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LU-2061 hsm: send HSM resquest to CDT
[fs/lustre-release.git] / lustre / ptlrpc / layout.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) 2007, 2010, Oracle and/or its affiliates. All rights reserved.
28  * Use is subject to license terms.
29  *
30  * Copyright (c) 2011, 2012, 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  * lustre/ptlrpc/layout.c
37  *
38  * Lustre Metadata Target (mdt) request handler
39  *
40  * Author: Nikita Danilov <nikita@clusterfs.com>
41  */
42 /*
43  * This file contains the "capsule/pill" abstraction layered above PTLRPC.
44  *
45  * Every struct ptlrpc_request contains a "pill", which points to a description
46  * of the format that the request conforms to.
47  */
48
49 #if !defined(__REQ_LAYOUT_USER__)
50
51 #define DEBUG_SUBSYSTEM S_RPC
52
53 #ifdef __KERNEL__
54 #include <linux/module.h>
55 #else
56 # include <liblustre.h>
57 #endif
58
59 /* LUSTRE_VERSION_CODE */
60 #include <lustre_ver.h>
61
62 #include <obd_support.h>
63 /* lustre_swab_mdt_body */
64 #include <lustre/lustre_idl.h>
65 /* obd2cli_tgt() (required by DEBUG_REQ()) */
66 #include <obd.h>
67
68 /* __REQ_LAYOUT_USER__ */
69 #endif
70 /* struct ptlrpc_request, lustre_msg* */
71 #include <lustre_req_layout.h>
72 #include <lustre_acl.h>
73 #include <lustre_debug.h>
74
75 /*
76  * RQFs (see below) refer to two struct req_msg_field arrays describing the
77  * client request and server reply, respectively.
78  */
79 /* empty set of fields... for suitable definition of emptiness. */
80 static const struct req_msg_field *empty[] = {
81         &RMF_PTLRPC_BODY
82 };
83
84 static const struct req_msg_field *mgs_target_info_only[] = {
85         &RMF_PTLRPC_BODY,
86         &RMF_MGS_TARGET_INFO
87 };
88
89 static const struct req_msg_field *mgs_set_info[] = {
90         &RMF_PTLRPC_BODY,
91         &RMF_MGS_SEND_PARAM
92 };
93
94 static const struct req_msg_field *mgs_config_read_client[] = {
95         &RMF_PTLRPC_BODY,
96         &RMF_MGS_CONFIG_BODY
97 };
98
99 static const struct req_msg_field *mgs_config_read_server[] = {
100         &RMF_PTLRPC_BODY,
101         &RMF_MGS_CONFIG_RES
102 };
103
104 static const struct req_msg_field *log_cancel_client[] = {
105         &RMF_PTLRPC_BODY,
106         &RMF_LOGCOOKIES
107 };
108
109 static const struct req_msg_field *mdt_body_only[] = {
110         &RMF_PTLRPC_BODY,
111         &RMF_MDT_BODY
112 };
113
114 static const struct req_msg_field *mdt_body_capa[] = {
115         &RMF_PTLRPC_BODY,
116         &RMF_MDT_BODY,
117         &RMF_CAPA1
118 };
119
120 static const struct req_msg_field *quotactl_only[] = {
121         &RMF_PTLRPC_BODY,
122         &RMF_OBD_QUOTACTL
123 };
124
125 static const struct req_msg_field *quota_body_only[] = {
126         &RMF_PTLRPC_BODY,
127         &RMF_QUOTA_BODY
128 };
129
130 static const struct req_msg_field *ldlm_intent_quota_client[] = {
131         &RMF_PTLRPC_BODY,
132         &RMF_DLM_REQ,
133         &RMF_LDLM_INTENT,
134         &RMF_QUOTA_BODY
135 };
136
137 static const struct req_msg_field *ldlm_intent_quota_server[] = {
138         &RMF_PTLRPC_BODY,
139         &RMF_DLM_REP,
140         &RMF_DLM_LVB,
141         &RMF_QUOTA_BODY
142 };
143
144 static const struct req_msg_field *mdt_close_client[] = {
145         &RMF_PTLRPC_BODY,
146         &RMF_MDT_EPOCH,
147         &RMF_REC_REINT,
148         &RMF_CAPA1
149 };
150
151 static const struct req_msg_field *obd_statfs_server[] = {
152         &RMF_PTLRPC_BODY,
153         &RMF_OBD_STATFS
154 };
155
156 static const struct req_msg_field *seq_query_client[] = {
157         &RMF_PTLRPC_BODY,
158         &RMF_SEQ_OPC,
159         &RMF_SEQ_RANGE
160 };
161
162 static const struct req_msg_field *seq_query_server[] = {
163         &RMF_PTLRPC_BODY,
164         &RMF_SEQ_RANGE
165 };
166
167 static const struct req_msg_field *fld_query_client[] = {
168         &RMF_PTLRPC_BODY,
169         &RMF_FLD_OPC,
170         &RMF_FLD_MDFLD
171 };
172
173 static const struct req_msg_field *fld_query_server[] = {
174         &RMF_PTLRPC_BODY,
175         &RMF_FLD_MDFLD
176 };
177
178 static const struct req_msg_field *mds_getattr_name_client[] = {
179         &RMF_PTLRPC_BODY,
180         &RMF_MDT_BODY,
181         &RMF_CAPA1,
182         &RMF_NAME
183 };
184
185 static const struct req_msg_field *mds_reint_client[] = {
186         &RMF_PTLRPC_BODY,
187         &RMF_REC_REINT
188 };
189
190 static const struct req_msg_field *mds_reint_create_client[] = {
191         &RMF_PTLRPC_BODY,
192         &RMF_REC_REINT,
193         &RMF_CAPA1,
194         &RMF_NAME
195 };
196
197 static const struct req_msg_field *mds_reint_create_slave_client[] = {
198         &RMF_PTLRPC_BODY,
199         &RMF_REC_REINT,
200         &RMF_CAPA1,
201         &RMF_NAME,
202         &RMF_EADATA,
203         &RMF_DLM_REQ
204 };
205
206 static const struct req_msg_field *mds_reint_create_rmt_acl_client[] = {
207         &RMF_PTLRPC_BODY,
208         &RMF_REC_REINT,
209         &RMF_CAPA1,
210         &RMF_NAME,
211         &RMF_EADATA,
212         &RMF_DLM_REQ
213 };
214
215 static const struct req_msg_field *mds_reint_create_sym_client[] = {
216         &RMF_PTLRPC_BODY,
217         &RMF_REC_REINT,
218         &RMF_CAPA1,
219         &RMF_NAME,
220         &RMF_SYMTGT,
221         &RMF_DLM_REQ
222 };
223
224 static const struct req_msg_field *mds_reint_open_client[] = {
225         &RMF_PTLRPC_BODY,
226         &RMF_REC_REINT,
227         &RMF_CAPA1,
228         &RMF_CAPA2,
229         &RMF_NAME,
230         &RMF_EADATA
231 };
232
233 static const struct req_msg_field *mds_reint_open_server[] = {
234         &RMF_PTLRPC_BODY,
235         &RMF_MDT_BODY,
236         &RMF_MDT_MD,
237         &RMF_ACL,
238         &RMF_CAPA1,
239         &RMF_CAPA2
240 };
241
242 static const struct req_msg_field *mds_reint_unlink_client[] = {
243         &RMF_PTLRPC_BODY,
244         &RMF_REC_REINT,
245         &RMF_CAPA1,
246         &RMF_NAME,
247         &RMF_DLM_REQ
248 };
249
250 static const struct req_msg_field *mds_reint_link_client[] = {
251         &RMF_PTLRPC_BODY,
252         &RMF_REC_REINT,
253         &RMF_CAPA1,
254         &RMF_CAPA2,
255         &RMF_NAME,
256         &RMF_DLM_REQ
257 };
258
259 static const struct req_msg_field *mds_reint_rename_client[] = {
260         &RMF_PTLRPC_BODY,
261         &RMF_REC_REINT,
262         &RMF_CAPA1,
263         &RMF_CAPA2,
264         &RMF_NAME,
265         &RMF_SYMTGT,
266         &RMF_DLM_REQ
267 };
268
269 static const struct req_msg_field *mds_last_unlink_server[] = {
270         &RMF_PTLRPC_BODY,
271         &RMF_MDT_BODY,
272         &RMF_MDT_MD,
273         &RMF_LOGCOOKIES,
274         &RMF_CAPA1,
275         &RMF_CAPA2
276 };
277
278 static const struct req_msg_field *mds_reint_setattr_client[] = {
279         &RMF_PTLRPC_BODY,
280         &RMF_REC_REINT,
281         &RMF_CAPA1,
282         &RMF_MDT_EPOCH,
283         &RMF_EADATA,
284         &RMF_LOGCOOKIES,
285         &RMF_DLM_REQ
286 };
287
288 static const struct req_msg_field *mds_reint_setxattr_client[] = {
289         &RMF_PTLRPC_BODY,
290         &RMF_REC_REINT,
291         &RMF_CAPA1,
292         &RMF_NAME,
293         &RMF_EADATA
294 };
295
296 static const struct req_msg_field *obd_connect_client[] = {
297         &RMF_PTLRPC_BODY,
298         &RMF_TGTUUID,
299         &RMF_CLUUID,
300         &RMF_CONN,
301         &RMF_CONNECT_DATA
302 };
303
304 static const struct req_msg_field *obd_connect_server[] = {
305         &RMF_PTLRPC_BODY,
306         &RMF_CONNECT_DATA
307 };
308
309 static const struct req_msg_field *obd_set_info_client[] = {
310         &RMF_PTLRPC_BODY,
311         &RMF_SETINFO_KEY,
312         &RMF_SETINFO_VAL
313 };
314
315 static const struct req_msg_field *ost_grant_shrink_client[] = {
316         &RMF_PTLRPC_BODY,
317         &RMF_SETINFO_KEY,
318         &RMF_OST_BODY
319 };
320
321 static const struct req_msg_field *mds_getinfo_client[] = {
322         &RMF_PTLRPC_BODY,
323         &RMF_GETINFO_KEY,
324         &RMF_GETINFO_VALLEN
325 };
326
327 static const struct req_msg_field *mds_getinfo_server[] = {
328         &RMF_PTLRPC_BODY,
329         &RMF_GETINFO_VAL,
330 };
331
332 static const struct req_msg_field *ldlm_enqueue_client[] = {
333         &RMF_PTLRPC_BODY,
334         &RMF_DLM_REQ
335 };
336
337 static const struct req_msg_field *ldlm_enqueue_server[] = {
338         &RMF_PTLRPC_BODY,
339         &RMF_DLM_REP
340 };
341
342 static const struct req_msg_field *ldlm_enqueue_lvb_server[] = {
343         &RMF_PTLRPC_BODY,
344         &RMF_DLM_REP,
345         &RMF_DLM_LVB
346 };
347
348 static const struct req_msg_field *ldlm_cp_callback_client[] = {
349         &RMF_PTLRPC_BODY,
350         &RMF_DLM_REQ,
351         &RMF_DLM_LVB
352 };
353
354 static const struct req_msg_field *ldlm_gl_callback_desc_client[] = {
355         &RMF_PTLRPC_BODY,
356         &RMF_DLM_REQ,
357         &RMF_DLM_GL_DESC
358 };
359
360 static const struct req_msg_field *ldlm_gl_callback_server[] = {
361         &RMF_PTLRPC_BODY,
362         &RMF_DLM_LVB
363 };
364
365 static const struct req_msg_field *ldlm_intent_basic_client[] = {
366         &RMF_PTLRPC_BODY,
367         &RMF_DLM_REQ,
368         &RMF_LDLM_INTENT,
369 };
370
371 static const struct req_msg_field *ldlm_intent_client[] = {
372         &RMF_PTLRPC_BODY,
373         &RMF_DLM_REQ,
374         &RMF_LDLM_INTENT,
375         &RMF_REC_REINT
376 };
377
378 static const struct req_msg_field *ldlm_intent_server[] = {
379         &RMF_PTLRPC_BODY,
380         &RMF_DLM_REP,
381         &RMF_MDT_BODY,
382         &RMF_MDT_MD,
383         &RMF_ACL
384 };
385
386 static const struct req_msg_field *ldlm_intent_layout_client[] = {
387         &RMF_PTLRPC_BODY,
388         &RMF_DLM_REQ,
389         &RMF_LDLM_INTENT,
390         &RMF_LAYOUT_INTENT,
391         &RMF_EADATA /* for new layout to be set up */
392 };
393 static const struct req_msg_field *ldlm_intent_open_server[] = {
394         &RMF_PTLRPC_BODY,
395         &RMF_DLM_REP,
396         &RMF_MDT_BODY,
397         &RMF_MDT_MD,
398         &RMF_ACL,
399         &RMF_CAPA1,
400         &RMF_CAPA2
401 };
402
403 static const struct req_msg_field *ldlm_intent_getattr_client[] = {
404         &RMF_PTLRPC_BODY,
405         &RMF_DLM_REQ,
406         &RMF_LDLM_INTENT,
407         &RMF_MDT_BODY,     /* coincides with mds_getattr_name_client[] */
408         &RMF_CAPA1,
409         &RMF_NAME
410 };
411
412 static const struct req_msg_field *ldlm_intent_getattr_server[] = {
413         &RMF_PTLRPC_BODY,
414         &RMF_DLM_REP,
415         &RMF_MDT_BODY,
416         &RMF_MDT_MD,
417         &RMF_ACL,
418         &RMF_CAPA1
419 };
420
421 static const struct req_msg_field *ldlm_intent_create_client[] = {
422         &RMF_PTLRPC_BODY,
423         &RMF_DLM_REQ,
424         &RMF_LDLM_INTENT,
425         &RMF_REC_REINT,    /* coincides with mds_reint_create_client[] */
426         &RMF_CAPA1,
427         &RMF_NAME,
428         &RMF_EADATA
429 };
430
431 static const struct req_msg_field *ldlm_intent_open_client[] = {
432         &RMF_PTLRPC_BODY,
433         &RMF_DLM_REQ,
434         &RMF_LDLM_INTENT,
435         &RMF_REC_REINT,    /* coincides with mds_reint_open_client[] */
436         &RMF_CAPA1,
437         &RMF_CAPA2,
438         &RMF_NAME,
439         &RMF_EADATA
440 };
441
442 static const struct req_msg_field *ldlm_intent_unlink_client[] = {
443         &RMF_PTLRPC_BODY,
444         &RMF_DLM_REQ,
445         &RMF_LDLM_INTENT,
446         &RMF_REC_REINT,    /* coincides with mds_reint_unlink_client[] */
447         &RMF_CAPA1,
448         &RMF_NAME
449 };
450
451 static const struct req_msg_field *mds_getxattr_client[] = {
452         &RMF_PTLRPC_BODY,
453         &RMF_MDT_BODY,
454         &RMF_CAPA1,
455         &RMF_NAME,
456         &RMF_EADATA
457 };
458
459 static const struct req_msg_field *mds_getxattr_server[] = {
460         &RMF_PTLRPC_BODY,
461         &RMF_MDT_BODY,
462         &RMF_EADATA
463 };
464
465 static const struct req_msg_field *mds_getattr_server[] = {
466         &RMF_PTLRPC_BODY,
467         &RMF_MDT_BODY,
468         &RMF_MDT_MD,
469         &RMF_ACL,
470         &RMF_CAPA1,
471         &RMF_CAPA2
472 };
473
474 static const struct req_msg_field *mds_setattr_server[] = {
475         &RMF_PTLRPC_BODY,
476         &RMF_MDT_BODY,
477         &RMF_MDT_MD,
478         &RMF_ACL,
479         &RMF_CAPA1,
480         &RMF_CAPA2
481 };
482
483 static const struct req_msg_field *llog_origin_handle_create_client[] = {
484         &RMF_PTLRPC_BODY,
485         &RMF_LLOGD_BODY,
486         &RMF_NAME
487 };
488
489 static const struct req_msg_field *llogd_body_only[] = {
490         &RMF_PTLRPC_BODY,
491         &RMF_LLOGD_BODY
492 };
493
494 static const struct req_msg_field *llog_log_hdr_only[] = {
495         &RMF_PTLRPC_BODY,
496         &RMF_LLOG_LOG_HDR
497 };
498
499 static const struct req_msg_field *llogd_conn_body_only[] = {
500         &RMF_PTLRPC_BODY,
501         &RMF_LLOGD_CONN_BODY
502 };
503
504 static const struct req_msg_field *llog_origin_handle_next_block_server[] = {
505         &RMF_PTLRPC_BODY,
506         &RMF_LLOGD_BODY,
507         &RMF_EADATA
508 };
509
510 static const struct req_msg_field *obd_idx_read_client[] = {
511         &RMF_PTLRPC_BODY,
512         &RMF_IDX_INFO
513 };
514
515 static const struct req_msg_field *obd_idx_read_server[] = {
516         &RMF_PTLRPC_BODY,
517         &RMF_IDX_INFO
518 };
519
520 static const struct req_msg_field *ost_body_only[] = {
521         &RMF_PTLRPC_BODY,
522         &RMF_OST_BODY
523 };
524
525 static const struct req_msg_field *ost_body_capa[] = {
526         &RMF_PTLRPC_BODY,
527         &RMF_OST_BODY,
528         &RMF_CAPA1
529 };
530
531 static const struct req_msg_field *ost_destroy_client[] = {
532         &RMF_PTLRPC_BODY,
533         &RMF_OST_BODY,
534         &RMF_DLM_REQ,
535         &RMF_CAPA1
536 };
537
538
539 static const struct req_msg_field *ost_brw_client[] = {
540         &RMF_PTLRPC_BODY,
541         &RMF_OST_BODY,
542         &RMF_OBD_IOOBJ,
543         &RMF_NIOBUF_REMOTE,
544         &RMF_CAPA1
545 };
546
547 static const struct req_msg_field *ost_brw_read_server[] = {
548         &RMF_PTLRPC_BODY,
549         &RMF_OST_BODY
550 };
551
552 static const struct req_msg_field *ost_brw_write_server[] = {
553         &RMF_PTLRPC_BODY,
554         &RMF_OST_BODY,
555         &RMF_RCS
556 };
557
558 static const struct req_msg_field *ost_get_info_generic_server[] = {
559         &RMF_PTLRPC_BODY,
560         &RMF_GENERIC_DATA,
561 };
562
563 static const struct req_msg_field *ost_get_info_generic_client[] = {
564         &RMF_PTLRPC_BODY,
565         &RMF_SETINFO_KEY
566 };
567
568 static const struct req_msg_field *ost_get_last_id_server[] = {
569         &RMF_PTLRPC_BODY,
570         &RMF_OBD_ID
571 };
572
573 static const struct req_msg_field *ost_get_last_fid_server[] = {
574         &RMF_PTLRPC_BODY,
575         &RMF_FID
576 };
577
578 static const struct req_msg_field *ost_get_fiemap_client[] = {
579         &RMF_PTLRPC_BODY,
580         &RMF_FIEMAP_KEY,
581         &RMF_FIEMAP_VAL
582 };
583
584 static const struct req_msg_field *ost_get_fiemap_server[] = {
585         &RMF_PTLRPC_BODY,
586         &RMF_FIEMAP_VAL
587 };
588
589 static const struct req_msg_field *mdt_hsm_progress[] = {
590         &RMF_PTLRPC_BODY,
591         &RMF_MDS_HSM_PROGRESS,
592 };
593
594 static const struct req_msg_field *mdt_hsm_ct_register[] = {
595         &RMF_PTLRPC_BODY,
596         &RMF_MDS_HSM_ARCHIVE,
597 };
598
599 static const struct req_msg_field *mdt_hsm_action_server[] = {
600         &RMF_PTLRPC_BODY,
601         &RMF_MDS_HSM_CURRENT_ACTION,
602 };
603
604 static const struct req_msg_field *mdt_hsm_state_get_server[] = {
605         &RMF_PTLRPC_BODY,
606         &RMF_HSM_USER_STATE,
607 };
608
609 static const struct req_msg_field *mdt_hsm_state_set[] = {
610         &RMF_PTLRPC_BODY,
611         &RMF_MDT_BODY,
612         &RMF_CAPA1,
613         &RMF_HSM_STATE_SET,
614 };
615
616 static const struct req_msg_field *mdt_hsm_request[] = {
617         &RMF_PTLRPC_BODY,
618         &RMF_MDT_BODY,
619         &RMF_MDS_HSM_REQUEST,
620         &RMF_MDS_HSM_USER_ITEM,
621         &RMF_GENERIC_DATA,
622 };
623
624 static struct req_format *req_formats[] = {
625         &RQF_OBD_PING,
626         &RQF_OBD_SET_INFO,
627         &RQF_OBD_IDX_READ,
628         &RQF_SEC_CTX,
629         &RQF_MGS_TARGET_REG,
630         &RQF_MGS_SET_INFO,
631         &RQF_MGS_CONFIG_READ,
632         &RQF_SEQ_QUERY,
633         &RQF_FLD_QUERY,
634         &RQF_MDS_CONNECT,
635         &RQF_MDS_DISCONNECT,
636         &RQF_MDS_GET_INFO,
637         &RQF_MDS_GETSTATUS,
638         &RQF_MDS_STATFS,
639         &RQF_MDS_GETATTR,
640         &RQF_MDS_GETATTR_NAME,
641         &RQF_MDS_GETXATTR,
642         &RQF_MDS_SYNC,
643         &RQF_MDS_CLOSE,
644         &RQF_MDS_PIN,
645         &RQF_MDS_UNPIN,
646         &RQF_MDS_READPAGE,
647         &RQF_MDS_WRITEPAGE,
648         &RQF_MDS_IS_SUBDIR,
649         &RQF_MDS_DONE_WRITING,
650         &RQF_MDS_REINT,
651         &RQF_MDS_REINT_CREATE,
652         &RQF_MDS_REINT_CREATE_RMT_ACL,
653         &RQF_MDS_REINT_CREATE_SLAVE,
654         &RQF_MDS_REINT_CREATE_SYM,
655         &RQF_MDS_REINT_OPEN,
656         &RQF_MDS_REINT_UNLINK,
657         &RQF_MDS_REINT_LINK,
658         &RQF_MDS_REINT_RENAME,
659         &RQF_MDS_REINT_SETATTR,
660         &RQF_MDS_REINT_SETXATTR,
661         &RQF_MDS_QUOTACHECK,
662         &RQF_MDS_QUOTACTL,
663         &RQF_MDS_HSM_PROGRESS,
664         &RQF_MDS_HSM_CT_REGISTER,
665         &RQF_MDS_HSM_CT_UNREGISTER,
666         &RQF_MDS_HSM_STATE_GET,
667         &RQF_MDS_HSM_STATE_SET,
668         &RQF_MDS_HSM_ACTION,
669         &RQF_MDS_HSM_REQUEST,
670         &RQF_QC_CALLBACK,
671         &RQF_OST_CONNECT,
672         &RQF_OST_DISCONNECT,
673         &RQF_OST_QUOTACHECK,
674         &RQF_OST_QUOTACTL,
675         &RQF_OST_GETATTR,
676         &RQF_OST_SETATTR,
677         &RQF_OST_CREATE,
678         &RQF_OST_PUNCH,
679         &RQF_OST_SYNC,
680         &RQF_OST_DESTROY,
681         &RQF_OST_BRW_READ,
682         &RQF_OST_BRW_WRITE,
683         &RQF_OST_STATFS,
684         &RQF_OST_SET_GRANT_INFO,
685         &RQF_OST_GET_INFO_GENERIC,
686         &RQF_OST_GET_INFO_LAST_ID,
687         &RQF_OST_GET_INFO_LAST_FID,
688         &RQF_OST_SET_INFO_LAST_FID,
689         &RQF_OST_GET_INFO_FIEMAP,
690         &RQF_LDLM_ENQUEUE,
691         &RQF_LDLM_ENQUEUE_LVB,
692         &RQF_LDLM_CONVERT,
693         &RQF_LDLM_CANCEL,
694         &RQF_LDLM_CALLBACK,
695         &RQF_LDLM_CP_CALLBACK,
696         &RQF_LDLM_BL_CALLBACK,
697         &RQF_LDLM_GL_CALLBACK,
698         &RQF_LDLM_GL_DESC_CALLBACK,
699         &RQF_LDLM_INTENT,
700         &RQF_LDLM_INTENT_BASIC,
701         &RQF_LDLM_INTENT_LAYOUT,
702         &RQF_LDLM_INTENT_GETATTR,
703         &RQF_LDLM_INTENT_OPEN,
704         &RQF_LDLM_INTENT_CREATE,
705         &RQF_LDLM_INTENT_UNLINK,
706         &RQF_LDLM_INTENT_QUOTA,
707         &RQF_QUOTA_DQACQ,
708         &RQF_LOG_CANCEL,
709         &RQF_LLOG_ORIGIN_HANDLE_CREATE,
710         &RQF_LLOG_ORIGIN_HANDLE_DESTROY,
711         &RQF_LLOG_ORIGIN_HANDLE_NEXT_BLOCK,
712         &RQF_LLOG_ORIGIN_HANDLE_PREV_BLOCK,
713         &RQF_LLOG_ORIGIN_HANDLE_READ_HEADER,
714         &RQF_LLOG_ORIGIN_CONNECT
715 };
716
717 struct req_msg_field {
718         const __u32 rmf_flags;
719         const char  *rmf_name;
720         /**
721          * Field length. (-1) means "variable length".  If the
722          * \a RMF_F_STRUCT_ARRAY flag is set the field is also variable-length,
723          * but the actual size must be a whole multiple of \a rmf_size.
724          */
725         const int   rmf_size;
726         void        (*rmf_swabber)(void *);
727         void        (*rmf_dumper)(void *);
728         int         rmf_offset[ARRAY_SIZE(req_formats)][RCL_NR];
729 };
730
731 enum rmf_flags {
732         /**
733          * The field is a string, must be NUL-terminated.
734          */
735         RMF_F_STRING = 1 << 0,
736         /**
737          * The field's buffer size need not match the declared \a rmf_size.
738          */
739         RMF_F_NO_SIZE_CHECK = 1 << 1,
740         /**
741          * The field's buffer size must be a whole multiple of the declared \a
742          * rmf_size and the \a rmf_swabber function must work on the declared \a
743          * rmf_size worth of bytes.
744          */
745         RMF_F_STRUCT_ARRAY = 1 << 2
746 };
747
748 struct req_capsule;
749
750 /*
751  * Request fields.
752  */
753 #define DEFINE_MSGF(name, flags, size, swabber, dumper) {       \
754         .rmf_name    = (name),                                  \
755         .rmf_flags   = (flags),                                 \
756         .rmf_size    = (size),                                  \
757         .rmf_swabber = (void (*)(void*))(swabber),              \
758         .rmf_dumper  = (void (*)(void*))(dumper)                \
759 }
760
761 struct req_msg_field RMF_GENERIC_DATA =
762         DEFINE_MSGF("generic_data", 0,
763                     -1, NULL, NULL);
764 EXPORT_SYMBOL(RMF_GENERIC_DATA);
765
766 struct req_msg_field RMF_MGS_TARGET_INFO =
767         DEFINE_MSGF("mgs_target_info", 0,
768                     sizeof(struct mgs_target_info),
769                     lustre_swab_mgs_target_info, NULL);
770 EXPORT_SYMBOL(RMF_MGS_TARGET_INFO);
771
772 struct req_msg_field RMF_MGS_SEND_PARAM =
773         DEFINE_MSGF("mgs_send_param", 0,
774                     sizeof(struct mgs_send_param),
775                     NULL, NULL);
776 EXPORT_SYMBOL(RMF_MGS_SEND_PARAM);
777
778 struct req_msg_field RMF_MGS_CONFIG_BODY =
779         DEFINE_MSGF("mgs_config_read request", 0,
780                     sizeof(struct mgs_config_body),
781                     lustre_swab_mgs_config_body, NULL);
782 EXPORT_SYMBOL(RMF_MGS_CONFIG_BODY);
783
784 struct req_msg_field RMF_MGS_CONFIG_RES =
785         DEFINE_MSGF("mgs_config_read reply ", 0,
786                     sizeof(struct mgs_config_res),
787                     lustre_swab_mgs_config_res, NULL);
788 EXPORT_SYMBOL(RMF_MGS_CONFIG_RES);
789
790 struct req_msg_field RMF_U32 =
791         DEFINE_MSGF("generic u32", 0,
792                     sizeof(__u32), lustre_swab_generic_32s, NULL);
793 EXPORT_SYMBOL(RMF_U32);
794
795 struct req_msg_field RMF_SETINFO_VAL =
796         DEFINE_MSGF("setinfo_val", 0, -1, NULL, NULL);
797 EXPORT_SYMBOL(RMF_SETINFO_VAL);
798
799 struct req_msg_field RMF_GETINFO_KEY =
800         DEFINE_MSGF("getinfo_key", 0, -1, NULL, NULL);
801 EXPORT_SYMBOL(RMF_GETINFO_KEY);
802
803 struct req_msg_field RMF_GETINFO_VALLEN =
804         DEFINE_MSGF("getinfo_vallen", 0,
805                     sizeof(__u32), lustre_swab_generic_32s, NULL);
806 EXPORT_SYMBOL(RMF_GETINFO_VALLEN);
807
808 struct req_msg_field RMF_GETINFO_VAL =
809         DEFINE_MSGF("getinfo_val", 0, -1, NULL, NULL);
810 EXPORT_SYMBOL(RMF_GETINFO_VAL);
811
812 struct req_msg_field RMF_SEQ_OPC =
813         DEFINE_MSGF("seq_query_opc", 0,
814                     sizeof(__u32), lustre_swab_generic_32s, NULL);
815 EXPORT_SYMBOL(RMF_SEQ_OPC);
816
817 struct req_msg_field RMF_SEQ_RANGE =
818         DEFINE_MSGF("seq_query_range", 0,
819                     sizeof(struct lu_seq_range),
820                     lustre_swab_lu_seq_range, NULL);
821 EXPORT_SYMBOL(RMF_SEQ_RANGE);
822
823 struct req_msg_field RMF_FLD_OPC =
824         DEFINE_MSGF("fld_query_opc", 0,
825                     sizeof(__u32), lustre_swab_generic_32s, NULL);
826 EXPORT_SYMBOL(RMF_FLD_OPC);
827
828 struct req_msg_field RMF_FLD_MDFLD =
829         DEFINE_MSGF("fld_query_mdfld", 0,
830                     sizeof(struct lu_seq_range),
831                     lustre_swab_lu_seq_range, NULL);
832 EXPORT_SYMBOL(RMF_FLD_MDFLD);
833
834 struct req_msg_field RMF_MDT_BODY =
835         DEFINE_MSGF("mdt_body", 0,
836                     sizeof(struct mdt_body), lustre_swab_mdt_body, NULL);
837 EXPORT_SYMBOL(RMF_MDT_BODY);
838
839 struct req_msg_field RMF_OBD_QUOTACTL =
840         DEFINE_MSGF("obd_quotactl", 0,
841                     sizeof(struct obd_quotactl),
842                     lustre_swab_obd_quotactl, NULL);
843 EXPORT_SYMBOL(RMF_OBD_QUOTACTL);
844
845 struct req_msg_field RMF_QUOTA_BODY =
846         DEFINE_MSGF("quota_body", 0,
847                     sizeof(struct quota_body), lustre_swab_quota_body, NULL);
848 EXPORT_SYMBOL(RMF_QUOTA_BODY);
849
850 struct req_msg_field RMF_MDT_EPOCH =
851         DEFINE_MSGF("mdt_ioepoch", 0,
852                     sizeof(struct mdt_ioepoch), lustre_swab_mdt_ioepoch, NULL);
853 EXPORT_SYMBOL(RMF_MDT_EPOCH);
854
855 struct req_msg_field RMF_PTLRPC_BODY =
856         DEFINE_MSGF("ptlrpc_body", 0,
857                     sizeof(struct ptlrpc_body), lustre_swab_ptlrpc_body, NULL);
858 EXPORT_SYMBOL(RMF_PTLRPC_BODY);
859
860 struct req_msg_field RMF_OBD_STATFS =
861         DEFINE_MSGF("obd_statfs", 0,
862                     sizeof(struct obd_statfs), lustre_swab_obd_statfs, NULL);
863 EXPORT_SYMBOL(RMF_OBD_STATFS);
864
865 struct req_msg_field RMF_SETINFO_KEY =
866         DEFINE_MSGF("setinfo_key", 0, -1, NULL, NULL);
867 EXPORT_SYMBOL(RMF_SETINFO_KEY);
868
869 struct req_msg_field RMF_NAME =
870         DEFINE_MSGF("name", RMF_F_STRING, -1, NULL, NULL);
871 EXPORT_SYMBOL(RMF_NAME);
872
873 struct req_msg_field RMF_SYMTGT =
874         DEFINE_MSGF("symtgt", RMF_F_STRING, -1, NULL, NULL);
875 EXPORT_SYMBOL(RMF_SYMTGT);
876
877 struct req_msg_field RMF_TGTUUID =
878         DEFINE_MSGF("tgtuuid", RMF_F_STRING, sizeof(struct obd_uuid) - 1, NULL,
879         NULL);
880 EXPORT_SYMBOL(RMF_TGTUUID);
881
882 struct req_msg_field RMF_CLUUID =
883         DEFINE_MSGF("cluuid", RMF_F_STRING, sizeof(struct obd_uuid) - 1, NULL,
884         NULL);
885 EXPORT_SYMBOL(RMF_CLUUID);
886
887 struct req_msg_field RMF_STRING =
888         DEFINE_MSGF("string", RMF_F_STRING, -1, NULL, NULL);
889 EXPORT_SYMBOL(RMF_STRING);
890
891 struct req_msg_field RMF_LLOGD_BODY =
892         DEFINE_MSGF("llogd_body", 0,
893                     sizeof(struct llogd_body), lustre_swab_llogd_body, NULL);
894 EXPORT_SYMBOL(RMF_LLOGD_BODY);
895
896 struct req_msg_field RMF_LLOG_LOG_HDR =
897         DEFINE_MSGF("llog_log_hdr", 0,
898                     sizeof(struct llog_log_hdr), lustre_swab_llog_hdr, NULL);
899 EXPORT_SYMBOL(RMF_LLOG_LOG_HDR);
900
901 struct req_msg_field RMF_LLOGD_CONN_BODY =
902         DEFINE_MSGF("llogd_conn_body", 0,
903                     sizeof(struct llogd_conn_body),
904                     lustre_swab_llogd_conn_body, NULL);
905 EXPORT_SYMBOL(RMF_LLOGD_CONN_BODY);
906
907 /*
908  * connection handle received in MDS_CONNECT request.
909  *
910  * No swabbing needed because struct lustre_handle contains only a 64-bit cookie
911  * that the client does not interpret at all.
912  */
913 struct req_msg_field RMF_CONN =
914         DEFINE_MSGF("conn", 0, sizeof(struct lustre_handle), NULL, NULL);
915 EXPORT_SYMBOL(RMF_CONN);
916
917 struct req_msg_field RMF_CONNECT_DATA =
918         DEFINE_MSGF("cdata",
919                     RMF_F_NO_SIZE_CHECK /* we allow extra space for interop */,
920 #if LUSTRE_VERSION_CODE > OBD_OCD_VERSION(2, 7, 50, 0)
921                     sizeof(struct obd_connect_data),
922 #else
923 /* For interoperability with 1.8 and 2.0 clients/servers.
924  * The RPC verification code allows larger RPC buffers, but not
925  * smaller buffers.  Until we no longer need to keep compatibility
926  * with older servers/clients we can only check that the buffer
927  * size is at least as large as obd_connect_data_v1.  That is not
928  * not in itself harmful, since the chance of just corrupting this
929  * field is low.  See JIRA LU-16 for details. */
930                     sizeof(struct obd_connect_data_v1),
931 #endif
932                     lustre_swab_connect, NULL);
933 EXPORT_SYMBOL(RMF_CONNECT_DATA);
934
935 struct req_msg_field RMF_DLM_REQ =
936         DEFINE_MSGF("dlm_req", RMF_F_NO_SIZE_CHECK /* ldlm_request_bufsize */,
937                     sizeof(struct ldlm_request),
938                     lustre_swab_ldlm_request, NULL);
939 EXPORT_SYMBOL(RMF_DLM_REQ);
940
941 struct req_msg_field RMF_DLM_REP =
942         DEFINE_MSGF("dlm_rep", 0,
943                     sizeof(struct ldlm_reply), lustre_swab_ldlm_reply, NULL);
944 EXPORT_SYMBOL(RMF_DLM_REP);
945
946 struct req_msg_field RMF_LDLM_INTENT =
947         DEFINE_MSGF("ldlm_intent", 0,
948                     sizeof(struct ldlm_intent), lustre_swab_ldlm_intent, NULL);
949 EXPORT_SYMBOL(RMF_LDLM_INTENT);
950
951 struct req_msg_field RMF_DLM_LVB =
952         DEFINE_MSGF("dlm_lvb", 0, -1, NULL, NULL);
953 EXPORT_SYMBOL(RMF_DLM_LVB);
954
955 struct req_msg_field RMF_DLM_GL_DESC =
956         DEFINE_MSGF("dlm_gl_desc", 0, sizeof(union ldlm_gl_desc),
957                     lustre_swab_gl_desc, NULL);
958 EXPORT_SYMBOL(RMF_DLM_GL_DESC);
959
960 struct req_msg_field RMF_MDT_MD =
961         DEFINE_MSGF("mdt_md", RMF_F_NO_SIZE_CHECK, MIN_MD_SIZE, NULL, NULL);
962 EXPORT_SYMBOL(RMF_MDT_MD);
963
964 struct req_msg_field RMF_REC_REINT =
965         DEFINE_MSGF("rec_reint", 0, sizeof(struct mdt_rec_reint),
966                     lustre_swab_mdt_rec_reint, NULL);
967 EXPORT_SYMBOL(RMF_REC_REINT);
968
969 /* FIXME: this length should be defined as a macro */
970 struct req_msg_field RMF_EADATA = DEFINE_MSGF("eadata", 0, -1,
971                                                     NULL, NULL);
972 EXPORT_SYMBOL(RMF_EADATA);
973
974 struct req_msg_field RMF_ACL =
975         DEFINE_MSGF("acl", RMF_F_NO_SIZE_CHECK,
976                     LUSTRE_POSIX_ACL_MAX_SIZE, NULL, NULL);
977 EXPORT_SYMBOL(RMF_ACL);
978
979 /* FIXME: this should be made to use RMF_F_STRUCT_ARRAY */
980 struct req_msg_field RMF_LOGCOOKIES =
981         DEFINE_MSGF("logcookies", RMF_F_NO_SIZE_CHECK /* multiple cookies */,
982                     sizeof(struct llog_cookie), NULL, NULL);
983 EXPORT_SYMBOL(RMF_LOGCOOKIES);
984
985 struct req_msg_field RMF_CAPA1 =
986         DEFINE_MSGF("capa", 0, sizeof(struct lustre_capa),
987                     lustre_swab_lustre_capa, NULL);
988 EXPORT_SYMBOL(RMF_CAPA1);
989
990 struct req_msg_field RMF_CAPA2 =
991         DEFINE_MSGF("capa", 0, sizeof(struct lustre_capa),
992                     lustre_swab_lustre_capa, NULL);
993 EXPORT_SYMBOL(RMF_CAPA2);
994
995 struct req_msg_field RMF_LAYOUT_INTENT =
996         DEFINE_MSGF("layout_intent", 0,
997                     sizeof(struct layout_intent), lustre_swab_layout_intent,
998                     NULL);
999 EXPORT_SYMBOL(RMF_LAYOUT_INTENT);
1000
1001 /*
1002  * OST request field.
1003  */
1004 struct req_msg_field RMF_OST_BODY =
1005         DEFINE_MSGF("ost_body", 0,
1006                     sizeof(struct ost_body), lustre_swab_ost_body, dump_ost_body);
1007 EXPORT_SYMBOL(RMF_OST_BODY);
1008
1009 struct req_msg_field RMF_OBD_IOOBJ =
1010         DEFINE_MSGF("obd_ioobj", RMF_F_STRUCT_ARRAY,
1011                     sizeof(struct obd_ioobj), lustre_swab_obd_ioobj, dump_ioo);
1012 EXPORT_SYMBOL(RMF_OBD_IOOBJ);
1013
1014 struct req_msg_field RMF_NIOBUF_REMOTE =
1015         DEFINE_MSGF("niobuf_remote", RMF_F_STRUCT_ARRAY,
1016                     sizeof(struct niobuf_remote), lustre_swab_niobuf_remote,
1017                     dump_rniobuf);
1018 EXPORT_SYMBOL(RMF_NIOBUF_REMOTE);
1019
1020 struct req_msg_field RMF_RCS =
1021         DEFINE_MSGF("niobuf_remote", RMF_F_STRUCT_ARRAY, sizeof(__u32),
1022                     lustre_swab_generic_32s, dump_rcs);
1023 EXPORT_SYMBOL(RMF_RCS);
1024
1025 struct req_msg_field RMF_OBD_ID =
1026         DEFINE_MSGF("obd_id", 0,
1027                     sizeof(obd_id), lustre_swab_ost_last_id, NULL);
1028 EXPORT_SYMBOL(RMF_OBD_ID);
1029
1030 struct req_msg_field RMF_FID =
1031         DEFINE_MSGF("fid", 0,
1032                     sizeof(struct lu_fid), lustre_swab_lu_fid, NULL);
1033 EXPORT_SYMBOL(RMF_FID);
1034
1035 struct req_msg_field RMF_FIEMAP_KEY =
1036         DEFINE_MSGF("fiemap", 0, sizeof(struct ll_fiemap_info_key),
1037                     lustre_swab_fiemap, NULL);
1038 EXPORT_SYMBOL(RMF_FIEMAP_KEY);
1039
1040 struct req_msg_field RMF_FIEMAP_VAL =
1041         DEFINE_MSGF("fiemap", 0, -1, lustre_swab_fiemap, NULL);
1042 EXPORT_SYMBOL(RMF_FIEMAP_VAL);
1043
1044 struct req_msg_field RMF_IDX_INFO =
1045         DEFINE_MSGF("idx_info", 0, sizeof(struct idx_info),
1046                     lustre_swab_idx_info, NULL);
1047 EXPORT_SYMBOL(RMF_IDX_INFO);
1048 struct req_msg_field RMF_HSM_USER_STATE =
1049         DEFINE_MSGF("hsm_user_state", 0, sizeof(struct hsm_user_state),
1050                     lustre_swab_hsm_user_state, NULL);
1051 EXPORT_SYMBOL(RMF_HSM_USER_STATE);
1052
1053 struct req_msg_field RMF_HSM_STATE_SET =
1054         DEFINE_MSGF("hsm_state_set", 0, sizeof(struct hsm_state_set),
1055                     lustre_swab_hsm_state_set, NULL);
1056 EXPORT_SYMBOL(RMF_HSM_STATE_SET);
1057
1058 struct req_msg_field RMF_MDS_HSM_PROGRESS =
1059         DEFINE_MSGF("hsm_progress", 0, sizeof(struct hsm_progress_kernel),
1060                     lustre_swab_hsm_progress_kernel, NULL);
1061 EXPORT_SYMBOL(RMF_MDS_HSM_PROGRESS);
1062
1063 struct req_msg_field RMF_MDS_HSM_CURRENT_ACTION =
1064         DEFINE_MSGF("hsm_current_action", 0, sizeof(struct hsm_current_action),
1065                     lustre_swab_hsm_current_action, NULL);
1066 EXPORT_SYMBOL(RMF_MDS_HSM_CURRENT_ACTION);
1067
1068 struct req_msg_field RMF_MDS_HSM_USER_ITEM =
1069         DEFINE_MSGF("hsm_user_item", RMF_F_STRUCT_ARRAY,
1070                     sizeof(struct hsm_user_item), lustre_swab_hsm_user_item,
1071                     NULL);
1072 EXPORT_SYMBOL(RMF_MDS_HSM_USER_ITEM);
1073
1074 struct req_msg_field RMF_MDS_HSM_ARCHIVE =
1075         DEFINE_MSGF("hsm_archive", 0,
1076                     sizeof(__u32), lustre_swab_generic_32s, NULL);
1077 EXPORT_SYMBOL(RMF_MDS_HSM_ARCHIVE);
1078
1079 struct req_msg_field RMF_MDS_HSM_REQUEST =
1080         DEFINE_MSGF("hsm_request", 0, sizeof(struct hsm_request),
1081                     lustre_swab_hsm_request, NULL);
1082 EXPORT_SYMBOL(RMF_MDS_HSM_REQUEST);
1083
1084 /*
1085  * Request formats.
1086  */
1087
1088 struct req_format {
1089         const char *rf_name;
1090         int         rf_idx;
1091         struct {
1092                 int                          nr;
1093                 const struct req_msg_field **d;
1094         } rf_fields[RCL_NR];
1095 };
1096
1097 #define DEFINE_REQ_FMT(name, client, client_nr, server, server_nr) {    \
1098         .rf_name   = name,                                              \
1099         .rf_fields = {                                                  \
1100                 [RCL_CLIENT] = {                                        \
1101                         .nr = client_nr,                                \
1102                         .d  = client                                    \
1103                 },                                                      \
1104                 [RCL_SERVER] = {                                        \
1105                         .nr = server_nr,                                \
1106                         .d  = server                                    \
1107                 }                                                       \
1108         }                                                               \
1109 }
1110
1111 #define DEFINE_REQ_FMT0(name, client, server)                                  \
1112 DEFINE_REQ_FMT(name, client, ARRAY_SIZE(client), server, ARRAY_SIZE(server))
1113
1114 struct req_format RQF_OBD_PING =
1115         DEFINE_REQ_FMT0("OBD_PING", empty, empty);
1116 EXPORT_SYMBOL(RQF_OBD_PING);
1117
1118 struct req_format RQF_OBD_SET_INFO =
1119         DEFINE_REQ_FMT0("OBD_SET_INFO", obd_set_info_client, empty);
1120 EXPORT_SYMBOL(RQF_OBD_SET_INFO);
1121
1122 /* Read index file through the network */
1123 struct req_format RQF_OBD_IDX_READ =
1124         DEFINE_REQ_FMT0("OBD_IDX_READ",
1125                         obd_idx_read_client, obd_idx_read_server);
1126 EXPORT_SYMBOL(RQF_OBD_IDX_READ);
1127
1128 struct req_format RQF_SEC_CTX =
1129         DEFINE_REQ_FMT0("SEC_CTX", empty, empty);
1130 EXPORT_SYMBOL(RQF_SEC_CTX);
1131
1132 struct req_format RQF_MGS_TARGET_REG =
1133         DEFINE_REQ_FMT0("MGS_TARGET_REG", mgs_target_info_only,
1134                          mgs_target_info_only);
1135 EXPORT_SYMBOL(RQF_MGS_TARGET_REG);
1136
1137 struct req_format RQF_MGS_SET_INFO =
1138         DEFINE_REQ_FMT0("MGS_SET_INFO", mgs_set_info,
1139                          mgs_set_info);
1140 EXPORT_SYMBOL(RQF_MGS_SET_INFO);
1141
1142 struct req_format RQF_MGS_CONFIG_READ =
1143         DEFINE_REQ_FMT0("MGS_CONFIG_READ", mgs_config_read_client,
1144                          mgs_config_read_server);
1145 EXPORT_SYMBOL(RQF_MGS_CONFIG_READ);
1146
1147 struct req_format RQF_SEQ_QUERY =
1148         DEFINE_REQ_FMT0("SEQ_QUERY", seq_query_client, seq_query_server);
1149 EXPORT_SYMBOL(RQF_SEQ_QUERY);
1150
1151 struct req_format RQF_FLD_QUERY =
1152         DEFINE_REQ_FMT0("FLD_QUERY", fld_query_client, fld_query_server);
1153 EXPORT_SYMBOL(RQF_FLD_QUERY);
1154
1155 struct req_format RQF_LOG_CANCEL =
1156         DEFINE_REQ_FMT0("OBD_LOG_CANCEL", log_cancel_client, empty);
1157 EXPORT_SYMBOL(RQF_LOG_CANCEL);
1158
1159 struct req_format RQF_MDS_QUOTACHECK =
1160         DEFINE_REQ_FMT0("MDS_QUOTACHECK", quotactl_only, empty);
1161 EXPORT_SYMBOL(RQF_MDS_QUOTACHECK);
1162
1163 struct req_format RQF_OST_QUOTACHECK =
1164         DEFINE_REQ_FMT0("OST_QUOTACHECK", quotactl_only, empty);
1165 EXPORT_SYMBOL(RQF_OST_QUOTACHECK);
1166
1167 struct req_format RQF_MDS_QUOTACTL =
1168         DEFINE_REQ_FMT0("MDS_QUOTACTL", quotactl_only, quotactl_only);
1169 EXPORT_SYMBOL(RQF_MDS_QUOTACTL);
1170
1171 struct req_format RQF_OST_QUOTACTL =
1172         DEFINE_REQ_FMT0("OST_QUOTACTL", quotactl_only, quotactl_only);
1173 EXPORT_SYMBOL(RQF_OST_QUOTACTL);
1174
1175 struct req_format RQF_QC_CALLBACK =
1176         DEFINE_REQ_FMT0("QC_CALLBACK", quotactl_only, empty);
1177 EXPORT_SYMBOL(RQF_QC_CALLBACK);
1178
1179 struct req_format RQF_QUOTA_DQACQ =
1180         DEFINE_REQ_FMT0("QUOTA_DQACQ", quota_body_only, quota_body_only);
1181 EXPORT_SYMBOL(RQF_QUOTA_DQACQ);
1182
1183 struct req_format RQF_LDLM_INTENT_QUOTA =
1184         DEFINE_REQ_FMT0("LDLM_INTENT_QUOTA",
1185                         ldlm_intent_quota_client,
1186                         ldlm_intent_quota_server);
1187 EXPORT_SYMBOL(RQF_LDLM_INTENT_QUOTA);
1188
1189 struct req_format RQF_MDS_GETSTATUS =
1190         DEFINE_REQ_FMT0("MDS_GETSTATUS", mdt_body_only, mdt_body_capa);
1191 EXPORT_SYMBOL(RQF_MDS_GETSTATUS);
1192
1193 struct req_format RQF_MDS_STATFS =
1194         DEFINE_REQ_FMT0("MDS_STATFS", empty, obd_statfs_server);
1195 EXPORT_SYMBOL(RQF_MDS_STATFS);
1196
1197 struct req_format RQF_MDS_SYNC =
1198         DEFINE_REQ_FMT0("MDS_SYNC", mdt_body_capa, mdt_body_only);
1199 EXPORT_SYMBOL(RQF_MDS_SYNC);
1200
1201 struct req_format RQF_MDS_GETATTR =
1202         DEFINE_REQ_FMT0("MDS_GETATTR", mdt_body_capa, mds_getattr_server);
1203 EXPORT_SYMBOL(RQF_MDS_GETATTR);
1204
1205 struct req_format RQF_MDS_GETXATTR =
1206         DEFINE_REQ_FMT0("MDS_GETXATTR",
1207                         mds_getxattr_client, mds_getxattr_server);
1208 EXPORT_SYMBOL(RQF_MDS_GETXATTR);
1209
1210 struct req_format RQF_MDS_GETATTR_NAME =
1211         DEFINE_REQ_FMT0("MDS_GETATTR_NAME",
1212                         mds_getattr_name_client, mds_getattr_server);
1213 EXPORT_SYMBOL(RQF_MDS_GETATTR_NAME);
1214
1215 struct req_format RQF_MDS_REINT =
1216         DEFINE_REQ_FMT0("MDS_REINT", mds_reint_client, mdt_body_only);
1217 EXPORT_SYMBOL(RQF_MDS_REINT);
1218
1219 struct req_format RQF_MDS_REINT_CREATE =
1220         DEFINE_REQ_FMT0("MDS_REINT_CREATE",
1221                         mds_reint_create_client, mdt_body_capa);
1222 EXPORT_SYMBOL(RQF_MDS_REINT_CREATE);
1223
1224 struct req_format RQF_MDS_REINT_CREATE_RMT_ACL =
1225         DEFINE_REQ_FMT0("MDS_REINT_CREATE_RMT_ACL",
1226                         mds_reint_create_rmt_acl_client, mdt_body_capa);
1227 EXPORT_SYMBOL(RQF_MDS_REINT_CREATE_RMT_ACL);
1228
1229 struct req_format RQF_MDS_REINT_CREATE_SLAVE =
1230         DEFINE_REQ_FMT0("MDS_REINT_CREATE_EA",
1231                         mds_reint_create_slave_client, mdt_body_capa);
1232 EXPORT_SYMBOL(RQF_MDS_REINT_CREATE_SLAVE);
1233
1234 struct req_format RQF_MDS_REINT_CREATE_SYM =
1235         DEFINE_REQ_FMT0("MDS_REINT_CREATE_SYM",
1236                         mds_reint_create_sym_client, mdt_body_capa);
1237 EXPORT_SYMBOL(RQF_MDS_REINT_CREATE_SYM);
1238
1239 struct req_format RQF_MDS_REINT_OPEN =
1240         DEFINE_REQ_FMT0("MDS_REINT_OPEN",
1241                         mds_reint_open_client, mds_reint_open_server);
1242 EXPORT_SYMBOL(RQF_MDS_REINT_OPEN);
1243
1244 struct req_format RQF_MDS_REINT_UNLINK =
1245         DEFINE_REQ_FMT0("MDS_REINT_UNLINK", mds_reint_unlink_client,
1246                         mds_last_unlink_server);
1247 EXPORT_SYMBOL(RQF_MDS_REINT_UNLINK);
1248
1249 struct req_format RQF_MDS_REINT_LINK =
1250         DEFINE_REQ_FMT0("MDS_REINT_LINK",
1251                         mds_reint_link_client, mdt_body_only);
1252 EXPORT_SYMBOL(RQF_MDS_REINT_LINK);
1253
1254 struct req_format RQF_MDS_REINT_RENAME =
1255         DEFINE_REQ_FMT0("MDS_REINT_RENAME", mds_reint_rename_client,
1256                         mds_last_unlink_server);
1257 EXPORT_SYMBOL(RQF_MDS_REINT_RENAME);
1258
1259 struct req_format RQF_MDS_REINT_SETATTR =
1260         DEFINE_REQ_FMT0("MDS_REINT_SETATTR",
1261                         mds_reint_setattr_client, mds_setattr_server);
1262 EXPORT_SYMBOL(RQF_MDS_REINT_SETATTR);
1263
1264 struct req_format RQF_MDS_REINT_SETXATTR =
1265         DEFINE_REQ_FMT0("MDS_REINT_SETXATTR",
1266                         mds_reint_setxattr_client, mdt_body_only);
1267 EXPORT_SYMBOL(RQF_MDS_REINT_SETXATTR);
1268
1269 struct req_format RQF_MDS_CONNECT =
1270         DEFINE_REQ_FMT0("MDS_CONNECT",
1271                         obd_connect_client, obd_connect_server);
1272 EXPORT_SYMBOL(RQF_MDS_CONNECT);
1273
1274 struct req_format RQF_MDS_DISCONNECT =
1275         DEFINE_REQ_FMT0("MDS_DISCONNECT", empty, empty);
1276 EXPORT_SYMBOL(RQF_MDS_DISCONNECT);
1277
1278 struct req_format RQF_MDS_GET_INFO =
1279         DEFINE_REQ_FMT0("MDS_GET_INFO", mds_getinfo_client,
1280                         mds_getinfo_server);
1281 EXPORT_SYMBOL(RQF_MDS_GET_INFO);
1282
1283 struct req_format RQF_LDLM_ENQUEUE =
1284         DEFINE_REQ_FMT0("LDLM_ENQUEUE",
1285                         ldlm_enqueue_client, ldlm_enqueue_lvb_server);
1286 EXPORT_SYMBOL(RQF_LDLM_ENQUEUE);
1287
1288 struct req_format RQF_LDLM_ENQUEUE_LVB =
1289         DEFINE_REQ_FMT0("LDLM_ENQUEUE_LVB",
1290                         ldlm_enqueue_client, ldlm_enqueue_lvb_server);
1291 EXPORT_SYMBOL(RQF_LDLM_ENQUEUE_LVB);
1292
1293 struct req_format RQF_LDLM_CONVERT =
1294         DEFINE_REQ_FMT0("LDLM_CONVERT",
1295                         ldlm_enqueue_client, ldlm_enqueue_server);
1296 EXPORT_SYMBOL(RQF_LDLM_CONVERT);
1297
1298 struct req_format RQF_LDLM_CANCEL =
1299         DEFINE_REQ_FMT0("LDLM_CANCEL", ldlm_enqueue_client, empty);
1300 EXPORT_SYMBOL(RQF_LDLM_CANCEL);
1301
1302 struct req_format RQF_LDLM_CALLBACK =
1303         DEFINE_REQ_FMT0("LDLM_CALLBACK", ldlm_enqueue_client, empty);
1304 EXPORT_SYMBOL(RQF_LDLM_CALLBACK);
1305
1306 struct req_format RQF_LDLM_CP_CALLBACK =
1307         DEFINE_REQ_FMT0("LDLM_CP_CALLBACK", ldlm_cp_callback_client, empty);
1308 EXPORT_SYMBOL(RQF_LDLM_CP_CALLBACK);
1309
1310 struct req_format RQF_LDLM_BL_CALLBACK =
1311         DEFINE_REQ_FMT0("LDLM_BL_CALLBACK", ldlm_enqueue_client, empty);
1312 EXPORT_SYMBOL(RQF_LDLM_BL_CALLBACK);
1313
1314 struct req_format RQF_LDLM_GL_CALLBACK =
1315         DEFINE_REQ_FMT0("LDLM_GL_CALLBACK", ldlm_enqueue_client,
1316                         ldlm_gl_callback_server);
1317 EXPORT_SYMBOL(RQF_LDLM_GL_CALLBACK);
1318
1319 struct req_format RQF_LDLM_GL_DESC_CALLBACK =
1320         DEFINE_REQ_FMT0("LDLM_GL_CALLBACK", ldlm_gl_callback_desc_client,
1321                         ldlm_gl_callback_server);
1322 EXPORT_SYMBOL(RQF_LDLM_GL_DESC_CALLBACK);
1323
1324 struct req_format RQF_LDLM_INTENT_BASIC =
1325         DEFINE_REQ_FMT0("LDLM_INTENT_BASIC",
1326                         ldlm_intent_basic_client, ldlm_enqueue_lvb_server);
1327 EXPORT_SYMBOL(RQF_LDLM_INTENT_BASIC);
1328
1329 struct req_format RQF_LDLM_INTENT =
1330         DEFINE_REQ_FMT0("LDLM_INTENT",
1331                         ldlm_intent_client, ldlm_intent_server);
1332 EXPORT_SYMBOL(RQF_LDLM_INTENT);
1333
1334 struct req_format RQF_LDLM_INTENT_LAYOUT =
1335         DEFINE_REQ_FMT0("LDLM_INTENT_LAYOUT ",
1336                         ldlm_intent_layout_client, ldlm_enqueue_lvb_server);
1337 EXPORT_SYMBOL(RQF_LDLM_INTENT_LAYOUT);
1338
1339 struct req_format RQF_LDLM_INTENT_GETATTR =
1340         DEFINE_REQ_FMT0("LDLM_INTENT_GETATTR",
1341                         ldlm_intent_getattr_client, ldlm_intent_getattr_server);
1342 EXPORT_SYMBOL(RQF_LDLM_INTENT_GETATTR);
1343
1344 struct req_format RQF_LDLM_INTENT_OPEN =
1345         DEFINE_REQ_FMT0("LDLM_INTENT_OPEN",
1346                         ldlm_intent_open_client, ldlm_intent_open_server);
1347 EXPORT_SYMBOL(RQF_LDLM_INTENT_OPEN);
1348
1349 struct req_format RQF_LDLM_INTENT_CREATE =
1350         DEFINE_REQ_FMT0("LDLM_INTENT_CREATE",
1351                         ldlm_intent_create_client, ldlm_intent_getattr_server);
1352 EXPORT_SYMBOL(RQF_LDLM_INTENT_CREATE);
1353
1354 struct req_format RQF_LDLM_INTENT_UNLINK =
1355         DEFINE_REQ_FMT0("LDLM_INTENT_UNLINK",
1356                         ldlm_intent_unlink_client, ldlm_intent_server);
1357 EXPORT_SYMBOL(RQF_LDLM_INTENT_UNLINK);
1358
1359 struct req_format RQF_MDS_CLOSE =
1360         DEFINE_REQ_FMT0("MDS_CLOSE",
1361                         mdt_close_client, mds_last_unlink_server);
1362 EXPORT_SYMBOL(RQF_MDS_CLOSE);
1363
1364 struct req_format RQF_MDS_PIN =
1365         DEFINE_REQ_FMT0("MDS_PIN",
1366                         mdt_body_capa, mdt_body_only);
1367 EXPORT_SYMBOL(RQF_MDS_PIN);
1368
1369 struct req_format RQF_MDS_UNPIN =
1370         DEFINE_REQ_FMT0("MDS_UNPIN", mdt_body_only, empty);
1371 EXPORT_SYMBOL(RQF_MDS_UNPIN);
1372
1373 struct req_format RQF_MDS_DONE_WRITING =
1374         DEFINE_REQ_FMT0("MDS_DONE_WRITING",
1375                         mdt_close_client, mdt_body_only);
1376 EXPORT_SYMBOL(RQF_MDS_DONE_WRITING);
1377
1378 struct req_format RQF_MDS_READPAGE =
1379         DEFINE_REQ_FMT0("MDS_READPAGE",
1380                         mdt_body_capa, mdt_body_only);
1381 EXPORT_SYMBOL(RQF_MDS_READPAGE);
1382
1383 struct req_format RQF_MDS_HSM_ACTION =
1384         DEFINE_REQ_FMT0("MDS_HSM_ACTION", mdt_body_capa, mdt_hsm_action_server);
1385 EXPORT_SYMBOL(RQF_MDS_HSM_ACTION);
1386
1387 struct req_format RQF_MDS_HSM_PROGRESS =
1388         DEFINE_REQ_FMT0("MDS_HSM_PROGRESS", mdt_hsm_progress, empty);
1389 EXPORT_SYMBOL(RQF_MDS_HSM_PROGRESS);
1390
1391 struct req_format RQF_MDS_HSM_CT_REGISTER =
1392         DEFINE_REQ_FMT0("MDS_HSM_CT_REGISTER", mdt_hsm_ct_register, empty);
1393 EXPORT_SYMBOL(RQF_MDS_HSM_CT_REGISTER);
1394
1395 struct req_format RQF_MDS_HSM_CT_UNREGISTER =
1396         DEFINE_REQ_FMT0("MDS_HSM_CT_UNREGISTER", empty, empty);
1397 EXPORT_SYMBOL(RQF_MDS_HSM_CT_UNREGISTER);
1398
1399 struct req_format RQF_MDS_HSM_STATE_GET =
1400         DEFINE_REQ_FMT0("MDS_HSM_STATE_GET",
1401                         mdt_body_capa, mdt_hsm_state_get_server);
1402 EXPORT_SYMBOL(RQF_MDS_HSM_STATE_GET);
1403
1404 struct req_format RQF_MDS_HSM_STATE_SET =
1405         DEFINE_REQ_FMT0("MDS_HSM_STATE_SET", mdt_hsm_state_set, empty);
1406 EXPORT_SYMBOL(RQF_MDS_HSM_STATE_SET);
1407
1408 struct req_format RQF_MDS_HSM_REQUEST =
1409         DEFINE_REQ_FMT0("MDS_HSM_REQUEST", mdt_hsm_request, empty);
1410 EXPORT_SYMBOL(RQF_MDS_HSM_REQUEST);
1411
1412 /* This is for split */
1413 struct req_format RQF_MDS_WRITEPAGE =
1414         DEFINE_REQ_FMT0("MDS_WRITEPAGE",
1415                         mdt_body_capa, mdt_body_only);
1416 EXPORT_SYMBOL(RQF_MDS_WRITEPAGE);
1417
1418 struct req_format RQF_MDS_IS_SUBDIR =
1419         DEFINE_REQ_FMT0("MDS_IS_SUBDIR",
1420                         mdt_body_only, mdt_body_only);
1421 EXPORT_SYMBOL(RQF_MDS_IS_SUBDIR);
1422
1423 struct req_format RQF_LLOG_ORIGIN_HANDLE_CREATE =
1424         DEFINE_REQ_FMT0("LLOG_ORIGIN_HANDLE_CREATE",
1425                         llog_origin_handle_create_client, llogd_body_only);
1426 EXPORT_SYMBOL(RQF_LLOG_ORIGIN_HANDLE_CREATE);
1427
1428 struct req_format RQF_LLOG_ORIGIN_HANDLE_DESTROY =
1429         DEFINE_REQ_FMT0("LLOG_ORIGIN_HANDLE_DESTROY",
1430                         llogd_body_only, llogd_body_only);
1431 EXPORT_SYMBOL(RQF_LLOG_ORIGIN_HANDLE_DESTROY);
1432
1433 struct req_format RQF_LLOG_ORIGIN_HANDLE_NEXT_BLOCK =
1434         DEFINE_REQ_FMT0("LLOG_ORIGIN_HANDLE_NEXT_BLOCK",
1435                         llogd_body_only, llog_origin_handle_next_block_server);
1436 EXPORT_SYMBOL(RQF_LLOG_ORIGIN_HANDLE_NEXT_BLOCK);
1437
1438 struct req_format RQF_LLOG_ORIGIN_HANDLE_PREV_BLOCK =
1439         DEFINE_REQ_FMT0("LLOG_ORIGIN_HANDLE_PREV_BLOCK",
1440                         llogd_body_only, llog_origin_handle_next_block_server);
1441 EXPORT_SYMBOL(RQF_LLOG_ORIGIN_HANDLE_PREV_BLOCK);
1442
1443 struct req_format RQF_LLOG_ORIGIN_HANDLE_READ_HEADER =
1444         DEFINE_REQ_FMT0("LLOG_ORIGIN_HANDLE_READ_HEADER",
1445                         llogd_body_only, llog_log_hdr_only);
1446 EXPORT_SYMBOL(RQF_LLOG_ORIGIN_HANDLE_READ_HEADER);
1447
1448 struct req_format RQF_LLOG_ORIGIN_CONNECT =
1449         DEFINE_REQ_FMT0("LLOG_ORIGIN_CONNECT", llogd_conn_body_only, empty);
1450 EXPORT_SYMBOL(RQF_LLOG_ORIGIN_CONNECT);
1451
1452 struct req_format RQF_OST_CONNECT =
1453         DEFINE_REQ_FMT0("OST_CONNECT",
1454                         obd_connect_client, obd_connect_server);
1455 EXPORT_SYMBOL(RQF_OST_CONNECT);
1456
1457 struct req_format RQF_OST_DISCONNECT =
1458         DEFINE_REQ_FMT0("OST_DISCONNECT", empty, empty);
1459 EXPORT_SYMBOL(RQF_OST_DISCONNECT);
1460
1461 struct req_format RQF_OST_GETATTR =
1462         DEFINE_REQ_FMT0("OST_GETATTR", ost_body_capa, ost_body_only);
1463 EXPORT_SYMBOL(RQF_OST_GETATTR);
1464
1465 struct req_format RQF_OST_SETATTR =
1466         DEFINE_REQ_FMT0("OST_SETATTR", ost_body_capa, ost_body_only);
1467 EXPORT_SYMBOL(RQF_OST_SETATTR);
1468
1469 struct req_format RQF_OST_CREATE =
1470         DEFINE_REQ_FMT0("OST_CREATE", ost_body_only, ost_body_only);
1471 EXPORT_SYMBOL(RQF_OST_CREATE);
1472
1473 struct req_format RQF_OST_PUNCH =
1474         DEFINE_REQ_FMT0("OST_PUNCH", ost_body_capa, ost_body_only);
1475 EXPORT_SYMBOL(RQF_OST_PUNCH);
1476
1477 struct req_format RQF_OST_SYNC =
1478         DEFINE_REQ_FMT0("OST_SYNC", ost_body_capa, ost_body_only);
1479 EXPORT_SYMBOL(RQF_OST_SYNC);
1480
1481 struct req_format RQF_OST_DESTROY =
1482         DEFINE_REQ_FMT0("OST_DESTROY", ost_destroy_client, ost_body_only);
1483 EXPORT_SYMBOL(RQF_OST_DESTROY);
1484
1485 struct req_format RQF_OST_BRW_READ =
1486         DEFINE_REQ_FMT0("OST_BRW_READ", ost_brw_client, ost_brw_read_server);
1487 EXPORT_SYMBOL(RQF_OST_BRW_READ);
1488
1489 struct req_format RQF_OST_BRW_WRITE =
1490         DEFINE_REQ_FMT0("OST_BRW_WRITE", ost_brw_client, ost_brw_write_server);
1491 EXPORT_SYMBOL(RQF_OST_BRW_WRITE);
1492
1493 struct req_format RQF_OST_STATFS =
1494         DEFINE_REQ_FMT0("OST_STATFS", empty, obd_statfs_server);
1495 EXPORT_SYMBOL(RQF_OST_STATFS);
1496
1497 struct req_format RQF_OST_SET_GRANT_INFO =
1498         DEFINE_REQ_FMT0("OST_SET_GRANT_INFO", ost_grant_shrink_client,
1499                          ost_body_only);
1500 EXPORT_SYMBOL(RQF_OST_SET_GRANT_INFO);
1501
1502 struct req_format RQF_OST_GET_INFO_GENERIC =
1503         DEFINE_REQ_FMT0("OST_GET_INFO", ost_get_info_generic_client,
1504                                         ost_get_info_generic_server);
1505 EXPORT_SYMBOL(RQF_OST_GET_INFO_GENERIC);
1506
1507 struct req_format RQF_OST_GET_INFO_LAST_ID =
1508         DEFINE_REQ_FMT0("OST_GET_INFO_LAST_ID", ost_get_info_generic_client,
1509                                                 ost_get_last_id_server);
1510 EXPORT_SYMBOL(RQF_OST_GET_INFO_LAST_ID);
1511
1512 struct req_format RQF_OST_GET_INFO_LAST_FID =
1513         DEFINE_REQ_FMT0("OST_GET_INFO_LAST_FID", obd_set_info_client,
1514                                                  ost_get_last_fid_server);
1515 EXPORT_SYMBOL(RQF_OST_GET_INFO_LAST_FID);
1516
1517 struct req_format RQF_OST_SET_INFO_LAST_FID =
1518         DEFINE_REQ_FMT0("OST_SET_INFO_LAST_FID", obd_set_info_client,
1519                                                  empty);
1520 EXPORT_SYMBOL(RQF_OST_SET_INFO_LAST_FID);
1521
1522 struct req_format RQF_OST_GET_INFO_FIEMAP =
1523         DEFINE_REQ_FMT0("OST_GET_INFO_FIEMAP", ost_get_fiemap_client,
1524                                                ost_get_fiemap_server);
1525 EXPORT_SYMBOL(RQF_OST_GET_INFO_FIEMAP);
1526
1527 #if !defined(__REQ_LAYOUT_USER__)
1528
1529 /* Convenience macro */
1530 #define FMT_FIELD(fmt, i, j) (fmt)->rf_fields[(i)].d[(j)]
1531
1532 /**
1533  * Initializes the capsule abstraction by computing and setting the \a rf_idx
1534  * field of RQFs and the \a rmf_offset field of RMFs.
1535  */
1536 int req_layout_init(void)
1537 {
1538         int i;
1539         int j;
1540         int k;
1541         struct req_format *rf = NULL;
1542
1543         for (i = 0; i < ARRAY_SIZE(req_formats); ++i) {
1544                 rf = req_formats[i];
1545                 rf->rf_idx = i;
1546                 for (j = 0; j < RCL_NR; ++j) {
1547                         LASSERT(rf->rf_fields[j].nr <= REQ_MAX_FIELD_NR);
1548                         for (k = 0; k < rf->rf_fields[j].nr; ++k) {
1549                                 struct req_msg_field *field;
1550
1551                                 field = (typeof(field))rf->rf_fields[j].d[k];
1552                                 LASSERT(!(field->rmf_flags & RMF_F_STRUCT_ARRAY)
1553                                         || field->rmf_size > 0);
1554                                 LASSERT(field->rmf_offset[i][j] == 0);
1555                                 /*
1556                                  * k + 1 to detect unused format/field
1557                                  * combinations.
1558                                  */
1559                                 field->rmf_offset[i][j] = k + 1;
1560                         }
1561                 }
1562         }
1563         return 0;
1564 }
1565 EXPORT_SYMBOL(req_layout_init);
1566
1567 void req_layout_fini(void)
1568 {
1569 }
1570 EXPORT_SYMBOL(req_layout_fini);
1571
1572 /**
1573  * Initializes the expected sizes of each RMF in a \a pill (\a rc_area) to -1.
1574  *
1575  * Actual/expected field sizes are set elsewhere in functions in this file:
1576  * req_capsule_init(), req_capsule_server_pack(), req_capsule_set_size() and
1577  * req_capsule_msg_size().  The \a rc_area information is used by.
1578  * ptlrpc_request_set_replen().
1579  */
1580 void req_capsule_init_area(struct req_capsule *pill)
1581 {
1582         int i;
1583
1584         for (i = 0; i < ARRAY_SIZE(pill->rc_area[RCL_CLIENT]); i++) {
1585                 pill->rc_area[RCL_CLIENT][i] = -1;
1586                 pill->rc_area[RCL_SERVER][i] = -1;
1587         }
1588 }
1589 EXPORT_SYMBOL(req_capsule_init_area);
1590
1591 /**
1592  * Initialize a pill.
1593  *
1594  * The \a location indicates whether the caller is executing on the client side
1595  * (RCL_CLIENT) or server side (RCL_SERVER)..
1596  */
1597 void req_capsule_init(struct req_capsule *pill,
1598                       struct ptlrpc_request *req,
1599                       enum req_location location)
1600 {
1601         LASSERT(location == RCL_SERVER || location == RCL_CLIENT);
1602
1603         /*
1604          * Today all capsules are embedded in ptlrpc_request structs,
1605          * but just in case that ever isn't the case, we don't reach
1606          * into req unless req != NULL and pill is the one embedded in
1607          * the req.
1608          *
1609          * The req->rq_pill_init flag makes it safe to initialize a pill
1610          * twice, which might happen in the OST paths as a result of the
1611          * high-priority RPC queue getting peeked at before ost_handle()
1612          * handles an OST RPC.
1613          */
1614         if (req != NULL && pill == &req->rq_pill && req->rq_pill_init)
1615                 return;
1616
1617         memset(pill, 0, sizeof *pill);
1618         pill->rc_req = req;
1619         pill->rc_loc = location;
1620         req_capsule_init_area(pill);
1621
1622         if (req != NULL && pill == &req->rq_pill)
1623                 req->rq_pill_init = 1;
1624 }
1625 EXPORT_SYMBOL(req_capsule_init);
1626
1627 void req_capsule_fini(struct req_capsule *pill)
1628 {
1629 }
1630 EXPORT_SYMBOL(req_capsule_fini);
1631
1632 static int __req_format_is_sane(const struct req_format *fmt)
1633 {
1634         return
1635                 0 <= fmt->rf_idx && fmt->rf_idx < ARRAY_SIZE(req_formats) &&
1636                 req_formats[fmt->rf_idx] == fmt;
1637 }
1638
1639 static struct lustre_msg *__req_msg(const struct req_capsule *pill,
1640                                     enum req_location loc)
1641 {
1642         struct ptlrpc_request *req;
1643
1644         req = pill->rc_req;
1645         return loc == RCL_CLIENT ? req->rq_reqmsg : req->rq_repmsg;
1646 }
1647
1648 /**
1649  * Set the format (\a fmt) of a \a pill; format changes are not allowed here
1650  * (see req_capsule_extend()).
1651  */
1652 void req_capsule_set(struct req_capsule *pill, const struct req_format *fmt)
1653 {
1654         LASSERT(pill->rc_fmt == NULL || pill->rc_fmt == fmt);
1655         LASSERT(__req_format_is_sane(fmt));
1656
1657         pill->rc_fmt = fmt;
1658 }
1659 EXPORT_SYMBOL(req_capsule_set);
1660
1661 /**
1662  * Fills in any parts of the \a rc_area of a \a pill that haven't been filled in
1663  * yet.
1664
1665  * \a rc_area is an array of REQ_MAX_FIELD_NR elements, used to store sizes of
1666  * variable-sized fields.  The field sizes come from the declared \a rmf_size
1667  * field of a \a pill's \a rc_fmt's RMF's.
1668  */
1669 int req_capsule_filled_sizes(struct req_capsule *pill,
1670                            enum req_location loc)
1671 {
1672         const struct req_format *fmt = pill->rc_fmt;
1673         int                      i;
1674
1675         LASSERT(fmt != NULL);
1676
1677         for (i = 0; i < fmt->rf_fields[loc].nr; ++i) {
1678                 if (pill->rc_area[loc][i] == -1) {
1679                         pill->rc_area[loc][i] =
1680                                             fmt->rf_fields[loc].d[i]->rmf_size;
1681                         if (pill->rc_area[loc][i] == -1) {
1682                                 /*
1683                                  * Skip the following fields.
1684                                  *
1685                                  * If this LASSERT() trips then you're missing a
1686                                  * call to req_capsule_set_size().
1687                                  */
1688                                 LASSERT(loc != RCL_SERVER);
1689                                 break;
1690                         }
1691                 }
1692         }
1693         return i;
1694 }
1695 EXPORT_SYMBOL(req_capsule_filled_sizes);
1696
1697 /**
1698  * Capsule equivalent of lustre_pack_request() and lustre_pack_reply().
1699  *
1700  * This function uses the \a pill's \a rc_area as filled in by
1701  * req_capsule_set_size() or req_capsule_filled_sizes() (the latter is called by
1702  * this function).
1703  */
1704 int req_capsule_server_pack(struct req_capsule *pill)
1705 {
1706         const struct req_format *fmt;
1707         int                      count;
1708         int                      rc;
1709
1710         LASSERT(pill->rc_loc == RCL_SERVER);
1711         fmt = pill->rc_fmt;
1712         LASSERT(fmt != NULL);
1713
1714         count = req_capsule_filled_sizes(pill, RCL_SERVER);
1715         rc = lustre_pack_reply(pill->rc_req, count,
1716                                pill->rc_area[RCL_SERVER], NULL);
1717         if (rc != 0) {
1718                 DEBUG_REQ(D_ERROR, pill->rc_req,
1719                        "Cannot pack %d fields in format `%s': ",
1720                        count, fmt->rf_name);
1721         }
1722         return rc;
1723 }
1724 EXPORT_SYMBOL(req_capsule_server_pack);
1725
1726 /**
1727  * Returns the PTLRPC request or reply (\a loc) buffer offset of a \a pill
1728  * corresponding to the given RMF (\a field).
1729  */
1730 static int __req_capsule_offset(const struct req_capsule *pill,
1731                                 const struct req_msg_field *field,
1732                                 enum req_location loc)
1733 {
1734         int offset;
1735
1736         offset = field->rmf_offset[pill->rc_fmt->rf_idx][loc];
1737         LASSERTF(offset > 0, "%s:%s, off=%d, loc=%d\n",
1738                             pill->rc_fmt->rf_name,
1739                             field->rmf_name, offset, loc);
1740         offset --;
1741
1742         LASSERT(0 <= offset && offset < REQ_MAX_FIELD_NR);
1743         return offset;
1744 }
1745
1746 /**
1747  * Helper for __req_capsule_get(); swabs value / array of values and/or dumps
1748  * them if desired.
1749  */
1750 static
1751 void
1752 swabber_dumper_helper(struct req_capsule *pill,
1753                       const struct req_msg_field *field,
1754                       enum req_location loc,
1755                       int offset,
1756                       void *value, int len, int dump, void (*swabber)( void *))
1757 {
1758         void    *p;
1759         int     i;
1760         int     n;
1761         int     do_swab;
1762         int     inout = loc == RCL_CLIENT;
1763
1764         swabber = swabber ?: field->rmf_swabber;
1765
1766         if (ptlrpc_buf_need_swab(pill->rc_req, inout, offset) &&
1767             swabber != NULL && value != NULL)
1768                 do_swab = 1;
1769         else
1770                 do_swab = 0;
1771
1772         if (!(field->rmf_flags & RMF_F_STRUCT_ARRAY)) {
1773                 if (dump && field->rmf_dumper) {
1774                         CDEBUG(D_RPCTRACE, "Dump of %sfield %s follows\n",
1775                                do_swab ? "unswabbed " : "", field->rmf_name);
1776                         field->rmf_dumper(value);
1777                 }
1778                 if (!do_swab)
1779                         return;
1780                 swabber(value);
1781                 ptlrpc_buf_set_swabbed(pill->rc_req, inout, offset);
1782                 if (dump) {
1783                         CDEBUG(D_RPCTRACE, "Dump of swabbed field %s "
1784                                "follows\n", field->rmf_name);
1785                         field->rmf_dumper(value);
1786                 }
1787
1788                 return;
1789         }
1790
1791         /*
1792          * We're swabbing an array; swabber() swabs a single array element, so
1793          * swab every element.
1794          */
1795         LASSERT((len % field->rmf_size) == 0);
1796         for (p = value, i = 0, n = len / field->rmf_size;
1797              i < n;
1798              i++, p += field->rmf_size) {
1799                 if (dump && field->rmf_dumper) {
1800                         CDEBUG(D_RPCTRACE, "Dump of %sarray field %s, "
1801                                "element %d follows\n",
1802                                do_swab ? "unswabbed " : "", field->rmf_name, i);
1803                         field->rmf_dumper(p);
1804                 }
1805                 if (!do_swab)
1806                         continue;
1807                 swabber(p);
1808                 if (dump && field->rmf_dumper) {
1809                         CDEBUG(D_RPCTRACE, "Dump of swabbed array field %s, "
1810                                "element %d follows\n", field->rmf_name, i);
1811                         field->rmf_dumper(value);
1812                 }
1813         }
1814         if (do_swab)
1815                 ptlrpc_buf_set_swabbed(pill->rc_req, inout, offset);
1816 }
1817
1818 /**
1819  * Returns the pointer to a PTLRPC request or reply (\a loc) buffer of a \a pill
1820  * corresponding to the given RMF (\a field).
1821  *
1822  * The buffer will be swabbed using the given \a swabber.  If \a swabber == NULL
1823  * then the \a rmf_swabber from the RMF will be used.  Soon there will be no
1824  * calls to __req_capsule_get() with a non-NULL \a swabber; \a swabber will then
1825  * be removed.  Fields with the \a RMF_F_STRUCT_ARRAY flag set will have each
1826  * element of the array swabbed.
1827  */
1828 static void *__req_capsule_get(struct req_capsule *pill,
1829                                const struct req_msg_field *field,
1830                                enum req_location loc,
1831                                void (*swabber)( void *),
1832                                int dump)
1833 {
1834         const struct req_format *fmt;
1835         struct lustre_msg       *msg;
1836         void                    *value;
1837         int                      len;
1838         int                      offset;
1839
1840         void *(*getter)(struct lustre_msg *m, int n, int minlen);
1841
1842         static const char *rcl_names[RCL_NR] = {
1843                 [RCL_CLIENT] = "client",
1844                 [RCL_SERVER] = "server"
1845         };
1846
1847         LASSERT(pill != NULL);
1848         LASSERT(pill != LP_POISON);
1849         fmt = pill->rc_fmt;
1850         LASSERT(fmt != NULL);
1851         LASSERT(fmt != LP_POISON);
1852         LASSERT(__req_format_is_sane(fmt));
1853
1854         offset = __req_capsule_offset(pill, field, loc);
1855
1856         msg = __req_msg(pill, loc);
1857         LASSERT(msg != NULL);
1858
1859         getter = (field->rmf_flags & RMF_F_STRING) ?
1860                 (typeof(getter))lustre_msg_string : lustre_msg_buf;
1861
1862         if (field->rmf_flags & RMF_F_STRUCT_ARRAY) {
1863                 /*
1864                  * We've already asserted that field->rmf_size > 0 in
1865                  * req_layout_init().
1866                  */
1867                 len = lustre_msg_buflen(msg, offset);
1868                 if ((len % field->rmf_size) != 0) {
1869                         CERROR("%s: array field size mismatch "
1870                                "%d modulo %d != 0 (%d)\n",
1871                                field->rmf_name, len, field->rmf_size, loc);
1872                         return NULL;
1873                 }
1874         } else if (pill->rc_area[loc][offset] != -1) {
1875                 len = pill->rc_area[loc][offset];
1876         } else {
1877                 len = max(field->rmf_size, 0);
1878         }
1879         value = getter(msg, offset, len);
1880
1881         if (value == NULL) {
1882                 DEBUG_REQ(D_ERROR, pill->rc_req,
1883                           "Wrong buffer for field `%s' (%d of %d) "
1884                           "in format `%s': %d vs. %d (%s)\n",
1885                           field->rmf_name, offset, lustre_msg_bufcount(msg),
1886                           fmt->rf_name, lustre_msg_buflen(msg, offset), len,
1887                           rcl_names[loc]);
1888         } else {
1889                 swabber_dumper_helper(pill, field, loc, offset, value, len,
1890                                       dump, swabber);
1891         }
1892
1893         return value;
1894 }
1895
1896 /**
1897  * Dump a request and/or reply
1898  */
1899 void __req_capsule_dump(struct req_capsule *pill, enum req_location loc)
1900 {
1901         const struct    req_format *fmt;
1902         const struct    req_msg_field *field;
1903         int             len;
1904         int             i;
1905
1906         fmt = pill->rc_fmt;
1907
1908         DEBUG_REQ(D_RPCTRACE, pill->rc_req, "BEGIN REQ CAPSULE DUMP\n");
1909         for (i = 0; i < fmt->rf_fields[loc].nr; ++i) {
1910                 field = FMT_FIELD(fmt, loc, i);
1911                 if (field->rmf_dumper == NULL) {
1912                         /*
1913                          * FIXME Add a default hex dumper for fields that don't
1914                          * have a specific dumper
1915                          */
1916                         len = req_capsule_get_size(pill, field, loc);
1917                         CDEBUG(D_RPCTRACE, "Field %s has no dumper function;"
1918                                "field size is %d\n", field->rmf_name, len);
1919                 } else {
1920                         /* It's the dumping side-effect that we're interested in */
1921                         (void) __req_capsule_get(pill, field, loc, NULL, 1);
1922                 }
1923         }
1924         CDEBUG(D_RPCTRACE, "END REQ CAPSULE DUMP\n");
1925 }
1926
1927 /**
1928  * Dump a request.
1929  */
1930 void req_capsule_client_dump(struct req_capsule *pill)
1931 {
1932         __req_capsule_dump(pill, RCL_CLIENT);
1933 }
1934 EXPORT_SYMBOL(req_capsule_client_dump);
1935
1936 /**
1937  * Dump a reply
1938  */
1939 void req_capsule_server_dump(struct req_capsule *pill)
1940 {
1941         __req_capsule_dump(pill, RCL_SERVER);
1942 }
1943 EXPORT_SYMBOL(req_capsule_server_dump);
1944
1945 /**
1946  * Trivial wrapper around __req_capsule_get(), that returns the PTLRPC request
1947  * buffer corresponding to the given RMF (\a field) of a \a pill.
1948  */
1949 void *req_capsule_client_get(struct req_capsule *pill,
1950                              const struct req_msg_field *field)
1951 {
1952         return __req_capsule_get(pill, field, RCL_CLIENT, NULL, 0);
1953 }
1954 EXPORT_SYMBOL(req_capsule_client_get);
1955
1956 /**
1957  * Same as req_capsule_client_get(), but with a \a swabber argument.
1958  *
1959  * Currently unused; will be removed when req_capsule_server_swab_get() is
1960  * unused too.
1961  */
1962 void *req_capsule_client_swab_get(struct req_capsule *pill,
1963                                   const struct req_msg_field *field,
1964                                   void *swabber)
1965 {
1966         return __req_capsule_get(pill, field, RCL_CLIENT, swabber, 0);
1967 }
1968 EXPORT_SYMBOL(req_capsule_client_swab_get);
1969
1970 /**
1971  * Utility that combines req_capsule_set_size() and req_capsule_client_get().
1972  *
1973  * First the \a pill's request \a field's size is set (\a rc_area) using
1974  * req_capsule_set_size() with the given \a len.  Then the actual buffer is
1975  * returned.
1976  */
1977 void *req_capsule_client_sized_get(struct req_capsule *pill,
1978                                    const struct req_msg_field *field,
1979                                    int len)
1980 {
1981         req_capsule_set_size(pill, field, RCL_CLIENT, len);
1982         return __req_capsule_get(pill, field, RCL_CLIENT, NULL, 0);
1983 }
1984 EXPORT_SYMBOL(req_capsule_client_sized_get);
1985
1986 /**
1987  * Trivial wrapper around __req_capsule_get(), that returns the PTLRPC reply
1988  * buffer corresponding to the given RMF (\a field) of a \a pill.
1989  */
1990 void *req_capsule_server_get(struct req_capsule *pill,
1991                              const struct req_msg_field *field)
1992 {
1993         return __req_capsule_get(pill, field, RCL_SERVER, NULL, 0);
1994 }
1995 EXPORT_SYMBOL(req_capsule_server_get);
1996
1997 /**
1998  * Same as req_capsule_server_get(), but with a \a swabber argument.
1999  *
2000  * Ideally all swabbing should be done pursuant to RMF definitions, with no
2001  * swabbing done outside this capsule abstraction.
2002  */
2003 void *req_capsule_server_swab_get(struct req_capsule *pill,
2004                                   const struct req_msg_field *field,
2005                                   void *swabber)
2006 {
2007         return __req_capsule_get(pill, field, RCL_SERVER, swabber, 0);
2008 }
2009 EXPORT_SYMBOL(req_capsule_server_swab_get);
2010
2011 /**
2012  * Utility that combines req_capsule_set_size() and req_capsule_server_get().
2013  *
2014  * First the \a pill's request \a field's size is set (\a rc_area) using
2015  * req_capsule_set_size() with the given \a len.  Then the actual buffer is
2016  * returned.
2017  */
2018 void *req_capsule_server_sized_get(struct req_capsule *pill,
2019                                    const struct req_msg_field *field,
2020                                    int len)
2021 {
2022         req_capsule_set_size(pill, field, RCL_SERVER, len);
2023         return __req_capsule_get(pill, field, RCL_SERVER, NULL, 0);
2024 }
2025 EXPORT_SYMBOL(req_capsule_server_sized_get);
2026
2027 void *req_capsule_server_sized_swab_get(struct req_capsule *pill,
2028                                         const struct req_msg_field *field,
2029                                         int len, void *swabber)
2030 {
2031         req_capsule_set_size(pill, field, RCL_SERVER, len);
2032         return __req_capsule_get(pill, field, RCL_SERVER, swabber, 0);
2033 }
2034 EXPORT_SYMBOL(req_capsule_server_sized_swab_get);
2035
2036 /**
2037  * Returns the buffer of a \a pill corresponding to the given \a field from the
2038  * request (if the caller is executing on the server-side) or reply (if the
2039  * caller is executing on the client-side).
2040  *
2041  * This function convienient for use is code that could be executed on the
2042  * client and server alike.
2043  */
2044 const void *req_capsule_other_get(struct req_capsule *pill,
2045                                   const struct req_msg_field *field)
2046 {
2047         return __req_capsule_get(pill, field, pill->rc_loc ^ 1, NULL, 0);
2048 }
2049 EXPORT_SYMBOL(req_capsule_other_get);
2050
2051 /**
2052  * Set the size of the PTLRPC request/reply (\a loc) buffer for the given \a
2053  * field of the given \a pill.
2054  *
2055  * This function must be used when constructing variable sized fields of a
2056  * request or reply.
2057  */
2058 void req_capsule_set_size(struct req_capsule *pill,
2059                           const struct req_msg_field *field,
2060                           enum req_location loc, int size)
2061 {
2062         LASSERT(loc == RCL_SERVER || loc == RCL_CLIENT);
2063
2064         if ((size != field->rmf_size) &&
2065             (field->rmf_size != -1) &&
2066             !(field->rmf_flags & RMF_F_NO_SIZE_CHECK) &&
2067             (size > 0)) {
2068                 if ((field->rmf_flags & RMF_F_STRUCT_ARRAY) &&
2069                     (size % field->rmf_size != 0)) {
2070                         CERROR("%s: array field size mismatch "
2071                                "%d %% %d != 0 (%d)\n",
2072                                field->rmf_name, size, field->rmf_size, loc);
2073                         LBUG();
2074                 } else if (!(field->rmf_flags & RMF_F_STRUCT_ARRAY) &&
2075                     size < field->rmf_size) {
2076                         CERROR("%s: field size mismatch %d != %d (%d)\n",
2077                                field->rmf_name, size, field->rmf_size, loc);
2078                         LBUG();
2079                 }
2080         }
2081
2082         pill->rc_area[loc][__req_capsule_offset(pill, field, loc)] = size;
2083 }
2084 EXPORT_SYMBOL(req_capsule_set_size);
2085
2086 /**
2087  * Return the actual PTLRPC buffer length of a request or reply (\a loc)
2088  * for the given \a pill's given \a field.
2089  *
2090  * NB: this function doesn't correspond with req_capsule_set_size(), which
2091  * actually sets the size in pill.rc_area[loc][offset], but this function
2092  * returns the message buflen[offset], maybe we should use another name.
2093  */
2094 int req_capsule_get_size(const struct req_capsule *pill,
2095                          const struct req_msg_field *field,
2096                          enum req_location loc)
2097 {
2098         LASSERT(loc == RCL_SERVER || loc == RCL_CLIENT);
2099
2100         return lustre_msg_buflen(__req_msg(pill, loc),
2101                                  __req_capsule_offset(pill, field, loc));
2102 }
2103 EXPORT_SYMBOL(req_capsule_get_size);
2104
2105 /**
2106  * Wrapper around lustre_msg_size() that returns the PTLRPC size needed for the
2107  * given \a pill's request or reply (\a loc) given the field size recorded in
2108  * the \a pill's rc_area.
2109  *
2110  * See also req_capsule_set_size().
2111  */
2112 int req_capsule_msg_size(struct req_capsule *pill, enum req_location loc)
2113 {
2114         return lustre_msg_size(pill->rc_req->rq_import->imp_msg_magic,
2115                                pill->rc_fmt->rf_fields[loc].nr,
2116                                pill->rc_area[loc]);
2117 }
2118
2119 /**
2120  * While req_capsule_msg_size() computes the size of a PTLRPC request or reply
2121  * (\a loc) given a \a pill's \a rc_area, this function computes the size of a
2122  * PTLRPC request or reply given only an RQF (\a fmt).
2123  *
2124  * This function should not be used for formats which contain variable size
2125  * fields.
2126  */
2127 int req_capsule_fmt_size(__u32 magic, const struct req_format *fmt,
2128                          enum req_location loc)
2129 {
2130         int size, i = 0;
2131
2132         /*
2133          * This function should probably LASSERT() that fmt has no fields with
2134          * RMF_F_STRUCT_ARRAY in rmf_flags, since we can't know here how many
2135          * elements in the array there will ultimately be, but then, we could
2136          * assume that there will be at least one element, and that's just what
2137          * we do.
2138          */
2139         size = lustre_msg_hdr_size(magic, fmt->rf_fields[loc].nr);
2140         if (size < 0)
2141                 return size;
2142
2143         for (; i < fmt->rf_fields[loc].nr; ++i)
2144                 if (fmt->rf_fields[loc].d[i]->rmf_size != -1)
2145                         size += cfs_size_round(fmt->rf_fields[loc].d[i]->
2146                                                rmf_size);
2147         return size;
2148 }
2149
2150 /**
2151  * Changes the format of an RPC.
2152  *
2153  * The pill must already have been initialized, which means that it already has
2154  * a request format.  The new format \a fmt must be an extension of the pill's
2155  * old format.  Specifically: the new format must have as many request and reply
2156  * fields as the old one, and all fields shared by the old and new format must
2157  * be at least as large in the new format.
2158  *
2159  * The new format's fields may be of different "type" than the old format, but
2160  * only for fields that are "opaque" blobs: fields which have a) have no
2161  * \a rmf_swabber, b) \a rmf_flags == 0 or RMF_F_NO_SIZE_CHECK, and c) \a
2162  * rmf_size == -1 or \a rmf_flags == RMF_F_NO_SIZE_CHECK.  For example,
2163  * OBD_SET_INFO has a key field and an opaque value field that gets interpreted
2164  * according to the key field.  When the value, according to the key, contains a
2165  * structure (or array thereof) to be swabbed, the format should be changed to
2166  * one where the value field has \a rmf_size/rmf_flags/rmf_swabber set
2167  * accordingly.
2168  */
2169 void req_capsule_extend(struct req_capsule *pill, const struct req_format *fmt)
2170 {
2171         int i;
2172         int j;
2173
2174         const struct req_format *old;
2175
2176         LASSERT(pill->rc_fmt != NULL);
2177         LASSERT(__req_format_is_sane(fmt));
2178
2179         old = pill->rc_fmt;
2180         /*
2181          * Sanity checking...
2182          */
2183         for (i = 0; i < RCL_NR; ++i) {
2184                 LASSERT(fmt->rf_fields[i].nr >= old->rf_fields[i].nr);
2185                 for (j = 0; j < old->rf_fields[i].nr - 1; ++j) {
2186                         const struct req_msg_field *ofield = FMT_FIELD(old, i, j);
2187
2188                         /* "opaque" fields can be transmogrified */
2189                         if (ofield->rmf_swabber == NULL &&
2190                             (ofield->rmf_flags & ~RMF_F_NO_SIZE_CHECK) == 0 &&
2191                             (ofield->rmf_size == -1 ||
2192                             ofield->rmf_flags == RMF_F_NO_SIZE_CHECK))
2193                                 continue;
2194                         LASSERT(FMT_FIELD(fmt, i, j) == FMT_FIELD(old, i, j));
2195                 }
2196                 /*
2197                  * Last field in old format can be shorter than in new.
2198                  */
2199                 LASSERT(FMT_FIELD(fmt, i, j)->rmf_size >=
2200                         FMT_FIELD(old, i, j)->rmf_size);
2201         }
2202
2203         pill->rc_fmt = fmt;
2204 }
2205 EXPORT_SYMBOL(req_capsule_extend);
2206
2207 /**
2208  * This function returns a non-zero value if the given \a field is present in
2209  * the format (\a rc_fmt) of \a pill's PTLRPC request or reply (\a loc), else it
2210  * returns 0.
2211  */
2212 int req_capsule_has_field(const struct req_capsule *pill,
2213                           const struct req_msg_field *field,
2214                           enum req_location loc)
2215 {
2216         LASSERT(loc == RCL_SERVER || loc == RCL_CLIENT);
2217
2218         return field->rmf_offset[pill->rc_fmt->rf_idx][loc];
2219 }
2220 EXPORT_SYMBOL(req_capsule_has_field);
2221
2222 /**
2223  * Returns a non-zero value if the given \a field is present in the given \a
2224  * pill's PTLRPC request or reply (\a loc), else it returns 0.
2225  */
2226 int req_capsule_field_present(const struct req_capsule *pill,
2227                               const struct req_msg_field *field,
2228                               enum req_location loc)
2229 {
2230         int offset;
2231
2232         LASSERT(loc == RCL_SERVER || loc == RCL_CLIENT);
2233         LASSERT(req_capsule_has_field(pill, field, loc));
2234
2235         offset = __req_capsule_offset(pill, field, loc);
2236         return lustre_msg_bufcount(__req_msg(pill, loc)) > offset;
2237 }
2238 EXPORT_SYMBOL(req_capsule_field_present);
2239
2240 /**
2241  * This function shrinks the size of the _buffer_ of the \a pill's PTLRPC
2242  * request or reply (\a loc).
2243  *
2244  * This is not the opposite of req_capsule_extend().
2245  */
2246 void req_capsule_shrink(struct req_capsule *pill,
2247                         const struct req_msg_field *field,
2248                         unsigned int newlen,
2249                         enum req_location loc)
2250 {
2251         const struct req_format *fmt;
2252         struct lustre_msg       *msg;
2253         int                      len;
2254         int                      offset;
2255
2256         fmt = pill->rc_fmt;
2257         LASSERT(fmt != NULL);
2258         LASSERT(__req_format_is_sane(fmt));
2259         LASSERT(req_capsule_has_field(pill, field, loc));
2260         LASSERT(req_capsule_field_present(pill, field, loc));
2261
2262         offset = __req_capsule_offset(pill, field, loc);
2263
2264         msg = __req_msg(pill, loc);
2265         len = lustre_msg_buflen(msg, offset);
2266         LASSERTF(newlen <= len, "%s:%s, oldlen=%d, newlen=%d\n",
2267                                 fmt->rf_name, field->rmf_name, len, newlen);
2268
2269         if (loc == RCL_CLIENT)
2270                 pill->rc_req->rq_reqlen = lustre_shrink_msg(msg, offset, newlen,
2271                                                             1);
2272         else
2273                 pill->rc_req->rq_replen = lustre_shrink_msg(msg, offset, newlen,
2274                                                             1);
2275 }
2276 EXPORT_SYMBOL(req_capsule_shrink);
2277
2278 int req_capsule_server_grow(struct req_capsule *pill,
2279                             const struct req_msg_field *field,
2280                             unsigned int newlen)
2281 {
2282         struct ptlrpc_reply_state *rs = pill->rc_req->rq_reply_state, *nrs;
2283         char *from, *to;
2284         int offset, len, rc;
2285
2286         LASSERT(pill->rc_fmt != NULL);
2287         LASSERT(__req_format_is_sane(pill->rc_fmt));
2288         LASSERT(req_capsule_has_field(pill, field, RCL_SERVER));
2289         LASSERT(req_capsule_field_present(pill, field, RCL_SERVER));
2290
2291         len = req_capsule_get_size(pill, field, RCL_SERVER);
2292         offset = __req_capsule_offset(pill, field, RCL_SERVER);
2293         if (pill->rc_req->rq_repbuf_len >=
2294             lustre_packed_msg_size(pill->rc_req->rq_repmsg) - len + newlen)
2295                 CERROR("Inplace repack might be done\n");
2296
2297         pill->rc_req->rq_reply_state = NULL;
2298         req_capsule_set_size(pill, field, RCL_SERVER, newlen);
2299         rc = req_capsule_server_pack(pill);
2300         if (rc) {
2301                 /* put old rs back, the caller will decide what to do */
2302                 pill->rc_req->rq_reply_state = rs;
2303                 return rc;
2304         }
2305         nrs = pill->rc_req->rq_reply_state;
2306         /* Now we need only buffers, copy first chunk */
2307         to = lustre_msg_buf(nrs->rs_msg, 0, 0);
2308         from = lustre_msg_buf(rs->rs_msg, 0, 0);
2309         len = (char *)lustre_msg_buf(rs->rs_msg, offset, 0) - from;
2310         memcpy(to, from, len);
2311         /* check if we have tail and copy it too */
2312         if (rs->rs_msg->lm_bufcount > offset + 1) {
2313                 to = lustre_msg_buf(nrs->rs_msg, offset + 1, 0);
2314                 from = lustre_msg_buf(rs->rs_msg, offset + 1, 0);
2315                 offset = rs->rs_msg->lm_bufcount - 1;
2316                 len = (char *)lustre_msg_buf(rs->rs_msg, offset, 0) +
2317                       cfs_size_round(rs->rs_msg->lm_buflens[offset]) - from;
2318                 memcpy(to, from, len);
2319         }
2320         /* drop old reply if everything is fine */
2321         if (rs->rs_difficult) {
2322                 /* copy rs data */
2323                 int i;
2324
2325                 nrs->rs_difficult = 1;
2326                 nrs->rs_no_ack = rs->rs_no_ack;
2327                 for (i = 0; i < rs->rs_nlocks; i++) {
2328                         nrs->rs_locks[i] = rs->rs_locks[i];
2329                         nrs->rs_modes[i] = rs->rs_modes[i];
2330                         nrs->rs_nlocks++;
2331                 }
2332                 rs->rs_nlocks = 0;
2333                 rs->rs_difficult = 0;
2334                 rs->rs_no_ack = 0;
2335         }
2336         ptlrpc_rs_decref(rs);
2337         return 0;
2338 }
2339 EXPORT_SYMBOL(req_capsule_server_grow);
2340 /* __REQ_LAYOUT_USER__ */
2341 #endif