3 * Authors: Dave Boutcher <boutcher@us.ibm.com>
4 * Ryan Arnold <ryanarn@us.ibm.com>
5 * Colin Devilbiss <devilbis@us.ibm.com>
8 * (C) Copyright 2000-2004 IBM Corporation
10 * This program is free software; you can redistribute it and/or
11 * modify it under the terms of the GNU General Public License as
12 * published by the Free Software Foundation; either version 2 of the
13 * License, or (at your option) any later version.
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
18 * GNU General Public License for more details.
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
24 * This routine provides access to disk space (termed "DASD" in historical
25 * IBM terms) owned and managed by an OS/400 partition running on the
26 * same box as this Linux partition.
28 * All disk operations are performed by sending messages back and forth to
29 * the OS/400 partition.
32 #define pr_fmt(fmt) "viod: " fmt
34 #include <linux/major.h>
36 #include <linux/module.h>
37 #include <linux/kernel.h>
38 #include <linux/blkdev.h>
39 #include <linux/genhd.h>
40 #include <linux/hdreg.h>
41 #include <linux/errno.h>
42 #include <linux/init.h>
43 #include <linux/string.h>
44 #include <linux/dma-mapping.h>
45 #include <linux/completion.h>
46 #include <linux/device.h>
47 #include <linux/scatterlist.h>
49 #include <asm/uaccess.h>
51 #include <asm/iseries/hv_types.h>
52 #include <asm/iseries/hv_lp_event.h>
53 #include <asm/iseries/hv_lp_config.h>
54 #include <asm/iseries/vio.h>
55 #include <asm/firmware.h>
57 MODULE_DESCRIPTION("iSeries Virtual DASD");
58 MODULE_AUTHOR("Dave Boutcher");
59 MODULE_LICENSE("GPL");
62 * We only support 7 partitions per physical disk....so with minor
63 * numbers 0-255 we get a maximum of 32 disks.
65 #define VIOD_GENHD_NAME "iseries/vd"
67 #define VIOD_VERS "1.64"
71 MAX_DISKNO
= HVMAXARCHITECTEDVIRTUALDISKS
,
72 MAX_DISK_NAME
= FIELD_SIZEOF(struct gendisk
, disk_name
)
75 static DEFINE_SPINLOCK(viodasd_spinlock
);
79 #define DEVICE_NO(cell) ((struct viodasd_device *)(cell) - &viodasd_devices[0])
81 struct viodasd_waitevent
{
82 struct completion com
;
85 int max_disk
; /* open */
88 static const struct vio_error_entry viodasd_err_table
[] = {
89 { 0x0201, EINVAL
, "Invalid Range" },
90 { 0x0202, EINVAL
, "Invalid Token" },
91 { 0x0203, EIO
, "DMA Error" },
92 { 0x0204, EIO
, "Use Error" },
93 { 0x0205, EIO
, "Release Error" },
94 { 0x0206, EINVAL
, "Invalid Disk" },
95 { 0x0207, EBUSY
, "Cant Lock" },
96 { 0x0208, EIO
, "Already Locked" },
97 { 0x0209, EIO
, "Already Unlocked" },
98 { 0x020A, EIO
, "Invalid Arg" },
99 { 0x020B, EIO
, "Bad IFS File" },
100 { 0x020C, EROFS
, "Read Only Device" },
101 { 0x02FF, EIO
, "Internal Error" },
106 * Figure out the biggest I/O request (in sectors) we can accept
108 #define VIODASD_MAXSECTORS (4096 / 512 * VIOMAXBLOCKDMA)
111 * Number of disk I/O requests we've sent to OS/400
113 static int num_req_outstanding
;
116 * This is our internal structure for keeping track of disk devices
118 struct viodasd_device
{
122 u16 bytes_per_sector
;
126 struct gendisk
*disk
;
128 } viodasd_devices
[MAX_DISKNO
];
131 * External open entry point.
133 static int viodasd_open(struct block_device
*bdev
, fmode_t mode
)
135 struct viodasd_device
*d
= bdev
->bd_disk
->private_data
;
137 struct viodasd_waitevent we
;
141 if (mode
& FMODE_WRITE
)
143 flags
= vioblockflags_ro
;
146 init_completion(&we
.com
);
148 /* Send the open event to OS/400 */
149 hvrc
= HvCallEvent_signalLpEventFast(viopath_hostLp
,
150 HvLpEvent_Type_VirtualIo
,
151 viomajorsubtype_blockio
| vioblockopen
,
152 HvLpEvent_AckInd_DoAck
, HvLpEvent_AckType_ImmediateAck
,
153 viopath_sourceinst(viopath_hostLp
),
154 viopath_targetinst(viopath_hostLp
),
155 (u64
)(unsigned long)&we
, VIOVERSION
<< 16,
156 ((u64
)DEVICE_NO(d
) << 48) | ((u64
)flags
<< 32),
159 pr_warning("HV open failed %d\n", (int)hvrc
);
163 wait_for_completion(&we
.com
);
165 /* Check the return code */
167 const struct vio_error_entry
*err
=
168 vio_lookup_rc(viodasd_err_table
, we
.sub_result
);
170 pr_warning("bad rc opening disk: %d:0x%04x (%s)\n",
171 (int)we
.rc
, we
.sub_result
, err
->msg
);
179 * External release entry point.
181 static int viodasd_release(struct gendisk
*disk
, fmode_t mode
)
183 struct viodasd_device
*d
= disk
->private_data
;
186 /* Send the event to OS/400. We DON'T expect a response */
187 hvrc
= HvCallEvent_signalLpEventFast(viopath_hostLp
,
188 HvLpEvent_Type_VirtualIo
,
189 viomajorsubtype_blockio
| vioblockclose
,
190 HvLpEvent_AckInd_NoAck
, HvLpEvent_AckType_ImmediateAck
,
191 viopath_sourceinst(viopath_hostLp
),
192 viopath_targetinst(viopath_hostLp
),
194 ((u64
)DEVICE_NO(d
) << 48) /* | ((u64)flags << 32) */,
197 pr_warning("HV close call failed %d\n", (int)hvrc
);
202 /* External ioctl entry point.
204 static int viodasd_getgeo(struct block_device
*bdev
, struct hd_geometry
*geo
)
206 struct gendisk
*disk
= bdev
->bd_disk
;
207 struct viodasd_device
*d
= disk
->private_data
;
209 geo
->sectors
= d
->sectors
? d
->sectors
: 32;
210 geo
->heads
= d
->tracks
? d
->tracks
: 64;
211 geo
->cylinders
= d
->cylinders
? d
->cylinders
:
212 get_capacity(disk
) / (geo
->sectors
* geo
->heads
);
218 * Our file operations table
220 static const struct block_device_operations viodasd_fops
= {
221 .owner
= THIS_MODULE
,
222 .open
= viodasd_open
,
223 .release
= viodasd_release
,
224 .getgeo
= viodasd_getgeo
,
230 static void viodasd_end_request(struct request
*req
, int error
,
233 __blk_end_request(req
, error
, num_sectors
<< 9);
237 * Send an actual I/O request to OS/400
239 static int send_request(struct request
*req
)
246 struct vioblocklpevent
*bevent
;
247 struct HvLpEvent
*hev
;
248 struct scatterlist sg
[VIOMAXBLOCKDMA
];
250 struct viodasd_device
*d
;
253 start
= (u64
)blk_rq_pos(req
) << 9;
255 if (rq_data_dir(req
) == READ
) {
256 direction
= DMA_FROM_DEVICE
;
257 viocmd
= viomajorsubtype_blockio
| vioblockread
;
259 direction
= DMA_TO_DEVICE
;
260 viocmd
= viomajorsubtype_blockio
| vioblockwrite
;
263 d
= req
->rq_disk
->private_data
;
265 /* Now build the scatter-gather list */
266 sg_init_table(sg
, VIOMAXBLOCKDMA
);
267 nsg
= blk_rq_map_sg(req
->q
, req
, sg
);
268 nsg
= dma_map_sg(d
->dev
, sg
, nsg
, direction
);
270 spin_lock_irqsave(&viodasd_spinlock
, flags
);
271 num_req_outstanding
++;
273 /* This optimization handles a single DMA block */
275 hvrc
= HvCallEvent_signalLpEventFast(viopath_hostLp
,
276 HvLpEvent_Type_VirtualIo
, viocmd
,
277 HvLpEvent_AckInd_DoAck
,
278 HvLpEvent_AckType_ImmediateAck
,
279 viopath_sourceinst(viopath_hostLp
),
280 viopath_targetinst(viopath_hostLp
),
281 (u64
)(unsigned long)req
, VIOVERSION
<< 16,
282 ((u64
)DEVICE_NO(d
) << 48), start
,
283 ((u64
)sg_dma_address(&sg
[0])) << 32,
286 bevent
= (struct vioblocklpevent
*)
287 vio_get_event_buffer(viomajorsubtype_blockio
);
288 if (bevent
== NULL
) {
289 pr_warning("error allocating disk event buffer\n");
294 * Now build up the actual request. Note that we store
295 * the pointer to the request in the correlation
296 * token so we can match the response up later
298 memset(bevent
, 0, sizeof(struct vioblocklpevent
));
299 hev
= &bevent
->event
;
300 hev
->flags
= HV_LP_EVENT_VALID
| HV_LP_EVENT_DO_ACK
|
302 hev
->xType
= HvLpEvent_Type_VirtualIo
;
303 hev
->xSubtype
= viocmd
;
304 hev
->xSourceLp
= HvLpConfig_getLpIndex();
305 hev
->xTargetLp
= viopath_hostLp
;
307 offsetof(struct vioblocklpevent
, u
.rw_data
.dma_info
) +
308 (sizeof(bevent
->u
.rw_data
.dma_info
[0]) * nsg
) - 1;
309 hev
->xSourceInstanceId
= viopath_sourceinst(viopath_hostLp
);
310 hev
->xTargetInstanceId
= viopath_targetinst(viopath_hostLp
);
311 hev
->xCorrelationToken
= (u64
)req
;
312 bevent
->version
= VIOVERSION
;
313 bevent
->disk
= DEVICE_NO(d
);
314 bevent
->u
.rw_data
.offset
= start
;
317 * Copy just the dma information from the sg list
320 for (sgindex
= 0; sgindex
< nsg
; sgindex
++) {
321 bevent
->u
.rw_data
.dma_info
[sgindex
].token
=
322 sg_dma_address(&sg
[sgindex
]);
323 bevent
->u
.rw_data
.dma_info
[sgindex
].len
=
324 sg_dma_len(&sg
[sgindex
]);
327 /* Send the request */
328 hvrc
= HvCallEvent_signalLpEvent(&bevent
->event
);
329 vio_free_event_buffer(viomajorsubtype_blockio
, bevent
);
332 if (hvrc
!= HvLpEvent_Rc_Good
) {
333 pr_warning("error sending disk event to OS/400 (rc %d)\n",
337 spin_unlock_irqrestore(&viodasd_spinlock
, flags
);
341 num_req_outstanding
--;
342 spin_unlock_irqrestore(&viodasd_spinlock
, flags
);
343 dma_unmap_sg(d
->dev
, sg
, nsg
, direction
);
348 * This is the external request processing routine
350 static void do_viodasd_request(struct request_queue
*q
)
355 * If we already have the maximum number of requests
356 * outstanding to OS/400 just bail out. We'll come
359 while (num_req_outstanding
< VIOMAXREQ
) {
360 req
= blk_fetch_request(q
);
363 /* check that request contains a valid command */
364 if (!blk_fs_request(req
)) {
365 viodasd_end_request(req
, -EIO
, blk_rq_sectors(req
));
368 /* Try sending the request */
369 if (send_request(req
) != 0)
370 viodasd_end_request(req
, -EIO
, blk_rq_sectors(req
));
375 * Probe a single disk and fill in the viodasd_device structure
378 static int probe_disk(struct viodasd_device
*d
)
381 struct viodasd_waitevent we
;
382 int dev_no
= DEVICE_NO(d
);
384 struct request_queue
*q
;
388 init_completion(&we
.com
);
390 /* Send the open event to OS/400 */
391 hvrc
= HvCallEvent_signalLpEventFast(viopath_hostLp
,
392 HvLpEvent_Type_VirtualIo
,
393 viomajorsubtype_blockio
| vioblockopen
,
394 HvLpEvent_AckInd_DoAck
, HvLpEvent_AckType_ImmediateAck
,
395 viopath_sourceinst(viopath_hostLp
),
396 viopath_targetinst(viopath_hostLp
),
397 (u64
)(unsigned long)&we
, VIOVERSION
<< 16,
398 ((u64
)dev_no
<< 48) | ((u64
)flags
<< 32),
401 pr_warning("bad rc on HV open %d\n", (int)hvrc
);
405 wait_for_completion(&we
.com
);
410 /* try again with read only flag set */
411 flags
= vioblockflags_ro
;
414 if (we
.max_disk
> (MAX_DISKNO
- 1)) {
415 printk_once(KERN_INFO
pr_fmt("Only examining the first %d of %d disks connected\n"),
416 MAX_DISKNO
, we
.max_disk
+ 1);
419 /* Send the close event to OS/400. We DON'T expect a response */
420 hvrc
= HvCallEvent_signalLpEventFast(viopath_hostLp
,
421 HvLpEvent_Type_VirtualIo
,
422 viomajorsubtype_blockio
| vioblockclose
,
423 HvLpEvent_AckInd_NoAck
, HvLpEvent_AckType_ImmediateAck
,
424 viopath_sourceinst(viopath_hostLp
),
425 viopath_targetinst(viopath_hostLp
),
427 ((u64
)dev_no
<< 48) | ((u64
)flags
<< 32),
430 pr_warning("bad rc sending event to OS/400 %d\n", (int)hvrc
);
434 if (d
->dev
== NULL
) {
435 /* this is when we reprobe for new disks */
436 if (vio_create_viodasd(dev_no
) == NULL
) {
437 pr_warning("cannot allocate virtual device for disk %d\n",
442 * The vio_create_viodasd will have recursed into this
443 * routine with d->dev set to the new vio device and
444 * will finish the setup of the disk below.
449 /* create the request queue for the disk */
450 spin_lock_init(&d
->q_lock
);
451 q
= blk_init_queue(do_viodasd_request
, &d
->q_lock
);
453 pr_warning("cannot allocate queue for disk %d\n", dev_no
);
456 g
= alloc_disk(1 << PARTITION_SHIFT
);
458 pr_warning("cannot allocate disk structure for disk %d\n",
460 blk_cleanup_queue(q
);
465 blk_queue_max_segments(q
, VIOMAXBLOCKDMA
);
466 blk_queue_max_hw_sectors(q
, VIODASD_MAXSECTORS
);
467 g
->major
= VIODASD_MAJOR
;
468 g
->first_minor
= dev_no
<< PARTITION_SHIFT
;
470 snprintf(g
->disk_name
, sizeof(g
->disk_name
),
471 VIOD_GENHD_NAME
"%c%c",
472 'a' + (dev_no
/ 26) - 1, 'a' + (dev_no
% 26));
474 snprintf(g
->disk_name
, sizeof(g
->disk_name
),
475 VIOD_GENHD_NAME
"%c", 'a' + (dev_no
% 26));
476 g
->fops
= &viodasd_fops
;
479 g
->driverfs_dev
= d
->dev
;
480 set_capacity(g
, d
->size
>> 9);
482 pr_info("disk %d: %lu sectors (%lu MB) CHS=%d/%d/%d sector size %d%s\n",
483 dev_no
, (unsigned long)(d
->size
>> 9),
484 (unsigned long)(d
->size
>> 20),
485 (int)d
->cylinders
, (int)d
->tracks
,
486 (int)d
->sectors
, (int)d
->bytes_per_sector
,
487 d
->read_only
? " (RO)" : "");
489 /* register us in the global list */
494 /* returns the total number of scatterlist elements converted */
495 static int block_event_to_scatterlist(const struct vioblocklpevent
*bevent
,
496 struct scatterlist
*sg
, int *total_len
)
499 const struct rw_data
*rw_data
= &bevent
->u
.rw_data
;
500 static const int offset
=
501 offsetof(struct vioblocklpevent
, u
.rw_data
.dma_info
);
502 static const int element_size
= sizeof(rw_data
->dma_info
[0]);
504 numsg
= ((bevent
->event
.xSizeMinus1
+ 1) - offset
) / element_size
;
505 if (numsg
> VIOMAXBLOCKDMA
)
506 numsg
= VIOMAXBLOCKDMA
;
509 sg_init_table(sg
, VIOMAXBLOCKDMA
);
510 for (i
= 0; (i
< numsg
) && (rw_data
->dma_info
[i
].len
> 0); ++i
) {
511 sg_dma_address(&sg
[i
]) = rw_data
->dma_info
[i
].token
;
512 sg_dma_len(&sg
[i
]) = rw_data
->dma_info
[i
].len
;
513 *total_len
+= rw_data
->dma_info
[i
].len
;
519 * Restart all queues, starting with the one _after_ the disk given,
520 * thus reducing the chance of starvation of higher numbered disks.
522 static void viodasd_restart_all_queues_starting_from(int first_index
)
526 for (i
= first_index
+ 1; i
< MAX_DISKNO
; ++i
)
527 if (viodasd_devices
[i
].disk
)
528 blk_run_queue(viodasd_devices
[i
].disk
->queue
);
529 for (i
= 0; i
<= first_index
; ++i
)
530 if (viodasd_devices
[i
].disk
)
531 blk_run_queue(viodasd_devices
[i
].disk
->queue
);
535 * For read and write requests, decrement the number of outstanding requests,
536 * Free the DMA buffers we allocated.
538 static int viodasd_handle_read_write(struct vioblocklpevent
*bevent
)
540 int num_sg
, num_sect
, pci_direction
, total_len
;
542 struct scatterlist sg
[VIOMAXBLOCKDMA
];
543 struct HvLpEvent
*event
= &bevent
->event
;
544 unsigned long irq_flags
;
545 struct viodasd_device
*d
;
549 num_sg
= block_event_to_scatterlist(bevent
, sg
, &total_len
);
550 num_sect
= total_len
>> 9;
551 if (event
->xSubtype
== (viomajorsubtype_blockio
| vioblockread
))
552 pci_direction
= DMA_FROM_DEVICE
;
554 pci_direction
= DMA_TO_DEVICE
;
555 req
= (struct request
*)bevent
->event
.xCorrelationToken
;
556 d
= req
->rq_disk
->private_data
;
558 dma_unmap_sg(d
->dev
, sg
, num_sg
, pci_direction
);
561 * Since this is running in interrupt mode, we need to make sure
562 * we're not stepping on any global I/O operations
564 spin_lock_irqsave(&viodasd_spinlock
, irq_flags
);
565 num_req_outstanding
--;
566 spin_unlock_irqrestore(&viodasd_spinlock
, irq_flags
);
568 error
= (event
->xRc
== HvLpEvent_Rc_Good
) ? 0 : -EIO
;
570 const struct vio_error_entry
*err
;
571 err
= vio_lookup_rc(viodasd_err_table
, bevent
->sub_result
);
572 pr_warning("read/write error %d:0x%04x (%s)\n",
573 event
->xRc
, bevent
->sub_result
, err
->msg
);
574 num_sect
= blk_rq_sectors(req
);
576 qlock
= req
->q
->queue_lock
;
577 spin_lock_irqsave(qlock
, irq_flags
);
578 viodasd_end_request(req
, error
, num_sect
);
579 spin_unlock_irqrestore(qlock
, irq_flags
);
581 /* Finally, try to get more requests off of this device's queue */
582 viodasd_restart_all_queues_starting_from(DEVICE_NO(d
));
587 /* This routine handles incoming block LP events */
588 static void handle_block_event(struct HvLpEvent
*event
)
590 struct vioblocklpevent
*bevent
= (struct vioblocklpevent
*)event
;
591 struct viodasd_waitevent
*pwe
;
594 /* Notification that a partition went away! */
596 /* First, we should NEVER get an int here...only acks */
597 if (hvlpevent_is_int(event
)) {
598 pr_warning("Yikes! got an int in viodasd event handler!\n");
599 if (hvlpevent_need_ack(event
)) {
600 event
->xRc
= HvLpEvent_Rc_InvalidSubtype
;
601 HvCallEvent_ackLpEvent(event
);
605 switch (event
->xSubtype
& VIOMINOR_SUBTYPE_MASK
) {
608 * Handle a response to an open request. We get all the
609 * disk information in the response, so update it. The
610 * correlation token contains a pointer to a waitevent
611 * structure that has a completion in it. update the
612 * return code in the waitevent structure and post the
613 * completion to wake up the guy who sent the request
615 pwe
= (struct viodasd_waitevent
*)event
->xCorrelationToken
;
616 pwe
->rc
= event
->xRc
;
617 pwe
->sub_result
= bevent
->sub_result
;
618 if (event
->xRc
== HvLpEvent_Rc_Good
) {
619 const struct open_data
*data
= &bevent
->u
.open_data
;
620 struct viodasd_device
*device
=
621 &viodasd_devices
[bevent
->disk
];
623 bevent
->flags
& vioblockflags_ro
;
624 device
->size
= data
->disk_size
;
625 device
->cylinders
= data
->cylinders
;
626 device
->tracks
= data
->tracks
;
627 device
->sectors
= data
->sectors
;
628 device
->bytes_per_sector
= data
->bytes_per_sector
;
629 pwe
->max_disk
= data
->max_disk
;
637 viodasd_handle_read_write(bevent
);
641 pr_warning("invalid subtype!");
642 if (hvlpevent_need_ack(event
)) {
643 event
->xRc
= HvLpEvent_Rc_InvalidSubtype
;
644 HvCallEvent_ackLpEvent(event
);
650 * Get the driver to reprobe for more disks.
652 static ssize_t
probe_disks(struct device_driver
*drv
, const char *buf
,
655 struct viodasd_device
*d
;
657 for (d
= viodasd_devices
; d
< &viodasd_devices
[MAX_DISKNO
]; d
++) {
663 static DRIVER_ATTR(probe
, S_IWUSR
, NULL
, probe_disks
);
665 static int viodasd_probe(struct vio_dev
*vdev
, const struct vio_device_id
*id
)
667 struct viodasd_device
*d
= &viodasd_devices
[vdev
->unit_address
];
675 static int viodasd_remove(struct vio_dev
*vdev
)
677 struct viodasd_device
*d
;
679 d
= &viodasd_devices
[vdev
->unit_address
];
681 del_gendisk(d
->disk
);
682 blk_cleanup_queue(d
->disk
->queue
);
691 * viodasd_device_table: Used by vio.c to match devices that we
694 static struct vio_device_id viodasd_device_table
[] __devinitdata
= {
695 { "block", "IBM,iSeries-viodasd" },
698 MODULE_DEVICE_TABLE(vio
, viodasd_device_table
);
700 static struct vio_driver viodasd_driver
= {
701 .id_table
= viodasd_device_table
,
702 .probe
= viodasd_probe
,
703 .remove
= viodasd_remove
,
706 .owner
= THIS_MODULE
,
710 static int need_delete_probe
;
713 * Initialize the whole device driver. Handle module and non-module
716 static int __init
viodasd_init(void)
720 if (!firmware_has_feature(FW_FEATURE_ISERIES
)) {
725 /* Try to open to our host lp */
726 if (viopath_hostLp
== HvLpIndexInvalid
)
729 if (viopath_hostLp
== HvLpIndexInvalid
) {
730 pr_warning("invalid hosting partition\n");
735 pr_info("vers " VIOD_VERS
", hosting partition %d\n", viopath_hostLp
);
737 /* register the block device */
738 rc
= register_blkdev(VIODASD_MAJOR
, VIOD_GENHD_NAME
);
740 pr_warning("Unable to get major number %d for %s\n",
741 VIODASD_MAJOR
, VIOD_GENHD_NAME
);
744 /* Actually open the path to the hosting partition */
745 rc
= viopath_open(viopath_hostLp
, viomajorsubtype_blockio
,
748 pr_warning("error opening path to host partition %d\n",
753 /* Initialize our request handler */
754 vio_setHandler(viomajorsubtype_blockio
, handle_block_event
);
756 rc
= vio_register_driver(&viodasd_driver
);
758 pr_warning("vio_register_driver failed\n");
763 * If this call fails, it just means that we cannot dynamically
764 * add virtual disks, but the driver will still work fine for
765 * all existing disk, so ignore the failure.
767 if (!driver_create_file(&viodasd_driver
.driver
, &driver_attr_probe
))
768 need_delete_probe
= 1;
773 vio_clearHandler(viomajorsubtype_blockio
);
774 viopath_close(viopath_hostLp
, viomajorsubtype_blockio
, VIOMAXREQ
+ 2);
776 unregister_blkdev(VIODASD_MAJOR
, VIOD_GENHD_NAME
);
780 module_init(viodasd_init
);
782 void __exit
viodasd_exit(void)
784 if (need_delete_probe
)
785 driver_remove_file(&viodasd_driver
.driver
, &driver_attr_probe
);
786 vio_unregister_driver(&viodasd_driver
);
787 vio_clearHandler(viomajorsubtype_blockio
);
788 viopath_close(viopath_hostLp
, viomajorsubtype_blockio
, VIOMAXREQ
+ 2);
789 unregister_blkdev(VIODASD_MAJOR
, VIOD_GENHD_NAME
);
791 module_exit(viodasd_exit
);