xref: /illumos-gate/usr/src/uts/common/fs/zfs/sys/dmu.h (revision 416e0cd82df71e380f21199abde8c5f7a18bac51)
1fa9e4066Sahrens /*
2fa9e4066Sahrens  * CDDL HEADER START
3fa9e4066Sahrens  *
4fa9e4066Sahrens  * The contents of this file are subject to the terms of the
5ea8dc4b6Seschrock  * Common Development and Distribution License (the "License").
6ea8dc4b6Seschrock  * You may not use this file except in compliance with the License.
7fa9e4066Sahrens  *
8fa9e4066Sahrens  * You can obtain a copy of the license at usr/src/OPENSOLARIS.LICENSE
9fa9e4066Sahrens  * or http://www.opensolaris.org/os/licensing.
10fa9e4066Sahrens  * See the License for the specific language governing permissions
11fa9e4066Sahrens  * and limitations under the License.
12fa9e4066Sahrens  *
13fa9e4066Sahrens  * When distributing Covered Code, include this CDDL HEADER in each
14fa9e4066Sahrens  * file and include the License file at usr/src/OPENSOLARIS.LICENSE.
15fa9e4066Sahrens  * If applicable, add the following below this CDDL HEADER, with the
16fa9e4066Sahrens  * fields enclosed by brackets "[]" replaced with your own identifying
17fa9e4066Sahrens  * information: Portions Copyright [yyyy] [name of copyright owner]
18fa9e4066Sahrens  *
19fa9e4066Sahrens  * CDDL HEADER END
20fa9e4066Sahrens  */
21fa9e4066Sahrens /*
227f7322feSeschrock  * Copyright 2006 Sun Microsystems, Inc.  All rights reserved.
23fa9e4066Sahrens  * Use is subject to license terms.
24fa9e4066Sahrens  */
25fa9e4066Sahrens 
26fa9e4066Sahrens #ifndef	_SYS_DMU_H
27fa9e4066Sahrens #define	_SYS_DMU_H
28fa9e4066Sahrens 
29fa9e4066Sahrens #pragma ident	"%Z%%M%	%I%	%E% SMI"
30fa9e4066Sahrens 
31fa9e4066Sahrens /*
32fa9e4066Sahrens  * This file describes the interface that the DMU provides for its
33fa9e4066Sahrens  * consumers.
34fa9e4066Sahrens  *
35fa9e4066Sahrens  * The DMU also interacts with the SPA.  That interface is described in
36fa9e4066Sahrens  * dmu_spa.h.
37fa9e4066Sahrens  */
38fa9e4066Sahrens 
39fa9e4066Sahrens #include <sys/inttypes.h>
40fa9e4066Sahrens #include <sys/types.h>
41fa9e4066Sahrens #include <sys/param.h>
42fa9e4066Sahrens 
43fa9e4066Sahrens #ifdef	__cplusplus
44fa9e4066Sahrens extern "C" {
45fa9e4066Sahrens #endif
46fa9e4066Sahrens 
47fa9e4066Sahrens struct uio;
4844eda4d7Smaybee struct page;
49fa9e4066Sahrens struct vnode;
50fa9e4066Sahrens struct spa;
51fa9e4066Sahrens struct zilog;
52fa9e4066Sahrens struct zio;
53fa9e4066Sahrens struct blkptr;
54fa9e4066Sahrens struct zap_cursor;
55fa9e4066Sahrens struct dsl_dataset;
56fa9e4066Sahrens struct dsl_pool;
57fa9e4066Sahrens struct dnode;
58fa9e4066Sahrens struct drr_begin;
59fa9e4066Sahrens struct drr_end;
6044cd46caSbillm struct zbookmark;
6144cd46caSbillm struct spa;
62a2eea2e1Sahrens struct nvlist;
63fa9e4066Sahrens 
64fa9e4066Sahrens typedef struct objset objset_t;
65fa9e4066Sahrens typedef struct dmu_tx dmu_tx_t;
66fa9e4066Sahrens typedef struct dsl_dir dsl_dir_t;
67fa9e4066Sahrens 
68fa9e4066Sahrens typedef enum dmu_object_type {
69fa9e4066Sahrens 	DMU_OT_NONE,
70fa9e4066Sahrens 	/* general: */
71fa9e4066Sahrens 	DMU_OT_OBJECT_DIRECTORY,	/* ZAP */
72fa9e4066Sahrens 	DMU_OT_OBJECT_ARRAY,		/* UINT64 */
73fa9e4066Sahrens 	DMU_OT_PACKED_NVLIST,		/* UINT8 (XDR by nvlist_pack/unpack) */
74fa9e4066Sahrens 	DMU_OT_PACKED_NVLIST_SIZE,	/* UINT64 */
75fa9e4066Sahrens 	DMU_OT_BPLIST,			/* UINT64 */
76fa9e4066Sahrens 	DMU_OT_BPLIST_HDR,		/* UINT64 */
77fa9e4066Sahrens 	/* spa: */
78fa9e4066Sahrens 	DMU_OT_SPACE_MAP_HEADER,	/* UINT64 */
79fa9e4066Sahrens 	DMU_OT_SPACE_MAP,		/* UINT64 */
80fa9e4066Sahrens 	/* zil: */
81fa9e4066Sahrens 	DMU_OT_INTENT_LOG,		/* UINT64 */
82fa9e4066Sahrens 	/* dmu: */
83fa9e4066Sahrens 	DMU_OT_DNODE,			/* DNODE */
84fa9e4066Sahrens 	DMU_OT_OBJSET,			/* OBJSET */
85fa9e4066Sahrens 	/* dsl: */
861649cd4bStabriz 	DMU_OT_DSL_DIR,			/* UINT64 */
8787e5029aSahrens 	DMU_OT_DSL_DIR_CHILD_MAP,	/* ZAP */
8887e5029aSahrens 	DMU_OT_DSL_DS_SNAP_MAP,		/* ZAP */
89fa9e4066Sahrens 	DMU_OT_DSL_PROPS,		/* ZAP */
901649cd4bStabriz 	DMU_OT_DSL_DATASET,		/* UINT64 */
91fa9e4066Sahrens 	/* zpl: */
92fa9e4066Sahrens 	DMU_OT_ZNODE,			/* ZNODE */
93fa9e4066Sahrens 	DMU_OT_ACL,			/* ACL */
94fa9e4066Sahrens 	DMU_OT_PLAIN_FILE_CONTENTS,	/* UINT8 */
95fa9e4066Sahrens 	DMU_OT_DIRECTORY_CONTENTS,	/* ZAP */
96fa9e4066Sahrens 	DMU_OT_MASTER_NODE,		/* ZAP */
97fa9e4066Sahrens 	DMU_OT_DELETE_QUEUE,		/* ZAP */
98fa9e4066Sahrens 	/* zvol: */
99fa9e4066Sahrens 	DMU_OT_ZVOL,			/* UINT8 */
100fa9e4066Sahrens 	DMU_OT_ZVOL_PROP,		/* ZAP */
101fa9e4066Sahrens 	/* other; for testing only! */
102fa9e4066Sahrens 	DMU_OT_PLAIN_OTHER,		/* UINT8 */
103fa9e4066Sahrens 	DMU_OT_UINT64_OTHER,		/* UINT64 */
104fa9e4066Sahrens 	DMU_OT_ZAP_OTHER,		/* ZAP */
105ea8dc4b6Seschrock 	/* new object types: */
106ea8dc4b6Seschrock 	DMU_OT_ERROR_LOG,		/* ZAP */
10706eeb2adSek 	DMU_OT_SPA_HISTORY,		/* UINT8 */
10806eeb2adSek 	DMU_OT_SPA_HISTORY_OFFSETS,	/* spa_his_phys_t */
109fa9e4066Sahrens 
110fa9e4066Sahrens 	DMU_OT_NUMTYPES
111fa9e4066Sahrens } dmu_object_type_t;
112fa9e4066Sahrens 
113fa9e4066Sahrens typedef enum dmu_objset_type {
114fa9e4066Sahrens 	DMU_OST_NONE,
115fa9e4066Sahrens 	DMU_OST_META,
116fa9e4066Sahrens 	DMU_OST_ZFS,
117fa9e4066Sahrens 	DMU_OST_ZVOL,
118fa9e4066Sahrens 	DMU_OST_OTHER,			/* For testing only! */
119fa9e4066Sahrens 	DMU_OST_ANY,			/* Be careful! */
120fa9e4066Sahrens 	DMU_OST_NUMTYPES
121fa9e4066Sahrens } dmu_objset_type_t;
122fa9e4066Sahrens 
123fa9e4066Sahrens void byteswap_uint64_array(void *buf, size_t size);
124fa9e4066Sahrens void byteswap_uint32_array(void *buf, size_t size);
125fa9e4066Sahrens void byteswap_uint16_array(void *buf, size_t size);
126fa9e4066Sahrens void byteswap_uint8_array(void *buf, size_t size);
127fa9e4066Sahrens void zap_byteswap(void *buf, size_t size);
128fa9e4066Sahrens void zfs_acl_byteswap(void *buf, size_t size);
129fa9e4066Sahrens void zfs_znode_byteswap(void *buf, size_t size);
130fa9e4066Sahrens 
131fa9e4066Sahrens #define	DS_MODE_NONE		0	/* invalid, to aid debugging */
132fa9e4066Sahrens #define	DS_MODE_STANDARD	1	/* normal access, no special needs */
133fa9e4066Sahrens #define	DS_MODE_PRIMARY		2	/* the "main" access, e.g. a mount */
134fa9e4066Sahrens #define	DS_MODE_EXCLUSIVE	3	/* exclusive access, e.g. to destroy */
135fa9e4066Sahrens #define	DS_MODE_LEVELS		4
136fa9e4066Sahrens #define	DS_MODE_LEVEL(x)	((x) & (DS_MODE_LEVELS - 1))
137fa9e4066Sahrens #define	DS_MODE_READONLY	0x8
138fa9e4066Sahrens #define	DS_MODE_IS_READONLY(x)	((x) & DS_MODE_READONLY)
139e1930233Sbonwick #define	DS_MODE_INCONSISTENT	0x10
140e1930233Sbonwick #define	DS_MODE_IS_INCONSISTENT(x)	((x) & DS_MODE_INCONSISTENT)
141fa9e4066Sahrens 
1420b69c2f0Sahrens #define	DS_FIND_SNAPSHOTS	(1<<0)
1430b69c2f0Sahrens #define	DS_FIND_CHILDREN	(1<<1)
144fa9e4066Sahrens 
145fa9e4066Sahrens /*
146fa9e4066Sahrens  * The maximum number of bytes that can be accessed as part of one
147fa9e4066Sahrens  * operation, including metadata.
148fa9e4066Sahrens  */
149fa9e4066Sahrens #define	DMU_MAX_ACCESS (10<<20) /* 10MB */
150fa9e4066Sahrens 
151fa9e4066Sahrens /*
152fa9e4066Sahrens  * Public routines to create, destroy, open, and close objsets.
153fa9e4066Sahrens  */
154fa9e4066Sahrens int dmu_objset_open(const char *name, dmu_objset_type_t type, int mode,
155fa9e4066Sahrens     objset_t **osp);
156fa9e4066Sahrens void dmu_objset_close(objset_t *os);
157436b2950Sperrin int dmu_objset_evict_dbufs(objset_t *os, int try);
158fa9e4066Sahrens int dmu_objset_create(const char *name, dmu_objset_type_t type,
159fa9e4066Sahrens     objset_t *clone_parent,
160fa9e4066Sahrens     void (*func)(objset_t *os, void *arg, dmu_tx_t *tx), void *arg);
161fa9e4066Sahrens int dmu_objset_destroy(const char *name);
1621d452cf5Sahrens int dmu_snapshots_destroy(char *fsname, char *snapname);
163fa9e4066Sahrens int dmu_objset_rollback(const char *name);
1641d452cf5Sahrens int dmu_objset_snapshot(char *fsname, char *snapname, boolean_t recursive);
165fa9e4066Sahrens int dmu_objset_rename(const char *name, const char *newname);
1661d452cf5Sahrens int dmu_objset_find(char *name, int func(char *, void *), void *arg,
167fa9e4066Sahrens     int flags);
168fa9e4066Sahrens void dmu_objset_byteswap(void *buf, size_t size);
169fa9e4066Sahrens 
170fa9e4066Sahrens typedef struct dmu_buf {
171fa9e4066Sahrens 	uint64_t db_object;		/* object that this buffer is part of */
172fa9e4066Sahrens 	uint64_t db_offset;		/* byte offset in this object */
173fa9e4066Sahrens 	uint64_t db_size;		/* size of buffer in bytes */
174fa9e4066Sahrens 	void *db_data;			/* data in buffer */
175fa9e4066Sahrens } dmu_buf_t;
176fa9e4066Sahrens 
177fa9e4066Sahrens typedef void dmu_buf_evict_func_t(struct dmu_buf *db, void *user_ptr);
178fa9e4066Sahrens 
179fa9e4066Sahrens /*
180fa9e4066Sahrens  * Callback function to perform byte swapping on a block.
181fa9e4066Sahrens  */
182fa9e4066Sahrens typedef void dmu_byteswap_func_t(void *buf, size_t size);
183fa9e4066Sahrens 
18499653d4eSeschrock /*
18599653d4eSeschrock  * The names of zap entries in the DIRECTORY_OBJECT of the MOS.
18699653d4eSeschrock  */
187fa9e4066Sahrens #define	DMU_POOL_DIRECTORY_OBJECT	1
188fa9e4066Sahrens #define	DMU_POOL_CONFIG			"config"
189fa9e4066Sahrens #define	DMU_POOL_ROOT_DATASET		"root_dataset"
190fa9e4066Sahrens #define	DMU_POOL_SYNC_BPLIST		"sync_bplist"
191ea8dc4b6Seschrock #define	DMU_POOL_ERRLOG_SCRUB		"errlog_scrub"
192ea8dc4b6Seschrock #define	DMU_POOL_ERRLOG_LAST		"errlog_last"
19399653d4eSeschrock #define	DMU_POOL_SPARES			"spares"
19499653d4eSeschrock #define	DMU_POOL_DEFLATE		"deflate"
19506eeb2adSek #define	DMU_POOL_HISTORY		"history"
196fa9e4066Sahrens 
197fa9e4066Sahrens /*
198fa9e4066Sahrens  * Allocate an object from this objset.  The range of object numbers
199fa9e4066Sahrens  * available is (0, DN_MAX_OBJECT).  Object 0 is the meta-dnode.
200fa9e4066Sahrens  *
201fa9e4066Sahrens  * The transaction must be assigned to a txg.  The newly allocated
202fa9e4066Sahrens  * object will be "held" in the transaction (ie. you can modify the
203fa9e4066Sahrens  * newly allocated object in this transaction).
204fa9e4066Sahrens  *
205fa9e4066Sahrens  * dmu_object_alloc() chooses an object and returns it in *objectp.
206fa9e4066Sahrens  *
207fa9e4066Sahrens  * dmu_object_claim() allocates a specific object number.  If that
208fa9e4066Sahrens  * number is already allocated, it fails and returns EEXIST.
209fa9e4066Sahrens  *
210fa9e4066Sahrens  * Return 0 on success, or ENOSPC or EEXIST as specified above.
211fa9e4066Sahrens  */
212fa9e4066Sahrens uint64_t dmu_object_alloc(objset_t *os, dmu_object_type_t ot,
213fa9e4066Sahrens     int blocksize, dmu_object_type_t bonus_type, int bonus_len, dmu_tx_t *tx);
214fa9e4066Sahrens int dmu_object_claim(objset_t *os, uint64_t object, dmu_object_type_t ot,
215fa9e4066Sahrens     int blocksize, dmu_object_type_t bonus_type, int bonus_len, dmu_tx_t *tx);
216fa9e4066Sahrens int dmu_object_reclaim(objset_t *os, uint64_t object, dmu_object_type_t ot,
217fa9e4066Sahrens     int blocksize, dmu_object_type_t bonustype, int bonuslen, dmu_tx_t *tx);
218fa9e4066Sahrens 
219fa9e4066Sahrens /*
220fa9e4066Sahrens  * Free an object from this objset.
221fa9e4066Sahrens  *
222fa9e4066Sahrens  * The object's data will be freed as well (ie. you don't need to call
223fa9e4066Sahrens  * dmu_free(object, 0, -1, tx)).
224fa9e4066Sahrens  *
225fa9e4066Sahrens  * The object need not be held in the transaction.
226fa9e4066Sahrens  *
227fa9e4066Sahrens  * If there are any holds on this object's buffers (via dmu_buf_hold()),
228fa9e4066Sahrens  * or tx holds on the object (via dmu_tx_hold_object()), you can not
229fa9e4066Sahrens  * free it; it fails and returns EBUSY.
230fa9e4066Sahrens  *
231fa9e4066Sahrens  * If the object is not allocated, it fails and returns ENOENT.
232fa9e4066Sahrens  *
233fa9e4066Sahrens  * Return 0 on success, or EBUSY or ENOENT as specified above.
234fa9e4066Sahrens  */
235fa9e4066Sahrens int dmu_object_free(objset_t *os, uint64_t object, dmu_tx_t *tx);
236fa9e4066Sahrens 
237fa9e4066Sahrens /*
238fa9e4066Sahrens  * Find the next allocated or free object.
239fa9e4066Sahrens  *
240fa9e4066Sahrens  * The objectp parameter is in-out.  It will be updated to be the next
241fa9e4066Sahrens  * object which is allocated.
242fa9e4066Sahrens  *
243fa9e4066Sahrens  * XXX Can only be called on a objset with no dirty data.
244fa9e4066Sahrens  *
245fa9e4066Sahrens  * Returns 0 on success, or ENOENT if there are no more objects.
246fa9e4066Sahrens  */
247fa9e4066Sahrens int dmu_object_next(objset_t *os, uint64_t *objectp, boolean_t hole);
248fa9e4066Sahrens 
249fa9e4066Sahrens /*
250fa9e4066Sahrens  * Set the data blocksize for an object.
251fa9e4066Sahrens  *
252fa9e4066Sahrens  * The object cannot have any blocks allcated beyond the first.  If
253fa9e4066Sahrens  * the first block is allocated already, the new size must be greater
254fa9e4066Sahrens  * than the current block size.  If these conditions are not met,
255fa9e4066Sahrens  * ENOTSUP will be returned.
256fa9e4066Sahrens  *
257fa9e4066Sahrens  * Returns 0 on success, or EBUSY if there are any holds on the object
258fa9e4066Sahrens  * contents, or ENOTSUP as described above.
259fa9e4066Sahrens  */
260fa9e4066Sahrens int dmu_object_set_blocksize(objset_t *os, uint64_t object, uint64_t size,
261fa9e4066Sahrens     int ibs, dmu_tx_t *tx);
262fa9e4066Sahrens 
263fa9e4066Sahrens /*
264fa9e4066Sahrens  * Set the checksum property on a dnode.  The new checksum algorithm will
265fa9e4066Sahrens  * apply to all newly written blocks; existing blocks will not be affected.
266fa9e4066Sahrens  */
267fa9e4066Sahrens void dmu_object_set_checksum(objset_t *os, uint64_t object, uint8_t checksum,
268fa9e4066Sahrens     dmu_tx_t *tx);
269fa9e4066Sahrens 
270fa9e4066Sahrens /*
271fa9e4066Sahrens  * Set the compress property on a dnode.  The new compression algorithm will
272fa9e4066Sahrens  * apply to all newly written blocks; existing blocks will not be affected.
273fa9e4066Sahrens  */
274fa9e4066Sahrens void dmu_object_set_compress(objset_t *os, uint64_t object, uint8_t compress,
275fa9e4066Sahrens     dmu_tx_t *tx);
276fa9e4066Sahrens 
27744cd46caSbillm /*
27844cd46caSbillm  * Decide how many copies of a given block we should make.  Can be from
27944cd46caSbillm  * 1 to SPA_DVAS_PER_BP.
28044cd46caSbillm  */
28144cd46caSbillm int dmu_get_replication_level(struct spa *spa, struct zbookmark *zb,
28244cd46caSbillm     dmu_object_type_t ot);
283fa9e4066Sahrens /*
284fa9e4066Sahrens  * The bonus data is accessed more or less like a regular buffer.
285fa9e4066Sahrens  * You must dmu_bonus_hold() to get the buffer, which will give you a
286fa9e4066Sahrens  * dmu_buf_t with db_offset==-1ULL, and db_size = the size of the bonus
287fa9e4066Sahrens  * data.  As with any normal buffer, you must call dmu_buf_read() to
288fa9e4066Sahrens  * read db_data, dmu_buf_will_dirty() before modifying it, and the
289fa9e4066Sahrens  * object must be held in an assigned transaction before calling
290fa9e4066Sahrens  * dmu_buf_will_dirty.  You may use dmu_buf_set_user() on the bonus
291fa9e4066Sahrens  * buffer as well.  You must release your hold with dmu_buf_rele().
292fa9e4066Sahrens  */
293ea8dc4b6Seschrock int dmu_bonus_hold(objset_t *os, uint64_t object, void *tag, dmu_buf_t **);
294fa9e4066Sahrens int dmu_bonus_max(void);
295fa9e4066Sahrens 
296fa9e4066Sahrens /*
297fa9e4066Sahrens  * Obtain the DMU buffer from the specified object which contains the
298fa9e4066Sahrens  * specified offset.  dmu_buf_hold() puts a "hold" on the buffer, so
299fa9e4066Sahrens  * that it will remain in memory.  You must release the hold with
300fa9e4066Sahrens  * dmu_buf_rele().  You musn't access the dmu_buf_t after releasing your
301fa9e4066Sahrens  * hold.  You must have a hold on any dmu_buf_t* you pass to the DMU.
302fa9e4066Sahrens  *
303fa9e4066Sahrens  * You must call dmu_buf_read, dmu_buf_will_dirty, or dmu_buf_will_fill
304fa9e4066Sahrens  * on the returned buffer before reading or writing the buffer's
305fa9e4066Sahrens  * db_data.  The comments for those routines describe what particular
306fa9e4066Sahrens  * operations are valid after calling them.
307fa9e4066Sahrens  *
308fa9e4066Sahrens  * The object number must be a valid, allocated object number.
309fa9e4066Sahrens  */
310ea8dc4b6Seschrock int dmu_buf_hold(objset_t *os, uint64_t object, uint64_t offset,
311ea8dc4b6Seschrock     void *tag, dmu_buf_t **);
312fa9e4066Sahrens void dmu_buf_add_ref(dmu_buf_t *db, void* tag);
313ea8dc4b6Seschrock void dmu_buf_rele(dmu_buf_t *db, void *tag);
314fa9e4066Sahrens uint64_t dmu_buf_refcount(dmu_buf_t *db);
315fa9e4066Sahrens 
316fa9e4066Sahrens /*
317fa9e4066Sahrens  * dmu_buf_hold_array holds the DMU buffers which contain all bytes in a
318fa9e4066Sahrens  * range of an object.  A pointer to an array of dmu_buf_t*'s is
319fa9e4066Sahrens  * returned (in *dbpp).
320fa9e4066Sahrens  *
321fa9e4066Sahrens  * dmu_buf_rele_array releases the hold on an array of dmu_buf_t*'s, and
322fa9e4066Sahrens  * frees the array.  The hold on the array of buffers MUST be released
323fa9e4066Sahrens  * with dmu_buf_rele_array.  You can NOT release the hold on each buffer
324fa9e4066Sahrens  * individually with dmu_buf_rele.
325fa9e4066Sahrens  */
32613506d1eSmaybee int dmu_buf_hold_array_by_bonus(dmu_buf_t *db, uint64_t offset,
32713506d1eSmaybee     uint64_t length, int read, void *tag, int *numbufsp, dmu_buf_t ***dbpp);
328ea8dc4b6Seschrock void dmu_buf_rele_array(dmu_buf_t **, int numbufs, void *tag);
329fa9e4066Sahrens 
330fa9e4066Sahrens /*
331fa9e4066Sahrens  * Returns NULL on success, or the existing user ptr if it's already
332fa9e4066Sahrens  * been set.
333fa9e4066Sahrens  *
334fa9e4066Sahrens  * user_ptr is for use by the user and can be obtained via dmu_buf_get_user().
335fa9e4066Sahrens  *
336fa9e4066Sahrens  * user_data_ptr_ptr should be NULL, or a pointer to a pointer which
337fa9e4066Sahrens  * will be set to db->db_data when you are allowed to access it.  Note
338fa9e4066Sahrens  * that db->db_data (the pointer) can change when you do dmu_buf_read(),
339fa9e4066Sahrens  * dmu_buf_tryupgrade(), dmu_buf_will_dirty(), or dmu_buf_will_fill().
340fa9e4066Sahrens  * *user_data_ptr_ptr will be set to the new value when it changes.
341fa9e4066Sahrens  *
342fa9e4066Sahrens  * If non-NULL, pageout func will be called when this buffer is being
343fa9e4066Sahrens  * excised from the cache, so that you can clean up the data structure
344fa9e4066Sahrens  * pointed to by user_ptr.
345fa9e4066Sahrens  *
346fa9e4066Sahrens  * dmu_evict_user() will call the pageout func for all buffers in a
347fa9e4066Sahrens  * objset with a given pageout func.
348fa9e4066Sahrens  */
349fa9e4066Sahrens void *dmu_buf_set_user(dmu_buf_t *db, void *user_ptr, void *user_data_ptr_ptr,
350fa9e4066Sahrens     dmu_buf_evict_func_t *pageout_func);
351fa9e4066Sahrens /*
352fa9e4066Sahrens  * set_user_ie is the same as set_user, but request immediate eviction
353fa9e4066Sahrens  * when hold count goes to zero.
354fa9e4066Sahrens  */
355fa9e4066Sahrens void *dmu_buf_set_user_ie(dmu_buf_t *db, void *user_ptr,
356fa9e4066Sahrens     void *user_data_ptr_ptr, dmu_buf_evict_func_t *pageout_func);
357fa9e4066Sahrens void *dmu_buf_update_user(dmu_buf_t *db_fake, void *old_user_ptr,
358fa9e4066Sahrens     void *user_ptr, void *user_data_ptr_ptr,
359fa9e4066Sahrens     dmu_buf_evict_func_t *pageout_func);
360fa9e4066Sahrens void dmu_evict_user(objset_t *os, dmu_buf_evict_func_t *func);
361fa9e4066Sahrens 
362fa9e4066Sahrens /*
363fa9e4066Sahrens  * Returns the user_ptr set with dmu_buf_set_user(), or NULL if not set.
364fa9e4066Sahrens  */
365fa9e4066Sahrens void *dmu_buf_get_user(dmu_buf_t *db);
366fa9e4066Sahrens 
367fa9e4066Sahrens /*
368fa9e4066Sahrens  * Indicate that you are going to modify the buffer's data (db_data).
369fa9e4066Sahrens  *
370fa9e4066Sahrens  * The transaction (tx) must be assigned to a txg (ie. you've called
371fa9e4066Sahrens  * dmu_tx_assign()).  The buffer's object must be held in the tx
372fa9e4066Sahrens  * (ie. you've called dmu_tx_hold_object(tx, db->db_object)).
373fa9e4066Sahrens  */
374fa9e4066Sahrens void dmu_buf_will_dirty(dmu_buf_t *db, dmu_tx_t *tx);
375fa9e4066Sahrens 
376fa9e4066Sahrens /*
377fa9e4066Sahrens  * You must create a transaction, then hold the objects which you will
378fa9e4066Sahrens  * (or might) modify as part of this transaction.  Then you must assign
379fa9e4066Sahrens  * the transaction to a transaction group.  Once the transaction has
380fa9e4066Sahrens  * been assigned, you can modify buffers which belong to held objects as
381fa9e4066Sahrens  * part of this transaction.  You can't modify buffers before the
382fa9e4066Sahrens  * transaction has been assigned; you can't modify buffers which don't
383fa9e4066Sahrens  * belong to objects which this transaction holds; you can't hold
384fa9e4066Sahrens  * objects once the transaction has been assigned.  You may hold an
385fa9e4066Sahrens  * object which you are going to free (with dmu_object_free()), but you
386fa9e4066Sahrens  * don't have to.
387fa9e4066Sahrens  *
388fa9e4066Sahrens  * You can abort the transaction before it has been assigned.
389fa9e4066Sahrens  *
390fa9e4066Sahrens  * Note that you may hold buffers (with dmu_buf_hold) at any time,
391fa9e4066Sahrens  * regardless of transaction state.
392fa9e4066Sahrens  */
393fa9e4066Sahrens 
394fa9e4066Sahrens #define	DMU_NEW_OBJECT	(-1ULL)
395fa9e4066Sahrens #define	DMU_OBJECT_END	(-1ULL)
396fa9e4066Sahrens 
397fa9e4066Sahrens dmu_tx_t *dmu_tx_create(objset_t *os);
398fa9e4066Sahrens void dmu_tx_hold_write(dmu_tx_t *tx, uint64_t object, uint64_t off, int len);
399fa9e4066Sahrens void dmu_tx_hold_free(dmu_tx_t *tx, uint64_t object, uint64_t off,
400fa9e4066Sahrens     uint64_t len);
401ea8dc4b6Seschrock void dmu_tx_hold_zap(dmu_tx_t *tx, uint64_t object, int add, char *name);
402fa9e4066Sahrens void dmu_tx_hold_bonus(dmu_tx_t *tx, uint64_t object);
403fa9e4066Sahrens void dmu_tx_abort(dmu_tx_t *tx);
404fa9e4066Sahrens int dmu_tx_assign(dmu_tx_t *tx, uint64_t txg_how);
4058a2f1b91Sahrens void dmu_tx_wait(dmu_tx_t *tx);
406fa9e4066Sahrens void dmu_tx_commit(dmu_tx_t *tx);
407fa9e4066Sahrens 
408fa9e4066Sahrens /*
409fa9e4066Sahrens  * Free up the data blocks for a defined range of a file.  If size is
410fa9e4066Sahrens  * zero, the range from offset to end-of-file is freed.
411fa9e4066Sahrens  */
412ea8dc4b6Seschrock int dmu_free_range(objset_t *os, uint64_t object, uint64_t offset,
413fa9e4066Sahrens 	uint64_t size, dmu_tx_t *tx);
414fa9e4066Sahrens 
415fa9e4066Sahrens /*
416fa9e4066Sahrens  * Convenience functions.
417fa9e4066Sahrens  *
418fa9e4066Sahrens  * Canfail routines will return 0 on success, or an errno if there is a
419fa9e4066Sahrens  * nonrecoverable I/O error.
420fa9e4066Sahrens  */
421ea8dc4b6Seschrock int dmu_read(objset_t *os, uint64_t object, uint64_t offset, uint64_t size,
422fa9e4066Sahrens 	void *buf);
423fa9e4066Sahrens void dmu_write(objset_t *os, uint64_t object, uint64_t offset, uint64_t size,
424fa9e4066Sahrens 	const void *buf, dmu_tx_t *tx);
425fa9e4066Sahrens int dmu_write_uio(objset_t *os, uint64_t object, uint64_t offset, uint64_t size,
426fa9e4066Sahrens     struct uio *uio, dmu_tx_t *tx);
42744eda4d7Smaybee int dmu_write_pages(objset_t *os, uint64_t object, uint64_t offset,
42844eda4d7Smaybee     uint64_t size, struct page *pp, dmu_tx_t *tx);
429fa9e4066Sahrens 
430*416e0cd8Sek extern int zfs_prefetch_disable;
431*416e0cd8Sek 
432fa9e4066Sahrens /*
433fa9e4066Sahrens  * Asynchronously try to read in the data.
434fa9e4066Sahrens  */
435fa9e4066Sahrens void dmu_prefetch(objset_t *os, uint64_t object, uint64_t offset,
436fa9e4066Sahrens     uint64_t len);
437fa9e4066Sahrens 
438fa9e4066Sahrens typedef struct dmu_object_info {
439fa9e4066Sahrens 	/* All sizes are in bytes. */
440fa9e4066Sahrens 	uint32_t doi_data_block_size;
441fa9e4066Sahrens 	uint32_t doi_metadata_block_size;
442fa9e4066Sahrens 	uint64_t doi_bonus_size;
443fa9e4066Sahrens 	dmu_object_type_t doi_type;
444fa9e4066Sahrens 	dmu_object_type_t doi_bonus_type;
445fa9e4066Sahrens 	uint8_t doi_indirection;		/* 2 = dnode->indirect->data */
446fa9e4066Sahrens 	uint8_t doi_checksum;
447fa9e4066Sahrens 	uint8_t doi_compress;
448fa9e4066Sahrens 	uint8_t doi_pad[5];
449fa9e4066Sahrens 	/* Values below are number of 512-byte blocks. */
450fa9e4066Sahrens 	uint64_t doi_physical_blks;		/* data + metadata */
451fa9e4066Sahrens 	uint64_t doi_max_block_offset;
452fa9e4066Sahrens } dmu_object_info_t;
453fa9e4066Sahrens 
454fa9e4066Sahrens typedef struct dmu_object_type_info {
455fa9e4066Sahrens 	dmu_byteswap_func_t	*ot_byteswap;
456fa9e4066Sahrens 	boolean_t		ot_metadata;
457fa9e4066Sahrens 	char			*ot_name;
458fa9e4066Sahrens } dmu_object_type_info_t;
459fa9e4066Sahrens 
460fa9e4066Sahrens extern const dmu_object_type_info_t dmu_ot[DMU_OT_NUMTYPES];
461fa9e4066Sahrens 
462fa9e4066Sahrens /*
463fa9e4066Sahrens  * Get information on a DMU object.
464fa9e4066Sahrens  *
465fa9e4066Sahrens  * Return 0 on success or ENOENT if object is not allocated.
466fa9e4066Sahrens  *
467fa9e4066Sahrens  * If doi is NULL, just indicates whether the object exists.
468fa9e4066Sahrens  */
469fa9e4066Sahrens int dmu_object_info(objset_t *os, uint64_t object, dmu_object_info_t *doi);
470fa9e4066Sahrens void dmu_object_info_from_dnode(struct dnode *dn, dmu_object_info_t *doi);
471fa9e4066Sahrens void dmu_object_info_from_db(dmu_buf_t *db, dmu_object_info_t *doi);
472fa9e4066Sahrens void dmu_object_size_from_db(dmu_buf_t *db, uint32_t *blksize,
473fa9e4066Sahrens     u_longlong_t *nblk512);
474fa9e4066Sahrens 
475fa9e4066Sahrens typedef struct dmu_objset_stats {
476a2eea2e1Sahrens 	uint64_t dds_num_clones; /* number of clones of this */
477a2eea2e1Sahrens 	uint64_t dds_creation_txg;
478fa9e4066Sahrens 	dmu_objset_type_t dds_type;
479fa9e4066Sahrens 	uint8_t dds_is_snapshot;
48031fd60d3Sahrens 	uint8_t dds_inconsistent;
481fa9e4066Sahrens 	char dds_clone_of[MAXNAMELEN];
482a2eea2e1Sahrens } dmu_objset_stats_t;
483fa9e4066Sahrens 
484a2eea2e1Sahrens /*
485a2eea2e1Sahrens  * Get stats on a dataset.
486a2eea2e1Sahrens  */
487a2eea2e1Sahrens void dmu_objset_fast_stat(objset_t *os, dmu_objset_stats_t *stat);
488fa9e4066Sahrens 
489a2eea2e1Sahrens /*
490a2eea2e1Sahrens  * Add entries to the nvlist for all the objset's properties.  See
491a2eea2e1Sahrens  * zfs_prop_table[] and zfs(1m) for details on the properties.
492a2eea2e1Sahrens  */
493a2eea2e1Sahrens void dmu_objset_stats(objset_t *os, struct nvlist *nv);
494fa9e4066Sahrens 
495a2eea2e1Sahrens /*
496a2eea2e1Sahrens  * Get the space usage statistics for statvfs().
497a2eea2e1Sahrens  *
498a2eea2e1Sahrens  * refdbytes is the amount of space "referenced" by this objset.
499a2eea2e1Sahrens  * availbytes is the amount of space available to this objset, taking
500a2eea2e1Sahrens  * into account quotas & reservations, assuming that no other objsets
501a2eea2e1Sahrens  * use the space first.  These values correspond to the 'referenced' and
502a2eea2e1Sahrens  * 'available' properties, described in the zfs(1m) manpage.
503a2eea2e1Sahrens  *
504a2eea2e1Sahrens  * usedobjs and availobjs are the number of objects currently allocated,
505a2eea2e1Sahrens  * and available.
506a2eea2e1Sahrens  */
507a2eea2e1Sahrens void dmu_objset_space(objset_t *os, uint64_t *refdbytesp, uint64_t *availbytesp,
508a2eea2e1Sahrens     uint64_t *usedobjsp, uint64_t *availobjsp);
509fa9e4066Sahrens 
510fa9e4066Sahrens /*
511a2eea2e1Sahrens  * The fsid_guid is a 56-bit ID that can change to avoid collisions.
512a2eea2e1Sahrens  * (Contrast with the ds_guid which is a 64-bit ID that will never
513a2eea2e1Sahrens  * change, so there is a small probability that it will collide.)
514fa9e4066Sahrens  */
515a2eea2e1Sahrens uint64_t dmu_objset_fsid_guid(objset_t *os);
516fa9e4066Sahrens 
517fa9e4066Sahrens int dmu_objset_is_snapshot(objset_t *os);
518fa9e4066Sahrens 
519fa9e4066Sahrens extern struct spa *dmu_objset_spa(objset_t *os);
520fa9e4066Sahrens extern struct zilog *dmu_objset_zil(objset_t *os);
521fa9e4066Sahrens extern struct dsl_pool *dmu_objset_pool(objset_t *os);
522fa9e4066Sahrens extern struct dsl_dataset *dmu_objset_ds(objset_t *os);
523fa9e4066Sahrens extern void dmu_objset_name(objset_t *os, char *buf);
524fa9e4066Sahrens extern dmu_objset_type_t dmu_objset_type(objset_t *os);
525fa9e4066Sahrens extern uint64_t dmu_objset_id(objset_t *os);
526fa9e4066Sahrens extern int dmu_snapshot_list_next(objset_t *os, int namelen, char *name,
527fa9e4066Sahrens     uint64_t *id, uint64_t *offp);
52887e5029aSahrens extern int dmu_dir_list_next(objset_t *os, int namelen, char *name,
52987e5029aSahrens     uint64_t *idp, uint64_t *offp);
530fa9e4066Sahrens 
531fa9e4066Sahrens /*
532fa9e4066Sahrens  * Return the txg number for the given assigned transaction.
533fa9e4066Sahrens  */
53487e5029aSahrens uint64_t dmu_tx_get_txg(dmu_tx_t *tx);
535fa9e4066Sahrens 
536fa9e4066Sahrens /*
537fa9e4066Sahrens  * Synchronous write.
538c5c6ffa0Smaybee  * If a parent zio is provided this function initiates a write on the
539c5c6ffa0Smaybee  * provided buffer as a child of the parent zio.
540c5c6ffa0Smaybee  * In the absense of a parent zio, the write is completed synchronously.
541c5c6ffa0Smaybee  * At write completion, blk is filled with the bp of the written block.
542fa9e4066Sahrens  * Note that while the data covered by this function will be on stable
543c5c6ffa0Smaybee  * storage when the write completes this new data does not become a
544fa9e4066Sahrens  * permanent part of the file until the associated transaction commits.
545fa9e4066Sahrens  */
546c5c6ffa0Smaybee typedef void dmu_sync_cb_t(dmu_buf_t *db, void *arg);
547c5c6ffa0Smaybee int dmu_sync(struct zio *zio, dmu_buf_t *db,
548c5c6ffa0Smaybee     struct blkptr *bp, uint64_t txg, dmu_sync_cb_t *done, void *arg);
549fa9e4066Sahrens 
550fa9e4066Sahrens /*
551fa9e4066Sahrens  * Find the next hole or data block in file starting at *off
552fa9e4066Sahrens  * Return found offset in *off. Return ESRCH for end of file.
553fa9e4066Sahrens  */
554fa9e4066Sahrens int dmu_offset_next(objset_t *os, uint64_t object, boolean_t hole,
555fa9e4066Sahrens     uint64_t *off);
556fa9e4066Sahrens 
557fa9e4066Sahrens /*
558fa9e4066Sahrens  * Initial setup and final teardown.
559fa9e4066Sahrens  */
560fa9e4066Sahrens extern void dmu_init(void);
561fa9e4066Sahrens extern void dmu_fini(void);
562fa9e4066Sahrens 
563fa9e4066Sahrens typedef void (*dmu_traverse_cb_t)(objset_t *os, void *arg, struct blkptr *bp,
564fa9e4066Sahrens     uint64_t object, uint64_t offset, int len);
565fa9e4066Sahrens void dmu_traverse_objset(objset_t *os, uint64_t txg_start,
566fa9e4066Sahrens     dmu_traverse_cb_t cb, void *arg);
567fa9e4066Sahrens 
568fa9e4066Sahrens int dmu_sendbackup(objset_t *tosnap, objset_t *fromsnap, struct vnode *vp);
569ea8dc4b6Seschrock int dmu_recvbackup(char *tosnap, struct drr_begin *drrb, uint64_t *sizep,
57098579b20Snd     boolean_t force, struct vnode *vp, uint64_t voffset);
571fa9e4066Sahrens 
572fa9e4066Sahrens /* CRC64 table */
573fa9e4066Sahrens #define	ZFS_CRC64_POLY	0xC96C5795D7870F42ULL	/* ECMA-182, reflected form */
574fa9e4066Sahrens extern uint64_t zfs_crc64_table[256];
575fa9e4066Sahrens 
576fa9e4066Sahrens #ifdef	__cplusplus
577fa9e4066Sahrens }
578fa9e4066Sahrens #endif
579fa9e4066Sahrens 
580fa9e4066Sahrens #endif	/* _SYS_DMU_H */
581