p32
uint8_t *p8, *p32;
p32 = (uint8_t *)roundup2((uintptr_t)p8, 4);
ni = p32 - p8;
_DIAGASSERT(((uintptr_t)p32 & 3) == 0);
crypto_core(p32, nonce8, seed, crypto_core_constant32);
p32 += crypto_core_OUTPUTBYTES;
(void)memcpy(p32, block, nf);
uint32_t *p32, *p32_end, v32;
p32 = (uint32_t*)list->markers[i].addr;
while (p32 < p32_end) {
v32 = bswap32(*p32);
*p32++ = v32;
u_char p32, scsi_bdid;
volatile uint8_t scsi_dreg, p30, p31, p32; /* 028 */
#define NETBSD32PTR64(p32) NETBSD32IPTR64((p32).i32)
#define NETBSD32PTR32(p32, p64) ((p32).i32 = NETBSD32PTR32I(p64))
#define NETBSD32PTR32PLUS(p32, incr) netbsd32_ptr32_incr(&p32, incr)
#define NETBSD32PTR32I(p32) netbsd32_ptr32i(p32)
#define NETBSD32IPTR64(p32) netbsd32_iptr64(p32)
netbsd32_iptr64(NETBSD32_POINTER_TYPE p32)
return (void *)(intptr_t)p32;
netbsd32_ptr32_incr(netbsd32_pointer_t *p32, uint32_t incr)
netbsd32_pointer_t n32 = *p32;
KASSERT(NETBSD32PTR64(n32) > NETBSD32PTR64(*p32));
return *p32 = n32;
netbsd32_from_ifdatareq(const struct ifdatareq *p, struct netbsd32_ifdatareq *p32, u_long cmd)
memcpy(p32, p, sizeof *p32);
&p32->ifdr_data.ifi_lastchange);
br_range_dec32le(uint32_t *p32, size_t nwords, const void *v)
*p32++ = x0 | (x1 << 8) | (x2 << 16) | (x3 << 24);
volatile uint32_t *p32 = (volatile uint32_t *)((uintptr_t)p & ~3);
o = atomic_load_relaxed(p32);
} while (atomic_cas_32(p32, o, n) != o);
o = atomic_load_relaxed(p32);
} while (atomic_cas_32(p32, o, n) != o);
type32 *p32 = &fs->lfs_dlfs_u.u_32.dlfs_##field; \
*p32 += val; \
type32 *p32 = &fs->lfs_dlfs_u.u_32.dlfs_##field; \
*p32 -= val; \
for (p = p16; p <= p32; p++) {