]> bbs.cooldavid.org Git - net-next-2.6.git/blame - drivers/edac/edac_mc.c
Merge branch 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/jbarnes...
[net-next-2.6.git] / drivers / edac / edac_mc.c
CommitLineData
da9bb1d2
AC
1/*
2 * edac_mc kernel module
49c0dab7 3 * (C) 2005, 2006 Linux Networx (http://lnxi.com)
da9bb1d2
AC
4 * This file may be distributed under the terms of the
5 * GNU General Public License.
6 *
7 * Written by Thayne Harbaugh
8 * Based on work by Dan Hollis <goemon at anime dot net> and others.
9 * http://www.anime.net/~goemon/linux-ecc/
10 *
11 * Modified by Dave Peterson and Doug Thompson
12 *
13 */
14
da9bb1d2
AC
15#include <linux/module.h>
16#include <linux/proc_fs.h>
17#include <linux/kernel.h>
18#include <linux/types.h>
19#include <linux/smp.h>
20#include <linux/init.h>
21#include <linux/sysctl.h>
22#include <linux/highmem.h>
23#include <linux/timer.h>
24#include <linux/slab.h>
25#include <linux/jiffies.h>
26#include <linux/spinlock.h>
27#include <linux/list.h>
28#include <linux/sysdev.h>
29#include <linux/ctype.h>
c0d12172 30#include <linux/edac.h>
da9bb1d2
AC
31#include <asm/uaccess.h>
32#include <asm/page.h>
33#include <asm/edac.h>
20bcb7a8 34#include "edac_core.h"
7c9281d7 35#include "edac_module.h"
da9bb1d2 36
da9bb1d2 37/* lock to memory controller's control array */
63b7df91 38static DEFINE_MUTEX(mem_ctls_mutex);
ff6ac2a6 39static LIST_HEAD(mc_devices);
da9bb1d2 40
da9bb1d2
AC
41#ifdef CONFIG_EDAC_DEBUG
42
2da1c119 43static void edac_mc_dump_channel(struct channel_info *chan)
da9bb1d2
AC
44{
45 debugf4("\tchannel = %p\n", chan);
46 debugf4("\tchannel->chan_idx = %d\n", chan->chan_idx);
47 debugf4("\tchannel->ce_count = %d\n", chan->ce_count);
48 debugf4("\tchannel->label = '%s'\n", chan->label);
49 debugf4("\tchannel->csrow = %p\n\n", chan->csrow);
50}
51
2da1c119 52static void edac_mc_dump_csrow(struct csrow_info *csrow)
da9bb1d2
AC
53{
54 debugf4("\tcsrow = %p\n", csrow);
55 debugf4("\tcsrow->csrow_idx = %d\n", csrow->csrow_idx);
079708b9 56 debugf4("\tcsrow->first_page = 0x%lx\n", csrow->first_page);
da9bb1d2
AC
57 debugf4("\tcsrow->last_page = 0x%lx\n", csrow->last_page);
58 debugf4("\tcsrow->page_mask = 0x%lx\n", csrow->page_mask);
59 debugf4("\tcsrow->nr_pages = 0x%x\n", csrow->nr_pages);
079708b9 60 debugf4("\tcsrow->nr_channels = %d\n", csrow->nr_channels);
da9bb1d2
AC
61 debugf4("\tcsrow->channels = %p\n", csrow->channels);
62 debugf4("\tcsrow->mci = %p\n\n", csrow->mci);
63}
64
2da1c119 65static void edac_mc_dump_mci(struct mem_ctl_info *mci)
da9bb1d2
AC
66{
67 debugf3("\tmci = %p\n", mci);
68 debugf3("\tmci->mtype_cap = %lx\n", mci->mtype_cap);
69 debugf3("\tmci->edac_ctl_cap = %lx\n", mci->edac_ctl_cap);
70 debugf3("\tmci->edac_cap = %lx\n", mci->edac_cap);
71 debugf4("\tmci->edac_check = %p\n", mci->edac_check);
72 debugf3("\tmci->nr_csrows = %d, csrows = %p\n",
73 mci->nr_csrows, mci->csrows);
37f04581 74 debugf3("\tdev = %p\n", mci->dev);
079708b9 75 debugf3("\tmod_name:ctl_name = %s:%s\n", mci->mod_name, mci->ctl_name);
da9bb1d2
AC
76 debugf3("\tpvt_info = %p\n\n", mci->pvt_info);
77}
78
079708b9 79#endif /* CONFIG_EDAC_DEBUG */
da9bb1d2
AC
80
81/* 'ptr' points to a possibly unaligned item X such that sizeof(X) is 'size'.
82 * Adjust 'ptr' so that its alignment is at least as stringent as what the
83 * compiler would provide for X and return the aligned result.
84 *
85 * If 'size' is a constant, the compiler will optimize this whole function
86 * down to either a no-op or the addition of a constant to the value of 'ptr'.
87 */
7391c6dc 88void *edac_align_ptr(void *ptr, unsigned size)
da9bb1d2
AC
89{
90 unsigned align, r;
91
92 /* Here we assume that the alignment of a "long long" is the most
93 * stringent alignment that the compiler will ever provide by default.
94 * As far as I know, this is a reasonable assumption.
95 */
96 if (size > sizeof(long))
97 align = sizeof(long long);
98 else if (size > sizeof(int))
99 align = sizeof(long);
100 else if (size > sizeof(short))
101 align = sizeof(int);
102 else if (size > sizeof(char))
103 align = sizeof(short);
104 else
079708b9 105 return (char *)ptr;
da9bb1d2
AC
106
107 r = size % align;
108
109 if (r == 0)
079708b9 110 return (char *)ptr;
da9bb1d2 111
7391c6dc 112 return (void *)(((unsigned long)ptr) + align - r);
da9bb1d2
AC
113}
114
da9bb1d2
AC
115/**
116 * edac_mc_alloc: Allocate a struct mem_ctl_info structure
117 * @size_pvt: size of private storage needed
118 * @nr_csrows: Number of CWROWS needed for this MC
119 * @nr_chans: Number of channels for the MC
120 *
121 * Everything is kmalloc'ed as one big chunk - more efficient.
122 * Only can be used if all structures have the same lifetime - otherwise
123 * you have to allocate and initialize your own structures.
124 *
125 * Use edac_mc_free() to free mc structures allocated by this function.
126 *
127 * Returns:
128 * NULL allocation failed
129 * struct mem_ctl_info pointer
130 */
131struct mem_ctl_info *edac_mc_alloc(unsigned sz_pvt, unsigned nr_csrows,
b8f6f975 132 unsigned nr_chans, int edac_index)
da9bb1d2
AC
133{
134 struct mem_ctl_info *mci;
135 struct csrow_info *csi, *csrow;
136 struct channel_info *chi, *chp, *chan;
137 void *pvt;
138 unsigned size;
139 int row, chn;
8096cfaf 140 int err;
da9bb1d2
AC
141
142 /* Figure out the offsets of the various items from the start of an mc
143 * structure. We want the alignment of each item to be at least as
144 * stringent as what the compiler would provide if we could simply
145 * hardcode everything into a single struct.
146 */
079708b9 147 mci = (struct mem_ctl_info *)0;
7391c6dc
DT
148 csi = edac_align_ptr(&mci[1], sizeof(*csi));
149 chi = edac_align_ptr(&csi[nr_csrows], sizeof(*chi));
e27e3dac 150 pvt = edac_align_ptr(&chi[nr_chans * nr_csrows], sz_pvt);
079708b9 151 size = ((unsigned long)pvt) + sz_pvt;
da9bb1d2 152
8096cfaf
DT
153 mci = kzalloc(size, GFP_KERNEL);
154 if (mci == NULL)
da9bb1d2
AC
155 return NULL;
156
157 /* Adjust pointers so they point within the memory we just allocated
158 * rather than an imaginary chunk of memory located at address 0.
159 */
079708b9
DT
160 csi = (struct csrow_info *)(((char *)mci) + ((unsigned long)csi));
161 chi = (struct channel_info *)(((char *)mci) + ((unsigned long)chi));
162 pvt = sz_pvt ? (((char *)mci) + ((unsigned long)pvt)) : NULL;
da9bb1d2 163
b8f6f975
DT
164 /* setup index and various internal pointers */
165 mci->mc_idx = edac_index;
da9bb1d2
AC
166 mci->csrows = csi;
167 mci->pvt_info = pvt;
168 mci->nr_csrows = nr_csrows;
169
170 for (row = 0; row < nr_csrows; row++) {
171 csrow = &csi[row];
172 csrow->csrow_idx = row;
173 csrow->mci = mci;
174 csrow->nr_channels = nr_chans;
175 chp = &chi[row * nr_chans];
176 csrow->channels = chp;
177
178 for (chn = 0; chn < nr_chans; chn++) {
179 chan = &chp[chn];
180 chan->chan_idx = chn;
181 chan->csrow = csrow;
182 }
183 }
184
81d87cb1
DJ
185 mci->op_state = OP_ALLOC;
186
8096cfaf
DT
187 /*
188 * Initialize the 'root' kobj for the edac_mc controller
189 */
190 err = edac_mc_register_sysfs_main_kobj(mci);
191 if (err) {
192 kfree(mci);
193 return NULL;
194 }
195
196 /* at this point, the root kobj is valid, and in order to
197 * 'free' the object, then the function:
198 * edac_mc_unregister_sysfs_main_kobj() must be called
199 * which will perform kobj unregistration and the actual free
200 * will occur during the kobject callback operation
201 */
da9bb1d2
AC
202 return mci;
203}
9110540f 204EXPORT_SYMBOL_GPL(edac_mc_alloc);
da9bb1d2 205
da9bb1d2 206/**
8096cfaf
DT
207 * edac_mc_free
208 * 'Free' a previously allocated 'mci' structure
da9bb1d2 209 * @mci: pointer to a struct mem_ctl_info structure
da9bb1d2
AC
210 */
211void edac_mc_free(struct mem_ctl_info *mci)
212{
8096cfaf 213 edac_mc_unregister_sysfs_main_kobj(mci);
da9bb1d2 214}
9110540f 215EXPORT_SYMBOL_GPL(edac_mc_free);
da9bb1d2 216
bce19683
DT
217
218/*
219 * find_mci_by_dev
220 *
221 * scan list of controllers looking for the one that manages
222 * the 'dev' device
223 */
37f04581 224static struct mem_ctl_info *find_mci_by_dev(struct device *dev)
da9bb1d2
AC
225{
226 struct mem_ctl_info *mci;
227 struct list_head *item;
228
537fba28 229 debugf3("%s()\n", __func__);
da9bb1d2
AC
230
231 list_for_each(item, &mc_devices) {
232 mci = list_entry(item, struct mem_ctl_info, link);
233
37f04581 234 if (mci->dev == dev)
da9bb1d2
AC
235 return mci;
236 }
237
238 return NULL;
239}
240
81d87cb1
DJ
241/*
242 * handler for EDAC to check if NMI type handler has asserted interrupt
243 */
244static int edac_mc_assert_error_check_and_clear(void)
245{
66ee2f94 246 int old_state;
81d87cb1 247
079708b9 248 if (edac_op_state == EDAC_OPSTATE_POLL)
81d87cb1
DJ
249 return 1;
250
66ee2f94
DJ
251 old_state = edac_err_assert;
252 edac_err_assert = 0;
81d87cb1 253
66ee2f94 254 return old_state;
81d87cb1
DJ
255}
256
257/*
258 * edac_mc_workq_function
259 * performs the operation scheduled by a workq request
260 */
81d87cb1
DJ
261static void edac_mc_workq_function(struct work_struct *work_req)
262{
079708b9 263 struct delayed_work *d_work = (struct delayed_work *)work_req;
81d87cb1 264 struct mem_ctl_info *mci = to_edac_mem_ctl_work(d_work);
81d87cb1
DJ
265
266 mutex_lock(&mem_ctls_mutex);
267
bf52fa4a
DT
268 /* if this control struct has movd to offline state, we are done */
269 if (mci->op_state == OP_OFFLINE) {
270 mutex_unlock(&mem_ctls_mutex);
271 return;
272 }
273
81d87cb1
DJ
274 /* Only poll controllers that are running polled and have a check */
275 if (edac_mc_assert_error_check_and_clear() && (mci->edac_check != NULL))
276 mci->edac_check(mci);
277
81d87cb1
DJ
278 mutex_unlock(&mem_ctls_mutex);
279
280 /* Reschedule */
4de78c68 281 queue_delayed_work(edac_workqueue, &mci->work,
052dfb45 282 msecs_to_jiffies(edac_mc_get_poll_msec()));
81d87cb1
DJ
283}
284
285/*
286 * edac_mc_workq_setup
287 * initialize a workq item for this mci
288 * passing in the new delay period in msec
bf52fa4a
DT
289 *
290 * locking model:
291 *
292 * called with the mem_ctls_mutex held
81d87cb1 293 */
bf52fa4a 294static void edac_mc_workq_setup(struct mem_ctl_info *mci, unsigned msec)
81d87cb1
DJ
295{
296 debugf0("%s()\n", __func__);
297
bf52fa4a
DT
298 /* if this instance is not in the POLL state, then simply return */
299 if (mci->op_state != OP_RUNNING_POLL)
300 return;
301
81d87cb1 302 INIT_DELAYED_WORK(&mci->work, edac_mc_workq_function);
81d87cb1
DJ
303 queue_delayed_work(edac_workqueue, &mci->work, msecs_to_jiffies(msec));
304}
305
306/*
307 * edac_mc_workq_teardown
308 * stop the workq processing on this mci
bf52fa4a
DT
309 *
310 * locking model:
311 *
312 * called WITHOUT lock held
81d87cb1 313 */
bf52fa4a 314static void edac_mc_workq_teardown(struct mem_ctl_info *mci)
81d87cb1
DJ
315{
316 int status;
317
bce19683
DT
318 status = cancel_delayed_work(&mci->work);
319 if (status == 0) {
320 debugf0("%s() not canceled, flush the queue\n",
321 __func__);
bf52fa4a 322
bce19683
DT
323 /* workq instance might be running, wait for it */
324 flush_workqueue(edac_workqueue);
81d87cb1
DJ
325 }
326}
327
328/*
bce19683
DT
329 * edac_mc_reset_delay_period(unsigned long value)
330 *
331 * user space has updated our poll period value, need to
332 * reset our workq delays
81d87cb1 333 */
bce19683 334void edac_mc_reset_delay_period(int value)
81d87cb1 335{
bce19683
DT
336 struct mem_ctl_info *mci;
337 struct list_head *item;
338
339 mutex_lock(&mem_ctls_mutex);
340
341 /* scan the list and turn off all workq timers, doing so under lock
342 */
343 list_for_each(item, &mc_devices) {
344 mci = list_entry(item, struct mem_ctl_info, link);
345
346 if (mci->op_state == OP_RUNNING_POLL)
347 cancel_delayed_work(&mci->work);
348 }
349
350 mutex_unlock(&mem_ctls_mutex);
81d87cb1 351
bce19683
DT
352
353 /* re-walk the list, and reset the poll delay */
bf52fa4a
DT
354 mutex_lock(&mem_ctls_mutex);
355
bce19683
DT
356 list_for_each(item, &mc_devices) {
357 mci = list_entry(item, struct mem_ctl_info, link);
358
359 edac_mc_workq_setup(mci, (unsigned long) value);
360 }
81d87cb1
DJ
361
362 mutex_unlock(&mem_ctls_mutex);
363}
364
bce19683
DT
365
366
2d7bbb91
DT
367/* Return 0 on success, 1 on failure.
368 * Before calling this function, caller must
369 * assign a unique value to mci->mc_idx.
bf52fa4a
DT
370 *
371 * locking model:
372 *
373 * called with the mem_ctls_mutex lock held
2d7bbb91 374 */
079708b9 375static int add_mc_to_global_list(struct mem_ctl_info *mci)
da9bb1d2
AC
376{
377 struct list_head *item, *insert_before;
378 struct mem_ctl_info *p;
da9bb1d2 379
2d7bbb91 380 insert_before = &mc_devices;
da9bb1d2 381
bf52fa4a
DT
382 p = find_mci_by_dev(mci->dev);
383 if (unlikely(p != NULL))
2d7bbb91 384 goto fail0;
da9bb1d2 385
2d7bbb91
DT
386 list_for_each(item, &mc_devices) {
387 p = list_entry(item, struct mem_ctl_info, link);
da9bb1d2 388
2d7bbb91
DT
389 if (p->mc_idx >= mci->mc_idx) {
390 if (unlikely(p->mc_idx == mci->mc_idx))
391 goto fail1;
da9bb1d2 392
2d7bbb91
DT
393 insert_before = item;
394 break;
da9bb1d2 395 }
da9bb1d2
AC
396 }
397
398 list_add_tail_rcu(&mci->link, insert_before);
c0d12172 399 atomic_inc(&edac_handlers);
da9bb1d2 400 return 0;
2d7bbb91 401
052dfb45 402fail0:
2d7bbb91 403 edac_printk(KERN_WARNING, EDAC_MC,
052dfb45
DT
404 "%s (%s) %s %s already assigned %d\n", p->dev->bus_id,
405 dev_name(mci), p->mod_name, p->ctl_name, p->mc_idx);
2d7bbb91
DT
406 return 1;
407
052dfb45 408fail1:
2d7bbb91 409 edac_printk(KERN_WARNING, EDAC_MC,
052dfb45
DT
410 "bug in low-level driver: attempt to assign\n"
411 " duplicate mc_idx %d in %s()\n", p->mc_idx, __func__);
2d7bbb91 412 return 1;
da9bb1d2
AC
413}
414
e7ecd891 415static void complete_mc_list_del(struct rcu_head *head)
a1d03fcc
DP
416{
417 struct mem_ctl_info *mci;
418
419 mci = container_of(head, struct mem_ctl_info, rcu);
420 INIT_LIST_HEAD(&mci->link);
421 complete(&mci->complete);
422}
423
e7ecd891 424static void del_mc_from_global_list(struct mem_ctl_info *mci)
a1d03fcc 425{
c0d12172 426 atomic_dec(&edac_handlers);
a1d03fcc
DP
427 list_del_rcu(&mci->link);
428 init_completion(&mci->complete);
429 call_rcu(&mci->rcu, complete_mc_list_del);
430 wait_for_completion(&mci->complete);
431}
432
5da0831c
DT
433/**
434 * edac_mc_find: Search for a mem_ctl_info structure whose index is 'idx'.
435 *
436 * If found, return a pointer to the structure.
437 * Else return NULL.
438 *
439 * Caller must hold mem_ctls_mutex.
440 */
079708b9 441struct mem_ctl_info *edac_mc_find(int idx)
5da0831c
DT
442{
443 struct list_head *item;
444 struct mem_ctl_info *mci;
445
446 list_for_each(item, &mc_devices) {
447 mci = list_entry(item, struct mem_ctl_info, link);
448
449 if (mci->mc_idx >= idx) {
450 if (mci->mc_idx == idx)
451 return mci;
452
453 break;
454 }
455 }
456
457 return NULL;
458}
459EXPORT_SYMBOL(edac_mc_find);
460
da9bb1d2 461/**
472678eb
DP
462 * edac_mc_add_mc: Insert the 'mci' structure into the mci global list and
463 * create sysfs entries associated with mci structure
da9bb1d2 464 * @mci: pointer to the mci structure to be added to the list
2d7bbb91 465 * @mc_idx: A unique numeric identifier to be assigned to the 'mci' structure.
da9bb1d2
AC
466 *
467 * Return:
468 * 0 Success
469 * !0 Failure
470 */
471
472/* FIXME - should a warning be printed if no error detection? correction? */
b8f6f975 473int edac_mc_add_mc(struct mem_ctl_info *mci)
da9bb1d2 474{
537fba28 475 debugf0("%s()\n", __func__);
b8f6f975 476
da9bb1d2
AC
477#ifdef CONFIG_EDAC_DEBUG
478 if (edac_debug_level >= 3)
479 edac_mc_dump_mci(mci);
e7ecd891 480
da9bb1d2
AC
481 if (edac_debug_level >= 4) {
482 int i;
483
484 for (i = 0; i < mci->nr_csrows; i++) {
485 int j;
e7ecd891 486
da9bb1d2
AC
487 edac_mc_dump_csrow(&mci->csrows[i]);
488 for (j = 0; j < mci->csrows[i].nr_channels; j++)
079708b9 489 edac_mc_dump_channel(&mci->csrows[i].
052dfb45 490 channels[j]);
da9bb1d2
AC
491 }
492 }
493#endif
63b7df91 494 mutex_lock(&mem_ctls_mutex);
da9bb1d2
AC
495
496 if (add_mc_to_global_list(mci))
028a7b6d 497 goto fail0;
da9bb1d2
AC
498
499 /* set load time so that error rate can be tracked */
500 mci->start_time = jiffies;
501
9794f33d 502 if (edac_create_sysfs_mci_device(mci)) {
503 edac_mc_printk(mci, KERN_WARNING,
052dfb45 504 "failed to create sysfs device\n");
9794f33d 505 goto fail1;
506 }
da9bb1d2 507
81d87cb1
DJ
508 /* If there IS a check routine, then we are running POLLED */
509 if (mci->edac_check != NULL) {
510 /* This instance is NOW RUNNING */
511 mci->op_state = OP_RUNNING_POLL;
512
513 edac_mc_workq_setup(mci, edac_mc_get_poll_msec());
514 } else {
515 mci->op_state = OP_RUNNING_INTERRUPT;
516 }
517
da9bb1d2 518 /* Report action taken */
bf52fa4a
DT
519 edac_mc_printk(mci, KERN_INFO, "Giving out device to '%s' '%s':"
520 " DEV %s\n", mci->mod_name, mci->ctl_name, dev_name(mci));
da9bb1d2 521
63b7df91 522 mutex_unlock(&mem_ctls_mutex);
028a7b6d 523 return 0;
da9bb1d2 524
052dfb45 525fail1:
028a7b6d
DP
526 del_mc_from_global_list(mci);
527
052dfb45 528fail0:
63b7df91 529 mutex_unlock(&mem_ctls_mutex);
028a7b6d 530 return 1;
da9bb1d2 531}
9110540f 532EXPORT_SYMBOL_GPL(edac_mc_add_mc);
da9bb1d2 533
da9bb1d2 534/**
472678eb
DP
535 * edac_mc_del_mc: Remove sysfs entries for specified mci structure and
536 * remove mci structure from global list
37f04581 537 * @pdev: Pointer to 'struct device' representing mci structure to remove.
da9bb1d2 538 *
18dbc337 539 * Return pointer to removed mci structure, or NULL if device not found.
da9bb1d2 540 */
079708b9 541struct mem_ctl_info *edac_mc_del_mc(struct device *dev)
da9bb1d2 542{
18dbc337 543 struct mem_ctl_info *mci;
da9bb1d2 544
bf52fa4a
DT
545 debugf0("%s()\n", __func__);
546
63b7df91 547 mutex_lock(&mem_ctls_mutex);
18dbc337 548
bf52fa4a
DT
549 /* find the requested mci struct in the global list */
550 mci = find_mci_by_dev(dev);
551 if (mci == NULL) {
63b7df91 552 mutex_unlock(&mem_ctls_mutex);
18dbc337
DP
553 return NULL;
554 }
555
81d87cb1
DJ
556 /* marking MCI offline */
557 mci->op_state = OP_OFFLINE;
558
da9bb1d2 559 del_mc_from_global_list(mci);
63b7df91 560 mutex_unlock(&mem_ctls_mutex);
bf52fa4a
DT
561
562 /* flush workq processes and remove sysfs */
563 edac_mc_workq_teardown(mci);
564 edac_remove_sysfs_mci_device(mci);
565
537fba28 566 edac_printk(KERN_INFO, EDAC_MC,
052dfb45
DT
567 "Removed device %d for %s %s: DEV %s\n", mci->mc_idx,
568 mci->mod_name, mci->ctl_name, dev_name(mci));
bf52fa4a 569
18dbc337 570 return mci;
da9bb1d2 571}
9110540f 572EXPORT_SYMBOL_GPL(edac_mc_del_mc);
da9bb1d2 573
2da1c119
AB
574static void edac_mc_scrub_block(unsigned long page, unsigned long offset,
575 u32 size)
da9bb1d2
AC
576{
577 struct page *pg;
578 void *virt_addr;
579 unsigned long flags = 0;
580
537fba28 581 debugf3("%s()\n", __func__);
da9bb1d2
AC
582
583 /* ECC error page was not in our memory. Ignore it. */
079708b9 584 if (!pfn_valid(page))
da9bb1d2
AC
585 return;
586
587 /* Find the actual page structure then map it and fix */
588 pg = pfn_to_page(page);
589
590 if (PageHighMem(pg))
591 local_irq_save(flags);
592
593 virt_addr = kmap_atomic(pg, KM_BOUNCE_READ);
594
595 /* Perform architecture specific atomic scrub operation */
596 atomic_scrub(virt_addr + offset, size);
597
598 /* Unmap and complete */
599 kunmap_atomic(virt_addr, KM_BOUNCE_READ);
600
601 if (PageHighMem(pg))
602 local_irq_restore(flags);
603}
604
da9bb1d2 605/* FIXME - should return -1 */
e7ecd891 606int edac_mc_find_csrow_by_page(struct mem_ctl_info *mci, unsigned long page)
da9bb1d2
AC
607{
608 struct csrow_info *csrows = mci->csrows;
609 int row, i;
610
537fba28 611 debugf1("MC%d: %s(): 0x%lx\n", mci->mc_idx, __func__, page);
da9bb1d2
AC
612 row = -1;
613
614 for (i = 0; i < mci->nr_csrows; i++) {
615 struct csrow_info *csrow = &csrows[i];
616
617 if (csrow->nr_pages == 0)
618 continue;
619
537fba28
DP
620 debugf3("MC%d: %s(): first(0x%lx) page(0x%lx) last(0x%lx) "
621 "mask(0x%lx)\n", mci->mc_idx, __func__,
622 csrow->first_page, page, csrow->last_page,
623 csrow->page_mask);
da9bb1d2
AC
624
625 if ((page >= csrow->first_page) &&
626 (page <= csrow->last_page) &&
627 ((page & csrow->page_mask) ==
628 (csrow->first_page & csrow->page_mask))) {
629 row = i;
630 break;
631 }
632 }
633
634 if (row == -1)
537fba28 635 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
636 "could not look up page error address %lx\n",
637 (unsigned long)page);
da9bb1d2
AC
638
639 return row;
640}
9110540f 641EXPORT_SYMBOL_GPL(edac_mc_find_csrow_by_page);
da9bb1d2 642
da9bb1d2
AC
643/* FIXME - setable log (warning/emerg) levels */
644/* FIXME - integrate with evlog: http://evlog.sourceforge.net/ */
645void edac_mc_handle_ce(struct mem_ctl_info *mci,
052dfb45
DT
646 unsigned long page_frame_number,
647 unsigned long offset_in_page, unsigned long syndrome,
648 int row, int channel, const char *msg)
da9bb1d2
AC
649{
650 unsigned long remapped_page;
651
537fba28 652 debugf3("MC%d: %s()\n", mci->mc_idx, __func__);
da9bb1d2
AC
653
654 /* FIXME - maybe make panic on INTERNAL ERROR an option */
655 if (row >= mci->nr_csrows || row < 0) {
656 /* something is wrong */
537fba28 657 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
658 "INTERNAL ERROR: row out of range "
659 "(%d >= %d)\n", row, mci->nr_csrows);
da9bb1d2
AC
660 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
661 return;
662 }
e7ecd891 663
da9bb1d2
AC
664 if (channel >= mci->csrows[row].nr_channels || channel < 0) {
665 /* something is wrong */
537fba28 666 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
667 "INTERNAL ERROR: channel out of range "
668 "(%d >= %d)\n", channel,
669 mci->csrows[row].nr_channels);
da9bb1d2
AC
670 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
671 return;
672 }
673
4de78c68 674 if (edac_mc_get_log_ce())
da9bb1d2 675 /* FIXME - put in DIMM location */
537fba28 676 edac_mc_printk(mci, KERN_WARNING,
052dfb45
DT
677 "CE page 0x%lx, offset 0x%lx, grain %d, syndrome "
678 "0x%lx, row %d, channel %d, label \"%s\": %s\n",
679 page_frame_number, offset_in_page,
680 mci->csrows[row].grain, syndrome, row, channel,
681 mci->csrows[row].channels[channel].label, msg);
da9bb1d2
AC
682
683 mci->ce_count++;
684 mci->csrows[row].ce_count++;
685 mci->csrows[row].channels[channel].ce_count++;
686
687 if (mci->scrub_mode & SCRUB_SW_SRC) {
688 /*
689 * Some MC's can remap memory so that it is still available
690 * at a different address when PCI devices map into memory.
691 * MC's that can't do this lose the memory where PCI devices
692 * are mapped. This mapping is MC dependant and so we call
693 * back into the MC driver for it to map the MC page to
694 * a physical (CPU) page which can then be mapped to a virtual
695 * page - which can then be scrubbed.
696 */
697 remapped_page = mci->ctl_page_to_phys ?
052dfb45
DT
698 mci->ctl_page_to_phys(mci, page_frame_number) :
699 page_frame_number;
da9bb1d2
AC
700
701 edac_mc_scrub_block(remapped_page, offset_in_page,
052dfb45 702 mci->csrows[row].grain);
da9bb1d2
AC
703 }
704}
9110540f 705EXPORT_SYMBOL_GPL(edac_mc_handle_ce);
da9bb1d2 706
e7ecd891 707void edac_mc_handle_ce_no_info(struct mem_ctl_info *mci, const char *msg)
da9bb1d2 708{
4de78c68 709 if (edac_mc_get_log_ce())
537fba28 710 edac_mc_printk(mci, KERN_WARNING,
052dfb45 711 "CE - no information available: %s\n", msg);
e7ecd891 712
da9bb1d2
AC
713 mci->ce_noinfo_count++;
714 mci->ce_count++;
715}
9110540f 716EXPORT_SYMBOL_GPL(edac_mc_handle_ce_no_info);
da9bb1d2 717
da9bb1d2 718void edac_mc_handle_ue(struct mem_ctl_info *mci,
052dfb45
DT
719 unsigned long page_frame_number,
720 unsigned long offset_in_page, int row, const char *msg)
da9bb1d2
AC
721{
722 int len = EDAC_MC_LABEL_LEN * 4;
723 char labels[len + 1];
724 char *pos = labels;
725 int chan;
726 int chars;
727
537fba28 728 debugf3("MC%d: %s()\n", mci->mc_idx, __func__);
da9bb1d2
AC
729
730 /* FIXME - maybe make panic on INTERNAL ERROR an option */
731 if (row >= mci->nr_csrows || row < 0) {
732 /* something is wrong */
537fba28 733 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
734 "INTERNAL ERROR: row out of range "
735 "(%d >= %d)\n", row, mci->nr_csrows);
da9bb1d2
AC
736 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
737 return;
738 }
739
740 chars = snprintf(pos, len + 1, "%s",
079708b9 741 mci->csrows[row].channels[0].label);
da9bb1d2
AC
742 len -= chars;
743 pos += chars;
e7ecd891 744
da9bb1d2 745 for (chan = 1; (chan < mci->csrows[row].nr_channels) && (len > 0);
052dfb45 746 chan++) {
da9bb1d2 747 chars = snprintf(pos, len + 1, ":%s",
079708b9 748 mci->csrows[row].channels[chan].label);
da9bb1d2
AC
749 len -= chars;
750 pos += chars;
751 }
752
4de78c68 753 if (edac_mc_get_log_ue())
537fba28 754 edac_mc_printk(mci, KERN_EMERG,
052dfb45
DT
755 "UE page 0x%lx, offset 0x%lx, grain %d, row %d, "
756 "labels \"%s\": %s\n", page_frame_number,
757 offset_in_page, mci->csrows[row].grain, row,
758 labels, msg);
da9bb1d2 759
4de78c68 760 if (edac_mc_get_panic_on_ue())
e7ecd891 761 panic("EDAC MC%d: UE page 0x%lx, offset 0x%lx, grain %d, "
052dfb45
DT
762 "row %d, labels \"%s\": %s\n", mci->mc_idx,
763 page_frame_number, offset_in_page,
764 mci->csrows[row].grain, row, labels, msg);
da9bb1d2
AC
765
766 mci->ue_count++;
767 mci->csrows[row].ue_count++;
768}
9110540f 769EXPORT_SYMBOL_GPL(edac_mc_handle_ue);
da9bb1d2 770
e7ecd891 771void edac_mc_handle_ue_no_info(struct mem_ctl_info *mci, const char *msg)
da9bb1d2 772{
4de78c68 773 if (edac_mc_get_panic_on_ue())
da9bb1d2
AC
774 panic("EDAC MC%d: Uncorrected Error", mci->mc_idx);
775
4de78c68 776 if (edac_mc_get_log_ue())
537fba28 777 edac_mc_printk(mci, KERN_WARNING,
052dfb45 778 "UE - no information available: %s\n", msg);
da9bb1d2
AC
779 mci->ue_noinfo_count++;
780 mci->ue_count++;
781}
079708b9 782EXPORT_SYMBOL_GPL(edac_mc_handle_ue_no_info);
da9bb1d2 783
9794f33d 784/*************************************************************
785 * On Fully Buffered DIMM modules, this help function is
786 * called to process UE events
787 */
788void edac_mc_handle_fbd_ue(struct mem_ctl_info *mci,
052dfb45
DT
789 unsigned int csrow,
790 unsigned int channela,
791 unsigned int channelb, char *msg)
9794f33d 792{
793 int len = EDAC_MC_LABEL_LEN * 4;
794 char labels[len + 1];
795 char *pos = labels;
796 int chars;
797
798 if (csrow >= mci->nr_csrows) {
799 /* something is wrong */
800 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
801 "INTERNAL ERROR: row out of range (%d >= %d)\n",
802 csrow, mci->nr_csrows);
9794f33d 803 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
804 return;
805 }
806
807 if (channela >= mci->csrows[csrow].nr_channels) {
808 /* something is wrong */
809 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
810 "INTERNAL ERROR: channel-a out of range "
811 "(%d >= %d)\n",
812 channela, mci->csrows[csrow].nr_channels);
9794f33d 813 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
814 return;
815 }
816
817 if (channelb >= mci->csrows[csrow].nr_channels) {
818 /* something is wrong */
819 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
820 "INTERNAL ERROR: channel-b out of range "
821 "(%d >= %d)\n",
822 channelb, mci->csrows[csrow].nr_channels);
9794f33d 823 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
824 return;
825 }
826
827 mci->ue_count++;
828 mci->csrows[csrow].ue_count++;
829
830 /* Generate the DIMM labels from the specified channels */
831 chars = snprintf(pos, len + 1, "%s",
832 mci->csrows[csrow].channels[channela].label);
079708b9
DT
833 len -= chars;
834 pos += chars;
9794f33d 835 chars = snprintf(pos, len + 1, "-%s",
836 mci->csrows[csrow].channels[channelb].label);
837
4de78c68 838 if (edac_mc_get_log_ue())
9794f33d 839 edac_mc_printk(mci, KERN_EMERG,
052dfb45
DT
840 "UE row %d, channel-a= %d channel-b= %d "
841 "labels \"%s\": %s\n", csrow, channela, channelb,
842 labels, msg);
9794f33d 843
4de78c68 844 if (edac_mc_get_panic_on_ue())
9794f33d 845 panic("UE row %d, channel-a= %d channel-b= %d "
052dfb45
DT
846 "labels \"%s\": %s\n", csrow, channela,
847 channelb, labels, msg);
9794f33d 848}
849EXPORT_SYMBOL(edac_mc_handle_fbd_ue);
850
851/*************************************************************
852 * On Fully Buffered DIMM modules, this help function is
853 * called to process CE events
854 */
855void edac_mc_handle_fbd_ce(struct mem_ctl_info *mci,
052dfb45 856 unsigned int csrow, unsigned int channel, char *msg)
9794f33d 857{
858
859 /* Ensure boundary values */
860 if (csrow >= mci->nr_csrows) {
861 /* something is wrong */
862 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
863 "INTERNAL ERROR: row out of range (%d >= %d)\n",
864 csrow, mci->nr_csrows);
9794f33d 865 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
866 return;
867 }
868 if (channel >= mci->csrows[csrow].nr_channels) {
869 /* something is wrong */
870 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
871 "INTERNAL ERROR: channel out of range (%d >= %d)\n",
872 channel, mci->csrows[csrow].nr_channels);
9794f33d 873 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
874 return;
875 }
876
4de78c68 877 if (edac_mc_get_log_ce())
9794f33d 878 /* FIXME - put in DIMM location */
879 edac_mc_printk(mci, KERN_WARNING,
052dfb45
DT
880 "CE row %d, channel %d, label \"%s\": %s\n",
881 csrow, channel,
882 mci->csrows[csrow].channels[channel].label, msg);
9794f33d 883
884 mci->ce_count++;
885 mci->csrows[csrow].ce_count++;
886 mci->csrows[csrow].channels[channel].ce_count++;
887}
079708b9 888EXPORT_SYMBOL(edac_mc_handle_fbd_ce);