1 #include <klibc/string.h>
2 #include <lunaix/mm/pmm.h>
3 #include <lunaix/mm/vmm.h>
4 #include <lunaix/spike.h>
5 #include <lunaix/syslog.h>
13 // XXX: something here?
20 (x86_page_table*)pmm_alloc_page(KERNEL_PID, PP_FGPERSIST);
21 for (size_t i = 0; i < PG_MAX_ENTRIES; i++) {
22 dir->entry[i] = PTE_NULL;
25 // 递归映射,方便我们在软件层面进行查表地址转换
26 dir->entry[PG_MAX_ENTRIES - 1] = NEW_L1_ENTRY(T_SELF_REF_PERM, dir);
32 vmm_set_mapping(ptr_t mnt, ptr_t va, ptr_t pa, pt_attr attr, int options)
34 assert((ptr_t)va % PG_SIZE == 0);
36 ptr_t l1_inx = L1_INDEX(va);
37 ptr_t l2_inx = L2_INDEX(va);
38 x86_page_table* l1pt = (x86_page_table*)(mnt | (1023 << 12));
39 x86_page_table* l2pt = (x86_page_table*)(mnt | (l1_inx << 12));
41 // See if attr make sense
44 x86_pte_t* l1pte = &l1pt->entry[l1_inx];
46 x86_page_table* new_l1pt_pa =
47 (x86_page_table*)pmm_alloc_page(KERNEL_PID, PP_FGPERSIST);
54 // This must be writable
55 *l1pte = NEW_L1_ENTRY(attr | PG_WRITE | PG_PRESENT, new_l1pt_pa);
57 // make sure our new l2 table is visible to CPU
58 cpu_flush_page((ptr_t)l2pt);
60 memset((void*)l2pt, 0, PG_SIZE);
62 if ((attr & PG_ALLOW_USER) && !(*l1pte & PG_ALLOW_USER)) {
63 *l1pte |= PG_ALLOW_USER;
66 x86_pte_t pte = l2pt->entry[l2_inx];
67 if (pte && (options & VMAP_IGNORE)) {
72 if (mnt == VMS_SELF) {
76 if ((options & VMAP_NOMAP)) {
80 l2pt->entry[l2_inx] = NEW_L2_ENTRY(attr, pa);
85 vmm_del_mapping(ptr_t mnt, ptr_t va)
87 assert(((ptr_t)va & 0xFFFU) == 0);
89 u32_t l1_index = L1_INDEX(va);
90 u32_t l2_index = L2_INDEX(va);
92 // prevent unmap of recursive mapping region
93 if (l1_index == 1023) {
97 x86_page_table* l1pt = (x86_page_table*)(mnt | (1023 << 12));
99 x86_pte_t l1pte = l1pt->entry[l1_index];
102 x86_page_table* l2pt = (x86_page_table*)(mnt | (l1_index << 12));
103 x86_pte_t l2pte = l2pt->entry[l2_index];
106 l2pt->entry[l2_index] = PTE_NULL;
108 return PG_ENTRY_ADDR(l2pte);
115 vmm_lookup(ptr_t va, v_mapping* mapping)
117 return vmm_lookupat(VMS_SELF, va, mapping);
121 vmm_lookupat(ptr_t mnt, ptr_t va, v_mapping* mapping)
123 u32_t l1_index = L1_INDEX(va);
124 u32_t l2_index = L2_INDEX(va);
126 x86_page_table* l1pt = (x86_page_table*)(mnt | 1023 << 12);
127 x86_pte_t l1pte = l1pt->entry[l1_index];
131 &((x86_page_table*)(mnt | (l1_index << 12)))->entry[l2_index];
134 mapping->flags = PG_ENTRY_FLAGS(*l2pte);
135 mapping->pa = PG_ENTRY_ADDR(*l2pte);
136 mapping->pn = mapping->pa >> PG_SIZE_BITS;
137 mapping->pte = l2pte;
149 u32_t l1_index = L1_INDEX(va);
150 u32_t l2_index = L2_INDEX(va);
152 x86_page_table* l1pt = (x86_page_table*)L1_BASE_VADDR;
153 x86_pte_t l1pte = l1pt->entry[l1_index];
157 &((x86_page_table*)L2_VADDR(l1_index))->entry[l2_index];
160 return PG_ENTRY_ADDR(*l2pte) | ((ptr_t)va & 0xfff);
167 vmm_v2pat(ptr_t mnt, ptr_t va)
169 u32_t l1_index = L1_INDEX(va);
170 u32_t l2_index = L2_INDEX(va);
172 x86_page_table* l1pt = (x86_page_table*)(mnt | 1023 << 12);
173 x86_pte_t l1pte = l1pt->entry[l1_index];
177 &((x86_page_table*)(mnt | (l1_index << 12)))->entry[l2_index];
180 return PG_ENTRY_ADDR(*l2pte) | ((ptr_t)va & 0xfff);
187 vmm_mount_pd(ptr_t mnt, ptr_t pde)
189 x86_page_table* l1pt = (x86_page_table*)L1_BASE_VADDR;
190 l1pt->entry[(mnt >> 22)] = NEW_L1_ENTRY(T_SELF_REF_PERM, pde);
196 vmm_unmount_pd(ptr_t mnt)
198 x86_page_table* l1pt = (x86_page_table*)L1_BASE_VADDR;
199 l1pt->entry[(mnt >> 22)] = 0;