fa926cb4b4
The original code which handles the recovery of a RAID 6 disks array assumes that all reads are multiple of 1 << GRUB_DISK_SECTOR_BITS and it assumes that all the I/O is done via the struct grub_diskfilter_segment. This is not true for the btrfs code. In order to reuse the native grub_raid6_recover() code, it is modified to not call grub_diskfilter_read_node() directly, but to call an handler passed as an argument. Signed-off-by: Goffredo Baroncelli <kreijack@inwind.it> Reviewed-by: Daniel Kiper <daniel.kiper@oracle.com>
218 lines
4.9 KiB
C
218 lines
4.9 KiB
C
/* raid6_recover.c - module to recover from faulty RAID6 arrays. */
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/*
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* GRUB -- GRand Unified Bootloader
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* Copyright (C) 2006,2007,2008,2009 Free Software Foundation, Inc.
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*
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* GRUB is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* GRUB is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with GRUB. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <grub/dl.h>
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#include <grub/disk.h>
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#include <grub/mm.h>
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#include <grub/err.h>
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#include <grub/misc.h>
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#include <grub/diskfilter.h>
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#include <grub/crypto.h>
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GRUB_MOD_LICENSE ("GPLv3+");
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/* x**y. */
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static grub_uint8_t powx[255 * 2];
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/* Such an s that x**s = y */
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static unsigned powx_inv[256];
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static const grub_uint8_t poly = 0x1d;
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static void
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grub_raid_block_mulx (unsigned mul, char *buf, grub_size_t size)
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{
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grub_size_t i;
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grub_uint8_t *p;
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p = (grub_uint8_t *) buf;
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for (i = 0; i < size; i++, p++)
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if (*p)
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*p = powx[mul + powx_inv[*p]];
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}
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static void
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grub_raid6_init_table (void)
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{
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unsigned i;
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grub_uint8_t cur = 1;
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for (i = 0; i < 255; i++)
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{
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powx[i] = cur;
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powx[i + 255] = cur;
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powx_inv[cur] = i;
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if (cur & 0x80)
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cur = (cur << 1) ^ poly;
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else
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cur <<= 1;
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}
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}
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static unsigned
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mod_255 (unsigned x)
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{
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while (x > 0xff)
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x = (x >> 8) + (x & 0xff);
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if (x == 0xff)
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return 0;
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return x;
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}
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static grub_err_t
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raid6_recover_read_node (void *data, int disknr,
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grub_uint64_t sector,
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void *buf, grub_size_t size)
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{
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struct grub_diskfilter_segment *array = data;
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return grub_diskfilter_read_node (&array->nodes[disknr],
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(grub_disk_addr_t)sector,
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size >> GRUB_DISK_SECTOR_BITS, buf);
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}
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grub_err_t
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grub_raid6_recover_gen (void *data, grub_uint64_t nstripes, int disknr, int p,
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char *buf, grub_uint64_t sector, grub_size_t size,
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int layout, raid_recover_read_t read_func)
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{
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int i, q, pos;
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int bad1 = -1, bad2 = -1;
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char *pbuf = 0, *qbuf = 0;
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pbuf = grub_zalloc (size);
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if (!pbuf)
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goto quit;
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qbuf = grub_zalloc (size);
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if (!qbuf)
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goto quit;
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q = p + 1;
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if (q == (int) nstripes)
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q = 0;
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pos = q + 1;
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if (pos == (int) nstripes)
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pos = 0;
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for (i = 0; i < (int) nstripes - 2; i++)
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{
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int c;
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if (layout & GRUB_RAID_LAYOUT_MUL_FROM_POS)
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c = pos;
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else
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c = i;
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if (pos == disknr)
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bad1 = c;
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else
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{
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if (!read_func (data, pos, sector, buf, size))
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{
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grub_crypto_xor (pbuf, pbuf, buf, size);
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grub_raid_block_mulx (c, buf, size);
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grub_crypto_xor (qbuf, qbuf, buf, size);
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}
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else
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{
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/* Too many bad devices */
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if (bad2 >= 0)
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goto quit;
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bad2 = c;
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grub_errno = GRUB_ERR_NONE;
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}
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}
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pos++;
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if (pos == (int) nstripes)
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pos = 0;
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}
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/* Invalid disknr or p */
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if (bad1 < 0)
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goto quit;
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if (bad2 < 0)
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{
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/* One bad device */
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if (!read_func (data, p, sector, buf, size))
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{
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grub_crypto_xor (buf, buf, pbuf, size);
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goto quit;
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}
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grub_errno = GRUB_ERR_NONE;
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if (read_func (data, q, sector, buf, size))
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goto quit;
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grub_crypto_xor (buf, buf, qbuf, size);
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grub_raid_block_mulx (255 - bad1, buf,
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size);
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}
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else
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{
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/* Two bad devices */
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unsigned c;
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if (read_func (data, p, sector, buf, size))
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goto quit;
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grub_crypto_xor (pbuf, pbuf, buf, size);
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if (read_func (data, q, sector, buf, size))
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goto quit;
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grub_crypto_xor (qbuf, qbuf, buf, size);
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c = mod_255((255 ^ bad1)
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+ (255 ^ powx_inv[(powx[bad2 + (bad1 ^ 255)] ^ 1)]));
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grub_raid_block_mulx (c, qbuf, size);
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c = mod_255((unsigned) bad2 + c);
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grub_raid_block_mulx (c, pbuf, size);
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grub_crypto_xor (pbuf, pbuf, qbuf, size);
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grub_memcpy (buf, pbuf, size);
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}
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quit:
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grub_free (pbuf);
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grub_free (qbuf);
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return grub_errno;
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}
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static grub_err_t
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grub_raid6_recover (struct grub_diskfilter_segment *array, int disknr, int p,
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char *buf, grub_disk_addr_t sector, grub_size_t size)
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{
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return grub_raid6_recover_gen (array, array->node_count, disknr, p, buf,
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sector, size << GRUB_DISK_SECTOR_BITS,
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array->layout, raid6_recover_read_node);
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}
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GRUB_MOD_INIT(raid6rec)
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{
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grub_raid6_init_table ();
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grub_raid6_recover_func = grub_raid6_recover;
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}
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GRUB_MOD_FINI(raid6rec)
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{
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grub_raid6_recover_func = 0;
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}
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