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mm: always lock the root (oldest) anon_vma
Always (and only) lock the root (oldest) anon_vma whenever we do something in an anon_vma. The recently introduced anon_vma scalability is due to the rmap code scanning only the VMAs that need to be scanned. Many common operations still took the anon_vma lock on the root anon_vma, so always taking that lock is not expected to introduce any scalability issues. However, always taking the same lock does mean we only need to take one lock, which means rmap_walk on pages from any anon_vma in the vma is excluded from occurring during an munmap, expand_stack or other operation that needs to exclude rmap_walk and similar functions. Also add the proper locking to vma_adjust. Signed-off-by: Rik van Riel <riel@redhat.com> Tested-by: Larry Woodman <lwoodman@redhat.com> Acked-by: Larry Woodman <lwoodman@redhat.com> Reviewed-by: Minchan Kim <minchan.kim@gmail.com> Reviewed-by: KAMEZAWA Hiroyuki <kamezawa.hiroyu@jp.fujitsu.com> Acked-by: Mel Gorman <mel@csn.ul.ie> Acked-by: Linus Torvalds <torvalds@linux-foundation.org> Signed-off-by: Andrew Morton <akpm@linux-foundation.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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5c341ee1df
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@ -104,24 +104,24 @@ static inline void vma_lock_anon_vma(struct vm_area_struct *vma)
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{
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struct anon_vma *anon_vma = vma->anon_vma;
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if (anon_vma)
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spin_lock(&anon_vma->lock);
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spin_lock(&anon_vma->root->lock);
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}
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static inline void vma_unlock_anon_vma(struct vm_area_struct *vma)
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{
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struct anon_vma *anon_vma = vma->anon_vma;
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if (anon_vma)
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spin_unlock(&anon_vma->lock);
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spin_unlock(&anon_vma->root->lock);
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}
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static inline void anon_vma_lock(struct anon_vma *anon_vma)
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{
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spin_lock(&anon_vma->lock);
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spin_lock(&anon_vma->root->lock);
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}
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static inline void anon_vma_unlock(struct anon_vma *anon_vma)
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{
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spin_unlock(&anon_vma->lock);
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spin_unlock(&anon_vma->root->lock);
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}
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/*
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2
mm/ksm.c
2
mm/ksm.c
@ -325,7 +325,7 @@ static void drop_anon_vma(struct rmap_item *rmap_item)
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{
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struct anon_vma *anon_vma = rmap_item->anon_vma;
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if (atomic_dec_and_lock(&anon_vma->external_refcount, &anon_vma->lock)) {
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if (atomic_dec_and_lock(&anon_vma->external_refcount, &anon_vma->root->lock)) {
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int empty = list_empty(&anon_vma->head);
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anon_vma_unlock(anon_vma);
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if (empty)
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@ -682,7 +682,7 @@ skip_unmap:
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rcu_unlock:
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/* Drop an anon_vma reference if we took one */
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if (anon_vma && atomic_dec_and_lock(&anon_vma->external_refcount, &anon_vma->lock)) {
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if (anon_vma && atomic_dec_and_lock(&anon_vma->external_refcount, &anon_vma->root->lock)) {
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int empty = list_empty(&anon_vma->head);
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anon_vma_unlock(anon_vma);
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if (empty)
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30
mm/mmap.c
30
mm/mmap.c
@ -506,6 +506,7 @@ int vma_adjust(struct vm_area_struct *vma, unsigned long start,
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struct vm_area_struct *importer = NULL;
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struct address_space *mapping = NULL;
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struct prio_tree_root *root = NULL;
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struct anon_vma *anon_vma = NULL;
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struct file *file = vma->vm_file;
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long adjust_next = 0;
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int remove_next = 0;
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@ -578,6 +579,17 @@ again: remove_next = 1 + (end > next->vm_end);
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}
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}
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/*
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* When changing only vma->vm_end, we don't really need anon_vma
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* lock. This is a fairly rare case by itself, but the anon_vma
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* lock may be shared between many sibling processes. Skipping
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* the lock for brk adjustments makes a difference sometimes.
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*/
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if (vma->anon_vma && (insert || importer || start != vma->vm_start)) {
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anon_vma = vma->anon_vma;
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anon_vma_lock(anon_vma);
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}
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if (root) {
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flush_dcache_mmap_lock(mapping);
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vma_prio_tree_remove(vma, root);
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@ -617,6 +629,8 @@ again: remove_next = 1 + (end > next->vm_end);
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__insert_vm_struct(mm, insert);
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}
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if (anon_vma)
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anon_vma_unlock(anon_vma);
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if (mapping)
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spin_unlock(&mapping->i_mmap_lock);
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@ -2470,23 +2484,23 @@ static DEFINE_MUTEX(mm_all_locks_mutex);
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static void vm_lock_anon_vma(struct mm_struct *mm, struct anon_vma *anon_vma)
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{
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if (!test_bit(0, (unsigned long *) &anon_vma->head.next)) {
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if (!test_bit(0, (unsigned long *) &anon_vma->root->head.next)) {
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/*
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* The LSB of head.next can't change from under us
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* because we hold the mm_all_locks_mutex.
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*/
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spin_lock_nest_lock(&anon_vma->lock, &mm->mmap_sem);
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spin_lock_nest_lock(&anon_vma->root->lock, &mm->mmap_sem);
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/*
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* We can safely modify head.next after taking the
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* anon_vma->lock. If some other vma in this mm shares
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* anon_vma->root->lock. If some other vma in this mm shares
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* the same anon_vma we won't take it again.
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*
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* No need of atomic instructions here, head.next
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* can't change from under us thanks to the
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* anon_vma->lock.
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* anon_vma->root->lock.
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*/
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if (__test_and_set_bit(0, (unsigned long *)
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&anon_vma->head.next))
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&anon_vma->root->head.next))
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BUG();
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}
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}
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@ -2577,7 +2591,7 @@ out_unlock:
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static void vm_unlock_anon_vma(struct anon_vma *anon_vma)
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{
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if (test_bit(0, (unsigned long *) &anon_vma->head.next)) {
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if (test_bit(0, (unsigned long *) &anon_vma->root->head.next)) {
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/*
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* The LSB of head.next can't change to 0 from under
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* us because we hold the mm_all_locks_mutex.
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@ -2588,10 +2602,10 @@ static void vm_unlock_anon_vma(struct anon_vma *anon_vma)
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*
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* No need of atomic instructions here, head.next
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* can't change from under us until we release the
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* anon_vma->lock.
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* anon_vma->root->lock.
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*/
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if (!__test_and_clear_bit(0, (unsigned long *)
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&anon_vma->head.next))
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&anon_vma->root->head.next))
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BUG();
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anon_vma_unlock(anon_vma);
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}
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