atomic.h revision 1.38 1 1.38 riastrad /* $NetBSD: atomic.h,v 1.38 2021/12/19 11:26:42 riastradh Exp $ */
2 1.2 riastrad
3 1.2 riastrad /*-
4 1.2 riastrad * Copyright (c) 2013 The NetBSD Foundation, Inc.
5 1.2 riastrad * All rights reserved.
6 1.2 riastrad *
7 1.2 riastrad * This code is derived from software contributed to The NetBSD Foundation
8 1.2 riastrad * by Taylor R. Campbell.
9 1.2 riastrad *
10 1.2 riastrad * Redistribution and use in source and binary forms, with or without
11 1.2 riastrad * modification, are permitted provided that the following conditions
12 1.2 riastrad * are met:
13 1.2 riastrad * 1. Redistributions of source code must retain the above copyright
14 1.2 riastrad * notice, this list of conditions and the following disclaimer.
15 1.2 riastrad * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 riastrad * notice, this list of conditions and the following disclaimer in the
17 1.2 riastrad * documentation and/or other materials provided with the distribution.
18 1.2 riastrad *
19 1.2 riastrad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 riastrad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 riastrad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 riastrad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 riastrad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 riastrad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 riastrad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 riastrad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 riastrad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 riastrad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 riastrad * POSSIBILITY OF SUCH DAMAGE.
30 1.2 riastrad */
31 1.2 riastrad
32 1.2 riastrad #ifndef _LINUX_ATOMIC_H_
33 1.2 riastrad #define _LINUX_ATOMIC_H_
34 1.2 riastrad
35 1.2 riastrad #include <sys/atomic.h>
36 1.2 riastrad
37 1.2 riastrad #include <machine/limits.h>
38 1.2 riastrad
39 1.22 maya #include <asm/barrier.h>
40 1.22 maya
41 1.23 riastrad #define xchg(P, V) \
42 1.38 riastrad (sizeof(*(P)) == 4 ? atomic_swap_32((volatile uint32_t *)(P), \
43 1.38 riastrad (uint32_t)(V)) \
44 1.38 riastrad : sizeof(*(P)) == 8 ? atomic_swap_64((volatile uint64_t *)(P), \
45 1.38 riastrad (uint64_t)(V)) \
46 1.23 riastrad : (__builtin_abort(), 0))
47 1.23 riastrad
48 1.35 riastrad #define cmpxchg(P, O, N) \
49 1.38 riastrad (sizeof(*(P)) == 4 ? atomic_cas_32((volatile uint32_t *)(P), \
50 1.38 riastrad (uint32_t)(O), (uint32_t)(N)) \
51 1.38 riastrad : sizeof(*(P)) == 8 ? atomic_cas_64((volatile uint64_t *)(P), \
52 1.38 riastrad (uint64_t)(O), (uint64_t)(N)) \
53 1.35 riastrad : (__builtin_abort(), 0))
54 1.35 riastrad
55 1.13 riastrad /*
56 1.13 riastrad * atomic (u)int operations
57 1.13 riastrad *
58 1.13 riastrad * Atomics that return a value, other than atomic_read, imply a
59 1.13 riastrad * full memory_sync barrier. Those that do not return a value
60 1.13 riastrad * imply no memory barrier.
61 1.13 riastrad */
62 1.13 riastrad
63 1.2 riastrad struct atomic {
64 1.2 riastrad union {
65 1.3 riastrad volatile int au_int;
66 1.3 riastrad volatile unsigned int au_uint;
67 1.2 riastrad } a_u;
68 1.2 riastrad };
69 1.2 riastrad
70 1.2 riastrad #define ATOMIC_INIT(i) { .a_u = { .au_int = (i) } }
71 1.2 riastrad
72 1.2 riastrad typedef struct atomic atomic_t;
73 1.2 riastrad
74 1.2 riastrad static inline int
75 1.27 riastrad atomic_read(const atomic_t *atomic)
76 1.2 riastrad {
77 1.13 riastrad /* no membar */
78 1.3 riastrad return atomic->a_u.au_int;
79 1.2 riastrad }
80 1.2 riastrad
81 1.2 riastrad static inline void
82 1.2 riastrad atomic_set(atomic_t *atomic, int value)
83 1.2 riastrad {
84 1.13 riastrad /* no membar */
85 1.2 riastrad atomic->a_u.au_int = value;
86 1.2 riastrad }
87 1.2 riastrad
88 1.2 riastrad static inline void
89 1.31 riastrad atomic_set_release(atomic_t *atomic, int value)
90 1.31 riastrad {
91 1.31 riastrad atomic_store_release(&atomic->a_u.au_int, value);
92 1.31 riastrad }
93 1.31 riastrad
94 1.31 riastrad static inline void
95 1.2 riastrad atomic_add(int addend, atomic_t *atomic)
96 1.2 riastrad {
97 1.13 riastrad /* no membar */
98 1.2 riastrad atomic_add_int(&atomic->a_u.au_uint, addend);
99 1.2 riastrad }
100 1.2 riastrad
101 1.2 riastrad static inline void
102 1.2 riastrad atomic_sub(int subtrahend, atomic_t *atomic)
103 1.2 riastrad {
104 1.13 riastrad /* no membar */
105 1.2 riastrad atomic_add_int(&atomic->a_u.au_uint, -subtrahend);
106 1.2 riastrad }
107 1.2 riastrad
108 1.2 riastrad static inline int
109 1.2 riastrad atomic_add_return(int addend, atomic_t *atomic)
110 1.2 riastrad {
111 1.13 riastrad int v;
112 1.13 riastrad
113 1.13 riastrad smp_mb__before_atomic();
114 1.13 riastrad v = (int)atomic_add_int_nv(&atomic->a_u.au_uint, addend);
115 1.13 riastrad smp_mb__after_atomic();
116 1.13 riastrad
117 1.13 riastrad return v;
118 1.2 riastrad }
119 1.2 riastrad
120 1.36 riastrad static inline int
121 1.36 riastrad atomic_sub_return(int subtrahend, atomic_t *atomic)
122 1.36 riastrad {
123 1.36 riastrad int v;
124 1.36 riastrad
125 1.36 riastrad smp_mb__before_atomic();
126 1.36 riastrad v = (int)atomic_add_int_nv(&atomic->a_u.au_uint, -subtrahend);
127 1.36 riastrad smp_mb__after_atomic();
128 1.36 riastrad
129 1.36 riastrad return v;
130 1.36 riastrad }
131 1.36 riastrad
132 1.2 riastrad static inline void
133 1.2 riastrad atomic_inc(atomic_t *atomic)
134 1.2 riastrad {
135 1.13 riastrad /* no membar */
136 1.2 riastrad atomic_inc_uint(&atomic->a_u.au_uint);
137 1.2 riastrad }
138 1.2 riastrad
139 1.2 riastrad static inline void
140 1.2 riastrad atomic_dec(atomic_t *atomic)
141 1.2 riastrad {
142 1.13 riastrad /* no membar */
143 1.2 riastrad atomic_dec_uint(&atomic->a_u.au_uint);
144 1.2 riastrad }
145 1.2 riastrad
146 1.2 riastrad static inline int
147 1.2 riastrad atomic_inc_return(atomic_t *atomic)
148 1.2 riastrad {
149 1.13 riastrad int v;
150 1.13 riastrad
151 1.13 riastrad smp_mb__before_atomic();
152 1.13 riastrad v = (int)atomic_inc_uint_nv(&atomic->a_u.au_uint);
153 1.13 riastrad smp_mb__after_atomic();
154 1.13 riastrad
155 1.13 riastrad return v;
156 1.2 riastrad }
157 1.2 riastrad
158 1.2 riastrad static inline int
159 1.2 riastrad atomic_dec_return(atomic_t *atomic)
160 1.2 riastrad {
161 1.13 riastrad int v;
162 1.13 riastrad
163 1.13 riastrad smp_mb__before_atomic();
164 1.13 riastrad v = (int)atomic_dec_uint_nv(&atomic->a_u.au_uint);
165 1.13 riastrad smp_mb__after_atomic();
166 1.13 riastrad
167 1.13 riastrad return v;
168 1.2 riastrad }
169 1.2 riastrad
170 1.2 riastrad static inline int
171 1.2 riastrad atomic_dec_and_test(atomic_t *atomic)
172 1.2 riastrad {
173 1.13 riastrad /* membar implied by atomic_dec_return */
174 1.13 riastrad return atomic_dec_return(atomic) == 0;
175 1.2 riastrad }
176 1.2 riastrad
177 1.28 riastrad static inline int
178 1.28 riastrad atomic_dec_if_positive(atomic_t *atomic)
179 1.28 riastrad {
180 1.28 riastrad int v;
181 1.28 riastrad
182 1.28 riastrad smp_mb__before_atomic();
183 1.28 riastrad do {
184 1.28 riastrad v = atomic->a_u.au_uint;
185 1.28 riastrad if (v <= 0)
186 1.28 riastrad break;
187 1.28 riastrad } while (atomic_cas_uint(&atomic->a_u.au_uint, v, v - 1) != v);
188 1.28 riastrad smp_mb__after_atomic();
189 1.28 riastrad
190 1.28 riastrad return v - 1;
191 1.28 riastrad }
192 1.28 riastrad
193 1.2 riastrad static inline void
194 1.8 riastrad atomic_or(int value, atomic_t *atomic)
195 1.8 riastrad {
196 1.13 riastrad /* no membar */
197 1.8 riastrad atomic_or_uint(&atomic->a_u.au_uint, value);
198 1.8 riastrad }
199 1.8 riastrad
200 1.8 riastrad static inline void
201 1.24 riastrad atomic_andnot(int value, atomic_t *atomic)
202 1.24 riastrad {
203 1.24 riastrad /* no membar */
204 1.24 riastrad atomic_and_uint(&atomic->a_u.au_uint, ~value);
205 1.24 riastrad }
206 1.24 riastrad
207 1.25 riastrad static inline int
208 1.37 riastrad atomic_fetch_add(int value, atomic_t *atomic)
209 1.37 riastrad {
210 1.37 riastrad unsigned old, new;
211 1.37 riastrad
212 1.37 riastrad smp_mb__before_atomic();
213 1.37 riastrad do {
214 1.37 riastrad old = atomic->a_u.au_uint;
215 1.37 riastrad new = old + value;
216 1.37 riastrad } while (atomic_cas_uint(&atomic->a_u.au_uint, old, new) != old);
217 1.37 riastrad smp_mb__after_atomic();
218 1.37 riastrad
219 1.37 riastrad return old;
220 1.37 riastrad }
221 1.37 riastrad
222 1.37 riastrad static inline int
223 1.37 riastrad atomic_fetch_inc(atomic_t *atomic)
224 1.37 riastrad {
225 1.37 riastrad return atomic_fetch_add(1, atomic);
226 1.37 riastrad }
227 1.37 riastrad
228 1.37 riastrad static inline int
229 1.25 riastrad atomic_fetch_xor(int value, atomic_t *atomic)
230 1.25 riastrad {
231 1.25 riastrad unsigned old, new;
232 1.25 riastrad
233 1.25 riastrad smp_mb__before_atomic();
234 1.25 riastrad do {
235 1.25 riastrad old = atomic->a_u.au_uint;
236 1.25 riastrad new = old ^ value;
237 1.25 riastrad } while (atomic_cas_uint(&atomic->a_u.au_uint, old, new) != old);
238 1.25 riastrad smp_mb__after_atomic();
239 1.25 riastrad
240 1.25 riastrad return old;
241 1.25 riastrad }
242 1.25 riastrad
243 1.24 riastrad static inline void
244 1.2 riastrad atomic_set_mask(unsigned long mask, atomic_t *atomic)
245 1.2 riastrad {
246 1.13 riastrad /* no membar */
247 1.2 riastrad atomic_or_uint(&atomic->a_u.au_uint, mask);
248 1.2 riastrad }
249 1.2 riastrad
250 1.2 riastrad static inline void
251 1.2 riastrad atomic_clear_mask(unsigned long mask, atomic_t *atomic)
252 1.2 riastrad {
253 1.13 riastrad /* no membar */
254 1.2 riastrad atomic_and_uint(&atomic->a_u.au_uint, ~mask);
255 1.2 riastrad }
256 1.2 riastrad
257 1.2 riastrad static inline int
258 1.2 riastrad atomic_add_unless(atomic_t *atomic, int addend, int zero)
259 1.2 riastrad {
260 1.2 riastrad int value;
261 1.2 riastrad
262 1.13 riastrad smp_mb__before_atomic();
263 1.2 riastrad do {
264 1.2 riastrad value = atomic->a_u.au_int;
265 1.2 riastrad if (value == zero)
266 1.13 riastrad break;
267 1.2 riastrad } while (atomic_cas_uint(&atomic->a_u.au_uint, value, (value + addend))
268 1.21 christos != (unsigned)value);
269 1.13 riastrad smp_mb__after_atomic();
270 1.2 riastrad
271 1.13 riastrad return value != zero;
272 1.2 riastrad }
273 1.2 riastrad
274 1.2 riastrad static inline int
275 1.2 riastrad atomic_inc_not_zero(atomic_t *atomic)
276 1.2 riastrad {
277 1.13 riastrad /* membar implied by atomic_add_unless */
278 1.2 riastrad return atomic_add_unless(atomic, 1, 0);
279 1.2 riastrad }
280 1.2 riastrad
281 1.5 riastrad static inline int
282 1.5 riastrad atomic_xchg(atomic_t *atomic, int new)
283 1.5 riastrad {
284 1.13 riastrad int old;
285 1.13 riastrad
286 1.13 riastrad smp_mb__before_atomic();
287 1.13 riastrad old = (int)atomic_swap_uint(&atomic->a_u.au_uint, (unsigned)new);
288 1.13 riastrad smp_mb__after_atomic();
289 1.13 riastrad
290 1.13 riastrad return old;
291 1.5 riastrad }
292 1.5 riastrad
293 1.5 riastrad static inline int
294 1.13 riastrad atomic_cmpxchg(atomic_t *atomic, int expect, int new)
295 1.5 riastrad {
296 1.13 riastrad int old;
297 1.13 riastrad
298 1.13 riastrad /*
299 1.13 riastrad * XXX As an optimization, under Linux's semantics we are
300 1.13 riastrad * allowed to skip the memory barrier if the comparison fails,
301 1.13 riastrad * but taking advantage of that is not convenient here.
302 1.13 riastrad */
303 1.13 riastrad smp_mb__before_atomic();
304 1.13 riastrad old = (int)atomic_cas_uint(&atomic->a_u.au_uint, (unsigned)expect,
305 1.5 riastrad (unsigned)new);
306 1.13 riastrad smp_mb__after_atomic();
307 1.13 riastrad
308 1.13 riastrad return old;
309 1.5 riastrad }
310 1.5 riastrad
311 1.6 riastrad struct atomic64 {
312 1.6 riastrad volatile uint64_t a_v;
313 1.6 riastrad };
314 1.6 riastrad
315 1.6 riastrad typedef struct atomic64 atomic64_t;
316 1.6 riastrad
317 1.16 riastrad #define ATOMIC64_INIT(v) { .a_v = (v) }
318 1.16 riastrad
319 1.15 riastrad int linux_atomic64_init(void);
320 1.15 riastrad void linux_atomic64_fini(void);
321 1.15 riastrad
322 1.15 riastrad #ifdef __HAVE_ATOMIC64_OPS
323 1.15 riastrad
324 1.6 riastrad static inline uint64_t
325 1.6 riastrad atomic64_read(const struct atomic64 *a)
326 1.6 riastrad {
327 1.13 riastrad /* no membar */
328 1.6 riastrad return a->a_v;
329 1.6 riastrad }
330 1.6 riastrad
331 1.6 riastrad static inline void
332 1.6 riastrad atomic64_set(struct atomic64 *a, uint64_t v)
333 1.6 riastrad {
334 1.13 riastrad /* no membar */
335 1.6 riastrad a->a_v = v;
336 1.6 riastrad }
337 1.6 riastrad
338 1.6 riastrad static inline void
339 1.17 riastrad atomic64_add(int64_t d, struct atomic64 *a)
340 1.6 riastrad {
341 1.13 riastrad /* no membar */
342 1.6 riastrad atomic_add_64(&a->a_v, d);
343 1.6 riastrad }
344 1.6 riastrad
345 1.6 riastrad static inline void
346 1.17 riastrad atomic64_sub(int64_t d, struct atomic64 *a)
347 1.6 riastrad {
348 1.13 riastrad /* no membar */
349 1.6 riastrad atomic_add_64(&a->a_v, -d);
350 1.6 riastrad }
351 1.6 riastrad
352 1.19 riastrad static inline int64_t
353 1.19 riastrad atomic64_add_return(int64_t d, struct atomic64 *a)
354 1.19 riastrad {
355 1.19 riastrad int64_t v;
356 1.19 riastrad
357 1.19 riastrad smp_mb__before_atomic();
358 1.19 riastrad v = (int64_t)atomic_add_64_nv(&a->a_v, d);
359 1.19 riastrad smp_mb__after_atomic();
360 1.19 riastrad
361 1.19 riastrad return v;
362 1.19 riastrad }
363 1.19 riastrad
364 1.6 riastrad static inline uint64_t
365 1.13 riastrad atomic64_xchg(struct atomic64 *a, uint64_t new)
366 1.6 riastrad {
367 1.13 riastrad uint64_t old;
368 1.13 riastrad
369 1.13 riastrad smp_mb__before_atomic();
370 1.13 riastrad old = atomic_swap_64(&a->a_v, new);
371 1.13 riastrad smp_mb__after_atomic();
372 1.13 riastrad
373 1.13 riastrad return old;
374 1.6 riastrad }
375 1.6 riastrad
376 1.9 riastrad static inline uint64_t
377 1.13 riastrad atomic64_cmpxchg(struct atomic64 *atomic, uint64_t expect, uint64_t new)
378 1.9 riastrad {
379 1.13 riastrad uint64_t old;
380 1.13 riastrad
381 1.13 riastrad /*
382 1.13 riastrad * XXX As an optimization, under Linux's semantics we are
383 1.13 riastrad * allowed to skip the memory barrier if the comparison fails,
384 1.13 riastrad * but taking advantage of that is not convenient here.
385 1.13 riastrad */
386 1.13 riastrad smp_mb__before_atomic();
387 1.13 riastrad old = atomic_cas_64(&atomic->a_v, expect, new);
388 1.13 riastrad smp_mb__after_atomic();
389 1.13 riastrad
390 1.13 riastrad return old;
391 1.9 riastrad }
392 1.9 riastrad
393 1.15 riastrad #else /* !defined(__HAVE_ATOMIC64_OPS) */
394 1.15 riastrad
395 1.18 riastrad #define atomic64_add linux_atomic64_add
396 1.19 riastrad #define atomic64_add_return linux_atomic64_add_return
397 1.18 riastrad #define atomic64_cmpxchg linux_atomic64_cmpxchg
398 1.15 riastrad #define atomic64_read linux_atomic64_read
399 1.15 riastrad #define atomic64_set linux_atomic64_set
400 1.15 riastrad #define atomic64_sub linux_atomic64_sub
401 1.15 riastrad #define atomic64_xchg linux_atomic64_xchg
402 1.15 riastrad
403 1.15 riastrad uint64_t atomic64_read(const struct atomic64 *);
404 1.15 riastrad void atomic64_set(struct atomic64 *, uint64_t);
405 1.17 riastrad void atomic64_add(int64_t, struct atomic64 *);
406 1.17 riastrad void atomic64_sub(int64_t, struct atomic64 *);
407 1.19 riastrad int64_t atomic64_add_return(int64_t, struct atomic64 *);
408 1.15 riastrad uint64_t atomic64_xchg(struct atomic64 *, uint64_t);
409 1.15 riastrad uint64_t atomic64_cmpxchg(struct atomic64 *, uint64_t, uint64_t);
410 1.15 riastrad
411 1.15 riastrad #endif
412 1.15 riastrad
413 1.19 riastrad static inline int64_t
414 1.19 riastrad atomic64_inc_return(struct atomic64 *a)
415 1.19 riastrad {
416 1.19 riastrad return atomic64_add_return(1, a);
417 1.19 riastrad }
418 1.19 riastrad
419 1.14 riastrad struct atomic_long {
420 1.14 riastrad volatile unsigned long al_v;
421 1.14 riastrad };
422 1.14 riastrad
423 1.14 riastrad typedef struct atomic_long atomic_long_t;
424 1.14 riastrad
425 1.14 riastrad static inline long
426 1.14 riastrad atomic_long_read(struct atomic_long *a)
427 1.14 riastrad {
428 1.14 riastrad /* no membar */
429 1.14 riastrad return (unsigned long)a->al_v;
430 1.14 riastrad }
431 1.14 riastrad
432 1.14 riastrad static inline void
433 1.14 riastrad atomic_long_set(struct atomic_long *a, long v)
434 1.14 riastrad {
435 1.14 riastrad /* no membar */
436 1.14 riastrad a->al_v = v;
437 1.14 riastrad }
438 1.14 riastrad
439 1.14 riastrad static inline long
440 1.14 riastrad atomic_long_add_unless(struct atomic_long *a, long addend, long zero)
441 1.14 riastrad {
442 1.14 riastrad long value;
443 1.14 riastrad
444 1.14 riastrad smp_mb__before_atomic();
445 1.14 riastrad do {
446 1.14 riastrad value = (long)a->al_v;
447 1.14 riastrad if (value == zero)
448 1.14 riastrad break;
449 1.14 riastrad } while (atomic_cas_ulong(&a->al_v, (unsigned long)value,
450 1.14 riastrad (unsigned long)(value + addend)) != (unsigned long)value);
451 1.14 riastrad smp_mb__after_atomic();
452 1.14 riastrad
453 1.14 riastrad return value != zero;
454 1.14 riastrad }
455 1.14 riastrad
456 1.14 riastrad static inline long
457 1.14 riastrad atomic_long_inc_not_zero(struct atomic_long *a)
458 1.14 riastrad {
459 1.14 riastrad /* membar implied by atomic_long_add_unless */
460 1.14 riastrad return atomic_long_add_unless(a, 1, 0);
461 1.14 riastrad }
462 1.14 riastrad
463 1.14 riastrad static inline long
464 1.30 riastrad atomic_long_xchg(struct atomic_long *a, long new)
465 1.30 riastrad {
466 1.30 riastrad long old;
467 1.30 riastrad
468 1.30 riastrad smp_mb__before_atomic();
469 1.30 riastrad old = (long)atomic_swap_ulong(&a->al_v, (unsigned long)new);
470 1.30 riastrad smp_mb__after_atomic();
471 1.30 riastrad
472 1.30 riastrad return old;
473 1.30 riastrad }
474 1.30 riastrad
475 1.30 riastrad static inline long
476 1.14 riastrad atomic_long_cmpxchg(struct atomic_long *a, long expect, long new)
477 1.14 riastrad {
478 1.14 riastrad long old;
479 1.14 riastrad
480 1.14 riastrad /*
481 1.14 riastrad * XXX As an optimization, under Linux's semantics we are
482 1.14 riastrad * allowed to skip the memory barrier if the comparison fails,
483 1.14 riastrad * but taking advantage of that is not convenient here.
484 1.14 riastrad */
485 1.14 riastrad smp_mb__before_atomic();
486 1.14 riastrad old = (long)atomic_cas_ulong(&a->al_v, (unsigned long)expect,
487 1.14 riastrad (unsigned long)new);
488 1.14 riastrad smp_mb__after_atomic();
489 1.14 riastrad
490 1.14 riastrad return old;
491 1.14 riastrad }
492 1.14 riastrad
493 1.2 riastrad #endif /* _LINUX_ATOMIC_H_ */
494