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developerfc05f9d2022-05-06 13:09:53 +08001// SPDX-License-Identifier: GPL-2.0
2
3/*
4 * JFFS2 -- Journalling Flash File System, Version 2.
5 *
6 * Copyright (C) 2001-2003 Red Hat, Inc.
7 *
8 * Created by David Woodhouse <dwmw2@infradead.org>
9 *
10 * For licensing information, see the file 'LICENCE' in the
11 * jffs2 directory.
12 *
13 *
14 */
15
16#ifndef __LINUX_JFFS2_H__
17#define __LINUX_JFFS2_H__
18
19#define JFFS2_SUPER_MAGIC 0x72b6
20
21/* You must include something which defines the C99 uintXX_t types.
22 We don't do it from here because this file is used in too many
23 different environments. */
24
25/* Values we may expect to find in the 'magic' field */
26#define JFFS2_OLD_MAGIC_BITMASK 0x1984
27#define JFFS2_MAGIC_BITMASK 0x1985
28#define KSAMTIB_CIGAM_2SFFJ 0x8519 /* For detecting wrong-endian fs */
29#define JFFS2_EMPTY_BITMASK 0xffff
30#define JFFS2_DIRTY_BITMASK 0x0000
31
32/* Summary node MAGIC marker */
33#define JFFS2_SUM_MAGIC 0x02851885
34
35/* We only allow a single char for length, and 0xFF is empty flash so
36 we don't want it confused with a real length. Hence max 254.
37*/
38#define JFFS2_MAX_NAME_LEN 254
39
40/* How small can we sensibly write nodes? */
41#define JFFS2_MIN_DATA_LEN 128
42
43#define JFFS2_COMPR_NONE 0x00
44#define JFFS2_COMPR_ZERO 0x01
45#define JFFS2_COMPR_RTIME 0x02
46#define JFFS2_COMPR_RUBINMIPS 0x03
47#define JFFS2_COMPR_COPY 0x04
48#define JFFS2_COMPR_DYNRUBIN 0x05
49#define JFFS2_COMPR_ZLIB 0x06
50/* Compatibility flags. */
51#define JFFS2_COMPAT_MASK 0xc000 /* What do to if an unknown nodetype is found */
52#define JFFS2_NODE_ACCURATE 0x2000
53/* INCOMPAT: Fail to mount the filesystem */
54#define JFFS2_FEATURE_INCOMPAT 0xc000
55/* ROCOMPAT: Mount read-only */
56#define JFFS2_FEATURE_ROCOMPAT 0x8000
57/* RWCOMPAT_COPY: Mount read/write, and copy the node when it's GC'd */
58#define JFFS2_FEATURE_RWCOMPAT_COPY 0x4000
59/* RWCOMPAT_DELETE: Mount read/write, and delete the node when it's GC'd */
60#define JFFS2_FEATURE_RWCOMPAT_DELETE 0x0000
61
62#define JFFS2_NODETYPE_DIRENT (JFFS2_FEATURE_INCOMPAT | JFFS2_NODE_ACCURATE | 1)
63#define JFFS2_NODETYPE_INODE (JFFS2_FEATURE_INCOMPAT | JFFS2_NODE_ACCURATE | 2)
64#define JFFS2_NODETYPE_CLEANMARKER (JFFS2_FEATURE_RWCOMPAT_DELETE | JFFS2_NODE_ACCURATE | 3)
65#define JFFS2_NODETYPE_PADDING (JFFS2_FEATURE_RWCOMPAT_DELETE | JFFS2_NODE_ACCURATE | 4)
66
67#define JFFS2_NODETYPE_SUMMARY (JFFS2_FEATURE_RWCOMPAT_DELETE | JFFS2_NODE_ACCURATE | 6)
68
69#define JFFS2_NODETYPE_XATTR (JFFS2_FEATURE_INCOMPAT | JFFS2_NODE_ACCURATE | 8)
70#define JFFS2_NODETYPE_XREF (JFFS2_FEATURE_INCOMPAT | JFFS2_NODE_ACCURATE | 9)
71
72/* XATTR Related */
73#define JFFS2_XPREFIX_USER 1 /* for "user." */
74#define JFFS2_XPREFIX_SECURITY 2 /* for "security." */
75#define JFFS2_XPREFIX_ACL_ACCESS 3 /* for "system.posix_acl_access" */
76#define JFFS2_XPREFIX_ACL_DEFAULT 4 /* for "system.posix_acl_default" */
77#define JFFS2_XPREFIX_TRUSTED 5 /* for "trusted.*" */
78
79#define JFFS2_ACL_VERSION 0x0001
80
81// Maybe later...
82//#define JFFS2_NODETYPE_CHECKPOINT (JFFS2_FEATURE_RWCOMPAT_DELETE | JFFS2_NODE_ACCURATE | 3)
83//#define JFFS2_NODETYPE_OPTIONS (JFFS2_FEATURE_RWCOMPAT_COPY | JFFS2_NODE_ACCURATE | 4)
84
85
86#define JFFS2_INO_FLAG_PREREAD 1 /* Do read_inode() for this one at
87 mount time, don't wait for it to
88 happen later */
89#define JFFS2_INO_FLAG_USERCOMPR 2 /* User has requested a specific
90 compression type */
91
92
93/* These can go once we've made sure we've caught all uses without
94 byteswapping */
95
96typedef uint32_t jint32_t;
97
98typedef uint32_t jmode_t;
99
100typedef uint16_t jint16_t;
101
102struct jffs2_unknown_node
103{
104 /* All start like this */
105 jint16_t magic;
106 jint16_t nodetype;
107 jint32_t totlen; /* So we can skip over nodes we don't grok */
108 jint32_t hdr_crc;
109};
110
111struct jffs2_raw_dirent
112{
113 jint16_t magic;
114 jint16_t nodetype; /* == JFFS2_NODETYPE_DIRENT */
115 jint32_t totlen;
116 jint32_t hdr_crc;
117 jint32_t pino;
118 jint32_t version;
119 jint32_t ino; /* == zero for unlink */
120 jint32_t mctime;
121 uint8_t nsize;
122 uint8_t type;
123 uint8_t unused[2];
124 jint32_t node_crc;
125 jint32_t name_crc;
126 uint8_t name[0];
127};
128
129/* The JFFS2 raw inode structure: Used for storage on physical media. */
130/* The uid, gid, atime, mtime and ctime members could be longer, but
131 are left like this for space efficiency. If and when people decide
132 they really need them extended, it's simple enough to add support for
133 a new type of raw node.
134*/
135struct jffs2_raw_inode
136{
137 jint16_t magic; /* A constant magic number. */
138 jint16_t nodetype; /* == JFFS2_NODETYPE_INODE */
139 jint32_t totlen; /* Total length of this node (inc data, etc.) */
140 jint32_t hdr_crc;
141 jint32_t ino; /* Inode number. */
142 jint32_t version; /* Version number. */
143 jmode_t mode; /* The file's type or mode. */
144 jint16_t uid; /* The file's owner. */
145 jint16_t gid; /* The file's group. */
146 jint32_t isize; /* Total resultant size of this inode (used for truncations) */
147 jint32_t atime; /* Last access time. */
148 jint32_t mtime; /* Last modification time. */
149 jint32_t ctime; /* Change time. */
150 jint32_t offset; /* Where to begin to write. */
151 jint32_t csize; /* (Compressed) data size */
152 jint32_t dsize; /* Size of the node's data. (after decompression) */
153 uint8_t compr; /* Compression algorithm used */
154 uint8_t usercompr; /* Compression algorithm requested by the user */
155 jint16_t flags; /* See JFFS2_INO_FLAG_* */
156 jint32_t data_crc; /* CRC for the (compressed) data. */
157 jint32_t node_crc; /* CRC for the raw inode (excluding data) */
158 uint8_t data[0];
159};
160
161struct jffs2_raw_xattr {
162 jint16_t magic;
163 jint16_t nodetype; /* = JFFS2_NODETYPE_XATTR */
164 jint32_t totlen;
165 jint32_t hdr_crc;
166 jint32_t xid; /* XATTR identifier number */
167 jint32_t version;
168 uint8_t xprefix;
169 uint8_t name_len;
170 jint16_t value_len;
171 jint32_t data_crc;
172 jint32_t node_crc;
173 uint8_t data[0];
174} __attribute__((packed));
175
176struct jffs2_raw_xref
177{
178 jint16_t magic;
179 jint16_t nodetype; /* = JFFS2_NODETYPE_XREF */
180 jint32_t totlen;
181 jint32_t hdr_crc;
182 jint32_t ino; /* inode number */
183 jint32_t xid; /* XATTR identifier number */
184 jint32_t xseqno; /* xref sequencial number */
185 jint32_t node_crc;
186} __attribute__((packed));
187
188struct jffs2_raw_summary
189{
190 jint16_t magic;
191 jint16_t nodetype; /* = JFFS2_NODETYPE_SUMMARY */
192 jint32_t totlen;
193 jint32_t hdr_crc;
194 jint32_t sum_num; /* number of sum entries*/
195 jint32_t cln_mkr; /* clean marker size, 0 = no cleanmarker */
196 jint32_t padded; /* sum of the size of padding nodes */
197 jint32_t sum_crc; /* summary information crc */
198 jint32_t node_crc; /* node crc */
199 jint32_t sum[0]; /* inode summary info */
200};
201
202union jffs2_node_union
203{
204 struct jffs2_raw_inode i;
205 struct jffs2_raw_dirent d;
206 struct jffs2_raw_xattr x;
207 struct jffs2_raw_xref r;
208 struct jffs2_raw_summary s;
209 struct jffs2_unknown_node u;
210};
211
212/* Data payload for device nodes. */
213union jffs2_device_node {
214 jint16_t old;
215 jint32_t new;
216};
217
218#endif /* __LINUX_JFFS2_H__ */