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.
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.
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]
22 * Copyright 2009 Sun Microsystems, Inc. All rights reserved.
23 * Use is subject to license terms.
26 #ifndef _SYS_VDEV_IMPL_H
27 #define _SYS_VDEV_IMPL_H
31 #include <sys/metaslab.h>
32 #include <sys/nvpair.h>
33 #include <sys/space_map.h>
36 #include <sys/uberblock_impl.h>
43 * Virtual device descriptors.
45 * All storage pool operations go through the virtual device framework,
46 * which provides data replication and I/O scheduling.
50 * Forward declarations that lots of things need.
52 typedef struct vdev_queue vdev_queue_t
;
53 typedef struct vdev_cache vdev_cache_t
;
54 typedef struct vdev_cache_entry vdev_cache_entry_t
;
57 * Virtual device operations
59 typedef int vdev_open_func_t(vdev_t
*vd
, uint64_t *size
, uint64_t *ashift
);
60 typedef void vdev_close_func_t(vdev_t
*vd
);
61 typedef uint64_t vdev_asize_func_t(vdev_t
*vd
, uint64_t psize
);
62 typedef int vdev_io_start_func_t(zio_t
*zio
);
63 typedef void vdev_io_done_func_t(zio_t
*zio
);
64 typedef void vdev_state_change_func_t(vdev_t
*vd
, int, int);
66 typedef struct vdev_ops
{
67 vdev_open_func_t
*vdev_op_open
;
68 vdev_close_func_t
*vdev_op_close
;
69 vdev_asize_func_t
*vdev_op_asize
;
70 vdev_io_start_func_t
*vdev_op_io_start
;
71 vdev_io_done_func_t
*vdev_op_io_done
;
72 vdev_state_change_func_t
*vdev_op_state_change
;
73 char vdev_op_type
[16];
74 boolean_t vdev_op_leaf
;
78 * Virtual device properties
80 struct vdev_cache_entry
{
84 avl_node_t ve_offset_node
;
85 avl_node_t ve_lastused_node
;
87 uint16_t ve_missed_update
;
92 avl_tree_t vc_offset_tree
;
93 avl_tree_t vc_lastused_tree
;
98 avl_tree_t vq_deadline_tree
;
99 avl_tree_t vq_read_tree
;
100 avl_tree_t vq_write_tree
;
101 avl_tree_t vq_pending_tree
;
106 * Virtual device descriptor
110 * Common to all vdev types.
112 uint64_t vdev_id
; /* child number in vdev parent */
113 uint64_t vdev_guid
; /* unique ID for this vdev */
114 uint64_t vdev_guid_sum
; /* self guid + all child guids */
115 uint64_t vdev_asize
; /* allocatable device capacity */
116 uint64_t vdev_ashift
; /* block alignment shift */
117 uint64_t vdev_state
; /* see VDEV_STATE_* #defines */
118 uint64_t vdev_prevstate
; /* used when reopening a vdev */
119 vdev_ops_t
*vdev_ops
; /* vdev operations */
120 spa_t
*vdev_spa
; /* spa for this vdev */
121 void *vdev_tsd
; /* type-specific data */
122 vdev_t
*vdev_top
; /* top-level vdev */
123 vdev_t
*vdev_parent
; /* parent vdev */
124 vdev_t
**vdev_child
; /* array of children */
125 uint64_t vdev_children
; /* number of children */
126 space_map_t vdev_dtl
[DTL_TYPES
]; /* in-core dirty time logs */
127 vdev_stat_t vdev_stat
; /* virtual device statistics */
130 * Top-level vdev state.
132 uint64_t vdev_ms_array
; /* metaslab array object */
133 uint64_t vdev_ms_shift
; /* metaslab size shift */
134 uint64_t vdev_ms_count
; /* number of metaslabs */
135 metaslab_group_t
*vdev_mg
; /* metaslab group */
136 metaslab_t
**vdev_ms
; /* metaslab array */
137 txg_list_t vdev_ms_list
; /* per-txg dirty metaslab lists */
138 txg_list_t vdev_dtl_list
; /* per-txg dirty DTL lists */
139 txg_node_t vdev_txg_node
; /* per-txg dirty vdev linkage */
140 boolean_t vdev_remove_wanted
; /* async remove wanted? */
141 boolean_t vdev_probe_wanted
; /* async probe wanted? */
142 list_node_t vdev_config_dirty_node
; /* config dirty list */
143 list_node_t vdev_state_dirty_node
; /* state dirty list */
144 uint64_t vdev_deflate_ratio
; /* deflation ratio (x512) */
145 uint64_t vdev_islog
; /* is an intent log device */
150 uint64_t vdev_psize
; /* physical device capacity */
151 space_map_obj_t vdev_dtl_smo
; /* dirty time log space map obj */
152 txg_node_t vdev_dtl_node
; /* per-txg dirty DTL linkage */
153 uint64_t vdev_wholedisk
; /* true if this is a whole disk */
154 uint64_t vdev_offline
; /* persistent offline state */
155 uint64_t vdev_faulted
; /* persistent faulted state */
156 uint64_t vdev_degraded
; /* persistent degraded state */
157 uint64_t vdev_removed
; /* persistent removed state */
158 uint64_t vdev_nparity
; /* number of parity devices for raidz */
159 char *vdev_path
; /* vdev path (if any) */
160 char *vdev_devid
; /* vdev devid (if any) */
161 char *vdev_physpath
; /* vdev device path (if any) */
162 char *vdev_fru
; /* physical FRU location */
163 uint64_t vdev_not_present
; /* not present during import */
164 uint64_t vdev_unspare
; /* unspare when resilvering done */
165 hrtime_t vdev_last_try
; /* last reopen time */
166 boolean_t vdev_nowritecache
; /* true if flushwritecache failed */
167 boolean_t vdev_checkremove
; /* temporary online test */
168 boolean_t vdev_forcefault
; /* force online fault */
169 uint8_t vdev_tmpoffline
; /* device taken offline temporarily? */
170 uint8_t vdev_detached
; /* device detached? */
171 uint8_t vdev_cant_read
; /* vdev is failing all reads */
172 uint8_t vdev_cant_write
; /* vdev is failing all writes */
173 uint64_t vdev_isspare
; /* was a hot spare */
174 uint64_t vdev_isl2cache
; /* was a l2cache device */
175 vdev_queue_t vdev_queue
; /* I/O deadline schedule queue */
176 vdev_cache_t vdev_cache
; /* physical block cache */
177 spa_aux_vdev_t
*vdev_aux
; /* for l2cache vdevs */
178 zio_t
*vdev_probe_zio
; /* root of current probe */
181 * For DTrace to work in userland (libzpool) context, these fields must
182 * remain at the end of the structure. DTrace will use the kernel's
183 * CTF definition for 'struct vdev', and since the size of a kmutex_t is
184 * larger in userland, the offsets for the rest fields would be
187 kmutex_t vdev_dtl_lock
; /* vdev_dtl_{map,resilver} */
188 kmutex_t vdev_stat_lock
; /* vdev_stat */
189 kmutex_t vdev_probe_lock
; /* protects vdev_probe_zio */
192 #define VDEV_PAD_SIZE (8 << 10)
193 /* 2 padding areas (vl_pad1 and vl_pad2) to skip */
194 #define VDEV_SKIP_SIZE VDEV_PAD_SIZE * 2
195 #define VDEV_PHYS_SIZE (112 << 10)
196 #define VDEV_UBERBLOCK_RING (128 << 10)
198 #define VDEV_UBERBLOCK_SHIFT(vd) \
199 MAX((vd)->vdev_top->vdev_ashift, UBERBLOCK_SHIFT)
200 #define VDEV_UBERBLOCK_COUNT(vd) \
201 (VDEV_UBERBLOCK_RING >> VDEV_UBERBLOCK_SHIFT(vd))
202 #define VDEV_UBERBLOCK_OFFSET(vd, n) \
203 offsetof(vdev_label_t, vl_uberblock[(n) << VDEV_UBERBLOCK_SHIFT(vd)])
204 #define VDEV_UBERBLOCK_SIZE(vd) (1ULL << VDEV_UBERBLOCK_SHIFT(vd))
206 typedef struct vdev_phys
{
207 char vp_nvlist
[VDEV_PHYS_SIZE
- sizeof (zio_block_tail_t
)];
208 zio_block_tail_t vp_zbt
;
211 typedef struct vdev_label
{
212 char vl_pad1
[VDEV_PAD_SIZE
]; /* 8K */
213 char vl_pad2
[VDEV_PAD_SIZE
]; /* 8K */
214 vdev_phys_t vl_vdev_phys
; /* 112K */
215 char vl_uberblock
[VDEV_UBERBLOCK_RING
]; /* 128K */
216 } vdev_label_t
; /* 256K total */
221 #define VDD_METASLAB 0x01
225 * Size and offset of embedded boot loader region on each label.
226 * The total size of the first two labels plus the boot area is 4MB.
228 #define VDEV_BOOT_OFFSET (2 * sizeof (vdev_label_t))
229 #define VDEV_BOOT_SIZE (7ULL << 19) /* 3.5M */
232 * Size of label regions at the start and end of each leaf device.
234 #define VDEV_LABEL_START_SIZE (2 * sizeof (vdev_label_t) + VDEV_BOOT_SIZE)
235 #define VDEV_LABEL_END_SIZE (2 * sizeof (vdev_label_t))
236 #define VDEV_LABELS 4
238 #define VDEV_ALLOC_LOAD 0
239 #define VDEV_ALLOC_ADD 1
240 #define VDEV_ALLOC_SPARE 2
241 #define VDEV_ALLOC_L2CACHE 3
244 * Allocate or free a vdev
246 extern int vdev_alloc(spa_t
*spa
, vdev_t
**vdp
, nvlist_t
*config
,
247 vdev_t
*parent
, uint_t id
, int alloctype
);
248 extern void vdev_free(vdev_t
*vd
);
251 * Add or remove children and parents
253 extern void vdev_add_child(vdev_t
*pvd
, vdev_t
*cvd
);
254 extern void vdev_remove_child(vdev_t
*pvd
, vdev_t
*cvd
);
255 extern void vdev_compact_children(vdev_t
*pvd
);
256 extern vdev_t
*vdev_add_parent(vdev_t
*cvd
, vdev_ops_t
*ops
);
257 extern void vdev_remove_parent(vdev_t
*cvd
);
260 * vdev sync load and sync
262 extern void vdev_load_log_state(vdev_t
*vd
, nvlist_t
*nv
);
263 extern void vdev_load(vdev_t
*vd
);
264 extern void vdev_sync(vdev_t
*vd
, uint64_t txg
);
265 extern void vdev_sync_done(vdev_t
*vd
, uint64_t txg
);
266 extern void vdev_dirty(vdev_t
*vd
, int flags
, void *arg
, uint64_t txg
);
269 * Available vdev types.
271 extern vdev_ops_t vdev_root_ops
;
272 extern vdev_ops_t vdev_mirror_ops
;
273 extern vdev_ops_t vdev_replacing_ops
;
274 extern vdev_ops_t vdev_raidz_ops
;
275 extern vdev_ops_t vdev_disk_ops
;
276 extern vdev_ops_t vdev_file_ops
;
277 extern vdev_ops_t vdev_missing_ops
;
278 extern vdev_ops_t vdev_spare_ops
;
281 * Common size functions
283 extern uint64_t vdev_default_asize(vdev_t
*vd
, uint64_t psize
);
284 extern uint64_t vdev_get_rsize(vdev_t
*vd
);
287 * zdb uses this tunable, so it must be declared here to make lint happy.
289 extern int zfs_vdev_cache_size
;
295 #endif /* _SYS_VDEV_IMPL_H */