PG_SHIFT
(i*PAGE_SIZE)) >> PGSHIFT) << PG_SHIFT;
<< PG_SHIFT;
(i*PAGE_SIZE)) >> PGSHIFT) << PG_SHIFT;
npte = ((pa >> PGSHIFT) << PG_SHIFT) | pte_prot(pmap, prot) | PG_V;
((pa >> PGSHIFT) << PG_SHIFT) | pte_prot(pmap_kernel(), prot) |
pte = (atop(ptaddr) << PG_SHIFT) |
*l2pte = (atop(ptaddr) << PG_SHIFT) |
pte = ((ALPHA_K0SEG_TO_PHYS((vaddr_t) l1pt) >> PGSHIFT) << PG_SHIFT) |
const pt_entry_t npte = ((VM_PAGE_TO_PHYS(pg) >> PGSHIFT) << PG_SHIFT) |
#define PG_FRAME ((~0U) << PG_SHIFT)
#define PG_PFNUM(x) (((uintptr_t)(x) & PG_FRAME) >> PG_SHIFT)
#define M68K_MAX_PTSIZE (1U << (32 - PG_SHIFT + 2)) /* max size of UPT */
#define SG_FRAME ((~0U) << PG_SHIFT)
#define SG_ISHIFT ((PG_SHIFT << 1) - 2) /* 24 or 22 */
#define SG_PSHIFT PG_SHIFT
#define SG4_MASK3 (((~0U) << PG_SHIFT) & ~(SG4_MASK1 | SG4_MASK2))
#define SG4_SHIFT3 PG_SHIFT
#define SG4_ADDR2 ((~0U) << (20 - PG_SHIFT))
#define SG4_LEV3SIZE (1U << (SG4_SHIFT2 - PG_SHIFT)) /* 64 or 32 */
#define pmap_pte(m, v) (&((m)->pm_ptab[(vaddr_t)(v) >> PG_SHIFT]))