1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
|
#include <apos/string.h>
#include <apos/pmem.h>
#include <apos/vmem.h>
#include <pages.h>
#define pte_ppn(pte) (((pm_t)(pte)) >> 10)
#define pte_flags(pte) (((pm_t)(pte)) & 0xff)
#define to_pte(p, f) ((pm_to_pnum(p) << 10) + (f))
#define pte_addr(pte) (pnum_to_paddr(pte_ppn(pte)))
/* probably not actually this simple, right? */
void map_vmem(struct vm_branch_t *branch,
pm_t paddr, vm_t vaddr, uint8_t flags, enum mm_order_t order)
{
enum mm_order_t top = __mm_max_order;
while (top != order) {
size_t idx = pm_to_index(vaddr, top);
if (!branch->leaf[idx]) {
pm_t new_leaf = alloc_page(MM_KPAGE, 0);
branch->leaf[idx] =
(struct vm_branch_t *)to_pte(new_leaf, VM_V);
memset((void *)new_leaf, 0, sizeof(struct vm_branch_t));
}
branch = (struct vm_branch_t *)pte_addr(branch->leaf[idx]);
top--;
}
size_t idx = pm_to_index(vaddr, top);
branch->leaf[idx] = (struct vm_branch_t *)to_pte(paddr, flags);
}
void unmap_vmem(struct vm_branch_t *branch, vm_t vaddr, enum mm_order_t order)
{
while (order) {
size_t idx = pm_to_index(vaddr, order);
branch = (struct vm_branch_t *)pte_addr(branch->leaf[idx]);
}
size_t idx = pm_to_index(vaddr, order);
if (branch->leaf[idx])
free_page(order, pte_addr(branch->leaf[idx]));
branch->leaf[idx] = 0;
}
|