1 #ifndef _ASM_GENERIC_DIV64_H
2 #define _ASM_GENERIC_DIV64_H
4 * Copyright (C) 2003 Bernardo Innocenti <bernie@develer.com>
5 * Based on former asm-ppc/div64.h and asm-m68knommu/div64.h
7 * The semantics of do_div() are:
9 * uint32_t do_div(uint64_t *n, uint32_t base)
11 * uint32_t remainder = *n % base;
16 * NOTE: macro parameter n is evaluated multiple times,
17 * beware of side effects!
20 #include <linux/types.h>
21 #include <linux/compiler.h>
23 #if BITS_PER_LONG == 64
25 # define do_div(n,base) ({ \
26 uint32_t __base = (base); \
28 __rem = ((uint64_t)(n)) % __base; \
29 (n) = ((uint64_t)(n)) / __base; \
33 static inline uint64_t div64_64(uint64_t dividend, uint64_t divisor)
35 return dividend / divisor;
38 #elif BITS_PER_LONG == 32
40 extern uint32_t __div64_32(uint64_t *dividend, uint32_t divisor);
42 /* The unnecessary pointer compare is there
43 * to check for type safety (n must be 64bit)
45 # define do_div(n,base) ({ \
46 uint32_t __base = (base); \
48 (void)(((typeof((n)) *)0) == ((uint64_t *)0)); \
49 if (likely(((n) >> 32) == 0)) { \
50 __rem = (uint32_t)(n) % __base; \
51 (n) = (uint32_t)(n) / __base; \
53 __rem = __div64_32(&(n), __base); \
57 extern uint64_t div64_64(uint64_t dividend, uint64_t divisor);
59 #else /* BITS_PER_LONG == ?? */
61 # error do_div() does not yet support the C64
63 #endif /* BITS_PER_LONG */
65 #endif /* _ASM_GENERIC_DIV64_H */