NBSEG
KASSERT((va & (NBSEG - 1)) == 0);
kvmsize = roundup(kvmsize, NBSEG);
#define SEGOFSET (NBSEG - 1) /* byte offset into segment */
#define SEGOFSET (NBSEG - 1) /* byte offset into segment */
#define SEGOFSET (NBSEG - 1) /* byte offset into segment */
nssva = m68k_trunc_seg(sva) + NBSEG;
nssva = m68k_trunc_seg(va) + NBSEG;
nssva = m68k_trunc_seg(sva) + NBSEG;
#define SEGOFSET (NBSEG - 1) /* byte offset into segment */
CTASSERT(VM_MIN_KERNEL_ADDRESS % NBSEG == 0);
i += NPTEPG, j++, va += NBSEG) {
- pmap_trunc_seg(VM_MIN_KERNEL_ADDRESS)) / NBSEG;
+ kv_nsegtabs * NBSEG;
#define SEGOFSET (NBSEG - 1) /* byte offset into segment */
KASSERT((va & (NBSEG - 1)) == 0);
kvmsize = roundup(kvmsize, NBSEG);
spa += NBSEG;
sva += NBSEG;
const vaddr_t dtbva = VM_KERNEL_DTB_BASE + (dtb & (NBSEG - 1));
for (; virtual_end < maxkvaddr; virtual_end += NBSEG) {
if (vinc > NBSEG) {
KASSERT(vinc == NBSEG);
if (vinc > NBSEG) {
KASSERT(vinc == NBSEG);
vinc == NBSEG ? "release seg" : "release xseg");
const vsize_t vinc = NBSEG;
vaddr_t lastseg_va = pmap_trunc_seg(sva) + NBSEG;