KERNBASE3X
const vaddr_t kernbase = KERNBASE3X;
chdr_p->kernbase = KERNBASE3X;
*vaddr = KERNBASE3X + paddr;
i = m68k_btop(SUN3X_MON_DVMA_BASE - KERNBASE3X);
for (i = MMU_TIA(KERNBASE3X); i < MMU_TIA(KERN_END3X); i++) {
for (i = 0; i < MMU_TIA(KERNBASE3X); i++) {
pte_idx = (u_long)m68k_btop(va - KERNBASE3X);
pte = &kernCbase[(u_long)m68k_btop(va - KERNBASE3X)];
idx = m68k_btop(va - KERNBASE3X);
eidx = m68k_btop(va + len - KERNBASE3X);
pte = &kernCbase[(unsigned long) m68k_btop(startva - KERNBASE3X)];
va += KERNBASE3X;
pte = &kernCbase[(u_int)m68k_btop(va - KERNBASE3X)];
idx = m68k_btop(sva - KERNBASE3X);
eidx = m68k_btop(eva - KERNBASE3X);
#define KVAS_SIZE (-KERNBASE3X)
for (a_idx = 0; a_idx < MMU_TIA(KERNBASE3X); a_idx++) {
pte = (mmu_short_pte_t *) (KERNBASE3X + pte_pa);
if (va < KERNBASE3X)
idx = (unsigned long) m68k_btop(va - KERNBASE3X);
va = (pa + KERNBASE3X);
if ((va < KERNBASE3X) || (va >= virtual_contig_end))
if ((va < KERNBASE3X) || (va >= virtual_contig_end))
return va - KERNBASE3X;
virtual_contig_end = KERNBASE3X + 0x400000; /* +4MB */
for (i = 0; i < MMU_TIA(KERNBASE3X); i++) {
for (i = MMU_TIA(KERNBASE3X); i < MMU_A_TBL_SIZE; i++) {
nextpa = virtual_avail - KERNBASE3X;
va = (vaddr_t)KERNBASE3X;
i = m68k_btop(SUN3X_MON_KDB_BASE - KERNBASE3X);