Rename libcom32gpl.c32 to libgpl.c32
[syslinux/sherbszt.git] / libinstaller / syslxint.h
blob59e3e5ef13b9be307df98e2bce0f60b881081e0d
1 /* ----------------------------------------------------------------------- *
3 * Copyright 2007-2008 H. Peter Anvin - All Rights Reserved
4 * Copyright 2009-2011 Intel Corporation; author: H. Peter Anvin
5 * Copyright 2011 Paulo Alcantara <pcacjr@gmail.com>
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation, Inc., 53 Temple Place Ste 330,
10 * Boston MA 02111-1307, USA; either version 2 of the License, or
11 * (at your option) any later version; incorporated herein by reference.
13 * ----------------------------------------------------------------------- */
15 #ifndef SYSLXINT_H
16 #define SYSLXINT_H
18 #include "syslinux.h"
20 #if defined(__386__) || defined(__i386__) || defined(__x86_64__)
21 # define X86_MEM 1 /* Littleendian and unaligned safe */
22 #else
23 # define X86_MEM 0
24 #endif
26 #ifdef __GNUC__
27 # ifdef __MINGW32__
28 /* gcc 4.7 miscompiles packed structures in MS-bitfield mode */
29 # define PACKED __attribute__((packed,gcc_struct))
30 # else
31 # define PACKED __attribute__((packed))
32 # endif
33 #else
34 # error "Need to define PACKED for this compiler"
35 #endif
38 * Access functions for littleendian numbers, possibly misaligned.
40 static inline uint8_t get_8(const uint8_t * p)
42 return *p;
45 static inline uint16_t get_16(const uint16_t * p)
47 #if X86_MEM
48 /* Littleendian and unaligned-capable */
49 return *p;
50 #else
51 const uint8_t *pp = (const uint8_t *)p;
52 return pp[0] + ((uint16_t)pp[1] << 8);
53 #endif
56 static inline uint32_t get_32(const uint32_t * p)
58 #if X86_MEM
59 /* Littleendian and unaligned-capable */
60 return *p;
61 #else
62 const uint16_t *pp = (const uint16_t *)p;
63 return get_16(pp[0]) + (uint32_t)get_16(pp[1]);
64 #endif
67 static inline uint64_t get_64(const uint64_t * p)
69 #if X86_MEM
70 /* Littleendian and unaligned-capable */
71 return *p;
72 #else
73 const uint32_t *pp = (const uint32_t *)p;
74 return get_32(pp[0]) + (uint64_t)get_32(pp[1]);
75 #endif
78 static inline void set_8(uint8_t *p, uint8_t v)
80 *p = v;
83 static inline void set_16(uint16_t *p, uint16_t v)
85 #if X86_MEM
86 /* Littleendian and unaligned-capable */
87 *p = v;
88 #else
89 uint8_t *pp = (uint8_t *) p;
90 pp[0] = (v & 0xff);
91 pp[1] = ((v >> 8) & 0xff);
92 #endif
95 static inline void set_32(uint32_t *p, uint32_t v)
97 #if X86_MEM
98 /* Littleendian and unaligned-capable */
99 *p = v;
100 #else
101 uint8_t *pp = (uint8_t *) p;
102 pp[0] = (v & 0xff);
103 pp[1] = ((v >> 8) & 0xff);
104 pp[2] = ((v >> 16) & 0xff);
105 pp[3] = ((v >> 24) & 0xff);
106 #endif
109 static inline void set_64(uint64_t *p, uint64_t v)
111 #if X86_MEM
112 /* Littleendian and unaligned-capable */
113 *p = v;
114 #else
115 uint32_t *pp = (uint32_t *) p;
116 set_32(pp[0], v);
117 set_32(pp[1], v >> 32);
118 #endif
122 * Special handling for the MS-DOS derivative: syslinux_ldlinux
123 * is a "far" object...
125 #ifdef __MSDOS__
127 uint8_t get_8_sl(const uint8_t * p);
128 uint16_t get_16_sl(const uint16_t * p);
129 uint32_t get_32_sl(const uint32_t * p);
130 uint64_t get_64_sl(const uint64_t * p);
131 void set_8_sl(uint8_t * p, uint8_t v);
132 void set_16_sl(uint16_t * p, uint16_t v);
133 void set_32_sl(uint32_t * p, uint32_t v);
134 void set_64_sl(uint64_t * p, uint64_t v);
135 void memcpy_to_sl(void *dst, const void *src, size_t len);
136 void memcpy_from_sl(void *dst, const void *src, size_t len);
138 #else
140 /* Sane system ... */
141 #define get_8_sl(x) get_8(x)
142 #define get_16_sl(x) get_16(x)
143 #define get_32_sl(x) get_32(x)
144 #define get_64_sl(x) get_64(x)
145 #define set_8_sl(x,y) set_8(x,y)
146 #define set_16_sl(x,y) set_16(x,y)
147 #define set_32_sl(x,y) set_32(x,y)
148 #define set_64_sl(x,y) set_64(x,y)
149 #define memcpy_to_sl(d,s,l) memcpy(d,s,l)
150 #define memcpy_from_sl(d,s,l) memcpy(d,s,l)
152 #endif
154 #define LDLINUX_MAGIC 0x3eb202fe
155 #define BS_MAGIC_VER (0x1b << 9)
157 /* Patch area for disk-based installers */
158 struct patch_area {
159 uint32_t magic; /* LDLINUX_MAGIC */
160 uint32_t instance; /* Per-version value */
161 uint16_t data_sectors;
162 uint16_t adv_sectors;
163 uint32_t dwords;
164 uint32_t checksum;
165 uint16_t maxtransfer;
166 uint16_t epaoffset; /* Pointer to the extended patch area */
169 struct ext_patch_area {
170 uint16_t advptroffset; /* ADV pointers */
171 uint16_t diroffset; /* Current directory field */
172 uint16_t dirlen; /* Length of current directory field */
173 uint16_t subvoloffset; /* Subvolume field */
174 uint16_t subvollen; /* Length of subvolume field */
175 uint16_t secptroffset; /* Sector extent pointers */
176 uint16_t secptrcnt; /* Number of sector extent pointers */
178 uint16_t sect1ptr0; /* Boot sector offset of sector 1 ptr LSW */
179 uint16_t sect1ptr1; /* Boot sector offset of sector 1 ptr MSW */
180 uint16_t raidpatch; /* Boot sector RAID mode patch pointer */
183 /* Sector extent */
184 struct syslinux_extent {
185 uint64_t lba;
186 uint16_t len;
187 } PACKED;
189 /* FAT bootsector format, also used by other disk-based derivatives */
190 struct fat_boot_sector {
191 uint8_t bsJump[3];
192 char bsOemName[8];
193 uint16_t bsBytesPerSec;
194 uint8_t bsSecPerClust;
195 uint16_t bsResSectors;
196 uint8_t bsFATs;
197 uint16_t bsRootDirEnts;
198 uint16_t bsSectors;
199 uint8_t bsMedia;
200 uint16_t bsFATsecs;
201 uint16_t bsSecPerTrack;
202 uint16_t bsHeads;
203 uint32_t bsHiddenSecs;
204 uint32_t bsHugeSectors;
206 union {
207 struct {
208 uint8_t DriveNumber;
209 uint8_t Reserved1;
210 uint8_t BootSignature;
211 uint32_t VolumeID;
212 char VolumeLabel[11];
213 char FileSysType[8];
214 uint8_t Code[442];
215 } PACKED bs16;
216 struct {
217 uint32_t FATSz32;
218 uint16_t ExtFlags;
219 uint16_t FSVer;
220 uint32_t RootClus;
221 uint16_t FSInfo;
222 uint16_t BkBootSec;
223 uint8_t Reserved0[12];
224 uint8_t DriveNumber;
225 uint8_t Reserved1;
226 uint8_t BootSignature;
227 uint32_t VolumeID;
228 char VolumeLabel[11];
229 char FileSysType[8];
230 uint8_t Code[414];
231 } PACKED bs32;
232 } PACKED;
234 uint32_t bsMagic;
235 uint16_t bsForwardPtr;
236 uint16_t bsSignature;
237 } PACKED;
239 /* NTFS bootsector format */
240 struct ntfs_boot_sector {
241 uint8_t bsJump[3];
242 char bsOemName[8];
243 uint16_t bsBytesPerSec;
244 uint8_t bsSecPerClust;
245 uint16_t bsResSectors;
246 uint8_t bsZeroed_0[3];
247 uint16_t bsZeroed_1;
248 uint8_t bsMedia;
249 uint16_t bsZeroed_2;
250 uint16_t bsUnused_0;
251 uint16_t bsUnused_1;
252 uint32_t bsUnused_2;
253 uint32_t bsZeroed_3;
254 uint32_t bsUnused_3;
255 uint64_t bsTotalSectors;
256 uint64_t bsMFTLogicalClustNr;
257 uint64_t bsMFTMirrLogicalClustNr;
258 uint8_t bsClustPerMFTrecord;
259 uint8_t bsUnused_4[3];
260 uint8_t bsClustPerIdxBuf;
261 uint8_t bsUnused_5[3];
262 uint64_t bsVolSerialNr;
263 uint32_t bsUnused_6;
265 uint8_t Code[420];
267 uint32_t bsMagic;
268 uint16_t bsForwardPtr;
269 uint16_t bsSignature;
270 } PACKED;
272 #define FAT_bsHead bsJump
273 #define FAT_bsHeadLen offsetof(struct fat_boot_sector, bsBytesPerSec)
274 #define FAT_bsCode bs32.Code /* The common safe choice */
275 #define FAT_bsCodeLen (offsetof(struct fat_boot_sector, bsSignature) - \
276 offsetof(struct fat_boot_sector, FAT_bsCode))
278 #define NTFS_bsHead bsJump
279 #define NTFS_bsHeadLen offsetof(struct ntfs_boot_sector, bsOemName)
280 #define NTFS_bsCode Code
281 #define NTFS_bsCodeLen (offsetof(struct ntfs_boot_sector, bsSignature) - \
282 offsetof(struct ntfs_boot_sector, NTFS_bsCode))
284 /* Check if there are specific zero fields in an NTFS boot sector */
285 static inline int ntfs_check_zero_fields(const struct ntfs_boot_sector *sb)
287 return !sb->bsResSectors && (!sb->bsZeroed_0[0] && !sb->bsZeroed_0[1] &&
288 !sb->bsZeroed_0[2]) && !sb->bsZeroed_1 && !sb->bsZeroed_2 &&
289 !sb->bsZeroed_3;
292 static inline int ntfs_check_sb_fields(const struct ntfs_boot_sector *sb)
294 return ntfs_check_zero_fields(sb) &&
295 (!memcmp(sb->bsOemName, "NTFS ", 8) ||
296 !memcmp(sb->bsOemName, "MSWIN4.0", 8) ||
297 !memcmp(sb->bsOemName, "MSWIN4.1", 8));
300 static inline int fat_check_sb_fields(const struct fat_boot_sector *sb)
302 return sb->bsResSectors && sb->bsFATs &&
303 (!memcmp(sb->bs16.FileSysType, "FAT12 ", 8) ||
304 !memcmp(sb->bs16.FileSysType, "FAT16 ", 8) ||
305 !memcmp(sb->bs16.FileSysType, "FAT ", 8) ||
306 !memcmp(sb->bs32.FileSysType, "FAT32 ", 8));
309 #endif /* SYSLXINT_H */