2 * Copyright (C) 2011 Red Hat, Inc.
4 * This file is released under the GPL.
7 #include "dm-space-map-common.h"
8 #include "dm-space-map-disk.h"
9 #include "dm-space-map.h"
10 #include "dm-transaction-manager.h"
12 #include <linux/list.h>
13 #include <linux/slab.h>
14 #include <linux/export.h>
15 #include <linux/device-mapper.h>
17 #define DM_MSG_PREFIX "space map disk"
19 /*----------------------------------------------------------------*/
22 * Space map interface.
25 struct dm_space_map sm
;
28 struct ll_disk old_ll
;
31 dm_block_t nr_allocated_this_transaction
;
34 static void sm_disk_destroy(struct dm_space_map
*sm
)
36 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
41 static int sm_disk_extend(struct dm_space_map
*sm
, dm_block_t extra_blocks
)
43 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
45 return sm_ll_extend(&smd
->ll
, extra_blocks
);
48 static int sm_disk_get_nr_blocks(struct dm_space_map
*sm
, dm_block_t
*count
)
50 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
51 *count
= smd
->old_ll
.nr_blocks
;
56 static int sm_disk_get_nr_free(struct dm_space_map
*sm
, dm_block_t
*count
)
58 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
59 *count
= (smd
->old_ll
.nr_blocks
- smd
->old_ll
.nr_allocated
) - smd
->nr_allocated_this_transaction
;
64 static int sm_disk_get_count(struct dm_space_map
*sm
, dm_block_t b
,
67 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
68 return sm_ll_lookup(&smd
->ll
, b
, result
);
71 static int sm_disk_count_is_more_than_one(struct dm_space_map
*sm
, dm_block_t b
,
77 r
= sm_disk_get_count(sm
, b
, &count
);
86 static int sm_disk_set_count(struct dm_space_map
*sm
, dm_block_t b
,
91 enum allocation_event ev
;
92 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
94 r
= sm_ll_insert(&smd
->ll
, b
, count
, &ev
);
102 * This _must_ be free in the prior transaction
103 * otherwise we've lost atomicity.
105 smd
->nr_allocated_this_transaction
++;
110 * It's only free if it's also free in the last
113 r
= sm_ll_lookup(&smd
->old_ll
, b
, &old_count
);
118 smd
->nr_allocated_this_transaction
--;
126 static int sm_disk_inc_block(struct dm_space_map
*sm
, dm_block_t b
)
129 enum allocation_event ev
;
130 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
132 r
= sm_ll_inc(&smd
->ll
, b
, &ev
);
133 if (!r
&& (ev
== SM_ALLOC
))
135 * This _must_ be free in the prior transaction
136 * otherwise we've lost atomicity.
138 smd
->nr_allocated_this_transaction
++;
143 static int sm_disk_dec_block(struct dm_space_map
*sm
, dm_block_t b
)
147 enum allocation_event ev
;
148 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
150 r
= sm_ll_dec(&smd
->ll
, b
, &ev
);
151 if (!r
&& (ev
== SM_FREE
)) {
153 * It's only free if it's also free in the last
156 r
= sm_ll_lookup(&smd
->old_ll
, b
, &old_count
);
157 if (!r
&& !old_count
)
158 smd
->nr_allocated_this_transaction
--;
164 static int sm_disk_new_block(struct dm_space_map
*sm
, dm_block_t
*b
)
167 enum allocation_event ev
;
168 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
171 * Any block we allocate has to be free in both the old and current ll.
173 r
= sm_ll_find_common_free_block(&smd
->old_ll
, &smd
->ll
, smd
->begin
, smd
->ll
.nr_blocks
, b
);
178 r
= sm_ll_inc(&smd
->ll
, *b
, &ev
);
180 BUG_ON(ev
!= SM_ALLOC
);
181 smd
->nr_allocated_this_transaction
++;
187 static int sm_disk_commit(struct dm_space_map
*sm
)
191 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
193 r
= sm_disk_get_nr_free(sm
, &nr_free
);
197 r
= sm_ll_commit(&smd
->ll
);
201 memcpy(&smd
->old_ll
, &smd
->ll
, sizeof(smd
->old_ll
));
203 smd
->nr_allocated_this_transaction
= 0;
205 r
= sm_disk_get_nr_free(sm
, &nr_free
);
212 static int sm_disk_root_size(struct dm_space_map
*sm
, size_t *result
)
214 *result
= sizeof(struct disk_sm_root
);
219 static int sm_disk_copy_root(struct dm_space_map
*sm
, void *where_le
, size_t max
)
221 struct sm_disk
*smd
= container_of(sm
, struct sm_disk
, sm
);
222 struct disk_sm_root root_le
;
224 root_le
.nr_blocks
= cpu_to_le64(smd
->ll
.nr_blocks
);
225 root_le
.nr_allocated
= cpu_to_le64(smd
->ll
.nr_allocated
);
226 root_le
.bitmap_root
= cpu_to_le64(smd
->ll
.bitmap_root
);
227 root_le
.ref_count_root
= cpu_to_le64(smd
->ll
.ref_count_root
);
229 if (max
< sizeof(root_le
))
232 memcpy(where_le
, &root_le
, sizeof(root_le
));
237 /*----------------------------------------------------------------*/
239 static struct dm_space_map ops
= {
240 .destroy
= sm_disk_destroy
,
241 .extend
= sm_disk_extend
,
242 .get_nr_blocks
= sm_disk_get_nr_blocks
,
243 .get_nr_free
= sm_disk_get_nr_free
,
244 .get_count
= sm_disk_get_count
,
245 .count_is_more_than_one
= sm_disk_count_is_more_than_one
,
246 .set_count
= sm_disk_set_count
,
247 .inc_block
= sm_disk_inc_block
,
248 .dec_block
= sm_disk_dec_block
,
249 .new_block
= sm_disk_new_block
,
250 .commit
= sm_disk_commit
,
251 .root_size
= sm_disk_root_size
,
252 .copy_root
= sm_disk_copy_root
,
253 .register_threshold_callback
= NULL
256 struct dm_space_map
*dm_sm_disk_create(struct dm_transaction_manager
*tm
,
257 dm_block_t nr_blocks
)
262 smd
= kmalloc(sizeof(*smd
), GFP_KERNEL
);
264 return ERR_PTR(-ENOMEM
);
267 smd
->nr_allocated_this_transaction
= 0;
268 memcpy(&smd
->sm
, &ops
, sizeof(smd
->sm
));
270 r
= sm_ll_new_disk(&smd
->ll
, tm
);
274 r
= sm_ll_extend(&smd
->ll
, nr_blocks
);
278 r
= sm_disk_commit(&smd
->sm
);
288 EXPORT_SYMBOL_GPL(dm_sm_disk_create
);
290 struct dm_space_map
*dm_sm_disk_open(struct dm_transaction_manager
*tm
,
291 void *root_le
, size_t len
)
296 smd
= kmalloc(sizeof(*smd
), GFP_KERNEL
);
298 return ERR_PTR(-ENOMEM
);
301 smd
->nr_allocated_this_transaction
= 0;
302 memcpy(&smd
->sm
, &ops
, sizeof(smd
->sm
));
304 r
= sm_ll_open_disk(&smd
->ll
, tm
, root_le
, len
);
308 r
= sm_disk_commit(&smd
->sm
);
318 EXPORT_SYMBOL_GPL(dm_sm_disk_open
);
320 /*----------------------------------------------------------------*/