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quota: Store maximum space limit in bytes
[karo-tx-linux.git] / fs / quota / quota_v2.c
1 /*
2  *      vfsv0 quota IO operations on file
3  */
4
5 #include <linux/errno.h>
6 #include <linux/fs.h>
7 #include <linux/mount.h>
8 #include <linux/dqblk_v2.h>
9 #include <linux/kernel.h>
10 #include <linux/init.h>
11 #include <linux/module.h>
12 #include <linux/slab.h>
13 #include <linux/quotaops.h>
14
15 #include <asm/byteorder.h>
16
17 #include "quota_tree.h"
18 #include "quotaio_v2.h"
19
20 MODULE_AUTHOR("Jan Kara");
21 MODULE_DESCRIPTION("Quota format v2 support");
22 MODULE_LICENSE("GPL");
23
24 #define __QUOTA_V2_PARANOIA
25
26 static void v2r0_mem2diskdqb(void *dp, struct dquot *dquot);
27 static void v2r0_disk2memdqb(struct dquot *dquot, void *dp);
28 static int v2r0_is_id(void *dp, struct dquot *dquot);
29 static void v2r1_mem2diskdqb(void *dp, struct dquot *dquot);
30 static void v2r1_disk2memdqb(struct dquot *dquot, void *dp);
31 static int v2r1_is_id(void *dp, struct dquot *dquot);
32
33 static struct qtree_fmt_operations v2r0_qtree_ops = {
34         .mem2disk_dqblk = v2r0_mem2diskdqb,
35         .disk2mem_dqblk = v2r0_disk2memdqb,
36         .is_id = v2r0_is_id,
37 };
38
39 static struct qtree_fmt_operations v2r1_qtree_ops = {
40         .mem2disk_dqblk = v2r1_mem2diskdqb,
41         .disk2mem_dqblk = v2r1_disk2memdqb,
42         .is_id = v2r1_is_id,
43 };
44
45 #define QUOTABLOCK_BITS 10
46 #define QUOTABLOCK_SIZE (1 << QUOTABLOCK_BITS)
47
48 static inline qsize_t v2_stoqb(qsize_t space)
49 {
50         return (space + QUOTABLOCK_SIZE - 1) >> QUOTABLOCK_BITS;
51 }
52
53 static inline qsize_t v2_qbtos(qsize_t blocks)
54 {
55         return blocks << QUOTABLOCK_BITS;
56 }
57
58 static int v2_read_header(struct super_block *sb, int type,
59                           struct v2_disk_dqheader *dqhead)
60 {
61         ssize_t size;
62
63         size = sb->s_op->quota_read(sb, type, (char *)dqhead,
64                                     sizeof(struct v2_disk_dqheader), 0);
65         if (size != sizeof(struct v2_disk_dqheader)) {
66                 quota_error(sb, "Failed header read: expected=%zd got=%zd",
67                             sizeof(struct v2_disk_dqheader), size);
68                 return 0;
69         }
70         return 1;
71 }
72
73 /* Check whether given file is really vfsv0 quotafile */
74 static int v2_check_quota_file(struct super_block *sb, int type)
75 {
76         struct v2_disk_dqheader dqhead;
77         static const uint quota_magics[] = V2_INITQMAGICS;
78         static const uint quota_versions[] = V2_INITQVERSIONS;
79  
80         if (!v2_read_header(sb, type, &dqhead))
81                 return 0;
82         if (le32_to_cpu(dqhead.dqh_magic) != quota_magics[type] ||
83             le32_to_cpu(dqhead.dqh_version) > quota_versions[type])
84                 return 0;
85         return 1;
86 }
87
88 /* Read information header from quota file */
89 static int v2_read_file_info(struct super_block *sb, int type)
90 {
91         struct v2_disk_dqinfo dinfo;
92         struct v2_disk_dqheader dqhead;
93         struct mem_dqinfo *info = sb_dqinfo(sb, type);
94         struct qtree_mem_dqinfo *qinfo;
95         ssize_t size;
96         unsigned int version;
97
98         if (!v2_read_header(sb, type, &dqhead))
99                 return -1;
100         version = le32_to_cpu(dqhead.dqh_version);
101         if ((info->dqi_fmt_id == QFMT_VFS_V0 && version != 0) ||
102             (info->dqi_fmt_id == QFMT_VFS_V1 && version != 1))
103                 return -1;
104
105         size = sb->s_op->quota_read(sb, type, (char *)&dinfo,
106                sizeof(struct v2_disk_dqinfo), V2_DQINFOOFF);
107         if (size != sizeof(struct v2_disk_dqinfo)) {
108                 quota_error(sb, "Can't read info structure");
109                 return -1;
110         }
111         info->dqi_priv = kmalloc(sizeof(struct qtree_mem_dqinfo), GFP_NOFS);
112         if (!info->dqi_priv) {
113                 printk(KERN_WARNING
114                        "Not enough memory for quota information structure.\n");
115                 return -ENOMEM;
116         }
117         qinfo = info->dqi_priv;
118         if (version == 0) {
119                 /* limits are stored as unsigned 32-bit data */
120                 info->dqi_max_spc_limit = 0xffffffffULL << QUOTABLOCK_BITS;
121                 info->dqi_max_ino_limit = 0xffffffff;
122         } else {
123                 /* used space is stored as unsigned 64-bit value in bytes */
124                 info->dqi_max_spc_limit = 0xffffffffffffffffULL; /* 2^64-1 */
125                 info->dqi_max_ino_limit = 0xffffffffffffffffULL;
126         }
127         info->dqi_bgrace = le32_to_cpu(dinfo.dqi_bgrace);
128         info->dqi_igrace = le32_to_cpu(dinfo.dqi_igrace);
129         /* No flags currently supported */
130         info->dqi_flags = 0;
131         qinfo->dqi_sb = sb;
132         qinfo->dqi_type = type;
133         qinfo->dqi_blocks = le32_to_cpu(dinfo.dqi_blocks);
134         qinfo->dqi_free_blk = le32_to_cpu(dinfo.dqi_free_blk);
135         qinfo->dqi_free_entry = le32_to_cpu(dinfo.dqi_free_entry);
136         qinfo->dqi_blocksize_bits = V2_DQBLKSIZE_BITS;
137         qinfo->dqi_usable_bs = 1 << V2_DQBLKSIZE_BITS;
138         qinfo->dqi_qtree_depth = qtree_depth(qinfo);
139         if (version == 0) {
140                 qinfo->dqi_entry_size = sizeof(struct v2r0_disk_dqblk);
141                 qinfo->dqi_ops = &v2r0_qtree_ops;
142         } else {
143                 qinfo->dqi_entry_size = sizeof(struct v2r1_disk_dqblk);
144                 qinfo->dqi_ops = &v2r1_qtree_ops;
145         }
146         return 0;
147 }
148
149 /* Write information header to quota file */
150 static int v2_write_file_info(struct super_block *sb, int type)
151 {
152         struct v2_disk_dqinfo dinfo;
153         struct mem_dqinfo *info = sb_dqinfo(sb, type);
154         struct qtree_mem_dqinfo *qinfo = info->dqi_priv;
155         ssize_t size;
156
157         spin_lock(&dq_data_lock);
158         info->dqi_flags &= ~DQF_INFO_DIRTY;
159         dinfo.dqi_bgrace = cpu_to_le32(info->dqi_bgrace);
160         dinfo.dqi_igrace = cpu_to_le32(info->dqi_igrace);
161         /* No flags currently supported */
162         dinfo.dqi_flags = cpu_to_le32(0);
163         spin_unlock(&dq_data_lock);
164         dinfo.dqi_blocks = cpu_to_le32(qinfo->dqi_blocks);
165         dinfo.dqi_free_blk = cpu_to_le32(qinfo->dqi_free_blk);
166         dinfo.dqi_free_entry = cpu_to_le32(qinfo->dqi_free_entry);
167         size = sb->s_op->quota_write(sb, type, (char *)&dinfo,
168                sizeof(struct v2_disk_dqinfo), V2_DQINFOOFF);
169         if (size != sizeof(struct v2_disk_dqinfo)) {
170                 quota_error(sb, "Can't write info structure");
171                 return -1;
172         }
173         return 0;
174 }
175
176 static void v2r0_disk2memdqb(struct dquot *dquot, void *dp)
177 {
178         struct v2r0_disk_dqblk *d = dp, empty;
179         struct mem_dqblk *m = &dquot->dq_dqb;
180
181         m->dqb_ihardlimit = le32_to_cpu(d->dqb_ihardlimit);
182         m->dqb_isoftlimit = le32_to_cpu(d->dqb_isoftlimit);
183         m->dqb_curinodes = le32_to_cpu(d->dqb_curinodes);
184         m->dqb_itime = le64_to_cpu(d->dqb_itime);
185         m->dqb_bhardlimit = v2_qbtos(le32_to_cpu(d->dqb_bhardlimit));
186         m->dqb_bsoftlimit = v2_qbtos(le32_to_cpu(d->dqb_bsoftlimit));
187         m->dqb_curspace = le64_to_cpu(d->dqb_curspace);
188         m->dqb_btime = le64_to_cpu(d->dqb_btime);
189         /* We need to escape back all-zero structure */
190         memset(&empty, 0, sizeof(struct v2r0_disk_dqblk));
191         empty.dqb_itime = cpu_to_le64(1);
192         if (!memcmp(&empty, dp, sizeof(struct v2r0_disk_dqblk)))
193                 m->dqb_itime = 0;
194 }
195
196 static void v2r0_mem2diskdqb(void *dp, struct dquot *dquot)
197 {
198         struct v2r0_disk_dqblk *d = dp;
199         struct mem_dqblk *m = &dquot->dq_dqb;
200         struct qtree_mem_dqinfo *info =
201                         sb_dqinfo(dquot->dq_sb, dquot->dq_id.type)->dqi_priv;
202
203         d->dqb_ihardlimit = cpu_to_le32(m->dqb_ihardlimit);
204         d->dqb_isoftlimit = cpu_to_le32(m->dqb_isoftlimit);
205         d->dqb_curinodes = cpu_to_le32(m->dqb_curinodes);
206         d->dqb_itime = cpu_to_le64(m->dqb_itime);
207         d->dqb_bhardlimit = cpu_to_le32(v2_stoqb(m->dqb_bhardlimit));
208         d->dqb_bsoftlimit = cpu_to_le32(v2_stoqb(m->dqb_bsoftlimit));
209         d->dqb_curspace = cpu_to_le64(m->dqb_curspace);
210         d->dqb_btime = cpu_to_le64(m->dqb_btime);
211         d->dqb_id = cpu_to_le32(from_kqid(&init_user_ns, dquot->dq_id));
212         if (qtree_entry_unused(info, dp))
213                 d->dqb_itime = cpu_to_le64(1);
214 }
215
216 static int v2r0_is_id(void *dp, struct dquot *dquot)
217 {
218         struct v2r0_disk_dqblk *d = dp;
219         struct qtree_mem_dqinfo *info =
220                         sb_dqinfo(dquot->dq_sb, dquot->dq_id.type)->dqi_priv;
221
222         if (qtree_entry_unused(info, dp))
223                 return 0;
224         return qid_eq(make_kqid(&init_user_ns, dquot->dq_id.type,
225                                 le32_to_cpu(d->dqb_id)),
226                       dquot->dq_id);
227 }
228
229 static void v2r1_disk2memdqb(struct dquot *dquot, void *dp)
230 {
231         struct v2r1_disk_dqblk *d = dp, empty;
232         struct mem_dqblk *m = &dquot->dq_dqb;
233
234         m->dqb_ihardlimit = le64_to_cpu(d->dqb_ihardlimit);
235         m->dqb_isoftlimit = le64_to_cpu(d->dqb_isoftlimit);
236         m->dqb_curinodes = le64_to_cpu(d->dqb_curinodes);
237         m->dqb_itime = le64_to_cpu(d->dqb_itime);
238         m->dqb_bhardlimit = v2_qbtos(le64_to_cpu(d->dqb_bhardlimit));
239         m->dqb_bsoftlimit = v2_qbtos(le64_to_cpu(d->dqb_bsoftlimit));
240         m->dqb_curspace = le64_to_cpu(d->dqb_curspace);
241         m->dqb_btime = le64_to_cpu(d->dqb_btime);
242         /* We need to escape back all-zero structure */
243         memset(&empty, 0, sizeof(struct v2r1_disk_dqblk));
244         empty.dqb_itime = cpu_to_le64(1);
245         if (!memcmp(&empty, dp, sizeof(struct v2r1_disk_dqblk)))
246                 m->dqb_itime = 0;
247 }
248
249 static void v2r1_mem2diskdqb(void *dp, struct dquot *dquot)
250 {
251         struct v2r1_disk_dqblk *d = dp;
252         struct mem_dqblk *m = &dquot->dq_dqb;
253         struct qtree_mem_dqinfo *info =
254                         sb_dqinfo(dquot->dq_sb, dquot->dq_id.type)->dqi_priv;
255
256         d->dqb_ihardlimit = cpu_to_le64(m->dqb_ihardlimit);
257         d->dqb_isoftlimit = cpu_to_le64(m->dqb_isoftlimit);
258         d->dqb_curinodes = cpu_to_le64(m->dqb_curinodes);
259         d->dqb_itime = cpu_to_le64(m->dqb_itime);
260         d->dqb_bhardlimit = cpu_to_le64(v2_stoqb(m->dqb_bhardlimit));
261         d->dqb_bsoftlimit = cpu_to_le64(v2_stoqb(m->dqb_bsoftlimit));
262         d->dqb_curspace = cpu_to_le64(m->dqb_curspace);
263         d->dqb_btime = cpu_to_le64(m->dqb_btime);
264         d->dqb_id = cpu_to_le32(from_kqid(&init_user_ns, dquot->dq_id));
265         if (qtree_entry_unused(info, dp))
266                 d->dqb_itime = cpu_to_le64(1);
267 }
268
269 static int v2r1_is_id(void *dp, struct dquot *dquot)
270 {
271         struct v2r1_disk_dqblk *d = dp;
272         struct qtree_mem_dqinfo *info =
273                         sb_dqinfo(dquot->dq_sb, dquot->dq_id.type)->dqi_priv;
274
275         if (qtree_entry_unused(info, dp))
276                 return 0;
277         return qid_eq(make_kqid(&init_user_ns, dquot->dq_id.type,
278                                 le32_to_cpu(d->dqb_id)),
279                       dquot->dq_id);
280 }
281
282 static int v2_read_dquot(struct dquot *dquot)
283 {
284         return qtree_read_dquot(sb_dqinfo(dquot->dq_sb, dquot->dq_id.type)->dqi_priv, dquot);
285 }
286
287 static int v2_write_dquot(struct dquot *dquot)
288 {
289         return qtree_write_dquot(sb_dqinfo(dquot->dq_sb, dquot->dq_id.type)->dqi_priv, dquot);
290 }
291
292 static int v2_release_dquot(struct dquot *dquot)
293 {
294         return qtree_release_dquot(sb_dqinfo(dquot->dq_sb, dquot->dq_id.type)->dqi_priv, dquot);
295 }
296
297 static int v2_free_file_info(struct super_block *sb, int type)
298 {
299         kfree(sb_dqinfo(sb, type)->dqi_priv);
300         return 0;
301 }
302
303 static const struct quota_format_ops v2_format_ops = {
304         .check_quota_file       = v2_check_quota_file,
305         .read_file_info         = v2_read_file_info,
306         .write_file_info        = v2_write_file_info,
307         .free_file_info         = v2_free_file_info,
308         .read_dqblk             = v2_read_dquot,
309         .commit_dqblk           = v2_write_dquot,
310         .release_dqblk          = v2_release_dquot,
311 };
312
313 static struct quota_format_type v2r0_quota_format = {
314         .qf_fmt_id      = QFMT_VFS_V0,
315         .qf_ops         = &v2_format_ops,
316         .qf_owner       = THIS_MODULE
317 };
318
319 static struct quota_format_type v2r1_quota_format = {
320         .qf_fmt_id      = QFMT_VFS_V1,
321         .qf_ops         = &v2_format_ops,
322         .qf_owner       = THIS_MODULE
323 };
324
325 static int __init init_v2_quota_format(void)
326 {
327         int ret;
328
329         ret = register_quota_format(&v2r0_quota_format);
330         if (ret)
331                 return ret;
332         return register_quota_format(&v2r1_quota_format);
333 }
334
335 static void __exit exit_v2_quota_format(void)
336 {
337         unregister_quota_format(&v2r0_quota_format);
338         unregister_quota_format(&v2r1_quota_format);
339 }
340
341 module_init(init_v2_quota_format);
342 module_exit(exit_v2_quota_format);