edac_pci_sysfs.c 19 KB

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  1. /*
  2. * (C) 2005, 2006 Linux Networx (http://lnxi.com)
  3. * This file may be distributed under the terms of the
  4. * GNU General Public License.
  5. *
  6. * Written Doug Thompson <norsk5@xmission.com>
  7. *
  8. */
  9. #include <linux/module.h>
  10. #include <linux/edac.h>
  11. #include <linux/slab.h>
  12. #include <linux/ctype.h>
  13. #include "edac_core.h"
  14. #include "edac_module.h"
  15. /* Turn off this whole feature if PCI is not configured */
  16. #ifdef CONFIG_PCI
  17. #define EDAC_PCI_SYMLINK "device"
  18. /* data variables exported via sysfs */
  19. static int check_pci_errors; /* default NO check PCI parity */
  20. static int edac_pci_panic_on_pe; /* default NO panic on PCI Parity */
  21. static int edac_pci_log_pe = 1; /* log PCI parity errors */
  22. static int edac_pci_log_npe = 1; /* log PCI non-parity error errors */
  23. static int edac_pci_poll_msec = 1000; /* one second workq period */
  24. static atomic_t pci_parity_count = ATOMIC_INIT(0);
  25. static atomic_t pci_nonparity_count = ATOMIC_INIT(0);
  26. static struct kobject *edac_pci_top_main_kobj;
  27. static atomic_t edac_pci_sysfs_refcount = ATOMIC_INIT(0);
  28. /* getter functions for the data variables */
  29. int edac_pci_get_check_errors(void)
  30. {
  31. return check_pci_errors;
  32. }
  33. static int edac_pci_get_log_pe(void)
  34. {
  35. return edac_pci_log_pe;
  36. }
  37. static int edac_pci_get_log_npe(void)
  38. {
  39. return edac_pci_log_npe;
  40. }
  41. static int edac_pci_get_panic_on_pe(void)
  42. {
  43. return edac_pci_panic_on_pe;
  44. }
  45. int edac_pci_get_poll_msec(void)
  46. {
  47. return edac_pci_poll_msec;
  48. }
  49. /**************************** EDAC PCI sysfs instance *******************/
  50. static ssize_t instance_pe_count_show(struct edac_pci_ctl_info *pci, char *data)
  51. {
  52. return sprintf(data, "%u\n", atomic_read(&pci->counters.pe_count));
  53. }
  54. static ssize_t instance_npe_count_show(struct edac_pci_ctl_info *pci,
  55. char *data)
  56. {
  57. return sprintf(data, "%u\n", atomic_read(&pci->counters.npe_count));
  58. }
  59. #define to_instance(k) container_of(k, struct edac_pci_ctl_info, kobj)
  60. #define to_instance_attr(a) container_of(a, struct instance_attribute, attr)
  61. /* DEVICE instance kobject release() function */
  62. static void edac_pci_instance_release(struct kobject *kobj)
  63. {
  64. struct edac_pci_ctl_info *pci;
  65. edac_dbg(0, "\n");
  66. /* Form pointer to containing struct, the pci control struct */
  67. pci = to_instance(kobj);
  68. /* decrement reference count on top main kobj */
  69. kobject_put(edac_pci_top_main_kobj);
  70. kfree(pci); /* Free the control struct */
  71. }
  72. /* instance specific attribute structure */
  73. struct instance_attribute {
  74. struct attribute attr;
  75. ssize_t(*show) (struct edac_pci_ctl_info *, char *);
  76. ssize_t(*store) (struct edac_pci_ctl_info *, const char *, size_t);
  77. };
  78. /* Function to 'show' fields from the edac_pci 'instance' structure */
  79. static ssize_t edac_pci_instance_show(struct kobject *kobj,
  80. struct attribute *attr, char *buffer)
  81. {
  82. struct edac_pci_ctl_info *pci = to_instance(kobj);
  83. struct instance_attribute *instance_attr = to_instance_attr(attr);
  84. if (instance_attr->show)
  85. return instance_attr->show(pci, buffer);
  86. return -EIO;
  87. }
  88. /* Function to 'store' fields into the edac_pci 'instance' structure */
  89. static ssize_t edac_pci_instance_store(struct kobject *kobj,
  90. struct attribute *attr,
  91. const char *buffer, size_t count)
  92. {
  93. struct edac_pci_ctl_info *pci = to_instance(kobj);
  94. struct instance_attribute *instance_attr = to_instance_attr(attr);
  95. if (instance_attr->store)
  96. return instance_attr->store(pci, buffer, count);
  97. return -EIO;
  98. }
  99. /* fs_ops table */
  100. static const struct sysfs_ops pci_instance_ops = {
  101. .show = edac_pci_instance_show,
  102. .store = edac_pci_instance_store
  103. };
  104. #define INSTANCE_ATTR(_name, _mode, _show, _store) \
  105. static struct instance_attribute attr_instance_##_name = { \
  106. .attr = {.name = __stringify(_name), .mode = _mode }, \
  107. .show = _show, \
  108. .store = _store, \
  109. };
  110. INSTANCE_ATTR(pe_count, S_IRUGO, instance_pe_count_show, NULL);
  111. INSTANCE_ATTR(npe_count, S_IRUGO, instance_npe_count_show, NULL);
  112. /* pci instance attributes */
  113. static struct instance_attribute *pci_instance_attr[] = {
  114. &attr_instance_pe_count,
  115. &attr_instance_npe_count,
  116. NULL
  117. };
  118. /* the ktype for a pci instance */
  119. static struct kobj_type ktype_pci_instance = {
  120. .release = edac_pci_instance_release,
  121. .sysfs_ops = &pci_instance_ops,
  122. .default_attrs = (struct attribute **)pci_instance_attr,
  123. };
  124. /*
  125. * edac_pci_create_instance_kobj
  126. *
  127. * construct one EDAC PCI instance's kobject for use
  128. */
  129. static int edac_pci_create_instance_kobj(struct edac_pci_ctl_info *pci, int idx)
  130. {
  131. struct kobject *main_kobj;
  132. int err;
  133. edac_dbg(0, "\n");
  134. /* First bump the ref count on the top main kobj, which will
  135. * track the number of PCI instances we have, and thus nest
  136. * properly on keeping the module loaded
  137. */
  138. main_kobj = kobject_get(edac_pci_top_main_kobj);
  139. if (!main_kobj) {
  140. err = -ENODEV;
  141. goto error_out;
  142. }
  143. /* And now register this new kobject under the main kobj */
  144. err = kobject_init_and_add(&pci->kobj, &ktype_pci_instance,
  145. edac_pci_top_main_kobj, "pci%d", idx);
  146. if (err != 0) {
  147. edac_dbg(2, "failed to register instance pci%d\n", idx);
  148. kobject_put(edac_pci_top_main_kobj);
  149. goto error_out;
  150. }
  151. kobject_uevent(&pci->kobj, KOBJ_ADD);
  152. edac_dbg(1, "Register instance 'pci%d' kobject\n", idx);
  153. return 0;
  154. /* Error unwind statck */
  155. error_out:
  156. return err;
  157. }
  158. /*
  159. * edac_pci_unregister_sysfs_instance_kobj
  160. *
  161. * unregister the kobj for the EDAC PCI instance
  162. */
  163. static void edac_pci_unregister_sysfs_instance_kobj(
  164. struct edac_pci_ctl_info *pci)
  165. {
  166. edac_dbg(0, "\n");
  167. /* Unregister the instance kobject and allow its release
  168. * function release the main reference count and then
  169. * kfree the memory
  170. */
  171. kobject_put(&pci->kobj);
  172. }
  173. /***************************** EDAC PCI sysfs root **********************/
  174. #define to_edacpci(k) container_of(k, struct edac_pci_ctl_info, kobj)
  175. #define to_edacpci_attr(a) container_of(a, struct edac_pci_attr, attr)
  176. /* simple show/store functions for attributes */
  177. static ssize_t edac_pci_int_show(void *ptr, char *buffer)
  178. {
  179. int *value = ptr;
  180. return sprintf(buffer, "%d\n", *value);
  181. }
  182. static ssize_t edac_pci_int_store(void *ptr, const char *buffer, size_t count)
  183. {
  184. int *value = ptr;
  185. if (isdigit(*buffer))
  186. *value = simple_strtoul(buffer, NULL, 0);
  187. return count;
  188. }
  189. struct edac_pci_dev_attribute {
  190. struct attribute attr;
  191. void *value;
  192. ssize_t(*show) (void *, char *);
  193. ssize_t(*store) (void *, const char *, size_t);
  194. };
  195. /* Set of show/store abstract level functions for PCI Parity object */
  196. static ssize_t edac_pci_dev_show(struct kobject *kobj, struct attribute *attr,
  197. char *buffer)
  198. {
  199. struct edac_pci_dev_attribute *edac_pci_dev;
  200. edac_pci_dev = (struct edac_pci_dev_attribute *)attr;
  201. if (edac_pci_dev->show)
  202. return edac_pci_dev->show(edac_pci_dev->value, buffer);
  203. return -EIO;
  204. }
  205. static ssize_t edac_pci_dev_store(struct kobject *kobj,
  206. struct attribute *attr, const char *buffer,
  207. size_t count)
  208. {
  209. struct edac_pci_dev_attribute *edac_pci_dev;
  210. edac_pci_dev = (struct edac_pci_dev_attribute *)attr;
  211. if (edac_pci_dev->store)
  212. return edac_pci_dev->store(edac_pci_dev->value, buffer, count);
  213. return -EIO;
  214. }
  215. static const struct sysfs_ops edac_pci_sysfs_ops = {
  216. .show = edac_pci_dev_show,
  217. .store = edac_pci_dev_store
  218. };
  219. #define EDAC_PCI_ATTR(_name,_mode,_show,_store) \
  220. static struct edac_pci_dev_attribute edac_pci_attr_##_name = { \
  221. .attr = {.name = __stringify(_name), .mode = _mode }, \
  222. .value = &_name, \
  223. .show = _show, \
  224. .store = _store, \
  225. };
  226. #define EDAC_PCI_STRING_ATTR(_name,_data,_mode,_show,_store) \
  227. static struct edac_pci_dev_attribute edac_pci_attr_##_name = { \
  228. .attr = {.name = __stringify(_name), .mode = _mode }, \
  229. .value = _data, \
  230. .show = _show, \
  231. .store = _store, \
  232. };
  233. /* PCI Parity control files */
  234. EDAC_PCI_ATTR(check_pci_errors, S_IRUGO | S_IWUSR, edac_pci_int_show,
  235. edac_pci_int_store);
  236. EDAC_PCI_ATTR(edac_pci_log_pe, S_IRUGO | S_IWUSR, edac_pci_int_show,
  237. edac_pci_int_store);
  238. EDAC_PCI_ATTR(edac_pci_log_npe, S_IRUGO | S_IWUSR, edac_pci_int_show,
  239. edac_pci_int_store);
  240. EDAC_PCI_ATTR(edac_pci_panic_on_pe, S_IRUGO | S_IWUSR, edac_pci_int_show,
  241. edac_pci_int_store);
  242. EDAC_PCI_ATTR(pci_parity_count, S_IRUGO, edac_pci_int_show, NULL);
  243. EDAC_PCI_ATTR(pci_nonparity_count, S_IRUGO, edac_pci_int_show, NULL);
  244. /* Base Attributes of the memory ECC object */
  245. static struct edac_pci_dev_attribute *edac_pci_attr[] = {
  246. &edac_pci_attr_check_pci_errors,
  247. &edac_pci_attr_edac_pci_log_pe,
  248. &edac_pci_attr_edac_pci_log_npe,
  249. &edac_pci_attr_edac_pci_panic_on_pe,
  250. &edac_pci_attr_pci_parity_count,
  251. &edac_pci_attr_pci_nonparity_count,
  252. NULL,
  253. };
  254. /*
  255. * edac_pci_release_main_kobj
  256. *
  257. * This release function is called when the reference count to the
  258. * passed kobj goes to zero.
  259. *
  260. * This kobj is the 'main' kobject that EDAC PCI instances
  261. * link to, and thus provide for proper nesting counts
  262. */
  263. static void edac_pci_release_main_kobj(struct kobject *kobj)
  264. {
  265. edac_dbg(0, "here to module_put(THIS_MODULE)\n");
  266. kfree(kobj);
  267. /* last reference to top EDAC PCI kobject has been removed,
  268. * NOW release our ref count on the core module
  269. */
  270. module_put(THIS_MODULE);
  271. }
  272. /* ktype struct for the EDAC PCI main kobj */
  273. static struct kobj_type ktype_edac_pci_main_kobj = {
  274. .release = edac_pci_release_main_kobj,
  275. .sysfs_ops = &edac_pci_sysfs_ops,
  276. .default_attrs = (struct attribute **)edac_pci_attr,
  277. };
  278. /**
  279. * edac_pci_main_kobj_setup()
  280. *
  281. * setup the sysfs for EDAC PCI attributes
  282. * assumes edac_subsys has already been initialized
  283. */
  284. static int edac_pci_main_kobj_setup(void)
  285. {
  286. int err;
  287. struct bus_type *edac_subsys;
  288. edac_dbg(0, "\n");
  289. /* check and count if we have already created the main kobject */
  290. if (atomic_inc_return(&edac_pci_sysfs_refcount) != 1)
  291. return 0;
  292. /* First time, so create the main kobject and its
  293. * controls and attributes
  294. */
  295. edac_subsys = edac_get_sysfs_subsys();
  296. if (edac_subsys == NULL) {
  297. edac_dbg(1, "no edac_subsys\n");
  298. err = -ENODEV;
  299. goto decrement_count_fail;
  300. }
  301. /* Bump the reference count on this module to ensure the
  302. * modules isn't unloaded until we deconstruct the top
  303. * level main kobj for EDAC PCI
  304. */
  305. if (!try_module_get(THIS_MODULE)) {
  306. edac_dbg(1, "try_module_get() failed\n");
  307. err = -ENODEV;
  308. goto mod_get_fail;
  309. }
  310. edac_pci_top_main_kobj = kzalloc(sizeof(struct kobject), GFP_KERNEL);
  311. if (!edac_pci_top_main_kobj) {
  312. edac_dbg(1, "Failed to allocate\n");
  313. err = -ENOMEM;
  314. goto kzalloc_fail;
  315. }
  316. /* Instanstiate the pci object */
  317. err = kobject_init_and_add(edac_pci_top_main_kobj,
  318. &ktype_edac_pci_main_kobj,
  319. &edac_subsys->dev_root->kobj, "pci");
  320. if (err) {
  321. edac_dbg(1, "Failed to register '.../edac/pci'\n");
  322. goto kobject_init_and_add_fail;
  323. }
  324. /* At this point, to 'release' the top level kobject
  325. * for EDAC PCI, then edac_pci_main_kobj_teardown()
  326. * must be used, for resources to be cleaned up properly
  327. */
  328. kobject_uevent(edac_pci_top_main_kobj, KOBJ_ADD);
  329. edac_dbg(1, "Registered '.../edac/pci' kobject\n");
  330. return 0;
  331. /* Error unwind statck */
  332. kobject_init_and_add_fail:
  333. kfree(edac_pci_top_main_kobj);
  334. kzalloc_fail:
  335. module_put(THIS_MODULE);
  336. mod_get_fail:
  337. edac_put_sysfs_subsys();
  338. decrement_count_fail:
  339. /* if are on this error exit, nothing to tear down */
  340. atomic_dec(&edac_pci_sysfs_refcount);
  341. return err;
  342. }
  343. /*
  344. * edac_pci_main_kobj_teardown()
  345. *
  346. * if no longer linked (needed) remove the top level EDAC PCI
  347. * kobject with its controls and attributes
  348. */
  349. static void edac_pci_main_kobj_teardown(void)
  350. {
  351. edac_dbg(0, "\n");
  352. /* Decrement the count and only if no more controller instances
  353. * are connected perform the unregisteration of the top level
  354. * main kobj
  355. */
  356. if (atomic_dec_return(&edac_pci_sysfs_refcount) == 0) {
  357. edac_dbg(0, "called kobject_put on main kobj\n");
  358. kobject_put(edac_pci_top_main_kobj);
  359. edac_put_sysfs_subsys();
  360. }
  361. }
  362. /*
  363. *
  364. * edac_pci_create_sysfs
  365. *
  366. * Create the controls/attributes for the specified EDAC PCI device
  367. */
  368. int edac_pci_create_sysfs(struct edac_pci_ctl_info *pci)
  369. {
  370. int err;
  371. struct kobject *edac_kobj = &pci->kobj;
  372. edac_dbg(0, "idx=%d\n", pci->pci_idx);
  373. /* create the top main EDAC PCI kobject, IF needed */
  374. err = edac_pci_main_kobj_setup();
  375. if (err)
  376. return err;
  377. /* Create this instance's kobject under the MAIN kobject */
  378. err = edac_pci_create_instance_kobj(pci, pci->pci_idx);
  379. if (err)
  380. goto unregister_cleanup;
  381. err = sysfs_create_link(edac_kobj, &pci->dev->kobj, EDAC_PCI_SYMLINK);
  382. if (err) {
  383. edac_dbg(0, "sysfs_create_link() returned err= %d\n", err);
  384. goto symlink_fail;
  385. }
  386. return 0;
  387. /* Error unwind stack */
  388. symlink_fail:
  389. edac_pci_unregister_sysfs_instance_kobj(pci);
  390. unregister_cleanup:
  391. edac_pci_main_kobj_teardown();
  392. return err;
  393. }
  394. /*
  395. * edac_pci_remove_sysfs
  396. *
  397. * remove the controls and attributes for this EDAC PCI device
  398. */
  399. void edac_pci_remove_sysfs(struct edac_pci_ctl_info *pci)
  400. {
  401. edac_dbg(0, "index=%d\n", pci->pci_idx);
  402. /* Remove the symlink */
  403. sysfs_remove_link(&pci->kobj, EDAC_PCI_SYMLINK);
  404. /* remove this PCI instance's sysfs entries */
  405. edac_pci_unregister_sysfs_instance_kobj(pci);
  406. /* Call the main unregister function, which will determine
  407. * if this 'pci' is the last instance.
  408. * If it is, the main kobject will be unregistered as a result
  409. */
  410. edac_dbg(0, "calling edac_pci_main_kobj_teardown()\n");
  411. edac_pci_main_kobj_teardown();
  412. }
  413. /************************ PCI error handling *************************/
  414. static u16 get_pci_parity_status(struct pci_dev *dev, int secondary)
  415. {
  416. int where;
  417. u16 status;
  418. where = secondary ? PCI_SEC_STATUS : PCI_STATUS;
  419. pci_read_config_word(dev, where, &status);
  420. /* If we get back 0xFFFF then we must suspect that the card has been
  421. * pulled but the Linux PCI layer has not yet finished cleaning up.
  422. * We don't want to report on such devices
  423. */
  424. if (status == 0xFFFF) {
  425. u32 sanity;
  426. pci_read_config_dword(dev, 0, &sanity);
  427. if (sanity == 0xFFFFFFFF)
  428. return 0;
  429. }
  430. status &= PCI_STATUS_DETECTED_PARITY | PCI_STATUS_SIG_SYSTEM_ERROR |
  431. PCI_STATUS_PARITY;
  432. if (status)
  433. /* reset only the bits we are interested in */
  434. pci_write_config_word(dev, where, status);
  435. return status;
  436. }
  437. /* Clear any PCI parity errors logged by this device. */
  438. static void edac_pci_dev_parity_clear(struct pci_dev *dev)
  439. {
  440. u8 header_type;
  441. get_pci_parity_status(dev, 0);
  442. /* read the device TYPE, looking for bridges */
  443. pci_read_config_byte(dev, PCI_HEADER_TYPE, &header_type);
  444. if ((header_type & 0x7F) == PCI_HEADER_TYPE_BRIDGE)
  445. get_pci_parity_status(dev, 1);
  446. }
  447. /*
  448. * PCI Parity polling
  449. *
  450. * Function to retrieve the current parity status
  451. * and decode it
  452. *
  453. */
  454. static void edac_pci_dev_parity_test(struct pci_dev *dev)
  455. {
  456. unsigned long flags;
  457. u16 status;
  458. u8 header_type;
  459. /* stop any interrupts until we can acquire the status */
  460. local_irq_save(flags);
  461. /* read the STATUS register on this device */
  462. status = get_pci_parity_status(dev, 0);
  463. /* read the device TYPE, looking for bridges */
  464. pci_read_config_byte(dev, PCI_HEADER_TYPE, &header_type);
  465. local_irq_restore(flags);
  466. edac_dbg(4, "PCI STATUS= 0x%04x %s\n", status, dev_name(&dev->dev));
  467. /* check the status reg for errors on boards NOT marked as broken
  468. * if broken, we cannot trust any of the status bits
  469. */
  470. if (status && !dev->broken_parity_status) {
  471. if (status & (PCI_STATUS_SIG_SYSTEM_ERROR)) {
  472. edac_printk(KERN_CRIT, EDAC_PCI,
  473. "Signaled System Error on %s\n",
  474. pci_name(dev));
  475. atomic_inc(&pci_nonparity_count);
  476. }
  477. if (status & (PCI_STATUS_PARITY)) {
  478. edac_printk(KERN_CRIT, EDAC_PCI,
  479. "Master Data Parity Error on %s\n",
  480. pci_name(dev));
  481. atomic_inc(&pci_parity_count);
  482. }
  483. if (status & (PCI_STATUS_DETECTED_PARITY)) {
  484. edac_printk(KERN_CRIT, EDAC_PCI,
  485. "Detected Parity Error on %s\n",
  486. pci_name(dev));
  487. atomic_inc(&pci_parity_count);
  488. }
  489. }
  490. edac_dbg(4, "PCI HEADER TYPE= 0x%02x %s\n",
  491. header_type, dev_name(&dev->dev));
  492. if ((header_type & 0x7F) == PCI_HEADER_TYPE_BRIDGE) {
  493. /* On bridges, need to examine secondary status register */
  494. status = get_pci_parity_status(dev, 1);
  495. edac_dbg(4, "PCI SEC_STATUS= 0x%04x %s\n",
  496. status, dev_name(&dev->dev));
  497. /* check the secondary status reg for errors,
  498. * on NOT broken boards
  499. */
  500. if (status && !dev->broken_parity_status) {
  501. if (status & (PCI_STATUS_SIG_SYSTEM_ERROR)) {
  502. edac_printk(KERN_CRIT, EDAC_PCI, "Bridge "
  503. "Signaled System Error on %s\n",
  504. pci_name(dev));
  505. atomic_inc(&pci_nonparity_count);
  506. }
  507. if (status & (PCI_STATUS_PARITY)) {
  508. edac_printk(KERN_CRIT, EDAC_PCI, "Bridge "
  509. "Master Data Parity Error on "
  510. "%s\n", pci_name(dev));
  511. atomic_inc(&pci_parity_count);
  512. }
  513. if (status & (PCI_STATUS_DETECTED_PARITY)) {
  514. edac_printk(KERN_CRIT, EDAC_PCI, "Bridge "
  515. "Detected Parity Error on %s\n",
  516. pci_name(dev));
  517. atomic_inc(&pci_parity_count);
  518. }
  519. }
  520. }
  521. }
  522. /* reduce some complexity in definition of the iterator */
  523. typedef void (*pci_parity_check_fn_t) (struct pci_dev *dev);
  524. /*
  525. * pci_dev parity list iterator
  526. *
  527. * Scan the PCI device list looking for SERRORs, Master Parity ERRORS or
  528. * Parity ERRORs on primary or secondary devices.
  529. */
  530. static inline void edac_pci_dev_parity_iterator(pci_parity_check_fn_t fn)
  531. {
  532. struct pci_dev *dev = NULL;
  533. for_each_pci_dev(dev)
  534. fn(dev);
  535. }
  536. /*
  537. * edac_pci_do_parity_check
  538. *
  539. * performs the actual PCI parity check operation
  540. */
  541. void edac_pci_do_parity_check(void)
  542. {
  543. int before_count;
  544. edac_dbg(3, "\n");
  545. /* if policy has PCI check off, leave now */
  546. if (!check_pci_errors)
  547. return;
  548. before_count = atomic_read(&pci_parity_count);
  549. /* scan all PCI devices looking for a Parity Error on devices and
  550. * bridges.
  551. * The iterator calls pci_get_device() which might sleep, thus
  552. * we cannot disable interrupts in this scan.
  553. */
  554. edac_pci_dev_parity_iterator(edac_pci_dev_parity_test);
  555. /* Only if operator has selected panic on PCI Error */
  556. if (edac_pci_get_panic_on_pe()) {
  557. /* If the count is different 'after' from 'before' */
  558. if (before_count != atomic_read(&pci_parity_count))
  559. panic("EDAC: PCI Parity Error");
  560. }
  561. }
  562. /*
  563. * edac_pci_clear_parity_errors
  564. *
  565. * function to perform an iteration over the PCI devices
  566. * and clearn their current status
  567. */
  568. void edac_pci_clear_parity_errors(void)
  569. {
  570. /* Clear any PCI bus parity errors that devices initially have logged
  571. * in their registers.
  572. */
  573. edac_pci_dev_parity_iterator(edac_pci_dev_parity_clear);
  574. }
  575. /*
  576. * edac_pci_handle_pe
  577. *
  578. * Called to handle a PARITY ERROR event
  579. */
  580. void edac_pci_handle_pe(struct edac_pci_ctl_info *pci, const char *msg)
  581. {
  582. /* global PE counter incremented by edac_pci_do_parity_check() */
  583. atomic_inc(&pci->counters.pe_count);
  584. if (edac_pci_get_log_pe())
  585. edac_pci_printk(pci, KERN_WARNING,
  586. "Parity Error ctl: %s %d: %s\n",
  587. pci->ctl_name, pci->pci_idx, msg);
  588. /*
  589. * poke all PCI devices and see which one is the troublemaker
  590. * panic() is called if set
  591. */
  592. edac_pci_do_parity_check();
  593. }
  594. EXPORT_SYMBOL_GPL(edac_pci_handle_pe);
  595. /*
  596. * edac_pci_handle_npe
  597. *
  598. * Called to handle a NON-PARITY ERROR event
  599. */
  600. void edac_pci_handle_npe(struct edac_pci_ctl_info *pci, const char *msg)
  601. {
  602. /* global NPE counter incremented by edac_pci_do_parity_check() */
  603. atomic_inc(&pci->counters.npe_count);
  604. if (edac_pci_get_log_npe())
  605. edac_pci_printk(pci, KERN_WARNING,
  606. "Non-Parity Error ctl: %s %d: %s\n",
  607. pci->ctl_name, pci->pci_idx, msg);
  608. /*
  609. * poke all PCI devices and see which one is the troublemaker
  610. * panic() is called if set
  611. */
  612. edac_pci_do_parity_check();
  613. }
  614. EXPORT_SYMBOL_GPL(edac_pci_handle_npe);
  615. /*
  616. * Define the PCI parameter to the module
  617. */
  618. module_param(check_pci_errors, int, 0644);
  619. MODULE_PARM_DESC(check_pci_errors,
  620. "Check for PCI bus parity errors: 0=off 1=on");
  621. module_param(edac_pci_panic_on_pe, int, 0644);
  622. MODULE_PARM_DESC(edac_pci_panic_on_pe,
  623. "Panic on PCI Bus Parity error: 0=off 1=on");
  624. #endif /* CONFIG_PCI */