metadata.h revision 1.1.1.2 1 1.1 haad /* $NetBSD: metadata.h,v 1.1.1.2 2009/02/18 11:17:14 haad Exp $ */
2 1.1 haad
3 1.1 haad /*
4 1.1 haad * Copyright (C) 2001-2004 Sistina Software, Inc. All rights reserved.
5 1.1 haad * Copyright (C) 2004-2007 Red Hat, Inc. All rights reserved.
6 1.1 haad *
7 1.1 haad * This file is part of LVM2.
8 1.1 haad *
9 1.1 haad * This copyrighted material is made available to anyone wishing to use,
10 1.1 haad * modify, copy, or redistribute it subject to the terms and conditions
11 1.1 haad * of the GNU Lesser General Public License v.2.1.
12 1.1 haad *
13 1.1 haad * You should have received a copy of the GNU Lesser General Public License
14 1.1 haad * along with this program; if not, write to the Free Software Foundation,
15 1.1 haad * Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
16 1.1 haad */
17 1.1 haad
18 1.1 haad /*
19 1.1 haad * This is the in core representation of a volume group and its
20 1.1 haad * associated physical and logical volumes.
21 1.1 haad */
22 1.1 haad
23 1.1 haad #ifndef _LVM_METADATA_H
24 1.1 haad #define _LVM_METADATA_H
25 1.1 haad
26 1.1 haad #include "ctype.h"
27 1.1 haad #include "dev-cache.h"
28 1.1 haad #include "lvm-string.h"
29 1.1 haad #include "metadata-exported.h"
30 1.1 haad
31 1.1 haad //#define MAX_STRIPES 128U
32 1.1 haad //#define SECTOR_SHIFT 9L
33 1.1 haad #define SECTOR_SIZE ( 1L << SECTOR_SHIFT )
34 1.1 haad //#define STRIPE_SIZE_MIN ( (unsigned) lvm_getpagesize() >> SECTOR_SHIFT) /* PAGESIZE in sectors */
35 1.1 haad //#define STRIPE_SIZE_MAX ( 512L * 1024L >> SECTOR_SHIFT) /* 512 KB in sectors */
36 1.1 haad //#define STRIPE_SIZE_LIMIT ((UINT_MAX >> 2) + 1)
37 1.1 haad //#define PV_MIN_SIZE ( 512L * 1024L >> SECTOR_SHIFT) /* 512 KB in sectors */
38 1.1 haad //#define MAX_RESTRICTED_LVS 255 /* Used by FMT_RESTRICTED_LVIDS */
39 1.1.1.2 haad #define MIRROR_LOG_OFFSET 2 /* sectors */
40 1.1.1.2 haad
41 1.1.1.2 haad /*
42 1.1.1.2 haad * Ceiling(n / sz)
43 1.1.1.2 haad */
44 1.1.1.2 haad #define dm_div_up(n, sz) (((n) + (sz) - 1) / (sz))
45 1.1.1.2 haad
46 1.1.1.2 haad /*
47 1.1.1.2 haad * Ceiling(n / size) * size
48 1.1.1.2 haad */
49 1.1.1.2 haad #define dm_round_up(n, sz) (dm_div_up((n), (sz)) * (sz))
50 1.1.1.2 haad
51 1.1 haad
52 1.1 haad /* Various flags */
53 1.1 haad /* Note that the bits no longer necessarily correspond to LVM1 disk format */
54 1.1 haad
55 1.1 haad //#define PARTIAL_VG 0x00000001U /* VG */
56 1.1 haad //#define EXPORTED_VG 0x00000002U /* VG PV */
57 1.1 haad //#define RESIZEABLE_VG 0x00000004U /* VG */
58 1.1 haad
59 1.1 haad /* May any free extents on this PV be used or must they be left free? */
60 1.1 haad //#define ALLOCATABLE_PV 0x00000008U /* PV */
61 1.1 haad
62 1.1 haad #define SPINDOWN_LV 0x00000010U /* LV */
63 1.1 haad #define BADBLOCK_ON 0x00000020U /* LV */
64 1.1 haad //#define VISIBLE_LV 0x00000040U /* LV */
65 1.1 haad //#define FIXED_MINOR 0x00000080U /* LV */
66 1.1 haad /* FIXME Remove when metadata restructuring is completed */
67 1.1 haad //#define SNAPSHOT 0x00001000U /* LV - internal use only */
68 1.1 haad //#define PVMOVE 0x00002000U /* VG LV SEG */
69 1.1 haad //#define LOCKED 0x00004000U /* LV */
70 1.1 haad //#define MIRRORED 0x00008000U /* LV - internal use only */
71 1.1 haad #define VIRTUAL 0x00010000U /* LV - internal use only */
72 1.1 haad //#define MIRROR_LOG 0x00020000U /* LV */
73 1.1 haad //#define MIRROR_IMAGE 0x00040000U /* LV */
74 1.1 haad //#define MIRROR_NOTSYNCED 0x00080000U /* LV */
75 1.1 haad #define ACTIVATE_EXCL 0x00100000U /* LV - internal use only */
76 1.1 haad #define PRECOMMITTED 0x00200000U /* VG - internal use only */
77 1.1 haad //#define CONVERTING 0x00400000U /* LV */
78 1.1 haad
79 1.1 haad //#define MISSING_PV 0x00800000U /* PV */
80 1.1 haad //#define PARTIAL_LV 0x01000000U /* LV - derived flag, not
81 1.1 haad // written out in metadata*/
82 1.1 haad
83 1.1 haad #define POSTORDER_FLAG 0x02000000U /* Not real flags, reserved for */
84 1.1 haad #define POSTORDER_OPEN_FLAG 0x04000000U /* temporary use inside vg_read. */
85 1.1 haad
86 1.1 haad //#define LVM_READ 0x00000100U /* LV VG */
87 1.1 haad //#define LVM_WRITE 0x00000200U /* LV VG */
88 1.1 haad //#define CLUSTERED 0x00000400U /* VG */
89 1.1 haad #define SHARED 0x00000800U /* VG */
90 1.1 haad
91 1.1 haad /* Format features flags */
92 1.1 haad //#define FMT_SEGMENTS 0x00000001U /* Arbitrary segment params? */
93 1.1 haad //#define FMT_MDAS 0x00000002U /* Proper metadata areas? */
94 1.1 haad //#define FMT_TAGS 0x00000004U /* Tagging? */
95 1.1 haad //#define FMT_UNLIMITED_VOLS 0x00000008U /* Unlimited PVs/LVs? */
96 1.1 haad //#define FMT_RESTRICTED_LVIDS 0x00000010U /* LVID <= 255 */
97 1.1 haad //#define FMT_ORPHAN_ALLOCATABLE 0x00000020U /* Orphan PV allocatable? */
98 1.1 haad #define FMT_PRECOMMIT 0x00000040U /* Supports pre-commit? */
99 1.1 haad //#define FMT_RESIZE_PV 0x00000080U /* Supports pvresize? */
100 1.1 haad //#define FMT_UNLIMITED_STRIPESIZE 0x00000100U /* Unlimited stripe size? */
101 1.1 haad
102 1.1 haad struct metadata_area;
103 1.1 haad
104 1.1 haad /* Per-format per-metadata area operations */
105 1.1 haad struct metadata_area_ops {
106 1.1 haad struct volume_group *(*vg_read) (struct format_instance * fi,
107 1.1 haad const char *vg_name,
108 1.1 haad struct metadata_area * mda);
109 1.1 haad struct volume_group *(*vg_read_precommit) (struct format_instance * fi,
110 1.1 haad const char *vg_name,
111 1.1 haad struct metadata_area * mda);
112 1.1 haad /*
113 1.1 haad * Write out complete VG metadata. You must ensure internal
114 1.1 haad * consistency before calling. eg. PEs can't refer to PVs not
115 1.1 haad * part of the VG.
116 1.1 haad *
117 1.1 haad * It is also the responsibility of the caller to ensure external
118 1.1 haad * consistency, eg by calling pv_write() if removing PVs from
119 1.1 haad * a VG or calling vg_write() a second time if splitting a VG
120 1.1 haad * into two.
121 1.1 haad *
122 1.1 haad * vg_write() should not read or write from any PVs not included
123 1.1 haad * in the volume_group structure it is handed.
124 1.1 haad * (format1 currently breaks this rule.)
125 1.1 haad */
126 1.1 haad int (*vg_write) (struct format_instance * fid, struct volume_group * vg,
127 1.1 haad struct metadata_area * mda);
128 1.1 haad int (*vg_precommit) (struct format_instance * fid,
129 1.1 haad struct volume_group * vg,
130 1.1 haad struct metadata_area * mda);
131 1.1 haad int (*vg_commit) (struct format_instance * fid,
132 1.1 haad struct volume_group * vg, struct metadata_area * mda);
133 1.1 haad int (*vg_revert) (struct format_instance * fid,
134 1.1 haad struct volume_group * vg, struct metadata_area * mda);
135 1.1 haad int (*vg_remove) (struct format_instance * fi, struct volume_group * vg,
136 1.1 haad struct metadata_area * mda);
137 1.1 haad
138 1.1 haad /*
139 1.1 haad * Returns number of free sectors in given metadata area.
140 1.1 haad */
141 1.1 haad uint64_t (*mda_free_sectors) (struct metadata_area *mda);
142 1.1 haad
143 1.1 haad /*
144 1.1.1.2 haad * Returns number of total sectors in given metadata area.
145 1.1.1.2 haad */
146 1.1.1.2 haad uint64_t (*mda_total_sectors) (struct metadata_area *mda);
147 1.1.1.2 haad
148 1.1.1.2 haad /*
149 1.1 haad * Check if metadata area belongs to vg
150 1.1 haad */
151 1.1 haad int (*mda_in_vg) (struct format_instance * fi,
152 1.1 haad struct volume_group * vg, struct metadata_area *mda);
153 1.1 haad /*
154 1.1 haad * Analyze a metadata area on a PV.
155 1.1 haad */
156 1.1 haad int (*pv_analyze_mda) (const struct format_type * fmt,
157 1.1 haad struct metadata_area *mda);
158 1.1 haad
159 1.1 haad };
160 1.1 haad
161 1.1 haad struct metadata_area {
162 1.1 haad struct dm_list list;
163 1.1 haad struct metadata_area_ops *ops;
164 1.1 haad void *metadata_locn;
165 1.1 haad };
166 1.1 haad
167 1.1 haad #define seg_pvseg(seg, s) (seg)->areas[(s)].u.pv.pvseg
168 1.1 haad #define seg_dev(seg, s) (seg)->areas[(s)].u.pv.pvseg->pv->dev
169 1.1 haad #define seg_pe(seg, s) (seg)->areas[(s)].u.pv.pvseg->pe
170 1.1 haad #define seg_le(seg, s) (seg)->areas[(s)].u.lv.le
171 1.1 haad
172 1.1 haad struct name_list {
173 1.1 haad struct dm_list list;
174 1.1 haad char *name;
175 1.1 haad };
176 1.1 haad
177 1.1 haad struct mda_list {
178 1.1 haad struct dm_list list;
179 1.1 haad struct device_area mda;
180 1.1 haad };
181 1.1 haad
182 1.1 haad struct peg_list {
183 1.1 haad struct dm_list list;
184 1.1 haad struct pv_segment *peg;
185 1.1 haad };
186 1.1 haad
187 1.1 haad struct seg_list {
188 1.1 haad struct dm_list list;
189 1.1 haad unsigned count;
190 1.1 haad struct lv_segment *seg;
191 1.1 haad };
192 1.1 haad
193 1.1 haad /*
194 1.1 haad * Ownership of objects passes to caller.
195 1.1 haad */
196 1.1 haad struct format_handler {
197 1.1 haad /*
198 1.1 haad * Scan any metadata areas that aren't referenced in PV labels
199 1.1 haad */
200 1.1 haad int (*scan) (const struct format_type * fmt);
201 1.1 haad
202 1.1 haad /*
203 1.1 haad * Return PV with given path.
204 1.1 haad */
205 1.1 haad int (*pv_read) (const struct format_type * fmt, const char *pv_name,
206 1.1 haad struct physical_volume * pv, struct dm_list * mdas);
207 1.1 haad
208 1.1 haad /*
209 1.1 haad * Tweak an already filled out a pv ready for importing into a
210 1.1 haad * vg. eg. pe_count is format specific.
211 1.1 haad */
212 1.1 haad int (*pv_setup) (const struct format_type * fmt,
213 1.1 haad uint64_t pe_start, uint32_t extent_count,
214 1.1 haad uint32_t extent_size,
215 1.1 haad int pvmetadatacopies,
216 1.1 haad uint64_t pvmetadatasize, struct dm_list * mdas,
217 1.1 haad struct physical_volume * pv, struct volume_group * vg);
218 1.1 haad
219 1.1 haad /*
220 1.1 haad * Write a PV structure to disk. Fails if the PV is in a VG ie
221 1.1 haad * pv->vg_name must be a valid orphan VG name
222 1.1 haad */
223 1.1 haad int (*pv_write) (const struct format_type * fmt,
224 1.1 haad struct physical_volume * pv, struct dm_list * mdas,
225 1.1 haad int64_t label_sector);
226 1.1 haad
227 1.1 haad /*
228 1.1 haad * Tweak an already filled out a lv eg, check there
229 1.1 haad * aren't too many extents.
230 1.1 haad */
231 1.1 haad int (*lv_setup) (struct format_instance * fi,
232 1.1 haad struct logical_volume * lv);
233 1.1 haad
234 1.1 haad /*
235 1.1 haad * Tweak an already filled out vg. eg, max_pv is format
236 1.1 haad * specific.
237 1.1 haad */
238 1.1 haad int (*vg_setup) (struct format_instance * fi, struct volume_group * vg);
239 1.1 haad
240 1.1 haad /*
241 1.1 haad * Check whether particular segment type is supported.
242 1.1 haad */
243 1.1 haad int (*segtype_supported) (struct format_instance *fid,
244 1.1 haad const struct segment_type *segtype);
245 1.1 haad
246 1.1 haad /*
247 1.1 haad * Create format instance with a particular metadata area
248 1.1 haad */
249 1.1 haad struct format_instance *(*create_instance) (const struct format_type *
250 1.1 haad fmt, const char *vgname,
251 1.1 haad const char *vgid,
252 1.1 haad void *context);
253 1.1 haad
254 1.1 haad /*
255 1.1 haad * Destructor for format instance
256 1.1 haad */
257 1.1 haad void (*destroy_instance) (struct format_instance * fid);
258 1.1 haad
259 1.1 haad /*
260 1.1 haad * Destructor for format type
261 1.1 haad */
262 1.1 haad void (*destroy) (const struct format_type * fmt);
263 1.1 haad };
264 1.1 haad
265 1.1 haad /*
266 1.1 haad * Utility functions
267 1.1 haad */
268 1.1 haad unsigned long pe_align(struct physical_volume *pv);
269 1.1 haad int vg_validate(struct volume_group *vg);
270 1.1 haad
271 1.1 haad int pv_write_orphan(struct cmd_context *cmd, struct physical_volume *pv);
272 1.1 haad
273 1.1 haad /* Manipulate PV structures */
274 1.1 haad int pv_add(struct volume_group *vg, struct physical_volume *pv);
275 1.1 haad int pv_remove(struct volume_group *vg, struct physical_volume *pv);
276 1.1 haad struct physical_volume *pv_find(struct volume_group *vg, const char *pv_name);
277 1.1 haad
278 1.1 haad /* Find a PV within a given VG */
279 1.1 haad int get_pv_from_vg_by_id(const struct format_type *fmt, const char *vg_name,
280 1.1 haad const char *vgid, const char *pvid,
281 1.1 haad struct physical_volume *pv);
282 1.1 haad
283 1.1 haad struct lv_list *find_lv_in_vg_by_lvid(struct volume_group *vg,
284 1.1 haad const union lvid *lvid);
285 1.1 haad
286 1.1 haad struct lv_list *find_lv_in_lv_list(const struct dm_list *ll,
287 1.1 haad const struct logical_volume *lv);
288 1.1 haad
289 1.1 haad /* Return the VG that contains a given LV (based on path given in lv_name) */
290 1.1 haad /* or environment var */
291 1.1 haad struct volume_group *find_vg_with_lv(const char *lv_name);
292 1.1 haad
293 1.1 haad /* Find LV with given lvid (used during activation) */
294 1.1 haad struct logical_volume *lv_from_lvid(struct cmd_context *cmd,
295 1.1 haad const char *lvid_s,
296 1.1 haad unsigned precommitted);
297 1.1 haad
298 1.1 haad /* FIXME Merge these functions with ones above */
299 1.1 haad struct physical_volume *find_pv(struct volume_group *vg, struct device *dev);
300 1.1 haad
301 1.1 haad struct pv_list *find_pv_in_pv_list(const struct dm_list *pl,
302 1.1 haad const struct physical_volume *pv);
303 1.1 haad
304 1.1 haad /* Find LV segment containing given LE */
305 1.1 haad struct lv_segment *find_seg_by_le(const struct logical_volume *lv, uint32_t le);
306 1.1 haad
307 1.1 haad /* Find PV segment containing given LE */
308 1.1 haad struct pv_segment *find_peg_by_pe(const struct physical_volume *pv, uint32_t pe);
309 1.1 haad
310 1.1 haad /*
311 1.1 haad * Remove a dev_dir if present.
312 1.1 haad */
313 1.1 haad const char *strip_dir(const char *vg_name, const char *dir);
314 1.1 haad
315 1.1 haad /*
316 1.1 haad * Checks that an lv has no gaps or overlapping segments.
317 1.1 haad * Set complete_vg to perform additional VG level checks.
318 1.1 haad */
319 1.1 haad int check_lv_segments(struct logical_volume *lv, int complete_vg);
320 1.1 haad
321 1.1 haad /*
322 1.1 haad * Sometimes (eg, after an lvextend), it is possible to merge two
323 1.1 haad * adjacent segments into a single segment. This function trys
324 1.1 haad * to merge as many segments as possible.
325 1.1 haad */
326 1.1 haad int lv_merge_segments(struct logical_volume *lv);
327 1.1 haad
328 1.1 haad /*
329 1.1 haad * Ensure there's a segment boundary at a given LE, splitting if necessary
330 1.1 haad */
331 1.1 haad int lv_split_segment(struct logical_volume *lv, uint32_t le);
332 1.1 haad
333 1.1 haad /*
334 1.1 haad * Add/remove upward link from underlying LV to the segment using it
335 1.1 haad * FIXME: ridiculously long name
336 1.1 haad */
337 1.1 haad int add_seg_to_segs_using_this_lv(struct logical_volume *lv, struct lv_segment *seg);
338 1.1 haad int remove_seg_from_segs_using_this_lv(struct logical_volume *lv, struct lv_segment *seg);
339 1.1 haad struct lv_segment *get_only_segment_using_this_lv(struct logical_volume *lv);
340 1.1 haad
341 1.1 haad /*
342 1.1.1.2 haad * Count LVs that are visible from user's perspective.
343 1.1.1.2 haad */
344 1.1.1.2 haad unsigned displayable_lvs_in_vg(const struct volume_group *vg);
345 1.1.1.2 haad
346 1.1.1.2 haad /*
347 1.1 haad * For internal metadata caching.
348 1.1 haad */
349 1.1 haad int export_vg_to_buffer(struct volume_group *vg, char **buf);
350 1.1 haad struct volume_group *import_vg_from_buffer(char *buf,
351 1.1 haad struct format_instance *fid);
352 1.1 haad
353 1.1 haad /*
354 1.1 haad * Mirroring functions
355 1.1 haad */
356 1.1 haad
357 1.1 haad /*
358 1.1 haad * Given mirror image or mirror log segment, find corresponding mirror segment
359 1.1 haad */
360 1.1 haad int fixup_imported_mirrors(struct volume_group *vg);
361 1.1 haad
362 1.1 haad /*
363 1.1 haad * Begin skeleton for external LVM library
364 1.1 haad */
365 1.1 haad struct id pv_id(const pv_t *pv);
366 1.1 haad const struct format_type *pv_format_type(const pv_t *pv);
367 1.1 haad struct id pv_vgid(const pv_t *pv);
368 1.1 haad
369 1.1 haad pv_t *pv_by_path(struct cmd_context *cmd, const char *pv_name);
370 1.1 haad int add_pv_to_vg(struct volume_group *vg, const char *pv_name,
371 1.1 haad struct physical_volume *pv);
372 1.1 haad
373 1.1 haad #endif
374