4 * Copyright (C) 2000 Eric Youngdale,
5 * Copyright (C) 2002 Patrick Mansfield
7 * The general scanning/probing algorithm is as follows, exceptions are
8 * made to it depending on device specific flags, compilation options, and
9 * global variable (boot or module load time) settings.
11 * A specific LUN is scanned via an INQUIRY command; if the LUN has a
12 * device attached, a scsi_device is allocated and setup for it.
14 * For every id of every channel on the given host:
16 * Scan LUN 0; if the target responds to LUN 0 (even if there is no
17 * device or storage attached to LUN 0):
19 * If LUN 0 has a device attached, allocate and setup a
22 * If target is SCSI-3 or up, issue a REPORT LUN, and scan
23 * all of the LUNs returned by the REPORT LUN; else,
24 * sequentially scan LUNs up until some maximum is reached,
25 * or a LUN is seen that cannot have a device attached to it.
28 #include <linux/module.h>
29 #include <linux/moduleparam.h>
30 #include <linux/init.h>
31 #include <linux/blkdev.h>
32 #include <linux/delay.h>
33 #include <linux/kthread.h>
34 #include <linux/spinlock.h>
35 #include <linux/async.h>
36 #include <linux/slab.h>
38 #include <scsi/scsi.h>
39 #include <scsi/scsi_cmnd.h>
40 #include <scsi/scsi_device.h>
41 #include <scsi/scsi_driver.h>
42 #include <scsi/scsi_devinfo.h>
43 #include <scsi/scsi_host.h>
44 #include <scsi/scsi_transport.h>
45 #include <scsi/scsi_eh.h>
47 #include "scsi_priv.h"
48 #include "scsi_logging.h"
50 #define ALLOC_FAILURE_MSG KERN_ERR "%s: Allocation failure during" \
51 " SCSI scanning, some SCSI devices might not be configured\n"
56 #define SCSI_TIMEOUT (2*HZ)
59 * Prefix values for the SCSI id's (stored in sysfs name field)
61 #define SCSI_UID_SER_NUM 'S'
62 #define SCSI_UID_UNKNOWN 'Z'
65 * Return values of some of the scanning functions.
67 * SCSI_SCAN_NO_RESPONSE: no valid response received from the target, this
68 * includes allocation or general failures preventing IO from being sent.
70 * SCSI_SCAN_TARGET_PRESENT: target responded, but no device is available
73 * SCSI_SCAN_LUN_PRESENT: target responded, and a device is available on a
76 #define SCSI_SCAN_NO_RESPONSE 0
77 #define SCSI_SCAN_TARGET_PRESENT 1
78 #define SCSI_SCAN_LUN_PRESENT 2
80 static const char *scsi_null_device_strs
= "nullnullnullnull";
82 #define MAX_SCSI_LUNS 512
84 #ifdef CONFIG_SCSI_MULTI_LUN
85 static unsigned int max_scsi_luns
= MAX_SCSI_LUNS
;
87 static unsigned int max_scsi_luns
= 1;
90 module_param_named(max_luns
, max_scsi_luns
, uint
, S_IRUGO
|S_IWUSR
);
91 MODULE_PARM_DESC(max_luns
,
92 "last scsi LUN (should be between 1 and 2^32-1)");
94 #ifdef CONFIG_SCSI_SCAN_ASYNC
95 #define SCSI_SCAN_TYPE_DEFAULT "async"
97 #define SCSI_SCAN_TYPE_DEFAULT "sync"
100 static char scsi_scan_type
[6] = SCSI_SCAN_TYPE_DEFAULT
;
102 module_param_string(scan
, scsi_scan_type
, sizeof(scsi_scan_type
), S_IRUGO
);
103 MODULE_PARM_DESC(scan
, "sync, async or none");
106 * max_scsi_report_luns: the maximum number of LUNS that will be
107 * returned from the REPORT LUNS command. 8 times this value must
108 * be allocated. In theory this could be up to an 8 byte value, but
109 * in practice, the maximum number of LUNs suppored by any device
112 static unsigned int max_scsi_report_luns
= 511;
114 module_param_named(max_report_luns
, max_scsi_report_luns
, uint
, S_IRUGO
|S_IWUSR
);
115 MODULE_PARM_DESC(max_report_luns
,
116 "REPORT LUNS maximum number of LUNS received (should be"
117 " between 1 and 16384)");
119 static unsigned int scsi_inq_timeout
= SCSI_TIMEOUT
/HZ
+ 18;
121 module_param_named(inq_timeout
, scsi_inq_timeout
, uint
, S_IRUGO
|S_IWUSR
);
122 MODULE_PARM_DESC(inq_timeout
,
123 "Timeout (in seconds) waiting for devices to answer INQUIRY."
124 " Default is 20. Some devices may need more; most need less.");
126 /* This lock protects only this list */
127 static DEFINE_SPINLOCK(async_scan_lock
);
128 static LIST_HEAD(scanning_hosts
);
130 struct async_scan_data
{
131 struct list_head list
;
132 struct Scsi_Host
*shost
;
133 struct completion prev_finished
;
137 * scsi_complete_async_scans - Wait for asynchronous scans to complete
139 * When this function returns, any host which started scanning before
140 * this function was called will have finished its scan. Hosts which
141 * started scanning after this function was called may or may not have
144 int scsi_complete_async_scans(void)
146 struct async_scan_data
*data
;
149 if (list_empty(&scanning_hosts
))
151 /* If we can't get memory immediately, that's OK. Just
152 * sleep a little. Even if we never get memory, the async
153 * scans will finish eventually.
155 data
= kmalloc(sizeof(*data
), GFP_KERNEL
);
161 init_completion(&data
->prev_finished
);
163 spin_lock(&async_scan_lock
);
164 /* Check that there's still somebody else on the list */
165 if (list_empty(&scanning_hosts
))
167 list_add_tail(&data
->list
, &scanning_hosts
);
168 spin_unlock(&async_scan_lock
);
170 printk(KERN_INFO
"scsi: waiting for bus probes to complete ...\n");
171 wait_for_completion(&data
->prev_finished
);
173 spin_lock(&async_scan_lock
);
174 list_del(&data
->list
);
175 if (!list_empty(&scanning_hosts
)) {
176 struct async_scan_data
*next
= list_entry(scanning_hosts
.next
,
177 struct async_scan_data
, list
);
178 complete(&next
->prev_finished
);
181 spin_unlock(&async_scan_lock
);
187 /* Only exported for the benefit of scsi_wait_scan */
188 EXPORT_SYMBOL_GPL(scsi_complete_async_scans
);
192 * For async scanning we need to wait for all the scans to complete before
193 * trying to mount the root fs. Otherwise non-modular drivers may not be ready
196 late_initcall(scsi_complete_async_scans
);
200 * scsi_unlock_floptical - unlock device via a special MODE SENSE command
201 * @sdev: scsi device to send command to
202 * @result: area to store the result of the MODE SENSE
205 * Send a vendor specific MODE SENSE (not a MODE SELECT) command.
206 * Called for BLIST_KEY devices.
208 static void scsi_unlock_floptical(struct scsi_device
*sdev
,
209 unsigned char *result
)
211 unsigned char scsi_cmd
[MAX_COMMAND_SIZE
];
213 printk(KERN_NOTICE
"scsi: unlocking floptical drive\n");
214 scsi_cmd
[0] = MODE_SENSE
;
218 scsi_cmd
[4] = 0x2a; /* size */
220 scsi_execute_req(sdev
, scsi_cmd
, DMA_FROM_DEVICE
, result
, 0x2a, NULL
,
221 SCSI_TIMEOUT
, 3, NULL
);
225 * scsi_alloc_sdev - allocate and setup a scsi_Device
226 * @starget: which target to allocate a &scsi_device for
228 * @hostdata: usually NULL and set by ->slave_alloc instead
231 * Allocate, initialize for io, and return a pointer to a scsi_Device.
232 * Stores the @shost, @channel, @id, and @lun in the scsi_Device, and
233 * adds scsi_Device to the appropriate list.
236 * scsi_Device pointer, or NULL on failure.
238 static struct scsi_device
*scsi_alloc_sdev(struct scsi_target
*starget
,
239 unsigned int lun
, void *hostdata
)
241 struct scsi_device
*sdev
;
242 int display_failure_msg
= 1, ret
;
243 struct Scsi_Host
*shost
= dev_to_shost(starget
->dev
.parent
);
244 extern void scsi_evt_thread(struct work_struct
*work
);
246 sdev
= kzalloc(sizeof(*sdev
) + shost
->transportt
->device_size
,
251 sdev
->vendor
= scsi_null_device_strs
;
252 sdev
->model
= scsi_null_device_strs
;
253 sdev
->rev
= scsi_null_device_strs
;
255 sdev
->queue_ramp_up_period
= SCSI_DEFAULT_RAMP_UP_PERIOD
;
256 sdev
->id
= starget
->id
;
258 sdev
->channel
= starget
->channel
;
259 sdev
->sdev_state
= SDEV_CREATED
;
260 INIT_LIST_HEAD(&sdev
->siblings
);
261 INIT_LIST_HEAD(&sdev
->same_target_siblings
);
262 INIT_LIST_HEAD(&sdev
->cmd_list
);
263 INIT_LIST_HEAD(&sdev
->starved_entry
);
264 INIT_LIST_HEAD(&sdev
->event_list
);
265 spin_lock_init(&sdev
->list_lock
);
266 INIT_WORK(&sdev
->event_work
, scsi_evt_thread
);
268 sdev
->sdev_gendev
.parent
= get_device(&starget
->dev
);
269 sdev
->sdev_target
= starget
;
271 /* usually NULL and set by ->slave_alloc instead */
272 sdev
->hostdata
= hostdata
;
274 /* if the device needs this changing, it may do so in the
275 * slave_configure function */
276 sdev
->max_device_blocked
= SCSI_DEFAULT_DEVICE_BLOCKED
;
279 * Some low level driver could use device->type
284 * Assume that the device will have handshaking problems,
285 * and then fix this field later if it turns out it
290 sdev
->request_queue
= scsi_alloc_queue(sdev
);
291 if (!sdev
->request_queue
) {
292 /* release fn is set up in scsi_sysfs_device_initialise, so
293 * have to free and put manually here */
294 put_device(&starget
->dev
);
299 sdev
->request_queue
->queuedata
= sdev
;
300 scsi_adjust_queue_depth(sdev
, 0, sdev
->host
->cmd_per_lun
);
302 scsi_sysfs_device_initialize(sdev
);
304 if (shost
->hostt
->slave_alloc
) {
305 ret
= shost
->hostt
->slave_alloc(sdev
);
308 * if LLDD reports slave not present, don't clutter
309 * console with alloc failure messages
312 display_failure_msg
= 0;
313 goto out_device_destroy
;
320 scsi_device_set_state(sdev
, SDEV_DEL
);
321 transport_destroy_device(&sdev
->sdev_gendev
);
322 put_device(&sdev
->sdev_dev
);
323 put_device(&sdev
->sdev_gendev
);
325 if (display_failure_msg
)
326 printk(ALLOC_FAILURE_MSG
, __func__
);
330 static void scsi_target_destroy(struct scsi_target
*starget
)
332 struct device
*dev
= &starget
->dev
;
333 struct Scsi_Host
*shost
= dev_to_shost(dev
->parent
);
336 transport_destroy_device(dev
);
337 spin_lock_irqsave(shost
->host_lock
, flags
);
338 if (shost
->hostt
->target_destroy
)
339 shost
->hostt
->target_destroy(starget
);
340 list_del_init(&starget
->siblings
);
341 spin_unlock_irqrestore(shost
->host_lock
, flags
);
345 static void scsi_target_dev_release(struct device
*dev
)
347 struct device
*parent
= dev
->parent
;
348 struct scsi_target
*starget
= to_scsi_target(dev
);
354 static struct device_type scsi_target_type
= {
355 .name
= "scsi_target",
356 .release
= scsi_target_dev_release
,
359 int scsi_is_target_device(const struct device
*dev
)
361 return dev
->type
== &scsi_target_type
;
363 EXPORT_SYMBOL(scsi_is_target_device
);
365 static struct scsi_target
*__scsi_find_target(struct device
*parent
,
366 int channel
, uint id
)
368 struct scsi_target
*starget
, *found_starget
= NULL
;
369 struct Scsi_Host
*shost
= dev_to_shost(parent
);
371 * Search for an existing target for this sdev.
373 list_for_each_entry(starget
, &shost
->__targets
, siblings
) {
374 if (starget
->id
== id
&&
375 starget
->channel
== channel
) {
376 found_starget
= starget
;
381 get_device(&found_starget
->dev
);
383 return found_starget
;
387 * scsi_alloc_target - allocate a new or find an existing target
388 * @parent: parent of the target (need not be a scsi host)
389 * @channel: target channel number (zero if no channels)
390 * @id: target id number
392 * Return an existing target if one exists, provided it hasn't already
393 * gone into STARGET_DEL state, otherwise allocate a new target.
395 * The target is returned with an incremented reference, so the caller
396 * is responsible for both reaping and doing a last put
398 static struct scsi_target
*scsi_alloc_target(struct device
*parent
,
399 int channel
, uint id
)
401 struct Scsi_Host
*shost
= dev_to_shost(parent
);
402 struct device
*dev
= NULL
;
404 const int size
= sizeof(struct scsi_target
)
405 + shost
->transportt
->target_size
;
406 struct scsi_target
*starget
;
407 struct scsi_target
*found_target
;
410 starget
= kzalloc(size
, GFP_KERNEL
);
412 printk(KERN_ERR
"%s: allocation failure\n", __func__
);
416 device_initialize(dev
);
417 starget
->reap_ref
= 1;
418 dev
->parent
= get_device(parent
);
419 dev_set_name(dev
, "target%d:%d:%d", shost
->host_no
, channel
, id
);
420 #ifndef CONFIG_SYSFS_DEPRECATED
421 dev
->bus
= &scsi_bus_type
;
423 dev
->type
= &scsi_target_type
;
425 starget
->channel
= channel
;
426 starget
->can_queue
= 0;
427 INIT_LIST_HEAD(&starget
->siblings
);
428 INIT_LIST_HEAD(&starget
->devices
);
429 starget
->state
= STARGET_CREATED
;
430 starget
->scsi_level
= SCSI_2
;
431 starget
->max_target_blocked
= SCSI_DEFAULT_TARGET_BLOCKED
;
433 spin_lock_irqsave(shost
->host_lock
, flags
);
435 found_target
= __scsi_find_target(parent
, channel
, id
);
439 list_add_tail(&starget
->siblings
, &shost
->__targets
);
440 spin_unlock_irqrestore(shost
->host_lock
, flags
);
441 /* allocate and add */
442 transport_setup_device(dev
);
443 if (shost
->hostt
->target_alloc
) {
444 error
= shost
->hostt
->target_alloc(starget
);
447 dev_printk(KERN_ERR
, dev
, "target allocation failed, error %d\n", error
);
448 /* don't want scsi_target_reap to do the final
449 * put because it will be under the host lock */
450 scsi_target_destroy(starget
);
459 found_target
->reap_ref
++;
460 spin_unlock_irqrestore(shost
->host_lock
, flags
);
461 if (found_target
->state
!= STARGET_DEL
) {
465 /* Unfortunately, we found a dying target; need to
466 * wait until it's dead before we can get a new one */
467 put_device(&found_target
->dev
);
468 flush_scheduled_work();
472 static void scsi_target_reap_usercontext(struct work_struct
*work
)
474 struct scsi_target
*starget
=
475 container_of(work
, struct scsi_target
, ew
.work
);
477 transport_remove_device(&starget
->dev
);
478 device_del(&starget
->dev
);
479 scsi_target_destroy(starget
);
483 * scsi_target_reap - check to see if target is in use and destroy if not
484 * @starget: target to be checked
486 * This is used after removing a LUN or doing a last put of the target
487 * it checks atomically that nothing is using the target and removes
490 void scsi_target_reap(struct scsi_target
*starget
)
492 struct Scsi_Host
*shost
= dev_to_shost(starget
->dev
.parent
);
494 enum scsi_target_state state
;
497 spin_lock_irqsave(shost
->host_lock
, flags
);
498 state
= starget
->state
;
499 empty
= --starget
->reap_ref
== 0 &&
500 list_empty(&starget
->devices
) ? 1 : 0;
501 spin_unlock_irqrestore(shost
->host_lock
, flags
);
506 BUG_ON(state
== STARGET_DEL
);
507 starget
->state
= STARGET_DEL
;
508 if (state
== STARGET_CREATED
)
509 scsi_target_destroy(starget
);
511 execute_in_process_context(scsi_target_reap_usercontext
,
516 * sanitize_inquiry_string - remove non-graphical chars from an INQUIRY result string
517 * @s: INQUIRY result string to sanitize
518 * @len: length of the string
521 * The SCSI spec says that INQUIRY vendor, product, and revision
522 * strings must consist entirely of graphic ASCII characters,
523 * padded on the right with spaces. Since not all devices obey
524 * this rule, we will replace non-graphic or non-ASCII characters
525 * with spaces. Exception: a NUL character is interpreted as a
526 * string terminator, so all the following characters are set to
529 static void sanitize_inquiry_string(unsigned char *s
, int len
)
533 for (; len
> 0; (--len
, ++s
)) {
536 if (terminated
|| *s
< 0x20 || *s
> 0x7e)
542 * scsi_probe_lun - probe a single LUN using a SCSI INQUIRY
543 * @sdev: scsi_device to probe
544 * @inq_result: area to store the INQUIRY result
545 * @result_len: len of inq_result
546 * @bflags: store any bflags found here
549 * Probe the lun associated with @req using a standard SCSI INQUIRY;
551 * If the INQUIRY is successful, zero is returned and the
552 * INQUIRY data is in @inq_result; the scsi_level and INQUIRY length
553 * are copied to the scsi_device any flags value is stored in *@bflags.
555 static int scsi_probe_lun(struct scsi_device
*sdev
, unsigned char *inq_result
,
556 int result_len
, int *bflags
)
558 unsigned char scsi_cmd
[MAX_COMMAND_SIZE
];
559 int first_inquiry_len
, try_inquiry_len
, next_inquiry_len
;
560 int response_len
= 0;
561 int pass
, count
, result
;
562 struct scsi_sense_hdr sshdr
;
566 /* Perform up to 3 passes. The first pass uses a conservative
567 * transfer length of 36 unless sdev->inquiry_len specifies a
568 * different value. */
569 first_inquiry_len
= sdev
->inquiry_len
? sdev
->inquiry_len
: 36;
570 try_inquiry_len
= first_inquiry_len
;
574 SCSI_LOG_SCAN_BUS(3, sdev_printk(KERN_INFO
, sdev
,
575 "scsi scan: INQUIRY pass %d length %d\n",
576 pass
, try_inquiry_len
));
578 /* Each pass gets up to three chances to ignore Unit Attention */
579 for (count
= 0; count
< 3; ++count
) {
582 memset(scsi_cmd
, 0, 6);
583 scsi_cmd
[0] = INQUIRY
;
584 scsi_cmd
[4] = (unsigned char) try_inquiry_len
;
586 memset(inq_result
, 0, try_inquiry_len
);
588 result
= scsi_execute_req(sdev
, scsi_cmd
, DMA_FROM_DEVICE
,
589 inq_result
, try_inquiry_len
, &sshdr
,
590 HZ
/ 2 + HZ
* scsi_inq_timeout
, 3,
593 SCSI_LOG_SCAN_BUS(3, printk(KERN_INFO
"scsi scan: INQUIRY %s "
595 result
? "failed" : "successful", result
));
599 * not-ready to ready transition [asc/ascq=0x28/0x0]
600 * or power-on, reset [asc/ascq=0x29/0x0], continue.
601 * INQUIRY should not yield UNIT_ATTENTION
602 * but many buggy devices do so anyway.
604 if ((driver_byte(result
) & DRIVER_SENSE
) &&
605 scsi_sense_valid(&sshdr
)) {
606 if ((sshdr
.sense_key
== UNIT_ATTENTION
) &&
607 ((sshdr
.asc
== 0x28) ||
608 (sshdr
.asc
== 0x29)) &&
614 * if nothing was transferred, we try
615 * again. It's a workaround for some USB
618 if (resid
== try_inquiry_len
)
625 sanitize_inquiry_string(&inq_result
[8], 8);
626 sanitize_inquiry_string(&inq_result
[16], 16);
627 sanitize_inquiry_string(&inq_result
[32], 4);
629 response_len
= inq_result
[4] + 5;
630 if (response_len
> 255)
631 response_len
= first_inquiry_len
; /* sanity */
634 * Get any flags for this device.
636 * XXX add a bflags to scsi_device, and replace the
637 * corresponding bit fields in scsi_device, so bflags
638 * need not be passed as an argument.
640 *bflags
= scsi_get_device_flags(sdev
, &inq_result
[8],
643 /* When the first pass succeeds we gain information about
644 * what larger transfer lengths might work. */
646 if (BLIST_INQUIRY_36
& *bflags
)
647 next_inquiry_len
= 36;
648 else if (BLIST_INQUIRY_58
& *bflags
)
649 next_inquiry_len
= 58;
650 else if (sdev
->inquiry_len
)
651 next_inquiry_len
= sdev
->inquiry_len
;
653 next_inquiry_len
= response_len
;
655 /* If more data is available perform the second pass */
656 if (next_inquiry_len
> try_inquiry_len
) {
657 try_inquiry_len
= next_inquiry_len
;
663 } else if (pass
== 2) {
664 printk(KERN_INFO
"scsi scan: %d byte inquiry failed. "
665 "Consider BLIST_INQUIRY_36 for this device\n",
668 /* If this pass failed, the third pass goes back and transfers
669 * the same amount as we successfully got in the first pass. */
670 try_inquiry_len
= first_inquiry_len
;
675 /* If the last transfer attempt got an error, assume the
676 * peripheral doesn't exist or is dead. */
680 /* Don't report any more data than the device says is valid */
681 sdev
->inquiry_len
= min(try_inquiry_len
, response_len
);
684 * XXX Abort if the response length is less than 36? If less than
685 * 32, the lookup of the device flags (above) could be invalid,
686 * and it would be possible to take an incorrect action - we do
687 * not want to hang because of a short INQUIRY. On the flip side,
688 * if the device is spun down or becoming ready (and so it gives a
689 * short INQUIRY), an abort here prevents any further use of the
690 * device, including spin up.
692 * On the whole, the best approach seems to be to assume the first
693 * 36 bytes are valid no matter what the device says. That's
694 * better than copying < 36 bytes to the inquiry-result buffer
695 * and displaying garbage for the Vendor, Product, or Revision
698 if (sdev
->inquiry_len
< 36) {
699 printk(KERN_INFO
"scsi scan: INQUIRY result too short (%d),"
700 " using 36\n", sdev
->inquiry_len
);
701 sdev
->inquiry_len
= 36;
705 * Related to the above issue:
707 * XXX Devices (disk or all?) should be sent a TEST UNIT READY,
708 * and if not ready, sent a START_STOP to start (maybe spin up) and
709 * then send the INQUIRY again, since the INQUIRY can change after
710 * a device is initialized.
712 * Ideally, start a device if explicitly asked to do so. This
713 * assumes that a device is spun up on power on, spun down on
714 * request, and then spun up on request.
718 * The scanning code needs to know the scsi_level, even if no
719 * device is attached at LUN 0 (SCSI_SCAN_TARGET_PRESENT) so
720 * non-zero LUNs can be scanned.
722 sdev
->scsi_level
= inq_result
[2] & 0x07;
723 if (sdev
->scsi_level
>= 2 ||
724 (sdev
->scsi_level
== 1 && (inq_result
[3] & 0x0f) == 1))
726 sdev
->sdev_target
->scsi_level
= sdev
->scsi_level
;
732 * scsi_add_lun - allocate and fully initialze a scsi_device
733 * @sdev: holds information to be stored in the new scsi_device
734 * @inq_result: holds the result of a previous INQUIRY to the LUN
735 * @bflags: black/white list flag
736 * @async: 1 if this device is being scanned asynchronously
739 * Initialize the scsi_device @sdev. Optionally set fields based
740 * on values in *@bflags.
743 * SCSI_SCAN_NO_RESPONSE: could not allocate or setup a scsi_device
744 * SCSI_SCAN_LUN_PRESENT: a new scsi_device was allocated and initialized
746 static int scsi_add_lun(struct scsi_device
*sdev
, unsigned char *inq_result
,
747 int *bflags
, int async
)
752 * XXX do not save the inquiry, since it can change underneath us,
753 * save just vendor/model/rev.
755 * Rather than save it and have an ioctl that retrieves the saved
756 * value, have an ioctl that executes the same INQUIRY code used
757 * in scsi_probe_lun, let user level programs doing INQUIRY
758 * scanning run at their own risk, or supply a user level program
759 * that can correctly scan.
763 * Copy at least 36 bytes of INQUIRY data, so that we don't
764 * dereference unallocated memory when accessing the Vendor,
765 * Product, and Revision strings. Badly behaved devices may set
766 * the INQUIRY Additional Length byte to a small value, indicating
767 * these strings are invalid, but often they contain plausible data
768 * nonetheless. It doesn't matter if the device sent < 36 bytes
769 * total, since scsi_probe_lun() initializes inq_result with 0s.
771 sdev
->inquiry
= kmemdup(inq_result
,
772 max_t(size_t, sdev
->inquiry_len
, 36),
774 if (sdev
->inquiry
== NULL
)
775 return SCSI_SCAN_NO_RESPONSE
;
777 sdev
->vendor
= (char *) (sdev
->inquiry
+ 8);
778 sdev
->model
= (char *) (sdev
->inquiry
+ 16);
779 sdev
->rev
= (char *) (sdev
->inquiry
+ 32);
781 if (*bflags
& BLIST_ISROM
) {
782 sdev
->type
= TYPE_ROM
;
785 sdev
->type
= (inq_result
[0] & 0x1f);
786 sdev
->removable
= (inq_result
[1] & 0x80) >> 7;
789 switch (sdev
->type
) {
797 case TYPE_MEDIUM_CHANGER
:
809 printk(KERN_INFO
"scsi: unknown device type %d\n", sdev
->type
);
812 if (sdev
->type
== TYPE_RBC
|| sdev
->type
== TYPE_ROM
) {
813 /* RBC and MMC devices can return SCSI-3 compliance and yet
814 * still not support REPORT LUNS, so make them act as
815 * BLIST_NOREPORTLUN unless BLIST_REPORTLUN2 is
816 * specifically set */
817 if ((*bflags
& BLIST_REPORTLUN2
) == 0)
818 *bflags
|= BLIST_NOREPORTLUN
;
822 * For a peripheral qualifier (PQ) value of 1 (001b), the SCSI
823 * spec says: The device server is capable of supporting the
824 * specified peripheral device type on this logical unit. However,
825 * the physical device is not currently connected to this logical
828 * The above is vague, as it implies that we could treat 001 and
829 * 011 the same. Stay compatible with previous code, and create a
830 * scsi_device for a PQ of 1
832 * Don't set the device offline here; rather let the upper
833 * level drivers eval the PQ to decide whether they should
834 * attach. So remove ((inq_result[0] >> 5) & 7) == 1 check.
837 sdev
->inq_periph_qual
= (inq_result
[0] >> 5) & 7;
838 sdev
->lockable
= sdev
->removable
;
839 sdev
->soft_reset
= (inq_result
[7] & 1) && ((inq_result
[3] & 7) == 2);
841 if (sdev
->scsi_level
>= SCSI_3
||
842 (sdev
->inquiry_len
> 56 && inq_result
[56] & 0x04))
844 if (inq_result
[7] & 0x60)
846 if (inq_result
[7] & 0x10)
849 sdev_printk(KERN_NOTICE
, sdev
, "%s %.8s %.16s %.4s PQ: %d "
850 "ANSI: %d%s\n", scsi_device_type(sdev
->type
),
851 sdev
->vendor
, sdev
->model
, sdev
->rev
,
852 sdev
->inq_periph_qual
, inq_result
[2] & 0x07,
853 (inq_result
[3] & 0x0f) == 1 ? " CCS" : "");
855 if ((sdev
->scsi_level
>= SCSI_2
) && (inq_result
[7] & 2) &&
856 !(*bflags
& BLIST_NOTQ
))
857 sdev
->tagged_supported
= 1;
860 * Some devices (Texel CD ROM drives) have handshaking problems
861 * when used with the Seagate controllers. borken is initialized
862 * to 1, and then set it to 0 here.
864 if ((*bflags
& BLIST_BORKEN
) == 0)
867 if (*bflags
& BLIST_NO_ULD_ATTACH
)
868 sdev
->no_uld_attach
= 1;
871 * Apparently some really broken devices (contrary to the SCSI
872 * standards) need to be selected without asserting ATN
874 if (*bflags
& BLIST_SELECT_NO_ATN
)
875 sdev
->select_no_atn
= 1;
878 * Maximum 512 sector transfer length
879 * broken RA4x00 Compaq Disk Array
881 if (*bflags
& BLIST_MAX_512
)
882 blk_queue_max_hw_sectors(sdev
->request_queue
, 512);
885 * Some devices may not want to have a start command automatically
886 * issued when a device is added.
888 if (*bflags
& BLIST_NOSTARTONADD
)
889 sdev
->no_start_on_add
= 1;
891 if (*bflags
& BLIST_SINGLELUN
)
892 scsi_target(sdev
)->single_lun
= 1;
894 sdev
->use_10_for_rw
= 1;
896 if (*bflags
& BLIST_MS_SKIP_PAGE_08
)
897 sdev
->skip_ms_page_8
= 1;
899 if (*bflags
& BLIST_MS_SKIP_PAGE_3F
)
900 sdev
->skip_ms_page_3f
= 1;
902 if (*bflags
& BLIST_USE_10_BYTE_MS
)
903 sdev
->use_10_for_ms
= 1;
905 /* set the device running here so that slave configure
907 ret
= scsi_device_set_state(sdev
, SDEV_RUNNING
);
909 ret
= scsi_device_set_state(sdev
, SDEV_BLOCK
);
912 sdev_printk(KERN_ERR
, sdev
,
913 "in wrong state %s to complete scan\n",
914 scsi_device_state_name(sdev
->sdev_state
));
915 return SCSI_SCAN_NO_RESPONSE
;
919 if (*bflags
& BLIST_MS_192_BYTES_FOR_3F
)
920 sdev
->use_192_bytes_for_3f
= 1;
922 if (*bflags
& BLIST_NOT_LOCKABLE
)
925 if (*bflags
& BLIST_RETRY_HWERROR
)
926 sdev
->retry_hwerror
= 1;
928 transport_configure_device(&sdev
->sdev_gendev
);
930 if (sdev
->host
->hostt
->slave_configure
) {
931 ret
= sdev
->host
->hostt
->slave_configure(sdev
);
934 * if LLDD reports slave not present, don't clutter
935 * console with alloc failure messages
938 sdev_printk(KERN_ERR
, sdev
,
939 "failed to configure device\n");
941 return SCSI_SCAN_NO_RESPONSE
;
945 sdev
->max_queue_depth
= sdev
->queue_depth
;
948 * Ok, the device is now all set up, we can
949 * register it and tell the rest of the kernel
952 if (!async
&& scsi_sysfs_add_sdev(sdev
) != 0)
953 return SCSI_SCAN_NO_RESPONSE
;
955 return SCSI_SCAN_LUN_PRESENT
;
958 #ifdef CONFIG_SCSI_LOGGING
960 * scsi_inq_str - print INQUIRY data from min to max index, strip trailing whitespace
961 * @buf: Output buffer with at least end-first+1 bytes of space
962 * @inq: Inquiry buffer (input)
963 * @first: Offset of string into inq
964 * @end: Index after last character in inq
966 static unsigned char *scsi_inq_str(unsigned char *buf
, unsigned char *inq
,
967 unsigned first
, unsigned end
)
969 unsigned term
= 0, idx
;
971 for (idx
= 0; idx
+ first
< end
&& idx
+ first
< inq
[4] + 5; idx
++) {
972 if (inq
[idx
+first
] > ' ') {
973 buf
[idx
] = inq
[idx
+first
];
985 * scsi_probe_and_add_lun - probe a LUN, if a LUN is found add it
986 * @starget: pointer to target device structure
987 * @lun: LUN of target device
988 * @bflagsp: store bflags here if not NULL
989 * @sdevp: probe the LUN corresponding to this scsi_device
990 * @rescan: if nonzero skip some code only needed on first scan
991 * @hostdata: passed to scsi_alloc_sdev()
994 * Call scsi_probe_lun, if a LUN with an attached device is found,
995 * allocate and set it up by calling scsi_add_lun.
998 * SCSI_SCAN_NO_RESPONSE: could not allocate or setup a scsi_device
999 * SCSI_SCAN_TARGET_PRESENT: target responded, but no device is
1000 * attached at the LUN
1001 * SCSI_SCAN_LUN_PRESENT: a new scsi_device was allocated and initialized
1003 static int scsi_probe_and_add_lun(struct scsi_target
*starget
,
1004 uint lun
, int *bflagsp
,
1005 struct scsi_device
**sdevp
, int rescan
,
1008 struct scsi_device
*sdev
;
1009 unsigned char *result
;
1010 int bflags
, res
= SCSI_SCAN_NO_RESPONSE
, result_len
= 256;
1011 struct Scsi_Host
*shost
= dev_to_shost(starget
->dev
.parent
);
1014 * The rescan flag is used as an optimization, the first scan of a
1015 * host adapter calls into here with rescan == 0.
1017 sdev
= scsi_device_lookup_by_target(starget
, lun
);
1019 if (rescan
|| !scsi_device_created(sdev
)) {
1020 SCSI_LOG_SCAN_BUS(3, printk(KERN_INFO
1021 "scsi scan: device exists on %s\n",
1022 dev_name(&sdev
->sdev_gendev
)));
1026 scsi_device_put(sdev
);
1029 *bflagsp
= scsi_get_device_flags(sdev
,
1032 return SCSI_SCAN_LUN_PRESENT
;
1034 scsi_device_put(sdev
);
1036 sdev
= scsi_alloc_sdev(starget
, lun
, hostdata
);
1040 result
= kmalloc(result_len
, GFP_ATOMIC
|
1041 ((shost
->unchecked_isa_dma
) ? __GFP_DMA
: 0));
1045 if (scsi_probe_lun(sdev
, result
, result_len
, &bflags
))
1046 goto out_free_result
;
1051 * result contains valid SCSI INQUIRY data.
1053 if (((result
[0] >> 5) == 3) && !(bflags
& BLIST_ATTACH_PQ3
)) {
1055 * For a Peripheral qualifier 3 (011b), the SCSI
1056 * spec says: The device server is not capable of
1057 * supporting a physical device on this logical
1060 * For disks, this implies that there is no
1061 * logical disk configured at sdev->lun, but there
1062 * is a target id responding.
1064 SCSI_LOG_SCAN_BUS(2, sdev_printk(KERN_INFO
, sdev
, "scsi scan:"
1065 " peripheral qualifier of 3, device not"
1068 SCSI_LOG_SCAN_BUS(1, {
1069 unsigned char vend
[9];
1070 unsigned char mod
[17];
1072 sdev_printk(KERN_INFO
, sdev
,
1073 "scsi scan: consider passing scsi_mod."
1074 "dev_flags=%s:%s:0x240 or 0x1000240\n",
1075 scsi_inq_str(vend
, result
, 8, 16),
1076 scsi_inq_str(mod
, result
, 16, 32));
1081 res
= SCSI_SCAN_TARGET_PRESENT
;
1082 goto out_free_result
;
1086 * Some targets may set slight variations of PQ and PDT to signal
1087 * that no LUN is present, so don't add sdev in these cases.
1088 * Two specific examples are:
1089 * 1) NetApp targets: return PQ=1, PDT=0x1f
1090 * 2) USB UFI: returns PDT=0x1f, with the PQ bits being "reserved"
1091 * in the UFI 1.0 spec (we cannot rely on reserved bits).
1094 * 1) SCSI SPC-3, pp. 145-146
1095 * PQ=1: "A peripheral device having the specified peripheral
1096 * device type is not connected to this logical unit. However, the
1097 * device server is capable of supporting the specified peripheral
1098 * device type on this logical unit."
1099 * PDT=0x1f: "Unknown or no device type"
1100 * 2) USB UFI 1.0, p. 20
1101 * PDT=00h Direct-access device (floppy)
1102 * PDT=1Fh none (no FDD connected to the requested logical unit)
1104 if (((result
[0] >> 5) == 1 || starget
->pdt_1f_for_no_lun
) &&
1105 (result
[0] & 0x1f) == 0x1f &&
1106 !scsi_is_wlun(lun
)) {
1107 SCSI_LOG_SCAN_BUS(3, printk(KERN_INFO
1108 "scsi scan: peripheral device type"
1109 " of 31, no device added\n"));
1110 res
= SCSI_SCAN_TARGET_PRESENT
;
1111 goto out_free_result
;
1114 res
= scsi_add_lun(sdev
, result
, &bflags
, shost
->async_scan
);
1115 if (res
== SCSI_SCAN_LUN_PRESENT
) {
1116 if (bflags
& BLIST_KEY
) {
1118 scsi_unlock_floptical(sdev
, result
);
1125 if (res
== SCSI_SCAN_LUN_PRESENT
) {
1127 if (scsi_device_get(sdev
) == 0) {
1130 __scsi_remove_device(sdev
);
1131 res
= SCSI_SCAN_NO_RESPONSE
;
1135 __scsi_remove_device(sdev
);
1141 * scsi_sequential_lun_scan - sequentially scan a SCSI target
1142 * @starget: pointer to target structure to scan
1143 * @bflags: black/white list flag for LUN 0
1144 * @scsi_level: Which version of the standard does this device adhere to
1145 * @rescan: passed to scsi_probe_add_lun()
1148 * Generally, scan from LUN 1 (LUN 0 is assumed to already have been
1149 * scanned) to some maximum lun until a LUN is found with no device
1150 * attached. Use the bflags to figure out any oddities.
1152 * Modifies sdevscan->lun.
1154 static void scsi_sequential_lun_scan(struct scsi_target
*starget
,
1155 int bflags
, int scsi_level
, int rescan
)
1157 unsigned int sparse_lun
, lun
, max_dev_lun
;
1158 struct Scsi_Host
*shost
= dev_to_shost(starget
->dev
.parent
);
1160 SCSI_LOG_SCAN_BUS(3, printk(KERN_INFO
"scsi scan: Sequential scan of"
1161 "%s\n", dev_name(&starget
->dev
)));
1163 max_dev_lun
= min(max_scsi_luns
, shost
->max_lun
);
1165 * If this device is known to support sparse multiple units,
1166 * override the other settings, and scan all of them. Normally,
1167 * SCSI-3 devices should be scanned via the REPORT LUNS.
1169 if (bflags
& BLIST_SPARSELUN
) {
1170 max_dev_lun
= shost
->max_lun
;
1176 * If less than SCSI_1_CSS, and no special lun scaning, stop
1177 * scanning; this matches 2.4 behaviour, but could just be a bug
1178 * (to continue scanning a SCSI_1_CSS device).
1180 * This test is broken. We might not have any device on lun0 for
1181 * a sparselun device, and if that's the case then how would we
1182 * know the real scsi_level, eh? It might make sense to just not
1183 * scan any SCSI_1 device for non-0 luns, but that check would best
1184 * go into scsi_alloc_sdev() and just have it return null when asked
1185 * to alloc an sdev for lun > 0 on an already found SCSI_1 device.
1187 if ((sdevscan->scsi_level < SCSI_1_CCS) &&
1188 ((bflags & (BLIST_FORCELUN | BLIST_SPARSELUN | BLIST_MAX5LUN))
1193 * If this device is known to support multiple units, override
1194 * the other settings, and scan all of them.
1196 if (bflags
& BLIST_FORCELUN
)
1197 max_dev_lun
= shost
->max_lun
;
1199 * REGAL CDC-4X: avoid hang after LUN 4
1201 if (bflags
& BLIST_MAX5LUN
)
1202 max_dev_lun
= min(5U, max_dev_lun
);
1204 * Do not scan SCSI-2 or lower device past LUN 7, unless
1207 if (scsi_level
< SCSI_3
&& !(bflags
& BLIST_LARGELUN
))
1208 max_dev_lun
= min(8U, max_dev_lun
);
1211 * We have already scanned LUN 0, so start at LUN 1. Keep scanning
1212 * until we reach the max, or no LUN is found and we are not
1215 for (lun
= 1; lun
< max_dev_lun
; ++lun
)
1216 if ((scsi_probe_and_add_lun(starget
, lun
, NULL
, NULL
, rescan
,
1217 NULL
) != SCSI_SCAN_LUN_PRESENT
) &&
1223 * scsilun_to_int - convert a scsi_lun to an int
1224 * @scsilun: struct scsi_lun to be converted.
1227 * Convert @scsilun from a struct scsi_lun to a four byte host byte-ordered
1228 * integer, and return the result. The caller must check for
1229 * truncation before using this function.
1232 * The struct scsi_lun is assumed to be four levels, with each level
1233 * effectively containing a SCSI byte-ordered (big endian) short; the
1234 * addressing bits of each level are ignored (the highest two bits).
1235 * For a description of the LUN format, post SCSI-3 see the SCSI
1236 * Architecture Model, for SCSI-3 see the SCSI Controller Commands.
1238 * Given a struct scsi_lun of: 0a 04 0b 03 00 00 00 00, this function returns
1239 * the integer: 0x0b030a04
1241 int scsilun_to_int(struct scsi_lun
*scsilun
)
1247 for (i
= 0; i
< sizeof(lun
); i
+= 2)
1248 lun
= lun
| (((scsilun
->scsi_lun
[i
] << 8) |
1249 scsilun
->scsi_lun
[i
+ 1]) << (i
* 8));
1252 EXPORT_SYMBOL(scsilun_to_int
);
1255 * int_to_scsilun - reverts an int into a scsi_lun
1256 * @lun: integer to be reverted
1257 * @scsilun: struct scsi_lun to be set.
1260 * Reverts the functionality of the scsilun_to_int, which packed
1261 * an 8-byte lun value into an int. This routine unpacks the int
1262 * back into the lun value.
1263 * Note: the scsilun_to_int() routine does not truly handle all
1264 * 8bytes of the lun value. This functions restores only as much
1265 * as was set by the routine.
1268 * Given an integer : 0x0b030a04, this function returns a
1269 * scsi_lun of : struct scsi_lun of: 0a 04 0b 03 00 00 00 00
1272 void int_to_scsilun(unsigned int lun
, struct scsi_lun
*scsilun
)
1276 memset(scsilun
->scsi_lun
, 0, sizeof(scsilun
->scsi_lun
));
1278 for (i
= 0; i
< sizeof(lun
); i
+= 2) {
1279 scsilun
->scsi_lun
[i
] = (lun
>> 8) & 0xFF;
1280 scsilun
->scsi_lun
[i
+1] = lun
& 0xFF;
1284 EXPORT_SYMBOL(int_to_scsilun
);
1287 * scsi_report_lun_scan - Scan using SCSI REPORT LUN results
1288 * @starget: which target
1289 * @bflags: Zero or a mix of BLIST_NOLUN, BLIST_REPORTLUN2, or BLIST_NOREPORTLUN
1290 * @rescan: nonzero if we can skip code only needed on first scan
1293 * Fast scanning for modern (SCSI-3) devices by sending a REPORT LUN command.
1294 * Scan the resulting list of LUNs by calling scsi_probe_and_add_lun.
1296 * If BLINK_REPORTLUN2 is set, scan a target that supports more than 8
1297 * LUNs even if it's older than SCSI-3.
1298 * If BLIST_NOREPORTLUN is set, return 1 always.
1299 * If BLIST_NOLUN is set, return 0 always.
1302 * 0: scan completed (or no memory, so further scanning is futile)
1303 * 1: could not scan with REPORT LUN
1305 static int scsi_report_lun_scan(struct scsi_target
*starget
, int bflags
,
1309 unsigned char scsi_cmd
[MAX_COMMAND_SIZE
];
1310 unsigned int length
;
1312 unsigned int num_luns
;
1313 unsigned int retries
;
1315 struct scsi_lun
*lunp
, *lun_data
;
1317 struct scsi_sense_hdr sshdr
;
1318 struct scsi_device
*sdev
;
1319 struct Scsi_Host
*shost
= dev_to_shost(&starget
->dev
);
1323 * Only support SCSI-3 and up devices if BLIST_NOREPORTLUN is not set.
1324 * Also allow SCSI-2 if BLIST_REPORTLUN2 is set and host adapter does
1325 * support more than 8 LUNs.
1327 if (bflags
& BLIST_NOREPORTLUN
)
1329 if (starget
->scsi_level
< SCSI_2
&&
1330 starget
->scsi_level
!= SCSI_UNKNOWN
)
1332 if (starget
->scsi_level
< SCSI_3
&&
1333 (!(bflags
& BLIST_REPORTLUN2
) || shost
->max_lun
<= 8))
1335 if (bflags
& BLIST_NOLUN
)
1338 if (!(sdev
= scsi_device_lookup_by_target(starget
, 0))) {
1339 sdev
= scsi_alloc_sdev(starget
, 0, NULL
);
1342 if (scsi_device_get(sdev
)) {
1343 __scsi_remove_device(sdev
);
1348 sprintf(devname
, "host %d channel %d id %d",
1349 shost
->host_no
, sdev
->channel
, sdev
->id
);
1352 * Allocate enough to hold the header (the same size as one scsi_lun)
1353 * plus the max number of luns we are requesting.
1355 * Reallocating and trying again (with the exact amount we need)
1356 * would be nice, but then we need to somehow limit the size
1357 * allocated based on the available memory and the limits of
1358 * kmalloc - we don't want a kmalloc() failure of a huge value to
1359 * prevent us from finding any LUNs on this target.
1361 length
= (max_scsi_report_luns
+ 1) * sizeof(struct scsi_lun
);
1362 lun_data
= kmalloc(length
, GFP_ATOMIC
|
1363 (sdev
->host
->unchecked_isa_dma
? __GFP_DMA
: 0));
1365 printk(ALLOC_FAILURE_MSG
, __func__
);
1369 scsi_cmd
[0] = REPORT_LUNS
;
1372 * bytes 1 - 5: reserved, set to zero.
1374 memset(&scsi_cmd
[1], 0, 5);
1377 * bytes 6 - 9: length of the command.
1379 scsi_cmd
[6] = (unsigned char) (length
>> 24) & 0xff;
1380 scsi_cmd
[7] = (unsigned char) (length
>> 16) & 0xff;
1381 scsi_cmd
[8] = (unsigned char) (length
>> 8) & 0xff;
1382 scsi_cmd
[9] = (unsigned char) length
& 0xff;
1384 scsi_cmd
[10] = 0; /* reserved */
1385 scsi_cmd
[11] = 0; /* control */
1388 * We can get a UNIT ATTENTION, for example a power on/reset, so
1389 * retry a few times (like sd.c does for TEST UNIT READY).
1390 * Experience shows some combinations of adapter/devices get at
1391 * least two power on/resets.
1393 * Illegal requests (for devices that do not support REPORT LUNS)
1394 * should come through as a check condition, and will not generate
1397 for (retries
= 0; retries
< 3; retries
++) {
1398 SCSI_LOG_SCAN_BUS(3, printk (KERN_INFO
"scsi scan: Sending"
1399 " REPORT LUNS to %s (try %d)\n", devname
,
1402 result
= scsi_execute_req(sdev
, scsi_cmd
, DMA_FROM_DEVICE
,
1403 lun_data
, length
, &sshdr
,
1404 SCSI_TIMEOUT
+ 4 * HZ
, 3, NULL
);
1406 SCSI_LOG_SCAN_BUS(3, printk (KERN_INFO
"scsi scan: REPORT LUNS"
1407 " %s (try %d) result 0x%x\n", result
1408 ? "failed" : "successful", retries
, result
));
1411 else if (scsi_sense_valid(&sshdr
)) {
1412 if (sshdr
.sense_key
!= UNIT_ATTENTION
)
1419 * The device probably does not support a REPORT LUN command
1426 * Get the length from the first four bytes of lun_data.
1428 data
= (u8
*) lun_data
->scsi_lun
;
1429 length
= ((data
[0] << 24) | (data
[1] << 16) |
1430 (data
[2] << 8) | (data
[3] << 0));
1432 num_luns
= (length
/ sizeof(struct scsi_lun
));
1433 if (num_luns
> max_scsi_report_luns
) {
1434 printk(KERN_WARNING
"scsi: On %s only %d (max_scsi_report_luns)"
1435 " of %d luns reported, try increasing"
1436 " max_scsi_report_luns.\n", devname
,
1437 max_scsi_report_luns
, num_luns
);
1438 num_luns
= max_scsi_report_luns
;
1441 SCSI_LOG_SCAN_BUS(3, sdev_printk (KERN_INFO
, sdev
,
1442 "scsi scan: REPORT LUN scan\n"));
1445 * Scan the luns in lun_data. The entry at offset 0 is really
1446 * the header, so start at 1 and go up to and including num_luns.
1448 for (lunp
= &lun_data
[1]; lunp
<= &lun_data
[num_luns
]; lunp
++) {
1449 lun
= scsilun_to_int(lunp
);
1452 * Check if the unused part of lunp is non-zero, and so
1453 * does not fit in lun.
1455 if (memcmp(&lunp
->scsi_lun
[sizeof(lun
)], "\0\0\0\0", 4)) {
1459 * Output an error displaying the LUN in byte order,
1460 * this differs from what linux would print for the
1461 * integer LUN value.
1463 printk(KERN_WARNING
"scsi: %s lun 0x", devname
);
1464 data
= (char *)lunp
->scsi_lun
;
1465 for (i
= 0; i
< sizeof(struct scsi_lun
); i
++)
1466 printk("%02x", data
[i
]);
1467 printk(" has a LUN larger than currently supported.\n");
1468 } else if (lun
> sdev
->host
->max_lun
) {
1469 printk(KERN_WARNING
"scsi: %s lun%d has a LUN larger"
1470 " than allowed by the host adapter\n",
1475 res
= scsi_probe_and_add_lun(starget
,
1476 lun
, NULL
, NULL
, rescan
, NULL
);
1477 if (res
== SCSI_SCAN_NO_RESPONSE
) {
1479 * Got some results, but now none, abort.
1481 sdev_printk(KERN_ERR
, sdev
,
1482 "Unexpected response"
1483 " from lun %d while scanning, scan"
1493 scsi_device_put(sdev
);
1494 if (scsi_device_created(sdev
))
1496 * the sdev we used didn't appear in the report luns scan
1498 __scsi_remove_device(sdev
);
1502 struct scsi_device
*__scsi_add_device(struct Scsi_Host
*shost
, uint channel
,
1503 uint id
, uint lun
, void *hostdata
)
1505 struct scsi_device
*sdev
= ERR_PTR(-ENODEV
);
1506 struct device
*parent
= &shost
->shost_gendev
;
1507 struct scsi_target
*starget
;
1509 if (strncmp(scsi_scan_type
, "none", 4) == 0)
1510 return ERR_PTR(-ENODEV
);
1512 starget
= scsi_alloc_target(parent
, channel
, id
);
1514 return ERR_PTR(-ENOMEM
);
1516 mutex_lock(&shost
->scan_mutex
);
1517 if (!shost
->async_scan
)
1518 scsi_complete_async_scans();
1520 if (scsi_host_scan_allowed(shost
))
1521 scsi_probe_and_add_lun(starget
, lun
, NULL
, &sdev
, 1, hostdata
);
1522 mutex_unlock(&shost
->scan_mutex
);
1523 scsi_target_reap(starget
);
1524 put_device(&starget
->dev
);
1528 EXPORT_SYMBOL(__scsi_add_device
);
1530 int scsi_add_device(struct Scsi_Host
*host
, uint channel
,
1531 uint target
, uint lun
)
1533 struct scsi_device
*sdev
=
1534 __scsi_add_device(host
, channel
, target
, lun
, NULL
);
1536 return PTR_ERR(sdev
);
1538 scsi_device_put(sdev
);
1541 EXPORT_SYMBOL(scsi_add_device
);
1543 void scsi_rescan_device(struct device
*dev
)
1545 struct scsi_driver
*drv
;
1550 drv
= to_scsi_driver(dev
->driver
);
1551 if (try_module_get(drv
->owner
)) {
1554 module_put(drv
->owner
);
1557 EXPORT_SYMBOL(scsi_rescan_device
);
1559 static void __scsi_scan_target(struct device
*parent
, unsigned int channel
,
1560 unsigned int id
, unsigned int lun
, int rescan
)
1562 struct Scsi_Host
*shost
= dev_to_shost(parent
);
1565 struct scsi_target
*starget
;
1567 if (shost
->this_id
== id
)
1569 * Don't scan the host adapter
1573 starget
= scsi_alloc_target(parent
, channel
, id
);
1577 if (lun
!= SCAN_WILD_CARD
) {
1579 * Scan for a specific host/chan/id/lun.
1581 scsi_probe_and_add_lun(starget
, lun
, NULL
, NULL
, rescan
, NULL
);
1586 * Scan LUN 0, if there is some response, scan further. Ideally, we
1587 * would not configure LUN 0 until all LUNs are scanned.
1589 res
= scsi_probe_and_add_lun(starget
, 0, &bflags
, NULL
, rescan
, NULL
);
1590 if (res
== SCSI_SCAN_LUN_PRESENT
|| res
== SCSI_SCAN_TARGET_PRESENT
) {
1591 if (scsi_report_lun_scan(starget
, bflags
, rescan
) != 0)
1593 * The REPORT LUN did not scan the target,
1594 * do a sequential scan.
1596 scsi_sequential_lun_scan(starget
, bflags
,
1597 starget
->scsi_level
, rescan
);
1601 /* now determine if the target has any children at all
1602 * and if not, nuke it */
1603 scsi_target_reap(starget
);
1605 put_device(&starget
->dev
);
1609 * scsi_scan_target - scan a target id, possibly including all LUNs on the target.
1610 * @parent: host to scan
1611 * @channel: channel to scan
1612 * @id: target id to scan
1613 * @lun: Specific LUN to scan or SCAN_WILD_CARD
1614 * @rescan: passed to LUN scanning routines
1617 * Scan the target id on @parent, @channel, and @id. Scan at least LUN 0,
1618 * and possibly all LUNs on the target id.
1620 * First try a REPORT LUN scan, if that does not scan the target, do a
1621 * sequential scan of LUNs on the target id.
1623 void scsi_scan_target(struct device
*parent
, unsigned int channel
,
1624 unsigned int id
, unsigned int lun
, int rescan
)
1626 struct Scsi_Host
*shost
= dev_to_shost(parent
);
1628 if (strncmp(scsi_scan_type
, "none", 4) == 0)
1631 mutex_lock(&shost
->scan_mutex
);
1632 if (!shost
->async_scan
)
1633 scsi_complete_async_scans();
1635 if (scsi_host_scan_allowed(shost
))
1636 __scsi_scan_target(parent
, channel
, id
, lun
, rescan
);
1637 mutex_unlock(&shost
->scan_mutex
);
1639 EXPORT_SYMBOL(scsi_scan_target
);
1641 static void scsi_scan_channel(struct Scsi_Host
*shost
, unsigned int channel
,
1642 unsigned int id
, unsigned int lun
, int rescan
)
1646 if (id
== SCAN_WILD_CARD
)
1647 for (id
= 0; id
< shost
->max_id
; ++id
) {
1649 * XXX adapter drivers when possible (FCP, iSCSI)
1650 * could modify max_id to match the current max,
1651 * not the absolute max.
1653 * XXX add a shost id iterator, so for example,
1654 * the FC ID can be the same as a target id
1655 * without a huge overhead of sparse id's.
1657 if (shost
->reverse_ordering
)
1659 * Scan from high to low id.
1661 order_id
= shost
->max_id
- id
- 1;
1664 __scsi_scan_target(&shost
->shost_gendev
, channel
,
1665 order_id
, lun
, rescan
);
1668 __scsi_scan_target(&shost
->shost_gendev
, channel
,
1672 int scsi_scan_host_selected(struct Scsi_Host
*shost
, unsigned int channel
,
1673 unsigned int id
, unsigned int lun
, int rescan
)
1675 SCSI_LOG_SCAN_BUS(3, shost_printk (KERN_INFO
, shost
,
1677 __func__
, channel
, id
, lun
));
1679 if (((channel
!= SCAN_WILD_CARD
) && (channel
> shost
->max_channel
)) ||
1680 ((id
!= SCAN_WILD_CARD
) && (id
>= shost
->max_id
)) ||
1681 ((lun
!= SCAN_WILD_CARD
) && (lun
> shost
->max_lun
)))
1684 mutex_lock(&shost
->scan_mutex
);
1685 if (!shost
->async_scan
)
1686 scsi_complete_async_scans();
1688 if (scsi_host_scan_allowed(shost
)) {
1689 if (channel
== SCAN_WILD_CARD
)
1690 for (channel
= 0; channel
<= shost
->max_channel
;
1692 scsi_scan_channel(shost
, channel
, id
, lun
,
1695 scsi_scan_channel(shost
, channel
, id
, lun
, rescan
);
1697 mutex_unlock(&shost
->scan_mutex
);
1702 static void scsi_sysfs_add_devices(struct Scsi_Host
*shost
)
1704 struct scsi_device
*sdev
;
1705 shost_for_each_device(sdev
, shost
) {
1706 if (!scsi_host_scan_allowed(shost
) ||
1707 scsi_sysfs_add_sdev(sdev
) != 0)
1708 __scsi_remove_device(sdev
);
1713 * scsi_prep_async_scan - prepare for an async scan
1714 * @shost: the host which will be scanned
1715 * Returns: a cookie to be passed to scsi_finish_async_scan()
1717 * Tells the midlayer this host is going to do an asynchronous scan.
1718 * It reserves the host's position in the scanning list and ensures
1719 * that other asynchronous scans started after this one won't affect the
1720 * ordering of the discovered devices.
1722 static struct async_scan_data
*scsi_prep_async_scan(struct Scsi_Host
*shost
)
1724 struct async_scan_data
*data
;
1725 unsigned long flags
;
1727 if (strncmp(scsi_scan_type
, "sync", 4) == 0)
1730 if (shost
->async_scan
) {
1731 printk("%s called twice for host %d", __func__
,
1737 data
= kmalloc(sizeof(*data
), GFP_KERNEL
);
1740 data
->shost
= scsi_host_get(shost
);
1743 init_completion(&data
->prev_finished
);
1745 mutex_lock(&shost
->scan_mutex
);
1746 spin_lock_irqsave(shost
->host_lock
, flags
);
1747 shost
->async_scan
= 1;
1748 spin_unlock_irqrestore(shost
->host_lock
, flags
);
1749 mutex_unlock(&shost
->scan_mutex
);
1751 spin_lock(&async_scan_lock
);
1752 if (list_empty(&scanning_hosts
))
1753 complete(&data
->prev_finished
);
1754 list_add_tail(&data
->list
, &scanning_hosts
);
1755 spin_unlock(&async_scan_lock
);
1765 * scsi_finish_async_scan - asynchronous scan has finished
1766 * @data: cookie returned from earlier call to scsi_prep_async_scan()
1768 * All the devices currently attached to this host have been found.
1769 * This function announces all the devices it has found to the rest
1772 static void scsi_finish_async_scan(struct async_scan_data
*data
)
1774 struct Scsi_Host
*shost
;
1775 unsigned long flags
;
1780 shost
= data
->shost
;
1782 mutex_lock(&shost
->scan_mutex
);
1784 if (!shost
->async_scan
) {
1785 printk("%s called twice for host %d", __func__
,
1788 mutex_unlock(&shost
->scan_mutex
);
1792 wait_for_completion(&data
->prev_finished
);
1794 scsi_sysfs_add_devices(shost
);
1796 spin_lock_irqsave(shost
->host_lock
, flags
);
1797 shost
->async_scan
= 0;
1798 spin_unlock_irqrestore(shost
->host_lock
, flags
);
1800 mutex_unlock(&shost
->scan_mutex
);
1802 spin_lock(&async_scan_lock
);
1803 list_del(&data
->list
);
1804 if (!list_empty(&scanning_hosts
)) {
1805 struct async_scan_data
*next
= list_entry(scanning_hosts
.next
,
1806 struct async_scan_data
, list
);
1807 complete(&next
->prev_finished
);
1809 spin_unlock(&async_scan_lock
);
1811 scsi_host_put(shost
);
1815 static void do_scsi_scan_host(struct Scsi_Host
*shost
)
1817 if (shost
->hostt
->scan_finished
) {
1818 unsigned long start
= jiffies
;
1819 if (shost
->hostt
->scan_start
)
1820 shost
->hostt
->scan_start(shost
);
1822 while (!shost
->hostt
->scan_finished(shost
, jiffies
- start
))
1825 scsi_scan_host_selected(shost
, SCAN_WILD_CARD
, SCAN_WILD_CARD
,
1830 static int do_scan_async(void *_data
)
1832 struct async_scan_data
*data
= _data
;
1833 do_scsi_scan_host(data
->shost
);
1834 scsi_finish_async_scan(data
);
1839 * scsi_scan_host - scan the given adapter
1840 * @shost: adapter to scan
1842 void scsi_scan_host(struct Scsi_Host
*shost
)
1844 struct task_struct
*p
;
1845 struct async_scan_data
*data
;
1847 if (strncmp(scsi_scan_type
, "none", 4) == 0)
1850 data
= scsi_prep_async_scan(shost
);
1852 do_scsi_scan_host(shost
);
1856 p
= kthread_run(do_scan_async
, data
, "scsi_scan_%d", shost
->host_no
);
1858 do_scan_async(data
);
1860 EXPORT_SYMBOL(scsi_scan_host
);
1862 void scsi_forget_host(struct Scsi_Host
*shost
)
1864 struct scsi_device
*sdev
;
1865 unsigned long flags
;
1868 spin_lock_irqsave(shost
->host_lock
, flags
);
1869 list_for_each_entry(sdev
, &shost
->__devices
, siblings
) {
1870 if (sdev
->sdev_state
== SDEV_DEL
)
1872 spin_unlock_irqrestore(shost
->host_lock
, flags
);
1873 __scsi_remove_device(sdev
);
1876 spin_unlock_irqrestore(shost
->host_lock
, flags
);
1880 * scsi_get_host_dev - Create a scsi_device that points to the host adapter itself
1881 * @shost: Host that needs a scsi_device
1883 * Lock status: None assumed.
1885 * Returns: The scsi_device or NULL
1888 * Attach a single scsi_device to the Scsi_Host - this should
1889 * be made to look like a "pseudo-device" that points to the
1892 * Note - this device is not accessible from any high-level
1893 * drivers (including generics), which is probably not
1894 * optimal. We can add hooks later to attach.
1896 struct scsi_device
*scsi_get_host_dev(struct Scsi_Host
*shost
)
1898 struct scsi_device
*sdev
= NULL
;
1899 struct scsi_target
*starget
;
1901 mutex_lock(&shost
->scan_mutex
);
1902 if (!scsi_host_scan_allowed(shost
))
1904 starget
= scsi_alloc_target(&shost
->shost_gendev
, 0, shost
->this_id
);
1908 sdev
= scsi_alloc_sdev(starget
, 0, NULL
);
1912 scsi_target_reap(starget
);
1913 put_device(&starget
->dev
);
1915 mutex_unlock(&shost
->scan_mutex
);
1918 EXPORT_SYMBOL(scsi_get_host_dev
);
1921 * scsi_free_host_dev - Free a scsi_device that points to the host adapter itself
1922 * @sdev: Host device to be freed
1924 * Lock status: None assumed.
1928 void scsi_free_host_dev(struct scsi_device
*sdev
)
1930 BUG_ON(sdev
->id
!= sdev
->host
->this_id
);
1932 __scsi_remove_device(sdev
);
1934 EXPORT_SYMBOL(scsi_free_host_dev
);