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1 /*
2 * CDDL HEADER START
3 *
4 * The contents of this file are subject to the terms of the
5 * Common Development and Distribution License (the "License").
6 * You may not use this file except in compliance with the License.
7 *
8 * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9 * or http://www.opensolaris.org/os/licensing.
10 * See the License for the specific language governing permissions
11 * and limitations under the License.
12 *
13 * When distributing Covered Code, include this CDDL HEADER in each
14 * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15 * If applicable, add the following below this CDDL HEADER, with the
16 * fields enclosed by brackets "[]" replaced with your own identifying
17 * information: Portions Copyright [yyyy] [name of copyright owner]
18 *
19 * CDDL HEADER END
20 */
21 /*
22 * Copyright 2009 Sun Microsystems, Inc. All rights reserved.
23 * Use is subject to license terms.
24 */
25 /*
26 * Copyright 2011 Nexenta Systems, Inc. All rights reserved.
27 * Copyright (c) 2012, Joyent, Inc. All rights reserved.
28 * Copyright (c) 2012, 2014 by Delphix. All rights reserved.
29 */
30
31 #ifndef _SYS_ZFS_CONTEXT_H
32 #define _SYS_ZFS_CONTEXT_H
33
34 #ifdef __KERNEL__
35
36 #include <sys/note.h>
37 #include <sys/types.h>
38 #include <sys/t_lock.h>
39 #include <sys/atomic.h>
40 #include <sys/sysmacros.h>
41 #include <sys/bitmap.h>
42 #include <sys/cmn_err.h>
43 #include <sys/kmem.h>
44 #include <sys/taskq.h>
45 #include <sys/buf.h>
46 #include <sys/param.h>
47 #include <sys/systm.h>
48 #include <sys/cpuvar.h>
49 #include <sys/kobj.h>
50 #include <sys/conf.h>
51 #include <sys/disp.h>
52 #include <sys/debug.h>
53 #include <sys/random.h>
54 #include <sys/byteorder.h>
55 #include <sys/systm.h>
56 #include <sys/list.h>
57 #include <sys/uio_impl.h>
58 #include <sys/dirent.h>
59 #include <sys/time.h>
60 #include <vm/seg_kmem.h>
61 #include <sys/zone.h>
62 #include <sys/sdt.h>
63 #include <sys/zfs_debug.h>
64 #include <sys/zfs_delay.h>
65 #include <sys/fm/fs/zfs.h>
66 #include <sys/sunddi.h>
67 #include <sys/ctype.h>
68 #include <sys/disp.h>
69 #include <linux/dcache_compat.h>
70 #include <linux/utsname_compat.h>
71
72 #else /* _KERNEL */
73
74 #define _SYS_MUTEX_H
75 #define _SYS_RWLOCK_H
76 #define _SYS_CONDVAR_H
77 #define _SYS_SYSTM_H
78 #define _SYS_T_LOCK_H
79 #define _SYS_VNODE_H
80 #define _SYS_VFS_H
81 #define _SYS_SUNDDI_H
82 #define _SYS_CALLB_H
83
84 #include <stdio.h>
85 #include <stdlib.h>
86 #include <stddef.h>
87 #include <stdarg.h>
88 #include <fcntl.h>
89 #include <unistd.h>
90 #include <errno.h>
91 #include <string.h>
92 #include <strings.h>
93 #include <pthread.h>
94 #include <synch.h>
95 #include <assert.h>
96 #include <alloca.h>
97 #include <umem.h>
98 #include <limits.h>
99 #include <atomic.h>
100 #include <dirent.h>
101 #include <time.h>
102 #include <ctype.h>
103 #include <signal.h>
104 #include <sys/mman.h>
105 #include <sys/note.h>
106 #include <sys/types.h>
107 #include <sys/cred.h>
108 #include <sys/sysmacros.h>
109 #include <sys/bitmap.h>
110 #include <sys/resource.h>
111 #include <sys/byteorder.h>
112 #include <sys/list.h>
113 #include <sys/uio.h>
114 #include <sys/zfs_debug.h>
115 #include <sys/sdt.h>
116 #include <sys/kstat.h>
117 #include <sys/u8_textprep.h>
118 #include <sys/fm/fs/zfs.h>
119 #include <sys/sunddi.h>
120 #include <sys/debug.h>
121 #include <sys/utsname.h>
122
123 /*
124 * Stack
125 */
126
127 #define noinline __attribute__((noinline))
128
129 /*
130 * Debugging
131 */
132
133 /*
134 * Note that we are not using the debugging levels.
135 */
136
137 #define CE_CONT 0 /* continuation */
138 #define CE_NOTE 1 /* notice */
139 #define CE_WARN 2 /* warning */
140 #define CE_PANIC 3 /* panic */
141 #define CE_IGNORE 4 /* print nothing */
142
143 extern int aok;
144
145 /*
146 * ZFS debugging
147 */
148
149 extern void dprintf_setup(int *argc, char **argv);
150 extern void __dprintf(const char *file, const char *func,
151 int line, const char *fmt, ...);
152 extern void cmn_err(int, const char *, ...);
153 extern void vcmn_err(int, const char *, va_list);
154 extern void panic(const char *, ...);
155 extern void vpanic(const char *, va_list);
156
157 #define fm_panic panic
158
159 #ifdef __sun
160 /*
161 * DTrace SDT probes have different signatures in userland than they do in
162 * kernel. If they're being used in kernel code, re-define them out of
163 * existence for their counterparts in libzpool.
164 */
165
166 #ifdef DTRACE_PROBE
167 #undef DTRACE_PROBE
168 #endif /* DTRACE_PROBE */
169 #define DTRACE_PROBE(a) \
170 ZFS_PROBE0(#a)
171
172 #ifdef DTRACE_PROBE1
173 #undef DTRACE_PROBE1
174 #endif /* DTRACE_PROBE1 */
175 #define DTRACE_PROBE1(a, b, c) \
176 ZFS_PROBE1(#a, (unsigned long)c)
177
178 #ifdef DTRACE_PROBE2
179 #undef DTRACE_PROBE2
180 #endif /* DTRACE_PROBE2 */
181 #define DTRACE_PROBE2(a, b, c, d, e) \
182 ZFS_PROBE2(#a, (unsigned long)c, (unsigned long)e)
183
184 #ifdef DTRACE_PROBE3
185 #undef DTRACE_PROBE3
186 #endif /* DTRACE_PROBE3 */
187 #define DTRACE_PROBE3(a, b, c, d, e, f, g) \
188 ZFS_PROBE3(#a, (unsigned long)c, (unsigned long)e, (unsigned long)g)
189
190 #ifdef DTRACE_PROBE4
191 #undef DTRACE_PROBE4
192 #endif /* DTRACE_PROBE4 */
193 #define DTRACE_PROBE4(a, b, c, d, e, f, g, h, i) \
194 ZFS_PROBE4(#a, (unsigned long)c, (unsigned long)e, (unsigned long)g, \
195 (unsigned long)i)
196
197 /*
198 * We use the comma operator so that this macro can be used without much
199 * additional code. For example, "return (EINVAL);" becomes
200 * "return (SET_ERROR(EINVAL));". Note that the argument will be evaluated
201 * twice, so it should not have side effects (e.g. something like:
202 * "return (SET_ERROR(log_error(EINVAL, info)));" would log the error twice).
203 */
204 #define SET_ERROR(err) (ZFS_SET_ERROR(err), err)
205 #else
206 #define SET_ERROR(err) (err)
207 #endif
208
209 /*
210 * Threads. TS_STACK_MIN is dictated by the minimum allowed pthread stack
211 * size. While TS_STACK_MAX is somewhat arbitrary, it was selected to be
212 * large enough for the expected stack depth while small enough to avoid
213 * exhausting address space with high thread counts.
214 */
215 #define TS_MAGIC 0x72f158ab4261e538ull
216 #define TS_RUN 0x00000002
217 #define TS_STACK_MIN PTHREAD_STACK_MIN
218 #define TS_STACK_MAX (256 * 1024)
219
220 /* in libzpool, p0 exists only to have its address taken */
221 typedef struct proc {
222 uintptr_t this_is_never_used_dont_dereference_it;
223 } proc_t;
224
225 extern struct proc p0;
226 #define curproc (&p0)
227
228 typedef void (*thread_func_t)(void *);
229 typedef void (*thread_func_arg_t)(void *);
230 typedef pthread_t kt_did_t;
231
232 #define kpreempt(x) ((void)0)
233
234 typedef struct kthread {
235 kt_did_t t_tid;
236 thread_func_t t_func;
237 void * t_arg;
238 } kthread_t;
239
240 #define curthread zk_thread_current()
241 #define getcomm() "unknown"
242 #define thread_exit zk_thread_exit
243 #define thread_create(stk, stksize, func, arg, len, pp, state, pri) \
244 zk_thread_create(stk, stksize, (thread_func_t)func, arg, \
245 len, NULL, state, pri, PTHREAD_CREATE_DETACHED)
246 #define thread_join(t) zk_thread_join(t)
247 #define newproc(f, a, cid, pri, ctp, pid) (ENOSYS)
248
249 extern kthread_t *zk_thread_current(void);
250 extern void zk_thread_exit(void);
251 extern kthread_t *zk_thread_create(caddr_t stk, size_t stksize,
252 thread_func_t func, void *arg, size_t len,
253 proc_t *pp, int state, pri_t pri, int detachstate);
254 extern void zk_thread_join(kt_did_t tid);
255
256 #define kpreempt_disable() ((void)0)
257 #define kpreempt_enable() ((void)0)
258
259 #define PS_NONE -1
260
261 #define issig(why) (FALSE)
262 #define ISSIG(thr, why) (FALSE)
263
264 /*
265 * Mutexes
266 */
267 #define MTX_MAGIC 0x9522f51362a6e326ull
268 #define MTX_INIT ((void *)NULL)
269 #define MTX_DEST ((void *)-1UL)
270
271 typedef struct kmutex {
272 void *m_owner;
273 uint64_t m_magic;
274 pthread_mutex_t m_lock;
275 } kmutex_t;
276
277 #define MUTEX_DEFAULT 0
278 #define MUTEX_HELD(m) ((m)->m_owner == curthread)
279 #define MUTEX_NOT_HELD(m) (!MUTEX_HELD(m))
280
281 extern void mutex_init(kmutex_t *mp, char *name, int type, void *cookie);
282 extern void mutex_destroy(kmutex_t *mp);
283 extern void mutex_enter(kmutex_t *mp);
284 extern void mutex_exit(kmutex_t *mp);
285 extern int mutex_tryenter(kmutex_t *mp);
286 extern void *mutex_owner(kmutex_t *mp);
287 extern int mutex_held(kmutex_t *mp);
288
289 /*
290 * RW locks
291 */
292 #define RW_MAGIC 0x4d31fb123648e78aull
293 #define RW_INIT ((void *)NULL)
294 #define RW_DEST ((void *)-1UL)
295
296 typedef struct krwlock {
297 void *rw_owner;
298 void *rw_wr_owner;
299 uint64_t rw_magic;
300 pthread_rwlock_t rw_lock;
301 uint_t rw_readers;
302 } krwlock_t;
303
304 typedef int krw_t;
305
306 #define RW_READER 0
307 #define RW_WRITER 1
308 #define RW_DEFAULT RW_READER
309
310 #define RW_READ_HELD(x) ((x)->rw_readers > 0)
311 #define RW_WRITE_HELD(x) ((x)->rw_wr_owner == curthread)
312 #define RW_LOCK_HELD(x) (RW_READ_HELD(x) || RW_WRITE_HELD(x))
313
314 #undef RW_LOCK_HELD
315 #define RW_LOCK_HELD(x) (RW_READ_HELD(x) || RW_WRITE_HELD(x))
316
317 #undef RW_LOCK_HELD
318 #define RW_LOCK_HELD(x) (RW_READ_HELD(x) || RW_WRITE_HELD(x))
319
320 extern void rw_init(krwlock_t *rwlp, char *name, int type, void *arg);
321 extern void rw_destroy(krwlock_t *rwlp);
322 extern void rw_enter(krwlock_t *rwlp, krw_t rw);
323 extern int rw_tryenter(krwlock_t *rwlp, krw_t rw);
324 extern int rw_tryupgrade(krwlock_t *rwlp);
325 extern void rw_exit(krwlock_t *rwlp);
326 #define rw_downgrade(rwlp) do { } while (0)
327
328 extern uid_t crgetuid(cred_t *cr);
329 extern uid_t crgetruid(cred_t *cr);
330 extern gid_t crgetgid(cred_t *cr);
331 extern int crgetngroups(cred_t *cr);
332 extern gid_t *crgetgroups(cred_t *cr);
333
334 /*
335 * Condition variables
336 */
337 #define CV_MAGIC 0xd31ea9a83b1b30c4ull
338
339 typedef struct kcondvar {
340 uint64_t cv_magic;
341 pthread_cond_t cv;
342 } kcondvar_t;
343
344 #define CV_DEFAULT 0
345
346 extern void cv_init(kcondvar_t *cv, char *name, int type, void *arg);
347 extern void cv_destroy(kcondvar_t *cv);
348 extern void cv_wait(kcondvar_t *cv, kmutex_t *mp);
349 extern clock_t cv_timedwait(kcondvar_t *cv, kmutex_t *mp, clock_t abstime);
350 extern clock_t cv_timedwait_hires(kcondvar_t *cvp, kmutex_t *mp, hrtime_t tim,
351 hrtime_t res, int flag);
352 extern void cv_signal(kcondvar_t *cv);
353 extern void cv_broadcast(kcondvar_t *cv);
354 #define cv_timedwait_interruptible(cv, mp, at) cv_timedwait(cv, mp, at)
355 #define cv_wait_interruptible(cv, mp) cv_wait(cv, mp)
356 #define cv_wait_io(cv, mp) cv_wait(cv, mp)
357
358 /*
359 * Thread-specific data
360 */
361 #define tsd_get(k) pthread_getspecific(k)
362 #define tsd_set(k, v) pthread_setspecific(k, v)
363 #define tsd_create(kp, d) pthread_key_create(kp, d)
364 #define tsd_destroy(kp) /* nothing */
365
366 /*
367 * Thread-specific data
368 */
369 #define tsd_get(k) pthread_getspecific(k)
370 #define tsd_set(k, v) pthread_setspecific(k, v)
371 #define tsd_create(kp, d) pthread_key_create(kp, d)
372 #define tsd_destroy(kp) /* nothing */
373
374 /*
375 * kstat creation, installation and deletion
376 */
377 extern kstat_t *kstat_create(const char *, int,
378 const char *, const char *, uchar_t, ulong_t, uchar_t);
379 extern void kstat_install(kstat_t *);
380 extern void kstat_delete(kstat_t *);
381 extern void kstat_waitq_enter(kstat_io_t *);
382 extern void kstat_waitq_exit(kstat_io_t *);
383 extern void kstat_runq_enter(kstat_io_t *);
384 extern void kstat_runq_exit(kstat_io_t *);
385 extern void kstat_waitq_to_runq(kstat_io_t *);
386 extern void kstat_runq_back_to_waitq(kstat_io_t *);
387 extern void kstat_set_raw_ops(kstat_t *ksp,
388 int (*headers)(char *buf, size_t size),
389 int (*data)(char *buf, size_t size, void *data),
390 void *(*addr)(kstat_t *ksp, loff_t index));
391
392 /*
393 * Kernel memory
394 */
395 #define KM_SLEEP UMEM_NOFAIL
396 #define KM_PUSHPAGE KM_SLEEP
397 #define KM_NOSLEEP UMEM_DEFAULT
398 #define KM_NODEBUG 0x0
399 #define KMC_NODEBUG UMC_NODEBUG
400 #define KMC_KMEM 0x0
401 #define KMC_VMEM 0x0
402 #define kmem_alloc(_s, _f) umem_alloc(_s, _f)
403 #define kmem_zalloc(_s, _f) umem_zalloc(_s, _f)
404 #define kmem_free(_b, _s) umem_free(_b, _s)
405 #define vmem_alloc(_s, _f) kmem_alloc(_s, _f)
406 #define vmem_zalloc(_s, _f) kmem_zalloc(_s, _f)
407 #define vmem_free(_b, _s) kmem_free(_b, _s)
408 #define kmem_cache_create(_a, _b, _c, _d, _e, _f, _g, _h, _i) \
409 umem_cache_create(_a, _b, _c, _d, _e, _f, _g, _h, _i)
410 #define kmem_cache_destroy(_c) umem_cache_destroy(_c)
411 #define kmem_cache_alloc(_c, _f) umem_cache_alloc(_c, _f)
412 #define kmem_cache_free(_c, _b) umem_cache_free(_c, _b)
413 #define kmem_debugging() 0
414 #define kmem_cache_reap_now(_c) /* nothing */
415 #define kmem_cache_set_move(_c, _cb) /* nothing */
416 #define POINTER_INVALIDATE(_pp) /* nothing */
417 #define POINTER_IS_VALID(_p) 0
418
419 typedef umem_cache_t kmem_cache_t;
420
421 typedef enum kmem_cbrc {
422 KMEM_CBRC_YES,
423 KMEM_CBRC_NO,
424 KMEM_CBRC_LATER,
425 KMEM_CBRC_DONT_NEED,
426 KMEM_CBRC_DONT_KNOW
427 } kmem_cbrc_t;
428
429 /*
430 * Task queues
431 */
432 typedef struct taskq taskq_t;
433 typedef uintptr_t taskqid_t;
434 typedef void (task_func_t)(void *);
435
436 typedef struct taskq_ent {
437 struct taskq_ent *tqent_next;
438 struct taskq_ent *tqent_prev;
439 task_func_t *tqent_func;
440 void *tqent_arg;
441 uintptr_t tqent_flags;
442 } taskq_ent_t;
443
444 #define TQENT_FLAG_PREALLOC 0x1 /* taskq_dispatch_ent used */
445
446 #define TASKQ_PREPOPULATE 0x0001
447 #define TASKQ_CPR_SAFE 0x0002 /* Use CPR safe protocol */
448 #define TASKQ_DYNAMIC 0x0004 /* Use dynamic thread scheduling */
449 #define TASKQ_THREADS_CPU_PCT 0x0008 /* Scale # threads by # cpus */
450 #define TASKQ_DC_BATCH 0x0010 /* Mark threads as batch */
451
452 #define TQ_SLEEP KM_SLEEP /* Can block for memory */
453 #define TQ_NOSLEEP KM_NOSLEEP /* cannot block for memory; may fail */
454 #define TQ_PUSHPAGE KM_PUSHPAGE /* Cannot perform I/O */
455 #define TQ_NOQUEUE 0x02 /* Do not enqueue if can't dispatch */
456 #define TQ_FRONT 0x08 /* Queue in front */
457
458 extern taskq_t *system_taskq;
459
460 extern taskq_t *taskq_create(const char *, int, pri_t, int, int, uint_t);
461 #define taskq_create_proc(a, b, c, d, e, p, f) \
462 (taskq_create(a, b, c, d, e, f))
463 #define taskq_create_sysdc(a, b, d, e, p, dc, f) \
464 (taskq_create(a, b, maxclsyspri, d, e, f))
465 extern taskqid_t taskq_dispatch(taskq_t *, task_func_t, void *, uint_t);
466 extern taskqid_t taskq_dispatch_delay(taskq_t *, task_func_t, void *, uint_t,
467 clock_t);
468 extern void taskq_dispatch_ent(taskq_t *, task_func_t, void *, uint_t,
469 taskq_ent_t *);
470 extern int taskq_empty_ent(taskq_ent_t *);
471 extern void taskq_init_ent(taskq_ent_t *);
472 extern void taskq_destroy(taskq_t *);
473 extern void taskq_wait(taskq_t *);
474 extern void taskq_wait_id(taskq_t *, taskqid_t);
475 extern int taskq_member(taskq_t *, kthread_t *);
476 extern int taskq_cancel_id(taskq_t *, taskqid_t);
477 extern void system_taskq_init(void);
478 extern void system_taskq_fini(void);
479
480 #define XVA_MAPSIZE 3
481 #define XVA_MAGIC 0x78766174
482
483 /*
484 * vnodes
485 */
486 typedef struct vnode {
487 uint64_t v_size;
488 int v_fd;
489 char *v_path;
490 } vnode_t;
491
492 #define AV_SCANSTAMP_SZ 32 /* length of anti-virus scanstamp */
493
494 typedef struct xoptattr {
495 timestruc_t xoa_createtime; /* Create time of file */
496 uint8_t xoa_archive;
497 uint8_t xoa_system;
498 uint8_t xoa_readonly;
499 uint8_t xoa_hidden;
500 uint8_t xoa_nounlink;
501 uint8_t xoa_immutable;
502 uint8_t xoa_appendonly;
503 uint8_t xoa_nodump;
504 uint8_t xoa_settable;
505 uint8_t xoa_opaque;
506 uint8_t xoa_av_quarantined;
507 uint8_t xoa_av_modified;
508 uint8_t xoa_av_scanstamp[AV_SCANSTAMP_SZ];
509 uint8_t xoa_reparse;
510 uint8_t xoa_offline;
511 uint8_t xoa_sparse;
512 } xoptattr_t;
513
514 typedef struct vattr {
515 uint_t va_mask; /* bit-mask of attributes */
516 u_offset_t va_size; /* file size in bytes */
517 } vattr_t;
518
519
520 typedef struct xvattr {
521 vattr_t xva_vattr; /* Embedded vattr structure */
522 uint32_t xva_magic; /* Magic Number */
523 uint32_t xva_mapsize; /* Size of attr bitmap (32-bit words) */
524 uint32_t *xva_rtnattrmapp; /* Ptr to xva_rtnattrmap[] */
525 uint32_t xva_reqattrmap[XVA_MAPSIZE]; /* Requested attrs */
526 uint32_t xva_rtnattrmap[XVA_MAPSIZE]; /* Returned attrs */
527 xoptattr_t xva_xoptattrs; /* Optional attributes */
528 } xvattr_t;
529
530 typedef struct vsecattr {
531 uint_t vsa_mask; /* See below */
532 int vsa_aclcnt; /* ACL entry count */
533 void *vsa_aclentp; /* pointer to ACL entries */
534 int vsa_dfaclcnt; /* default ACL entry count */
535 void *vsa_dfaclentp; /* pointer to default ACL entries */
536 size_t vsa_aclentsz; /* ACE size in bytes of vsa_aclentp */
537 } vsecattr_t;
538
539 #define AT_TYPE 0x00001
540 #define AT_MODE 0x00002
541 #define AT_UID 0x00004
542 #define AT_GID 0x00008
543 #define AT_FSID 0x00010
544 #define AT_NODEID 0x00020
545 #define AT_NLINK 0x00040
546 #define AT_SIZE 0x00080
547 #define AT_ATIME 0x00100
548 #define AT_MTIME 0x00200
549 #define AT_CTIME 0x00400
550 #define AT_RDEV 0x00800
551 #define AT_BLKSIZE 0x01000
552 #define AT_NBLOCKS 0x02000
553 #define AT_SEQ 0x08000
554 #define AT_XVATTR 0x10000
555
556 #define CRCREAT 0
557
558 extern int fop_getattr(vnode_t *vp, vattr_t *vap);
559
560 #define VOP_CLOSE(vp, f, c, o, cr, ct) vn_close(vp)
561 #define VOP_PUTPAGE(vp, of, sz, fl, cr, ct) 0
562 #define VOP_GETATTR(vp, vap, fl, cr, ct) fop_getattr((vp), (vap));
563
564 #define VOP_FSYNC(vp, f, cr, ct) fsync((vp)->v_fd)
565
566 #define VN_RELE(vp) vn_close(vp)
567
568 extern int vn_open(char *path, int x1, int oflags, int mode, vnode_t **vpp,
569 int x2, int x3);
570 extern int vn_openat(char *path, int x1, int oflags, int mode, vnode_t **vpp,
571 int x2, int x3, vnode_t *vp, int fd);
572 extern int vn_rdwr(int uio, vnode_t *vp, void *addr, ssize_t len,
573 offset_t offset, int x1, int x2, rlim64_t x3, void *x4, ssize_t *residp);
574 extern void vn_close(vnode_t *vp);
575
576 #define vn_remove(path, x1, x2) remove(path)
577 #define vn_rename(from, to, seg) rename((from), (to))
578 #define vn_is_readonly(vp) B_FALSE
579
580 extern vnode_t *rootdir;
581
582 #include <sys/file.h> /* for FREAD, FWRITE, etc */
583
584 /*
585 * Random stuff
586 */
587 #define ddi_get_lbolt() (gethrtime() >> 23)
588 #define ddi_get_lbolt64() (gethrtime() >> 23)
589 #define hz 119 /* frequency when using gethrtime() >> 23 for lbolt */
590
591 #define ddi_time_before(a, b) (a < b)
592 #define ddi_time_after(a, b) ddi_time_before(b, a)
593 #define ddi_time_before_eq(a, b) (!ddi_time_after(a, b))
594 #define ddi_time_after_eq(a, b) ddi_time_before_eq(b, a)
595
596 #define ddi_time_before64(a, b) (a < b)
597 #define ddi_time_after64(a, b) ddi_time_before64(b, a)
598 #define ddi_time_before_eq64(a, b) (!ddi_time_after64(a, b))
599 #define ddi_time_after_eq64(a, b) ddi_time_before_eq64(b, a)
600
601 extern void delay(clock_t ticks);
602
603 #define SEC_TO_TICK(sec) ((sec) * hz)
604 #define MSEC_TO_TICK(msec) ((msec) / (MILLISEC / hz))
605 #define USEC_TO_TICK(usec) ((usec) / (MICROSEC / hz))
606 #define NSEC_TO_TICK(usec) ((usec) / (NANOSEC / hz))
607
608 #define gethrestime_sec() time(NULL)
609 #define gethrestime(t) \
610 do {\
611 (t)->tv_sec = gethrestime_sec();\
612 (t)->tv_nsec = 0;\
613 } while (0);
614
615 #define max_ncpus 64
616
617 #define minclsyspri 60
618 #define maxclsyspri 99
619
620 #define CPU_SEQID (pthread_self() & (max_ncpus - 1))
621
622 #define kcred NULL
623 #define CRED() NULL
624
625 #define ptob(x) ((x) * PAGESIZE)
626
627 extern uint64_t physmem;
628
629 extern int highbit64(uint64_t i);
630 extern int random_get_bytes(uint8_t *ptr, size_t len);
631 extern int random_get_pseudo_bytes(uint8_t *ptr, size_t len);
632
633 extern void kernel_init(int);
634 extern void kernel_fini(void);
635
636 struct spa;
637 extern void nicenum(uint64_t num, char *buf);
638 extern void show_pool_stats(struct spa *);
639
640 typedef struct callb_cpr {
641 kmutex_t *cc_lockp;
642 } callb_cpr_t;
643
644 #define CALLB_CPR_INIT(cp, lockp, func, name) { \
645 (cp)->cc_lockp = lockp; \
646 }
647
648 #define CALLB_CPR_SAFE_BEGIN(cp) { \
649 ASSERT(MUTEX_HELD((cp)->cc_lockp)); \
650 }
651
652 #define CALLB_CPR_SAFE_END(cp, lockp) { \
653 ASSERT(MUTEX_HELD((cp)->cc_lockp)); \
654 }
655
656 #define CALLB_CPR_EXIT(cp) { \
657 ASSERT(MUTEX_HELD((cp)->cc_lockp)); \
658 mutex_exit((cp)->cc_lockp); \
659 }
660
661 #define zone_dataset_visible(x, y) (1)
662 #define INGLOBALZONE(z) (1)
663
664 extern char *kmem_vasprintf(const char *fmt, va_list adx);
665 extern char *kmem_asprintf(const char *fmt, ...);
666 #define strfree(str) kmem_free((str), strlen(str) + 1)
667
668 /*
669 * Hostname information
670 */
671 extern char hw_serial[]; /* for userland-emulated hostid access */
672 extern int ddi_strtoul(const char *str, char **nptr, int base,
673 unsigned long *result);
674
675 extern int ddi_strtoull(const char *str, char **nptr, int base,
676 u_longlong_t *result);
677
678 typedef struct utsname utsname_t;
679 extern utsname_t *utsname(void);
680
681 /* ZFS Boot Related stuff. */
682
683 struct _buf {
684 intptr_t _fd;
685 };
686
687 struct bootstat {
688 uint64_t st_size;
689 };
690
691 typedef struct ace_object {
692 uid_t a_who;
693 uint32_t a_access_mask;
694 uint16_t a_flags;
695 uint16_t a_type;
696 uint8_t a_obj_type[16];
697 uint8_t a_inherit_obj_type[16];
698 } ace_object_t;
699
700
701 #define ACE_ACCESS_ALLOWED_OBJECT_ACE_TYPE 0x05
702 #define ACE_ACCESS_DENIED_OBJECT_ACE_TYPE 0x06
703 #define ACE_SYSTEM_AUDIT_OBJECT_ACE_TYPE 0x07
704 #define ACE_SYSTEM_ALARM_OBJECT_ACE_TYPE 0x08
705
706 extern struct _buf *kobj_open_file(char *name);
707 extern int kobj_read_file(struct _buf *file, char *buf, unsigned size,
708 unsigned off);
709 extern void kobj_close_file(struct _buf *file);
710 extern int kobj_get_filesize(struct _buf *file, uint64_t *size);
711 extern int zfs_secpolicy_snapshot_perms(const char *name, cred_t *cr);
712 extern int zfs_secpolicy_rename_perms(const char *from, const char *to,
713 cred_t *cr);
714 extern int zfs_secpolicy_destroy_perms(const char *name, cred_t *cr);
715 extern zoneid_t getzoneid(void);
716
717 /* SID stuff */
718 typedef struct ksiddomain {
719 uint_t kd_ref;
720 uint_t kd_len;
721 char *kd_name;
722 } ksiddomain_t;
723
724 ksiddomain_t *ksid_lookupdomain(const char *);
725 void ksiddomain_rele(ksiddomain_t *);
726
727 #define DDI_SLEEP KM_SLEEP
728 #define ddi_log_sysevent(_a, _b, _c, _d, _e, _f, _g) \
729 sysevent_post_event(_c, _d, _b, "libzpool", _e, _f)
730
731 #define zfs_sleep_until(wakeup) \
732 do { \
733 hrtime_t delta = wakeup - gethrtime(); \
734 struct timespec ts; \
735 ts.tv_sec = delta / NANOSEC; \
736 ts.tv_nsec = delta % NANOSEC; \
737 (void) nanosleep(&ts, NULL); \
738 } while (0)
739
740 #endif /* _KERNEL */
741
742 #endif /* _SYS_ZFS_CONTEXT_H */