2 * Direct MTD block device access
4 * (C) 2000-2003 Nicolas Pitre <nico@cam.org>
5 * (C) 1999-2003 David Woodhouse <dwmw2@infradead.org>
9 #include <linux/init.h>
10 #include <linux/kernel.h>
11 #include <linux/module.h>
12 #include <linux/sched.h>
13 #include <linux/slab.h>
14 #include <linux/types.h>
15 #include <linux/vmalloc.h>
17 #include <linux/mtd/mtd.h>
18 #include <linux/mtd/blktrans.h>
19 #include <linux/mutex.h>
22 static struct mtdblk_dev
{
25 struct mutex cache_mutex
;
26 unsigned char *cache_data
;
27 unsigned long cache_offset
;
28 unsigned int cache_size
;
29 enum { STATE_EMPTY
, STATE_CLEAN
, STATE_DIRTY
} cache_state
;
30 } *mtdblks
[MAX_MTD_DEVICES
];
35 * Since typical flash erasable sectors are much larger than what Linux's
36 * buffer cache can handle, we must implement read-modify-write on flash
37 * sectors for each block write requests. To avoid over-erasing flash sectors
38 * and to speed things up, we locally cache a whole flash sector while it is
39 * being written to until a different sector is required.
42 static void erase_callback(struct erase_info
*done
)
44 wait_queue_head_t
*wait_q
= (wait_queue_head_t
*)done
->priv
;
48 static int erase_write (struct mtd_info
*mtd
, unsigned long pos
,
49 int len
, const char *buf
)
51 struct erase_info erase
;
52 DECLARE_WAITQUEUE(wait
, current
);
53 wait_queue_head_t wait_q
;
58 * First, let's erase the flash block.
61 init_waitqueue_head(&wait_q
);
63 erase
.callback
= erase_callback
;
66 erase
.priv
= (u_long
)&wait_q
;
68 set_current_state(TASK_INTERRUPTIBLE
);
69 add_wait_queue(&wait_q
, &wait
);
71 ret
= mtd
->erase(mtd
, &erase
);
73 set_current_state(TASK_RUNNING
);
74 remove_wait_queue(&wait_q
, &wait
);
75 printk (KERN_WARNING
"mtdblock: erase of region [0x%lx, 0x%x] "
81 schedule(); /* Wait for erase to finish. */
82 remove_wait_queue(&wait_q
, &wait
);
85 * Next, writhe data to flash.
88 ret
= mtd
->write(mtd
, pos
, len
, &retlen
, buf
);
97 static int write_cached_data (struct mtdblk_dev
*mtdblk
)
99 struct mtd_info
*mtd
= mtdblk
->mtd
;
102 if (mtdblk
->cache_state
!= STATE_DIRTY
)
105 DEBUG(MTD_DEBUG_LEVEL2
, "mtdblock: writing cached data for \"%s\" "
106 "at 0x%lx, size 0x%x\n", mtd
->name
,
107 mtdblk
->cache_offset
, mtdblk
->cache_size
);
109 ret
= erase_write (mtd
, mtdblk
->cache_offset
,
110 mtdblk
->cache_size
, mtdblk
->cache_data
);
115 * Here we could argubly set the cache state to STATE_CLEAN.
116 * However this could lead to inconsistency since we will not
117 * be notified if this content is altered on the flash by other
118 * means. Let's declare it empty and leave buffering tasks to
119 * the buffer cache instead.
121 mtdblk
->cache_state
= STATE_EMPTY
;
126 static int do_cached_write (struct mtdblk_dev
*mtdblk
, unsigned long pos
,
127 int len
, const char *buf
)
129 struct mtd_info
*mtd
= mtdblk
->mtd
;
130 unsigned int sect_size
= mtdblk
->cache_size
;
134 DEBUG(MTD_DEBUG_LEVEL2
, "mtdblock: write on \"%s\" at 0x%lx, size 0x%x\n",
135 mtd
->name
, pos
, len
);
138 return mtd
->write(mtd
, pos
, len
, &retlen
, buf
);
141 unsigned long sect_start
= (pos
/sect_size
)*sect_size
;
142 unsigned int offset
= pos
- sect_start
;
143 unsigned int size
= sect_size
- offset
;
147 if (size
== sect_size
) {
149 * We are covering a whole sector. Thus there is no
150 * need to bother with the cache while it may still be
151 * useful for other partial writes.
153 ret
= erase_write (mtd
, pos
, size
, buf
);
157 /* Partial sector: need to use the cache */
159 if (mtdblk
->cache_state
== STATE_DIRTY
&&
160 mtdblk
->cache_offset
!= sect_start
) {
161 ret
= write_cached_data(mtdblk
);
166 if (mtdblk
->cache_state
== STATE_EMPTY
||
167 mtdblk
->cache_offset
!= sect_start
) {
168 /* fill the cache with the current sector */
169 mtdblk
->cache_state
= STATE_EMPTY
;
170 ret
= mtd
->read(mtd
, sect_start
, sect_size
,
171 &retlen
, mtdblk
->cache_data
);
174 if (retlen
!= sect_size
)
177 mtdblk
->cache_offset
= sect_start
;
178 mtdblk
->cache_size
= sect_size
;
179 mtdblk
->cache_state
= STATE_CLEAN
;
182 /* write data to our local cache */
183 memcpy (mtdblk
->cache_data
+ offset
, buf
, size
);
184 mtdblk
->cache_state
= STATE_DIRTY
;
196 static int do_cached_read (struct mtdblk_dev
*mtdblk
, unsigned long pos
,
199 struct mtd_info
*mtd
= mtdblk
->mtd
;
200 unsigned int sect_size
= mtdblk
->cache_size
;
204 DEBUG(MTD_DEBUG_LEVEL2
, "mtdblock: read on \"%s\" at 0x%lx, size 0x%x\n",
205 mtd
->name
, pos
, len
);
208 return mtd
->read(mtd
, pos
, len
, &retlen
, buf
);
211 unsigned long sect_start
= (pos
/sect_size
)*sect_size
;
212 unsigned int offset
= pos
- sect_start
;
213 unsigned int size
= sect_size
- offset
;
218 * Check if the requested data is already cached
219 * Read the requested amount of data from our internal cache if it
220 * contains what we want, otherwise we read the data directly
223 if (mtdblk
->cache_state
!= STATE_EMPTY
&&
224 mtdblk
->cache_offset
== sect_start
) {
225 memcpy (buf
, mtdblk
->cache_data
+ offset
, size
);
227 ret
= mtd
->read(mtd
, pos
, size
, &retlen
, buf
);
242 static int mtdblock_readsect(struct mtd_blktrans_dev
*dev
,
243 unsigned long block
, char *buf
)
245 struct mtdblk_dev
*mtdblk
= mtdblks
[dev
->devnum
];
246 return do_cached_read(mtdblk
, block
<<9, 512, buf
);
249 static int mtdblock_writesect(struct mtd_blktrans_dev
*dev
,
250 unsigned long block
, char *buf
)
252 struct mtdblk_dev
*mtdblk
= mtdblks
[dev
->devnum
];
253 if (unlikely(!mtdblk
->cache_data
&& mtdblk
->cache_size
)) {
254 mtdblk
->cache_data
= vmalloc(mtdblk
->mtd
->erasesize
);
255 if (!mtdblk
->cache_data
)
257 /* -EINTR is not really correct, but it is the best match
258 * documented in man 2 write for all cases. We could also
259 * return -EAGAIN sometimes, but why bother?
262 return do_cached_write(mtdblk
, block
<<9, 512, buf
);
265 static int mtdblock_open(struct mtd_blktrans_dev
*mbd
)
267 struct mtdblk_dev
*mtdblk
;
268 struct mtd_info
*mtd
= mbd
->mtd
;
269 int dev
= mbd
->devnum
;
271 DEBUG(MTD_DEBUG_LEVEL1
,"mtdblock_open\n");
274 mtdblks
[dev
]->count
++;
278 /* OK, it's not open. Create cache info for it */
279 mtdblk
= kzalloc(sizeof(struct mtdblk_dev
), GFP_KERNEL
);
286 mutex_init(&mtdblk
->cache_mutex
);
287 mtdblk
->cache_state
= STATE_EMPTY
;
288 if ( !(mtdblk
->mtd
->flags
& MTD_NO_ERASE
) && mtdblk
->mtd
->erasesize
) {
289 mtdblk
->cache_size
= mtdblk
->mtd
->erasesize
;
290 mtdblk
->cache_data
= NULL
;
293 mtdblks
[dev
] = mtdblk
;
295 DEBUG(MTD_DEBUG_LEVEL1
, "ok\n");
300 static int mtdblock_release(struct mtd_blktrans_dev
*mbd
)
302 int dev
= mbd
->devnum
;
303 struct mtdblk_dev
*mtdblk
= mtdblks
[dev
];
305 DEBUG(MTD_DEBUG_LEVEL1
, "mtdblock_release\n");
307 mutex_lock(&mtdblk
->cache_mutex
);
308 write_cached_data(mtdblk
);
309 mutex_unlock(&mtdblk
->cache_mutex
);
311 if (!--mtdblk
->count
) {
312 /* It was the last usage. Free the device */
314 if (mtdblk
->mtd
->sync
)
315 mtdblk
->mtd
->sync(mtdblk
->mtd
);
316 vfree(mtdblk
->cache_data
);
319 DEBUG(MTD_DEBUG_LEVEL1
, "ok\n");
324 static int mtdblock_flush(struct mtd_blktrans_dev
*dev
)
326 struct mtdblk_dev
*mtdblk
= mtdblks
[dev
->devnum
];
328 mutex_lock(&mtdblk
->cache_mutex
);
329 write_cached_data(mtdblk
);
330 mutex_unlock(&mtdblk
->cache_mutex
);
332 if (mtdblk
->mtd
->sync
)
333 mtdblk
->mtd
->sync(mtdblk
->mtd
);
337 static void mtdblock_add_mtd(struct mtd_blktrans_ops
*tr
, struct mtd_info
*mtd
)
339 struct mtd_blktrans_dev
*dev
= kzalloc(sizeof(*dev
), GFP_KERNEL
);
345 dev
->devnum
= mtd
->index
;
347 dev
->size
= mtd
->size
>> 9;
350 if (!(mtd
->flags
& MTD_WRITEABLE
))
353 add_mtd_blktrans_dev(dev
);
356 static void mtdblock_remove_dev(struct mtd_blktrans_dev
*dev
)
358 del_mtd_blktrans_dev(dev
);
362 static struct mtd_blktrans_ops mtdblock_tr
= {
367 .open
= mtdblock_open
,
368 .flush
= mtdblock_flush
,
369 .release
= mtdblock_release
,
370 .readsect
= mtdblock_readsect
,
371 .writesect
= mtdblock_writesect
,
372 .add_mtd
= mtdblock_add_mtd
,
373 .remove_dev
= mtdblock_remove_dev
,
374 .owner
= THIS_MODULE
,
377 static int __init
init_mtdblock(void)
379 return register_mtd_blktrans(&mtdblock_tr
);
382 static void __exit
cleanup_mtdblock(void)
384 deregister_mtd_blktrans(&mtdblock_tr
);
387 module_init(init_mtdblock
);
388 module_exit(cleanup_mtdblock
);
391 MODULE_LICENSE("GPL");
392 MODULE_AUTHOR("Nicolas Pitre <nico@cam.org> et al.");
393 MODULE_DESCRIPTION("Caching read/erase/writeback block device emulation access to MTD devices");