]> git.karo-electronics.de Git - karo-tx-linux.git/blob - drivers/mtd/mtdchar.c
mtd: do not use mtd->get_*_prot_info directly
[karo-tx-linux.git] / drivers / mtd / mtdchar.c
1 /*
2  * Copyright © 1999-2010 David Woodhouse <dwmw2@infradead.org>
3  *
4  * This program is free software; you can redistribute it and/or modify
5  * it under the terms of the GNU General Public License as published by
6  * the Free Software Foundation; either version 2 of the License, or
7  * (at your option) any later version.
8  *
9  * This program is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
12  * GNU General Public License for more details.
13  *
14  * You should have received a copy of the GNU General Public License
15  * along with this program; if not, write to the Free Software
16  * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
17  *
18  */
19
20 #include <linux/device.h>
21 #include <linux/fs.h>
22 #include <linux/mm.h>
23 #include <linux/err.h>
24 #include <linux/init.h>
25 #include <linux/kernel.h>
26 #include <linux/module.h>
27 #include <linux/slab.h>
28 #include <linux/sched.h>
29 #include <linux/mutex.h>
30 #include <linux/backing-dev.h>
31 #include <linux/compat.h>
32 #include <linux/mount.h>
33 #include <linux/blkpg.h>
34 #include <linux/mtd/mtd.h>
35 #include <linux/mtd/partitions.h>
36 #include <linux/mtd/map.h>
37
38 #include <asm/uaccess.h>
39
40 #define MTD_INODE_FS_MAGIC 0x11307854
41 static DEFINE_MUTEX(mtd_mutex);
42 static struct vfsmount *mtd_inode_mnt __read_mostly;
43
44 /*
45  * Data structure to hold the pointer to the mtd device as well
46  * as mode information of various use cases.
47  */
48 struct mtd_file_info {
49         struct mtd_info *mtd;
50         struct inode *ino;
51         enum mtd_file_modes mode;
52 };
53
54 static loff_t mtdchar_lseek(struct file *file, loff_t offset, int orig)
55 {
56         struct mtd_file_info *mfi = file->private_data;
57         struct mtd_info *mtd = mfi->mtd;
58
59         switch (orig) {
60         case SEEK_SET:
61                 break;
62         case SEEK_CUR:
63                 offset += file->f_pos;
64                 break;
65         case SEEK_END:
66                 offset += mtd->size;
67                 break;
68         default:
69                 return -EINVAL;
70         }
71
72         if (offset >= 0 && offset <= mtd->size)
73                 return file->f_pos = offset;
74
75         return -EINVAL;
76 }
77
78
79
80 static int mtdchar_open(struct inode *inode, struct file *file)
81 {
82         int minor = iminor(inode);
83         int devnum = minor >> 1;
84         int ret = 0;
85         struct mtd_info *mtd;
86         struct mtd_file_info *mfi;
87         struct inode *mtd_ino;
88
89         pr_debug("MTD_open\n");
90
91         /* You can't open the RO devices RW */
92         if ((file->f_mode & FMODE_WRITE) && (minor & 1))
93                 return -EACCES;
94
95         mutex_lock(&mtd_mutex);
96         mtd = get_mtd_device(NULL, devnum);
97
98         if (IS_ERR(mtd)) {
99                 ret = PTR_ERR(mtd);
100                 goto out;
101         }
102
103         if (mtd->type == MTD_ABSENT) {
104                 put_mtd_device(mtd);
105                 ret = -ENODEV;
106                 goto out;
107         }
108
109         mtd_ino = iget_locked(mtd_inode_mnt->mnt_sb, devnum);
110         if (!mtd_ino) {
111                 put_mtd_device(mtd);
112                 ret = -ENOMEM;
113                 goto out;
114         }
115         if (mtd_ino->i_state & I_NEW) {
116                 mtd_ino->i_private = mtd;
117                 mtd_ino->i_mode = S_IFCHR;
118                 mtd_ino->i_data.backing_dev_info = mtd->backing_dev_info;
119                 unlock_new_inode(mtd_ino);
120         }
121         file->f_mapping = mtd_ino->i_mapping;
122
123         /* You can't open it RW if it's not a writeable device */
124         if ((file->f_mode & FMODE_WRITE) && !(mtd->flags & MTD_WRITEABLE)) {
125                 iput(mtd_ino);
126                 put_mtd_device(mtd);
127                 ret = -EACCES;
128                 goto out;
129         }
130
131         mfi = kzalloc(sizeof(*mfi), GFP_KERNEL);
132         if (!mfi) {
133                 iput(mtd_ino);
134                 put_mtd_device(mtd);
135                 ret = -ENOMEM;
136                 goto out;
137         }
138         mfi->ino = mtd_ino;
139         mfi->mtd = mtd;
140         file->private_data = mfi;
141
142 out:
143         mutex_unlock(&mtd_mutex);
144         return ret;
145 } /* mtdchar_open */
146
147 /*====================================================================*/
148
149 static int mtdchar_close(struct inode *inode, struct file *file)
150 {
151         struct mtd_file_info *mfi = file->private_data;
152         struct mtd_info *mtd = mfi->mtd;
153
154         pr_debug("MTD_close\n");
155
156         /* Only sync if opened RW */
157         if ((file->f_mode & FMODE_WRITE) && mtd->sync)
158                 mtd_sync(mtd);
159
160         iput(mfi->ino);
161
162         put_mtd_device(mtd);
163         file->private_data = NULL;
164         kfree(mfi);
165
166         return 0;
167 } /* mtdchar_close */
168
169 /* Back in June 2001, dwmw2 wrote:
170  *
171  *   FIXME: This _really_ needs to die. In 2.5, we should lock the
172  *   userspace buffer down and use it directly with readv/writev.
173  *
174  * The implementation below, using mtd_kmalloc_up_to, mitigates
175  * allocation failures when the system is under low-memory situations
176  * or if memory is highly fragmented at the cost of reducing the
177  * performance of the requested transfer due to a smaller buffer size.
178  *
179  * A more complex but more memory-efficient implementation based on
180  * get_user_pages and iovecs to cover extents of those pages is a
181  * longer-term goal, as intimated by dwmw2 above. However, for the
182  * write case, this requires yet more complex head and tail transfer
183  * handling when those head and tail offsets and sizes are such that
184  * alignment requirements are not met in the NAND subdriver.
185  */
186
187 static ssize_t mtdchar_read(struct file *file, char __user *buf, size_t count,
188                         loff_t *ppos)
189 {
190         struct mtd_file_info *mfi = file->private_data;
191         struct mtd_info *mtd = mfi->mtd;
192         size_t retlen;
193         size_t total_retlen=0;
194         int ret=0;
195         int len;
196         size_t size = count;
197         char *kbuf;
198
199         pr_debug("MTD_read\n");
200
201         if (*ppos + count > mtd->size)
202                 count = mtd->size - *ppos;
203
204         if (!count)
205                 return 0;
206
207         kbuf = mtd_kmalloc_up_to(mtd, &size);
208         if (!kbuf)
209                 return -ENOMEM;
210
211         while (count) {
212                 len = min_t(size_t, count, size);
213
214                 switch (mfi->mode) {
215                 case MTD_FILE_MODE_OTP_FACTORY:
216                         ret = mtd_read_fact_prot_reg(mtd, *ppos, len,
217                                                      &retlen, kbuf);
218                         break;
219                 case MTD_FILE_MODE_OTP_USER:
220                         ret = mtd_read_user_prot_reg(mtd, *ppos, len,
221                                                      &retlen, kbuf);
222                         break;
223                 case MTD_FILE_MODE_RAW:
224                 {
225                         struct mtd_oob_ops ops;
226
227                         ops.mode = MTD_OPS_RAW;
228                         ops.datbuf = kbuf;
229                         ops.oobbuf = NULL;
230                         ops.len = len;
231
232                         ret = mtd_read_oob(mtd, *ppos, &ops);
233                         retlen = ops.retlen;
234                         break;
235                 }
236                 default:
237                         ret = mtd_read(mtd, *ppos, len, &retlen, kbuf);
238                 }
239                 /* Nand returns -EBADMSG on ECC errors, but it returns
240                  * the data. For our userspace tools it is important
241                  * to dump areas with ECC errors!
242                  * For kernel internal usage it also might return -EUCLEAN
243                  * to signal the caller that a bitflip has occurred and has
244                  * been corrected by the ECC algorithm.
245                  * Userspace software which accesses NAND this way
246                  * must be aware of the fact that it deals with NAND
247                  */
248                 if (!ret || mtd_is_bitflip_or_eccerr(ret)) {
249                         *ppos += retlen;
250                         if (copy_to_user(buf, kbuf, retlen)) {
251                                 kfree(kbuf);
252                                 return -EFAULT;
253                         }
254                         else
255                                 total_retlen += retlen;
256
257                         count -= retlen;
258                         buf += retlen;
259                         if (retlen == 0)
260                                 count = 0;
261                 }
262                 else {
263                         kfree(kbuf);
264                         return ret;
265                 }
266
267         }
268
269         kfree(kbuf);
270         return total_retlen;
271 } /* mtdchar_read */
272
273 static ssize_t mtdchar_write(struct file *file, const char __user *buf, size_t count,
274                         loff_t *ppos)
275 {
276         struct mtd_file_info *mfi = file->private_data;
277         struct mtd_info *mtd = mfi->mtd;
278         size_t size = count;
279         char *kbuf;
280         size_t retlen;
281         size_t total_retlen=0;
282         int ret=0;
283         int len;
284
285         pr_debug("MTD_write\n");
286
287         if (*ppos == mtd->size)
288                 return -ENOSPC;
289
290         if (*ppos + count > mtd->size)
291                 count = mtd->size - *ppos;
292
293         if (!count)
294                 return 0;
295
296         kbuf = mtd_kmalloc_up_to(mtd, &size);
297         if (!kbuf)
298                 return -ENOMEM;
299
300         while (count) {
301                 len = min_t(size_t, count, size);
302
303                 if (copy_from_user(kbuf, buf, len)) {
304                         kfree(kbuf);
305                         return -EFAULT;
306                 }
307
308                 switch (mfi->mode) {
309                 case MTD_FILE_MODE_OTP_FACTORY:
310                         ret = -EROFS;
311                         break;
312                 case MTD_FILE_MODE_OTP_USER:
313                         if (!mtd->write_user_prot_reg) {
314                                 ret = -EOPNOTSUPP;
315                                 break;
316                         }
317                         ret = mtd_write_user_prot_reg(mtd, *ppos, len,
318                                                       &retlen, kbuf);
319                         break;
320
321                 case MTD_FILE_MODE_RAW:
322                 {
323                         struct mtd_oob_ops ops;
324
325                         ops.mode = MTD_OPS_RAW;
326                         ops.datbuf = kbuf;
327                         ops.oobbuf = NULL;
328                         ops.ooboffs = 0;
329                         ops.len = len;
330
331                         ret = mtd_write_oob(mtd, *ppos, &ops);
332                         retlen = ops.retlen;
333                         break;
334                 }
335
336                 default:
337                         ret = mtd_write(mtd, *ppos, len, &retlen, kbuf);
338                 }
339                 if (!ret) {
340                         *ppos += retlen;
341                         total_retlen += retlen;
342                         count -= retlen;
343                         buf += retlen;
344                 }
345                 else {
346                         kfree(kbuf);
347                         return ret;
348                 }
349         }
350
351         kfree(kbuf);
352         return total_retlen;
353 } /* mtdchar_write */
354
355 /*======================================================================
356
357     IOCTL calls for getting device parameters.
358
359 ======================================================================*/
360 static void mtdchar_erase_callback (struct erase_info *instr)
361 {
362         wake_up((wait_queue_head_t *)instr->priv);
363 }
364
365 #ifdef CONFIG_HAVE_MTD_OTP
366 static int otp_select_filemode(struct mtd_file_info *mfi, int mode)
367 {
368         struct mtd_info *mtd = mfi->mtd;
369         int ret = 0;
370
371         switch (mode) {
372         case MTD_OTP_FACTORY:
373                 if (!mtd->read_fact_prot_reg)
374                         ret = -EOPNOTSUPP;
375                 else
376                         mfi->mode = MTD_FILE_MODE_OTP_FACTORY;
377                 break;
378         case MTD_OTP_USER:
379                 if (!mtd->read_fact_prot_reg)
380                         ret = -EOPNOTSUPP;
381                 else
382                         mfi->mode = MTD_FILE_MODE_OTP_USER;
383                 break;
384         default:
385                 ret = -EINVAL;
386         case MTD_OTP_OFF:
387                 break;
388         }
389         return ret;
390 }
391 #else
392 # define otp_select_filemode(f,m)       -EOPNOTSUPP
393 #endif
394
395 static int mtdchar_writeoob(struct file *file, struct mtd_info *mtd,
396         uint64_t start, uint32_t length, void __user *ptr,
397         uint32_t __user *retp)
398 {
399         struct mtd_file_info *mfi = file->private_data;
400         struct mtd_oob_ops ops;
401         uint32_t retlen;
402         int ret = 0;
403
404         if (!(file->f_mode & FMODE_WRITE))
405                 return -EPERM;
406
407         if (length > 4096)
408                 return -EINVAL;
409
410         if (!mtd->write_oob)
411                 ret = -EOPNOTSUPP;
412         else
413                 ret = access_ok(VERIFY_READ, ptr, length) ? 0 : -EFAULT;
414
415         if (ret)
416                 return ret;
417
418         ops.ooblen = length;
419         ops.ooboffs = start & (mtd->writesize - 1);
420         ops.datbuf = NULL;
421         ops.mode = (mfi->mode == MTD_FILE_MODE_RAW) ? MTD_OPS_RAW :
422                 MTD_OPS_PLACE_OOB;
423
424         if (ops.ooboffs && ops.ooblen > (mtd->oobsize - ops.ooboffs))
425                 return -EINVAL;
426
427         ops.oobbuf = memdup_user(ptr, length);
428         if (IS_ERR(ops.oobbuf))
429                 return PTR_ERR(ops.oobbuf);
430
431         start &= ~((uint64_t)mtd->writesize - 1);
432         ret = mtd_write_oob(mtd, start, &ops);
433
434         if (ops.oobretlen > 0xFFFFFFFFU)
435                 ret = -EOVERFLOW;
436         retlen = ops.oobretlen;
437         if (copy_to_user(retp, &retlen, sizeof(length)))
438                 ret = -EFAULT;
439
440         kfree(ops.oobbuf);
441         return ret;
442 }
443
444 static int mtdchar_readoob(struct file *file, struct mtd_info *mtd,
445         uint64_t start, uint32_t length, void __user *ptr,
446         uint32_t __user *retp)
447 {
448         struct mtd_file_info *mfi = file->private_data;
449         struct mtd_oob_ops ops;
450         int ret = 0;
451
452         if (length > 4096)
453                 return -EINVAL;
454
455         if (!access_ok(VERIFY_WRITE, ptr, length))
456                 return -EFAULT;
457
458         ops.ooblen = length;
459         ops.ooboffs = start & (mtd->writesize - 1);
460         ops.datbuf = NULL;
461         ops.mode = (mfi->mode == MTD_FILE_MODE_RAW) ? MTD_OPS_RAW :
462                 MTD_OPS_PLACE_OOB;
463
464         if (ops.ooboffs && ops.ooblen > (mtd->oobsize - ops.ooboffs))
465                 return -EINVAL;
466
467         ops.oobbuf = kmalloc(length, GFP_KERNEL);
468         if (!ops.oobbuf)
469                 return -ENOMEM;
470
471         start &= ~((uint64_t)mtd->writesize - 1);
472         ret = mtd_read_oob(mtd, start, &ops);
473
474         if (put_user(ops.oobretlen, retp))
475                 ret = -EFAULT;
476         else if (ops.oobretlen && copy_to_user(ptr, ops.oobbuf,
477                                             ops.oobretlen))
478                 ret = -EFAULT;
479
480         kfree(ops.oobbuf);
481
482         /*
483          * NAND returns -EBADMSG on ECC errors, but it returns the OOB
484          * data. For our userspace tools it is important to dump areas
485          * with ECC errors!
486          * For kernel internal usage it also might return -EUCLEAN
487          * to signal the caller that a bitflip has occured and has
488          * been corrected by the ECC algorithm.
489          *
490          * Note: currently the standard NAND function, nand_read_oob_std,
491          * does not calculate ECC for the OOB area, so do not rely on
492          * this behavior unless you have replaced it with your own.
493          */
494         if (mtd_is_bitflip_or_eccerr(ret))
495                 return 0;
496
497         return ret;
498 }
499
500 /*
501  * Copies (and truncates, if necessary) data from the larger struct,
502  * nand_ecclayout, to the smaller, deprecated layout struct,
503  * nand_ecclayout_user. This is necessary only to support the deprecated
504  * API ioctl ECCGETLAYOUT while allowing all new functionality to use
505  * nand_ecclayout flexibly (i.e. the struct may change size in new
506  * releases without requiring major rewrites).
507  */
508 static int shrink_ecclayout(const struct nand_ecclayout *from,
509                 struct nand_ecclayout_user *to)
510 {
511         int i;
512
513         if (!from || !to)
514                 return -EINVAL;
515
516         memset(to, 0, sizeof(*to));
517
518         to->eccbytes = min((int)from->eccbytes, MTD_MAX_ECCPOS_ENTRIES);
519         for (i = 0; i < to->eccbytes; i++)
520                 to->eccpos[i] = from->eccpos[i];
521
522         for (i = 0; i < MTD_MAX_OOBFREE_ENTRIES; i++) {
523                 if (from->oobfree[i].length == 0 &&
524                                 from->oobfree[i].offset == 0)
525                         break;
526                 to->oobavail += from->oobfree[i].length;
527                 to->oobfree[i] = from->oobfree[i];
528         }
529
530         return 0;
531 }
532
533 static int mtdchar_blkpg_ioctl(struct mtd_info *mtd,
534                            struct blkpg_ioctl_arg __user *arg)
535 {
536         struct blkpg_ioctl_arg a;
537         struct blkpg_partition p;
538
539         if (!capable(CAP_SYS_ADMIN))
540                 return -EPERM;
541
542         if (copy_from_user(&a, arg, sizeof(struct blkpg_ioctl_arg)))
543                 return -EFAULT;
544
545         if (copy_from_user(&p, a.data, sizeof(struct blkpg_partition)))
546                 return -EFAULT;
547
548         switch (a.op) {
549         case BLKPG_ADD_PARTITION:
550
551                 /* Only master mtd device must be used to add partitions */
552                 if (mtd_is_partition(mtd))
553                         return -EINVAL;
554
555                 return mtd_add_partition(mtd, p.devname, p.start, p.length);
556
557         case BLKPG_DEL_PARTITION:
558
559                 if (p.pno < 0)
560                         return -EINVAL;
561
562                 return mtd_del_partition(mtd, p.pno);
563
564         default:
565                 return -EINVAL;
566         }
567 }
568
569 static int mtdchar_write_ioctl(struct mtd_info *mtd,
570                 struct mtd_write_req __user *argp)
571 {
572         struct mtd_write_req req;
573         struct mtd_oob_ops ops;
574         void __user *usr_data, *usr_oob;
575         int ret;
576
577         if (copy_from_user(&req, argp, sizeof(req)) ||
578                         !access_ok(VERIFY_READ, req.usr_data, req.len) ||
579                         !access_ok(VERIFY_READ, req.usr_oob, req.ooblen))
580                 return -EFAULT;
581         if (!mtd->write_oob)
582                 return -EOPNOTSUPP;
583
584         ops.mode = req.mode;
585         ops.len = (size_t)req.len;
586         ops.ooblen = (size_t)req.ooblen;
587         ops.ooboffs = 0;
588
589         usr_data = (void __user *)(uintptr_t)req.usr_data;
590         usr_oob = (void __user *)(uintptr_t)req.usr_oob;
591
592         if (req.usr_data) {
593                 ops.datbuf = memdup_user(usr_data, ops.len);
594                 if (IS_ERR(ops.datbuf))
595                         return PTR_ERR(ops.datbuf);
596         } else {
597                 ops.datbuf = NULL;
598         }
599
600         if (req.usr_oob) {
601                 ops.oobbuf = memdup_user(usr_oob, ops.ooblen);
602                 if (IS_ERR(ops.oobbuf)) {
603                         kfree(ops.datbuf);
604                         return PTR_ERR(ops.oobbuf);
605                 }
606         } else {
607                 ops.oobbuf = NULL;
608         }
609
610         ret = mtd_write_oob(mtd, (loff_t)req.start, &ops);
611
612         kfree(ops.datbuf);
613         kfree(ops.oobbuf);
614
615         return ret;
616 }
617
618 static int mtdchar_ioctl(struct file *file, u_int cmd, u_long arg)
619 {
620         struct mtd_file_info *mfi = file->private_data;
621         struct mtd_info *mtd = mfi->mtd;
622         void __user *argp = (void __user *)arg;
623         int ret = 0;
624         u_long size;
625         struct mtd_info_user info;
626
627         pr_debug("MTD_ioctl\n");
628
629         size = (cmd & IOCSIZE_MASK) >> IOCSIZE_SHIFT;
630         if (cmd & IOC_IN) {
631                 if (!access_ok(VERIFY_READ, argp, size))
632                         return -EFAULT;
633         }
634         if (cmd & IOC_OUT) {
635                 if (!access_ok(VERIFY_WRITE, argp, size))
636                         return -EFAULT;
637         }
638
639         switch (cmd) {
640         case MEMGETREGIONCOUNT:
641                 if (copy_to_user(argp, &(mtd->numeraseregions), sizeof(int)))
642                         return -EFAULT;
643                 break;
644
645         case MEMGETREGIONINFO:
646         {
647                 uint32_t ur_idx;
648                 struct mtd_erase_region_info *kr;
649                 struct region_info_user __user *ur = argp;
650
651                 if (get_user(ur_idx, &(ur->regionindex)))
652                         return -EFAULT;
653
654                 if (ur_idx >= mtd->numeraseregions)
655                         return -EINVAL;
656
657                 kr = &(mtd->eraseregions[ur_idx]);
658
659                 if (put_user(kr->offset, &(ur->offset))
660                     || put_user(kr->erasesize, &(ur->erasesize))
661                     || put_user(kr->numblocks, &(ur->numblocks)))
662                         return -EFAULT;
663
664                 break;
665         }
666
667         case MEMGETINFO:
668                 memset(&info, 0, sizeof(info));
669                 info.type       = mtd->type;
670                 info.flags      = mtd->flags;
671                 info.size       = mtd->size;
672                 info.erasesize  = mtd->erasesize;
673                 info.writesize  = mtd->writesize;
674                 info.oobsize    = mtd->oobsize;
675                 /* The below field is obsolete */
676                 info.padding    = 0;
677                 if (copy_to_user(argp, &info, sizeof(struct mtd_info_user)))
678                         return -EFAULT;
679                 break;
680
681         case MEMERASE:
682         case MEMERASE64:
683         {
684                 struct erase_info *erase;
685
686                 if(!(file->f_mode & FMODE_WRITE))
687                         return -EPERM;
688
689                 erase=kzalloc(sizeof(struct erase_info),GFP_KERNEL);
690                 if (!erase)
691                         ret = -ENOMEM;
692                 else {
693                         wait_queue_head_t waitq;
694                         DECLARE_WAITQUEUE(wait, current);
695
696                         init_waitqueue_head(&waitq);
697
698                         if (cmd == MEMERASE64) {
699                                 struct erase_info_user64 einfo64;
700
701                                 if (copy_from_user(&einfo64, argp,
702                                             sizeof(struct erase_info_user64))) {
703                                         kfree(erase);
704                                         return -EFAULT;
705                                 }
706                                 erase->addr = einfo64.start;
707                                 erase->len = einfo64.length;
708                         } else {
709                                 struct erase_info_user einfo32;
710
711                                 if (copy_from_user(&einfo32, argp,
712                                             sizeof(struct erase_info_user))) {
713                                         kfree(erase);
714                                         return -EFAULT;
715                                 }
716                                 erase->addr = einfo32.start;
717                                 erase->len = einfo32.length;
718                         }
719                         erase->mtd = mtd;
720                         erase->callback = mtdchar_erase_callback;
721                         erase->priv = (unsigned long)&waitq;
722
723                         /*
724                           FIXME: Allow INTERRUPTIBLE. Which means
725                           not having the wait_queue head on the stack.
726
727                           If the wq_head is on the stack, and we
728                           leave because we got interrupted, then the
729                           wq_head is no longer there when the
730                           callback routine tries to wake us up.
731                         */
732                         ret = mtd_erase(mtd, erase);
733                         if (!ret) {
734                                 set_current_state(TASK_UNINTERRUPTIBLE);
735                                 add_wait_queue(&waitq, &wait);
736                                 if (erase->state != MTD_ERASE_DONE &&
737                                     erase->state != MTD_ERASE_FAILED)
738                                         schedule();
739                                 remove_wait_queue(&waitq, &wait);
740                                 set_current_state(TASK_RUNNING);
741
742                                 ret = (erase->state == MTD_ERASE_FAILED)?-EIO:0;
743                         }
744                         kfree(erase);
745                 }
746                 break;
747         }
748
749         case MEMWRITEOOB:
750         {
751                 struct mtd_oob_buf buf;
752                 struct mtd_oob_buf __user *buf_user = argp;
753
754                 /* NOTE: writes return length to buf_user->length */
755                 if (copy_from_user(&buf, argp, sizeof(buf)))
756                         ret = -EFAULT;
757                 else
758                         ret = mtdchar_writeoob(file, mtd, buf.start, buf.length,
759                                 buf.ptr, &buf_user->length);
760                 break;
761         }
762
763         case MEMREADOOB:
764         {
765                 struct mtd_oob_buf buf;
766                 struct mtd_oob_buf __user *buf_user = argp;
767
768                 /* NOTE: writes return length to buf_user->start */
769                 if (copy_from_user(&buf, argp, sizeof(buf)))
770                         ret = -EFAULT;
771                 else
772                         ret = mtdchar_readoob(file, mtd, buf.start, buf.length,
773                                 buf.ptr, &buf_user->start);
774                 break;
775         }
776
777         case MEMWRITEOOB64:
778         {
779                 struct mtd_oob_buf64 buf;
780                 struct mtd_oob_buf64 __user *buf_user = argp;
781
782                 if (copy_from_user(&buf, argp, sizeof(buf)))
783                         ret = -EFAULT;
784                 else
785                         ret = mtdchar_writeoob(file, mtd, buf.start, buf.length,
786                                 (void __user *)(uintptr_t)buf.usr_ptr,
787                                 &buf_user->length);
788                 break;
789         }
790
791         case MEMREADOOB64:
792         {
793                 struct mtd_oob_buf64 buf;
794                 struct mtd_oob_buf64 __user *buf_user = argp;
795
796                 if (copy_from_user(&buf, argp, sizeof(buf)))
797                         ret = -EFAULT;
798                 else
799                         ret = mtdchar_readoob(file, mtd, buf.start, buf.length,
800                                 (void __user *)(uintptr_t)buf.usr_ptr,
801                                 &buf_user->length);
802                 break;
803         }
804
805         case MEMWRITE:
806         {
807                 ret = mtdchar_write_ioctl(mtd,
808                       (struct mtd_write_req __user *)arg);
809                 break;
810         }
811
812         case MEMLOCK:
813         {
814                 struct erase_info_user einfo;
815
816                 if (copy_from_user(&einfo, argp, sizeof(einfo)))
817                         return -EFAULT;
818
819                 if (!mtd->lock)
820                         ret = -EOPNOTSUPP;
821                 else
822                         ret = mtd_lock(mtd, einfo.start, einfo.length);
823                 break;
824         }
825
826         case MEMUNLOCK:
827         {
828                 struct erase_info_user einfo;
829
830                 if (copy_from_user(&einfo, argp, sizeof(einfo)))
831                         return -EFAULT;
832
833                 if (!mtd->unlock)
834                         ret = -EOPNOTSUPP;
835                 else
836                         ret = mtd_unlock(mtd, einfo.start, einfo.length);
837                 break;
838         }
839
840         case MEMISLOCKED:
841         {
842                 struct erase_info_user einfo;
843
844                 if (copy_from_user(&einfo, argp, sizeof(einfo)))
845                         return -EFAULT;
846
847                 if (!mtd->is_locked)
848                         ret = -EOPNOTSUPP;
849                 else
850                         ret = mtd_is_locked(mtd, einfo.start, einfo.length);
851                 break;
852         }
853
854         /* Legacy interface */
855         case MEMGETOOBSEL:
856         {
857                 struct nand_oobinfo oi;
858
859                 if (!mtd->ecclayout)
860                         return -EOPNOTSUPP;
861                 if (mtd->ecclayout->eccbytes > ARRAY_SIZE(oi.eccpos))
862                         return -EINVAL;
863
864                 oi.useecc = MTD_NANDECC_AUTOPLACE;
865                 memcpy(&oi.eccpos, mtd->ecclayout->eccpos, sizeof(oi.eccpos));
866                 memcpy(&oi.oobfree, mtd->ecclayout->oobfree,
867                        sizeof(oi.oobfree));
868                 oi.eccbytes = mtd->ecclayout->eccbytes;
869
870                 if (copy_to_user(argp, &oi, sizeof(struct nand_oobinfo)))
871                         return -EFAULT;
872                 break;
873         }
874
875         case MEMGETBADBLOCK:
876         {
877                 loff_t offs;
878
879                 if (copy_from_user(&offs, argp, sizeof(loff_t)))
880                         return -EFAULT;
881                 if (!mtd->block_isbad)
882                         ret = -EOPNOTSUPP;
883                 else
884                         return mtd_block_isbad(mtd, offs);
885                 break;
886         }
887
888         case MEMSETBADBLOCK:
889         {
890                 loff_t offs;
891
892                 if (copy_from_user(&offs, argp, sizeof(loff_t)))
893                         return -EFAULT;
894                 if (!mtd->block_markbad)
895                         ret = -EOPNOTSUPP;
896                 else
897                         return mtd_block_markbad(mtd, offs);
898                 break;
899         }
900
901 #ifdef CONFIG_HAVE_MTD_OTP
902         case OTPSELECT:
903         {
904                 int mode;
905                 if (copy_from_user(&mode, argp, sizeof(int)))
906                         return -EFAULT;
907
908                 mfi->mode = MTD_FILE_MODE_NORMAL;
909
910                 ret = otp_select_filemode(mfi, mode);
911
912                 file->f_pos = 0;
913                 break;
914         }
915
916         case OTPGETREGIONCOUNT:
917         case OTPGETREGIONINFO:
918         {
919                 struct otp_info *buf = kmalloc(4096, GFP_KERNEL);
920                 if (!buf)
921                         return -ENOMEM;
922                 switch (mfi->mode) {
923                 case MTD_FILE_MODE_OTP_FACTORY:
924                         ret = mtd_get_fact_prot_info(mtd, buf, 4096);
925                         break;
926                 case MTD_FILE_MODE_OTP_USER:
927                         ret = mtd_get_user_prot_info(mtd, buf, 4096);
928                         break;
929                 default:
930                         ret = -EINVAL;
931                         break;
932                 }
933                 if (ret >= 0) {
934                         if (cmd == OTPGETREGIONCOUNT) {
935                                 int nbr = ret / sizeof(struct otp_info);
936                                 ret = copy_to_user(argp, &nbr, sizeof(int));
937                         } else
938                                 ret = copy_to_user(argp, buf, ret);
939                         if (ret)
940                                 ret = -EFAULT;
941                 }
942                 kfree(buf);
943                 break;
944         }
945
946         case OTPLOCK:
947         {
948                 struct otp_info oinfo;
949
950                 if (mfi->mode != MTD_FILE_MODE_OTP_USER)
951                         return -EINVAL;
952                 if (copy_from_user(&oinfo, argp, sizeof(oinfo)))
953                         return -EFAULT;
954                 if (!mtd->lock_user_prot_reg)
955                         return -EOPNOTSUPP;
956                 ret = mtd_lock_user_prot_reg(mtd, oinfo.start, oinfo.length);
957                 break;
958         }
959 #endif
960
961         /* This ioctl is being deprecated - it truncates the ECC layout */
962         case ECCGETLAYOUT:
963         {
964                 struct nand_ecclayout_user *usrlay;
965
966                 if (!mtd->ecclayout)
967                         return -EOPNOTSUPP;
968
969                 usrlay = kmalloc(sizeof(*usrlay), GFP_KERNEL);
970                 if (!usrlay)
971                         return -ENOMEM;
972
973                 shrink_ecclayout(mtd->ecclayout, usrlay);
974
975                 if (copy_to_user(argp, usrlay, sizeof(*usrlay)))
976                         ret = -EFAULT;
977                 kfree(usrlay);
978                 break;
979         }
980
981         case ECCGETSTATS:
982         {
983                 if (copy_to_user(argp, &mtd->ecc_stats,
984                                  sizeof(struct mtd_ecc_stats)))
985                         return -EFAULT;
986                 break;
987         }
988
989         case MTDFILEMODE:
990         {
991                 mfi->mode = 0;
992
993                 switch(arg) {
994                 case MTD_FILE_MODE_OTP_FACTORY:
995                 case MTD_FILE_MODE_OTP_USER:
996                         ret = otp_select_filemode(mfi, arg);
997                         break;
998
999                 case MTD_FILE_MODE_RAW:
1000                         if (!mtd_has_oob(mtd))
1001                                 return -EOPNOTSUPP;
1002                         mfi->mode = arg;
1003
1004                 case MTD_FILE_MODE_NORMAL:
1005                         break;
1006                 default:
1007                         ret = -EINVAL;
1008                 }
1009                 file->f_pos = 0;
1010                 break;
1011         }
1012
1013         case BLKPG:
1014         {
1015                 ret = mtdchar_blkpg_ioctl(mtd,
1016                       (struct blkpg_ioctl_arg __user *)arg);
1017                 break;
1018         }
1019
1020         case BLKRRPART:
1021         {
1022                 /* No reread partition feature. Just return ok */
1023                 ret = 0;
1024                 break;
1025         }
1026
1027         default:
1028                 ret = -ENOTTY;
1029         }
1030
1031         return ret;
1032 } /* memory_ioctl */
1033
1034 static long mtdchar_unlocked_ioctl(struct file *file, u_int cmd, u_long arg)
1035 {
1036         int ret;
1037
1038         mutex_lock(&mtd_mutex);
1039         ret = mtdchar_ioctl(file, cmd, arg);
1040         mutex_unlock(&mtd_mutex);
1041
1042         return ret;
1043 }
1044
1045 #ifdef CONFIG_COMPAT
1046
1047 struct mtd_oob_buf32 {
1048         u_int32_t start;
1049         u_int32_t length;
1050         compat_caddr_t ptr;     /* unsigned char* */
1051 };
1052
1053 #define MEMWRITEOOB32           _IOWR('M', 3, struct mtd_oob_buf32)
1054 #define MEMREADOOB32            _IOWR('M', 4, struct mtd_oob_buf32)
1055
1056 static long mtdchar_compat_ioctl(struct file *file, unsigned int cmd,
1057         unsigned long arg)
1058 {
1059         struct mtd_file_info *mfi = file->private_data;
1060         struct mtd_info *mtd = mfi->mtd;
1061         void __user *argp = compat_ptr(arg);
1062         int ret = 0;
1063
1064         mutex_lock(&mtd_mutex);
1065
1066         switch (cmd) {
1067         case MEMWRITEOOB32:
1068         {
1069                 struct mtd_oob_buf32 buf;
1070                 struct mtd_oob_buf32 __user *buf_user = argp;
1071
1072                 if (copy_from_user(&buf, argp, sizeof(buf)))
1073                         ret = -EFAULT;
1074                 else
1075                         ret = mtdchar_writeoob(file, mtd, buf.start,
1076                                 buf.length, compat_ptr(buf.ptr),
1077                                 &buf_user->length);
1078                 break;
1079         }
1080
1081         case MEMREADOOB32:
1082         {
1083                 struct mtd_oob_buf32 buf;
1084                 struct mtd_oob_buf32 __user *buf_user = argp;
1085
1086                 /* NOTE: writes return length to buf->start */
1087                 if (copy_from_user(&buf, argp, sizeof(buf)))
1088                         ret = -EFAULT;
1089                 else
1090                         ret = mtdchar_readoob(file, mtd, buf.start,
1091                                 buf.length, compat_ptr(buf.ptr),
1092                                 &buf_user->start);
1093                 break;
1094         }
1095         default:
1096                 ret = mtdchar_ioctl(file, cmd, (unsigned long)argp);
1097         }
1098
1099         mutex_unlock(&mtd_mutex);
1100
1101         return ret;
1102 }
1103
1104 #endif /* CONFIG_COMPAT */
1105
1106 /*
1107  * try to determine where a shared mapping can be made
1108  * - only supported for NOMMU at the moment (MMU can't doesn't copy private
1109  *   mappings)
1110  */
1111 #ifndef CONFIG_MMU
1112 static unsigned long mtdchar_get_unmapped_area(struct file *file,
1113                                            unsigned long addr,
1114                                            unsigned long len,
1115                                            unsigned long pgoff,
1116                                            unsigned long flags)
1117 {
1118         struct mtd_file_info *mfi = file->private_data;
1119         struct mtd_info *mtd = mfi->mtd;
1120         unsigned long offset;
1121         int ret;
1122
1123         if (addr != 0)
1124                 return (unsigned long) -EINVAL;
1125
1126         if (len > mtd->size || pgoff >= (mtd->size >> PAGE_SHIFT))
1127                 return (unsigned long) -EINVAL;
1128
1129         offset = pgoff << PAGE_SHIFT;
1130         if (offset > mtd->size - len)
1131                 return (unsigned long) -EINVAL;
1132
1133         ret = mtd_get_unmapped_area(mtd, len, offset, flags);
1134         return ret == -EOPNOTSUPP ? -ENOSYS : ret;
1135 }
1136 #endif
1137
1138 /*
1139  * set up a mapping for shared memory segments
1140  */
1141 static int mtdchar_mmap(struct file *file, struct vm_area_struct *vma)
1142 {
1143 #ifdef CONFIG_MMU
1144         struct mtd_file_info *mfi = file->private_data;
1145         struct mtd_info *mtd = mfi->mtd;
1146         struct map_info *map = mtd->priv;
1147         unsigned long start;
1148         unsigned long off;
1149         u32 len;
1150
1151         if (mtd->type == MTD_RAM || mtd->type == MTD_ROM) {
1152                 off = vma->vm_pgoff << PAGE_SHIFT;
1153                 start = map->phys;
1154                 len = PAGE_ALIGN((start & ~PAGE_MASK) + map->size);
1155                 start &= PAGE_MASK;
1156                 if ((vma->vm_end - vma->vm_start + off) > len)
1157                         return -EINVAL;
1158
1159                 off += start;
1160                 vma->vm_pgoff = off >> PAGE_SHIFT;
1161                 vma->vm_flags |= VM_IO | VM_RESERVED;
1162
1163 #ifdef pgprot_noncached
1164                 if (file->f_flags & O_DSYNC || off >= __pa(high_memory))
1165                         vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
1166 #endif
1167                 if (io_remap_pfn_range(vma, vma->vm_start, off >> PAGE_SHIFT,
1168                                        vma->vm_end - vma->vm_start,
1169                                        vma->vm_page_prot))
1170                         return -EAGAIN;
1171
1172                 return 0;
1173         }
1174         return -ENOSYS;
1175 #else
1176         return vma->vm_flags & VM_SHARED ? 0 : -ENOSYS;
1177 #endif
1178 }
1179
1180 static const struct file_operations mtd_fops = {
1181         .owner          = THIS_MODULE,
1182         .llseek         = mtdchar_lseek,
1183         .read           = mtdchar_read,
1184         .write          = mtdchar_write,
1185         .unlocked_ioctl = mtdchar_unlocked_ioctl,
1186 #ifdef CONFIG_COMPAT
1187         .compat_ioctl   = mtdchar_compat_ioctl,
1188 #endif
1189         .open           = mtdchar_open,
1190         .release        = mtdchar_close,
1191         .mmap           = mtdchar_mmap,
1192 #ifndef CONFIG_MMU
1193         .get_unmapped_area = mtdchar_get_unmapped_area,
1194 #endif
1195 };
1196
1197 static struct dentry *mtd_inodefs_mount(struct file_system_type *fs_type,
1198                                 int flags, const char *dev_name, void *data)
1199 {
1200         return mount_pseudo(fs_type, "mtd_inode:", NULL, NULL, MTD_INODE_FS_MAGIC);
1201 }
1202
1203 static struct file_system_type mtd_inodefs_type = {
1204        .name = "mtd_inodefs",
1205        .mount = mtd_inodefs_mount,
1206        .kill_sb = kill_anon_super,
1207 };
1208
1209 static void mtdchar_notify_add(struct mtd_info *mtd)
1210 {
1211 }
1212
1213 static void mtdchar_notify_remove(struct mtd_info *mtd)
1214 {
1215         struct inode *mtd_ino = ilookup(mtd_inode_mnt->mnt_sb, mtd->index);
1216
1217         if (mtd_ino) {
1218                 /* Destroy the inode if it exists */
1219                 clear_nlink(mtd_ino);
1220                 iput(mtd_ino);
1221         }
1222 }
1223
1224 static struct mtd_notifier mtdchar_notifier = {
1225         .add = mtdchar_notify_add,
1226         .remove = mtdchar_notify_remove,
1227 };
1228
1229 static int __init init_mtdchar(void)
1230 {
1231         int ret;
1232
1233         ret = __register_chrdev(MTD_CHAR_MAJOR, 0, 1 << MINORBITS,
1234                                    "mtd", &mtd_fops);
1235         if (ret < 0) {
1236                 pr_notice("Can't allocate major number %d for "
1237                                 "Memory Technology Devices.\n", MTD_CHAR_MAJOR);
1238                 return ret;
1239         }
1240
1241         ret = register_filesystem(&mtd_inodefs_type);
1242         if (ret) {
1243                 pr_notice("Can't register mtd_inodefs filesystem: %d\n", ret);
1244                 goto err_unregister_chdev;
1245         }
1246
1247         mtd_inode_mnt = kern_mount(&mtd_inodefs_type);
1248         if (IS_ERR(mtd_inode_mnt)) {
1249                 ret = PTR_ERR(mtd_inode_mnt);
1250                 pr_notice("Error mounting mtd_inodefs filesystem: %d\n", ret);
1251                 goto err_unregister_filesystem;
1252         }
1253         register_mtd_user(&mtdchar_notifier);
1254
1255         return ret;
1256
1257 err_unregister_filesystem:
1258         unregister_filesystem(&mtd_inodefs_type);
1259 err_unregister_chdev:
1260         __unregister_chrdev(MTD_CHAR_MAJOR, 0, 1 << MINORBITS, "mtd");
1261         return ret;
1262 }
1263
1264 static void __exit cleanup_mtdchar(void)
1265 {
1266         unregister_mtd_user(&mtdchar_notifier);
1267         kern_unmount(mtd_inode_mnt);
1268         unregister_filesystem(&mtd_inodefs_type);
1269         __unregister_chrdev(MTD_CHAR_MAJOR, 0, 1 << MINORBITS, "mtd");
1270 }
1271
1272 module_init(init_mtdchar);
1273 module_exit(cleanup_mtdchar);
1274
1275 MODULE_ALIAS_CHARDEV_MAJOR(MTD_CHAR_MAJOR);
1276
1277 MODULE_LICENSE("GPL");
1278 MODULE_AUTHOR("David Woodhouse <dwmw2@infradead.org>");
1279 MODULE_DESCRIPTION("Direct character-device access to MTD devices");
1280 MODULE_ALIAS_CHARDEV_MAJOR(MTD_CHAR_MAJOR);