[615] | 1 | #ifndef __LINUX_BITMAP_H
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| 2 | #define __LINUX_BITMAP_H
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| 3 |
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| 4 | #ifndef __ASSEMBLY__
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| 5 |
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| 6 | #include <linux/types.h>
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| 7 | #include <linux/bitops.h>
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| 8 | #include <linux/string.h>
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| 9 | #include <linux/kernel.h>
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| 10 |
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| 11 | /*
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| 12 | * bitmaps provide bit arrays that consume one or more unsigned
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| 13 | * longs. The bitmap interface and available operations are listed
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| 14 | * here, in bitmap.h
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| 15 | *
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| 16 | * Function implementations generic to all architectures are in
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| 17 | * lib/bitmap.c. Functions implementations that are architecture
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| 18 | * specific are in various include/asm-<arch>/bitops.h headers
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| 19 | * and other arch/<arch> specific files.
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| 20 | *
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| 21 | * See lib/bitmap.c for more details.
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| 22 | */
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| 23 |
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| 24 | /*
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| 25 | * The available bitmap operations and their rough meaning in the
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| 26 | * case that the bitmap is a single unsigned long are thus:
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| 27 | *
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| 28 | * Note that nbits should be always a compile time evaluable constant.
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| 29 | * Otherwise many inlines will generate horrible code.
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| 30 | *
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| 31 | * bitmap_zero(dst, nbits) *dst = 0UL
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| 32 | * bitmap_fill(dst, nbits) *dst = ~0UL
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| 33 | * bitmap_copy(dst, src, nbits) *dst = *src
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| 34 | * bitmap_and(dst, src1, src2, nbits) *dst = *src1 & *src2
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| 35 | * bitmap_or(dst, src1, src2, nbits) *dst = *src1 | *src2
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| 36 | * bitmap_xor(dst, src1, src2, nbits) *dst = *src1 ^ *src2
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| 37 | * bitmap_andnot(dst, src1, src2, nbits) *dst = *src1 & ~(*src2)
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| 38 | * bitmap_complement(dst, src, nbits) *dst = ~(*src)
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| 39 | * bitmap_equal(src1, src2, nbits) Are *src1 and *src2 equal?
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| 40 | * bitmap_intersects(src1, src2, nbits) Do *src1 and *src2 overlap?
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| 41 | * bitmap_subset(src1, src2, nbits) Is *src1 a subset of *src2?
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| 42 | * bitmap_empty(src, nbits) Are all bits zero in *src?
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| 43 | * bitmap_full(src, nbits) Are all bits set in *src?
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| 44 | * bitmap_weight(src, nbits) Hamming Weight: number set bits
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| 45 | * bitmap_set(dst, pos, nbits) Set specified bit area
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| 46 | * bitmap_clear(dst, pos, nbits) Clear specified bit area
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| 47 | * bitmap_find_next_zero_area(buf, len, pos, n, mask) Find bit free area
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| 48 | * bitmap_shift_right(dst, src, n, nbits) *dst = *src >> n
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| 49 | * bitmap_shift_left(dst, src, n, nbits) *dst = *src << n
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| 50 | * bitmap_remap(dst, src, old, new, nbits) *dst = map(old, new)(src)
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| 51 | * bitmap_bitremap(oldbit, old, new, nbits) newbit = map(old, new)(oldbit)
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| 52 | * bitmap_onto(dst, orig, relmap, nbits) *dst = orig relative to relmap
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| 53 | * bitmap_fold(dst, orig, sz, nbits) dst bits = orig bits mod sz
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| 54 | * bitmap_scnprintf(buf, len, src, nbits) Print bitmap src to buf
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| 55 | * bitmap_parse(buf, buflen, dst, nbits) Parse bitmap dst from kernel buf
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| 56 | * bitmap_parse_user(ubuf, ulen, dst, nbits) Parse bitmap dst from user buf
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| 57 | * bitmap_scnlistprintf(buf, len, src, nbits) Print bitmap src as list to buf
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| 58 | * bitmap_parselist(buf, dst, nbits) Parse bitmap dst from kernel buf
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| 59 | * bitmap_parselist_user(buf, dst, nbits) Parse bitmap dst from user buf
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| 60 | * bitmap_find_free_region(bitmap, bits, order) Find and allocate bit region
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| 61 | * bitmap_release_region(bitmap, pos, order) Free specified bit region
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| 62 | * bitmap_allocate_region(bitmap, pos, order) Allocate specified bit region
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| 63 | */
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| 64 |
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| 65 | /*
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| 66 | * Also the following operations in asm/bitops.h apply to bitmaps.
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| 67 | *
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| 68 | * set_bit(bit, addr) *addr |= bit
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| 69 | * clear_bit(bit, addr) *addr &= ~bit
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| 70 | * change_bit(bit, addr) *addr ^= bit
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| 71 | * test_bit(bit, addr) Is bit set in *addr?
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| 72 | * test_and_set_bit(bit, addr) Set bit and return old value
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| 73 | * test_and_clear_bit(bit, addr) Clear bit and return old value
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| 74 | * test_and_change_bit(bit, addr) Change bit and return old value
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| 75 | * find_first_zero_bit(addr, nbits) Position first zero bit in *addr
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| 76 | * find_first_bit(addr, nbits) Position first set bit in *addr
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| 77 | * find_next_zero_bit(addr, nbits, bit) Position next zero bit in *addr >= bit
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| 78 | * find_next_bit(addr, nbits, bit) Position next set bit in *addr >= bit
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| 79 | */
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| 80 |
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| 81 | /*
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| 82 | * The DECLARE_BITMAP(name,bits) macro, in linux/types.h, can be used
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| 83 | * to declare an array named 'name' of just enough unsigned longs to
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| 84 | * contain all bit positions from 0 to 'bits' - 1.
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| 85 | */
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| 86 |
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| 87 | /*
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| 88 | * lib/bitmap.c provides these functions:
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| 89 | */
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| 90 |
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| 91 | extern int __bitmap_empty(const unsigned long *bitmap, int bits);
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| 92 | extern int __bitmap_full(const unsigned long *bitmap, int bits);
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| 93 | extern int __bitmap_equal(const unsigned long *bitmap1,
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| 94 | const unsigned long *bitmap2, int bits);
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| 95 | extern void __bitmap_complement(unsigned long *dst, const unsigned long *src,
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| 96 | int bits);
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| 97 | extern void __bitmap_shift_right(unsigned long *dst,
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| 98 | const unsigned long *src, int shift, int bits);
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| 99 | extern void __bitmap_shift_left(unsigned long *dst,
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| 100 | const unsigned long *src, int shift, int bits);
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| 101 | extern int __bitmap_and(unsigned long *dst, const unsigned long *bitmap1,
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| 102 | const unsigned long *bitmap2, int bits);
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| 103 | extern void __bitmap_or(unsigned long *dst, const unsigned long *bitmap1,
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| 104 | const unsigned long *bitmap2, int bits);
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| 105 | extern void __bitmap_xor(unsigned long *dst, const unsigned long *bitmap1,
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| 106 | const unsigned long *bitmap2, int bits);
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| 107 | extern int __bitmap_andnot(unsigned long *dst, const unsigned long *bitmap1,
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| 108 | const unsigned long *bitmap2, int bits);
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| 109 | extern int __bitmap_intersects(const unsigned long *bitmap1,
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| 110 | const unsigned long *bitmap2, int bits);
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| 111 | extern int __bitmap_subset(const unsigned long *bitmap1,
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| 112 | const unsigned long *bitmap2, int bits);
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| 113 | extern int __bitmap_weight(const unsigned long *bitmap, int bits);
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| 114 |
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| 115 | extern void bitmap_set(unsigned long *map, int i, int len);
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| 116 | extern void bitmap_clear(unsigned long *map, int start, int nr);
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| 117 | extern unsigned long bitmap_find_next_zero_area(unsigned long *map,
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| 118 | unsigned long size,
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| 119 | unsigned long start,
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| 120 | unsigned int nr,
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| 121 | unsigned long align_mask);
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| 122 |
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| 123 | extern int bitmap_scnprintf(char *buf, unsigned int len,
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| 124 | const unsigned long *src, int nbits);
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| 125 | extern int __bitmap_parse(const char *buf, unsigned int buflen, int is_user,
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| 126 | unsigned long *dst, int nbits);
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| 127 | extern int bitmap_parse_user(const char __user *ubuf, unsigned int ulen,
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| 128 | unsigned long *dst, int nbits);
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| 129 | extern int bitmap_scnlistprintf(char *buf, unsigned int len,
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| 130 | const unsigned long *src, int nbits);
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| 131 | extern int bitmap_parselist(const char *buf, unsigned long *maskp,
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| 132 | int nmaskbits);
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| 133 | extern int bitmap_parselist_user(const char __user *ubuf, unsigned int ulen,
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| 134 | unsigned long *dst, int nbits);
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| 135 | extern void bitmap_remap(unsigned long *dst, const unsigned long *src,
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| 136 | const unsigned long *old, const unsigned long *new, int bits);
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| 137 | extern int bitmap_bitremap(int oldbit,
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| 138 | const unsigned long *old, const unsigned long *new, int bits);
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| 139 | extern void bitmap_onto(unsigned long *dst, const unsigned long *orig,
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| 140 | const unsigned long *relmap, int bits);
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| 141 | extern void bitmap_fold(unsigned long *dst, const unsigned long *orig,
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| 142 | int sz, int bits);
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| 143 | extern int bitmap_find_free_region(unsigned long *bitmap, int bits, int order);
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| 144 | extern void bitmap_release_region(unsigned long *bitmap, int pos, int order);
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| 145 | extern int bitmap_allocate_region(unsigned long *bitmap, int pos, int order);
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| 146 | extern void bitmap_copy_le(void *dst, const unsigned long *src, int nbits);
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| 147 |
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| 148 | #define BITMAP_LAST_WORD_MASK(nbits) \
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| 149 | ( \
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| 150 | ((nbits) % BITS_PER_LONG) ? \
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| 151 | (1UL<<((nbits) % BITS_PER_LONG))-1 : ~0UL \
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| 152 | )
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| 153 |
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| 154 | #define small_const_nbits(nbits) \
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| 155 | ((nbits) <= BITS_PER_LONG)
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| 156 |
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| 157 | static inline void bitmap_zero(unsigned long *dst, int nbits)
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| 158 | {
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| 159 | if (small_const_nbits(nbits))
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| 160 | *dst = 0UL;
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| 161 | else {
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| 162 | int len = BITS_TO_LONGS(nbits) * sizeof(unsigned long);
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| 163 | memset(dst, 0, len);
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| 164 | }
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| 165 | }
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| 166 |
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| 167 | static inline void bitmap_fill(unsigned long *dst, int nbits)
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| 168 | {
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| 169 | size_t nlongs = BITS_TO_LONGS(nbits);
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| 170 | if (!small_const_nbits(nbits)) {
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| 171 | int len = (nlongs - 1) * sizeof(unsigned long);
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| 172 | memset(dst, 0xff, len);
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| 173 | }
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| 174 | dst[nlongs - 1] = BITMAP_LAST_WORD_MASK(nbits);
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| 175 | }
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| 176 |
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| 177 | static inline void bitmap_copy(unsigned long *dst, const unsigned long *src,
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| 178 | int nbits)
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| 179 | {
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| 180 | if (small_const_nbits(nbits))
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| 181 | *dst = *src;
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| 182 | else {
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| 183 | int len = BITS_TO_LONGS(nbits) * sizeof(unsigned long);
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| 184 | memcpy(dst, src, len);
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| 185 | }
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| 186 | }
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| 187 |
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| 188 | static inline int bitmap_and(unsigned long *dst, const unsigned long *src1,
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| 189 | const unsigned long *src2, int nbits)
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| 190 | {
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| 191 | if (small_const_nbits(nbits))
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| 192 | return (*dst = *src1 & *src2) != 0;
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| 193 | return __bitmap_and(dst, src1, src2, nbits);
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| 194 | }
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| 195 |
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| 196 | static inline void bitmap_or(unsigned long *dst, const unsigned long *src1,
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| 197 | const unsigned long *src2, int nbits)
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| 198 | {
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| 199 | if (small_const_nbits(nbits))
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| 200 | *dst = *src1 | *src2;
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| 201 | else
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| 202 | __bitmap_or(dst, src1, src2, nbits);
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| 203 | }
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| 204 |
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| 205 | static inline void bitmap_xor(unsigned long *dst, const unsigned long *src1,
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| 206 | const unsigned long *src2, int nbits)
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| 207 | {
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| 208 | if (small_const_nbits(nbits))
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| 209 | *dst = *src1 ^ *src2;
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| 210 | else
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| 211 | __bitmap_xor(dst, src1, src2, nbits);
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| 212 | }
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| 213 |
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| 214 | static inline int bitmap_andnot(unsigned long *dst, const unsigned long *src1,
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| 215 | const unsigned long *src2, int nbits)
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| 216 | {
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| 217 | if (small_const_nbits(nbits))
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| 218 | return (*dst = *src1 & ~(*src2)) != 0;
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| 219 | return __bitmap_andnot(dst, src1, src2, nbits);
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| 220 | }
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| 221 |
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| 222 | static inline void bitmap_complement(unsigned long *dst, const unsigned long *src,
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| 223 | int nbits)
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| 224 | {
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| 225 | if (small_const_nbits(nbits))
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| 226 | *dst = ~(*src) & BITMAP_LAST_WORD_MASK(nbits);
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| 227 | else
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| 228 | __bitmap_complement(dst, src, nbits);
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| 229 | }
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| 230 |
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| 231 | static inline int bitmap_equal(const unsigned long *src1,
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| 232 | const unsigned long *src2, int nbits)
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| 233 | {
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| 234 | if (small_const_nbits(nbits))
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| 235 | return ! ((*src1 ^ *src2) & BITMAP_LAST_WORD_MASK(nbits));
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| 236 | else
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| 237 | return __bitmap_equal(src1, src2, nbits);
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| 238 | }
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| 239 |
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| 240 | static inline int bitmap_intersects(const unsigned long *src1,
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| 241 | const unsigned long *src2, int nbits)
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| 242 | {
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| 243 | if (small_const_nbits(nbits))
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| 244 | return ((*src1 & *src2) & BITMAP_LAST_WORD_MASK(nbits)) != 0;
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| 245 | else
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| 246 | return __bitmap_intersects(src1, src2, nbits);
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| 247 | }
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| 248 |
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| 249 | static inline int bitmap_subset(const unsigned long *src1,
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| 250 | const unsigned long *src2, int nbits)
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| 251 | {
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| 252 | if (small_const_nbits(nbits))
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| 253 | return ! ((*src1 & ~(*src2)) & BITMAP_LAST_WORD_MASK(nbits));
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| 254 | else
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| 255 | return __bitmap_subset(src1, src2, nbits);
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| 256 | }
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| 257 |
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| 258 | static inline int bitmap_empty(const unsigned long *src, int nbits)
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| 259 | {
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| 260 | if (small_const_nbits(nbits))
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| 261 | return ! (*src & BITMAP_LAST_WORD_MASK(nbits));
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| 262 | else
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| 263 | return __bitmap_empty(src, nbits);
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| 264 | }
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| 265 |
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| 266 | static inline int bitmap_full(const unsigned long *src, int nbits)
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| 267 | {
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| 268 | if (small_const_nbits(nbits))
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| 269 | return ! (~(*src) & BITMAP_LAST_WORD_MASK(nbits));
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| 270 | else
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| 271 | return __bitmap_full(src, nbits);
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| 272 | }
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| 273 |
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| 274 | #if 0
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| 275 | static inline int bitmap_weight(const unsigned long *src, int nbits)
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| 276 | {
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| 277 | if (small_const_nbits(nbits))
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| 278 | return hweight_long(*src & BITMAP_LAST_WORD_MASK(nbits));
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| 279 | return __bitmap_weight(src, nbits);
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| 280 | }
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| 281 | #endif
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| 282 |
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| 283 | static inline void bitmap_shift_right(unsigned long *dst,
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| 284 | const unsigned long *src, int n, int nbits)
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| 285 | {
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| 286 | if (small_const_nbits(nbits))
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| 287 | *dst = *src >> n;
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| 288 | else
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| 289 | __bitmap_shift_right(dst, src, n, nbits);
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| 290 | }
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| 291 |
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| 292 | static inline void bitmap_shift_left(unsigned long *dst,
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| 293 | const unsigned long *src, int n, int nbits)
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| 294 | {
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| 295 | if (small_const_nbits(nbits))
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| 296 | *dst = (*src << n) & BITMAP_LAST_WORD_MASK(nbits);
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| 297 | else
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| 298 | __bitmap_shift_left(dst, src, n, nbits);
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| 299 | }
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| 300 |
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| 301 | static inline int bitmap_parse(const char *buf, unsigned int buflen,
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| 302 | unsigned long *maskp, int nmaskbits)
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| 303 | {
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| 304 | return __bitmap_parse(buf, buflen, 0, maskp, nmaskbits);
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| 305 | }
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| 306 |
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| 307 | #endif /* __ASSEMBLY__ */
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| 308 |
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| 309 |
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| 310 | #endif /* __LINUX_BITMAP_H */
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