1 /* SPDX-License-Identifier: GPL-2.0 */
2 #ifndef _LINUX_BITOPS_H
3 #define _LINUX_BITOPS_H
4
5 #include <asm/types.h>
6 #include <linux/bits.h>
7 #include <linux/typecheck.h>
8
9 #include <uapi/linux/kernel.h>
10
11 /* Set bits in the first 'n' bytes when loaded from memory */
12 #ifdef __LITTLE_ENDIAN
13 # define aligned_byte_mask(n) ((1UL << 8*(n))-1)
14 #else
15 # define aligned_byte_mask(n) (~0xffUL << (BITS_PER_LONG - 8 - 8*(n)))
16 #endif
17
18 #define BITS_PER_TYPE(type) (sizeof(type) * BITS_PER_BYTE)
19 #define BITS_TO_LONGS(nr) __KERNEL_DIV_ROUND_UP(nr, BITS_PER_TYPE(long))
20 #define BITS_TO_U64(nr) __KERNEL_DIV_ROUND_UP(nr, BITS_PER_TYPE(u64))
21 #define BITS_TO_U32(nr) __KERNEL_DIV_ROUND_UP(nr, BITS_PER_TYPE(u32))
22 #define BITS_TO_BYTES(nr) __KERNEL_DIV_ROUND_UP(nr, BITS_PER_TYPE(char))
23
24 extern unsigned int __sw_hweight8(unsigned int w);
25 extern unsigned int __sw_hweight16(unsigned int w);
26 extern unsigned int __sw_hweight32(unsigned int w);
27 extern unsigned long __sw_hweight64(__u64 w);
28
29 /*
30 * Defined here because those may be needed by architecture-specific static
31 * inlines.
32 */
33
34 #include <asm-generic/bitops/generic-non-atomic.h>
35
36 /*
37 * Many architecture-specific non-atomic bitops contain inline asm code and due
38 * to that the compiler can't optimize them to compile-time expressions or
39 * constants. In contrary, generic_*() helpers are defined in pure C and
40 * compilers optimize them just well.
41 * Therefore, to make `unsigned long foo = 0; __set_bit(BAR, &foo)` effectively
42 * equal to `unsigned long foo = BIT(BAR)`, pick the generic C alternative when
43 * the arguments can be resolved at compile time. That expression itself is a
44 * constant and doesn't bring any functional changes to the rest of cases.
45 * The casts to `uintptr_t` are needed to mitigate `-Waddress` warnings when
46 * passing a bitmap from .bss or .data (-> `!!addr` is always true).
47 */
48 #define bitop(op, nr, addr) \
49 ((__builtin_constant_p(nr) && \
50 __builtin_constant_p((uintptr_t)(addr) != (uintptr_t)NULL) && \
51 (uintptr_t)(addr) != (uintptr_t)NULL && \
52 __builtin_constant_p(*(const unsigned long *)(addr))) ? \
53 const##op(nr, addr) : op(nr, addr))
54
55 #define __set_bit(nr, addr) bitop(___set_bit, nr, addr)
56 #define __clear_bit(nr, addr) bitop(___clear_bit, nr, addr)
57 #define __change_bit(nr, addr) bitop(___change_bit, nr, addr)
58 #define __test_and_set_bit(nr, addr) bitop(___test_and_set_bit, nr, addr)
59 #define __test_and_clear_bit(nr, addr) bitop(___test_and_clear_bit, nr, addr)
60 #define __test_and_change_bit(nr, addr) bitop(___test_and_change_bit, nr, addr)
61 #define test_bit(nr, addr) bitop(_test_bit, nr, addr)
62 #define test_bit_acquire(nr, addr) bitop(_test_bit_acquire, nr, addr)
63
64 /*
65 * Include this here because some architectures need generic_ffs/fls in
66 * scope
67 */
68 #include <asm/bitops.h>
69
70 /* Check that the bitops prototypes are sane */
71 #define __check_bitop_pr(name) \
72 static_assert(__same_type(arch_##name, generic_##name) && \
73 __same_type(const_##name, generic_##name) && \
74 __same_type(_##name, generic_##name))
75
76 __check_bitop_pr(__set_bit);
77 __check_bitop_pr(__clear_bit);
78 __check_bitop_pr(__change_bit);
79 __check_bitop_pr(__test_and_set_bit);
80 __check_bitop_pr(__test_and_clear_bit);
81 __check_bitop_pr(__test_and_change_bit);
82 __check_bitop_pr(test_bit);
83 __check_bitop_pr(test_bit_acquire);
84
85 #undef __check_bitop_pr
86
get_bitmask_order(unsigned int count)87 static inline int get_bitmask_order(unsigned int count)
88 {
89 int order;
90
91 order = fls(count);
92 return order; /* We could be slightly more clever with -1 here... */
93 }
94
hweight_long(unsigned long w)95 static __always_inline unsigned long hweight_long(unsigned long w)
96 {
97 return sizeof(w) == 4 ? hweight32(w) : hweight64((__u64)w);
98 }
99
100 /**
101 * rol64 - rotate a 64-bit value left
102 * @word: value to rotate
103 * @shift: bits to roll
104 */
rol64(__u64 word,unsigned int shift)105 static inline __u64 rol64(__u64 word, unsigned int shift)
106 {
107 return (word << (shift & 63)) | (word >> ((-shift) & 63));
108 }
109
110 /**
111 * ror64 - rotate a 64-bit value right
112 * @word: value to rotate
113 * @shift: bits to roll
114 */
ror64(__u64 word,unsigned int shift)115 static inline __u64 ror64(__u64 word, unsigned int shift)
116 {
117 return (word >> (shift & 63)) | (word << ((-shift) & 63));
118 }
119
120 /**
121 * rol32 - rotate a 32-bit value left
122 * @word: value to rotate
123 * @shift: bits to roll
124 */
rol32(__u32 word,unsigned int shift)125 static inline __u32 rol32(__u32 word, unsigned int shift)
126 {
127 return (word << (shift & 31)) | (word >> ((-shift) & 31));
128 }
129
130 /**
131 * ror32 - rotate a 32-bit value right
132 * @word: value to rotate
133 * @shift: bits to roll
134 */
ror32(__u32 word,unsigned int shift)135 static inline __u32 ror32(__u32 word, unsigned int shift)
136 {
137 return (word >> (shift & 31)) | (word << ((-shift) & 31));
138 }
139
140 /**
141 * rol16 - rotate a 16-bit value left
142 * @word: value to rotate
143 * @shift: bits to roll
144 */
rol16(__u16 word,unsigned int shift)145 static inline __u16 rol16(__u16 word, unsigned int shift)
146 {
147 return (word << (shift & 15)) | (word >> ((-shift) & 15));
148 }
149
150 /**
151 * ror16 - rotate a 16-bit value right
152 * @word: value to rotate
153 * @shift: bits to roll
154 */
ror16(__u16 word,unsigned int shift)155 static inline __u16 ror16(__u16 word, unsigned int shift)
156 {
157 return (word >> (shift & 15)) | (word << ((-shift) & 15));
158 }
159
160 /**
161 * rol8 - rotate an 8-bit value left
162 * @word: value to rotate
163 * @shift: bits to roll
164 */
rol8(__u8 word,unsigned int shift)165 static inline __u8 rol8(__u8 word, unsigned int shift)
166 {
167 return (word << (shift & 7)) | (word >> ((-shift) & 7));
168 }
169
170 /**
171 * ror8 - rotate an 8-bit value right
172 * @word: value to rotate
173 * @shift: bits to roll
174 */
ror8(__u8 word,unsigned int shift)175 static inline __u8 ror8(__u8 word, unsigned int shift)
176 {
177 return (word >> (shift & 7)) | (word << ((-shift) & 7));
178 }
179
180 /**
181 * sign_extend32 - sign extend a 32-bit value using specified bit as sign-bit
182 * @value: value to sign extend
183 * @index: 0 based bit index (0<=index<32) to sign bit
184 *
185 * This is safe to use for 16- and 8-bit types as well.
186 */
sign_extend32(__u32 value,int index)187 static __always_inline __s32 sign_extend32(__u32 value, int index)
188 {
189 __u8 shift = 31 - index;
190 return (__s32)(value << shift) >> shift;
191 }
192
193 /**
194 * sign_extend64 - sign extend a 64-bit value using specified bit as sign-bit
195 * @value: value to sign extend
196 * @index: 0 based bit index (0<=index<64) to sign bit
197 */
sign_extend64(__u64 value,int index)198 static __always_inline __s64 sign_extend64(__u64 value, int index)
199 {
200 __u8 shift = 63 - index;
201 return (__s64)(value << shift) >> shift;
202 }
203
fls_long(unsigned long l)204 static inline unsigned fls_long(unsigned long l)
205 {
206 if (sizeof(l) == 4)
207 return fls(l);
208 return fls64(l);
209 }
210
get_count_order(unsigned int count)211 static inline int get_count_order(unsigned int count)
212 {
213 if (count == 0)
214 return -1;
215
216 return fls(--count);
217 }
218
219 /**
220 * get_count_order_long - get order after rounding @l up to power of 2
221 * @l: parameter
222 *
223 * it is same as get_count_order() but with long type parameter
224 */
get_count_order_long(unsigned long l)225 static inline int get_count_order_long(unsigned long l)
226 {
227 if (l == 0UL)
228 return -1;
229 return (int)fls_long(--l);
230 }
231
232 /**
233 * __ffs64 - find first set bit in a 64 bit word
234 * @word: The 64 bit word
235 *
236 * On 64 bit arches this is a synonym for __ffs
237 * The result is not defined if no bits are set, so check that @word
238 * is non-zero before calling this.
239 */
__ffs64(u64 word)240 static inline unsigned long __ffs64(u64 word)
241 {
242 #if BITS_PER_LONG == 32
243 if (((u32)word) == 0UL)
244 return __ffs((u32)(word >> 32)) + 32;
245 #elif BITS_PER_LONG != 64
246 #error BITS_PER_LONG not 32 or 64
247 #endif
248 return __ffs((unsigned long)word);
249 }
250
251 /**
252 * fns - find N'th set bit in a word
253 * @word: The word to search
254 * @n: Bit to find
255 */
fns(unsigned long word,unsigned int n)256 static inline unsigned long fns(unsigned long word, unsigned int n)
257 {
258 unsigned int bit;
259
260 while (word) {
261 bit = __ffs(word);
262 if (n-- == 0)
263 return bit;
264 __clear_bit(bit, &word);
265 }
266
267 return BITS_PER_LONG;
268 }
269
270 /**
271 * assign_bit - Assign value to a bit in memory
272 * @nr: the bit to set
273 * @addr: the address to start counting from
274 * @value: the value to assign
275 */
assign_bit(long nr,volatile unsigned long * addr,bool value)276 static __always_inline void assign_bit(long nr, volatile unsigned long *addr,
277 bool value)
278 {
279 if (value)
280 set_bit(nr, addr);
281 else
282 clear_bit(nr, addr);
283 }
284
__assign_bit(long nr,volatile unsigned long * addr,bool value)285 static __always_inline void __assign_bit(long nr, volatile unsigned long *addr,
286 bool value)
287 {
288 if (value)
289 __set_bit(nr, addr);
290 else
291 __clear_bit(nr, addr);
292 }
293
294 /**
295 * __ptr_set_bit - Set bit in a pointer's value
296 * @nr: the bit to set
297 * @addr: the address of the pointer variable
298 *
299 * Example:
300 * void *p = foo();
301 * __ptr_set_bit(bit, &p);
302 */
303 #define __ptr_set_bit(nr, addr) \
304 ({ \
305 typecheck_pointer(*(addr)); \
306 __set_bit(nr, (unsigned long *)(addr)); \
307 })
308
309 /**
310 * __ptr_clear_bit - Clear bit in a pointer's value
311 * @nr: the bit to clear
312 * @addr: the address of the pointer variable
313 *
314 * Example:
315 * void *p = foo();
316 * __ptr_clear_bit(bit, &p);
317 */
318 #define __ptr_clear_bit(nr, addr) \
319 ({ \
320 typecheck_pointer(*(addr)); \
321 __clear_bit(nr, (unsigned long *)(addr)); \
322 })
323
324 /**
325 * __ptr_test_bit - Test bit in a pointer's value
326 * @nr: the bit to test
327 * @addr: the address of the pointer variable
328 *
329 * Example:
330 * void *p = foo();
331 * if (__ptr_test_bit(bit, &p)) {
332 * ...
333 * } else {
334 * ...
335 * }
336 */
337 #define __ptr_test_bit(nr, addr) \
338 ({ \
339 typecheck_pointer(*(addr)); \
340 test_bit(nr, (unsigned long *)(addr)); \
341 })
342
343 #ifdef __KERNEL__
344
345 #ifndef set_mask_bits
346 #define set_mask_bits(ptr, mask, bits) \
347 ({ \
348 const typeof(*(ptr)) mask__ = (mask), bits__ = (bits); \
349 typeof(*(ptr)) old__, new__; \
350 \
351 old__ = READ_ONCE(*(ptr)); \
352 do { \
353 new__ = (old__ & ~mask__) | bits__; \
354 } while (!try_cmpxchg(ptr, &old__, new__)); \
355 \
356 old__; \
357 })
358 #endif
359
360 #ifndef bit_clear_unless
361 #define bit_clear_unless(ptr, clear, test) \
362 ({ \
363 const typeof(*(ptr)) clear__ = (clear), test__ = (test);\
364 typeof(*(ptr)) old__, new__; \
365 \
366 old__ = READ_ONCE(*(ptr)); \
367 do { \
368 if (old__ & test__) \
369 break; \
370 new__ = old__ & ~clear__; \
371 } while (!try_cmpxchg(ptr, &old__, new__)); \
372 \
373 !(old__ & test__); \
374 })
375 #endif
376
377 #endif /* __KERNEL__ */
378 #endif
379