PG_PFNUM
p = (pte & PG_PFNUM) << pgshift;
pa = PG_PFNUM(opte) << PGSHIFT;
#define pmap_pte_pa(pte) (PG_PFNUM(*(pte)) << PGSHIFT)
(pte & PG_PFNUM) != pf)
u_int pa = (pte & PG_PFNUM) << PGSHIFT;
u_int pa = (pte & PG_PFNUM) << PGSHIFT;
paddr_t pa = (pte & PG_PFNUM) << PGSHIFT;
((getpte4(kernel_text) & PG_PFNUM) << PGSHIFT);
pteproto |= atop(pa) & PG_PFNUM;
if ((pte & (PG_PFNUM|PG_TYPE)) ==
(pteproto & (PG_PFNUM|PG_TYPE))) {
if ((pte & (PG_PFNUM|PG_TYPE)) ==
(pteproto & (PG_PFNUM|PG_TYPE))) {
pteproto |= atop(pa) & PG_PFNUM;
pte &= PG_PFNUM;
pte = PG_V | PG_S | PG_W | PG_NC | (atop(pa) & PG_PFNUM);
spte = PG_V | PG_S | (atop(src) & PG_PFNUM);
dpte = PG_V | PG_S | PG_W | PG_NC | (atop(dst) & PG_PFNUM);
pte = PG_S | PG_V | PG_W | PG_NC | ((pa >> PGSHIFT) & PG_PFNUM);
*ppa = (pte & PG_PFNUM) << PGSHIFT;
pte |= ((pa >> SUN4_PGSHIFT) & PG_PFNUM);
#define PG_PA(pte) (PG_PFNUM(pte) << PGSHIFT)
PG_PFNUM(pte) == pf)
#define PG_PA(pte) (PG_PFNUM(pte) << PGSHIFT)
sva = PG_PFNUM(va);
#define kvtopte(va) (&Sysmap[PG_PFNUM(va)])
&(((pcb)->P0BR)[PG_PFNUM(va)]) : \
&(((pcb)->P1BR)[PG_PFNUM(va)]))
*ptpptr = PG_V | PG_KW | PG_PFNUM(phys);
sva = PG_PFNUM(va);
pte += PG_PFNUM(addr);
pa = Sysmap[PG_PFNUM(pte)].pg_pfn << VAX_PGSHIFT;
pte = (int *)&pmap->pm_p0br[PG_PFNUM(v)];
pte = (int *)&pmap->pm_p1br[PG_PFNUM(v)];
PG_PFNUM(pa) | PG_SREF;
pte[i] = PG_V | PG_KW | (PG_PFNUM(paddr) + i);
&(((pmap)->pm_p0br)[PG_PFNUM(va)]) : \
&(((pmap)->pm_p1br)[PG_PFNUM(va)]))
&(*pmap)->pm_p0br[PG_PFNUM(addr)] : &(*pmap)->pm_p1br[PG_PFNUM(addr)])