 GOTO(err_import, rc = -ENOMEM);
457         }
458
459         cli->cl_qchk_stat = CL_NOT_QUOTACHECKED;
460
461         RETURN(rc);
462
463 err_import:
464         class_destroy_import(imp);
465 err_ldlm:
466         ldlm_put_ref();
467 err:
468         RETURN(rc);
469
470 }
471 EXPORT_SYMBOL(client_obd_setup);
472
473 int client_obd_cleanup(struct obd_device *obddev)
474 {
475         ENTRY;
476
477         ldlm_namespace_free_post(obddev->obd_namespace);
478         obddev->obd_namespace = NULL;
479
480         LASSERT(obddev->u.cli.cl_import == NULL);
481
482         ldlm_put_ref();
483         RETURN(0);
484 }
485 EXPORT_SYMBOL(client_obd_cleanup);
486
487 /* ->o_connect() method for client side (OSC and MDC and MGC) */
488 int client_connect_import(const struct lu_env *env,
489                           struct obd_export **exp,
490                           struct obd_device *obd, struct obd_uuid *cluuid,
491                           struct obd_connect_data *data, void *localdata)
492 {
493         struct client_obd       *cli    = &obd->u.cli;
494         struct obd_import       *imp    = cli->cl_import;
495         struct obd_connect_data *ocd;
496         struct lustre_handle    conn    = { 0 };
497         int                     rc;
498         ENTRY;
499
500         *exp = NULL;
501         down_write(&cli->cl_sem);
502         if (cli->cl_conn_count > 0 )
503                 GOTO(out_sem, rc = -EALREADY);
504
505         rc = class_connect(&conn, obd, cluuid);
506         if (rc)
507                 GOTO(out_sem, rc);
508
509         cli->cl_conn_count++;
510         *exp = class_conn2export(&conn);
511
512         LASSERT(obd->obd_namespace);
513
514         imp->imp_dlm_handle = conn;
515         rc = ptlrpc_init_import(imp);
516         if (rc != 0)
517                 GOTO(out_ldlm, rc);
518
519         ocd = &imp->imp_connect_data;
520         if (data) {
521                 *ocd = *data;
522                 imp->imp_connect_flags_orig = data->ocd_connect_flags;
523         }
524
525         rc = ptlrpc_connect_import(imp);
526         if (rc != 0) {
527                 LASSERT (imp->imp_state == LUSTRE_IMP_DISCON);
528                 GOTO(out_ldlm, rc);
529         }
530         LASSERT((*exp)->exp_connection);
531
532         if (data) {
533                 LASSERTF((ocd->ocd_connect_flags & data->ocd_connect_flags) ==
534                          ocd->ocd_connect_flags, "old "LPX64", new "LPX64"\n",
535                          data->ocd_connect_flags, ocd->ocd_connect_flags);
536                 data->ocd_connect_flags = ocd->ocd_connect_flags;
537         }
538
539         ptlrpc_pinger_add_import(imp);
540
541         EXIT;
542
543         if (rc) {
544 out_ldlm:
545                 cli->cl_conn_count--;
546                 class_disconnect(*exp);
547                 *exp = NULL;
548         }
549 out_sem:
550         up_write(&cli->cl_sem);
551
552         return rc;
553 }
554 EXPORT_SYMBOL(client_connect_import);
555
556 int client_disconnect_export(struct obd_export *exp)
557 {
558         struct obd_device *obd = class_exp2obd(exp);
559         struct client_obd *cli;
560         struct obd_import *imp;
561         int rc = 0, err;
562         ENTRY;
563
564         if (!obd) {
565                 CERROR("invalid export for disconnect: exp %p cookie "LPX64"\n",
566                        exp, exp ? exp->exp_handle.h_cookie : -1);
567                 RETURN(-EINVAL);
568         }
569
570         cli = &obd->u.cli;
571         imp = cli->cl_import;
572
573         down_write(&cli->cl_sem);
574         CDEBUG(D_INFO, "disconnect %s - %d\n", obd->obd_name,
575                cli->cl_conn_count);
576
577         if (!cli->cl_conn_count) {
578                 CERROR("disconnecting disconnected device (%s)\n",
579                        obd->obd_name);
580                 GOTO(out_disconnect, rc = -EINVAL);
581         }
582
583         cli->cl_conn_count--;
584         if (cli->cl_conn_count)
585                 GOTO(out_disconnect, rc = 0);
586
587         /* Mark import deactivated now, so we don't try to reconnect if any
588          * of the cleanup RPCs fails (e.g. LDLM cancel, etc).  We don't
589          * fully deactivate the import, or that would drop all requests. */
590         spin_lock(&imp->imp_lock);
591         imp->imp_deactive = 1;
592         spin_unlock(&imp->imp_lock);
593
594         /* Some non-replayable imports (MDS's OSCs) are pinged, so just
595          * delete it regardless.  (It's safe to delete an import that was
596          * never added.) */
597         (void)ptlrpc_pinger_del_import(imp);
598
599         if (obd->obd_namespace != NULL) {
600                 /* obd_force == local only */
601                 ldlm_cli_cancel_unused(obd->obd_namespace, NULL,
602                                        obd->obd_force ? LCF_LOCAL : 0, NULL);
603                 ldlm_namespace_free_prior(obd->obd_namespace, imp, obd->obd_force);
604         }
605
606         /* There's no need to hold sem while disconnecting an import,
607          * and it may actually cause deadlock in GSS. */
608         up_write(&cli->cl_sem);
609         rc = ptlrpc_disconnect_import(imp, 0);
610         down_write(&cli->cl_sem);
611
612         ptlrpc_invalidate_import(imp);
613
614         EXIT;
615
616 out_disconnect:
617         /* Use server style - class_disconnect should be always called for
618          * o_disconnect. */
619         err = class_disconnect(exp);
620         if (!rc && err)
621                 rc = err;
622
623         up_write(&cli->cl_sem);
624
625         RETURN(rc);
626 }
627 EXPORT_SYMBOL(client_disconnect_export);
628
629 #ifdef HAVE_SERVER_SUPPORT
630 int server_disconnect_export(struct obd_export *exp)
631 {
632         int rc;
633         ENTRY;
634
635         /* Disconnect early so that clients can't keep using export. */
636         rc = class_disconnect(exp);
637         /* Close import to avoid sending any requests. */
638         if (exp->exp_imp_reverse)
639                 ptlrpc_cleanup_imp(exp->exp_imp_reverse);
640
641         if (exp->exp_obd->obd_namespace != NULL)
642                 ldlm_cancel_locks_for_export(exp);
643
644         /* complete all outstanding replies */
645         spin_lock(&exp->exp_lock);
646         while (!cfs_list_empty(&exp->exp_outstanding_replies)) {
647                 struct ptlrpc_reply_state *rs =
648                         cfs_list_entry(exp->exp_outstanding_replies.next,
649                                        struct ptlrpc_reply_state, rs_exp_list);
650                 struct ptlrpc_service_part *svcpt = rs->rs_svcpt;
651
652                 spin_lock(&svcpt->scp_rep_lock);
653
654                 cfs_list_del_init(&rs->rs_exp_list);
655                 spin_lock(&rs->rs_lock);
656                 ptlrpc_schedule_difficult_reply(rs);
657                 spin_unlock(&rs->rs_lock);
658
659                 spin_unlock(&svcpt->scp_rep_lock);
660         }
661         spin_unlock(&exp->exp_lock);
662
663         RETURN(rc);
664 }
665 EXPORT_SYMBOL(server_disconnect_export);
666
667 /* --------------------------------------------------------------------------
668  * from old lib/target.c
669  * -------------------------------------------------------------------------- */
670
671 static int target_handle_reconnect(struct lustre_handle *conn,
672                                    struct obd_export *exp,
673                                    struct obd_uuid *cluuid)
674 {
675         ENTRY;
676
677         if (exp->exp_connection && exp->exp_imp_reverse) {
678                 struct lustre_handle *hdl;
679                 struct obd_device *target;
680
681                 hdl = &exp->exp_imp_reverse->imp_remote_handle;
682                 target = exp->exp_obd;
683
684                 /* Might be a re-connect after a partition. */
685                 if (!memcmp(&conn->cookie, &hdl->cookie, sizeof conn->cookie)) {
686                         if (target->obd_recovering) {
687                                 int timeout = cfs_duration_sec(cfs_time_sub(
688                                         cfs_timer_deadline(
689                                         &target->obd_recovery_timer),
690                                         cfs_time_current()));
691
692                                 LCONSOLE_WARN("%s: Client %s (at %s) reconnect"
693                                         "ing, waiting for %d clients in recov"
694                                         "ery for %d:%.02d\n", target->obd_name,
695                                         obd_uuid2str(&exp->exp_client_uuid),
696                                         obd_export_nid2str(exp),
697                                         target->obd_max_recoverable_clients,
698                                         timeout / 60, timeout % 60);
699                         } else {
700                                 LCONSOLE_WARN("%s: Client %s (at %s) "
701                                         "reconnecting\n", target->obd_name,
702                                         obd_uuid2str(&exp->exp_client_uuid),
703                                         obd_export_nid2str(exp));
704                         }
705
706                         conn->cookie = exp->exp_handle.h_cookie;
707                         /* target_handle_connect() treats EALREADY and
708                          * -EALREADY differently.  EALREADY means we are
709                          * doing a valid reconnect from the same client. */
710                         RETURN(EALREADY);
711                 } else {
712                         LCONSOLE_WARN("%s: already connected client %s (at %s) "
713                                       "with handle "LPX64". Rejecting client "
714                                       "with the same UUID trying to reconnect "
715                                       "with handle "LPX64"\n", target->obd_name,
716                                       obd_uuid2str(&exp->exp_client_uuid),
717                                       obd_export_nid2str(exp),
718                                       hdl->cookie, conn->cookie);
719                         memset(conn, 0, sizeof *conn);
720                         /* target_handle_connect() treats EALREADY and
721                          * -EALREADY differently.  -EALREADY is an error
722                          * (same UUID, different handle). */
723                         RETURN(-EALREADY);
724                 }
725         }
726
727         conn->cookie = exp->exp_handle.h_cookie;
728         CDEBUG(D_HA, "connect export for UUID '%s' at %p, cookie "LPX64"\n",
729                cluuid->uuid, exp, conn->cookie);
730         RETURN(0);
731 }
732
733 void target_client_add_cb(struct obd_device *obd, __u64 transno, void *cb_data,
734                           int error)
735 {
736         struct obd_export *exp = cb_data;
737
738         CDEBUG(D_RPCTRACE, "%s: committing for initial connect of %s\n",
739                obd->obd_name, exp->exp_client_uuid.uuid);
740
741         spin_lock(&exp->exp_lock);
742         exp->exp_need_sync = 0;
743         spin_unlock(&exp->exp_lock);
744         class_export_cb_put(exp);
745 }
746 EXPORT_SYMBOL(target_client_add_cb);
747
748 #ifdef __KERNEL__
749 static void
750 check_and_start_recovery_timer(struct obd_device *obd,
751                                struct ptlrpc_request *req, int new_client);
752 #else
753 static inline void
754 check_and_start_recovery_timer(struct obd_device *obd,
755                                struct ptlrpc_request *req, int new_client)
756 {
757 }
758 #endif
759
760 int target_handle_connect(struct ptlrpc_request *req)
761 {
762         struct obd_device *target = NULL, *targref = NULL;
763         struct obd_export *export = NULL;
764         struct obd_import *revimp;
765         struct obd_import *tmp_imp = NULL;
766         struct lustre_handle conn;
767         struct lustre_handle *tmp;
768         struct obd_uuid tgtuuid;
769         struct obd_uuid cluuid;
770         struct obd_uuid remote_uuid;
771         char *str;
772         int rc = 0;
773         char *target_start;
774         int target_len;
775         bool     mds_conn = false, lw_client = false;
776         struct obd_connect_data *data, *tmpdata;
777         int size, tmpsize;
778         lnet_nid_t *client_nid = NULL;
779         ENTRY;
780
781         OBD_RACE(OBD_FAIL_TGT_CONN_RACE);
782
783         str = req_capsule_client_get(&req->rq_pill, &RMF_TGTUUID);
784         if (str == NULL) {
785                 DEBUG_REQ(D_ERROR, req, "bad target UUID for connect");
786                 GOTO(out, rc = -EINVAL);
787         }
788
789         obd_str2uuid(&tgtuuid, str);
790         target = class_uuid2obd(&tgtuuid);
791         if (!target)
792                 target = class_name2obd(str);
793
794         if (!target) {
795                 deuuidify(str, NULL, &target_start, &target_len);
796                 LCONSOLE_ERROR_MSG(0x137, "%s: not available for connect "
797                                    "from %s (no target)\n", str,
798                                    libcfs_nid2str(req->rq_peer.nid));
799                 GOTO(out, rc = -ENODEV);
800         }
801
802         spin_lock(&target->obd_dev_lock);
803         if (target->obd_stopping || !target->obd_set_up) {
804                 spin_unlock(&target->obd_dev_lock);
805
806                 deuuidify(str, NULL, &target_start, &target_len);
807                 LCONSOLE_INFO("%.*s: Not available for connect from %s (%s)\n",
808                               target_len, target_start,
809                               libcfs_nid2str(req->rq_peer.nid),
810                               (target->obd_stopping ?
811                                "stopping" : "not set up"));
812                 GOTO(out, rc = -ENODEV);
813         }
814
815         if (target->obd_no_conn) {
816                 spin_unlock(&target->obd_dev_lock);
817
818                 CDEBUG(D_INFO, "%s: Temporarily refusing client connection "
819                                "from %s\n", target->obd_name,
820                                libcfs_nid2str(req->rq_peer.nid));
821                 GOTO(out, rc = -EAGAIN);
822         }
823
824         /* Make sure the target isn't cleaned up while we're here. Yes,
825          * there's still a race between the above check and our incref here.
826          * Really, class_uuid2obd should take the ref. */
827         targref = class_incref(target, __FUNCTION__, cfs_current());
828
829         target->obd_conn_inprogress++;
830         spin_unlock(&target->obd_dev_lock);
831
832         str = req_capsule_client_get(&req->rq_pill, &RMF_CLUUID);
833         if (str == NULL) {
834                 DEBUG_REQ(D_ERROR, req, "bad client UUID for connect");
835                 GOTO(out, rc = -EINVAL);
836         }
837
838         obd_str2uuid(&cluuid, str);
839
840         /* XXX Extract a nettype and format accordingly. */
841         switch (sizeof(lnet_nid_t)) {
842         /* NB the casts only avoid compiler warnings. */
843         case 8:
844                 snprintf(remote_uuid.uuid, sizeof remote_uuid,
845                          "NET_"LPX64"_UUID", (__u64)req->rq_peer.nid);
846                 break;
847         case 4:
848                 snprintf(remote_uuid.uuid, sizeof remote_uuid,
849                          "NET_%x_UUID", (__u32)req->rq_peer.nid);
850                 break;
851         default:
852                 LBUG();
853         }
854
855         tmp = req_capsule_client_get(&req->rq_pill, &RMF_CONN);
856         if (tmp == NULL)
857                 GOTO(out, rc = -EPROTO);
858
859         conn = *tmp;
860
861         size = req_capsule_get_size(&req->rq_pill, &RMF_CONNECT_DATA,
862                                     RCL_CLIENT);
863         data = req_capsule_client_get(&req->rq_pill, &RMF_CONNECT_DATA);
864         if (!data)
865                 GOTO(out, rc = -EPROTO);
866
867         rc = req_capsule_server_pack(&req->rq_pill);
868         if (rc)
869                 GOTO(out, rc);
870
871         if (lustre_msg_get_op_flags(req->rq_reqmsg) & MSG_CONNECT_LIBCLIENT) {
872                 if (!data) {
873                         DEBUG_REQ(D_WARNING, req, "Refusing old (unversioned) "
874                                   "libclient connection attempt");
875                         GOTO(out, rc = -EPROTO);
876                 } else if (data->ocd_version < LUSTRE_VERSION_CODE -
877                                                LUSTRE_VERSION_ALLOWED_OFFSET ||
878                            data->ocd_version > LUSTRE_VERSION_CODE +
879                                                LUSTRE_VERSION_ALLOWED_OFFSET) {
880                         DEBUG_REQ(D_WARNING, req, "Refusing %s (%d.%d.%d.%d) "
881                                   "libclient connection attempt",
882                                   data->ocd_version < LUSTRE_VERSION_CODE ?
883                                   "old" : "new",
884                                   OBD_OCD_VERSION_MAJOR(data->ocd_version),
885                                   OBD_OCD_VERSION_MINOR(data->ocd_version),
886                                   OBD_OCD_VERSION_PATCH(data->ocd_version),
887                                   OBD_OCD_VERSION_FIX(data->ocd_version));
888                         data = req_capsule_server_sized_get(&req->rq_pill,
889                                                         &RMF_CONNECT_DATA,
890                                     offsetof(typeof(*data), ocd_version) +
891                                              sizeof(data->ocd_version));
892                         if (data) {
893                                 data->ocd_connect_flags = OBD_CONNECT_VERSION;
894                                 data->ocd_version = LUSTRE_VERSION_CODE;
895                         }
896                         GOTO(out, rc = -EPROTO);
897                 }
898         }
899
900         if ((lustre_msg_get_op_flags(req->rq_reqmsg) & MSG_CONNECT_INITIAL) &&
901             (data->ocd_connect_flags & OBD_CONNECT_MDS))
902                 mds_conn = true;
903
904         if ((data->ocd_connect_flags & OBD_CONNECT_LIGHTWEIGHT) != 0)
905                 lw_client = true;
906
907         /* lctl gets a backstage, all-access pass. */
908         if (obd_uuid_equals(&cluuid, &target->obd_uuid))
909                 goto dont_check_exports;
910
911         export = cfs_hash_lookup(target->obd_uuid_hash, &cluuid);
912         if (!export)
913                 goto no_export;
914
915         /* We've found an export in the hash. */
916
917         spin_lock(&export->exp_lock);
918
919         if (export->exp_connecting) { /* bug 9635, et. al. */
920                 spin_unlock(&export->exp_lock);
921                 LCONSOLE_WARN("%s: Export %p already connecting from %s\n",
922                               export->exp_obd->obd_name, export,
923                               libcfs_nid2str(req->rq_peer.nid));
924                 class_export_put(export);
925                 export = NULL;
926                 rc = -EALREADY;
927         } else if (mds_conn && export->exp_connection) {
928                 spin_unlock(&export->exp_lock);
929                 if (req->rq_peer.nid != export->exp_connection->c_peer.nid)
930                         /* MDS reconnected after failover. */
931                         LCONSOLE_WARN("%s: Received MDS connection from "
932                             "%s, removing former export from %s\n",
933                             target->obd_name, libcfs_nid2str(req->rq_peer.nid),
934                             libcfs_nid2str(export->exp_connection->c_peer.nid));
935                 else
936                         /* New MDS connection from the same NID. */
937                         LCONSOLE_WARN("%s: Received new MDS connection from "
938                             "%s, removing former export from same NID\n",
939                             target->obd_name, libcfs_nid2str(req->rq_peer.nid));
940                 class_fail_export(export);
941                 class_export_put(export);
942                 export = NULL;
943                 rc = 0;
944         } else if (export->exp_connection != NULL &&
945                    req->rq_peer.nid != export->exp_connection->c_peer.nid &&
946                    (lustre_msg_get_op_flags(req->rq_reqmsg) &
947                     MSG_CONNECT_INITIAL)) {
948                 spin_unlock(&export->exp_lock);
949                 /* In MDS failover we have static UUID but NID can change. */
950                 LCONSOLE_WARN("%s: Client %s seen on new nid %s when "
951                               "existing nid %s is already connected\n",
952                               target->obd_name, cluuid.uuid,
953                               libcfs_nid2str(req->rq_peer.nid),
954                               libcfs_nid2str(
955                                       export->exp_connection->c_peer.nid));
956                 rc = -EALREADY;
957                 class_export_put(export);
958                 export = NULL;
959         } else {
960                 export->exp_connecting = 1;
961                 spin_unlock(&export->exp_lock);
962                 LASSERT(export->exp_obd == target);
963
964                 rc = target_handle_reconnect(&conn, export, &cluuid);
965         }
966
967         /* If we found an export, we already unlocked. */
968         if (!export) {
969 no_export:
970                 OBD_FAIL_TIMEOUT(OBD_FAIL_TGT_DELAY_CONNECT, 2 * obd_timeout);
971         } else if (req->rq_export == NULL &&
972                    cfs_atomic_read(&export->exp_rpc_count) > 0) {
973                 LCONSOLE_WARN("%s: Client %s (at %s) refused connection, "
974                               "still busy with %d references\n",
975                               target->obd_name, cluuid.uuid,
976                               libcfs_nid2str(req->rq_peer.nid),
977                               cfs_atomic_read(&export->exp_refcount));
978                 GOTO(out, rc = -EBUSY);
979         } else if (req->rq_export != NULL &&
980                    (cfs_atomic_read(&export->exp_rpc_count) > 1)) {
981                 /* The current connect RPC has increased exp_rpc_count. */
982                 LCONSOLE_WARN("%s: Client %s (at %s) refused reconnection, "
983                               "still busy with %d active RPCs\n",
984                               target->obd_name, cluuid.uuid,
985                               libcfs_nid2str(req->rq_peer.nid),
986                               cfs_atomic_read(&export->exp_rpc_count) - 1);
987                 spin_lock(&export->exp_lock);
988                 if (req->rq_export->exp_conn_cnt <
989                     lustre_msg_get_conn_cnt(req->rq_reqmsg))
990                         /* try to abort active requests */
991                         req->rq_export->exp_abort_active_req = 1;
992                 spin_unlock(&export->exp_lock);
993                 GOTO(out, rc = -EBUSY);
994         } else if (lustre_msg_get_conn_cnt(req->rq_reqmsg) == 1) {
995                 if (!strstr(cluuid.uuid, "mdt"))
996                         LCONSOLE_WARN("%s: Rejecting reconnect from the "
997                                       "known client %s (at %s) because it "
998                                       "is indicating it is a new client",
999                                       target->obd_name, cluuid.uuid,
1000                                       libcfs_nid2str(req->rq_peer.nid));
1001                 GOTO(out, rc = -EALREADY);
1002         } else {
1003                 OBD_FAIL_TIMEOUT(OBD_FAIL_TGT_DELAY_RECONNECT, 2 * obd_timeout);
1004         }
1005
1006         if (rc < 0) {
1007                 GOTO(out, rc);
1008         }
1009
1010         CDEBUG(D_HA, "%s: connection from %s@%s %st"LPU64" exp %p cur %ld last %ld\n",
1011                target->obd_name, cluuid.uuid, libcfs_nid2str(req->rq_peer.nid),
1012               target->obd_recovering ? "recovering/" : "", data->ocd_transno,
1013               export, (long)cfs_time_current_sec(),
1014               export ? (long)export->exp_last_request_time : 0);
1015
1016         /* If this is the first time a client connects, reset the recovery
1017          * timer. Discard lightweight connections which might be local. */
1018         if (!lw_client && rc == 0 && target->obd_recovering)
1019                 check_and_start_recovery_timer(target, req, export == NULL);
1020
1021         /* We want to handle EALREADY but *not* -EALREADY from
1022          * target_handle_reconnect(), return reconnection state in a flag. */
1023         if (rc == EALREADY) {
1024                 lustre_msg_add_op_flags(req->rq_repmsg, MSG_CONNECT_RECONNECT);
1025                 rc = 0;
1026         } else {
1027                 LASSERT(rc == 0);
1028         }
1029
1030         /* Tell the client if we support replayable requests. */
1031         if (target->obd_replayable)
1032                 lustre_msg_add_op_flags(req->rq_repmsg, MSG_CONNECT_REPLAYABLE);
1033         client_nid = &req->rq_peer.nid;
1034
1035         if (export == NULL) {
1036                 /* allow lightweight connections during recovery */
1037                 if (target->obd_recovering && !lw_client) {
1038                         cfs_time_t t;
1039                         int     c; /* connected */
1040                         int     i; /* in progress */
1041                         int     k; /* known */
1042                         int     s; /* stale/evicted */
1043
1044                         c = cfs_atomic_read(&target->obd_connected_clients);
1045                         i = cfs_atomic_read(&target->obd_lock_replay_clients);
1046                         k = target->obd_max_recoverable_clients;
1047                         s = target->obd_stale_clients;
1048                         t = cfs_timer_deadline(&target->obd_recovery_timer);
1049                         t = cfs_time_sub(t, cfs_time_current());
1050                         t = cfs_duration_sec(t);
1051                         LCONSOLE_WARN("%s: Denying connection for new client "
1052                                       "%s (at %s), waiting for all %d known "
1053                                       "clients (%d recovered, %d in progress, "
1054                                       "and %d evicted) to recover in %d:%.02d\n",
1055                                       target->obd_name, cluuid.uuid,
1056                                       libcfs_nid2str(req->rq_peer.nid), k,
1057                                       c - i, i, s, (int)t / 60,
1058                                       (int)t % 60);
1059                         rc = -EBUSY;
1060                 } else {
1061 dont_check_exports:
1062                         rc = obd_connect(req->rq_svc_thread->t_env,
1063                                          &export, target, &cluuid, data,
1064                                          client_nid);
1065                         if (rc == 0)
1066                                 conn.cookie = export->exp_handle.h_cookie;
1067                 }
1068         } else {
1069                 rc = obd_reconnect(req->rq_svc_thread->t_env,
1070                                    export, target, &cluuid, data, client_nid);
1071         }
1072         if (rc)
1073                 GOTO(out, rc);
1074
1075 #if LUSTRE_VERSION_CODE < OBD_OCD_VERSION(2, 6, 50, 0)
1076         /* 2.2.0 clients always swab nidtbl entries due to a bug, so server
1077          * will do the swabbing for if the client is using the same endianness.
1078          *
1079          * This fixup is version-limited, because we don't want to carry the
1080          * OBD_CONNECT_MNE_SWAB flag around forever, just so long as we need
1081          * interop with unpatched 2.2 clients.  For newer clients, servers
1082          * will never do MNE swabbing, let the client handle that.  LU-1644 */
1083         export->exp_need_mne_swab = !ptlrpc_req_need_swab(req) &&
1084                         !(data->ocd_connect_flags & OBD_CONNECT_MNE_SWAB);
1085 #else
1086 #warning "LU-1644: Remove old OBD_CONNECT_MNE_SWAB fixup and exp_need_mne_swab"
1087 #endif
1088
1089         LASSERT(target->u.obt.obt_magic == OBT_MAGIC);
1090         data->ocd_instance = target->u.obt.obt_instance;
1091
1092         /* Return only the parts of obd_connect_data that we understand, so the
1093          * client knows that we don't understand the rest. */
1094         if (data) {
1095                 tmpsize = req_capsule_get_size(&req->rq_pill, &RMF_CONNECT_DATA,
1096                                                RCL_SERVER);
1097                 tmpdata = req_capsule_server_get(&req->rq_pill,
1098                                                  &RMF_CONNECT_DATA);
1099                 /* Don't use struct assignment here, because the client reply
1100                  * buffer may be smaller/larger than the local struct
1101                  * obd_connect_data. */
1102                 memcpy(tmpdata, data, min(tmpsize, size));
1103         }
1104
1105         /* If all else goes well, this is our RPC return code. */
1106         req->rq_status = 0;
1107
1108         lustre_msg_set_handle(req->rq_repmsg, &conn);
1109
1110         /* If the client and the server are the same node, we will already
1111          * have an export that really points to the client's DLM export,
1112          * because we have a shared handles table.
1113          *
1114          * XXX this will go away when shaver stops sending the "connect" handle
1115          * in the real "remote handle" field of the request --phik 24 Apr 2003
1116          */
1117         ptlrpc_request_change_export(req, export);
1118
1119         spin_lock(&export->exp_lock);
1120         if (export->exp_conn_cnt >= lustre_msg_get_conn_cnt(req->rq_reqmsg)) {
1121                 spin_unlock(&export->exp_lock);
1122                 CDEBUG(D_RPCTRACE, "%s: %s already connected at greater "
1123                        "or equal conn_cnt: %d >= %d\n",
1124                        cluuid.uuid, libcfs_nid2str(req->rq_peer.nid),
1125                        export->exp_conn_cnt,
1126                        lustre_msg_get_conn_cnt(req->rq_reqmsg));
1127
1128                 GOTO(out, rc = -EALREADY);
1129         }
1130         LASSERT(lustre_msg_get_conn_cnt(req->rq_reqmsg) > 0);
1131         export->exp_conn_cnt = lustre_msg_get_conn_cnt(req->rq_reqmsg);
1132         export->exp_abort_active_req = 0;
1133
1134         /* Don't evict liblustre clients for not pinging. */
1135         if (lustre_msg_get_op_flags(req->rq_reqmsg) & MSG_CONNECT_LIBCLIENT) {
1136                 export->exp_libclient = 1;
1137                 spin_unlock(&export->exp_lock);
1138
1139                 spin_lock(&target->obd_dev_lock);
1140                 cfs_list_del_init(&export->exp_obd_chain_timed);
1141                 spin_unlock(&target->obd_dev_lock);
1142         } else {
1143                 spin_unlock(&export->exp_lock);
1144         }
1145
1146         if (export->exp_connection != NULL) {
1147                 /* Check to see if connection came from another NID. */
1148                 if ((export->exp_connection->c_peer.nid != req->rq_peer.nid) &&
1149                     !cfs_hlist_unhashed(&export->exp_nid_hash))
1150                         cfs_hash_del(export->exp_obd->obd_nid_hash,
1151                                      &export->exp_connection->c_peer.nid,
1152                                      &export->exp_nid_hash);
1153
1154                 ptlrpc_connection_put(export->exp_connection);
1155         }
1156
1157         export->exp_connection = ptlrpc_connection_get(req->rq_peer,
1158                                                        req->rq_self,
1159                                                        &remote_uuid);
1160         if (cfs_hlist_unhashed(&export->exp_nid_hash)) {
1161                 cfs_hash_add(export->exp_obd->obd_nid_hash,
1162                              &export->exp_connection->c_peer.nid,
1163                              &export->exp_nid_hash);
1164         }
1165
1166         if (target->obd_recovering && !export->exp_in_recovery && !lw_client) {
1167                 int has_transno;
1168                 __u64 transno = data->ocd_transno;
1169
1170                 spin_lock(&export->exp_lock);
1171                 /* possible race with class_disconnect_stale_exports,
1172                  * export may be already in the eviction process */
1173                 if (export->exp_failed) {
1174                         spin_unlock(&export->exp_lock);
1175                         GOTO(out, rc = -ENODEV);
1176                 }
1177                 export->exp_in_recovery = 1;
1178                 export->exp_req_replay_needed = 1;
1179                 export->exp_lock_replay_needed = 1;
1180                 spin_unlock(&export->exp_lock);
1181
1182                 has_transno = !!(lustre_msg_get_op_flags(req->rq_reqmsg) &
1183                                  MSG_CONNECT_TRANSNO);
1184                 if (has_transno && transno == 0)
1185                         CWARN("Connect with zero transno!\n");
1186
1187                 if (has_transno && transno > 0 &&
1188                     transno < target->obd_next_recovery_transno &&
1189                     transno > target->obd_last_committed) {
1190                         /* Another way is to use cmpxchg() to be lock-free. */
1191                         spin_lock(&target->obd_recovery_task_lock);
1192                         if (transno < target->obd_next_recovery_transno)
1193                                 target->obd_next_recovery_transno = transno;
1194                         spin_unlock(&target->obd_recovery_task_lock);
1195                 }
1196
1197                 cfs_atomic_inc(&target->obd_req_replay_clients);
1198                 cfs_atomic_inc(&target->obd_lock_replay_clients);
1199                 if (cfs_atomic_inc_return(&target->obd_connected_clients) ==
1200                     target->obd_max_recoverable_clients)
1201                         cfs_waitq_signal(&target->obd_next_transno_waitq);
1202         }
1203
1204         /* Tell the client we're in recovery, when client is involved in it. */
1205         if (target->obd_recovering && !lw_client)
1206                 lustre_msg_add_op_flags(req->rq_repmsg, MSG_CONNECT_RECOVERING);
1207
1208         tmp = req_capsule_client_get(&req->rq_pill, &RMF_CONN);
1209         conn = *tmp;
1210
1211         /* Return -ENOTCONN in case of errors to let client reconnect. */
1212         revimp = class_new_import(target);
1213         if (revimp == NULL) {
1214                 CERROR("fail to alloc new reverse import.\n");
1215                 GOTO(out, rc = -ENOTCONN);
1216         }
1217
1218         spin_lock(&export->exp_lock);
1219         if (export->exp_imp_reverse != NULL)
1220                 /* destroyed import can be still referenced in ctxt */
1221                 tmp_imp = export->exp_imp_reverse;
1222         export->exp_imp_reverse = revimp;
1223         spin_unlock(&export->exp_lock);
1224
1225         revimp->imp_connection = ptlrpc_connection_addref(export->exp_connection);
1226         revimp->imp_client = &export->exp_obd->obd_ldlm_client;
1227         revimp->imp_remote_handle = conn;
1228         revimp->imp_dlm_fake = 1;
1229         revimp->imp_state = LUSTRE_IMP_FULL;
1230
1231         /* Unknown versions will be caught in
1232          * ptlrpc_handle_server_req_in->lustre_unpack_msg(). */
1233         revimp->imp_msg_magic = req->rq_reqmsg->lm_magic;
1234
1235         if ((data->ocd_connect_flags & OBD_CONNECT_AT) &&
1236             (revimp->imp_msg_magic != LUSTRE_MSG_MAGIC_V1))
1237                 revimp->imp_msghdr_flags |= MSGHDR_AT_SUPPORT;
1238         else
1239                 revimp->imp_msghdr_flags &= ~MSGHDR_AT_SUPPORT;
1240
1241         if ((data->ocd_connect_flags & OBD_CONNECT_FULL20) &&
1242             (revimp->imp_msg_magic != LUSTRE_MSG_MAGIC_V1))
1243                 revimp->imp_msghdr_flags |= MSGHDR_CKSUM_INCOMPAT18;
1244         else
1245                 revimp->imp_msghdr_flags &= ~MSGHDR_CKSUM_INCOMPAT18;
1246
1247         rc = sptlrpc_import_sec_adapt(revimp, req->rq_svc_ctx, &req->rq_flvr);
1248         if (rc) {
1249                 CERROR("Failed to get sec for reverse import: %d\n", rc);
1250                 spin_lock(&export->exp_lock);
1251                 export->exp_imp_reverse = NULL;
1252                 spin_unlock(&export->exp_lock);
1253                 class_destroy_import(revimp);
1254         }
1255
1256         class_import_put(revimp);
1257
1258 out:
1259         if (tmp_imp != NULL)
1260                 client_destroy_import(tmp_imp);
1261         if (export) {
1262                 spin_lock(&export->exp_lock);
1263                 export->exp_connecting = 0;
1264                 spin_unlock(&export->exp_lock);
1265
1266                 class_export_put(export);
1267         }
1268         if (targref) {
1269                 spin_lock(&target->obd_dev_lock);
1270                 target->obd_conn_inprogress--;
1271                 spin_unlock(&target->obd_dev_lock);
1272
1273                 class_decref(targref, __func__, cfs_current());
1274         }
1275         if (rc)
1276                 req->rq_status = rc;
1277         RETURN(rc);
1278 }
1279 EXPORT_SYMBOL(target_handle_connect);
1280
1281 int target_handle_disconnect(struct ptlrpc_request *req)
1282 {
1283         int rc;
1284         ENTRY;
1285
1286         rc = req_capsule_server_pack(&req->rq_pill);
1287         if (rc)
1288                 RETURN(rc);
1289
1290         /* Keep the rq_export around so we can send the reply. */
1291         req->rq_status = obd_disconnect(class_export_get(req->rq_export));
1292
1293         RETURN(0);
1294 }
1295 EXPORT_SYMBOL(target_handle_disconnect);
1296
1297 void target_destroy_export(struct obd_export *exp)
1298 {
1299         struct obd_import       *imp = NULL;
1300         /* exports created from last_rcvd data, and "fake"
1301            exports created by lctl don't have an import */
1302         spin_lock(&exp->exp_lock);
1303         if (exp->exp_imp_reverse != NULL) {
1304                 imp = exp->exp_imp_reverse;
1305                 exp->exp_imp_reverse = NULL;
1306         }
1307         spin_unlock(&exp->exp_lock);
1308         if (imp != NULL)
1309                 client_destroy_import(imp);
1310
1311         LASSERT_ATOMIC_ZERO(&exp->exp_locks_count);
1312         LASSERT_ATOMIC_ZERO(&exp->exp_rpc_count);
1313         LASSERT_ATOMIC_ZERO(&exp->exp_cb_count);
1314         LASSERT_ATOMIC_ZERO(&exp->exp_replay_count);
1315 }
1316 EXPORT_SYMBOL(target_destroy_export);
1317
1318 /*
1319  * Recovery functions
1320  */
1321 static void target_request_copy_get(struct ptlrpc_request *req)
1322 {
1323         class_export_rpc_inc(req->rq_export);
1324         LASSERT(cfs_list_empty(&req->rq_list));
1325         CFS_INIT_LIST_HEAD(&req->rq_replay_list);
1326
1327         /* Increase refcount to keep request in queue. */
1328         cfs_atomic_inc(&req->rq_refcount);
1329         /* Let export know it has replays to be handled. */
1330         cfs_atomic_inc(&req->rq_export->exp_replay_count);
1331 }
1332
1333 static void target_request_copy_put(struct ptlrpc_request *req)
1334 {
1335         LASSERT(cfs_list_empty(&req->rq_replay_list));
1336         LASSERT_ATOMIC_POS(&req->rq_export->exp_replay_count);
1337
1338         cfs_atomic_dec(&req->rq_export->exp_replay_count);
1339         class_export_rpc_dec(req->rq_export);
1340         ptlrpc_server_drop_request(req);
1341 }
1342
1343 static int target_exp_enqueue_req_replay(struct ptlrpc_request *req)
1344 {
1345         __u64                  transno = lustre_msg_get_transno(req->rq_reqmsg);
1346         struct obd_export     *exp = req->rq_export;
1347         struct ptlrpc_request *reqiter;
1348         int                    dup = 0;
1349
1350         LASSERT(exp);
1351
1352         spin_lock(&exp->exp_lock);
1353         cfs_list_for_each_entry(reqiter, &exp->exp_req_replay_queue,
1354                                 rq_replay_list) {
1355                 if (lustre_msg_get_transno(reqiter->rq_reqmsg) == transno) {
1356                         dup = 1;
1357                         break;
1358                 }
1359         }
1360
1361         if (dup) {
1362                 /* We expect it with RESENT and REPLAY flags. */
1363                 if ((lustre_msg_get_flags(req->rq_reqmsg) &
1364                      (MSG_RESENT | MSG_REPLAY)) != (MSG_RESENT | MSG_REPLAY))
1365                         CERROR("invalid flags %x of resent replay\n",
1366                                lustre_msg_get_flags(req->rq_reqmsg));
1367         } else {
1368                 cfs_list_add_tail(&req->rq_replay_list,
1369                                   &exp->exp_req_replay_queue);
1370         }
1371
1372         spin_unlock(&exp->exp_lock);
1373         return dup;
1374 }
1375
1376 static void target_exp_dequeue_req_replay(struct ptlrpc_request *req)
1377 {
1378         LASSERT(!cfs_list_empty(&req->rq_replay_list));
1379         LASSERT(req->rq_export);
1380
1381         spin_lock(&req->rq_export->exp_lock);
1382         cfs_list_del_init(&req->rq_replay_list);
1383         spin_unlock(&req->rq_export->exp_lock);
1384 }
1385
1386 #ifdef __KERNEL__
1387 static void target_finish_recovery(struct obd_device *obd)
1388 {
1389         ENTRY;
1390
1391         /* Only log a recovery message when recovery has occurred. */
1392         if (obd->obd_recovery_start) {
1393                 time_t elapsed_time = max_t(time_t, 1, cfs_time_current_sec() -
1394                                         obd->obd_recovery_start);
1395                 LCONSOLE_INFO("%s: Recovery over after %d:%.02d, of %d clients "
1396                         "%d recovered and %d %s evicted.\n", obd->obd_name,
1397                         (int)elapsed_time / 60, (int)elapsed_time % 60,
1398                         obd->obd_max_recoverable_clients,
1399                         cfs_atomic_read(&obd->obd_connected_clients),
1400                         obd->obd_stale_clients,
1401                         obd->obd_stale_clients == 1 ? "was" : "were");
1402         }
1403
1404         ldlm_reprocess_all_ns(obd->obd_namespace);
1405         spin_lock(&obd->obd_recovery_task_lock);
1406         if (!cfs_list_empty(&obd->obd_req_replay_queue) ||
1407             !cfs_list_empty(&obd->obd_lock_replay_queue) ||
1408             !cfs_list_empty(&obd->obd_final_req_queue)) {
1409                 CERROR("%s: Recovery queues ( %s%s%s) are not empty\n",
1410                        obd->obd_name,
1411                        cfs_list_empty(&obd->obd_req_replay_queue) ? "" : "req ",
1412                        cfs_list_empty(&obd->obd_lock_replay_queue) ? \
1413                                "" : "lock ",
1414                        cfs_list_empty(&obd->obd_final_req_queue) ? \
1415                                "" : "final ");
1416                 spin_unlock(&obd->obd_recovery_task_lock);
1417                 LBUG();
1418         }
1419         spin_unlock(&obd->obd_recovery_task_lock);
1420
1421         obd->obd_recovery_end = cfs_time_current_sec();
1422
1423         /* When recovery finished, cleanup orphans on MDS and OST. */
1424         if (OBT(obd) && OBP(obd, postrecov)) {
1425                 int rc = OBP(obd, postrecov)(obd);
1426                 if (rc < 0)
1427                         LCONSOLE_WARN("%s: Post recovery failed, rc %d\n",
1428                                       obd->obd_name, rc);
1429         }
1430         EXIT;
1431 }
1432
1433 static void abort_req_replay_queue(struct obd_device *obd)
1434 {
1435         struct ptlrpc_request *req, *n;
1436         cfs_list_t abort_list;
1437
1438         CFS_INIT_LIST_HEAD(&abort_list);
1439         spin_lock(&obd->obd_recovery_task_lock);
1440         cfs_list_splice_init(&obd->obd_req_replay_queue, &abort_list);
1441         spin_unlock(&obd->obd_recovery_task_lock);
1442         cfs_list_for_each_entry_safe(req, n, &abort_list, rq_list) {
1443                 DEBUG_REQ(D_WARNING, req, "aborted:");
1444                 req->rq_status = -ENOTCONN;
1445                 if (ptlrpc_error(req)) {
1446                         DEBUG_REQ(D_ERROR, req,
1447                                   "failed abort_req_reply; skipping");
1448                 }
1449                 target_exp_dequeue_req_replay(req);
1450                 target_request_copy_put(req);
1451         }
1452 }
1453
1454 static void abort_lock_replay_queue(struct obd_device *obd)
1455 {
1456         struct ptlrpc_request *req, *n;
1457         cfs_list_t abort_list;
1458
1459         CFS_INIT_LIST_HEAD(&abort_list);
1460         spin_lock(&obd->obd_recovery_task_lock);
1461         cfs_list_splice_init(&obd->obd_lock_replay_queue, &abort_list);
1462         spin_unlock(&obd->obd_recovery_task_lock);
1463         cfs_list_for_each_entry_safe(req, n, &abort_list, rq_list){
1464                 DEBUG_REQ(D_ERROR, req, "aborted:");
1465                 req->rq_status = -ENOTCONN;
1466                 if (ptlrpc_error(req)) {
1467                         DEBUG_REQ(D_ERROR, req,
1468                                   "failed abort_lock_reply; skipping");
1469                 }
1470                 target_request_copy_put(req);
1471         }
1472 }
1473
1474 /* Called from a cleanup function if the device is being cleaned up
1475    forcefully.  The exports should all have been disconnected already,
1476    the only thing left to do is
1477      - clear the recovery flags
1478      - cancel the timer
1479      - free queued requests and replies, but don't send replies
1480    Because the obd_stopping flag is set, no new requests should be received.
1481
1482 */
1483 void target_cleanup_recovery(struct obd_device *obd)
1484 {
1485         struct ptlrpc_request *req, *n;
1486         cfs_list_t clean_list;
1487         ENTRY;
1488
1489         CFS_INIT_LIST_HEAD(&clean_list);
1490         spin_lock(&obd->obd_dev_lock);
1491         if (!obd->obd_recovering) {
1492                 spin_unlock(&obd->obd_dev_lock);
1493                 EXIT;
1494                 return;
1495         }
1496         obd->obd_recovering = obd->obd_abort_recovery = 0;
1497         spin_unlock(&obd->obd_dev_lock);
1498
1499         spin_lock(&obd->obd_recovery_task_lock);
1500         target_cancel_recovery_timer(obd);
1501         cfs_list_splice_init(&obd->obd_req_replay_queue, &clean_list);
1502         spin_unlock(&obd->obd_recovery_task_lock);
1503
1504         cfs_list_for_each_entry_safe(req, n, &clean_list, rq_list) {
1505                 LASSERT(req->rq_reply_state == 0);
1506                 target_exp_dequeue_req_replay(req);
1507                 target_request_copy_put(req);
1508         }
1509
1510         spin_lock(&obd->obd_recovery_task_lock);
1511         cfs_list_splice_init(&obd->obd_lock_replay_queue, &clean_list);
1512         cfs_list_splice_init(&obd->obd_final_req_queue, &clean_list);
1513         spin_unlock(&obd->obd_recovery_task_lock);
1514
1515         cfs_list_for_each_entry_safe(req, n, &clean_list, rq_list){
1516                 LASSERT(req->rq_reply_state == 0);
1517                 target_request_copy_put(req);
1518         }
1519
1520         EXIT;
1521 }
1522 EXPORT_SYMBOL(target_cleanup_recovery);
1523
1524 /* obd_recovery_task_lock should be held */
1525 void target_cancel_recovery_timer(struct obd_device *obd)
1526 {
1527         CDEBUG(D_HA, "%s: cancel recovery timer\n", obd->obd_name);
1528         cfs_timer_disarm(&obd->obd_recovery_timer);
1529 }
1530 EXPORT_SYMBOL(target_cancel_recovery_timer);
1531
1532 static void target_start_recovery_timer(struct obd_device *obd)
1533 {
1534         if (obd->obd_recovery_start != 0)
1535                 return;
1536
1537         spin_lock(&obd->obd_dev_lock);
1538         if (!obd->obd_recovering || obd->obd_abort_recovery) {
1539                 spin_unlock(&obd->obd_dev_lock);
1540                 return;
1541         }
1542
1543         LASSERT(obd->obd_recovery_timeout != 0);
1544
1545         if (obd->obd_recovery_start != 0) {
1546                 spin_unlock(&obd->obd_dev_lock);
1547                 return;
1548         }
1549
1550         cfs_timer_arm(&obd->obd_recovery_timer,
1551                       cfs_time_shift(obd->obd_recovery_timeout));
1552         obd->obd_recovery_start = cfs_time_current_sec();
1553         spin_unlock(&obd->obd_dev_lock);
1554
1555         LCONSOLE_WARN("%s: Will be in recovery for at least %d:%.02d, "
1556                       "or until %d client%s reconnect%s\n",
1557                       obd->obd_name,
1558                       obd->obd_recovery_timeout / 60,
1559                       obd->obd_recovery_timeout % 60,
1560                       obd->obd_max_recoverable_clients,
1561                       (obd->obd_max_recoverable_clients == 1) ? "" : "s",
1562                       (obd->obd_max_recoverable_clients == 1) ? "s": "");
1563 }
1564
1565 /**
1566  * extend recovery window.
1567  *
1568  * if @extend is true, extend recovery window to have @drt remaining at least;
1569  * otherwise, make sure the recovery timeout value is not less than @drt.
1570  */
1571 static void extend_recovery_timer(struct obd_device *obd, int drt, bool extend)
1572 {
1573         cfs_time_t now;
1574         cfs_time_t end;
1575         cfs_duration_t left;
1576         int to;
1577
1578         spin_lock(&obd->obd_dev_lock);
1579         if (!obd->obd_recovering || obd->obd_abort_recovery) {
1580                 spin_unlock(&obd->obd_dev_lock);
1581                 return;
1582         }
1583         LASSERT(obd->obd_recovery_start != 0);
1584
1585         now  = cfs_time_current_sec();
1586         to   = obd->obd_recovery_timeout;
1587         end  = obd->obd_recovery_start + to;
1588         left = cfs_time_sub(end, now);
1589
1590         if (extend && (drt > left)) {
1591                 to += drt - left;
1592         } else if (!extend && (drt > to)) {
1593                 to = drt;
1594                 /* reduce drt by already passed time */
1595                 drt -= obd->obd_recovery_timeout - left;
1596         }
1597
1598         if (to > obd->obd_recovery_time_hard)
1599                 to = obd->obd_recovery_time_hard;
1600         if (obd->obd_recovery_timeout < to ||
1601             obd->obd_recovery_timeout == obd->obd_recovery_time_hard) {
1602                 obd->obd_recovery_timeout = to;
1603                 cfs_timer_arm(&obd->obd_recovery_timer,
1604                               cfs_time_shift(drt));
1605         }
1606         spin_unlock(&obd->obd_dev_lock);
1607
1608         CDEBUG(D_HA, "%s: recovery timer will expire in %u seconds\n",
1609                obd->obd_name, (unsigned)drt);
1610 }
1611
1612 /* Reset the timer with each new client connection */
1613 /*
1614  * This timer is actually reconnect_timer, which is for making sure
1615  * the total recovery window is at least as big as my reconnect
1616  * attempt timing. So the initial recovery time_out will be set to
1617  * OBD_RECOVERY_FACTOR * obd_timeout. If the timeout coming
1618  * from client is bigger than this, then the recovery time_out will
1619  * be extended to make sure the client could be reconnected, in the
1620  * process, the timeout from the new client should be ignored.
1621  */
1622
1623 static void
1624 check_and_start_recovery_timer(struct obd_device *obd,
1625                                struct ptlrpc_request *req,
1626                                int new_client)
1627 {
1628         int service_time = lustre_msg_get_service_time(req->rq_reqmsg);
1629         struct obd_device_target *obt = &obd->u.obt;
1630         struct lustre_sb_info *lsi;
1631
1632         if (!new_client && service_time)
1633                 /* Teach server about old server's estimates, as first guess
1634                  * at how long new requests will take. */
1635                 at_measured(&req->rq_rqbd->rqbd_svcpt->scp_at_estimate,
1636                             service_time);
1637
1638         target_start_recovery_timer(obd);
1639
1640         /* Convert the service time to RPC timeout,
1641          * and reuse service_time to limit stack usage. */
1642         service_time = at_est2timeout(service_time);
1643
1644         /* We expect other clients to timeout within service_time, then try
1645          * to reconnect, then try the failover server.  The max delay between
1646          * connect attempts is SWITCH_MAX + SWITCH_INC + INITIAL. */
1647         service_time += 2 * INITIAL_CONNECT_TIMEOUT;
1648
1649         LASSERT(obt->obt_magic == OBT_MAGIC);
1650         lsi = s2lsi(obt->obt_sb);
1651         if (!(lsi->lsi_flags | LDD_F_IR_CAPABLE))
1652                 service_time += 2 * (CONNECTION_SWITCH_MAX +
1653                                      CONNECTION_SWITCH_INC);
1654         if (service_time > obd->obd_recovery_timeout && !new_client)
1655                 extend_recovery_timer(obd, service_time, false);
1656 }
1657
1658 /** Health checking routines */
1659 static inline int exp_connect_healthy(struct obd_export *exp)
1660 {
1661         return (exp->exp_in_recovery);
1662 }
1663
1664 /** if export done req_replay or has replay in queue */
1665 static inline int exp_req_replay_healthy(struct obd_export *exp)
1666 {
1667         return (!exp->exp_req_replay_needed ||
1668                 cfs_atomic_read(&exp->exp_replay_count) > 0);
1669 }
1670 /** if export done lock_replay or has replay in queue */
1671 static inline int exp_lock_replay_healthy(struct obd_export *exp)
1672 {
1673         return (!exp->exp_lock_replay_needed ||
1674                 cfs_atomic_read(&exp->exp_replay_count) > 0);
1675 }
1676
1677 static inline int exp_vbr_healthy(struct obd_export *exp)
1678 {
1679         return (!exp->exp_vbr_failed);
1680 }
1681
1682 static inline int exp_finished(struct obd_export *exp)
1683 {
1684         return (exp->exp_in_recovery && !exp->exp_lock_replay_needed);
1685 }
1686
1687 /** Checking routines for recovery */
1688 static int check_for_clients(struct obd_device *obd)
1689 {
1690         unsigned int clnts = cfs_atomic_read(&obd->obd_connected_clients);
1691
1692         if (obd->obd_abort_recovery || obd->obd_recovery_expired)
1693                 return 1;
1694         LASSERT(clnts <= obd->obd_max_recoverable_clients);
1695         return (clnts + obd->obd_stale_clients ==
1696                 obd->obd_max_recoverable_clients);
1697 }
1698
1699 static int check_for_next_transno(struct obd_device *obd)
1700 {
1701         struct ptlrpc_request *req = NULL;
1702         int wake_up = 0, connected, completed, queue_len;
1703         __u64 next_transno, req_transno;
1704         ENTRY;
1705
1706         spin_lock(&obd->obd_recovery_task_lock);
1707         if (!cfs_list_empty(&obd->obd_req_replay_queue)) {
1708                 req = cfs_list_entry(obd->obd_req_replay_queue.next,
1709                                      struct ptlrpc_request, rq_list);
1710                 req_transno = lustre_msg_get_transno(req->rq_reqmsg);
1711         } else {
1712                 req_transno = 0;
1713         }
1714
1715         connected = cfs_atomic_read(&obd->obd_connected_clients);
1716         completed = connected - cfs_atomic_read(&obd->obd_req_replay_clients);
1717         queue_len = obd->obd_requests_queued_for_recovery;
1718         next_transno = obd->obd_next_recovery_transno;
1719
1720         CDEBUG(D_HA, "max: %d, connected: %d, completed: %d, queue_len: %d, "
1721                "req_transno: "LPU64", next_transno: "LPU64"\n",
1722                obd->obd_max_recoverable_clients, connected, completed,
1723                queue_len, req_transno, next_transno);
1724
1725         if (obd->obd_abort_recovery) {
1726                 CDEBUG(D_HA, "waking for aborted recovery\n");
1727                 wake_up = 1;
1728         } else if (obd->obd_recovery_expired) {
1729                 CDEBUG(D_HA, "waking for expired recovery\n");
1730                 wake_up = 1;
1731         } else if (req_transno == next_transno) {
1732                 CDEBUG(D_HA, "waking for next ("LPD64")\n", next_transno);
1733                 wake_up = 1;
1734         } else if (queue_len > 0 &&
1735                    queue_len == cfs_atomic_read(&obd->obd_req_replay_clients)) {
1736                 int d_lvl = D_HA;
1737                 /** handle gaps occured due to lost reply or VBR */
1738                 LASSERTF(req_transno >= next_transno,
1739                          "req_transno: "LPU64", next_transno: "LPU64"\n",
1740                          req_transno, next_transno);
1741                 if (req_transno > obd->obd_last_committed &&
1742                     !obd->obd_version_recov)
1743                         d_lvl = D_ERROR;
1744                 CDEBUG(d_lvl,
1745                        "%s: waking for gap in transno, VBR is %s (skip: "
1746                        LPD64", ql: %d, comp: %d, conn: %d, next: "LPD64
1747                        ", last_committed: "LPD64")\n",
1748                        obd->obd_name, obd->obd_version_recov ? "ON" : "OFF",
1749                        next_transno, queue_len, completed, connected,
1750                        req_transno, obd->obd_last_committed);
1751                 obd->obd_next_recovery_transno = req_transno;
1752                 wake_up = 1;
1753         } else if (cfs_atomic_read(&obd->obd_req_replay_clients) == 0) {
1754                 CDEBUG(D_HA, "waking for completed recovery\n");
1755                 wake_up = 1;
1756         } else if (OBD_FAIL_CHECK(OBD_FAIL_MDS_RECOVERY_ACCEPTS_GAPS)) {
1757                 CDEBUG(D_HA, "accepting transno gaps is explicitly allowed"
1758                        " by fail_lock, waking up ("LPD64")\n", next_transno);
1759                 obd->obd_next_recovery_transno = req_transno;
1760                 wake_up = 1;
1761         }
1762         spin_unlock(&obd->obd_recovery_task_lock);
1763         return wake_up;
1764 }
1765
1766 static int check_for_next_lock(struct obd_device *obd)
1767 {
1768         int wake_up = 0;
1769
1770         spin_lock(&obd->obd_recovery_task_lock);
1771         if (!cfs_list_empty(&obd->obd_lock_replay_queue)) {
1772                 CDEBUG(D_HA, "waking for next lock\n");
1773                 wake_up = 1;
1774         } else if (cfs_atomic_read(&obd->obd_lock_replay_clients) == 0) {
1775                 CDEBUG(D_HA, "waking for completed lock replay\n");
1776                 wake_up = 1;
1777         } else if (obd->obd_abort_recovery) {
1778                 CDEBUG(D_HA, "waking for aborted recovery\n");
1779                 wake_up = 1;
1780         } else if (obd->obd_recovery_expired) {
1781                 CDEBUG(D_HA, "waking for expired recovery\n");
1782                 wake_up = 1;
1783         }
1784         spin_unlock(&obd->obd_recovery_task_lock);
1785
1786         return wake_up;
1787 }
1788
1789 /**
1790  * wait for recovery events,
1791  * check its status with help of check_routine
1792  * evict dead clients via health_check
1793  */
1794 static int target_recovery_overseer(struct obd_device *obd,
1795                                     int (*check_routine)(struct obd_device *),
1796                                     int (*health_check)(struct obd_export *))
1797 {
1798 repeat:
1799         cfs_wait_event(obd->obd_next_transno_waitq, check_routine(obd));
1800         if (obd->obd_abort_recovery) {
1801                 CWARN("recovery is aborted, evict exports in recovery\n");
1802                 /** evict exports which didn't finish recovery yet */
1803                 class_disconnect_stale_exports(obd, exp_finished);
1804                 return 1;
1805         } else if (obd->obd_recovery_expired) {
1806                 obd->obd_recovery_expired = 0;
1807                 /** If some clients died being recovered, evict them */
1808                 LCONSOLE_WARN("%s: recovery is timed out, "
1809                               "evict stale exports\n", obd->obd_name);
1810                 /** evict cexports with no replay in queue, they are stalled */
1811                 class_disconnect_stale_exports(obd, health_check);
1812                 /** continue with VBR */
1813                 spin_lock(&obd->obd_dev_lock);
1814                 obd->obd_version_recov = 1;
1815                 spin_unlock(&obd->obd_dev_lock);
1816                 /**
1817                  * reset timer, recovery will proceed with versions now,
1818                  * timeout is set just to handle reconnection delays
1819                  */
1820                 extend_recovery_timer(obd, RECONNECT_DELAY_MAX, true);
1821                 /** Wait for recovery events again, after evicting bad clients */
1822                 goto repeat;
1823         }
1824         return 0;
1825 }
1826
1827 static struct ptlrpc_request *target_next_replay_req(struct obd_device *obd)
1828 {
1829         struct ptlrpc_request *req = NULL;
1830         ENTRY;
1831
1832         CDEBUG(D_HA, "Waiting for transno "LPD64"\n",
1833                obd->obd_next_recovery_transno);
1834
1835         if (target_recovery_overseer(obd, check_for_next_transno,
1836                                      exp_req_replay_healthy)) {
1837                 abort_req_replay_queue(obd);
1838                 abort_lock_replay_queue(obd);
1839         }
1840
1841         spin_lock(&obd->obd_recovery_task_lock);
1842         if (!cfs_list_empty(&obd->obd_req_replay_queue)) {
1843                 req = cfs_list_entry(obd->obd_req_replay_queue.next,
1844                                      struct ptlrpc_request, rq_list);
1845                 cfs_list_del_init(&req->rq_list);
1846                 obd->obd_requests_queued_for_recovery--;
1847                 spin_unlock(&obd->obd_recovery_task_lock);
1848         } else {
1849                 spin_unlock(&obd->obd_recovery_task_lock);
1850                 LASSERT(cfs_list_empty(&obd->obd_req_replay_queue));
1851                 LASSERT(cfs_atomic_read(&obd->obd_req_replay_clients) == 0);
1852                 /** evict exports failed VBR */
1853                 class_disconnect_stale_exports(obd, exp_vbr_healthy);
1854         }
1855         RETURN(req);
1856 }
1857
1858 static struct ptlrpc_request *target_next_replay_lock(struct obd_device *obd)
1859 {
1860         struct ptlrpc_request *req = NULL;
1861
1862         CDEBUG(D_HA, "Waiting for lock\n");
1863         if (target_recovery_overseer(obd, check_for_next_lock,
1864                                      exp_lock_replay_healthy))
1865                 abort_lock_replay_queue(obd);
1866
1867         spin_lock(&obd->obd_recovery_task_lock);
1868         if (!cfs_list_empty(&obd->obd_lock_replay_queue)) {
1869                 req = cfs_list_entry(obd->obd_lock_replay_queue.next,
1870                                      struct ptlrpc_request, rq_list);
1871                 cfs_list_del_init(&req->rq_list);
1872                 spin_unlock(&obd->obd_recovery_task_lock);
1873         } else {
1874                 spin_unlock(&obd->obd_recovery_task_lock);
1875                 LASSERT(cfs_list_empty(&obd->obd_lock_replay_queue));
1876                 LASSERT(cfs_atomic_read(&obd->obd_lock_replay_clients) == 0);
1877                 /** evict exports failed VBR */
1878                 class_disconnect_stale_exports(obd, exp_vbr_healthy);
1879         }
1880         return req;
1881 }
1882
1883 static struct ptlrpc_request *target_next_final_ping(struct obd_device *obd)
1884 {
1885         struct ptlrpc_request *req = NULL;
1886
1887         spin_lock(&obd->obd_recovery_task_lock);
1888         if (!cfs_list_empty(&obd->obd_final_req_queue)) {
1889                 req = cfs_list_entry(obd->obd_final_req_queue.next,
1890                                      struct ptlrpc_request, rq_list);
1891                 cfs_list_del_init(&req->rq_list);
1892                 spin_unlock(&obd->obd_recovery_task_lock);
1893                 if (req->rq_export->exp_in_recovery) {
1894                         spin_lock(&req->rq_export->exp_lock);
1895                         req->rq_export->exp_in_recovery = 0;
1896                         spin_unlock(&req->rq_export->exp_lock);
1897                 }
1898         } else {
1899                 spin_unlock(&obd->obd_recovery_task_lock);
1900         }
1901         return req;
1902 }
1903
1904 static int handle_recovery_req(struct ptlrpc_thread *thread,
1905                                struct ptlrpc_request *req,
1906                                svc_handler_t handler)
1907 {
1908         int rc;
1909         ENTRY;
1910
1911         /**
1912          * export can be evicted during recovery, no need to handle replays for
1913          * it after that, discard such request silently
1914          */
1915         if (req->rq_export->exp_disconnected)
1916                 GOTO(reqcopy_put, rc = 0);
1917
1918         rc = lu_context_init(&req->rq_recov_session, LCT_SESSION);
1919         if (rc) {
1920                 CERROR("Failure to initialize session: %d\n", rc);
1921                 GOTO(reqcopy_put, rc);
1922         }
1923
1924         req->rq_recov_session.lc_thread = thread;
1925         lu_context_enter(&req->rq_recov_session);
1926         req->rq_svc_thread = thread;
1927         req->rq_svc_thread->t_env->le_ses = &req->rq_recov_session;
1928
1929         /* thread context */
1930         lu_context_enter(&thread->t_env->le_ctx);
1931         (void)handler(req);
1932         lu_context_exit(&thread->t_env->le_ctx);
1933
1934         lu_context_exit(&req->rq_recov_session);
1935         lu_context_fini(&req->rq_recov_session);
1936         /* don't reset timer for final stage */
1937         if (!exp_finished(req->rq_export)) {
1938                 int to = obd_timeout;
1939
1940                 /**
1941                  * Add request timeout to the recovery time so next request from
1942                  * this client may come in recovery time
1943                  */
1944                 if (!AT_OFF) {
1945                         struct ptlrpc_service_part *svcpt;
1946
1947                         svcpt = req->rq_rqbd->rqbd_svcpt;
1948                         /* If the server sent early reply for this request,
1949                          * the client will recalculate the timeout according to
1950                          * current server estimate service time, so we will
1951                          * use the maxium timeout here for waiting the client
1952                          * sending the next req */
1953                         to = max((int)at_est2timeout(
1954                                  at_get(&svcpt->scp_at_estimate)),
1955                                  (int)lustre_msg_get_timeout(req->rq_reqmsg));
1956                         /* Add 2 net_latency, one for balance rq_deadline
1957                          * (see ptl_send_rpc), one for resend the req to server,
1958                          * Note: client will pack net_latency in replay req
1959                          * (see ptlrpc_replay_req) */
1960                         to += 2 * lustre_msg_get_service_time(req->rq_reqmsg);
1961                 }
1962                 extend_recovery_timer(class_exp2obd(req->rq_export), to, true);
1963         }
1964 reqcopy_put:
1965         RETURN(rc);
1966 }
1967
1968 static int target_recovery_thread(void *arg)
1969 {
1970         struct lu_target *lut = arg;
1971         struct obd_device *obd = lut->lut_obd;
1972         struct ptlrpc_request *req;
1973         struct target_recovery_data *trd = &obd->obd_recovery_data;
1974         unsigned long delta;
1975         unsigned long flags;
1976         struct lu_env *env;
1977         struct ptlrpc_thread *thread = NULL;
1978         int rc = 0;
1979         ENTRY;
1980
1981         cfs_daemonize_ctxt("tgt_recov");
1982
1983         SIGNAL_MASK_LOCK(current, flags);
1984         sigfillset(&current->blocked);
1985         RECALC_SIGPENDING;
1986         SIGNAL_MASK_UNLOCK(current, flags);
1987
1988         OBD_ALLOC_PTR(thread);
1989         if (thread == NULL)
1990                 RETURN(-ENOMEM);
1991
1992         OBD_ALLOC_PTR(env);
1993         if (env == NULL) {
1994                 OBD_FREE_PTR(thread);
1995                 RETURN(-ENOMEM);
1996         }
1997
1998         rc = lu_context_init(&env->le_ctx, LCT_MD_THREAD | LCT_DT_THREAD);
1999         if (rc) {
2000                 OBD_FREE_PTR(thread);
2001                 OBD_FREE_PTR(env);
2002                 RETURN(rc);
2003         }
2004
2005         thread->t_env = env;
2006         thread->t_id = -1; /* force filter_iobuf_get/put to use local buffers */
2007         env->le_ctx.lc_thread = thread;
2008         thread->t_data = NULL;
2009         thread->t_watchdog = NULL;
2010
2011         CDEBUG(D_HA, "%s: started recovery thread pid %d\n", obd->obd_name,
2012                cfs_curproc_pid());
2013         trd->trd_processing_task = cfs_curproc_pid();
2014
2015         spin_lock(&obd->obd_dev_lock);
2016         obd->obd_recovering = 1;
2017         spin_unlock(&obd->obd_dev_lock);
2018         complete(&trd->trd_starting);
2019
2020         /* first of all, we have to know the first transno to replay */
2021         if (target_recovery_overseer(obd, check_for_clients,
2022                                      exp_connect_healthy)) {
2023                 abort_req_replay_queue(obd);
2024                 abort_lock_replay_queue(obd);
2025         }
2026
2027         /* next stage: replay requests */
2028         delta = jiffies;
2029         CDEBUG(D_INFO, "1: request replay stage - %d clients from t"LPU64"\n",
2030                cfs_atomic_read(&obd->obd_req_replay_clients),
2031                obd->obd_next_recovery_transno);
2032         while ((req = target_next_replay_req(obd))) {
2033                 LASSERT(trd->trd_processing_task == cfs_curproc_pid());
2034                 DEBUG_REQ(D_HA, req, "processing t"LPD64" from %s",
2035                           lustre_msg_get_transno(req->rq_reqmsg),
2036                           libcfs_nid2str(req->rq_peer.nid));
2037                 handle_recovery_req(thread, req,
2038                                     trd->trd_recovery_handler);
2039                 /**
2040                  * bz18031: increase next_recovery_transno before
2041                  * target_request_copy_put() will drop exp_rpc reference
2042                  */
2043                 spin_lock(&obd->obd_recovery_task_lock);
2044                 obd->obd_next_recovery_transno++;
2045                 spin_unlock(&obd->obd_recovery_task_lock);
2046                 target_exp_dequeue_req_replay(req);
2047                 target_request_copy_put(req);
2048                 obd->obd_replayed_requests++;
2049         }
2050
2051         /**
2052          * The second stage: replay locks
2053          */
2054         CDEBUG(D_INFO, "2: lock replay stage - %d clients\n",
2055                cfs_atomic_read(&obd->obd_lock_replay_clients));
2056         while ((req = target_next_replay_lock(obd))) {
2057                 LASSERT(trd->trd_processing_task == cfs_curproc_pid());
2058                 DEBUG_REQ(D_HA, req, "processing lock from %s: ",
2059                           libcfs_nid2str(req->rq_peer.nid));
2060                 handle_recovery_req(thread, req,
2061                                     trd->trd_recovery_handler);
2062                 target_request_copy_put(req);
2063                 obd->obd_replayed_locks++;
2064         }
2065
2066         /**
2067          * The third stage: reply on final pings, at this moment all clients
2068          * must have request in final queue
2069          */
2070         CDEBUG(D_INFO, "3: final stage - process recovery completion pings\n");
2071         /** Update server last boot epoch */
2072         tgt_boot_epoch_update(lut);
2073         /* We drop recoverying flag to forward all new requests
2074          * to regular mds_handle() since now */
2075         spin_lock(&obd->obd_dev_lock);
2076         obd->obd_recovering = obd->obd_abort_recovery = 0;
2077         spin_unlock(&obd->obd_dev_lock);
2078         spin_lock(&obd->obd_recovery_task_lock);
2079         target_cancel_recovery_timer(obd);
2080         spin_unlock(&obd->obd_recovery_task_lock);
2081         while ((req = target_next_final_ping(obd))) {
2082                 LASSERT(trd->trd_processing_task == cfs_curproc_pid());
2083                 DEBUG_REQ(D_HA, req, "processing final ping from %s: ",
2084                           libcfs_nid2str(req->rq_peer.nid));
2085                 handle_recovery_req(thread, req,
2086                                     trd->trd_recovery_handler);
2087                 target_request_copy_put(req);
2088         }
2089
2090         delta = (jiffies - delta) / CFS_HZ;
2091         CDEBUG(D_INFO,"4: recovery completed in %lus - %d/%d reqs/locks\n",
2092               delta, obd->obd_replayed_requests, obd->obd_replayed_locks);
2093         if (delta > OBD_RECOVERY_TIME_SOFT) {
2094                 CWARN("too long recovery - read logs\n");
2095                 libcfs_debug_dumplog();
2096         }
2097
2098         target_finish_recovery(obd);
2099
2100         lu_context_fini(&env->le_ctx);
2101         trd->trd_processing_task = 0;
2102         complete(&trd->trd_finishing);
2103
2104         OBD_FREE_PTR(thread);
2105         OBD_FREE_PTR(env);
2106         RETURN(rc);
2107 }
2108
2109 static int target_start_recovery_thread(struct lu_target *lut,
2110                                         svc_handler_t handler)
2111 {
2112         struct obd_device *obd = lut->lut_obd;
2113         int rc = 0;
2114         struct target_recovery_data *trd = &obd->obd_recovery_data;
2115
2116         memset(trd, 0, sizeof(*trd));
2117         init_completion(&trd->trd_starting);
2118         init_completion(&trd->trd_finishing);
2119         trd->trd_recovery_handler = handler;
2120
2121         if (cfs_create_thread(target_recovery_thread, lut, 0) > 0) {
2122                 wait_for_completion(&trd->trd_starting);
2123                 LASSERT(obd->obd_recovering != 0);
2124         } else
2125                 rc = -ECHILD;
2126
2127         return rc;
2128 }
2129
2130 void target_stop_recovery_thread(struct obd_device *obd)
2131 {
2132         if (obd->obd_recovery_data.trd_processing_task > 0) {
2133                 struct target_recovery_data *trd = &obd->obd_recovery_data;
2134                 /** recovery can be done but postrecovery is not yet */
2135                 spin_lock(&obd->obd_dev_lock);
2136                 if (obd->obd_recovering) {
2137                         CERROR("%s: Aborting recovery\n", obd->obd_name);
2138                         obd->obd_abort_recovery = 1;
2139                         cfs_waitq_signal(&obd->obd_next_transno_waitq);
2140                 }
2141                 spin_unlock(&obd->obd_dev_lock);
2142                 wait_for_completion(&trd->trd_finishing);
2143         }
2144 }
2145 EXPORT_SYMBOL(target_stop_recovery_thread);
2146
2147 void target_recovery_fini(struct obd_device *obd)
2148 {
2149         class_disconnect_exports(obd);
2150         target_stop_recovery_thread(obd);
2151         target_cleanup_recovery(obd);
2152 }
2153 EXPORT_SYMBOL(target_recovery_fini);
2154
2155 static void target_recovery_expired(unsigned long castmeharder)
2156 {
2157         struct obd_device *obd = (struct obd_device *)castmeharder;
2158         CDEBUG(D_HA, "%s: recovery timed out; %d clients are still in recovery"
2159                " after %lds (%d clients connected)\n",
2160                obd->obd_name, cfs_atomic_read(&obd->obd_lock_replay_clients),
2161                cfs_time_current_sec()- obd->obd_recovery_start,
2162                cfs_atomic_read(&obd->obd_connected_clients));
2163
2164         obd->obd_recovery_expired = 1;
2165         cfs_waitq_signal(&obd->obd_next_transno_waitq);
2166 }
2167
2168 void target_recovery_init(struct lu_target *lut, svc_handler_t handler)
2169 {
2170         struct obd_device *obd = lut->lut_obd;
2171         if (obd->obd_max_recoverable_clients == 0) {
2172                 /** Update server last boot epoch */
2173                 tgt_boot_epoch_update(lut);
2174                 return;
2175         }
2176
2177         CDEBUG(D_HA, "RECOVERY: service %s, %d recoverable clients, "
2178                "last_transno "LPU64"\n", obd->obd_name,
2179                obd->obd_max_recoverable_clients, obd->obd_last_committed);
2180         LASSERT(obd->obd_stopping == 0);
2181         obd->obd_next_recovery_transno = obd->obd_last_committed + 1;
2182         obd->obd_recovery_start = 0;
2183         obd->obd_recovery_end = 0;
2184
2185         cfs_timer_init(&obd->obd_recovery_timer, target_recovery_expired, obd);
2186         target_start_recovery_thread(lut, handler);
2187 }
2188 EXPORT_SYMBOL(target_recovery_init);
2189
2190 #endif /* __KERNEL__ */
2191
2192 static int target_process_req_flags(struct obd_device *obd,
2193                                     struct ptlrpc_request *req)
2194 {
2195         struct obd_export *exp = req->rq_export;
2196         LASSERT(exp != NULL);
2197         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_REQ_REPLAY_DONE) {
2198                 /* client declares he's ready to replay locks */
2199                 spin_lock(&exp->exp_lock);
2200                 if (exp->exp_req_replay_needed) {
2201                         exp->exp_req_replay_needed = 0;
2202                         spin_unlock(&exp->exp_lock);
2203
2204                         LASSERT_ATOMIC_POS(&obd->obd_req_replay_clients);
2205                         cfs_atomic_dec(&obd->obd_req_replay_clients);
2206                 } else {
2207                         spin_unlock(&exp->exp_lock);
2208                 }
2209         }
2210         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_LOCK_REPLAY_DONE) {
2211                 /* client declares he's ready to complete recovery
2212                  * so, we put the request on th final queue */
2213                 spin_lock(&exp->exp_lock);
2214                 if (exp->exp_lock_replay_needed) {
2215                         exp->exp_lock_replay_needed = 0;
2216                         spin_unlock(&exp->exp_lock);
2217
2218                         LASSERT_ATOMIC_POS(&obd->obd_lock_replay_clients);
2219                         cfs_atomic_dec(&obd->obd_lock_replay_clients);
2220                 } else {
2221                         spin_unlock(&exp->exp_lock);
2222                 }
2223         }
2224         return 0;
2225 }
2226
2227 int target_queue_recovery_request(struct ptlrpc_request *req,
2228                                   struct obd_device *obd)
2229 {
2230         cfs_list_t *tmp;
2231         int inserted = 0;
2232         __u64 transno = lustre_msg_get_transno(req->rq_reqmsg);
2233         ENTRY;
2234
2235         if (obd->obd_recovery_data.trd_processing_task == cfs_curproc_pid()) {
2236                 /* Processing the queue right now, don't re-add. */
2237                 RETURN(1);
2238         }
2239
2240         target_process_req_flags(obd, req);
2241
2242         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_LOCK_REPLAY_DONE) {
2243                 /* client declares he's ready to complete recovery
2244                  * so, we put the request on th final queue */
2245                 target_request_copy_get(req);
2246                 DEBUG_REQ(D_HA, req, "queue final req");
2247                 cfs_waitq_signal(&obd->obd_next_transno_waitq);
2248                 spin_lock(&obd->obd_recovery_task_lock);
2249                 if (obd->obd_recovering) {
2250                         cfs_list_add_tail(&req->rq_list,
2251                                           &obd->obd_final_req_queue);
2252                 } else {
2253                         spin_unlock(&obd->obd_recovery_task_lock);
2254                         target_request_copy_put(req);
2255                         RETURN(obd->obd_stopping ? -ENOTCONN : 1);
2256                 }
2257                 spin_unlock(&obd->obd_recovery_task_lock);
2258                 RETURN(0);
2259         }
2260         if (lustre_msg_get_flags(req->rq_reqmsg) & MSG_REQ_REPLAY_DONE) {
2261                 /* client declares he's ready to replay locks */
2262                 target_request_copy_get(req);
2263                 DEBUG_REQ(D_HA, req, "queue lock replay req");
2264                 cfs_waitq_signal(&obd->obd_next_transno_waitq);
2265                 spin_lock(&obd->obd_recovery_task_lock);
2266                 LASSERT(obd->obd_recovering);
2267                 /* usually due to recovery abort */
2268                 if (!req->rq_export->exp_in_recovery) {
2269                         spin_unlock(&obd->obd_recovery_task_lock);
2270                         target_request_copy_put(req);
2271                         RETURN(-ENOTCONN);
2272                 }
2273                 LASSERT(req->rq_export->exp_lock_replay_needed);
2274                 cfs_list_add_tail(&req->rq_list, &obd->obd_lock_replay_queue);
2275                 spin_unlock(&obd->obd_recovery_task_lock);
2276                 RETURN(0);
2277         }
2278
2279         /* CAVEAT EMPTOR: The incoming request message has been swabbed
2280          * (i.e. buflens etc are in my own byte order), but type-dependent
2281          * buffers (eg mdt_body, ost_body etc) have NOT been swabbed. */
2282
2283         if (!transno) {
2284                 CFS_INIT_LIST_HEAD(&req->rq_list);
2285                 DEBUG_REQ(D_HA, req, "not queueing");
2286                 RETURN(1);
2287         }
2288
2289         /* If we're processing the queue, we want don't want to queue this
2290          * message.
2291          *
2292          * Also, if this request has a transno less than the one we're waiting
2293          * for, we should process it now.  It could (and currently always will)
2294          * be an open request for a descriptor that was opened some time ago.
2295          *
2296          * Also, a resent, replayed request that has already been
2297          * handled will pass through here and be processed immediately.
2298          */
2299         CDEBUG(D_HA, "Next recovery transno: "LPU64
2300                ", current: "LPU64", replaying\n",
2301                obd->obd_next_recovery_transno, transno);
2302         spin_lock(&obd->obd_recovery_task_lock);
2303         if (transno < obd->obd_next_recovery_transno) {
2304                 /* Processing the queue right now, don't re-add. */
2305                 LASSERT(cfs_list_empty(&req->rq_list));
2306                 spin_unlock(&obd->obd_recovery_task_lock);
2307                 RETURN(1);
2308         }
2309         spin_unlock(&obd->obd_recovery_task_lock);
2310
2311         if (OBD_FAIL_CHECK(OBD_FAIL_TGT_REPLAY_DROP))
2312                 RETURN(0);
2313
2314         target_request_copy_get(req);
2315         if (!req->rq_export->exp_in_recovery) {
2316                 target_request_copy_put(req);
2317                 RETURN(-ENOTCONN);
2318         }
2319         LASSERT(req->rq_export->exp_req_replay_needed);
2320
2321         if (target_exp_enqueue_req_replay(req)) {
2322                 DEBUG_REQ(D_ERROR, req, "dropping resent queued req");
2323                 target_request_copy_put(req);
2324                 RETURN(0);
2325         }
2326
2327         /* XXX O(n^2) */
2328         spin_lock(&obd->obd_recovery_task_lock);
2329         LASSERT(obd->obd_recovering);
2330         cfs_list_for_each(tmp, &obd->obd_req_replay_queue) {
2331                 struct ptlrpc_request *reqiter =
2332                         cfs_list_entry(tmp, struct ptlrpc_request, rq_list);
2333
2334                 if (lustre_msg_get_transno(reqiter->rq_reqmsg) > transno) {
2335                         cfs_list_add_tail(&req->rq_list, &reqiter->rq_list);
2336                         inserted = 1;
2337                         break;
2338                 }
2339
2340                 if (unlikely(lustre_msg_get_transno(reqiter->rq_reqmsg) ==
2341                              transno)) {
2342                         DEBUG_REQ(D_ERROR, req, "dropping replay: transno "
2343                                   "has been claimed by another client");
2344                         spin_unlock(&obd->obd_recovery_task_lock);
2345                         target_exp_dequeue_req_replay(req);
2346                         target_request_copy_put(req);
2347                         RETURN(0);
2348                 }
2349         }
2350
2351         if (!inserted)
2352                 cfs_list_add_tail(&req->rq_list, &obd->obd_req_replay_queue);
2353
2354         obd->obd_requests_queued_for_recovery++;
2355         spin_unlock(&obd->obd_recovery_task_lock);
2356         cfs_waitq_signal(&obd->obd_next_transno_waitq);
2357         RETURN(0);
2358 }
2359 EXPORT_SYMBOL(target_queue_recovery_request);
2360
2361 int target_handle_ping(struct ptlrpc_request *req)
2362 {
2363         obd_ping(req->rq_svc_thread->t_env, req->rq_export);
2364         return req_capsule_server_pack(&req->rq_pill);
2365 }
2366 EXPORT_SYMBOL(target_handle_ping);
2367
2368 void target_committed_to_req(struct ptlrpc_request *req)
2369 {
2370         struct obd_export *exp = req->rq_export;
2371
2372         if (!exp->exp_obd->obd_no_transno && req->rq_repmsg != NULL)
2373                 lustre_msg_set_last_committed(req->rq_repmsg,
2374                                               exp->exp_last_committed);
2375         else
2376                 DEBUG_REQ(D_IOCTL, req, "not sending last_committed update (%d/"
2377                           "%d)", exp->exp_obd->obd_no_transno,
2378                           req->rq_repmsg == NULL);
2379
2380         CDEBUG(D_INFO, "last_committed "LPU64", transno "LPU64", xid "LPU64"\n",
2381                exp->exp_last_committed, req->rq_transno, req->rq_xid);
2382 }
2383 EXPORT_SYMBOL(target_committed_to_req);
2384
2385 #endif /* HAVE_SERVER_SUPPORT */
2386
2387 /**
2388  * Packs current SLV and Limit into \a req.
2389  */
2390 int target_pack_pool_reply(struct ptlrpc_request *req)
2391 {
2392         struct obd_device *obd;
2393         ENTRY;
2394
2395         /* Check that we still have all structures alive as this may
2396          * be some late RPC at shutdown time. */
2397         if (unlikely(!req->rq_export || !req->rq_export->exp_obd ||
2398                      !exp_connect_lru_resize(req->rq_export))) {
2399                 lustre_msg_set_slv(req->rq_repmsg, 0);
2400                 lustre_msg_set_limit(req->rq_repmsg, 0);
2401                 RETURN(0);
2402         }
2403
2404         /* OBD is alive here as export is alive, which we checked above. */
2405         obd = req->rq_export->exp_obd;
2406
2407         read_lock(&obd->obd_pool_lock);
2408         lustre_msg_set_slv(req->rq_repmsg, obd->obd_pool_slv);
2409         lustre_msg_set_limit(req->rq_repmsg, obd->obd_pool_limit);
2410         read_unlock(&obd->obd_pool_lock);
2411
2412         RETURN(0);
2413 }
2414 EXPORT_SYMBOL(target_pack_pool_reply);
2415
2416 int target_send_reply_msg(struct ptlrpc_request *req, int rc, int fail_id)
2417 {
2418         if (OBD_FAIL_CHECK_ORSET(fail_id & ~OBD_FAIL_ONCE, OBD_FAIL_ONCE)) {
2419                 DEBUG_REQ(D_ERROR, req, "dropping reply");
2420                 return (-ECOMM);
2421         }
2422
2423         if (unlikely(rc)) {
2424                 DEBUG_REQ(D_NET, req, "processing error (%d)", rc);
2425                 req->rq_status = rc;
2426                 return (ptlrpc_send_error(req, 1));
2427         } else {
2428                 DEBUG_REQ(D_NET, req, "sending reply");
2429         }
2430
2431         return (ptlrpc_send_reply(req, PTLRPC_REPLY_MAYBE_DIFFICULT));
2432 }
2433
2434 void target_send_reply(struct ptlrpc_request *req, int rc, int fail_id)
2435 {
2436         struct ptlrpc_service_part *svcpt;
2437         int                        netrc;
2438         struct ptlrpc_reply_state *rs;
2439         struct obd_export         *exp;
2440         ENTRY;
2441
2442         if (req->rq_no_reply) {
2443                 EXIT;
2444                 return;
2445         }
2446
2447         svcpt = req->rq_rqbd->rqbd_svcpt;
2448         rs = req->rq_reply_state;
2449         if (rs == NULL || !rs->rs_difficult) {
2450                 /* no notifiers */
2451                 target_send_reply_msg (req, rc, fail_id);
2452                 EXIT;
2453                 return;
2454         }
2455
2456         /* must be an export if locks saved */
2457         LASSERT (req->rq_export != NULL);
2458         /* req/reply consistent */
2459         LASSERT(rs->rs_svcpt == svcpt);
2460
2461         /* "fresh" reply */
2462         LASSERT (!rs->rs_scheduled);
2463         LASSERT (!rs->rs_scheduled_ever);
2464         LASSERT (!rs->rs_handled);
2465         LASSERT (!rs->rs_on_net);
2466         LASSERT (rs->rs_export == NULL);
2467         LASSERT (cfs_list_empty(&rs->rs_obd_list));
2468         LASSERT (cfs_list_empty(&rs->rs_exp_list));
2469
2470         exp = class_export_get (req->rq_export);
2471
2472         /* disable reply scheduling while I'm setting up */
2473         rs->rs_scheduled = 1;
2474         rs->rs_on_net    = 1;
2475         rs->rs_xid       = req->rq_xid;
2476         rs->rs_transno   = req->rq_transno;
2477         rs->rs_export    = exp;
2478         rs->rs_opc       = lustre_msg_get_opc(req->rq_reqmsg);
2479
2480         spin_lock(&exp->exp_uncommitted_replies_lock);
2481         CDEBUG(D_NET, "rs transno = "LPU64", last committed = "LPU64"\n",
2482                rs->rs_transno, exp->exp_last_committed);
2483         if (rs->rs_transno > exp->exp_last_committed) {
2484                 /* not committed already */
2485                 cfs_list_add_tail(&rs->rs_obd_list,
2486                                   &exp->exp_uncommitted_replies);
2487         }
2488         spin_unlock(&exp->exp_uncommitted_replies_lock);
2489
2490         spin_lock(&exp->exp_lock);
2491         cfs_list_add_tail(&rs->rs_exp_list, &exp->exp_outstanding_replies);
2492         spin_unlock(&exp->exp_lock);
2493
2494         netrc = target_send_reply_msg(req, rc, fail_id);
2495
2496         spin_lock(&svcpt->scp_rep_lock);
2497
2498         cfs_atomic_inc(&svcpt->scp_nreps_difficult);
2499
2500         if (netrc != 0) {
2501                 /* error sending: reply is off the net.  Also we need +1
2502                  * reply ref until ptlrpc_handle_rs() is done
2503                  * with the reply state (if the send was successful, there
2504                  * would have been +1 ref for the net, which
2505                  * reply_out_callback leaves alone) */
2506                 rs->rs_on_net = 0;
2507                 ptlrpc_rs_addref(rs);
2508         }
2509
2510         spin_lock(&rs->rs_lock);
2511         if (rs->rs_transno <= exp->exp_last_committed ||
2512             (!rs->rs_on_net && !rs->rs_no_ack) ||
2513             cfs_list_empty(&rs->rs_exp_list) ||     /* completed already */
2514             cfs_list_empty(&rs->rs_obd_list)) {
2515                 CDEBUG(D_HA, "Schedule reply immediately\n");
2516                 ptlrpc_dispatch_difficult_reply(rs);
2517         } else {
2518                 cfs_list_add(&rs->rs_list, &svcpt->scp_rep_active);
2519                 rs->rs_scheduled = 0;   /* allow notifier to schedule */
2520         }
2521         spin_unlock(&rs->rs_lock);
2522         spin_unlock(&svcpt->scp_rep_lock);
2523         EXIT;
2524 }
2525 EXPORT_SYMBOL(target_send_reply);
2526
2527 ldlm_mode_t lck_compat_array[] = {
2528         [LCK_EX] LCK_COMPAT_EX,
2529         [LCK_PW] LCK_COMPAT_PW,
2530         [LCK_PR] LCK_COMPAT_PR,
2531         [LCK_CW] LCK_COMPAT_CW,
2532         [LCK_CR] LCK_COMPAT_CR,
2533         [LCK_NL] LCK_COMPAT_NL,
2534         [LCK_GROUP] LCK_COMPAT_GROUP,
2535         [LCK_COS] LCK_COMPAT_COS,
2536 };
2537
2538 /**
2539  * Rather arbitrary mapping from LDLM error codes to errno values. This should
2540  * not escape to the user level.
2541  */
2542 int ldlm_error2errno(ldlm_error_t error)
2543 {
2544         int result;
2545
2546         switch (error) {
2547         case ELDLM_OK:
2548                 result = 0;
2549                 break;
2550         case ELDLM_LOCK_CHANGED:
2551                 result = -ESTALE;
2552                 break;
2553         case ELDLM_LOCK_ABORTED:
2554                 result = -ENAVAIL;
2555                 break;
2556         case ELDLM_LOCK_REPLACED:
2557                 result = -ESRCH;
2558                 break;
2559         case ELDLM_NO_LOCK_DATA:
2560                 result = -ENOENT;
2561                 break;
2562         case ELDLM_NAMESPACE_EXISTS:
2563                 result = -EEXIST;
2564                 break;
2565         case ELDLM_BAD_NAMESPACE:
2566                 result = -EBADF;
2567                 break;
2568         default:
2569                 if (((int)error) < 0)  /* cast to signed type */
2570                         result = error; /* as ldlm_error_t can be unsigned */
2571                 else {
2572                         CERROR("Invalid DLM result code: %d\n", error);
2573                         result = -EPROTO;
2574                 }
2575         }
2576         return result;
2577 }
2578 EXPORT_SYMBOL(ldlm_error2errno);
2579
2580 /**
2581  * Dual to ldlm_error2errno(): maps errno values back to ldlm_error_t.
2582  */
2583 ldlm_error_t ldlm_errno2error(int err_no)
2584 {
2585         int error;
2586
2587         switch (err_no) {
2588         case 0:
2589                 error = ELDLM_OK;
2590                 break;
2591         case -ESTALE:
2592                 error = ELDLM_LOCK_CHANGED;
2593                 break;
2594         case -ENAVAIL:
2595                 error = ELDLM_LOCK_ABORTED;
2596                 break;
2597         case -ESRCH:
2598                 error = ELDLM_LOCK_REPLACED;
2599                 break;
2600         case -ENOENT:
2601                 error = ELDLM_NO_LOCK_DATA;
2602                 break;
2603         case -EEXIST:
2604                 error = ELDLM_NAMESPACE_EXISTS;
2605                 break;
2606         case -EBADF:
2607                 error = ELDLM_BAD_NAMESPACE;
2608                 break;
2609         default:
2610                 error = err_no;
2611         }
2612         return error;
2613 }
2614 EXPORT_SYMBOL(ldlm_errno2error);
2615
2616 #if LUSTRE_TRACKS_LOCK_EXP_REFS
2617 void ldlm_dump_export_locks(struct obd_export *exp)
2618 {
2619         spin_lock(&exp->exp_locks_list_guard);
2620         if (!cfs_list_empty(&exp->exp_locks_list)) {
2621                 struct ldlm_lock *lock;
2622
2623                 CERROR("dumping locks for export %p,"
2624                        "ignore if the unmount doesn't hang\n", exp);
2625                 cfs_list_for_each_entry(lock, &exp->exp_locks_list,
2626                                         l_exp_refs_link)
2627                         LDLM_ERROR(lock, "lock:");
2628         }
2629         spin_unlock(&exp->exp_locks_list_guard);
2630 }
2631 #endif
2632
2633 #ifdef HAVE_SERVER_SUPPORT
2634 static int target_bulk_timeout(void *data)
2635 {
2636         ENTRY;
2637         /* We don't fail the connection here, because having the export
2638          * killed makes the (vital) call to commitrw very sad.
2639          */
2640         RETURN(1);
2641 }
2642
2643 static inline char *bulk2type(struct ptlrpc_bulk_desc *desc)
2644 {
2645         return desc->bd_type == BULK_GET_SINK ? "GET" : "PUT";
2646 }
2647
2648 int target_bulk_io(struct obd_export *exp, struct ptlrpc_bulk_desc *desc,
2649                    struct l_wait_info *lwi)
2650 {
2651         struct ptlrpc_request *req = desc->bd_req;
2652         int rc = 0;
2653         ENTRY;
2654
2655         /* If there is eviction in progress, wait for it to finish. */
2656         if (unlikely(cfs_atomic_read(&exp->exp_obd->obd_evict_inprogress))) {
2657                 *lwi = LWI_INTR(NULL, NULL);
2658                 rc = l_wait_event(exp->exp_obd->obd_evict_inprogress_waitq,
2659                                   !cfs_atomic_read(&exp->exp_obd->
2660                                                    obd_evict_inprogress),
2661                                   lwi);
2662         }
2663
2664         /* Check if client was evicted or tried to reconnect already. */
2665         if (exp->exp_failed || exp->exp_abort_active_req) {
2666                 rc = -ENOTCONN;
2667         } else {
2668                 if (desc->bd_type == BULK_PUT_SINK)
2669                         rc = sptlrpc_svc_wrap_bulk(req, desc);
2670                 if (rc == 0)
2671                         rc = ptlrpc_start_bulk_transfer(desc);
2672         }
2673
2674         if (rc == 0 && OBD_FAIL_CHECK(OBD_FAIL_MDS_SENDPAGE)) {
2675                 ptlrpc_abort_bulk(desc);
2676         } else if (rc == 0) {
2677                 time_t start = cfs_time_current_sec();
2678                 do {
2679                         long timeoutl = req->rq_deadline - cfs_time_current_sec();
2680                         cfs_duration_t timeout = timeoutl <= 0 ?
2681                                 CFS_TICK : cfs_time_seconds(timeoutl);
2682                         *lwi = LWI_TIMEOUT_INTERVAL(timeout,
2683                                                     cfs_time_seconds(1),
2684                                                    target_bulk_timeout,
2685                                                    desc);
2686                         rc = l_wait_event(desc->bd_waitq,
2687                                           !ptlrpc_server_bulk_active(desc) ||
2688                                           exp->exp_failed ||
2689                                           exp->exp_abort_active_req,
2690                                           lwi);
2691                         LASSERT(rc == 0 || rc == -ETIMEDOUT);
2692                         /* Wait again if we changed deadline. */
2693                 } while ((rc == -ETIMEDOUT) &&
2694                          (req->rq_deadline > cfs_time_current_sec()));
2695
2696                 if (rc == -ETIMEDOUT) {
2697                         DEBUG_REQ(D_ERROR, req,
2698                                   "timeout on bulk %s after %ld%+lds",
2699                                   bulk2type(desc),
2700                                   req->rq_deadline - start,
2701                                   cfs_time_current_sec() -
2702                                   req->rq_deadline);
2703                         ptlrpc_abort_bulk(desc);
2704                 } else if (exp->exp_failed) {
2705                         DEBUG_REQ(D_ERROR, req, "Eviction on bulk %s",
2706                                   bulk2type(desc));
2707                         rc = -ENOTCONN;
2708                         ptlrpc_abort_bulk(desc);
2709                 } else if (exp->exp_abort_active_req) {
2710                         DEBUG_REQ(D_ERROR, req, "Reconnect on bulk %s",
2711                                   bulk2type(desc));
2712                         /* We don't reply anyway. */
2713                         rc = -ETIMEDOUT;
2714                         ptlrpc_abort_bulk(desc);
2715                 } else if (desc->bd_failure ||
2716                            desc->bd_nob_transferred != desc->bd_nob) {
2717                         DEBUG_REQ(D_ERROR, req, "%s bulk %s %d(%d)",
2718                                   desc->bd_failure ?
2719                                   "network error on" : "truncated",
2720                                   bulk2type(desc),
2721                                   desc->bd_nob_transferred,
2722                                   desc->bd_nob);
2723                         /* XXX Should this be a different errno? */
2724                         rc = -ETIMEDOUT;
2725                 } else if (desc->bd_type == BULK_GET_SINK) {
2726                         rc = sptlrpc_svc_unwrap_bulk(req, desc);
2727                 }
2728         } else {
2729                 DEBUG_REQ(D_ERROR, req, "bulk %s failed: rc %d",
2730                           bulk2type(desc), rc);
2731         }
2732
2733         RETURN(rc);
2734 }
2735 EXPORT_SYMBOL(target_bulk_io);
2736
2737 #endif /* HAVE_SERVER_SUPPORT */