kvtopte
ptep = kvtopte(addr);
pt_entry_t *kvtopte(vaddr_t);
pmap_pte_clearbits(kvtopte(va), PTE_W);
pte = kvtopte(sva);
pte = kvtopte(sva);
ptep = kvtopte(va);
pt_entry_t *pte = kvtopte(va);
ptp = kvtopte(va);
ptp = kvtopte((vaddr_t)table);
pte = kvtopte(pgva);
pte = kvtopte(vaddr);
pte = kvtopte(vaddr);
ppte = kvtopte(addr);
if (kvtopte(&pte[sva])->pg_v && (pte[sva] & PG_FRAME)) {
(((kvtopte(va))->pg_pfn << VAX_PGSHIFT) | ((paddr_t)(va) & VAX_PGOFSET))
pte = kvtopte(addr);
pt = kvtopte(uv);
kvtopte(istackbase)->pg_v = 0; /* istack safety belt */
va, len, kvtopte(va)));
pte = kvtopte(va);
ptpptr = (int *)kvtopte(pteptr);
if (kvtopte(&pte[sva])->pg_pfn) {
if (kvtopte(pts)->pg_pfn && *(int *)pts) {
pte = (u_int *)kvtopte(vax_trunc_page(pte));
pte = (u_int *)kvtopte(addr);
pte = (int *)kvtopte(v);
kvtopte(istack)->pg_v = 0;
paddr_t paddr = (kvtopte(v)->pg_pfn << VAX_PGSHIFT);
ptpp = (int *)kvtopte(&pm->pm_p0br[i*NPTEPG]);
ptpp = (int *)kvtopte(&pm->pm_p1br[i*NPTEPG]);
int *ptpp = (int *)kvtopte(pte);
from = (char *)kvtopte(pm->pm_p0br);
to = (char *)kvtopte(nptespc);
memset(kvtopte(nptespc), 0, vax_btop(nlen-olen) * PPTESZ);
memcpy(kvtopte(nptespc+nlen-olen), kvtopte(optespc),
if (kvtopte(saddr)->pg_pfn)
if (kvtopte(saddr)->pg_pfn)
ptp = (int *)kvtopte(va);
kvtopte((uintptr_t)uv + REDZONEADDR)->pg_v = 0;
uint32_t *pte = (uint32_t *)kvtopte(vaddr);
uint32_t *pte = (uint32_t *)kvtopte(vaddr);
pte = kvtopte(sva);
pte = kvtopte(sva);
pte = kvtopte(va);
ppte = kvtopte(addr);
pte = kvtopte(va);
pte = kvtopte(va);
pte = kvtopte(va);
pte = kvtopte(va);
pte = kvtopte(va);
pte = kvtopte(object);
pmap_pte_clearbits(kvtopte(base + (i << PAGE_SHIFT)),
ptp = kvtopte(va);
pte = kvtopte(va);
bdp->nb_pte = (uint32_t)kvtopte(mtod(m0, void *));
(long)kvtopte(m->m_ext.ext_buf);
bd->nb_pte = (long)kvtopte(m->m_ext.ext_buf);
mapaddr = ((u_int32_t)kvtopte(addr)) & ~KERNBASE;
QVmap[0] = (struct pte *)kvtopte(qvmem[0]);