mirror of
https://github.com/systemd/systemd-stable.git
synced 2024-11-01 17:51:08 +03:00
442 lines
9.8 KiB
C
442 lines
9.8 KiB
C
/*
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* volume_id - reads filesystem label and uuid
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*
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* Copyright (C) 2005-2007 Kay Sievers <kay.sievers@vrfy.org>
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*
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* This program is free software; you can redistribute it and/or modify it
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* under the terms of the GNU General Public License as published by the
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* Free Software Foundation version 2 of the License.
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*/
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#ifndef _GNU_SOURCE
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#define _GNU_SOURCE 1
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#endif
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#ifdef HAVE_CONFIG_H
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# include <config.h>
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#endif
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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 <fcntl.h>
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#include <sys/stat.h>
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#include "libvolume_id.h"
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#include "libvolume_id-private.h"
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#include "util.h"
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/* count of characters used to encode one unicode char */
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static int utf8_encoded_expected_len(const char *str)
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{
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unsigned char c = (unsigned char)str[0];
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if (c < 0x80)
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return 1;
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if ((c & 0xe0) == 0xc0)
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return 2;
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if ((c & 0xf0) == 0xe0)
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return 3;
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if ((c & 0xf8) == 0xf0)
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return 4;
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if ((c & 0xfc) == 0xf8)
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return 5;
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if ((c & 0xfe) == 0xfc)
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return 6;
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return 0;
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}
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/* decode one unicode char */
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static int utf8_encoded_to_unichar(const char *str)
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{
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int unichar;
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int len;
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int i;
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len = utf8_encoded_expected_len(str);
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switch (len) {
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case 1:
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return (int)str[0];
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case 2:
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unichar = str[0] & 0x1f;
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break;
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case 3:
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unichar = (int)str[0] & 0x0f;
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break;
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case 4:
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unichar = (int)str[0] & 0x07;
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break;
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case 5:
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unichar = (int)str[0] & 0x03;
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break;
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case 6:
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unichar = (int)str[0] & 0x01;
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break;
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default:
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return -1;
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}
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for (i = 1; i < len; i++) {
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if (((int)str[i] & 0xc0) != 0x80)
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return -1;
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unichar <<= 6;
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unichar |= (int)str[i] & 0x3f;
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}
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return unichar;
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}
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/* expected size used to encode one unicode char */
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static int utf8_unichar_to_encoded_len(int unichar)
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{
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if (unichar < 0x80)
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return 1;
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if (unichar < 0x800)
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return 2;
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if (unichar < 0x10000)
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return 3;
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if (unichar < 0x200000)
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return 4;
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if (unichar < 0x4000000)
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return 5;
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return 6;
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}
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/* check if unicode char has a valid numeric range */
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static int utf8_unichar_valid_range(int unichar)
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{
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if (unichar > 0x10ffff)
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return 0;
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if ((unichar & 0xfffff800) == 0xd800)
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return 0;
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if ((unichar > 0xfdcf) && (unichar < 0xfdf0))
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return 0;
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if ((unichar & 0xffff) == 0xffff)
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return 0;
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return 1;
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}
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/* validate one encoded unicode char and return its length */
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int volume_id_utf8_encoded_valid_unichar(const char *str)
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{
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int len;
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int unichar;
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int i;
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len = utf8_encoded_expected_len(str);
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if (len == 0)
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return -1;
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/* ascii is valid */
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if (len == 1)
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return 1;
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/* check if expected encoded chars are available */
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for (i = 0; i < len; i++)
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if ((str[i] & 0x80) != 0x80)
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return -1;
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unichar = utf8_encoded_to_unichar(str);
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/* check if encoded length matches encoded value */
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if (utf8_unichar_to_encoded_len(unichar) != len)
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return -1;
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/* check if value has valid range */
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if (!utf8_unichar_valid_range(unichar))
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return -1;
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return len;
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}
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size_t volume_id_set_unicode16(uint8_t *str, size_t len, const uint8_t *buf, enum endian endianess, size_t count)
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{
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size_t i, j;
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uint16_t c;
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j = 0;
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for (i = 0; i + 2 <= count; i += 2) {
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if (endianess == LE)
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c = (buf[i+1] << 8) | buf[i];
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else
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c = (buf[i] << 8) | buf[i+1];
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if (c == 0) {
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str[j] = '\0';
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break;
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} else if (c < 0x80) {
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if (j+1 >= len)
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break;
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str[j++] = (uint8_t) c;
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} else if (c < 0x800) {
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if (j+2 >= len)
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break;
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str[j++] = (uint8_t) (0xc0 | (c >> 6));
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str[j++] = (uint8_t) (0x80 | (c & 0x3f));
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} else {
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if (j+3 >= len)
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break;
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str[j++] = (uint8_t) (0xe0 | (c >> 12));
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str[j++] = (uint8_t) (0x80 | ((c >> 6) & 0x3f));
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str[j++] = (uint8_t) (0x80 | (c & 0x3f));
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}
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}
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str[j] = '\0';
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return j;
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}
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static char *usage_to_string(enum volume_id_usage usage_id)
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{
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switch (usage_id) {
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case VOLUME_ID_FILESYSTEM:
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return "filesystem";
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case VOLUME_ID_OTHER:
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return "other";
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case VOLUME_ID_RAID:
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return "raid";
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case VOLUME_ID_DISKLABEL:
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return "disklabel";
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case VOLUME_ID_CRYPTO:
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return "crypto";
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case VOLUME_ID_UNPROBED:
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return "unprobed";
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case VOLUME_ID_UNUSED:
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return "unused";
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}
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return NULL;
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}
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void volume_id_set_usage(struct volume_id *id, enum volume_id_usage usage_id)
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{
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id->usage_id = usage_id;
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id->usage = usage_to_string(usage_id);
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}
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void volume_id_set_label_raw(struct volume_id *id, const uint8_t *buf, size_t count)
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{
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if (count > sizeof(id->label_raw))
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count = sizeof(id->label_raw);
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memcpy(id->label_raw, buf, count);
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id->label_raw_len = count;
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}
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void volume_id_set_label_string(struct volume_id *id, const uint8_t *buf, size_t count)
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{
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size_t i;
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if (count >= sizeof(id->label))
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count = sizeof(id->label)-1;
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memcpy(id->label, buf, count);
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id->label[count] = '\0';
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/* remove trailing whitespace */
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i = strnlen(id->label, count);
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while (i--) {
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if (!isspace(id->label[i]))
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break;
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}
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id->label[i+1] = '\0';
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}
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void volume_id_set_label_unicode16(struct volume_id *id, const uint8_t *buf, enum endian endianess, size_t count)
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{
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if (count >= sizeof(id->label))
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count = sizeof(id->label)-1;
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volume_id_set_unicode16((uint8_t *)id->label, sizeof(id->label), buf, endianess, count);
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}
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void volume_id_set_uuid(struct volume_id *id, const uint8_t *buf, size_t len, enum uuid_format format)
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{
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unsigned int i;
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unsigned int count = 0;
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if (len > sizeof(id->uuid_raw))
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len = sizeof(id->uuid_raw);
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switch(format) {
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case UUID_STRING:
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count = len;
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break;
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case UUID_HEX_STRING:
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count = len;
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break;
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case UUID_DOS:
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count = 4;
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break;
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case UUID_64BIT_LE:
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case UUID_64BIT_BE:
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count = 8;
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break;
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case UUID_DCE:
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count = 16;
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break;
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case UUID_MD:
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count = 35;
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break;
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case UUID_LVM:
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count = 32;
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break;
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}
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memcpy(id->uuid_raw, buf, count);
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id->uuid_raw_len = count;
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/* if set, create string in the same format, the native platform uses */
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for (i = 0; i < count; i++)
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if (buf[i] != 0)
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goto set;
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return;
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set:
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switch(format) {
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case UUID_DOS:
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sprintf(id->uuid, "%02X%02X-%02X%02X",
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buf[3], buf[2], buf[1], buf[0]);
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break;
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case UUID_64BIT_LE:
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sprintf(id->uuid,"%02X%02X%02X%02X%02X%02X%02X%02X",
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buf[7], buf[6], buf[5], buf[4],
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buf[3], buf[2], buf[1], buf[0]);
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break;
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case UUID_64BIT_BE:
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sprintf(id->uuid,"%02X%02X%02X%02X%02X%02X%02X%02X",
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buf[0], buf[1], buf[2], buf[3],
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buf[4], buf[5], buf[6], buf[7]);
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break;
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case UUID_DCE:
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sprintf(id->uuid,
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"%02x%02x%02x%02x-%02x%02x-%02x%02x-%02x%02x-%02x%02x%02x%02x%02x%02x",
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buf[0], buf[1], buf[2], buf[3],
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buf[4], buf[5],
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buf[6], buf[7],
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buf[8], buf[9],
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buf[10], buf[11], buf[12], buf[13], buf[14],buf[15]);
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break;
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case UUID_HEX_STRING:
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/* translate A..F to a..f */
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memcpy(id->uuid, buf, count);
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for (i = 0; i < count; i++)
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if (id->uuid[i] >= 'A' && id->uuid[i] <= 'F')
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id->uuid[i] = (id->uuid[i] - 'A') + 'a';
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id->uuid[count] = '\0';
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break;
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case UUID_STRING:
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memcpy(id->uuid, buf, count);
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id->uuid[count] = '\0';
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break;
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case UUID_MD:
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sprintf(id->uuid,
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"%02x%02x%02x%02x:%02x%02x%02x%02x:%02x%02x%02x%02x:%02x%02x%02x%02x",
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buf[0], buf[1], buf[2], buf[3],
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buf[4], buf[5], buf[6], buf[7],
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buf[8], buf[9], buf[10], buf[11],
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buf[12], buf[13], buf[14],buf[15]);
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break;
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case UUID_LVM:
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sprintf(id->uuid,
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"%c%c%c%c%c%c-%c%c%c%c-%c%c%c%c-%c%c%c%c-%c%c%c%c-%c%c%c%c-%c%c%c%c%c%c",
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buf[0], buf[1], buf[2], buf[3], buf[4], buf[5],
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buf[6], buf[7], buf[8], buf[9],
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buf[10], buf[11], buf[12], buf[13],
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buf[14], buf[15], buf[16], buf[17],
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buf[18], buf[19], buf[20], buf[21],
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buf[22], buf[23], buf[24], buf[25],
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buf[26], buf[27], buf[28], buf[29], buf[30], buf[31]);
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break;
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}
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}
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uint8_t *volume_id_get_buffer(struct volume_id *id, uint64_t off, size_t len)
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{
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ssize_t buf_len;
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info("get buffer off 0x%llx(%llu), len 0x%zx\n", (unsigned long long) off, (unsigned long long) off, len);
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/* check if requested area fits in superblock buffer */
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if (off + len <= SB_BUFFER_SIZE) {
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if (id->sbbuf == NULL) {
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id->sbbuf = malloc(SB_BUFFER_SIZE);
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if (id->sbbuf == NULL) {
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dbg("error malloc\n");
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return NULL;
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}
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}
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/* check if we need to read */
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if ((off + len) > id->sbbuf_len) {
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info("read sbbuf len:0x%llx\n", (unsigned long long) (off + len));
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if (lseek(id->fd, 0, SEEK_SET) < 0) {
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dbg("lseek failed (%s)\n", strerror(errno));
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return NULL;
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}
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buf_len = read(id->fd, id->sbbuf, off + len);
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if (buf_len < 0) {
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dbg("read failed (%s)\n", strerror(errno));
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return NULL;
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}
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dbg("got 0x%zx (%zi) bytes\n", buf_len, buf_len);
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id->sbbuf_len = buf_len;
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if ((size_t)buf_len < off + len) {
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dbg("requested 0x%zx bytes, got only 0x%zx bytes\n", len, buf_len);
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return NULL;
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}
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}
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return &(id->sbbuf[off]);
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} else {
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if (len > SEEK_BUFFER_SIZE) {
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dbg("seek buffer too small %d\n", SEEK_BUFFER_SIZE);
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return NULL;
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}
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/* get seek buffer */
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if (id->seekbuf == NULL) {
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id->seekbuf = malloc(SEEK_BUFFER_SIZE);
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if (id->seekbuf == NULL) {
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dbg("error malloc\n");
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return NULL;
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}
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}
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/* check if we need to read */
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if ((off < id->seekbuf_off) || ((off + len) > (id->seekbuf_off + id->seekbuf_len))) {
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info("read seekbuf off:0x%llx len:0x%zx\n", (unsigned long long) off, len);
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if (lseek(id->fd, off, SEEK_SET) < 0) {
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dbg("lseek failed (%s)\n", strerror(errno));
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return NULL;
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}
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buf_len = read(id->fd, id->seekbuf, len);
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if (buf_len < 0) {
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dbg("read failed (%s)\n", strerror(errno));
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return NULL;
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}
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dbg("got 0x%zx (%zi) bytes\n", buf_len, buf_len);
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id->seekbuf_off = off;
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id->seekbuf_len = buf_len;
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if ((size_t)buf_len < len) {
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dbg("requested 0x%zx bytes, got only 0x%zx bytes\n", len, buf_len);
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return NULL;
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}
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}
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return &(id->seekbuf[off - id->seekbuf_off]);
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}
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}
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void volume_id_free_buffer(struct volume_id *id)
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{
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if (id->sbbuf != NULL) {
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free(id->sbbuf);
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id->sbbuf = NULL;
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id->sbbuf_len = 0;
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}
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if (id->seekbuf != NULL) {
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free(id->seekbuf);
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id->seekbuf = NULL;
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id->seekbuf_len = 0;
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}
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}
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