VADDR_TO_PDENT
index = VADDR_TO_PDENT(virtualAddress);
dindex = VADDR_TO_PDENT(virtualAddress);
uint32 pageDirectoryIndex = VADDR_TO_PDENT(virtAddr);
uint32_t pageDirectoryIndex = VADDR_TO_PDENT(virtAddr);
int32 index = VADDR_TO_PDENT((addr_t)virtualBase);
int index = VADDR_TO_PDENT(virtualAddress);
uint32 index = VADDR_TO_PDENT(virtualAddress);
+ VADDR_TO_PDENT(address) + i;
int index = VADDR_TO_PDENT(virtualAddress);
return VADDR_TO_PDENT(end) + 1 - VADDR_TO_PDENT(start);
uint32 index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(address);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(virtualAddress);
int index = VADDR_TO_PDENT(va);
for (uint32 i = VADDR_TO_PDENT(USER_BASE);
i <= VADDR_TO_PDENT(USER_BASE + (USER_SIZE - 1)); i++) {
int index = VADDR_TO_PDENT(address);
#define FIRST_USER_PGDIR_ENT (VADDR_TO_PDENT(USER_BASE))
#define NUM_USER_PGDIR_ENTS (VADDR_TO_PDENT(ROUNDUP(USER_SIZE, \
#define FIRST_KERNEL_PGDIR_ENT (VADDR_TO_PDENT(KERNEL_BASE))
#define NUM_KERNEL_PGDIR_ENTS (VADDR_TO_PDENT(KERNEL_SIZE))
#define FIRST_USER_PGDIR_ENT (VADDR_TO_PDENT(USER_BASE))
#define NUM_USER_PGDIR_ENTS (VADDR_TO_PDENT(ROUNDUP(USER_SIZE, B_PAGE_SIZE * 64)))
#define FIRST_KERNEL_PGDIR_ENT (VADDR_TO_PDENT(KERNEL_BASE))
#define NUM_KERNEL_PGDIR_ENTS (VADDR_TO_PDENT(KERNEL_SIZE))
e = &pd[(VADDR_TO_PDENT(sIOSpaceBase) + i) % NUM_DIRENT_PER_TBL];
index = VADDR_TO_PDENT((addr_t)&sQueryDesc);
index = VADDR_TO_PDENT(queryPage);
index = VADDR_TO_PDENT(va);
index = VADDR_TO_PDENT(va);
need += (VADDR_TO_PDENT(end) + 1 - VADDR_TO_PDENT(start) + NUM_PAGETBL_PER_PAGE - 1) / NUM_PAGETBL_PER_PAGE;
dindex = VADDR_TO_PDENT(va);
index = VADDR_TO_PDENT(start);
index = VADDR_TO_PDENT(va);
index = VADDR_TO_PDENT(va);
index = VADDR_TO_PDENT(start);
index = VADDR_TO_PDENT(va);
index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(virtualAddress);
e = &pd[(VADDR_TO_PDENT(address) + i) % NUM_DIRENT_PER_TBL];
index = VADDR_TO_PDENT(virtualAddress);
int index = VADDR_TO_PDENT(virtualAddress);
for (uint32 i = VADDR_TO_PDENT(USER_BASE);
i <= VADDR_TO_PDENT(USER_BASE + (USER_SIZE - 1)); i++) {
need += (VADDR_TO_PDENT(end) + 1 - VADDR_TO_PDENT(start) + NUM_PAGETBL_PER_PAGE - 1) / NUM_PAGETBL_PER_PAGE;
dindex = VADDR_TO_PDENT(va);
index = VADDR_TO_PDENT(start);
index = VADDR_TO_PDENT(address);
index = VADDR_TO_PDENT(start);
index = VADDR_TO_PDENT(va);
index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(address);
#define FIRST_USER_PGDIR_ENT (VADDR_TO_PDENT(USER_BASE))
#define NUM_USER_PGDIR_ENTS (VADDR_TO_PDENT(ROUNDUP(USER_SIZE, \
#define FIRST_KERNEL_PGDIR_ENT (VADDR_TO_PDENT(KERNEL_BASE))
#define NUM_KERNEL_PGDIR_ENTS (VADDR_TO_PDENT(KERNEL_SIZE))
#define FIRST_USER_PGDIR_ENT (VADDR_TO_PDENT(USER_BASE))
#define NUM_USER_PGDIR_ENTS (VADDR_TO_PDENT(ROUNDUP(USER_SIZE, B_PAGE_SIZE * 64)))
#define FIRST_KERNEL_PGDIR_ENT (VADDR_TO_PDENT(KERNEL_BASE))
#define NUM_KERNEL_PGDIR_ENTS (VADDR_TO_PDENT(KERNEL_SIZE))
int index = VADDR_TO_PDENT(virtualAddress);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(address);
for (uint32 i = VADDR_TO_PDENT(USER_BASE);
i <= VADDR_TO_PDENT(USER_BASE + (USER_SIZE - 1)); i++) {
uint32 index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(address);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(virtualAddress);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(address);
for (uint32 i = VADDR_TO_PDENT(USER_BASE);
i <= VADDR_TO_PDENT(USER_BASE + (USER_SIZE - 1)); i++) {
uint32 index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(address);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(virtualAddress);
uint32 index = VADDR_TO_PDENT(virtualAddress);
int index = VADDR_TO_PDENT(virtualAddress);
return VADDR_TO_PDENT(end) + 1 - VADDR_TO_PDENT(start);
uint32 index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(address);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(va);
int index = VADDR_TO_PDENT(start);
int index = VADDR_TO_PDENT(va);
for (uint32 i = VADDR_TO_PDENT(USER_BASE);
i <= VADDR_TO_PDENT(USER_BASE + (USER_SIZE - 1)); i++) {
int index = VADDR_TO_PDENT(address);
#define FIRST_USER_PGDIR_ENT (VADDR_TO_PDENT(USER_BASE))
#define NUM_USER_PGDIR_ENTS (VADDR_TO_PDENT(ROUNDUP(USER_SIZE, \
#define FIRST_KERNEL_PGDIR_ENT (VADDR_TO_PDENT(KERNEL_BASE))
#define NUM_KERNEL_PGDIR_ENTS (VADDR_TO_PDENT(KERNEL_SIZE))