1 // SPDX-License-Identifier: GPL-2.0
2 #include <linux/kernel.h>
3 #include <linux/blkdev.h>
4 #include <linux/init.h>
5 #include <linux/mount.h>
6 #include <linux/major.h>
7 #include <linux/delay.h>
8 #include <linux/init_syscalls.h>
9 #include <linux/raid/detect.h>
10 #include <linux/raid/md_u.h>
11 #include <linux/raid/md_p.h>
15 * When md (and any require personalities) are compiled into the kernel
16 * (not a module), arrays can be assembles are boot time using with AUTODETECT
17 * where specially marked partitions are registered with md_autodetect_dev(),
18 * and with MD_BOOT where devices to be collected are given on the boot line
20 * The code for that is here.
23 #ifdef CONFIG_MD_AUTODETECT
24 static int __initdata raid_noautodetect
;
26 static int __initdata raid_noautodetect
=1;
28 static int __initdata raid_autopart
;
30 static struct md_setup_args
{
36 } md_setup_args
[256] __initdata
;
38 static int md_setup_ents __initdata
;
41 * Parse the command-line parameters given our kernel, but do not
42 * actually try to invoke the MD device now; that is handled by
43 * md_setup_drive after the low-level disk drivers have initialised.
45 * 27/11/1999: Fixed to work correctly with the 2.3 kernel (which
46 * assigns the task of parsing integer arguments to the
47 * invoked program now). Added ability to initialise all
48 * the MD devices (by specifying multiple "md=" lines)
49 * instead of just one. -- KTK
50 * 18May2000: Added support for persistent-superblock arrays:
51 * md=n,0,factor,fault,device-list uses RAID0 for device n
52 * md=n,-1,factor,fault,device-list uses LINEAR for device n
53 * md=n,device-list reads a RAID superblock from the devices
54 * elements in device-list are read by name_to_kdev_t so can be
55 * a hex number or something like /dev/hda1 /dev/sdb
56 * 2001-06-03: Dave Cinege <dcinege@psychosis.com>
57 * Shifted name_to_kdev_t() and related operations to md_set_drive()
58 * for later execution. Rewrote section to make devfs compatible.
60 static int __init
md_setup(char *str
)
62 int minor
, level
, factor
, fault
, partitioned
= 0;
71 if (get_option(&str
, &minor
) != 2) { /* MD Number */
72 printk(KERN_WARNING
"md: Too few arguments supplied to md=.\n");
76 for (ent
=0 ; ent
< md_setup_ents
; ent
++)
77 if (md_setup_args
[ent
].minor
== minor
&&
78 md_setup_args
[ent
].partitioned
== partitioned
) {
79 printk(KERN_WARNING
"md: md=%s%d, Specified more than once. "
80 "Replacing previous definition.\n", partitioned
?"d":"", minor
);
83 if (ent
>= ARRAY_SIZE(md_setup_args
)) {
84 printk(KERN_WARNING
"md: md=%s%d - too many md initialisations\n", partitioned
?"d":"", minor
);
87 if (ent
>= md_setup_ents
)
89 switch (get_option(&str
, &level
)) { /* RAID level */
90 case 2: /* could be 0 or -1.. */
91 if (level
== 0 || level
== LEVEL_LINEAR
) {
92 if (get_option(&str
, &factor
) != 2 || /* Chunk Size */
93 get_option(&str
, &fault
) != 2) {
94 printk(KERN_WARNING
"md: Too few arguments supplied to md=.\n");
97 md_setup_args
[ent
].level
= level
;
98 md_setup_args
[ent
].chunk
= 1 << (factor
+12);
99 if (level
== LEVEL_LINEAR
)
106 case 1: /* the first device is numeric */
110 md_setup_args
[ent
].level
= LEVEL_NONE
;
111 pername
="super-block";
114 printk(KERN_INFO
"md: Will configure md%d (%s) from %s, below.\n",
115 minor
, pername
, str
);
116 md_setup_args
[ent
].device_names
= str
;
117 md_setup_args
[ent
].partitioned
= partitioned
;
118 md_setup_args
[ent
].minor
= minor
;
123 static void __init
md_setup_drive(struct md_setup_args
*args
)
125 char *devname
= args
->device_names
;
126 dev_t devices
[MD_SB_DISKS
+ 1], mdev
;
127 struct mdu_array_info_s ainfo
= { };
128 struct block_device
*bdev
;
133 if (args
->partitioned
) {
134 mdev
= MKDEV(mdp_major
, args
->minor
<< MdpMinorShift
);
135 sprintf(name
, "md_d%d", args
->minor
);
137 mdev
= MKDEV(MD_MAJOR
, args
->minor
);
138 sprintf(name
, "md%d", args
->minor
);
141 for (i
= 0; i
< MD_SB_DISKS
&& devname
!= NULL
; i
++) {
147 p
= strchr(devname
, ',');
151 dev
= name_to_dev_t(devname
);
152 if (strncmp(devname
, "/dev/", 5) == 0)
154 snprintf(comp_name
, 63, "/dev/%s", devname
);
155 if (init_stat(comp_name
, &stat
, 0) == 0 && S_ISBLK(stat
.mode
))
156 dev
= new_decode_dev(stat
.rdev
);
158 pr_warn("md: Unknown device name: %s\n", devname
);
170 pr_info("md: Loading %s: %s\n", name
, args
->device_names
);
172 bdev
= blkdev_get_by_dev(mdev
, FMODE_READ
, NULL
);
174 pr_err("md: open failed - cannot start array %s\n", name
);
179 if (WARN(bdev
->bd_disk
->fops
!= &md_fops
,
180 "Opening block device %x resulted in non-md device\n",
184 mddev
= bdev
->bd_disk
->private_data
;
186 err
= mddev_lock(mddev
);
188 pr_err("md: failed to lock array %s\n", name
);
192 if (!list_empty(&mddev
->disks
) || mddev
->raid_disks
) {
193 pr_warn("md: Ignoring %s, already autodetected. (Use raid=noautodetect)\n",
198 if (args
->level
!= LEVEL_NONE
) {
200 ainfo
.level
= args
->level
;
201 ainfo
.md_minor
= args
->minor
;
202 ainfo
.not_persistent
= 1;
203 ainfo
.state
= (1 << MD_SB_CLEAN
);
204 ainfo
.chunk_size
= args
->chunk
;
205 while (devices
[ainfo
.raid_disks
])
209 err
= md_set_array_info(mddev
, &ainfo
);
211 for (i
= 0; i
<= MD_SB_DISKS
&& devices
[i
]; i
++) {
212 struct mdu_disk_info_s dinfo
= {
213 .major
= MAJOR(devices
[i
]),
214 .minor
= MINOR(devices
[i
]),
217 if (args
->level
!= LEVEL_NONE
) {
221 (1 << MD_DISK_ACTIVE
) | (1 << MD_DISK_SYNC
);
224 md_add_new_disk(mddev
, &dinfo
);
228 err
= do_md_run(mddev
);
230 pr_warn("md: starting %s failed\n", name
);
234 blkdev_put(bdev
, FMODE_READ
);
237 static int __init
raid_setup(char *str
)
241 len
= strlen(str
) + 1;
245 char *comma
= strchr(str
+pos
, ',');
248 wlen
= (comma
-str
)-pos
;
249 else wlen
= (len
-1)-pos
;
251 if (!strncmp(str
, "noautodetect", wlen
))
252 raid_noautodetect
= 1;
253 if (!strncmp(str
, "autodetect", wlen
))
254 raid_noautodetect
= 0;
255 if (strncmp(str
, "partitionable", wlen
)==0)
257 if (strncmp(str
, "part", wlen
)==0)
264 __setup("raid=", raid_setup
);
265 __setup("md=", md_setup
);
267 static void __init
autodetect_raid(void)
270 * Since we don't want to detect and use half a raid array, we need to
271 * wait for the known devices to complete their probing
273 printk(KERN_INFO
"md: Waiting for all devices to be available before autodetect\n");
274 printk(KERN_INFO
"md: If you don't use raid, use raid=noautodetect\n");
276 wait_for_device_probe();
277 md_autostart_arrays(raid_autopart
);
280 void __init
md_run_setup(void)
284 if (raid_noautodetect
)
285 printk(KERN_INFO
"md: Skipping autodetection of RAID arrays. (raid=autodetect will force)\n");
289 for (ent
= 0; ent
< md_setup_ents
; ent
++)
290 md_setup_drive(&md_setup_args
[ent
]);