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7c9281d7
DT
1/*
2 * edac_mc kernel module
42a8e397
DT
3 * (C) 2005-2007 Linux Networx (http://lnxi.com)
4 *
7c9281d7
DT
5 * This file may be distributed under the terms of the
6 * GNU General Public License.
7 *
42a8e397 8 * Written Doug Thompson <norsk5@xmission.com> www.softwarebitmaker.com
7c9281d7
DT
9 *
10 */
11
7c9281d7 12#include <linux/ctype.h>
5a0e3ad6 13#include <linux/slab.h>
30e1f7a8 14#include <linux/edac.h>
8096cfaf 15#include <linux/bug.h>
7c9281d7 16
20bcb7a8 17#include "edac_core.h"
7c9281d7
DT
18#include "edac_module.h"
19
8096cfaf 20
7c9281d7 21/* MC EDAC Controls, setable by module parameter, and sysfs */
4de78c68
DJ
22static int edac_mc_log_ue = 1;
23static int edac_mc_log_ce = 1;
f044091c 24static int edac_mc_panic_on_ue;
4de78c68 25static int edac_mc_poll_msec = 1000;
7c9281d7
DT
26
27/* Getter functions for above */
4de78c68 28int edac_mc_get_log_ue(void)
7c9281d7 29{
4de78c68 30 return edac_mc_log_ue;
7c9281d7
DT
31}
32
4de78c68 33int edac_mc_get_log_ce(void)
7c9281d7 34{
4de78c68 35 return edac_mc_log_ce;
7c9281d7
DT
36}
37
4de78c68 38int edac_mc_get_panic_on_ue(void)
7c9281d7 39{
4de78c68 40 return edac_mc_panic_on_ue;
7c9281d7
DT
41}
42
81d87cb1
DJ
43/* this is temporary */
44int edac_mc_get_poll_msec(void)
45{
4de78c68 46 return edac_mc_poll_msec;
7c9281d7
DT
47}
48
096846e2
AJ
49static int edac_set_poll_msec(const char *val, struct kernel_param *kp)
50{
51 long l;
52 int ret;
53
54 if (!val)
55 return -EINVAL;
56
57 ret = strict_strtol(val, 0, &l);
58 if (ret == -EINVAL || ((int)l != l))
59 return -EINVAL;
60 *((int *)kp->arg) = l;
61
62 /* notify edac_mc engine to reset the poll period */
63 edac_mc_reset_delay_period(l);
64
65 return 0;
66}
67
7c9281d7 68/* Parameter declarations for above */
4de78c68
DJ
69module_param(edac_mc_panic_on_ue, int, 0644);
70MODULE_PARM_DESC(edac_mc_panic_on_ue, "Panic on uncorrected error: 0=off 1=on");
71module_param(edac_mc_log_ue, int, 0644);
72MODULE_PARM_DESC(edac_mc_log_ue,
079708b9 73 "Log uncorrectable error to console: 0=off 1=on");
4de78c68
DJ
74module_param(edac_mc_log_ce, int, 0644);
75MODULE_PARM_DESC(edac_mc_log_ce,
079708b9 76 "Log correctable error to console: 0=off 1=on");
096846e2
AJ
77module_param_call(edac_mc_poll_msec, edac_set_poll_msec, param_get_int,
78 &edac_mc_poll_msec, 0644);
4de78c68 79MODULE_PARM_DESC(edac_mc_poll_msec, "Polling period in milliseconds");
7c9281d7 80
7c9281d7
DT
81/*
82 * various constants for Memory Controllers
83 */
84static const char *mem_types[] = {
85 [MEM_EMPTY] = "Empty",
86 [MEM_RESERVED] = "Reserved",
87 [MEM_UNKNOWN] = "Unknown",
88 [MEM_FPM] = "FPM",
89 [MEM_EDO] = "EDO",
90 [MEM_BEDO] = "BEDO",
91 [MEM_SDR] = "Unbuffered-SDR",
92 [MEM_RDR] = "Registered-SDR",
93 [MEM_DDR] = "Unbuffered-DDR",
94 [MEM_RDDR] = "Registered-DDR",
1a9b85e6
DJ
95 [MEM_RMBS] = "RMBS",
96 [MEM_DDR2] = "Unbuffered-DDR2",
97 [MEM_FB_DDR2] = "FullyBuffered-DDR2",
1d5f726c 98 [MEM_RDDR2] = "Registered-DDR2",
b1cfebc9
YS
99 [MEM_XDR] = "XDR",
100 [MEM_DDR3] = "Unbuffered-DDR3",
101 [MEM_RDDR3] = "Registered-DDR3"
7c9281d7
DT
102};
103
104static const char *dev_types[] = {
105 [DEV_UNKNOWN] = "Unknown",
106 [DEV_X1] = "x1",
107 [DEV_X2] = "x2",
108 [DEV_X4] = "x4",
109 [DEV_X8] = "x8",
110 [DEV_X16] = "x16",
111 [DEV_X32] = "x32",
112 [DEV_X64] = "x64"
113};
114
115static const char *edac_caps[] = {
116 [EDAC_UNKNOWN] = "Unknown",
117 [EDAC_NONE] = "None",
118 [EDAC_RESERVED] = "Reserved",
119 [EDAC_PARITY] = "PARITY",
120 [EDAC_EC] = "EC",
121 [EDAC_SECDED] = "SECDED",
122 [EDAC_S2ECD2ED] = "S2ECD2ED",
123 [EDAC_S4ECD4ED] = "S4ECD4ED",
124 [EDAC_S8ECD8ED] = "S8ECD8ED",
125 [EDAC_S16ECD16ED] = "S16ECD16ED"
126};
127
7c9281d7
DT
128/* EDAC sysfs CSROW data structures and methods
129 */
130
131/* Set of more default csrow<id> attribute show/store functions */
e27e3dac 132static ssize_t csrow_ue_count_show(struct csrow_info *csrow, char *data,
052dfb45 133 int private)
7c9281d7 134{
079708b9 135 return sprintf(data, "%u\n", csrow->ue_count);
7c9281d7
DT
136}
137
e27e3dac 138static ssize_t csrow_ce_count_show(struct csrow_info *csrow, char *data,
052dfb45 139 int private)
7c9281d7 140{
079708b9 141 return sprintf(data, "%u\n", csrow->ce_count);
7c9281d7
DT
142}
143
e27e3dac 144static ssize_t csrow_size_show(struct csrow_info *csrow, char *data,
052dfb45 145 int private)
7c9281d7 146{
079708b9 147 return sprintf(data, "%u\n", PAGES_TO_MiB(csrow->nr_pages));
7c9281d7
DT
148}
149
e27e3dac 150static ssize_t csrow_mem_type_show(struct csrow_info *csrow, char *data,
052dfb45 151 int private)
7c9281d7 152{
079708b9 153 return sprintf(data, "%s\n", mem_types[csrow->mtype]);
7c9281d7
DT
154}
155
e27e3dac 156static ssize_t csrow_dev_type_show(struct csrow_info *csrow, char *data,
052dfb45 157 int private)
7c9281d7 158{
079708b9 159 return sprintf(data, "%s\n", dev_types[csrow->dtype]);
7c9281d7
DT
160}
161
e27e3dac 162static ssize_t csrow_edac_mode_show(struct csrow_info *csrow, char *data,
052dfb45 163 int private)
7c9281d7 164{
079708b9 165 return sprintf(data, "%s\n", edac_caps[csrow->edac_mode]);
7c9281d7
DT
166}
167
168/* show/store functions for DIMM Label attributes */
169static ssize_t channel_dimm_label_show(struct csrow_info *csrow,
052dfb45 170 char *data, int channel)
7c9281d7 171{
124682c7
AJ
172 /* if field has not been initialized, there is nothing to send */
173 if (!csrow->channels[channel].label[0])
174 return 0;
175
176 return snprintf(data, EDAC_MC_LABEL_LEN, "%s\n",
7c9281d7
DT
177 csrow->channels[channel].label);
178}
179
180static ssize_t channel_dimm_label_store(struct csrow_info *csrow,
079708b9
DT
181 const char *data,
182 size_t count, int channel)
7c9281d7
DT
183{
184 ssize_t max_size = 0;
185
079708b9 186 max_size = min((ssize_t) count, (ssize_t) EDAC_MC_LABEL_LEN - 1);
7c9281d7
DT
187 strncpy(csrow->channels[channel].label, data, max_size);
188 csrow->channels[channel].label[max_size] = '\0';
189
190 return max_size;
191}
192
193/* show function for dynamic chX_ce_count attribute */
194static ssize_t channel_ce_count_show(struct csrow_info *csrow,
052dfb45 195 char *data, int channel)
7c9281d7
DT
196{
197 return sprintf(data, "%u\n", csrow->channels[channel].ce_count);
198}
199
200/* csrow specific attribute structure */
201struct csrowdev_attribute {
202 struct attribute attr;
079708b9
DT
203 ssize_t(*show) (struct csrow_info *, char *, int);
204 ssize_t(*store) (struct csrow_info *, const char *, size_t, int);
205 int private;
7c9281d7
DT
206};
207
208#define to_csrow(k) container_of(k, struct csrow_info, kobj)
209#define to_csrowdev_attr(a) container_of(a, struct csrowdev_attribute, attr)
210
211/* Set of show/store higher level functions for default csrow attributes */
212static ssize_t csrowdev_show(struct kobject *kobj,
052dfb45 213 struct attribute *attr, char *buffer)
7c9281d7
DT
214{
215 struct csrow_info *csrow = to_csrow(kobj);
216 struct csrowdev_attribute *csrowdev_attr = to_csrowdev_attr(attr);
217
218 if (csrowdev_attr->show)
219 return csrowdev_attr->show(csrow,
052dfb45 220 buffer, csrowdev_attr->private);
7c9281d7
DT
221 return -EIO;
222}
223
224static ssize_t csrowdev_store(struct kobject *kobj, struct attribute *attr,
052dfb45 225 const char *buffer, size_t count)
7c9281d7
DT
226{
227 struct csrow_info *csrow = to_csrow(kobj);
079708b9 228 struct csrowdev_attribute *csrowdev_attr = to_csrowdev_attr(attr);
7c9281d7
DT
229
230 if (csrowdev_attr->store)
231 return csrowdev_attr->store(csrow,
052dfb45
DT
232 buffer,
233 count, csrowdev_attr->private);
7c9281d7
DT
234 return -EIO;
235}
236
52cf25d0 237static const struct sysfs_ops csrowfs_ops = {
079708b9
DT
238 .show = csrowdev_show,
239 .store = csrowdev_store
7c9281d7
DT
240};
241
242#define CSROWDEV_ATTR(_name,_mode,_show,_store,_private) \
243static struct csrowdev_attribute attr_##_name = { \
244 .attr = {.name = __stringify(_name), .mode = _mode }, \
245 .show = _show, \
246 .store = _store, \
247 .private = _private, \
248};
249
250/* default cwrow<id>/attribute files */
079708b9
DT
251CSROWDEV_ATTR(size_mb, S_IRUGO, csrow_size_show, NULL, 0);
252CSROWDEV_ATTR(dev_type, S_IRUGO, csrow_dev_type_show, NULL, 0);
253CSROWDEV_ATTR(mem_type, S_IRUGO, csrow_mem_type_show, NULL, 0);
254CSROWDEV_ATTR(edac_mode, S_IRUGO, csrow_edac_mode_show, NULL, 0);
255CSROWDEV_ATTR(ue_count, S_IRUGO, csrow_ue_count_show, NULL, 0);
256CSROWDEV_ATTR(ce_count, S_IRUGO, csrow_ce_count_show, NULL, 0);
7c9281d7
DT
257
258/* default attributes of the CSROW<id> object */
259static struct csrowdev_attribute *default_csrow_attr[] = {
260 &attr_dev_type,
261 &attr_mem_type,
262 &attr_edac_mode,
263 &attr_size_mb,
264 &attr_ue_count,
265 &attr_ce_count,
266 NULL,
267};
268
7c9281d7 269/* possible dynamic channel DIMM Label attribute files */
079708b9 270CSROWDEV_ATTR(ch0_dimm_label, S_IRUGO | S_IWUSR,
052dfb45 271 channel_dimm_label_show, channel_dimm_label_store, 0);
079708b9 272CSROWDEV_ATTR(ch1_dimm_label, S_IRUGO | S_IWUSR,
052dfb45 273 channel_dimm_label_show, channel_dimm_label_store, 1);
079708b9 274CSROWDEV_ATTR(ch2_dimm_label, S_IRUGO | S_IWUSR,
052dfb45 275 channel_dimm_label_show, channel_dimm_label_store, 2);
079708b9 276CSROWDEV_ATTR(ch3_dimm_label, S_IRUGO | S_IWUSR,
052dfb45 277 channel_dimm_label_show, channel_dimm_label_store, 3);
079708b9 278CSROWDEV_ATTR(ch4_dimm_label, S_IRUGO | S_IWUSR,
052dfb45 279 channel_dimm_label_show, channel_dimm_label_store, 4);
079708b9 280CSROWDEV_ATTR(ch5_dimm_label, S_IRUGO | S_IWUSR,
052dfb45 281 channel_dimm_label_show, channel_dimm_label_store, 5);
7c9281d7
DT
282
283/* Total possible dynamic DIMM Label attribute file table */
284static struct csrowdev_attribute *dynamic_csrow_dimm_attr[] = {
079708b9
DT
285 &attr_ch0_dimm_label,
286 &attr_ch1_dimm_label,
287 &attr_ch2_dimm_label,
288 &attr_ch3_dimm_label,
289 &attr_ch4_dimm_label,
290 &attr_ch5_dimm_label
7c9281d7
DT
291};
292
293/* possible dynamic channel ce_count attribute files */
079708b9
DT
294CSROWDEV_ATTR(ch0_ce_count, S_IRUGO | S_IWUSR, channel_ce_count_show, NULL, 0);
295CSROWDEV_ATTR(ch1_ce_count, S_IRUGO | S_IWUSR, channel_ce_count_show, NULL, 1);
296CSROWDEV_ATTR(ch2_ce_count, S_IRUGO | S_IWUSR, channel_ce_count_show, NULL, 2);
297CSROWDEV_ATTR(ch3_ce_count, S_IRUGO | S_IWUSR, channel_ce_count_show, NULL, 3);
298CSROWDEV_ATTR(ch4_ce_count, S_IRUGO | S_IWUSR, channel_ce_count_show, NULL, 4);
299CSROWDEV_ATTR(ch5_ce_count, S_IRUGO | S_IWUSR, channel_ce_count_show, NULL, 5);
7c9281d7
DT
300
301/* Total possible dynamic ce_count attribute file table */
302static struct csrowdev_attribute *dynamic_csrow_ce_count_attr[] = {
079708b9
DT
303 &attr_ch0_ce_count,
304 &attr_ch1_ce_count,
305 &attr_ch2_ce_count,
306 &attr_ch3_ce_count,
307 &attr_ch4_ce_count,
308 &attr_ch5_ce_count
7c9281d7
DT
309};
310
7c9281d7
DT
311#define EDAC_NR_CHANNELS 6
312
313/* Create dynamic CHANNEL files, indexed by 'chan', under specifed CSROW */
314static int edac_create_channel_files(struct kobject *kobj, int chan)
315{
079708b9 316 int err = -ENODEV;
7c9281d7
DT
317
318 if (chan >= EDAC_NR_CHANNELS)
319 return err;
320
321 /* create the DIMM label attribute file */
322 err = sysfs_create_file(kobj,
079708b9
DT
323 (struct attribute *)
324 dynamic_csrow_dimm_attr[chan]);
7c9281d7
DT
325
326 if (!err) {
327 /* create the CE Count attribute file */
328 err = sysfs_create_file(kobj,
079708b9
DT
329 (struct attribute *)
330 dynamic_csrow_ce_count_attr[chan]);
7c9281d7 331 } else {
e27e3dac
DT
332 debugf1("%s() dimm labels and ce_count files created",
333 __func__);
7c9281d7
DT
334 }
335
336 return err;
337}
338
339/* No memory to release for this kobj */
340static void edac_csrow_instance_release(struct kobject *kobj)
341{
8096cfaf 342 struct mem_ctl_info *mci;
7c9281d7
DT
343 struct csrow_info *cs;
344
8096cfaf
DT
345 debugf1("%s()\n", __func__);
346
7c9281d7 347 cs = container_of(kobj, struct csrow_info, kobj);
8096cfaf
DT
348 mci = cs->mci;
349
350 kobject_put(&mci->edac_mci_kobj);
7c9281d7
DT
351}
352
353/* the kobj_type instance for a CSROW */
354static struct kobj_type ktype_csrow = {
355 .release = edac_csrow_instance_release,
356 .sysfs_ops = &csrowfs_ops,
079708b9 357 .default_attrs = (struct attribute **)default_csrow_attr,
7c9281d7
DT
358};
359
360/* Create a CSROW object under specifed edac_mc_device */
8096cfaf
DT
361static int edac_create_csrow_object(struct mem_ctl_info *mci,
362 struct csrow_info *csrow, int index)
7c9281d7 363{
8096cfaf
DT
364 struct kobject *kobj_mci = &mci->edac_mci_kobj;
365 struct kobject *kobj;
7c9281d7 366 int chan;
8096cfaf 367 int err;
7c9281d7
DT
368
369 /* generate ..../edac/mc/mc<id>/csrow<index> */
8096cfaf
DT
370 memset(&csrow->kobj, 0, sizeof(csrow->kobj));
371 csrow->mci = mci; /* include container up link */
8096cfaf
DT
372
373 /* bump the mci instance's kobject's ref count */
374 kobj = kobject_get(&mci->edac_mci_kobj);
375 if (!kobj) {
376 err = -ENODEV;
377 goto err_out;
378 }
7c9281d7
DT
379
380 /* Instanstiate the csrow object */
b2ed215a
GKH
381 err = kobject_init_and_add(&csrow->kobj, &ktype_csrow, kobj_mci,
382 "csrow%d", index);
8096cfaf
DT
383 if (err)
384 goto err_release_top_kobj;
385
386 /* At this point, to release a csrow kobj, one must
c10997f6 387 * call the kobject_put and allow that tear down
8096cfaf
DT
388 * to work the releasing
389 */
390
391 /* Create the dyanmic attribute files on this csrow,
392 * namely, the DIMM labels and the channel ce_count
393 */
394 for (chan = 0; chan < csrow->nr_channels; chan++) {
395 err = edac_create_channel_files(&csrow->kobj, chan);
396 if (err) {
397 /* special case the unregister here */
c10997f6 398 kobject_put(&csrow->kobj);
8096cfaf 399 goto err_out;
7c9281d7
DT
400 }
401 }
b2ed215a 402 kobject_uevent(&csrow->kobj, KOBJ_ADD);
8096cfaf
DT
403 return 0;
404
405 /* error unwind stack */
406err_release_top_kobj:
407 kobject_put(&mci->edac_mci_kobj);
408
409err_out:
7c9281d7
DT
410 return err;
411}
412
413/* default sysfs methods and data structures for the main MCI kobject */
414
415static ssize_t mci_reset_counters_store(struct mem_ctl_info *mci,
079708b9 416 const char *data, size_t count)
7c9281d7
DT
417{
418 int row, chan;
419
420 mci->ue_noinfo_count = 0;
421 mci->ce_noinfo_count = 0;
422 mci->ue_count = 0;
423 mci->ce_count = 0;
424
425 for (row = 0; row < mci->nr_csrows; row++) {
426 struct csrow_info *ri = &mci->csrows[row];
427
428 ri->ue_count = 0;
429 ri->ce_count = 0;
430
431 for (chan = 0; chan < ri->nr_channels; chan++)
432 ri->channels[chan].ce_count = 0;
433 }
434
435 mci->start_time = jiffies;
436 return count;
437}
438
439/* memory scrubbing */
440static ssize_t mci_sdram_scrub_rate_store(struct mem_ctl_info *mci,
eba042a8 441 const char *data, size_t count)
7c9281d7 442{
eba042a8
BP
443 unsigned long bandwidth = 0;
444 int err;
7c9281d7 445
eba042a8
BP
446 if (!mci->set_sdram_scrub_rate) {
447 edac_printk(KERN_WARNING, EDAC_MC,
448 "Memory scrub rate setting not implemented!\n");
449 return -EINVAL;
450 }
7c9281d7 451
eba042a8
BP
452 if (strict_strtoul(data, 10, &bandwidth) < 0)
453 return -EINVAL;
7c9281d7 454
eba042a8
BP
455 err = mci->set_sdram_scrub_rate(mci, (u32)bandwidth);
456 if (err) {
457 edac_printk(KERN_DEBUG, EDAC_MC,
458 "Failed setting scrub rate to %lu\n", bandwidth);
459 return -EINVAL;
460 }
461 else {
462 edac_printk(KERN_DEBUG, EDAC_MC,
463 "Scrub rate set to: %lu\n", bandwidth);
464 return count;
7c9281d7 465 }
7c9281d7
DT
466}
467
468static ssize_t mci_sdram_scrub_rate_show(struct mem_ctl_info *mci, char *data)
469{
eba042a8
BP
470 u32 bandwidth = 0;
471 int err;
472
473 if (!mci->get_sdram_scrub_rate) {
7c9281d7 474 edac_printk(KERN_WARNING, EDAC_MC,
eba042a8
BP
475 "Memory scrub rate reading not implemented\n");
476 return -EINVAL;
477 }
478
479 err = mci->get_sdram_scrub_rate(mci, &bandwidth);
480 if (err) {
481 edac_printk(KERN_DEBUG, EDAC_MC, "Error reading scrub rate\n");
482 return err;
483 }
484 else {
485 edac_printk(KERN_DEBUG, EDAC_MC,
486 "Read scrub rate: %d\n", bandwidth);
487 return sprintf(data, "%d\n", bandwidth);
7c9281d7 488 }
7c9281d7
DT
489}
490
491/* default attribute files for the MCI object */
492static ssize_t mci_ue_count_show(struct mem_ctl_info *mci, char *data)
493{
079708b9 494 return sprintf(data, "%d\n", mci->ue_count);
7c9281d7
DT
495}
496
497static ssize_t mci_ce_count_show(struct mem_ctl_info *mci, char *data)
498{
079708b9 499 return sprintf(data, "%d\n", mci->ce_count);
7c9281d7
DT
500}
501
502static ssize_t mci_ce_noinfo_show(struct mem_ctl_info *mci, char *data)
503{
079708b9 504 return sprintf(data, "%d\n", mci->ce_noinfo_count);
7c9281d7
DT
505}
506
507static ssize_t mci_ue_noinfo_show(struct mem_ctl_info *mci, char *data)
508{
079708b9 509 return sprintf(data, "%d\n", mci->ue_noinfo_count);
7c9281d7
DT
510}
511
512static ssize_t mci_seconds_show(struct mem_ctl_info *mci, char *data)
513{
079708b9 514 return sprintf(data, "%ld\n", (jiffies - mci->start_time) / HZ);
7c9281d7
DT
515}
516
517static ssize_t mci_ctl_name_show(struct mem_ctl_info *mci, char *data)
518{
079708b9 519 return sprintf(data, "%s\n", mci->ctl_name);
7c9281d7
DT
520}
521
522static ssize_t mci_size_mb_show(struct mem_ctl_info *mci, char *data)
523{
524 int total_pages, csrow_idx;
525
526 for (total_pages = csrow_idx = 0; csrow_idx < mci->nr_csrows;
052dfb45 527 csrow_idx++) {
7c9281d7
DT
528 struct csrow_info *csrow = &mci->csrows[csrow_idx];
529
530 if (!csrow->nr_pages)
531 continue;
532
533 total_pages += csrow->nr_pages;
534 }
535
079708b9 536 return sprintf(data, "%u\n", PAGES_TO_MiB(total_pages));
7c9281d7
DT
537}
538
7c9281d7 539#define to_mci(k) container_of(k, struct mem_ctl_info, edac_mci_kobj)
42a8e397 540#define to_mcidev_attr(a) container_of(a,struct mcidev_sysfs_attribute,attr)
7c9281d7
DT
541
542/* MCI show/store functions for top most object */
543static ssize_t mcidev_show(struct kobject *kobj, struct attribute *attr,
052dfb45 544 char *buffer)
7c9281d7
DT
545{
546 struct mem_ctl_info *mem_ctl_info = to_mci(kobj);
42a8e397 547 struct mcidev_sysfs_attribute *mcidev_attr = to_mcidev_attr(attr);
7c9281d7 548
cc301b3a
MCC
549 debugf1("%s() mem_ctl_info %p\n", __func__, mem_ctl_info);
550
7c9281d7
DT
551 if (mcidev_attr->show)
552 return mcidev_attr->show(mem_ctl_info, buffer);
553
554 return -EIO;
555}
556
557static ssize_t mcidev_store(struct kobject *kobj, struct attribute *attr,
052dfb45 558 const char *buffer, size_t count)
7c9281d7
DT
559{
560 struct mem_ctl_info *mem_ctl_info = to_mci(kobj);
42a8e397 561 struct mcidev_sysfs_attribute *mcidev_attr = to_mcidev_attr(attr);
7c9281d7 562
cc301b3a
MCC
563 debugf1("%s() mem_ctl_info %p\n", __func__, mem_ctl_info);
564
7c9281d7
DT
565 if (mcidev_attr->store)
566 return mcidev_attr->store(mem_ctl_info, buffer, count);
567
568 return -EIO;
569}
570
8096cfaf 571/* Intermediate show/store table */
52cf25d0 572static const struct sysfs_ops mci_ops = {
7c9281d7
DT
573 .show = mcidev_show,
574 .store = mcidev_store
575};
576
577#define MCIDEV_ATTR(_name,_mode,_show,_store) \
42a8e397 578static struct mcidev_sysfs_attribute mci_attr_##_name = { \
7c9281d7
DT
579 .attr = {.name = __stringify(_name), .mode = _mode }, \
580 .show = _show, \
581 .store = _store, \
582};
583
584/* default Control file */
079708b9 585MCIDEV_ATTR(reset_counters, S_IWUSR, NULL, mci_reset_counters_store);
7c9281d7
DT
586
587/* default Attribute files */
079708b9
DT
588MCIDEV_ATTR(mc_name, S_IRUGO, mci_ctl_name_show, NULL);
589MCIDEV_ATTR(size_mb, S_IRUGO, mci_size_mb_show, NULL);
590MCIDEV_ATTR(seconds_since_reset, S_IRUGO, mci_seconds_show, NULL);
591MCIDEV_ATTR(ue_noinfo_count, S_IRUGO, mci_ue_noinfo_show, NULL);
592MCIDEV_ATTR(ce_noinfo_count, S_IRUGO, mci_ce_noinfo_show, NULL);
593MCIDEV_ATTR(ue_count, S_IRUGO, mci_ue_count_show, NULL);
594MCIDEV_ATTR(ce_count, S_IRUGO, mci_ce_count_show, NULL);
7c9281d7
DT
595
596/* memory scrubber attribute file */
079708b9 597MCIDEV_ATTR(sdram_scrub_rate, S_IRUGO | S_IWUSR, mci_sdram_scrub_rate_show,
052dfb45 598 mci_sdram_scrub_rate_store);
7c9281d7 599
42a8e397 600static struct mcidev_sysfs_attribute *mci_attr[] = {
7c9281d7
DT
601 &mci_attr_reset_counters,
602 &mci_attr_mc_name,
603 &mci_attr_size_mb,
604 &mci_attr_seconds_since_reset,
605 &mci_attr_ue_noinfo_count,
606 &mci_attr_ce_noinfo_count,
607 &mci_attr_ue_count,
608 &mci_attr_ce_count,
609 &mci_attr_sdram_scrub_rate,
610 NULL
611};
612
8096cfaf 613
7c9281d7
DT
614/*
615 * Release of a MC controlling instance
8096cfaf
DT
616 *
617 * each MC control instance has the following resources upon entry:
618 * a) a ref count on the top memctl kobj
619 * b) a ref count on this module
620 *
621 * this function must decrement those ref counts and then
622 * issue a free on the instance's memory
7c9281d7 623 */
8096cfaf 624static void edac_mci_control_release(struct kobject *kobj)
7c9281d7
DT
625{
626 struct mem_ctl_info *mci;
627
628 mci = to_mci(kobj);
8096cfaf
DT
629
630 debugf0("%s() mci instance idx=%d releasing\n", __func__, mci->mc_idx);
631
632 /* decrement the module ref count */
633 module_put(mci->owner);
7c9281d7
DT
634}
635
636static struct kobj_type ktype_mci = {
8096cfaf 637 .release = edac_mci_control_release,
7c9281d7 638 .sysfs_ops = &mci_ops,
079708b9 639 .default_attrs = (struct attribute **)mci_attr,
7c9281d7
DT
640};
641
8096cfaf
DT
642/* EDAC memory controller sysfs kset:
643 * /sys/devices/system/edac/mc
644 */
f9fc82ad 645static struct kset *mc_kset;
8096cfaf
DT
646
647/*
648 * edac_mc_register_sysfs_main_kobj
649 *
650 * setups and registers the main kobject for each mci
651 */
652int edac_mc_register_sysfs_main_kobj(struct mem_ctl_info *mci)
653{
654 struct kobject *kobj_mci;
655 int err;
656
657 debugf1("%s()\n", __func__);
658
659 kobj_mci = &mci->edac_mci_kobj;
660
661 /* Init the mci's kobject */
662 memset(kobj_mci, 0, sizeof(*kobj_mci));
663
8096cfaf
DT
664 /* Record which module 'owns' this control structure
665 * and bump the ref count of the module
666 */
667 mci->owner = THIS_MODULE;
668
669 /* bump ref count on this module */
670 if (!try_module_get(mci->owner)) {
671 err = -ENODEV;
672 goto fail_out;
673 }
674
b2ed215a 675 /* this instance become part of the mc_kset */
f9fc82ad 676 kobj_mci->kset = mc_kset;
b2ed215a 677
8096cfaf 678 /* register the mc<id> kobject to the mc_kset */
b2ed215a
GKH
679 err = kobject_init_and_add(kobj_mci, &ktype_mci, NULL,
680 "mc%d", mci->mc_idx);
8096cfaf
DT
681 if (err) {
682 debugf1("%s()Failed to register '.../edac/mc%d'\n",
683 __func__, mci->mc_idx);
684 goto kobj_reg_fail;
685 }
b2ed215a 686 kobject_uevent(kobj_mci, KOBJ_ADD);
8096cfaf
DT
687
688 /* At this point, to 'free' the control struct,
689 * edac_mc_unregister_sysfs_main_kobj() must be used
690 */
691
692 debugf1("%s() Registered '.../edac/mc%d' kobject\n",
693 __func__, mci->mc_idx);
694
695 return 0;
696
697 /* Error exit stack */
698
699kobj_reg_fail:
700 module_put(mci->owner);
701
702fail_out:
703 return err;
704}
705
706/*
707 * edac_mc_register_sysfs_main_kobj
708 *
709 * tears down and the main mci kobject from the mc_kset
710 */
711void edac_mc_unregister_sysfs_main_kobj(struct mem_ctl_info *mci)
712{
bbc560ae
MCC
713 debugf1("%s()\n", __func__);
714
8096cfaf 715 /* delete the kobj from the mc_kset */
c10997f6 716 kobject_put(&mci->edac_mci_kobj);
8096cfaf
DT
717}
718
7c9281d7
DT
719#define EDAC_DEVICE_SYMLINK "device"
720
b968759e 721#define grp_to_mci(k) (container_of(k, struct mcidev_sysfs_group_kobj, kobj)->mci)
cc301b3a
MCC
722
723/* MCI show/store functions for top most object */
724static ssize_t inst_grp_show(struct kobject *kobj, struct attribute *attr,
725 char *buffer)
726{
727 struct mem_ctl_info *mem_ctl_info = grp_to_mci(kobj);
728 struct mcidev_sysfs_attribute *mcidev_attr = to_mcidev_attr(attr);
729
730 debugf1("%s() mem_ctl_info %p\n", __func__, mem_ctl_info);
731
732 if (mcidev_attr->show)
733 return mcidev_attr->show(mem_ctl_info, buffer);
734
735 return -EIO;
736}
737
738static ssize_t inst_grp_store(struct kobject *kobj, struct attribute *attr,
739 const char *buffer, size_t count)
740{
741 struct mem_ctl_info *mem_ctl_info = grp_to_mci(kobj);
742 struct mcidev_sysfs_attribute *mcidev_attr = to_mcidev_attr(attr);
743
744 debugf1("%s() mem_ctl_info %p\n", __func__, mem_ctl_info);
745
746 if (mcidev_attr->store)
747 return mcidev_attr->store(mem_ctl_info, buffer, count);
748
749 return -EIO;
750}
751
752/* No memory to release for this kobj */
753static void edac_inst_grp_release(struct kobject *kobj)
754{
b968759e 755 struct mcidev_sysfs_group_kobj *grp;
cc301b3a
MCC
756 struct mem_ctl_info *mci;
757
758 debugf1("%s()\n", __func__);
759
b968759e 760 grp = container_of(kobj, struct mcidev_sysfs_group_kobj, kobj);
cc301b3a 761 mci = grp->mci;
cc301b3a
MCC
762}
763
764/* Intermediate show/store table */
765static struct sysfs_ops inst_grp_ops = {
766 .show = inst_grp_show,
767 .store = inst_grp_store
768};
769
770/* the kobj_type instance for a instance group */
771static struct kobj_type ktype_inst_grp = {
772 .release = edac_inst_grp_release,
773 .sysfs_ops = &inst_grp_ops,
cc301b3a
MCC
774};
775
776
42a8e397 777/*
8096cfaf 778 * edac_create_mci_instance_attributes
9fa2fc2e
MCC
779 * create MC driver specific attributes bellow an specified kobj
780 * This routine calls itself recursively, in order to create an entire
781 * object tree.
42a8e397 782 */
cc301b3a 783static int edac_create_mci_instance_attributes(struct mem_ctl_info *mci,
1288c18f 784 const struct mcidev_sysfs_attribute *sysfs_attrib,
9fa2fc2e 785 struct kobject *kobj)
42a8e397
DT
786{
787 int err;
42a8e397 788
cc301b3a
MCC
789 debugf1("%s()\n", __func__);
790
9fa2fc2e 791 while (sysfs_attrib) {
6fe1108f 792 debugf1("%s() sysfs_attrib = %p\n",__func__, sysfs_attrib);
9fa2fc2e 793 if (sysfs_attrib->grp) {
b968759e
MCC
794 struct mcidev_sysfs_group_kobj *grp_kobj;
795
796 grp_kobj = kzalloc(sizeof(*grp_kobj), GFP_KERNEL);
797 if (!grp_kobj)
798 return -ENOMEM;
799
b968759e
MCC
800 grp_kobj->grp = sysfs_attrib->grp;
801 grp_kobj->mci = mci;
6fe1108f 802 list_add_tail(&grp_kobj->list, &mci->grp_kobj_list);
c419d921 803
cc301b3a
MCC
804 debugf0("%s() grp %s, mci %p\n", __func__,
805 sysfs_attrib->grp->name, mci);
806
b968759e
MCC
807 err = kobject_init_and_add(&grp_kobj->kobj,
808 &ktype_inst_grp,
c419d921 809 &mci->edac_mci_kobj,
9fa2fc2e 810 sysfs_attrib->grp->name);
6fe1108f
MCC
811 if (err < 0) {
812 printk(KERN_ERR "kobject_init_and_add failed: %d\n", err);
9fa2fc2e 813 return err;
6fe1108f 814 }
cc301b3a 815 err = edac_create_mci_instance_attributes(mci,
b968759e
MCC
816 grp_kobj->grp->mcidev_attr,
817 &grp_kobj->kobj);
cc301b3a 818
6fe1108f 819 if (err < 0)
9fa2fc2e
MCC
820 return err;
821 } else if (sysfs_attrib->attr.name) {
822 debugf0("%s() file %s\n", __func__,
823 sysfs_attrib->attr.name);
824
825 err = sysfs_create_file(kobj, &sysfs_attrib->attr);
6fe1108f
MCC
826 if (err < 0) {
827 printk(KERN_ERR "sysfs_create_file failed: %d\n", err);
828 return err;
829 }
9fa2fc2e
MCC
830 } else
831 break;
42a8e397 832
42a8e397
DT
833 sysfs_attrib++;
834 }
835
836 return 0;
837}
838
8096cfaf
DT
839/*
840 * edac_remove_mci_instance_attributes
841 * remove MC driver specific attributes at the topmost level
842 * directory of this mci instance.
843 */
b968759e 844static void edac_remove_mci_instance_attributes(struct mem_ctl_info *mci,
1288c18f 845 const struct mcidev_sysfs_attribute *sysfs_attrib,
b968759e 846 struct kobject *kobj, int count)
8096cfaf 847{
b968759e
MCC
848 struct mcidev_sysfs_group_kobj *grp_kobj, *tmp;
849
cc301b3a
MCC
850 debugf1("%s()\n", __func__);
851
b968759e
MCC
852 /*
853 * loop if there are attributes and until we hit a NULL entry
854 * Remove first all the atributes
855 */
9fa2fc2e 856 while (sysfs_attrib) {
6fe1108f 857 debugf1("%s() sysfs_attrib = %p\n",__func__, sysfs_attrib);
9fa2fc2e 858 if (sysfs_attrib->grp) {
6fe1108f
MCC
859 debugf1("%s() seeking for group %s\n",
860 __func__, sysfs_attrib->grp->name);
861 list_for_each_entry(grp_kobj,
862 &mci->grp_kobj_list, list) {
863 debugf1("%s() grp_kobj->grp = %p\n",__func__, grp_kobj->grp);
864 if (grp_kobj->grp == sysfs_attrib->grp) {
b968759e
MCC
865 edac_remove_mci_instance_attributes(mci,
866 grp_kobj->grp->mcidev_attr,
867 &grp_kobj->kobj, count + 1);
6fe1108f
MCC
868 debugf0("%s() group %s\n", __func__,
869 sysfs_attrib->grp->name);
870 kobject_put(&grp_kobj->kobj);
871 }
872 }
873 debugf1("%s() end of seeking for group %s\n",
874 __func__, sysfs_attrib->grp->name);
b968759e 875 } else if (sysfs_attrib->attr.name) {
9fa2fc2e
MCC
876 debugf0("%s() file %s\n", __func__,
877 sysfs_attrib->attr.name);
878 sysfs_remove_file(kobj, &sysfs_attrib->attr);
879 } else
880 break;
8096cfaf
DT
881 sysfs_attrib++;
882 }
b968759e 883
6fe1108f
MCC
884 /* Remove the group objects */
885 if (count)
886 return;
887 list_for_each_entry_safe(grp_kobj, tmp,
888 &mci->grp_kobj_list, list) {
889 list_del(&grp_kobj->list);
890 kfree(grp_kobj);
891 }
8096cfaf
DT
892}
893
894
7c9281d7
DT
895/*
896 * Create a new Memory Controller kobject instance,
897 * mc<id> under the 'mc' directory
898 *
899 * Return:
900 * 0 Success
901 * !0 Failure
902 */
903int edac_create_sysfs_mci_device(struct mem_ctl_info *mci)
904{
905 int i;
906 int err;
907 struct csrow_info *csrow;
8096cfaf 908 struct kobject *kobj_mci = &mci->edac_mci_kobj;
7c9281d7
DT
909
910 debugf0("%s() idx=%d\n", __func__, mci->mc_idx);
7c9281d7 911
b968759e
MCC
912 INIT_LIST_HEAD(&mci->grp_kobj_list);
913
7c9281d7 914 /* create a symlink for the device */
8096cfaf 915 err = sysfs_create_link(kobj_mci, &mci->dev->kobj,
7c9281d7 916 EDAC_DEVICE_SYMLINK);
8096cfaf
DT
917 if (err) {
918 debugf1("%s() failure to create symlink\n", __func__);
7c9281d7 919 goto fail0;
8096cfaf 920 }
7c9281d7 921
42a8e397
DT
922 /* If the low level driver desires some attributes,
923 * then create them now for the driver.
924 */
925 if (mci->mc_driver_sysfs_attributes) {
cc301b3a 926 err = edac_create_mci_instance_attributes(mci,
9fa2fc2e
MCC
927 mci->mc_driver_sysfs_attributes,
928 &mci->edac_mci_kobj);
8096cfaf
DT
929 if (err) {
930 debugf1("%s() failure to create mci attributes\n",
931 __func__);
42a8e397 932 goto fail0;
8096cfaf 933 }
42a8e397
DT
934 }
935
8096cfaf 936 /* Make directories for each CSROW object under the mc<id> kobject
7c9281d7
DT
937 */
938 for (i = 0; i < mci->nr_csrows; i++) {
939 csrow = &mci->csrows[i];
940
941 /* Only expose populated CSROWs */
942 if (csrow->nr_pages > 0) {
8096cfaf
DT
943 err = edac_create_csrow_object(mci, csrow, i);
944 if (err) {
945 debugf1("%s() failure: create csrow %d obj\n",
946 __func__, i);
7c9281d7 947 goto fail1;
8096cfaf 948 }
7c9281d7
DT
949 }
950 }
951
952 return 0;
953
954 /* CSROW error: backout what has already been registered, */
052dfb45 955fail1:
079708b9 956 for (i--; i >= 0; i--) {
7c9281d7 957 if (csrow->nr_pages > 0) {
c10997f6 958 kobject_put(&mci->csrows[i].kobj);
7c9281d7
DT
959 }
960 }
961
8096cfaf 962 /* remove the mci instance's attributes, if any */
b968759e
MCC
963 edac_remove_mci_instance_attributes(mci,
964 mci->mc_driver_sysfs_attributes, &mci->edac_mci_kobj, 0);
8096cfaf
DT
965
966 /* remove the symlink */
967 sysfs_remove_link(kobj_mci, EDAC_DEVICE_SYMLINK);
968
052dfb45 969fail0:
7c9281d7
DT
970 return err;
971}
972
973/*
974 * remove a Memory Controller instance
975 */
976void edac_remove_sysfs_mci_device(struct mem_ctl_info *mci)
977{
978 int i;
979
980 debugf0("%s()\n", __func__);
981
982 /* remove all csrow kobjects */
6fe1108f 983 debugf0("%s() unregister this mci kobj\n", __func__);
7c9281d7
DT
984 for (i = 0; i < mci->nr_csrows; i++) {
985 if (mci->csrows[i].nr_pages > 0) {
8096cfaf 986 debugf0("%s() unreg csrow-%d\n", __func__, i);
c10997f6 987 kobject_put(&mci->csrows[i].kobj);
7c9281d7
DT
988 }
989 }
990
6fe1108f
MCC
991 /* remove this mci instance's attribtes */
992 if (mci->mc_driver_sysfs_attributes) {
993 debugf0("%s() unregister mci private attributes\n", __func__);
994 edac_remove_mci_instance_attributes(mci,
995 mci->mc_driver_sysfs_attributes,
996 &mci->edac_mci_kobj, 0);
997 }
8096cfaf
DT
998
999 /* remove the symlink */
6fe1108f 1000 debugf0("%s() remove_link\n", __func__);
7c9281d7 1001 sysfs_remove_link(&mci->edac_mci_kobj, EDAC_DEVICE_SYMLINK);
8096cfaf 1002
8096cfaf 1003 /* unregister this instance's kobject */
6fe1108f 1004 debugf0("%s() remove_mci_instance\n", __func__);
c10997f6 1005 kobject_put(&mci->edac_mci_kobj);
7c9281d7 1006}
8096cfaf
DT
1007
1008
1009
1010
1011/*
1012 * edac_setup_sysfs_mc_kset(void)
1013 *
1014 * Initialize the mc_kset for the 'mc' entry
1015 * This requires creating the top 'mc' directory with a kset
1016 * and its controls/attributes.
1017 *
1018 * To this 'mc' kset, instance 'mci' will be grouped as children.
1019 *
1020 * Return: 0 SUCCESS
1021 * !0 FAILURE error code
1022 */
1023int edac_sysfs_setup_mc_kset(void)
1024{
ca755e0a 1025 int err = -EINVAL;
8096cfaf
DT
1026 struct sysdev_class *edac_class;
1027
1028 debugf1("%s()\n", __func__);
1029
1030 /* get the /sys/devices/system/edac class reference */
30e1f7a8 1031 edac_class = edac_get_sysfs_class();
8096cfaf
DT
1032 if (edac_class == NULL) {
1033 debugf1("%s() no edac_class error=%d\n", __func__, err);
1034 goto fail_out;
1035 }
1036
1037 /* Init the MC's kobject */
f9fc82ad
AJ
1038 mc_kset = kset_create_and_add("mc", NULL, &edac_class->kset.kobj);
1039 if (!mc_kset) {
1040 err = -ENOMEM;
8096cfaf 1041 debugf1("%s() Failed to register '.../edac/mc'\n", __func__);
30e1f7a8 1042 goto fail_kset;
8096cfaf
DT
1043 }
1044
1045 debugf1("%s() Registered '.../edac/mc' kobject\n", __func__);
1046
1047 return 0;
1048
30e1f7a8
BP
1049fail_kset:
1050 edac_put_sysfs_class();
8096cfaf 1051
8096cfaf
DT
1052fail_out:
1053 return err;
1054}
1055
1056/*
1057 * edac_sysfs_teardown_mc_kset
1058 *
1059 * deconstruct the mc_ket for memory controllers
1060 */
1061void edac_sysfs_teardown_mc_kset(void)
1062{
f9fc82ad 1063 kset_unregister(mc_kset);
30e1f7a8 1064 edac_put_sysfs_class();
8096cfaf
DT
1065}
1066