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 #ifndef __CLASS_OBD_H
37 #define __CLASS_OBD_H
38 
39 
40 #include "obd_support.h"
41 #include "lustre_import.h"
42 #include "lustre_net.h"
43 #include "obd.h"
44 #include "lustre_lib.h"
45 #include "lustre/lustre_idl.h"
46 #include "lprocfs_status.h"
47 
48 #define OBD_STATFS_NODELAY      0x0001  /* requests should be send without delay
49 					 * and resends for avoid deadlocks */
50 #define OBD_STATFS_FROM_CACHE   0x0002  /* the statfs callback should not update
51 					 * obd_osfs_age */
52 #define OBD_STATFS_PTLRPCD      0x0004  /* requests will be sent via ptlrpcd
53 					 * instead of a specific set. This
54 					 * means that we cannot rely on the set
55 					 * interpret routine to be called.
56 					 * lov_statfs_fini() must thus be called
57 					 * by the request interpret routine */
58 #define OBD_STATFS_FOR_MDT0	0x0008	/* The statfs is only for retrieving
59 					 * information from MDT0. */
60 #define OBD_FL_PUNCH    0x00000001      /* To indicate it is punch operation */
61 
62 /* OBD Device Declarations */
63 extern struct obd_device *obd_devs[MAX_OBD_DEVICES];
64 extern rwlock_t obd_dev_lock;
65 
66 /* OBD Operations Declarations */
67 extern struct obd_device *class_conn2obd(struct lustre_handle *);
68 extern struct obd_device *class_exp2obd(struct obd_export *);
69 extern int class_handle_ioctl(unsigned int cmd, unsigned long arg);
70 extern int lustre_get_jobid(char *jobid);
71 
72 struct lu_device_type;
73 
74 /* genops.c */
75 extern struct list_head obd_types;
76 struct obd_export *class_conn2export(struct lustre_handle *);
77 int class_register_type(struct obd_ops *, struct md_ops *,
78 			struct lprocfs_vars *, const char *nm,
79 			struct lu_device_type *ldt);
80 int class_unregister_type(const char *nm);
81 
82 struct obd_device *class_newdev(const char *type_name, const char *name);
83 void class_release_dev(struct obd_device *obd);
84 
85 int class_name2dev(const char *name);
86 struct obd_device *class_name2obd(const char *name);
87 int class_uuid2dev(struct obd_uuid *uuid);
88 struct obd_device *class_uuid2obd(struct obd_uuid *uuid);
89 void class_obd_list(void);
90 struct obd_device *class_find_client_obd(struct obd_uuid *tgt_uuid,
91 					  const char *typ_name,
92 					  struct obd_uuid *grp_uuid);
93 struct obd_device *class_devices_in_group(struct obd_uuid *grp_uuid,
94 					   int *next);
95 struct obd_device *class_num2obd(int num);
96 int get_devices_count(void);
97 
98 int class_notify_sptlrpc_conf(const char *fsname, int namelen);
99 
100 char *obd_export_nid2str(struct obd_export *exp);
101 
102 int obd_export_evict_by_nid(struct obd_device *obd, const char *nid);
103 int obd_export_evict_by_uuid(struct obd_device *obd, const char *uuid);
104 int obd_connect_flags2str(char *page, int count, __u64 flags, char *sep);
105 
106 int obd_zombie_impexp_init(void);
107 void obd_zombie_impexp_stop(void);
108 void obd_zombie_impexp_cull(void);
109 void obd_zombie_barrier(void);
110 void obd_exports_barrier(struct obd_device *obd);
111 int kuc_len(int payload_len);
112 struct kuc_hdr *kuc_ptr(void *p);
113 int kuc_ispayload(void *p);
114 void *kuc_alloc(int payload_len, int transport, int type);
115 void kuc_free(void *p, int payload_len);
116 
117 struct llog_handle;
118 struct llog_rec_hdr;
119 typedef int (*llog_cb_t)(const struct lu_env *, struct llog_handle *,
120 			 struct llog_rec_hdr *, void *);
121 /* obd_config.c */
122 struct lustre_cfg *lustre_cfg_rename(struct lustre_cfg *cfg,
123 				     const char *new_name);
124 int class_process_config(struct lustre_cfg *lcfg);
125 int class_process_proc_param(char *prefix, struct lprocfs_vars *lvars,
126 			     struct lustre_cfg *lcfg, void *data);
127 int class_attach(struct lustre_cfg *lcfg);
128 int class_setup(struct obd_device *obd, struct lustre_cfg *lcfg);
129 int class_cleanup(struct obd_device *obd, struct lustre_cfg *lcfg);
130 int class_detach(struct obd_device *obd, struct lustre_cfg *lcfg);
131 struct obd_device *class_incref(struct obd_device *obd,
132 				const char *scope, const void *source);
133 void class_decref(struct obd_device *obd,
134 		  const char *scope, const void *source);
135 void dump_exports(struct obd_device *obd, int locks);
136 int class_config_llog_handler(const struct lu_env *env,
137 			      struct llog_handle *handle,
138 			      struct llog_rec_hdr *rec, void *data);
139 int class_add_conn(struct obd_device *obd, struct lustre_cfg *lcfg);
140 int class_add_uuid(const char *uuid, __u64 nid);
141 
142 /*obdecho*/
143 #if defined (CONFIG_PROC_FS)
144 extern void lprocfs_echo_init_vars(struct lprocfs_static_vars *lvars);
145 #else
lprocfs_echo_init_vars(struct lprocfs_static_vars * lvars)146 static inline void lprocfs_echo_init_vars(struct lprocfs_static_vars *lvars)
147 {
148 	memset(lvars, 0, sizeof(*lvars));
149 }
150 #endif
151 
152 #define CFG_F_START     0x01   /* Set when we start updating from a log */
153 #define CFG_F_MARKER    0x02   /* We are within a maker */
154 #define CFG_F_SKIP      0x04   /* We should ignore this cfg command */
155 #define CFG_F_COMPAT146 0x08   /* Allow old-style logs */
156 #define CFG_F_EXCLUDE   0x10   /* OST exclusion list */
157 
158 /* Passed as data param to class_config_parse_llog */
159 struct config_llog_instance {
160 	char	       *cfg_obdname;
161 	void	       *cfg_instance;
162 	struct super_block *cfg_sb;
163 	struct obd_uuid     cfg_uuid;
164 	llog_cb_t	    cfg_callback;
165 	int		 cfg_last_idx; /* for partial llog processing */
166 	int		 cfg_flags;
167 };
168 int class_config_parse_llog(const struct lu_env *env, struct llog_ctxt *ctxt,
169 			    char *name, struct config_llog_instance *cfg);
170 int class_config_dump_llog(const struct lu_env *env, struct llog_ctxt *ctxt,
171 			   char *name, struct config_llog_instance *cfg);
172 
173 enum {
174 	CONFIG_T_CONFIG  = 0,
175 	CONFIG_T_SPTLRPC = 1,
176 	CONFIG_T_RECOVER = 2,
177 	CONFIG_T_PARAMS  = 3,
178 	CONFIG_T_MAX     = 4
179 };
180 
181 #define PARAMS_FILENAME	"params"
182 #define LCTL_UPCALL	"lctl"
183 
184 /* list of active configuration logs  */
185 struct config_llog_data {
186 	struct ldlm_res_id	  cld_resid;
187 	struct config_llog_instance cld_cfg;
188 	struct list_head		  cld_list_chain;
189 	atomic_t		cld_refcount;
190 	struct config_llog_data    *cld_sptlrpc;/* depended sptlrpc log */
191 	struct config_llog_data	   *cld_params;	/* common parameters log */
192 	struct config_llog_data    *cld_recover;/* imperative recover log */
193 	struct obd_export	  *cld_mgcexp;
194 	struct mutex		    cld_lock;
195 	int			 cld_type;
196 	unsigned int		cld_stopping:1, /* we were told to stop
197 						     * watching */
198 				    cld_lostlock:1; /* lock not requeued */
199 	char			cld_logname[0];
200 };
201 
202 struct lustre_profile {
203 	struct list_head       lp_list;
204 	char	    *lp_profile;
205 	char	    *lp_dt;
206 	char	    *lp_md;
207 };
208 
209 struct lustre_profile *class_get_profile(const char *prof);
210 void class_del_profile(const char *prof);
211 void class_del_profiles(void);
212 
213 #if LUSTRE_TRACKS_LOCK_EXP_REFS
214 
215 void __class_export_add_lock_ref(struct obd_export *, struct ldlm_lock *);
216 void __class_export_del_lock_ref(struct obd_export *, struct ldlm_lock *);
217 extern void (*class_export_dump_hook)(struct obd_export *);
218 
219 #else
220 
221 #define __class_export_add_lock_ref(exp, lock)	     do {} while (0)
222 #define __class_export_del_lock_ref(exp, lock)	     do {} while (0)
223 
224 #endif
225 
class_export_rpc_inc(struct obd_export * exp)226 static inline void class_export_rpc_inc(struct obd_export *exp)
227 {
228 	atomic_inc(&(exp)->exp_rpc_count);
229 	CDEBUG(D_INFO, "RPC GETting export %p : new rpc_count %d\n",
230 	       (exp), atomic_read(&(exp)->exp_rpc_count));
231 }
232 
class_export_rpc_dec(struct obd_export * exp)233 static inline void class_export_rpc_dec(struct obd_export *exp)
234 {
235 	LASSERT_ATOMIC_POS(&exp->exp_rpc_count);
236 	atomic_dec(&(exp)->exp_rpc_count);
237 	CDEBUG(D_INFO, "RPC PUTting export %p : new rpc_count %d\n",
238 	       (exp), atomic_read(&(exp)->exp_rpc_count));
239 }
240 
241 #define class_export_lock_get(exp, lock)				\
242 ({								      \
243 	atomic_inc(&(exp)->exp_locks_count);			\
244 	__class_export_add_lock_ref(exp, lock);			 \
245 	CDEBUG(D_INFO, "lock GETting export %p : new locks_count %d\n", \
246 	       (exp), atomic_read(&(exp)->exp_locks_count));	\
247 	class_export_get(exp);					  \
248 })
249 
250 #define class_export_lock_put(exp, lock)				\
251 ({								      \
252 	LASSERT_ATOMIC_POS(&exp->exp_locks_count);		      \
253 	atomic_dec(&(exp)->exp_locks_count);			\
254 	__class_export_del_lock_ref(exp, lock);			 \
255 	CDEBUG(D_INFO, "lock PUTting export %p : new locks_count %d\n", \
256 	       (exp), atomic_read(&(exp)->exp_locks_count));	\
257 	class_export_put(exp);					  \
258 })
259 
260 #define class_export_cb_get(exp)					\
261 ({								      \
262 	atomic_inc(&(exp)->exp_cb_count);			   \
263 	CDEBUG(D_INFO, "callback GETting export %p : new cb_count %d\n",\
264 	       (exp), atomic_read(&(exp)->exp_cb_count));	   \
265 	class_export_get(exp);					  \
266 })
267 
268 #define class_export_cb_put(exp)					\
269 ({								      \
270 	LASSERT_ATOMIC_POS(&exp->exp_cb_count);			 \
271 	atomic_dec(&(exp)->exp_cb_count);			   \
272 	CDEBUG(D_INFO, "callback PUTting export %p : new cb_count %d\n",\
273 	       (exp), atomic_read(&(exp)->exp_cb_count));	   \
274 	class_export_put(exp);					  \
275 })
276 
277 /* genops.c */
278 struct obd_export *class_export_get(struct obd_export *exp);
279 void class_export_put(struct obd_export *exp);
280 struct obd_export *class_new_export(struct obd_device *obddev,
281 				    struct obd_uuid *cluuid);
282 void class_unlink_export(struct obd_export *exp);
283 
284 struct obd_import *class_import_get(struct obd_import *);
285 void class_import_put(struct obd_import *);
286 struct obd_import *class_new_import(struct obd_device *obd);
287 void class_destroy_import(struct obd_import *exp);
288 
289 struct obd_type *class_search_type(const char *name);
290 struct obd_type *class_get_type(const char *name);
291 void class_put_type(struct obd_type *type);
292 int class_connect(struct lustre_handle *conn, struct obd_device *obd,
293 		  struct obd_uuid *cluuid);
294 int class_disconnect(struct obd_export *exp);
295 void class_fail_export(struct obd_export *exp);
296 int class_connected_export(struct obd_export *exp);
297 void class_disconnect_exports(struct obd_device *obddev);
298 int class_manual_cleanup(struct obd_device *obd);
299 void class_disconnect_stale_exports(struct obd_device *,
300 				    int (*test_export)(struct obd_export *));
exp_flags_from_obd(struct obd_device * obd)301 static inline enum obd_option exp_flags_from_obd(struct obd_device *obd)
302 {
303 	return ((obd->obd_fail ? OBD_OPT_FAILOVER : 0) |
304 		(obd->obd_force ? OBD_OPT_FORCE : 0) |
305 		(obd->obd_abort_recovery ? OBD_OPT_ABORT_RECOV : 0) |
306 		0);
307 }
308 
309 struct inode;
310 struct lu_attr;
311 struct obdo;
312 void obdo_from_la(struct obdo *dst, struct lu_attr *la, __u64 valid);
313 void la_from_obdo(struct lu_attr *la, struct obdo *dst, u32 valid);
314 void obdo_refresh_inode(struct inode *dst, struct obdo *src, u32 valid);
315 void obdo_to_inode(struct inode *dst, struct obdo *src, u32 valid);
316 
317 void obdo_cpy_md(struct obdo *dst, struct obdo *src, u32 valid);
318 void obdo_to_ioobj(struct obdo *oa, struct obd_ioobj *ioobj);
319 void obdo_from_iattr(struct obdo *oa, struct iattr *attr,
320 		     unsigned int ia_valid);
321 void iattr_from_obdo(struct iattr *attr, struct obdo *oa, u32 valid);
322 void md_from_obdo(struct md_op_data *op_data, struct obdo *oa, u32 valid);
323 void obdo_from_md(struct obdo *oa, struct md_op_data *op_data,
324 		  unsigned int valid);
325 
326 void obdo_cpu_to_le(struct obdo *dobdo, struct obdo *sobdo);
327 void obdo_le_to_cpu(struct obdo *dobdo, struct obdo *sobdo);
328 
329 #define OBT(dev)	(dev)->obd_type
330 #define OBP(dev, op)    (dev)->obd_type->typ_dt_ops->o_ ## op
331 #define MDP(dev, op)    (dev)->obd_type->typ_md_ops->m_ ## op
332 #define CTXTP(ctxt, op) (ctxt)->loc_logops->lop_##op
333 
334 /* Ensure obd_setup: used for cleanup which must be called
335    while obd is stopping */
obd_check_dev(struct obd_device * obd)336 static inline int obd_check_dev(struct obd_device *obd)
337 {
338 	if (!obd) {
339 		CERROR("NULL device\n");
340 		return -ENODEV;
341 	}
342 	return 0;
343 }
344 
345 /* ensure obd_setup and !obd_stopping */
obd_check_dev_active(struct obd_device * obd)346 static inline int obd_check_dev_active(struct obd_device *obd)
347 {
348 	int rc;
349 
350 	rc = obd_check_dev(obd);
351 	if (rc)
352 		return rc;
353 	if (!obd->obd_set_up || obd->obd_stopping) {
354 		CERROR("Device %d not setup\n", obd->obd_minor);
355 		return -ENODEV;
356 	}
357 	return rc;
358 }
359 
360 #if defined (CONFIG_PROC_FS)
361 #define OBD_COUNTER_OFFSET(op)				  \
362 	((offsetof(struct obd_ops, o_ ## op) -		  \
363 	  offsetof(struct obd_ops, o_iocontrol))		\
364 	 / sizeof(((struct obd_ops *)(0))->o_iocontrol))
365 
366 #define OBD_COUNTER_INCREMENT(obdx, op)			   \
367 	if ((obdx)->obd_stats != NULL) {			  \
368 		unsigned int coffset;			     \
369 		coffset = (unsigned int)((obdx)->obd_cntr_base) + \
370 			OBD_COUNTER_OFFSET(op);		   \
371 		LASSERT(coffset < (obdx)->obd_stats->ls_num);     \
372 		lprocfs_counter_incr((obdx)->obd_stats, coffset); \
373 	}
374 
375 #define EXP_COUNTER_INCREMENT(export, op)				    \
376 	if ((export)->exp_obd->obd_stats != NULL) {			  \
377 		unsigned int coffset;					\
378 		coffset = (unsigned int)((export)->exp_obd->obd_cntr_base) + \
379 			OBD_COUNTER_OFFSET(op);			      \
380 		LASSERT(coffset < (export)->exp_obd->obd_stats->ls_num);     \
381 		lprocfs_counter_incr((export)->exp_obd->obd_stats, coffset); \
382 		if ((export)->exp_nid_stats != NULL &&		       \
383 		    (export)->exp_nid_stats->nid_stats != NULL)	      \
384 			lprocfs_counter_incr(				\
385 				(export)->exp_nid_stats->nid_stats, coffset);\
386 	}
387 
388 #define MD_COUNTER_OFFSET(op)				   \
389 	((offsetof(struct md_ops, m_ ## op) -		   \
390 	  offsetof(struct md_ops, m_getstatus))		 \
391 	 / sizeof(((struct md_ops *)(0))->m_getstatus))
392 
393 #define MD_COUNTER_INCREMENT(obdx, op)			   \
394 	if ((obd)->md_stats != NULL) {			   \
395 		unsigned int coffset;			    \
396 		coffset = (unsigned int)((obdx)->md_cntr_base) + \
397 			MD_COUNTER_OFFSET(op);		   \
398 		LASSERT(coffset < (obdx)->md_stats->ls_num);     \
399 		lprocfs_counter_incr((obdx)->md_stats, coffset); \
400 	}
401 
402 #define EXP_MD_COUNTER_INCREMENT(export, op)				 \
403 	if ((export)->exp_obd->obd_stats != NULL) {			  \
404 		unsigned int coffset;					\
405 		coffset = (unsigned int)((export)->exp_obd->md_cntr_base) +  \
406 			MD_COUNTER_OFFSET(op);			       \
407 		LASSERT(coffset < (export)->exp_obd->md_stats->ls_num);      \
408 		lprocfs_counter_incr((export)->exp_obd->md_stats, coffset);  \
409 		if ((export)->exp_md_stats != NULL)			  \
410 			lprocfs_counter_incr(				\
411 				(export)->exp_md_stats, coffset);	    \
412 	}
413 
414 #else
415 #define OBD_COUNTER_OFFSET(op)
416 #define OBD_COUNTER_INCREMENT(obd, op)
417 #define EXP_COUNTER_INCREMENT(exp, op)
418 #define MD_COUNTER_INCREMENT(obd, op)
419 #define EXP_MD_COUNTER_INCREMENT(exp, op)
420 #endif
421 
lprocfs_nid_ldlm_stats_init(struct nid_stat * tmp)422 static inline int lprocfs_nid_ldlm_stats_init(struct nid_stat *tmp)
423 {
424 	/* Always add in ldlm_stats */
425 	tmp->nid_ldlm_stats = lprocfs_alloc_stats(LDLM_LAST_OPC - LDLM_FIRST_OPC
426 						  ,LPROCFS_STATS_FLAG_NOPERCPU);
427 	if (tmp->nid_ldlm_stats == NULL)
428 		return -ENOMEM;
429 
430 	lprocfs_init_ldlm_stats(tmp->nid_ldlm_stats);
431 
432 	return lprocfs_register_stats(tmp->nid_proc, "ldlm_stats",
433 				      tmp->nid_ldlm_stats);
434 }
435 
436 #define OBD_CHECK_MD_OP(obd, op, err)			   \
437 do {							    \
438 	if (!OBT(obd) || !MDP((obd), op)) {		     \
439 		if (err)					\
440 			CERROR("md_" #op ": dev %s/%d no operation\n", \
441 			       obd->obd_name, obd->obd_minor);  \
442 		return err;				    \
443 	}						       \
444 } while (0)
445 
446 #define EXP_CHECK_MD_OP(exp, op)				\
447 do {							    \
448 	if ((exp) == NULL) {				    \
449 		CERROR("obd_" #op ": NULL export\n");	   \
450 		return -ENODEV;				\
451 	}						       \
452 	if ((exp)->exp_obd == NULL || !OBT((exp)->exp_obd)) {   \
453 		CERROR("obd_" #op ": cleaned up obd\n");	\
454 		return -EOPNOTSUPP;			    \
455 	}						       \
456 	if (!OBT((exp)->exp_obd) || !MDP((exp)->exp_obd, op)) { \
457 		CERROR("obd_" #op ": dev %s/%d no operation\n", \
458 		       (exp)->exp_obd->obd_name,		\
459 		       (exp)->exp_obd->obd_minor);	      \
460 		return -EOPNOTSUPP;			    \
461 	}						       \
462 } while (0)
463 
464 
465 #define OBD_CHECK_DT_OP(obd, op, err)			   \
466 do {							    \
467 	if (!OBT(obd) || !OBP((obd), op)) {		     \
468 		if (err)					\
469 			CERROR("obd_" #op ": dev %d no operation\n",    \
470 			       obd->obd_minor);		 \
471 		return err;				    \
472 	}						       \
473 } while (0)
474 
475 #define EXP_CHECK_DT_OP(exp, op)				\
476 do {							    \
477 	if ((exp) == NULL) {				    \
478 		CERROR("obd_" #op ": NULL export\n");	   \
479 		return -ENODEV;				\
480 	}						       \
481 	if ((exp)->exp_obd == NULL || !OBT((exp)->exp_obd)) {   \
482 		CERROR("obd_" #op ": cleaned up obd\n");	\
483 		return -EOPNOTSUPP;			    \
484 	}						       \
485 	if (!OBT((exp)->exp_obd) || !OBP((exp)->exp_obd, op)) { \
486 		CERROR("obd_" #op ": dev %d no operation\n",    \
487 		       (exp)->exp_obd->obd_minor);	      \
488 		return -EOPNOTSUPP;			    \
489 	}						       \
490 } while (0)
491 
492 #define CTXT_CHECK_OP(ctxt, op, err)				 \
493 do {								 \
494 	if (!OBT(ctxt->loc_obd) || !CTXTP((ctxt), op)) {	     \
495 		if (err)					     \
496 			CERROR("lop_" #op ": dev %d no operation\n", \
497 			       ctxt->loc_obd->obd_minor);	    \
498 		return err;					 \
499 	}							    \
500 } while (0)
501 
class_devno_max(void)502 static inline int class_devno_max(void)
503 {
504 	return MAX_OBD_DEVICES;
505 }
506 
obd_get_info(const struct lu_env * env,struct obd_export * exp,__u32 keylen,void * key,__u32 * vallen,void * val,struct lov_stripe_md * lsm)507 static inline int obd_get_info(const struct lu_env *env,
508 			       struct obd_export *exp, __u32 keylen,
509 			       void *key, __u32 *vallen, void *val,
510 			       struct lov_stripe_md *lsm)
511 {
512 	int rc;
513 
514 	EXP_CHECK_DT_OP(exp, get_info);
515 	EXP_COUNTER_INCREMENT(exp, get_info);
516 
517 	rc = OBP(exp->exp_obd, get_info)(env, exp, keylen, key, vallen, val,
518 					 lsm);
519 	return rc;
520 }
521 
obd_set_info_async(const struct lu_env * env,struct obd_export * exp,u32 keylen,void * key,u32 vallen,void * val,struct ptlrpc_request_set * set)522 static inline int obd_set_info_async(const struct lu_env *env,
523 				     struct obd_export *exp, u32 keylen,
524 				     void *key, u32 vallen, void *val,
525 				     struct ptlrpc_request_set *set)
526 {
527 	int rc;
528 
529 	EXP_CHECK_DT_OP(exp, set_info_async);
530 	EXP_COUNTER_INCREMENT(exp, set_info_async);
531 
532 	rc = OBP(exp->exp_obd, set_info_async)(env, exp, keylen, key, vallen,
533 					       val, set);
534 	return rc;
535 }
536 
537 /*
538  * obd-lu integration.
539  *
540  * Functionality is being moved into new lu_device-based layering, but some
541  * pieces of configuration process are still based on obd devices.
542  *
543  * Specifically, lu_device_type_operations::ldto_device_alloc() methods fully
544  * subsume ->o_setup() methods of obd devices they replace. The same for
545  * lu_device_operations::ldo_process_config() and ->o_process_config(). As a
546  * result, obd_setup() and obd_process_config() branch and call one XOR
547  * another.
548  *
549  * Yet neither lu_device_type_operations::ldto_device_fini() nor
550  * lu_device_type_operations::ldto_device_free() fully implement the
551  * functionality of ->o_precleanup() and ->o_cleanup() they override. Hence,
552  * obd_precleanup() and obd_cleanup() call both lu_device and obd operations.
553  */
554 
555 #define DECLARE_LU_VARS(ldt, d)		 \
556 	struct lu_device_type *ldt;       \
557 	struct lu_device *d
558 
obd_setup(struct obd_device * obd,struct lustre_cfg * cfg)559 static inline int obd_setup(struct obd_device *obd, struct lustre_cfg *cfg)
560 {
561 	int rc;
562 	DECLARE_LU_VARS(ldt, d);
563 
564 	ldt = obd->obd_type->typ_lu;
565 	if (ldt != NULL) {
566 		struct lu_context  session_ctx;
567 		struct lu_env env;
568 		lu_context_init(&session_ctx, LCT_SESSION);
569 		session_ctx.lc_thread = NULL;
570 		lu_context_enter(&session_ctx);
571 
572 		rc = lu_env_init(&env, ldt->ldt_ctx_tags);
573 		if (rc == 0) {
574 			env.le_ses = &session_ctx;
575 			d = ldt->ldt_ops->ldto_device_alloc(&env, ldt, cfg);
576 			lu_env_fini(&env);
577 			if (!IS_ERR(d)) {
578 				obd->obd_lu_dev = d;
579 				d->ld_obd = obd;
580 				rc = 0;
581 			} else
582 				rc = PTR_ERR(d);
583 		}
584 		lu_context_exit(&session_ctx);
585 		lu_context_fini(&session_ctx);
586 
587 	} else {
588 		OBD_CHECK_DT_OP(obd, setup, -EOPNOTSUPP);
589 		OBD_COUNTER_INCREMENT(obd, setup);
590 		rc = OBP(obd, setup)(obd, cfg);
591 	}
592 	return rc;
593 }
594 
obd_precleanup(struct obd_device * obd,enum obd_cleanup_stage cleanup_stage)595 static inline int obd_precleanup(struct obd_device *obd,
596 				 enum obd_cleanup_stage cleanup_stage)
597 {
598 	int rc;
599 	DECLARE_LU_VARS(ldt, d);
600 
601 	rc = obd_check_dev(obd);
602 	if (rc)
603 		return rc;
604 	ldt = obd->obd_type->typ_lu;
605 	d = obd->obd_lu_dev;
606 	if (ldt != NULL && d != NULL) {
607 		if (cleanup_stage == OBD_CLEANUP_EXPORTS) {
608 			struct lu_env env;
609 
610 			rc = lu_env_init(&env, ldt->ldt_ctx_tags);
611 			if (rc == 0) {
612 				ldt->ldt_ops->ldto_device_fini(&env, d);
613 				lu_env_fini(&env);
614 			}
615 		}
616 	}
617 	OBD_CHECK_DT_OP(obd, precleanup, 0);
618 	OBD_COUNTER_INCREMENT(obd, precleanup);
619 
620 	rc = OBP(obd, precleanup)(obd, cleanup_stage);
621 	return rc;
622 }
623 
obd_cleanup(struct obd_device * obd)624 static inline int obd_cleanup(struct obd_device *obd)
625 {
626 	int rc;
627 	DECLARE_LU_VARS(ldt, d);
628 
629 	rc = obd_check_dev(obd);
630 	if (rc)
631 		return rc;
632 
633 	ldt = obd->obd_type->typ_lu;
634 	d = obd->obd_lu_dev;
635 	if (ldt != NULL && d != NULL) {
636 		struct lu_env env;
637 
638 		rc = lu_env_init(&env, ldt->ldt_ctx_tags);
639 		if (rc == 0) {
640 			ldt->ldt_ops->ldto_device_free(&env, d);
641 			lu_env_fini(&env);
642 			obd->obd_lu_dev = NULL;
643 		}
644 	}
645 	OBD_CHECK_DT_OP(obd, cleanup, 0);
646 	OBD_COUNTER_INCREMENT(obd, cleanup);
647 
648 	rc = OBP(obd, cleanup)(obd);
649 	return rc;
650 }
651 
obd_cleanup_client_import(struct obd_device * obd)652 static inline void obd_cleanup_client_import(struct obd_device *obd)
653 {
654 	/* If we set up but never connected, the
655 	   client import will not have been cleaned. */
656 	down_write(&obd->u.cli.cl_sem);
657 	if (obd->u.cli.cl_import) {
658 		struct obd_import *imp;
659 		imp = obd->u.cli.cl_import;
660 		CDEBUG(D_CONFIG, "%s: client import never connected\n",
661 		       obd->obd_name);
662 		ptlrpc_invalidate_import(imp);
663 		if (imp->imp_rq_pool) {
664 			ptlrpc_free_rq_pool(imp->imp_rq_pool);
665 			imp->imp_rq_pool = NULL;
666 		}
667 		client_destroy_import(imp);
668 		obd->u.cli.cl_import = NULL;
669 	}
670 	up_write(&obd->u.cli.cl_sem);
671 }
672 
673 static inline int
obd_process_config(struct obd_device * obd,int datalen,void * data)674 obd_process_config(struct obd_device *obd, int datalen, void *data)
675 {
676 	int rc;
677 	DECLARE_LU_VARS(ldt, d);
678 
679 	rc = obd_check_dev(obd);
680 	if (rc)
681 		return rc;
682 
683 	obd->obd_process_conf = 1;
684 	ldt = obd->obd_type->typ_lu;
685 	d = obd->obd_lu_dev;
686 	if (ldt != NULL && d != NULL) {
687 		struct lu_env env;
688 
689 		rc = lu_env_init(&env, ldt->ldt_ctx_tags);
690 		if (rc == 0) {
691 			rc = d->ld_ops->ldo_process_config(&env, d, data);
692 			lu_env_fini(&env);
693 		}
694 	} else {
695 		OBD_CHECK_DT_OP(obd, process_config, -EOPNOTSUPP);
696 		rc = OBP(obd, process_config)(obd, datalen, data);
697 	}
698 	OBD_COUNTER_INCREMENT(obd, process_config);
699 	obd->obd_process_conf = 0;
700 
701 	return rc;
702 }
703 
704 /* Pack an in-memory MD struct for storage on disk.
705  * Returns +ve size of packed MD (0 for free), or -ve error.
706  *
707  * If @disk_tgt == NULL, MD size is returned (max size if @mem_src == NULL).
708  * If @*disk_tgt != NULL and @mem_src == NULL, @*disk_tgt will be freed.
709  * If @*disk_tgt == NULL, it will be allocated
710  */
obd_packmd(struct obd_export * exp,struct lov_mds_md ** disk_tgt,struct lov_stripe_md * mem_src)711 static inline int obd_packmd(struct obd_export *exp,
712 			     struct lov_mds_md **disk_tgt,
713 			     struct lov_stripe_md *mem_src)
714 {
715 	int rc;
716 
717 	EXP_CHECK_DT_OP(exp, packmd);
718 	EXP_COUNTER_INCREMENT(exp, packmd);
719 
720 	rc = OBP(exp->exp_obd, packmd)(exp, disk_tgt, mem_src);
721 	return rc;
722 }
723 
obd_size_diskmd(struct obd_export * exp,struct lov_stripe_md * mem_src)724 static inline int obd_size_diskmd(struct obd_export *exp,
725 				  struct lov_stripe_md *mem_src)
726 {
727 	return obd_packmd(exp, NULL, mem_src);
728 }
729 
obd_free_diskmd(struct obd_export * exp,struct lov_mds_md ** disk_tgt)730 static inline int obd_free_diskmd(struct obd_export *exp,
731 				  struct lov_mds_md **disk_tgt)
732 {
733 	LASSERT(disk_tgt);
734 	LASSERT(*disk_tgt);
735 	/*
736 	 * LU-2590, for caller's convenience, *disk_tgt could be host
737 	 * endianness, it needs swab to LE if necessary, while just
738 	 * lov_mds_md header needs it for figuring out how much memory
739 	 * needs to be freed.
740 	 */
741 	if ((cpu_to_le32(LOV_MAGIC) != LOV_MAGIC) &&
742 	    (((*disk_tgt)->lmm_magic == LOV_MAGIC_V1) ||
743 	     ((*disk_tgt)->lmm_magic == LOV_MAGIC_V3)))
744 		lustre_swab_lov_mds_md(*disk_tgt);
745 	return obd_packmd(exp, disk_tgt, NULL);
746 }
747 
748 /* Unpack an MD struct from disk to in-memory format.
749  * Returns +ve size of unpacked MD (0 for free), or -ve error.
750  *
751  * If @mem_tgt == NULL, MD size is returned (max size if @disk_src == NULL).
752  * If @*mem_tgt != NULL and @disk_src == NULL, @*mem_tgt will be freed.
753  * If @*mem_tgt == NULL, it will be allocated
754  */
obd_unpackmd(struct obd_export * exp,struct lov_stripe_md ** mem_tgt,struct lov_mds_md * disk_src,int disk_len)755 static inline int obd_unpackmd(struct obd_export *exp,
756 			       struct lov_stripe_md **mem_tgt,
757 			       struct lov_mds_md *disk_src,
758 			       int disk_len)
759 {
760 	int rc;
761 
762 	EXP_CHECK_DT_OP(exp, unpackmd);
763 	EXP_COUNTER_INCREMENT(exp, unpackmd);
764 
765 	rc = OBP(exp->exp_obd, unpackmd)(exp, mem_tgt, disk_src, disk_len);
766 	return rc;
767 }
768 
769 /* helper functions */
obd_alloc_memmd(struct obd_export * exp,struct lov_stripe_md ** mem_tgt)770 static inline int obd_alloc_memmd(struct obd_export *exp,
771 				  struct lov_stripe_md **mem_tgt)
772 {
773 	LASSERT(mem_tgt);
774 	LASSERT(*mem_tgt == NULL);
775 	return obd_unpackmd(exp, mem_tgt, NULL, 0);
776 }
777 
obd_free_memmd(struct obd_export * exp,struct lov_stripe_md ** mem_tgt)778 static inline int obd_free_memmd(struct obd_export *exp,
779 				 struct lov_stripe_md **mem_tgt)
780 {
781 	int rc;
782 
783 	LASSERT(mem_tgt);
784 	LASSERT(*mem_tgt);
785 	rc = obd_unpackmd(exp, mem_tgt, NULL, 0);
786 	*mem_tgt = NULL;
787 	return rc;
788 }
789 
obd_create(const struct lu_env * env,struct obd_export * exp,struct obdo * obdo,struct lov_stripe_md ** ea,struct obd_trans_info * oti)790 static inline int obd_create(const struct lu_env *env, struct obd_export *exp,
791 			     struct obdo *obdo, struct lov_stripe_md **ea,
792 			     struct obd_trans_info *oti)
793 {
794 	int rc;
795 
796 	EXP_CHECK_DT_OP(exp, create);
797 	EXP_COUNTER_INCREMENT(exp, create);
798 
799 	rc = OBP(exp->exp_obd, create)(env, exp, obdo, ea, oti);
800 	return rc;
801 }
802 
obd_destroy(const struct lu_env * env,struct obd_export * exp,struct obdo * obdo,struct lov_stripe_md * ea,struct obd_trans_info * oti,struct obd_export * md_exp,void * capa)803 static inline int obd_destroy(const struct lu_env *env, struct obd_export *exp,
804 			      struct obdo *obdo, struct lov_stripe_md *ea,
805 			      struct obd_trans_info *oti,
806 			      struct obd_export *md_exp, void *capa)
807 {
808 	int rc;
809 
810 	EXP_CHECK_DT_OP(exp, destroy);
811 	EXP_COUNTER_INCREMENT(exp, destroy);
812 
813 	rc = OBP(exp->exp_obd, destroy)(env, exp, obdo, ea, oti, md_exp, capa);
814 	return rc;
815 }
816 
obd_getattr(const struct lu_env * env,struct obd_export * exp,struct obd_info * oinfo)817 static inline int obd_getattr(const struct lu_env *env, struct obd_export *exp,
818 			      struct obd_info *oinfo)
819 {
820 	int rc;
821 
822 	EXP_CHECK_DT_OP(exp, getattr);
823 	EXP_COUNTER_INCREMENT(exp, getattr);
824 
825 	rc = OBP(exp->exp_obd, getattr)(env, exp, oinfo);
826 	return rc;
827 }
828 
obd_getattr_async(struct obd_export * exp,struct obd_info * oinfo,struct ptlrpc_request_set * set)829 static inline int obd_getattr_async(struct obd_export *exp,
830 				    struct obd_info *oinfo,
831 				    struct ptlrpc_request_set *set)
832 {
833 	int rc;
834 
835 	EXP_CHECK_DT_OP(exp, getattr_async);
836 	EXP_COUNTER_INCREMENT(exp, getattr_async);
837 
838 	rc = OBP(exp->exp_obd, getattr_async)(exp, oinfo, set);
839 	return rc;
840 }
841 
obd_setattr(const struct lu_env * env,struct obd_export * exp,struct obd_info * oinfo,struct obd_trans_info * oti)842 static inline int obd_setattr(const struct lu_env *env, struct obd_export *exp,
843 			      struct obd_info *oinfo,
844 			      struct obd_trans_info *oti)
845 {
846 	int rc;
847 
848 	EXP_CHECK_DT_OP(exp, setattr);
849 	EXP_COUNTER_INCREMENT(exp, setattr);
850 
851 	rc = OBP(exp->exp_obd, setattr)(env, exp, oinfo, oti);
852 	return rc;
853 }
854 
855 /* This performs all the requests set init/wait/destroy actions. */
obd_setattr_rqset(struct obd_export * exp,struct obd_info * oinfo,struct obd_trans_info * oti)856 static inline int obd_setattr_rqset(struct obd_export *exp,
857 				    struct obd_info *oinfo,
858 				    struct obd_trans_info *oti)
859 {
860 	struct ptlrpc_request_set *set = NULL;
861 	int rc;
862 
863 	EXP_CHECK_DT_OP(exp, setattr_async);
864 	EXP_COUNTER_INCREMENT(exp, setattr_async);
865 
866 	set =  ptlrpc_prep_set();
867 	if (set == NULL)
868 		return -ENOMEM;
869 
870 	rc = OBP(exp->exp_obd, setattr_async)(exp, oinfo, oti, set);
871 	if (rc == 0)
872 		rc = ptlrpc_set_wait(set);
873 	ptlrpc_set_destroy(set);
874 	return rc;
875 }
876 
877 /* This adds all the requests into @set if @set != NULL, otherwise
878    all requests are sent asynchronously without waiting for response. */
obd_setattr_async(struct obd_export * exp,struct obd_info * oinfo,struct obd_trans_info * oti,struct ptlrpc_request_set * set)879 static inline int obd_setattr_async(struct obd_export *exp,
880 				    struct obd_info *oinfo,
881 				    struct obd_trans_info *oti,
882 				    struct ptlrpc_request_set *set)
883 {
884 	int rc;
885 
886 	EXP_CHECK_DT_OP(exp, setattr_async);
887 	EXP_COUNTER_INCREMENT(exp, setattr_async);
888 
889 	rc = OBP(exp->exp_obd, setattr_async)(exp, oinfo, oti, set);
890 	return rc;
891 }
892 
obd_add_conn(struct obd_import * imp,struct obd_uuid * uuid,int priority)893 static inline int obd_add_conn(struct obd_import *imp, struct obd_uuid *uuid,
894 			       int priority)
895 {
896 	struct obd_device *obd = imp->imp_obd;
897 	int rc;
898 
899 	rc = obd_check_dev_active(obd);
900 	if (rc)
901 		return rc;
902 	OBD_CHECK_DT_OP(obd, add_conn, -EOPNOTSUPP);
903 	OBD_COUNTER_INCREMENT(obd, add_conn);
904 
905 	rc = OBP(obd, add_conn)(imp, uuid, priority);
906 	return rc;
907 }
908 
obd_del_conn(struct obd_import * imp,struct obd_uuid * uuid)909 static inline int obd_del_conn(struct obd_import *imp, struct obd_uuid *uuid)
910 {
911 	struct obd_device *obd = imp->imp_obd;
912 	int rc;
913 
914 	rc = obd_check_dev_active(obd);
915 	if (rc)
916 		return rc;
917 	OBD_CHECK_DT_OP(obd, del_conn, -EOPNOTSUPP);
918 	OBD_COUNTER_INCREMENT(obd, del_conn);
919 
920 	rc = OBP(obd, del_conn)(imp, uuid);
921 	return rc;
922 }
923 
obd_get_uuid(struct obd_export * exp)924 static inline struct obd_uuid *obd_get_uuid(struct obd_export *exp)
925 {
926 	struct obd_uuid *uuid;
927 
928 	OBD_CHECK_DT_OP(exp->exp_obd, get_uuid, NULL);
929 	EXP_COUNTER_INCREMENT(exp, get_uuid);
930 
931 	uuid = OBP(exp->exp_obd, get_uuid)(exp);
932 	return uuid;
933 }
934 
935 /** Create a new /a exp on device /a obd for the uuid /a cluuid
936  * @param exp New export handle
937  * @param d Connect data, supported flags are set, flags also understood
938  *    by obd are returned.
939  */
obd_connect(const struct lu_env * env,struct obd_export ** exp,struct obd_device * obd,struct obd_uuid * cluuid,struct obd_connect_data * data,void * localdata)940 static inline int obd_connect(const struct lu_env *env,
941 			      struct obd_export **exp, struct obd_device *obd,
942 			      struct obd_uuid *cluuid,
943 			      struct obd_connect_data *data,
944 			      void *localdata)
945 {
946 	int rc;
947 	__u64 ocf = data ? data->ocd_connect_flags : 0; /* for post-condition
948 						   * check */
949 
950 	rc = obd_check_dev_active(obd);
951 	if (rc)
952 		return rc;
953 	OBD_CHECK_DT_OP(obd, connect, -EOPNOTSUPP);
954 	OBD_COUNTER_INCREMENT(obd, connect);
955 
956 	rc = OBP(obd, connect)(env, exp, obd, cluuid, data, localdata);
957 	/* check that only subset is granted */
958 	LASSERT(ergo(data != NULL, (data->ocd_connect_flags & ocf) ==
959 				    data->ocd_connect_flags));
960 	return rc;
961 }
962 
obd_reconnect(const struct lu_env * env,struct obd_export * exp,struct obd_device * obd,struct obd_uuid * cluuid,struct obd_connect_data * d,void * localdata)963 static inline int obd_reconnect(const struct lu_env *env,
964 				struct obd_export *exp,
965 				struct obd_device *obd,
966 				struct obd_uuid *cluuid,
967 				struct obd_connect_data *d,
968 				void *localdata)
969 {
970 	int rc;
971 	__u64 ocf = d ? d->ocd_connect_flags : 0; /* for post-condition
972 						   * check */
973 
974 	rc = obd_check_dev_active(obd);
975 	if (rc)
976 		return rc;
977 	OBD_CHECK_DT_OP(obd, reconnect, 0);
978 	OBD_COUNTER_INCREMENT(obd, reconnect);
979 
980 	rc = OBP(obd, reconnect)(env, exp, obd, cluuid, d, localdata);
981 	/* check that only subset is granted */
982 	LASSERT(ergo(d != NULL,
983 		     (d->ocd_connect_flags & ocf) == d->ocd_connect_flags));
984 	return rc;
985 }
986 
obd_disconnect(struct obd_export * exp)987 static inline int obd_disconnect(struct obd_export *exp)
988 {
989 	int rc;
990 
991 	EXP_CHECK_DT_OP(exp, disconnect);
992 	EXP_COUNTER_INCREMENT(exp, disconnect);
993 
994 	rc = OBP(exp->exp_obd, disconnect)(exp);
995 	return rc;
996 }
997 
obd_fid_init(struct obd_device * obd,struct obd_export * exp,enum lu_cli_type type)998 static inline int obd_fid_init(struct obd_device *obd, struct obd_export *exp,
999 			       enum lu_cli_type type)
1000 {
1001 	int rc;
1002 
1003 	OBD_CHECK_DT_OP(obd, fid_init, 0);
1004 	OBD_COUNTER_INCREMENT(obd, fid_init);
1005 
1006 	rc = OBP(obd, fid_init)(obd, exp, type);
1007 	return rc;
1008 }
1009 
obd_fid_fini(struct obd_device * obd)1010 static inline int obd_fid_fini(struct obd_device *obd)
1011 {
1012 	int rc;
1013 
1014 	OBD_CHECK_DT_OP(obd, fid_fini, 0);
1015 	OBD_COUNTER_INCREMENT(obd, fid_fini);
1016 
1017 	rc = OBP(obd, fid_fini)(obd);
1018 	return rc;
1019 }
1020 
obd_fid_alloc(struct obd_export * exp,struct lu_fid * fid,struct md_op_data * op_data)1021 static inline int obd_fid_alloc(struct obd_export *exp,
1022 				struct lu_fid *fid,
1023 				struct md_op_data *op_data)
1024 {
1025 	int rc;
1026 
1027 	EXP_CHECK_DT_OP(exp, fid_alloc);
1028 	EXP_COUNTER_INCREMENT(exp, fid_alloc);
1029 
1030 	rc = OBP(exp->exp_obd, fid_alloc)(exp, fid, op_data);
1031 	return rc;
1032 }
1033 
obd_pool_new(struct obd_device * obd,char * poolname)1034 static inline int obd_pool_new(struct obd_device *obd, char *poolname)
1035 {
1036 	int rc;
1037 
1038 	OBD_CHECK_DT_OP(obd, pool_new, -EOPNOTSUPP);
1039 	OBD_COUNTER_INCREMENT(obd, pool_new);
1040 
1041 	rc = OBP(obd, pool_new)(obd, poolname);
1042 	return rc;
1043 }
1044 
obd_pool_del(struct obd_device * obd,char * poolname)1045 static inline int obd_pool_del(struct obd_device *obd, char *poolname)
1046 {
1047 	int rc;
1048 
1049 	OBD_CHECK_DT_OP(obd, pool_del, -EOPNOTSUPP);
1050 	OBD_COUNTER_INCREMENT(obd, pool_del);
1051 
1052 	rc = OBP(obd, pool_del)(obd, poolname);
1053 	return rc;
1054 }
1055 
obd_pool_add(struct obd_device * obd,char * poolname,char * ostname)1056 static inline int obd_pool_add(struct obd_device *obd, char *poolname, char *ostname)
1057 {
1058 	int rc;
1059 
1060 	OBD_CHECK_DT_OP(obd, pool_add, -EOPNOTSUPP);
1061 	OBD_COUNTER_INCREMENT(obd, pool_add);
1062 
1063 	rc = OBP(obd, pool_add)(obd, poolname, ostname);
1064 	return rc;
1065 }
1066 
obd_pool_rem(struct obd_device * obd,char * poolname,char * ostname)1067 static inline int obd_pool_rem(struct obd_device *obd, char *poolname, char *ostname)
1068 {
1069 	int rc;
1070 
1071 	OBD_CHECK_DT_OP(obd, pool_rem, -EOPNOTSUPP);
1072 	OBD_COUNTER_INCREMENT(obd, pool_rem);
1073 
1074 	rc = OBP(obd, pool_rem)(obd, poolname, ostname);
1075 	return rc;
1076 }
1077 
obd_getref(struct obd_device * obd)1078 static inline void obd_getref(struct obd_device *obd)
1079 {
1080 	if (OBT(obd) && OBP(obd, getref)) {
1081 		OBD_COUNTER_INCREMENT(obd, getref);
1082 		OBP(obd, getref)(obd);
1083 	}
1084 }
1085 
obd_putref(struct obd_device * obd)1086 static inline void obd_putref(struct obd_device *obd)
1087 {
1088 	if (OBT(obd) && OBP(obd, putref)) {
1089 		OBD_COUNTER_INCREMENT(obd, putref);
1090 		OBP(obd, putref)(obd);
1091 	}
1092 }
1093 
obd_init_export(struct obd_export * exp)1094 static inline int obd_init_export(struct obd_export *exp)
1095 {
1096 	int rc = 0;
1097 
1098 	if ((exp)->exp_obd != NULL && OBT((exp)->exp_obd) &&
1099 	    OBP((exp)->exp_obd, init_export))
1100 		rc = OBP(exp->exp_obd, init_export)(exp);
1101 	return rc;
1102 }
1103 
obd_destroy_export(struct obd_export * exp)1104 static inline int obd_destroy_export(struct obd_export *exp)
1105 {
1106 	if ((exp)->exp_obd != NULL && OBT((exp)->exp_obd) &&
1107 	    OBP((exp)->exp_obd, destroy_export))
1108 		OBP(exp->exp_obd, destroy_export)(exp);
1109 	return 0;
1110 }
1111 
1112 /* @max_age is the oldest time in jiffies that we accept using a cached data.
1113  * If the cache is older than @max_age we will get a new value from the
1114  * target.  Use a value of "cfs_time_current() + HZ" to guarantee freshness. */
obd_statfs_async(struct obd_export * exp,struct obd_info * oinfo,__u64 max_age,struct ptlrpc_request_set * rqset)1115 static inline int obd_statfs_async(struct obd_export *exp,
1116 				   struct obd_info *oinfo,
1117 				   __u64 max_age,
1118 				   struct ptlrpc_request_set *rqset)
1119 {
1120 	int rc = 0;
1121 	struct obd_device *obd;
1122 
1123 	if (exp == NULL || exp->exp_obd == NULL)
1124 		return -EINVAL;
1125 
1126 	obd = exp->exp_obd;
1127 	OBD_CHECK_DT_OP(obd, statfs, -EOPNOTSUPP);
1128 	OBD_COUNTER_INCREMENT(obd, statfs);
1129 
1130 	CDEBUG(D_SUPER, "%s: osfs %p age %llu, max_age %llu\n",
1131 	       obd->obd_name, &obd->obd_osfs, obd->obd_osfs_age, max_age);
1132 	if (cfs_time_before_64(obd->obd_osfs_age, max_age)) {
1133 		rc = OBP(obd, statfs_async)(exp, oinfo, max_age, rqset);
1134 	} else {
1135 		CDEBUG(D_SUPER,
1136 		       "%s: use %p cache blocks %llu/%llu objects %llu/%llu\n",
1137 		       obd->obd_name, &obd->obd_osfs,
1138 		       obd->obd_osfs.os_bavail, obd->obd_osfs.os_blocks,
1139 		       obd->obd_osfs.os_ffree, obd->obd_osfs.os_files);
1140 		spin_lock(&obd->obd_osfs_lock);
1141 		memcpy(oinfo->oi_osfs, &obd->obd_osfs, sizeof(*oinfo->oi_osfs));
1142 		spin_unlock(&obd->obd_osfs_lock);
1143 		oinfo->oi_flags |= OBD_STATFS_FROM_CACHE;
1144 		if (oinfo->oi_cb_up)
1145 			oinfo->oi_cb_up(oinfo, 0);
1146 	}
1147 	return rc;
1148 }
1149 
obd_statfs_rqset(struct obd_export * exp,struct obd_statfs * osfs,__u64 max_age,__u32 flags)1150 static inline int obd_statfs_rqset(struct obd_export *exp,
1151 				   struct obd_statfs *osfs, __u64 max_age,
1152 				   __u32 flags)
1153 {
1154 	struct ptlrpc_request_set *set = NULL;
1155 	struct obd_info oinfo = { { { 0 } } };
1156 	int rc = 0;
1157 
1158 	set =  ptlrpc_prep_set();
1159 	if (set == NULL)
1160 		return -ENOMEM;
1161 
1162 	oinfo.oi_osfs = osfs;
1163 	oinfo.oi_flags = flags;
1164 	rc = obd_statfs_async(exp, &oinfo, max_age, set);
1165 	if (rc == 0)
1166 		rc = ptlrpc_set_wait(set);
1167 	ptlrpc_set_destroy(set);
1168 	return rc;
1169 }
1170 
1171 /* @max_age is the oldest time in jiffies that we accept using a cached data.
1172  * If the cache is older than @max_age we will get a new value from the
1173  * target.  Use a value of "cfs_time_current() + HZ" to guarantee freshness. */
obd_statfs(const struct lu_env * env,struct obd_export * exp,struct obd_statfs * osfs,__u64 max_age,__u32 flags)1174 static inline int obd_statfs(const struct lu_env *env, struct obd_export *exp,
1175 			     struct obd_statfs *osfs, __u64 max_age,
1176 			     __u32 flags)
1177 {
1178 	int rc = 0;
1179 	struct obd_device *obd = exp->exp_obd;
1180 
1181 	if (obd == NULL)
1182 		return -EINVAL;
1183 
1184 	OBD_CHECK_DT_OP(obd, statfs, -EOPNOTSUPP);
1185 	OBD_COUNTER_INCREMENT(obd, statfs);
1186 
1187 	CDEBUG(D_SUPER, "osfs %llu, max_age %llu\n",
1188 	       obd->obd_osfs_age, max_age);
1189 	if (cfs_time_before_64(obd->obd_osfs_age, max_age)) {
1190 		rc = OBP(obd, statfs)(env, exp, osfs, max_age, flags);
1191 		if (rc == 0) {
1192 			spin_lock(&obd->obd_osfs_lock);
1193 			memcpy(&obd->obd_osfs, osfs, sizeof(obd->obd_osfs));
1194 			obd->obd_osfs_age = cfs_time_current_64();
1195 			spin_unlock(&obd->obd_osfs_lock);
1196 		}
1197 	} else {
1198 		CDEBUG(D_SUPER, "%s: use %p cache blocks %llu/%llu objects %llu/%llu\n",
1199 		       obd->obd_name, &obd->obd_osfs,
1200 		       obd->obd_osfs.os_bavail, obd->obd_osfs.os_blocks,
1201 		       obd->obd_osfs.os_ffree, obd->obd_osfs.os_files);
1202 		spin_lock(&obd->obd_osfs_lock);
1203 		memcpy(osfs, &obd->obd_osfs, sizeof(*osfs));
1204 		spin_unlock(&obd->obd_osfs_lock);
1205 	}
1206 	return rc;
1207 }
1208 
obd_preprw(const struct lu_env * env,int cmd,struct obd_export * exp,struct obdo * oa,int objcount,struct obd_ioobj * obj,struct niobuf_remote * remote,int * pages,struct niobuf_local * local,struct obd_trans_info * oti,struct lustre_capa * capa)1209 static inline int obd_preprw(const struct lu_env *env, int cmd,
1210 			     struct obd_export *exp, struct obdo *oa,
1211 			     int objcount, struct obd_ioobj *obj,
1212 			     struct niobuf_remote *remote, int *pages,
1213 			     struct niobuf_local *local,
1214 			     struct obd_trans_info *oti,
1215 			     struct lustre_capa *capa)
1216 {
1217 	int rc;
1218 
1219 	EXP_CHECK_DT_OP(exp, preprw);
1220 	EXP_COUNTER_INCREMENT(exp, preprw);
1221 
1222 	rc = OBP(exp->exp_obd, preprw)(env, cmd, exp, oa, objcount, obj, remote,
1223 				       pages, local, oti, capa);
1224 	return rc;
1225 }
1226 
obd_commitrw(const struct lu_env * env,int cmd,struct obd_export * exp,struct obdo * oa,int objcount,struct obd_ioobj * obj,struct niobuf_remote * rnb,int pages,struct niobuf_local * local,struct obd_trans_info * oti,int rc)1227 static inline int obd_commitrw(const struct lu_env *env, int cmd,
1228 			       struct obd_export *exp, struct obdo *oa,
1229 			       int objcount, struct obd_ioobj *obj,
1230 			       struct niobuf_remote *rnb, int pages,
1231 			       struct niobuf_local *local,
1232 			       struct obd_trans_info *oti, int rc)
1233 {
1234 	EXP_CHECK_DT_OP(exp, commitrw);
1235 	EXP_COUNTER_INCREMENT(exp, commitrw);
1236 
1237 	rc = OBP(exp->exp_obd, commitrw)(env, cmd, exp, oa, objcount, obj,
1238 					 rnb, pages, local, oti, rc);
1239 	return rc;
1240 }
1241 
obd_adjust_kms(struct obd_export * exp,struct lov_stripe_md * lsm,u64 size,int shrink)1242 static inline int obd_adjust_kms(struct obd_export *exp,
1243 				 struct lov_stripe_md *lsm, u64 size,
1244 				 int shrink)
1245 {
1246 	int rc;
1247 
1248 	EXP_CHECK_DT_OP(exp, adjust_kms);
1249 	EXP_COUNTER_INCREMENT(exp, adjust_kms);
1250 
1251 	rc = OBP(exp->exp_obd, adjust_kms)(exp, lsm, size, shrink);
1252 	return rc;
1253 }
1254 
obd_iocontrol(unsigned int cmd,struct obd_export * exp,int len,void * karg,void * uarg)1255 static inline int obd_iocontrol(unsigned int cmd, struct obd_export *exp,
1256 				int len, void *karg, void *uarg)
1257 {
1258 	int rc;
1259 
1260 	EXP_CHECK_DT_OP(exp, iocontrol);
1261 	EXP_COUNTER_INCREMENT(exp, iocontrol);
1262 
1263 	rc = OBP(exp->exp_obd, iocontrol)(cmd, exp, len, karg, uarg);
1264 	return rc;
1265 }
1266 
obd_find_cbdata(struct obd_export * exp,struct lov_stripe_md * lsm,ldlm_iterator_t it,void * data)1267 static inline int obd_find_cbdata(struct obd_export *exp,
1268 				  struct lov_stripe_md *lsm,
1269 				  ldlm_iterator_t it, void *data)
1270 {
1271 	int rc;
1272 
1273 	EXP_CHECK_DT_OP(exp, find_cbdata);
1274 	EXP_COUNTER_INCREMENT(exp, find_cbdata);
1275 
1276 	rc = OBP(exp->exp_obd, find_cbdata)(exp, lsm, it, data);
1277 	return rc;
1278 }
1279 
obd_import_event(struct obd_device * obd,struct obd_import * imp,enum obd_import_event event)1280 static inline void obd_import_event(struct obd_device *obd,
1281 				    struct obd_import *imp,
1282 				    enum obd_import_event event)
1283 {
1284 	if (!obd) {
1285 		CERROR("NULL device\n");
1286 		return;
1287 	}
1288 	if (obd->obd_set_up && OBP(obd, import_event)) {
1289 		OBD_COUNTER_INCREMENT(obd, import_event);
1290 		OBP(obd, import_event)(obd, imp, event);
1291 	}
1292 }
1293 
obd_notify(struct obd_device * obd,struct obd_device * watched,enum obd_notify_event ev,void * data)1294 static inline int obd_notify(struct obd_device *obd,
1295 			     struct obd_device *watched,
1296 			     enum obd_notify_event ev,
1297 			     void *data)
1298 {
1299 	int rc;
1300 
1301 	rc = obd_check_dev(obd);
1302 	if (rc)
1303 		return rc;
1304 
1305 	/* the check for async_recov is a complete hack - I'm hereby
1306 	   overloading the meaning to also mean "this was called from
1307 	   mds_postsetup".  I know that my mds is able to handle notifies
1308 	   by this point, and it needs to get them to execute mds_postrecov. */
1309 	if (!obd->obd_set_up && !obd->obd_async_recov) {
1310 		CDEBUG(D_HA, "obd %s not set up\n", obd->obd_name);
1311 		return -EINVAL;
1312 	}
1313 
1314 	if (!OBP(obd, notify)) {
1315 		CDEBUG(D_HA, "obd %s has no notify handler\n", obd->obd_name);
1316 		return -ENOSYS;
1317 	}
1318 
1319 	OBD_COUNTER_INCREMENT(obd, notify);
1320 	rc = OBP(obd, notify)(obd, watched, ev, data);
1321 	return rc;
1322 }
1323 
obd_notify_observer(struct obd_device * observer,struct obd_device * observed,enum obd_notify_event ev,void * data)1324 static inline int obd_notify_observer(struct obd_device *observer,
1325 				      struct obd_device *observed,
1326 				      enum obd_notify_event ev,
1327 				      void *data)
1328 {
1329 	int rc1;
1330 	int rc2;
1331 
1332 	struct obd_notify_upcall *onu;
1333 
1334 	if (observer->obd_observer)
1335 		rc1 = obd_notify(observer->obd_observer, observed, ev, data);
1336 	else
1337 		rc1 = 0;
1338 	/*
1339 	 * Also, call non-obd listener, if any
1340 	 */
1341 	onu = &observer->obd_upcall;
1342 	if (onu->onu_upcall != NULL)
1343 		rc2 = onu->onu_upcall(observer, observed, ev,
1344 				      onu->onu_owner, NULL);
1345 	else
1346 		rc2 = 0;
1347 
1348 	return rc1 ? rc1 : rc2;
1349 }
1350 
obd_quotacheck(struct obd_export * exp,struct obd_quotactl * oqctl)1351 static inline int obd_quotacheck(struct obd_export *exp,
1352 				 struct obd_quotactl *oqctl)
1353 {
1354 	int rc;
1355 
1356 	EXP_CHECK_DT_OP(exp, quotacheck);
1357 	EXP_COUNTER_INCREMENT(exp, quotacheck);
1358 
1359 	rc = OBP(exp->exp_obd, quotacheck)(exp->exp_obd, exp, oqctl);
1360 	return rc;
1361 }
1362 
obd_quotactl(struct obd_export * exp,struct obd_quotactl * oqctl)1363 static inline int obd_quotactl(struct obd_export *exp,
1364 			       struct obd_quotactl *oqctl)
1365 {
1366 	int rc;
1367 
1368 	EXP_CHECK_DT_OP(exp, quotactl);
1369 	EXP_COUNTER_INCREMENT(exp, quotactl);
1370 
1371 	rc = OBP(exp->exp_obd, quotactl)(exp->exp_obd, exp, oqctl);
1372 	return rc;
1373 }
1374 
obd_health_check(const struct lu_env * env,struct obd_device * obd)1375 static inline int obd_health_check(const struct lu_env *env,
1376 				   struct obd_device *obd)
1377 {
1378 	/* returns: 0 on healthy
1379 	 *	 >0 on unhealthy + reason code/flag
1380 	 *	    however the only supported reason == 1 right now
1381 	 *	    We'll need to define some better reasons
1382 	 *	    or flags in the future.
1383 	 *	 <0 on error
1384 	 */
1385 	int rc;
1386 
1387 	/* don't use EXP_CHECK_DT_OP, because NULL method is normal here */
1388 	if (obd == NULL || !OBT(obd)) {
1389 		CERROR("cleaned up obd\n");
1390 		return -EOPNOTSUPP;
1391 	}
1392 	if (!obd->obd_set_up || obd->obd_stopping)
1393 		return 0;
1394 	if (!OBP(obd, health_check))
1395 		return 0;
1396 
1397 	rc = OBP(obd, health_check)(env, obd);
1398 	return rc;
1399 }
1400 
obd_register_observer(struct obd_device * obd,struct obd_device * observer)1401 static inline int obd_register_observer(struct obd_device *obd,
1402 					struct obd_device *observer)
1403 {
1404 	int rc;
1405 
1406 	rc = obd_check_dev(obd);
1407 	if (rc)
1408 		return rc;
1409 	down_write(&obd->obd_observer_link_sem);
1410 	if (obd->obd_observer && observer) {
1411 		up_write(&obd->obd_observer_link_sem);
1412 		return -EALREADY;
1413 	}
1414 	obd->obd_observer = observer;
1415 	up_write(&obd->obd_observer_link_sem);
1416 	return 0;
1417 }
1418 
1419 #if 0
1420 static inline int obd_register_page_removal_cb(struct obd_export *exp,
1421 					       obd_page_removal_cb_t cb,
1422 					       obd_pin_extent_cb pin_cb)
1423 {
1424 	int rc;
1425 
1426 	OBD_CHECK_DT_OP(exp->exp_obd, register_page_removal_cb, 0);
1427 	OBD_COUNTER_INCREMENT(exp->exp_obd, register_page_removal_cb);
1428 
1429 	rc = OBP(exp->exp_obd, register_page_removal_cb)(exp, cb, pin_cb);
1430 	return rc;
1431 }
1432 
1433 static inline int obd_unregister_page_removal_cb(struct obd_export *exp,
1434 						 obd_page_removal_cb_t cb)
1435 {
1436 	int rc;
1437 
1438 	OBD_CHECK_DT_OP(exp->exp_obd, unregister_page_removal_cb, 0);
1439 	OBD_COUNTER_INCREMENT(exp->exp_obd, unregister_page_removal_cb);
1440 
1441 	rc = OBP(exp->exp_obd, unregister_page_removal_cb)(exp, cb);
1442 	return rc;
1443 }
1444 
1445 static inline int obd_register_lock_cancel_cb(struct obd_export *exp,
1446 					      obd_lock_cancel_cb cb)
1447 {
1448 	int rc;
1449 
1450 	OBD_CHECK_DT_OP(exp->exp_obd, register_lock_cancel_cb, 0);
1451 	OBD_COUNTER_INCREMENT(exp->exp_obd, register_lock_cancel_cb);
1452 
1453 	rc = OBP(exp->exp_obd, register_lock_cancel_cb)(exp, cb);
1454 	return rc;
1455 }
1456 
1457 static inline int obd_unregister_lock_cancel_cb(struct obd_export *exp,
1458 						 obd_lock_cancel_cb cb)
1459 {
1460 	int rc;
1461 
1462 	OBD_CHECK_DT_OP(exp->exp_obd, unregister_lock_cancel_cb, 0);
1463 	OBD_COUNTER_INCREMENT(exp->exp_obd, unregister_lock_cancel_cb);
1464 
1465 	rc = OBP(exp->exp_obd, unregister_lock_cancel_cb)(exp, cb);
1466 	return rc;
1467 }
1468 #endif
1469 
1470 /* metadata helpers */
md_getstatus(struct obd_export * exp,struct lu_fid * fid,struct obd_capa ** pc)1471 static inline int md_getstatus(struct obd_export *exp,
1472 			       struct lu_fid *fid, struct obd_capa **pc)
1473 {
1474 	int rc;
1475 
1476 	EXP_CHECK_MD_OP(exp, getstatus);
1477 	EXP_MD_COUNTER_INCREMENT(exp, getstatus);
1478 	rc = MDP(exp->exp_obd, getstatus)(exp, fid, pc);
1479 	return rc;
1480 }
1481 
md_getattr(struct obd_export * exp,struct md_op_data * op_data,struct ptlrpc_request ** request)1482 static inline int md_getattr(struct obd_export *exp, struct md_op_data *op_data,
1483 			     struct ptlrpc_request **request)
1484 {
1485 	int rc;
1486 
1487 	EXP_CHECK_MD_OP(exp, getattr);
1488 	EXP_MD_COUNTER_INCREMENT(exp, getattr);
1489 	rc = MDP(exp->exp_obd, getattr)(exp, op_data, request);
1490 	return rc;
1491 }
1492 
md_null_inode(struct obd_export * exp,const struct lu_fid * fid)1493 static inline int md_null_inode(struct obd_export *exp,
1494 				   const struct lu_fid *fid)
1495 {
1496 	int rc;
1497 
1498 	EXP_CHECK_MD_OP(exp, null_inode);
1499 	EXP_MD_COUNTER_INCREMENT(exp, null_inode);
1500 	rc = MDP(exp->exp_obd, null_inode)(exp, fid);
1501 	return rc;
1502 }
1503 
md_find_cbdata(struct obd_export * exp,const struct lu_fid * fid,ldlm_iterator_t it,void * data)1504 static inline int md_find_cbdata(struct obd_export *exp,
1505 				 const struct lu_fid *fid,
1506 				 ldlm_iterator_t it, void *data)
1507 {
1508 	int rc;
1509 
1510 	EXP_CHECK_MD_OP(exp, find_cbdata);
1511 	EXP_MD_COUNTER_INCREMENT(exp, find_cbdata);
1512 	rc = MDP(exp->exp_obd, find_cbdata)(exp, fid, it, data);
1513 	return rc;
1514 }
1515 
md_close(struct obd_export * exp,struct md_op_data * op_data,struct md_open_data * mod,struct ptlrpc_request ** request)1516 static inline int md_close(struct obd_export *exp, struct md_op_data *op_data,
1517 			   struct md_open_data *mod,
1518 			   struct ptlrpc_request **request)
1519 {
1520 	int rc;
1521 
1522 	EXP_CHECK_MD_OP(exp, close);
1523 	EXP_MD_COUNTER_INCREMENT(exp, close);
1524 	rc = MDP(exp->exp_obd, close)(exp, op_data, mod, request);
1525 	return rc;
1526 }
1527 
md_create(struct obd_export * exp,struct md_op_data * op_data,const void * data,int datalen,int mode,__u32 uid,__u32 gid,cfs_cap_t cap_effective,__u64 rdev,struct ptlrpc_request ** request)1528 static inline int md_create(struct obd_export *exp, struct md_op_data *op_data,
1529 			    const void *data, int datalen, int mode, __u32 uid,
1530 			    __u32 gid, cfs_cap_t cap_effective, __u64 rdev,
1531 			    struct ptlrpc_request **request)
1532 {
1533 	int rc;
1534 
1535 	EXP_CHECK_MD_OP(exp, create);
1536 	EXP_MD_COUNTER_INCREMENT(exp, create);
1537 	rc = MDP(exp->exp_obd, create)(exp, op_data, data, datalen, mode,
1538 				       uid, gid, cap_effective, rdev, request);
1539 	return rc;
1540 }
1541 
md_done_writing(struct obd_export * exp,struct md_op_data * op_data,struct md_open_data * mod)1542 static inline int md_done_writing(struct obd_export *exp,
1543 				  struct md_op_data *op_data,
1544 				  struct md_open_data *mod)
1545 {
1546 	int rc;
1547 
1548 	EXP_CHECK_MD_OP(exp, done_writing);
1549 	EXP_MD_COUNTER_INCREMENT(exp, done_writing);
1550 	rc = MDP(exp->exp_obd, done_writing)(exp, op_data, mod);
1551 	return rc;
1552 }
1553 
md_enqueue(struct obd_export * exp,struct ldlm_enqueue_info * einfo,struct lookup_intent * it,struct md_op_data * op_data,struct lustre_handle * lockh,void * lmm,int lmmsize,struct ptlrpc_request ** req,__u64 extra_lock_flags)1554 static inline int md_enqueue(struct obd_export *exp,
1555 			     struct ldlm_enqueue_info *einfo,
1556 			     struct lookup_intent *it,
1557 			     struct md_op_data *op_data,
1558 			     struct lustre_handle *lockh,
1559 			     void *lmm, int lmmsize,
1560 			     struct ptlrpc_request **req,
1561 			     __u64 extra_lock_flags)
1562 {
1563 	int rc;
1564 
1565 	EXP_CHECK_MD_OP(exp, enqueue);
1566 	EXP_MD_COUNTER_INCREMENT(exp, enqueue);
1567 	rc = MDP(exp->exp_obd, enqueue)(exp, einfo, it, op_data, lockh,
1568 					lmm, lmmsize, req, extra_lock_flags);
1569 	return rc;
1570 }
1571 
md_getattr_name(struct obd_export * exp,struct md_op_data * op_data,struct ptlrpc_request ** request)1572 static inline int md_getattr_name(struct obd_export *exp,
1573 				  struct md_op_data *op_data,
1574 				  struct ptlrpc_request **request)
1575 {
1576 	int rc;
1577 
1578 	EXP_CHECK_MD_OP(exp, getattr_name);
1579 	EXP_MD_COUNTER_INCREMENT(exp, getattr_name);
1580 	rc = MDP(exp->exp_obd, getattr_name)(exp, op_data, request);
1581 	return rc;
1582 }
1583 
md_intent_lock(struct obd_export * exp,struct md_op_data * op_data,void * lmm,int lmmsize,struct lookup_intent * it,int lookup_flags,struct ptlrpc_request ** reqp,ldlm_blocking_callback cb_blocking,__u64 extra_lock_flags)1584 static inline int md_intent_lock(struct obd_export *exp,
1585 				 struct md_op_data *op_data, void *lmm,
1586 				 int lmmsize, struct lookup_intent *it,
1587 				 int lookup_flags, struct ptlrpc_request **reqp,
1588 				 ldlm_blocking_callback cb_blocking,
1589 				 __u64 extra_lock_flags)
1590 {
1591 	int rc;
1592 
1593 	EXP_CHECK_MD_OP(exp, intent_lock);
1594 	EXP_MD_COUNTER_INCREMENT(exp, intent_lock);
1595 	rc = MDP(exp->exp_obd, intent_lock)(exp, op_data, lmm, lmmsize,
1596 					    it, lookup_flags, reqp, cb_blocking,
1597 					    extra_lock_flags);
1598 	return rc;
1599 }
1600 
md_link(struct obd_export * exp,struct md_op_data * op_data,struct ptlrpc_request ** request)1601 static inline int md_link(struct obd_export *exp, struct md_op_data *op_data,
1602 			  struct ptlrpc_request **request)
1603 {
1604 	int rc;
1605 
1606 	EXP_CHECK_MD_OP(exp, link);
1607 	EXP_MD_COUNTER_INCREMENT(exp, link);
1608 	rc = MDP(exp->exp_obd, link)(exp, op_data, request);
1609 	return rc;
1610 }
1611 
md_rename(struct obd_export * exp,struct md_op_data * op_data,const char * old,int oldlen,const char * new,int newlen,struct ptlrpc_request ** request)1612 static inline int md_rename(struct obd_export *exp, struct md_op_data *op_data,
1613 			    const char *old, int oldlen, const char *new,
1614 			    int newlen, struct ptlrpc_request **request)
1615 {
1616 	int rc;
1617 
1618 	EXP_CHECK_MD_OP(exp, rename);
1619 	EXP_MD_COUNTER_INCREMENT(exp, rename);
1620 	rc = MDP(exp->exp_obd, rename)(exp, op_data, old, oldlen, new,
1621 				       newlen, request);
1622 	return rc;
1623 }
1624 
md_is_subdir(struct obd_export * exp,const struct lu_fid * pfid,const struct lu_fid * cfid,struct ptlrpc_request ** request)1625 static inline int md_is_subdir(struct obd_export *exp,
1626 			       const struct lu_fid *pfid,
1627 			       const struct lu_fid *cfid,
1628 			       struct ptlrpc_request **request)
1629 {
1630 	int rc;
1631 
1632 	EXP_CHECK_MD_OP(exp, is_subdir);
1633 	EXP_MD_COUNTER_INCREMENT(exp, is_subdir);
1634 	rc = MDP(exp->exp_obd, is_subdir)(exp, pfid, cfid, request);
1635 	return rc;
1636 }
1637 
md_setattr(struct obd_export * exp,struct md_op_data * op_data,void * ea,int ealen,void * ea2,int ea2len,struct ptlrpc_request ** request,struct md_open_data ** mod)1638 static inline int md_setattr(struct obd_export *exp, struct md_op_data *op_data,
1639 			     void *ea, int ealen, void *ea2, int ea2len,
1640 			     struct ptlrpc_request **request,
1641 			     struct md_open_data **mod)
1642 {
1643 	int rc;
1644 
1645 	EXP_CHECK_MD_OP(exp, setattr);
1646 	EXP_MD_COUNTER_INCREMENT(exp, setattr);
1647 	rc = MDP(exp->exp_obd, setattr)(exp, op_data, ea, ealen,
1648 					ea2, ea2len, request, mod);
1649 	return rc;
1650 }
1651 
md_sync(struct obd_export * exp,const struct lu_fid * fid,struct obd_capa * oc,struct ptlrpc_request ** request)1652 static inline int md_sync(struct obd_export *exp, const struct lu_fid *fid,
1653 			  struct obd_capa *oc, struct ptlrpc_request **request)
1654 {
1655 	int rc;
1656 
1657 	EXP_CHECK_MD_OP(exp, sync);
1658 	EXP_MD_COUNTER_INCREMENT(exp, sync);
1659 	rc = MDP(exp->exp_obd, sync)(exp, fid, oc, request);
1660 	return rc;
1661 }
1662 
md_readpage(struct obd_export * exp,struct md_op_data * opdata,struct page ** pages,struct ptlrpc_request ** request)1663 static inline int md_readpage(struct obd_export *exp, struct md_op_data *opdata,
1664 			      struct page **pages,
1665 			      struct ptlrpc_request **request)
1666 {
1667 	int rc;
1668 
1669 	EXP_CHECK_MD_OP(exp, readpage);
1670 	EXP_MD_COUNTER_INCREMENT(exp, readpage);
1671 	rc = MDP(exp->exp_obd, readpage)(exp, opdata, pages, request);
1672 	return rc;
1673 }
1674 
md_unlink(struct obd_export * exp,struct md_op_data * op_data,struct ptlrpc_request ** request)1675 static inline int md_unlink(struct obd_export *exp, struct md_op_data *op_data,
1676 			    struct ptlrpc_request **request)
1677 {
1678 	int rc;
1679 
1680 	EXP_CHECK_MD_OP(exp, unlink);
1681 	EXP_MD_COUNTER_INCREMENT(exp, unlink);
1682 	rc = MDP(exp->exp_obd, unlink)(exp, op_data, request);
1683 	return rc;
1684 }
1685 
md_get_lustre_md(struct obd_export * exp,struct ptlrpc_request * req,struct obd_export * dt_exp,struct obd_export * md_exp,struct lustre_md * md)1686 static inline int md_get_lustre_md(struct obd_export *exp,
1687 				   struct ptlrpc_request *req,
1688 				   struct obd_export *dt_exp,
1689 				   struct obd_export *md_exp,
1690 				   struct lustre_md *md)
1691 {
1692 	EXP_CHECK_MD_OP(exp, get_lustre_md);
1693 	EXP_MD_COUNTER_INCREMENT(exp, get_lustre_md);
1694 	return MDP(exp->exp_obd, get_lustre_md)(exp, req, dt_exp, md_exp, md);
1695 }
1696 
md_free_lustre_md(struct obd_export * exp,struct lustre_md * md)1697 static inline int md_free_lustre_md(struct obd_export *exp,
1698 				    struct lustre_md *md)
1699 {
1700 	EXP_CHECK_MD_OP(exp, free_lustre_md);
1701 	EXP_MD_COUNTER_INCREMENT(exp, free_lustre_md);
1702 	return MDP(exp->exp_obd, free_lustre_md)(exp, md);
1703 }
1704 
md_setxattr(struct obd_export * exp,const struct lu_fid * fid,struct obd_capa * oc,u64 valid,const char * name,const char * input,int input_size,int output_size,int flags,__u32 suppgid,struct ptlrpc_request ** request)1705 static inline int md_setxattr(struct obd_export *exp,
1706 			      const struct lu_fid *fid, struct obd_capa *oc,
1707 			      u64 valid, const char *name,
1708 			      const char *input, int input_size,
1709 			      int output_size, int flags, __u32 suppgid,
1710 			      struct ptlrpc_request **request)
1711 {
1712 	EXP_CHECK_MD_OP(exp, setxattr);
1713 	EXP_MD_COUNTER_INCREMENT(exp, setxattr);
1714 	return MDP(exp->exp_obd, setxattr)(exp, fid, oc, valid, name, input,
1715 					   input_size, output_size, flags,
1716 					   suppgid, request);
1717 }
1718 
md_getxattr(struct obd_export * exp,const struct lu_fid * fid,struct obd_capa * oc,u64 valid,const char * name,const char * input,int input_size,int output_size,int flags,struct ptlrpc_request ** request)1719 static inline int md_getxattr(struct obd_export *exp,
1720 			      const struct lu_fid *fid, struct obd_capa *oc,
1721 			      u64 valid, const char *name,
1722 			      const char *input, int input_size,
1723 			      int output_size, int flags,
1724 			      struct ptlrpc_request **request)
1725 {
1726 	EXP_CHECK_MD_OP(exp, getxattr);
1727 	EXP_MD_COUNTER_INCREMENT(exp, getxattr);
1728 	return MDP(exp->exp_obd, getxattr)(exp, fid, oc, valid, name, input,
1729 					   input_size, output_size, flags,
1730 					   request);
1731 }
1732 
md_set_open_replay_data(struct obd_export * exp,struct obd_client_handle * och,struct lookup_intent * it)1733 static inline int md_set_open_replay_data(struct obd_export *exp,
1734 					  struct obd_client_handle *och,
1735 					  struct lookup_intent *it)
1736 {
1737 	EXP_CHECK_MD_OP(exp, set_open_replay_data);
1738 	EXP_MD_COUNTER_INCREMENT(exp, set_open_replay_data);
1739 	return MDP(exp->exp_obd, set_open_replay_data)(exp, och, it);
1740 }
1741 
md_clear_open_replay_data(struct obd_export * exp,struct obd_client_handle * och)1742 static inline int md_clear_open_replay_data(struct obd_export *exp,
1743 					    struct obd_client_handle *och)
1744 {
1745 	EXP_CHECK_MD_OP(exp, clear_open_replay_data);
1746 	EXP_MD_COUNTER_INCREMENT(exp, clear_open_replay_data);
1747 	return MDP(exp->exp_obd, clear_open_replay_data)(exp, och);
1748 }
1749 
md_set_lock_data(struct obd_export * exp,__u64 * lockh,void * data,__u64 * bits)1750 static inline int md_set_lock_data(struct obd_export *exp,
1751 				   __u64 *lockh, void *data, __u64 *bits)
1752 {
1753 	EXP_CHECK_MD_OP(exp, set_lock_data);
1754 	EXP_MD_COUNTER_INCREMENT(exp, set_lock_data);
1755 	return MDP(exp->exp_obd, set_lock_data)(exp, lockh, data, bits);
1756 }
1757 
md_cancel_unused(struct obd_export * exp,const struct lu_fid * fid,ldlm_policy_data_t * policy,ldlm_mode_t mode,ldlm_cancel_flags_t flags,void * opaque)1758 static inline int md_cancel_unused(struct obd_export *exp,
1759 				   const struct lu_fid *fid,
1760 				   ldlm_policy_data_t *policy,
1761 				   ldlm_mode_t mode,
1762 				   ldlm_cancel_flags_t flags,
1763 				   void *opaque)
1764 {
1765 	int rc;
1766 
1767 	EXP_CHECK_MD_OP(exp, cancel_unused);
1768 	EXP_MD_COUNTER_INCREMENT(exp, cancel_unused);
1769 
1770 	rc = MDP(exp->exp_obd, cancel_unused)(exp, fid, policy, mode,
1771 					      flags, opaque);
1772 	return rc;
1773 }
1774 
md_lock_match(struct obd_export * exp,__u64 flags,const struct lu_fid * fid,ldlm_type_t type,ldlm_policy_data_t * policy,ldlm_mode_t mode,struct lustre_handle * lockh)1775 static inline ldlm_mode_t md_lock_match(struct obd_export *exp, __u64 flags,
1776 					const struct lu_fid *fid,
1777 					ldlm_type_t type,
1778 					ldlm_policy_data_t *policy,
1779 					ldlm_mode_t mode,
1780 					struct lustre_handle *lockh)
1781 {
1782 	EXP_CHECK_MD_OP(exp, lock_match);
1783 	EXP_MD_COUNTER_INCREMENT(exp, lock_match);
1784 	return MDP(exp->exp_obd, lock_match)(exp, flags, fid, type,
1785 					     policy, mode, lockh);
1786 }
1787 
md_init_ea_size(struct obd_export * exp,int easize,int def_asize,int cookiesize,int def_cookiesize)1788 static inline int md_init_ea_size(struct obd_export *exp, int easize,
1789 				  int def_asize, int cookiesize,
1790 				  int def_cookiesize)
1791 {
1792 	EXP_CHECK_MD_OP(exp, init_ea_size);
1793 	EXP_MD_COUNTER_INCREMENT(exp, init_ea_size);
1794 	return MDP(exp->exp_obd, init_ea_size)(exp, easize, def_asize,
1795 					       cookiesize, def_cookiesize);
1796 }
1797 
md_get_remote_perm(struct obd_export * exp,const struct lu_fid * fid,struct obd_capa * oc,__u32 suppgid,struct ptlrpc_request ** request)1798 static inline int md_get_remote_perm(struct obd_export *exp,
1799 				     const struct lu_fid *fid,
1800 				     struct obd_capa *oc, __u32 suppgid,
1801 				     struct ptlrpc_request **request)
1802 {
1803 	EXP_CHECK_MD_OP(exp, get_remote_perm);
1804 	EXP_MD_COUNTER_INCREMENT(exp, get_remote_perm);
1805 	return MDP(exp->exp_obd, get_remote_perm)(exp, fid, oc, suppgid,
1806 						  request);
1807 }
1808 
md_renew_capa(struct obd_export * exp,struct obd_capa * ocapa,renew_capa_cb_t cb)1809 static inline int md_renew_capa(struct obd_export *exp, struct obd_capa *ocapa,
1810 				renew_capa_cb_t cb)
1811 {
1812 	int rc;
1813 
1814 	EXP_CHECK_MD_OP(exp, renew_capa);
1815 	EXP_MD_COUNTER_INCREMENT(exp, renew_capa);
1816 	rc = MDP(exp->exp_obd, renew_capa)(exp, ocapa, cb);
1817 	return rc;
1818 }
1819 
md_unpack_capa(struct obd_export * exp,struct ptlrpc_request * req,const struct req_msg_field * field,struct obd_capa ** oc)1820 static inline int md_unpack_capa(struct obd_export *exp,
1821 				 struct ptlrpc_request *req,
1822 				 const struct req_msg_field *field,
1823 				 struct obd_capa **oc)
1824 {
1825 	int rc;
1826 
1827 	EXP_CHECK_MD_OP(exp, unpack_capa);
1828 	EXP_MD_COUNTER_INCREMENT(exp, unpack_capa);
1829 	rc = MDP(exp->exp_obd, unpack_capa)(exp, req, field, oc);
1830 	return rc;
1831 }
1832 
md_intent_getattr_async(struct obd_export * exp,struct md_enqueue_info * minfo,struct ldlm_enqueue_info * einfo)1833 static inline int md_intent_getattr_async(struct obd_export *exp,
1834 					  struct md_enqueue_info *minfo,
1835 					  struct ldlm_enqueue_info *einfo)
1836 {
1837 	int rc;
1838 
1839 	EXP_CHECK_MD_OP(exp, intent_getattr_async);
1840 	EXP_MD_COUNTER_INCREMENT(exp, intent_getattr_async);
1841 	rc = MDP(exp->exp_obd, intent_getattr_async)(exp, minfo, einfo);
1842 	return rc;
1843 }
1844 
md_revalidate_lock(struct obd_export * exp,struct lookup_intent * it,struct lu_fid * fid,__u64 * bits)1845 static inline int md_revalidate_lock(struct obd_export *exp,
1846 				     struct lookup_intent *it,
1847 				     struct lu_fid *fid, __u64 *bits)
1848 {
1849 	int rc;
1850 
1851 	EXP_CHECK_MD_OP(exp, revalidate_lock);
1852 	EXP_MD_COUNTER_INCREMENT(exp, revalidate_lock);
1853 	rc = MDP(exp->exp_obd, revalidate_lock)(exp, it, fid, bits);
1854 	return rc;
1855 }
1856 
1857 
1858 /* OBD Metadata Support */
1859 
1860 extern int obd_init_caches(void);
1861 extern void obd_cleanup_caches(void);
1862 
1863 /* support routines */
1864 extern struct kmem_cache *obdo_cachep;
1865 
1866 #define OBDO_ALLOC(ptr)						       \
1867 do {									  \
1868 	OBD_SLAB_ALLOC_PTR_GFP((ptr), obdo_cachep, GFP_NOFS);             \
1869 } while (0)
1870 
1871 #define OBDO_FREE(ptr)							\
1872 do {									  \
1873 	OBD_SLAB_FREE_PTR((ptr), obdo_cachep);				\
1874 } while (0)
1875 
1876 
obdo2fid(struct obdo * oa,struct lu_fid * fid)1877 static inline void obdo2fid(struct obdo *oa, struct lu_fid *fid)
1878 {
1879 	/* something here */
1880 }
1881 
fid2obdo(struct lu_fid * fid,struct obdo * oa)1882 static inline void fid2obdo(struct lu_fid *fid, struct obdo *oa)
1883 {
1884 	/* something here */
1885 }
1886 
1887 typedef int (*register_lwp_cb)(void *data);
1888 
1889 struct lwp_register_item {
1890 	struct obd_export **lri_exp;
1891 	register_lwp_cb	    lri_cb_func;
1892 	void		   *lri_cb_data;
1893 	struct list_head	    lri_list;
1894 	char		    lri_name[MTI_NAME_MAXLEN];
1895 };
1896 
1897 /* I'm as embarrassed about this as you are.
1898  *
1899  * <shaver> // XXX do not look into _superhack with remaining eye
1900  * <shaver> // XXX if this were any uglier, I'd get my own show on MTV */
1901 extern int (*ptlrpc_put_connection_superhack)(struct ptlrpc_connection *c);
1902 
1903 /* obd_mount.c */
1904 
1905 /* sysctl.c */
1906 extern void obd_sysctl_init (void);
1907 extern void obd_sysctl_clean (void);
1908 
1909 /* uuid.c  */
1910 typedef __u8 class_uuid_t[16];
1911 void class_uuid_unparse(class_uuid_t in, struct obd_uuid *out);
1912 
1913 /* lustre_peer.c    */
1914 int lustre_uuid_to_peer(const char *uuid, lnet_nid_t *peer_nid, int index);
1915 int class_add_uuid(const char *uuid, __u64 nid);
1916 int class_del_uuid (const char *uuid);
1917 int class_check_uuid(struct obd_uuid *uuid, __u64 nid);
1918 void class_init_uuidlist(void);
1919 void class_exit_uuidlist(void);
1920 
1921 /* class_obd.c */
1922 extern char obd_jobid_node[];
1923 extern struct miscdevice obd_psdev;
1924 extern spinlock_t obd_types_lock;
1925 
1926 /* prng.c */
1927 #define ll_generate_random_uuid(uuid_out) cfs_get_random_bytes(uuid_out, sizeof(class_uuid_t))
1928 
1929 #endif /* __LINUX_OBD_CLASS_H */
1930