2 * bsg.c - block layer implementation of the sg v4 interface
4 * Copyright (C) 2004 Jens Axboe <axboe@suse.de> SUSE Labs
5 * Copyright (C) 2004 Peter M. Jones <pjones@redhat.com>
7 * This file is subject to the terms and conditions of the GNU General Public
8 * License version 2. See the file "COPYING" in the main directory of this
9 * archive for more details.
12 #include <linux/module.h>
13 #include <linux/init.h>
14 #include <linux/file.h>
15 #include <linux/blkdev.h>
16 #include <linux/poll.h>
17 #include <linux/cdev.h>
18 #include <linux/jiffies.h>
19 #include <linux/percpu.h>
20 #include <linux/uio.h>
21 #include <linux/idr.h>
22 #include <linux/bsg.h>
23 #include <linux/slab.h>
25 #include <scsi/scsi.h>
26 #include <scsi/scsi_ioctl.h>
27 #include <scsi/scsi_cmnd.h>
28 #include <scsi/scsi_device.h>
29 #include <scsi/scsi_driver.h>
32 #define BSG_DESCRIPTION "Block layer SCSI generic (bsg) driver"
33 #define BSG_VERSION "0.4"
35 #define bsg_dbg(bd, fmt, ...) \
36 pr_debug("%s: " fmt, (bd)->name, ##__VA_ARGS__)
39 struct request_queue
*queue
;
41 struct list_head busy_list
;
42 struct list_head done_list
;
43 struct hlist_node dev_list
;
47 wait_queue_head_t wq_done
;
48 wait_queue_head_t wq_free
;
58 #define BSG_DEFAULT_CMDS 64
59 #define BSG_MAX_DEVS 32768
61 static DEFINE_MUTEX(bsg_mutex
);
62 static DEFINE_IDR(bsg_minor_idr
);
64 #define BSG_LIST_ARRAY_SIZE 8
65 static struct hlist_head bsg_device_list
[BSG_LIST_ARRAY_SIZE
];
67 static struct class *bsg_class
;
70 static struct kmem_cache
*bsg_cmd_cachep
;
73 * our internal command type
76 struct bsg_device
*bd
;
77 struct list_head list
;
85 static void bsg_free_command(struct bsg_command
*bc
)
87 struct bsg_device
*bd
= bc
->bd
;
90 kmem_cache_free(bsg_cmd_cachep
, bc
);
92 spin_lock_irqsave(&bd
->lock
, flags
);
94 spin_unlock_irqrestore(&bd
->lock
, flags
);
96 wake_up(&bd
->wq_free
);
99 static struct bsg_command
*bsg_alloc_command(struct bsg_device
*bd
)
101 struct bsg_command
*bc
= ERR_PTR(-EINVAL
);
103 spin_lock_irq(&bd
->lock
);
105 if (bd
->queued_cmds
>= bd
->max_queue
)
109 spin_unlock_irq(&bd
->lock
);
111 bc
= kmem_cache_zalloc(bsg_cmd_cachep
, GFP_KERNEL
);
113 spin_lock_irq(&bd
->lock
);
115 bc
= ERR_PTR(-ENOMEM
);
120 INIT_LIST_HEAD(&bc
->list
);
121 bsg_dbg(bd
, "returning free cmd %p\n", bc
);
124 spin_unlock_irq(&bd
->lock
);
128 static inline struct hlist_head
*bsg_dev_idx_hash(int index
)
130 return &bsg_device_list
[index
& (BSG_LIST_ARRAY_SIZE
- 1)];
133 static int blk_fill_sgv4_hdr_rq(struct request_queue
*q
, struct request
*rq
,
134 struct sg_io_v4
*hdr
, struct bsg_device
*bd
,
137 struct scsi_request
*req
= scsi_req(rq
);
139 if (hdr
->request_len
> BLK_MAX_CDB
) {
140 req
->cmd
= kzalloc(hdr
->request_len
, GFP_KERNEL
);
145 if (copy_from_user(req
->cmd
, (void __user
*)(unsigned long)hdr
->request
,
149 if (hdr
->subprotocol
== BSG_SUB_PROTOCOL_SCSI_CMD
) {
150 if (blk_verify_command(req
->cmd
, mode
))
152 } else if (!capable(CAP_SYS_RAWIO
))
156 * fill in request structure
158 req
->cmd_len
= hdr
->request_len
;
160 rq
->timeout
= msecs_to_jiffies(hdr
->timeout
);
162 rq
->timeout
= q
->sg_timeout
;
164 rq
->timeout
= BLK_DEFAULT_SG_TIMEOUT
;
165 if (rq
->timeout
< BLK_MIN_SG_TIMEOUT
)
166 rq
->timeout
= BLK_MIN_SG_TIMEOUT
;
172 * Check if sg_io_v4 from user is allowed and valid
175 bsg_validate_sgv4_hdr(struct sg_io_v4
*hdr
, int *op
)
179 if (hdr
->guard
!= 'Q')
182 switch (hdr
->protocol
) {
183 case BSG_PROTOCOL_SCSI
:
184 switch (hdr
->subprotocol
) {
185 case BSG_SUB_PROTOCOL_SCSI_CMD
:
186 case BSG_SUB_PROTOCOL_SCSI_TRANSPORT
:
196 *op
= hdr
->dout_xfer_len
? REQ_OP_SCSI_OUT
: REQ_OP_SCSI_IN
;
201 * map sg_io_v4 to a request.
203 static struct request
*
204 bsg_map_hdr(struct bsg_device
*bd
, struct sg_io_v4
*hdr
, fmode_t mode
)
206 struct request_queue
*q
= bd
->queue
;
207 struct request
*rq
, *next_rq
= NULL
;
209 unsigned int op
, dxfer_len
;
210 void __user
*dxferp
= NULL
;
211 struct bsg_class_device
*bcd
= &q
->bsg_dev
;
213 /* if the LLD has been removed then the bsg_unregister_queue will
214 * eventually be called and the class_dev was freed, so we can no
215 * longer use this request_queue. Return no such address.
218 return ERR_PTR(-ENXIO
);
220 bsg_dbg(bd
, "map hdr %llx/%u %llx/%u\n",
221 (unsigned long long) hdr
->dout_xferp
,
222 hdr
->dout_xfer_len
, (unsigned long long) hdr
->din_xferp
,
225 ret
= bsg_validate_sgv4_hdr(hdr
, &op
);
230 * map scatter-gather elements separately and string them to request
232 rq
= blk_get_request(q
, op
, GFP_KERNEL
);
236 ret
= blk_fill_sgv4_hdr_rq(q
, rq
, hdr
, bd
, mode
);
240 if (op
== REQ_OP_SCSI_OUT
&& hdr
->din_xfer_len
) {
241 if (!test_bit(QUEUE_FLAG_BIDI
, &q
->queue_flags
)) {
246 next_rq
= blk_get_request(q
, REQ_OP_SCSI_IN
, GFP_KERNEL
);
247 if (IS_ERR(next_rq
)) {
248 ret
= PTR_ERR(next_rq
);
252 rq
->next_rq
= next_rq
;
254 dxferp
= (void __user
*)(unsigned long)hdr
->din_xferp
;
255 ret
= blk_rq_map_user(q
, next_rq
, NULL
, dxferp
,
256 hdr
->din_xfer_len
, GFP_KERNEL
);
261 if (hdr
->dout_xfer_len
) {
262 dxfer_len
= hdr
->dout_xfer_len
;
263 dxferp
= (void __user
*)(unsigned long)hdr
->dout_xferp
;
264 } else if (hdr
->din_xfer_len
) {
265 dxfer_len
= hdr
->din_xfer_len
;
266 dxferp
= (void __user
*)(unsigned long)hdr
->din_xferp
;
271 ret
= blk_rq_map_user(q
, rq
, NULL
, dxferp
, dxfer_len
,
279 scsi_req_free_cmd(scsi_req(rq
));
282 blk_rq_unmap_user(next_rq
->bio
);
283 blk_put_request(next_rq
);
289 * async completion call-back from the block layer, when scsi/ide/whatever
290 * calls end_that_request_last() on a request
292 static void bsg_rq_end_io(struct request
*rq
, blk_status_t status
)
294 struct bsg_command
*bc
= rq
->end_io_data
;
295 struct bsg_device
*bd
= bc
->bd
;
298 bsg_dbg(bd
, "finished rq %p bc %p, bio %p\n",
301 bc
->hdr
.duration
= jiffies_to_msecs(jiffies
- bc
->hdr
.duration
);
303 spin_lock_irqsave(&bd
->lock
, flags
);
304 list_move_tail(&bc
->list
, &bd
->done_list
);
306 spin_unlock_irqrestore(&bd
->lock
, flags
);
308 wake_up(&bd
->wq_done
);
312 * do final setup of a 'bc' and submit the matching 'rq' to the block
315 static void bsg_add_command(struct bsg_device
*bd
, struct request_queue
*q
,
316 struct bsg_command
*bc
, struct request
*rq
)
318 int at_head
= (0 == (bc
->hdr
.flags
& BSG_FLAG_Q_AT_TAIL
));
321 * add bc command to busy queue and submit rq for io
326 bc
->bidi_bio
= rq
->next_rq
->bio
;
327 bc
->hdr
.duration
= jiffies
;
328 spin_lock_irq(&bd
->lock
);
329 list_add_tail(&bc
->list
, &bd
->busy_list
);
330 spin_unlock_irq(&bd
->lock
);
332 bsg_dbg(bd
, "queueing rq %p, bc %p\n", rq
, bc
);
334 rq
->end_io_data
= bc
;
335 blk_execute_rq_nowait(q
, NULL
, rq
, at_head
, bsg_rq_end_io
);
338 static struct bsg_command
*bsg_next_done_cmd(struct bsg_device
*bd
)
340 struct bsg_command
*bc
= NULL
;
342 spin_lock_irq(&bd
->lock
);
344 bc
= list_first_entry(&bd
->done_list
, struct bsg_command
, list
);
348 spin_unlock_irq(&bd
->lock
);
354 * Get a finished command from the done list
356 static struct bsg_command
*bsg_get_done_cmd(struct bsg_device
*bd
)
358 struct bsg_command
*bc
;
362 bc
= bsg_next_done_cmd(bd
);
366 if (!test_bit(BSG_F_BLOCK
, &bd
->flags
)) {
367 bc
= ERR_PTR(-EAGAIN
);
371 ret
= wait_event_interruptible(bd
->wq_done
, bd
->done_cmds
);
373 bc
= ERR_PTR(-ERESTARTSYS
);
378 bsg_dbg(bd
, "returning done %p\n", bc
);
383 static int blk_complete_sgv4_hdr_rq(struct request
*rq
, struct sg_io_v4
*hdr
,
384 struct bio
*bio
, struct bio
*bidi_bio
)
386 struct scsi_request
*req
= scsi_req(rq
);
389 pr_debug("rq %p bio %p 0x%x\n", rq
, bio
, req
->result
);
391 * fill in all the output members
393 hdr
->device_status
= req
->result
& 0xff;
394 hdr
->transport_status
= host_byte(req
->result
);
395 hdr
->driver_status
= driver_byte(req
->result
);
397 if (hdr
->device_status
|| hdr
->transport_status
|| hdr
->driver_status
)
398 hdr
->info
|= SG_INFO_CHECK
;
399 hdr
->response_len
= 0;
401 if (req
->sense_len
&& hdr
->response
) {
402 int len
= min_t(unsigned int, hdr
->max_response_len
,
405 ret
= copy_to_user((void __user
*)(unsigned long)hdr
->response
,
408 hdr
->response_len
= len
;
414 hdr
->dout_resid
= req
->resid_len
;
415 hdr
->din_resid
= scsi_req(rq
->next_rq
)->resid_len
;
416 blk_rq_unmap_user(bidi_bio
);
417 blk_put_request(rq
->next_rq
);
418 } else if (rq_data_dir(rq
) == READ
)
419 hdr
->din_resid
= req
->resid_len
;
421 hdr
->dout_resid
= req
->resid_len
;
424 * If the request generated a negative error number, return it
425 * (providing we aren't already returning an error); if it's
426 * just a protocol response (i.e. non negative), that gets
429 if (!ret
&& req
->result
< 0)
432 blk_rq_unmap_user(bio
);
433 scsi_req_free_cmd(req
);
439 static bool bsg_complete(struct bsg_device
*bd
)
445 spin_lock_irq(&bd
->lock
);
447 BUG_ON(bd
->done_cmds
> bd
->queued_cmds
);
450 * All commands consumed.
452 if (bd
->done_cmds
== bd
->queued_cmds
)
455 spin
= !test_bit(BSG_F_BLOCK
, &bd
->flags
);
457 spin_unlock_irq(&bd
->lock
);
458 } while (!ret
&& spin
);
463 static int bsg_complete_all_commands(struct bsg_device
*bd
)
465 struct bsg_command
*bc
;
468 bsg_dbg(bd
, "entered\n");
471 * wait for all commands to complete
473 io_wait_event(bd
->wq_done
, bsg_complete(bd
));
476 * discard done commands
480 spin_lock_irq(&bd
->lock
);
481 if (!bd
->queued_cmds
) {
482 spin_unlock_irq(&bd
->lock
);
485 spin_unlock_irq(&bd
->lock
);
487 bc
= bsg_get_done_cmd(bd
);
491 tret
= blk_complete_sgv4_hdr_rq(bc
->rq
, &bc
->hdr
, bc
->bio
,
496 bsg_free_command(bc
);
503 __bsg_read(char __user
*buf
, size_t count
, struct bsg_device
*bd
,
504 const struct iovec
*iov
, ssize_t
*bytes_read
)
506 struct bsg_command
*bc
;
507 int nr_commands
, ret
;
509 if (count
% sizeof(struct sg_io_v4
))
513 nr_commands
= count
/ sizeof(struct sg_io_v4
);
514 while (nr_commands
) {
515 bc
= bsg_get_done_cmd(bd
);
522 * this is the only case where we need to copy data back
523 * after completing the request. so do that here,
524 * bsg_complete_work() cannot do that for us
526 ret
= blk_complete_sgv4_hdr_rq(bc
->rq
, &bc
->hdr
, bc
->bio
,
529 if (copy_to_user(buf
, &bc
->hdr
, sizeof(bc
->hdr
)))
532 bsg_free_command(bc
);
537 buf
+= sizeof(struct sg_io_v4
);
538 *bytes_read
+= sizeof(struct sg_io_v4
);
545 static inline void bsg_set_block(struct bsg_device
*bd
, struct file
*file
)
547 if (file
->f_flags
& O_NONBLOCK
)
548 clear_bit(BSG_F_BLOCK
, &bd
->flags
);
550 set_bit(BSG_F_BLOCK
, &bd
->flags
);
554 * Check if the error is a "real" error that we should return.
556 static inline int err_block_err(int ret
)
558 if (ret
&& ret
!= -ENOSPC
&& ret
!= -ENODATA
&& ret
!= -EAGAIN
)
565 bsg_read(struct file
*file
, char __user
*buf
, size_t count
, loff_t
*ppos
)
567 struct bsg_device
*bd
= file
->private_data
;
571 bsg_dbg(bd
, "read %zd bytes\n", count
);
573 bsg_set_block(bd
, file
);
576 ret
= __bsg_read(buf
, count
, bd
, NULL
, &bytes_read
);
579 if (!bytes_read
|| err_block_err(ret
))
585 static int __bsg_write(struct bsg_device
*bd
, const char __user
*buf
,
586 size_t count
, ssize_t
*bytes_written
, fmode_t mode
)
588 struct bsg_command
*bc
;
590 int ret
, nr_commands
;
592 if (count
% sizeof(struct sg_io_v4
))
595 nr_commands
= count
/ sizeof(struct sg_io_v4
);
599 while (nr_commands
) {
600 struct request_queue
*q
= bd
->queue
;
602 bc
= bsg_alloc_command(bd
);
609 if (copy_from_user(&bc
->hdr
, buf
, sizeof(bc
->hdr
))) {
615 * get a request, fill in the blanks, and add to request queue
617 rq
= bsg_map_hdr(bd
, &bc
->hdr
, mode
);
624 bsg_add_command(bd
, q
, bc
, rq
);
628 buf
+= sizeof(struct sg_io_v4
);
629 *bytes_written
+= sizeof(struct sg_io_v4
);
633 bsg_free_command(bc
);
639 bsg_write(struct file
*file
, const char __user
*buf
, size_t count
, loff_t
*ppos
)
641 struct bsg_device
*bd
= file
->private_data
;
642 ssize_t bytes_written
;
645 bsg_dbg(bd
, "write %zd bytes\n", count
);
647 if (unlikely(uaccess_kernel()))
650 bsg_set_block(bd
, file
);
653 ret
= __bsg_write(bd
, buf
, count
, &bytes_written
, file
->f_mode
);
655 *ppos
= bytes_written
;
658 * return bytes written on non-fatal errors
660 if (!bytes_written
|| err_block_err(ret
))
663 bsg_dbg(bd
, "returning %zd\n", bytes_written
);
664 return bytes_written
;
667 static struct bsg_device
*bsg_alloc_device(void)
669 struct bsg_device
*bd
;
671 bd
= kzalloc(sizeof(struct bsg_device
), GFP_KERNEL
);
675 spin_lock_init(&bd
->lock
);
677 bd
->max_queue
= BSG_DEFAULT_CMDS
;
679 INIT_LIST_HEAD(&bd
->busy_list
);
680 INIT_LIST_HEAD(&bd
->done_list
);
681 INIT_HLIST_NODE(&bd
->dev_list
);
683 init_waitqueue_head(&bd
->wq_free
);
684 init_waitqueue_head(&bd
->wq_done
);
688 static void bsg_kref_release_function(struct kref
*kref
)
690 struct bsg_class_device
*bcd
=
691 container_of(kref
, struct bsg_class_device
, ref
);
692 struct device
*parent
= bcd
->parent
;
695 bcd
->release(bcd
->parent
);
700 static int bsg_put_device(struct bsg_device
*bd
)
702 int ret
= 0, do_free
;
703 struct request_queue
*q
= bd
->queue
;
705 mutex_lock(&bsg_mutex
);
707 do_free
= atomic_dec_and_test(&bd
->ref_count
);
709 mutex_unlock(&bsg_mutex
);
713 hlist_del(&bd
->dev_list
);
714 mutex_unlock(&bsg_mutex
);
716 bsg_dbg(bd
, "tearing down\n");
719 * close can always block
721 set_bit(BSG_F_BLOCK
, &bd
->flags
);
724 * correct error detection baddies here again. it's the responsibility
725 * of the app to properly reap commands before close() if it wants
726 * fool-proof error detection
728 ret
= bsg_complete_all_commands(bd
);
732 kref_put(&q
->bsg_dev
.ref
, bsg_kref_release_function
);
738 static struct bsg_device
*bsg_add_device(struct inode
*inode
,
739 struct request_queue
*rq
,
742 struct bsg_device
*bd
;
743 unsigned char buf
[32];
745 if (!blk_queue_scsi_passthrough(rq
)) {
746 WARN_ONCE(true, "Attempt to register a non-SCSI queue\n");
747 return ERR_PTR(-EINVAL
);
750 if (!blk_get_queue(rq
))
751 return ERR_PTR(-ENXIO
);
753 bd
= bsg_alloc_device();
756 return ERR_PTR(-ENOMEM
);
761 bsg_set_block(bd
, file
);
763 atomic_set(&bd
->ref_count
, 1);
764 mutex_lock(&bsg_mutex
);
765 hlist_add_head(&bd
->dev_list
, bsg_dev_idx_hash(iminor(inode
)));
767 strncpy(bd
->name
, dev_name(rq
->bsg_dev
.class_dev
), sizeof(bd
->name
) - 1);
768 bsg_dbg(bd
, "bound to <%s>, max queue %d\n",
769 format_dev_t(buf
, inode
->i_rdev
), bd
->max_queue
);
771 mutex_unlock(&bsg_mutex
);
775 static struct bsg_device
*__bsg_get_device(int minor
, struct request_queue
*q
)
777 struct bsg_device
*bd
;
779 mutex_lock(&bsg_mutex
);
781 hlist_for_each_entry(bd
, bsg_dev_idx_hash(minor
), dev_list
) {
782 if (bd
->queue
== q
) {
783 atomic_inc(&bd
->ref_count
);
789 mutex_unlock(&bsg_mutex
);
793 static struct bsg_device
*bsg_get_device(struct inode
*inode
, struct file
*file
)
795 struct bsg_device
*bd
;
796 struct bsg_class_device
*bcd
;
799 * find the class device
801 mutex_lock(&bsg_mutex
);
802 bcd
= idr_find(&bsg_minor_idr
, iminor(inode
));
805 mutex_unlock(&bsg_mutex
);
808 return ERR_PTR(-ENODEV
);
810 bd
= __bsg_get_device(iminor(inode
), bcd
->queue
);
814 bd
= bsg_add_device(inode
, bcd
->queue
, file
);
816 kref_put(&bcd
->ref
, bsg_kref_release_function
);
821 static int bsg_open(struct inode
*inode
, struct file
*file
)
823 struct bsg_device
*bd
;
825 bd
= bsg_get_device(inode
, file
);
830 file
->private_data
= bd
;
834 static int bsg_release(struct inode
*inode
, struct file
*file
)
836 struct bsg_device
*bd
= file
->private_data
;
838 file
->private_data
= NULL
;
839 return bsg_put_device(bd
);
842 static __poll_t
bsg_poll(struct file
*file
, poll_table
*wait
)
844 struct bsg_device
*bd
= file
->private_data
;
847 poll_wait(file
, &bd
->wq_done
, wait
);
848 poll_wait(file
, &bd
->wq_free
, wait
);
850 spin_lock_irq(&bd
->lock
);
851 if (!list_empty(&bd
->done_list
))
852 mask
|= EPOLLIN
| EPOLLRDNORM
;
853 if (bd
->queued_cmds
< bd
->max_queue
)
855 spin_unlock_irq(&bd
->lock
);
860 static long bsg_ioctl(struct file
*file
, unsigned int cmd
, unsigned long arg
)
862 struct bsg_device
*bd
= file
->private_data
;
863 int __user
*uarg
= (int __user
*) arg
;
870 case SG_GET_COMMAND_Q
:
871 return put_user(bd
->max_queue
, uarg
);
872 case SG_SET_COMMAND_Q
: {
875 if (get_user(queue
, uarg
))
880 spin_lock_irq(&bd
->lock
);
881 bd
->max_queue
= queue
;
882 spin_unlock_irq(&bd
->lock
);
889 case SG_GET_VERSION_NUM
:
890 case SCSI_IOCTL_GET_IDLUN
:
891 case SCSI_IOCTL_GET_BUS_NUMBER
:
894 case SG_GET_RESERVED_SIZE
:
895 case SG_SET_RESERVED_SIZE
:
896 case SG_EMULATED_HOST
:
897 case SCSI_IOCTL_SEND_COMMAND
: {
898 void __user
*uarg
= (void __user
*) arg
;
899 return scsi_cmd_ioctl(bd
->queue
, NULL
, file
->f_mode
, cmd
, uarg
);
903 struct bio
*bio
, *bidi_bio
= NULL
;
907 if (copy_from_user(&hdr
, uarg
, sizeof(hdr
)))
910 rq
= bsg_map_hdr(bd
, &hdr
, file
->f_mode
);
916 bidi_bio
= rq
->next_rq
->bio
;
918 at_head
= (0 == (hdr
.flags
& BSG_FLAG_Q_AT_TAIL
));
919 blk_execute_rq(bd
->queue
, NULL
, rq
, at_head
);
920 ret
= blk_complete_sgv4_hdr_rq(rq
, &hdr
, bio
, bidi_bio
);
922 if (copy_to_user(uarg
, &hdr
, sizeof(hdr
)))
932 static const struct file_operations bsg_fops
= {
937 .release
= bsg_release
,
938 .unlocked_ioctl
= bsg_ioctl
,
939 .owner
= THIS_MODULE
,
940 .llseek
= default_llseek
,
943 void bsg_unregister_queue(struct request_queue
*q
)
945 struct bsg_class_device
*bcd
= &q
->bsg_dev
;
950 mutex_lock(&bsg_mutex
);
951 idr_remove(&bsg_minor_idr
, bcd
->minor
);
953 sysfs_remove_link(&q
->kobj
, "bsg");
954 device_unregister(bcd
->class_dev
);
955 bcd
->class_dev
= NULL
;
956 kref_put(&bcd
->ref
, bsg_kref_release_function
);
957 mutex_unlock(&bsg_mutex
);
959 EXPORT_SYMBOL_GPL(bsg_unregister_queue
);
961 int bsg_register_queue(struct request_queue
*q
, struct device
*parent
,
962 const char *name
, void (*release
)(struct device
*))
964 struct bsg_class_device
*bcd
;
967 struct device
*class_dev
= NULL
;
973 devname
= dev_name(parent
);
976 * we need a proper transport to send commands, not a stacked device
978 if (!queue_is_rq_based(q
))
982 memset(bcd
, 0, sizeof(*bcd
));
984 mutex_lock(&bsg_mutex
);
986 ret
= idr_alloc(&bsg_minor_idr
, bcd
, 0, BSG_MAX_DEVS
, GFP_KERNEL
);
988 if (ret
== -ENOSPC
) {
989 printk(KERN_ERR
"bsg: too many bsg devices\n");
997 bcd
->parent
= get_device(parent
);
998 bcd
->release
= release
;
999 kref_init(&bcd
->ref
);
1000 dev
= MKDEV(bsg_major
, bcd
->minor
);
1001 class_dev
= device_create(bsg_class
, parent
, dev
, NULL
, "%s", devname
);
1002 if (IS_ERR(class_dev
)) {
1003 ret
= PTR_ERR(class_dev
);
1006 bcd
->class_dev
= class_dev
;
1009 ret
= sysfs_create_link(&q
->kobj
, &bcd
->class_dev
->kobj
, "bsg");
1011 goto unregister_class_dev
;
1014 mutex_unlock(&bsg_mutex
);
1017 unregister_class_dev
:
1018 device_unregister(class_dev
);
1021 idr_remove(&bsg_minor_idr
, bcd
->minor
);
1023 mutex_unlock(&bsg_mutex
);
1026 EXPORT_SYMBOL_GPL(bsg_register_queue
);
1028 static struct cdev bsg_cdev
;
1030 static char *bsg_devnode(struct device
*dev
, umode_t
*mode
)
1032 return kasprintf(GFP_KERNEL
, "bsg/%s", dev_name(dev
));
1035 static int __init
bsg_init(void)
1040 bsg_cmd_cachep
= kmem_cache_create("bsg_cmd",
1041 sizeof(struct bsg_command
), 0, 0, NULL
);
1042 if (!bsg_cmd_cachep
) {
1043 printk(KERN_ERR
"bsg: failed creating slab cache\n");
1047 for (i
= 0; i
< BSG_LIST_ARRAY_SIZE
; i
++)
1048 INIT_HLIST_HEAD(&bsg_device_list
[i
]);
1050 bsg_class
= class_create(THIS_MODULE
, "bsg");
1051 if (IS_ERR(bsg_class
)) {
1052 ret
= PTR_ERR(bsg_class
);
1053 goto destroy_kmemcache
;
1055 bsg_class
->devnode
= bsg_devnode
;
1057 ret
= alloc_chrdev_region(&devid
, 0, BSG_MAX_DEVS
, "bsg");
1059 goto destroy_bsg_class
;
1061 bsg_major
= MAJOR(devid
);
1063 cdev_init(&bsg_cdev
, &bsg_fops
);
1064 ret
= cdev_add(&bsg_cdev
, MKDEV(bsg_major
, 0), BSG_MAX_DEVS
);
1066 goto unregister_chrdev
;
1068 printk(KERN_INFO BSG_DESCRIPTION
" version " BSG_VERSION
1069 " loaded (major %d)\n", bsg_major
);
1072 unregister_chrdev_region(MKDEV(bsg_major
, 0), BSG_MAX_DEVS
);
1074 class_destroy(bsg_class
);
1076 kmem_cache_destroy(bsg_cmd_cachep
);
1080 MODULE_AUTHOR("Jens Axboe");
1081 MODULE_DESCRIPTION(BSG_DESCRIPTION
);
1082 MODULE_LICENSE("GPL");
1084 device_initcall(bsg_init
);