ASoC: mxs: Add .owner to struct snd_soc_card
[deliverable/linux.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
24f9a7fe
BP
79#endif /* CONFIG_EDAC_DEBUG */
80
239642fe
BP
81/*
82 * keep those in sync with the enum mem_type
83 */
84const char *edac_mem_types[] = {
85 "Empty csrow",
86 "Reserved csrow type",
87 "Unknown csrow type",
88 "Fast page mode RAM",
89 "Extended data out RAM",
90 "Burst Extended data out RAM",
91 "Single data rate SDRAM",
92 "Registered single data rate SDRAM",
93 "Double data rate SDRAM",
94 "Registered Double data rate SDRAM",
95 "Rambus DRAM",
96 "Unbuffered DDR2 RAM",
97 "Fully buffered DDR2",
98 "Registered DDR2 RAM",
99 "Rambus XDR",
100 "Unbuffered DDR3 RAM",
101 "Registered DDR3 RAM",
102};
103EXPORT_SYMBOL_GPL(edac_mem_types);
104
da9bb1d2
AC
105/* 'ptr' points to a possibly unaligned item X such that sizeof(X) is 'size'.
106 * Adjust 'ptr' so that its alignment is at least as stringent as what the
107 * compiler would provide for X and return the aligned result.
108 *
109 * If 'size' is a constant, the compiler will optimize this whole function
110 * down to either a no-op or the addition of a constant to the value of 'ptr'.
111 */
7391c6dc 112void *edac_align_ptr(void *ptr, unsigned size)
da9bb1d2
AC
113{
114 unsigned align, r;
115
116 /* Here we assume that the alignment of a "long long" is the most
117 * stringent alignment that the compiler will ever provide by default.
118 * As far as I know, this is a reasonable assumption.
119 */
120 if (size > sizeof(long))
121 align = sizeof(long long);
122 else if (size > sizeof(int))
123 align = sizeof(long);
124 else if (size > sizeof(short))
125 align = sizeof(int);
126 else if (size > sizeof(char))
127 align = sizeof(short);
128 else
079708b9 129 return (char *)ptr;
da9bb1d2
AC
130
131 r = size % align;
132
133 if (r == 0)
079708b9 134 return (char *)ptr;
da9bb1d2 135
7391c6dc 136 return (void *)(((unsigned long)ptr) + align - r);
da9bb1d2
AC
137}
138
da9bb1d2
AC
139/**
140 * edac_mc_alloc: Allocate a struct mem_ctl_info structure
141 * @size_pvt: size of private storage needed
142 * @nr_csrows: Number of CWROWS needed for this MC
143 * @nr_chans: Number of channels for the MC
144 *
145 * Everything is kmalloc'ed as one big chunk - more efficient.
146 * Only can be used if all structures have the same lifetime - otherwise
147 * you have to allocate and initialize your own structures.
148 *
149 * Use edac_mc_free() to free mc structures allocated by this function.
150 *
151 * Returns:
152 * NULL allocation failed
153 * struct mem_ctl_info pointer
154 */
155struct mem_ctl_info *edac_mc_alloc(unsigned sz_pvt, unsigned nr_csrows,
b8f6f975 156 unsigned nr_chans, int edac_index)
da9bb1d2
AC
157{
158 struct mem_ctl_info *mci;
159 struct csrow_info *csi, *csrow;
160 struct channel_info *chi, *chp, *chan;
161 void *pvt;
162 unsigned size;
163 int row, chn;
8096cfaf 164 int err;
da9bb1d2
AC
165
166 /* Figure out the offsets of the various items from the start of an mc
167 * structure. We want the alignment of each item to be at least as
168 * stringent as what the compiler would provide if we could simply
169 * hardcode everything into a single struct.
170 */
079708b9 171 mci = (struct mem_ctl_info *)0;
7391c6dc
DT
172 csi = edac_align_ptr(&mci[1], sizeof(*csi));
173 chi = edac_align_ptr(&csi[nr_csrows], sizeof(*chi));
e27e3dac 174 pvt = edac_align_ptr(&chi[nr_chans * nr_csrows], sz_pvt);
079708b9 175 size = ((unsigned long)pvt) + sz_pvt;
da9bb1d2 176
8096cfaf
DT
177 mci = kzalloc(size, GFP_KERNEL);
178 if (mci == NULL)
da9bb1d2
AC
179 return NULL;
180
181 /* Adjust pointers so they point within the memory we just allocated
182 * rather than an imaginary chunk of memory located at address 0.
183 */
079708b9
DT
184 csi = (struct csrow_info *)(((char *)mci) + ((unsigned long)csi));
185 chi = (struct channel_info *)(((char *)mci) + ((unsigned long)chi));
186 pvt = sz_pvt ? (((char *)mci) + ((unsigned long)pvt)) : NULL;
da9bb1d2 187
b8f6f975
DT
188 /* setup index and various internal pointers */
189 mci->mc_idx = edac_index;
da9bb1d2
AC
190 mci->csrows = csi;
191 mci->pvt_info = pvt;
192 mci->nr_csrows = nr_csrows;
193
194 for (row = 0; row < nr_csrows; row++) {
195 csrow = &csi[row];
196 csrow->csrow_idx = row;
197 csrow->mci = mci;
198 csrow->nr_channels = nr_chans;
199 chp = &chi[row * nr_chans];
200 csrow->channels = chp;
201
202 for (chn = 0; chn < nr_chans; chn++) {
203 chan = &chp[chn];
204 chan->chan_idx = chn;
205 chan->csrow = csrow;
206 }
207 }
208
81d87cb1 209 mci->op_state = OP_ALLOC;
6fe1108f 210 INIT_LIST_HEAD(&mci->grp_kobj_list);
81d87cb1 211
8096cfaf
DT
212 /*
213 * Initialize the 'root' kobj for the edac_mc controller
214 */
215 err = edac_mc_register_sysfs_main_kobj(mci);
216 if (err) {
217 kfree(mci);
218 return NULL;
219 }
220
221 /* at this point, the root kobj is valid, and in order to
222 * 'free' the object, then the function:
223 * edac_mc_unregister_sysfs_main_kobj() must be called
224 * which will perform kobj unregistration and the actual free
225 * will occur during the kobject callback operation
226 */
da9bb1d2
AC
227 return mci;
228}
9110540f 229EXPORT_SYMBOL_GPL(edac_mc_alloc);
da9bb1d2 230
da9bb1d2 231/**
8096cfaf
DT
232 * edac_mc_free
233 * 'Free' a previously allocated 'mci' structure
da9bb1d2 234 * @mci: pointer to a struct mem_ctl_info structure
da9bb1d2
AC
235 */
236void edac_mc_free(struct mem_ctl_info *mci)
237{
bbc560ae
MCC
238 debugf1("%s()\n", __func__);
239
8096cfaf 240 edac_mc_unregister_sysfs_main_kobj(mci);
accf74ff
MCC
241
242 /* free the mci instance memory here */
243 kfree(mci);
da9bb1d2 244}
9110540f 245EXPORT_SYMBOL_GPL(edac_mc_free);
da9bb1d2 246
bce19683 247
939747bd 248/**
bce19683
DT
249 * find_mci_by_dev
250 *
251 * scan list of controllers looking for the one that manages
252 * the 'dev' device
939747bd 253 * @dev: pointer to a struct device related with the MCI
bce19683 254 */
939747bd 255struct mem_ctl_info *find_mci_by_dev(struct device *dev)
da9bb1d2
AC
256{
257 struct mem_ctl_info *mci;
258 struct list_head *item;
259
537fba28 260 debugf3("%s()\n", __func__);
da9bb1d2
AC
261
262 list_for_each(item, &mc_devices) {
263 mci = list_entry(item, struct mem_ctl_info, link);
264
37f04581 265 if (mci->dev == dev)
da9bb1d2
AC
266 return mci;
267 }
268
269 return NULL;
270}
939747bd 271EXPORT_SYMBOL_GPL(find_mci_by_dev);
da9bb1d2 272
81d87cb1
DJ
273/*
274 * handler for EDAC to check if NMI type handler has asserted interrupt
275 */
276static int edac_mc_assert_error_check_and_clear(void)
277{
66ee2f94 278 int old_state;
81d87cb1 279
079708b9 280 if (edac_op_state == EDAC_OPSTATE_POLL)
81d87cb1
DJ
281 return 1;
282
66ee2f94
DJ
283 old_state = edac_err_assert;
284 edac_err_assert = 0;
81d87cb1 285
66ee2f94 286 return old_state;
81d87cb1
DJ
287}
288
289/*
290 * edac_mc_workq_function
291 * performs the operation scheduled by a workq request
292 */
81d87cb1
DJ
293static void edac_mc_workq_function(struct work_struct *work_req)
294{
fbeb4384 295 struct delayed_work *d_work = to_delayed_work(work_req);
81d87cb1 296 struct mem_ctl_info *mci = to_edac_mem_ctl_work(d_work);
81d87cb1
DJ
297
298 mutex_lock(&mem_ctls_mutex);
299
bf52fa4a
DT
300 /* if this control struct has movd to offline state, we are done */
301 if (mci->op_state == OP_OFFLINE) {
302 mutex_unlock(&mem_ctls_mutex);
303 return;
304 }
305
81d87cb1
DJ
306 /* Only poll controllers that are running polled and have a check */
307 if (edac_mc_assert_error_check_and_clear() && (mci->edac_check != NULL))
308 mci->edac_check(mci);
309
81d87cb1
DJ
310 mutex_unlock(&mem_ctls_mutex);
311
312 /* Reschedule */
4de78c68 313 queue_delayed_work(edac_workqueue, &mci->work,
052dfb45 314 msecs_to_jiffies(edac_mc_get_poll_msec()));
81d87cb1
DJ
315}
316
317/*
318 * edac_mc_workq_setup
319 * initialize a workq item for this mci
320 * passing in the new delay period in msec
bf52fa4a
DT
321 *
322 * locking model:
323 *
324 * called with the mem_ctls_mutex held
81d87cb1 325 */
bf52fa4a 326static void edac_mc_workq_setup(struct mem_ctl_info *mci, unsigned msec)
81d87cb1
DJ
327{
328 debugf0("%s()\n", __func__);
329
bf52fa4a
DT
330 /* if this instance is not in the POLL state, then simply return */
331 if (mci->op_state != OP_RUNNING_POLL)
332 return;
333
81d87cb1 334 INIT_DELAYED_WORK(&mci->work, edac_mc_workq_function);
81d87cb1
DJ
335 queue_delayed_work(edac_workqueue, &mci->work, msecs_to_jiffies(msec));
336}
337
338/*
339 * edac_mc_workq_teardown
340 * stop the workq processing on this mci
bf52fa4a
DT
341 *
342 * locking model:
343 *
344 * called WITHOUT lock held
81d87cb1 345 */
bf52fa4a 346static void edac_mc_workq_teardown(struct mem_ctl_info *mci)
81d87cb1
DJ
347{
348 int status;
349
00740c58
BP
350 if (mci->op_state != OP_RUNNING_POLL)
351 return;
352
bce19683
DT
353 status = cancel_delayed_work(&mci->work);
354 if (status == 0) {
355 debugf0("%s() not canceled, flush the queue\n",
356 __func__);
bf52fa4a 357
bce19683
DT
358 /* workq instance might be running, wait for it */
359 flush_workqueue(edac_workqueue);
81d87cb1
DJ
360 }
361}
362
363/*
bce19683
DT
364 * edac_mc_reset_delay_period(unsigned long value)
365 *
366 * user space has updated our poll period value, need to
367 * reset our workq delays
81d87cb1 368 */
bce19683 369void edac_mc_reset_delay_period(int value)
81d87cb1 370{
bce19683
DT
371 struct mem_ctl_info *mci;
372 struct list_head *item;
373
374 mutex_lock(&mem_ctls_mutex);
375
376 /* scan the list and turn off all workq timers, doing so under lock
377 */
378 list_for_each(item, &mc_devices) {
379 mci = list_entry(item, struct mem_ctl_info, link);
380
381 if (mci->op_state == OP_RUNNING_POLL)
382 cancel_delayed_work(&mci->work);
383 }
384
385 mutex_unlock(&mem_ctls_mutex);
81d87cb1 386
bce19683
DT
387
388 /* re-walk the list, and reset the poll delay */
bf52fa4a
DT
389 mutex_lock(&mem_ctls_mutex);
390
bce19683
DT
391 list_for_each(item, &mc_devices) {
392 mci = list_entry(item, struct mem_ctl_info, link);
393
394 edac_mc_workq_setup(mci, (unsigned long) value);
395 }
81d87cb1
DJ
396
397 mutex_unlock(&mem_ctls_mutex);
398}
399
bce19683
DT
400
401
2d7bbb91
DT
402/* Return 0 on success, 1 on failure.
403 * Before calling this function, caller must
404 * assign a unique value to mci->mc_idx.
bf52fa4a
DT
405 *
406 * locking model:
407 *
408 * called with the mem_ctls_mutex lock held
2d7bbb91 409 */
079708b9 410static int add_mc_to_global_list(struct mem_ctl_info *mci)
da9bb1d2
AC
411{
412 struct list_head *item, *insert_before;
413 struct mem_ctl_info *p;
da9bb1d2 414
2d7bbb91 415 insert_before = &mc_devices;
da9bb1d2 416
bf52fa4a
DT
417 p = find_mci_by_dev(mci->dev);
418 if (unlikely(p != NULL))
2d7bbb91 419 goto fail0;
da9bb1d2 420
2d7bbb91
DT
421 list_for_each(item, &mc_devices) {
422 p = list_entry(item, struct mem_ctl_info, link);
da9bb1d2 423
2d7bbb91
DT
424 if (p->mc_idx >= mci->mc_idx) {
425 if (unlikely(p->mc_idx == mci->mc_idx))
426 goto fail1;
da9bb1d2 427
2d7bbb91
DT
428 insert_before = item;
429 break;
da9bb1d2 430 }
da9bb1d2
AC
431 }
432
433 list_add_tail_rcu(&mci->link, insert_before);
c0d12172 434 atomic_inc(&edac_handlers);
da9bb1d2 435 return 0;
2d7bbb91 436
052dfb45 437fail0:
2d7bbb91 438 edac_printk(KERN_WARNING, EDAC_MC,
281efb17 439 "%s (%s) %s %s already assigned %d\n", dev_name(p->dev),
17aa7e03 440 edac_dev_name(mci), p->mod_name, p->ctl_name, p->mc_idx);
2d7bbb91
DT
441 return 1;
442
052dfb45 443fail1:
2d7bbb91 444 edac_printk(KERN_WARNING, EDAC_MC,
052dfb45
DT
445 "bug in low-level driver: attempt to assign\n"
446 " duplicate mc_idx %d in %s()\n", p->mc_idx, __func__);
2d7bbb91 447 return 1;
da9bb1d2
AC
448}
449
e7ecd891 450static void del_mc_from_global_list(struct mem_ctl_info *mci)
a1d03fcc 451{
c0d12172 452 atomic_dec(&edac_handlers);
a1d03fcc 453 list_del_rcu(&mci->link);
e2e77098
LJ
454
455 /* these are for safe removal of devices from global list while
456 * NMI handlers may be traversing list
457 */
458 synchronize_rcu();
459 INIT_LIST_HEAD(&mci->link);
a1d03fcc
DP
460}
461
5da0831c
DT
462/**
463 * edac_mc_find: Search for a mem_ctl_info structure whose index is 'idx'.
464 *
465 * If found, return a pointer to the structure.
466 * Else return NULL.
467 *
468 * Caller must hold mem_ctls_mutex.
469 */
079708b9 470struct mem_ctl_info *edac_mc_find(int idx)
5da0831c
DT
471{
472 struct list_head *item;
473 struct mem_ctl_info *mci;
474
475 list_for_each(item, &mc_devices) {
476 mci = list_entry(item, struct mem_ctl_info, link);
477
478 if (mci->mc_idx >= idx) {
479 if (mci->mc_idx == idx)
480 return mci;
481
482 break;
483 }
484 }
485
486 return NULL;
487}
488EXPORT_SYMBOL(edac_mc_find);
489
da9bb1d2 490/**
472678eb
DP
491 * edac_mc_add_mc: Insert the 'mci' structure into the mci global list and
492 * create sysfs entries associated with mci structure
da9bb1d2 493 * @mci: pointer to the mci structure to be added to the list
2d7bbb91 494 * @mc_idx: A unique numeric identifier to be assigned to the 'mci' structure.
da9bb1d2
AC
495 *
496 * Return:
497 * 0 Success
498 * !0 Failure
499 */
500
501/* FIXME - should a warning be printed if no error detection? correction? */
b8f6f975 502int edac_mc_add_mc(struct mem_ctl_info *mci)
da9bb1d2 503{
537fba28 504 debugf0("%s()\n", __func__);
b8f6f975 505
da9bb1d2
AC
506#ifdef CONFIG_EDAC_DEBUG
507 if (edac_debug_level >= 3)
508 edac_mc_dump_mci(mci);
e7ecd891 509
da9bb1d2
AC
510 if (edac_debug_level >= 4) {
511 int i;
512
513 for (i = 0; i < mci->nr_csrows; i++) {
514 int j;
e7ecd891 515
da9bb1d2
AC
516 edac_mc_dump_csrow(&mci->csrows[i]);
517 for (j = 0; j < mci->csrows[i].nr_channels; j++)
079708b9 518 edac_mc_dump_channel(&mci->csrows[i].
052dfb45 519 channels[j]);
da9bb1d2
AC
520 }
521 }
522#endif
63b7df91 523 mutex_lock(&mem_ctls_mutex);
da9bb1d2
AC
524
525 if (add_mc_to_global_list(mci))
028a7b6d 526 goto fail0;
da9bb1d2
AC
527
528 /* set load time so that error rate can be tracked */
529 mci->start_time = jiffies;
530
9794f33d 531 if (edac_create_sysfs_mci_device(mci)) {
532 edac_mc_printk(mci, KERN_WARNING,
052dfb45 533 "failed to create sysfs device\n");
9794f33d 534 goto fail1;
535 }
da9bb1d2 536
81d87cb1
DJ
537 /* If there IS a check routine, then we are running POLLED */
538 if (mci->edac_check != NULL) {
539 /* This instance is NOW RUNNING */
540 mci->op_state = OP_RUNNING_POLL;
541
542 edac_mc_workq_setup(mci, edac_mc_get_poll_msec());
543 } else {
544 mci->op_state = OP_RUNNING_INTERRUPT;
545 }
546
da9bb1d2 547 /* Report action taken */
bf52fa4a 548 edac_mc_printk(mci, KERN_INFO, "Giving out device to '%s' '%s':"
17aa7e03 549 " DEV %s\n", mci->mod_name, mci->ctl_name, edac_dev_name(mci));
da9bb1d2 550
63b7df91 551 mutex_unlock(&mem_ctls_mutex);
028a7b6d 552 return 0;
da9bb1d2 553
052dfb45 554fail1:
028a7b6d
DP
555 del_mc_from_global_list(mci);
556
052dfb45 557fail0:
63b7df91 558 mutex_unlock(&mem_ctls_mutex);
028a7b6d 559 return 1;
da9bb1d2 560}
9110540f 561EXPORT_SYMBOL_GPL(edac_mc_add_mc);
da9bb1d2 562
da9bb1d2 563/**
472678eb
DP
564 * edac_mc_del_mc: Remove sysfs entries for specified mci structure and
565 * remove mci structure from global list
37f04581 566 * @pdev: Pointer to 'struct device' representing mci structure to remove.
da9bb1d2 567 *
18dbc337 568 * Return pointer to removed mci structure, or NULL if device not found.
da9bb1d2 569 */
079708b9 570struct mem_ctl_info *edac_mc_del_mc(struct device *dev)
da9bb1d2 571{
18dbc337 572 struct mem_ctl_info *mci;
da9bb1d2 573
bf52fa4a
DT
574 debugf0("%s()\n", __func__);
575
63b7df91 576 mutex_lock(&mem_ctls_mutex);
18dbc337 577
bf52fa4a
DT
578 /* find the requested mci struct in the global list */
579 mci = find_mci_by_dev(dev);
580 if (mci == NULL) {
63b7df91 581 mutex_unlock(&mem_ctls_mutex);
18dbc337
DP
582 return NULL;
583 }
584
da9bb1d2 585 del_mc_from_global_list(mci);
63b7df91 586 mutex_unlock(&mem_ctls_mutex);
bf52fa4a 587
bb31b312 588 /* flush workq processes */
bf52fa4a 589 edac_mc_workq_teardown(mci);
bb31b312
BP
590
591 /* marking MCI offline */
592 mci->op_state = OP_OFFLINE;
593
594 /* remove from sysfs */
bf52fa4a
DT
595 edac_remove_sysfs_mci_device(mci);
596
537fba28 597 edac_printk(KERN_INFO, EDAC_MC,
052dfb45 598 "Removed device %d for %s %s: DEV %s\n", mci->mc_idx,
17aa7e03 599 mci->mod_name, mci->ctl_name, edac_dev_name(mci));
bf52fa4a 600
18dbc337 601 return mci;
da9bb1d2 602}
9110540f 603EXPORT_SYMBOL_GPL(edac_mc_del_mc);
da9bb1d2 604
2da1c119
AB
605static void edac_mc_scrub_block(unsigned long page, unsigned long offset,
606 u32 size)
da9bb1d2
AC
607{
608 struct page *pg;
609 void *virt_addr;
610 unsigned long flags = 0;
611
537fba28 612 debugf3("%s()\n", __func__);
da9bb1d2
AC
613
614 /* ECC error page was not in our memory. Ignore it. */
079708b9 615 if (!pfn_valid(page))
da9bb1d2
AC
616 return;
617
618 /* Find the actual page structure then map it and fix */
619 pg = pfn_to_page(page);
620
621 if (PageHighMem(pg))
622 local_irq_save(flags);
623
624 virt_addr = kmap_atomic(pg, KM_BOUNCE_READ);
625
626 /* Perform architecture specific atomic scrub operation */
627 atomic_scrub(virt_addr + offset, size);
628
629 /* Unmap and complete */
630 kunmap_atomic(virt_addr, KM_BOUNCE_READ);
631
632 if (PageHighMem(pg))
633 local_irq_restore(flags);
634}
635
da9bb1d2 636/* FIXME - should return -1 */
e7ecd891 637int edac_mc_find_csrow_by_page(struct mem_ctl_info *mci, unsigned long page)
da9bb1d2
AC
638{
639 struct csrow_info *csrows = mci->csrows;
640 int row, i;
641
537fba28 642 debugf1("MC%d: %s(): 0x%lx\n", mci->mc_idx, __func__, page);
da9bb1d2
AC
643 row = -1;
644
645 for (i = 0; i < mci->nr_csrows; i++) {
646 struct csrow_info *csrow = &csrows[i];
647
648 if (csrow->nr_pages == 0)
649 continue;
650
537fba28
DP
651 debugf3("MC%d: %s(): first(0x%lx) page(0x%lx) last(0x%lx) "
652 "mask(0x%lx)\n", mci->mc_idx, __func__,
653 csrow->first_page, page, csrow->last_page,
654 csrow->page_mask);
da9bb1d2
AC
655
656 if ((page >= csrow->first_page) &&
657 (page <= csrow->last_page) &&
658 ((page & csrow->page_mask) ==
659 (csrow->first_page & csrow->page_mask))) {
660 row = i;
661 break;
662 }
663 }
664
665 if (row == -1)
537fba28 666 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
667 "could not look up page error address %lx\n",
668 (unsigned long)page);
da9bb1d2
AC
669
670 return row;
671}
9110540f 672EXPORT_SYMBOL_GPL(edac_mc_find_csrow_by_page);
da9bb1d2 673
da9bb1d2
AC
674/* FIXME - setable log (warning/emerg) levels */
675/* FIXME - integrate with evlog: http://evlog.sourceforge.net/ */
676void edac_mc_handle_ce(struct mem_ctl_info *mci,
052dfb45
DT
677 unsigned long page_frame_number,
678 unsigned long offset_in_page, unsigned long syndrome,
679 int row, int channel, const char *msg)
da9bb1d2
AC
680{
681 unsigned long remapped_page;
682
537fba28 683 debugf3("MC%d: %s()\n", mci->mc_idx, __func__);
da9bb1d2
AC
684
685 /* FIXME - maybe make panic on INTERNAL ERROR an option */
686 if (row >= mci->nr_csrows || row < 0) {
687 /* something is wrong */
537fba28 688 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
689 "INTERNAL ERROR: row out of range "
690 "(%d >= %d)\n", row, mci->nr_csrows);
da9bb1d2
AC
691 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
692 return;
693 }
e7ecd891 694
da9bb1d2
AC
695 if (channel >= mci->csrows[row].nr_channels || channel < 0) {
696 /* something is wrong */
537fba28 697 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
698 "INTERNAL ERROR: channel out of range "
699 "(%d >= %d)\n", channel,
700 mci->csrows[row].nr_channels);
da9bb1d2
AC
701 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
702 return;
703 }
704
4de78c68 705 if (edac_mc_get_log_ce())
da9bb1d2 706 /* FIXME - put in DIMM location */
537fba28 707 edac_mc_printk(mci, KERN_WARNING,
052dfb45
DT
708 "CE page 0x%lx, offset 0x%lx, grain %d, syndrome "
709 "0x%lx, row %d, channel %d, label \"%s\": %s\n",
710 page_frame_number, offset_in_page,
711 mci->csrows[row].grain, syndrome, row, channel,
712 mci->csrows[row].channels[channel].label, msg);
da9bb1d2
AC
713
714 mci->ce_count++;
715 mci->csrows[row].ce_count++;
716 mci->csrows[row].channels[channel].ce_count++;
717
718 if (mci->scrub_mode & SCRUB_SW_SRC) {
719 /*
720 * Some MC's can remap memory so that it is still available
721 * at a different address when PCI devices map into memory.
722 * MC's that can't do this lose the memory where PCI devices
25985edc 723 * are mapped. This mapping is MC dependent and so we call
da9bb1d2
AC
724 * back into the MC driver for it to map the MC page to
725 * a physical (CPU) page which can then be mapped to a virtual
726 * page - which can then be scrubbed.
727 */
728 remapped_page = mci->ctl_page_to_phys ?
052dfb45
DT
729 mci->ctl_page_to_phys(mci, page_frame_number) :
730 page_frame_number;
da9bb1d2
AC
731
732 edac_mc_scrub_block(remapped_page, offset_in_page,
052dfb45 733 mci->csrows[row].grain);
da9bb1d2
AC
734 }
735}
9110540f 736EXPORT_SYMBOL_GPL(edac_mc_handle_ce);
da9bb1d2 737
e7ecd891 738void edac_mc_handle_ce_no_info(struct mem_ctl_info *mci, const char *msg)
da9bb1d2 739{
4de78c68 740 if (edac_mc_get_log_ce())
537fba28 741 edac_mc_printk(mci, KERN_WARNING,
052dfb45 742 "CE - no information available: %s\n", msg);
e7ecd891 743
da9bb1d2
AC
744 mci->ce_noinfo_count++;
745 mci->ce_count++;
746}
9110540f 747EXPORT_SYMBOL_GPL(edac_mc_handle_ce_no_info);
da9bb1d2 748
da9bb1d2 749void edac_mc_handle_ue(struct mem_ctl_info *mci,
052dfb45
DT
750 unsigned long page_frame_number,
751 unsigned long offset_in_page, int row, const char *msg)
da9bb1d2
AC
752{
753 int len = EDAC_MC_LABEL_LEN * 4;
754 char labels[len + 1];
755 char *pos = labels;
756 int chan;
757 int chars;
758
537fba28 759 debugf3("MC%d: %s()\n", mci->mc_idx, __func__);
da9bb1d2
AC
760
761 /* FIXME - maybe make panic on INTERNAL ERROR an option */
762 if (row >= mci->nr_csrows || row < 0) {
763 /* something is wrong */
537fba28 764 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
765 "INTERNAL ERROR: row out of range "
766 "(%d >= %d)\n", row, mci->nr_csrows);
da9bb1d2
AC
767 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
768 return;
769 }
770
771 chars = snprintf(pos, len + 1, "%s",
079708b9 772 mci->csrows[row].channels[0].label);
da9bb1d2
AC
773 len -= chars;
774 pos += chars;
e7ecd891 775
da9bb1d2 776 for (chan = 1; (chan < mci->csrows[row].nr_channels) && (len > 0);
052dfb45 777 chan++) {
da9bb1d2 778 chars = snprintf(pos, len + 1, ":%s",
079708b9 779 mci->csrows[row].channels[chan].label);
da9bb1d2
AC
780 len -= chars;
781 pos += chars;
782 }
783
4de78c68 784 if (edac_mc_get_log_ue())
537fba28 785 edac_mc_printk(mci, KERN_EMERG,
052dfb45
DT
786 "UE page 0x%lx, offset 0x%lx, grain %d, row %d, "
787 "labels \"%s\": %s\n", page_frame_number,
788 offset_in_page, mci->csrows[row].grain, row,
789 labels, msg);
da9bb1d2 790
4de78c68 791 if (edac_mc_get_panic_on_ue())
e7ecd891 792 panic("EDAC MC%d: UE page 0x%lx, offset 0x%lx, grain %d, "
052dfb45
DT
793 "row %d, labels \"%s\": %s\n", mci->mc_idx,
794 page_frame_number, offset_in_page,
795 mci->csrows[row].grain, row, labels, msg);
da9bb1d2
AC
796
797 mci->ue_count++;
798 mci->csrows[row].ue_count++;
799}
9110540f 800EXPORT_SYMBOL_GPL(edac_mc_handle_ue);
da9bb1d2 801
e7ecd891 802void edac_mc_handle_ue_no_info(struct mem_ctl_info *mci, const char *msg)
da9bb1d2 803{
4de78c68 804 if (edac_mc_get_panic_on_ue())
da9bb1d2
AC
805 panic("EDAC MC%d: Uncorrected Error", mci->mc_idx);
806
4de78c68 807 if (edac_mc_get_log_ue())
537fba28 808 edac_mc_printk(mci, KERN_WARNING,
052dfb45 809 "UE - no information available: %s\n", msg);
da9bb1d2
AC
810 mci->ue_noinfo_count++;
811 mci->ue_count++;
812}
079708b9 813EXPORT_SYMBOL_GPL(edac_mc_handle_ue_no_info);
da9bb1d2 814
9794f33d 815/*************************************************************
816 * On Fully Buffered DIMM modules, this help function is
817 * called to process UE events
818 */
819void edac_mc_handle_fbd_ue(struct mem_ctl_info *mci,
052dfb45
DT
820 unsigned int csrow,
821 unsigned int channela,
822 unsigned int channelb, char *msg)
9794f33d 823{
824 int len = EDAC_MC_LABEL_LEN * 4;
825 char labels[len + 1];
826 char *pos = labels;
827 int chars;
828
829 if (csrow >= mci->nr_csrows) {
830 /* something is wrong */
831 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
832 "INTERNAL ERROR: row out of range (%d >= %d)\n",
833 csrow, mci->nr_csrows);
9794f33d 834 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
835 return;
836 }
837
838 if (channela >= mci->csrows[csrow].nr_channels) {
839 /* something is wrong */
840 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
841 "INTERNAL ERROR: channel-a out of range "
842 "(%d >= %d)\n",
843 channela, mci->csrows[csrow].nr_channels);
9794f33d 844 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
845 return;
846 }
847
848 if (channelb >= mci->csrows[csrow].nr_channels) {
849 /* something is wrong */
850 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
851 "INTERNAL ERROR: channel-b out of range "
852 "(%d >= %d)\n",
853 channelb, mci->csrows[csrow].nr_channels);
9794f33d 854 edac_mc_handle_ue_no_info(mci, "INTERNAL ERROR");
855 return;
856 }
857
858 mci->ue_count++;
859 mci->csrows[csrow].ue_count++;
860
861 /* Generate the DIMM labels from the specified channels */
862 chars = snprintf(pos, len + 1, "%s",
863 mci->csrows[csrow].channels[channela].label);
079708b9
DT
864 len -= chars;
865 pos += chars;
9794f33d 866 chars = snprintf(pos, len + 1, "-%s",
867 mci->csrows[csrow].channels[channelb].label);
868
4de78c68 869 if (edac_mc_get_log_ue())
9794f33d 870 edac_mc_printk(mci, KERN_EMERG,
052dfb45
DT
871 "UE row %d, channel-a= %d channel-b= %d "
872 "labels \"%s\": %s\n", csrow, channela, channelb,
873 labels, msg);
9794f33d 874
4de78c68 875 if (edac_mc_get_panic_on_ue())
9794f33d 876 panic("UE row %d, channel-a= %d channel-b= %d "
052dfb45
DT
877 "labels \"%s\": %s\n", csrow, channela,
878 channelb, labels, msg);
9794f33d 879}
880EXPORT_SYMBOL(edac_mc_handle_fbd_ue);
881
882/*************************************************************
883 * On Fully Buffered DIMM modules, this help function is
884 * called to process CE events
885 */
886void edac_mc_handle_fbd_ce(struct mem_ctl_info *mci,
052dfb45 887 unsigned int csrow, unsigned int channel, char *msg)
9794f33d 888{
889
890 /* Ensure boundary values */
891 if (csrow >= mci->nr_csrows) {
892 /* something is wrong */
893 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
894 "INTERNAL ERROR: row out of range (%d >= %d)\n",
895 csrow, mci->nr_csrows);
9794f33d 896 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
897 return;
898 }
899 if (channel >= mci->csrows[csrow].nr_channels) {
900 /* something is wrong */
901 edac_mc_printk(mci, KERN_ERR,
052dfb45
DT
902 "INTERNAL ERROR: channel out of range (%d >= %d)\n",
903 channel, mci->csrows[csrow].nr_channels);
9794f33d 904 edac_mc_handle_ce_no_info(mci, "INTERNAL ERROR");
905 return;
906 }
907
4de78c68 908 if (edac_mc_get_log_ce())
9794f33d 909 /* FIXME - put in DIMM location */
910 edac_mc_printk(mci, KERN_WARNING,
052dfb45
DT
911 "CE row %d, channel %d, label \"%s\": %s\n",
912 csrow, channel,
913 mci->csrows[csrow].channels[channel].label, msg);
9794f33d 914
915 mci->ce_count++;
916 mci->csrows[csrow].ce_count++;
917 mci->csrows[csrow].channels[channel].ce_count++;
918}
079708b9 919EXPORT_SYMBOL(edac_mc_handle_fbd_ce);
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