2 linear.c : Multiple Devices driver for Linux
3 Copyright (C) 1994-96 Marc ZYNGIER
7 Linear mode management functions.
9 This program is free software; you can redistribute it and/or modify
10 it under the terms of the GNU General Public License as published by
11 the Free Software Foundation; either version 2, or (at your option)
14 You should have received a copy of the GNU General Public License
15 (for example /usr/src/linux/COPYING); if not, write to the Free
16 Software Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19 #include <linux/blkdev.h>
20 #include <linux/raid/md_u.h>
21 #include <linux/seq_file.h>
22 #include <linux/slab.h>
27 * find which device holds a particular offset
29 static inline dev_info_t *which_dev(mddev_t *mddev, sector_t sector)
35 hi = mddev->raid_disks - 1;
36 conf = rcu_dereference(mddev->private);
45 if (sector < conf->disks[mid].end_sector)
51 return conf->disks + lo;
55 * linear_mergeable_bvec -- tell bio layer if two requests can be merged
57 * @bvm: properties of new bio
58 * @biovec: the request that could be merged to it.
60 * Return amount of bytes we can take at this offset
62 static int linear_mergeable_bvec(struct request_queue *q,
63 struct bvec_merge_data *bvm,
64 struct bio_vec *biovec)
66 mddev_t *mddev = q->queuedata;
68 unsigned long maxsectors, bio_sectors = bvm->bi_size >> 9;
69 sector_t sector = bvm->bi_sector + get_start_sect(bvm->bi_bdev);
72 dev0 = which_dev(mddev, sector);
73 maxsectors = dev0->end_sector - sector;
76 if (maxsectors < bio_sectors)
79 maxsectors -= bio_sectors;
81 if (maxsectors <= (PAGE_SIZE >> 9 ) && bio_sectors == 0)
82 return biovec->bv_len;
83 /* The bytes available at this offset could be really big,
84 * so we cap at 2^31 to avoid overflow */
85 if (maxsectors > (1 << (31-9)))
87 return maxsectors << 9;
90 static void linear_unplug(struct request_queue *q)
92 mddev_t *mddev = q->queuedata;
97 conf = rcu_dereference(mddev->private);
99 for (i=0; i < mddev->raid_disks; i++) {
100 struct request_queue *r_queue = bdev_get_queue(conf->disks[i].rdev->bdev);
106 static int linear_congested(void *data, int bits)
108 mddev_t *mddev = data;
112 if (mddev_congested(mddev, bits))
116 conf = rcu_dereference(mddev->private);
118 for (i = 0; i < mddev->raid_disks && !ret ; i++) {
119 struct request_queue *q = bdev_get_queue(conf->disks[i].rdev->bdev);
120 ret |= bdi_congested(&q->backing_dev_info, bits);
127 static sector_t linear_size(mddev_t *mddev, sector_t sectors, int raid_disks)
130 sector_t array_sectors;
133 conf = rcu_dereference(mddev->private);
134 WARN_ONCE(sectors || raid_disks,
135 "%s does not support generic reshape\n", __func__);
136 array_sectors = conf->array_sectors;
139 return array_sectors;
142 static linear_conf_t *linear_conf(mddev_t *mddev, int raid_disks)
148 conf = kzalloc (sizeof (*conf) + raid_disks*sizeof(dev_info_t),
154 conf->array_sectors = 0;
156 list_for_each_entry(rdev, &mddev->disks, same_set) {
157 int j = rdev->raid_disk;
158 dev_info_t *disk = conf->disks + j;
161 if (j < 0 || j >= raid_disks || disk->rdev) {
162 printk(KERN_ERR "md/linear:%s: disk numbering problem. Aborting!\n",
168 if (mddev->chunk_sectors) {
169 sectors = rdev->sectors;
170 sector_div(sectors, mddev->chunk_sectors);
171 rdev->sectors = sectors * mddev->chunk_sectors;
174 disk_stack_limits(mddev->gendisk, rdev->bdev,
175 rdev->data_offset << 9);
176 /* as we don't honour merge_bvec_fn, we must never risk
177 * violating it, so limit max_segments to 1 lying within
180 if (rdev->bdev->bd_disk->queue->merge_bvec_fn) {
181 blk_queue_max_segments(mddev->queue, 1);
182 blk_queue_segment_boundary(mddev->queue,
183 PAGE_CACHE_SIZE - 1);
186 conf->array_sectors += rdev->sectors;
190 if (cnt != raid_disks) {
191 printk(KERN_ERR "md/linear:%s: not enough drives present. Aborting!\n",
197 * Here we calculate the device offsets.
199 conf->disks[0].end_sector = conf->disks[0].rdev->sectors;
201 for (i = 1; i < raid_disks; i++)
202 conf->disks[i].end_sector =
203 conf->disks[i-1].end_sector +
204 conf->disks[i].rdev->sectors;
213 static int linear_run (mddev_t *mddev)
217 if (md_check_no_bitmap(mddev))
219 conf = linear_conf(mddev, mddev->raid_disks);
223 mddev->private = conf;
224 md_set_array_sectors(mddev, linear_size(mddev, 0, 0));
226 blk_queue_merge_bvec(mddev->queue, linear_mergeable_bvec);
227 mddev->queue->unplug_fn = linear_unplug;
228 mddev->queue->backing_dev_info.congested_fn = linear_congested;
229 mddev->queue->backing_dev_info.congested_data = mddev;
230 md_integrity_register(mddev);
234 static void free_conf(struct rcu_head *head)
236 linear_conf_t *conf = container_of(head, linear_conf_t, rcu);
240 static int linear_add(mddev_t *mddev, mdk_rdev_t *rdev)
242 /* Adding a drive to a linear array allows the array to grow.
243 * It is permitted if the new drive has a matching superblock
244 * already on it, with raid_disk equal to raid_disks.
245 * It is achieved by creating a new linear_private_data structure
246 * and swapping it in in-place of the current one.
247 * The current one is never freed until the array is stopped.
250 linear_conf_t *newconf, *oldconf;
252 if (rdev->saved_raid_disk != mddev->raid_disks)
255 rdev->raid_disk = rdev->saved_raid_disk;
257 newconf = linear_conf(mddev,mddev->raid_disks+1);
262 oldconf = rcu_dereference(mddev->private);
264 rcu_assign_pointer(mddev->private, newconf);
265 md_set_array_sectors(mddev, linear_size(mddev, 0, 0));
266 set_capacity(mddev->gendisk, mddev->array_sectors);
267 revalidate_disk(mddev->gendisk);
268 call_rcu(&oldconf->rcu, free_conf);
272 static int linear_stop (mddev_t *mddev)
274 linear_conf_t *conf = mddev->private;
277 * We do not require rcu protection here since
278 * we hold reconfig_mutex for both linear_add and
279 * linear_stop, so they cannot race.
280 * We should make sure any old 'conf's are properly
284 blk_sync_queue(mddev->queue); /* the unplug fn references 'conf'*/
286 mddev->private = NULL;
291 static int linear_make_request (mddev_t *mddev, struct bio *bio)
294 sector_t start_sector;
296 if (unlikely(bio->bi_rw & REQ_FLUSH)) {
297 md_flush_request(mddev, bio);
302 tmp_dev = which_dev(mddev, bio->bi_sector);
303 start_sector = tmp_dev->end_sector - tmp_dev->rdev->sectors;
306 if (unlikely(bio->bi_sector >= (tmp_dev->end_sector)
307 || (bio->bi_sector < start_sector))) {
308 char b[BDEVNAME_SIZE];
311 "md/linear:%s: make_request: Sector %llu out of bounds on "
312 "dev %s: %llu sectors, offset %llu\n",
314 (unsigned long long)bio->bi_sector,
315 bdevname(tmp_dev->rdev->bdev, b),
316 (unsigned long long)tmp_dev->rdev->sectors,
317 (unsigned long long)start_sector);
322 if (unlikely(bio->bi_sector + (bio->bi_size >> 9) >
323 tmp_dev->end_sector)) {
324 /* This bio crosses a device boundary, so we have to
328 sector_t end_sector = tmp_dev->end_sector;
332 bp = bio_split(bio, end_sector - bio->bi_sector);
334 if (linear_make_request(mddev, &bp->bio1))
335 generic_make_request(&bp->bio1);
336 if (linear_make_request(mddev, &bp->bio2))
337 generic_make_request(&bp->bio2);
338 bio_pair_release(bp);
342 bio->bi_bdev = tmp_dev->rdev->bdev;
343 bio->bi_sector = bio->bi_sector - start_sector
344 + tmp_dev->rdev->data_offset;
350 static void linear_status (struct seq_file *seq, mddev_t *mddev)
353 seq_printf(seq, " %dk rounding", mddev->chunk_sectors / 2);
357 static struct mdk_personality linear_personality =
360 .level = LEVEL_LINEAR,
361 .owner = THIS_MODULE,
362 .make_request = linear_make_request,
365 .status = linear_status,
366 .hot_add_disk = linear_add,
370 static int __init linear_init (void)
372 return register_md_personality (&linear_personality);
375 static void linear_exit (void)
377 unregister_md_personality (&linear_personality);
381 module_init(linear_init);
382 module_exit(linear_exit);
383 MODULE_LICENSE("GPL");
384 MODULE_DESCRIPTION("Linear device concatenation personality for MD");
385 MODULE_ALIAS("md-personality-1"); /* LINEAR - deprecated*/
386 MODULE_ALIAS("md-linear");
387 MODULE_ALIAS("md-level--1");