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[fs/lustre-release.git] / lustre / include / linux / lustre_dlm.h
1 /* -*- mode: c; c-basic-offset: 8; indent-tabs-mode: nil; -*-
2  * (visit-tags-table FILE)
3  * vim:expandtab:shiftwidth=8:tabstop=8:
4  */
5
6 #ifndef _LUSTRE_DLM_H__
7 #define _LUSTRE_DLM_H__
8
9 #ifdef __KERNEL__
10 # include <linux/proc_fs.h>
11 #endif 
12
13 #include <linux/lustre_lib.h>
14 #include <linux/lustre_net.h>
15 #include <linux/lustre_import.h>
16 #include <linux/lustre_handles.h>
17 #include <linux/lustre_export.h> /* for obd_export, for LDLM_DEBUG */
18
19 struct obd_ops;
20 struct obd_device;
21
22 #define OBD_LDLM_DEVICENAME  "ldlm"
23
24 typedef enum {
25         ELDLM_OK = 0,
26
27         ELDLM_LOCK_CHANGED = 300,
28         ELDLM_LOCK_ABORTED = 301,
29         ELDLM_LOCK_REPLACED = 302,
30
31         ELDLM_NAMESPACE_EXISTS = 400,
32         ELDLM_BAD_NAMESPACE    = 401
33 } ldlm_error_t;
34
35 #define LDLM_NAMESPACE_SERVER 0
36 #define LDLM_NAMESPACE_CLIENT 1
37
38 #define LDLM_FL_LOCK_CHANGED   (1 << 0) /* extent, mode, or resource changed */
39
40 /* If the server returns one of these flags, then the lock was put on that list.
41  * If the client sends one of these flags (during recovery ONLY!), it wants the
42  * lock added to the specified list, no questions asked. -p */
43 #define LDLM_FL_BLOCK_GRANTED  (1 << 1)
44 #define LDLM_FL_BLOCK_CONV     (1 << 2)
45 #define LDLM_FL_BLOCK_WAIT     (1 << 3)
46
47 #define LDLM_FL_CBPENDING      (1 << 4) // this lock is being destroyed
48 #define LDLM_FL_AST_SENT       (1 << 5) // blocking or cancel packet was sent
49 #define LDLM_FL_WAIT_NOREPROC  (1 << 6)// not a real lock flag,not saved in lock
50 #define LDLM_FL_CANCEL         (1 << 7) // cancellation callback already run
51
52 /* Lock is being replayed.  This could probably be implied by the fact that one
53  * of BLOCK_{GRANTED,CONV,WAIT} is set, but that is pretty dangerous. */
54 #define LDLM_FL_REPLAY         (1 << 8)
55
56 #define LDLM_FL_INTENT_ONLY    (1 << 9) /* don't grant lock, just do intent */
57 #define LDLM_FL_LOCAL_ONLY     (1 << 10) /* see ldlm_cli_cancel_unused */
58
59 /* don't run the cancel callback under ldlm_cli_cancel_unused */
60 #define LDLM_FL_NO_CALLBACK    (1 << 11)
61
62 #define LDLM_FL_HAS_INTENT     (1 << 12) /* lock request has intent */
63 #define LDLM_FL_CANCELING      (1 << 13) /* lock cancel has already been sent */
64 #define LDLM_FL_LOCAL          (1 << 14) // a local lock (ie, no srv/cli split)
65 #define LDLM_FL_WARN           (1 << 15) /* see ldlm_cli_cancel_unused */
66 #define LDLM_FL_MATCH_DATA     (1 << 16) /* see ldlm_lock_match */
67
68 /* The blocking callback is overloaded to perform two functions.  These flags
69  * indicate which operation should be performed. */
70 #define LDLM_CB_BLOCKING    1
71 #define LDLM_CB_CANCELING   2
72
73 #define L2B(c) (1 << c)
74
75 /* compatibility matrix */
76 #define LCK_COMPAT_EX  L2B(LCK_NL)
77 #define LCK_COMPAT_PW  (LCK_COMPAT_EX | L2B(LCK_CR))
78 #define LCK_COMPAT_PR  (LCK_COMPAT_PW | L2B(LCK_PR))
79 #define LCK_COMPAT_CW  (LCK_COMPAT_PW | L2B(LCK_CW))
80 #define LCK_COMPAT_CR  (LCK_COMPAT_CW | L2B(LCK_PR) | L2B(LCK_PW))
81 #define LCK_COMPAT_NL  (LCK_COMPAT_CR | L2B(LCK_EX))
82
83 static ldlm_mode_t lck_compat_array[] = {
84         [LCK_EX] LCK_COMPAT_EX,
85         [LCK_PW] LCK_COMPAT_PW,
86         [LCK_PR] LCK_COMPAT_PR,
87         [LCK_CW] LCK_COMPAT_CW,
88         [LCK_CR] LCK_COMPAT_CR,
89         [LCK_NL] LCK_COMPAT_NL
90 };
91
92 static inline int lockmode_compat(ldlm_mode_t exist, ldlm_mode_t new)
93 {
94        if (exist < LCK_EX || exist > LCK_NL)
95               LBUG();
96        if (new < LCK_EX || new > LCK_NL)
97               LBUG();
98
99        return (lck_compat_array[exist] & L2B(new));
100 }
101
102 /*
103  *
104  * cluster name spaces
105  *
106  */
107
108 #define DLM_OST_NAMESPACE 1
109 #define DLM_MDS_NAMESPACE 2
110
111 /* XXX
112    - do we just separate this by security domains and use a prefix for
113      multiple namespaces in the same domain?
114    -
115 */
116
117 struct ldlm_namespace {
118         char                  *ns_name;
119         __u32                  ns_client; /* is this a client-side lock tree? */
120         struct list_head      *ns_hash; /* hash table for ns */
121         __u32                  ns_refcount; /* count of resources in the hash */
122         struct list_head       ns_root_list; /* all root resources in ns */
123         struct lustre_lock     ns_lock; /* protects hash, refcount, list */
124         struct list_head       ns_list_chain; /* position in global NS list */
125         /* 
126         struct proc_dir_entry *ns_proc_dir;
127         */
128
129         struct list_head       ns_unused_list; /* all root resources in ns */
130         unsigned int           ns_nr_unused;
131         unsigned int           ns_max_unused;
132
133         spinlock_t             ns_counter_lock;
134         __u64                  ns_locks;
135         __u64                  ns_resources;
136 };
137
138 /*
139  *
140  * Resource hash table
141  *
142  */
143
144 #define RES_HASH_BITS 10
145 #define RES_HASH_SIZE (1UL << RES_HASH_BITS)
146 #define RES_HASH_MASK (RES_HASH_SIZE - 1)
147
148 struct ldlm_lock;
149
150 typedef int (*ldlm_blocking_callback)(struct ldlm_lock *lock,
151                                       struct ldlm_lock_desc *new, void *data,
152                                       int flag);
153 typedef int (*ldlm_completion_callback)(struct ldlm_lock *lock, int flags,
154                                         void *data);
155
156 struct ldlm_lock {
157         struct portals_handle l_handle; // must be first in the structure
158         atomic_t              l_refc;
159         struct ldlm_resource *l_resource;
160         struct ldlm_lock     *l_parent;
161         struct list_head      l_children;
162         struct list_head      l_childof;
163         struct list_head      l_lru;
164         struct list_head      l_res_link; // position in one of three res lists
165         struct list_head      l_export_chain; // per-export chain of locks
166         struct list_head      l_pending_chain; // locks with callbacks pending
167         unsigned long         l_callback_timeout;
168
169         ldlm_mode_t           l_req_mode;
170         ldlm_mode_t           l_granted_mode;
171
172         ldlm_completion_callback l_completion_ast;
173         ldlm_blocking_callback   l_blocking_ast;
174
175         struct obd_export    *l_export;
176         struct lustre_handle *l_connh;
177         __u32                 l_flags;
178         struct lustre_handle  l_remote_handle;
179         void                 *l_data;
180         struct ldlm_extent    l_extent;
181         __u32                 l_version[RES_VERSION_SIZE];
182
183         __u32                 l_readers;
184         __u32                 l_writers;
185         __u8                  l_destroyed;
186
187         /* If the lock is granted, a process sleeps on this waitq to learn when
188          * it's no longer in use.  If the lock is not granted, a process sleeps
189          * on this waitq to learn when it becomes granted. */
190         wait_queue_head_t     l_waitq;
191         struct timeval        l_enqueued_time;
192 };
193
194 typedef int (*ldlm_res_compat)(struct ldlm_lock *child, struct ldlm_lock *new);
195 typedef int (*ldlm_res_policy)(struct ldlm_namespace *, struct ldlm_lock **,
196                                void *req_cookie, ldlm_mode_t mode, int flags,
197                                void *data);
198
199 #define LDLM_PLAIN       10
200 #define LDLM_EXTENT      11
201
202 #define LDLM_MIN_TYPE 10
203 #define LDLM_MAX_TYPE 11
204
205 struct ldlm_resource {
206         struct ldlm_namespace *lr_namespace;
207         struct list_head       lr_hash;
208         struct ldlm_resource  *lr_parent;   /* 0 for a root resource */
209         struct list_head       lr_children; /* list head for child resources */
210         struct list_head       lr_childof;  /* part of ns_root_list if root res,
211                                              * part of lr_children if child */
212
213         struct list_head       lr_granted;
214         struct list_head       lr_converting;
215         struct list_head       lr_waiting;
216         ldlm_mode_t            lr_most_restr;
217         __u32                  lr_type; /* LDLM_PLAIN or LDLM_EXTENT */
218         struct ldlm_resource  *lr_root;
219         struct ldlm_res_id     lr_name;
220         __u32                  lr_version[RES_VERSION_SIZE];
221         atomic_t               lr_refcount;
222
223         /* lr_tmp holds a list head temporarily, during the building of a work
224          * queue.  see ldlm_add_ast_work_item and ldlm_run_ast_work */
225         void                  *lr_tmp;
226 };
227
228 struct ldlm_ast_work {
229         struct ldlm_lock *w_lock;
230         int               w_blocking;
231         struct ldlm_lock_desc w_desc;
232         struct list_head   w_list;
233         int w_flags;
234         void *w_data;
235         int w_datalen;
236 };
237
238 extern struct obd_ops ldlm_obd_ops;
239
240 extern char *ldlm_lockname[];
241 extern char *ldlm_typename[];
242 extern char *ldlm_it2str(int it);
243
244 #define __LDLM_DEBUG(level, lock, format, a...)                               \
245 do {                                                                          \
246         if (lock->l_resource == NULL) {                                       \
247                 CDEBUG(level, "### " format                                   \
248                        " ns: \?\? lock: %p/"LPX64" lrc: %d/%d,%d mode: %s/%s "\
249                        "res: \?\? rrc=\?\? type: \?\?\? remote: "             \
250                        LPX64"\n" , ## a, lock, lock->l_handle.h_cookie,       \
251                        atomic_read(&lock->l_refc),                            \
252                        lock->l_readers, lock->l_writers,                      \
253                        ldlm_lockname[lock->l_granted_mode],                   \
254                        ldlm_lockname[lock->l_req_mode],                       \
255                        lock->l_remote_handle.cookie);                         \
256                 break;                                                        \
257         }                                                                     \
258         if (lock->l_resource->lr_type == LDLM_EXTENT) {                       \
259                 CDEBUG(level, "### " format                                   \
260                        " ns: %s lock: %p/"LPX64" lrc: %d/%d,%d mode: %s/%s "  \
261                        "res: "LPU64"/"LPU64" rrc: %d type: %s ["LPU64"->"LPU64\
262                        "] remote: "LPX64"\n" , ## a,                          \
263                        lock->l_resource->lr_namespace->ns_name, lock,         \
264                        lock->l_handle.h_cookie, atomic_read(&lock->l_refc),   \
265                        lock->l_readers, lock->l_writers,                      \
266                        ldlm_lockname[lock->l_granted_mode],                   \
267                        ldlm_lockname[lock->l_req_mode],                       \
268                        lock->l_resource->lr_name.name[0],                     \
269                        lock->l_resource->lr_name.name[1],                     \
270                        atomic_read(&lock->l_resource->lr_refcount),           \
271                        ldlm_typename[lock->l_resource->lr_type],              \
272                        lock->l_extent.start, lock->l_extent.end,              \
273                        lock->l_remote_handle.cookie);                         \
274                 break;                                                        \
275         }                                                                     \
276         {                                                                     \
277                 CDEBUG(level, "### " format                                   \
278                        " ns: %s lock: %p/"LPX64" lrc: %d/%d,%d mode: %s/%s "  \
279                        "res: "LPU64"/"LPU64" rrc: %d type: %s remote: "LPX64  \
280                        "\n" , ## a,                                           \
281                        lock->l_resource->lr_namespace->ns_name,               \
282                        lock, lock->l_handle.h_cookie,                         \
283                        atomic_read (&lock->l_refc),                           \
284                        lock->l_readers, lock->l_writers,                      \
285                        ldlm_lockname[lock->l_granted_mode],                   \
286                        ldlm_lockname[lock->l_req_mode],                       \
287                        lock->l_resource->lr_name.name[0],                     \
288                        lock->l_resource->lr_name.name[1],                     \
289                        atomic_read(&lock->l_resource->lr_refcount),           \
290                        ldlm_typename[lock->l_resource->lr_type],              \
291                        lock->l_remote_handle.cookie);                         \
292         }                                                                     \
293 } while (0)
294
295 #define LDLM_DEBUG(lock, format, a...) __LDLM_DEBUG(D_DLMTRACE, lock, \
296                                                     format, ## a)
297 #define LDLM_ERROR(lock, format, a...) __LDLM_DEBUG(D_ERROR, lock, format, ## a)
298
299 #define LDLM_DEBUG_NOLOCK(format, a...)                 \
300         CDEBUG(D_DLMTRACE, "### " format "\n" , ## a)
301
302 /*
303  * Iterators.
304  */
305
306 #define LDLM_ITER_CONTINUE 1 /* keep iterating */
307 #define LDLM_ITER_STOP     0 /* stop iterating */
308
309 typedef int (*ldlm_iterator_t)(struct ldlm_lock *, void *);
310 typedef int (*ldlm_res_iterator_t)(struct ldlm_resource *, void *);
311
312 int ldlm_resource_foreach(struct ldlm_resource *res, ldlm_iterator_t iter,
313                           void *closure);
314 int ldlm_namespace_foreach(struct ldlm_namespace *ns, ldlm_iterator_t iter,
315                            void *closure);
316 int ldlm_namespace_foreach_res(struct ldlm_namespace *ns,
317                                ldlm_res_iterator_t iter, void *closure);
318
319 int ldlm_replay_locks(struct obd_import *imp);
320 void ldlm_change_cbdata(struct ldlm_namespace *, struct ldlm_res_id *,
321                         ldlm_iterator_t iter, void *data);
322
323 /* ldlm_extent.c */
324 int ldlm_extent_compat(struct ldlm_lock *, struct ldlm_lock *);
325 int ldlm_extent_policy(struct ldlm_namespace *, struct ldlm_lock **, void *,
326                        ldlm_mode_t, int flags, void *);
327
328 /* ldlm_lockd.c */
329 int ldlm_server_blocking_ast(struct ldlm_lock *, struct ldlm_lock_desc *,
330                              void *data, int flag);
331 int ldlm_server_completion_ast(struct ldlm_lock *lock, int flags, void *data);
332 int ldlm_handle_enqueue(struct ptlrpc_request *req, ldlm_completion_callback,
333                         ldlm_blocking_callback);
334 int ldlm_handle_convert(struct ptlrpc_request *req);
335 int ldlm_handle_cancel(struct ptlrpc_request *req);
336 int ldlm_del_waiting_lock(struct ldlm_lock *lock);
337
338 /* ldlm_lock.c */
339 void ldlm_register_intent(ldlm_res_policy arg);
340 void ldlm_unregister_intent(void);
341 void ldlm_lock2handle(struct ldlm_lock *lock, struct lustre_handle *lockh);
342 struct ldlm_lock *__ldlm_handle2lock(struct lustre_handle *, int flags);
343 void ldlm_cancel_callback(struct ldlm_lock *);
344 int ldlm_lock_set_data(struct lustre_handle *, void *data);
345 void ldlm_lock_remove_from_lru(struct ldlm_lock *);
346 struct ldlm_lock *ldlm_handle2lock_ns(struct ldlm_namespace *,
347                                       struct lustre_handle *);
348
349 static inline struct ldlm_lock *ldlm_handle2lock(struct lustre_handle *h)
350 {
351         return __ldlm_handle2lock(h, 0);
352 }
353
354 #define LDLM_LOCK_PUT(lock)                     \
355 do {                                            \
356         /*LDLM_DEBUG((lock), "put");*/          \
357         ldlm_lock_put(lock);                    \
358 } while (0)
359
360 #define LDLM_LOCK_GET(lock)                     \
361 ({                                              \
362         ldlm_lock_get(lock);                    \
363         /*LDLM_DEBUG((lock), "get");*/          \
364         lock;                                   \
365 })
366
367 struct ldlm_lock *ldlm_lock_get(struct ldlm_lock *lock);
368 void ldlm_lock_put(struct ldlm_lock *lock);
369 void ldlm_lock_destroy(struct ldlm_lock *lock);
370 void ldlm_lock2desc(struct ldlm_lock *lock, struct ldlm_lock_desc *desc);
371 void ldlm_lock_addref(struct lustre_handle *lockh, __u32 mode);
372 void ldlm_lock_addref_internal(struct ldlm_lock *, __u32 mode);
373 void ldlm_lock_decref(struct lustre_handle *lockh, __u32 mode);
374 void ldlm_lock_decref_and_cancel(struct lustre_handle *lockh, __u32 mode);
375 void ldlm_grant_lock(struct ldlm_lock *lock, void *data, int datalen);
376 int ldlm_lock_match(struct ldlm_namespace *ns, int flags, struct ldlm_res_id *,
377                     __u32 type, void *cookie, int cookielen, ldlm_mode_t mode,
378                     void *data, struct lustre_handle *);
379 struct ldlm_lock *
380 ldlm_lock_create(struct ldlm_namespace *ns,
381                  struct lustre_handle *parent_lock_handle, struct ldlm_res_id,
382                  __u32 type, ldlm_mode_t, ldlm_blocking_callback,
383                  void *data);
384 ldlm_error_t ldlm_lock_enqueue(struct ldlm_namespace *, struct ldlm_lock **,
385                                void *cookie, int cookie_len, int *flags,
386                                ldlm_completion_callback completion);
387 struct ldlm_resource *ldlm_lock_convert(struct ldlm_lock *lock, int new_mode,
388                                         int *flags);
389 void ldlm_lock_cancel(struct ldlm_lock *lock);
390 void ldlm_cancel_locks_for_export(struct obd_export *export);
391 int ldlm_run_ast_work(struct list_head *rpc_list);
392 void ldlm_reprocess_all(struct ldlm_resource *res);
393 void ldlm_reprocess_all_ns(struct ldlm_namespace *ns);
394 void ldlm_lock_dump(int level, struct ldlm_lock *lock);
395 void ldlm_lock_dump_handle(int level, struct lustre_handle *);
396
397 /* ldlm_test.c */
398 int ldlm_test(struct obd_device *device, struct lustre_handle *connh);
399 int ldlm_regression_start(struct obd_device *obddev,
400                           struct lustre_handle *connh,
401                           unsigned int threads, unsigned int max_locks_in,
402                           unsigned int num_resources_in,
403                           unsigned int num_extents_in);
404 int ldlm_regression_stop(void);
405
406
407 /* resource.c */
408 struct ldlm_namespace *ldlm_namespace_new(char *name, __u32 local);
409 int ldlm_namespace_cleanup(struct ldlm_namespace *ns, int local_only);
410 int ldlm_namespace_free(struct ldlm_namespace *ns);
411 int ldlm_proc_setup(struct obd_device *obd);
412 void ldlm_proc_cleanup(struct obd_device *obd);
413
414 /* resource.c - internal */
415 struct ldlm_resource *ldlm_resource_get(struct ldlm_namespace *ns,
416                                         struct ldlm_resource *parent,
417                                         struct ldlm_res_id, __u32 type,
418                                         int create);
419 struct ldlm_resource *ldlm_resource_getref(struct ldlm_resource *res);
420 int ldlm_resource_putref(struct ldlm_resource *res);
421 void ldlm_resource_add_lock(struct ldlm_resource *res, struct list_head *head,
422                             struct ldlm_lock *lock);
423 void ldlm_resource_unlink_lock(struct ldlm_lock *lock);
424 void ldlm_res2desc(struct ldlm_resource *res, struct ldlm_resource_desc *desc);
425 void ldlm_dump_all_namespaces(void);
426 void ldlm_namespace_dump(struct ldlm_namespace *);
427 void ldlm_resource_dump(struct ldlm_resource *);
428 int ldlm_lock_change_resource(struct ldlm_namespace *, struct ldlm_lock *,
429                               struct ldlm_res_id);
430
431 /* ldlm_request.c */
432 int ldlm_expired_completion_wait(void *data);
433 int ldlm_completion_ast(struct ldlm_lock *lock, int flags, void *data);
434 int ldlm_cli_enqueue(struct lustre_handle *conn,
435                      struct ptlrpc_request *req,
436                      struct ldlm_namespace *ns,
437                      struct lustre_handle *parent_lock_handle,
438                      struct ldlm_res_id,
439                      __u32 type,
440                      void *cookie, int cookielen,
441                      ldlm_mode_t mode,
442                      int *flags,
443                      ldlm_completion_callback completion,
444                      ldlm_blocking_callback callback,
445                      void *data,
446                      struct lustre_handle *lockh);
447 int ldlm_server_ast(struct lustre_handle *lockh, struct ldlm_lock_desc *new,
448                     void *data, __u32 data_len);
449 int ldlm_cli_convert(struct lustre_handle *, int new_mode, int *flags);
450 int ldlm_cli_cancel(struct lustre_handle *lockh);
451 int ldlm_cli_cancel_unused(struct ldlm_namespace *, struct ldlm_res_id *,
452                            int flags, void *opaque);
453
454 /* mds/handler.c */
455 /* This has to be here because recurisve inclusion sucks. */
456 int intent_disposition(struct ldlm_reply *rep, int flag);
457 void intent_set_disposition(struct ldlm_reply *rep, int flag);
458 int mds_blocking_ast(struct ldlm_lock *lock, struct ldlm_lock_desc *desc,
459                      void *data, int flag);
460
461
462 /* ioctls for trying requests */
463 #define IOC_LDLM_TYPE                   'f'
464 #define IOC_LDLM_MIN_NR                 40
465
466 #define IOC_LDLM_TEST                   _IOWR('f', 40, long)
467 #define IOC_LDLM_DUMP                   _IOWR('f', 41, long)
468 #define IOC_LDLM_REGRESS_START          _IOWR('f', 42, long)
469 #define IOC_LDLM_REGRESS_STOP           _IOWR('f', 43, long)
470 #define IOC_LDLM_MAX_NR                 43
471
472 #endif