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v4.17
 
  1/*
  2 * Persistent Storage - platform driver interface parts.
  3 *
  4 * Copyright (C) 2007-2008 Google, Inc.
  5 * Copyright (C) 2010 Intel Corporation <tony.luck@intel.com>
  6 *
  7 *  This program is free software; you can redistribute it and/or modify
  8 *  it under the terms of the GNU General Public License version 2 as
  9 *  published by the Free Software Foundation.
 10 *
 11 *  This program is distributed in the hope that it will be useful,
 12 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
 13 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 14 *  GNU General Public License for more details.
 15 *
 16 *  You should have received a copy of the GNU General Public License
 17 *  along with this program; if not, write to the Free Software
 18 *  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
 19 */
 20
 21#define pr_fmt(fmt) "pstore: " fmt
 22
 23#include <linux/atomic.h>
 24#include <linux/types.h>
 25#include <linux/errno.h>
 26#include <linux/init.h>
 27#include <linux/kmsg_dump.h>
 28#include <linux/console.h>
 
 29#include <linux/module.h>
 30#include <linux/pstore.h>
 31#if IS_ENABLED(CONFIG_PSTORE_LZO_COMPRESS)
 32#include <linux/lzo.h>
 33#endif
 34#if IS_ENABLED(CONFIG_PSTORE_LZ4_COMPRESS) || IS_ENABLED(CONFIG_PSTORE_LZ4HC_COMPRESS)
 35#include <linux/lz4.h>
 36#endif
 37#include <linux/crypto.h>
 38#include <linux/string.h>
 39#include <linux/timer.h>
 40#include <linux/slab.h>
 41#include <linux/uaccess.h>
 42#include <linux/jiffies.h>
 
 43#include <linux/workqueue.h>
 
 44
 45#include "internal.h"
 46
 47/*
 48 * We defer making "oops" entries appear in pstore - see
 49 * whether the system is actually still running well enough
 50 * to let someone see the entry
 51 */
 52static int pstore_update_ms = -1;
 53module_param_named(update_ms, pstore_update_ms, int, 0600);
 54MODULE_PARM_DESC(update_ms, "milliseconds before pstore updates its content "
 55		 "(default is -1, which means runtime updates are disabled; "
 56		 "enabling this option is not safe, it may lead to further "
 57		 "corruption on Oopses)");
 58
 
 
 
 
 
 
 
 
 
 
 
 
 
 59static int pstore_new_entry;
 60
 61static void pstore_timefunc(struct timer_list *);
 62static DEFINE_TIMER(pstore_timer, pstore_timefunc);
 63
 64static void pstore_dowork(struct work_struct *);
 65static DECLARE_WORK(pstore_work, pstore_dowork);
 66
 67/*
 68 * pstore_lock just protects "psinfo" during
 69 * calls to pstore_register()
 
 70 */
 71static DEFINE_SPINLOCK(pstore_lock);
 72struct pstore_info *psinfo;
 73
 74static char *backend;
 75static char *compress =
 76#ifdef CONFIG_PSTORE_COMPRESS_DEFAULT
 77		CONFIG_PSTORE_COMPRESS_DEFAULT;
 78#else
 79		NULL;
 80#endif
 81
 82/* Compression parameters */
 83static struct crypto_comp *tfm;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 84
 85struct pstore_zbackend {
 86	int (*zbufsize)(size_t size);
 87	const char *name;
 88};
 89
 90static char *big_oops_buf;
 91static size_t big_oops_buf_sz;
 
 
 
 
 
 92
 93/* How much of the console log to snapshot */
 94unsigned long kmsg_bytes = PSTORE_DEFAULT_KMSG_BYTES;
 95
 96void pstore_set_kmsg_bytes(int bytes)
 97{
 98	kmsg_bytes = bytes;
 99}
100
101/* Tag each group of saved records with a sequence number */
102static int	oopscount;
103
104static const char *get_reason_str(enum kmsg_dump_reason reason)
105{
106	switch (reason) {
107	case KMSG_DUMP_PANIC:
108		return "Panic";
109	case KMSG_DUMP_OOPS:
110		return "Oops";
111	case KMSG_DUMP_EMERG:
112		return "Emergency";
113	case KMSG_DUMP_RESTART:
114		return "Restart";
115	case KMSG_DUMP_HALT:
116		return "Halt";
117	case KMSG_DUMP_POWEROFF:
118		return "Poweroff";
119	default:
120		return "Unknown";
 
121	}
 
 
122}
 
123
124bool pstore_cannot_block_path(enum kmsg_dump_reason reason)
 
 
 
 
 
 
 
 
125{
126	/*
127	 * In case of NMI path, pstore shouldn't be blocked
128	 * regardless of reason.
129	 */
130	if (in_nmi())
131		return true;
132
133	switch (reason) {
134	/* In panic case, other cpus are stopped by smp_send_stop(). */
135	case KMSG_DUMP_PANIC:
136	/* Emergency restart shouldn't be blocked by spin lock. */
 
 
 
137	case KMSG_DUMP_EMERG:
138		return true;
139	default:
140		return false;
141	}
142}
143EXPORT_SYMBOL_GPL(pstore_cannot_block_path);
144
145#if IS_ENABLED(CONFIG_PSTORE_DEFLATE_COMPRESS)
146static int zbufsize_deflate(size_t size)
147{
148	size_t cmpr;
149
150	switch (size) {
151	/* buffer range for efivars */
152	case 1000 ... 2000:
153		cmpr = 56;
154		break;
155	case 2001 ... 3000:
156		cmpr = 54;
157		break;
158	case 3001 ... 3999:
159		cmpr = 52;
160		break;
161	/* buffer range for nvram, erst */
162	case 4000 ... 10000:
163		cmpr = 45;
164		break;
165	default:
166		cmpr = 60;
167		break;
168	}
169
170	return (size * 100) / cmpr;
171}
172#endif
173
174#if IS_ENABLED(CONFIG_PSTORE_LZO_COMPRESS)
175static int zbufsize_lzo(size_t size)
176{
177	return lzo1x_worst_compress(size);
178}
179#endif
180
181#if IS_ENABLED(CONFIG_PSTORE_LZ4_COMPRESS) || IS_ENABLED(CONFIG_PSTORE_LZ4HC_COMPRESS)
182static int zbufsize_lz4(size_t size)
183{
184	return LZ4_compressBound(size);
185}
186#endif
187
188#if IS_ENABLED(CONFIG_PSTORE_842_COMPRESS)
189static int zbufsize_842(size_t size)
190{
191	return size;
192}
193#endif
194
195static const struct pstore_zbackend *zbackend __ro_after_init;
196
197static const struct pstore_zbackend zbackends[] = {
198#if IS_ENABLED(CONFIG_PSTORE_DEFLATE_COMPRESS)
199	{
200		.zbufsize	= zbufsize_deflate,
201		.name		= "deflate",
202	},
203#endif
204#if IS_ENABLED(CONFIG_PSTORE_LZO_COMPRESS)
205	{
206		.zbufsize	= zbufsize_lzo,
207		.name		= "lzo",
208	},
209#endif
210#if IS_ENABLED(CONFIG_PSTORE_LZ4_COMPRESS)
211	{
212		.zbufsize	= zbufsize_lz4,
213		.name		= "lz4",
214	},
215#endif
216#if IS_ENABLED(CONFIG_PSTORE_LZ4HC_COMPRESS)
217	{
218		.zbufsize	= zbufsize_lz4,
219		.name		= "lz4hc",
220	},
221#endif
222#if IS_ENABLED(CONFIG_PSTORE_842_COMPRESS)
223	{
224		.zbufsize	= zbufsize_842,
225		.name		= "842",
226	},
227#endif
228	{ }
229};
230
231static int pstore_compress(const void *in, void *out,
232			   unsigned int inlen, unsigned int outlen)
233{
 
 
 
 
 
 
 
234	int ret;
235
236	ret = crypto_comp_compress(tfm, in, inlen, out, &outlen);
237	if (ret) {
238		pr_err("crypto_comp_compress failed, ret = %d!\n", ret);
239		return ret;
240	}
241
242	return outlen;
243}
 
 
244
245static int pstore_decompress(void *in, void *out,
246			     unsigned int inlen, unsigned int outlen)
247{
248	int ret;
249
250	ret = crypto_comp_decompress(tfm, in, inlen, out, &outlen);
251	if (ret) {
252		pr_err("crypto_comp_decompress failed, ret = %d!\n", ret);
253		return ret;
254	}
255
256	return outlen;
257}
258
259static void allocate_buf_for_compression(void)
260{
261	if (!IS_ENABLED(CONFIG_PSTORE_COMPRESS) || !zbackend)
262		return;
263
264	if (!crypto_has_comp(zbackend->name, 0, 0)) {
265		pr_err("No %s compression\n", zbackend->name);
 
 
266		return;
267	}
268
269	big_oops_buf_sz = zbackend->zbufsize(psinfo->bufsize);
270	if (big_oops_buf_sz <= 0)
271		return;
 
 
272
273	big_oops_buf = kmalloc(big_oops_buf_sz, GFP_KERNEL);
274	if (!big_oops_buf) {
275		pr_err("allocate compression buffer error!\n");
 
 
 
 
 
 
 
276		return;
277	}
278
279	tfm = crypto_alloc_comp(zbackend->name, 0, 0);
280	if (IS_ERR_OR_NULL(tfm)) {
281		kfree(big_oops_buf);
282		big_oops_buf = NULL;
283		pr_err("crypto_alloc_comp() failed!\n");
284		return;
285	}
286}
287
288static void free_buf_for_compression(void)
289{
290	if (IS_ENABLED(CONFIG_PSTORE_COMPRESS) && !IS_ERR_OR_NULL(tfm))
291		crypto_free_comp(tfm);
292	kfree(big_oops_buf);
293	big_oops_buf = NULL;
294	big_oops_buf_sz = 0;
295}
296
297/*
298 * Called when compression fails, since the printk buffer
299 * would be fetched for compression calling it again when
300 * compression fails would have moved the iterator of
301 * printk buffer which results in fetching old contents.
302 * Copy the recent messages from big_oops_buf to psinfo->buf
303 */
304static size_t copy_kmsg_to_buffer(int hsize, size_t len)
305{
306	size_t total_len;
307	size_t diff;
308
309	total_len = hsize + len;
310
311	if (total_len > psinfo->bufsize) {
312		diff = total_len - psinfo->bufsize + hsize;
313		memcpy(psinfo->buf, big_oops_buf, hsize);
314		memcpy(psinfo->buf + hsize, big_oops_buf + diff,
315					psinfo->bufsize - hsize);
316		total_len = psinfo->bufsize;
317	} else
318		memcpy(psinfo->buf, big_oops_buf, total_len);
319
320	return total_len;
 
 
321}
322
323void pstore_record_init(struct pstore_record *record,
324			struct pstore_info *psinfo)
325{
326	memset(record, 0, sizeof(*record));
327
328	record->psi = psinfo;
329
330	/* Report zeroed timestamp if called before timekeeping has resumed. */
331	record->time = ns_to_timespec(ktime_get_real_fast_ns());
332}
333
334/*
335 * callback from kmsg_dump. (s2,l2) has the most recently
336 * written bytes, older bytes are in (s1,l1). Save as much
337 * as we can from the end of the buffer.
338 */
339static void pstore_dump(struct kmsg_dumper *dumper,
340			enum kmsg_dump_reason reason)
341{
 
342	unsigned long	total = 0;
343	const char	*why;
344	unsigned int	part = 1;
345	unsigned long	flags = 0;
346	int		is_locked;
347	int		ret;
348
349	why = get_reason_str(reason);
350
351	if (pstore_cannot_block_path(reason)) {
352		is_locked = spin_trylock_irqsave(&psinfo->buf_lock, flags);
353		if (!is_locked) {
354			pr_err("pstore dump routine blocked in %s path, may corrupt error record\n"
355				       , in_nmi() ? "NMI" : why);
356			return;
357		}
358	} else {
359		spin_lock_irqsave(&psinfo->buf_lock, flags);
360		is_locked = 1;
361	}
 
 
 
362	oopscount++;
363	while (total < kmsg_bytes) {
364		char *dst;
365		size_t dst_size;
366		int header_size;
367		int zipped_len = -1;
368		size_t dump_size;
369		struct pstore_record record;
370
371		pstore_record_init(&record, psinfo);
372		record.type = PSTORE_TYPE_DMESG;
373		record.count = oopscount;
374		record.reason = reason;
375		record.part = part;
376		record.buf = psinfo->buf;
377
378		if (big_oops_buf && is_locked) {
379			dst = big_oops_buf;
380			dst_size = big_oops_buf_sz;
381		} else {
382			dst = psinfo->buf;
383			dst_size = psinfo->bufsize;
384		}
385
386		/* Write dump header. */
387		header_size = snprintf(dst, dst_size, "%s#%d Part%u\n", why,
388				 oopscount, part);
389		dst_size -= header_size;
390
391		/* Write dump contents. */
392		if (!kmsg_dump_get_buffer(dumper, true, dst + header_size,
393					  dst_size, &dump_size))
394			break;
395
396		if (big_oops_buf && is_locked) {
397			zipped_len = pstore_compress(dst, psinfo->buf,
398						header_size + dump_size,
399						psinfo->bufsize);
400
401			if (zipped_len > 0) {
402				record.compressed = true;
403				record.size = zipped_len;
404			} else {
405				record.size = copy_kmsg_to_buffer(header_size,
406								  dump_size);
 
 
 
 
 
 
 
407			}
408		} else {
409			record.size = header_size + dump_size;
410		}
411
412		ret = psinfo->write(&record);
413		if (ret == 0 && reason == KMSG_DUMP_OOPS && pstore_is_mounted())
414			pstore_new_entry = 1;
 
 
 
 
 
 
415
416		total += record.size;
417		part++;
418	}
419	if (is_locked)
420		spin_unlock_irqrestore(&psinfo->buf_lock, flags);
 
 
 
 
421}
422
423static struct kmsg_dumper pstore_dumper = {
424	.dump = pstore_dump,
425};
426
427/*
428 * Register with kmsg_dump to save last part of console log on panic.
429 */
430static void pstore_register_kmsg(void)
431{
432	kmsg_dump_register(&pstore_dumper);
433}
434
435static void pstore_unregister_kmsg(void)
436{
437	kmsg_dump_unregister(&pstore_dumper);
438}
439
440#ifdef CONFIG_PSTORE_CONSOLE
441static void pstore_console_write(struct console *con, const char *s, unsigned c)
442{
443	const char *e = s + c;
444
445	while (s < e) {
446		struct pstore_record record;
447		unsigned long flags;
448
449		pstore_record_init(&record, psinfo);
450		record.type = PSTORE_TYPE_CONSOLE;
451
452		if (c > psinfo->bufsize)
453			c = psinfo->bufsize;
454
455		if (oops_in_progress) {
456			if (!spin_trylock_irqsave(&psinfo->buf_lock, flags))
457				break;
458		} else {
459			spin_lock_irqsave(&psinfo->buf_lock, flags);
460		}
461		record.buf = (char *)s;
462		record.size = c;
463		psinfo->write(&record);
464		spin_unlock_irqrestore(&psinfo->buf_lock, flags);
465		s += c;
466		c = e - s;
467	}
468}
469
470static struct console pstore_console = {
471	.name	= "pstore",
472	.write	= pstore_console_write,
473	.flags	= CON_PRINTBUFFER | CON_ENABLED | CON_ANYTIME,
474	.index	= -1,
475};
476
477static void pstore_register_console(void)
478{
 
 
 
 
 
 
 
 
479	register_console(&pstore_console);
480}
481
482static void pstore_unregister_console(void)
483{
484	unregister_console(&pstore_console);
485}
486#else
487static void pstore_register_console(void) {}
488static void pstore_unregister_console(void) {}
489#endif
490
491static int pstore_write_user_compat(struct pstore_record *record,
492				    const char __user *buf)
493{
494	int ret = 0;
495
496	if (record->buf)
497		return -EINVAL;
498
499	record->buf = memdup_user(buf, record->size);
500	if (IS_ERR(record->buf)) {
501		ret = PTR_ERR(record->buf);
502		goto out;
503	}
504
505	ret = record->psi->write(record);
506
507	kfree(record->buf);
508out:
509	record->buf = NULL;
510
511	return unlikely(ret < 0) ? ret : record->size;
512}
513
514/*
515 * platform specific persistent storage driver registers with
516 * us here. If pstore is already mounted, call the platform
517 * read function right away to populate the file system. If not
518 * then the pstore mount code will call us later to fill out
519 * the file system.
520 */
521int pstore_register(struct pstore_info *psi)
522{
523	struct module *owner = psi->owner;
524
525	if (backend && strcmp(backend, psi->name)) {
526		pr_warn("ignoring unexpected backend '%s'\n", psi->name);
527		return -EPERM;
 
528	}
529
530	/* Sanity check flags. */
531	if (!psi->flags) {
532		pr_warn("backend '%s' must support at least one frontend\n",
533			psi->name);
534		return -EINVAL;
535	}
536
537	/* Check for required functions. */
538	if (!psi->read || !psi->write) {
539		pr_warn("backend '%s' must implement read() and write()\n",
540			psi->name);
541		return -EINVAL;
542	}
543
544	spin_lock(&pstore_lock);
 
 
 
 
545	if (psinfo) {
546		pr_warn("backend '%s' already loaded: ignoring '%s'\n",
547			psinfo->name, psi->name);
548		spin_unlock(&pstore_lock);
 
549		return -EBUSY;
550	}
551
552	if (!psi->write_user)
553		psi->write_user = pstore_write_user_compat;
554	psinfo = psi;
555	mutex_init(&psinfo->read_mutex);
556	spin_unlock(&pstore_lock);
557
558	if (owner && !try_module_get(owner)) {
559		psinfo = NULL;
560		return -EINVAL;
561	}
562
563	allocate_buf_for_compression();
564
565	if (pstore_is_mounted())
566		pstore_get_records(0);
567
568	if (psi->flags & PSTORE_FLAGS_DMESG)
 
569		pstore_register_kmsg();
 
570	if (psi->flags & PSTORE_FLAGS_CONSOLE)
571		pstore_register_console();
572	if (psi->flags & PSTORE_FLAGS_FTRACE)
573		pstore_register_ftrace();
574	if (psi->flags & PSTORE_FLAGS_PMSG)
575		pstore_register_pmsg();
576
577	/* Start watching for new records, if desired. */
578	if (pstore_update_ms >= 0) {
579		pstore_timer.expires = jiffies +
580			msecs_to_jiffies(pstore_update_ms);
581		add_timer(&pstore_timer);
582	}
583
584	/*
585	 * Update the module parameter backend, so it is visible
586	 * through /sys/module/pstore/parameters/backend
587	 */
588	backend = psi->name;
589
590	pr_info("Registered %s as persistent store backend\n", psi->name);
591
592	module_put(owner);
593
594	return 0;
595}
596EXPORT_SYMBOL_GPL(pstore_register);
597
598void pstore_unregister(struct pstore_info *psi)
599{
600	/* Stop timer and make sure all work has finished. */
601	pstore_update_ms = -1;
602	del_timer_sync(&pstore_timer);
603	flush_work(&pstore_work);
604
 
 
 
 
 
 
 
 
 
605	if (psi->flags & PSTORE_FLAGS_PMSG)
606		pstore_unregister_pmsg();
607	if (psi->flags & PSTORE_FLAGS_FTRACE)
608		pstore_unregister_ftrace();
609	if (psi->flags & PSTORE_FLAGS_CONSOLE)
610		pstore_unregister_console();
611	if (psi->flags & PSTORE_FLAGS_DMESG)
612		pstore_unregister_kmsg();
613
 
 
 
 
 
 
 
614	free_buf_for_compression();
615
616	psinfo = NULL;
 
617	backend = NULL;
 
 
 
618}
619EXPORT_SYMBOL_GPL(pstore_unregister);
620
621static void decompress_record(struct pstore_record *record)
 
622{
 
623	int unzipped_len;
624	char *decompressed;
 
625
626	if (!record->compressed)
627		return;
628
629	/* Only PSTORE_TYPE_DMESG support compression. */
630	if (record->type != PSTORE_TYPE_DMESG) {
631		pr_warn("ignored compressed record type %d\n", record->type);
632		return;
633	}
634
635	/* No compression method has created the common buffer. */
636	if (!big_oops_buf) {
637		pr_warn("no decompression buffer allocated\n");
638		return;
639	}
640
641	unzipped_len = pstore_decompress(record->buf, big_oops_buf,
642					 record->size, big_oops_buf_sz);
643	if (unzipped_len <= 0) {
644		pr_err("decompression failed: %d\n", unzipped_len);
645		return;
646	}
647
648	/* Build new buffer for decompressed contents. */
649	decompressed = kmalloc(unzipped_len + record->ecc_notice_size,
650			       GFP_KERNEL);
651	if (!decompressed) {
652		pr_err("decompression ran out of memory\n");
 
 
 
 
 
 
 
 
 
 
 
653		return;
654	}
655	memcpy(decompressed, big_oops_buf, unzipped_len);
 
656
657	/* Append ECC notice to decompressed buffer. */
658	memcpy(decompressed + unzipped_len, record->buf + record->size,
659	       record->ecc_notice_size);
660
661	/* Swap out compresed contents with decompressed contents. */
662	kfree(record->buf);
663	record->buf = decompressed;
 
 
 
 
 
 
 
664	record->size = unzipped_len;
665	record->compressed = false;
666}
667
668/*
669 * Read all the records from one persistent store backend. Create
670 * files in our filesystem.  Don't warn about -EEXIST errors
671 * when we are re-scanning the backing store looking to add new
672 * error records.
673 */
674void pstore_get_backend_records(struct pstore_info *psi,
675				struct dentry *root, int quiet)
676{
677	int failed = 0;
678	unsigned int stop_loop = 65536;
 
679
680	if (!psi || !root)
681		return;
682
 
 
 
 
 
 
683	mutex_lock(&psi->read_mutex);
684	if (psi->open && psi->open(psi))
685		goto out;
686
687	/*
688	 * Backend callback read() allocates record.buf. decompress_record()
689	 * may reallocate record.buf. On success, pstore_mkfile() will keep
690	 * the record.buf, so free it only on failure.
691	 */
692	for (; stop_loop; stop_loop--) {
693		struct pstore_record *record;
694		int rc;
695
696		record = kzalloc(sizeof(*record), GFP_KERNEL);
697		if (!record) {
698			pr_err("out of memory creating record\n");
699			break;
700		}
701		pstore_record_init(record, psi);
702
703		record->size = psi->read(record);
704
705		/* No more records left in backend? */
706		if (record->size <= 0) {
707			kfree(record);
708			break;
709		}
710
711		decompress_record(record);
712		rc = pstore_mkfile(root, record);
713		if (rc) {
714			/* pstore_mkfile() did not take record, so free it. */
715			kfree(record->buf);
 
716			kfree(record);
717			if (rc != -EEXIST || !quiet)
718				failed++;
719		}
720	}
721	if (psi->close)
722		psi->close(psi);
723out:
724	mutex_unlock(&psi->read_mutex);
725
 
 
 
 
 
 
726	if (failed)
727		pr_warn("failed to create %d record(s) from '%s'\n",
728			failed, psi->name);
729	if (!stop_loop)
730		pr_err("looping? Too many records seen from '%s'\n",
731			psi->name);
732}
733
734static void pstore_dowork(struct work_struct *work)
735{
736	pstore_get_records(1);
737}
738
739static void pstore_timefunc(struct timer_list *unused)
740{
741	if (pstore_new_entry) {
742		pstore_new_entry = 0;
743		schedule_work(&pstore_work);
744	}
745
746	if (pstore_update_ms >= 0)
747		mod_timer(&pstore_timer,
748			  jiffies + msecs_to_jiffies(pstore_update_ms));
749}
750
751void __init pstore_choose_compression(void)
752{
753	const struct pstore_zbackend *step;
754
755	if (!compress)
756		return;
 
757
758	for (step = zbackends; step->name; step++) {
759		if (!strcmp(compress, step->name)) {
760			zbackend = step;
761			pr_info("using %s compression\n", zbackend->name);
762			return;
763		}
764	}
765}
 
766
767module_param(compress, charp, 0444);
768MODULE_PARM_DESC(compress, "Pstore compression to use");
 
 
 
769
770module_param(backend, charp, 0444);
771MODULE_PARM_DESC(backend, "Pstore backend to use");
v6.8
  1// SPDX-License-Identifier: GPL-2.0-only
  2/*
  3 * Persistent Storage - platform driver interface parts.
  4 *
  5 * Copyright (C) 2007-2008 Google, Inc.
  6 * Copyright (C) 2010 Intel Corporation <tony.luck@intel.com>
 
 
 
 
 
 
 
 
 
 
 
 
 
  7 */
  8
  9#define pr_fmt(fmt) "pstore: " fmt
 10
 11#include <linux/atomic.h>
 12#include <linux/types.h>
 13#include <linux/errno.h>
 14#include <linux/init.h>
 15#include <linux/kmsg_dump.h>
 16#include <linux/console.h>
 17#include <linux/mm.h>
 18#include <linux/module.h>
 19#include <linux/pstore.h>
 
 
 
 
 
 
 
 20#include <linux/string.h>
 21#include <linux/timer.h>
 22#include <linux/slab.h>
 23#include <linux/uaccess.h>
 24#include <linux/jiffies.h>
 25#include <linux/vmalloc.h>
 26#include <linux/workqueue.h>
 27#include <linux/zlib.h>
 28
 29#include "internal.h"
 30
 31/*
 32 * We defer making "oops" entries appear in pstore - see
 33 * whether the system is actually still running well enough
 34 * to let someone see the entry
 35 */
 36static int pstore_update_ms = -1;
 37module_param_named(update_ms, pstore_update_ms, int, 0600);
 38MODULE_PARM_DESC(update_ms, "milliseconds before pstore updates its content "
 39		 "(default is -1, which means runtime updates are disabled; "
 40		 "enabling this option may not be safe; it may lead to further "
 41		 "corruption on Oopses)");
 42
 43/* Names should be in the same order as the enum pstore_type_id */
 44static const char * const pstore_type_names[] = {
 45	"dmesg",
 46	"mce",
 47	"console",
 48	"ftrace",
 49	"rtas",
 50	"powerpc-ofw",
 51	"powerpc-common",
 52	"pmsg",
 53	"powerpc-opal",
 54};
 55
 56static int pstore_new_entry;
 57
 58static void pstore_timefunc(struct timer_list *);
 59static DEFINE_TIMER(pstore_timer, pstore_timefunc);
 60
 61static void pstore_dowork(struct work_struct *);
 62static DECLARE_WORK(pstore_work, pstore_dowork);
 63
 64/*
 65 * psinfo_lock protects "psinfo" during calls to
 66 * pstore_register(), pstore_unregister(), and
 67 * the filesystem mount/unmount routines.
 68 */
 69static DEFINE_MUTEX(psinfo_lock);
 70struct pstore_info *psinfo;
 71
 72static char *backend;
 73module_param(backend, charp, 0444);
 74MODULE_PARM_DESC(backend, "specific backend to use");
 
 
 
 
 75
 76/*
 77 * pstore no longer implements compression via the crypto API, and only
 78 * supports zlib deflate compression implemented using the zlib library
 79 * interface. This removes additional complexity which is hard to justify for a
 80 * diagnostic facility that has to operate in conditions where the system may
 81 * have become unstable. Zlib deflate is comparatively small in terms of code
 82 * size, and compresses ASCII text comparatively well. In terms of compression
 83 * speed, deflate is not the best performer but for recording the log output on
 84 * a kernel panic, this is not considered critical.
 85 *
 86 * The only remaining arguments supported by the compress= module parameter are
 87 * 'deflate' and 'none'. To retain compatibility with existing installations,
 88 * all other values are logged and replaced with 'deflate'.
 89 */
 90static char *compress = "deflate";
 91module_param(compress, charp, 0444);
 92MODULE_PARM_DESC(compress, "compression to use");
 93
 94/* How much of the kernel log to snapshot */
 95unsigned long kmsg_bytes = CONFIG_PSTORE_DEFAULT_KMSG_BYTES;
 96module_param(kmsg_bytes, ulong, 0444);
 97MODULE_PARM_DESC(kmsg_bytes, "amount of kernel log to snapshot (in bytes)");
 98
 99static void *compress_workspace;
100
101/*
102 * Compression is only used for dmesg output, which consists of low-entropy
103 * ASCII text, and so we can assume worst-case 60%.
104 */
105#define DMESG_COMP_PERCENT	60
106
107static char *big_oops_buf;
108static size_t max_compressed_size;
109
110void pstore_set_kmsg_bytes(int bytes)
111{
112	kmsg_bytes = bytes;
113}
114
115/* Tag each group of saved records with a sequence number */
116static int	oopscount;
117
118const char *pstore_type_to_name(enum pstore_type_id type)
119{
120	BUILD_BUG_ON(ARRAY_SIZE(pstore_type_names) != PSTORE_TYPE_MAX);
121
122	if (WARN_ON_ONCE(type >= PSTORE_TYPE_MAX))
123		return "unknown";
124
125	return pstore_type_names[type];
126}
127EXPORT_SYMBOL_GPL(pstore_type_to_name);
128
129enum pstore_type_id pstore_name_to_type(const char *name)
130{
131	int i;
132
133	for (i = 0; i < PSTORE_TYPE_MAX; i++) {
134		if (!strcmp(pstore_type_names[i], name))
135			return i;
136	}
137
138	return PSTORE_TYPE_MAX;
139}
140EXPORT_SYMBOL_GPL(pstore_name_to_type);
141
142static void pstore_timer_kick(void)
143{
144	if (pstore_update_ms < 0)
145		return;
146
147	mod_timer(&pstore_timer, jiffies + msecs_to_jiffies(pstore_update_ms));
148}
149
150static bool pstore_cannot_block_path(enum kmsg_dump_reason reason)
151{
152	/*
153	 * In case of NMI path, pstore shouldn't be blocked
154	 * regardless of reason.
155	 */
156	if (in_nmi())
157		return true;
158
159	switch (reason) {
160	/* In panic case, other cpus are stopped by smp_send_stop(). */
161	case KMSG_DUMP_PANIC:
162	/*
163	 * Emergency restart shouldn't be blocked by spinning on
164	 * pstore_info::buf_lock.
165	 */
166	case KMSG_DUMP_EMERG:
167		return true;
168	default:
169		return false;
170	}
171}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
172
173static int pstore_compress(const void *in, void *out,
174			   unsigned int inlen, unsigned int outlen)
175{
176	struct z_stream_s zstream = {
177		.next_in	= in,
178		.avail_in	= inlen,
179		.next_out	= out,
180		.avail_out	= outlen,
181		.workspace	= compress_workspace,
182	};
183	int ret;
184
185	if (!IS_ENABLED(CONFIG_PSTORE_COMPRESS))
186		return -EINVAL;
 
 
 
187
188	ret = zlib_deflateInit2(&zstream, Z_DEFAULT_COMPRESSION, Z_DEFLATED,
189				-MAX_WBITS, DEF_MEM_LEVEL, Z_DEFAULT_STRATEGY);
190	if (ret != Z_OK)
191		return -EINVAL;
192
193	ret = zlib_deflate(&zstream, Z_FINISH);
194	if (ret != Z_STREAM_END)
195		return -EINVAL;
 
196
197	ret = zlib_deflateEnd(&zstream);
198	if (ret != Z_OK)
199		pr_warn_once("zlib_deflateEnd() failed: %d\n", ret);
 
 
200
201	return zstream.total_out;
202}
203
204static void allocate_buf_for_compression(void)
205{
206	size_t compressed_size;
207	char *buf;
208
209	/* Skip if not built-in or compression disabled. */
210	if (!IS_ENABLED(CONFIG_PSTORE_COMPRESS) || !compress ||
211	    !strcmp(compress, "none")) {
212		compress = NULL;
213		return;
214	}
215
216	if (strcmp(compress, "deflate")) {
217		pr_err("Unsupported compression '%s', falling back to deflate\n",
218		       compress);
219		compress = "deflate";
220	}
221
222	/*
223	 * The compression buffer only needs to be as large as the maximum
224	 * uncompressed record size, since any record that would be expanded by
225	 * compression is just stored uncompressed.
226	 */
227	compressed_size = (psinfo->bufsize * 100) / DMESG_COMP_PERCENT;
228	buf = kvzalloc(compressed_size, GFP_KERNEL);
229	if (!buf) {
230		pr_err("Failed %zu byte compression buffer allocation for: %s\n",
231		       psinfo->bufsize, compress);
232		return;
233	}
234
235	compress_workspace =
236		vmalloc(zlib_deflate_workspacesize(MAX_WBITS, DEF_MEM_LEVEL));
237	if (!compress_workspace) {
238		pr_err("Failed to allocate zlib deflate workspace\n");
239		kvfree(buf);
240		return;
241	}
 
242
243	/* A non-NULL big_oops_buf indicates compression is available. */
244	big_oops_buf = buf;
245	max_compressed_size = compressed_size;
246
247	pr_info("Using crash dump compression: %s\n", compress);
 
 
248}
249
250static void free_buf_for_compression(void)
 
 
 
 
 
 
 
251{
252	if (IS_ENABLED(CONFIG_PSTORE_COMPRESS) && compress_workspace) {
253		vfree(compress_workspace);
254		compress_workspace = NULL;
255	}
 
 
 
 
 
 
 
 
 
256
257	kvfree(big_oops_buf);
258	big_oops_buf = NULL;
259	max_compressed_size = 0;
260}
261
262void pstore_record_init(struct pstore_record *record,
263			struct pstore_info *psinfo)
264{
265	memset(record, 0, sizeof(*record));
266
267	record->psi = psinfo;
268
269	/* Report zeroed timestamp if called before timekeeping has resumed. */
270	record->time = ns_to_timespec64(ktime_get_real_fast_ns());
271}
272
273/*
274 * callback from kmsg_dump. Save as much as we can (up to kmsg_bytes) from the
275 * end of the buffer.
 
276 */
277static void pstore_dump(struct kmsg_dumper *dumper,
278			enum kmsg_dump_reason reason)
279{
280	struct kmsg_dump_iter iter;
281	unsigned long	total = 0;
282	const char	*why;
283	unsigned int	part = 1;
284	unsigned long	flags = 0;
285	int		saved_ret = 0;
286	int		ret;
287
288	why = kmsg_dump_reason_str(reason);
289
290	if (pstore_cannot_block_path(reason)) {
291		if (!spin_trylock_irqsave(&psinfo->buf_lock, flags)) {
292			pr_err("dump skipped in %s path because of concurrent dump\n",
293					in_nmi() ? "NMI" : why);
 
294			return;
295		}
296	} else {
297		spin_lock_irqsave(&psinfo->buf_lock, flags);
 
298	}
299
300	kmsg_dump_rewind(&iter);
301
302	oopscount++;
303	while (total < kmsg_bytes) {
304		char *dst;
305		size_t dst_size;
306		int header_size;
307		int zipped_len = -1;
308		size_t dump_size;
309		struct pstore_record record;
310
311		pstore_record_init(&record, psinfo);
312		record.type = PSTORE_TYPE_DMESG;
313		record.count = oopscount;
314		record.reason = reason;
315		record.part = part;
316		record.buf = psinfo->buf;
317
318		dst = big_oops_buf ?: psinfo->buf;
319		dst_size = max_compressed_size ?: psinfo->bufsize;
 
 
 
 
 
320
321		/* Write dump header. */
322		header_size = snprintf(dst, dst_size, "%s#%d Part%u\n", why,
323				 oopscount, part);
324		dst_size -= header_size;
325
326		/* Write dump contents. */
327		if (!kmsg_dump_get_buffer(&iter, true, dst + header_size,
328					  dst_size, &dump_size))
329			break;
330
331		if (big_oops_buf) {
332			zipped_len = pstore_compress(dst, psinfo->buf,
333						header_size + dump_size,
334						psinfo->bufsize);
335
336			if (zipped_len > 0) {
337				record.compressed = true;
338				record.size = zipped_len;
339			} else {
340				/*
341				 * Compression failed, so the buffer is most
342				 * likely filled with binary data that does not
343				 * compress as well as ASCII text. Copy as much
344				 * of the uncompressed data as possible into
345				 * the pstore record, and discard the rest.
346				 */
347				record.size = psinfo->bufsize;
348				memcpy(psinfo->buf, dst, psinfo->bufsize);
349			}
350		} else {
351			record.size = header_size + dump_size;
352		}
353
354		ret = psinfo->write(&record);
355		if (ret == 0 && reason == KMSG_DUMP_OOPS) {
356			pstore_new_entry = 1;
357			pstore_timer_kick();
358		} else {
359			/* Preserve only the first non-zero returned value. */
360			if (!saved_ret)
361				saved_ret = ret;
362		}
363
364		total += record.size;
365		part++;
366	}
367	spin_unlock_irqrestore(&psinfo->buf_lock, flags);
368
369	if (saved_ret) {
370		pr_err_once("backend (%s) writing error (%d)\n", psinfo->name,
371			    saved_ret);
372	}
373}
374
375static struct kmsg_dumper pstore_dumper = {
376	.dump = pstore_dump,
377};
378
379/*
380 * Register with kmsg_dump to save last part of console log on panic.
381 */
382static void pstore_register_kmsg(void)
383{
384	kmsg_dump_register(&pstore_dumper);
385}
386
387static void pstore_unregister_kmsg(void)
388{
389	kmsg_dump_unregister(&pstore_dumper);
390}
391
392#ifdef CONFIG_PSTORE_CONSOLE
393static void pstore_console_write(struct console *con, const char *s, unsigned c)
394{
395	struct pstore_record record;
 
 
 
 
396
397	if (!c)
398		return;
399
400	pstore_record_init(&record, psinfo);
401	record.type = PSTORE_TYPE_CONSOLE;
402
403	record.buf = (char *)s;
404	record.size = c;
405	psinfo->write(&record);
 
 
 
 
 
 
 
 
 
 
406}
407
408static struct console pstore_console = {
 
409	.write	= pstore_console_write,
 
410	.index	= -1,
411};
412
413static void pstore_register_console(void)
414{
415	/* Show which backend is going to get console writes. */
416	strscpy(pstore_console.name, psinfo->name,
417		sizeof(pstore_console.name));
418	/*
419	 * Always initialize flags here since prior unregister_console()
420	 * calls may have changed settings (specifically CON_ENABLED).
421	 */
422	pstore_console.flags = CON_PRINTBUFFER | CON_ENABLED | CON_ANYTIME;
423	register_console(&pstore_console);
424}
425
426static void pstore_unregister_console(void)
427{
428	unregister_console(&pstore_console);
429}
430#else
431static void pstore_register_console(void) {}
432static void pstore_unregister_console(void) {}
433#endif
434
435static int pstore_write_user_compat(struct pstore_record *record,
436				    const char __user *buf)
437{
438	int ret = 0;
439
440	if (record->buf)
441		return -EINVAL;
442
443	record->buf = vmemdup_user(buf, record->size);
444	if (IS_ERR(record->buf)) {
445		ret = PTR_ERR(record->buf);
446		goto out;
447	}
448
449	ret = record->psi->write(record);
450
451	kvfree(record->buf);
452out:
453	record->buf = NULL;
454
455	return unlikely(ret < 0) ? ret : record->size;
456}
457
458/*
459 * platform specific persistent storage driver registers with
460 * us here. If pstore is already mounted, call the platform
461 * read function right away to populate the file system. If not
462 * then the pstore mount code will call us later to fill out
463 * the file system.
464 */
465int pstore_register(struct pstore_info *psi)
466{
467	char *new_backend;
468
469	if (backend && strcmp(backend, psi->name)) {
470		pr_warn("backend '%s' already in use: ignoring '%s'\n",
471			backend, psi->name);
472		return -EBUSY;
473	}
474
475	/* Sanity check flags. */
476	if (!psi->flags) {
477		pr_warn("backend '%s' must support at least one frontend\n",
478			psi->name);
479		return -EINVAL;
480	}
481
482	/* Check for required functions. */
483	if (!psi->read || !psi->write) {
484		pr_warn("backend '%s' must implement read() and write()\n",
485			psi->name);
486		return -EINVAL;
487	}
488
489	new_backend = kstrdup(psi->name, GFP_KERNEL);
490	if (!new_backend)
491		return -ENOMEM;
492
493	mutex_lock(&psinfo_lock);
494	if (psinfo) {
495		pr_warn("backend '%s' already loaded: ignoring '%s'\n",
496			psinfo->name, psi->name);
497		mutex_unlock(&psinfo_lock);
498		kfree(new_backend);
499		return -EBUSY;
500	}
501
502	if (!psi->write_user)
503		psi->write_user = pstore_write_user_compat;
504	psinfo = psi;
505	mutex_init(&psinfo->read_mutex);
506	spin_lock_init(&psinfo->buf_lock);
507
508	if (psi->flags & PSTORE_FLAGS_DMESG)
509		allocate_buf_for_compression();
 
 
 
 
510
511	pstore_get_records(0);
 
512
513	if (psi->flags & PSTORE_FLAGS_DMESG) {
514		pstore_dumper.max_reason = psinfo->max_reason;
515		pstore_register_kmsg();
516	}
517	if (psi->flags & PSTORE_FLAGS_CONSOLE)
518		pstore_register_console();
519	if (psi->flags & PSTORE_FLAGS_FTRACE)
520		pstore_register_ftrace();
521	if (psi->flags & PSTORE_FLAGS_PMSG)
522		pstore_register_pmsg();
523
524	/* Start watching for new records, if desired. */
525	pstore_timer_kick();
 
 
 
 
526
527	/*
528	 * Update the module parameter backend, so it is visible
529	 * through /sys/module/pstore/parameters/backend
530	 */
531	backend = new_backend;
532
533	pr_info("Registered %s as persistent store backend\n", psi->name);
534
535	mutex_unlock(&psinfo_lock);
 
536	return 0;
537}
538EXPORT_SYMBOL_GPL(pstore_register);
539
540void pstore_unregister(struct pstore_info *psi)
541{
542	/* It's okay to unregister nothing. */
543	if (!psi)
544		return;
 
545
546	mutex_lock(&psinfo_lock);
547
548	/* Only one backend can be registered at a time. */
549	if (WARN_ON(psi != psinfo)) {
550		mutex_unlock(&psinfo_lock);
551		return;
552	}
553
554	/* Unregister all callbacks. */
555	if (psi->flags & PSTORE_FLAGS_PMSG)
556		pstore_unregister_pmsg();
557	if (psi->flags & PSTORE_FLAGS_FTRACE)
558		pstore_unregister_ftrace();
559	if (psi->flags & PSTORE_FLAGS_CONSOLE)
560		pstore_unregister_console();
561	if (psi->flags & PSTORE_FLAGS_DMESG)
562		pstore_unregister_kmsg();
563
564	/* Stop timer and make sure all work has finished. */
565	del_timer_sync(&pstore_timer);
566	flush_work(&pstore_work);
567
568	/* Remove all backend records from filesystem tree. */
569	pstore_put_backend_records(psi);
570
571	free_buf_for_compression();
572
573	psinfo = NULL;
574	kfree(backend);
575	backend = NULL;
576
577	pr_info("Unregistered %s as persistent store backend\n", psi->name);
578	mutex_unlock(&psinfo_lock);
579}
580EXPORT_SYMBOL_GPL(pstore_unregister);
581
582static void decompress_record(struct pstore_record *record,
583			      struct z_stream_s *zstream)
584{
585	int ret;
586	int unzipped_len;
587	char *unzipped, *workspace;
588	size_t max_uncompressed_size;
589
590	if (!IS_ENABLED(CONFIG_PSTORE_COMPRESS) || !record->compressed)
591		return;
592
593	/* Only PSTORE_TYPE_DMESG support compression. */
594	if (record->type != PSTORE_TYPE_DMESG) {
595		pr_warn("ignored compressed record type %d\n", record->type);
596		return;
597	}
598
599	/* Missing compression buffer means compression was not initialized. */
600	if (!zstream->workspace) {
601		pr_warn("no decompression method initialized!\n");
602		return;
603	}
604
605	ret = zlib_inflateReset(zstream);
606	if (ret != Z_OK) {
607		pr_err("zlib_inflateReset() failed, ret = %d!\n", ret);
 
608		return;
609	}
610
611	/* Allocate enough space to hold max decompression and ECC. */
612	max_uncompressed_size = 3 * psinfo->bufsize;
613	workspace = kvzalloc(max_uncompressed_size + record->ecc_notice_size,
614			     GFP_KERNEL);
615	if (!workspace)
616		return;
617
618	zstream->next_in	= record->buf;
619	zstream->avail_in	= record->size;
620	zstream->next_out	= workspace;
621	zstream->avail_out	= max_uncompressed_size;
622
623	ret = zlib_inflate(zstream, Z_FINISH);
624	if (ret != Z_STREAM_END) {
625		pr_err_ratelimited("zlib_inflate() failed, ret = %d!\n", ret);
626		kvfree(workspace);
627		return;
628	}
629
630	unzipped_len = zstream->total_out;
631
632	/* Append ECC notice to decompressed buffer. */
633	memcpy(workspace + unzipped_len, record->buf + record->size,
634	       record->ecc_notice_size);
635
636	/* Copy decompressed contents into an minimum-sized allocation. */
637	unzipped = kvmemdup(workspace, unzipped_len + record->ecc_notice_size,
638			    GFP_KERNEL);
639	kvfree(workspace);
640	if (!unzipped)
641		return;
642
643	/* Swap out compressed contents with decompressed contents. */
644	kvfree(record->buf);
645	record->buf = unzipped;
646	record->size = unzipped_len;
647	record->compressed = false;
648}
649
650/*
651 * Read all the records from one persistent store backend. Create
652 * files in our filesystem.  Don't warn about -EEXIST errors
653 * when we are re-scanning the backing store looking to add new
654 * error records.
655 */
656void pstore_get_backend_records(struct pstore_info *psi,
657				struct dentry *root, int quiet)
658{
659	int failed = 0;
660	unsigned int stop_loop = 65536;
661	struct z_stream_s zstream = {};
662
663	if (!psi || !root)
664		return;
665
666	if (IS_ENABLED(CONFIG_PSTORE_COMPRESS) && compress) {
667		zstream.workspace = kvmalloc(zlib_inflate_workspacesize(),
668					     GFP_KERNEL);
669		zlib_inflateInit2(&zstream, -DEF_WBITS);
670	}
671
672	mutex_lock(&psi->read_mutex);
673	if (psi->open && psi->open(psi))
674		goto out;
675
676	/*
677	 * Backend callback read() allocates record.buf. decompress_record()
678	 * may reallocate record.buf. On success, pstore_mkfile() will keep
679	 * the record.buf, so free it only on failure.
680	 */
681	for (; stop_loop; stop_loop--) {
682		struct pstore_record *record;
683		int rc;
684
685		record = kzalloc(sizeof(*record), GFP_KERNEL);
686		if (!record) {
687			pr_err("out of memory creating record\n");
688			break;
689		}
690		pstore_record_init(record, psi);
691
692		record->size = psi->read(record);
693
694		/* No more records left in backend? */
695		if (record->size <= 0) {
696			kfree(record);
697			break;
698		}
699
700		decompress_record(record, &zstream);
701		rc = pstore_mkfile(root, record);
702		if (rc) {
703			/* pstore_mkfile() did not take record, so free it. */
704			kvfree(record->buf);
705			kfree(record->priv);
706			kfree(record);
707			if (rc != -EEXIST || !quiet)
708				failed++;
709		}
710	}
711	if (psi->close)
712		psi->close(psi);
713out:
714	mutex_unlock(&psi->read_mutex);
715
716	if (IS_ENABLED(CONFIG_PSTORE_COMPRESS) && compress) {
717		if (zlib_inflateEnd(&zstream) != Z_OK)
718			pr_warn("zlib_inflateEnd() failed\n");
719		kvfree(zstream.workspace);
720	}
721
722	if (failed)
723		pr_warn("failed to create %d record(s) from '%s'\n",
724			failed, psi->name);
725	if (!stop_loop)
726		pr_err("looping? Too many records seen from '%s'\n",
727			psi->name);
728}
729
730static void pstore_dowork(struct work_struct *work)
731{
732	pstore_get_records(1);
733}
734
735static void pstore_timefunc(struct timer_list *unused)
736{
737	if (pstore_new_entry) {
738		pstore_new_entry = 0;
739		schedule_work(&pstore_work);
740	}
741
742	pstore_timer_kick();
 
 
743}
744
745static int __init pstore_init(void)
746{
747	int ret;
748
749	ret = pstore_init_fs();
750	if (ret)
751		free_buf_for_compression();
752
753	return ret;
 
 
 
 
 
 
754}
755late_initcall(pstore_init);
756
757static void __exit pstore_exit(void)
758{
759	pstore_exit_fs();
760}
761module_exit(pstore_exit)
762
763MODULE_AUTHOR("Tony Luck <tony.luck@intel.com>");
764MODULE_LICENSE("GPL");