#ifndef _ASM_WORD_AT_A_TIME_H
#define _ASM_WORD_AT_A_TIME_H
#include <linux/kernel.h>
struct word_at_a_time {
const unsigned long one_bits, high_bits;
};
#define WORD_AT_A_TIME_CONSTANTS { REPEAT_BYTE(0x01), REPEAT_BYTE(0x80) }
#ifdef CONFIG_64BIT
static inline long count_masked_bytes(unsigned long mask)
{
return mask*0x0001020304050608ul >> 56;
}
#else /* 32-bit case */
static inline long count_masked_bytes(long mask)
{
long a = (0x0ff0001+mask) >> 23;
return a & mask;
}
#endif
static inline unsigned long has_zero(unsigned long a, unsigned long *bits, const struct word_at_a_time *c)
{
unsigned long mask = ((a - c->one_bits) & ~a) & c->high_bits;
*bits = mask;
return mask;
}
static inline unsigned long prep_zero_mask(unsigned long a, unsigned long bits, const struct word_at_a_time *c)
{
return bits;
}
static inline unsigned long create_zero_mask(unsigned long bits)
{
bits = (bits - 1) & ~bits;
return bits >> 7;
}
#define zero_bytemask(mask) (mask)
static inline unsigned long find_zero(unsigned long mask)
{
return count_masked_bytes(mask);
}
static inline unsigned long load_unaligned_zeropad(const void *addr)
{
unsigned long ret;
asm volatile(
"1: mov %[mem], %[ret]\n"
"2:\n"
_ASM_EXTABLE_TYPE(1b, 2b, EX_TYPE_ZEROPAD)
: [ret] "=r" (ret)
: [mem] "m" (*(unsigned long *)addr));
return ret;
}
#endif /* _ASM_WORD_AT_A_TIME_H */