1 /*
2  * volume_id - reads filesystem label and uuid
3  *
4  * Copyright (C) 2004 Kay Sievers <kay.sievers@vrfy.org>
5  *
6  *	This library is free software; you can redistribute it and/or
7  *	modify it under the terms of the GNU Lesser General Public
8  *	License as published by the Free Software Foundation; either
9  *	version 2.1 of the License, or (at your option) any later version.
10  *
11  *	This library is distributed in the hope that it will be useful,
12  *	but WITHOUT ANY WARRANTY; without even the implied warranty of
13  *	MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
14  *	Lesser General Public License for more details.
15  *
16  *	You should have received a copy of the GNU Lesser General Public
17  *	License along with this library; if not, write to the Free Software
18  *	Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
19  */
20 
21 //kbuild:### lib-$(CONFIG_FEATURE_VOLUMEID_UFS) += ufs.o
22 
23 //config:
24 //config:### config FEATURE_VOLUMEID_UFS
25 //config:###	bool "ufs filesystem"
26 //config:###	default y
27 //config:###	depends on VOLUMEID
28 //config:###	help
29 //config:###	  TODO
30 //config:
31 
32 #include "volume_id_internal.h"
33 
34 struct ufs_super_block {
35 	uint32_t	fs_link;
36 	uint32_t	fs_rlink;
37 	uint32_t	fs_sblkno;
38 	uint32_t	fs_cblkno;
39 	uint32_t	fs_iblkno;
40 	uint32_t	fs_dblkno;
41 	uint32_t	fs_cgoffset;
42 	uint32_t	fs_cgmask;
43 	uint32_t	fs_time;
44 	uint32_t	fs_size;
45 	uint32_t	fs_dsize;
46 	uint32_t	fs_ncg;
47 	uint32_t	fs_bsize;
48 	uint32_t	fs_fsize;
49 	uint32_t	fs_frag;
50 	uint32_t	fs_minfree;
51 	uint32_t	fs_rotdelay;
52 	uint32_t	fs_rps;
53 	uint32_t	fs_bmask;
54 	uint32_t	fs_fmask;
55 	uint32_t	fs_bshift;
56 	uint32_t	fs_fshift;
57 	uint32_t	fs_maxcontig;
58 	uint32_t	fs_maxbpg;
59 	uint32_t	fs_fragshift;
60 	uint32_t	fs_fsbtodb;
61 	uint32_t	fs_sbsize;
62 	uint32_t	fs_csmask;
63 	uint32_t	fs_csshift;
64 	uint32_t	fs_nindir;
65 	uint32_t	fs_inopb;
66 	uint32_t	fs_nspf;
67 	uint32_t	fs_optim;
68 	uint32_t	fs_npsect_state;
69 	uint32_t	fs_interleave;
70 	uint32_t	fs_trackskew;
71 	uint32_t	fs_id[2];
72 	uint32_t	fs_csaddr;
73 	uint32_t	fs_cssize;
74 	uint32_t	fs_cgsize;
75 	uint32_t	fs_ntrak;
76 	uint32_t	fs_nsect;
77 	uint32_t	fs_spc;
78 	uint32_t	fs_ncyl;
79 	uint32_t	fs_cpg;
80 	uint32_t	fs_ipg;
81 	uint32_t	fs_fpg;
82 	struct ufs_csum {
83 		uint32_t	cs_ndir;
84 		uint32_t	cs_nbfree;
85 		uint32_t	cs_nifree;
86 		uint32_t	cs_nffree;
87 	} PACKED fs_cstotal;
88 	int8_t		fs_fmod;
89 	int8_t		fs_clean;
90 	int8_t		fs_ronly;
91 	int8_t		fs_flags;
92 	union {
93 		struct {
94 			int8_t	fs_fsmnt[512];
95 			uint32_t	fs_cgrotor;
96 			uint32_t	fs_csp[31];
97 			uint32_t	fs_maxcluster;
98 			uint32_t	fs_cpc;
99 			uint16_t	fs_opostbl[16][8];
100 		} PACKED fs_u1;
101 		struct {
102 			int8_t		fs_fsmnt[468];
103 			uint8_t		fs_volname[32];
104 			uint64_t	fs_swuid;
105 			int32_t		fs_pad;
106 			uint32_t	fs_cgrotor;
107 			uint32_t	fs_ocsp[28];
108 			uint32_t	fs_contigdirs;
109 			uint32_t	fs_csp;
110 			uint32_t	fs_maxcluster;
111 			uint32_t	fs_active;
112 			int32_t		fs_old_cpc;
113 			int32_t		fs_maxbsize;
114 			int64_t		fs_sparecon64[17];
115 			int64_t		fs_sblockloc;
116 			struct ufs2_csum_total {
117 				uint64_t	cs_ndir;
118 				uint64_t	cs_nbfree;
119 				uint64_t	cs_nifree;
120 				uint64_t	cs_nffree;
121 				uint64_t	cs_numclusters;
122 				uint64_t	cs_spare[3];
123 			} PACKED fs_cstotal;
124 			struct ufs_timeval {
125 				int32_t		tv_sec;
126 				int32_t		tv_usec;
127 			} PACKED fs_time;
128 			int64_t		fs_size;
129 			int64_t		fs_dsize;
130 			uint64_t	fs_csaddr;
131 			int64_t		fs_pendingblocks;
132 			int32_t		fs_pendinginodes;
133 		} PACKED fs_u2;
134 	}  fs_u11;
135 	union {
136 		struct {
137 			int32_t		fs_sparecon[53];
138 			int32_t		fs_reclaim;
139 			int32_t		fs_sparecon2[1];
140 			int32_t		fs_state;
141 			uint32_t	fs_qbmask[2];
142 			uint32_t	fs_qfmask[2];
143 		} PACKED fs_sun;
144 		struct {
145 			int32_t		fs_sparecon[53];
146 			int32_t		fs_reclaim;
147 			int32_t		fs_sparecon2[1];
148 			uint32_t	fs_npsect;
149 			uint32_t	fs_qbmask[2];
150 			uint32_t	fs_qfmask[2];
151 		} PACKED fs_sunx86;
152 		struct {
153 			int32_t		fs_sparecon[50];
154 			int32_t		fs_contigsumsize;
155 			int32_t		fs_maxsymlinklen;
156 			int32_t		fs_inodefmt;
157 			uint32_t	fs_maxfilesize[2];
158 			uint32_t	fs_qbmask[2];
159 			uint32_t	fs_qfmask[2];
160 			int32_t		fs_state;
161 		} PACKED fs_44;
162 	} fs_u2;
163 	int32_t		fs_postblformat;
164 	int32_t		fs_nrpos;
165 	int32_t		fs_postbloff;
166 	int32_t		fs_rotbloff;
167 	uint32_t	fs_magic;
168 	uint8_t		fs_space[1];
169 } PACKED;
170 
171 #define UFS_MAGIC			0x00011954
172 #define UFS2_MAGIC			0x19540119
173 #define UFS_MAGIC_FEA			0x00195612
174 #define UFS_MAGIC_LFN			0x00095014
175 
volume_id_probe_ufs(struct volume_id * id,uint64_t off)176 int FAST_FUNC volume_id_probe_ufs(struct volume_id *id, uint64_t off)
177 {
178 	static const short offsets[] = { 0, 8, 64, 256 };
179 
180 	uint32_t magic;
181 	unsigned i;
182 	struct ufs_super_block *ufs;
183 
184 	dbg("probing at offset 0x%llx", (unsigned long long) off);
185 
186 	for (i = 0; i < ARRAY_SIZE(offsets); i++) {
187 		ufs = volume_id_get_buffer(id, off + (offsets[i] * 0x400), 0x800);
188 		if (ufs == NULL)
189 			return -1;
190 
191 		dbg("offset 0x%x", offsets[i] * 0x400);
192 		magic = ufs->fs_magic;
193 		if ((magic == cpu_to_be32(UFS_MAGIC))
194 		 || (magic == cpu_to_be32(UFS2_MAGIC))
195 		 || (magic == cpu_to_be32(UFS_MAGIC_FEA))
196 		 || (magic == cpu_to_be32(UFS_MAGIC_LFN))
197 		) {
198 			dbg("magic 0x%08x(be)", magic);
199 			goto found;
200 		}
201 		if ((magic == cpu_to_le32(UFS_MAGIC))
202 		 || (magic == cpu_to_le32(UFS2_MAGIC))
203 		 || (magic == cpu_to_le32(UFS_MAGIC_FEA))
204 		 || (magic == cpu_to_le32(UFS_MAGIC_LFN))
205 		) {
206 			dbg("magic 0x%08x(le)", magic);
207 			goto found;
208 		}
209 	}
210 	return -1;
211 
212  found:
213 //	volume_id_set_usage(id, VOLUME_ID_FILESYSTEM);
214 //	id->type = "ufs";
215 
216 	return 0;
217 }
218