This file is indexed.

/usr/include/xfs/xfs_arch.h is in xfslibs-dev 4.9.0+nmu1.

This file is owned by root:root, with mode 0o644.

The actual contents of the file can be viewed below.

  1
  2
  3
  4
  5
  6
  7
  8
  9
 10
 11
 12
 13
 14
 15
 16
 17
 18
 19
 20
 21
 22
 23
 24
 25
 26
 27
 28
 29
 30
 31
 32
 33
 34
 35
 36
 37
 38
 39
 40
 41
 42
 43
 44
 45
 46
 47
 48
 49
 50
 51
 52
 53
 54
 55
 56
 57
 58
 59
 60
 61
 62
 63
 64
 65
 66
 67
 68
 69
 70
 71
 72
 73
 74
 75
 76
 77
 78
 79
 80
 81
 82
 83
 84
 85
 86
 87
 88
 89
 90
 91
 92
 93
 94
 95
 96
 97
 98
 99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
/*
 * Copyright (c) 2000-2002,2005 Silicon Graphics, Inc.
 * All Rights Reserved.
 *
 * 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 the Free Software Foundation.
 *
 * This program is distributed in the hope that it would be useful,
 * but WITHOUT ANY WARRANTY; without even the implied warranty of
 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
 * GNU General Public License for more details.
 *
 * You should have received a copy of the GNU General Public License
 * along with this program; if not, write the Free Software Foundation,
 * Inc.,  51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
 */
#ifndef __XFS_ARCH_H__
#define __XFS_ARCH_H__

#if __BYTE_ORDER == __BIG_ENDIAN
#define	XFS_NATIVE_HOST	1
#else
#undef XFS_NATIVE_HOST
#endif

#ifdef __CHECKER__
#define __bitwise		__attribute__((bitwise))
#define __force			__attribute__((force))
#else
#define __bitwise
#define __force
#endif

typedef __u16	__bitwise	__le16;
typedef __u32	__bitwise	__le32;
typedef __u64	__bitwise	__le64;

typedef __u16	__bitwise	__be16;
typedef __u32	__bitwise	__be32;
typedef __u64	__bitwise	__be64;

/*
 * Casts are necessary for constants, because we never know how for sure
 * how U/UL/ULL map to __u16, __u32, __u64. At least not in a portable way.
 */
#define ___swab16(x) \
({ \
	__u16 __x = (x); \
	((__u16)( \
		(((__u16)(__x) & (__u16)0x00ffU) << 8) | \
		(((__u16)(__x) & (__u16)0xff00U) >> 8) )); \
})

#define ___swab32(x) \
({ \
	__u32 __x = (x); \
	((__u32)( \
		(((__u32)(__x) & (__u32)0x000000ffUL) << 24) | \
		(((__u32)(__x) & (__u32)0x0000ff00UL) <<  8) | \
		(((__u32)(__x) & (__u32)0x00ff0000UL) >>  8) | \
		(((__u32)(__x) & (__u32)0xff000000UL) >> 24) )); \
})

#define ___swab64(x) \
({ \
	__u64 __x = (x); \
	((__u64)( \
		(__u64)(((__u64)(__x) & (__u64)0x00000000000000ffULL) << 56) | \
		(__u64)(((__u64)(__x) & (__u64)0x000000000000ff00ULL) << 40) | \
		(__u64)(((__u64)(__x) & (__u64)0x0000000000ff0000ULL) << 24) | \
		(__u64)(((__u64)(__x) & (__u64)0x00000000ff000000ULL) <<  8) | \
		(__u64)(((__u64)(__x) & (__u64)0x000000ff00000000ULL) >>  8) | \
		(__u64)(((__u64)(__x) & (__u64)0x0000ff0000000000ULL) >> 24) | \
		(__u64)(((__u64)(__x) & (__u64)0x00ff000000000000ULL) >> 40) | \
		(__u64)(((__u64)(__x) & (__u64)0xff00000000000000ULL) >> 56) )); \
})

#define ___constant_swab16(x) \
	((__u16)( \
		(((__u16)(x) & (__u16)0x00ffU) << 8) | \
		(((__u16)(x) & (__u16)0xff00U) >> 8) ))
#define ___constant_swab32(x) \
	((__u32)( \
		(((__u32)(x) & (__u32)0x000000ffUL) << 24) | \
		(((__u32)(x) & (__u32)0x0000ff00UL) <<  8) | \
		(((__u32)(x) & (__u32)0x00ff0000UL) >>  8) | \
		(((__u32)(x) & (__u32)0xff000000UL) >> 24) ))
#define ___constant_swab64(x) \
	((__u64)( \
		(__u64)(((__u64)(x) & (__u64)0x00000000000000ffULL) << 56) | \
		(__u64)(((__u64)(x) & (__u64)0x000000000000ff00ULL) << 40) | \
		(__u64)(((__u64)(x) & (__u64)0x0000000000ff0000ULL) << 24) | \
		(__u64)(((__u64)(x) & (__u64)0x00000000ff000000ULL) <<  8) | \
		(__u64)(((__u64)(x) & (__u64)0x000000ff00000000ULL) >>  8) | \
		(__u64)(((__u64)(x) & (__u64)0x0000ff0000000000ULL) >> 24) | \
		(__u64)(((__u64)(x) & (__u64)0x00ff000000000000ULL) >> 40) | \
		(__u64)(((__u64)(x) & (__u64)0xff00000000000000ULL) >> 56) ))

/*
 * provide defaults when no architecture-specific optimization is detected
 */
#ifndef __arch__swab16
#  define __arch__swab16(x) ({ __u16 __tmp = (x) ; ___swab16(__tmp); })
#endif
#ifndef __arch__swab32
#  define __arch__swab32(x) ({ __u32 __tmp = (x) ; ___swab32(__tmp); })
#endif
#ifndef __arch__swab64
#  define __arch__swab64(x) ({ __u64 __tmp = (x) ; ___swab64(__tmp); })
#endif

#ifndef __arch__swab16p
#  define __arch__swab16p(x) __arch__swab16(*(x))
#endif
#ifndef __arch__swab32p
#  define __arch__swab32p(x) __arch__swab32(*(x))
#endif
#ifndef __arch__swab64p
#  define __arch__swab64p(x) __arch__swab64(*(x))
#endif

#ifndef __arch__swab16s
#  define __arch__swab16s(x) do { *(x) = __arch__swab16p((x)); } while (0)
#endif
#ifndef __arch__swab32s
#  define __arch__swab32s(x) do { *(x) = __arch__swab32p((x)); } while (0)
#endif
#ifndef __arch__swab64s
#  define __arch__swab64s(x) do { *(x) = __arch__swab64p((x)); } while (0)
#endif


/*
 * Allow constant folding
 */
#  define __swab16(x) \
(__builtin_constant_p((__u16)(x)) ? \
 ___constant_swab16((x)) : \
 __fswab16((x)))
#  define __swab32(x) \
(__builtin_constant_p((__u32)(x)) ? \
 ___constant_swab32((x)) : \
 __fswab32((x)))
#  define __swab64(x) \
(__builtin_constant_p((__u64)(x)) ? \
 ___constant_swab64((x)) : \
 __fswab64((x)))


static __inline__ __u16 __fswab16(__u16 x)
{
	return (__extension__ __arch__swab16(x));
}
static __inline__ __u16 __swab16p(__u16 *x)
{
	return (__extension__ __arch__swab16p(x));
}
static __inline__ void __swab16s(__u16 *addr)
{
	(__extension__ ({__arch__swab16s(addr);}));
}

static __inline__ __u32 __fswab32(__u32 x)
{
	return (__extension__ __arch__swab32(x));
}
static __inline__ __u32 __swab32p(__u32 *x)
{
	return (__extension__ __arch__swab32p(x));
}
static __inline__ void __swab32s(__u32 *addr)
{
	(__extension__ ({__arch__swab32s(addr);}));
}

static __inline__ __u64 __fswab64(__u64 x)
{
#  ifdef __SWAB_64_THRU_32__
	__u32 h = x >> 32;
	__u32 l = x & ((1ULL<<32)-1);
	return (((__u64)__swab32(l)) << 32) | ((__u64)(__swab32(h)));
#  else
	return (__extension__ __arch__swab64(x));
#  endif
}
static __inline__ __u64 __swab64p(__u64 *x)
{
	return (__extension__ __arch__swab64p(x));
}
static __inline__ void __swab64s(__u64 *addr)
{
	(__extension__ ({__arch__swab64s(addr);}));
}

#ifdef XFS_NATIVE_HOST
#define cpu_to_be16(val)	((__force __be16)(__u16)(val))
#define cpu_to_be32(val)	((__force __be32)(__u32)(val))
#define cpu_to_be64(val)	((__force __be64)(__u64)(val))
#define be16_to_cpu(val)	((__force __u16)(__be16)(val))
#define be32_to_cpu(val)	((__force __u32)(__be32)(val))
#define be64_to_cpu(val)	((__force __u64)(__be64)(val))

#define cpu_to_le32(val)	((__force __be32)__swab32((__u32)(val)))
#define le32_to_cpu(val)	(__swab32((__force __u32)(__le32)(val)))

#define __constant_cpu_to_le32(val)	\
	((__force __le32)___constant_swab32((__u32)(val)))
#define __constant_cpu_to_be32(val)	\
	((__force __be32)(__u32)(val))
#else
#define cpu_to_be16(val)	((__force __be16)__swab16((__u16)(val)))
#define cpu_to_be32(val)	((__force __be32)__swab32((__u32)(val)))
#define cpu_to_be64(val)	((__force __be64)__swab64((__u64)(val)))
#define be16_to_cpu(val)	(__swab16((__force __u16)(__be16)(val)))
#define be32_to_cpu(val)	(__swab32((__force __u32)(__be32)(val)))
#define be64_to_cpu(val)	(__swab64((__force __u64)(__be64)(val)))

#define cpu_to_le32(val)	((__force __le32)(__u32)(val))
#define le32_to_cpu(val)	((__force __u32)(__le32)(val))

#define __constant_cpu_to_le32(val)	\
	((__force __le32)(__u32)(val))
#define __constant_cpu_to_be32(val)	\
	((__force __be32)___constant_swab32((__u32)(val)))
#endif

static inline void be16_add_cpu(__be16 *a, __s16 b)
{
	*a = cpu_to_be16(be16_to_cpu(*a) + b);
}

static inline void be32_add_cpu(__be32 *a, __s32 b)
{
	*a = cpu_to_be32(be32_to_cpu(*a) + b);
}

static inline void be64_add_cpu(__be64 *a, __s64 b)
{
	*a = cpu_to_be64(be64_to_cpu(*a) + b);
}

static inline __uint16_t get_unaligned_be16(void *p)
{
	__uint8_t *__p = p;
	return __p[0] << 8 | __p[1];
}

static inline __uint32_t get_unaligned_be32(void *p)
{
	__uint8_t *__p = p;
        return __p[0] << 24 | __p[1] << 16 | __p[2] << 8 | __p[3];
}

static inline __uint64_t get_unaligned_be64(void *p)
{
	return (__uint64_t)get_unaligned_be32(p) << 32 |
			   get_unaligned_be32(p + 4);
}

static inline void put_unaligned_be16(__uint16_t val, void *p)
{
	__uint8_t *__p = p;
	*__p++ = val >> 8;
	*__p++ = val;
}

static inline void put_unaligned_be32(__uint32_t val, void *p)
{
	__uint8_t *__p = p;
	put_unaligned_be16(val >> 16, __p);
	put_unaligned_be16(val, __p + 2);
}

static inline void put_unaligned_be64(__uint64_t val, void *p)
{
	put_unaligned_be32(val >> 32, p);
	put_unaligned_be32(val, p + 4);
}

#endif	/* __XFS_ARCH_H__ */