227 lines
6.4 KiB
C
227 lines
6.4 KiB
C
/*
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* Copyright (C) 2009-2010 by Andreas Dilger <adilger@sun.com>
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*
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* This file may be redistributed under the terms of the
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* GNU Lesser General Public License.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <string.h>
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#include <errno.h>
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#include <ctype.h>
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#include <inttypes.h>
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#include "superblocks.h"
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#define VDEV_LABEL_UBERBLOCK (128 * 1024ULL)
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#define VDEV_LABEL_NVPAIR ( 16 * 1024ULL)
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#define VDEV_LABEL_SIZE (256 * 1024ULL)
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/* #include <sys/uberblock_impl.h> */
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#define UBERBLOCK_MAGIC 0x00bab10c /* oo-ba-bloc! */
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struct zfs_uberblock {
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uint64_t ub_magic; /* UBERBLOCK_MAGIC */
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uint64_t ub_version; /* SPA_VERSION */
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uint64_t ub_txg; /* txg of last sync */
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uint64_t ub_guid_sum; /* sum of all vdev guids */
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uint64_t ub_timestamp; /* UTC time of last sync */
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char ub_rootbp; /* MOS objset_phys_t */
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} __attribute__((packed));
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#define ZFS_TRIES 64
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#define ZFS_WANT 4
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#define DATA_TYPE_UINT64 8
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#define DATA_TYPE_STRING 9
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struct nvpair {
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uint32_t nvp_size;
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uint32_t nvp_unkown;
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uint32_t nvp_namelen;
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char nvp_name[0]; /* aligned to 4 bytes */
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/* aligned ptr array for string arrays */
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/* aligned array of data for value */
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};
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struct nvstring {
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uint32_t nvs_type;
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uint32_t nvs_elem;
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uint32_t nvs_strlen;
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unsigned char nvs_string[0];
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};
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struct nvuint64 {
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uint32_t nvu_type;
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uint32_t nvu_elem;
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uint64_t nvu_value;
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};
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struct nvlist {
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uint32_t nvl_unknown[3];
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struct nvpair nvl_nvpair;
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};
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#define nvdebug(fmt, ...) do { } while(0)
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/*#define nvdebug(fmt, a...) printf(fmt, ##a)*/
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static void zfs_extract_guid_name(blkid_probe pr, loff_t offset)
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{
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struct nvlist *nvl;
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struct nvpair *nvp;
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size_t left = 4096;
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int found = 0;
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offset = (offset & ~(VDEV_LABEL_SIZE - 1)) + VDEV_LABEL_NVPAIR;
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/* Note that we currently assume that the desired fields are within
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* the first 4k (left) of the nvlist. This is true for all pools
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* I've seen, and simplifies this code somewhat, because we don't
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* have to handle an nvpair crossing a buffer boundary. */
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nvl = (struct nvlist *)blkid_probe_get_buffer(pr, offset, left);
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if (nvl == NULL)
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return;
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nvdebug("zfs_extract: nvlist offset %llu\n", offset);
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nvp = &nvl->nvl_nvpair;
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while (left > sizeof(*nvp) && nvp->nvp_size != 0 && found < 3) {
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int avail; /* tracks that name/value data fits in nvp_size */
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int namesize;
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nvp->nvp_size = be32_to_cpu(nvp->nvp_size);
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nvp->nvp_namelen = be32_to_cpu(nvp->nvp_namelen);
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avail = nvp->nvp_size - nvp->nvp_namelen - sizeof(*nvp);
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nvdebug("left %zd nvp_size %u\n", left, nvp->nvp_size);
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if (left < nvp->nvp_size || avail < 0)
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break;
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namesize = (nvp->nvp_namelen + 3) & ~3;
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nvdebug("nvlist: size %u, namelen %u, name %*s\n",
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nvp->nvp_size, nvp->nvp_namelen, nvp->nvp_namelen,
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nvp->nvp_name);
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if (strncmp(nvp->nvp_name, "name", nvp->nvp_namelen) == 0) {
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struct nvstring *nvs = (void *)(nvp->nvp_name+namesize);
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nvs->nvs_type = be32_to_cpu(nvs->nvs_type);
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nvs->nvs_strlen = be32_to_cpu(nvs->nvs_strlen);
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avail -= nvs->nvs_strlen + sizeof(*nvs);
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nvdebug("nvstring: type %u string %*s\n", nvs->nvs_type,
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nvs->nvs_strlen, nvs->nvs_string);
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if (nvs->nvs_type == DATA_TYPE_STRING && avail >= 0)
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blkid_probe_set_label(pr, nvs->nvs_string,
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nvs->nvs_strlen);
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found++;
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} else if (strncmp(nvp->nvp_name, "guid",
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nvp->nvp_namelen) == 0) {
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struct nvuint64 *nvu = (void *)(nvp->nvp_name+namesize);
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uint64_t nvu_value;
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memcpy(&nvu_value, &nvu->nvu_value, sizeof(nvu_value));
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nvu->nvu_type = be32_to_cpu(nvu->nvu_type);
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nvu_value = be64_to_cpu(nvu_value);
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avail -= sizeof(*nvu);
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nvdebug("nvuint64: type %u value %"PRIu64"\n",
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nvu->nvu_type, nvu_value);
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if (nvu->nvu_type == DATA_TYPE_UINT64 && avail >= 0)
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blkid_probe_sprintf_value(pr, "UUID_SUB",
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"%"PRIu64, nvu_value);
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found++;
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} else if (strncmp(nvp->nvp_name, "pool_guid",
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nvp->nvp_namelen) == 0) {
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struct nvuint64 *nvu = (void *)(nvp->nvp_name+namesize);
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uint64_t nvu_value;
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memcpy(&nvu_value, &nvu->nvu_value, sizeof(nvu_value));
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nvu->nvu_type = be32_to_cpu(nvu->nvu_type);
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nvu_value = be64_to_cpu(nvu_value);
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avail -= sizeof(*nvu);
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nvdebug("nvuint64: type %u value %"PRIu64"\n",
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nvu->nvu_type, nvu_value);
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if (nvu->nvu_type == DATA_TYPE_UINT64 && avail >= 0)
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blkid_probe_sprintf_uuid(pr, (unsigned char *)
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&nvu_value,
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sizeof(nvu_value),
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"%"PRIu64, nvu_value);
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found++;
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}
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if (left > nvp->nvp_size)
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left -= nvp->nvp_size;
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else
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left = 0;
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nvp = (struct nvpair *)((char *)nvp + nvp->nvp_size);
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}
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}
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#define zdebug(fmt, ...) do {} while(0)
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/*#define zdebug(fmt, a...) printf(fmt, ##a)*/
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/* ZFS has 128x1kB host-endian root blocks, stored in 2 areas at the start
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* of the disk, and 2 areas at the end of the disk. Check only some of them...
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* #4 (@ 132kB) is the first one written on a new filesystem. */
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static int probe_zfs(blkid_probe pr,
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const struct blkid_idmag *mag __attribute__((__unused__)))
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{
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uint64_t swab_magic = swab64(UBERBLOCK_MAGIC);
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struct zfs_uberblock *ub;
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int swab_endian;
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loff_t offset;
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int tried;
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int found;
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zdebug("probe_zfs\n");
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/* Look for at least 4 uberblocks to ensure a positive match */
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for (tried = found = 0, offset = VDEV_LABEL_UBERBLOCK;
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tried < ZFS_TRIES && found < ZFS_WANT;
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tried++, offset += 4096) {
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/* also try the second uberblock copy */
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if (tried == (ZFS_TRIES / 2))
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offset = VDEV_LABEL_SIZE + VDEV_LABEL_UBERBLOCK;
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ub = (struct zfs_uberblock *)
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blkid_probe_get_buffer(pr, offset,
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sizeof(struct zfs_uberblock));
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if (ub == NULL)
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return -1;
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if (ub->ub_magic == UBERBLOCK_MAGIC)
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found++;
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if ((swab_endian = (ub->ub_magic == swab_magic)))
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found++;
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zdebug("probe_zfs: found %s-endian uberblock at %llu\n",
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swab_endian ? "big" : "little", offset >> 10);
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}
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if (found < 4)
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return -1;
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/* If we found the 4th uberblock, then we will have exited from the
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* scanning loop immediately, and ub will be a valid uberblock. */
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blkid_probe_sprintf_version(pr, "%" PRIu64, swab_endian ?
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swab64(ub->ub_version) : ub->ub_version);
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zfs_extract_guid_name(pr, offset);
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if (blkid_probe_set_magic(pr, offset,
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sizeof(ub->ub_magic),
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(unsigned char *) &ub->ub_magic))
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return -1;
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return 0;
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}
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const struct blkid_idinfo zfs_idinfo =
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{
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.name = "zfs_member",
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.usage = BLKID_USAGE_RAID,
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.probefunc = probe_zfs,
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.minsz = 64 * 1024 * 1024,
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.magics = BLKID_NONE_MAGIC
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};
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