2 * Author(s)......: Holger Smolinski <Holger.Smolinski@de.ibm.com>
3 * Horst Hummel <Horst.Hummel@de.ibm.com>
4 * Carsten Otte <Cotte@de.ibm.com>
5 * Martin Schwidefsky <schwidefsky@de.ibm.com>
6 * Bugreports.to..: <Linux390@de.ibm.com>
7 * Copyright IBM Corp. 1999, 2009
10 #define KMSG_COMPONENT "dasd"
11 #define pr_fmt(fmt) KMSG_COMPONENT ": " fmt
13 #include <linux/kmod.h>
14 #include <linux/init.h>
15 #include <linux/interrupt.h>
16 #include <linux/ctype.h>
17 #include <linux/major.h>
18 #include <linux/slab.h>
19 #include <linux/hdreg.h>
20 #include <linux/async.h>
21 #include <linux/mutex.h>
22 #include <linux/debugfs.h>
23 #include <linux/seq_file.h>
24 #include <linux/vmalloc.h>
26 #include <asm/ccwdev.h>
27 #include <asm/ebcdic.h>
28 #include <asm/idals.h>
33 #define PRINTK_HEADER "dasd:"
37 * SECTION: Constant definitions to be used within this file
39 #define DASD_CHANQ_MAX_SIZE 4
41 #define DASD_DIAG_MOD "dasd_diag_mod"
44 * SECTION: exported variables of dasd.c
46 debug_info_t
*dasd_debug_area
;
47 EXPORT_SYMBOL(dasd_debug_area
);
48 static struct dentry
*dasd_debugfs_root_entry
;
49 struct dasd_discipline
*dasd_diag_discipline_pointer
;
50 EXPORT_SYMBOL(dasd_diag_discipline_pointer
);
51 void dasd_int_handler(struct ccw_device
*, unsigned long, struct irb
*);
53 MODULE_AUTHOR("Holger Smolinski <Holger.Smolinski@de.ibm.com>");
54 MODULE_DESCRIPTION("Linux on S/390 DASD device driver,"
55 " Copyright IBM Corp. 2000");
56 MODULE_SUPPORTED_DEVICE("dasd");
57 MODULE_LICENSE("GPL");
60 * SECTION: prototypes for static functions of dasd.c
62 static int dasd_alloc_queue(struct dasd_block
*);
63 static void dasd_setup_queue(struct dasd_block
*);
64 static void dasd_free_queue(struct dasd_block
*);
65 static void dasd_flush_request_queue(struct dasd_block
*);
66 static int dasd_flush_block_queue(struct dasd_block
*);
67 static void dasd_device_tasklet(struct dasd_device
*);
68 static void dasd_block_tasklet(struct dasd_block
*);
69 static void do_kick_device(struct work_struct
*);
70 static void do_restore_device(struct work_struct
*);
71 static void do_reload_device(struct work_struct
*);
72 static void dasd_return_cqr_cb(struct dasd_ccw_req
*, void *);
73 static void dasd_device_timeout(unsigned long);
74 static void dasd_block_timeout(unsigned long);
75 static void __dasd_process_erp(struct dasd_device
*, struct dasd_ccw_req
*);
76 static void dasd_profile_init(struct dasd_profile
*, struct dentry
*);
77 static void dasd_profile_exit(struct dasd_profile
*);
78 static void dasd_hosts_init(struct dentry
*, struct dasd_device
*);
79 static void dasd_hosts_exit(struct dasd_device
*);
82 * SECTION: Operations on the device structure.
84 static wait_queue_head_t dasd_init_waitq
;
85 static wait_queue_head_t dasd_flush_wq
;
86 static wait_queue_head_t generic_waitq
;
87 static wait_queue_head_t shutdown_waitq
;
90 * Allocate memory for a new device structure.
92 struct dasd_device
*dasd_alloc_device(void)
94 struct dasd_device
*device
;
96 device
= kzalloc(sizeof(struct dasd_device
), GFP_ATOMIC
);
98 return ERR_PTR(-ENOMEM
);
100 /* Get two pages for normal block device operations. */
101 device
->ccw_mem
= (void *) __get_free_pages(GFP_ATOMIC
| GFP_DMA
, 1);
102 if (!device
->ccw_mem
) {
104 return ERR_PTR(-ENOMEM
);
106 /* Get one page for error recovery. */
107 device
->erp_mem
= (void *) get_zeroed_page(GFP_ATOMIC
| GFP_DMA
);
108 if (!device
->erp_mem
) {
109 free_pages((unsigned long) device
->ccw_mem
, 1);
111 return ERR_PTR(-ENOMEM
);
114 dasd_init_chunklist(&device
->ccw_chunks
, device
->ccw_mem
, PAGE_SIZE
*2);
115 dasd_init_chunklist(&device
->erp_chunks
, device
->erp_mem
, PAGE_SIZE
);
116 spin_lock_init(&device
->mem_lock
);
117 atomic_set(&device
->tasklet_scheduled
, 0);
118 tasklet_init(&device
->tasklet
,
119 (void (*)(unsigned long)) dasd_device_tasklet
,
120 (unsigned long) device
);
121 INIT_LIST_HEAD(&device
->ccw_queue
);
122 init_timer(&device
->timer
);
123 device
->timer
.function
= dasd_device_timeout
;
124 device
->timer
.data
= (unsigned long) device
;
125 INIT_WORK(&device
->kick_work
, do_kick_device
);
126 INIT_WORK(&device
->restore_device
, do_restore_device
);
127 INIT_WORK(&device
->reload_device
, do_reload_device
);
128 device
->state
= DASD_STATE_NEW
;
129 device
->target
= DASD_STATE_NEW
;
130 mutex_init(&device
->state_mutex
);
131 spin_lock_init(&device
->profile
.lock
);
136 * Free memory of a device structure.
138 void dasd_free_device(struct dasd_device
*device
)
140 kfree(device
->private);
141 free_page((unsigned long) device
->erp_mem
);
142 free_pages((unsigned long) device
->ccw_mem
, 1);
147 * Allocate memory for a new device structure.
149 struct dasd_block
*dasd_alloc_block(void)
151 struct dasd_block
*block
;
153 block
= kzalloc(sizeof(*block
), GFP_ATOMIC
);
155 return ERR_PTR(-ENOMEM
);
156 /* open_count = 0 means device online but not in use */
157 atomic_set(&block
->open_count
, -1);
159 spin_lock_init(&block
->request_queue_lock
);
160 atomic_set(&block
->tasklet_scheduled
, 0);
161 tasklet_init(&block
->tasklet
,
162 (void (*)(unsigned long)) dasd_block_tasklet
,
163 (unsigned long) block
);
164 INIT_LIST_HEAD(&block
->ccw_queue
);
165 spin_lock_init(&block
->queue_lock
);
166 init_timer(&block
->timer
);
167 block
->timer
.function
= dasd_block_timeout
;
168 block
->timer
.data
= (unsigned long) block
;
169 spin_lock_init(&block
->profile
.lock
);
173 EXPORT_SYMBOL_GPL(dasd_alloc_block
);
176 * Free memory of a device structure.
178 void dasd_free_block(struct dasd_block
*block
)
182 EXPORT_SYMBOL_GPL(dasd_free_block
);
185 * Make a new device known to the system.
187 static int dasd_state_new_to_known(struct dasd_device
*device
)
192 * As long as the device is not in state DASD_STATE_NEW we want to
193 * keep the reference count > 0.
195 dasd_get_device(device
);
198 rc
= dasd_alloc_queue(device
->block
);
200 dasd_put_device(device
);
204 device
->state
= DASD_STATE_KNOWN
;
209 * Let the system forget about a device.
211 static int dasd_state_known_to_new(struct dasd_device
*device
)
213 /* Disable extended error reporting for this device. */
214 dasd_eer_disable(device
);
215 /* Forget the discipline information. */
216 if (device
->discipline
) {
217 if (device
->discipline
->uncheck_device
)
218 device
->discipline
->uncheck_device(device
);
219 module_put(device
->discipline
->owner
);
221 device
->discipline
= NULL
;
222 if (device
->base_discipline
)
223 module_put(device
->base_discipline
->owner
);
224 device
->base_discipline
= NULL
;
225 device
->state
= DASD_STATE_NEW
;
228 dasd_free_queue(device
->block
);
230 /* Give up reference we took in dasd_state_new_to_known. */
231 dasd_put_device(device
);
235 static struct dentry
*dasd_debugfs_setup(const char *name
,
236 struct dentry
*base_dentry
)
242 pde
= debugfs_create_dir(name
, base_dentry
);
243 if (!pde
|| IS_ERR(pde
))
249 * Request the irq line for the device.
251 static int dasd_state_known_to_basic(struct dasd_device
*device
)
253 struct dasd_block
*block
= device
->block
;
256 /* Allocate and register gendisk structure. */
258 rc
= dasd_gendisk_alloc(block
);
261 block
->debugfs_dentry
=
262 dasd_debugfs_setup(block
->gdp
->disk_name
,
263 dasd_debugfs_root_entry
);
264 dasd_profile_init(&block
->profile
, block
->debugfs_dentry
);
265 if (dasd_global_profile_level
== DASD_PROFILE_ON
)
266 dasd_profile_on(&device
->block
->profile
);
268 device
->debugfs_dentry
=
269 dasd_debugfs_setup(dev_name(&device
->cdev
->dev
),
270 dasd_debugfs_root_entry
);
271 dasd_profile_init(&device
->profile
, device
->debugfs_dentry
);
272 dasd_hosts_init(device
->debugfs_dentry
, device
);
274 /* register 'device' debug area, used for all DBF_DEV_XXX calls */
275 device
->debug_area
= debug_register(dev_name(&device
->cdev
->dev
), 4, 1,
277 debug_register_view(device
->debug_area
, &debug_sprintf_view
);
278 debug_set_level(device
->debug_area
, DBF_WARNING
);
279 DBF_DEV_EVENT(DBF_EMERG
, device
, "%s", "debug area created");
281 device
->state
= DASD_STATE_BASIC
;
287 * Release the irq line for the device. Terminate any running i/o.
289 static int dasd_state_basic_to_known(struct dasd_device
*device
)
293 if (device
->discipline
->basic_to_known
) {
294 rc
= device
->discipline
->basic_to_known(device
);
300 dasd_profile_exit(&device
->block
->profile
);
301 debugfs_remove(device
->block
->debugfs_dentry
);
302 dasd_gendisk_free(device
->block
);
303 dasd_block_clear_timer(device
->block
);
305 rc
= dasd_flush_device_queue(device
);
308 dasd_device_clear_timer(device
);
309 dasd_profile_exit(&device
->profile
);
310 dasd_hosts_exit(device
);
311 debugfs_remove(device
->debugfs_dentry
);
312 DBF_DEV_EVENT(DBF_EMERG
, device
, "%p debug area deleted", device
);
313 if (device
->debug_area
!= NULL
) {
314 debug_unregister(device
->debug_area
);
315 device
->debug_area
= NULL
;
317 device
->state
= DASD_STATE_KNOWN
;
322 * Do the initial analysis. The do_analysis function may return
323 * -EAGAIN in which case the device keeps the state DASD_STATE_BASIC
324 * until the discipline decides to continue the startup sequence
325 * by calling the function dasd_change_state. The eckd disciplines
326 * uses this to start a ccw that detects the format. The completion
327 * interrupt for this detection ccw uses the kernel event daemon to
328 * trigger the call to dasd_change_state. All this is done in the
329 * discipline code, see dasd_eckd.c.
330 * After the analysis ccw is done (do_analysis returned 0) the block
332 * In case the analysis returns an error, the device setup is stopped
333 * (a fake disk was already added to allow formatting).
335 static int dasd_state_basic_to_ready(struct dasd_device
*device
)
338 struct dasd_block
*block
;
341 block
= device
->block
;
342 /* make disk known with correct capacity */
344 if (block
->base
->discipline
->do_analysis
!= NULL
)
345 rc
= block
->base
->discipline
->do_analysis(block
);
348 device
->state
= DASD_STATE_UNFMT
;
353 dasd_setup_queue(block
);
354 set_capacity(block
->gdp
,
355 block
->blocks
<< block
->s2b_shift
);
356 device
->state
= DASD_STATE_READY
;
357 rc
= dasd_scan_partitions(block
);
359 device
->state
= DASD_STATE_BASIC
;
363 device
->state
= DASD_STATE_READY
;
366 if (device
->discipline
->basic_to_ready
)
367 rc
= device
->discipline
->basic_to_ready(device
);
372 int _wait_for_empty_queues(struct dasd_device
*device
)
375 return list_empty(&device
->ccw_queue
) &&
376 list_empty(&device
->block
->ccw_queue
);
378 return list_empty(&device
->ccw_queue
);
382 * Remove device from block device layer. Destroy dirty buffers.
383 * Forget format information. Check if the target level is basic
384 * and if it is create fake disk for formatting.
386 static int dasd_state_ready_to_basic(struct dasd_device
*device
)
390 device
->state
= DASD_STATE_BASIC
;
392 struct dasd_block
*block
= device
->block
;
393 rc
= dasd_flush_block_queue(block
);
395 device
->state
= DASD_STATE_READY
;
398 dasd_flush_request_queue(block
);
399 dasd_destroy_partitions(block
);
402 block
->s2b_shift
= 0;
410 static int dasd_state_unfmt_to_basic(struct dasd_device
*device
)
412 device
->state
= DASD_STATE_BASIC
;
417 * Make the device online and schedule the bottom half to start
418 * the requeueing of requests from the linux request queue to the
422 dasd_state_ready_to_online(struct dasd_device
* device
)
424 struct gendisk
*disk
;
425 struct disk_part_iter piter
;
426 struct hd_struct
*part
;
428 device
->state
= DASD_STATE_ONLINE
;
430 dasd_schedule_block_bh(device
->block
);
431 if ((device
->features
& DASD_FEATURE_USERAW
)) {
432 disk
= device
->block
->gdp
;
433 kobject_uevent(&disk_to_dev(disk
)->kobj
, KOBJ_CHANGE
);
436 disk
= device
->block
->bdev
->bd_disk
;
437 disk_part_iter_init(&piter
, disk
, DISK_PITER_INCL_PART0
);
438 while ((part
= disk_part_iter_next(&piter
)))
439 kobject_uevent(&part_to_dev(part
)->kobj
, KOBJ_CHANGE
);
440 disk_part_iter_exit(&piter
);
446 * Stop the requeueing of requests again.
448 static int dasd_state_online_to_ready(struct dasd_device
*device
)
451 struct gendisk
*disk
;
452 struct disk_part_iter piter
;
453 struct hd_struct
*part
;
455 if (device
->discipline
->online_to_ready
) {
456 rc
= device
->discipline
->online_to_ready(device
);
461 device
->state
= DASD_STATE_READY
;
462 if (device
->block
&& !(device
->features
& DASD_FEATURE_USERAW
)) {
463 disk
= device
->block
->bdev
->bd_disk
;
464 disk_part_iter_init(&piter
, disk
, DISK_PITER_INCL_PART0
);
465 while ((part
= disk_part_iter_next(&piter
)))
466 kobject_uevent(&part_to_dev(part
)->kobj
, KOBJ_CHANGE
);
467 disk_part_iter_exit(&piter
);
473 * Device startup state changes.
475 static int dasd_increase_state(struct dasd_device
*device
)
480 if (device
->state
== DASD_STATE_NEW
&&
481 device
->target
>= DASD_STATE_KNOWN
)
482 rc
= dasd_state_new_to_known(device
);
485 device
->state
== DASD_STATE_KNOWN
&&
486 device
->target
>= DASD_STATE_BASIC
)
487 rc
= dasd_state_known_to_basic(device
);
490 device
->state
== DASD_STATE_BASIC
&&
491 device
->target
>= DASD_STATE_READY
)
492 rc
= dasd_state_basic_to_ready(device
);
495 device
->state
== DASD_STATE_UNFMT
&&
496 device
->target
> DASD_STATE_UNFMT
)
500 device
->state
== DASD_STATE_READY
&&
501 device
->target
>= DASD_STATE_ONLINE
)
502 rc
= dasd_state_ready_to_online(device
);
508 * Device shutdown state changes.
510 static int dasd_decrease_state(struct dasd_device
*device
)
515 if (device
->state
== DASD_STATE_ONLINE
&&
516 device
->target
<= DASD_STATE_READY
)
517 rc
= dasd_state_online_to_ready(device
);
520 device
->state
== DASD_STATE_READY
&&
521 device
->target
<= DASD_STATE_BASIC
)
522 rc
= dasd_state_ready_to_basic(device
);
525 device
->state
== DASD_STATE_UNFMT
&&
526 device
->target
<= DASD_STATE_BASIC
)
527 rc
= dasd_state_unfmt_to_basic(device
);
530 device
->state
== DASD_STATE_BASIC
&&
531 device
->target
<= DASD_STATE_KNOWN
)
532 rc
= dasd_state_basic_to_known(device
);
535 device
->state
== DASD_STATE_KNOWN
&&
536 device
->target
<= DASD_STATE_NEW
)
537 rc
= dasd_state_known_to_new(device
);
543 * This is the main startup/shutdown routine.
545 static void dasd_change_state(struct dasd_device
*device
)
549 if (device
->state
== device
->target
)
550 /* Already where we want to go today... */
552 if (device
->state
< device
->target
)
553 rc
= dasd_increase_state(device
);
555 rc
= dasd_decrease_state(device
);
559 device
->target
= device
->state
;
561 /* let user-space know that the device status changed */
562 kobject_uevent(&device
->cdev
->dev
.kobj
, KOBJ_CHANGE
);
564 if (device
->state
== device
->target
)
565 wake_up(&dasd_init_waitq
);
569 * Kick starter for devices that did not complete the startup/shutdown
570 * procedure or were sleeping because of a pending state.
571 * dasd_kick_device will schedule a call do do_kick_device to the kernel
574 static void do_kick_device(struct work_struct
*work
)
576 struct dasd_device
*device
= container_of(work
, struct dasd_device
, kick_work
);
577 mutex_lock(&device
->state_mutex
);
578 dasd_change_state(device
);
579 mutex_unlock(&device
->state_mutex
);
580 dasd_schedule_device_bh(device
);
581 dasd_put_device(device
);
584 void dasd_kick_device(struct dasd_device
*device
)
586 dasd_get_device(device
);
587 /* queue call to dasd_kick_device to the kernel event daemon. */
588 if (!schedule_work(&device
->kick_work
))
589 dasd_put_device(device
);
591 EXPORT_SYMBOL(dasd_kick_device
);
594 * dasd_reload_device will schedule a call do do_reload_device to the kernel
597 static void do_reload_device(struct work_struct
*work
)
599 struct dasd_device
*device
= container_of(work
, struct dasd_device
,
601 device
->discipline
->reload(device
);
602 dasd_put_device(device
);
605 void dasd_reload_device(struct dasd_device
*device
)
607 dasd_get_device(device
);
608 /* queue call to dasd_reload_device to the kernel event daemon. */
609 if (!schedule_work(&device
->reload_device
))
610 dasd_put_device(device
);
612 EXPORT_SYMBOL(dasd_reload_device
);
615 * dasd_restore_device will schedule a call do do_restore_device to the kernel
618 static void do_restore_device(struct work_struct
*work
)
620 struct dasd_device
*device
= container_of(work
, struct dasd_device
,
622 device
->cdev
->drv
->restore(device
->cdev
);
623 dasd_put_device(device
);
626 void dasd_restore_device(struct dasd_device
*device
)
628 dasd_get_device(device
);
629 /* queue call to dasd_restore_device to the kernel event daemon. */
630 if (!schedule_work(&device
->restore_device
))
631 dasd_put_device(device
);
635 * Set the target state for a device and starts the state change.
637 void dasd_set_target_state(struct dasd_device
*device
, int target
)
639 dasd_get_device(device
);
640 mutex_lock(&device
->state_mutex
);
641 /* If we are in probeonly mode stop at DASD_STATE_READY. */
642 if (dasd_probeonly
&& target
> DASD_STATE_READY
)
643 target
= DASD_STATE_READY
;
644 if (device
->target
!= target
) {
645 if (device
->state
== target
)
646 wake_up(&dasd_init_waitq
);
647 device
->target
= target
;
649 if (device
->state
!= device
->target
)
650 dasd_change_state(device
);
651 mutex_unlock(&device
->state_mutex
);
652 dasd_put_device(device
);
654 EXPORT_SYMBOL(dasd_set_target_state
);
657 * Enable devices with device numbers in [from..to].
659 static inline int _wait_for_device(struct dasd_device
*device
)
661 return (device
->state
== device
->target
);
664 void dasd_enable_device(struct dasd_device
*device
)
666 dasd_set_target_state(device
, DASD_STATE_ONLINE
);
667 if (device
->state
<= DASD_STATE_KNOWN
)
668 /* No discipline for device found. */
669 dasd_set_target_state(device
, DASD_STATE_NEW
);
670 /* Now wait for the devices to come up. */
671 wait_event(dasd_init_waitq
, _wait_for_device(device
));
673 dasd_reload_device(device
);
674 if (device
->discipline
->kick_validate
)
675 device
->discipline
->kick_validate(device
);
677 EXPORT_SYMBOL(dasd_enable_device
);
680 * SECTION: device operation (interrupt handler, start i/o, term i/o ...)
683 unsigned int dasd_global_profile_level
= DASD_PROFILE_OFF
;
685 #ifdef CONFIG_DASD_PROFILE
686 struct dasd_profile dasd_global_profile
= {
687 .lock
= __SPIN_LOCK_UNLOCKED(dasd_global_profile
.lock
),
689 static struct dentry
*dasd_debugfs_global_entry
;
692 * Add profiling information for cqr before execution.
694 static void dasd_profile_start(struct dasd_block
*block
,
695 struct dasd_ccw_req
*cqr
,
699 unsigned int counter
;
700 struct dasd_device
*device
;
702 /* count the length of the chanq for statistics */
704 if (dasd_global_profile_level
|| block
->profile
.data
)
705 list_for_each(l
, &block
->ccw_queue
)
709 spin_lock(&dasd_global_profile
.lock
);
710 if (dasd_global_profile
.data
) {
711 dasd_global_profile
.data
->dasd_io_nr_req
[counter
]++;
712 if (rq_data_dir(req
) == READ
)
713 dasd_global_profile
.data
->dasd_read_nr_req
[counter
]++;
715 spin_unlock(&dasd_global_profile
.lock
);
717 spin_lock(&block
->profile
.lock
);
718 if (block
->profile
.data
) {
719 block
->profile
.data
->dasd_io_nr_req
[counter
]++;
720 if (rq_data_dir(req
) == READ
)
721 block
->profile
.data
->dasd_read_nr_req
[counter
]++;
723 spin_unlock(&block
->profile
.lock
);
726 * We count the request for the start device, even though it may run on
727 * some other device due to error recovery. This way we make sure that
728 * we count each request only once.
730 device
= cqr
->startdev
;
731 if (device
->profile
.data
) {
732 counter
= 1; /* request is not yet queued on the start device */
733 list_for_each(l
, &device
->ccw_queue
)
737 spin_lock(&device
->profile
.lock
);
738 if (device
->profile
.data
) {
739 device
->profile
.data
->dasd_io_nr_req
[counter
]++;
740 if (rq_data_dir(req
) == READ
)
741 device
->profile
.data
->dasd_read_nr_req
[counter
]++;
743 spin_unlock(&device
->profile
.lock
);
747 * Add profiling information for cqr after execution.
750 #define dasd_profile_counter(value, index) \
752 for (index = 0; index < 31 && value >> (2+index); index++) \
756 static void dasd_profile_end_add_data(struct dasd_profile_info
*data
,
769 /* in case of an overflow, reset the whole profile */
770 if (data
->dasd_io_reqs
== UINT_MAX
) {
771 memset(data
, 0, sizeof(*data
));
772 getnstimeofday(&data
->starttod
);
774 data
->dasd_io_reqs
++;
775 data
->dasd_io_sects
+= sectors
;
777 data
->dasd_io_alias
++;
781 data
->dasd_io_secs
[sectors_ind
]++;
782 data
->dasd_io_times
[tottime_ind
]++;
783 data
->dasd_io_timps
[tottimeps_ind
]++;
784 data
->dasd_io_time1
[strtime_ind
]++;
785 data
->dasd_io_time2
[irqtime_ind
]++;
786 data
->dasd_io_time2ps
[irqtimeps_ind
]++;
787 data
->dasd_io_time3
[endtime_ind
]++;
790 data
->dasd_read_reqs
++;
791 data
->dasd_read_sects
+= sectors
;
793 data
->dasd_read_alias
++;
795 data
->dasd_read_tpm
++;
796 data
->dasd_read_secs
[sectors_ind
]++;
797 data
->dasd_read_times
[tottime_ind
]++;
798 data
->dasd_read_time1
[strtime_ind
]++;
799 data
->dasd_read_time2
[irqtime_ind
]++;
800 data
->dasd_read_time3
[endtime_ind
]++;
804 static void dasd_profile_end(struct dasd_block
*block
,
805 struct dasd_ccw_req
*cqr
,
808 long strtime
, irqtime
, endtime
, tottime
; /* in microseconds */
809 long tottimeps
, sectors
;
810 struct dasd_device
*device
;
811 int sectors_ind
, tottime_ind
, tottimeps_ind
, strtime_ind
;
812 int irqtime_ind
, irqtimeps_ind
, endtime_ind
;
814 device
= cqr
->startdev
;
815 if (!(dasd_global_profile_level
||
816 block
->profile
.data
||
817 device
->profile
.data
))
820 sectors
= blk_rq_sectors(req
);
821 if (!cqr
->buildclk
|| !cqr
->startclk
||
822 !cqr
->stopclk
|| !cqr
->endclk
||
826 strtime
= ((cqr
->startclk
- cqr
->buildclk
) >> 12);
827 irqtime
= ((cqr
->stopclk
- cqr
->startclk
) >> 12);
828 endtime
= ((cqr
->endclk
- cqr
->stopclk
) >> 12);
829 tottime
= ((cqr
->endclk
- cqr
->buildclk
) >> 12);
830 tottimeps
= tottime
/ sectors
;
832 dasd_profile_counter(sectors
, sectors_ind
);
833 dasd_profile_counter(tottime
, tottime_ind
);
834 dasd_profile_counter(tottimeps
, tottimeps_ind
);
835 dasd_profile_counter(strtime
, strtime_ind
);
836 dasd_profile_counter(irqtime
, irqtime_ind
);
837 dasd_profile_counter(irqtime
/ sectors
, irqtimeps_ind
);
838 dasd_profile_counter(endtime
, endtime_ind
);
840 spin_lock(&dasd_global_profile
.lock
);
841 if (dasd_global_profile
.data
) {
842 dasd_profile_end_add_data(dasd_global_profile
.data
,
843 cqr
->startdev
!= block
->base
,
845 rq_data_dir(req
) == READ
,
846 sectors
, sectors_ind
, tottime_ind
,
847 tottimeps_ind
, strtime_ind
,
848 irqtime_ind
, irqtimeps_ind
,
851 spin_unlock(&dasd_global_profile
.lock
);
853 spin_lock(&block
->profile
.lock
);
854 if (block
->profile
.data
)
855 dasd_profile_end_add_data(block
->profile
.data
,
856 cqr
->startdev
!= block
->base
,
858 rq_data_dir(req
) == READ
,
859 sectors
, sectors_ind
, tottime_ind
,
860 tottimeps_ind
, strtime_ind
,
861 irqtime_ind
, irqtimeps_ind
,
863 spin_unlock(&block
->profile
.lock
);
865 spin_lock(&device
->profile
.lock
);
866 if (device
->profile
.data
)
867 dasd_profile_end_add_data(device
->profile
.data
,
868 cqr
->startdev
!= block
->base
,
870 rq_data_dir(req
) == READ
,
871 sectors
, sectors_ind
, tottime_ind
,
872 tottimeps_ind
, strtime_ind
,
873 irqtime_ind
, irqtimeps_ind
,
875 spin_unlock(&device
->profile
.lock
);
878 void dasd_profile_reset(struct dasd_profile
*profile
)
880 struct dasd_profile_info
*data
;
882 spin_lock_bh(&profile
->lock
);
883 data
= profile
->data
;
885 spin_unlock_bh(&profile
->lock
);
888 memset(data
, 0, sizeof(*data
));
889 getnstimeofday(&data
->starttod
);
890 spin_unlock_bh(&profile
->lock
);
893 int dasd_profile_on(struct dasd_profile
*profile
)
895 struct dasd_profile_info
*data
;
897 data
= kzalloc(sizeof(*data
), GFP_KERNEL
);
900 spin_lock_bh(&profile
->lock
);
902 spin_unlock_bh(&profile
->lock
);
906 getnstimeofday(&data
->starttod
);
907 profile
->data
= data
;
908 spin_unlock_bh(&profile
->lock
);
912 void dasd_profile_off(struct dasd_profile
*profile
)
914 spin_lock_bh(&profile
->lock
);
915 kfree(profile
->data
);
916 profile
->data
= NULL
;
917 spin_unlock_bh(&profile
->lock
);
920 char *dasd_get_user_string(const char __user
*user_buf
, size_t user_len
)
924 buffer
= vmalloc(user_len
+ 1);
926 return ERR_PTR(-ENOMEM
);
927 if (copy_from_user(buffer
, user_buf
, user_len
) != 0) {
929 return ERR_PTR(-EFAULT
);
931 /* got the string, now strip linefeed. */
932 if (buffer
[user_len
- 1] == '\n')
933 buffer
[user_len
- 1] = 0;
935 buffer
[user_len
] = 0;
939 static ssize_t
dasd_stats_write(struct file
*file
,
940 const char __user
*user_buf
,
941 size_t user_len
, loff_t
*pos
)
945 struct seq_file
*m
= (struct seq_file
*)file
->private_data
;
946 struct dasd_profile
*prof
= m
->private;
948 if (user_len
> 65536)
950 buffer
= dasd_get_user_string(user_buf
, user_len
);
952 return PTR_ERR(buffer
);
954 str
= skip_spaces(buffer
);
956 if (strncmp(str
, "reset", 5) == 0) {
957 dasd_profile_reset(prof
);
958 } else if (strncmp(str
, "on", 2) == 0) {
959 rc
= dasd_profile_on(prof
);
963 if (prof
== &dasd_global_profile
) {
964 dasd_profile_reset(prof
);
965 dasd_global_profile_level
= DASD_PROFILE_GLOBAL_ONLY
;
967 } else if (strncmp(str
, "off", 3) == 0) {
968 if (prof
== &dasd_global_profile
)
969 dasd_global_profile_level
= DASD_PROFILE_OFF
;
970 dasd_profile_off(prof
);
978 static void dasd_stats_array(struct seq_file
*m
, unsigned int *array
)
982 for (i
= 0; i
< 32; i
++)
983 seq_printf(m
, "%u ", array
[i
]);
987 static void dasd_stats_seq_print(struct seq_file
*m
,
988 struct dasd_profile_info
*data
)
990 seq_printf(m
, "start_time %ld.%09ld\n",
991 data
->starttod
.tv_sec
, data
->starttod
.tv_nsec
);
992 seq_printf(m
, "total_requests %u\n", data
->dasd_io_reqs
);
993 seq_printf(m
, "total_sectors %u\n", data
->dasd_io_sects
);
994 seq_printf(m
, "total_pav %u\n", data
->dasd_io_alias
);
995 seq_printf(m
, "total_hpf %u\n", data
->dasd_io_tpm
);
996 seq_puts(m
, "histogram_sectors ");
997 dasd_stats_array(m
, data
->dasd_io_secs
);
998 seq_puts(m
, "histogram_io_times ");
999 dasd_stats_array(m
, data
->dasd_io_times
);
1000 seq_puts(m
, "histogram_io_times_weighted ");
1001 dasd_stats_array(m
, data
->dasd_io_timps
);
1002 seq_puts(m
, "histogram_time_build_to_ssch ");
1003 dasd_stats_array(m
, data
->dasd_io_time1
);
1004 seq_puts(m
, "histogram_time_ssch_to_irq ");
1005 dasd_stats_array(m
, data
->dasd_io_time2
);
1006 seq_puts(m
, "histogram_time_ssch_to_irq_weighted ");
1007 dasd_stats_array(m
, data
->dasd_io_time2ps
);
1008 seq_puts(m
, "histogram_time_irq_to_end ");
1009 dasd_stats_array(m
, data
->dasd_io_time3
);
1010 seq_puts(m
, "histogram_ccw_queue_length ");
1011 dasd_stats_array(m
, data
->dasd_io_nr_req
);
1012 seq_printf(m
, "total_read_requests %u\n", data
->dasd_read_reqs
);
1013 seq_printf(m
, "total_read_sectors %u\n", data
->dasd_read_sects
);
1014 seq_printf(m
, "total_read_pav %u\n", data
->dasd_read_alias
);
1015 seq_printf(m
, "total_read_hpf %u\n", data
->dasd_read_tpm
);
1016 seq_puts(m
, "histogram_read_sectors ");
1017 dasd_stats_array(m
, data
->dasd_read_secs
);
1018 seq_puts(m
, "histogram_read_times ");
1019 dasd_stats_array(m
, data
->dasd_read_times
);
1020 seq_puts(m
, "histogram_read_time_build_to_ssch ");
1021 dasd_stats_array(m
, data
->dasd_read_time1
);
1022 seq_puts(m
, "histogram_read_time_ssch_to_irq ");
1023 dasd_stats_array(m
, data
->dasd_read_time2
);
1024 seq_puts(m
, "histogram_read_time_irq_to_end ");
1025 dasd_stats_array(m
, data
->dasd_read_time3
);
1026 seq_puts(m
, "histogram_read_ccw_queue_length ");
1027 dasd_stats_array(m
, data
->dasd_read_nr_req
);
1030 static int dasd_stats_show(struct seq_file
*m
, void *v
)
1032 struct dasd_profile
*profile
;
1033 struct dasd_profile_info
*data
;
1035 profile
= m
->private;
1036 spin_lock_bh(&profile
->lock
);
1037 data
= profile
->data
;
1039 spin_unlock_bh(&profile
->lock
);
1040 seq_puts(m
, "disabled\n");
1043 dasd_stats_seq_print(m
, data
);
1044 spin_unlock_bh(&profile
->lock
);
1048 static int dasd_stats_open(struct inode
*inode
, struct file
*file
)
1050 struct dasd_profile
*profile
= inode
->i_private
;
1051 return single_open(file
, dasd_stats_show
, profile
);
1054 static const struct file_operations dasd_stats_raw_fops
= {
1055 .owner
= THIS_MODULE
,
1056 .open
= dasd_stats_open
,
1058 .llseek
= seq_lseek
,
1059 .release
= single_release
,
1060 .write
= dasd_stats_write
,
1063 static void dasd_profile_init(struct dasd_profile
*profile
,
1064 struct dentry
*base_dentry
)
1071 profile
->dentry
= NULL
;
1072 profile
->data
= NULL
;
1073 mode
= (S_IRUSR
| S_IWUSR
| S_IFREG
);
1074 pde
= debugfs_create_file("statistics", mode
, base_dentry
,
1075 profile
, &dasd_stats_raw_fops
);
1076 if (pde
&& !IS_ERR(pde
))
1077 profile
->dentry
= pde
;
1081 static void dasd_profile_exit(struct dasd_profile
*profile
)
1083 dasd_profile_off(profile
);
1084 debugfs_remove(profile
->dentry
);
1085 profile
->dentry
= NULL
;
1088 static void dasd_statistics_removeroot(void)
1090 dasd_global_profile_level
= DASD_PROFILE_OFF
;
1091 dasd_profile_exit(&dasd_global_profile
);
1092 debugfs_remove(dasd_debugfs_global_entry
);
1093 debugfs_remove(dasd_debugfs_root_entry
);
1096 static void dasd_statistics_createroot(void)
1100 dasd_debugfs_root_entry
= NULL
;
1101 pde
= debugfs_create_dir("dasd", NULL
);
1102 if (!pde
|| IS_ERR(pde
))
1104 dasd_debugfs_root_entry
= pde
;
1105 pde
= debugfs_create_dir("global", dasd_debugfs_root_entry
);
1106 if (!pde
|| IS_ERR(pde
))
1108 dasd_debugfs_global_entry
= pde
;
1109 dasd_profile_init(&dasd_global_profile
, dasd_debugfs_global_entry
);
1113 DBF_EVENT(DBF_ERR
, "%s",
1114 "Creation of the dasd debugfs interface failed");
1115 dasd_statistics_removeroot();
1120 #define dasd_profile_start(block, cqr, req) do {} while (0)
1121 #define dasd_profile_end(block, cqr, req) do {} while (0)
1123 static void dasd_statistics_createroot(void)
1128 static void dasd_statistics_removeroot(void)
1133 int dasd_stats_generic_show(struct seq_file
*m
, void *v
)
1135 seq_puts(m
, "Statistics are not activated in this kernel\n");
1139 static void dasd_profile_init(struct dasd_profile
*profile
,
1140 struct dentry
*base_dentry
)
1145 static void dasd_profile_exit(struct dasd_profile
*profile
)
1150 int dasd_profile_on(struct dasd_profile
*profile
)
1155 #endif /* CONFIG_DASD_PROFILE */
1157 static int dasd_hosts_show(struct seq_file
*m
, void *v
)
1159 struct dasd_device
*device
;
1160 int rc
= -EOPNOTSUPP
;
1162 device
= m
->private;
1163 dasd_get_device(device
);
1165 if (device
->discipline
->hosts_print
)
1166 rc
= device
->discipline
->hosts_print(device
, m
);
1168 dasd_put_device(device
);
1172 static int dasd_hosts_open(struct inode
*inode
, struct file
*file
)
1174 struct dasd_device
*device
= inode
->i_private
;
1176 return single_open(file
, dasd_hosts_show
, device
);
1179 static const struct file_operations dasd_hosts_fops
= {
1180 .owner
= THIS_MODULE
,
1181 .open
= dasd_hosts_open
,
1183 .llseek
= seq_lseek
,
1184 .release
= single_release
,
1187 static void dasd_hosts_exit(struct dasd_device
*device
)
1189 debugfs_remove(device
->hosts_dentry
);
1190 device
->hosts_dentry
= NULL
;
1193 static void dasd_hosts_init(struct dentry
*base_dentry
,
1194 struct dasd_device
*device
)
1202 mode
= S_IRUSR
| S_IFREG
;
1203 pde
= debugfs_create_file("host_access_list", mode
, base_dentry
,
1204 device
, &dasd_hosts_fops
);
1205 if (pde
&& !IS_ERR(pde
))
1206 device
->hosts_dentry
= pde
;
1210 * Allocate memory for a channel program with 'cplength' channel
1211 * command words and 'datasize' additional space. There are two
1212 * variantes: 1) dasd_kmalloc_request uses kmalloc to get the needed
1213 * memory and 2) dasd_smalloc_request uses the static ccw memory
1214 * that gets allocated for each device.
1216 struct dasd_ccw_req
*dasd_kmalloc_request(int magic
, int cplength
,
1218 struct dasd_device
*device
)
1220 struct dasd_ccw_req
*cqr
;
1223 BUG_ON(datasize
> PAGE_SIZE
||
1224 (cplength
*sizeof(struct ccw1
)) > PAGE_SIZE
);
1226 cqr
= kzalloc(sizeof(struct dasd_ccw_req
), GFP_ATOMIC
);
1228 return ERR_PTR(-ENOMEM
);
1231 cqr
->cpaddr
= kcalloc(cplength
, sizeof(struct ccw1
),
1232 GFP_ATOMIC
| GFP_DMA
);
1233 if (cqr
->cpaddr
== NULL
) {
1235 return ERR_PTR(-ENOMEM
);
1240 cqr
->data
= kzalloc(datasize
, GFP_ATOMIC
| GFP_DMA
);
1241 if (cqr
->data
== NULL
) {
1244 return ERR_PTR(-ENOMEM
);
1248 set_bit(DASD_CQR_FLAGS_USE_ERP
, &cqr
->flags
);
1249 dasd_get_device(device
);
1252 EXPORT_SYMBOL(dasd_kmalloc_request
);
1254 struct dasd_ccw_req
*dasd_smalloc_request(int magic
, int cplength
,
1256 struct dasd_device
*device
)
1258 unsigned long flags
;
1259 struct dasd_ccw_req
*cqr
;
1263 size
= (sizeof(struct dasd_ccw_req
) + 7L) & -8L;
1265 size
+= cplength
* sizeof(struct ccw1
);
1268 spin_lock_irqsave(&device
->mem_lock
, flags
);
1269 cqr
= (struct dasd_ccw_req
*)
1270 dasd_alloc_chunk(&device
->ccw_chunks
, size
);
1271 spin_unlock_irqrestore(&device
->mem_lock
, flags
);
1273 return ERR_PTR(-ENOMEM
);
1274 memset(cqr
, 0, sizeof(struct dasd_ccw_req
));
1275 data
= (char *) cqr
+ ((sizeof(struct dasd_ccw_req
) + 7L) & -8L);
1278 cqr
->cpaddr
= (struct ccw1
*) data
;
1279 data
+= cplength
*sizeof(struct ccw1
);
1280 memset(cqr
->cpaddr
, 0, cplength
*sizeof(struct ccw1
));
1285 memset(cqr
->data
, 0, datasize
);
1288 set_bit(DASD_CQR_FLAGS_USE_ERP
, &cqr
->flags
);
1289 dasd_get_device(device
);
1292 EXPORT_SYMBOL(dasd_smalloc_request
);
1295 * Free memory of a channel program. This function needs to free all the
1296 * idal lists that might have been created by dasd_set_cda and the
1297 * struct dasd_ccw_req itself.
1299 void dasd_kfree_request(struct dasd_ccw_req
*cqr
, struct dasd_device
*device
)
1303 /* Clear any idals used for the request. */
1306 clear_normalized_cda(ccw
);
1307 } while (ccw
++->flags
& (CCW_FLAG_CC
| CCW_FLAG_DC
));
1311 dasd_put_device(device
);
1313 EXPORT_SYMBOL(dasd_kfree_request
);
1315 void dasd_sfree_request(struct dasd_ccw_req
*cqr
, struct dasd_device
*device
)
1317 unsigned long flags
;
1319 spin_lock_irqsave(&device
->mem_lock
, flags
);
1320 dasd_free_chunk(&device
->ccw_chunks
, cqr
);
1321 spin_unlock_irqrestore(&device
->mem_lock
, flags
);
1322 dasd_put_device(device
);
1324 EXPORT_SYMBOL(dasd_sfree_request
);
1327 * Check discipline magic in cqr.
1329 static inline int dasd_check_cqr(struct dasd_ccw_req
*cqr
)
1331 struct dasd_device
*device
;
1335 device
= cqr
->startdev
;
1336 if (strncmp((char *) &cqr
->magic
, device
->discipline
->ebcname
, 4)) {
1337 DBF_DEV_EVENT(DBF_WARNING
, device
,
1338 " dasd_ccw_req 0x%08x magic doesn't match"
1339 " discipline 0x%08x",
1341 *(unsigned int *) device
->discipline
->name
);
1348 * Terminate the current i/o and set the request to clear_pending.
1349 * Timer keeps device runnig.
1350 * ccw_device_clear can fail if the i/o subsystem
1353 int dasd_term_IO(struct dasd_ccw_req
*cqr
)
1355 struct dasd_device
*device
;
1357 char errorstring
[ERRORLENGTH
];
1360 rc
= dasd_check_cqr(cqr
);
1364 device
= (struct dasd_device
*) cqr
->startdev
;
1365 while ((retries
< 5) && (cqr
->status
== DASD_CQR_IN_IO
)) {
1366 rc
= ccw_device_clear(device
->cdev
, (long) cqr
);
1368 case 0: /* termination successful */
1369 cqr
->status
= DASD_CQR_CLEAR_PENDING
;
1370 cqr
->stopclk
= get_tod_clock();
1372 DBF_DEV_EVENT(DBF_DEBUG
, device
,
1373 "terminate cqr %p successful",
1377 DBF_DEV_EVENT(DBF_ERR
, device
, "%s",
1378 "device gone, retry");
1381 DBF_DEV_EVENT(DBF_ERR
, device
, "%s",
1382 "I/O error, retry");
1386 * device not valid so no I/O could be running
1387 * handle CQR as termination successful
1389 cqr
->status
= DASD_CQR_CLEARED
;
1390 cqr
->stopclk
= get_tod_clock();
1392 /* no retries for invalid devices */
1394 DBF_DEV_EVENT(DBF_ERR
, device
, "%s",
1395 "EINVAL, handle as terminated");
1396 /* fake rc to success */
1400 DBF_DEV_EVENT(DBF_ERR
, device
, "%s",
1401 "device busy, retry later");
1404 /* internal error 10 - unknown rc*/
1405 snprintf(errorstring
, ERRORLENGTH
, "10 %d", rc
);
1406 dev_err(&device
->cdev
->dev
, "An error occurred in the "
1407 "DASD device driver, reason=%s\n", errorstring
);
1413 dasd_schedule_device_bh(device
);
1416 EXPORT_SYMBOL(dasd_term_IO
);
1419 * Start the i/o. This start_IO can fail if the channel is really busy.
1420 * In that case set up a timer to start the request later.
1422 int dasd_start_IO(struct dasd_ccw_req
*cqr
)
1424 struct dasd_device
*device
;
1426 char errorstring
[ERRORLENGTH
];
1429 rc
= dasd_check_cqr(cqr
);
1434 device
= (struct dasd_device
*) cqr
->startdev
;
1436 test_bit(DASD_FLAG_LOCK_STOLEN
, &cqr
->block
->base
->flags
)) ||
1437 test_bit(DASD_FLAG_LOCK_STOLEN
, &device
->flags
)) &&
1438 !test_bit(DASD_CQR_ALLOW_SLOCK
, &cqr
->flags
)) {
1439 DBF_DEV_EVENT(DBF_DEBUG
, device
, "start_IO: return request %p "
1440 "because of stolen lock", cqr
);
1441 cqr
->status
= DASD_CQR_ERROR
;
1442 cqr
->intrc
= -EPERM
;
1445 if (cqr
->retries
< 0) {
1446 /* internal error 14 - start_IO run out of retries */
1447 sprintf(errorstring
, "14 %p", cqr
);
1448 dev_err(&device
->cdev
->dev
, "An error occurred in the DASD "
1449 "device driver, reason=%s\n", errorstring
);
1450 cqr
->status
= DASD_CQR_ERROR
;
1453 cqr
->startclk
= get_tod_clock();
1454 cqr
->starttime
= jiffies
;
1456 if (!test_bit(DASD_CQR_VERIFY_PATH
, &cqr
->flags
)) {
1457 cqr
->lpm
&= device
->path_data
.opm
;
1459 cqr
->lpm
= device
->path_data
.opm
;
1461 if (cqr
->cpmode
== 1) {
1462 rc
= ccw_device_tm_start(device
->cdev
, cqr
->cpaddr
,
1463 (long) cqr
, cqr
->lpm
);
1465 rc
= ccw_device_start(device
->cdev
, cqr
->cpaddr
,
1466 (long) cqr
, cqr
->lpm
, 0);
1470 cqr
->status
= DASD_CQR_IN_IO
;
1473 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s",
1474 "start_IO: device busy, retry later");
1477 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s",
1478 "start_IO: request timeout, retry later");
1481 /* -EACCES indicates that the request used only a subset of the
1482 * available paths and all these paths are gone. If the lpm of
1483 * this request was only a subset of the opm (e.g. the ppm) then
1484 * we just do a retry with all available paths.
1485 * If we already use the full opm, something is amiss, and we
1486 * need a full path verification.
1488 if (test_bit(DASD_CQR_VERIFY_PATH
, &cqr
->flags
)) {
1489 DBF_DEV_EVENT(DBF_WARNING
, device
,
1490 "start_IO: selected paths gone (%x)",
1492 } else if (cqr
->lpm
!= device
->path_data
.opm
) {
1493 cqr
->lpm
= device
->path_data
.opm
;
1494 DBF_DEV_EVENT(DBF_DEBUG
, device
, "%s",
1495 "start_IO: selected paths gone,"
1496 " retry on all paths");
1498 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s",
1499 "start_IO: all paths in opm gone,"
1500 " do path verification");
1501 dasd_generic_last_path_gone(device
);
1502 device
->path_data
.opm
= 0;
1503 device
->path_data
.ppm
= 0;
1504 device
->path_data
.npm
= 0;
1505 device
->path_data
.tbvpm
=
1506 ccw_device_get_path_mask(device
->cdev
);
1510 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s",
1511 "start_IO: -ENODEV device gone, retry");
1514 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s",
1515 "start_IO: -EIO device gone, retry");
1518 /* most likely caused in power management context */
1519 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s",
1520 "start_IO: -EINVAL device currently "
1524 /* internal error 11 - unknown rc */
1525 snprintf(errorstring
, ERRORLENGTH
, "11 %d", rc
);
1526 dev_err(&device
->cdev
->dev
,
1527 "An error occurred in the DASD device driver, "
1528 "reason=%s\n", errorstring
);
1535 EXPORT_SYMBOL(dasd_start_IO
);
1538 * Timeout function for dasd devices. This is used for different purposes
1539 * 1) missing interrupt handler for normal operation
1540 * 2) delayed start of request where start_IO failed with -EBUSY
1541 * 3) timeout for missing state change interrupts
1542 * The head of the ccw queue will have status DASD_CQR_IN_IO for 1),
1543 * DASD_CQR_QUEUED for 2) and 3).
1545 static void dasd_device_timeout(unsigned long ptr
)
1547 unsigned long flags
;
1548 struct dasd_device
*device
;
1550 device
= (struct dasd_device
*) ptr
;
1551 spin_lock_irqsave(get_ccwdev_lock(device
->cdev
), flags
);
1552 /* re-activate request queue */
1553 dasd_device_remove_stop_bits(device
, DASD_STOPPED_PENDING
);
1554 spin_unlock_irqrestore(get_ccwdev_lock(device
->cdev
), flags
);
1555 dasd_schedule_device_bh(device
);
1559 * Setup timeout for a device in jiffies.
1561 void dasd_device_set_timer(struct dasd_device
*device
, int expires
)
1564 del_timer(&device
->timer
);
1566 mod_timer(&device
->timer
, jiffies
+ expires
);
1568 EXPORT_SYMBOL(dasd_device_set_timer
);
1571 * Clear timeout for a device.
1573 void dasd_device_clear_timer(struct dasd_device
*device
)
1575 del_timer(&device
->timer
);
1577 EXPORT_SYMBOL(dasd_device_clear_timer
);
1579 static void dasd_handle_killed_request(struct ccw_device
*cdev
,
1580 unsigned long intparm
)
1582 struct dasd_ccw_req
*cqr
;
1583 struct dasd_device
*device
;
1587 cqr
= (struct dasd_ccw_req
*) intparm
;
1588 if (cqr
->status
!= DASD_CQR_IN_IO
) {
1589 DBF_EVENT_DEVID(DBF_DEBUG
, cdev
,
1590 "invalid status in handle_killed_request: "
1591 "%02x", cqr
->status
);
1595 device
= dasd_device_from_cdev_locked(cdev
);
1596 if (IS_ERR(device
)) {
1597 DBF_EVENT_DEVID(DBF_DEBUG
, cdev
, "%s",
1598 "unable to get device from cdev");
1602 if (!cqr
->startdev
||
1603 device
!= cqr
->startdev
||
1604 strncmp(cqr
->startdev
->discipline
->ebcname
,
1605 (char *) &cqr
->magic
, 4)) {
1606 DBF_EVENT_DEVID(DBF_DEBUG
, cdev
, "%s",
1607 "invalid device in request");
1608 dasd_put_device(device
);
1612 /* Schedule request to be retried. */
1613 cqr
->status
= DASD_CQR_QUEUED
;
1615 dasd_device_clear_timer(device
);
1616 dasd_schedule_device_bh(device
);
1617 dasd_put_device(device
);
1620 void dasd_generic_handle_state_change(struct dasd_device
*device
)
1622 /* First of all start sense subsystem status request. */
1623 dasd_eer_snss(device
);
1625 dasd_device_remove_stop_bits(device
, DASD_STOPPED_PENDING
);
1626 dasd_schedule_device_bh(device
);
1628 dasd_schedule_block_bh(device
->block
);
1630 EXPORT_SYMBOL_GPL(dasd_generic_handle_state_change
);
1633 * Interrupt handler for "normal" ssch-io based dasd devices.
1635 void dasd_int_handler(struct ccw_device
*cdev
, unsigned long intparm
,
1638 struct dasd_ccw_req
*cqr
, *next
;
1639 struct dasd_device
*device
;
1640 unsigned long long now
;
1641 int nrf_suppressed
= 0;
1642 int fp_suppressed
= 0;
1647 switch (PTR_ERR(irb
)) {
1651 DBF_EVENT_DEVID(DBF_WARNING
, cdev
, "%s: "
1652 "request timed out\n", __func__
);
1655 DBF_EVENT_DEVID(DBF_WARNING
, cdev
, "%s: "
1656 "unknown error %ld\n", __func__
,
1659 dasd_handle_killed_request(cdev
, intparm
);
1663 now
= get_tod_clock();
1664 cqr
= (struct dasd_ccw_req
*) intparm
;
1665 /* check for conditions that should be handled immediately */
1667 !(scsw_dstat(&irb
->scsw
) == (DEV_STAT_CHN_END
| DEV_STAT_DEV_END
) &&
1668 scsw_cstat(&irb
->scsw
) == 0)) {
1670 memcpy(&cqr
->irb
, irb
, sizeof(*irb
));
1671 device
= dasd_device_from_cdev_locked(cdev
);
1674 /* ignore unsolicited interrupts for DIAG discipline */
1675 if (device
->discipline
== dasd_diag_discipline_pointer
) {
1676 dasd_put_device(device
);
1681 * In some cases 'File Protected' or 'No Record Found' errors
1682 * might be expected and debug log messages for the
1683 * corresponding interrupts shouldn't be written then.
1684 * Check if either of the according suppress bits is set.
1686 sense
= dasd_get_sense(irb
);
1688 fp_suppressed
= (sense
[1] & SNS1_FILE_PROTECTED
) &&
1689 test_bit(DASD_CQR_SUPPRESS_FP
, &cqr
->flags
);
1690 nrf_suppressed
= (sense
[1] & SNS1_NO_REC_FOUND
) &&
1691 test_bit(DASD_CQR_SUPPRESS_NRF
, &cqr
->flags
);
1693 if (!(fp_suppressed
|| nrf_suppressed
))
1694 device
->discipline
->dump_sense_dbf(device
, irb
, "int");
1696 if (device
->features
& DASD_FEATURE_ERPLOG
)
1697 device
->discipline
->dump_sense(device
, cqr
, irb
);
1698 device
->discipline
->check_for_device_change(device
, cqr
, irb
);
1699 dasd_put_device(device
);
1702 /* check for for attention message */
1703 if (scsw_dstat(&irb
->scsw
) & DEV_STAT_ATTENTION
) {
1704 device
= dasd_device_from_cdev_locked(cdev
);
1705 device
->discipline
->check_attention(device
, irb
->esw
.esw1
.lpum
);
1706 dasd_put_device(device
);
1712 device
= (struct dasd_device
*) cqr
->startdev
;
1714 strncmp(device
->discipline
->ebcname
, (char *) &cqr
->magic
, 4)) {
1715 DBF_EVENT_DEVID(DBF_DEBUG
, cdev
, "%s",
1716 "invalid device in request");
1720 /* Check for clear pending */
1721 if (cqr
->status
== DASD_CQR_CLEAR_PENDING
&&
1722 scsw_fctl(&irb
->scsw
) & SCSW_FCTL_CLEAR_FUNC
) {
1723 cqr
->status
= DASD_CQR_CLEARED
;
1724 dasd_device_clear_timer(device
);
1725 wake_up(&dasd_flush_wq
);
1726 dasd_schedule_device_bh(device
);
1730 /* check status - the request might have been killed by dyn detach */
1731 if (cqr
->status
!= DASD_CQR_IN_IO
) {
1732 DBF_DEV_EVENT(DBF_DEBUG
, device
, "invalid status: bus_id %s, "
1733 "status %02x", dev_name(&cdev
->dev
), cqr
->status
);
1739 if (scsw_dstat(&irb
->scsw
) == (DEV_STAT_CHN_END
| DEV_STAT_DEV_END
) &&
1740 scsw_cstat(&irb
->scsw
) == 0) {
1741 /* request was completed successfully */
1742 cqr
->status
= DASD_CQR_SUCCESS
;
1744 /* Start first request on queue if possible -> fast_io. */
1745 if (cqr
->devlist
.next
!= &device
->ccw_queue
) {
1746 next
= list_entry(cqr
->devlist
.next
,
1747 struct dasd_ccw_req
, devlist
);
1749 } else { /* error */
1751 * If we don't want complex ERP for this request, then just
1752 * reset this and retry it in the fastpath
1754 if (!test_bit(DASD_CQR_FLAGS_USE_ERP
, &cqr
->flags
) &&
1756 if (cqr
->lpm
== device
->path_data
.opm
)
1757 DBF_DEV_EVENT(DBF_DEBUG
, device
,
1758 "default ERP in fastpath "
1759 "(%i retries left)",
1761 if (!test_bit(DASD_CQR_VERIFY_PATH
, &cqr
->flags
))
1762 cqr
->lpm
= device
->path_data
.opm
;
1763 cqr
->status
= DASD_CQR_QUEUED
;
1766 cqr
->status
= DASD_CQR_ERROR
;
1768 if (next
&& (next
->status
== DASD_CQR_QUEUED
) &&
1769 (!device
->stopped
)) {
1770 if (device
->discipline
->start_IO(next
) == 0)
1771 expires
= next
->expires
;
1774 dasd_device_set_timer(device
, expires
);
1776 dasd_device_clear_timer(device
);
1777 dasd_schedule_device_bh(device
);
1779 EXPORT_SYMBOL(dasd_int_handler
);
1781 enum uc_todo
dasd_generic_uc_handler(struct ccw_device
*cdev
, struct irb
*irb
)
1783 struct dasd_device
*device
;
1785 device
= dasd_device_from_cdev_locked(cdev
);
1789 if (test_bit(DASD_FLAG_OFFLINE
, &device
->flags
) ||
1790 device
->state
!= device
->target
||
1791 !device
->discipline
->check_for_device_change
){
1792 dasd_put_device(device
);
1795 if (device
->discipline
->dump_sense_dbf
)
1796 device
->discipline
->dump_sense_dbf(device
, irb
, "uc");
1797 device
->discipline
->check_for_device_change(device
, NULL
, irb
);
1798 dasd_put_device(device
);
1800 return UC_TODO_RETRY
;
1802 EXPORT_SYMBOL_GPL(dasd_generic_uc_handler
);
1805 * If we have an error on a dasd_block layer request then we cancel
1806 * and return all further requests from the same dasd_block as well.
1808 static void __dasd_device_recovery(struct dasd_device
*device
,
1809 struct dasd_ccw_req
*ref_cqr
)
1811 struct list_head
*l
, *n
;
1812 struct dasd_ccw_req
*cqr
;
1815 * only requeue request that came from the dasd_block layer
1817 if (!ref_cqr
->block
)
1820 list_for_each_safe(l
, n
, &device
->ccw_queue
) {
1821 cqr
= list_entry(l
, struct dasd_ccw_req
, devlist
);
1822 if (cqr
->status
== DASD_CQR_QUEUED
&&
1823 ref_cqr
->block
== cqr
->block
) {
1824 cqr
->status
= DASD_CQR_CLEARED
;
1830 * Remove those ccw requests from the queue that need to be returned
1831 * to the upper layer.
1833 static void __dasd_device_process_ccw_queue(struct dasd_device
*device
,
1834 struct list_head
*final_queue
)
1836 struct list_head
*l
, *n
;
1837 struct dasd_ccw_req
*cqr
;
1839 /* Process request with final status. */
1840 list_for_each_safe(l
, n
, &device
->ccw_queue
) {
1841 cqr
= list_entry(l
, struct dasd_ccw_req
, devlist
);
1843 /* Skip any non-final request. */
1844 if (cqr
->status
== DASD_CQR_QUEUED
||
1845 cqr
->status
== DASD_CQR_IN_IO
||
1846 cqr
->status
== DASD_CQR_CLEAR_PENDING
)
1848 if (cqr
->status
== DASD_CQR_ERROR
) {
1849 __dasd_device_recovery(device
, cqr
);
1851 /* Rechain finished requests to final queue */
1852 list_move_tail(&cqr
->devlist
, final_queue
);
1857 * the cqrs from the final queue are returned to the upper layer
1858 * by setting a dasd_block state and calling the callback function
1860 static void __dasd_device_process_final_queue(struct dasd_device
*device
,
1861 struct list_head
*final_queue
)
1863 struct list_head
*l
, *n
;
1864 struct dasd_ccw_req
*cqr
;
1865 struct dasd_block
*block
;
1866 void (*callback
)(struct dasd_ccw_req
*, void *data
);
1867 void *callback_data
;
1868 char errorstring
[ERRORLENGTH
];
1870 list_for_each_safe(l
, n
, final_queue
) {
1871 cqr
= list_entry(l
, struct dasd_ccw_req
, devlist
);
1872 list_del_init(&cqr
->devlist
);
1874 callback
= cqr
->callback
;
1875 callback_data
= cqr
->callback_data
;
1877 spin_lock_bh(&block
->queue_lock
);
1878 switch (cqr
->status
) {
1879 case DASD_CQR_SUCCESS
:
1880 cqr
->status
= DASD_CQR_DONE
;
1882 case DASD_CQR_ERROR
:
1883 cqr
->status
= DASD_CQR_NEED_ERP
;
1885 case DASD_CQR_CLEARED
:
1886 cqr
->status
= DASD_CQR_TERMINATED
;
1889 /* internal error 12 - wrong cqr status*/
1890 snprintf(errorstring
, ERRORLENGTH
, "12 %p %x02", cqr
, cqr
->status
);
1891 dev_err(&device
->cdev
->dev
,
1892 "An error occurred in the DASD device driver, "
1893 "reason=%s\n", errorstring
);
1896 if (cqr
->callback
!= NULL
)
1897 (callback
)(cqr
, callback_data
);
1899 spin_unlock_bh(&block
->queue_lock
);
1904 * Take a look at the first request on the ccw queue and check
1905 * if it reached its expire time. If so, terminate the IO.
1907 static void __dasd_device_check_expire(struct dasd_device
*device
)
1909 struct dasd_ccw_req
*cqr
;
1911 if (list_empty(&device
->ccw_queue
))
1913 cqr
= list_entry(device
->ccw_queue
.next
, struct dasd_ccw_req
, devlist
);
1914 if ((cqr
->status
== DASD_CQR_IN_IO
&& cqr
->expires
!= 0) &&
1915 (time_after_eq(jiffies
, cqr
->expires
+ cqr
->starttime
))) {
1916 if (test_bit(DASD_FLAG_SAFE_OFFLINE_RUNNING
, &device
->flags
)) {
1918 * IO in safe offline processing should not
1919 * run out of retries
1923 if (device
->discipline
->term_IO(cqr
) != 0) {
1924 /* Hmpf, try again in 5 sec */
1925 dev_err(&device
->cdev
->dev
,
1926 "cqr %p timed out (%lus) but cannot be "
1927 "ended, retrying in 5 s\n",
1928 cqr
, (cqr
->expires
/HZ
));
1929 cqr
->expires
+= 5*HZ
;
1930 dasd_device_set_timer(device
, 5*HZ
);
1932 dev_err(&device
->cdev
->dev
,
1933 "cqr %p timed out (%lus), %i retries "
1934 "remaining\n", cqr
, (cqr
->expires
/HZ
),
1941 * return 1 when device is not eligible for IO
1943 static int __dasd_device_is_unusable(struct dasd_device
*device
,
1944 struct dasd_ccw_req
*cqr
)
1946 int mask
= ~(DASD_STOPPED_DC_WAIT
| DASD_UNRESUMED_PM
);
1948 if (test_bit(DASD_FLAG_OFFLINE
, &device
->flags
)) {
1949 /* dasd is being set offline. */
1952 if (device
->stopped
) {
1953 if (device
->stopped
& mask
) {
1954 /* stopped and CQR will not change that. */
1957 if (!test_bit(DASD_CQR_VERIFY_PATH
, &cqr
->flags
)) {
1958 /* CQR is not able to change device to
1962 /* CQR required to get device operational. */
1968 * Take a look at the first request on the ccw queue and check
1969 * if it needs to be started.
1971 static void __dasd_device_start_head(struct dasd_device
*device
)
1973 struct dasd_ccw_req
*cqr
;
1976 if (list_empty(&device
->ccw_queue
))
1978 cqr
= list_entry(device
->ccw_queue
.next
, struct dasd_ccw_req
, devlist
);
1979 if (cqr
->status
!= DASD_CQR_QUEUED
)
1981 /* if device is not usable return request to upper layer */
1982 if (__dasd_device_is_unusable(device
, cqr
)) {
1983 cqr
->intrc
= -EAGAIN
;
1984 cqr
->status
= DASD_CQR_CLEARED
;
1985 dasd_schedule_device_bh(device
);
1989 rc
= device
->discipline
->start_IO(cqr
);
1991 dasd_device_set_timer(device
, cqr
->expires
);
1992 else if (rc
== -EACCES
) {
1993 dasd_schedule_device_bh(device
);
1995 /* Hmpf, try again in 1/2 sec */
1996 dasd_device_set_timer(device
, 50);
1999 static void __dasd_device_check_path_events(struct dasd_device
*device
)
2003 if (device
->path_data
.tbvpm
) {
2004 if (device
->stopped
& ~(DASD_STOPPED_DC_WAIT
|
2007 rc
= device
->discipline
->verify_path(
2008 device
, device
->path_data
.tbvpm
);
2010 dasd_device_set_timer(device
, 50);
2012 device
->path_data
.tbvpm
= 0;
2017 * Go through all request on the dasd_device request queue,
2018 * terminate them on the cdev if necessary, and return them to the
2019 * submitting layer via callback.
2021 * Make sure that all 'submitting layers' still exist when
2022 * this function is called!. In other words, when 'device' is a base
2023 * device then all block layer requests must have been removed before
2024 * via dasd_flush_block_queue.
2026 int dasd_flush_device_queue(struct dasd_device
*device
)
2028 struct dasd_ccw_req
*cqr
, *n
;
2030 struct list_head flush_queue
;
2032 INIT_LIST_HEAD(&flush_queue
);
2033 spin_lock_irq(get_ccwdev_lock(device
->cdev
));
2035 list_for_each_entry_safe(cqr
, n
, &device
->ccw_queue
, devlist
) {
2036 /* Check status and move request to flush_queue */
2037 switch (cqr
->status
) {
2038 case DASD_CQR_IN_IO
:
2039 rc
= device
->discipline
->term_IO(cqr
);
2041 /* unable to terminate requeust */
2042 dev_err(&device
->cdev
->dev
,
2043 "Flushing the DASD request queue "
2044 "failed for request %p\n", cqr
);
2045 /* stop flush processing */
2049 case DASD_CQR_QUEUED
:
2050 cqr
->stopclk
= get_tod_clock();
2051 cqr
->status
= DASD_CQR_CLEARED
;
2053 default: /* no need to modify the others */
2056 list_move_tail(&cqr
->devlist
, &flush_queue
);
2059 spin_unlock_irq(get_ccwdev_lock(device
->cdev
));
2061 * After this point all requests must be in state CLEAR_PENDING,
2062 * CLEARED, SUCCESS or ERROR. Now wait for CLEAR_PENDING to become
2063 * one of the others.
2065 list_for_each_entry_safe(cqr
, n
, &flush_queue
, devlist
)
2066 wait_event(dasd_flush_wq
,
2067 (cqr
->status
!= DASD_CQR_CLEAR_PENDING
));
2069 * Now set each request back to TERMINATED, DONE or NEED_ERP
2070 * and call the callback function of flushed requests
2072 __dasd_device_process_final_queue(device
, &flush_queue
);
2075 EXPORT_SYMBOL_GPL(dasd_flush_device_queue
);
2078 * Acquire the device lock and process queues for the device.
2080 static void dasd_device_tasklet(struct dasd_device
*device
)
2082 struct list_head final_queue
;
2084 atomic_set (&device
->tasklet_scheduled
, 0);
2085 INIT_LIST_HEAD(&final_queue
);
2086 spin_lock_irq(get_ccwdev_lock(device
->cdev
));
2087 /* Check expire time of first request on the ccw queue. */
2088 __dasd_device_check_expire(device
);
2089 /* find final requests on ccw queue */
2090 __dasd_device_process_ccw_queue(device
, &final_queue
);
2091 __dasd_device_check_path_events(device
);
2092 spin_unlock_irq(get_ccwdev_lock(device
->cdev
));
2093 /* Now call the callback function of requests with final status */
2094 __dasd_device_process_final_queue(device
, &final_queue
);
2095 spin_lock_irq(get_ccwdev_lock(device
->cdev
));
2096 /* Now check if the head of the ccw queue needs to be started. */
2097 __dasd_device_start_head(device
);
2098 spin_unlock_irq(get_ccwdev_lock(device
->cdev
));
2099 if (waitqueue_active(&shutdown_waitq
))
2100 wake_up(&shutdown_waitq
);
2101 dasd_put_device(device
);
2105 * Schedules a call to dasd_tasklet over the device tasklet.
2107 void dasd_schedule_device_bh(struct dasd_device
*device
)
2109 /* Protect against rescheduling. */
2110 if (atomic_cmpxchg (&device
->tasklet_scheduled
, 0, 1) != 0)
2112 dasd_get_device(device
);
2113 tasklet_hi_schedule(&device
->tasklet
);
2115 EXPORT_SYMBOL(dasd_schedule_device_bh
);
2117 void dasd_device_set_stop_bits(struct dasd_device
*device
, int bits
)
2119 device
->stopped
|= bits
;
2121 EXPORT_SYMBOL_GPL(dasd_device_set_stop_bits
);
2123 void dasd_device_remove_stop_bits(struct dasd_device
*device
, int bits
)
2125 device
->stopped
&= ~bits
;
2126 if (!device
->stopped
)
2127 wake_up(&generic_waitq
);
2129 EXPORT_SYMBOL_GPL(dasd_device_remove_stop_bits
);
2132 * Queue a request to the head of the device ccw_queue.
2133 * Start the I/O if possible.
2135 void dasd_add_request_head(struct dasd_ccw_req
*cqr
)
2137 struct dasd_device
*device
;
2138 unsigned long flags
;
2140 device
= cqr
->startdev
;
2141 spin_lock_irqsave(get_ccwdev_lock(device
->cdev
), flags
);
2142 cqr
->status
= DASD_CQR_QUEUED
;
2143 list_add(&cqr
->devlist
, &device
->ccw_queue
);
2144 /* let the bh start the request to keep them in order */
2145 dasd_schedule_device_bh(device
);
2146 spin_unlock_irqrestore(get_ccwdev_lock(device
->cdev
), flags
);
2148 EXPORT_SYMBOL(dasd_add_request_head
);
2151 * Queue a request to the tail of the device ccw_queue.
2152 * Start the I/O if possible.
2154 void dasd_add_request_tail(struct dasd_ccw_req
*cqr
)
2156 struct dasd_device
*device
;
2157 unsigned long flags
;
2159 device
= cqr
->startdev
;
2160 spin_lock_irqsave(get_ccwdev_lock(device
->cdev
), flags
);
2161 cqr
->status
= DASD_CQR_QUEUED
;
2162 list_add_tail(&cqr
->devlist
, &device
->ccw_queue
);
2163 /* let the bh start the request to keep them in order */
2164 dasd_schedule_device_bh(device
);
2165 spin_unlock_irqrestore(get_ccwdev_lock(device
->cdev
), flags
);
2167 EXPORT_SYMBOL(dasd_add_request_tail
);
2170 * Wakeup helper for the 'sleep_on' functions.
2172 void dasd_wakeup_cb(struct dasd_ccw_req
*cqr
, void *data
)
2174 spin_lock_irq(get_ccwdev_lock(cqr
->startdev
->cdev
));
2175 cqr
->callback_data
= DASD_SLEEPON_END_TAG
;
2176 spin_unlock_irq(get_ccwdev_lock(cqr
->startdev
->cdev
));
2177 wake_up(&generic_waitq
);
2179 EXPORT_SYMBOL_GPL(dasd_wakeup_cb
);
2181 static inline int _wait_for_wakeup(struct dasd_ccw_req
*cqr
)
2183 struct dasd_device
*device
;
2186 device
= cqr
->startdev
;
2187 spin_lock_irq(get_ccwdev_lock(device
->cdev
));
2188 rc
= (cqr
->callback_data
== DASD_SLEEPON_END_TAG
);
2189 spin_unlock_irq(get_ccwdev_lock(device
->cdev
));
2194 * checks if error recovery is necessary, returns 1 if yes, 0 otherwise.
2196 static int __dasd_sleep_on_erp(struct dasd_ccw_req
*cqr
)
2198 struct dasd_device
*device
;
2199 dasd_erp_fn_t erp_fn
;
2201 if (cqr
->status
== DASD_CQR_FILLED
)
2203 device
= cqr
->startdev
;
2204 if (test_bit(DASD_CQR_FLAGS_USE_ERP
, &cqr
->flags
)) {
2205 if (cqr
->status
== DASD_CQR_TERMINATED
) {
2206 device
->discipline
->handle_terminated_request(cqr
);
2209 if (cqr
->status
== DASD_CQR_NEED_ERP
) {
2210 erp_fn
= device
->discipline
->erp_action(cqr
);
2214 if (cqr
->status
== DASD_CQR_FAILED
)
2215 dasd_log_sense(cqr
, &cqr
->irb
);
2217 __dasd_process_erp(device
, cqr
);
2224 static int __dasd_sleep_on_loop_condition(struct dasd_ccw_req
*cqr
)
2226 if (test_bit(DASD_CQR_FLAGS_USE_ERP
, &cqr
->flags
)) {
2227 if (cqr
->refers
) /* erp is not done yet */
2229 return ((cqr
->status
!= DASD_CQR_DONE
) &&
2230 (cqr
->status
!= DASD_CQR_FAILED
));
2232 return (cqr
->status
== DASD_CQR_FILLED
);
2235 static int _dasd_sleep_on(struct dasd_ccw_req
*maincqr
, int interruptible
)
2237 struct dasd_device
*device
;
2239 struct list_head ccw_queue
;
2240 struct dasd_ccw_req
*cqr
;
2242 INIT_LIST_HEAD(&ccw_queue
);
2243 maincqr
->status
= DASD_CQR_FILLED
;
2244 device
= maincqr
->startdev
;
2245 list_add(&maincqr
->blocklist
, &ccw_queue
);
2246 for (cqr
= maincqr
; __dasd_sleep_on_loop_condition(cqr
);
2247 cqr
= list_first_entry(&ccw_queue
,
2248 struct dasd_ccw_req
, blocklist
)) {
2250 if (__dasd_sleep_on_erp(cqr
))
2252 if (cqr
->status
!= DASD_CQR_FILLED
) /* could be failed */
2254 if (test_bit(DASD_FLAG_LOCK_STOLEN
, &device
->flags
) &&
2255 !test_bit(DASD_CQR_ALLOW_SLOCK
, &cqr
->flags
)) {
2256 cqr
->status
= DASD_CQR_FAILED
;
2257 cqr
->intrc
= -EPERM
;
2260 /* Non-temporary stop condition will trigger fail fast */
2261 if (device
->stopped
& ~DASD_STOPPED_PENDING
&&
2262 test_bit(DASD_CQR_FLAGS_FAILFAST
, &cqr
->flags
) &&
2263 (!dasd_eer_enabled(device
))) {
2264 cqr
->status
= DASD_CQR_FAILED
;
2265 cqr
->intrc
= -ENOLINK
;
2269 * Don't try to start requests if device is stopped
2270 * except path verification requests
2272 if (!test_bit(DASD_CQR_VERIFY_PATH
, &cqr
->flags
)) {
2273 if (interruptible
) {
2274 rc
= wait_event_interruptible(
2275 generic_waitq
, !(device
->stopped
));
2276 if (rc
== -ERESTARTSYS
) {
2277 cqr
->status
= DASD_CQR_FAILED
;
2278 maincqr
->intrc
= rc
;
2282 wait_event(generic_waitq
, !(device
->stopped
));
2285 cqr
->callback
= dasd_wakeup_cb
;
2287 cqr
->callback_data
= DASD_SLEEPON_START_TAG
;
2288 dasd_add_request_tail(cqr
);
2289 if (interruptible
) {
2290 rc
= wait_event_interruptible(
2291 generic_waitq
, _wait_for_wakeup(cqr
));
2292 if (rc
== -ERESTARTSYS
) {
2293 dasd_cancel_req(cqr
);
2294 /* wait (non-interruptible) for final status */
2295 wait_event(generic_waitq
,
2296 _wait_for_wakeup(cqr
));
2297 cqr
->status
= DASD_CQR_FAILED
;
2298 maincqr
->intrc
= rc
;
2302 wait_event(generic_waitq
, _wait_for_wakeup(cqr
));
2305 maincqr
->endclk
= get_tod_clock();
2306 if ((maincqr
->status
!= DASD_CQR_DONE
) &&
2307 (maincqr
->intrc
!= -ERESTARTSYS
))
2308 dasd_log_sense(maincqr
, &maincqr
->irb
);
2309 if (maincqr
->status
== DASD_CQR_DONE
)
2311 else if (maincqr
->intrc
)
2312 rc
= maincqr
->intrc
;
2318 static inline int _wait_for_wakeup_queue(struct list_head
*ccw_queue
)
2320 struct dasd_ccw_req
*cqr
;
2322 list_for_each_entry(cqr
, ccw_queue
, blocklist
) {
2323 if (cqr
->callback_data
!= DASD_SLEEPON_END_TAG
)
2330 static int _dasd_sleep_on_queue(struct list_head
*ccw_queue
, int interruptible
)
2332 struct dasd_device
*device
;
2333 struct dasd_ccw_req
*cqr
, *n
;
2338 list_for_each_entry_safe(cqr
, n
, ccw_queue
, blocklist
) {
2339 device
= cqr
->startdev
;
2340 if (cqr
->status
!= DASD_CQR_FILLED
) /*could be failed*/
2343 if (test_bit(DASD_FLAG_LOCK_STOLEN
, &device
->flags
) &&
2344 !test_bit(DASD_CQR_ALLOW_SLOCK
, &cqr
->flags
)) {
2345 cqr
->status
= DASD_CQR_FAILED
;
2346 cqr
->intrc
= -EPERM
;
2349 /*Non-temporary stop condition will trigger fail fast*/
2350 if (device
->stopped
& ~DASD_STOPPED_PENDING
&&
2351 test_bit(DASD_CQR_FLAGS_FAILFAST
, &cqr
->flags
) &&
2352 !dasd_eer_enabled(device
)) {
2353 cqr
->status
= DASD_CQR_FAILED
;
2354 cqr
->intrc
= -EAGAIN
;
2358 /*Don't try to start requests if device is stopped*/
2359 if (interruptible
) {
2360 rc
= wait_event_interruptible(
2361 generic_waitq
, !device
->stopped
);
2362 if (rc
== -ERESTARTSYS
) {
2363 cqr
->status
= DASD_CQR_FAILED
;
2368 wait_event(generic_waitq
, !(device
->stopped
));
2371 cqr
->callback
= dasd_wakeup_cb
;
2372 cqr
->callback_data
= DASD_SLEEPON_START_TAG
;
2373 dasd_add_request_tail(cqr
);
2376 wait_event(generic_waitq
, _wait_for_wakeup_queue(ccw_queue
));
2379 list_for_each_entry_safe(cqr
, n
, ccw_queue
, blocklist
) {
2381 * In some cases the 'File Protected' or 'Incorrect Length'
2382 * error might be expected and error recovery would be
2383 * unnecessary in these cases. Check if the according suppress
2386 sense
= dasd_get_sense(&cqr
->irb
);
2387 if (sense
&& sense
[1] & SNS1_FILE_PROTECTED
&&
2388 test_bit(DASD_CQR_SUPPRESS_FP
, &cqr
->flags
))
2390 if (scsw_cstat(&cqr
->irb
.scsw
) == 0x40 &&
2391 test_bit(DASD_CQR_SUPPRESS_IL
, &cqr
->flags
))
2395 * for alias devices simplify error recovery and
2396 * return to upper layer
2397 * do not skip ERP requests
2399 if (cqr
->startdev
!= cqr
->basedev
&& !cqr
->refers
&&
2400 (cqr
->status
== DASD_CQR_TERMINATED
||
2401 cqr
->status
== DASD_CQR_NEED_ERP
))
2404 /* normal recovery for basedev IO */
2405 if (__dasd_sleep_on_erp(cqr
))
2406 /* handle erp first */
2414 * Queue a request to the tail of the device ccw_queue and wait for
2417 int dasd_sleep_on(struct dasd_ccw_req
*cqr
)
2419 return _dasd_sleep_on(cqr
, 0);
2421 EXPORT_SYMBOL(dasd_sleep_on
);
2424 * Start requests from a ccw_queue and wait for their completion.
2426 int dasd_sleep_on_queue(struct list_head
*ccw_queue
)
2428 return _dasd_sleep_on_queue(ccw_queue
, 0);
2430 EXPORT_SYMBOL(dasd_sleep_on_queue
);
2433 * Queue a request to the tail of the device ccw_queue and wait
2434 * interruptible for it's completion.
2436 int dasd_sleep_on_interruptible(struct dasd_ccw_req
*cqr
)
2438 return _dasd_sleep_on(cqr
, 1);
2440 EXPORT_SYMBOL(dasd_sleep_on_interruptible
);
2443 * Whoa nelly now it gets really hairy. For some functions (e.g. steal lock
2444 * for eckd devices) the currently running request has to be terminated
2445 * and be put back to status queued, before the special request is added
2446 * to the head of the queue. Then the special request is waited on normally.
2448 static inline int _dasd_term_running_cqr(struct dasd_device
*device
)
2450 struct dasd_ccw_req
*cqr
;
2453 if (list_empty(&device
->ccw_queue
))
2455 cqr
= list_entry(device
->ccw_queue
.next
, struct dasd_ccw_req
, devlist
);
2456 rc
= device
->discipline
->term_IO(cqr
);
2459 * CQR terminated because a more important request is pending.
2460 * Undo decreasing of retry counter because this is
2461 * not an error case.
2467 int dasd_sleep_on_immediatly(struct dasd_ccw_req
*cqr
)
2469 struct dasd_device
*device
;
2472 device
= cqr
->startdev
;
2473 if (test_bit(DASD_FLAG_LOCK_STOLEN
, &device
->flags
) &&
2474 !test_bit(DASD_CQR_ALLOW_SLOCK
, &cqr
->flags
)) {
2475 cqr
->status
= DASD_CQR_FAILED
;
2476 cqr
->intrc
= -EPERM
;
2479 spin_lock_irq(get_ccwdev_lock(device
->cdev
));
2480 rc
= _dasd_term_running_cqr(device
);
2482 spin_unlock_irq(get_ccwdev_lock(device
->cdev
));
2485 cqr
->callback
= dasd_wakeup_cb
;
2486 cqr
->callback_data
= DASD_SLEEPON_START_TAG
;
2487 cqr
->status
= DASD_CQR_QUEUED
;
2489 * add new request as second
2490 * first the terminated cqr needs to be finished
2492 list_add(&cqr
->devlist
, device
->ccw_queue
.next
);
2494 /* let the bh start the request to keep them in order */
2495 dasd_schedule_device_bh(device
);
2497 spin_unlock_irq(get_ccwdev_lock(device
->cdev
));
2499 wait_event(generic_waitq
, _wait_for_wakeup(cqr
));
2501 if (cqr
->status
== DASD_CQR_DONE
)
2503 else if (cqr
->intrc
)
2509 dasd_schedule_device_bh(device
);
2511 dasd_schedule_block_bh(device
->block
);
2515 EXPORT_SYMBOL(dasd_sleep_on_immediatly
);
2518 * Cancels a request that was started with dasd_sleep_on_req.
2519 * This is useful to timeout requests. The request will be
2520 * terminated if it is currently in i/o.
2521 * Returns 0 if request termination was successful
2522 * negative error code if termination failed
2523 * Cancellation of a request is an asynchronous operation! The calling
2524 * function has to wait until the request is properly returned via callback.
2526 int dasd_cancel_req(struct dasd_ccw_req
*cqr
)
2528 struct dasd_device
*device
= cqr
->startdev
;
2529 unsigned long flags
;
2533 spin_lock_irqsave(get_ccwdev_lock(device
->cdev
), flags
);
2534 switch (cqr
->status
) {
2535 case DASD_CQR_QUEUED
:
2536 /* request was not started - just set to cleared */
2537 cqr
->status
= DASD_CQR_CLEARED
;
2538 if (cqr
->callback_data
== DASD_SLEEPON_START_TAG
)
2539 cqr
->callback_data
= DASD_SLEEPON_END_TAG
;
2541 case DASD_CQR_IN_IO
:
2542 /* request in IO - terminate IO and release again */
2543 rc
= device
->discipline
->term_IO(cqr
);
2545 dev_err(&device
->cdev
->dev
,
2546 "Cancelling request %p failed with rc=%d\n",
2549 cqr
->stopclk
= get_tod_clock();
2552 default: /* already finished or clear pending - do nothing */
2555 spin_unlock_irqrestore(get_ccwdev_lock(device
->cdev
), flags
);
2556 dasd_schedule_device_bh(device
);
2559 EXPORT_SYMBOL(dasd_cancel_req
);
2562 * SECTION: Operations of the dasd_block layer.
2566 * Timeout function for dasd_block. This is used when the block layer
2567 * is waiting for something that may not come reliably, (e.g. a state
2570 static void dasd_block_timeout(unsigned long ptr
)
2572 unsigned long flags
;
2573 struct dasd_block
*block
;
2575 block
= (struct dasd_block
*) ptr
;
2576 spin_lock_irqsave(get_ccwdev_lock(block
->base
->cdev
), flags
);
2577 /* re-activate request queue */
2578 dasd_device_remove_stop_bits(block
->base
, DASD_STOPPED_PENDING
);
2579 spin_unlock_irqrestore(get_ccwdev_lock(block
->base
->cdev
), flags
);
2580 dasd_schedule_block_bh(block
);
2584 * Setup timeout for a dasd_block in jiffies.
2586 void dasd_block_set_timer(struct dasd_block
*block
, int expires
)
2589 del_timer(&block
->timer
);
2591 mod_timer(&block
->timer
, jiffies
+ expires
);
2593 EXPORT_SYMBOL(dasd_block_set_timer
);
2596 * Clear timeout for a dasd_block.
2598 void dasd_block_clear_timer(struct dasd_block
*block
)
2600 del_timer(&block
->timer
);
2602 EXPORT_SYMBOL(dasd_block_clear_timer
);
2605 * Process finished error recovery ccw.
2607 static void __dasd_process_erp(struct dasd_device
*device
,
2608 struct dasd_ccw_req
*cqr
)
2610 dasd_erp_fn_t erp_fn
;
2612 if (cqr
->status
== DASD_CQR_DONE
)
2613 DBF_DEV_EVENT(DBF_NOTICE
, device
, "%s", "ERP successful");
2615 dev_err(&device
->cdev
->dev
, "ERP failed for the DASD\n");
2616 erp_fn
= device
->discipline
->erp_postaction(cqr
);
2621 * Fetch requests from the block device queue.
2623 static void __dasd_process_request_queue(struct dasd_block
*block
)
2625 struct request_queue
*queue
;
2626 struct request
*req
;
2627 struct dasd_ccw_req
*cqr
;
2628 struct dasd_device
*basedev
;
2629 unsigned long flags
;
2630 queue
= block
->request_queue
;
2631 basedev
= block
->base
;
2632 /* No queue ? Then there is nothing to do. */
2637 * We requeue request from the block device queue to the ccw
2638 * queue only in two states. In state DASD_STATE_READY the
2639 * partition detection is done and we need to requeue requests
2640 * for that. State DASD_STATE_ONLINE is normal block device
2643 if (basedev
->state
< DASD_STATE_READY
) {
2644 while ((req
= blk_fetch_request(block
->request_queue
)))
2645 __blk_end_request_all(req
, -EIO
);
2650 * if device is stopped do not fetch new requests
2651 * except failfast is active which will let requests fail
2652 * immediately in __dasd_block_start_head()
2654 if (basedev
->stopped
&& !(basedev
->features
& DASD_FEATURE_FAILFAST
))
2657 /* Now we try to fetch requests from the request queue */
2658 while ((req
= blk_peek_request(queue
))) {
2659 if (basedev
->features
& DASD_FEATURE_READONLY
&&
2660 rq_data_dir(req
) == WRITE
) {
2661 DBF_DEV_EVENT(DBF_ERR
, basedev
,
2662 "Rejecting write request %p",
2664 blk_start_request(req
);
2665 __blk_end_request_all(req
, -EIO
);
2668 if (test_bit(DASD_FLAG_ABORTALL
, &basedev
->flags
) &&
2669 (basedev
->features
& DASD_FEATURE_FAILFAST
||
2670 blk_noretry_request(req
))) {
2671 DBF_DEV_EVENT(DBF_ERR
, basedev
,
2672 "Rejecting failfast request %p",
2674 blk_start_request(req
);
2675 __blk_end_request_all(req
, -ETIMEDOUT
);
2678 cqr
= basedev
->discipline
->build_cp(basedev
, block
, req
);
2680 if (PTR_ERR(cqr
) == -EBUSY
)
2681 break; /* normal end condition */
2682 if (PTR_ERR(cqr
) == -ENOMEM
)
2683 break; /* terminate request queue loop */
2684 if (PTR_ERR(cqr
) == -EAGAIN
) {
2686 * The current request cannot be build right
2687 * now, we have to try later. If this request
2688 * is the head-of-queue we stop the device
2691 if (!list_empty(&block
->ccw_queue
))
2694 get_ccwdev_lock(basedev
->cdev
), flags
);
2695 dasd_device_set_stop_bits(basedev
,
2696 DASD_STOPPED_PENDING
);
2697 spin_unlock_irqrestore(
2698 get_ccwdev_lock(basedev
->cdev
), flags
);
2699 dasd_block_set_timer(block
, HZ
/2);
2702 DBF_DEV_EVENT(DBF_ERR
, basedev
,
2703 "CCW creation failed (rc=%ld) "
2706 blk_start_request(req
);
2707 __blk_end_request_all(req
, -EIO
);
2711 * Note: callback is set to dasd_return_cqr_cb in
2712 * __dasd_block_start_head to cover erp requests as well
2714 cqr
->callback_data
= (void *) req
;
2715 cqr
->status
= DASD_CQR_FILLED
;
2716 req
->completion_data
= cqr
;
2717 blk_start_request(req
);
2718 list_add_tail(&cqr
->blocklist
, &block
->ccw_queue
);
2719 INIT_LIST_HEAD(&cqr
->devlist
);
2720 dasd_profile_start(block
, cqr
, req
);
2724 static void __dasd_cleanup_cqr(struct dasd_ccw_req
*cqr
)
2726 struct request
*req
;
2730 req
= (struct request
*) cqr
->callback_data
;
2731 dasd_profile_end(cqr
->block
, cqr
, req
);
2732 status
= cqr
->block
->base
->discipline
->free_cp(cqr
, req
);
2735 else if (status
== 0) {
2736 if (cqr
->intrc
== -EPERM
)
2738 else if (cqr
->intrc
== -ENOLINK
||
2739 cqr
->intrc
== -ETIMEDOUT
)
2744 __blk_end_request_all(req
, error
);
2748 * Process ccw request queue.
2750 static void __dasd_process_block_ccw_queue(struct dasd_block
*block
,
2751 struct list_head
*final_queue
)
2753 struct list_head
*l
, *n
;
2754 struct dasd_ccw_req
*cqr
;
2755 dasd_erp_fn_t erp_fn
;
2756 unsigned long flags
;
2757 struct dasd_device
*base
= block
->base
;
2760 /* Process request with final status. */
2761 list_for_each_safe(l
, n
, &block
->ccw_queue
) {
2762 cqr
= list_entry(l
, struct dasd_ccw_req
, blocklist
);
2763 if (cqr
->status
!= DASD_CQR_DONE
&&
2764 cqr
->status
!= DASD_CQR_FAILED
&&
2765 cqr
->status
!= DASD_CQR_NEED_ERP
&&
2766 cqr
->status
!= DASD_CQR_TERMINATED
)
2769 if (cqr
->status
== DASD_CQR_TERMINATED
) {
2770 base
->discipline
->handle_terminated_request(cqr
);
2774 /* Process requests that may be recovered */
2775 if (cqr
->status
== DASD_CQR_NEED_ERP
) {
2776 erp_fn
= base
->discipline
->erp_action(cqr
);
2777 if (IS_ERR(erp_fn(cqr
)))
2782 /* log sense for fatal error */
2783 if (cqr
->status
== DASD_CQR_FAILED
) {
2784 dasd_log_sense(cqr
, &cqr
->irb
);
2787 /* First of all call extended error reporting. */
2788 if (dasd_eer_enabled(base
) &&
2789 cqr
->status
== DASD_CQR_FAILED
) {
2790 dasd_eer_write(base
, cqr
, DASD_EER_FATALERROR
);
2792 /* restart request */
2793 cqr
->status
= DASD_CQR_FILLED
;
2795 spin_lock_irqsave(get_ccwdev_lock(base
->cdev
), flags
);
2796 dasd_device_set_stop_bits(base
, DASD_STOPPED_QUIESCE
);
2797 spin_unlock_irqrestore(get_ccwdev_lock(base
->cdev
),
2802 /* Process finished ERP request. */
2804 __dasd_process_erp(base
, cqr
);
2808 /* Rechain finished requests to final queue */
2809 cqr
->endclk
= get_tod_clock();
2810 list_move_tail(&cqr
->blocklist
, final_queue
);
2814 static void dasd_return_cqr_cb(struct dasd_ccw_req
*cqr
, void *data
)
2816 dasd_schedule_block_bh(cqr
->block
);
2819 static void __dasd_block_start_head(struct dasd_block
*block
)
2821 struct dasd_ccw_req
*cqr
;
2823 if (list_empty(&block
->ccw_queue
))
2825 /* We allways begin with the first requests on the queue, as some
2826 * of previously started requests have to be enqueued on a
2827 * dasd_device again for error recovery.
2829 list_for_each_entry(cqr
, &block
->ccw_queue
, blocklist
) {
2830 if (cqr
->status
!= DASD_CQR_FILLED
)
2832 if (test_bit(DASD_FLAG_LOCK_STOLEN
, &block
->base
->flags
) &&
2833 !test_bit(DASD_CQR_ALLOW_SLOCK
, &cqr
->flags
)) {
2834 cqr
->status
= DASD_CQR_FAILED
;
2835 cqr
->intrc
= -EPERM
;
2836 dasd_schedule_block_bh(block
);
2839 /* Non-temporary stop condition will trigger fail fast */
2840 if (block
->base
->stopped
& ~DASD_STOPPED_PENDING
&&
2841 test_bit(DASD_CQR_FLAGS_FAILFAST
, &cqr
->flags
) &&
2842 (!dasd_eer_enabled(block
->base
))) {
2843 cqr
->status
= DASD_CQR_FAILED
;
2844 cqr
->intrc
= -ENOLINK
;
2845 dasd_schedule_block_bh(block
);
2848 /* Don't try to start requests if device is stopped */
2849 if (block
->base
->stopped
)
2852 /* just a fail safe check, should not happen */
2854 cqr
->startdev
= block
->base
;
2856 /* make sure that the requests we submit find their way back */
2857 cqr
->callback
= dasd_return_cqr_cb
;
2859 dasd_add_request_tail(cqr
);
2864 * Central dasd_block layer routine. Takes requests from the generic
2865 * block layer request queue, creates ccw requests, enqueues them on
2866 * a dasd_device and processes ccw requests that have been returned.
2868 static void dasd_block_tasklet(struct dasd_block
*block
)
2870 struct list_head final_queue
;
2871 struct list_head
*l
, *n
;
2872 struct dasd_ccw_req
*cqr
;
2874 atomic_set(&block
->tasklet_scheduled
, 0);
2875 INIT_LIST_HEAD(&final_queue
);
2876 spin_lock(&block
->queue_lock
);
2877 /* Finish off requests on ccw queue */
2878 __dasd_process_block_ccw_queue(block
, &final_queue
);
2879 spin_unlock(&block
->queue_lock
);
2880 /* Now call the callback function of requests with final status */
2881 spin_lock_irq(&block
->request_queue_lock
);
2882 list_for_each_safe(l
, n
, &final_queue
) {
2883 cqr
= list_entry(l
, struct dasd_ccw_req
, blocklist
);
2884 list_del_init(&cqr
->blocklist
);
2885 __dasd_cleanup_cqr(cqr
);
2887 spin_lock(&block
->queue_lock
);
2888 /* Get new request from the block device request queue */
2889 __dasd_process_request_queue(block
);
2890 /* Now check if the head of the ccw queue needs to be started. */
2891 __dasd_block_start_head(block
);
2892 spin_unlock(&block
->queue_lock
);
2893 spin_unlock_irq(&block
->request_queue_lock
);
2894 if (waitqueue_active(&shutdown_waitq
))
2895 wake_up(&shutdown_waitq
);
2896 dasd_put_device(block
->base
);
2899 static void _dasd_wake_block_flush_cb(struct dasd_ccw_req
*cqr
, void *data
)
2901 wake_up(&dasd_flush_wq
);
2905 * Requeue a request back to the block request queue
2906 * only works for block requests
2908 static int _dasd_requeue_request(struct dasd_ccw_req
*cqr
)
2910 struct dasd_block
*block
= cqr
->block
;
2911 struct request
*req
;
2912 unsigned long flags
;
2916 spin_lock_irqsave(&block
->queue_lock
, flags
);
2917 req
= (struct request
*) cqr
->callback_data
;
2918 blk_requeue_request(block
->request_queue
, req
);
2919 spin_unlock_irqrestore(&block
->queue_lock
, flags
);
2925 * Go through all request on the dasd_block request queue, cancel them
2926 * on the respective dasd_device, and return them to the generic
2929 static int dasd_flush_block_queue(struct dasd_block
*block
)
2931 struct dasd_ccw_req
*cqr
, *n
;
2933 struct list_head flush_queue
;
2935 INIT_LIST_HEAD(&flush_queue
);
2936 spin_lock_bh(&block
->queue_lock
);
2939 list_for_each_entry_safe(cqr
, n
, &block
->ccw_queue
, blocklist
) {
2940 /* if this request currently owned by a dasd_device cancel it */
2941 if (cqr
->status
>= DASD_CQR_QUEUED
)
2942 rc
= dasd_cancel_req(cqr
);
2945 /* Rechain request (including erp chain) so it won't be
2946 * touched by the dasd_block_tasklet anymore.
2947 * Replace the callback so we notice when the request
2948 * is returned from the dasd_device layer.
2950 cqr
->callback
= _dasd_wake_block_flush_cb
;
2951 for (i
= 0; cqr
!= NULL
; cqr
= cqr
->refers
, i
++)
2952 list_move_tail(&cqr
->blocklist
, &flush_queue
);
2954 /* moved more than one request - need to restart */
2957 spin_unlock_bh(&block
->queue_lock
);
2958 /* Now call the callback function of flushed requests */
2960 list_for_each_entry_safe(cqr
, n
, &flush_queue
, blocklist
) {
2961 wait_event(dasd_flush_wq
, (cqr
->status
< DASD_CQR_QUEUED
));
2962 /* Process finished ERP request. */
2964 spin_lock_bh(&block
->queue_lock
);
2965 __dasd_process_erp(block
->base
, cqr
);
2966 spin_unlock_bh(&block
->queue_lock
);
2967 /* restart list_for_xx loop since dasd_process_erp
2968 * might remove multiple elements */
2971 /* call the callback function */
2972 spin_lock_irq(&block
->request_queue_lock
);
2973 cqr
->endclk
= get_tod_clock();
2974 list_del_init(&cqr
->blocklist
);
2975 __dasd_cleanup_cqr(cqr
);
2976 spin_unlock_irq(&block
->request_queue_lock
);
2982 * Schedules a call to dasd_tasklet over the device tasklet.
2984 void dasd_schedule_block_bh(struct dasd_block
*block
)
2986 /* Protect against rescheduling. */
2987 if (atomic_cmpxchg(&block
->tasklet_scheduled
, 0, 1) != 0)
2989 /* life cycle of block is bound to it's base device */
2990 dasd_get_device(block
->base
);
2991 tasklet_hi_schedule(&block
->tasklet
);
2993 EXPORT_SYMBOL(dasd_schedule_block_bh
);
2997 * SECTION: external block device operations
2998 * (request queue handling, open, release, etc.)
3002 * Dasd request queue function. Called from ll_rw_blk.c
3004 static void do_dasd_request(struct request_queue
*queue
)
3006 struct dasd_block
*block
;
3008 block
= queue
->queuedata
;
3009 spin_lock(&block
->queue_lock
);
3010 /* Get new request from the block device request queue */
3011 __dasd_process_request_queue(block
);
3012 /* Now check if the head of the ccw queue needs to be started. */
3013 __dasd_block_start_head(block
);
3014 spin_unlock(&block
->queue_lock
);
3018 * Block timeout callback, called from the block layer
3020 * request_queue lock is held on entry.
3023 * BLK_EH_RESET_TIMER if the request should be left running
3024 * BLK_EH_NOT_HANDLED if the request is handled or terminated
3027 enum blk_eh_timer_return
dasd_times_out(struct request
*req
)
3029 struct dasd_ccw_req
*cqr
= req
->completion_data
;
3030 struct dasd_block
*block
= req
->q
->queuedata
;
3031 struct dasd_device
*device
;
3035 return BLK_EH_NOT_HANDLED
;
3037 device
= cqr
->startdev
? cqr
->startdev
: block
->base
;
3038 if (!device
->blk_timeout
)
3039 return BLK_EH_RESET_TIMER
;
3040 DBF_DEV_EVENT(DBF_WARNING
, device
,
3041 " dasd_times_out cqr %p status %x",
3044 spin_lock(&block
->queue_lock
);
3045 spin_lock(get_ccwdev_lock(device
->cdev
));
3047 cqr
->intrc
= -ETIMEDOUT
;
3048 if (cqr
->status
>= DASD_CQR_QUEUED
) {
3049 spin_unlock(get_ccwdev_lock(device
->cdev
));
3050 rc
= dasd_cancel_req(cqr
);
3051 } else if (cqr
->status
== DASD_CQR_FILLED
||
3052 cqr
->status
== DASD_CQR_NEED_ERP
) {
3053 cqr
->status
= DASD_CQR_TERMINATED
;
3054 spin_unlock(get_ccwdev_lock(device
->cdev
));
3055 } else if (cqr
->status
== DASD_CQR_IN_ERP
) {
3056 struct dasd_ccw_req
*searchcqr
, *nextcqr
, *tmpcqr
;
3058 list_for_each_entry_safe(searchcqr
, nextcqr
,
3059 &block
->ccw_queue
, blocklist
) {
3061 while (tmpcqr
->refers
)
3062 tmpcqr
= tmpcqr
->refers
;
3065 /* searchcqr is an ERP request for cqr */
3066 searchcqr
->retries
= -1;
3067 searchcqr
->intrc
= -ETIMEDOUT
;
3068 if (searchcqr
->status
>= DASD_CQR_QUEUED
) {
3069 spin_unlock(get_ccwdev_lock(device
->cdev
));
3070 rc
= dasd_cancel_req(searchcqr
);
3071 spin_lock(get_ccwdev_lock(device
->cdev
));
3072 } else if ((searchcqr
->status
== DASD_CQR_FILLED
) ||
3073 (searchcqr
->status
== DASD_CQR_NEED_ERP
)) {
3074 searchcqr
->status
= DASD_CQR_TERMINATED
;
3076 } else if (searchcqr
->status
== DASD_CQR_IN_ERP
) {
3078 * Shouldn't happen; most recent ERP
3079 * request is at the front of queue
3085 spin_unlock(get_ccwdev_lock(device
->cdev
));
3087 dasd_schedule_block_bh(block
);
3088 spin_unlock(&block
->queue_lock
);
3090 return rc
? BLK_EH_RESET_TIMER
: BLK_EH_NOT_HANDLED
;
3094 * Allocate and initialize request queue and default I/O scheduler.
3096 static int dasd_alloc_queue(struct dasd_block
*block
)
3098 block
->request_queue
= blk_init_queue(do_dasd_request
,
3099 &block
->request_queue_lock
);
3100 if (block
->request_queue
== NULL
)
3103 block
->request_queue
->queuedata
= block
;
3109 * Allocate and initialize request queue.
3111 static void dasd_setup_queue(struct dasd_block
*block
)
3115 if (block
->base
->features
& DASD_FEATURE_USERAW
) {
3117 * the max_blocks value for raw_track access is 256
3118 * it is higher than the native ECKD value because we
3119 * only need one ccw per track
3120 * so the max_hw_sectors are
3121 * 2048 x 512B = 1024kB = 16 tracks
3125 max
= block
->base
->discipline
->max_blocks
<< block
->s2b_shift
;
3127 queue_flag_set_unlocked(QUEUE_FLAG_NONROT
, block
->request_queue
);
3128 block
->request_queue
->limits
.max_dev_sectors
= max
;
3129 blk_queue_logical_block_size(block
->request_queue
,
3131 blk_queue_max_hw_sectors(block
->request_queue
, max
);
3132 blk_queue_max_segments(block
->request_queue
, -1L);
3133 /* with page sized segments we can translate each segement into
3136 blk_queue_max_segment_size(block
->request_queue
, PAGE_SIZE
);
3137 blk_queue_segment_boundary(block
->request_queue
, PAGE_SIZE
- 1);
3141 * Deactivate and free request queue.
3143 static void dasd_free_queue(struct dasd_block
*block
)
3145 if (block
->request_queue
) {
3146 blk_cleanup_queue(block
->request_queue
);
3147 block
->request_queue
= NULL
;
3152 * Flush request on the request queue.
3154 static void dasd_flush_request_queue(struct dasd_block
*block
)
3156 struct request
*req
;
3158 if (!block
->request_queue
)
3161 spin_lock_irq(&block
->request_queue_lock
);
3162 while ((req
= blk_fetch_request(block
->request_queue
)))
3163 __blk_end_request_all(req
, -EIO
);
3164 spin_unlock_irq(&block
->request_queue_lock
);
3167 static int dasd_open(struct block_device
*bdev
, fmode_t mode
)
3169 struct dasd_device
*base
;
3172 base
= dasd_device_from_gendisk(bdev
->bd_disk
);
3176 atomic_inc(&base
->block
->open_count
);
3177 if (test_bit(DASD_FLAG_OFFLINE
, &base
->flags
)) {
3182 if (!try_module_get(base
->discipline
->owner
)) {
3187 if (dasd_probeonly
) {
3188 dev_info(&base
->cdev
->dev
,
3189 "Accessing the DASD failed because it is in "
3190 "probeonly mode\n");
3195 if (base
->state
<= DASD_STATE_BASIC
) {
3196 DBF_DEV_EVENT(DBF_ERR
, base
, " %s",
3197 " Cannot open unrecognized device");
3202 if ((mode
& FMODE_WRITE
) &&
3203 (test_bit(DASD_FLAG_DEVICE_RO
, &base
->flags
) ||
3204 (base
->features
& DASD_FEATURE_READONLY
))) {
3209 dasd_put_device(base
);
3213 module_put(base
->discipline
->owner
);
3215 atomic_dec(&base
->block
->open_count
);
3216 dasd_put_device(base
);
3220 static void dasd_release(struct gendisk
*disk
, fmode_t mode
)
3222 struct dasd_device
*base
= dasd_device_from_gendisk(disk
);
3224 atomic_dec(&base
->block
->open_count
);
3225 module_put(base
->discipline
->owner
);
3226 dasd_put_device(base
);
3231 * Return disk geometry.
3233 static int dasd_getgeo(struct block_device
*bdev
, struct hd_geometry
*geo
)
3235 struct dasd_device
*base
;
3237 base
= dasd_device_from_gendisk(bdev
->bd_disk
);
3241 if (!base
->discipline
||
3242 !base
->discipline
->fill_geometry
) {
3243 dasd_put_device(base
);
3246 base
->discipline
->fill_geometry(base
->block
, geo
);
3247 geo
->start
= get_start_sect(bdev
) >> base
->block
->s2b_shift
;
3248 dasd_put_device(base
);
3252 const struct block_device_operations
3253 dasd_device_operations
= {
3254 .owner
= THIS_MODULE
,
3256 .release
= dasd_release
,
3257 .ioctl
= dasd_ioctl
,
3258 .compat_ioctl
= dasd_ioctl
,
3259 .getgeo
= dasd_getgeo
,
3262 /*******************************************************************************
3263 * end of block device operations
3269 #ifdef CONFIG_PROC_FS
3273 if (dasd_page_cache
!= NULL
) {
3274 kmem_cache_destroy(dasd_page_cache
);
3275 dasd_page_cache
= NULL
;
3277 dasd_gendisk_exit();
3279 if (dasd_debug_area
!= NULL
) {
3280 debug_unregister(dasd_debug_area
);
3281 dasd_debug_area
= NULL
;
3283 dasd_statistics_removeroot();
3287 * SECTION: common functions for ccw_driver use
3291 * Is the device read-only?
3292 * Note that this function does not report the setting of the
3293 * readonly device attribute, but how it is configured in z/VM.
3295 int dasd_device_is_ro(struct dasd_device
*device
)
3297 struct ccw_dev_id dev_id
;
3298 struct diag210 diag_data
;
3303 ccw_device_get_id(device
->cdev
, &dev_id
);
3304 memset(&diag_data
, 0, sizeof(diag_data
));
3305 diag_data
.vrdcdvno
= dev_id
.devno
;
3306 diag_data
.vrdclen
= sizeof(diag_data
);
3307 rc
= diag210(&diag_data
);
3308 if (rc
== 0 || rc
== 2) {
3309 return diag_data
.vrdcvfla
& 0x80;
3311 DBF_EVENT(DBF_WARNING
, "diag210 failed for dev=%04x with rc=%d",
3316 EXPORT_SYMBOL_GPL(dasd_device_is_ro
);
3318 static void dasd_generic_auto_online(void *data
, async_cookie_t cookie
)
3320 struct ccw_device
*cdev
= data
;
3323 ret
= ccw_device_set_online(cdev
);
3325 pr_warn("%s: Setting the DASD online failed with rc=%d\n",
3326 dev_name(&cdev
->dev
), ret
);
3330 * Initial attempt at a probe function. this can be simplified once
3331 * the other detection code is gone.
3333 int dasd_generic_probe(struct ccw_device
*cdev
,
3334 struct dasd_discipline
*discipline
)
3338 ret
= dasd_add_sysfs_files(cdev
);
3340 DBF_EVENT_DEVID(DBF_WARNING
, cdev
, "%s",
3341 "dasd_generic_probe: could not add "
3345 cdev
->handler
= &dasd_int_handler
;
3348 * Automatically online either all dasd devices (dasd_autodetect)
3349 * or all devices specified with dasd= parameters during
3352 if ((dasd_get_feature(cdev
, DASD_FEATURE_INITIAL_ONLINE
) > 0 ) ||
3353 (dasd_autodetect
&& dasd_busid_known(dev_name(&cdev
->dev
)) != 0))
3354 async_schedule(dasd_generic_auto_online
, cdev
);
3357 EXPORT_SYMBOL_GPL(dasd_generic_probe
);
3360 * This will one day be called from a global not_oper handler.
3361 * It is also used by driver_unregister during module unload.
3363 void dasd_generic_remove(struct ccw_device
*cdev
)
3365 struct dasd_device
*device
;
3366 struct dasd_block
*block
;
3368 cdev
->handler
= NULL
;
3370 device
= dasd_device_from_cdev(cdev
);
3371 if (IS_ERR(device
)) {
3372 dasd_remove_sysfs_files(cdev
);
3375 if (test_and_set_bit(DASD_FLAG_OFFLINE
, &device
->flags
) &&
3376 !test_bit(DASD_FLAG_SAFE_OFFLINE_RUNNING
, &device
->flags
)) {
3377 /* Already doing offline processing */
3378 dasd_put_device(device
);
3379 dasd_remove_sysfs_files(cdev
);
3383 * This device is removed unconditionally. Set offline
3384 * flag to prevent dasd_open from opening it while it is
3385 * no quite down yet.
3387 dasd_set_target_state(device
, DASD_STATE_NEW
);
3388 /* dasd_delete_device destroys the device reference. */
3389 block
= device
->block
;
3390 dasd_delete_device(device
);
3392 * life cycle of block is bound to device, so delete it after
3393 * device was safely removed
3396 dasd_free_block(block
);
3398 dasd_remove_sysfs_files(cdev
);
3400 EXPORT_SYMBOL_GPL(dasd_generic_remove
);
3403 * Activate a device. This is called from dasd_{eckd,fba}_probe() when either
3404 * the device is detected for the first time and is supposed to be used
3405 * or the user has started activation through sysfs.
3407 int dasd_generic_set_online(struct ccw_device
*cdev
,
3408 struct dasd_discipline
*base_discipline
)
3410 struct dasd_discipline
*discipline
;
3411 struct dasd_device
*device
;
3414 /* first online clears initial online feature flag */
3415 dasd_set_feature(cdev
, DASD_FEATURE_INITIAL_ONLINE
, 0);
3416 device
= dasd_create_device(cdev
);
3418 return PTR_ERR(device
);
3420 discipline
= base_discipline
;
3421 if (device
->features
& DASD_FEATURE_USEDIAG
) {
3422 if (!dasd_diag_discipline_pointer
) {
3423 /* Try to load the required module. */
3424 rc
= request_module(DASD_DIAG_MOD
);
3426 pr_warn("%s Setting the DASD online failed "
3427 "because the required module %s "
3428 "could not be loaded (rc=%d)\n",
3429 dev_name(&cdev
->dev
), DASD_DIAG_MOD
,
3431 dasd_delete_device(device
);
3435 /* Module init could have failed, so check again here after
3436 * request_module(). */
3437 if (!dasd_diag_discipline_pointer
) {
3438 pr_warn("%s Setting the DASD online failed because of missing DIAG discipline\n",
3439 dev_name(&cdev
->dev
));
3440 dasd_delete_device(device
);
3443 discipline
= dasd_diag_discipline_pointer
;
3445 if (!try_module_get(base_discipline
->owner
)) {
3446 dasd_delete_device(device
);
3449 if (!try_module_get(discipline
->owner
)) {
3450 module_put(base_discipline
->owner
);
3451 dasd_delete_device(device
);
3454 device
->base_discipline
= base_discipline
;
3455 device
->discipline
= discipline
;
3457 /* check_device will allocate block device if necessary */
3458 rc
= discipline
->check_device(device
);
3460 pr_warn("%s Setting the DASD online with discipline %s failed with rc=%i\n",
3461 dev_name(&cdev
->dev
), discipline
->name
, rc
);
3462 module_put(discipline
->owner
);
3463 module_put(base_discipline
->owner
);
3464 dasd_delete_device(device
);
3468 dasd_set_target_state(device
, DASD_STATE_ONLINE
);
3469 if (device
->state
<= DASD_STATE_KNOWN
) {
3470 pr_warn("%s Setting the DASD online failed because of a missing discipline\n",
3471 dev_name(&cdev
->dev
));
3473 dasd_set_target_state(device
, DASD_STATE_NEW
);
3475 dasd_free_block(device
->block
);
3476 dasd_delete_device(device
);
3478 pr_debug("dasd_generic device %s found\n",
3479 dev_name(&cdev
->dev
));
3481 wait_event(dasd_init_waitq
, _wait_for_device(device
));
3483 dasd_put_device(device
);
3486 EXPORT_SYMBOL_GPL(dasd_generic_set_online
);
3488 int dasd_generic_set_offline(struct ccw_device
*cdev
)
3490 struct dasd_device
*device
;
3491 struct dasd_block
*block
;
3492 int max_count
, open_count
, rc
;
3495 device
= dasd_device_from_cdev(cdev
);
3497 return PTR_ERR(device
);
3500 * We must make sure that this device is currently not in use.
3501 * The open_count is increased for every opener, that includes
3502 * the blkdev_get in dasd_scan_partitions. We are only interested
3503 * in the other openers.
3505 if (device
->block
) {
3506 max_count
= device
->block
->bdev
? 0 : -1;
3507 open_count
= atomic_read(&device
->block
->open_count
);
3508 if (open_count
> max_count
) {
3510 pr_warn("%s: The DASD cannot be set offline with open count %i\n",
3511 dev_name(&cdev
->dev
), open_count
);
3513 pr_warn("%s: The DASD cannot be set offline while it is in use\n",
3514 dev_name(&cdev
->dev
));
3515 clear_bit(DASD_FLAG_OFFLINE
, &device
->flags
);
3516 dasd_put_device(device
);
3521 if (test_bit(DASD_FLAG_SAFE_OFFLINE_RUNNING
, &device
->flags
)) {
3523 * safe offline already running
3524 * could only be called by normal offline so safe_offline flag
3525 * needs to be removed to run normal offline and kill all I/O
3527 if (test_and_set_bit(DASD_FLAG_OFFLINE
, &device
->flags
)) {
3528 /* Already doing normal offline processing */
3529 dasd_put_device(device
);
3532 clear_bit(DASD_FLAG_SAFE_OFFLINE
, &device
->flags
);
3535 if (test_bit(DASD_FLAG_OFFLINE
, &device
->flags
)) {
3536 /* Already doing offline processing */
3537 dasd_put_device(device
);
3542 * if safe_offline called set safe_offline_running flag and
3543 * clear safe_offline so that a call to normal offline
3544 * can overrun safe_offline processing
3546 if (test_and_clear_bit(DASD_FLAG_SAFE_OFFLINE
, &device
->flags
) &&
3547 !test_and_set_bit(DASD_FLAG_SAFE_OFFLINE_RUNNING
, &device
->flags
)) {
3549 * If we want to set the device safe offline all IO operations
3550 * should be finished before continuing the offline process
3551 * so sync bdev first and then wait for our queues to become
3554 /* sync blockdev and partitions */
3555 rc
= fsync_bdev(device
->block
->bdev
);
3559 /* schedule device tasklet and wait for completion */
3560 dasd_schedule_device_bh(device
);
3561 rc
= wait_event_interruptible(shutdown_waitq
,
3562 _wait_for_empty_queues(device
));
3567 set_bit(DASD_FLAG_OFFLINE
, &device
->flags
);
3568 dasd_set_target_state(device
, DASD_STATE_NEW
);
3569 /* dasd_delete_device destroys the device reference. */
3570 block
= device
->block
;
3571 dasd_delete_device(device
);
3573 * life cycle of block is bound to device, so delete it after
3574 * device was safely removed
3577 dasd_free_block(block
);
3581 /* interrupted by signal */
3582 clear_bit(DASD_FLAG_SAFE_OFFLINE
, &device
->flags
);
3583 clear_bit(DASD_FLAG_SAFE_OFFLINE_RUNNING
, &device
->flags
);
3584 clear_bit(DASD_FLAG_OFFLINE
, &device
->flags
);
3585 dasd_put_device(device
);
3588 EXPORT_SYMBOL_GPL(dasd_generic_set_offline
);
3590 int dasd_generic_last_path_gone(struct dasd_device
*device
)
3592 struct dasd_ccw_req
*cqr
;
3594 dev_warn(&device
->cdev
->dev
, "No operational channel path is left "
3595 "for the device\n");
3596 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s", "last path gone");
3597 /* First of all call extended error reporting. */
3598 dasd_eer_write(device
, NULL
, DASD_EER_NOPATH
);
3600 if (device
->state
< DASD_STATE_BASIC
)
3602 /* Device is active. We want to keep it. */
3603 list_for_each_entry(cqr
, &device
->ccw_queue
, devlist
)
3604 if ((cqr
->status
== DASD_CQR_IN_IO
) ||
3605 (cqr
->status
== DASD_CQR_CLEAR_PENDING
)) {
3606 cqr
->status
= DASD_CQR_QUEUED
;
3609 dasd_device_set_stop_bits(device
, DASD_STOPPED_DC_WAIT
);
3610 dasd_device_clear_timer(device
);
3611 dasd_schedule_device_bh(device
);
3614 EXPORT_SYMBOL_GPL(dasd_generic_last_path_gone
);
3616 int dasd_generic_path_operational(struct dasd_device
*device
)
3618 dev_info(&device
->cdev
->dev
, "A channel path to the device has become "
3620 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s", "path operational");
3621 dasd_device_remove_stop_bits(device
, DASD_STOPPED_DC_WAIT
);
3622 if (device
->stopped
& DASD_UNRESUMED_PM
) {
3623 dasd_device_remove_stop_bits(device
, DASD_UNRESUMED_PM
);
3624 dasd_restore_device(device
);
3627 dasd_schedule_device_bh(device
);
3629 dasd_schedule_block_bh(device
->block
);
3631 if (!device
->stopped
)
3632 wake_up(&generic_waitq
);
3636 EXPORT_SYMBOL_GPL(dasd_generic_path_operational
);
3638 int dasd_generic_notify(struct ccw_device
*cdev
, int event
)
3640 struct dasd_device
*device
;
3643 device
= dasd_device_from_cdev_locked(cdev
);
3651 device
->path_data
.opm
= 0;
3652 device
->path_data
.ppm
= 0;
3653 device
->path_data
.npm
= 0;
3654 ret
= dasd_generic_last_path_gone(device
);
3658 if (device
->path_data
.opm
)
3659 ret
= dasd_generic_path_operational(device
);
3662 dasd_put_device(device
);
3665 EXPORT_SYMBOL_GPL(dasd_generic_notify
);
3667 void dasd_generic_path_event(struct ccw_device
*cdev
, int *path_event
)
3670 __u8 oldopm
, eventlpm
;
3671 struct dasd_device
*device
;
3673 device
= dasd_device_from_cdev_locked(cdev
);
3676 for (chp
= 0; chp
< 8; chp
++) {
3677 eventlpm
= 0x80 >> chp
;
3678 if (path_event
[chp
] & PE_PATH_GONE
) {
3679 oldopm
= device
->path_data
.opm
;
3680 device
->path_data
.opm
&= ~eventlpm
;
3681 device
->path_data
.ppm
&= ~eventlpm
;
3682 device
->path_data
.npm
&= ~eventlpm
;
3683 if (oldopm
&& !device
->path_data
.opm
) {
3684 dev_warn(&device
->cdev
->dev
,
3685 "No verified channel paths remain "
3686 "for the device\n");
3687 DBF_DEV_EVENT(DBF_WARNING
, device
,
3688 "%s", "last verified path gone");
3689 dasd_eer_write(device
, NULL
, DASD_EER_NOPATH
);
3690 dasd_device_set_stop_bits(device
,
3691 DASD_STOPPED_DC_WAIT
);
3694 if (path_event
[chp
] & PE_PATH_AVAILABLE
) {
3695 device
->path_data
.opm
&= ~eventlpm
;
3696 device
->path_data
.ppm
&= ~eventlpm
;
3697 device
->path_data
.npm
&= ~eventlpm
;
3698 device
->path_data
.tbvpm
|= eventlpm
;
3699 dasd_schedule_device_bh(device
);
3701 if (path_event
[chp
] & PE_PATHGROUP_ESTABLISHED
) {
3702 if (!(device
->path_data
.opm
& eventlpm
) &&
3703 !(device
->path_data
.tbvpm
& eventlpm
)) {
3705 * we can not establish a pathgroup on an
3706 * unavailable path, so trigger a path
3707 * verification first
3709 device
->path_data
.tbvpm
|= eventlpm
;
3710 dasd_schedule_device_bh(device
);
3712 DBF_DEV_EVENT(DBF_WARNING
, device
, "%s",
3713 "Pathgroup re-established\n");
3714 if (device
->discipline
->kick_validate
)
3715 device
->discipline
->kick_validate(device
);
3718 dasd_put_device(device
);
3720 EXPORT_SYMBOL_GPL(dasd_generic_path_event
);
3722 int dasd_generic_verify_path(struct dasd_device
*device
, __u8 lpm
)
3724 if (!device
->path_data
.opm
&& lpm
) {
3725 device
->path_data
.opm
= lpm
;
3726 dasd_generic_path_operational(device
);
3728 device
->path_data
.opm
|= lpm
;
3731 EXPORT_SYMBOL_GPL(dasd_generic_verify_path
);
3734 int dasd_generic_pm_freeze(struct ccw_device
*cdev
)
3736 struct dasd_device
*device
= dasd_device_from_cdev(cdev
);
3737 struct list_head freeze_queue
;
3738 struct dasd_ccw_req
*cqr
, *n
;
3739 struct dasd_ccw_req
*refers
;
3743 return PTR_ERR(device
);
3745 /* mark device as suspended */
3746 set_bit(DASD_FLAG_SUSPENDED
, &device
->flags
);
3748 if (device
->discipline
->freeze
)
3749 rc
= device
->discipline
->freeze(device
);
3751 /* disallow new I/O */
3752 dasd_device_set_stop_bits(device
, DASD_STOPPED_PM
);
3754 /* clear active requests and requeue them to block layer if possible */
3755 INIT_LIST_HEAD(&freeze_queue
);
3756 spin_lock_irq(get_ccwdev_lock(cdev
));
3758 list_for_each_entry_safe(cqr
, n
, &device
->ccw_queue
, devlist
) {
3759 /* Check status and move request to flush_queue */
3760 if (cqr
->status
== DASD_CQR_IN_IO
) {
3761 rc
= device
->discipline
->term_IO(cqr
);
3763 /* unable to terminate requeust */
3764 dev_err(&device
->cdev
->dev
,
3765 "Unable to terminate request %p "
3766 "on suspend\n", cqr
);
3767 spin_unlock_irq(get_ccwdev_lock(cdev
));
3768 dasd_put_device(device
);
3772 list_move_tail(&cqr
->devlist
, &freeze_queue
);
3774 spin_unlock_irq(get_ccwdev_lock(cdev
));
3776 list_for_each_entry_safe(cqr
, n
, &freeze_queue
, devlist
) {
3777 wait_event(dasd_flush_wq
,
3778 (cqr
->status
!= DASD_CQR_CLEAR_PENDING
));
3779 if (cqr
->status
== DASD_CQR_CLEARED
)
3780 cqr
->status
= DASD_CQR_QUEUED
;
3782 /* requeue requests to blocklayer will only work for
3783 block device requests */
3784 if (_dasd_requeue_request(cqr
))
3787 /* remove requests from device and block queue */
3788 list_del_init(&cqr
->devlist
);
3789 while (cqr
->refers
!= NULL
) {
3790 refers
= cqr
->refers
;
3791 /* remove the request from the block queue */
3792 list_del(&cqr
->blocklist
);
3793 /* free the finished erp request */
3794 dasd_free_erp_request(cqr
, cqr
->memdev
);
3798 list_del_init(&cqr
->blocklist
);
3799 cqr
->block
->base
->discipline
->free_cp(
3800 cqr
, (struct request
*) cqr
->callback_data
);
3804 * if requests remain then they are internal request
3805 * and go back to the device queue
3807 if (!list_empty(&freeze_queue
)) {
3808 /* move freeze_queue to start of the ccw_queue */
3809 spin_lock_irq(get_ccwdev_lock(cdev
));
3810 list_splice_tail(&freeze_queue
, &device
->ccw_queue
);
3811 spin_unlock_irq(get_ccwdev_lock(cdev
));
3813 dasd_put_device(device
);
3816 EXPORT_SYMBOL_GPL(dasd_generic_pm_freeze
);
3818 int dasd_generic_restore_device(struct ccw_device
*cdev
)
3820 struct dasd_device
*device
= dasd_device_from_cdev(cdev
);
3824 return PTR_ERR(device
);
3826 /* allow new IO again */
3827 dasd_device_remove_stop_bits(device
,
3828 (DASD_STOPPED_PM
| DASD_UNRESUMED_PM
));
3830 dasd_schedule_device_bh(device
);
3833 * call discipline restore function
3834 * if device is stopped do nothing e.g. for disconnected devices
3836 if (device
->discipline
->restore
&& !(device
->stopped
))
3837 rc
= device
->discipline
->restore(device
);
3838 if (rc
|| device
->stopped
)
3840 * if the resume failed for the DASD we put it in
3841 * an UNRESUMED stop state
3843 device
->stopped
|= DASD_UNRESUMED_PM
;
3846 dasd_schedule_block_bh(device
->block
);
3848 clear_bit(DASD_FLAG_SUSPENDED
, &device
->flags
);
3849 dasd_put_device(device
);
3852 EXPORT_SYMBOL_GPL(dasd_generic_restore_device
);
3854 static struct dasd_ccw_req
*dasd_generic_build_rdc(struct dasd_device
*device
,
3856 int rdc_buffer_size
,
3859 struct dasd_ccw_req
*cqr
;
3861 unsigned long *idaw
;
3863 cqr
= dasd_smalloc_request(magic
, 1 /* RDC */, rdc_buffer_size
, device
);
3866 /* internal error 13 - Allocating the RDC request failed*/
3867 dev_err(&device
->cdev
->dev
,
3868 "An error occurred in the DASD device driver, "
3869 "reason=%s\n", "13");
3874 ccw
->cmd_code
= CCW_CMD_RDC
;
3875 if (idal_is_needed(rdc_buffer
, rdc_buffer_size
)) {
3876 idaw
= (unsigned long *) (cqr
->data
);
3877 ccw
->cda
= (__u32
)(addr_t
) idaw
;
3878 ccw
->flags
= CCW_FLAG_IDA
;
3879 idaw
= idal_create_words(idaw
, rdc_buffer
, rdc_buffer_size
);
3881 ccw
->cda
= (__u32
)(addr_t
) rdc_buffer
;
3885 ccw
->count
= rdc_buffer_size
;
3886 cqr
->startdev
= device
;
3887 cqr
->memdev
= device
;
3888 cqr
->expires
= 10*HZ
;
3890 cqr
->buildclk
= get_tod_clock();
3891 cqr
->status
= DASD_CQR_FILLED
;
3896 int dasd_generic_read_dev_chars(struct dasd_device
*device
, int magic
,
3897 void *rdc_buffer
, int rdc_buffer_size
)
3900 struct dasd_ccw_req
*cqr
;
3902 cqr
= dasd_generic_build_rdc(device
, rdc_buffer
, rdc_buffer_size
,
3905 return PTR_ERR(cqr
);
3907 ret
= dasd_sleep_on(cqr
);
3908 dasd_sfree_request(cqr
, cqr
->memdev
);
3911 EXPORT_SYMBOL_GPL(dasd_generic_read_dev_chars
);
3914 * In command mode and transport mode we need to look for sense
3915 * data in different places. The sense data itself is allways
3916 * an array of 32 bytes, so we can unify the sense data access
3919 char *dasd_get_sense(struct irb
*irb
)
3921 struct tsb
*tsb
= NULL
;
3924 if (scsw_is_tm(&irb
->scsw
) && (irb
->scsw
.tm
.fcxs
== 0x01)) {
3925 if (irb
->scsw
.tm
.tcw
)
3926 tsb
= tcw_get_tsb((struct tcw
*)(unsigned long)
3928 if (tsb
&& tsb
->length
== 64 && tsb
->flags
)
3929 switch (tsb
->flags
& 0x07) {
3930 case 1: /* tsa_iostat */
3931 sense
= tsb
->tsa
.iostat
.sense
;
3933 case 2: /* tsa_ddpc */
3934 sense
= tsb
->tsa
.ddpc
.sense
;
3937 /* currently we don't use interrogate data */
3940 } else if (irb
->esw
.esw0
.erw
.cons
) {
3945 EXPORT_SYMBOL_GPL(dasd_get_sense
);
3947 void dasd_generic_shutdown(struct ccw_device
*cdev
)
3949 struct dasd_device
*device
;
3951 device
= dasd_device_from_cdev(cdev
);
3956 dasd_schedule_block_bh(device
->block
);
3958 dasd_schedule_device_bh(device
);
3960 wait_event(shutdown_waitq
, _wait_for_empty_queues(device
));
3962 EXPORT_SYMBOL_GPL(dasd_generic_shutdown
);
3964 static int __init
dasd_init(void)
3968 init_waitqueue_head(&dasd_init_waitq
);
3969 init_waitqueue_head(&dasd_flush_wq
);
3970 init_waitqueue_head(&generic_waitq
);
3971 init_waitqueue_head(&shutdown_waitq
);
3973 /* register 'common' DASD debug area, used for all DBF_XXX calls */
3974 dasd_debug_area
= debug_register("dasd", 1, 1, 8 * sizeof(long));
3975 if (dasd_debug_area
== NULL
) {
3979 debug_register_view(dasd_debug_area
, &debug_sprintf_view
);
3980 debug_set_level(dasd_debug_area
, DBF_WARNING
);
3982 DBF_EVENT(DBF_EMERG
, "%s", "debug area created");
3984 dasd_diag_discipline_pointer
= NULL
;
3986 dasd_statistics_createroot();
3988 rc
= dasd_devmap_init();
3991 rc
= dasd_gendisk_init();
3997 rc
= dasd_eer_init();
4000 #ifdef CONFIG_PROC_FS
4001 rc
= dasd_proc_init();
4008 pr_info("The DASD device driver could not be initialized\n");
4013 module_init(dasd_init
);
4014 module_exit(dasd_exit
);