i82975x_edac.c 18 KB

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  1. /*
  2. * Intel 82975X Memory Controller kernel module
  3. * (C) 2007 aCarLab (India) Pvt. Ltd. (http://acarlab.com)
  4. * (C) 2007 jetzbroadband (http://jetzbroadband.com)
  5. * This file may be distributed under the terms of the
  6. * GNU General Public License.
  7. *
  8. * Written by Arvind R.
  9. * Copied from i82875p_edac.c source:
  10. */
  11. #include <linux/module.h>
  12. #include <linux/init.h>
  13. #include <linux/pci.h>
  14. #include <linux/pci_ids.h>
  15. #include <linux/edac.h>
  16. #include "edac_module.h"
  17. #define EDAC_MOD_STR "i82975x_edac"
  18. #define i82975x_printk(level, fmt, arg...) \
  19. edac_printk(level, "i82975x", fmt, ##arg)
  20. #define i82975x_mc_printk(mci, level, fmt, arg...) \
  21. edac_mc_chipset_printk(mci, level, "i82975x", fmt, ##arg)
  22. #ifndef PCI_DEVICE_ID_INTEL_82975_0
  23. #define PCI_DEVICE_ID_INTEL_82975_0 0x277c
  24. #endif /* PCI_DEVICE_ID_INTEL_82975_0 */
  25. #define I82975X_NR_DIMMS 8
  26. #define I82975X_NR_CSROWS(nr_chans) (I82975X_NR_DIMMS / (nr_chans))
  27. /* Intel 82975X register addresses - device 0 function 0 - DRAM Controller */
  28. #define I82975X_EAP 0x58 /* Dram Error Address Pointer (32b)
  29. *
  30. * 31:7 128 byte cache-line address
  31. * 6:1 reserved
  32. * 0 0: CH0; 1: CH1
  33. */
  34. #define I82975X_DERRSYN 0x5c /* Dram Error SYNdrome (8b)
  35. *
  36. * 7:0 DRAM ECC Syndrome
  37. */
  38. #define I82975X_DES 0x5d /* Dram ERRor DeSTination (8b)
  39. * 0h: Processor Memory Reads
  40. * 1h:7h reserved
  41. * More - See Page 65 of Intel DocSheet.
  42. */
  43. #define I82975X_ERRSTS 0xc8 /* Error Status Register (16b)
  44. *
  45. * 15:12 reserved
  46. * 11 Thermal Sensor Event
  47. * 10 reserved
  48. * 9 non-DRAM lock error (ndlock)
  49. * 8 Refresh Timeout
  50. * 7:2 reserved
  51. * 1 ECC UE (multibit DRAM error)
  52. * 0 ECC CE (singlebit DRAM error)
  53. */
  54. /* Error Reporting is supported by 3 mechanisms:
  55. 1. DMI SERR generation ( ERRCMD )
  56. 2. SMI DMI generation ( SMICMD )
  57. 3. SCI DMI generation ( SCICMD )
  58. NOTE: Only ONE of the three must be enabled
  59. */
  60. #define I82975X_ERRCMD 0xca /* Error Command (16b)
  61. *
  62. * 15:12 reserved
  63. * 11 Thermal Sensor Event
  64. * 10 reserved
  65. * 9 non-DRAM lock error (ndlock)
  66. * 8 Refresh Timeout
  67. * 7:2 reserved
  68. * 1 ECC UE (multibit DRAM error)
  69. * 0 ECC CE (singlebit DRAM error)
  70. */
  71. #define I82975X_SMICMD 0xcc /* Error Command (16b)
  72. *
  73. * 15:2 reserved
  74. * 1 ECC UE (multibit DRAM error)
  75. * 0 ECC CE (singlebit DRAM error)
  76. */
  77. #define I82975X_SCICMD 0xce /* Error Command (16b)
  78. *
  79. * 15:2 reserved
  80. * 1 ECC UE (multibit DRAM error)
  81. * 0 ECC CE (singlebit DRAM error)
  82. */
  83. #define I82975X_XEAP 0xfc /* Extended Dram Error Address Pointer (8b)
  84. *
  85. * 7:1 reserved
  86. * 0 Bit32 of the Dram Error Address
  87. */
  88. #define I82975X_MCHBAR 0x44 /*
  89. *
  90. * 31:14 Base Addr of 16K memory-mapped
  91. * configuration space
  92. * 13:1 reserverd
  93. * 0 mem-mapped config space enable
  94. */
  95. /* NOTE: Following addresses have to indexed using MCHBAR offset (44h, 32b) */
  96. /* Intel 82975x memory mapped register space */
  97. #define I82975X_DRB_SHIFT 25 /* fixed 32MiB grain */
  98. #define I82975X_DRB 0x100 /* DRAM Row Boundary (8b x 8)
  99. *
  100. * 7 set to 1 in highest DRB of
  101. * channel if 4GB in ch.
  102. * 6:2 upper boundary of rank in
  103. * 32MB grains
  104. * 1:0 set to 0
  105. */
  106. #define I82975X_DRB_CH0R0 0x100
  107. #define I82975X_DRB_CH0R1 0x101
  108. #define I82975X_DRB_CH0R2 0x102
  109. #define I82975X_DRB_CH0R3 0x103
  110. #define I82975X_DRB_CH1R0 0x180
  111. #define I82975X_DRB_CH1R1 0x181
  112. #define I82975X_DRB_CH1R2 0x182
  113. #define I82975X_DRB_CH1R3 0x183
  114. #define I82975X_DRA 0x108 /* DRAM Row Attribute (4b x 8)
  115. * defines the PAGE SIZE to be used
  116. * for the rank
  117. * 7 reserved
  118. * 6:4 row attr of odd rank, i.e. 1
  119. * 3 reserved
  120. * 2:0 row attr of even rank, i.e. 0
  121. *
  122. * 000 = unpopulated
  123. * 001 = reserved
  124. * 010 = 4KiB
  125. * 011 = 8KiB
  126. * 100 = 16KiB
  127. * others = reserved
  128. */
  129. #define I82975X_DRA_CH0R01 0x108
  130. #define I82975X_DRA_CH0R23 0x109
  131. #define I82975X_DRA_CH1R01 0x188
  132. #define I82975X_DRA_CH1R23 0x189
  133. #define I82975X_BNKARC 0x10e /* Type of device in each rank - Bank Arch (16b)
  134. *
  135. * 15:8 reserved
  136. * 7:6 Rank 3 architecture
  137. * 5:4 Rank 2 architecture
  138. * 3:2 Rank 1 architecture
  139. * 1:0 Rank 0 architecture
  140. *
  141. * 00 => 4 banks
  142. * 01 => 8 banks
  143. */
  144. #define I82975X_C0BNKARC 0x10e
  145. #define I82975X_C1BNKARC 0x18e
  146. #define I82975X_DRC 0x120 /* DRAM Controller Mode0 (32b)
  147. *
  148. * 31:30 reserved
  149. * 29 init complete
  150. * 28:11 reserved, according to Intel
  151. * 22:21 number of channels
  152. * 00=1 01=2 in 82875
  153. * seems to be ECC mode
  154. * bits in 82975 in Asus
  155. * P5W
  156. * 19:18 Data Integ Mode
  157. * 00=none 01=ECC in 82875
  158. * 10:8 refresh mode
  159. * 7 reserved
  160. * 6:4 mode select
  161. * 3:2 reserved
  162. * 1:0 DRAM type 10=Second Revision
  163. * DDR2 SDRAM
  164. * 00, 01, 11 reserved
  165. */
  166. #define I82975X_DRC_CH0M0 0x120
  167. #define I82975X_DRC_CH1M0 0x1A0
  168. #define I82975X_DRC_M1 0x124 /* DRAM Controller Mode1 (32b)
  169. * 31 0=Standard Address Map
  170. * 1=Enhanced Address Map
  171. * 30:0 reserved
  172. */
  173. #define I82975X_DRC_CH0M1 0x124
  174. #define I82975X_DRC_CH1M1 0x1A4
  175. enum i82975x_chips {
  176. I82975X = 0,
  177. };
  178. struct i82975x_pvt {
  179. void __iomem *mch_window;
  180. };
  181. struct i82975x_dev_info {
  182. const char *ctl_name;
  183. };
  184. struct i82975x_error_info {
  185. u16 errsts;
  186. u32 eap;
  187. u8 des;
  188. u8 derrsyn;
  189. u16 errsts2;
  190. u8 chan; /* the channel is bit 0 of EAP */
  191. u8 xeap; /* extended eap bit */
  192. };
  193. static const struct i82975x_dev_info i82975x_devs[] = {
  194. [I82975X] = {
  195. .ctl_name = "i82975x"
  196. },
  197. };
  198. static struct pci_dev *mci_pdev; /* init dev: in case that AGP code has
  199. * already registered driver
  200. */
  201. static int i82975x_registered = 1;
  202. static void i82975x_get_error_info(struct mem_ctl_info *mci,
  203. struct i82975x_error_info *info)
  204. {
  205. struct pci_dev *pdev;
  206. pdev = to_pci_dev(mci->pdev);
  207. /*
  208. * This is a mess because there is no atomic way to read all the
  209. * registers at once and the registers can transition from CE being
  210. * overwritten by UE.
  211. */
  212. pci_read_config_word(pdev, I82975X_ERRSTS, &info->errsts);
  213. pci_read_config_dword(pdev, I82975X_EAP, &info->eap);
  214. pci_read_config_byte(pdev, I82975X_XEAP, &info->xeap);
  215. pci_read_config_byte(pdev, I82975X_DES, &info->des);
  216. pci_read_config_byte(pdev, I82975X_DERRSYN, &info->derrsyn);
  217. pci_read_config_word(pdev, I82975X_ERRSTS, &info->errsts2);
  218. pci_write_bits16(pdev, I82975X_ERRSTS, 0x0003, 0x0003);
  219. /*
  220. * If the error is the same then we can for both reads then
  221. * the first set of reads is valid. If there is a change then
  222. * there is a CE no info and the second set of reads is valid
  223. * and should be UE info.
  224. */
  225. if (!(info->errsts2 & 0x0003))
  226. return;
  227. if ((info->errsts ^ info->errsts2) & 0x0003) {
  228. pci_read_config_dword(pdev, I82975X_EAP, &info->eap);
  229. pci_read_config_byte(pdev, I82975X_XEAP, &info->xeap);
  230. pci_read_config_byte(pdev, I82975X_DES, &info->des);
  231. pci_read_config_byte(pdev, I82975X_DERRSYN,
  232. &info->derrsyn);
  233. }
  234. }
  235. static int i82975x_process_error_info(struct mem_ctl_info *mci,
  236. struct i82975x_error_info *info, int handle_errors)
  237. {
  238. int row, chan;
  239. unsigned long offst, page;
  240. if (!(info->errsts2 & 0x0003))
  241. return 0;
  242. if (!handle_errors)
  243. return 1;
  244. if ((info->errsts ^ info->errsts2) & 0x0003) {
  245. edac_mc_handle_error(HW_EVENT_ERR_UNCORRECTED, mci, 1, 0, 0, 0,
  246. -1, -1, -1, "UE overwrote CE", "");
  247. info->errsts = info->errsts2;
  248. }
  249. page = (unsigned long) info->eap;
  250. page >>= 1;
  251. if (info->xeap & 1)
  252. page |= 0x80000000;
  253. page >>= (PAGE_SHIFT - 1);
  254. row = edac_mc_find_csrow_by_page(mci, page);
  255. if (row == -1) {
  256. i82975x_mc_printk(mci, KERN_ERR, "error processing EAP:\n"
  257. "\tXEAP=%u\n"
  258. "\t EAP=0x%08x\n"
  259. "\tPAGE=0x%08x\n",
  260. (info->xeap & 1) ? 1 : 0, info->eap, (unsigned int) page);
  261. return 0;
  262. }
  263. chan = (mci->csrows[row]->nr_channels == 1) ? 0 : info->eap & 1;
  264. offst = info->eap
  265. & ((1 << PAGE_SHIFT) -
  266. (1 << mci->csrows[row]->channels[chan]->dimm->grain));
  267. if (info->errsts & 0x0002)
  268. edac_mc_handle_error(HW_EVENT_ERR_UNCORRECTED, mci, 1,
  269. page, offst, 0,
  270. row, -1, -1,
  271. "i82975x UE", "");
  272. else
  273. edac_mc_handle_error(HW_EVENT_ERR_CORRECTED, mci, 1,
  274. page, offst, info->derrsyn,
  275. row, chan ? chan : 0, -1,
  276. "i82975x CE", "");
  277. return 1;
  278. }
  279. static void i82975x_check(struct mem_ctl_info *mci)
  280. {
  281. struct i82975x_error_info info;
  282. edac_dbg(1, "MC%d\n", mci->mc_idx);
  283. i82975x_get_error_info(mci, &info);
  284. i82975x_process_error_info(mci, &info, 1);
  285. }
  286. /* Return 1 if dual channel mode is active. Else return 0. */
  287. static int dual_channel_active(void __iomem *mch_window)
  288. {
  289. /*
  290. * We treat interleaved-symmetric configuration as dual-channel - EAP's
  291. * bit-0 giving the channel of the error location.
  292. *
  293. * All other configurations are treated as single channel - the EAP's
  294. * bit-0 will resolve ok in symmetric area of mixed
  295. * (symmetric/asymmetric) configurations
  296. */
  297. u8 drb[4][2];
  298. int row;
  299. int dualch;
  300. for (dualch = 1, row = 0; dualch && (row < 4); row++) {
  301. drb[row][0] = readb(mch_window + I82975X_DRB + row);
  302. drb[row][1] = readb(mch_window + I82975X_DRB + row + 0x80);
  303. dualch = dualch && (drb[row][0] == drb[row][1]);
  304. }
  305. return dualch;
  306. }
  307. static enum dev_type i82975x_dram_type(void __iomem *mch_window, int rank)
  308. {
  309. /*
  310. * ECC is possible on i92975x ONLY with DEV_X8
  311. */
  312. return DEV_X8;
  313. }
  314. static void i82975x_init_csrows(struct mem_ctl_info *mci,
  315. struct pci_dev *pdev, void __iomem *mch_window)
  316. {
  317. struct csrow_info *csrow;
  318. unsigned long last_cumul_size;
  319. u8 value;
  320. u32 cumul_size, nr_pages;
  321. int index, chan;
  322. struct dimm_info *dimm;
  323. enum dev_type dtype;
  324. last_cumul_size = 0;
  325. /*
  326. * 82875 comment:
  327. * The dram row boundary (DRB) reg values are boundary address
  328. * for each DRAM row with a granularity of 32 or 64MB (single/dual
  329. * channel operation). DRB regs are cumulative; therefore DRB7 will
  330. * contain the total memory contained in all rows.
  331. *
  332. */
  333. for (index = 0; index < mci->nr_csrows; index++) {
  334. csrow = mci->csrows[index];
  335. value = readb(mch_window + I82975X_DRB + index +
  336. ((index >= 4) ? 0x80 : 0));
  337. cumul_size = value;
  338. cumul_size <<= (I82975X_DRB_SHIFT - PAGE_SHIFT);
  339. /*
  340. * Adjust cumul_size w.r.t number of channels
  341. *
  342. */
  343. if (csrow->nr_channels > 1)
  344. cumul_size <<= 1;
  345. edac_dbg(3, "(%d) cumul_size 0x%x\n", index, cumul_size);
  346. nr_pages = cumul_size - last_cumul_size;
  347. if (!nr_pages)
  348. continue;
  349. /*
  350. * Initialise dram labels
  351. * index values:
  352. * [0-7] for single-channel; i.e. csrow->nr_channels = 1
  353. * [0-3] for dual-channel; i.e. csrow->nr_channels = 2
  354. */
  355. dtype = i82975x_dram_type(mch_window, index);
  356. for (chan = 0; chan < csrow->nr_channels; chan++) {
  357. dimm = mci->csrows[index]->channels[chan]->dimm;
  358. dimm->nr_pages = nr_pages / csrow->nr_channels;
  359. snprintf(csrow->channels[chan]->dimm->label, EDAC_MC_LABEL_LEN, "DIMM %c%d",
  360. (chan == 0) ? 'A' : 'B',
  361. index);
  362. dimm->grain = 1 << 7; /* 128Byte cache-line resolution */
  363. dimm->dtype = i82975x_dram_type(mch_window, index);
  364. dimm->mtype = MEM_DDR2; /* I82975x supports only DDR2 */
  365. dimm->edac_mode = EDAC_SECDED; /* only supported */
  366. }
  367. csrow->first_page = last_cumul_size;
  368. csrow->last_page = cumul_size - 1;
  369. last_cumul_size = cumul_size;
  370. }
  371. }
  372. /* #define i82975x_DEBUG_IOMEM */
  373. #ifdef i82975x_DEBUG_IOMEM
  374. static void i82975x_print_dram_timings(void __iomem *mch_window)
  375. {
  376. /*
  377. * The register meanings are from Intel specs;
  378. * (shows 13-5-5-5 for 800-DDR2)
  379. * Asus P5W Bios reports 15-5-4-4
  380. * What's your religion?
  381. */
  382. static const int caslats[4] = { 5, 4, 3, 6 };
  383. u32 dtreg[2];
  384. dtreg[0] = readl(mch_window + 0x114);
  385. dtreg[1] = readl(mch_window + 0x194);
  386. i82975x_printk(KERN_INFO, "DRAM Timings : Ch0 Ch1\n"
  387. " RAS Active Min = %d %d\n"
  388. " CAS latency = %d %d\n"
  389. " RAS to CAS = %d %d\n"
  390. " RAS precharge = %d %d\n",
  391. (dtreg[0] >> 19 ) & 0x0f,
  392. (dtreg[1] >> 19) & 0x0f,
  393. caslats[(dtreg[0] >> 8) & 0x03],
  394. caslats[(dtreg[1] >> 8) & 0x03],
  395. ((dtreg[0] >> 4) & 0x07) + 2,
  396. ((dtreg[1] >> 4) & 0x07) + 2,
  397. (dtreg[0] & 0x07) + 2,
  398. (dtreg[1] & 0x07) + 2
  399. );
  400. }
  401. #endif
  402. static int i82975x_probe1(struct pci_dev *pdev, int dev_idx)
  403. {
  404. int rc = -ENODEV;
  405. struct mem_ctl_info *mci;
  406. struct edac_mc_layer layers[2];
  407. struct i82975x_pvt *pvt;
  408. void __iomem *mch_window;
  409. u32 mchbar;
  410. u32 drc[2];
  411. struct i82975x_error_info discard;
  412. int chans;
  413. #ifdef i82975x_DEBUG_IOMEM
  414. u8 c0drb[4];
  415. u8 c1drb[4];
  416. #endif
  417. edac_dbg(0, "\n");
  418. pci_read_config_dword(pdev, I82975X_MCHBAR, &mchbar);
  419. if (!(mchbar & 1)) {
  420. edac_dbg(3, "failed, MCHBAR disabled!\n");
  421. goto fail0;
  422. }
  423. mchbar &= 0xffffc000; /* bits 31:14 used for 16K window */
  424. mch_window = ioremap_nocache(mchbar, 0x1000);
  425. if (!mch_window) {
  426. edac_dbg(3, "error ioremapping MCHBAR!\n");
  427. goto fail0;
  428. }
  429. #ifdef i82975x_DEBUG_IOMEM
  430. i82975x_printk(KERN_INFO, "MCHBAR real = %0x, remapped = %p\n",
  431. mchbar, mch_window);
  432. c0drb[0] = readb(mch_window + I82975X_DRB_CH0R0);
  433. c0drb[1] = readb(mch_window + I82975X_DRB_CH0R1);
  434. c0drb[2] = readb(mch_window + I82975X_DRB_CH0R2);
  435. c0drb[3] = readb(mch_window + I82975X_DRB_CH0R3);
  436. c1drb[0] = readb(mch_window + I82975X_DRB_CH1R0);
  437. c1drb[1] = readb(mch_window + I82975X_DRB_CH1R1);
  438. c1drb[2] = readb(mch_window + I82975X_DRB_CH1R2);
  439. c1drb[3] = readb(mch_window + I82975X_DRB_CH1R3);
  440. i82975x_printk(KERN_INFO, "DRBCH0R0 = 0x%02x\n", c0drb[0]);
  441. i82975x_printk(KERN_INFO, "DRBCH0R1 = 0x%02x\n", c0drb[1]);
  442. i82975x_printk(KERN_INFO, "DRBCH0R2 = 0x%02x\n", c0drb[2]);
  443. i82975x_printk(KERN_INFO, "DRBCH0R3 = 0x%02x\n", c0drb[3]);
  444. i82975x_printk(KERN_INFO, "DRBCH1R0 = 0x%02x\n", c1drb[0]);
  445. i82975x_printk(KERN_INFO, "DRBCH1R1 = 0x%02x\n", c1drb[1]);
  446. i82975x_printk(KERN_INFO, "DRBCH1R2 = 0x%02x\n", c1drb[2]);
  447. i82975x_printk(KERN_INFO, "DRBCH1R3 = 0x%02x\n", c1drb[3]);
  448. #endif
  449. drc[0] = readl(mch_window + I82975X_DRC_CH0M0);
  450. drc[1] = readl(mch_window + I82975X_DRC_CH1M0);
  451. #ifdef i82975x_DEBUG_IOMEM
  452. i82975x_printk(KERN_INFO, "DRC_CH0 = %0x, %s\n", drc[0],
  453. ((drc[0] >> 21) & 3) == 1 ?
  454. "ECC enabled" : "ECC disabled");
  455. i82975x_printk(KERN_INFO, "DRC_CH1 = %0x, %s\n", drc[1],
  456. ((drc[1] >> 21) & 3) == 1 ?
  457. "ECC enabled" : "ECC disabled");
  458. i82975x_printk(KERN_INFO, "C0 BNKARC = %0x\n",
  459. readw(mch_window + I82975X_C0BNKARC));
  460. i82975x_printk(KERN_INFO, "C1 BNKARC = %0x\n",
  461. readw(mch_window + I82975X_C1BNKARC));
  462. i82975x_print_dram_timings(mch_window);
  463. goto fail1;
  464. #endif
  465. if (!(((drc[0] >> 21) & 3) == 1 || ((drc[1] >> 21) & 3) == 1)) {
  466. i82975x_printk(KERN_INFO, "ECC disabled on both channels.\n");
  467. goto fail1;
  468. }
  469. chans = dual_channel_active(mch_window) + 1;
  470. /* assuming only one controller, index thus is 0 */
  471. layers[0].type = EDAC_MC_LAYER_CHIP_SELECT;
  472. layers[0].size = I82975X_NR_DIMMS;
  473. layers[0].is_virt_csrow = true;
  474. layers[1].type = EDAC_MC_LAYER_CHANNEL;
  475. layers[1].size = I82975X_NR_CSROWS(chans);
  476. layers[1].is_virt_csrow = false;
  477. mci = edac_mc_alloc(0, ARRAY_SIZE(layers), layers, sizeof(*pvt));
  478. if (!mci) {
  479. rc = -ENOMEM;
  480. goto fail1;
  481. }
  482. edac_dbg(3, "init mci\n");
  483. mci->pdev = &pdev->dev;
  484. mci->mtype_cap = MEM_FLAG_DDR2;
  485. mci->edac_ctl_cap = EDAC_FLAG_NONE | EDAC_FLAG_SECDED;
  486. mci->edac_cap = EDAC_FLAG_NONE | EDAC_FLAG_SECDED;
  487. mci->mod_name = EDAC_MOD_STR;
  488. mci->ctl_name = i82975x_devs[dev_idx].ctl_name;
  489. mci->dev_name = pci_name(pdev);
  490. mci->edac_check = i82975x_check;
  491. mci->ctl_page_to_phys = NULL;
  492. edac_dbg(3, "init pvt\n");
  493. pvt = (struct i82975x_pvt *) mci->pvt_info;
  494. pvt->mch_window = mch_window;
  495. i82975x_init_csrows(mci, pdev, mch_window);
  496. mci->scrub_mode = SCRUB_HW_SRC;
  497. i82975x_get_error_info(mci, &discard); /* clear counters */
  498. /* finalize this instance of memory controller with edac core */
  499. if (edac_mc_add_mc(mci)) {
  500. edac_dbg(3, "failed edac_mc_add_mc()\n");
  501. goto fail2;
  502. }
  503. /* get this far and it's successful */
  504. edac_dbg(3, "success\n");
  505. return 0;
  506. fail2:
  507. edac_mc_free(mci);
  508. fail1:
  509. iounmap(mch_window);
  510. fail0:
  511. return rc;
  512. }
  513. /* returns count (>= 0), or negative on error */
  514. static int i82975x_init_one(struct pci_dev *pdev,
  515. const struct pci_device_id *ent)
  516. {
  517. int rc;
  518. edac_dbg(0, "\n");
  519. if (pci_enable_device(pdev) < 0)
  520. return -EIO;
  521. rc = i82975x_probe1(pdev, ent->driver_data);
  522. if (mci_pdev == NULL)
  523. mci_pdev = pci_dev_get(pdev);
  524. return rc;
  525. }
  526. static void i82975x_remove_one(struct pci_dev *pdev)
  527. {
  528. struct mem_ctl_info *mci;
  529. struct i82975x_pvt *pvt;
  530. edac_dbg(0, "\n");
  531. mci = edac_mc_del_mc(&pdev->dev);
  532. if (mci == NULL)
  533. return;
  534. pvt = mci->pvt_info;
  535. if (pvt->mch_window)
  536. iounmap( pvt->mch_window );
  537. edac_mc_free(mci);
  538. }
  539. static const struct pci_device_id i82975x_pci_tbl[] = {
  540. {
  541. PCI_VEND_DEV(INTEL, 82975_0), PCI_ANY_ID, PCI_ANY_ID, 0, 0,
  542. I82975X
  543. },
  544. {
  545. 0,
  546. } /* 0 terminated list. */
  547. };
  548. MODULE_DEVICE_TABLE(pci, i82975x_pci_tbl);
  549. static struct pci_driver i82975x_driver = {
  550. .name = EDAC_MOD_STR,
  551. .probe = i82975x_init_one,
  552. .remove = i82975x_remove_one,
  553. .id_table = i82975x_pci_tbl,
  554. };
  555. static int __init i82975x_init(void)
  556. {
  557. int pci_rc;
  558. edac_dbg(3, "\n");
  559. /* Ensure that the OPSTATE is set correctly for POLL or NMI */
  560. opstate_init();
  561. pci_rc = pci_register_driver(&i82975x_driver);
  562. if (pci_rc < 0)
  563. goto fail0;
  564. if (mci_pdev == NULL) {
  565. mci_pdev = pci_get_device(PCI_VENDOR_ID_INTEL,
  566. PCI_DEVICE_ID_INTEL_82975_0, NULL);
  567. if (!mci_pdev) {
  568. edac_dbg(0, "i82975x pci_get_device fail\n");
  569. pci_rc = -ENODEV;
  570. goto fail1;
  571. }
  572. pci_rc = i82975x_init_one(mci_pdev, i82975x_pci_tbl);
  573. if (pci_rc < 0) {
  574. edac_dbg(0, "i82975x init fail\n");
  575. pci_rc = -ENODEV;
  576. goto fail1;
  577. }
  578. }
  579. return 0;
  580. fail1:
  581. pci_unregister_driver(&i82975x_driver);
  582. fail0:
  583. pci_dev_put(mci_pdev);
  584. return pci_rc;
  585. }
  586. static void __exit i82975x_exit(void)
  587. {
  588. edac_dbg(3, "\n");
  589. pci_unregister_driver(&i82975x_driver);
  590. if (!i82975x_registered) {
  591. i82975x_remove_one(mci_pdev);
  592. pci_dev_put(mci_pdev);
  593. }
  594. }
  595. module_init(i82975x_init);
  596. module_exit(i82975x_exit);
  597. MODULE_LICENSE("GPL");
  598. MODULE_AUTHOR("Arvind R. <arvino55@gmail.com>");
  599. MODULE_DESCRIPTION("MC support for Intel 82975 memory hub controllers");
  600. module_param(edac_op_state, int, 0444);
  601. MODULE_PARM_DESC(edac_op_state, "EDAC Error Reporting state: 0=Poll,1=NMI");