xref: /linux/drivers/acpi/apei/ghes.c (revision 509d3f45847627f4c5cdce004c3ec79262b5239c)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * APEI Generic Hardware Error Source support
4  *
5  * Generic Hardware Error Source provides a way to report platform
6  * hardware errors (such as that from chipset). It works in so called
7  * "Firmware First" mode, that is, hardware errors are reported to
8  * firmware firstly, then reported to Linux by firmware. This way,
9  * some non-standard hardware error registers or non-standard hardware
10  * link can be checked by firmware to produce more hardware error
11  * information for Linux.
12  *
13  * For more information about Generic Hardware Error Source, please
14  * refer to ACPI Specification version 4.0, section 17.3.2.6
15  *
16  * Copyright 2010,2011 Intel Corp.
17  *   Author: Huang Ying <ying.huang@intel.com>
18  */
19 
20 #include <linux/arm_sdei.h>
21 #include <linux/kernel.h>
22 #include <linux/moduleparam.h>
23 #include <linux/init.h>
24 #include <linux/acpi.h>
25 #include <linux/bitfield.h>
26 #include <linux/io.h>
27 #include <linux/interrupt.h>
28 #include <linux/timer.h>
29 #include <linux/cper.h>
30 #include <linux/cleanup.h>
31 #include <linux/platform_device.h>
32 #include <linux/mutex.h>
33 #include <linux/ratelimit.h>
34 #include <linux/vmalloc.h>
35 #include <linux/irq_work.h>
36 #include <linux/llist.h>
37 #include <linux/genalloc.h>
38 #include <linux/kfifo.h>
39 #include <linux/pci.h>
40 #include <linux/pfn.h>
41 #include <linux/aer.h>
42 #include <linux/nmi.h>
43 #include <linux/sched/clock.h>
44 #include <linux/uuid.h>
45 #include <linux/ras.h>
46 #include <linux/task_work.h>
47 #include <linux/vmcore_info.h>
48 
49 #include <acpi/actbl1.h>
50 #include <acpi/ghes.h>
51 #include <acpi/apei.h>
52 #include <asm/fixmap.h>
53 #include <asm/tlbflush.h>
54 #include <cxl/event.h>
55 #include <ras/ras_event.h>
56 
57 #include "apei-internal.h"
58 
59 #define GHES_PFX	"GHES: "
60 
61 #define GHES_ESTATUS_MAX_SIZE		65536
62 #define GHES_ESOURCE_PREALLOC_MAX_SIZE	65536
63 
64 #define GHES_ESTATUS_POOL_MIN_ALLOC_ORDER 3
65 
66 /* This is just an estimation for memory pool allocation */
67 #define GHES_ESTATUS_CACHE_AVG_SIZE	512
68 
69 #define GHES_ESTATUS_CACHES_SIZE	4
70 
71 #define GHES_ESTATUS_IN_CACHE_MAX_NSEC	10000000000ULL
72 /* Prevent too many caches are allocated because of RCU */
73 #define GHES_ESTATUS_CACHE_ALLOCED_MAX	(GHES_ESTATUS_CACHES_SIZE * 3 / 2)
74 
75 #define GHES_ESTATUS_CACHE_LEN(estatus_len)			\
76 	(sizeof(struct ghes_estatus_cache) + (estatus_len))
77 #define GHES_ESTATUS_FROM_CACHE(estatus_cache)			\
78 	((struct acpi_hest_generic_status *)				\
79 	 ((struct ghes_estatus_cache *)(estatus_cache) + 1))
80 
81 #define GHES_ESTATUS_NODE_LEN(estatus_len)			\
82 	(sizeof(struct ghes_estatus_node) + (estatus_len))
83 #define GHES_ESTATUS_FROM_NODE(estatus_node)			\
84 	((struct acpi_hest_generic_status *)				\
85 	 ((struct ghes_estatus_node *)(estatus_node) + 1))
86 
87 #define GHES_VENDOR_ENTRY_LEN(gdata_len)                               \
88 	(sizeof(struct ghes_vendor_record_entry) + (gdata_len))
89 #define GHES_GDATA_FROM_VENDOR_ENTRY(vendor_entry)                     \
90 	((struct acpi_hest_generic_data *)                              \
91 	((struct ghes_vendor_record_entry *)(vendor_entry) + 1))
92 
93 /*
94  *  NMI-like notifications vary by architecture, before the compiler can prune
95  *  unused static functions it needs a value for these enums.
96  */
97 #ifndef CONFIG_ARM_SDE_INTERFACE
98 #define FIX_APEI_GHES_SDEI_NORMAL	__end_of_fixed_addresses
99 #define FIX_APEI_GHES_SDEI_CRITICAL	__end_of_fixed_addresses
100 #endif
101 
102 static ATOMIC_NOTIFIER_HEAD(ghes_report_chain);
103 
is_hest_type_generic_v2(struct ghes * ghes)104 static inline bool is_hest_type_generic_v2(struct ghes *ghes)
105 {
106 	return ghes->generic->header.type == ACPI_HEST_TYPE_GENERIC_ERROR_V2;
107 }
108 
109 /*
110  * A platform may describe one error source for the handling of synchronous
111  * errors (e.g. MCE or SEA), or for handling asynchronous errors (e.g. SCI
112  * or External Interrupt). On x86, the HEST notifications are always
113  * asynchronous, so only SEA on ARM is delivered as a synchronous
114  * notification.
115  */
is_hest_sync_notify(struct ghes * ghes)116 static inline bool is_hest_sync_notify(struct ghes *ghes)
117 {
118 	u8 notify_type = ghes->generic->notify.type;
119 
120 	return notify_type == ACPI_HEST_NOTIFY_SEA;
121 }
122 
123 /*
124  * This driver isn't really modular, however for the time being,
125  * continuing to use module_param is the easiest way to remain
126  * compatible with existing boot arg use cases.
127  */
128 bool ghes_disable;
129 module_param_named(disable, ghes_disable, bool, 0);
130 
131 /*
132  * "ghes.edac_force_enable" forcibly enables ghes_edac and skips the platform
133  * check.
134  */
135 static bool ghes_edac_force_enable;
136 module_param_named(edac_force_enable, ghes_edac_force_enable, bool, 0);
137 
138 /*
139  * All error sources notified with HED (Hardware Error Device) share a
140  * single notifier callback, so they need to be linked and checked one
141  * by one. This holds true for NMI too.
142  *
143  * RCU is used for these lists, so ghes_list_mutex is only used for
144  * list changing, not for traversing.
145  */
146 static LIST_HEAD(ghes_hed);
147 static DEFINE_MUTEX(ghes_list_mutex);
148 
149 /*
150  * A list of GHES devices which are given to the corresponding EDAC driver
151  * ghes_edac for further use.
152  */
153 static LIST_HEAD(ghes_devs);
154 static DEFINE_MUTEX(ghes_devs_mutex);
155 
156 /*
157  * Because the memory area used to transfer hardware error information
158  * from BIOS to Linux can be determined only in NMI, IRQ or timer
159  * handler, but general ioremap can not be used in atomic context, so
160  * the fixmap is used instead.
161  *
162  * This spinlock is used to prevent the fixmap entry from being used
163  * simultaneously.
164  */
165 static DEFINE_SPINLOCK(ghes_notify_lock_irq);
166 
167 struct ghes_vendor_record_entry {
168 	struct work_struct work;
169 	int error_severity;
170 	char vendor_record[];
171 };
172 
173 static struct gen_pool *ghes_estatus_pool;
174 
175 static struct ghes_estatus_cache __rcu *ghes_estatus_caches[GHES_ESTATUS_CACHES_SIZE];
176 static atomic_t ghes_estatus_cache_alloced;
177 
ghes_map(u64 pfn,enum fixed_addresses fixmap_idx)178 static void __iomem *ghes_map(u64 pfn, enum fixed_addresses fixmap_idx)
179 {
180 	phys_addr_t paddr;
181 	pgprot_t prot;
182 
183 	paddr = PFN_PHYS(pfn);
184 	prot = arch_apei_get_mem_attribute(paddr);
185 	__set_fixmap(fixmap_idx, paddr, prot);
186 
187 	return (void __iomem *) __fix_to_virt(fixmap_idx);
188 }
189 
ghes_unmap(void __iomem * vaddr,enum fixed_addresses fixmap_idx)190 static void ghes_unmap(void __iomem *vaddr, enum fixed_addresses fixmap_idx)
191 {
192 	int _idx = virt_to_fix((unsigned long)vaddr);
193 
194 	WARN_ON_ONCE(fixmap_idx != _idx);
195 	clear_fixmap(fixmap_idx);
196 }
197 
ghes_estatus_pool_init(unsigned int num_ghes)198 int ghes_estatus_pool_init(unsigned int num_ghes)
199 {
200 	unsigned long addr, len;
201 	int rc;
202 
203 	ghes_estatus_pool = gen_pool_create(GHES_ESTATUS_POOL_MIN_ALLOC_ORDER, -1);
204 	if (!ghes_estatus_pool)
205 		return -ENOMEM;
206 
207 	len = GHES_ESTATUS_CACHE_AVG_SIZE * GHES_ESTATUS_CACHE_ALLOCED_MAX;
208 	len += (num_ghes * GHES_ESOURCE_PREALLOC_MAX_SIZE);
209 
210 	addr = (unsigned long)vmalloc(PAGE_ALIGN(len));
211 	if (!addr)
212 		goto err_pool_alloc;
213 
214 	rc = gen_pool_add(ghes_estatus_pool, addr, PAGE_ALIGN(len), -1);
215 	if (rc)
216 		goto err_pool_add;
217 
218 	return 0;
219 
220 err_pool_add:
221 	vfree((void *)addr);
222 
223 err_pool_alloc:
224 	gen_pool_destroy(ghes_estatus_pool);
225 
226 	return -ENOMEM;
227 }
228 
229 /**
230  * ghes_estatus_pool_region_free - free previously allocated memory
231  *				   from the ghes_estatus_pool.
232  * @addr: address of memory to free.
233  * @size: size of memory to free.
234  *
235  * Returns none.
236  */
ghes_estatus_pool_region_free(unsigned long addr,u32 size)237 void ghes_estatus_pool_region_free(unsigned long addr, u32 size)
238 {
239 	gen_pool_free(ghes_estatus_pool, addr, size);
240 }
241 EXPORT_SYMBOL_GPL(ghes_estatus_pool_region_free);
242 
map_gen_v2(struct ghes * ghes)243 static int map_gen_v2(struct ghes *ghes)
244 {
245 	return apei_map_generic_address(&ghes->generic_v2->read_ack_register);
246 }
247 
unmap_gen_v2(struct ghes * ghes)248 static void unmap_gen_v2(struct ghes *ghes)
249 {
250 	apei_unmap_generic_address(&ghes->generic_v2->read_ack_register);
251 }
252 
ghes_ack_error(struct acpi_hest_generic_v2 * gv2)253 static void ghes_ack_error(struct acpi_hest_generic_v2 *gv2)
254 {
255 	int rc;
256 	u64 val = 0;
257 
258 	rc = apei_read(&val, &gv2->read_ack_register);
259 	if (rc)
260 		return;
261 
262 	val &= gv2->read_ack_preserve << gv2->read_ack_register.bit_offset;
263 	val |= gv2->read_ack_write    << gv2->read_ack_register.bit_offset;
264 
265 	apei_write(val, &gv2->read_ack_register);
266 }
267 
ghes_new(struct acpi_hest_generic * generic)268 static struct ghes *ghes_new(struct acpi_hest_generic *generic)
269 {
270 	struct ghes *ghes;
271 	unsigned int error_block_length;
272 	int rc;
273 
274 	ghes = kzalloc(sizeof(*ghes), GFP_KERNEL);
275 	if (!ghes)
276 		return ERR_PTR(-ENOMEM);
277 
278 	ghes->generic = generic;
279 	if (is_hest_type_generic_v2(ghes)) {
280 		rc = map_gen_v2(ghes);
281 		if (rc)
282 			goto err_free;
283 	}
284 
285 	rc = apei_map_generic_address(&generic->error_status_address);
286 	if (rc)
287 		goto err_unmap_read_ack_addr;
288 	error_block_length = generic->error_block_length;
289 	if (error_block_length > GHES_ESTATUS_MAX_SIZE) {
290 		pr_warn(FW_WARN GHES_PFX
291 			"Error status block length is too long: %u for "
292 			"generic hardware error source: %d.\n",
293 			error_block_length, generic->header.source_id);
294 		error_block_length = GHES_ESTATUS_MAX_SIZE;
295 	}
296 	ghes->estatus = kmalloc(error_block_length, GFP_KERNEL);
297 	if (!ghes->estatus) {
298 		rc = -ENOMEM;
299 		goto err_unmap_status_addr;
300 	}
301 
302 	return ghes;
303 
304 err_unmap_status_addr:
305 	apei_unmap_generic_address(&generic->error_status_address);
306 err_unmap_read_ack_addr:
307 	if (is_hest_type_generic_v2(ghes))
308 		unmap_gen_v2(ghes);
309 err_free:
310 	kfree(ghes);
311 	return ERR_PTR(rc);
312 }
313 
ghes_fini(struct ghes * ghes)314 static void ghes_fini(struct ghes *ghes)
315 {
316 	kfree(ghes->estatus);
317 	apei_unmap_generic_address(&ghes->generic->error_status_address);
318 	if (is_hest_type_generic_v2(ghes))
319 		unmap_gen_v2(ghes);
320 }
321 
ghes_severity(int severity)322 static inline int ghes_severity(int severity)
323 {
324 	switch (severity) {
325 	case CPER_SEV_INFORMATIONAL:
326 		return GHES_SEV_NO;
327 	case CPER_SEV_CORRECTED:
328 		return GHES_SEV_CORRECTED;
329 	case CPER_SEV_RECOVERABLE:
330 		return GHES_SEV_RECOVERABLE;
331 	case CPER_SEV_FATAL:
332 		return GHES_SEV_PANIC;
333 	default:
334 		/* Unknown, go panic */
335 		return GHES_SEV_PANIC;
336 	}
337 }
338 
ghes_copy_tofrom_phys(void * buffer,u64 paddr,u32 len,int from_phys,enum fixed_addresses fixmap_idx)339 static void ghes_copy_tofrom_phys(void *buffer, u64 paddr, u32 len,
340 				  int from_phys,
341 				  enum fixed_addresses fixmap_idx)
342 {
343 	void __iomem *vaddr;
344 	u64 offset;
345 	u32 trunk;
346 
347 	while (len > 0) {
348 		offset = paddr - (paddr & PAGE_MASK);
349 		vaddr = ghes_map(PHYS_PFN(paddr), fixmap_idx);
350 		trunk = PAGE_SIZE - offset;
351 		trunk = min(trunk, len);
352 		if (from_phys)
353 			memcpy_fromio(buffer, vaddr + offset, trunk);
354 		else
355 			memcpy_toio(vaddr + offset, buffer, trunk);
356 		len -= trunk;
357 		paddr += trunk;
358 		buffer += trunk;
359 		ghes_unmap(vaddr, fixmap_idx);
360 	}
361 }
362 
363 /* Check the top-level record header has an appropriate size. */
__ghes_check_estatus(struct ghes * ghes,struct acpi_hest_generic_status * estatus)364 static int __ghes_check_estatus(struct ghes *ghes,
365 				struct acpi_hest_generic_status *estatus)
366 {
367 	u32 len = cper_estatus_len(estatus);
368 
369 	if (len < sizeof(*estatus)) {
370 		pr_warn_ratelimited(FW_WARN GHES_PFX "Truncated error status block!\n");
371 		return -EIO;
372 	}
373 
374 	if (len > ghes->generic->error_block_length) {
375 		pr_warn_ratelimited(FW_WARN GHES_PFX "Invalid error status block length!\n");
376 		return -EIO;
377 	}
378 
379 	if (cper_estatus_check_header(estatus)) {
380 		pr_warn_ratelimited(FW_WARN GHES_PFX "Invalid CPER header!\n");
381 		return -EIO;
382 	}
383 
384 	return 0;
385 }
386 
387 /* Read the CPER block, returning its address, and header in estatus. */
__ghes_peek_estatus(struct ghes * ghes,struct acpi_hest_generic_status * estatus,u64 * buf_paddr,enum fixed_addresses fixmap_idx)388 static int __ghes_peek_estatus(struct ghes *ghes,
389 			       struct acpi_hest_generic_status *estatus,
390 			       u64 *buf_paddr, enum fixed_addresses fixmap_idx)
391 {
392 	struct acpi_hest_generic *g = ghes->generic;
393 	int rc;
394 
395 	rc = apei_read(buf_paddr, &g->error_status_address);
396 	if (rc) {
397 		*buf_paddr = 0;
398 		pr_warn_ratelimited(FW_WARN GHES_PFX
399 "Failed to read error status block address for hardware error source: %d.\n",
400 				   g->header.source_id);
401 		return -EIO;
402 	}
403 	if (!*buf_paddr)
404 		return -ENOENT;
405 
406 	ghes_copy_tofrom_phys(estatus, *buf_paddr, sizeof(*estatus), 1,
407 			      fixmap_idx);
408 	if (!estatus->block_status) {
409 		*buf_paddr = 0;
410 		return -ENOENT;
411 	}
412 
413 	return 0;
414 }
415 
__ghes_read_estatus(struct acpi_hest_generic_status * estatus,u64 buf_paddr,enum fixed_addresses fixmap_idx,size_t buf_len)416 static int __ghes_read_estatus(struct acpi_hest_generic_status *estatus,
417 			       u64 buf_paddr, enum fixed_addresses fixmap_idx,
418 			       size_t buf_len)
419 {
420 	ghes_copy_tofrom_phys(estatus, buf_paddr, buf_len, 1, fixmap_idx);
421 	if (cper_estatus_check(estatus)) {
422 		pr_warn_ratelimited(FW_WARN GHES_PFX
423 				    "Failed to read error status block!\n");
424 		return -EIO;
425 	}
426 
427 	return 0;
428 }
429 
ghes_read_estatus(struct ghes * ghes,struct acpi_hest_generic_status * estatus,u64 * buf_paddr,enum fixed_addresses fixmap_idx)430 static int ghes_read_estatus(struct ghes *ghes,
431 			     struct acpi_hest_generic_status *estatus,
432 			     u64 *buf_paddr, enum fixed_addresses fixmap_idx)
433 {
434 	int rc;
435 
436 	rc = __ghes_peek_estatus(ghes, estatus, buf_paddr, fixmap_idx);
437 	if (rc)
438 		return rc;
439 
440 	rc = __ghes_check_estatus(ghes, estatus);
441 	if (rc)
442 		return rc;
443 
444 	return __ghes_read_estatus(estatus, *buf_paddr, fixmap_idx,
445 				   cper_estatus_len(estatus));
446 }
447 
ghes_clear_estatus(struct ghes * ghes,struct acpi_hest_generic_status * estatus,u64 buf_paddr,enum fixed_addresses fixmap_idx)448 static void ghes_clear_estatus(struct ghes *ghes,
449 			       struct acpi_hest_generic_status *estatus,
450 			       u64 buf_paddr, enum fixed_addresses fixmap_idx)
451 {
452 	estatus->block_status = 0;
453 
454 	if (!buf_paddr)
455 		return;
456 
457 	ghes_copy_tofrom_phys(estatus, buf_paddr,
458 			      sizeof(estatus->block_status), 0,
459 			      fixmap_idx);
460 
461 	/*
462 	 * GHESv2 type HEST entries introduce support for error acknowledgment,
463 	 * so only acknowledge the error if this support is present.
464 	 */
465 	if (is_hest_type_generic_v2(ghes))
466 		ghes_ack_error(ghes->generic_v2);
467 }
468 
469 /**
470  * struct ghes_task_work - for synchronous RAS event
471  *
472  * @twork:                callback_head for task work
473  * @pfn:                  page frame number of corrupted page
474  * @flags:                work control flags
475  *
476  * Structure to pass task work to be handled before
477  * returning to user-space via task_work_add().
478  */
479 struct ghes_task_work {
480 	struct callback_head twork;
481 	u64 pfn;
482 	int flags;
483 };
484 
memory_failure_cb(struct callback_head * twork)485 static void memory_failure_cb(struct callback_head *twork)
486 {
487 	struct ghes_task_work *twcb = container_of(twork, struct ghes_task_work, twork);
488 	int ret;
489 
490 	ret = memory_failure(twcb->pfn, twcb->flags);
491 	gen_pool_free(ghes_estatus_pool, (unsigned long)twcb, sizeof(*twcb));
492 
493 	if (!ret || ret == -EHWPOISON || ret == -EOPNOTSUPP)
494 		return;
495 
496 	pr_err("%#llx: Sending SIGBUS to %s:%d due to hardware memory corruption\n",
497 			twcb->pfn, current->comm, task_pid_nr(current));
498 	force_sig(SIGBUS);
499 }
500 
ghes_do_memory_failure(u64 physical_addr,int flags)501 static bool ghes_do_memory_failure(u64 physical_addr, int flags)
502 {
503 	struct ghes_task_work *twcb;
504 	unsigned long pfn;
505 
506 	if (!IS_ENABLED(CONFIG_ACPI_APEI_MEMORY_FAILURE))
507 		return false;
508 
509 	pfn = PHYS_PFN(physical_addr);
510 
511 	if (flags == MF_ACTION_REQUIRED && current->mm) {
512 		twcb = (void *)gen_pool_alloc(ghes_estatus_pool, sizeof(*twcb));
513 		if (!twcb)
514 			return false;
515 
516 		twcb->pfn = pfn;
517 		twcb->flags = flags;
518 		init_task_work(&twcb->twork, memory_failure_cb);
519 		task_work_add(current, &twcb->twork, TWA_RESUME);
520 		return true;
521 	}
522 
523 	memory_failure_queue(pfn, flags);
524 	return true;
525 }
526 
ghes_handle_memory_failure(struct acpi_hest_generic_data * gdata,int sev,bool sync)527 static bool ghes_handle_memory_failure(struct acpi_hest_generic_data *gdata,
528 				       int sev, bool sync)
529 {
530 	int flags = -1;
531 	int sec_sev = ghes_severity(gdata->error_severity);
532 	struct cper_sec_mem_err *mem_err = acpi_hest_get_payload(gdata);
533 
534 	if (!(mem_err->validation_bits & CPER_MEM_VALID_PA))
535 		return false;
536 
537 	/* iff following two events can be handled properly by now */
538 	if (sec_sev == GHES_SEV_CORRECTED &&
539 	    (gdata->flags & CPER_SEC_ERROR_THRESHOLD_EXCEEDED))
540 		flags = MF_SOFT_OFFLINE;
541 	if (sev == GHES_SEV_RECOVERABLE && sec_sev == GHES_SEV_RECOVERABLE)
542 		flags = sync ? MF_ACTION_REQUIRED : 0;
543 
544 	if (flags != -1)
545 		return ghes_do_memory_failure(mem_err->physical_addr, flags);
546 
547 	return false;
548 }
549 
ghes_handle_arm_hw_error(struct acpi_hest_generic_data * gdata,int sev,bool sync)550 static bool ghes_handle_arm_hw_error(struct acpi_hest_generic_data *gdata,
551 				     int sev, bool sync)
552 {
553 	struct cper_sec_proc_arm *err = acpi_hest_get_payload(gdata);
554 	int flags = sync ? MF_ACTION_REQUIRED : 0;
555 	char error_type[120];
556 	bool queued = false;
557 	int sec_sev, i;
558 	char *p;
559 
560 	sec_sev = ghes_severity(gdata->error_severity);
561 	log_arm_hw_error(err, sec_sev);
562 	if (sev != GHES_SEV_RECOVERABLE || sec_sev != GHES_SEV_RECOVERABLE)
563 		return false;
564 
565 	p = (char *)(err + 1);
566 	for (i = 0; i < err->err_info_num; i++) {
567 		struct cper_arm_err_info *err_info = (struct cper_arm_err_info *)p;
568 		bool is_cache = err_info->type & CPER_ARM_CACHE_ERROR;
569 		bool has_pa = (err_info->validation_bits & CPER_ARM_INFO_VALID_PHYSICAL_ADDR);
570 
571 		/*
572 		 * The field (err_info->error_info & BIT(26)) is fixed to set to
573 		 * 1 in some old firmware of HiSilicon Kunpeng920. We assume that
574 		 * firmware won't mix corrected errors in an uncorrected section,
575 		 * and don't filter out 'corrected' error here.
576 		 */
577 		if (is_cache && has_pa) {
578 			queued = ghes_do_memory_failure(err_info->physical_fault_addr, flags);
579 			p += err_info->length;
580 			continue;
581 		}
582 
583 		cper_bits_to_str(error_type, sizeof(error_type),
584 				 FIELD_GET(CPER_ARM_ERR_TYPE_MASK, err_info->type),
585 				 cper_proc_error_type_strs,
586 				 ARRAY_SIZE(cper_proc_error_type_strs));
587 
588 		pr_warn_ratelimited(FW_WARN GHES_PFX
589 				    "Unhandled processor error type 0x%02x: %s%s\n",
590 				    err_info->type, error_type,
591 				    (err_info->type & ~CPER_ARM_ERR_TYPE_MASK) ? " with reserved bit(s)" : "");
592 		p += err_info->length;
593 	}
594 
595 	return queued;
596 }
597 
598 /*
599  * PCIe AER errors need to be sent to the AER driver for reporting and
600  * recovery. The GHES severities map to the following AER severities and
601  * require the following handling:
602  *
603  * GHES_SEV_CORRECTABLE -> AER_CORRECTABLE
604  *     These need to be reported by the AER driver but no recovery is
605  *     necessary.
606  * GHES_SEV_RECOVERABLE -> AER_NONFATAL
607  * GHES_SEV_RECOVERABLE && CPER_SEC_RESET -> AER_FATAL
608  *     These both need to be reported and recovered from by the AER driver.
609  * GHES_SEV_PANIC does not make it to this handling since the kernel must
610  *     panic.
611  */
ghes_handle_aer(struct acpi_hest_generic_data * gdata)612 static void ghes_handle_aer(struct acpi_hest_generic_data *gdata)
613 {
614 #ifdef CONFIG_ACPI_APEI_PCIEAER
615 	struct cper_sec_pcie *pcie_err = acpi_hest_get_payload(gdata);
616 
617 	if (pcie_err->validation_bits & CPER_PCIE_VALID_DEVICE_ID &&
618 	    pcie_err->validation_bits & CPER_PCIE_VALID_AER_INFO) {
619 		unsigned int devfn;
620 		int aer_severity;
621 		u8 *aer_info;
622 
623 		devfn = PCI_DEVFN(pcie_err->device_id.device,
624 				  pcie_err->device_id.function);
625 		aer_severity = cper_severity_to_aer(gdata->error_severity);
626 
627 		/*
628 		 * If firmware reset the component to contain
629 		 * the error, we must reinitialize it before
630 		 * use, so treat it as a fatal AER error.
631 		 */
632 		if (gdata->flags & CPER_SEC_RESET)
633 			aer_severity = AER_FATAL;
634 
635 		aer_info = (void *)gen_pool_alloc(ghes_estatus_pool,
636 						  sizeof(struct aer_capability_regs));
637 		if (!aer_info)
638 			return;
639 		memcpy(aer_info, pcie_err->aer_info, sizeof(struct aer_capability_regs));
640 
641 		aer_recover_queue(pcie_err->device_id.segment,
642 				  pcie_err->device_id.bus,
643 				  devfn, aer_severity,
644 				  (struct aer_capability_regs *)
645 				  aer_info);
646 	}
647 #endif
648 }
649 
650 static BLOCKING_NOTIFIER_HEAD(vendor_record_notify_list);
651 
ghes_register_vendor_record_notifier(struct notifier_block * nb)652 int ghes_register_vendor_record_notifier(struct notifier_block *nb)
653 {
654 	return blocking_notifier_chain_register(&vendor_record_notify_list, nb);
655 }
656 EXPORT_SYMBOL_GPL(ghes_register_vendor_record_notifier);
657 
ghes_unregister_vendor_record_notifier(struct notifier_block * nb)658 void ghes_unregister_vendor_record_notifier(struct notifier_block *nb)
659 {
660 	blocking_notifier_chain_unregister(&vendor_record_notify_list, nb);
661 }
662 EXPORT_SYMBOL_GPL(ghes_unregister_vendor_record_notifier);
663 
ghes_vendor_record_work_func(struct work_struct * work)664 static void ghes_vendor_record_work_func(struct work_struct *work)
665 {
666 	struct ghes_vendor_record_entry *entry;
667 	struct acpi_hest_generic_data *gdata;
668 	u32 len;
669 
670 	entry = container_of(work, struct ghes_vendor_record_entry, work);
671 	gdata = GHES_GDATA_FROM_VENDOR_ENTRY(entry);
672 
673 	blocking_notifier_call_chain(&vendor_record_notify_list,
674 				     entry->error_severity, gdata);
675 
676 	len = GHES_VENDOR_ENTRY_LEN(acpi_hest_get_record_size(gdata));
677 	gen_pool_free(ghes_estatus_pool, (unsigned long)entry, len);
678 }
679 
ghes_defer_non_standard_event(struct acpi_hest_generic_data * gdata,int sev)680 static void ghes_defer_non_standard_event(struct acpi_hest_generic_data *gdata,
681 					  int sev)
682 {
683 	struct acpi_hest_generic_data *copied_gdata;
684 	struct ghes_vendor_record_entry *entry;
685 	u32 len;
686 
687 	len = GHES_VENDOR_ENTRY_LEN(acpi_hest_get_record_size(gdata));
688 	entry = (void *)gen_pool_alloc(ghes_estatus_pool, len);
689 	if (!entry)
690 		return;
691 
692 	copied_gdata = GHES_GDATA_FROM_VENDOR_ENTRY(entry);
693 	memcpy(copied_gdata, gdata, acpi_hest_get_record_size(gdata));
694 	entry->error_severity = sev;
695 
696 	INIT_WORK(&entry->work, ghes_vendor_record_work_func);
697 	schedule_work(&entry->work);
698 }
699 
700 /* Room for 8 entries */
701 #define CXL_CPER_PROT_ERR_FIFO_DEPTH 8
702 static DEFINE_KFIFO(cxl_cper_prot_err_fifo, struct cxl_cper_prot_err_work_data,
703 		    CXL_CPER_PROT_ERR_FIFO_DEPTH);
704 
705 /* Synchronize schedule_work() with cxl_cper_prot_err_work changes */
706 static DEFINE_SPINLOCK(cxl_cper_prot_err_work_lock);
707 struct work_struct *cxl_cper_prot_err_work;
708 
cxl_cper_post_prot_err(struct cxl_cper_sec_prot_err * prot_err,int severity)709 static void cxl_cper_post_prot_err(struct cxl_cper_sec_prot_err *prot_err,
710 				   int severity)
711 {
712 #ifdef CONFIG_ACPI_APEI_PCIEAER
713 	struct cxl_cper_prot_err_work_data wd;
714 	u8 *dvsec_start, *cap_start;
715 
716 	if (!(prot_err->valid_bits & PROT_ERR_VALID_AGENT_ADDRESS)) {
717 		pr_err_ratelimited("CXL CPER invalid agent type\n");
718 		return;
719 	}
720 
721 	if (!(prot_err->valid_bits & PROT_ERR_VALID_ERROR_LOG)) {
722 		pr_err_ratelimited("CXL CPER invalid protocol error log\n");
723 		return;
724 	}
725 
726 	if (prot_err->err_len != sizeof(struct cxl_ras_capability_regs)) {
727 		pr_err_ratelimited("CXL CPER invalid RAS Cap size (%u)\n",
728 				   prot_err->err_len);
729 		return;
730 	}
731 
732 	if (!(prot_err->valid_bits & PROT_ERR_VALID_SERIAL_NUMBER))
733 		pr_warn(FW_WARN "CXL CPER no device serial number\n");
734 
735 	guard(spinlock_irqsave)(&cxl_cper_prot_err_work_lock);
736 
737 	if (!cxl_cper_prot_err_work)
738 		return;
739 
740 	switch (prot_err->agent_type) {
741 	case RCD:
742 	case DEVICE:
743 	case LD:
744 	case FMLD:
745 	case RP:
746 	case DSP:
747 	case USP:
748 		memcpy(&wd.prot_err, prot_err, sizeof(wd.prot_err));
749 
750 		dvsec_start = (u8 *)(prot_err + 1);
751 		cap_start = dvsec_start + prot_err->dvsec_len;
752 
753 		memcpy(&wd.ras_cap, cap_start, sizeof(wd.ras_cap));
754 		wd.severity = cper_severity_to_aer(severity);
755 		break;
756 	default:
757 		pr_err_ratelimited("CXL CPER invalid agent type: %d\n",
758 				   prot_err->agent_type);
759 		return;
760 	}
761 
762 	if (!kfifo_put(&cxl_cper_prot_err_fifo, wd)) {
763 		pr_err_ratelimited("CXL CPER kfifo overflow\n");
764 		return;
765 	}
766 
767 	schedule_work(cxl_cper_prot_err_work);
768 #endif
769 }
770 
cxl_cper_register_prot_err_work(struct work_struct * work)771 int cxl_cper_register_prot_err_work(struct work_struct *work)
772 {
773 	if (cxl_cper_prot_err_work)
774 		return -EINVAL;
775 
776 	guard(spinlock)(&cxl_cper_prot_err_work_lock);
777 	cxl_cper_prot_err_work = work;
778 	return 0;
779 }
780 EXPORT_SYMBOL_NS_GPL(cxl_cper_register_prot_err_work, "CXL");
781 
cxl_cper_unregister_prot_err_work(struct work_struct * work)782 int cxl_cper_unregister_prot_err_work(struct work_struct *work)
783 {
784 	if (cxl_cper_prot_err_work != work)
785 		return -EINVAL;
786 
787 	guard(spinlock)(&cxl_cper_prot_err_work_lock);
788 	cxl_cper_prot_err_work = NULL;
789 	return 0;
790 }
791 EXPORT_SYMBOL_NS_GPL(cxl_cper_unregister_prot_err_work, "CXL");
792 
cxl_cper_prot_err_kfifo_get(struct cxl_cper_prot_err_work_data * wd)793 int cxl_cper_prot_err_kfifo_get(struct cxl_cper_prot_err_work_data *wd)
794 {
795 	return kfifo_get(&cxl_cper_prot_err_fifo, wd);
796 }
797 EXPORT_SYMBOL_NS_GPL(cxl_cper_prot_err_kfifo_get, "CXL");
798 
799 /* Room for 8 entries for each of the 4 event log queues */
800 #define CXL_CPER_FIFO_DEPTH 32
801 DEFINE_KFIFO(cxl_cper_fifo, struct cxl_cper_work_data, CXL_CPER_FIFO_DEPTH);
802 
803 /* Synchronize schedule_work() with cxl_cper_work changes */
804 static DEFINE_SPINLOCK(cxl_cper_work_lock);
805 struct work_struct *cxl_cper_work;
806 
cxl_cper_post_event(enum cxl_event_type event_type,struct cxl_cper_event_rec * rec)807 static void cxl_cper_post_event(enum cxl_event_type event_type,
808 				struct cxl_cper_event_rec *rec)
809 {
810 	struct cxl_cper_work_data wd;
811 
812 	if (rec->hdr.length <= sizeof(rec->hdr) ||
813 	    rec->hdr.length > sizeof(*rec)) {
814 		pr_err(FW_WARN "CXL CPER Invalid section length (%u)\n",
815 		       rec->hdr.length);
816 		return;
817 	}
818 
819 	if (!(rec->hdr.validation_bits & CPER_CXL_COMP_EVENT_LOG_VALID)) {
820 		pr_err(FW_WARN "CXL CPER invalid event\n");
821 		return;
822 	}
823 
824 	guard(spinlock_irqsave)(&cxl_cper_work_lock);
825 
826 	if (!cxl_cper_work)
827 		return;
828 
829 	wd.event_type = event_type;
830 	memcpy(&wd.rec, rec, sizeof(wd.rec));
831 
832 	if (!kfifo_put(&cxl_cper_fifo, wd)) {
833 		pr_err_ratelimited("CXL CPER kfifo overflow\n");
834 		return;
835 	}
836 
837 	schedule_work(cxl_cper_work);
838 }
839 
cxl_cper_register_work(struct work_struct * work)840 int cxl_cper_register_work(struct work_struct *work)
841 {
842 	if (cxl_cper_work)
843 		return -EINVAL;
844 
845 	guard(spinlock)(&cxl_cper_work_lock);
846 	cxl_cper_work = work;
847 	return 0;
848 }
849 EXPORT_SYMBOL_NS_GPL(cxl_cper_register_work, "CXL");
850 
cxl_cper_unregister_work(struct work_struct * work)851 int cxl_cper_unregister_work(struct work_struct *work)
852 {
853 	if (cxl_cper_work != work)
854 		return -EINVAL;
855 
856 	guard(spinlock)(&cxl_cper_work_lock);
857 	cxl_cper_work = NULL;
858 	return 0;
859 }
860 EXPORT_SYMBOL_NS_GPL(cxl_cper_unregister_work, "CXL");
861 
cxl_cper_kfifo_get(struct cxl_cper_work_data * wd)862 int cxl_cper_kfifo_get(struct cxl_cper_work_data *wd)
863 {
864 	return kfifo_get(&cxl_cper_fifo, wd);
865 }
866 EXPORT_SYMBOL_NS_GPL(cxl_cper_kfifo_get, "CXL");
867 
ghes_log_hwerr(int sev,guid_t * sec_type)868 static void ghes_log_hwerr(int sev, guid_t *sec_type)
869 {
870 	if (sev != CPER_SEV_RECOVERABLE)
871 		return;
872 
873 	if (guid_equal(sec_type, &CPER_SEC_PROC_ARM) ||
874 	    guid_equal(sec_type, &CPER_SEC_PROC_GENERIC) ||
875 	    guid_equal(sec_type, &CPER_SEC_PROC_IA)) {
876 		hwerr_log_error_type(HWERR_RECOV_CPU);
877 		return;
878 	}
879 
880 	if (guid_equal(sec_type, &CPER_SEC_CXL_PROT_ERR) ||
881 	    guid_equal(sec_type, &CPER_SEC_CXL_GEN_MEDIA_GUID) ||
882 	    guid_equal(sec_type, &CPER_SEC_CXL_DRAM_GUID) ||
883 	    guid_equal(sec_type, &CPER_SEC_CXL_MEM_MODULE_GUID)) {
884 		hwerr_log_error_type(HWERR_RECOV_CXL);
885 		return;
886 	}
887 
888 	if (guid_equal(sec_type, &CPER_SEC_PCIE) ||
889 	    guid_equal(sec_type, &CPER_SEC_PCI_X_BUS)) {
890 		hwerr_log_error_type(HWERR_RECOV_PCI);
891 		return;
892 	}
893 
894 	if (guid_equal(sec_type, &CPER_SEC_PLATFORM_MEM)) {
895 		hwerr_log_error_type(HWERR_RECOV_MEMORY);
896 		return;
897 	}
898 
899 	hwerr_log_error_type(HWERR_RECOV_OTHERS);
900 }
901 
ghes_do_proc(struct ghes * ghes,const struct acpi_hest_generic_status * estatus)902 static void ghes_do_proc(struct ghes *ghes,
903 			 const struct acpi_hest_generic_status *estatus)
904 {
905 	int sev, sec_sev;
906 	struct acpi_hest_generic_data *gdata;
907 	guid_t *sec_type;
908 	const guid_t *fru_id = &guid_null;
909 	char *fru_text = "";
910 	bool queued = false;
911 	bool sync = is_hest_sync_notify(ghes);
912 
913 	sev = ghes_severity(estatus->error_severity);
914 	apei_estatus_for_each_section(estatus, gdata) {
915 		sec_type = (guid_t *)gdata->section_type;
916 		sec_sev = ghes_severity(gdata->error_severity);
917 		if (gdata->validation_bits & CPER_SEC_VALID_FRU_ID)
918 			fru_id = (guid_t *)gdata->fru_id;
919 
920 		if (gdata->validation_bits & CPER_SEC_VALID_FRU_TEXT)
921 			fru_text = gdata->fru_text;
922 
923 		ghes_log_hwerr(sev, sec_type);
924 		if (guid_equal(sec_type, &CPER_SEC_PLATFORM_MEM)) {
925 			struct cper_sec_mem_err *mem_err = acpi_hest_get_payload(gdata);
926 
927 			atomic_notifier_call_chain(&ghes_report_chain, sev, mem_err);
928 
929 			arch_apei_report_mem_error(sev, mem_err);
930 			queued = ghes_handle_memory_failure(gdata, sev, sync);
931 		} else if (guid_equal(sec_type, &CPER_SEC_PCIE)) {
932 			ghes_handle_aer(gdata);
933 		} else if (guid_equal(sec_type, &CPER_SEC_PROC_ARM)) {
934 			queued = ghes_handle_arm_hw_error(gdata, sev, sync);
935 		} else if (guid_equal(sec_type, &CPER_SEC_CXL_PROT_ERR)) {
936 			struct cxl_cper_sec_prot_err *prot_err = acpi_hest_get_payload(gdata);
937 
938 			cxl_cper_post_prot_err(prot_err, gdata->error_severity);
939 		} else if (guid_equal(sec_type, &CPER_SEC_CXL_GEN_MEDIA_GUID)) {
940 			struct cxl_cper_event_rec *rec = acpi_hest_get_payload(gdata);
941 
942 			cxl_cper_post_event(CXL_CPER_EVENT_GEN_MEDIA, rec);
943 		} else if (guid_equal(sec_type, &CPER_SEC_CXL_DRAM_GUID)) {
944 			struct cxl_cper_event_rec *rec = acpi_hest_get_payload(gdata);
945 
946 			cxl_cper_post_event(CXL_CPER_EVENT_DRAM, rec);
947 		} else if (guid_equal(sec_type, &CPER_SEC_CXL_MEM_MODULE_GUID)) {
948 			struct cxl_cper_event_rec *rec = acpi_hest_get_payload(gdata);
949 
950 			cxl_cper_post_event(CXL_CPER_EVENT_MEM_MODULE, rec);
951 		} else {
952 			void *err = acpi_hest_get_payload(gdata);
953 
954 			ghes_defer_non_standard_event(gdata, sev);
955 			log_non_standard_event(sec_type, fru_id, fru_text,
956 					       sec_sev, err,
957 					       gdata->error_data_length);
958 		}
959 	}
960 
961 	/*
962 	 * If no memory failure work is queued for abnormal synchronous
963 	 * errors, do a force kill.
964 	 */
965 	if (sync && !queued) {
966 		dev_err(ghes->dev,
967 			HW_ERR GHES_PFX "%s:%d: synchronous unrecoverable error (SIGBUS)\n",
968 			current->comm, task_pid_nr(current));
969 		force_sig(SIGBUS);
970 	}
971 }
972 
__ghes_print_estatus(const char * pfx,const struct acpi_hest_generic * generic,const struct acpi_hest_generic_status * estatus)973 static void __ghes_print_estatus(const char *pfx,
974 				 const struct acpi_hest_generic *generic,
975 				 const struct acpi_hest_generic_status *estatus)
976 {
977 	static atomic_t seqno;
978 	unsigned int curr_seqno;
979 	char pfx_seq[64];
980 
981 	if (pfx == NULL) {
982 		if (ghes_severity(estatus->error_severity) <=
983 		    GHES_SEV_CORRECTED)
984 			pfx = KERN_WARNING;
985 		else
986 			pfx = KERN_ERR;
987 	}
988 	curr_seqno = atomic_inc_return(&seqno);
989 	snprintf(pfx_seq, sizeof(pfx_seq), "%s{%u}" HW_ERR, pfx, curr_seqno);
990 	printk("%s""Hardware error from APEI Generic Hardware Error Source: %d\n",
991 	       pfx_seq, generic->header.source_id);
992 	cper_estatus_print(pfx_seq, estatus);
993 }
994 
ghes_print_estatus(const char * pfx,const struct acpi_hest_generic * generic,const struct acpi_hest_generic_status * estatus)995 static int ghes_print_estatus(const char *pfx,
996 			      const struct acpi_hest_generic *generic,
997 			      const struct acpi_hest_generic_status *estatus)
998 {
999 	/* Not more than 2 messages every 5 seconds */
1000 	static DEFINE_RATELIMIT_STATE(ratelimit_corrected, 5*HZ, 2);
1001 	static DEFINE_RATELIMIT_STATE(ratelimit_uncorrected, 5*HZ, 2);
1002 	struct ratelimit_state *ratelimit;
1003 
1004 	if (ghes_severity(estatus->error_severity) <= GHES_SEV_CORRECTED)
1005 		ratelimit = &ratelimit_corrected;
1006 	else
1007 		ratelimit = &ratelimit_uncorrected;
1008 	if (__ratelimit(ratelimit)) {
1009 		__ghes_print_estatus(pfx, generic, estatus);
1010 		return 1;
1011 	}
1012 	return 0;
1013 }
1014 
1015 /*
1016  * GHES error status reporting throttle, to report more kinds of
1017  * errors, instead of just most frequently occurred errors.
1018  */
ghes_estatus_cached(struct acpi_hest_generic_status * estatus)1019 static int ghes_estatus_cached(struct acpi_hest_generic_status *estatus)
1020 {
1021 	u32 len;
1022 	int i, cached = 0;
1023 	unsigned long long now;
1024 	struct ghes_estatus_cache *cache;
1025 	struct acpi_hest_generic_status *cache_estatus;
1026 
1027 	len = cper_estatus_len(estatus);
1028 	rcu_read_lock();
1029 	for (i = 0; i < GHES_ESTATUS_CACHES_SIZE; i++) {
1030 		cache = rcu_dereference(ghes_estatus_caches[i]);
1031 		if (cache == NULL)
1032 			continue;
1033 		if (len != cache->estatus_len)
1034 			continue;
1035 		cache_estatus = GHES_ESTATUS_FROM_CACHE(cache);
1036 		if (memcmp(estatus, cache_estatus, len))
1037 			continue;
1038 		atomic_inc(&cache->count);
1039 		now = sched_clock();
1040 		if (now - cache->time_in < GHES_ESTATUS_IN_CACHE_MAX_NSEC)
1041 			cached = 1;
1042 		break;
1043 	}
1044 	rcu_read_unlock();
1045 	return cached;
1046 }
1047 
ghes_estatus_cache_alloc(struct acpi_hest_generic * generic,struct acpi_hest_generic_status * estatus)1048 static struct ghes_estatus_cache *ghes_estatus_cache_alloc(
1049 	struct acpi_hest_generic *generic,
1050 	struct acpi_hest_generic_status *estatus)
1051 {
1052 	int alloced;
1053 	u32 len, cache_len;
1054 	struct ghes_estatus_cache *cache;
1055 	struct acpi_hest_generic_status *cache_estatus;
1056 
1057 	alloced = atomic_add_return(1, &ghes_estatus_cache_alloced);
1058 	if (alloced > GHES_ESTATUS_CACHE_ALLOCED_MAX) {
1059 		atomic_dec(&ghes_estatus_cache_alloced);
1060 		return NULL;
1061 	}
1062 	len = cper_estatus_len(estatus);
1063 	cache_len = GHES_ESTATUS_CACHE_LEN(len);
1064 	cache = (void *)gen_pool_alloc(ghes_estatus_pool, cache_len);
1065 	if (!cache) {
1066 		atomic_dec(&ghes_estatus_cache_alloced);
1067 		return NULL;
1068 	}
1069 	cache_estatus = GHES_ESTATUS_FROM_CACHE(cache);
1070 	memcpy(cache_estatus, estatus, len);
1071 	cache->estatus_len = len;
1072 	atomic_set(&cache->count, 0);
1073 	cache->generic = generic;
1074 	cache->time_in = sched_clock();
1075 	return cache;
1076 }
1077 
ghes_estatus_cache_rcu_free(struct rcu_head * head)1078 static void ghes_estatus_cache_rcu_free(struct rcu_head *head)
1079 {
1080 	struct ghes_estatus_cache *cache;
1081 	u32 len;
1082 
1083 	cache = container_of(head, struct ghes_estatus_cache, rcu);
1084 	len = cper_estatus_len(GHES_ESTATUS_FROM_CACHE(cache));
1085 	len = GHES_ESTATUS_CACHE_LEN(len);
1086 	gen_pool_free(ghes_estatus_pool, (unsigned long)cache, len);
1087 	atomic_dec(&ghes_estatus_cache_alloced);
1088 }
1089 
1090 static void
ghes_estatus_cache_add(struct acpi_hest_generic * generic,struct acpi_hest_generic_status * estatus)1091 ghes_estatus_cache_add(struct acpi_hest_generic *generic,
1092 		       struct acpi_hest_generic_status *estatus)
1093 {
1094 	unsigned long long now, duration, period, max_period = 0;
1095 	struct ghes_estatus_cache *cache, *new_cache;
1096 	struct ghes_estatus_cache __rcu *victim;
1097 	int i, slot = -1, count;
1098 
1099 	new_cache = ghes_estatus_cache_alloc(generic, estatus);
1100 	if (!new_cache)
1101 		return;
1102 
1103 	rcu_read_lock();
1104 	now = sched_clock();
1105 	for (i = 0; i < GHES_ESTATUS_CACHES_SIZE; i++) {
1106 		cache = rcu_dereference(ghes_estatus_caches[i]);
1107 		if (cache == NULL) {
1108 			slot = i;
1109 			break;
1110 		}
1111 		duration = now - cache->time_in;
1112 		if (duration >= GHES_ESTATUS_IN_CACHE_MAX_NSEC) {
1113 			slot = i;
1114 			break;
1115 		}
1116 		count = atomic_read(&cache->count);
1117 		period = duration;
1118 		do_div(period, (count + 1));
1119 		if (period > max_period) {
1120 			max_period = period;
1121 			slot = i;
1122 		}
1123 	}
1124 	rcu_read_unlock();
1125 
1126 	if (slot != -1) {
1127 		/*
1128 		 * Use release semantics to ensure that ghes_estatus_cached()
1129 		 * running on another CPU will see the updated cache fields if
1130 		 * it can see the new value of the pointer.
1131 		 */
1132 		victim = xchg_release(&ghes_estatus_caches[slot],
1133 				      RCU_INITIALIZER(new_cache));
1134 
1135 		/*
1136 		 * At this point, victim may point to a cached item different
1137 		 * from the one based on which we selected the slot. Instead of
1138 		 * going to the loop again to pick another slot, let's just
1139 		 * drop the other item anyway: this may cause a false cache
1140 		 * miss later on, but that won't cause any problems.
1141 		 */
1142 		if (victim)
1143 			call_rcu(&unrcu_pointer(victim)->rcu,
1144 				 ghes_estatus_cache_rcu_free);
1145 	}
1146 }
1147 
__ghes_panic(struct ghes * ghes,struct acpi_hest_generic_status * estatus,u64 buf_paddr,enum fixed_addresses fixmap_idx)1148 static void __ghes_panic(struct ghes *ghes,
1149 			 struct acpi_hest_generic_status *estatus,
1150 			 u64 buf_paddr, enum fixed_addresses fixmap_idx)
1151 {
1152 	const char *msg = GHES_PFX "Fatal hardware error";
1153 
1154 	__ghes_print_estatus(KERN_EMERG, ghes->generic, estatus);
1155 
1156 	add_taint(TAINT_MACHINE_CHECK, LOCKDEP_STILL_OK);
1157 
1158 	ghes_clear_estatus(ghes, estatus, buf_paddr, fixmap_idx);
1159 
1160 	if (!panic_timeout)
1161 		pr_emerg("%s but panic disabled\n", msg);
1162 
1163 	panic(msg);
1164 }
1165 
ghes_proc(struct ghes * ghes)1166 static int ghes_proc(struct ghes *ghes)
1167 {
1168 	struct acpi_hest_generic_status *estatus = ghes->estatus;
1169 	u64 buf_paddr;
1170 	int rc;
1171 
1172 	rc = ghes_read_estatus(ghes, estatus, &buf_paddr, FIX_APEI_GHES_IRQ);
1173 	if (rc)
1174 		goto out;
1175 
1176 	if (ghes_severity(estatus->error_severity) >= GHES_SEV_PANIC)
1177 		__ghes_panic(ghes, estatus, buf_paddr, FIX_APEI_GHES_IRQ);
1178 
1179 	if (!ghes_estatus_cached(estatus)) {
1180 		if (ghes_print_estatus(NULL, ghes->generic, estatus))
1181 			ghes_estatus_cache_add(ghes->generic, estatus);
1182 	}
1183 	ghes_do_proc(ghes, estatus);
1184 
1185 out:
1186 	ghes_clear_estatus(ghes, estatus, buf_paddr, FIX_APEI_GHES_IRQ);
1187 
1188 	return rc;
1189 }
1190 
ghes_add_timer(struct ghes * ghes)1191 static void ghes_add_timer(struct ghes *ghes)
1192 {
1193 	struct acpi_hest_generic *g = ghes->generic;
1194 	unsigned long expire;
1195 
1196 	if (!g->notify.poll_interval) {
1197 		pr_warn(FW_WARN GHES_PFX "Poll interval is 0 for generic hardware error source: %d, disabled.\n",
1198 			g->header.source_id);
1199 		return;
1200 	}
1201 	expire = jiffies + msecs_to_jiffies(g->notify.poll_interval);
1202 	ghes->timer.expires = round_jiffies_relative(expire);
1203 	add_timer(&ghes->timer);
1204 }
1205 
ghes_poll_func(struct timer_list * t)1206 static void ghes_poll_func(struct timer_list *t)
1207 {
1208 	struct ghes *ghes = timer_container_of(ghes, t, timer);
1209 	unsigned long flags;
1210 
1211 	spin_lock_irqsave(&ghes_notify_lock_irq, flags);
1212 	ghes_proc(ghes);
1213 	spin_unlock_irqrestore(&ghes_notify_lock_irq, flags);
1214 	if (!(ghes->flags & GHES_EXITING))
1215 		ghes_add_timer(ghes);
1216 }
1217 
ghes_irq_func(int irq,void * data)1218 static irqreturn_t ghes_irq_func(int irq, void *data)
1219 {
1220 	struct ghes *ghes = data;
1221 	unsigned long flags;
1222 	int rc;
1223 
1224 	spin_lock_irqsave(&ghes_notify_lock_irq, flags);
1225 	rc = ghes_proc(ghes);
1226 	spin_unlock_irqrestore(&ghes_notify_lock_irq, flags);
1227 	if (rc)
1228 		return IRQ_NONE;
1229 
1230 	return IRQ_HANDLED;
1231 }
1232 
ghes_notify_hed(struct notifier_block * this,unsigned long event,void * data)1233 static int ghes_notify_hed(struct notifier_block *this, unsigned long event,
1234 			   void *data)
1235 {
1236 	struct ghes *ghes;
1237 	unsigned long flags;
1238 	int ret = NOTIFY_DONE;
1239 
1240 	spin_lock_irqsave(&ghes_notify_lock_irq, flags);
1241 	list_for_each_entry_rcu(ghes, &ghes_hed, list) {
1242 		if (!ghes_proc(ghes))
1243 			ret = NOTIFY_OK;
1244 	}
1245 	spin_unlock_irqrestore(&ghes_notify_lock_irq, flags);
1246 
1247 	return ret;
1248 }
1249 
1250 static struct notifier_block ghes_notifier_hed = {
1251 	.notifier_call = ghes_notify_hed,
1252 };
1253 
1254 /*
1255  * Handlers for CPER records may not be NMI safe. For example,
1256  * memory_failure_queue() takes spinlocks and calls schedule_work_on().
1257  * In any NMI-like handler, memory from ghes_estatus_pool is used to save
1258  * estatus, and added to the ghes_estatus_llist. irq_work_queue() causes
1259  * ghes_proc_in_irq() to run in IRQ context where each estatus in
1260  * ghes_estatus_llist is processed.
1261  *
1262  * Memory from the ghes_estatus_pool is also used with the ghes_estatus_cache
1263  * to suppress frequent messages.
1264  */
1265 static struct llist_head ghes_estatus_llist;
1266 static struct irq_work ghes_proc_irq_work;
1267 
ghes_proc_in_irq(struct irq_work * irq_work)1268 static void ghes_proc_in_irq(struct irq_work *irq_work)
1269 {
1270 	struct llist_node *llnode, *next;
1271 	struct ghes_estatus_node *estatus_node;
1272 	struct acpi_hest_generic *generic;
1273 	struct acpi_hest_generic_status *estatus;
1274 	u32 len, node_len;
1275 
1276 	llnode = llist_del_all(&ghes_estatus_llist);
1277 	/*
1278 	 * Because the time order of estatus in list is reversed,
1279 	 * revert it back to proper order.
1280 	 */
1281 	llnode = llist_reverse_order(llnode);
1282 	while (llnode) {
1283 		next = llnode->next;
1284 		estatus_node = llist_entry(llnode, struct ghes_estatus_node,
1285 					   llnode);
1286 		estatus = GHES_ESTATUS_FROM_NODE(estatus_node);
1287 		len = cper_estatus_len(estatus);
1288 		node_len = GHES_ESTATUS_NODE_LEN(len);
1289 
1290 		ghes_do_proc(estatus_node->ghes, estatus);
1291 
1292 		if (!ghes_estatus_cached(estatus)) {
1293 			generic = estatus_node->generic;
1294 			if (ghes_print_estatus(NULL, generic, estatus))
1295 				ghes_estatus_cache_add(generic, estatus);
1296 		}
1297 		gen_pool_free(ghes_estatus_pool, (unsigned long)estatus_node,
1298 			      node_len);
1299 
1300 		llnode = next;
1301 	}
1302 }
1303 
ghes_print_queued_estatus(void)1304 static void ghes_print_queued_estatus(void)
1305 {
1306 	struct llist_node *llnode;
1307 	struct ghes_estatus_node *estatus_node;
1308 	struct acpi_hest_generic *generic;
1309 	struct acpi_hest_generic_status *estatus;
1310 
1311 	llnode = llist_del_all(&ghes_estatus_llist);
1312 	/*
1313 	 * Because the time order of estatus in list is reversed,
1314 	 * revert it back to proper order.
1315 	 */
1316 	llnode = llist_reverse_order(llnode);
1317 	while (llnode) {
1318 		estatus_node = llist_entry(llnode, struct ghes_estatus_node,
1319 					   llnode);
1320 		estatus = GHES_ESTATUS_FROM_NODE(estatus_node);
1321 		generic = estatus_node->generic;
1322 		ghes_print_estatus(NULL, generic, estatus);
1323 		llnode = llnode->next;
1324 	}
1325 }
1326 
ghes_in_nmi_queue_one_entry(struct ghes * ghes,enum fixed_addresses fixmap_idx)1327 static int ghes_in_nmi_queue_one_entry(struct ghes *ghes,
1328 				       enum fixed_addresses fixmap_idx)
1329 {
1330 	struct acpi_hest_generic_status *estatus, tmp_header;
1331 	struct ghes_estatus_node *estatus_node;
1332 	u32 len, node_len;
1333 	u64 buf_paddr;
1334 	int sev, rc;
1335 
1336 	if (!IS_ENABLED(CONFIG_ARCH_HAVE_NMI_SAFE_CMPXCHG))
1337 		return -EOPNOTSUPP;
1338 
1339 	rc = __ghes_peek_estatus(ghes, &tmp_header, &buf_paddr, fixmap_idx);
1340 	if (rc) {
1341 		ghes_clear_estatus(ghes, &tmp_header, buf_paddr, fixmap_idx);
1342 		return rc;
1343 	}
1344 
1345 	rc = __ghes_check_estatus(ghes, &tmp_header);
1346 	if (rc) {
1347 		ghes_clear_estatus(ghes, &tmp_header, buf_paddr, fixmap_idx);
1348 		return rc;
1349 	}
1350 
1351 	len = cper_estatus_len(&tmp_header);
1352 	node_len = GHES_ESTATUS_NODE_LEN(len);
1353 	estatus_node = (void *)gen_pool_alloc(ghes_estatus_pool, node_len);
1354 	if (!estatus_node)
1355 		return -ENOMEM;
1356 
1357 	estatus_node->ghes = ghes;
1358 	estatus_node->generic = ghes->generic;
1359 	estatus = GHES_ESTATUS_FROM_NODE(estatus_node);
1360 
1361 	if (__ghes_read_estatus(estatus, buf_paddr, fixmap_idx, len)) {
1362 		ghes_clear_estatus(ghes, estatus, buf_paddr, fixmap_idx);
1363 		rc = -ENOENT;
1364 		goto no_work;
1365 	}
1366 
1367 	sev = ghes_severity(estatus->error_severity);
1368 	if (sev >= GHES_SEV_PANIC) {
1369 		ghes_print_queued_estatus();
1370 		__ghes_panic(ghes, estatus, buf_paddr, fixmap_idx);
1371 	}
1372 
1373 	ghes_clear_estatus(ghes, &tmp_header, buf_paddr, fixmap_idx);
1374 
1375 	/* This error has been reported before, don't process it again. */
1376 	if (ghes_estatus_cached(estatus))
1377 		goto no_work;
1378 
1379 	llist_add(&estatus_node->llnode, &ghes_estatus_llist);
1380 
1381 	return rc;
1382 
1383 no_work:
1384 	gen_pool_free(ghes_estatus_pool, (unsigned long)estatus_node,
1385 		      node_len);
1386 
1387 	return rc;
1388 }
1389 
ghes_in_nmi_spool_from_list(struct list_head * rcu_list,enum fixed_addresses fixmap_idx)1390 static int ghes_in_nmi_spool_from_list(struct list_head *rcu_list,
1391 				       enum fixed_addresses fixmap_idx)
1392 {
1393 	int ret = -ENOENT;
1394 	struct ghes *ghes;
1395 
1396 	rcu_read_lock();
1397 	list_for_each_entry_rcu(ghes, rcu_list, list) {
1398 		if (!ghes_in_nmi_queue_one_entry(ghes, fixmap_idx))
1399 			ret = 0;
1400 	}
1401 	rcu_read_unlock();
1402 
1403 	if (IS_ENABLED(CONFIG_ARCH_HAVE_NMI_SAFE_CMPXCHG) && !ret)
1404 		irq_work_queue(&ghes_proc_irq_work);
1405 
1406 	return ret;
1407 }
1408 
1409 #ifdef CONFIG_ACPI_APEI_SEA
1410 static LIST_HEAD(ghes_sea);
1411 
1412 /*
1413  * Return 0 only if one of the SEA error sources successfully reported an error
1414  * record sent from the firmware.
1415  */
ghes_notify_sea(void)1416 int ghes_notify_sea(void)
1417 {
1418 	static DEFINE_RAW_SPINLOCK(ghes_notify_lock_sea);
1419 	int rv;
1420 
1421 	raw_spin_lock(&ghes_notify_lock_sea);
1422 	rv = ghes_in_nmi_spool_from_list(&ghes_sea, FIX_APEI_GHES_SEA);
1423 	raw_spin_unlock(&ghes_notify_lock_sea);
1424 
1425 	return rv;
1426 }
1427 
ghes_sea_add(struct ghes * ghes)1428 static void ghes_sea_add(struct ghes *ghes)
1429 {
1430 	mutex_lock(&ghes_list_mutex);
1431 	list_add_rcu(&ghes->list, &ghes_sea);
1432 	mutex_unlock(&ghes_list_mutex);
1433 }
1434 
ghes_sea_remove(struct ghes * ghes)1435 static void ghes_sea_remove(struct ghes *ghes)
1436 {
1437 	mutex_lock(&ghes_list_mutex);
1438 	list_del_rcu(&ghes->list);
1439 	mutex_unlock(&ghes_list_mutex);
1440 	synchronize_rcu();
1441 }
1442 #else /* CONFIG_ACPI_APEI_SEA */
ghes_sea_add(struct ghes * ghes)1443 static inline void ghes_sea_add(struct ghes *ghes) { }
ghes_sea_remove(struct ghes * ghes)1444 static inline void ghes_sea_remove(struct ghes *ghes) { }
1445 #endif /* CONFIG_ACPI_APEI_SEA */
1446 
1447 #ifdef CONFIG_HAVE_ACPI_APEI_NMI
1448 /*
1449  * NMI may be triggered on any CPU, so ghes_in_nmi is used for
1450  * having only one concurrent reader.
1451  */
1452 static atomic_t ghes_in_nmi = ATOMIC_INIT(0);
1453 
1454 static LIST_HEAD(ghes_nmi);
1455 
ghes_notify_nmi(unsigned int cmd,struct pt_regs * regs)1456 static int ghes_notify_nmi(unsigned int cmd, struct pt_regs *regs)
1457 {
1458 	static DEFINE_RAW_SPINLOCK(ghes_notify_lock_nmi);
1459 	int ret = NMI_DONE;
1460 
1461 	if (!atomic_add_unless(&ghes_in_nmi, 1, 1))
1462 		return ret;
1463 
1464 	raw_spin_lock(&ghes_notify_lock_nmi);
1465 	if (!ghes_in_nmi_spool_from_list(&ghes_nmi, FIX_APEI_GHES_NMI))
1466 		ret = NMI_HANDLED;
1467 	raw_spin_unlock(&ghes_notify_lock_nmi);
1468 
1469 	atomic_dec(&ghes_in_nmi);
1470 	return ret;
1471 }
1472 
ghes_nmi_add(struct ghes * ghes)1473 static void ghes_nmi_add(struct ghes *ghes)
1474 {
1475 	mutex_lock(&ghes_list_mutex);
1476 	if (list_empty(&ghes_nmi))
1477 		register_nmi_handler(NMI_LOCAL, ghes_notify_nmi, 0, "ghes");
1478 	list_add_rcu(&ghes->list, &ghes_nmi);
1479 	mutex_unlock(&ghes_list_mutex);
1480 }
1481 
ghes_nmi_remove(struct ghes * ghes)1482 static void ghes_nmi_remove(struct ghes *ghes)
1483 {
1484 	mutex_lock(&ghes_list_mutex);
1485 	list_del_rcu(&ghes->list);
1486 	if (list_empty(&ghes_nmi))
1487 		unregister_nmi_handler(NMI_LOCAL, "ghes");
1488 	mutex_unlock(&ghes_list_mutex);
1489 	/*
1490 	 * To synchronize with NMI handler, ghes can only be
1491 	 * freed after NMI handler finishes.
1492 	 */
1493 	synchronize_rcu();
1494 }
1495 #else /* CONFIG_HAVE_ACPI_APEI_NMI */
ghes_nmi_add(struct ghes * ghes)1496 static inline void ghes_nmi_add(struct ghes *ghes) { }
ghes_nmi_remove(struct ghes * ghes)1497 static inline void ghes_nmi_remove(struct ghes *ghes) { }
1498 #endif /* CONFIG_HAVE_ACPI_APEI_NMI */
1499 
ghes_nmi_init_cxt(void)1500 static void ghes_nmi_init_cxt(void)
1501 {
1502 	init_irq_work(&ghes_proc_irq_work, ghes_proc_in_irq);
1503 }
1504 
__ghes_sdei_callback(struct ghes * ghes,enum fixed_addresses fixmap_idx)1505 static int __ghes_sdei_callback(struct ghes *ghes,
1506 				enum fixed_addresses fixmap_idx)
1507 {
1508 	if (!ghes_in_nmi_queue_one_entry(ghes, fixmap_idx)) {
1509 		irq_work_queue(&ghes_proc_irq_work);
1510 
1511 		return 0;
1512 	}
1513 
1514 	return -ENOENT;
1515 }
1516 
ghes_sdei_normal_callback(u32 event_num,struct pt_regs * regs,void * arg)1517 static int ghes_sdei_normal_callback(u32 event_num, struct pt_regs *regs,
1518 				      void *arg)
1519 {
1520 	static DEFINE_RAW_SPINLOCK(ghes_notify_lock_sdei_normal);
1521 	struct ghes *ghes = arg;
1522 	int err;
1523 
1524 	raw_spin_lock(&ghes_notify_lock_sdei_normal);
1525 	err = __ghes_sdei_callback(ghes, FIX_APEI_GHES_SDEI_NORMAL);
1526 	raw_spin_unlock(&ghes_notify_lock_sdei_normal);
1527 
1528 	return err;
1529 }
1530 
ghes_sdei_critical_callback(u32 event_num,struct pt_regs * regs,void * arg)1531 static int ghes_sdei_critical_callback(u32 event_num, struct pt_regs *regs,
1532 				       void *arg)
1533 {
1534 	static DEFINE_RAW_SPINLOCK(ghes_notify_lock_sdei_critical);
1535 	struct ghes *ghes = arg;
1536 	int err;
1537 
1538 	raw_spin_lock(&ghes_notify_lock_sdei_critical);
1539 	err = __ghes_sdei_callback(ghes, FIX_APEI_GHES_SDEI_CRITICAL);
1540 	raw_spin_unlock(&ghes_notify_lock_sdei_critical);
1541 
1542 	return err;
1543 }
1544 
apei_sdei_register_ghes(struct ghes * ghes)1545 static int apei_sdei_register_ghes(struct ghes *ghes)
1546 {
1547 	if (!IS_ENABLED(CONFIG_ARM_SDE_INTERFACE))
1548 		return -EOPNOTSUPP;
1549 
1550 	return sdei_register_ghes(ghes, ghes_sdei_normal_callback,
1551 				 ghes_sdei_critical_callback);
1552 }
1553 
apei_sdei_unregister_ghes(struct ghes * ghes)1554 static int apei_sdei_unregister_ghes(struct ghes *ghes)
1555 {
1556 	if (!IS_ENABLED(CONFIG_ARM_SDE_INTERFACE))
1557 		return -EOPNOTSUPP;
1558 
1559 	return sdei_unregister_ghes(ghes);
1560 }
1561 
ghes_probe(struct platform_device * ghes_dev)1562 static int ghes_probe(struct platform_device *ghes_dev)
1563 {
1564 	struct acpi_hest_generic *generic;
1565 	struct ghes *ghes = NULL;
1566 	unsigned long flags;
1567 
1568 	int rc = -EINVAL;
1569 
1570 	generic = *(struct acpi_hest_generic **)ghes_dev->dev.platform_data;
1571 	if (!generic->enabled)
1572 		return -ENODEV;
1573 
1574 	switch (generic->notify.type) {
1575 	case ACPI_HEST_NOTIFY_POLLED:
1576 	case ACPI_HEST_NOTIFY_EXTERNAL:
1577 	case ACPI_HEST_NOTIFY_SCI:
1578 	case ACPI_HEST_NOTIFY_GSIV:
1579 	case ACPI_HEST_NOTIFY_GPIO:
1580 		break;
1581 
1582 	case ACPI_HEST_NOTIFY_SEA:
1583 		if (!IS_ENABLED(CONFIG_ACPI_APEI_SEA)) {
1584 			pr_warn(GHES_PFX "Generic hardware error source: %d notified via SEA is not supported\n",
1585 				generic->header.source_id);
1586 			rc = -ENOTSUPP;
1587 			goto err;
1588 		}
1589 		break;
1590 	case ACPI_HEST_NOTIFY_NMI:
1591 		if (!IS_ENABLED(CONFIG_HAVE_ACPI_APEI_NMI)) {
1592 			pr_warn(GHES_PFX "Generic hardware error source: %d notified via NMI interrupt is not supported!\n",
1593 				generic->header.source_id);
1594 			goto err;
1595 		}
1596 		break;
1597 	case ACPI_HEST_NOTIFY_SOFTWARE_DELEGATED:
1598 		if (!IS_ENABLED(CONFIG_ARM_SDE_INTERFACE)) {
1599 			pr_warn(GHES_PFX "Generic hardware error source: %d notified via SDE Interface is not supported!\n",
1600 				generic->header.source_id);
1601 			goto err;
1602 		}
1603 		break;
1604 	case ACPI_HEST_NOTIFY_LOCAL:
1605 		pr_warn(GHES_PFX "Generic hardware error source: %d notified via local interrupt is not supported!\n",
1606 			generic->header.source_id);
1607 		goto err;
1608 	default:
1609 		pr_warn(FW_WARN GHES_PFX "Unknown notification type: %u for generic hardware error source: %d\n",
1610 			generic->notify.type, generic->header.source_id);
1611 		goto err;
1612 	}
1613 
1614 	rc = -EIO;
1615 	if (generic->error_block_length <
1616 	    sizeof(struct acpi_hest_generic_status)) {
1617 		pr_warn(FW_BUG GHES_PFX "Invalid error block length: %u for generic hardware error source: %d\n",
1618 			generic->error_block_length, generic->header.source_id);
1619 		goto err;
1620 	}
1621 	ghes = ghes_new(generic);
1622 	if (IS_ERR(ghes)) {
1623 		rc = PTR_ERR(ghes);
1624 		ghes = NULL;
1625 		goto err;
1626 	}
1627 
1628 	switch (generic->notify.type) {
1629 	case ACPI_HEST_NOTIFY_POLLED:
1630 		timer_setup(&ghes->timer, ghes_poll_func, 0);
1631 		ghes_add_timer(ghes);
1632 		break;
1633 	case ACPI_HEST_NOTIFY_EXTERNAL:
1634 		/* External interrupt vector is GSI */
1635 		rc = acpi_gsi_to_irq(generic->notify.vector, &ghes->irq);
1636 		if (rc) {
1637 			pr_err(GHES_PFX "Failed to map GSI to IRQ for generic hardware error source: %d\n",
1638 			       generic->header.source_id);
1639 			goto err;
1640 		}
1641 		rc = request_irq(ghes->irq, ghes_irq_func, IRQF_SHARED,
1642 				 "GHES IRQ", ghes);
1643 		if (rc) {
1644 			pr_err(GHES_PFX "Failed to register IRQ for generic hardware error source: %d\n",
1645 			       generic->header.source_id);
1646 			goto err;
1647 		}
1648 		break;
1649 
1650 	case ACPI_HEST_NOTIFY_SCI:
1651 	case ACPI_HEST_NOTIFY_GSIV:
1652 	case ACPI_HEST_NOTIFY_GPIO:
1653 		mutex_lock(&ghes_list_mutex);
1654 		if (list_empty(&ghes_hed))
1655 			register_acpi_hed_notifier(&ghes_notifier_hed);
1656 		list_add_rcu(&ghes->list, &ghes_hed);
1657 		mutex_unlock(&ghes_list_mutex);
1658 		break;
1659 
1660 	case ACPI_HEST_NOTIFY_SEA:
1661 		ghes_sea_add(ghes);
1662 		break;
1663 	case ACPI_HEST_NOTIFY_NMI:
1664 		ghes_nmi_add(ghes);
1665 		break;
1666 	case ACPI_HEST_NOTIFY_SOFTWARE_DELEGATED:
1667 		rc = apei_sdei_register_ghes(ghes);
1668 		if (rc)
1669 			goto err;
1670 		break;
1671 	default:
1672 		BUG();
1673 	}
1674 
1675 	platform_set_drvdata(ghes_dev, ghes);
1676 
1677 	ghes->dev = &ghes_dev->dev;
1678 
1679 	mutex_lock(&ghes_devs_mutex);
1680 	list_add_tail(&ghes->elist, &ghes_devs);
1681 	mutex_unlock(&ghes_devs_mutex);
1682 
1683 	/* Handle any pending errors right away */
1684 	spin_lock_irqsave(&ghes_notify_lock_irq, flags);
1685 	ghes_proc(ghes);
1686 	spin_unlock_irqrestore(&ghes_notify_lock_irq, flags);
1687 
1688 	return 0;
1689 
1690 err:
1691 	if (ghes) {
1692 		ghes_fini(ghes);
1693 		kfree(ghes);
1694 	}
1695 	return rc;
1696 }
1697 
ghes_remove(struct platform_device * ghes_dev)1698 static void ghes_remove(struct platform_device *ghes_dev)
1699 {
1700 	int rc;
1701 	struct ghes *ghes;
1702 	struct acpi_hest_generic *generic;
1703 
1704 	ghes = platform_get_drvdata(ghes_dev);
1705 	generic = ghes->generic;
1706 
1707 	ghes->flags |= GHES_EXITING;
1708 	switch (generic->notify.type) {
1709 	case ACPI_HEST_NOTIFY_POLLED:
1710 		timer_shutdown_sync(&ghes->timer);
1711 		break;
1712 	case ACPI_HEST_NOTIFY_EXTERNAL:
1713 		free_irq(ghes->irq, ghes);
1714 		break;
1715 
1716 	case ACPI_HEST_NOTIFY_SCI:
1717 	case ACPI_HEST_NOTIFY_GSIV:
1718 	case ACPI_HEST_NOTIFY_GPIO:
1719 		mutex_lock(&ghes_list_mutex);
1720 		list_del_rcu(&ghes->list);
1721 		if (list_empty(&ghes_hed))
1722 			unregister_acpi_hed_notifier(&ghes_notifier_hed);
1723 		mutex_unlock(&ghes_list_mutex);
1724 		synchronize_rcu();
1725 		break;
1726 
1727 	case ACPI_HEST_NOTIFY_SEA:
1728 		ghes_sea_remove(ghes);
1729 		break;
1730 	case ACPI_HEST_NOTIFY_NMI:
1731 		ghes_nmi_remove(ghes);
1732 		break;
1733 	case ACPI_HEST_NOTIFY_SOFTWARE_DELEGATED:
1734 		rc = apei_sdei_unregister_ghes(ghes);
1735 		if (rc) {
1736 			/*
1737 			 * Returning early results in a resource leak, but we're
1738 			 * only here if stopping the hardware failed.
1739 			 */
1740 			dev_err(&ghes_dev->dev, "Failed to unregister ghes (%pe)\n",
1741 				ERR_PTR(rc));
1742 			return;
1743 		}
1744 		break;
1745 	default:
1746 		BUG();
1747 		break;
1748 	}
1749 
1750 	ghes_fini(ghes);
1751 
1752 	mutex_lock(&ghes_devs_mutex);
1753 	list_del(&ghes->elist);
1754 	mutex_unlock(&ghes_devs_mutex);
1755 
1756 	kfree(ghes);
1757 }
1758 
1759 static struct platform_driver ghes_platform_driver = {
1760 	.driver		= {
1761 		.name	= "GHES",
1762 	},
1763 	.probe		= ghes_probe,
1764 	.remove		= ghes_remove,
1765 };
1766 
acpi_ghes_init(void)1767 void __init acpi_ghes_init(void)
1768 {
1769 	int rc;
1770 
1771 	acpi_sdei_init();
1772 
1773 	if (acpi_disabled)
1774 		return;
1775 
1776 	switch (hest_disable) {
1777 	case HEST_NOT_FOUND:
1778 		return;
1779 	case HEST_DISABLED:
1780 		pr_info(GHES_PFX "HEST is not enabled!\n");
1781 		return;
1782 	default:
1783 		break;
1784 	}
1785 
1786 	if (ghes_disable) {
1787 		pr_info(GHES_PFX "GHES is not enabled!\n");
1788 		return;
1789 	}
1790 
1791 	ghes_nmi_init_cxt();
1792 
1793 	rc = platform_driver_register(&ghes_platform_driver);
1794 	if (rc)
1795 		return;
1796 
1797 	rc = apei_osc_setup();
1798 	if (rc == 0 && osc_sb_apei_support_acked)
1799 		pr_info(GHES_PFX "APEI firmware first mode is enabled by APEI bit and WHEA _OSC.\n");
1800 	else if (rc == 0 && !osc_sb_apei_support_acked)
1801 		pr_info(GHES_PFX "APEI firmware first mode is enabled by WHEA _OSC.\n");
1802 	else if (rc && osc_sb_apei_support_acked)
1803 		pr_info(GHES_PFX "APEI firmware first mode is enabled by APEI bit.\n");
1804 	else
1805 		pr_info(GHES_PFX "Failed to enable APEI firmware first mode.\n");
1806 }
1807 
1808 /*
1809  * Known x86 systems that prefer GHES error reporting:
1810  */
1811 static struct acpi_platform_list plat_list[] = {
1812 	{"HPE   ", "Server  ", 0, ACPI_SIG_FADT, all_versions},
1813 	{ } /* End */
1814 };
1815 
ghes_get_devices(void)1816 struct list_head *ghes_get_devices(void)
1817 {
1818 	int idx = -1;
1819 
1820 	if (IS_ENABLED(CONFIG_X86)) {
1821 		idx = acpi_match_platform_list(plat_list);
1822 		if (idx < 0) {
1823 			if (!ghes_edac_force_enable)
1824 				return NULL;
1825 
1826 			pr_warn_once("Force-loading ghes_edac on an unsupported platform. You're on your own!\n");
1827 		}
1828 	} else if (list_empty(&ghes_devs)) {
1829 		return NULL;
1830 	}
1831 
1832 	return &ghes_devs;
1833 }
1834 EXPORT_SYMBOL_GPL(ghes_get_devices);
1835 
ghes_register_report_chain(struct notifier_block * nb)1836 void ghes_register_report_chain(struct notifier_block *nb)
1837 {
1838 	atomic_notifier_chain_register(&ghes_report_chain, nb);
1839 }
1840 EXPORT_SYMBOL_GPL(ghes_register_report_chain);
1841 
ghes_unregister_report_chain(struct notifier_block * nb)1842 void ghes_unregister_report_chain(struct notifier_block *nb)
1843 {
1844 	atomic_notifier_chain_unregister(&ghes_report_chain, nb);
1845 }
1846 EXPORT_SYMBOL_GPL(ghes_unregister_report_chain);
1847