Commit ea559e7b authored by Gao Xiang's avatar Gao Xiang Committed by Greg Kroah-Hartman
parent a5876e24
/* SPDX-License-Identifier: GPL-2.0-only OR Apache-2.0 */ /* SPDX-License-Identifier: GPL-2.0-only OR Apache-2.0 */
/* /*
* EROFS (Enhanced ROM File System) on-disk format definition
*
* Copyright (C) 2017-2018 HUAWEI, Inc. * Copyright (C) 2017-2018 HUAWEI, Inc.
* http://www.huawei.com/ * http://www.huawei.com/
* Created by Gao Xiang <gaoxiang25@huawei.com> * Created by Gao Xiang <gaoxiang25@huawei.com>
...@@ -7,7 +9,6 @@ ...@@ -7,7 +9,6 @@
#ifndef __EROFS_FS_H #ifndef __EROFS_FS_H
#define __EROFS_FS_H #define __EROFS_FS_H
/* Enhanced(Extended) ROM File System */
#define EROFS_SUPER_OFFSET 1024 #define EROFS_SUPER_OFFSET 1024
/* /*
...@@ -41,7 +42,7 @@ struct erofs_super_block { ...@@ -41,7 +42,7 @@ struct erofs_super_block {
}; };
/* /*
* erofs inode datalayout: * erofs inode datalayout (i_format in on-disk inode):
* 0 - inode plain without inline data A: * 0 - inode plain without inline data A:
* inode, [xattrs], ... | ... | no-holed data * inode, [xattrs], ... | ... | no-holed data
* 1 - inode VLE compression B (legacy): * 1 - inode VLE compression B (legacy):
...@@ -187,7 +188,7 @@ static inline unsigned int erofs_xattr_entry_size(struct erofs_xattr_entry *e) ...@@ -187,7 +188,7 @@ static inline unsigned int erofs_xattr_entry_size(struct erofs_xattr_entry *e)
e->e_name_len + le16_to_cpu(e->e_value_size)); e->e_name_len + le16_to_cpu(e->e_value_size));
} }
/* available compression algorithm types */ /* available compression algorithm types (for h_algorithmtype) */
enum { enum {
Z_EROFS_COMPRESSION_LZ4 = 0, Z_EROFS_COMPRESSION_LZ4 = 0,
Z_EROFS_COMPRESSION_MAX Z_EROFS_COMPRESSION_MAX
...@@ -222,7 +223,7 @@ struct z_erofs_map_header { ...@@ -222,7 +223,7 @@ struct z_erofs_map_header {
#define Z_EROFS_VLE_LEGACY_HEADER_PADDING 8 #define Z_EROFS_VLE_LEGACY_HEADER_PADDING 8
/* /*
* Z_EROFS Variable-sized Logical Extent cluster type: * Fixed-sized output compression ondisk Logical Extent cluster type:
* 0 - literal (uncompressed) cluster * 0 - literal (uncompressed) cluster
* 1 - compressed cluster (for the head logical cluster) * 1 - compressed cluster (for the head logical cluster)
* 2 - compressed cluster (for the other logical clusters) * 2 - compressed cluster (for the other logical clusters)
......
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