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1
/*
1
/*
2
 * Copyright (c) 2008 Jakub Jermar
2
 * Copyright (c) 2008 Jakub Jermar
3
 * All rights reserved.
3
 * All rights reserved.
4
 *
4
 *
5
 * Redistribution and use in source and binary forms, with or without
5
 * Redistribution and use in source and binary forms, with or without
6
 * modification, are permitted provided that the following conditions
6
 * modification, are permitted provided that the following conditions
7
 * are met:
7
 * are met:
8
 *
8
 *
9
 * - Redistributions of source code must retain the above copyright
9
 * - Redistributions of source code must retain the above copyright
10
 *   notice, this list of conditions and the following disclaimer.
10
 *   notice, this list of conditions and the following disclaimer.
11
 * - Redistributions in binary form must reproduce the above copyright
11
 * - Redistributions in binary form must reproduce the above copyright
12
 *   notice, this list of conditions and the following disclaimer in the
12
 *   notice, this list of conditions and the following disclaimer in the
13
 *   documentation and/or other materials provided with the distribution.
13
 *   documentation and/or other materials provided with the distribution.
14
 * - The name of the author may not be used to endorse or promote products
14
 * - The name of the author may not be used to endorse or promote products
15
 *   derived from this software without specific prior written permission.
15
 *   derived from this software without specific prior written permission.
16
 *
16
 *
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
 */
27
 */
28
 
28
 
29
/** @addtogroup fs
29
/** @addtogroup fs
30
 * @{
30
 * @{
31
 */
31
 */
32
 
32
 
33
/**
33
/**
34
 * @file    fat_idx.c
34
 * @file    fat_idx.c
35
 * @brief   Layer for translating FAT entities to VFS node indices.
35
 * @brief   Layer for translating FAT entities to VFS node indices.
36
 */
36
 */
37
 
37
 
38
#include "fat.h"
38
#include "fat.h"
39
#include "../../vfs/vfs.h"
39
#include "../../vfs/vfs.h"
40
#include <errno.h>
40
#include <errno.h>
41
#include <string.h>
41
#include <string.h>
42
#include <libadt/hash_table.h>
42
#include <libadt/hash_table.h>
43
#include <libadt/list.h>
43
#include <libadt/list.h>
44
#include <assert.h>
44
#include <assert.h>
45
#include <futex.h>
45
#include <futex.h>
46
 
46
 
47
/** Each instance of this type describes one interval of freed VFS indices. */
47
/** Each instance of this type describes one interval of freed VFS indices. */
48
typedef struct {
48
typedef struct {
49
    link_t      link;
49
    link_t      link;
50
    fs_index_t  first;
50
    fs_index_t  first;
51
    fs_index_t  last;
51
    fs_index_t  last;
52
} freed_t;
52
} freed_t;
53
 
53
 
54
/**
54
/**
55
 * Each instance of this type describes state of all VFS indices that
55
 * Each instance of this type describes state of all VFS indices that
56
 * are currently unused.
56
 * are currently unused.
57
 */
57
 */
58
typedef struct {
58
typedef struct {
59
    link_t      link;
59
    link_t      link;
60
    dev_handle_t    dev_handle;
60
    dev_handle_t    dev_handle;
61
 
61
 
62
    /** Next unassigned index. */
62
    /** Next unassigned index. */
63
    fs_index_t  next;
63
    fs_index_t  next;
64
    /** Number of remaining unassigned indices. */
64
    /** Number of remaining unassigned indices. */
65
    uint64_t    remaining;
65
    uint64_t    remaining;
66
 
66
 
67
    /** Sorted list of intervals of freed indices. */
67
    /** Sorted list of intervals of freed indices. */
68
    link_t      freed_head;
68
    link_t      freed_head;
69
} unused_t;
69
} unused_t;
70
 
70
 
-
 
71
/** Futex protecting the list of unused structures. */
-
 
72
static futex_t unused_futex = FUTEX_INITIALIZER;
-
 
73
 
-
 
74
/** List of unused structures. */
71
static LIST_INITIALIZE(unused_head);
75
static LIST_INITIALIZE(unused_head);
72
 
76
 
-
 
77
/** Futex protecting the up_hash and ui_hash. */
-
 
78
static futex_t used_futex = FUTEX_INITIALIZER;
-
 
79
 
73
/**
80
/**
74
 * Global hash table of all used fat_idx_t structures.
81
 * Global hash table of all used fat_idx_t structures.
75
 * The index structures are hashed by the dev_handle, parent node's first
82
 * The index structures are hashed by the dev_handle, parent node's first
76
 * cluster and index within the parent directory.
83
 * cluster and index within the parent directory.
77
 */
84
 */
78
static hash_table_t up_hash;
85
static hash_table_t up_hash;
79
 
86
 
80
#define UPH_BUCKETS_LOG 12
87
#define UPH_BUCKETS_LOG 12
81
#define UPH_BUCKETS (1 << UPH_BUCKETS_LOG)
88
#define UPH_BUCKETS (1 << UPH_BUCKETS_LOG)
82
 
89
 
83
#define UPH_DH_KEY  0
90
#define UPH_DH_KEY  0
84
#define UPH_PFC_KEY 1
91
#define UPH_PFC_KEY 1
85
#define UPH_PDI_KEY 2
92
#define UPH_PDI_KEY 2
86
 
93
 
87
static hash_index_t pos_hash(unsigned long key[])
94
static hash_index_t pos_hash(unsigned long key[])
88
{
95
{
89
    dev_handle_t dev_handle = (dev_handle_t)key[UPH_DH_KEY];
96
    dev_handle_t dev_handle = (dev_handle_t)key[UPH_DH_KEY];
90
    fat_cluster_t pfc = (fat_cluster_t)key[UPH_PFC_KEY];
97
    fat_cluster_t pfc = (fat_cluster_t)key[UPH_PFC_KEY];
91
    unsigned pdi = (unsigned)key[UPH_PDI_KEY];
98
    unsigned pdi = (unsigned)key[UPH_PDI_KEY];
92
 
99
 
93
    hash_index_t h;
100
    hash_index_t h;
94
 
101
 
95
    /*
102
    /*
96
     * The least significant half of all bits are the least significant bits
103
     * The least significant half of all bits are the least significant bits
97
     * of the parent node's first cluster.
104
     * of the parent node's first cluster.
98
     *
105
     *
99
     * The least significant half of the most significant half of all bits
106
     * The least significant half of the most significant half of all bits
100
     * are the least significant bits of the node's dentry index within the
107
     * are the least significant bits of the node's dentry index within the
101
     * parent directory node.
108
     * parent directory node.
102
     *
109
     *
103
     * The most significant half of the most significant half of all bits
110
     * The most significant half of the most significant half of all bits
104
     * are the least significant bits of the device handle.
111
     * are the least significant bits of the device handle.
105
     */
112
     */
106
    h = pfc & ((1 << (UPH_BUCKETS_LOG / 2)) - 1);
113
    h = pfc & ((1 << (UPH_BUCKETS_LOG / 2)) - 1);
107
    h |= (pdi & ((1 << (UPH_BUCKETS_LOG / 4)) - 1)) <<
114
    h |= (pdi & ((1 << (UPH_BUCKETS_LOG / 4)) - 1)) <<
108
        (UPH_BUCKETS_LOG / 2);
115
        (UPH_BUCKETS_LOG / 2);
109
    h |= (dev_handle & ((1 << (UPH_BUCKETS_LOG / 4)) - 1)) <<
116
    h |= (dev_handle & ((1 << (UPH_BUCKETS_LOG / 4)) - 1)) <<
110
        (3 * (UPH_BUCKETS_LOG / 4));
117
        (3 * (UPH_BUCKETS_LOG / 4));
111
 
118
 
112
    return h;
119
    return h;
113
}
120
}
114
 
121
 
115
static int pos_compare(unsigned long key[], hash_count_t keys, link_t *item)
122
static int pos_compare(unsigned long key[], hash_count_t keys, link_t *item)
116
{
123
{
117
    dev_handle_t dev_handle = (dev_handle_t)key[UPH_DH_KEY];
124
    dev_handle_t dev_handle = (dev_handle_t)key[UPH_DH_KEY];
118
    fat_cluster_t pfc = (fat_cluster_t)key[UPH_PFC_KEY];
125
    fat_cluster_t pfc = (fat_cluster_t)key[UPH_PFC_KEY];
119
    unsigned pdi = (unsigned)key[UPH_PDI_KEY];
126
    unsigned pdi = (unsigned)key[UPH_PDI_KEY];
120
    fat_idx_t *fidx = list_get_instance(item, fat_idx_t, uph_link);
127
    fat_idx_t *fidx = list_get_instance(item, fat_idx_t, uph_link);
121
 
128
 
122
    return (dev_handle == fidx->dev_handle) && (pfc == fidx->pfc) &&
129
    return (dev_handle == fidx->dev_handle) && (pfc == fidx->pfc) &&
123
        (pdi == fidx->pdi);
130
        (pdi == fidx->pdi);
124
}
131
}
125
 
132
 
126
static void pos_remove_callback(link_t *item)
133
static void pos_remove_callback(link_t *item)
127
{
134
{
128
    /* nothing to do */
135
    /* nothing to do */
129
}
136
}
130
 
137
 
131
static hash_table_operations_t uph_ops = {
138
static hash_table_operations_t uph_ops = {
132
    .hash = pos_hash,
139
    .hash = pos_hash,
133
    .compare = pos_compare,
140
    .compare = pos_compare,
134
    .remove_callback = pos_remove_callback,
141
    .remove_callback = pos_remove_callback,
135
};
142
};
136
 
143
 
137
/**
144
/**
138
 * Global hash table of all used fat_idx_t structures.
145
 * Global hash table of all used fat_idx_t structures.
139
 * The index structures are hashed by the dev_handle and index.
146
 * The index structures are hashed by the dev_handle and index.
140
 */
147
 */
141
static hash_table_t ui_hash;
148
static hash_table_t ui_hash;
142
 
149
 
143
#define UIH_BUCKETS_LOG 12
150
#define UIH_BUCKETS_LOG 12
144
#define UIH_BUCKETS (1 << UIH_BUCKETS_LOG)
151
#define UIH_BUCKETS (1 << UIH_BUCKETS_LOG)
145
 
152
 
146
#define UIH_DH_KEY  0
153
#define UIH_DH_KEY  0
147
#define UIH_INDEX_KEY   1
154
#define UIH_INDEX_KEY   1
148
 
155
 
149
static hash_index_t idx_hash(unsigned long key[])
156
static hash_index_t idx_hash(unsigned long key[])
150
{
157
{
151
    dev_handle_t dev_handle = (dev_handle_t)key[UIH_DH_KEY];
158
    dev_handle_t dev_handle = (dev_handle_t)key[UIH_DH_KEY];
152
    fs_index_t index = (fs_index_t)key[UIH_INDEX_KEY];
159
    fs_index_t index = (fs_index_t)key[UIH_INDEX_KEY];
153
 
160
 
154
    hash_index_t h;
161
    hash_index_t h;
155
 
162
 
156
    h = dev_handle & ((1 << (UIH_BUCKETS_LOG / 2)) - 1);
163
    h = dev_handle & ((1 << (UIH_BUCKETS_LOG / 2)) - 1);
157
    h |= (index & ((1 << (UIH_BUCKETS_LOG / 2)) - 1)) <<
164
    h |= (index & ((1 << (UIH_BUCKETS_LOG / 2)) - 1)) <<
158
        (UIH_BUCKETS_LOG / 2);
165
        (UIH_BUCKETS_LOG / 2);
159
 
166
 
160
    return h;
167
    return h;
161
}
168
}
162
 
169
 
163
static int idx_compare(unsigned long key[], hash_count_t keys, link_t *item)
170
static int idx_compare(unsigned long key[], hash_count_t keys, link_t *item)
164
{
171
{
165
    dev_handle_t dev_handle = (dev_handle_t)key[UIH_DH_KEY];
172
    dev_handle_t dev_handle = (dev_handle_t)key[UIH_DH_KEY];
166
    fs_index_t index = (fs_index_t)key[UIH_INDEX_KEY];
173
    fs_index_t index = (fs_index_t)key[UIH_INDEX_KEY];
167
    fat_idx_t *fidx = list_get_instance(item, fat_idx_t, uih_link);
174
    fat_idx_t *fidx = list_get_instance(item, fat_idx_t, uih_link);
168
 
175
 
169
    return (dev_handle == fidx->dev_handle) && (index == fidx->index);
176
    return (dev_handle == fidx->dev_handle) && (index == fidx->index);
170
}
177
}
171
 
178
 
172
static void idx_remove_callback(link_t *item)
179
static void idx_remove_callback(link_t *item)
173
{
180
{
174
    /* nothing to do */
181
    /* nothing to do */
175
}
182
}
176
 
183
 
177
static hash_table_operations_t uih_ops = {
184
static hash_table_operations_t uih_ops = {
178
    .hash = idx_hash,
185
    .hash = idx_hash,
179
    .compare = idx_compare,
186
    .compare = idx_compare,
180
    .remove_callback = idx_remove_callback,
187
    .remove_callback = idx_remove_callback,
181
};
188
};
182
 
189
 
183
/** Allocate a VFS index which is not currently in use. */
190
/** Allocate a VFS index which is not currently in use. */
184
static bool fat_idx_alloc(dev_handle_t dev_handle, fs_index_t *index)
191
static bool fat_idx_alloc(dev_handle_t dev_handle, fs_index_t *index)
185
{
192
{
186
    link_t *l;
193
    link_t *l;
187
    unused_t *u;
194
    unused_t *u;
188
   
195
   
189
    assert(index);
196
    assert(index);
-
 
197
    futex_down(&unused_futex);
190
    for (l = unused_head.next; l != &unused_head; l = l->next) {
198
    for (l = unused_head.next; l != &unused_head; l = l->next) {
191
        u = list_get_instance(l, unused_t, link);
199
        u = list_get_instance(l, unused_t, link);
192
        if (u->dev_handle == dev_handle)
200
        if (u->dev_handle == dev_handle)
193
            goto hit;
201
            goto hit;
194
    }
202
    }
-
 
203
    futex_up(&unused_futex);
195
 
204
   
196
    /* dev_handle not found */
205
    /* dev_handle not found */
197
    return false;  
206
    return false;  
198
 
207
 
199
hit:
208
hit:
200
    if (list_empty(&u->freed_head)) {
209
    if (list_empty(&u->freed_head)) {
201
        if (u->remaining) {
210
        if (u->remaining) {
202
            /*
211
            /*
203
             * There are no freed indices, allocate one directly
212
             * There are no freed indices, allocate one directly
204
             * from the counter.
213
             * from the counter.
205
             */
214
             */
206
            *index = u->next++;
215
            *index = u->next++;
207
            --u->remaining;
216
            --u->remaining;
-
 
217
            futex_up(&unused_futex);
208
            return true;
218
            return true;
209
        }
219
        }
210
    } else {
220
    } else {
211
        /* There are some freed indices which we can reuse. */
221
        /* There are some freed indices which we can reuse. */
212
        freed_t *f = list_get_instance(u->freed_head.next, freed_t,
222
        freed_t *f = list_get_instance(u->freed_head.next, freed_t,
213
            link);
223
            link);
214
        *index = f->first;
224
        *index = f->first;
215
        if (f->first++ == f->last) {
225
        if (f->first++ == f->last) {
216
            /* Destroy the interval. */
226
            /* Destroy the interval. */
217
            list_remove(&f->link);
227
            list_remove(&f->link);
218
            free(f);
228
            free(f);
219
        }
229
        }
-
 
230
        futex_up(&unused_futex);
220
        return true;
231
        return true;
221
    }
232
    }
222
    /*
233
    /*
223
     * We ran out of indices, which is extremely unlikely with FAT16, but
234
     * We ran out of indices, which is extremely unlikely with FAT16, but
224
     * theoretically still possible (e.g. too many open unlinked nodes or
235
     * theoretically still possible (e.g. too many open unlinked nodes or
225
     * too many zero-sized nodes).
236
     * too many zero-sized nodes).
226
     */
237
     */
-
 
238
    futex_up(&unused_futex);
227
    return false;
239
    return false;
228
}
240
}
229
 
241
 
230
/** If possible, coalesce two intervals of freed indices. */
242
/** If possible, coalesce two intervals of freed indices. */
231
static void try_coalesce_intervals(link_t *l, link_t *r, link_t *cur)
243
static void try_coalesce_intervals(link_t *l, link_t *r, link_t *cur)
232
{
244
{
233
    freed_t *fl = list_get_instance(l, freed_t, link);
245
    freed_t *fl = list_get_instance(l, freed_t, link);
234
    freed_t *fr = list_get_instance(r, freed_t, link);
246
    freed_t *fr = list_get_instance(r, freed_t, link);
235
 
247
 
236
    if (fl->last + 1 == fr->first) {
248
    if (fl->last + 1 == fr->first) {
237
        if (cur == l) {
249
        if (cur == l) {
238
            fl->last = fr->last;
250
            fl->last = fr->last;
239
            list_remove(r);
251
            list_remove(r);
240
            free(r);
252
            free(r);
241
        } else {
253
        } else {
242
            fr->first = fl->first;
254
            fr->first = fl->first;
243
            list_remove(l);
255
            list_remove(l);
244
            free(l);
256
            free(l);
245
        }
257
        }
246
    }
258
    }
247
}
259
}
248
 
260
 
249
/** Free a VFS index, which is no longer in use. */
261
/** Free a VFS index, which is no longer in use. */
250
static void fat_idx_free(dev_handle_t dev_handle, fs_index_t index)
262
static void fat_idx_free(dev_handle_t dev_handle, fs_index_t index)
251
{
263
{
252
    link_t *l;
264
    link_t *l;
253
    unused_t *u;
265
    unused_t *u;
254
 
266
 
-
 
267
    futex_down(&unused_futex);
255
    for (l = unused_head.next; l != &unused_head; l = l->next) {
268
    for (l = unused_head.next; l != &unused_head; l = l->next) {
256
        u = list_get_instance(l, unused_t, link);
269
        u = list_get_instance(l, unused_t, link);
257
        if (u->dev_handle == dev_handle)
270
        if (u->dev_handle == dev_handle)
258
            goto hit;
271
            goto hit;
259
    }
272
    }
-
 
273
    futex_up(&unused_futex);
260
 
274
 
261
    /* should not happen */
275
    /* should not happen */
262
    assert(0);
276
    assert(0);
263
 
277
 
264
hit:
278
hit:
265
    if (u->next == index + 1) {
279
    if (u->next == index + 1) {
266
        /* The index can be returned directly to the counter. */
280
        /* The index can be returned directly to the counter. */
267
        u->next--;
281
        u->next--;
268
        u->remaining++;
282
        u->remaining++;
269
        return;
-
 
270
    } else {
283
    } else {
271
        /*
284
        /*
272
         * The index must be returned either to an existing freed
285
         * The index must be returned either to an existing freed
273
         * interval or a new interval must be created.
286
         * interval or a new interval must be created.
274
         */
287
         */
275
        link_t *lnk;
288
        link_t *lnk;
276
        freed_t *n;
289
        freed_t *n;
277
        for (lnk = u->freed_head.next; lnk != &u->freed_head;
290
        for (lnk = u->freed_head.next; lnk != &u->freed_head;
278
            lnk = lnk->next) {
291
            lnk = lnk->next) {
279
            freed_t *f = list_get_instance(lnk, freed_t, link);
292
            freed_t *f = list_get_instance(lnk, freed_t, link);
280
            if (f->first == index + 1) {
293
            if (f->first == index + 1) {
281
                f->first--;
294
                f->first--;
282
                if (lnk->prev != &u->freed_head)
295
                if (lnk->prev != &u->freed_head)
283
                    try_coalesce_intervals(lnk->prev, lnk,
296
                    try_coalesce_intervals(lnk->prev, lnk,
284
                        lnk);
297
                        lnk);
-
 
298
                futex_up(&unused_futex);
285
                return;
299
                return;
286
            }
300
            }
287
            if (f->last == index - 1) {
301
            if (f->last == index - 1) {
288
                f->last++;
302
                f->last++;
289
                if (lnk->next != &u->freed_head)
303
                if (lnk->next != &u->freed_head)
290
                    try_coalesce_intervals(lnk, lnk->next,
304
                    try_coalesce_intervals(lnk, lnk->next,
291
                        lnk);
305
                        lnk);
-
 
306
                futex_up(&unused_futex);
292
                return;
307
                return;
293
            }
308
            }
294
            if (index > f->first) {
309
            if (index > f->first) {
295
                n = malloc(sizeof(freed_t));
310
                n = malloc(sizeof(freed_t));
296
                /* TODO: sleep until allocation succeeds */
311
                /* TODO: sleep until allocation succeeds */
297
                assert(n);
312
                assert(n);
298
                link_initialize(&n->link);
313
                link_initialize(&n->link);
299
                n->first = index;
314
                n->first = index;
300
                n->last = index;
315
                n->last = index;
301
                list_insert_before(&n->link, lnk);
316
                list_insert_before(&n->link, lnk);
-
 
317
                futex_up(&unused_futex);
302
                return;
318
                return;
303
            }
319
            }
304
 
320
 
305
        }
321
        }
306
        /* The index will form the last interval. */
322
        /* The index will form the last interval. */
307
        n = malloc(sizeof(freed_t));
323
        n = malloc(sizeof(freed_t));
308
        /* TODO: sleep until allocation succeeds */
324
        /* TODO: sleep until allocation succeeds */
309
        assert(n);
325
        assert(n);
310
        link_initialize(&n->link);
326
        link_initialize(&n->link);
311
        n->first = index;
327
        n->first = index;
312
        n->last = index;
328
        n->last = index;
313
        list_append(&n->link, &u->freed_head);
329
        list_append(&n->link, &u->freed_head);
314
    }
330
    }
-
 
331
    futex_up(&unused_futex);
315
}
332
}
316
 
333
 
317
fat_idx_t *
334
fat_idx_t *
318
fat_idx_get_by_pos(dev_handle_t dev_handle, fat_cluster_t pfc, unsigned pdi)
335
fat_idx_get_by_pos(dev_handle_t dev_handle, fat_cluster_t pfc, unsigned pdi)
319
{
336
{
320
    fat_idx_t *fidx;
337
    fat_idx_t *fidx;
321
    link_t *l;
338
    link_t *l;
322
    unsigned long pkey[] = {
339
    unsigned long pkey[] = {
323
        [UPH_DH_KEY] = dev_handle,
340
        [UPH_DH_KEY] = dev_handle,
324
        [UPH_PFC_KEY] = pfc,
341
        [UPH_PFC_KEY] = pfc,
325
        [UPH_PDI_KEY] = pdi,
342
        [UPH_PDI_KEY] = pdi,
326
    };
343
    };
327
 
344
 
-
 
345
    futex_down(&used_futex);
328
    l = hash_table_find(&up_hash, pkey);
346
    l = hash_table_find(&up_hash, pkey);
329
    if (l) {
347
    if (l) {
330
        fidx = hash_table_get_instance(l, fat_idx_t, uph_link);
348
        fidx = hash_table_get_instance(l, fat_idx_t, uph_link);
331
    } else {
349
    } else {
332
        fidx = (fat_idx_t *) malloc(sizeof(fat_idx_t));
350
        fidx = (fat_idx_t *) malloc(sizeof(fat_idx_t));
333
        if (!fidx) {
351
        if (!fidx) {
-
 
352
            futex_up(&used_futex);
334
            return NULL;
353
            return NULL;
335
        }
354
        }
336
        if (!fat_idx_alloc(dev_handle, &fidx->index)) {
355
        if (!fat_idx_alloc(dev_handle, &fidx->index)) {
337
            free(fidx);
356
            free(fidx);
-
 
357
            futex_up(&used_futex);
338
            return NULL;
358
            return NULL;
339
        }
359
        }
340
       
360
       
341
        unsigned long ikey[] = {
361
        unsigned long ikey[] = {
342
            [UIH_DH_KEY] = dev_handle,
362
            [UIH_DH_KEY] = dev_handle,
343
            [UIH_INDEX_KEY] = fidx->index,
363
            [UIH_INDEX_KEY] = fidx->index,
344
        };
364
        };
345
   
365
   
346
        link_initialize(&fidx->uph_link);
366
        link_initialize(&fidx->uph_link);
347
        link_initialize(&fidx->uih_link);
367
        link_initialize(&fidx->uih_link);
-
 
368
        futex_initialize(&fidx->lock, 1);
348
        fidx->dev_handle = dev_handle;
369
        fidx->dev_handle = dev_handle;
349
        fidx->pfc = pfc;
370
        fidx->pfc = pfc;
350
        fidx->pdi = pdi;
371
        fidx->pdi = pdi;
351
        fidx->nodep = NULL;
372
        fidx->nodep = NULL;
352
 
373
 
353
        hash_table_insert(&up_hash, pkey, &fidx->uph_link);
374
        hash_table_insert(&up_hash, pkey, &fidx->uph_link);
354
        hash_table_insert(&ui_hash, ikey, &fidx->uih_link);
375
        hash_table_insert(&ui_hash, ikey, &fidx->uih_link);
355
    }
376
    }
-
 
377
    futex_down(&fidx->lock);
-
 
378
    futex_up(&used_futex);
356
 
379
 
357
    return fidx;
380
    return fidx;
358
}
381
}
359
 
382
 
360
fat_idx_t *
383
fat_idx_t *
361
fat_idx_get_by_index(dev_handle_t dev_handle, fs_index_t index)
384
fat_idx_get_by_index(dev_handle_t dev_handle, fs_index_t index)
362
{
385
{
363
    fat_idx_t *fidx = NULL;
386
    fat_idx_t *fidx = NULL;
364
    link_t *l;
387
    link_t *l;
365
    unsigned long ikey[] = {
388
    unsigned long ikey[] = {
366
        [UIH_DH_KEY] = dev_handle,
389
        [UIH_DH_KEY] = dev_handle,
367
        [UIH_INDEX_KEY] = index,
390
        [UIH_INDEX_KEY] = index,
368
    };
391
    };
369
 
392
 
-
 
393
    futex_down(&used_futex);
370
    l = hash_table_find(&ui_hash, ikey);
394
    l = hash_table_find(&ui_hash, ikey);
371
    if (l) {
395
    if (l) {
372
        fidx = hash_table_get_instance(l, fat_idx_t, uih_link);
396
        fidx = hash_table_get_instance(l, fat_idx_t, uih_link);
-
 
397
        futex_down(&fidx->lock);
373
    }
398
    }
-
 
399
    futex_up(&used_futex);
374
 
400
 
375
    return fidx;
401
    return fidx;
376
}
402
}
377
 
403
 
378
 
404