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-rw-r--r--arch/powerpc/mm/hugetlbpage.c435
1 files changed, 301 insertions, 134 deletions
diff --git a/arch/powerpc/mm/hugetlbpage.c b/arch/powerpc/mm/hugetlbpage.c
index 1a6de0a7d8e..7e70ae968e5 100644
--- a/arch/powerpc/mm/hugetlbpage.c
+++ b/arch/powerpc/mm/hugetlbpage.c
@@ -21,6 +21,9 @@
#include <asm/pgalloc.h>
#include <asm/tlb.h>
#include <asm/setup.h>
+#include <asm/hugetlb.h>
+
+#ifdef CONFIG_HUGETLB_PAGE
#define PAGE_SHIFT_64K 16
#define PAGE_SHIFT_16M 24
@@ -48,66 +51,61 @@ static u64 gpage_freearray[MAX_NUMBER_GPAGES];
static unsigned nr_gpages;
#endif
-static inline int shift_to_mmu_psize(unsigned int shift)
-{
- int psize;
+#define hugepd_none(hpd) ((hpd).pd == 0)
- for (psize = 0; psize < MMU_PAGE_COUNT; ++psize)
- if (mmu_psize_defs[psize].shift == shift)
- return psize;
- return -1;
-}
+#ifdef CONFIG_PPC_BOOK3S_64
+/*
+ * At this point we do the placement change only for BOOK3S 64. This would
+ * possibly work on other subarchs.
+ */
-static inline unsigned int mmu_psize_to_shift(unsigned int mmu_psize)
+/*
+ * We have PGD_INDEX_SIZ = 12 and PTE_INDEX_SIZE = 8, so that we can have
+ * 16GB hugepage pte in PGD and 16MB hugepage pte at PMD;
+ */
+int pmd_huge(pmd_t pmd)
{
- if (mmu_psize_defs[mmu_psize].shift)
- return mmu_psize_defs[mmu_psize].shift;
- BUG();
+ /*
+ * leaf pte for huge page, bottom two bits != 00
+ */
+ return ((pmd_val(pmd) & 0x3) != 0x0);
}
-#define hugepd_none(hpd) ((hpd).pd == 0)
-
-pte_t *find_linux_pte_or_hugepte(pgd_t *pgdir, unsigned long ea, unsigned *shift)
+int pud_huge(pud_t pud)
{
- pgd_t *pg;
- pud_t *pu;
- pmd_t *pm;
- hugepd_t *hpdp = NULL;
- unsigned pdshift = PGDIR_SHIFT;
-
- if (shift)
- *shift = 0;
+ /*
+ * leaf pte for huge page, bottom two bits != 00
+ */
+ return ((pud_val(pud) & 0x3) != 0x0);
+}
- pg = pgdir + pgd_index(ea);
- if (is_hugepd(pg)) {
- hpdp = (hugepd_t *)pg;
- } else if (!pgd_none(*pg)) {
- pdshift = PUD_SHIFT;
- pu = pud_offset(pg, ea);
- if (is_hugepd(pu))
- hpdp = (hugepd_t *)pu;
- else if (!pud_none(*pu)) {
- pdshift = PMD_SHIFT;
- pm = pmd_offset(pu, ea);
- if (is_hugepd(pm))
- hpdp = (hugepd_t *)pm;
- else if (!pmd_none(*pm)) {
- return pte_offset_kernel(pm, ea);
- }
- }
- }
+int pgd_huge(pgd_t pgd)
+{
+ /*
+ * leaf pte for huge page, bottom two bits != 00
+ */
+ return ((pgd_val(pgd) & 0x3) != 0x0);
+}
+#else
+int pmd_huge(pmd_t pmd)
+{
+ return 0;
+}
- if (!hpdp)
- return NULL;
+int pud_huge(pud_t pud)
+{
+ return 0;
+}
- if (shift)
- *shift = hugepd_shift(*hpdp);
- return hugepte_offset(hpdp, ea, pdshift);
+int pgd_huge(pgd_t pgd)
+{
+ return 0;
}
-EXPORT_SYMBOL_GPL(find_linux_pte_or_hugepte);
+#endif
pte_t *huge_pte_offset(struct mm_struct *mm, unsigned long addr)
{
+ /* Only called for hugetlbfs pages, hence can ignore THP */
return find_linux_pte_or_hugepte(mm->pgd, addr, NULL);
}
@@ -145,6 +143,7 @@ static int __hugepte_alloc(struct mm_struct *mm, hugepd_t *hpdp,
if (unlikely(!hugepd_none(*hpdp)))
break;
else
+ /* We use the old format for PPC_FSL_BOOK3E */
hpdp->pd = ((unsigned long)new & ~PD_HUGE) | pshift;
}
/* If we bailed from the for loop early, an error occurred, clean up */
@@ -156,9 +155,15 @@ static int __hugepte_alloc(struct mm_struct *mm, hugepd_t *hpdp,
#else
if (!hugepd_none(*hpdp))
kmem_cache_free(cachep, new);
- else
+ else {
+#ifdef CONFIG_PPC_BOOK3S_64
+ hpdp->pd = (unsigned long)new |
+ (shift_to_mmu_psize(pshift) << 2);
+#else
hpdp->pd = ((unsigned long)new & ~PD_HUGE) | pshift;
#endif
+ }
+#endif
spin_unlock(&mm->page_table_lock);
return 0;
}
@@ -175,6 +180,61 @@ static int __hugepte_alloc(struct mm_struct *mm, hugepd_t *hpdp,
#define HUGEPD_PUD_SHIFT PMD_SHIFT
#endif
+#ifdef CONFIG_PPC_BOOK3S_64
+/*
+ * At this point we do the placement change only for BOOK3S 64. This would
+ * possibly work on other subarchs.
+ */
+pte_t *huge_pte_alloc(struct mm_struct *mm, unsigned long addr, unsigned long sz)
+{
+ pgd_t *pg;
+ pud_t *pu;
+ pmd_t *pm;
+ hugepd_t *hpdp = NULL;
+ unsigned pshift = __ffs(sz);
+ unsigned pdshift = PGDIR_SHIFT;
+
+ addr &= ~(sz-1);
+ pg = pgd_offset(mm, addr);
+
+ if (pshift == PGDIR_SHIFT)
+ /* 16GB huge page */
+ return (pte_t *) pg;
+ else if (pshift > PUD_SHIFT)
+ /*
+ * We need to use hugepd table
+ */
+ hpdp = (hugepd_t *)pg;
+ else {
+ pdshift = PUD_SHIFT;
+ pu = pud_alloc(mm, pg, addr);
+ if (pshift == PUD_SHIFT)
+ return (pte_t *)pu;
+ else if (pshift > PMD_SHIFT)
+ hpdp = (hugepd_t *)pu;
+ else {
+ pdshift = PMD_SHIFT;
+ pm = pmd_alloc(mm, pu, addr);
+ if (pshift == PMD_SHIFT)
+ /* 16MB hugepage */
+ return (pte_t *)pm;
+ else
+ hpdp = (hugepd_t *)pm;
+ }
+ }
+ if (!hpdp)
+ return NULL;
+
+ BUG_ON(!hugepd_none(*hpdp) && !hugepd_ok(*hpdp));
+
+ if (hugepd_none(*hpdp) && __hugepte_alloc(mm, hpdp, addr, pdshift, pshift))
+ return NULL;
+
+ return hugepte_offset(hpdp, addr, pdshift);
+}
+
+#else
+
pte_t *huge_pte_alloc(struct mm_struct *mm, unsigned long addr, unsigned long sz)
{
pgd_t *pg;
@@ -212,6 +272,7 @@ pte_t *huge_pte_alloc(struct mm_struct *mm, unsigned long addr, unsigned long sz
return hugepte_offset(hpdp, addr, pdshift);
}
+#endif
#ifdef CONFIG_PPC_FSL_BOOK3E
/* Build list of addresses of gigantic pages. This function is used in early
@@ -240,7 +301,7 @@ void add_gpage(u64 addr, u64 page_size, unsigned long number_of_pages)
int alloc_bootmem_huge_page(struct hstate *hstate)
{
struct huge_bootmem_page *m;
- int idx = shift_to_mmu_psize(hstate->order + PAGE_SHIFT);
+ int idx = shift_to_mmu_psize(huge_page_shift(hstate));
int nr_gpages = gpage_freearray[idx].nr_gpages;
if (nr_gpages == 0)
@@ -401,12 +462,13 @@ static void hugepd_free(struct mmu_gather *tlb, void *hugepte)
{
struct hugepd_freelist **batchp;
- batchp = &__get_cpu_var(hugepd_freelist_cur);
+ batchp = &get_cpu_var(hugepd_freelist_cur);
if (atomic_read(&tlb->mm->mm_users) < 2 ||
cpumask_equal(mm_cpumask(tlb->mm),
cpumask_of(smp_processor_id()))) {
kmem_cache_free(hugepte_cache, hugepte);
+ put_cpu_var(hugepd_freelist_cur);
return;
}
@@ -420,6 +482,7 @@ static void hugepd_free(struct mmu_gather *tlb, void *hugepte)
call_rcu_sched(&(*batchp)->rcu, hugepd_free_rcu_callback);
*batchp = NULL;
}
+ put_cpu_var(hugepd_freelist_cur);
}
#endif
@@ -475,8 +538,14 @@ static void hugetlb_free_pmd_range(struct mmu_gather *tlb, pud_t *pud,
do {
pmd = pmd_offset(pud, addr);
next = pmd_addr_end(addr, end);
- if (pmd_none(*pmd))
+ if (!is_hugepd(pmd)) {
+ /*
+ * if it is not hugepd pointer, we should already find
+ * it cleared.
+ */
+ WARN_ON(!pmd_none_or_clear_bad(pmd));
continue;
+ }
#ifdef CONFIG_PPC_FSL_BOOK3E
/*
* Increment next by the size of the huge mapping since
@@ -556,8 +625,6 @@ static void hugetlb_free_pud_range(struct mmu_gather *tlb, pgd_t *pgd,
/*
* This function frees user-level page tables of a process.
- *
- * Must be called with pagetable lock held.
*/
void hugetlb_free_pgd_range(struct mmu_gather *tlb,
unsigned long addr, unsigned long end,
@@ -613,11 +680,14 @@ follow_huge_addr(struct mm_struct *mm, unsigned long address, int write)
struct page *page;
unsigned shift;
unsigned long mask;
-
+ /*
+ * Transparent hugepages are handled by generic code. We can skip them
+ * here.
+ */
ptep = find_linux_pte_or_hugepte(mm->pgd, address, &shift);
/* Verify it is a huge page else bail. */
- if (!ptep || !shift)
+ if (!ptep || !shift || pmd_trans_huge(*(pmd_t *)ptep))
return ERR_PTR(-EINVAL);
mask = (1UL << shift) - 1;
@@ -628,16 +698,6 @@ follow_huge_addr(struct mm_struct *mm, unsigned long address, int write)
return page;
}
-int pmd_huge(pmd_t pmd)
-{
- return 0;
-}
-
-int pud_huge(pud_t pud)
-{
- return 0;
-}
-
struct page *
follow_huge_pmd(struct mm_struct *mm, unsigned long address,
pmd_t *pmd, int write)
@@ -646,69 +706,6 @@ follow_huge_pmd(struct mm_struct *mm, unsigned long address,
return NULL;
}
-static noinline int gup_hugepte(pte_t *ptep, unsigned long sz, unsigned long addr,
- unsigned long end, int write, struct page **pages, int *nr)
-{
- unsigned long mask;
- unsigned long pte_end;
- struct page *head, *page, *tail;
- pte_t pte;
- int refs;
-
- pte_end = (addr + sz) & ~(sz-1);
- if (pte_end < end)
- end = pte_end;
-
- pte = *ptep;
- mask = _PAGE_PRESENT | _PAGE_USER;
- if (write)
- mask |= _PAGE_RW;
-
- if ((pte_val(pte) & mask) != mask)
- return 0;
-
- /* hugepages are never "special" */
- VM_BUG_ON(!pfn_valid(pte_pfn(pte)));
-
- refs = 0;
- head = pte_page(pte);
-
- page = head + ((addr & (sz-1)) >> PAGE_SHIFT);
- tail = page;
- do {
- VM_BUG_ON(compound_head(page) != head);
- pages[*nr] = page;
- (*nr)++;
- page++;
- refs++;
- } while (addr += PAGE_SIZE, addr != end);
-
- if (!page_cache_add_speculative(head, refs)) {
- *nr -= refs;
- return 0;
- }
-
- if (unlikely(pte_val(pte) != pte_val(*ptep))) {
- /* Could be optimized better */
- *nr -= refs;
- while (refs--)
- put_page(head);
- return 0;
- }
-
- /*
- * Any tail page need their mapcount reference taken before we
- * return.
- */
- while (refs--) {
- if (PageTail(tail))
- get_huge_page_tail(tail);
- tail++;
- }
-
- return 1;
-}
-
static unsigned long hugepte_addr_end(unsigned long addr, unsigned long end,
unsigned long sz)
{
@@ -742,7 +739,7 @@ unsigned long hugetlb_get_unmapped_area(struct file *file, unsigned long addr,
struct hstate *hstate = hstate_file(file);
int mmu_psize = shift_to_mmu_psize(huge_page_shift(hstate));
- return slice_get_unmapped_area(addr, len, flags, mmu_psize, 1, 0);
+ return slice_get_unmapped_area(addr, len, flags, mmu_psize, 1);
}
#endif
@@ -883,11 +880,16 @@ static int __init hugetlbpage_init(void)
pdshift = PUD_SHIFT;
else
pdshift = PGDIR_SHIFT;
-
- pgtable_cache_add(pdshift - shift, NULL);
- if (!PGT_CACHE(pdshift - shift))
- panic("hugetlbpage_init(): could not create "
- "pgtable cache for %d bit pagesize\n", shift);
+ /*
+ * if we have pdshift and shift value same, we don't
+ * use pgt cache for hugepd.
+ */
+ if (pdshift != shift) {
+ pgtable_cache_add(pdshift - shift, NULL);
+ if (!PGT_CACHE(pdshift - shift))
+ panic("hugetlbpage_init(): could not create "
+ "pgtable cache for %d bit pagesize\n", shift);
+ }
}
/* Set default large page size. Currently, we pick 16M or 1M
@@ -920,3 +922,168 @@ void flush_dcache_icache_hugepage(struct page *page)
}
}
}
+
+#endif /* CONFIG_HUGETLB_PAGE */
+
+/*
+ * We have 4 cases for pgds and pmds:
+ * (1) invalid (all zeroes)
+ * (2) pointer to next table, as normal; bottom 6 bits == 0
+ * (3) leaf pte for huge page, bottom two bits != 00
+ * (4) hugepd pointer, bottom two bits == 00, next 4 bits indicate size of table
+ *
+ * So long as we atomically load page table pointers we are safe against teardown,
+ * we can follow the address down to the the page and take a ref on it.
+ */
+
+pte_t *find_linux_pte_or_hugepte(pgd_t *pgdir, unsigned long ea, unsigned *shift)
+{
+ pgd_t pgd, *pgdp;
+ pud_t pud, *pudp;
+ pmd_t pmd, *pmdp;
+ pte_t *ret_pte;
+ hugepd_t *hpdp = NULL;
+ unsigned pdshift = PGDIR_SHIFT;
+
+ if (shift)
+ *shift = 0;
+
+ pgdp = pgdir + pgd_index(ea);
+ pgd = ACCESS_ONCE(*pgdp);
+ /*
+ * Always operate on the local stack value. This make sure the
+ * value don't get updated by a parallel THP split/collapse,
+ * page fault or a page unmap. The return pte_t * is still not
+ * stable. So should be checked there for above conditions.
+ */
+ if (pgd_none(pgd))
+ return NULL;
+ else if (pgd_huge(pgd)) {
+ ret_pte = (pte_t *) pgdp;
+ goto out;
+ } else if (is_hugepd(&pgd))
+ hpdp = (hugepd_t *)&pgd;
+ else {
+ /*
+ * Even if we end up with an unmap, the pgtable will not
+ * be freed, because we do an rcu free and here we are
+ * irq disabled
+ */
+ pdshift = PUD_SHIFT;
+ pudp = pud_offset(&pgd, ea);
+ pud = ACCESS_ONCE(*pudp);
+
+ if (pud_none(pud))
+ return NULL;
+ else if (pud_huge(pud)) {
+ ret_pte = (pte_t *) pudp;
+ goto out;
+ } else if (is_hugepd(&pud))
+ hpdp = (hugepd_t *)&pud;
+ else {
+ pdshift = PMD_SHIFT;
+ pmdp = pmd_offset(&pud, ea);
+ pmd = ACCESS_ONCE(*pmdp);
+ /*
+ * A hugepage collapse is captured by pmd_none, because
+ * it mark the pmd none and do a hpte invalidate.
+ *
+ * A hugepage split is captured by pmd_trans_splitting
+ * because we mark the pmd trans splitting and do a
+ * hpte invalidate
+ *
+ */
+ if (pmd_none(pmd) || pmd_trans_splitting(pmd))
+ return NULL;
+
+ if (pmd_huge(pmd) || pmd_large(pmd)) {
+ ret_pte = (pte_t *) pmdp;
+ goto out;
+ } else if (is_hugepd(&pmd))
+ hpdp = (hugepd_t *)&pmd;
+ else
+ return pte_offset_kernel(&pmd, ea);
+ }
+ }
+ if (!hpdp)
+ return NULL;
+
+ ret_pte = hugepte_offset(hpdp, ea, pdshift);
+ pdshift = hugepd_shift(*hpdp);
+out:
+ if (shift)
+ *shift = pdshift;
+ return ret_pte;
+}
+EXPORT_SYMBOL_GPL(find_linux_pte_or_hugepte);
+
+int gup_hugepte(pte_t *ptep, unsigned long sz, unsigned long addr,
+ unsigned long end, int write, struct page **pages, int *nr)
+{
+ unsigned long mask;
+ unsigned long pte_end;
+ struct page *head, *page, *tail;
+ pte_t pte;
+ int refs;
+
+ pte_end = (addr + sz) & ~(sz-1);
+ if (pte_end < end)
+ end = pte_end;
+
+ pte = ACCESS_ONCE(*ptep);
+ mask = _PAGE_PRESENT | _PAGE_USER;
+ if (write)
+ mask |= _PAGE_RW;
+
+ if ((pte_val(pte) & mask) != mask)
+ return 0;
+
+#ifdef CONFIG_TRANSPARENT_HUGEPAGE
+ /*
+ * check for splitting here
+ */
+ if (pmd_trans_splitting(pte_pmd(pte)))
+ return 0;
+#endif
+
+ /* hugepages are never "special" */
+ VM_BUG_ON(!pfn_valid(pte_pfn(pte)));
+
+ refs = 0;
+ head = pte_page(pte);
+
+ page = head + ((addr & (sz-1)) >> PAGE_SHIFT);
+ tail = page;
+ do {
+ VM_BUG_ON(compound_head(page) != head);
+ pages[*nr] = page;
+ (*nr)++;
+ page++;
+ refs++;
+ } while (addr += PAGE_SIZE, addr != end);
+
+ if (!page_cache_add_speculative(head, refs)) {
+ *nr -= refs;
+ return 0;
+ }
+
+ if (unlikely(pte_val(pte) != pte_val(*ptep))) {
+ /* Could be optimized better */
+ *nr -= refs;
+ while (refs--)
+ put_page(head);
+ return 0;
+ }
+
+ /*
+ * Any tail page need their mapcount reference taken before we
+ * return.
+ */
+ while (refs--) {
+ if (PageTail(tail))
+ get_huge_page_tail(tail);
+ tail++;
+ }
+
+ return 1;
+}