cper.c 15.8 KB
Newer Older
1 2 3 4 5 6 7
/*
 * UEFI Common Platform Error Record (CPER) support
 *
 * Copyright (C) 2010, Intel Corp.
 *	Author: Huang Ying <ying.huang@intel.com>
 *
 * CPER is the format used to describe platform hardware error by
C
Chen, Gong 已提交
8
 * various tables, such as ERST, BERT and HEST etc.
9 10
 *
 * For more information about CPER, please refer to Appendix N of UEFI
11
 * Specification version 2.4.
12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License version
 * 2 as published by the Free Software Foundation.
 *
 * This program is distributed in the hope that it will be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write to the Free Software
 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
 */

#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/time.h>
#include <linux/cper.h>
31
#include <linux/dmi.h>
32
#include <linux/acpi.h>
L
Lance Ortiz 已提交
33
#include <linux/pci.h>
34
#include <linux/aer.h>
35
#include <acpi/ghes.h>
36

37
#define INDENT_SP	" "
38 39 40

static char rcd_decode_str[CPER_REC_LEN];

41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56
/*
 * CPER record ID need to be unique even after reboot, because record
 * ID is used as index for ERST storage, while CPER records from
 * multiple boot may co-exist in ERST.
 */
u64 cper_next_record_id(void)
{
	static atomic64_t seq;

	if (!atomic64_read(&seq))
		atomic64_set(&seq, ((u64)get_seconds()) << 32);

	return atomic64_inc_return(&seq);
}
EXPORT_SYMBOL_GPL(cper_next_record_id);

57
static const char * const severity_strs[] = {
58 59 60 61 62 63
	"recoverable",
	"fatal",
	"corrected",
	"info",
};

64
const char *cper_severity_str(unsigned int severity)
65
{
66 67
	return severity < ARRAY_SIZE(severity_strs) ?
		severity_strs[severity] : "unknown";
68
}
69
EXPORT_SYMBOL_GPL(cper_severity_str);
70 71 72 73 74 75 76 77 78 79 80 81

/*
 * cper_print_bits - print strings for set bits
 * @pfx: prefix for each line, including log level and prefix string
 * @bits: bit mask
 * @strs: string array, indexed by bit position
 * @strs_size: size of the string array: @strs
 *
 * For each set bit in @bits, print the corresponding string in @strs.
 * If the output length is longer than 80, multiple line will be
 * printed, with @pfx is printed at the beginning of each line.
 */
82
void cper_print_bits(const char *pfx, unsigned int bits,
C
Chen, Gong 已提交
83
		     const char * const strs[], unsigned int strs_size)
84 85 86 87 88 89 90 91 92
{
	int i, len = 0;
	const char *str;
	char buf[84];

	for (i = 0; i < strs_size; i++) {
		if (!(bits & (1U << i)))
			continue;
		str = strs[i];
93 94
		if (!str)
			continue;
95 96 97 98 99 100 101 102 103 104 105 106 107
		if (len && len + strlen(str) + 2 > 80) {
			printk("%s\n", buf);
			len = 0;
		}
		if (!len)
			len = snprintf(buf, sizeof(buf), "%s%s", pfx, str);
		else
			len += snprintf(buf+len, sizeof(buf)-len, ", %s", str);
	}
	if (len)
		printk("%s\n", buf);
}

108
static const char * const proc_type_strs[] = {
109 110 111 112
	"IA32/X64",
	"IA64",
};

113
static const char * const proc_isa_strs[] = {
114 115 116 117 118
	"IA32",
	"IA64",
	"X64",
};

119
static const char * const proc_error_type_strs[] = {
120 121 122 123 124 125
	"cache error",
	"TLB error",
	"bus error",
	"micro-architectural error",
};

126
static const char * const proc_op_strs[] = {
127 128 129 130 131 132
	"unknown or generic",
	"data read",
	"data write",
	"instruction execution",
};

133
static const char * const proc_flag_strs[] = {
134 135 136 137 138 139 140 141 142 143 144
	"restartable",
	"precise IP",
	"overflow",
	"corrected",
};

static void cper_print_proc_generic(const char *pfx,
				    const struct cper_sec_proc_generic *proc)
{
	if (proc->validation_bits & CPER_PROC_VALID_TYPE)
		printk("%s""processor_type: %d, %s\n", pfx, proc->proc_type,
145 146
		       proc->proc_type < ARRAY_SIZE(proc_type_strs) ?
		       proc_type_strs[proc->proc_type] : "unknown");
147 148
	if (proc->validation_bits & CPER_PROC_VALID_ISA)
		printk("%s""processor_isa: %d, %s\n", pfx, proc->proc_isa,
149 150
		       proc->proc_isa < ARRAY_SIZE(proc_isa_strs) ?
		       proc_isa_strs[proc->proc_isa] : "unknown");
151 152 153
	if (proc->validation_bits & CPER_PROC_VALID_ERROR_TYPE) {
		printk("%s""error_type: 0x%02x\n", pfx, proc->proc_error_type);
		cper_print_bits(pfx, proc->proc_error_type,
154 155
				proc_error_type_strs,
				ARRAY_SIZE(proc_error_type_strs));
156 157 158
	}
	if (proc->validation_bits & CPER_PROC_VALID_OPERATION)
		printk("%s""operation: %d, %s\n", pfx, proc->operation,
159 160
		       proc->operation < ARRAY_SIZE(proc_op_strs) ?
		       proc_op_strs[proc->operation] : "unknown");
161 162
	if (proc->validation_bits & CPER_PROC_VALID_FLAGS) {
		printk("%s""flags: 0x%02x\n", pfx, proc->flags);
163 164
		cper_print_bits(pfx, proc->flags, proc_flag_strs,
				ARRAY_SIZE(proc_flag_strs));
165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184
	}
	if (proc->validation_bits & CPER_PROC_VALID_LEVEL)
		printk("%s""level: %d\n", pfx, proc->level);
	if (proc->validation_bits & CPER_PROC_VALID_VERSION)
		printk("%s""version_info: 0x%016llx\n", pfx, proc->cpu_version);
	if (proc->validation_bits & CPER_PROC_VALID_ID)
		printk("%s""processor_id: 0x%016llx\n", pfx, proc->proc_id);
	if (proc->validation_bits & CPER_PROC_VALID_TARGET_ADDRESS)
		printk("%s""target_address: 0x%016llx\n",
		       pfx, proc->target_addr);
	if (proc->validation_bits & CPER_PROC_VALID_REQUESTOR_ID)
		printk("%s""requestor_id: 0x%016llx\n",
		       pfx, proc->requestor_id);
	if (proc->validation_bits & CPER_PROC_VALID_RESPONDER_ID)
		printk("%s""responder_id: 0x%016llx\n",
		       pfx, proc->responder_id);
	if (proc->validation_bits & CPER_PROC_VALID_IP)
		printk("%s""IP: 0x%016llx\n", pfx, proc->ip);
}

185
static const char * const mem_err_type_strs[] = {
186 187 188 189 190 191 192 193 194 195 196 197 198 199 200
	"unknown",
	"no error",
	"single-bit ECC",
	"multi-bit ECC",
	"single-symbol chipkill ECC",
	"multi-symbol chipkill ECC",
	"master abort",
	"target abort",
	"parity error",
	"watchdog timeout",
	"invalid address",
	"mirror Broken",
	"memory sparing",
	"scrub corrected error",
	"scrub uncorrected error",
201
	"physical memory map-out event",
202 203
};

204
const char *cper_mem_err_type_str(unsigned int etype)
205
{
206 207 208 209 210
	return etype < ARRAY_SIZE(mem_err_type_strs) ?
		mem_err_type_strs[etype] : "unknown";
}
EXPORT_SYMBOL_GPL(cper_mem_err_type_str);

211
static int cper_mem_err_location(struct cper_mem_err_compact *mem, char *msg)
212 213 214 215 216 217 218 219
{
	u32 len, n;

	if (!msg)
		return 0;

	n = 0;
	len = CPER_REC_LEN - 1;
220
	if (mem->validation_bits & CPER_MEM_VALID_NODE)
221
		n += scnprintf(msg + n, len - n, "node: %d ", mem->node);
222
	if (mem->validation_bits & CPER_MEM_VALID_CARD)
223
		n += scnprintf(msg + n, len - n, "card: %d ", mem->card);
224
	if (mem->validation_bits & CPER_MEM_VALID_MODULE)
225
		n += scnprintf(msg + n, len - n, "module: %d ", mem->module);
226
	if (mem->validation_bits & CPER_MEM_VALID_RANK_NUMBER)
227
		n += scnprintf(msg + n, len - n, "rank: %d ", mem->rank);
228
	if (mem->validation_bits & CPER_MEM_VALID_BANK)
229
		n += scnprintf(msg + n, len - n, "bank: %d ", mem->bank);
230
	if (mem->validation_bits & CPER_MEM_VALID_DEVICE)
231
		n += scnprintf(msg + n, len - n, "device: %d ", mem->device);
232
	if (mem->validation_bits & CPER_MEM_VALID_ROW)
233
		n += scnprintf(msg + n, len - n, "row: %d ", mem->row);
234
	if (mem->validation_bits & CPER_MEM_VALID_COLUMN)
235
		n += scnprintf(msg + n, len - n, "column: %d ", mem->column);
236
	if (mem->validation_bits & CPER_MEM_VALID_BIT_POSITION)
237 238
		n += scnprintf(msg + n, len - n, "bit_position: %d ",
			       mem->bit_pos);
239
	if (mem->validation_bits & CPER_MEM_VALID_REQUESTOR_ID)
240 241
		n += scnprintf(msg + n, len - n, "requestor_id: 0x%016llx ",
			       mem->requestor_id);
242
	if (mem->validation_bits & CPER_MEM_VALID_RESPONDER_ID)
243 244
		n += scnprintf(msg + n, len - n, "responder_id: 0x%016llx ",
			       mem->responder_id);
245
	if (mem->validation_bits & CPER_MEM_VALID_TARGET_ID)
246 247 248 249 250 251 252
		scnprintf(msg + n, len - n, "target_id: 0x%016llx ",
			  mem->target_id);

	msg[n] = '\0';
	return n;
}

253
static int cper_dimm_err_location(struct cper_mem_err_compact *mem, char *msg)
254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274
{
	u32 len, n;
	const char *bank = NULL, *device = NULL;

	if (!msg || !(mem->validation_bits & CPER_MEM_VALID_MODULE_HANDLE))
		return 0;

	n = 0;
	len = CPER_REC_LEN - 1;
	dmi_memdev_name(mem->mem_dev_handle, &bank, &device);
	if (bank && device)
		n = snprintf(msg, len, "DIMM location: %s %s ", bank, device);
	else
		n = snprintf(msg, len,
			     "DIMM location: not present. DMI handle: 0x%.4x ",
			     mem->mem_dev_handle);

	msg[n] = '\0';
	return n;
}

275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297
void cper_mem_err_pack(const struct cper_sec_mem_err *mem,
		       struct cper_mem_err_compact *cmem)
{
	cmem->validation_bits = mem->validation_bits;
	cmem->node = mem->node;
	cmem->card = mem->card;
	cmem->module = mem->module;
	cmem->bank = mem->bank;
	cmem->device = mem->device;
	cmem->row = mem->row;
	cmem->column = mem->column;
	cmem->bit_pos = mem->bit_pos;
	cmem->requestor_id = mem->requestor_id;
	cmem->responder_id = mem->responder_id;
	cmem->target_id = mem->target_id;
	cmem->rank = mem->rank;
	cmem->mem_array_handle = mem->mem_array_handle;
	cmem->mem_dev_handle = mem->mem_dev_handle;
}

const char *cper_mem_err_unpack(struct trace_seq *p,
				struct cper_mem_err_compact *cmem)
{
298
	const char *ret = trace_seq_buffer_ptr(p);
299 300 301 302 303 304 305 306 307 308

	if (cper_mem_err_location(cmem, rcd_decode_str))
		trace_seq_printf(p, "%s", rcd_decode_str);
	if (cper_dimm_err_location(cmem, rcd_decode_str))
		trace_seq_printf(p, "%s", rcd_decode_str);
	trace_seq_putc(p, '\0');

	return ret;
}

309 310
static void cper_print_mem(const char *pfx, const struct cper_sec_mem_err *mem,
	int len)
311
{
312 313
	struct cper_mem_err_compact cmem;

314 315 316 317 318 319
	/* Don't trust UEFI 2.1/2.2 structure with bad validation bits */
	if (len == sizeof(struct cper_sec_mem_err_old) &&
	    (mem->validation_bits & ~(CPER_MEM_VALID_RANK_NUMBER - 1))) {
		pr_err(FW_WARN "valid bits set for fields beyond structure\n");
		return;
	}
320 321 322 323 324 325 326 327
	if (mem->validation_bits & CPER_MEM_VALID_ERROR_STATUS)
		printk("%s""error_status: 0x%016llx\n", pfx, mem->error_status);
	if (mem->validation_bits & CPER_MEM_VALID_PA)
		printk("%s""physical_address: 0x%016llx\n",
		       pfx, mem->physical_addr);
	if (mem->validation_bits & CPER_MEM_VALID_PA_MASK)
		printk("%s""physical_address_mask: 0x%016llx\n",
		       pfx, mem->physical_addr_mask);
328 329
	cper_mem_err_pack(mem, &cmem);
	if (cper_mem_err_location(&cmem, rcd_decode_str))
330
		printk("%s%s\n", pfx, rcd_decode_str);
331 332 333
	if (mem->validation_bits & CPER_MEM_VALID_ERROR_TYPE) {
		u8 etype = mem->error_type;
		printk("%s""error_type: %d, %s\n", pfx, etype,
334
		       cper_mem_err_type_str(etype));
335
	}
336
	if (cper_dimm_err_location(&cmem, rcd_decode_str))
337
		printk("%s%s\n", pfx, rcd_decode_str);
338 339
}

340
static const char * const pcie_port_type_strs[] = {
341 342 343 344 345 346 347 348 349 350 351 352 353
	"PCIe end point",
	"legacy PCI end point",
	"unknown",
	"unknown",
	"root port",
	"upstream switch port",
	"downstream switch port",
	"PCIe to PCI/PCI-X bridge",
	"PCI/PCI-X to PCIe bridge",
	"root complex integrated endpoint device",
	"root complex event collector",
};

354
static void cper_print_pcie(const char *pfx, const struct cper_sec_pcie *pcie,
355
			    const struct acpi_hest_generic_data *gdata)
356 357 358
{
	if (pcie->validation_bits & CPER_PCIE_VALID_PORT_TYPE)
		printk("%s""port_type: %d, %s\n", pfx, pcie->port_type,
359 360
		       pcie->port_type < ARRAY_SIZE(pcie_port_type_strs) ?
		       pcie_port_type_strs[pcie->port_type] : "unknown");
361 362 363 364 365 366 367 368 369 370 371 372 373 374 375 376 377 378 379 380 381 382 383 384 385 386 387 388 389
	if (pcie->validation_bits & CPER_PCIE_VALID_VERSION)
		printk("%s""version: %d.%d\n", pfx,
		       pcie->version.major, pcie->version.minor);
	if (pcie->validation_bits & CPER_PCIE_VALID_COMMAND_STATUS)
		printk("%s""command: 0x%04x, status: 0x%04x\n", pfx,
		       pcie->command, pcie->status);
	if (pcie->validation_bits & CPER_PCIE_VALID_DEVICE_ID) {
		const __u8 *p;
		printk("%s""device_id: %04x:%02x:%02x.%x\n", pfx,
		       pcie->device_id.segment, pcie->device_id.bus,
		       pcie->device_id.device, pcie->device_id.function);
		printk("%s""slot: %d\n", pfx,
		       pcie->device_id.slot >> CPER_PCIE_SLOT_SHIFT);
		printk("%s""secondary_bus: 0x%02x\n", pfx,
		       pcie->device_id.secondary_bus);
		printk("%s""vendor_id: 0x%04x, device_id: 0x%04x\n", pfx,
		       pcie->device_id.vendor_id, pcie->device_id.device_id);
		p = pcie->device_id.class_code;
		printk("%s""class_code: %02x%02x%02x\n", pfx, p[0], p[1], p[2]);
	}
	if (pcie->validation_bits & CPER_PCIE_VALID_SERIAL_NUMBER)
		printk("%s""serial number: 0x%04x, 0x%04x\n", pfx,
		       pcie->serial_number.lower, pcie->serial_number.upper);
	if (pcie->validation_bits & CPER_PCIE_VALID_BRIDGE_CONTROL_STATUS)
		printk(
	"%s""bridge: secondary_status: 0x%04x, control: 0x%04x\n",
	pfx, pcie->bridge.secondary_status, pcie->bridge.control);
}

390 391 392
static void
cper_estatus_print_section(const char *pfx, struct acpi_hest_generic_data *gdata,
			   int sec_no)
393 394 395
{
	uuid_le *sec_type = (uuid_le *)gdata->section_type;
	__u16 severity;
396
	char newpfx[64];
397 398

	severity = gdata->error_severity;
399
	printk("%s""Error %d, type: %s\n", pfx, sec_no,
400 401 402 403 404 405
	       cper_severity_str(severity));
	if (gdata->validation_bits & CPER_SEC_VALID_FRU_ID)
		printk("%s""fru_id: %pUl\n", pfx, (uuid_le *)gdata->fru_id);
	if (gdata->validation_bits & CPER_SEC_VALID_FRU_TEXT)
		printk("%s""fru_text: %.20s\n", pfx, gdata->fru_text);

406
	snprintf(newpfx, sizeof(newpfx), "%s%s", pfx, INDENT_SP);
407
	if (!uuid_le_cmp(*sec_type, CPER_SEC_PROC_GENERIC)) {
408 409
		struct cper_sec_proc_generic *proc_err = acpi_hest_get_payload(gdata);

410
		printk("%s""section_type: general processor error\n", newpfx);
411
		if (gdata->error_data_length >= sizeof(*proc_err))
412
			cper_print_proc_generic(newpfx, proc_err);
413 414 415
		else
			goto err_section_too_small;
	} else if (!uuid_le_cmp(*sec_type, CPER_SEC_PLATFORM_MEM)) {
416 417
		struct cper_sec_mem_err *mem_err = acpi_hest_get_payload(gdata);

418
		printk("%s""section_type: memory error\n", newpfx);
419 420 421 422
		if (gdata->error_data_length >=
		    sizeof(struct cper_sec_mem_err_old))
			cper_print_mem(newpfx, mem_err,
				       gdata->error_data_length);
423 424 425
		else
			goto err_section_too_small;
	} else if (!uuid_le_cmp(*sec_type, CPER_SEC_PCIE)) {
426 427
		struct cper_sec_pcie *pcie = acpi_hest_get_payload(gdata);

428
		printk("%s""section_type: PCIe error\n", newpfx);
429
		if (gdata->error_data_length >= sizeof(*pcie))
430
			cper_print_pcie(newpfx, pcie, gdata);
431 432 433
		else
			goto err_section_too_small;
	} else
434
		printk("%s""section type: unknown, %pUl\n", newpfx, sec_type);
435 436 437 438 439 440 441

	return;

err_section_too_small:
	pr_err(FW_WARN "error section length is too small\n");
}

C
Chen, Gong 已提交
442
void cper_estatus_print(const char *pfx,
443
			const struct acpi_hest_generic_status *estatus)
444
{
445
	struct acpi_hest_generic_data *gdata;
446
	unsigned int data_len;
447
	int sec_no = 0;
448
	char newpfx[64];
449 450 451
	__u16 severity;

	severity = estatus->error_severity;
452 453 454 455 456
	if (severity == CPER_SEV_CORRECTED)
		printk("%s%s\n", pfx,
		       "It has been corrected by h/w "
		       "and requires no further action");
	printk("%s""event severity: %s\n", pfx, cper_severity_str(severity));
457
	data_len = estatus->data_length;
458
	gdata = (struct acpi_hest_generic_data *)(estatus + 1);
459
	snprintf(newpfx, sizeof(newpfx), "%s%s", pfx, INDENT_SP);
460 461

	while (data_len >= acpi_hest_get_size(gdata)) {
462
		cper_estatus_print_section(newpfx, gdata, sec_no);
463 464
		data_len -= acpi_hest_get_record_size(gdata);
		gdata = acpi_hest_get_next(gdata);
465 466 467
		sec_no++;
	}
}
C
Chen, Gong 已提交
468
EXPORT_SYMBOL_GPL(cper_estatus_print);
469

470
int cper_estatus_check_header(const struct acpi_hest_generic_status *estatus)
471 472
{
	if (estatus->data_length &&
473
	    estatus->data_length < sizeof(struct acpi_hest_generic_data))
474 475 476 477 478 479 480
		return -EINVAL;
	if (estatus->raw_data_length &&
	    estatus->raw_data_offset < sizeof(*estatus) + estatus->data_length)
		return -EINVAL;

	return 0;
}
C
Chen, Gong 已提交
481
EXPORT_SYMBOL_GPL(cper_estatus_check_header);
482

483
int cper_estatus_check(const struct acpi_hest_generic_status *estatus)
484
{
485
	struct acpi_hest_generic_data *gdata;
486 487 488
	unsigned int data_len, gedata_len;
	int rc;

C
Chen, Gong 已提交
489
	rc = cper_estatus_check_header(estatus);
490 491 492
	if (rc)
		return rc;
	data_len = estatus->data_length;
493
	gdata = (struct acpi_hest_generic_data *)(estatus + 1);
494 495 496 497

	while (data_len >= acpi_hest_get_size(gdata)) {
		gedata_len = acpi_hest_get_error_length(gdata);
		if (gedata_len > data_len - acpi_hest_get_size(gdata))
498
			return -EINVAL;
499 500 501

		data_len -= acpi_hest_get_record_size(gdata);
		gdata = acpi_hest_get_next(gdata);
502 503 504 505 506 507
	}
	if (data_len)
		return -EINVAL;

	return 0;
}
C
Chen, Gong 已提交
508
EXPORT_SYMBOL_GPL(cper_estatus_check);