exFAT file system implementation library.
Free exFAT implementation.
- Copyright (C) 2010-2015 Andrew Nayenko
+ Copyright (C) 2010-2018 Andrew Nayenko
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
clusters);
return 0;
}
- if (CLUSTER_INVALID(rootdir_cluster))
+ if (CLUSTER_INVALID(*ef->sb, rootdir_cluster))
{
exfat_error("bad cluster %#x while reading root directory",
rootdir_cluster);
return commit_super_block(ef);
}
+static void exfat_free(struct exfat* ef)
+{
+ exfat_close(ef->dev); /* first of all, close the descriptor */
+ ef->dev = NULL; /* struct exfat_dev is freed by exfat_close() */
+ free(ef->root);
+ ef->root = NULL;
+ free(ef->zero_cluster);
+ ef->zero_cluster = NULL;
+ free(ef->cmap.chunk);
+ ef->cmap.chunk = NULL;
+ free(ef->upcase);
+ ef->upcase = NULL;
+ free(ef->sb);
+ ef->sb = NULL;
+}
+
int exfat_mount(struct exfat* ef, const char* spec, const char* options)
{
int rc;
ef->sb = malloc(sizeof(struct exfat_super_block));
if (ef->sb == NULL)
{
- exfat_close(ef->dev);
exfat_error("failed to allocate memory for the super block");
+ exfat_free(ef);
return -ENOMEM;
}
memset(ef->sb, 0, sizeof(struct exfat_super_block));
if (exfat_pread(ef->dev, ef->sb, sizeof(struct exfat_super_block), 0) < 0)
{
- exfat_close(ef->dev);
- free(ef->sb);
exfat_error("failed to read boot sector");
+ exfat_free(ef);
return -EIO;
}
if (memcmp(ef->sb->oem_name, "EXFAT ", 8) != 0)
{
- exfat_close(ef->dev);
- free(ef->sb);
exfat_error("exFAT file system is not found");
+ exfat_free(ef);
return -EIO;
}
/* sector cannot be smaller than 512 bytes */
if (ef->sb->sector_bits < 9)
{
- exfat_close(ef->dev);
exfat_error("too small sector size: 2^%hhd", ef->sb->sector_bits);
- free(ef->sb);
+ exfat_free(ef);
return -EIO;
}
/* officially exFAT supports cluster size up to 32 MB */
if ((int) ef->sb->sector_bits + (int) ef->sb->spc_bits > 25)
{
- exfat_close(ef->dev);
exfat_error("too big cluster size: 2^(%hhd+%hhd)",
ef->sb->sector_bits, ef->sb->spc_bits);
- free(ef->sb);
+ exfat_free(ef);
return -EIO;
}
ef->zero_cluster = malloc(CLUSTER_SIZE(*ef->sb));
if (ef->zero_cluster == NULL)
{
- exfat_close(ef->dev);
- free(ef->sb);
exfat_error("failed to allocate zero sector");
+ exfat_free(ef);
return -ENOMEM;
}
/* use zero_cluster as a temporary buffer for VBR checksum verification */
if (!verify_vbr_checksum(ef->dev, ef->zero_cluster, SECTOR_SIZE(*ef->sb)))
{
- free(ef->zero_cluster);
- exfat_close(ef->dev);
- free(ef->sb);
+ exfat_free(ef);
return -EIO;
}
memset(ef->zero_cluster, 0, CLUSTER_SIZE(*ef->sb));
if (ef->sb->version.major != 1 || ef->sb->version.minor != 0)
{
- free(ef->zero_cluster);
- exfat_close(ef->dev);
exfat_error("unsupported exFAT version: %hhu.%hhu",
ef->sb->version.major, ef->sb->version.minor);
- free(ef->sb);
+ exfat_free(ef);
return -EIO;
}
if (ef->sb->fat_count != 1)
{
- free(ef->zero_cluster);
- exfat_close(ef->dev);
exfat_error("unsupported FAT count: %hhu", ef->sb->fat_count);
- free(ef->sb);
+ exfat_free(ef);
return -EIO;
}
if (le64_to_cpu(ef->sb->sector_count) * SECTOR_SIZE(*ef->sb) >
{
/* this can cause I/O errors later but we don't fail mounting to let
user rescue data */
- exfat_warn("file system is larger than underlying device: "
- "%"PRIu64" > %"PRIu64,
- le64_to_cpu(ef->sb->sector_count) * SECTOR_SIZE(*ef->sb),
+ exfat_warn("file system in sectors is larger than device: "
+ "%"PRIu64" * %d > %"PRIu64,
+ le64_to_cpu(ef->sb->sector_count), SECTOR_SIZE(*ef->sb),
exfat_get_size(ef->dev));
}
+ if ((off_t) le32_to_cpu(ef->sb->cluster_count) * CLUSTER_SIZE(*ef->sb) >
+ exfat_get_size(ef->dev))
+ {
+ exfat_error("file system in clusters is larger than device: "
+ "%u * %d > %"PRIu64,
+ le32_to_cpu(ef->sb->cluster_count), CLUSTER_SIZE(*ef->sb),
+ exfat_get_size(ef->dev));
+ exfat_free(ef);
+ return -EIO;
+ }
ef->root = malloc(sizeof(struct exfat_node));
if (ef->root == NULL)
{
- free(ef->zero_cluster);
- exfat_close(ef->dev);
- free(ef->sb);
exfat_error("failed to allocate root node");
+ exfat_free(ef);
return -ENOMEM;
}
memset(ef->root, 0, sizeof(struct exfat_node));
- ef->root->flags = EXFAT_ATTRIB_DIR;
+ ef->root->attrib = EXFAT_ATTRIB_DIR;
ef->root->start_cluster = le32_to_cpu(ef->sb->rootdir_cluster);
ef->root->fptr_cluster = ef->root->start_cluster;
ef->root->name[0] = cpu_to_le16('\0');
ef->root->size = rootdir_size(ef);
if (ef->root->size == 0)
{
- free(ef->root);
- free(ef->zero_cluster);
- exfat_close(ef->dev);
- free(ef->sb);
+ exfat_free(ef);
return -EIO;
}
/* exFAT does not have time attributes for the root directory */
error:
exfat_put_node(ef, ef->root);
exfat_reset_cache(ef);
- free(ef->root);
- free(ef->zero_cluster);
- exfat_close(ef->dev);
- free(ef->sb);
+ exfat_free(ef);
return -EIO;
}
exfat_flush(ef); /* ignore return code */
exfat_put_node(ef, ef->root);
exfat_reset_cache(ef);
- free(ef->root);
- ef->root = NULL;
finalize_super_block(ef);
- exfat_close(ef->dev); /* close descriptor immediately after fsync */
- ef->dev = NULL;
- free(ef->zero_cluster);
- ef->zero_cluster = NULL;
- free(ef->cmap.chunk);
- ef->cmap.chunk = NULL;
- free(ef->sb);
- ef->sb = NULL;
- free(ef->upcase);
- ef->upcase = NULL;
- ef->upcase_chars = 0;
+ exfat_free(ef); /* will close the descriptor */
}