#ifndef _INTERNAL_ATOMIC_H #define _INTERNAL_ATOMIC_H #include static inline int a_ctz_l(unsigned long x) { if (x == 0) return 32; int nTrailingZeros = 0; while(!(x&1)) { ++nTrailingZeros; x >>= 1; } return nTrailingZeros; } static inline int a_ctz_64(uint64_t x) { uint32_t lo = (uint32_t)x; if (lo == 0) return a_ctz_l((unsigned long)(x >> 32)) + 32; else return a_ctz_l((unsigned long)lo); } static inline void a_and_64(volatile uint64_t *p, uint64_t v) { *p &= v; } static inline void a_or_64(volatile uint64_t *p, uint64_t v) { *p |= v; } static inline void a_store_l(volatile void *p, long x) { *(long*)p = x; } static inline void a_or_l(volatile void *p, long v) { *(long*)p |= v; } static inline void *a_cas_p(volatile void *p, void *t, void *s) { if (*(long*)p == t) *(long*)p = s; return t; } static inline long a_cas_l(volatile void *p, long t, long s) { if (*(long*)p == t) *(long*)p = s; return t; } static inline int a_cas(volatile int *p, int t, int s) { if (*p == t) *p = s; return t; } static inline void a_or(volatile void *p, int v) { *(int*)p |= v; } static inline void a_and(volatile void *p, int v) { *(int*)p &= v; } static inline void a_inc(volatile int *x) { ++*x; } static inline void a_dec(volatile int *x) { --*x; } static inline void a_store(volatile int *p, int x) { *p = x; } static inline void a_spin() { } static inline void a_crash() { } #endif