#define PTE_NULL 0
-#define P2V(paddr) ((uintptr_t)(paddr) + KERNEL_MM_BASE)
-#define V2P(vaddr) ((uintptr_t)(vaddr)-KERNEL_MM_BASE)
+#define P2V(paddr) ((ptr_t)(paddr) + KERNEL_MM_BASE)
+#define V2P(vaddr) ((ptr_t)(vaddr)-KERNEL_MM_BASE)
-#define PG_ALIGN(addr) ((uintptr_t)(addr)&0xFFFFF000UL)
+#define PG_ALIGN(addr) ((ptr_t)(addr)&0xFFFFF000UL)
+#define PG_MOD(addr) ((ptr_t)(addr) & ~PG_SIZE)
+#define PG_ALIGNED(addr) (!((ptr_t)(addr)&0x00000FFFUL))
-#define L1_INDEX(vaddr) (u32_t)(((uintptr_t)(vaddr)&0xFFC00000UL) >> 22)
-#define L2_INDEX(vaddr) (u32_t)(((uintptr_t)(vaddr)&0x003FF000UL) >> 12)
-#define PG_OFFSET(vaddr) (u32_t)((uintptr_t)(vaddr)&0x00000FFFUL)
+#define L1_INDEX(vaddr) (u32_t)(((ptr_t)(vaddr)&0xFFC00000UL) >> 22)
+#define L2_INDEX(vaddr) (u32_t)(((ptr_t)(vaddr)&0x003FF000UL) >> 12)
+#define PG_OFFSET(vaddr) (u32_t)((ptr_t)(vaddr)&0x00000FFFUL)
#define GET_PT_ADDR(pde) PG_ALIGN(pde)
#define GET_PG_ADDR(pte) PG_ALIGN(pte)
-#define PG_DIRTY(pte) ((pte & (1 << 6)) >> 6)
-#define PG_ACCESSED(pte) ((pte & (1 << 5)) >> 5)
-#define PG_PRESENTED(pte) ((pte)&PG_PRESENT)
-
#define IS_CACHED(entry) ((entry & 0x1))
#define PG_PRESENT (0x1)
+#define PG_DIRTY (1 << 6)
+#define PG_ACCESSED (1 << 5)
#define PG_WRITE (0x1 << 1)
#define PG_ALLOW_USER (0x1 << 2)
#define PG_WRITE_THROUGH (1 << 3)
#define PG_DISABLE_CACHE (1 << 4)
#define PG_PDE_4MB (1 << 7)
+#define PG_IS_DIRTY(pte) ((pte)&PG_DIRTY)
+#define PG_IS_ACCESSED(pte) ((pte)&PG_ACCESSED)
+#define PG_IS_PRESENT(pte) ((pte)&PG_PRESENT)
+
#define NEW_L1_ENTRY(flags, pt_addr) \
(PG_ALIGN(pt_addr) | (((flags) | PG_WRITE_THROUGH) & 0xfff))
#define NEW_L2_ENTRY(flags, pg_addr) (PG_ALIGN(pg_addr) | ((flags)&0xfff))
typedef struct
{
// 虚拟页地址
- uintptr_t va;
+ ptr_t va;
// 物理页码(如果不存在映射,则为0)
u32_t pn;
// 物理页地址(如果不存在映射,则为0)
- uintptr_t pa;
+ ptr_t pa;
// 映射的flags
- uint16_t flags;
+ u16_t flags;
// PTE地址
x86_pte_t* pte;
} v_mapping;
typedef struct
{
x86_pte_t entry[PG_MAX_ENTRIES];
-} __attribute__((packed)) x86_page_table;
+} __attribute__((packed, aligned(4))) x86_page_table;
extern void __pg_mount_point;
/* 四个页挂载点,两个页目录挂载点: 用于临时创建&编辑页表 */
#define PG_MOUNT_RANGE(l1_index) (701 <= l1_index && l1_index <= 703)
-#define PD_MOUNT_1 (KERNEL_MM_BASE + MEM_4MB)
-#define PG_MOUNT_BASE (PD_MOUNT_1 + MEM_4MB)
+#define VMS_MOUNT_1 (KERNEL_MM_BASE + MEM_4MB)
+#define PG_MOUNT_BASE (VMS_MOUNT_1 + MEM_4MB)
#define PG_MOUNT_1 (PG_MOUNT_BASE)
#define PG_MOUNT_2 (PG_MOUNT_BASE + 0x1000)
#define PG_MOUNT_3 (PG_MOUNT_BASE + 0x2000)
#define PG_MOUNT_4 (PG_MOUNT_BASE + 0x3000)
-#define PD_REFERENCED L2_BASE_VADDR
+/*
+ 当前进程内存空间挂载点
+*/
+#define VMS_SELF L2_BASE_VADDR
#define CURPROC_PTE(vpn) \
- (&((x86_page_table*)(PD_MOUNT_1 | (((vpn)&0xffc00) << 2))) \
+ (&((x86_page_table*)(VMS_MOUNT_1 | (((vpn)&0xffc00) << 2))) \
->entry[(vpn)&0x3ff])
#define PTE_MOUNTED(mnt, vpn) \
(((x86_page_table*)((mnt) | (((vpn)&0xffc00) << 2)))->entry[(vpn)&0x3ff])