l1pte_index
l1pte_index(va) * sizeof(alpha_pt_entry_t);
kernel_lev1map[l1pte_index(VM_MIN_KERNEL_ADDRESS +
kernel_lev1map[l1pte_index(VPTBASE)] = pte;
l1pte_index(VM_MAXUSER_ADDRESS) * sizeof(pt_entry_t));
l1idx = l1pte_index(va);
for (i = 0; i < l1pte_index(VM_MIN_KERNEL_ADDRESS); i++)
for (i = l1pte_index(VM_MIN_KERNEL_ADDRESS);
i <= l1pte_index(VM_MAX_KERNEL_ADDRESS); i++)
l1pt[l1pte_index(VPTBASE)] = pte;
return &lev1map[l1pte_index(v)];
const size_t l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
pm->pm_pl1vec = pmap_l1_kva(pm) + l1pte_index(vector_page);
+ l1pte_index(va);
const size_t l1slot __diagused = l1pte_index(va);
l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
size_t l1slot = l1pte_index(pmap_maxkvaddr);
l1slot = l1pte_index(va);
*pdp = pmap_l1_kva(pm) + l1pte_index(va);
pm->pm_pl1vec = pmap_l1_kva(pm) + l1pte_index(vector_page);
pd_entry_t * const pdep = &kl1[l1pte_index(va)];
const size_t l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
pd_entry_t * const pdep = (pd_entry_t *) l1pt + l1pte_index(va);
const size_t l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
const size_t l1slot = l1pte_index(va);
l2ptva = segl2ptva + l1pte_index(segoff) * L2_TABLE_SIZE_REAL;
const size_t segl1slot = l1pte_index(segl2va);