xref: /freebsd/usr.sbin/makefs/zfs/zfs.h (revision e674ddec0b4138274539587fe9336b577ff1242a)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause-FreeBSD
3  *
4  * Copyright (c) 2022 The FreeBSD Foundation
5  *
6  * This software was developed by Mark Johnston under sponsorship from
7  * the FreeBSD Foundation.
8  *
9  * Redistribution and use in source and binary forms, with or without
10  * modification, are permitted provided that the following conditions are
11  * met:
12  * 1. Redistributions of source code must retain the above copyright
13  *    notice, this list of conditions and the following disclaimer.
14  * 2. Redistributions in binary form must reproduce the above copyright
15  *    notice, this list of conditions and the following disclaimer in
16  *    the documentation and/or other materials provided with the distribution.
17  *
18  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
19  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
20  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
21  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
22  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
23  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
24  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
25  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
26  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
27  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
28  * SUCH DAMAGE.
29  */
30 
31 #ifndef _MAKEFS_ZFS_H_
32 #define	_MAKEFS_ZFS_H_
33 
34 #include <sys/types.h>
35 #include <sys/queue.h>
36 
37 #include <bitstring.h>
38 #include <stdalign.h>
39 #include <stdbool.h>
40 
41 #include "makefs.h"
42 
43 #include "zfs/nvlist.h"
44 #define	ASSERT		assert
45 #include "zfs/zfsimpl.h"
46 
47 #define	MAXBLOCKSHIFT		17	/* 128KB */
48 #define	MAXBLOCKSIZE		((off_t)(1 << MAXBLOCKSHIFT))
49 _Static_assert(MAXBLOCKSIZE == SPA_OLDMAXBLOCKSIZE, "");
50 #define	MINBLOCKSHIFT		9	/* 512B */
51 #define	MINBLOCKSIZE		((off_t)(1 << MINBLOCKSHIFT))
52 _Static_assert(MINBLOCKSIZE == SPA_MINBLOCKSIZE, "");
53 #define	MINDEVSIZE		((off_t)SPA_MINDEVSIZE)
54 
55 /* All data was written in this transaction group. */
56 #define	TXG			4
57 
58 typedef struct zfs_dsl_dataset zfs_dsl_dataset_t;
59 typedef struct zfs_dsl_dir zfs_dsl_dir_t;
60 typedef struct zfs_objset zfs_objset_t;
61 typedef struct zfs_zap zfs_zap_t;
62 
63 struct dataset_desc {
64 	char		*params;
65 	STAILQ_ENTRY(dataset_desc) next;
66 };
67 
68 typedef struct {
69 	/*
70 	 * Block buffer, needs to be aligned for various on-disk structures,
71 	 * ZAPs, etc..
72 	 */
73 	char		filebuf[MAXBLOCKSIZE] __aligned(alignof(uint64_t));
74 
75 	bool		nowarn;
76 
77 	/* Pool parameters. */
78 	const char	*poolname;
79 	char		*rootpath;	/* implicit mount point prefix */
80 	char		*bootfs;	/* bootable dataset, pool property */
81 	int		ashift;		/* vdev block size */
82 	uint64_t	mssize;		/* metaslab size */
83 	STAILQ_HEAD(, dataset_desc) datasetdescs; /* non-root dataset descrs  */
84 
85 	/* Pool state. */
86 	uint64_t	poolguid;	/* pool and root vdev GUID */
87 	zfs_zap_t	*poolprops;
88 
89 	/* MOS state. */
90 	zfs_objset_t	*mos;		/* meta object set */
91 	uint64_t	objarrid;	/* space map object array */
92 
93 	/* DSL state. */
94 	zfs_dsl_dir_t	*rootdsldir;	/* root DSL directory */
95 	zfs_dsl_dataset_t *rootds;
96 	zfs_dsl_dir_t	*origindsldir;	/* $ORIGIN */
97 	zfs_dsl_dataset_t *originds;
98 	zfs_dsl_dataset_t *snapds;
99 	zfs_zap_t	*cloneszap;
100 	zfs_dsl_dir_t	*freedsldir;	/* $FREE */
101 	zfs_dsl_dir_t	*mosdsldir;	/* $MOS */
102 
103 	/* vdev state. */
104 	int		fd;		/* vdev disk fd */
105 	uint64_t	vdevguid;	/* disk vdev GUID */
106 	off_t		vdevsize;	/* vdev size, including labels */
107 	off_t		asize;		/* vdev size, excluding labels */
108 	bitstr_t	*spacemap;	/* space allocation tracking */
109 	int		spacemapbits;	/* one bit per ashift-sized block */
110 	uint64_t	msshift;	/* log2(metaslab size) */
111 	uint64_t	mscount;	/* number of metaslabs for this vdev */
112 } zfs_opt_t;
113 
114 /* dsl.c */
115 void dsl_init(zfs_opt_t *);
116 const char *dsl_dir_fullname(const zfs_dsl_dir_t *);
117 uint64_t dsl_dir_id(zfs_dsl_dir_t *);
118 uint64_t dsl_dir_dataset_id(zfs_dsl_dir_t *);
119 void dsl_dir_foreach(zfs_opt_t *, zfs_dsl_dir_t *,
120     void (*)(zfs_opt_t *, zfs_dsl_dir_t *, void *), void *);
121 int dsl_dir_get_canmount(zfs_dsl_dir_t *, uint64_t *);
122 char *dsl_dir_get_mountpoint(zfs_opt_t *, zfs_dsl_dir_t *);
123 bool dsl_dir_has_dataset(zfs_dsl_dir_t *);
124 bool dsl_dir_dataset_has_objset(zfs_dsl_dir_t *);
125 void dsl_dir_dataset_write(zfs_opt_t *, zfs_objset_t *, zfs_dsl_dir_t *);
126 void dsl_dir_size_add(zfs_dsl_dir_t *, uint64_t);
127 void dsl_write(zfs_opt_t *);
128 
129 /* fs.c */
130 void fs_build(zfs_opt_t *, int, fsnode *);
131 
132 /* objset.c */
133 zfs_objset_t *objset_alloc(zfs_opt_t *zfs, uint64_t type);
134 off_t objset_space_alloc(zfs_opt_t *, zfs_objset_t *, off_t *);
135 dnode_phys_t *objset_dnode_alloc(zfs_objset_t *, uint8_t, uint64_t *);
136 dnode_phys_t *objset_dnode_bonus_alloc(zfs_objset_t *, uint8_t, uint8_t,
137     uint16_t, uint64_t *);
138 dnode_phys_t *objset_dnode_lookup(zfs_objset_t *, uint64_t);
139 void objset_root_blkptr_copy(const zfs_objset_t *, blkptr_t *);
140 uint64_t objset_space(const zfs_objset_t *);
141 void objset_write(zfs_opt_t *zfs, zfs_objset_t *os);
142 
143 /* vdev.c */
144 void vdev_init(zfs_opt_t *, const char *);
145 off_t vdev_space_alloc(zfs_opt_t *zfs, off_t *lenp);
146 void vdev_pwrite_data(zfs_opt_t *zfs, uint8_t datatype, uint8_t cksumtype,
147     uint8_t level, uint64_t fill, const void *data, off_t sz, off_t loc,
148     blkptr_t *bp);
149 void vdev_pwrite_dnode_indir(zfs_opt_t *zfs, dnode_phys_t *dnode, uint8_t level,
150     uint64_t fill, const void *data, off_t sz, off_t loc, blkptr_t *bp);
151 void vdev_pwrite_dnode_data(zfs_opt_t *zfs, dnode_phys_t *dnode, const void *data,
152     off_t sz, off_t loc);
153 void vdev_label_write(zfs_opt_t *zfs, int ind, const vdev_label_t *labelp);
154 void vdev_spacemap_write(zfs_opt_t *);
155 void vdev_fini(zfs_opt_t *zfs);
156 
157 /* zap.c */
158 zfs_zap_t *zap_alloc(zfs_objset_t *, dnode_phys_t *);
159 void zap_add(zfs_zap_t *, const char *, size_t, size_t, const uint8_t *);
160 void zap_add_uint64(zfs_zap_t *, const char *, uint64_t);
161 void zap_add_string(zfs_zap_t *, const char *, const char *);
162 bool zap_entry_exists(zfs_zap_t *, const char *);
163 void zap_write(zfs_opt_t *, zfs_zap_t *);
164 
165 /* zfs.c */
166 struct dnode_cursor *dnode_cursor_init(zfs_opt_t *, zfs_objset_t *,
167     dnode_phys_t *, off_t, off_t);
168 blkptr_t *dnode_cursor_next(zfs_opt_t *, struct dnode_cursor *, off_t);
169 void dnode_cursor_finish(zfs_opt_t *, struct dnode_cursor *);
170 
171 #endif /* !_MAKEFS_ZFS_H_ */
172