platform.c 19.7 KB
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/*
 * Persistent Storage - platform driver interface parts.
 *
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 * Copyright (C) 2007-2008 Google, Inc.
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 * Copyright (C) 2010 Intel Corporation <tony.luck@intel.com>
 *
 *  This program is free software; you can redistribute it and/or modify
 *  it under the terms of the GNU General Public License version 2 as
 *  published by the Free Software Foundation.
 *
 *  This program is distributed in the hope that it will be useful,
 *  but WITHOUT ANY WARRANTY; without even the implied warranty of
 *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 *  GNU General Public License for more details.
 *
 *  You should have received a copy of the GNU General Public License
 *  along with this program; if not, write to the Free Software
 *  Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
 */

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#define pr_fmt(fmt) "pstore: " fmt

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#include <linux/atomic.h>
#include <linux/types.h>
#include <linux/errno.h>
#include <linux/init.h>
#include <linux/kmsg_dump.h>
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#include <linux/console.h>
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#include <linux/module.h>
#include <linux/pstore.h>
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#ifdef CONFIG_PSTORE_ZLIB_COMPRESS
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#include <linux/zlib.h>
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#endif
#ifdef CONFIG_PSTORE_LZO_COMPRESS
#include <linux/lzo.h>
#endif
#ifdef CONFIG_PSTORE_LZ4_COMPRESS
#include <linux/lz4.h>
#endif
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#include <linux/string.h>
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#include <linux/timer.h>
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#include <linux/slab.h>
#include <linux/uaccess.h>
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#include <linux/hardirq.h>
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#include <linux/jiffies.h>
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#include <linux/workqueue.h>
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#include "internal.h"

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/*
 * We defer making "oops" entries appear in pstore - see
 * whether the system is actually still running well enough
 * to let someone see the entry
 */
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static int pstore_update_ms = -1;
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module_param_named(update_ms, pstore_update_ms, int, 0600);
MODULE_PARM_DESC(update_ms, "milliseconds before pstore updates its content "
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		 "(default is -1, which means runtime updates are disabled; "
		 "enabling this option is not safe, it may lead to further "
		 "corruption on Oopses)");
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static int pstore_new_entry;

static void pstore_timefunc(unsigned long);
static DEFINE_TIMER(pstore_timer, pstore_timefunc, 0, 0);

static void pstore_dowork(struct work_struct *);
static DECLARE_WORK(pstore_work, pstore_dowork);

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/*
 * pstore_lock just protects "psinfo" during
 * calls to pstore_register()
 */
static DEFINE_SPINLOCK(pstore_lock);
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struct pstore_info *psinfo;
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static char *backend;

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/* Compression parameters */
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#ifdef CONFIG_PSTORE_ZLIB_COMPRESS
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#define COMPR_LEVEL 6
#define WINDOW_BITS 12
#define MEM_LEVEL 4
static struct z_stream_s stream;
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#else
static unsigned char *workspace;
#endif

struct pstore_zbackend {
	int (*compress)(const void *in, void *out, size_t inlen, size_t outlen);
	int (*decompress)(void *in, void *out, size_t inlen, size_t outlen);
	void (*allocate)(void);
	void (*free)(void);

	const char *name;
};
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static char *big_oops_buf;
static size_t big_oops_buf_sz;

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/* How much of the console log to snapshot */
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static unsigned long kmsg_bytes = 10240;

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void pstore_set_kmsg_bytes(int bytes)
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{
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	kmsg_bytes = bytes;
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}

/* Tag each group of saved records with a sequence number */
static int	oopscount;

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static const char *get_reason_str(enum kmsg_dump_reason reason)
{
	switch (reason) {
	case KMSG_DUMP_PANIC:
		return "Panic";
	case KMSG_DUMP_OOPS:
		return "Oops";
	case KMSG_DUMP_EMERG:
		return "Emergency";
	case KMSG_DUMP_RESTART:
		return "Restart";
	case KMSG_DUMP_HALT:
		return "Halt";
	case KMSG_DUMP_POWEROFF:
		return "Poweroff";
	default:
		return "Unknown";
	}
}
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bool pstore_cannot_block_path(enum kmsg_dump_reason reason)
{
	/*
	 * In case of NMI path, pstore shouldn't be blocked
	 * regardless of reason.
	 */
	if (in_nmi())
		return true;

	switch (reason) {
	/* In panic case, other cpus are stopped by smp_send_stop(). */
	case KMSG_DUMP_PANIC:
	/* Emergency restart shouldn't be blocked by spin lock. */
	case KMSG_DUMP_EMERG:
		return true;
	default:
		return false;
	}
}
EXPORT_SYMBOL_GPL(pstore_cannot_block_path);

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#ifdef CONFIG_PSTORE_ZLIB_COMPRESS
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/* Derived from logfs_compress() */
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static int compress_zlib(const void *in, void *out, size_t inlen, size_t outlen)
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{
	int err, ret;

	ret = -EIO;
	err = zlib_deflateInit2(&stream, COMPR_LEVEL, Z_DEFLATED, WINDOW_BITS,
						MEM_LEVEL, Z_DEFAULT_STRATEGY);
	if (err != Z_OK)
		goto error;

	stream.next_in = in;
	stream.avail_in = inlen;
	stream.total_in = 0;
	stream.next_out = out;
	stream.avail_out = outlen;
	stream.total_out = 0;

	err = zlib_deflate(&stream, Z_FINISH);
	if (err != Z_STREAM_END)
		goto error;

	err = zlib_deflateEnd(&stream);
	if (err != Z_OK)
		goto error;

	if (stream.total_out >= stream.total_in)
		goto error;

	ret = stream.total_out;
error:
	return ret;
}

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/* Derived from logfs_uncompress */
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static int decompress_zlib(void *in, void *out, size_t inlen, size_t outlen)
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{
	int err, ret;

	ret = -EIO;
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	err = zlib_inflateInit2(&stream, WINDOW_BITS);
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	if (err != Z_OK)
		goto error;

	stream.next_in = in;
	stream.avail_in = inlen;
	stream.total_in = 0;
	stream.next_out = out;
	stream.avail_out = outlen;
	stream.total_out = 0;

	err = zlib_inflate(&stream, Z_FINISH);
	if (err != Z_STREAM_END)
		goto error;

	err = zlib_inflateEnd(&stream);
	if (err != Z_OK)
		goto error;

	ret = stream.total_out;
error:
	return ret;
}

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static void allocate_zlib(void)
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{
	size_t size;
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	size_t cmpr;

	switch (psinfo->bufsize) {
	/* buffer range for efivars */
	case 1000 ... 2000:
		cmpr = 56;
		break;
	case 2001 ... 3000:
		cmpr = 54;
		break;
	case 3001 ... 3999:
		cmpr = 52;
		break;
	/* buffer range for nvram, erst */
	case 4000 ... 10000:
		cmpr = 45;
		break;
	default:
		cmpr = 60;
		break;
	}
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	big_oops_buf_sz = (psinfo->bufsize * 100) / cmpr;
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	big_oops_buf = kmalloc(big_oops_buf_sz, GFP_KERNEL);
	if (big_oops_buf) {
		size = max(zlib_deflate_workspacesize(WINDOW_BITS, MEM_LEVEL),
			zlib_inflate_workspacesize());
		stream.workspace = kmalloc(size, GFP_KERNEL);
		if (!stream.workspace) {
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			pr_err("No memory for compression workspace; skipping compression\n");
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			kfree(big_oops_buf);
			big_oops_buf = NULL;
		}
	} else {
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		pr_err("No memory for uncompressed data; skipping compression\n");
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		stream.workspace = NULL;
	}

}

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static void free_zlib(void)
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{
	kfree(stream.workspace);
	stream.workspace = NULL;
	kfree(big_oops_buf);
	big_oops_buf = NULL;
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	big_oops_buf_sz = 0;
}

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static const struct pstore_zbackend backend_zlib = {
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	.compress	= compress_zlib,
	.decompress	= decompress_zlib,
	.allocate	= allocate_zlib,
	.free		= free_zlib,
	.name		= "zlib",
};
#endif

#ifdef CONFIG_PSTORE_LZO_COMPRESS
static int compress_lzo(const void *in, void *out, size_t inlen, size_t outlen)
{
	int ret;

	ret = lzo1x_1_compress(in, inlen, out, &outlen, workspace);
	if (ret != LZO_E_OK) {
		pr_err("lzo_compress error, ret = %d!\n", ret);
		return -EIO;
	}

	return outlen;
}

static int decompress_lzo(void *in, void *out, size_t inlen, size_t outlen)
{
	int ret;

	ret = lzo1x_decompress_safe(in, inlen, out, &outlen);
	if (ret != LZO_E_OK) {
		pr_err("lzo_decompress error, ret = %d!\n", ret);
		return -EIO;
	}

	return outlen;
}

static void allocate_lzo(void)
{
	big_oops_buf_sz = lzo1x_worst_compress(psinfo->bufsize);
	big_oops_buf = kmalloc(big_oops_buf_sz, GFP_KERNEL);
	if (big_oops_buf) {
		workspace = kmalloc(LZO1X_MEM_COMPRESS, GFP_KERNEL);
		if (!workspace) {
			pr_err("No memory for compression workspace; skipping compression\n");
			kfree(big_oops_buf);
			big_oops_buf = NULL;
		}
	} else {
		pr_err("No memory for uncompressed data; skipping compression\n");
		workspace = NULL;
	}
}

static void free_lzo(void)
{
	kfree(workspace);
	kfree(big_oops_buf);
	big_oops_buf = NULL;
	big_oops_buf_sz = 0;
}

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static const struct pstore_zbackend backend_lzo = {
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	.compress	= compress_lzo,
	.decompress	= decompress_lzo,
	.allocate	= allocate_lzo,
	.free		= free_lzo,
	.name		= "lzo",
};
#endif

#ifdef CONFIG_PSTORE_LZ4_COMPRESS
static int compress_lz4(const void *in, void *out, size_t inlen, size_t outlen)
{
	int ret;

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	ret = LZ4_compress_default(in, out, inlen, outlen, workspace);
	if (!ret) {
		pr_err("LZ4_compress_default error; compression failed!\n");
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		return -EIO;
	}

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	return ret;
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}

static int decompress_lz4(void *in, void *out, size_t inlen, size_t outlen)
{
	int ret;

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	ret = LZ4_decompress_safe(in, out, inlen, outlen);
	if (ret < 0) {
		/*
		 * LZ4_decompress_safe will return an error code
		 * (< 0) if decompression failed
		 */
		pr_err("LZ4_decompress_safe error, ret = %d!\n", ret);
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		return -EIO;
	}

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	return ret;
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}

static void allocate_lz4(void)
{
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	big_oops_buf_sz = LZ4_compressBound(psinfo->bufsize);
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	big_oops_buf = kmalloc(big_oops_buf_sz, GFP_KERNEL);
	if (big_oops_buf) {
		workspace = kmalloc(LZ4_MEM_COMPRESS, GFP_KERNEL);
		if (!workspace) {
			pr_err("No memory for compression workspace; skipping compression\n");
			kfree(big_oops_buf);
			big_oops_buf = NULL;
		}
	} else {
		pr_err("No memory for uncompressed data; skipping compression\n");
		workspace = NULL;
	}
}

static void free_lz4(void)
{
	kfree(workspace);
	kfree(big_oops_buf);
	big_oops_buf = NULL;
	big_oops_buf_sz = 0;
}

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static const struct pstore_zbackend backend_lz4 = {
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	.compress	= compress_lz4,
	.decompress	= decompress_lz4,
	.allocate	= allocate_lz4,
	.free		= free_lz4,
	.name		= "lz4",
};
#endif

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static const struct pstore_zbackend *zbackend =
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#if defined(CONFIG_PSTORE_ZLIB_COMPRESS)
	&backend_zlib;
#elif defined(CONFIG_PSTORE_LZO_COMPRESS)
	&backend_lzo;
#elif defined(CONFIG_PSTORE_LZ4_COMPRESS)
	&backend_lz4;
#else
	NULL;
#endif

static int pstore_compress(const void *in, void *out,
			   size_t inlen, size_t outlen)
{
	if (zbackend)
		return zbackend->compress(in, out, inlen, outlen);
	else
		return -EIO;
}

static int pstore_decompress(void *in, void *out, size_t inlen, size_t outlen)
{
	if (zbackend)
		return zbackend->decompress(in, out, inlen, outlen);
	else
		return -EIO;
}

static void allocate_buf_for_compression(void)
{
	if (zbackend) {
		pr_info("using %s compression\n", zbackend->name);
		zbackend->allocate();
	} else {
		pr_err("allocate compression buffer error!\n");
	}
}

static void free_buf_for_compression(void)
{
	if (zbackend)
		zbackend->free();
	else
		pr_err("free compression buffer error!\n");
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}

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/*
 * Called when compression fails, since the printk buffer
 * would be fetched for compression calling it again when
 * compression fails would have moved the iterator of
 * printk buffer which results in fetching old contents.
 * Copy the recent messages from big_oops_buf to psinfo->buf
 */
static size_t copy_kmsg_to_buffer(int hsize, size_t len)
{
	size_t total_len;
	size_t diff;

	total_len = hsize + len;

	if (total_len > psinfo->bufsize) {
		diff = total_len - psinfo->bufsize + hsize;
		memcpy(psinfo->buf, big_oops_buf, hsize);
		memcpy(psinfo->buf + hsize, big_oops_buf + diff,
					psinfo->bufsize - hsize);
		total_len = psinfo->bufsize;
	} else
		memcpy(psinfo->buf, big_oops_buf, total_len);

	return total_len;
}

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/*
 * callback from kmsg_dump. (s2,l2) has the most recently
 * written bytes, older bytes are in (s1,l1). Save as much
 * as we can from the end of the buffer.
 */
static void pstore_dump(struct kmsg_dumper *dumper,
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			enum kmsg_dump_reason reason)
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{
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	unsigned long	total = 0;
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	const char	*why;
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	u64		id;
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	unsigned int	part = 1;
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	unsigned long	flags = 0;
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	int		is_locked;
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	int		ret;
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	why = get_reason_str(reason);
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	if (pstore_cannot_block_path(reason)) {
		is_locked = spin_trylock_irqsave(&psinfo->buf_lock, flags);
		if (!is_locked) {
			pr_err("pstore dump routine blocked in %s path, may corrupt error record\n"
				       , in_nmi() ? "NMI" : why);
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			return;
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		}
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	} else {
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		spin_lock_irqsave(&psinfo->buf_lock, flags);
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		is_locked = 1;
	}
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	oopscount++;
	while (total < kmsg_bytes) {
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		char *dst;
		unsigned long size;
		int hsize;
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		int zipped_len = -1;
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		size_t len;
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		bool compressed = false;
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		size_t total_len;
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		if (big_oops_buf && is_locked) {
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			dst = big_oops_buf;
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			size = big_oops_buf_sz;
		} else {
			dst = psinfo->buf;
			size = psinfo->bufsize;
		}

		hsize = sprintf(dst, "%s#%d Part%u\n", why, oopscount, part);
		size -= hsize;
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		if (!kmsg_dump_get_buffer(dumper, true, dst + hsize,
					  size, &len))
			break;
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		if (big_oops_buf && is_locked) {
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			zipped_len = pstore_compress(dst, psinfo->buf,
						hsize + len, psinfo->bufsize);

			if (zipped_len > 0) {
				compressed = true;
				total_len = zipped_len;
			} else {
				total_len = copy_kmsg_to_buffer(hsize, len);
			}
		} else {
			total_len = hsize + len;
		}
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		ret = psinfo->write(PSTORE_TYPE_DMESG, reason, &id, part,
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				    oopscount, compressed, total_len, psinfo);
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		if (ret == 0 && reason == KMSG_DUMP_OOPS && pstore_is_mounted())
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			pstore_new_entry = 1;
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		total += total_len;
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		part++;
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	}
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	if (is_locked)
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		spin_unlock_irqrestore(&psinfo->buf_lock, flags);
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}

static struct kmsg_dumper pstore_dumper = {
	.dump = pstore_dump,
};

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/*
 * Register with kmsg_dump to save last part of console log on panic.
 */
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static void pstore_register_kmsg(void)
{
	kmsg_dump_register(&pstore_dumper);
}

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static void pstore_unregister_kmsg(void)
{
	kmsg_dump_unregister(&pstore_dumper);
}

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#ifdef CONFIG_PSTORE_CONSOLE
static void pstore_console_write(struct console *con, const char *s, unsigned c)
{
	const char *e = s + c;

	while (s < e) {
		unsigned long flags;
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		u64 id;
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		if (c > psinfo->bufsize)
			c = psinfo->bufsize;
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		if (oops_in_progress) {
			if (!spin_trylock_irqsave(&psinfo->buf_lock, flags))
				break;
		} else {
			spin_lock_irqsave(&psinfo->buf_lock, flags);
		}
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		psinfo->write_buf(PSTORE_TYPE_CONSOLE, 0, &id, 0,
				  s, 0, c, psinfo);
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		spin_unlock_irqrestore(&psinfo->buf_lock, flags);
		s += c;
		c = e - s;
	}
}

static struct console pstore_console = {
	.name	= "pstore",
	.write	= pstore_console_write,
	.flags	= CON_PRINTBUFFER | CON_ENABLED | CON_ANYTIME,
	.index	= -1,
};

static void pstore_register_console(void)
{
	register_console(&pstore_console);
}
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static void pstore_unregister_console(void)
{
	unregister_console(&pstore_console);
}
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#else
static void pstore_register_console(void) {}
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static void pstore_unregister_console(void) {}
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#endif

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static int pstore_write_compat(enum pstore_type_id type,
			       enum kmsg_dump_reason reason,
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			       u64 *id, unsigned int part, int count,
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			       bool compressed, size_t size,
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			       struct pstore_info *psi)
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{
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	return psi->write_buf(type, reason, id, part, psinfo->buf, compressed,
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			     size, psi);
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}

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static int pstore_write_buf_user_compat(enum pstore_type_id type,
			       enum kmsg_dump_reason reason,
			       u64 *id, unsigned int part,
			       const char __user *buf,
			       bool compressed, size_t size,
			       struct pstore_info *psi)
{
	unsigned long flags = 0;
	size_t i, bufsize = size;
	long ret = 0;

	if (unlikely(!access_ok(VERIFY_READ, buf, size)))
		return -EFAULT;
	if (bufsize > psinfo->bufsize)
		bufsize = psinfo->bufsize;
	spin_lock_irqsave(&psinfo->buf_lock, flags);
	for (i = 0; i < size; ) {
		size_t c = min(size - i, bufsize);

		ret = __copy_from_user(psinfo->buf, buf + i, c);
		if (unlikely(ret != 0)) {
			ret = -EFAULT;
			break;
		}
		ret = psi->write_buf(type, reason, id, part, psinfo->buf,
				     compressed, c, psi);
		if (unlikely(ret < 0))
			break;
		i += c;
	}
	spin_unlock_irqrestore(&psinfo->buf_lock, flags);
	return unlikely(ret < 0) ? ret : size;
}

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/*
 * platform specific persistent storage driver registers with
 * us here. If pstore is already mounted, call the platform
 * read function right away to populate the file system. If not
 * then the pstore mount code will call us later to fill out
 * the file system.
 */
int pstore_register(struct pstore_info *psi)
{
	struct module *owner = psi->owner;

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	if (backend && strcmp(backend, psi->name)) {
		pr_warn("ignoring unexpected backend '%s'\n", psi->name);
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		return -EPERM;
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	}
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	spin_lock(&pstore_lock);
	if (psinfo) {
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		pr_warn("backend '%s' already loaded: ignoring '%s'\n",
			psinfo->name, psi->name);
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		spin_unlock(&pstore_lock);
		return -EBUSY;
	}
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	if (!psi->write)
		psi->write = pstore_write_compat;
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	if (!psi->write_buf_user)
		psi->write_buf_user = pstore_write_buf_user_compat;
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	psinfo = psi;
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	mutex_init(&psinfo->read_mutex);
695 696 697 698 699 700 701
	spin_unlock(&pstore_lock);

	if (owner && !try_module_get(owner)) {
		psinfo = NULL;
		return -EINVAL;
	}

702 703
	allocate_buf_for_compression();

704
	if (pstore_is_mounted())
705
		pstore_get_records(0);
706

707 708 709
	if (psi->flags & PSTORE_FLAGS_DMESG)
		pstore_register_kmsg();
	if (psi->flags & PSTORE_FLAGS_CONSOLE)
710
		pstore_register_console();
711
	if (psi->flags & PSTORE_FLAGS_FTRACE)
712
		pstore_register_ftrace();
713
	if (psi->flags & PSTORE_FLAGS_PMSG)
714
		pstore_register_pmsg();
715

716
	/* Start watching for new records, if desired. */
717 718 719 720 721
	if (pstore_update_ms >= 0) {
		pstore_timer.expires = jiffies +
			msecs_to_jiffies(pstore_update_ms);
		add_timer(&pstore_timer);
	}
722

723 724 725 726 727 728
	/*
	 * Update the module parameter backend, so it is visible
	 * through /sys/module/pstore/parameters/backend
	 */
	backend = psi->name;

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Fabian Frederick 已提交
729
	pr_info("Registered %s as persistent store backend\n", psi->name);
730

731 732
	module_put(owner);

733 734 735 736
	return 0;
}
EXPORT_SYMBOL_GPL(pstore_register);

G
Geliang Tang 已提交
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void pstore_unregister(struct pstore_info *psi)
{
739 740 741 742 743
	/* Stop timer and make sure all work has finished. */
	pstore_update_ms = -1;
	del_timer_sync(&pstore_timer);
	flush_work(&pstore_work);

744
	if (psi->flags & PSTORE_FLAGS_PMSG)
745
		pstore_unregister_pmsg();
746
	if (psi->flags & PSTORE_FLAGS_FTRACE)
747
		pstore_unregister_ftrace();
748
	if (psi->flags & PSTORE_FLAGS_CONSOLE)
749
		pstore_unregister_console();
750 751
	if (psi->flags & PSTORE_FLAGS_DMESG)
		pstore_unregister_kmsg();
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Geliang Tang 已提交
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	free_buf_for_compression();

	psinfo = NULL;
	backend = NULL;
}
EXPORT_SYMBOL_GPL(pstore_unregister);

760 761 762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790
static void decompress_record(struct pstore_record *record)
{
	int unzipped_len;

	/* Only PSTORE_TYPE_DMESG support compression. */
	if (!record->compressed || record->type != PSTORE_TYPE_DMESG) {
		pr_warn("ignored compressed record type %d\n", record->type);
		return;
	}

	/* No compression method has created the common buffer. */
	if (!big_oops_buf) {
		pr_warn("no decompression buffer allocated\n");
		return;
	}

	unzipped_len = pstore_decompress(record->buf, big_oops_buf,
					 record->size, big_oops_buf_sz);
	if (unzipped_len > 0) {
		if (record->ecc_notice_size)
			memcpy(big_oops_buf + unzipped_len,
			       record->buf + record->size,
			       record->ecc_notice_size);
		kfree(record->buf);
		record->buf = big_oops_buf;
		record->size = unzipped_len;
		record->compressed = false;
	} else
		pr_err("decompression failed: %d\n", unzipped_len);
}

791
/*
792 793 794 795
 * Read all the records from the persistent store. Create
 * files in our filesystem.  Don't warn about -EEXIST errors
 * when we are re-scanning the backing store looking to add new
 * error records.
796
 */
797
void pstore_get_records(int quiet)
798 799
{
	struct pstore_info *psi = psinfo;
800
	struct pstore_record	record = { .psi = psi, };
801
	int			failed = 0, rc;
802 803 804 805

	if (!psi)
		return;

806
	mutex_lock(&psi->read_mutex);
807
	if (psi->open && psi->open(psi))
808 809
		goto out;

810 811 812 813 814
	while ((record.size = psi->read(&record.id, &record.type,
				 &record.count, &record.time,
				 &record.buf, &record.compressed,
				 &record.ecc_notice_size,
				 record.psi)) > 0) {
815 816

		decompress_record(&record);
817 818 819 820 821
		rc = pstore_mkfile(record.type, psi->name, record.id,
				   record.count, record.buf,
				   record.compressed,
				   record.size + record.ecc_notice_size,
				   record.time, record.psi);
822 823 824

		/* Free buffer other than big oops */
		if (record.buf != big_oops_buf)
825
			kfree(record.buf);
826

827
		if (rc && (rc != -EEXIST || !quiet))
828
			failed++;
829 830 831

		memset(&record, 0, sizeof(record));
		record.psi = psi;
832
	}
833 834
	if (psi->close)
		psi->close(psi);
835
out:
836
	mutex_unlock(&psi->read_mutex);
837 838

	if (failed)
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Fabian Frederick 已提交
839 840
		pr_warn("failed to load %d record(s) from '%s'\n",
			failed, psi->name);
841 842
}

843 844 845 846 847 848 849 850 851 852 853 854
static void pstore_dowork(struct work_struct *work)
{
	pstore_get_records(1);
}

static void pstore_timefunc(unsigned long dummy)
{
	if (pstore_new_entry) {
		pstore_new_entry = 0;
		schedule_work(&pstore_work);
	}

855 856 857
	if (pstore_update_ms >= 0)
		mod_timer(&pstore_timer,
			  jiffies + msecs_to_jiffies(pstore_update_ms));
858 859
}

860 861
module_param(backend, charp, 0444);
MODULE_PARM_DESC(backend, "Pstore backend to use");