#include <lunaix/mm/vmm.h>
#include <lunaix/spike.h>
#include <lunaix/syslog.h>
+
#include <sys/cpu.h>
+#include <sys/mm/mm_defs.h>
LOG_MODULE("VMM")
vmm_init_pd()
{
x86_page_table* dir =
- (x86_page_table*)pmm_alloc_page(KERNEL_PID, PP_FGPERSIST);
+ (x86_page_table*)pmm_alloc_page(PP_FGPERSIST);
for (size_t i = 0; i < PG_MAX_ENTRIES; i++) {
dir->entry[i] = PTE_NULL;
}
x86_pte_t* l1pte = &l1pt->entry[l1_inx];
if (!*l1pte) {
x86_page_table* new_l1pt_pa =
- (x86_page_table*)pmm_alloc_page(KERNEL_PID, PP_FGPERSIST);
+ (x86_page_table*)pmm_alloc_page(PP_FGPERSIST);
// 物理内存已满!
if (!new_l1pt_pa) {
return 1;
}
- l2pt->entry[l2_inx] = NEW_L2_ENTRY(attr, pa);
+ if (!(options & VMAP_GUARDPAGE)) {
+ l2pt->entry[l2_inx] = NEW_L2_ENTRY(attr, pa);
+ } else {
+ l2pt->entry[l2_inx] = MEMGUARD;
+ }
+
return 1;
}
ptr_t
vmm_mount_pd(ptr_t mnt, ptr_t pde)
{
+ assert(pde);
+
x86_page_table* l1pt = (x86_page_table*)L1_BASE_VADDR;
l1pt->entry[(mnt >> 22)] = NEW_L1_ENTRY(T_SELF_REF_PERM, pde);
cpu_flush_page(mnt);
l1pt->entry[(mnt >> 22)] = 0;
cpu_flush_page(mnt);
return mnt;
+}
+
+ptr_t
+vmm_dup_page(ptr_t pa)
+{
+ ptr_t new_ppg = pmm_alloc_page(0);
+ vmm_set_mapping(VMS_SELF, PG_MOUNT_3, new_ppg, PG_PREM_RW, VMAP_NULL);
+ vmm_set_mapping(VMS_SELF, PG_MOUNT_4, pa, PG_PREM_RW, VMAP_NULL);
+
+ asm volatile("movl %1, %%edi\n"
+ "movl %2, %%esi\n"
+ "rep movsl\n" ::"c"(1024),
+ "r"(PG_MOUNT_3),
+ "r"(PG_MOUNT_4)
+ : "memory", "%edi", "%esi");
+
+ vmm_del_mapping(VMS_SELF, PG_MOUNT_3);
+ vmm_del_mapping(VMS_SELF, PG_MOUNT_4);
+
+ return new_ppg;
}
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