4 * (C) 2007 www.douglaskthompson.com
6 * This file may be distributed under the terms of the
7 * GNU General Public License.
9 * Written by Doug Thompson <norsk5@xmission.com>
11 * edac_device API implementation
16 #include <linux/uaccess.h>
17 #include <linux/ctype.h>
18 #include <linux/highmem.h>
19 #include <linux/init.h>
20 #include <linux/jiffies.h>
21 #include <linux/module.h>
22 #include <linux/slab.h>
23 #include <linux/smp.h>
24 #include <linux/spinlock.h>
25 #include <linux/sysctl.h>
26 #include <linux/timer.h>
28 #include "edac_device.h"
29 #include "edac_module.h"
31 /* lock for the list: 'edac_device_list', manipulation of this list
32 * is protected by the 'device_ctls_mutex' lock
34 static DEFINE_MUTEX(device_ctls_mutex
);
35 static LIST_HEAD(edac_device_list
);
37 /* Default workqueue processing interval on this instance, in msecs */
38 #define DEFAULT_POLL_INTERVAL 1000
40 #ifdef CONFIG_EDAC_DEBUG
41 static void edac_device_dump_device(struct edac_device_ctl_info
*edac_dev
)
43 edac_dbg(3, "\tedac_dev = %p dev_idx=%d\n",
44 edac_dev
, edac_dev
->dev_idx
);
45 edac_dbg(4, "\tedac_dev->edac_check = %p\n", edac_dev
->edac_check
);
46 edac_dbg(3, "\tdev = %p\n", edac_dev
->dev
);
47 edac_dbg(3, "\tmod_name:ctl_name = %s:%s\n",
48 edac_dev
->mod_name
, edac_dev
->ctl_name
);
49 edac_dbg(3, "\tpvt_info = %p\n\n", edac_dev
->pvt_info
);
51 #endif /* CONFIG_EDAC_DEBUG */
54 * @off_val: zero, 1, or other based offset
56 struct edac_device_ctl_info
*
57 edac_device_alloc_ctl_info(unsigned pvt_sz
, char *dev_name
, unsigned nr_instances
,
58 char *blk_name
, unsigned nr_blocks
, unsigned off_val
,
61 struct edac_device_block
*dev_blk
, *blk_p
, *blk
;
62 struct edac_device_instance
*dev_inst
, *inst
;
63 struct edac_device_ctl_info
*dev_ctl
;
64 unsigned instance
, block
;
68 edac_dbg(4, "instances=%d blocks=%d\n", nr_instances
, nr_blocks
);
70 dev_ctl
= kzalloc(sizeof(struct edac_device_ctl_info
), GFP_KERNEL
);
74 dev_inst
= kcalloc(nr_instances
, sizeof(struct edac_device_instance
), GFP_KERNEL
);
78 dev_ctl
->instances
= dev_inst
;
80 dev_blk
= kcalloc(nr_instances
* nr_blocks
, sizeof(struct edac_device_block
), GFP_KERNEL
);
84 dev_ctl
->blocks
= dev_blk
;
87 pvt
= kzalloc(pvt_sz
, GFP_KERNEL
);
91 dev_ctl
->pvt_info
= pvt
;
94 dev_ctl
->dev_idx
= device_index
;
95 dev_ctl
->nr_instances
= nr_instances
;
97 /* Default logging of CEs and UEs */
101 /* Name of this edac device */
102 snprintf(dev_ctl
->name
, sizeof(dev_ctl
->name
),"%s", dev_name
);
104 /* Initialize every Instance */
105 for (instance
= 0; instance
< nr_instances
; instance
++) {
106 inst
= &dev_inst
[instance
];
108 inst
->nr_blocks
= nr_blocks
;
109 blk_p
= &dev_blk
[instance
* nr_blocks
];
110 inst
->blocks
= blk_p
;
112 /* name of this instance */
113 snprintf(inst
->name
, sizeof(inst
->name
), "%s%u", dev_name
, instance
);
115 /* Initialize every block in each instance */
116 for (block
= 0; block
< nr_blocks
; block
++) {
118 blk
->instance
= inst
;
119 snprintf(blk
->name
, sizeof(blk
->name
),
120 "%s%d", blk_name
, block
+ off_val
);
122 edac_dbg(4, "instance=%d inst_p=%p block=#%d block_p=%p name='%s'\n",
123 instance
, inst
, block
, blk
, blk
->name
);
127 /* Mark this instance as merely ALLOCATED */
128 dev_ctl
->op_state
= OP_ALLOC
;
131 * Initialize the 'root' kobj for the edac_device controller
133 err
= edac_device_register_sysfs_main_kobj(dev_ctl
);
137 /* at this point, the root kobj is valid, and in order to
138 * 'free' the object, then the function:
139 * edac_device_unregister_sysfs_main_kobj() must be called
140 * which will perform kobj unregistration and the actual free
141 * will occur during the kobject callback operation
147 __edac_device_free_ctl_info(dev_ctl
);
151 EXPORT_SYMBOL_GPL(edac_device_alloc_ctl_info
);
153 void edac_device_free_ctl_info(struct edac_device_ctl_info
*ctl_info
)
155 edac_device_unregister_sysfs_main_kobj(ctl_info
);
157 EXPORT_SYMBOL_GPL(edac_device_free_ctl_info
);
160 * find_edac_device_by_dev
161 * scans the edac_device list for a specific 'struct device *'
163 * lock to be held prior to call: device_ctls_mutex
166 * pointer to control structure managing 'dev'
167 * NULL if not found on list
169 static struct edac_device_ctl_info
*find_edac_device_by_dev(struct device
*dev
)
171 struct edac_device_ctl_info
*edac_dev
;
172 struct list_head
*item
;
176 list_for_each(item
, &edac_device_list
) {
177 edac_dev
= list_entry(item
, struct edac_device_ctl_info
, link
);
179 if (edac_dev
->dev
== dev
)
187 * add_edac_dev_to_global_list
188 * Before calling this function, caller must
189 * assign a unique value to edac_dev->dev_idx.
191 * lock to be held prior to call: device_ctls_mutex
197 static int add_edac_dev_to_global_list(struct edac_device_ctl_info
*edac_dev
)
199 struct list_head
*item
, *insert_before
;
200 struct edac_device_ctl_info
*rover
;
202 insert_before
= &edac_device_list
;
204 /* Determine if already on the list */
205 rover
= find_edac_device_by_dev(edac_dev
->dev
);
206 if (unlikely(rover
!= NULL
))
209 /* Insert in ascending order by 'dev_idx', so find position */
210 list_for_each(item
, &edac_device_list
) {
211 rover
= list_entry(item
, struct edac_device_ctl_info
, link
);
213 if (rover
->dev_idx
>= edac_dev
->dev_idx
) {
214 if (unlikely(rover
->dev_idx
== edac_dev
->dev_idx
))
217 insert_before
= item
;
222 list_add_tail_rcu(&edac_dev
->link
, insert_before
);
226 edac_printk(KERN_WARNING
, EDAC_MC
,
227 "%s (%s) %s %s already assigned %d\n",
228 dev_name(rover
->dev
), edac_dev_name(rover
),
229 rover
->mod_name
, rover
->ctl_name
, rover
->dev_idx
);
233 edac_printk(KERN_WARNING
, EDAC_MC
,
234 "bug in low-level driver: attempt to assign\n"
235 " duplicate dev_idx %d in %s()\n", rover
->dev_idx
,
241 * del_edac_device_from_global_list
243 static void del_edac_device_from_global_list(struct edac_device_ctl_info
246 list_del_rcu(&edac_device
->link
);
248 /* these are for safe removal of devices from global list while
249 * NMI handlers may be traversing list
252 INIT_LIST_HEAD(&edac_device
->link
);
256 * edac_device_workq_function
257 * performs the operation scheduled by a workq request
259 * this workq is embedded within an edac_device_ctl_info
260 * structure, that needs to be polled for possible error events.
262 * This operation is to acquire the list mutex lock
263 * (thus preventing insertation or deletion)
264 * and then call the device's poll function IFF this device is
265 * running polled and there is a poll function defined.
267 static void edac_device_workq_function(struct work_struct
*work_req
)
269 struct delayed_work
*d_work
= to_delayed_work(work_req
);
270 struct edac_device_ctl_info
*edac_dev
= to_edac_device_ctl_work(d_work
);
272 mutex_lock(&device_ctls_mutex
);
274 /* If we are being removed, bail out immediately */
275 if (edac_dev
->op_state
== OP_OFFLINE
) {
276 mutex_unlock(&device_ctls_mutex
);
280 /* Only poll controllers that are running polled and have a check */
281 if ((edac_dev
->op_state
== OP_RUNNING_POLL
) &&
282 (edac_dev
->edac_check
!= NULL
)) {
283 edac_dev
->edac_check(edac_dev
);
286 mutex_unlock(&device_ctls_mutex
);
288 /* Reschedule the workq for the next time period to start again
289 * if the number of msec is for 1 sec, then adjust to the next
290 * whole one second to save timers firing all over the period
291 * between integral seconds
293 if (edac_dev
->poll_msec
== DEFAULT_POLL_INTERVAL
)
294 edac_queue_work(&edac_dev
->work
, round_jiffies_relative(edac_dev
->delay
));
296 edac_queue_work(&edac_dev
->work
, edac_dev
->delay
);
300 * edac_device_workq_setup
301 * initialize a workq item for this edac_device instance
302 * passing in the new delay period in msec
304 static void edac_device_workq_setup(struct edac_device_ctl_info
*edac_dev
,
309 /* take the arg 'msec' and set it into the control structure
310 * to used in the time period calculation
311 * then calc the number of jiffies that represents
313 edac_dev
->poll_msec
= msec
;
314 edac_dev
->delay
= msecs_to_jiffies(msec
);
316 INIT_DELAYED_WORK(&edac_dev
->work
, edac_device_workq_function
);
318 /* optimize here for the 1 second case, which will be normal value, to
319 * fire ON the 1 second time event. This helps reduce all sorts of
320 * timers firing on sub-second basis, while they are happy
321 * to fire together on the 1 second exactly
323 if (edac_dev
->poll_msec
== DEFAULT_POLL_INTERVAL
)
324 edac_queue_work(&edac_dev
->work
, round_jiffies_relative(edac_dev
->delay
));
326 edac_queue_work(&edac_dev
->work
, edac_dev
->delay
);
330 * edac_device_workq_teardown
331 * stop the workq processing on this edac_dev
333 static void edac_device_workq_teardown(struct edac_device_ctl_info
*edac_dev
)
335 if (!edac_dev
->edac_check
)
338 edac_dev
->op_state
= OP_OFFLINE
;
340 edac_stop_work(&edac_dev
->work
);
344 * edac_device_reset_delay_period
346 * need to stop any outstanding workq queued up at this time
347 * because we will be resetting the sleep time.
348 * Then restart the workq on the new delay
350 void edac_device_reset_delay_period(struct edac_device_ctl_info
*edac_dev
,
353 edac_dev
->poll_msec
= msec
;
354 edac_dev
->delay
= msecs_to_jiffies(msec
);
356 /* See comment in edac_device_workq_setup() above */
357 if (edac_dev
->poll_msec
== DEFAULT_POLL_INTERVAL
)
358 edac_mod_work(&edac_dev
->work
, round_jiffies_relative(edac_dev
->delay
));
360 edac_mod_work(&edac_dev
->work
, edac_dev
->delay
);
363 int edac_device_alloc_index(void)
365 static atomic_t device_indexes
= ATOMIC_INIT(0);
367 return atomic_inc_return(&device_indexes
) - 1;
369 EXPORT_SYMBOL_GPL(edac_device_alloc_index
);
371 int edac_device_add_device(struct edac_device_ctl_info
*edac_dev
)
375 #ifdef CONFIG_EDAC_DEBUG
376 if (edac_debug_level
>= 3)
377 edac_device_dump_device(edac_dev
);
379 mutex_lock(&device_ctls_mutex
);
381 if (add_edac_dev_to_global_list(edac_dev
))
384 /* set load time so that error rate can be tracked */
385 edac_dev
->start_time
= jiffies
;
387 /* create this instance's sysfs entries */
388 if (edac_device_create_sysfs(edac_dev
)) {
389 edac_device_printk(edac_dev
, KERN_WARNING
,
390 "failed to create sysfs device\n");
394 /* If there IS a check routine, then we are running POLLED */
395 if (edac_dev
->edac_check
!= NULL
) {
396 /* This instance is NOW RUNNING */
397 edac_dev
->op_state
= OP_RUNNING_POLL
;
399 edac_device_workq_setup(edac_dev
, edac_dev
->poll_msec
?: DEFAULT_POLL_INTERVAL
);
401 edac_dev
->op_state
= OP_RUNNING_INTERRUPT
;
404 /* Report action taken */
405 edac_device_printk(edac_dev
, KERN_INFO
,
406 "Giving out device to module %s controller %s: DEV %s (%s)\n",
407 edac_dev
->mod_name
, edac_dev
->ctl_name
, edac_dev
->dev_name
,
408 edac_op_state_to_string(edac_dev
->op_state
));
410 mutex_unlock(&device_ctls_mutex
);
414 /* Some error, so remove the entry from the lsit */
415 del_edac_device_from_global_list(edac_dev
);
418 mutex_unlock(&device_ctls_mutex
);
421 EXPORT_SYMBOL_GPL(edac_device_add_device
);
423 struct edac_device_ctl_info
*edac_device_del_device(struct device
*dev
)
425 struct edac_device_ctl_info
*edac_dev
;
429 mutex_lock(&device_ctls_mutex
);
431 /* Find the structure on the list, if not there, then leave */
432 edac_dev
= find_edac_device_by_dev(dev
);
433 if (edac_dev
== NULL
) {
434 mutex_unlock(&device_ctls_mutex
);
438 /* mark this instance as OFFLINE */
439 edac_dev
->op_state
= OP_OFFLINE
;
441 /* deregister from global list */
442 del_edac_device_from_global_list(edac_dev
);
444 mutex_unlock(&device_ctls_mutex
);
446 /* clear workq processing on this instance */
447 edac_device_workq_teardown(edac_dev
);
449 /* Tear down the sysfs entries for this instance */
450 edac_device_remove_sysfs(edac_dev
);
452 edac_printk(KERN_INFO
, EDAC_MC
,
453 "Removed device %d for %s %s: DEV %s\n",
455 edac_dev
->mod_name
, edac_dev
->ctl_name
, edac_dev_name(edac_dev
));
459 EXPORT_SYMBOL_GPL(edac_device_del_device
);
461 static inline int edac_device_get_log_ce(struct edac_device_ctl_info
*edac_dev
)
463 return edac_dev
->log_ce
;
466 static inline int edac_device_get_log_ue(struct edac_device_ctl_info
*edac_dev
)
468 return edac_dev
->log_ue
;
471 static inline int edac_device_get_panic_on_ue(struct edac_device_ctl_info
474 return edac_dev
->panic_on_ue
;
477 void edac_device_handle_ce_count(struct edac_device_ctl_info
*edac_dev
,
478 unsigned int count
, int inst_nr
, int block_nr
,
481 struct edac_device_instance
*instance
;
482 struct edac_device_block
*block
= NULL
;
487 if ((inst_nr
>= edac_dev
->nr_instances
) || (inst_nr
< 0)) {
488 edac_device_printk(edac_dev
, KERN_ERR
,
489 "INTERNAL ERROR: 'instance' out of range "
490 "(%d >= %d)\n", inst_nr
,
491 edac_dev
->nr_instances
);
495 instance
= edac_dev
->instances
+ inst_nr
;
497 if ((block_nr
>= instance
->nr_blocks
) || (block_nr
< 0)) {
498 edac_device_printk(edac_dev
, KERN_ERR
,
499 "INTERNAL ERROR: instance %d 'block' "
500 "out of range (%d >= %d)\n",
502 instance
->nr_blocks
);
506 if (instance
->nr_blocks
> 0) {
507 block
= instance
->blocks
+ block_nr
;
508 block
->counters
.ce_count
+= count
;
511 /* Propagate the count up the 'totals' tree */
512 instance
->counters
.ce_count
+= count
;
513 edac_dev
->counters
.ce_count
+= count
;
515 if (edac_device_get_log_ce(edac_dev
))
516 edac_device_printk(edac_dev
, KERN_WARNING
,
517 "CE: %s instance: %s block: %s count: %d '%s'\n",
518 edac_dev
->ctl_name
, instance
->name
,
519 block
? block
->name
: "N/A", count
, msg
);
521 EXPORT_SYMBOL_GPL(edac_device_handle_ce_count
);
523 void edac_device_handle_ue_count(struct edac_device_ctl_info
*edac_dev
,
524 unsigned int count
, int inst_nr
, int block_nr
,
527 struct edac_device_instance
*instance
;
528 struct edac_device_block
*block
= NULL
;
533 if ((inst_nr
>= edac_dev
->nr_instances
) || (inst_nr
< 0)) {
534 edac_device_printk(edac_dev
, KERN_ERR
,
535 "INTERNAL ERROR: 'instance' out of range "
536 "(%d >= %d)\n", inst_nr
,
537 edac_dev
->nr_instances
);
541 instance
= edac_dev
->instances
+ inst_nr
;
543 if ((block_nr
>= instance
->nr_blocks
) || (block_nr
< 0)) {
544 edac_device_printk(edac_dev
, KERN_ERR
,
545 "INTERNAL ERROR: instance %d 'block' "
546 "out of range (%d >= %d)\n",
548 instance
->nr_blocks
);
552 if (instance
->nr_blocks
> 0) {
553 block
= instance
->blocks
+ block_nr
;
554 block
->counters
.ue_count
+= count
;
557 /* Propagate the count up the 'totals' tree */
558 instance
->counters
.ue_count
+= count
;
559 edac_dev
->counters
.ue_count
+= count
;
561 if (edac_device_get_log_ue(edac_dev
))
562 edac_device_printk(edac_dev
, KERN_EMERG
,
563 "UE: %s instance: %s block: %s count: %d '%s'\n",
564 edac_dev
->ctl_name
, instance
->name
,
565 block
? block
->name
: "N/A", count
, msg
);
567 if (edac_device_get_panic_on_ue(edac_dev
))
568 panic("EDAC %s: UE instance: %s block %s count: %d '%s'\n",
569 edac_dev
->ctl_name
, instance
->name
,
570 block
? block
->name
: "N/A", count
, msg
);
572 EXPORT_SYMBOL_GPL(edac_device_handle_ue_count
);