m68k: mm: Extend table allocator for multiple sizes
In addition to the PGD/PMD table size (128*4) add a PTE table size (64*4) to the table allocator. This completely removes the pte-table overhead compared to the old code, even for dense tables. Notes: - the allocator gained a list_empty() check to deal with there not being any pages at all. - the free mask is extended to cover more than the 8 bits required for the (512 byte) PGD/PMD tables. - NR_PAGETABLE accounting is restored. Signed-off-by: Peter Zijlstra (Intel) <peterz@infradead.org> Acked-by: Will Deacon <will@kernel.org> Acked-by: Greg Ungerer <gerg@linux-m68k.org> Tested-by: Michael Schmitz <schmitzmic@gmail.com> Tested-by: Greg Ungerer <gerg@linux-m68k.org> Link: https://lore.kernel.org/r/20200131125403.882175409@infradead.org Signed-off-by: Geert Uytterhoeven <geert@linux-m68k.org>
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@ -8,61 +8,68 @@
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extern void mmu_page_ctor(void *page);
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extern void mmu_page_dtor(void *page);
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extern pmd_t *get_pointer_table(void);
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extern int free_pointer_table(pmd_t *);
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enum m68k_table_types {
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TABLE_PGD = 0,
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TABLE_PMD = 0, /* same size as PGD */
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TABLE_PTE = 1,
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};
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extern void init_pointer_table(void *table, int type);
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extern void *get_pointer_table(int type);
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extern int free_pointer_table(void *table, int type);
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static inline pte_t *pte_alloc_one_kernel(struct mm_struct *mm)
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{
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return (pte_t *)get_pointer_table();
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return get_pointer_table(TABLE_PTE);
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}
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static inline void pte_free_kernel(struct mm_struct *mm, pte_t *pte)
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{
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free_pointer_table((void *)pte);
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free_pointer_table(pte, TABLE_PTE);
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}
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static inline pgtable_t pte_alloc_one(struct mm_struct *mm)
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{
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return (pte_t *)get_pointer_table();
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return get_pointer_table(TABLE_PTE);
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}
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static inline void pte_free(struct mm_struct *mm, pgtable_t pgtable)
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{
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free_pointer_table((void *)pgtable);
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free_pointer_table(pgtable, TABLE_PTE);
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}
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static inline void __pte_free_tlb(struct mmu_gather *tlb, pgtable_t pgtable,
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unsigned long address)
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{
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free_pointer_table((void *)pgtable);
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free_pointer_table(pgtable, TABLE_PTE);
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}
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static inline pmd_t *pmd_alloc_one(struct mm_struct *mm, unsigned long address)
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{
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return get_pointer_table();
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return get_pointer_table(TABLE_PMD);
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}
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static inline int pmd_free(struct mm_struct *mm, pmd_t *pmd)
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{
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return free_pointer_table(pmd);
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return free_pointer_table(pmd, TABLE_PMD);
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}
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static inline int __pmd_free_tlb(struct mmu_gather *tlb, pmd_t *pmd,
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unsigned long address)
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{
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return free_pointer_table(pmd);
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return free_pointer_table(pmd, TABLE_PMD);
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}
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static inline void pgd_free(struct mm_struct *mm, pgd_t *pgd)
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{
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pmd_free(mm, (pmd_t *)pgd);
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free_pointer_table(pgd, TABLE_PGD);
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}
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static inline pgd_t *pgd_alloc(struct mm_struct *mm)
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{
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return (pgd_t *)get_pointer_table();
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return get_pointer_table(TABLE_PGD);
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}
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@ -40,10 +40,6 @@
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void *empty_zero_page;
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EXPORT_SYMBOL(empty_zero_page);
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#if !defined(CONFIG_SUN3) && !defined(CONFIG_COLDFIRE)
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extern void init_pointer_table(unsigned long ptable);
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#endif
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#ifdef CONFIG_MMU
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pg_data_t pg_data_map[MAX_NUMNODES];
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@ -127,12 +123,16 @@ static inline void init_pointer_tables(void)
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int i;
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/* insert pointer tables allocated so far into the tablelist */
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init_pointer_table((unsigned long)kernel_pg_dir);
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init_pointer_table(kernel_pg_dir, TABLE_PGD);
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for (i = 0; i < PTRS_PER_PGD; i++) {
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pud_t *pud = (pud_t *)(&kernel_pg_dir[i]);
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pud_t *pud = (pud_t *)&kernel_pg_dir[i];
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pmd_t *pmd_dir;
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if (pud_present(*pud))
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init_pointer_table(pgd_page_vaddr(kernel_pg_dir[i]));
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if (!pud_present(*pud))
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continue;
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pmd_dir = (pmd_t *)pgd_page_vaddr(kernel_pg_dir[i]);
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init_pointer_table(pmd_dir, TABLE_PMD);
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}
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#endif
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}
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@ -72,24 +72,35 @@ void mmu_page_dtor(void *page)
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arch/sparc/mm/srmmu.c ... */
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typedef struct list_head ptable_desc;
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static LIST_HEAD(ptable_list);
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static struct list_head ptable_list[2] = {
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LIST_HEAD_INIT(ptable_list[0]),
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LIST_HEAD_INIT(ptable_list[1]),
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};
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#define PD_PTABLE(page) ((ptable_desc *)&(virt_to_page(page)->lru))
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#define PD_PAGE(ptable) (list_entry(ptable, struct page, lru))
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#define PD_MARKBITS(dp) (*(unsigned char *)&PD_PAGE(dp)->index)
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#define PD_MARKBITS(dp) (*(unsigned int *)&PD_PAGE(dp)->index)
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#define PTABLE_SIZE (PTRS_PER_PMD * sizeof(pmd_t))
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static const int ptable_shift[2] = {
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7+2, /* PGD, PMD */
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6+2, /* PTE */
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};
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void __init init_pointer_table(unsigned long ptable)
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#define ptable_size(type) (1U << ptable_shift[type])
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#define ptable_mask(type) ((1U << (PAGE_SIZE / ptable_size(type))) - 1)
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void __init init_pointer_table(void *table, int type)
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{
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ptable_desc *dp;
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unsigned long ptable = (unsigned long)table;
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unsigned long page = ptable & PAGE_MASK;
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unsigned char mask = 1 << ((ptable - page)/PTABLE_SIZE);
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unsigned int mask = 1U << ((ptable - page)/ptable_size(type));
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dp = PD_PTABLE(page);
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if (!(PD_MARKBITS(dp) & mask)) {
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PD_MARKBITS(dp) = 0xff;
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list_add(dp, &ptable_list);
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PD_MARKBITS(dp) = ptable_mask(type);
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list_add(dp, &ptable_list[type]);
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}
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PD_MARKBITS(dp) &= ~mask;
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@ -102,12 +113,11 @@ void __init init_pointer_table(unsigned long ptable)
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return;
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}
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pmd_t *get_pointer_table (void)
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void *get_pointer_table(int type)
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{
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ptable_desc *dp = ptable_list.next;
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unsigned char mask = PD_MARKBITS (dp);
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unsigned char tmp;
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unsigned int off;
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ptable_desc *dp = ptable_list[type].next;
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unsigned int mask = list_empty(&ptable_list[type]) ? 0 : PD_MARKBITS(dp);
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unsigned int tmp, off;
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/*
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* For a pointer table for a user process address space, a
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@ -122,30 +132,39 @@ pmd_t *get_pointer_table (void)
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if (!(page = (void *)get_zeroed_page(GFP_KERNEL)))
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return NULL;
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if (type == TABLE_PTE) {
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/*
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* m68k doesn't have SPLIT_PTE_PTLOCKS for not having
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* SMP.
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*/
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pgtable_pte_page_ctor(virt_to_page(page));
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}
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mmu_page_ctor(page);
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new = PD_PTABLE(page);
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PD_MARKBITS(new) = 0xfe;
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PD_MARKBITS(new) = ptable_mask(type) - 1;
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list_add_tail(new, dp);
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return (pmd_t *)page;
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}
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for (tmp = 1, off = 0; (mask & tmp) == 0; tmp <<= 1, off += PTABLE_SIZE)
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for (tmp = 1, off = 0; (mask & tmp) == 0; tmp <<= 1, off += ptable_size(type))
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;
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PD_MARKBITS(dp) = mask & ~tmp;
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if (!PD_MARKBITS(dp)) {
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/* move to end of list */
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list_move_tail(dp, &ptable_list);
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list_move_tail(dp, &ptable_list[type]);
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}
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return (pmd_t *) (page_address(PD_PAGE(dp)) + off);
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return page_address(PD_PAGE(dp)) + off;
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}
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int free_pointer_table (pmd_t *ptable)
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int free_pointer_table(void *table, int type)
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{
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ptable_desc *dp;
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unsigned long page = (unsigned long)ptable & PAGE_MASK;
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unsigned char mask = 1 << (((unsigned long)ptable - page)/PTABLE_SIZE);
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unsigned long ptable = (unsigned long)table;
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unsigned long page = ptable & PAGE_MASK;
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unsigned int mask = 1U << ((ptable - page)/ptable_size(type));
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dp = PD_PTABLE(page);
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if (PD_MARKBITS (dp) & mask)
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@ -153,18 +172,20 @@ int free_pointer_table (pmd_t *ptable)
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PD_MARKBITS (dp) |= mask;
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if (PD_MARKBITS(dp) == 0xff) {
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if (PD_MARKBITS(dp) == ptable_mask(type)) {
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/* all tables in page are free, free page */
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list_del(dp);
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mmu_page_dtor((void *)page);
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if (type == TABLE_PTE)
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pgtable_pte_page_dtor(virt_to_page(page));
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free_page (page);
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return 1;
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} else if (ptable_list.next != dp) {
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} else if (ptable_list[type].next != dp) {
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/*
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* move this descriptor to the front of the list, since
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* it has one or more free tables.
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*/
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list_move(dp, &ptable_list);
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list_move(dp, &ptable_list[type]);
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}
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return 0;
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}
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