1 // SPDX-License-Identifier: GPL-2.0-or-later
6 #include <linux/device.h>
10 #include <linux/init.h>
11 #include <linux/kernel.h>
12 #include <linux/module.h>
13 #include <linux/slab.h>
14 #include <linux/sched.h>
15 #include <linux/mutex.h>
16 #include <linux/backing-dev.h>
17 #include <linux/compat.h>
18 #include <linux/mount.h>
19 #include <linux/blkpg.h>
20 #include <linux/magic.h>
21 #include <linux/major.h>
22 #include <linux/mtd/mtd.h>
23 #include <linux/mtd/partitions.h>
24 #include <linux/mtd/map.h>
26 #include <linux/uaccess.h>
30 static DEFINE_MUTEX(mtd_mutex);
33 * Data structure to hold the pointer to the mtd device as well
34 * as mode information of various use cases.
36 struct mtd_file_info {
38 enum mtd_file_modes mode;
41 static loff_t mtdchar_lseek(struct file *file, loff_t offset, int orig)
43 struct mtd_file_info *mfi = file->private_data;
44 return fixed_size_llseek(file, offset, orig, mfi->mtd->size);
47 static int mtdchar_open(struct inode *inode, struct file *file)
49 int minor = iminor(inode);
50 int devnum = minor >> 1;
53 struct mtd_file_info *mfi;
55 pr_debug("MTD_open\n");
57 /* You can't open the RO devices RW */
58 if ((file->f_mode & FMODE_WRITE) && (minor & 1))
61 mutex_lock(&mtd_mutex);
62 mtd = get_mtd_device(NULL, devnum);
69 if (mtd->type == MTD_ABSENT) {
74 /* You can't open it RW if it's not a writeable device */
75 if ((file->f_mode & FMODE_WRITE) && !(mtd->flags & MTD_WRITEABLE)) {
80 mfi = kzalloc(sizeof(*mfi), GFP_KERNEL);
86 file->private_data = mfi;
87 mutex_unlock(&mtd_mutex);
93 mutex_unlock(&mtd_mutex);
97 /*====================================================================*/
99 static int mtdchar_close(struct inode *inode, struct file *file)
101 struct mtd_file_info *mfi = file->private_data;
102 struct mtd_info *mtd = mfi->mtd;
104 pr_debug("MTD_close\n");
106 /* Only sync if opened RW */
107 if ((file->f_mode & FMODE_WRITE))
111 file->private_data = NULL;
115 } /* mtdchar_close */
117 /* Back in June 2001, dwmw2 wrote:
119 * FIXME: This _really_ needs to die. In 2.5, we should lock the
120 * userspace buffer down and use it directly with readv/writev.
122 * The implementation below, using mtd_kmalloc_up_to, mitigates
123 * allocation failures when the system is under low-memory situations
124 * or if memory is highly fragmented at the cost of reducing the
125 * performance of the requested transfer due to a smaller buffer size.
127 * A more complex but more memory-efficient implementation based on
128 * get_user_pages and iovecs to cover extents of those pages is a
129 * longer-term goal, as intimated by dwmw2 above. However, for the
130 * write case, this requires yet more complex head and tail transfer
131 * handling when those head and tail offsets and sizes are such that
132 * alignment requirements are not met in the NAND subdriver.
135 static ssize_t mtdchar_read(struct file *file, char __user *buf, size_t count,
138 struct mtd_file_info *mfi = file->private_data;
139 struct mtd_info *mtd = mfi->mtd;
141 size_t total_retlen=0;
147 pr_debug("MTD_read\n");
149 if (*ppos + count > mtd->size) {
150 if (*ppos < mtd->size)
151 count = mtd->size - *ppos;
159 kbuf = mtd_kmalloc_up_to(mtd, &size);
164 len = min_t(size_t, count, size);
167 case MTD_FILE_MODE_OTP_FACTORY:
168 ret = mtd_read_fact_prot_reg(mtd, *ppos, len,
171 case MTD_FILE_MODE_OTP_USER:
172 ret = mtd_read_user_prot_reg(mtd, *ppos, len,
175 case MTD_FILE_MODE_RAW:
177 struct mtd_oob_ops ops;
179 ops.mode = MTD_OPS_RAW;
184 ret = mtd_read_oob(mtd, *ppos, &ops);
189 ret = mtd_read(mtd, *ppos, len, &retlen, kbuf);
191 /* Nand returns -EBADMSG on ECC errors, but it returns
192 * the data. For our userspace tools it is important
193 * to dump areas with ECC errors!
194 * For kernel internal usage it also might return -EUCLEAN
195 * to signal the caller that a bitflip has occurred and has
196 * been corrected by the ECC algorithm.
197 * Userspace software which accesses NAND this way
198 * must be aware of the fact that it deals with NAND
200 if (!ret || mtd_is_bitflip_or_eccerr(ret)) {
202 if (copy_to_user(buf, kbuf, retlen)) {
207 total_retlen += retlen;
225 static ssize_t mtdchar_write(struct file *file, const char __user *buf, size_t count,
228 struct mtd_file_info *mfi = file->private_data;
229 struct mtd_info *mtd = mfi->mtd;
233 size_t total_retlen=0;
237 pr_debug("MTD_write\n");
239 if (*ppos >= mtd->size)
242 if (*ppos + count > mtd->size)
243 count = mtd->size - *ppos;
248 kbuf = mtd_kmalloc_up_to(mtd, &size);
253 len = min_t(size_t, count, size);
255 if (copy_from_user(kbuf, buf, len)) {
261 case MTD_FILE_MODE_OTP_FACTORY:
264 case MTD_FILE_MODE_OTP_USER:
265 ret = mtd_write_user_prot_reg(mtd, *ppos, len,
269 case MTD_FILE_MODE_RAW:
271 struct mtd_oob_ops ops;
273 ops.mode = MTD_OPS_RAW;
279 ret = mtd_write_oob(mtd, *ppos, &ops);
285 ret = mtd_write(mtd, *ppos, len, &retlen, kbuf);
289 * Return -ENOSPC only if no data could be written at all.
290 * Otherwise just return the number of bytes that actually
293 if ((ret == -ENOSPC) && (total_retlen))
298 total_retlen += retlen;
310 } /* mtdchar_write */
312 /*======================================================================
314 IOCTL calls for getting device parameters.
316 ======================================================================*/
318 static int otp_select_filemode(struct mtd_file_info *mfi, int mode)
320 struct mtd_info *mtd = mfi->mtd;
324 case MTD_OTP_FACTORY:
325 if (mtd_read_fact_prot_reg(mtd, -1, 0, &retlen, NULL) ==
329 mfi->mode = MTD_FILE_MODE_OTP_FACTORY;
332 if (mtd_read_user_prot_reg(mtd, -1, 0, &retlen, NULL) ==
336 mfi->mode = MTD_FILE_MODE_OTP_USER;
339 mfi->mode = MTD_FILE_MODE_NORMAL;
348 static int mtdchar_writeoob(struct file *file, struct mtd_info *mtd,
349 uint64_t start, uint32_t length, void __user *ptr,
350 uint32_t __user *retp)
352 struct mtd_file_info *mfi = file->private_data;
353 struct mtd_oob_ops ops;
357 if (!(file->f_mode & FMODE_WRITE))
363 if (!mtd->_write_oob)
367 ops.ooboffs = start & (mtd->writesize - 1);
369 ops.mode = (mfi->mode == MTD_FILE_MODE_RAW) ? MTD_OPS_RAW :
372 if (ops.ooboffs && ops.ooblen > (mtd->oobsize - ops.ooboffs))
375 ops.oobbuf = memdup_user(ptr, length);
376 if (IS_ERR(ops.oobbuf))
377 return PTR_ERR(ops.oobbuf);
379 start &= ~((uint64_t)mtd->writesize - 1);
380 ret = mtd_write_oob(mtd, start, &ops);
382 if (ops.oobretlen > 0xFFFFFFFFU)
384 retlen = ops.oobretlen;
385 if (copy_to_user(retp, &retlen, sizeof(length)))
392 static int mtdchar_readoob(struct file *file, struct mtd_info *mtd,
393 uint64_t start, uint32_t length, void __user *ptr,
394 uint32_t __user *retp)
396 struct mtd_file_info *mfi = file->private_data;
397 struct mtd_oob_ops ops;
404 ops.ooboffs = start & (mtd->writesize - 1);
406 ops.mode = (mfi->mode == MTD_FILE_MODE_RAW) ? MTD_OPS_RAW :
409 if (ops.ooboffs && ops.ooblen > (mtd->oobsize - ops.ooboffs))
412 ops.oobbuf = kmalloc(length, GFP_KERNEL);
416 start &= ~((uint64_t)mtd->writesize - 1);
417 ret = mtd_read_oob(mtd, start, &ops);
419 if (put_user(ops.oobretlen, retp))
421 else if (ops.oobretlen && copy_to_user(ptr, ops.oobbuf,
428 * NAND returns -EBADMSG on ECC errors, but it returns the OOB
429 * data. For our userspace tools it is important to dump areas
431 * For kernel internal usage it also might return -EUCLEAN
432 * to signal the caller that a bitflip has occurred and has
433 * been corrected by the ECC algorithm.
435 * Note: currently the standard NAND function, nand_read_oob_std,
436 * does not calculate ECC for the OOB area, so do not rely on
437 * this behavior unless you have replaced it with your own.
439 if (mtd_is_bitflip_or_eccerr(ret))
446 * Copies (and truncates, if necessary) OOB layout information to the
447 * deprecated layout struct, nand_ecclayout_user. This is necessary only to
448 * support the deprecated API ioctl ECCGETLAYOUT while allowing all new
449 * functionality to use mtd_ooblayout_ops flexibly (i.e. mtd_ooblayout_ops
450 * can describe any kind of OOB layout with almost zero overhead from a
451 * memory usage point of view).
453 static int shrink_ecclayout(struct mtd_info *mtd,
454 struct nand_ecclayout_user *to)
456 struct mtd_oob_region oobregion;
457 int i, section = 0, ret;
462 memset(to, 0, sizeof(*to));
465 for (i = 0; i < MTD_MAX_ECCPOS_ENTRIES;) {
468 ret = mtd_ooblayout_ecc(mtd, section++, &oobregion);
476 eccpos = oobregion.offset;
477 for (; i < MTD_MAX_ECCPOS_ENTRIES &&
478 eccpos < oobregion.offset + oobregion.length; i++) {
479 to->eccpos[i] = eccpos++;
484 for (i = 0; i < MTD_MAX_OOBFREE_ENTRIES; i++) {
485 ret = mtd_ooblayout_free(mtd, i, &oobregion);
493 to->oobfree[i].offset = oobregion.offset;
494 to->oobfree[i].length = oobregion.length;
495 to->oobavail += to->oobfree[i].length;
501 static int get_oobinfo(struct mtd_info *mtd, struct nand_oobinfo *to)
503 struct mtd_oob_region oobregion;
504 int i, section = 0, ret;
509 memset(to, 0, sizeof(*to));
512 for (i = 0; i < ARRAY_SIZE(to->eccpos);) {
515 ret = mtd_ooblayout_ecc(mtd, section++, &oobregion);
523 if (oobregion.length + i > ARRAY_SIZE(to->eccpos))
526 eccpos = oobregion.offset;
527 for (; eccpos < oobregion.offset + oobregion.length; i++) {
528 to->eccpos[i] = eccpos++;
533 for (i = 0; i < 8; i++) {
534 ret = mtd_ooblayout_free(mtd, i, &oobregion);
542 to->oobfree[i][0] = oobregion.offset;
543 to->oobfree[i][1] = oobregion.length;
546 to->useecc = MTD_NANDECC_AUTOPLACE;
551 static int mtdchar_blkpg_ioctl(struct mtd_info *mtd,
552 struct blkpg_ioctl_arg *arg)
554 struct blkpg_partition p;
556 if (!capable(CAP_SYS_ADMIN))
559 if (copy_from_user(&p, arg->data, sizeof(p)))
563 case BLKPG_ADD_PARTITION:
565 /* Only master mtd device must be used to add partitions */
566 if (mtd_is_partition(mtd))
569 /* Sanitize user input */
570 p.devname[BLKPG_DEVNAMELTH - 1] = '\0';
572 return mtd_add_partition(mtd, p.devname, p.start, p.length);
574 case BLKPG_DEL_PARTITION:
579 return mtd_del_partition(mtd, p.pno);
586 static int mtdchar_write_ioctl(struct mtd_info *mtd,
587 struct mtd_write_req __user *argp)
589 struct mtd_write_req req;
590 struct mtd_oob_ops ops;
591 const void __user *usr_data, *usr_oob;
594 if (copy_from_user(&req, argp, sizeof(req)))
597 usr_data = (const void __user *)(uintptr_t)req.usr_data;
598 usr_oob = (const void __user *)(uintptr_t)req.usr_oob;
600 if (!mtd->_write_oob)
604 ops.len = (size_t)req.len;
605 ops.ooblen = (size_t)req.ooblen;
609 ops.datbuf = memdup_user(usr_data, ops.len);
610 if (IS_ERR(ops.datbuf))
611 return PTR_ERR(ops.datbuf);
617 ops.oobbuf = memdup_user(usr_oob, ops.ooblen);
618 if (IS_ERR(ops.oobbuf)) {
620 return PTR_ERR(ops.oobbuf);
626 ret = mtd_write_oob(mtd, (loff_t)req.start, &ops);
634 static int mtdchar_ioctl(struct file *file, u_int cmd, u_long arg)
636 struct mtd_file_info *mfi = file->private_data;
637 struct mtd_info *mtd = mfi->mtd;
638 void __user *argp = (void __user *)arg;
640 struct mtd_info_user info;
642 pr_debug("MTD_ioctl\n");
645 case MEMGETREGIONCOUNT:
646 if (copy_to_user(argp, &(mtd->numeraseregions), sizeof(int)))
650 case MEMGETREGIONINFO:
653 struct mtd_erase_region_info *kr;
654 struct region_info_user __user *ur = argp;
656 if (get_user(ur_idx, &(ur->regionindex)))
659 if (ur_idx >= mtd->numeraseregions)
662 kr = &(mtd->eraseregions[ur_idx]);
664 if (put_user(kr->offset, &(ur->offset))
665 || put_user(kr->erasesize, &(ur->erasesize))
666 || put_user(kr->numblocks, &(ur->numblocks)))
673 memset(&info, 0, sizeof(info));
674 info.type = mtd->type;
675 info.flags = mtd->flags;
676 info.size = mtd->size;
677 info.erasesize = mtd->erasesize;
678 info.writesize = mtd->writesize;
679 info.oobsize = mtd->oobsize;
680 /* The below field is obsolete */
682 if (copy_to_user(argp, &info, sizeof(struct mtd_info_user)))
689 struct erase_info *erase;
691 if(!(file->f_mode & FMODE_WRITE))
694 erase=kzalloc(sizeof(struct erase_info),GFP_KERNEL);
698 if (cmd == MEMERASE64) {
699 struct erase_info_user64 einfo64;
701 if (copy_from_user(&einfo64, argp,
702 sizeof(struct erase_info_user64))) {
706 erase->addr = einfo64.start;
707 erase->len = einfo64.length;
709 struct erase_info_user einfo32;
711 if (copy_from_user(&einfo32, argp,
712 sizeof(struct erase_info_user))) {
716 erase->addr = einfo32.start;
717 erase->len = einfo32.length;
720 ret = mtd_erase(mtd, erase);
728 struct mtd_oob_buf buf;
729 struct mtd_oob_buf __user *buf_user = argp;
731 /* NOTE: writes return length to buf_user->length */
732 if (copy_from_user(&buf, argp, sizeof(buf)))
735 ret = mtdchar_writeoob(file, mtd, buf.start, buf.length,
736 buf.ptr, &buf_user->length);
742 struct mtd_oob_buf buf;
743 struct mtd_oob_buf __user *buf_user = argp;
745 /* NOTE: writes return length to buf_user->start */
746 if (copy_from_user(&buf, argp, sizeof(buf)))
749 ret = mtdchar_readoob(file, mtd, buf.start, buf.length,
750 buf.ptr, &buf_user->start);
756 struct mtd_oob_buf64 buf;
757 struct mtd_oob_buf64 __user *buf_user = argp;
759 if (copy_from_user(&buf, argp, sizeof(buf)))
762 ret = mtdchar_writeoob(file, mtd, buf.start, buf.length,
763 (void __user *)(uintptr_t)buf.usr_ptr,
770 struct mtd_oob_buf64 buf;
771 struct mtd_oob_buf64 __user *buf_user = argp;
773 if (copy_from_user(&buf, argp, sizeof(buf)))
776 ret = mtdchar_readoob(file, mtd, buf.start, buf.length,
777 (void __user *)(uintptr_t)buf.usr_ptr,
784 ret = mtdchar_write_ioctl(mtd,
785 (struct mtd_write_req __user *)arg);
791 struct erase_info_user einfo;
793 if (copy_from_user(&einfo, argp, sizeof(einfo)))
796 ret = mtd_lock(mtd, einfo.start, einfo.length);
802 struct erase_info_user einfo;
804 if (copy_from_user(&einfo, argp, sizeof(einfo)))
807 ret = mtd_unlock(mtd, einfo.start, einfo.length);
813 struct erase_info_user einfo;
815 if (copy_from_user(&einfo, argp, sizeof(einfo)))
818 ret = mtd_is_locked(mtd, einfo.start, einfo.length);
822 /* Legacy interface */
825 struct nand_oobinfo oi;
830 ret = get_oobinfo(mtd, &oi);
834 if (copy_to_user(argp, &oi, sizeof(struct nand_oobinfo)))
843 if (copy_from_user(&offs, argp, sizeof(loff_t)))
845 return mtd_block_isbad(mtd, offs);
853 if (copy_from_user(&offs, argp, sizeof(loff_t)))
855 return mtd_block_markbad(mtd, offs);
862 if (copy_from_user(&mode, argp, sizeof(int)))
865 mfi->mode = MTD_FILE_MODE_NORMAL;
867 ret = otp_select_filemode(mfi, mode);
873 case OTPGETREGIONCOUNT:
874 case OTPGETREGIONINFO:
876 struct otp_info *buf = kmalloc(4096, GFP_KERNEL);
881 case MTD_FILE_MODE_OTP_FACTORY:
882 ret = mtd_get_fact_prot_info(mtd, 4096, &retlen, buf);
884 case MTD_FILE_MODE_OTP_USER:
885 ret = mtd_get_user_prot_info(mtd, 4096, &retlen, buf);
892 if (cmd == OTPGETREGIONCOUNT) {
893 int nbr = retlen / sizeof(struct otp_info);
894 ret = copy_to_user(argp, &nbr, sizeof(int));
896 ret = copy_to_user(argp, buf, retlen);
906 struct otp_info oinfo;
908 if (mfi->mode != MTD_FILE_MODE_OTP_USER)
910 if (copy_from_user(&oinfo, argp, sizeof(oinfo)))
912 ret = mtd_lock_user_prot_reg(mtd, oinfo.start, oinfo.length);
916 /* This ioctl is being deprecated - it truncates the ECC layout */
919 struct nand_ecclayout_user *usrlay;
924 usrlay = kmalloc(sizeof(*usrlay), GFP_KERNEL);
928 shrink_ecclayout(mtd, usrlay);
930 if (copy_to_user(argp, usrlay, sizeof(*usrlay)))
938 if (copy_to_user(argp, &mtd->ecc_stats,
939 sizeof(struct mtd_ecc_stats)))
949 case MTD_FILE_MODE_OTP_FACTORY:
950 case MTD_FILE_MODE_OTP_USER:
951 ret = otp_select_filemode(mfi, arg);
954 case MTD_FILE_MODE_RAW:
955 if (!mtd_has_oob(mtd))
959 case MTD_FILE_MODE_NORMAL:
970 struct blkpg_ioctl_arg __user *blk_arg = argp;
971 struct blkpg_ioctl_arg a;
973 if (copy_from_user(&a, blk_arg, sizeof(a)))
976 ret = mtdchar_blkpg_ioctl(mtd, &a);
982 /* No reread partition feature. Just return ok */
994 static long mtdchar_unlocked_ioctl(struct file *file, u_int cmd, u_long arg)
998 mutex_lock(&mtd_mutex);
999 ret = mtdchar_ioctl(file, cmd, arg);
1000 mutex_unlock(&mtd_mutex);
1005 #ifdef CONFIG_COMPAT
1007 struct mtd_oob_buf32 {
1010 compat_caddr_t ptr; /* unsigned char* */
1013 #define MEMWRITEOOB32 _IOWR('M', 3, struct mtd_oob_buf32)
1014 #define MEMREADOOB32 _IOWR('M', 4, struct mtd_oob_buf32)
1016 static long mtdchar_compat_ioctl(struct file *file, unsigned int cmd,
1019 struct mtd_file_info *mfi = file->private_data;
1020 struct mtd_info *mtd = mfi->mtd;
1021 void __user *argp = compat_ptr(arg);
1024 mutex_lock(&mtd_mutex);
1029 struct mtd_oob_buf32 buf;
1030 struct mtd_oob_buf32 __user *buf_user = argp;
1032 if (copy_from_user(&buf, argp, sizeof(buf)))
1035 ret = mtdchar_writeoob(file, mtd, buf.start,
1036 buf.length, compat_ptr(buf.ptr),
1043 struct mtd_oob_buf32 buf;
1044 struct mtd_oob_buf32 __user *buf_user = argp;
1046 /* NOTE: writes return length to buf->start */
1047 if (copy_from_user(&buf, argp, sizeof(buf)))
1050 ret = mtdchar_readoob(file, mtd, buf.start,
1051 buf.length, compat_ptr(buf.ptr),
1058 /* Convert from blkpg_compat_ioctl_arg to blkpg_ioctl_arg */
1059 struct blkpg_compat_ioctl_arg __user *uarg = argp;
1060 struct blkpg_compat_ioctl_arg compat_arg;
1061 struct blkpg_ioctl_arg a;
1063 if (copy_from_user(&compat_arg, uarg, sizeof(compat_arg))) {
1068 memset(&a, 0, sizeof(a));
1069 a.op = compat_arg.op;
1070 a.flags = compat_arg.flags;
1071 a.datalen = compat_arg.datalen;
1072 a.data = compat_ptr(compat_arg.data);
1074 ret = mtdchar_blkpg_ioctl(mtd, &a);
1079 ret = mtdchar_ioctl(file, cmd, (unsigned long)argp);
1082 mutex_unlock(&mtd_mutex);
1087 #endif /* CONFIG_COMPAT */
1090 * try to determine where a shared mapping can be made
1091 * - only supported for NOMMU at the moment (MMU can't doesn't copy private
1095 static unsigned long mtdchar_get_unmapped_area(struct file *file,
1098 unsigned long pgoff,
1099 unsigned long flags)
1101 struct mtd_file_info *mfi = file->private_data;
1102 struct mtd_info *mtd = mfi->mtd;
1103 unsigned long offset;
1107 return (unsigned long) -EINVAL;
1109 if (len > mtd->size || pgoff >= (mtd->size >> PAGE_SHIFT))
1110 return (unsigned long) -EINVAL;
1112 offset = pgoff << PAGE_SHIFT;
1113 if (offset > mtd->size - len)
1114 return (unsigned long) -EINVAL;
1116 ret = mtd_get_unmapped_area(mtd, len, offset, flags);
1117 return ret == -EOPNOTSUPP ? -ENODEV : ret;
1120 static unsigned mtdchar_mmap_capabilities(struct file *file)
1122 struct mtd_file_info *mfi = file->private_data;
1124 return mtd_mmap_capabilities(mfi->mtd);
1129 * set up a mapping for shared memory segments
1131 static int mtdchar_mmap(struct file *file, struct vm_area_struct *vma)
1134 struct mtd_file_info *mfi = file->private_data;
1135 struct mtd_info *mtd = mfi->mtd;
1136 struct map_info *map = mtd->priv;
1138 /* This is broken because it assumes the MTD device is map-based
1139 and that mtd->priv is a valid struct map_info. It should be
1140 replaced with something that uses the mtd_get_unmapped_area()
1141 operation properly. */
1142 if (0 /*mtd->type == MTD_RAM || mtd->type == MTD_ROM*/) {
1143 #ifdef pgprot_noncached
1144 if (file->f_flags & O_DSYNC || map->phys >= __pa(high_memory))
1145 vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
1147 return vm_iomap_memory(vma, map->phys, map->size);
1151 return vma->vm_flags & VM_SHARED ? 0 : -EACCES;
1155 static const struct file_operations mtd_fops = {
1156 .owner = THIS_MODULE,
1157 .llseek = mtdchar_lseek,
1158 .read = mtdchar_read,
1159 .write = mtdchar_write,
1160 .unlocked_ioctl = mtdchar_unlocked_ioctl,
1161 #ifdef CONFIG_COMPAT
1162 .compat_ioctl = mtdchar_compat_ioctl,
1164 .open = mtdchar_open,
1165 .release = mtdchar_close,
1166 .mmap = mtdchar_mmap,
1168 .get_unmapped_area = mtdchar_get_unmapped_area,
1169 .mmap_capabilities = mtdchar_mmap_capabilities,
1173 int __init init_mtdchar(void)
1177 ret = __register_chrdev(MTD_CHAR_MAJOR, 0, 1 << MINORBITS,
1180 pr_err("Can't allocate major number %d for MTD\n",
1188 void __exit cleanup_mtdchar(void)
1190 __unregister_chrdev(MTD_CHAR_MAJOR, 0, 1 << MINORBITS, "mtd");
1193 MODULE_ALIAS_CHARDEV_MAJOR(MTD_CHAR_MAJOR);