edac_device.c 17.0 KB
Newer Older
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22

/*
 * edac_device.c
 * (C) 2007 www.douglaskthompson.com
 *
 * This file may be distributed under the terms of the
 * GNU General Public License.
 *
 * Written by Doug Thompson <norsk5@xmission.com>
 *
 * edac_device API implementation
 * 19 Jan 2007
 */

#include <linux/module.h>
#include <linux/types.h>
#include <linux/smp.h>
#include <linux/init.h>
#include <linux/sysctl.h>
#include <linux/highmem.h>
#include <linux/timer.h>
#include <linux/slab.h>
23
#include <linux/jiffies.h>
24 25 26 27 28 29 30 31 32 33 34
#include <linux/spinlock.h>
#include <linux/list.h>
#include <linux/sysdev.h>
#include <linux/ctype.h>
#include <linux/workqueue.h>
#include <asm/uaccess.h>
#include <asm/page.h>

#include "edac_core.h"
#include "edac_module.h"

35
/* lock to memory controller's control array 'edac_device_list' */
36
static DEFINE_MUTEX(device_ctls_mutex);
37 38 39 40 41
static struct list_head edac_device_list = LIST_HEAD_INIT(edac_device_list);

#ifdef CONFIG_EDAC_DEBUG
static void edac_device_dump_device(struct edac_device_ctl_info *edac_dev)
{
42
	debugf3("\tedac_dev = %p dev_idx=%d \n", edac_dev, edac_dev->dev_idx);
43 44 45 46 47 48
	debugf4("\tedac_dev->edac_check = %p\n", edac_dev->edac_check);
	debugf3("\tdev = %p\n", edac_dev->dev);
	debugf3("\tmod_name:ctl_name = %s:%s\n",
		edac_dev->mod_name, edac_dev->ctl_name);
	debugf3("\tpvt_info = %p\n\n", edac_dev->pvt_info);
}
49
#endif				/* CONFIG_EDAC_DEBUG */
50 51

/*
52 53 54 55 56 57 58 59 60 61 62 63
 * edac_device_alloc_ctl_info()
 *	Allocate a new edac device control info structure
 *
 *	The control structure is allocated in complete chunk
 *	from the OS. It is in turn sub allocated to the
 *	various objects that compose the struture
 *
 *	The structure has a 'nr_instance' array within itself.
 *	Each instance represents a major component
 *		Example:  L1 cache and L2 cache are 2 instance components
 *
 *	Within each instance is an array of 'nr_blocks' blockoffsets
64 65 66
 */
struct edac_device_ctl_info *edac_device_alloc_ctl_info(
	unsigned sz_private,
67 68 69 70
	char *edac_device_name, unsigned nr_instances,
	char *edac_block_name, unsigned nr_blocks,
	unsigned offset_value,		/* zero, 1, or other based offset */
	struct edac_attrib_spec *attrib_spec, unsigned nr_attribs)
71 72 73 74 75 76 77 78 79 80 81
{
	struct edac_device_ctl_info *dev_ctl;
	struct edac_device_instance *dev_inst, *inst;
	struct edac_device_block *dev_blk, *blk_p, *blk;
	struct edac_attrib *dev_attrib, *attrib_p, *attrib;
	unsigned total_size;
	unsigned count;
	unsigned instance, block, attr;
	void *pvt;

	debugf1("%s() instances=%d blocks=%d\n",
82
		__func__, nr_instances, nr_blocks);
83 84 85 86 87 88

	/* Figure out the offsets of the various items from the start of an
	 * ctl_info structure.  We want the alignment of each item
	 * to be at least as stringent as what the compiler would
	 * provide if we could simply hardcode everything into a single struct.
	 */
89
	dev_ctl = (struct edac_device_ctl_info *)NULL;
90 91

	/* Calc the 'end' offset past the ctl_info structure */
92
	dev_inst = edac_align_ptr(&dev_ctl[1], sizeof(*dev_inst));
93 94

	/* Calc the 'end' offset past the instance array */
95
	dev_blk = edac_align_ptr(&dev_inst[nr_instances], sizeof(*dev_blk));
96 97 98

	/* Calc the 'end' offset past the dev_blk array */
	count = nr_instances * nr_blocks;
99
	dev_attrib = edac_align_ptr(&dev_blk[count], sizeof(*dev_attrib));
100 101 102 103 104 105

	/* Check for case of NO attributes specified */
	if (nr_attribs > 0)
		count *= nr_attribs;

	/* Calc the 'end' offset past the attributes array */
106 107
	pvt = edac_align_ptr(&dev_attrib[count], sz_private);
	total_size = ((unsigned long)pvt) + sz_private;
108 109

	/* Allocate the amount of memory for the set of control structures */
110 111
	dev_ctl = kzalloc(total_size, GFP_KERNEL);
	if (dev_ctl == NULL)
112 113 114 115 116 117
		return NULL;

	/* Adjust pointers so they point within the memory we just allocated
	 * rather than an imaginary chunk of memory located at address 0.
	 */
	dev_inst = (struct edac_device_instance *)
118
		(((char *)dev_ctl) + ((unsigned long)dev_inst));
119
	dev_blk = (struct edac_device_block *)
120
		(((char *)dev_ctl) + ((unsigned long)dev_blk));
121
	dev_attrib = (struct edac_attrib *)
122
		(((char *)dev_ctl) + ((unsigned long)dev_attrib));
123
	pvt = sz_private ? (((char *)dev_ctl) + ((unsigned long)pvt)) : NULL;
124 125 126 127 128

	dev_ctl->nr_instances = nr_instances;
	dev_ctl->instances = dev_inst;
	dev_ctl->pvt_info = pvt;

129 130
	/* Name of this edac device */
	snprintf(dev_ctl->name,sizeof(dev_ctl->name),"%s",edac_device_name);
131 132 133 134 135 136 137 138 139 140 141

	/* Initialize every Instance */
	for (instance = 0; instance < nr_instances; instance++) {
		inst = &dev_inst[instance];
		inst->ctl = dev_ctl;
		inst->nr_blocks = nr_blocks;
		blk_p = &dev_blk[instance * nr_blocks];
		inst->blocks = blk_p;

		/* name of this instance */
		snprintf(inst->name, sizeof(inst->name),
142
			 "%s%u", edac_device_name, instance);
143 144

		/* Initialize every block in each instance */
145
		for (block = 0; block < nr_blocks; block++) {
146 147 148 149 150 151
			blk = &blk_p[block];
			blk->instance = inst;
			blk->nr_attribs = nr_attribs;
			attrib_p = &dev_attrib[block * nr_attribs];
			blk->attribs = attrib_p;
			snprintf(blk->name, sizeof(blk->name),
152
				 "%s%d", edac_block_name, block+offset_value);
153 154

			debugf1("%s() instance=%d block=%d name=%s\n",
155
				__func__, instance, block, blk->name);
156 157 158 159 160 161 162 163 164 165 166

			if (attrib_spec != NULL) {
				/* when there is an attrib_spec passed int then
				 * Initialize every attrib of each block
				 */
				for (attr = 0; attr < nr_attribs; attr++) {
					attrib = &attrib_p[attr];
					attrib->block = blk;

					/* Link each attribute to the caller's
					 * spec entry, for name and type
167
					 */
168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185
					attrib->spec = &attrib_spec[attr];
				}
			}
		}
	}

	/* Mark this instance as merely ALLOCATED */
	dev_ctl->op_state = OP_ALLOC;

	return dev_ctl;
}
EXPORT_SYMBOL_GPL(edac_device_alloc_ctl_info);

/*
 * edac_device_free_ctl_info()
 *	frees the memory allocated by the edac_device_alloc_ctl_info()
 *	function
 */
186 187
void edac_device_free_ctl_info(struct edac_device_ctl_info *ctl_info)
{
188 189
	kfree(ctl_info);
}
190
EXPORT_SYMBOL_GPL(edac_device_free_ctl_info);
191 192 193 194

/*
 * find_edac_device_by_dev
 *	scans the edac_device list for a specific 'struct device *'
195 196 197 198 199 200
 *
 *	lock to be held prior to call:	device_ctls_mutex
 *
 *	Return:
 *		pointer to control structure managing 'dev'
 *		NULL if not found on list
201
 */
202
static struct edac_device_ctl_info *find_edac_device_by_dev(struct device *dev)
203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222
{
	struct edac_device_ctl_info *edac_dev;
	struct list_head *item;

	debugf3("%s()\n", __func__);

	list_for_each(item, &edac_device_list) {
		edac_dev = list_entry(item, struct edac_device_ctl_info, link);

		if (edac_dev->dev == dev)
			return edac_dev;
	}

	return NULL;
}

/*
 * add_edac_dev_to_global_list
 *	Before calling this function, caller must
 *	assign a unique value to edac_dev->dev_idx.
223 224 225
 *
 *	lock to be held prior to call:	device_ctls_mutex
 *
226 227 228 229
 *	Return:
 *		0 on success
 *		1 on failure.
 */
230
static int add_edac_dev_to_global_list(struct edac_device_ctl_info *edac_dev)
231 232 233 234 235 236 237
{
	struct list_head *item, *insert_before;
	struct edac_device_ctl_info *rover;

	insert_before = &edac_device_list;

	/* Determine if already on the list */
238 239
	rover = find_edac_device_by_dev(edac_dev->dev);
	if (unlikely(rover != NULL))
240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257
		goto fail0;

	/* Insert in ascending order by 'dev_idx', so find position */
	list_for_each(item, &edac_device_list) {
		rover = list_entry(item, struct edac_device_ctl_info, link);

		if (rover->dev_idx >= edac_dev->dev_idx) {
			if (unlikely(rover->dev_idx == edac_dev->dev_idx))
				goto fail1;

			insert_before = item;
			break;
		}
	}

	list_add_tail_rcu(&edac_dev->link, insert_before);
	return 0;

258
fail0:
259
	edac_printk(KERN_WARNING, EDAC_MC,
260 261 262
			"%s (%s) %s %s already assigned %d\n",
			rover->dev->bus_id, dev_name(rover),
			rover->mod_name, rover->ctl_name, rover->dev_idx);
263 264
	return 1;

265
fail1:
266
	edac_printk(KERN_WARNING, EDAC_MC,
267 268 269
			"bug in low-level driver: attempt to assign\n"
			"    duplicate dev_idx %d in %s()\n", rover->dev_idx,
			__func__);
270 271 272 273 274
	return 1;
}

/*
 * complete_edac_device_list_del
275 276
 *
 *	callback function when reference count is zero
277 278 279 280 281 282 283 284 285 286 287 288
 */
static void complete_edac_device_list_del(struct rcu_head *head)
{
	struct edac_device_ctl_info *edac_dev;

	edac_dev = container_of(head, struct edac_device_ctl_info, rcu);
	INIT_LIST_HEAD(&edac_dev->link);
	complete(&edac_dev->complete);
}

/*
 * del_edac_device_from_global_list
289 290 291
 *
 *	remove the RCU, setup for a callback call, then wait for the
 *	callback to occur
292
 */
293
static void del_edac_device_from_global_list(struct edac_device_ctl_info
294
						*edac_device)
295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310
{
	list_del_rcu(&edac_device->link);
	init_completion(&edac_device->complete);
	call_rcu(&edac_device->rcu, complete_edac_device_list_del);
	wait_for_completion(&edac_device->complete);
}

/**
 * edac_device_find
 *	Search for a edac_device_ctl_info structure whose index is 'idx'.
 *
 * If found, return a pointer to the structure.
 * Else return NULL.
 *
 * Caller must hold device_ctls_mutex.
 */
311
struct edac_device_ctl_info *edac_device_find(int idx)
312 313 314 315 316 317 318 319 320 321 322 323 324 325 326 327 328 329 330
{
	struct list_head *item;
	struct edac_device_ctl_info *edac_dev;

	/* Iterate over list, looking for exact match of ID */
	list_for_each(item, &edac_device_list) {
		edac_dev = list_entry(item, struct edac_device_ctl_info, link);

		if (edac_dev->dev_idx >= idx) {
			if (edac_dev->dev_idx == idx)
				return edac_dev;

			/* not on list, so terminate early */
			break;
		}
	}

	return NULL;
}
331
EXPORT_SYMBOL_GPL(edac_device_find);
332 333

/*
334
 * edac_device_workq_function
335 336
 *	performs the operation scheduled by a workq request
 */
337
static void edac_device_workq_function(struct work_struct *work_req)
338
{
339 340
	struct delayed_work *d_work = (struct delayed_work *)work_req;
	struct edac_device_ctl_info *edac_dev = to_edac_device_ctl_work(d_work);
341 342

	//debugf0("%s() here and running\n", __func__);
343
	mutex_lock(&device_ctls_mutex);
344 345 346

	/* Only poll controllers that are running polled and have a check */
	if ((edac_dev->op_state == OP_RUNNING_POLL) &&
347 348
		(edac_dev->edac_check != NULL)) {
			edac_dev->edac_check(edac_dev);
349 350
	}

351
	mutex_unlock(&device_ctls_mutex);
352 353

	/* Reschedule */
354
	queue_delayed_work(edac_workqueue, &edac_dev->work, edac_dev->delay);
355 356 357
}

/*
358
 * edac_device_workq_setup
359 360 361
 *	initialize a workq item for this edac_device instance
 *	passing in the new delay period in msec
 */
362
void edac_device_workq_setup(struct edac_device_ctl_info *edac_dev,
363
				unsigned msec)
364 365 366 367
{
	debugf0("%s()\n", __func__);

	edac_dev->poll_msec = msec;
368
	edac_dev->delay = msecs_to_jiffies(msec);	/* Calc delay jiffies */
369

370 371
	INIT_DELAYED_WORK(&edac_dev->work, edac_device_workq_function);
	queue_delayed_work(edac_workqueue, &edac_dev->work, edac_dev->delay);
372 373 374
}

/*
375
 * edac_device_workq_teardown
376 377
 *	stop the workq processing on this edac_dev
 */
378
void edac_device_workq_teardown(struct edac_device_ctl_info *edac_dev)
379 380 381 382 383 384 385 386 387 388 389 390 391 392
{
	int status;

	status = cancel_delayed_work(&edac_dev->work);
	if (status == 0) {
		/* workq instance might be running, wait for it */
		flush_workqueue(edac_workqueue);
	}
}

/*
 * edac_device_reset_delay_period
 */

393
void edac_device_reset_delay_period(struct edac_device_ctl_info *edac_dev,
394
					unsigned long value)
395
{
396
	mutex_lock(&device_ctls_mutex);
397 398

	/* cancel the current workq request */
399
	edac_device_workq_teardown(edac_dev);
400 401

	/* restart the workq request, with new delay value */
402
	edac_device_workq_setup(edac_dev, value);
403

404
	mutex_unlock(&device_ctls_mutex);
405 406 407 408 409 410 411 412 413 414 415 416 417 418 419 420 421 422 423 424 425 426 427
}

/**
 * edac_device_add_device: Insert the 'edac_dev' structure into the
 * edac_device global list and create sysfs entries associated with
 * edac_device structure.
 * @edac_device: pointer to the edac_device structure to be added to the list
 * @edac_idx: A unique numeric identifier to be assigned to the
 * 'edac_device' structure.
 *
 * Return:
 *	0	Success
 *	!0	Failure
 */
int edac_device_add_device(struct edac_device_ctl_info *edac_dev, int edac_idx)
{
	debugf0("%s()\n", __func__);

	edac_dev->dev_idx = edac_idx;
#ifdef CONFIG_EDAC_DEBUG
	if (edac_debug_level >= 3)
		edac_device_dump_device(edac_dev);
#endif
428
	mutex_lock(&device_ctls_mutex);
429 430 431 432 433 434 435 436 437 438

	if (add_edac_dev_to_global_list(edac_dev))
		goto fail0;

	/* set load time so that error rate can be tracked */
	edac_dev->start_time = jiffies;

	/* create this instance's sysfs entries */
	if (edac_device_create_sysfs(edac_dev)) {
		edac_device_printk(edac_dev, KERN_WARNING,
439
					"failed to create sysfs device\n");
440 441 442 443 444 445 446 447
		goto fail1;
	}

	/* If there IS a check routine, then we are running POLLED */
	if (edac_dev->edac_check != NULL) {
		/* This instance is NOW RUNNING */
		edac_dev->op_state = OP_RUNNING_POLL;

448 449 450 451 452
		/*
		 * enable workq processing on this instance,
		 * default = 1000 msec
		 */
		edac_device_workq_setup(edac_dev, 1000);
453 454 455 456 457 458
	} else {
		edac_dev->op_state = OP_RUNNING_INTERRUPT;
	}

	/* Report action taken */
	edac_device_printk(edac_dev, KERN_INFO,
459 460 461 462 463
				"Giving out device to module '%s' controller "
				"'%s': DEV '%s' (%s)\n",
				edac_dev->mod_name,
				edac_dev->ctl_name,
				dev_name(edac_dev),
464
				edac_op_state_to_string(edac_dev->op_state));
465

466
	mutex_unlock(&device_ctls_mutex);
467 468
	return 0;

469
fail1:
470 471 472
	/* Some error, so remove the entry from the lsit */
	del_edac_device_from_global_list(edac_dev);

473
fail0:
474
	mutex_unlock(&device_ctls_mutex);
475 476 477 478 479 480 481 482 483 484 485 486 487 488 489 490 491
	return 1;
}
EXPORT_SYMBOL_GPL(edac_device_add_device);

/**
 * edac_device_del_device:
 *	Remove sysfs entries for specified edac_device structure and
 *	then remove edac_device structure from global list
 *
 * @pdev:
 *	Pointer to 'struct device' representing edac_device
 *	structure to remove.
 *
 * Return:
 *	Pointer to removed edac_device structure,
 *	OR NULL if device not found.
 */
492
struct edac_device_ctl_info *edac_device_del_device(struct device *dev)
493 494 495 496 497
{
	struct edac_device_ctl_info *edac_dev;

	debugf0("MC: %s()\n", __func__);

498
	mutex_lock(&device_ctls_mutex);
499

500 501 502
	/* Find the structure on the list, if not there, then leave */
	edac_dev = find_edac_device_by_dev(dev);
	if (edac_dev == NULL) {
503
		mutex_unlock(&device_ctls_mutex);
504 505 506 507 508 509 510
		return NULL;
	}

	/* mark this instance as OFFLINE */
	edac_dev->op_state = OP_OFFLINE;

	/* clear workq processing on this instance */
511
	edac_device_workq_teardown(edac_dev);
512 513 514 515 516 517 518

	/* Tear down the sysfs entries for this instance */
	edac_device_remove_sysfs(edac_dev);

	/* deregister from global list */
	del_edac_device_from_global_list(edac_dev);

519
	mutex_unlock(&device_ctls_mutex);
520 521

	edac_printk(KERN_INFO, EDAC_MC,
522 523 524
		"Removed device %d for %s %s: DEV %s\n",
		edac_dev->dev_idx,
		edac_dev->mod_name, edac_dev->ctl_name, dev_name(edac_dev));
525 526 527

	return edac_dev;
}
528
EXPORT_SYMBOL_GPL(edac_device_del_device);
529 530 531 532 533 534 535 536 537 538 539

static inline int edac_device_get_log_ce(struct edac_device_ctl_info *edac_dev)
{
	return edac_dev->log_ce;
}

static inline int edac_device_get_log_ue(struct edac_device_ctl_info *edac_dev)
{
	return edac_dev->log_ue;
}

540
static inline int edac_device_get_panic_on_ue(struct edac_device_ctl_info
541
					*edac_dev)
542 543 544 545 546 547 548 549 550
{
	return edac_dev->panic_on_ue;
}

/*
 * edac_device_handle_ce
 *	perform a common output and handling of an 'edac_dev' CE event
 */
void edac_device_handle_ce(struct edac_device_ctl_info *edac_dev,
551
			int inst_nr, int block_nr, const char *msg)
552 553 554 555 556 557
{
	struct edac_device_instance *instance;
	struct edac_device_block *block = NULL;

	if ((inst_nr >= edac_dev->nr_instances) || (inst_nr < 0)) {
		edac_device_printk(edac_dev, KERN_ERR,
558 559 560
				"INTERNAL ERROR: 'instance' out of range "
				"(%d >= %d)\n", inst_nr,
				edac_dev->nr_instances);
561 562 563 564 565 566 567
		return;
	}

	instance = edac_dev->instances + inst_nr;

	if ((block_nr >= instance->nr_blocks) || (block_nr < 0)) {
		edac_device_printk(edac_dev, KERN_ERR,
568 569 570 571
				"INTERNAL ERROR: instance %d 'block' "
				"out of range (%d >= %d)\n",
				inst_nr, block_nr,
				instance->nr_blocks);
572 573 574 575 576 577 578 579 580 581 582 583 584 585
		return;
	}

	if (instance->nr_blocks > 0) {
		block = instance->blocks + block_nr;
		block->counters.ce_count++;
	}

	/* Propogate the count up the 'totals' tree */
	instance->counters.ce_count++;
	edac_dev->counters.ce_count++;

	if (edac_device_get_log_ce(edac_dev))
		edac_device_printk(edac_dev, KERN_WARNING,
586 587 588
				"CE: %s instance: %s block: %s '%s'\n",
				edac_dev->ctl_name, instance->name,
				block ? block->name : "N/A", msg);
589 590 591 592 593 594 595 596
}
EXPORT_SYMBOL_GPL(edac_device_handle_ce);

/*
 * edac_device_handle_ue
 *	perform a common output and handling of an 'edac_dev' UE event
 */
void edac_device_handle_ue(struct edac_device_ctl_info *edac_dev,
597
			int inst_nr, int block_nr, const char *msg)
598 599 600 601 602 603
{
	struct edac_device_instance *instance;
	struct edac_device_block *block = NULL;

	if ((inst_nr >= edac_dev->nr_instances) || (inst_nr < 0)) {
		edac_device_printk(edac_dev, KERN_ERR,
604 605 606
				"INTERNAL ERROR: 'instance' out of range "
				"(%d >= %d)\n", inst_nr,
				edac_dev->nr_instances);
607 608 609 610 611 612 613
		return;
	}

	instance = edac_dev->instances + inst_nr;

	if ((block_nr >= instance->nr_blocks) || (block_nr < 0)) {
		edac_device_printk(edac_dev, KERN_ERR,
614 615 616 617
				"INTERNAL ERROR: instance %d 'block' "
				"out of range (%d >= %d)\n",
				inst_nr, block_nr,
				instance->nr_blocks);
618 619 620 621 622 623 624 625 626 627 628 629 630 631
		return;
	}

	if (instance->nr_blocks > 0) {
		block = instance->blocks + block_nr;
		block->counters.ue_count++;
	}

	/* Propogate the count up the 'totals' tree */
	instance->counters.ue_count++;
	edac_dev->counters.ue_count++;

	if (edac_device_get_log_ue(edac_dev))
		edac_device_printk(edac_dev, KERN_EMERG,
632 633 634
				"UE: %s instance: %s block: %s '%s'\n",
				edac_dev->ctl_name, instance->name,
				block ? block->name : "N/A", msg);
635 636

	if (edac_device_get_panic_on_ue(edac_dev))
637
		panic("EDAC %s: UE instance: %s block %s '%s'\n",
638 639
			edac_dev->ctl_name, instance->name,
			block ? block->name : "N/A", msg);
640
}
641
EXPORT_SYMBOL_GPL(edac_device_handle_ue);