xref: /linux/drivers/edac/ie31200_edac.c (revision 786262be6048deab760f68c8acc2c85607165894)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * Intel E3-1200
4  * Copyright (C) 2014 Jason Baron <jbaron@akamai.com>
5  *
6  * Support for the E3-1200 processor family. Heavily based on previous
7  * Intel EDAC drivers.
8  *
9  * Since the DRAM controller is on the cpu chip, we can use its PCI device
10  * id to identify these processors.
11  *
12  * PCI DRAM controller device ids (Taken from The PCI ID Repository - https://pci-ids.ucw.cz/)
13  *
14  * 0108: Xeon E3-1200 Processor Family DRAM Controller
15  * 010c: Xeon E3-1200/2nd Generation Core Processor Family DRAM Controller
16  * 0150: Xeon E3-1200 v2/3rd Gen Core processor DRAM Controller
17  * 0158: Xeon E3-1200 v2/Ivy Bridge DRAM Controller
18  * 015c: Xeon E3-1200 v2/3rd Gen Core processor DRAM Controller
19  * 0c04: Xeon E3-1200 v3/4th Gen Core Processor DRAM Controller
20  * 0c08: Xeon E3-1200 v3 Processor DRAM Controller
21  * 1918: Xeon E3-1200 v5 Skylake Host Bridge/DRAM Registers
22  * 590f: Xeon E3-1200 v6/7th Gen Core Processor Host Bridge/DRAM Registers
23  * 5918: Xeon E3-1200 v6/7th Gen Core Processor Host Bridge/DRAM Registers
24  * 190f: 6th Gen Core Dual-Core Processor Host Bridge/DRAM Registers
25  * 191f: 6th Gen Core Quad-Core Processor Host Bridge/DRAM Registers
26  * 3e..: 8th/9th Gen Core Processor Host Bridge/DRAM Registers
27  *
28  * Based on Intel specification:
29  * https://www.intel.com/content/dam/www/public/us/en/documents/datasheets/xeon-e3-1200v3-vol-2-datasheet.pdf
30  * http://www.intel.com/content/www/us/en/processors/xeon/xeon-e3-1200-family-vol-2-datasheet.html
31  * https://www.intel.com/content/dam/www/public/us/en/documents/datasheets/desktop-6th-gen-core-family-datasheet-vol-2.pdf
32  * https://www.intel.com/content/dam/www/public/us/en/documents/datasheets/xeon-e3-1200v6-vol-2-datasheet.pdf
33  * https://www.intel.com/content/www/us/en/processors/core/7th-gen-core-family-mobile-h-processor-lines-datasheet-vol-2.html
34  * https://www.intel.com/content/www/us/en/products/docs/processors/core/8th-gen-core-family-datasheet-vol-2.html
35  *
36  * According to the above datasheet (p.16):
37  * "
38  * 6. Software must not access B0/D0/F0 32-bit memory-mapped registers with
39  * requests that cross a DW boundary.
40  * "
41  *
42  * Thus, we make use of the explicit: lo_hi_readq(), which breaks the readq into
43  * 2 readl() calls. This restriction may be lifted in subsequent chip releases,
44  * but lo_hi_readq() ensures that we are safe across all e3-1200 processors.
45  */
46 
47 #include <linux/bitfield.h>
48 #include <linux/module.h>
49 #include <linux/init.h>
50 #include <linux/pci.h>
51 #include <linux/pci_ids.h>
52 #include <linux/edac.h>
53 
54 #include <linux/io-64-nonatomic-lo-hi.h>
55 #include <asm/mce.h>
56 #include <asm/msr.h>
57 #include "edac_module.h"
58 
59 #define EDAC_MOD_STR "ie31200_edac"
60 
61 #define ie31200_printk(level, fmt, arg...) \
62 	edac_printk(level, "ie31200", fmt, ##arg)
63 
64 #define PCI_DEVICE_ID_INTEL_IE31200_HB_1  0x0108
65 #define PCI_DEVICE_ID_INTEL_IE31200_HB_2  0x010c
66 #define PCI_DEVICE_ID_INTEL_IE31200_HB_3  0x0150
67 #define PCI_DEVICE_ID_INTEL_IE31200_HB_4  0x0158
68 #define PCI_DEVICE_ID_INTEL_IE31200_HB_5  0x015c
69 #define PCI_DEVICE_ID_INTEL_IE31200_HB_6  0x0c04
70 #define PCI_DEVICE_ID_INTEL_IE31200_HB_7  0x0c08
71 #define PCI_DEVICE_ID_INTEL_IE31200_HB_8  0x190F
72 #define PCI_DEVICE_ID_INTEL_IE31200_HB_9  0x1918
73 #define PCI_DEVICE_ID_INTEL_IE31200_HB_10 0x191F
74 #define PCI_DEVICE_ID_INTEL_IE31200_HB_11 0x590f
75 #define PCI_DEVICE_ID_INTEL_IE31200_HB_12 0x5918
76 
77 /* Coffee Lake-S */
78 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_MASK 0x3e00
79 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_1    0x3e0f
80 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_2    0x3e18
81 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_3    0x3e1f
82 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_4    0x3e30
83 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_5    0x3e31
84 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_6    0x3e32
85 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_7    0x3e33
86 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_8    0x3ec2
87 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_9    0x3ec6
88 #define PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_10   0x3eca
89 
90 /* Raptor Lake-S */
91 #define PCI_DEVICE_ID_INTEL_IE31200_RPL_S_1	0xa703 /* 8P+8E,  e.g. i7-13700 */
92 #define PCI_DEVICE_ID_INTEL_IE31200_RPL_S_2	0x4640 /* 6P+8E,  e.g. i5-13500, i5-13600, i5-14500 */
93 #define PCI_DEVICE_ID_INTEL_IE31200_RPL_S_3	0x4630 /* 4P+0E,  e.g. i3-13100E */
94 #define PCI_DEVICE_ID_INTEL_IE31200_RPL_S_4	0xa700 /* 8P+16E, e.g. i9-13900, i9-14900 */
95 #define PCI_DEVICE_ID_INTEL_IE31200_RPL_S_5	0xa740 /* 8P+12E, e.g. i7-14700 */
96 #define PCI_DEVICE_ID_INTEL_IE31200_RPL_S_6	0xa704 /* 6P+8E,  e.g. i5-14600 */
97 
98 /* Raptor Lake-HX */
99 #define PCI_DEVICE_ID_INTEL_IE31200_RPL_HX_1	0xa702 /* 8P+16E, e.g. i9-13950HX */
100 
101 /* Alder Lake-S */
102 #define PCI_DEVICE_ID_INTEL_IE31200_ADL_S_1	0x4660
103 #define PCI_DEVICE_ID_INTEL_IE31200_ADL_S_2	0x4668	/* 8P+4E, e.g. i7-12700K */
104 #define PCI_DEVICE_ID_INTEL_IE31200_ADL_S_3	0x4648	/* 6P+4E, e.g. i5-12600K */
105 
106 /* Bartlett Lake-S */
107 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_1	0x4639
108 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_2	0x463c
109 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_3	0x4642
110 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_4	0x4643
111 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_5	0xa731
112 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_6	0xa732
113 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_7	0xa733
114 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_8	0xa741
115 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_9	0xa744
116 #define PCI_DEVICE_ID_INTEL_IE31200_BTL_S_10	0xa745
117 
118 #define IE31200_RANKS_PER_CHANNEL	8
119 #define IE31200_DIMMS_PER_CHANNEL	2
120 #define IE31200_CHANNELS		2
121 #define IE31200_IMC_NUM			2
122 
123 /* Intel IE31200 register addresses - device 0 function 0 - DRAM Controller */
124 #define IE31200_MCHBAR_LOW		0x48
125 #define IE31200_MCHBAR_HIGH		0x4c
126 
127 /*
128  * Error Status Register (16b)
129  *
130  *  1    Multi-bit DRAM ECC Error Flag (DMERR)
131  *  0    Single-bit DRAM ECC Error Flag (DSERR)
132  */
133 #define IE31200_ERRSTS			0xc8
134 #define IE31200_ERRSTS_UE		BIT(1)
135 #define IE31200_ERRSTS_CE		BIT(0)
136 #define IE31200_ERRSTS_BITS		(IE31200_ERRSTS_UE | IE31200_ERRSTS_CE)
137 
138 #define IE31200_CAPID0			0xe4
139 #define IE31200_CAPID0_PDCD		BIT(4)
140 #define IE31200_CAPID0_DDPCD		BIT(6)
141 #define IE31200_CAPID0_ECC		BIT(1)
142 
143 static int nr_channels;
144 static struct pci_dev *mci_pdev;
145 static int ie31200_registered = 1;
146 
147 struct res_config {
148 	enum mem_type mtype;
149 	bool cmci;
150 	int imc_num;
151 	/* Host MMIO configuration register */
152 	u64 reg_mchbar_mask;
153 	u64 reg_mchbar_window_size;
154 	/* ECC error log register */
155 	u64 reg_eccerrlog_offset[IE31200_CHANNELS];
156 	u64 reg_eccerrlog_ce_mask;
157 	u64 reg_eccerrlog_ce_ovfl_mask;
158 	u64 reg_eccerrlog_ue_mask;
159 	u64 reg_eccerrlog_ue_ovfl_mask;
160 	u64 reg_eccerrlog_rank_mask;
161 	u64 reg_eccerrlog_syndrome_mask;
162 	/* MSR to clear ECC error log register */
163 	u32 msr_clear_eccerrlog_offset;
164 	/* DIMM characteristics register */
165 	u64 reg_mad_dimm_size_granularity;
166 	u64 reg_mad_dimm_offset[IE31200_CHANNELS];
167 	u32 reg_mad_dimm_size_mask[IE31200_DIMMS_PER_CHANNEL];
168 	u32 reg_mad_dimm_rank_mask[IE31200_DIMMS_PER_CHANNEL];
169 	u32 reg_mad_dimm_width_mask[IE31200_DIMMS_PER_CHANNEL];
170 };
171 
172 struct ie31200_priv {
173 	void __iomem *window;
174 	void __iomem *c0errlog;
175 	void __iomem *c1errlog;
176 	struct res_config *cfg;
177 	struct mem_ctl_info *mci;
178 	struct pci_dev *pdev;
179 	struct device dev;
180 };
181 
182 static struct ie31200_pvt {
183 	struct ie31200_priv *priv[IE31200_IMC_NUM];
184 } ie31200_pvt;
185 
186 enum ie31200_chips {
187 	IE31200 = 0,
188 	IE31200_1 = 1,
189 };
190 
191 struct ie31200_dev_info {
192 	const char *ctl_name;
193 };
194 
195 struct ie31200_error_info {
196 	u16 errsts;
197 	u16 errsts2;
198 	u64 eccerrlog[IE31200_CHANNELS];
199 	u64 erraddr;
200 };
201 
202 static const struct ie31200_dev_info ie31200_devs[] = {
203 	[IE31200] = {
204 		.ctl_name = "IE31200"
205 	},
206 	[IE31200_1] = {
207 		.ctl_name = "IE31200_1"
208 	},
209 };
210 
211 struct dimm_data {
212 	u64 size; /* in bytes */
213 	u8  ranks;
214 	enum dev_type dtype;
215 };
216 
how_many_channels(struct pci_dev * pdev)217 static int how_many_channels(struct pci_dev *pdev)
218 {
219 	int n_channels;
220 	unsigned char capid0_2b; /* 2nd byte of CAPID0 */
221 
222 	pci_read_config_byte(pdev, IE31200_CAPID0 + 1, &capid0_2b);
223 
224 	/* check PDCD: Dual Channel Disable */
225 	if (capid0_2b & IE31200_CAPID0_PDCD) {
226 		edac_dbg(0, "In single channel mode\n");
227 		n_channels = 1;
228 	} else {
229 		edac_dbg(0, "In dual channel mode\n");
230 		n_channels = 2;
231 	}
232 
233 	/* check DDPCD - check if both channels are filled */
234 	if (capid0_2b & IE31200_CAPID0_DDPCD)
235 		edac_dbg(0, "2 DIMMS per channel disabled\n");
236 	else
237 		edac_dbg(0, "2 DIMMS per channel enabled\n");
238 
239 	return n_channels;
240 }
241 
ecc_capable(struct pci_dev * pdev)242 static bool ecc_capable(struct pci_dev *pdev)
243 {
244 	unsigned char capid0_4b; /* 4th byte of CAPID0 */
245 
246 	pci_read_config_byte(pdev, IE31200_CAPID0 + 3, &capid0_4b);
247 	if (capid0_4b & IE31200_CAPID0_ECC)
248 		return false;
249 	return true;
250 }
251 
252 #define mci_to_pci_dev(mci)	(((struct ie31200_priv *)(mci)->pvt_info)->pdev)
253 
ie31200_clear_error_info(struct mem_ctl_info * mci)254 static void ie31200_clear_error_info(struct mem_ctl_info *mci)
255 {
256 	struct ie31200_priv *priv = mci->pvt_info;
257 	struct res_config *cfg = priv->cfg;
258 
259 	/*
260 	 * The PCI ERRSTS register is deprecated. Write the MSR to clear
261 	 * the ECC error log registers in all memory controllers.
262 	 */
263 	if (cfg->msr_clear_eccerrlog_offset) {
264 		if (wrmsrq_safe(cfg->msr_clear_eccerrlog_offset,
265 			        cfg->reg_eccerrlog_ce_mask |
266 			        cfg->reg_eccerrlog_ce_ovfl_mask |
267 			        cfg->reg_eccerrlog_ue_mask |
268 			        cfg->reg_eccerrlog_ue_ovfl_mask) < 0)
269 			ie31200_printk(KERN_ERR, "Failed to wrmsr.\n");
270 
271 		return;
272 	}
273 
274 	/*
275 	 * Clear any error bits.
276 	 * (Yes, we really clear bits by writing 1 to them.)
277 	 */
278 	pci_write_bits16(mci_to_pci_dev(mci), IE31200_ERRSTS,
279 			 IE31200_ERRSTS_BITS, IE31200_ERRSTS_BITS);
280 }
281 
ie31200_get_and_clear_error_info(struct mem_ctl_info * mci,struct ie31200_error_info * info)282 static void ie31200_get_and_clear_error_info(struct mem_ctl_info *mci,
283 					     struct ie31200_error_info *info)
284 {
285 	struct pci_dev *pdev = mci_to_pci_dev(mci);
286 	struct ie31200_priv *priv = mci->pvt_info;
287 
288 	/*
289 	 * The PCI ERRSTS register is deprecated, directly read the
290 	 * MMIO-mapped ECC error log registers.
291 	 */
292 	if (priv->cfg->msr_clear_eccerrlog_offset) {
293 		info->eccerrlog[0] = lo_hi_readq(priv->c0errlog);
294 		if (nr_channels == 2)
295 			info->eccerrlog[1] = lo_hi_readq(priv->c1errlog);
296 
297 		ie31200_clear_error_info(mci);
298 		return;
299 	}
300 
301 	/*
302 	 * This is a mess because there is no atomic way to read all the
303 	 * registers at once and the registers can transition from CE being
304 	 * overwritten by UE.
305 	 */
306 	pci_read_config_word(pdev, IE31200_ERRSTS, &info->errsts);
307 	if (!(info->errsts & IE31200_ERRSTS_BITS))
308 		return;
309 
310 	info->eccerrlog[0] = lo_hi_readq(priv->c0errlog);
311 	if (nr_channels == 2)
312 		info->eccerrlog[1] = lo_hi_readq(priv->c1errlog);
313 
314 	pci_read_config_word(pdev, IE31200_ERRSTS, &info->errsts2);
315 
316 	/*
317 	 * If the error is the same for both reads then the first set
318 	 * of reads is valid.  If there is a change then there is a CE
319 	 * with no info and the second set of reads is valid and
320 	 * should be UE info.
321 	 */
322 	if ((info->errsts ^ info->errsts2) & IE31200_ERRSTS_BITS) {
323 		info->eccerrlog[0] = lo_hi_readq(priv->c0errlog);
324 		if (nr_channels == 2)
325 			info->eccerrlog[1] =
326 				lo_hi_readq(priv->c1errlog);
327 	}
328 
329 	ie31200_clear_error_info(mci);
330 }
331 
ie31200_process_error_info(struct mem_ctl_info * mci,struct ie31200_error_info * info)332 static void ie31200_process_error_info(struct mem_ctl_info *mci,
333 				       struct ie31200_error_info *info)
334 {
335 	struct ie31200_priv *priv = mci->pvt_info;
336 	struct res_config *cfg = priv->cfg;
337 	int channel;
338 	u64 log;
339 
340 	if (!cfg->msr_clear_eccerrlog_offset) {
341 		if (!(info->errsts & IE31200_ERRSTS_BITS))
342 			return;
343 
344 		if ((info->errsts ^ info->errsts2) & IE31200_ERRSTS_BITS) {
345 			edac_mc_handle_error(HW_EVENT_ERR_UNCORRECTED, mci, 1, 0, 0, 0,
346 					     -1, -1, -1, "UE overwrote CE", "");
347 			info->errsts = info->errsts2;
348 		}
349 	}
350 
351 	for (channel = 0; channel < nr_channels; channel++) {
352 		log = info->eccerrlog[channel];
353 		if (log & cfg->reg_eccerrlog_ue_mask) {
354 			edac_mc_handle_error(HW_EVENT_ERR_UNCORRECTED, mci, 1,
355 					     info->erraddr >> PAGE_SHIFT, 0, 0,
356 					     field_get(cfg->reg_eccerrlog_rank_mask, log),
357 					     channel, -1,
358 					     "ie31200 UE", "");
359 		} else if (log & cfg->reg_eccerrlog_ce_mask) {
360 			edac_mc_handle_error(HW_EVENT_ERR_CORRECTED, mci, 1,
361 					     info->erraddr >> PAGE_SHIFT, 0,
362 					     field_get(cfg->reg_eccerrlog_syndrome_mask, log),
363 					     field_get(cfg->reg_eccerrlog_rank_mask, log),
364 					     channel, -1,
365 					     "ie31200 CE", "");
366 		}
367 	}
368 }
369 
__ie31200_check(struct mem_ctl_info * mci,struct mce * mce)370 static void __ie31200_check(struct mem_ctl_info *mci, struct mce *mce)
371 {
372 	struct ie31200_error_info info;
373 
374 	info.erraddr = mce ? mce->addr : 0;
375 	ie31200_get_and_clear_error_info(mci, &info);
376 	ie31200_process_error_info(mci, &info);
377 }
378 
ie31200_check(struct mem_ctl_info * mci)379 static void ie31200_check(struct mem_ctl_info *mci)
380 {
381 	__ie31200_check(mci, NULL);
382 }
383 
ie31200_map_mchbar(struct pci_dev * pdev,struct res_config * cfg,int mc)384 static void __iomem *ie31200_map_mchbar(struct pci_dev *pdev, struct res_config *cfg, int mc)
385 {
386 	union {
387 		u64 mchbar;
388 		struct {
389 			u32 mchbar_low;
390 			u32 mchbar_high;
391 		};
392 	} u;
393 	void __iomem *window;
394 
395 	pci_read_config_dword(pdev, IE31200_MCHBAR_LOW, &u.mchbar_low);
396 	pci_read_config_dword(pdev, IE31200_MCHBAR_HIGH, &u.mchbar_high);
397 	u.mchbar &= cfg->reg_mchbar_mask;
398 	u.mchbar += cfg->reg_mchbar_window_size * mc;
399 
400 	if (u.mchbar != (resource_size_t)u.mchbar) {
401 		ie31200_printk(KERN_ERR, "mmio space beyond accessible range (0x%llx)\n",
402 			       (unsigned long long)u.mchbar);
403 		return NULL;
404 	}
405 
406 	window = ioremap(u.mchbar, cfg->reg_mchbar_window_size);
407 	if (!window)
408 		ie31200_printk(KERN_ERR, "Cannot map mmio space at 0x%llx\n",
409 			       (unsigned long long)u.mchbar);
410 
411 	return window;
412 }
413 
populate_dimm_info(struct dimm_data * dd,u32 addr_decode,int dimm,struct res_config * cfg)414 static void populate_dimm_info(struct dimm_data *dd, u32 addr_decode, int dimm,
415 			       struct res_config *cfg)
416 {
417 	dd->size = field_get(cfg->reg_mad_dimm_size_mask[dimm], addr_decode) * cfg->reg_mad_dimm_size_granularity;
418 	dd->ranks = field_get(cfg->reg_mad_dimm_rank_mask[dimm], addr_decode) + 1;
419 
420 	switch (field_get(cfg->reg_mad_dimm_width_mask[dimm], addr_decode)) {
421 	case 0:
422 		dd->dtype = DEV_X8;
423 		break;
424 	case 1:
425 		dd->dtype = DEV_X16;
426 		break;
427 	case 2:
428 		dd->dtype = DEV_X32;
429 		break;
430 	case 3:
431 		dd->dtype = DEV_X64;
432 		break;
433 	default:
434 		dd->dtype = DEV_UNKNOWN;
435 	}
436 }
437 
ie31200_get_dimm_config(struct mem_ctl_info * mci,void __iomem * window,struct res_config * cfg,int mc)438 static void ie31200_get_dimm_config(struct mem_ctl_info *mci, void __iomem *window,
439 				    struct res_config *cfg, int mc)
440 {
441 	struct dimm_data dimm_info;
442 	struct dimm_info *dimm;
443 	unsigned long nr_pages;
444 	u32 addr_decode;
445 	int i, j, k;
446 
447 	for (i = 0; i < IE31200_CHANNELS; i++) {
448 		addr_decode = readl(window + cfg->reg_mad_dimm_offset[i]);
449 		edac_dbg(0, "addr_decode: 0x%x\n", addr_decode);
450 
451 		for (j = 0; j < IE31200_DIMMS_PER_CHANNEL; j++) {
452 			populate_dimm_info(&dimm_info, addr_decode, j, cfg);
453 			edac_dbg(0, "mc: %d, channel: %d, dimm: %d, size: %lld MiB, ranks: %d, DRAM chip type: %d\n",
454 				 mc, i, j, dimm_info.size >> 20,
455 				 dimm_info.ranks,
456 				 dimm_info.dtype);
457 
458 			nr_pages = MiB_TO_PAGES(dimm_info.size >> 20);
459 			if (nr_pages == 0)
460 				continue;
461 
462 			nr_pages = nr_pages / dimm_info.ranks;
463 			for (k = 0; k < dimm_info.ranks; k++) {
464 				dimm = edac_get_dimm(mci, (j * dimm_info.ranks) + k, i, 0);
465 				dimm->nr_pages = nr_pages;
466 				edac_dbg(0, "set nr pages: 0x%lx\n", nr_pages);
467 				dimm->grain = 8; /* just a guess */
468 				dimm->mtype = cfg->mtype;
469 				dimm->dtype = dimm_info.dtype;
470 				dimm->edac_mode = EDAC_UNKNOWN;
471 			}
472 		}
473 	}
474 }
475 
ie31200_register_mci(struct pci_dev * pdev,struct res_config * cfg,int mc)476 static int ie31200_register_mci(struct pci_dev *pdev, struct res_config *cfg, int mc)
477 {
478 	struct edac_mc_layer layers[2];
479 	struct ie31200_priv *priv;
480 	struct mem_ctl_info *mci;
481 	void __iomem *window;
482 	int ret;
483 
484 	nr_channels = how_many_channels(pdev);
485 	layers[0].type = EDAC_MC_LAYER_CHIP_SELECT;
486 	layers[0].size = IE31200_RANKS_PER_CHANNEL;
487 	layers[0].is_virt_csrow = true;
488 	layers[1].type = EDAC_MC_LAYER_CHANNEL;
489 	layers[1].size = nr_channels;
490 	layers[1].is_virt_csrow = false;
491 	mci = edac_mc_alloc(mc, ARRAY_SIZE(layers), layers,
492 			    sizeof(struct ie31200_priv));
493 	if (!mci)
494 		return -ENOMEM;
495 
496 	window = ie31200_map_mchbar(pdev, cfg, mc);
497 	if (!window) {
498 		ret = -ENODEV;
499 		goto fail_free;
500 	}
501 
502 	edac_dbg(3, "MC: init mci\n");
503 	mci->mtype_cap = BIT(cfg->mtype);
504 	mci->edac_ctl_cap = EDAC_FLAG_SECDED;
505 	mci->edac_cap = EDAC_FLAG_SECDED;
506 	mci->mod_name = EDAC_MOD_STR;
507 	mci->ctl_name = ie31200_devs[mc].ctl_name;
508 	mci->dev_name = pci_name(pdev);
509 	mci->edac_check = cfg->cmci ? NULL : ie31200_check;
510 	mci->ctl_page_to_phys = NULL;
511 	priv = mci->pvt_info;
512 	priv->window = window;
513 	priv->c0errlog = window + cfg->reg_eccerrlog_offset[0];
514 	priv->c1errlog = window + cfg->reg_eccerrlog_offset[1];
515 	priv->cfg = cfg;
516 	priv->mci = mci;
517 	priv->pdev = pdev;
518 	device_initialize(&priv->dev);
519 	/*
520 	 * The EDAC core uses mci->pdev (pointer to the structure device)
521 	 * as the memory controller ID. The SoCs attach one or more memory
522 	 * controllers to a single pci_dev (a single pci_dev->dev can
523 	 * correspond to multiple memory controllers).
524 	 *
525 	 * To make mci->pdev unique, assign pci_dev->dev to mci->pdev
526 	 * for the first memory controller and assign a unique priv->dev
527 	 * to mci->pdev for each additional memory controller.
528 	 */
529 	mci->pdev = mc ? &priv->dev : &pdev->dev;
530 
531 	ie31200_get_dimm_config(mci, window, cfg, mc);
532 	ie31200_clear_error_info(mci);
533 
534 	if (edac_mc_add_mc(mci)) {
535 		edac_dbg(3, "MC: failed edac_mc_add_mc()\n");
536 		ret = -ENODEV;
537 		goto fail_unmap;
538 	}
539 
540 	ie31200_pvt.priv[mc] = priv;
541 	return 0;
542 fail_unmap:
543 	put_device(&priv->dev);
544 	iounmap(window);
545 fail_free:
546 	edac_mc_free(mci);
547 	return ret;
548 }
549 
mce_check(struct mce * mce)550 static void mce_check(struct mce *mce)
551 {
552 	struct ie31200_priv *priv;
553 	int i;
554 
555 	for (i = 0; i < IE31200_IMC_NUM; i++) {
556 		priv = ie31200_pvt.priv[i];
557 		if (!priv)
558 			continue;
559 
560 		__ie31200_check(priv->mci, mce);
561 	}
562 }
563 
mce_handler(struct notifier_block * nb,unsigned long val,void * data)564 static int mce_handler(struct notifier_block *nb, unsigned long val, void *data)
565 {
566 	struct mce *mce = (struct mce *)data;
567 	char *type;
568 
569 	if (mce->kflags & MCE_HANDLED_CEC)
570 		return NOTIFY_DONE;
571 
572 	/*
573 	 * Ignore unless this is a memory related error.
574 	 * Don't check MCI_STATUS_ADDRV since it's not set on some CPUs.
575 	 */
576 	if ((mce->status & 0xefff) >> 7 != 1)
577 		return NOTIFY_DONE;
578 
579 	type = mce->mcgstatus & MCG_STATUS_MCIP ?  "Exception" : "Event";
580 
581 	edac_dbg(0, "CPU %d: Machine Check %s: 0x%llx Bank %d: 0x%llx\n",
582 		 mce->extcpu, type, mce->mcgstatus,
583 		 mce->bank, mce->status);
584 	edac_dbg(0, "TSC 0x%llx\n", mce->tsc);
585 	edac_dbg(0, "ADDR 0x%llx\n", mce->addr);
586 	edac_dbg(0, "MISC 0x%llx\n", mce->misc);
587 	edac_dbg(0, "PROCESSOR %u:0x%x TIME %llu SOCKET %u APIC 0x%x\n",
588 		 mce->cpuvendor, mce->cpuid, mce->time,
589 		 mce->socketid, mce->apicid);
590 
591 	mce_check(mce);
592 	mce->kflags |= MCE_HANDLED_EDAC;
593 
594 	return NOTIFY_DONE;
595 }
596 
597 static struct notifier_block ie31200_mce_dec = {
598 	.notifier_call	= mce_handler,
599 	.priority	= MCE_PRIO_EDAC,
600 };
601 
ie31200_unregister_mcis(void)602 static void ie31200_unregister_mcis(void)
603 {
604 	struct ie31200_priv *priv;
605 	struct mem_ctl_info *mci;
606 	int i;
607 
608 	for (i = 0; i < IE31200_IMC_NUM; i++) {
609 		priv = ie31200_pvt.priv[i];
610 		if (!priv)
611 			continue;
612 
613 		mci = priv->mci;
614 		edac_mc_del_mc(mci->pdev);
615 		iounmap(priv->window);
616 		put_device(&priv->dev);
617 		edac_mc_free(mci);
618 	}
619 }
620 
ie31200_probe1(struct pci_dev * pdev,struct res_config * cfg)621 static int ie31200_probe1(struct pci_dev *pdev, struct res_config *cfg)
622 {
623 	int i, ret;
624 
625 	edac_dbg(0, "MC:\n");
626 
627 	if (!ecc_capable(pdev)) {
628 		ie31200_printk(KERN_INFO, "No ECC support\n");
629 		return -ENODEV;
630 	}
631 
632 	for (i = 0; i < cfg->imc_num; i++) {
633 		ret = ie31200_register_mci(pdev, cfg, i);
634 		if (ret)
635 			goto fail_register;
636 	}
637 
638 	if (cfg->cmci) {
639 		mce_register_decode_chain(&ie31200_mce_dec);
640 		edac_op_state = EDAC_OPSTATE_INT;
641 	} else {
642 		edac_op_state = EDAC_OPSTATE_POLL;
643 	}
644 
645 	/* get this far and it's successful. */
646 	edac_dbg(3, "MC: success\n");
647 	return 0;
648 
649 fail_register:
650 	ie31200_unregister_mcis();
651 	return ret;
652 }
653 
ie31200_init_one(struct pci_dev * pdev,const struct pci_device_id * ent)654 static int ie31200_init_one(struct pci_dev *pdev,
655 			    const struct pci_device_id *ent)
656 {
657 	int rc;
658 
659 	edac_dbg(0, "MC:\n");
660 	if (pci_enable_device(pdev) < 0)
661 		return -EIO;
662 	rc = ie31200_probe1(pdev, (struct res_config *)ent->driver_data);
663 	if (rc == 0 && !mci_pdev)
664 		mci_pdev = pci_dev_get(pdev);
665 
666 	return rc;
667 }
668 
ie31200_remove_one(struct pci_dev * pdev)669 static void ie31200_remove_one(struct pci_dev *pdev)
670 {
671 	struct ie31200_priv *priv = ie31200_pvt.priv[0];
672 
673 	edac_dbg(0, "\n");
674 	pci_dev_put(mci_pdev);
675 	mci_pdev = NULL;
676 	if (priv->cfg->cmci)
677 		mce_unregister_decode_chain(&ie31200_mce_dec);
678 	ie31200_unregister_mcis();
679 }
680 
681 static struct res_config snb_cfg = {
682 	.mtype				= MEM_DDR3,
683 	.imc_num			= 1,
684 	.reg_mchbar_mask		= GENMASK_ULL(38, 15),
685 	.reg_mchbar_window_size		= BIT_ULL(15),
686 	.reg_eccerrlog_offset[0]	= 0x40c8,
687 	.reg_eccerrlog_offset[1]	= 0x44c8,
688 	.reg_eccerrlog_ce_mask		= BIT_ULL(0),
689 	.reg_eccerrlog_ue_mask		= BIT_ULL(1),
690 	.reg_eccerrlog_rank_mask	= GENMASK_ULL(28, 27),
691 	.reg_eccerrlog_syndrome_mask	= GENMASK_ULL(23, 16),
692 	.reg_mad_dimm_size_granularity	= BIT_ULL(28),
693 	.reg_mad_dimm_offset[0]		= 0x5004,
694 	.reg_mad_dimm_offset[1]		= 0x5008,
695 	.reg_mad_dimm_size_mask[0]	= GENMASK(7, 0),
696 	.reg_mad_dimm_size_mask[1]	= GENMASK(15, 8),
697 	.reg_mad_dimm_rank_mask[0]	= BIT(17),
698 	.reg_mad_dimm_rank_mask[1]	= BIT(18),
699 	.reg_mad_dimm_width_mask[0]	= BIT(19),
700 	.reg_mad_dimm_width_mask[1]	= BIT(20),
701 };
702 
703 static struct res_config skl_cfg = {
704 	.mtype				= MEM_DDR4,
705 	.imc_num			= 1,
706 	.reg_mchbar_mask		= GENMASK_ULL(38, 15),
707 	.reg_mchbar_window_size		= BIT_ULL(15),
708 	.reg_eccerrlog_offset[0]	= 0x4048,
709 	.reg_eccerrlog_offset[1]	= 0x4448,
710 	.reg_eccerrlog_ce_mask		= BIT_ULL(0),
711 	.reg_eccerrlog_ue_mask		= BIT_ULL(1),
712 	.reg_eccerrlog_rank_mask	= GENMASK_ULL(28, 27),
713 	.reg_eccerrlog_syndrome_mask	= GENMASK_ULL(23, 16),
714 	.reg_mad_dimm_size_granularity	= BIT_ULL(30),
715 	.reg_mad_dimm_offset[0]		= 0x500c,
716 	.reg_mad_dimm_offset[1]		= 0x5010,
717 	.reg_mad_dimm_size_mask[0]	= GENMASK(5, 0),
718 	.reg_mad_dimm_size_mask[1]	= GENMASK(21, 16),
719 	.reg_mad_dimm_rank_mask[0]	= BIT(10),
720 	.reg_mad_dimm_rank_mask[1]	= BIT(26),
721 	.reg_mad_dimm_width_mask[0]	= GENMASK(9, 8),
722 	.reg_mad_dimm_width_mask[1]	= GENMASK(25, 24),
723 };
724 
725 static struct res_config rpl_s_cfg = {
726 	.mtype				= MEM_DDR5,
727 	.cmci				= true,
728 	.imc_num			= 2,
729 	.reg_mchbar_mask		= GENMASK_ULL(41, 17),
730 	.reg_mchbar_window_size		= BIT_ULL(16),
731 	.reg_eccerrlog_offset[0]	= 0xe048,
732 	.reg_eccerrlog_offset[1]	= 0xe848,
733 	.reg_eccerrlog_ce_mask		= BIT_ULL(0),
734 	.reg_eccerrlog_ce_ovfl_mask	= BIT_ULL(1),
735 	.reg_eccerrlog_ue_mask		= BIT_ULL(2),
736 	.reg_eccerrlog_ue_ovfl_mask	= BIT_ULL(3),
737 	.reg_eccerrlog_rank_mask	= GENMASK_ULL(28, 27),
738 	.reg_eccerrlog_syndrome_mask	= GENMASK_ULL(23, 16),
739 	.msr_clear_eccerrlog_offset	= 0x791,
740 	.reg_mad_dimm_offset[0]		= 0xd80c,
741 	.reg_mad_dimm_offset[1]		= 0xd810,
742 	.reg_mad_dimm_size_granularity	= BIT_ULL(29),
743 	.reg_mad_dimm_size_mask[0]	= GENMASK(6, 0),
744 	.reg_mad_dimm_size_mask[1]	= GENMASK(22, 16),
745 	.reg_mad_dimm_rank_mask[0]	= GENMASK(10, 9),
746 	.reg_mad_dimm_rank_mask[1]	= GENMASK(27, 26),
747 	.reg_mad_dimm_width_mask[0]	= GENMASK(8, 7),
748 	.reg_mad_dimm_width_mask[1]	= GENMASK(25, 24),
749 };
750 
751 static const struct pci_device_id ie31200_pci_tbl[] = {
752 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_1), .driver_data = (kernel_ulong_t)&snb_cfg },
753 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_2), .driver_data = (kernel_ulong_t)&snb_cfg },
754 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_3), .driver_data = (kernel_ulong_t)&snb_cfg },
755 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_4), .driver_data = (kernel_ulong_t)&snb_cfg },
756 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_5), .driver_data = (kernel_ulong_t)&snb_cfg },
757 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_6), .driver_data = (kernel_ulong_t)&snb_cfg },
758 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_7), .driver_data = (kernel_ulong_t)&snb_cfg },
759 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_8), .driver_data = (kernel_ulong_t)&skl_cfg },
760 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_9), .driver_data = (kernel_ulong_t)&skl_cfg },
761 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_10), .driver_data = (kernel_ulong_t)&skl_cfg },
762 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_11), .driver_data = (kernel_ulong_t)&skl_cfg },
763 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_12), .driver_data = (kernel_ulong_t)&skl_cfg },
764 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_1), .driver_data = (kernel_ulong_t)&skl_cfg },
765 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_2), .driver_data = (kernel_ulong_t)&skl_cfg },
766 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_3), .driver_data = (kernel_ulong_t)&skl_cfg },
767 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_4), .driver_data = (kernel_ulong_t)&skl_cfg },
768 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_5), .driver_data = (kernel_ulong_t)&skl_cfg },
769 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_6), .driver_data = (kernel_ulong_t)&skl_cfg },
770 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_7), .driver_data = (kernel_ulong_t)&skl_cfg },
771 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_8), .driver_data = (kernel_ulong_t)&skl_cfg },
772 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_9), .driver_data = (kernel_ulong_t)&skl_cfg },
773 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_HB_CFL_10), .driver_data = (kernel_ulong_t)&skl_cfg },
774 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_RPL_S_1), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
775 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_RPL_S_2), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
776 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_RPL_S_3), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
777 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_RPL_S_4), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
778 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_RPL_S_5), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
779 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_RPL_S_6), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
780 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_RPL_HX_1), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
781 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_ADL_S_1), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
782 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_ADL_S_2), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
783 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_ADL_S_3), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
784 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_1), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
785 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_2), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
786 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_3), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
787 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_4), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
788 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_5), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
789 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_6), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
790 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_7), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
791 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_8), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
792 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_9), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
793 	{ PCI_VDEVICE(INTEL, PCI_DEVICE_ID_INTEL_IE31200_BTL_S_10), .driver_data = (kernel_ulong_t)&rpl_s_cfg },
794 	{ } /* 0 terminated list. */
795 };
796 MODULE_DEVICE_TABLE(pci, ie31200_pci_tbl);
797 
798 static struct pci_driver ie31200_driver = {
799 	.name = EDAC_MOD_STR,
800 	.probe = ie31200_init_one,
801 	.remove = ie31200_remove_one,
802 	.id_table = ie31200_pci_tbl,
803 };
804 
ie31200_init(void)805 static int __init ie31200_init(void)
806 {
807 	int pci_rc, i;
808 
809 	edac_dbg(3, "MC:\n");
810 
811 	pci_rc = pci_register_driver(&ie31200_driver);
812 	if (pci_rc < 0)
813 		return pci_rc;
814 
815 	if (!mci_pdev) {
816 		ie31200_registered = 0;
817 		for (i = 0; ie31200_pci_tbl[i].vendor != 0; i++) {
818 			mci_pdev = pci_get_device(ie31200_pci_tbl[i].vendor,
819 						  ie31200_pci_tbl[i].device,
820 						  NULL);
821 			if (mci_pdev)
822 				break;
823 		}
824 
825 		if (!mci_pdev) {
826 			edac_dbg(0, "ie31200 pci_get_device fail\n");
827 			pci_rc = -ENODEV;
828 			goto fail0;
829 		}
830 
831 		pci_rc = ie31200_init_one(mci_pdev, &ie31200_pci_tbl[i]);
832 		if (pci_rc < 0) {
833 			edac_dbg(0, "ie31200 init fail\n");
834 			pci_rc = -ENODEV;
835 			goto fail1;
836 		}
837 	}
838 
839 	return 0;
840 fail1:
841 	pci_dev_put(mci_pdev);
842 fail0:
843 	pci_unregister_driver(&ie31200_driver);
844 
845 	return pci_rc;
846 }
847 
ie31200_exit(void)848 static void __exit ie31200_exit(void)
849 {
850 	edac_dbg(3, "MC:\n");
851 	pci_unregister_driver(&ie31200_driver);
852 	if (!ie31200_registered)
853 		ie31200_remove_one(mci_pdev);
854 }
855 
856 module_init(ie31200_init);
857 module_exit(ie31200_exit);
858 
859 MODULE_LICENSE("GPL");
860 MODULE_AUTHOR("Jason Baron <jbaron@akamai.com>");
861 MODULE_DESCRIPTION("MC support for Intel Processor E31200 memory hub controllers");
862