#ifndef _HPPA_CPUFUNC_H_
#define _HPPA_CPUFUNC_H_
#include <machine/psl.h>
#include <machine/pte.h>
#define tlbbtop(b) ((b) >> (PGSHIFT - 5))
#define tlbptob(p) ((p) << (PGSHIFT - 5))
#define hptbtop(b) ((b) >> 17)
static __inline register_t
ldsid(vaddr_t p) {
register_t ret;
__asm volatile("ldsid (%1),%0" : "=r" (ret) : "r" (p));
return ret;
}
#define mtctl(v,r) __asm volatile("mtctl %0,%1":: "r" (v), "i" (r))
#define mfctl(r,v) __asm volatile("mfctl %1,%0": "=r" (v): "i" (r))
#define mfcpu(r,v) \
__asm volatile("diag %1\n\t" \
"copy %%r22, %0" \
: "=r" (v) : "i" ((0x1400 | ((r) << 21) | (22))) : "r22")
#define mtsp(v,r) __asm volatile("mtsp %0,%1":: "r" (v), "i" (r))
#define mfsp(r,v) __asm volatile("mfsp %1,%0": "=r" (v): "i" (r))
#define ssm(v,r) __asm volatile("ssm %1,%0": "=r" (r): "i" (v))
#define rsm(v,r) __asm volatile("rsm %1,%0": "=r" (r): "i" (v))
static __inline register_t
lci(pa_space_t sp, vaddr_t va) {
register_t ret;
mtsp((sp), 1); \
__asm volatile("lci 0(%%sr1, %1), %0" : "=r" (ret) : "r" (va));
return ret;
}
static __inline register_t mtsm(register_t mask) {
register_t ret;
__asm volatile(
"ssm 0,%0\n\t"
"mtsm %1": "=&r" (ret) : "r" (mask));
return ret;
}
#define fdce(sp,off) __asm volatile("fdce 0(%0,%1)":: "i" (sp), "r" (off))
#define fice(sp,off) __asm volatile("fice 0(%0,%1)":: "i" (sp), "r" (off))
#define sync_caches() \
__asm volatile("sync\n\tnop\n\tnop\n\tnop\n\tnop\n\tnop\n\tnop\n\tnop":::"memory")
static __inline void
iitlba(u_int pg, pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("iitlba %0,(%%sr1, %1)":: "r" (pg), "r" (va));
}
static __inline void
idtlba(u_int pg, pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("idtlba %0,(%%sr1, %1)":: "r" (pg), "r" (va));
}
static __inline void
iitlbp(u_int prot, pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("iitlbp %0,(%%sr1, %1)":: "r" (prot), "r" (va));
}
static __inline void
idtlbp(u_int prot, pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("idtlbp %0,(%%sr1, %1)":: "r" (prot), "r" (va));
}
static __inline void
pitlb(pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("pitlb %%r0(%%sr1, %0)":: "r" (va));
}
static __inline void
pdtlb(pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("pdtlb %%r0(%%sr1, %0)":: "r" (va));
}
static __inline void
pitlbe(pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("pitlbe %%r0(%%sr1, %0)":: "r" (va));
}
static __inline void
pdtlbe(pa_space_t sp, vaddr_t va)
{
mtsp(sp, 1);
__asm volatile("pdtlbe %%r0(%%sr1, %0)":: "r" (va));
}
static __inline void
hppa_disable_irq(void)
{
__asm volatile("rsm %0, %%r0" :: "i" (PSW_I) : "memory");
}
static __inline void
hppa_enable_irq(void)
{
__asm volatile("ssm %0, %%r0" :: "i" (PSW_I) : "memory");
}
#ifdef _KERNEL
extern int (*cpu_hpt_init)(vaddr_t, vsize_t);
void ficache(pa_space_t, vaddr_t, vsize_t);
void fdcache(pa_space_t, vaddr_t, vsize_t);
void pdcache(pa_space_t, vaddr_t, vsize_t);
void fcacheall(void);
void ptlball(void);
#define PCXL2_ACCEL_IO_START 0xf4000000
#define PCXL2_ACCEL_IO_END (0xfc000000 - 1)
#define PCXL2_ACCEL_IO_ADDR2MASK(a) (0x8 >> ((((a) >> 25) - 2) & 3))
void eaio_l2(int);
#endif
#endif