mirror of
git://sourceware.org/git/lvm2.git
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562 lines
13 KiB
C
562 lines
13 KiB
C
/*
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* Copyright (C) 2001-2002 Sistina Software
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*
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* This file is released under the LGPL.
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*/
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <fcntl.h>
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#include <string.h>
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#include <unistd.h>
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#include "device.h"
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#include "dev-cache.h"
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#include "log.h"
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#include "pool.h"
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#include "dbg_malloc.h"
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#include "filter.h"
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#include "label.h"
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#include "lvm2_label.h"
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#include "xlate.h"
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/* Label Magic is "LnXl" - error: imagination failure */
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#define LABEL_MAGIC 0x6c586e4c
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/* Size of blocks that dev_get_size() returns the number of */
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#define BLOCK_SIZE 512
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/* This is just the "struct lvm2_label" with the data pointer removed */
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struct label_ondisk
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{
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uint32_t magic;
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uint32_t crc;
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uint64_t label1_loc;
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uint64_t label2_loc;
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uint16_t datalen;
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uint16_t pad;
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uint32_t version[3];
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char disk_type[32];
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};
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struct filter_private
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{
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void *mem;
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char disk_type[32];
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uint32_t version[3];
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int version_match;
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};
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/* Calculate CRC32 of a buffer */
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static uint32_t crc32(uint32_t initial, const unsigned char *databuf, size_t datalen)
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{
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static const u_int crctab[] = {
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0x00000000, 0x1db71064, 0x3b6e20c8, 0x26d930ac,
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0x76dc4190, 0x6b6b51f4, 0x4db26158, 0x5005713c,
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0xedb88320, 0xf00f9344, 0xd6d6a3e8, 0xcb61b38c,
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0x9b64c2b0, 0x86d3d2d4, 0xa00ae278, 0xbdbdf21c
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};
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uint32_t idx, crc = initial;
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for (idx = 0; idx < datalen; idx++) {
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crc ^= *databuf++;
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crc = (crc >> 4) ^ crctab[crc & 0xf];
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crc = (crc >> 4) ^ crctab[crc & 0xf];
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}
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return crc;
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}
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/* Calculate crc */
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static uint32_t calc_crc(struct label_ondisk *label, char *data)
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{
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uint32_t crcval = 0xffffffff;
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crcval = crc32(crcval, (char *)&label->magic, sizeof(label->magic));
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crcval = crc32(crcval, (char *)&label->label1_loc, sizeof(label->label1_loc));
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crcval = crc32(crcval, (char *)&label->label2_loc, sizeof(label->label2_loc));
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crcval = crc32(crcval, (char *)&label->datalen, sizeof(label->datalen));
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crcval = crc32(crcval, (char *)&label->version, sizeof(label->version));
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crcval = crc32(crcval, (char *)label->disk_type, strlen(label->disk_type));
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crcval = crc32(crcval, (char *)data, label->datalen);
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return crcval;
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}
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/* Calculate the locations we should find the labels in */
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static inline void get_label_locations(uint64_t size, uint32_t sectsize, long *first, long *second)
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{
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*first = sectsize;
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*second = size*BLOCK_SIZE - sectsize;
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}
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/* Read a label off disk */
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static int lvm2_label_read(struct labeller *l, struct device *dev, struct label **label)
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{
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uint64_t size;
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uint32_t sectsize;
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char *block;
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struct label_ondisk *ondisk;
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int status;
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int iter;
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long offset[2];
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if (!dev_get_size(dev, &size))
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return 0;
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if (!dev_get_sectsize(dev, §size))
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return 0;
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if (!dev_open(dev, O_RDONLY))
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return 0;
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block = dbg_malloc(sectsize);
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if (!block)
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{
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stack;
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return 0;
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}
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ondisk = (struct label_ondisk *)block;
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get_label_locations(size, sectsize, &offset[0], &offset[1]);
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/* If the first label is bad then use the second */
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for (iter = 0; iter <= 1; iter++)
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{
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status = dev_read(dev, offset[iter], sectsize, block);
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if (status)
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{
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struct label *incore;
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int i;
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int found_nul;
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/* If the MAGIC doesn't match there's no point in
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carrying on */
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if (xlate32(ondisk->magic) != LABEL_MAGIC)
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continue;
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/* Look for a NUL in the disk_type string so we don't
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SEGV is something has gone horribly wrong */
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found_nul = 0;
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for (i=0; i<sizeof(ondisk->disk_type); i++)
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if (ondisk->disk_type[i] == '\0')
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found_nul = 1;
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if (!found_nul)
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continue;
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incore = dbg_malloc(sizeof(struct label));
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if (incore == NULL)
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{
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return 0;
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}
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/* Copy and convert endianness */
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strncpy(incore->volume_type, ondisk->disk_type, sizeof(incore->volume_type));
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incore->version[0] = xlate32(ondisk->version[0]);
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incore->version[1] = xlate32(ondisk->version[1]);
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incore->version[2] = xlate32(ondisk->version[2]);
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incore->extra_len = xlate16(ondisk->datalen);
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incore->extra_info = block + sizeof(struct label_ondisk);
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/* Make sure datalen is a sensible size too */
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if (incore->extra_len > sectsize)
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continue;
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/* Check Crc */
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if (xlate32(ondisk->crc) != calc_crc(ondisk, incore->extra_info))
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{
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log_error("Crc %d on device %s does not match. got %x, expected %x",
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iter, dev_name(dev), xlate32(ondisk->crc), calc_crc(ondisk, incore->extra_info));
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continue;
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}
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/* Check label locations match our view of the device */
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if (xlate64(ondisk->label1_loc) != offset[0])
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log_error("Label 1 location is wrong in label %d - check block size of the device\n",
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iter);
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if (xlate64(ondisk->label2_loc) != offset[1])
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log_error("Label 2 location is wrong in label %d - the size of the device must have changed\n",
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iter);
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/* Copy to user's data area */
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*label = incore;
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incore->extra_info = dbg_malloc(incore->extra_len);
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if (!incore->extra_info)
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{
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stack;
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return 0;
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}
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memcpy(incore->extra_info, block + sizeof(struct label_ondisk), incore->extra_len);
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dbg_free(block);
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dev_close(dev);
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return 1;
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}
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}
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dbg_free(block);
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dev_close(dev);
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return 0;
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}
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/* Write a label to a device */
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static int lvm2_label_write(struct labeller *l, struct device *dev, struct label *label)
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{
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uint64_t size;
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uint32_t sectsize;
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char *block;
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struct label_ondisk *ondisk;
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int status1, status2;
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long offset[2];
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if (!dev_get_size(dev, &size))
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return 0;
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if (!dev_get_sectsize(dev, §size))
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return 0;
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/* Can the metata fit in the remaining space ? */
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if (label->extra_len > sectsize - sizeof(struct label_ondisk))
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return 0;
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block = dbg_malloc(sizeof(struct label_ondisk) + label->extra_len);
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if (!block)
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{
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stack;
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return 0;
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}
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ondisk = (struct label_ondisk *)block;
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get_label_locations(size, sectsize, &offset[0], &offset[1]);
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/* Make into ondisk format */
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ondisk->magic = xlate32(LABEL_MAGIC);
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ondisk->version[0] = xlate32(label->version[0]);
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ondisk->version[1] = xlate32(label->version[1]);
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ondisk->version[2] = xlate32(label->version[2]);
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ondisk->label1_loc = xlate64(offset[0]);
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ondisk->label2_loc = xlate64(offset[1]);
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ondisk->datalen = xlate16(label->extra_len);
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strncpy(ondisk->disk_type, label->volume_type, sizeof(ondisk->disk_type));
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memcpy(block+sizeof(struct label_ondisk), label->extra_info, label->extra_len);
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ondisk->crc = xlate32(calc_crc(ondisk, label->extra_info));
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/* Write metadata to disk */
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if (!dev_open(dev, O_RDWR))
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{
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dbg_free(block);
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return 0;
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}
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status1 = dev_write(dev, offset[0], sizeof(struct label_ondisk) + label->extra_len, block);
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if (!status1)
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log_error("Error writing label 1\n");
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/* Write another at the end of the device */
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status2 = dev_write(dev, offset[1], sizeof(struct label_ondisk) + label->extra_len, block);
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if (!status2)
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{
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char zerobuf[sizeof(struct label_ondisk)];
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log_error("Error writing label 2\n");
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/* Wipe the first label so it doesn't get confusing */
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memset(zerobuf, 0, sizeof(struct label_ondisk));
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if (!dev_write(dev, offset[0], sizeof(struct label_ondisk), zerobuf))
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log_error("Error erasing label 1\n");
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}
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dbg_free(block);
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dev_close(dev);
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return ((status1 != 0) && (status2 != 0));
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}
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/* Return 1 for Yes, 0 for No */
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static int lvm2_is_labelled(struct labeller *l, struct device *dev)
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{
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struct label *label;
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int status;
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status = lvm2_label_read(l, dev, &label);
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if (status) label_free(label);
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return status;
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}
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/* Check the device is labelled and has the right format_type */
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static int _accept_format(struct dev_filter *f, struct device *dev)
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{
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struct label *l;
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int status;
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struct filter_private *fp = (struct filter_private *) f->private;
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status = lvm2_label_read(NULL, dev, &l);
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if (status)
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{
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if (strcmp(l->volume_type, fp->disk_type) == 0)
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{
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switch (fp->version_match)
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{
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case VERSION_MATCH_EQUAL:
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if (l->version[0] == fp->version[0] &&
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l->version[1] == fp->version[1] &&
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l->version[2] == fp->version[2])
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return 1;
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break;
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case VERSION_MATCH_LESSTHAN:
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if (l->version[0] == fp->version[0] &&
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l->version[1] < fp->version[1])
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return 1;
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break;
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case VERSION_MATCH_LESSEQUAL:
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if (l->version[0] == fp->version[0] &&
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l->version[1] <= fp->version[1])
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return 1;
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break;
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case VERSION_MATCH_ANY:
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return 1;
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}
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}
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label_free(l);
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}
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return 0;
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}
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/* We just want to know if it's labelled or not */
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static int _accept_label(struct dev_filter *f, struct device *dev)
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{
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return lvm2_is_labelled(NULL, dev);
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}
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static void _destroy(struct dev_filter *f)
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{
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struct filter_private *fp = (struct filter_private *) f->private;
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}
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/* A filter to find devices with a particular label type on them */
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struct dev_filter *lvm2_label_format_filter_create(char *disk_type, uint32_t version[3], int match_type)
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{
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struct pool *mem;
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struct filter_private *fp;
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struct dev_filter *f;
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/* Validate the match type */
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if (match_type != VERSION_MATCH_EQUAL &&
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match_type != VERSION_MATCH_LESSTHAN &&
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match_type != VERSION_MATCH_LESSEQUAL &&
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match_type != VERSION_MATCH_ANY)
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return 0;
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mem = pool_create(10 * 1024);
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if (!mem) {
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stack;
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return NULL;
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}
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if (!(f = pool_zalloc(mem, sizeof(*f)))) {
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stack;
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goto bad;
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}
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if (!(fp = pool_zalloc(mem, sizeof(*fp)))) {
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stack;
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goto bad;
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}
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fp->mem = mem;
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strcpy(fp->disk_type, disk_type);
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fp->version[0] = version[0];
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fp->version[1] = version[1];
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fp->version[2] = version[2];
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fp->version_match = match_type;
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f->passes_filter = _accept_format;
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f->destroy = _destroy;
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f->private = fp;
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return f;
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bad:
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pool_destroy(mem);
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return NULL;
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}
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/* A filter to find devices with any label on them */
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struct dev_filter *lvm2_label_filter_create()
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{
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struct pool *mem = pool_create(10 * 1024);
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struct filter_private *fp;
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struct dev_filter *f;
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if (!mem) {
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stack;
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return NULL;
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}
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if (!(f = pool_zalloc(mem, sizeof(*f)))) {
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stack;
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goto bad;
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}
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if (!(fp = pool_zalloc(mem, sizeof(*fp)))) {
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stack;
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goto bad;
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}
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fp->mem = mem;
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f->passes_filter = _accept_label;
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f->destroy = _destroy;
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f->private = fp;
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return f;
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bad:
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pool_destroy(mem);
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return NULL;
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}
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/* Return 1 if both labels are identical, 0 if not or there was an error */
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static int lvm2_labels_match(struct labeller *l, struct device *dev)
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{
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uint64_t size;
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uint32_t sectsize;
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char *block1;
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char *block2;
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struct label_ondisk *ondisk1;
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struct label_ondisk *ondisk2;
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int status = 0;
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long offset[2];
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if (!dev_get_size(dev, &size))
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return 0;
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if (!dev_get_sectsize(dev, §size))
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return 0;
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/* Allocate some space for the blocks we are going to read in */
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block1 = dbg_malloc(sectsize);
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if (!block1)
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{
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stack;
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return 0;
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}
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block2 = dbg_malloc(sectsize);
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if (!block2)
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{
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stack;
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dbg_free(block1);
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return 0;
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}
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ondisk1 = (struct label_ondisk *)block1;
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ondisk2 = (struct label_ondisk *)block2;
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get_label_locations(size, sectsize, &offset[0], &offset[1]);
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/* Fetch em */
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if (!dev_open(dev, O_RDONLY))
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goto finish;
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if (!dev_read(dev, offset[0], sectsize, block1))
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goto finish;
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if (!dev_read(dev, offset[1], sectsize, block2))
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goto finish;
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dev_close(dev);
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/* Is it labelled? */
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if (xlate32(ondisk1->magic) != LABEL_MAGIC)
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goto finish;
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/* Compare the whole structs */
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if (memcmp(ondisk1, ondisk2, sizeof(struct label_ondisk)) != 0)
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goto finish;
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/* OK, check the data area */
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if (memcmp(block1 + sizeof(struct label_ondisk),
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block2 + sizeof(struct label_ondisk),
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xlate16(ondisk1->datalen)) != 0)
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goto finish;
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/* They match !! */
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status = 1;
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finish:
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dbg_free(block2);
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dbg_free(block1);
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return status;
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}
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static int lvm2_label_remove(struct labeller *l, struct device *dev)
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{
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uint64_t size;
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uint32_t sectsize;
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char block[BLOCK_SIZE];
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int status1, status2;
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long offset[2];
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if (!dev_get_size(dev, &size))
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return 0;
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if (!dev_get_sectsize(dev, §size))
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return 0;
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if (!dev_open(dev, O_RDWR))
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{
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dbg_free(block);
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return 0;
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}
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get_label_locations(size, sectsize, &offset[0], &offset[1]);
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memset(block, 0, BLOCK_SIZE);
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/* Blank out the first label */
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status1 = dev_write(dev, offset[0], BLOCK_SIZE, block);
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if (!status1)
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log_error("Error erasing label 1\n");
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/* ...and the other at the end of the device */
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status2 = dev_write(dev, offset[1], BLOCK_SIZE, block);
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if (!status2)
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log_error("Error erasing label 2\n");
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dev_close(dev);
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return ((status1 != 0) && (status2 != 0));
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}
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static void lvm2_label_destroy(struct labeller *l)
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{
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}
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static struct label_ops handler_ops =
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{
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can_handle: lvm2_is_labelled,
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|
write: lvm2_label_write,
|
|
remove: lvm2_label_remove,
|
|
read: lvm2_label_read,
|
|
verify: lvm2_labels_match,
|
|
destroy: lvm2_label_destroy,
|
|
};
|
|
|
|
static struct labeller this_labeller =
|
|
{
|
|
private : NULL,
|
|
ops : &handler_ops,
|
|
};
|
|
|
|
/* Don't know how this gets called... */
|
|
void lvm2_label_init()
|
|
{
|
|
label_register_handler("LVM2", &this_labeller);
|
|
}
|