Merge 'vm/merged/pinning-synch' into master #64
@@ -40,8 +40,8 @@ struct frame_metadata
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within 'frame_table', whose key is the
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kernel virtual address of the frame. */
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struct list_elem list_elem; /* Tracks the position of the frame metadata
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in either the 'active' or 'inactive' list,
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so a victim can be chosen for eviction. */
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within 'lru_list', so a victim can be
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chosen for eviction. */
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};
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hash_hash_func frame_metadata_hash;
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@@ -63,7 +63,7 @@ frame_init (void)
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hash_init (&frame_table, frame_metadata_hash, frame_metadata_less, NULL);
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list_init (&lru_list);
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lock_init (&lru_lock);
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lock_init (&ftable_lock);
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}
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/* TODO: Consider synchronisation more closely (i.e. just for hash
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@@ -79,7 +79,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
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struct frame_metadata *frame_metadata;
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flags |= PAL_USER;
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lock_acquire (&lru_lock);
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lock_acquire (&ftable_lock);
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void *frame = palloc_get_page (flags);
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/* If a frame couldn't be allocated we must be out of main memory. Thus,
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@@ -122,7 +122,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
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memset (victim->frame, 0, PGSIZE);
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/* 3. Indicate that the new frame's metadata will be stored
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inside the same structure that stored the victim's metadata.
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inside the same structure that stored the victim's metadata.frame.c
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As both the new frame and the victim frame share the same kernel
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virtual address, the hash map need not be updated, and neither
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the list_elem value as both share the same lru_list position. */
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@@ -133,7 +133,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
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we must update the frame table with a new entry, and grow lru_list. */
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else
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{
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/* Must own lru_lock here, as otherwise there is a race condition
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/* Must own ftable_lock here, as otherwise there is a race condition
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with next_victim either being NULL or uninitialized. */
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frame_metadata = malloc (sizeof (struct frame_metadata));
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if (frame_metadata == NULL)
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@@ -165,7 +165,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
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list_push_back (&frame_metadata->owners, &frame_owner->elem);
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frame_metadata->upage = upage;
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frame_metadata->pinned = false;
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lock_release (&lru_lock);
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lock_release (&ftable_lock);
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return frame_metadata->frame;
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}
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@@ -173,28 +173,28 @@ void
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frame_pin (void *frame)
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{
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ASSERT (frame != NULL);
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lock_acquire (&lru_lock);
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lock_acquire (&ftable_lock);
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struct frame_metadata *frame_metadata = frame_metadata_get (frame);
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if (frame_metadata == NULL)
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PANIC ("Attempted to pin a frame at an unallocated kernel address '%p'\n",
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frame);
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frame_metadata->pinned = true;
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lock_release (&lru_lock);
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lock_release (&ftable_lock);
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}
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void
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frame_unpin (void *frame)
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{
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ASSERT (frame != NULL);
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lock_acquire (&lru_lock);
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lock_acquire (&ftable_lock);
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struct frame_metadata *frame_metadata = frame_metadata_get (frame);
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if (frame_metadata == NULL)
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PANIC ("Attempted to unpin a frame at an unallocated kernel address '%p'\n",
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frame);
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frame_metadata->pinned = false;
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lock_release (&lru_lock);
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lock_release (&ftable_lock);
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}
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/* Attempt to deallocate a frame for a user process by removing it from the
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@@ -210,7 +210,7 @@ frame_free (void *frame)
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frame);
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free_owners (&frame_metadata->owners);
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lock_acquire (&lru_lock);
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lock_acquire (&ftable_lock);
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hash_delete (&frame_table, &frame_metadata->hash_elem);
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list_remove (&frame_metadata->list_elem);
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@@ -224,7 +224,7 @@ frame_free (void *frame)
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else
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next_victim = lru_next (next_victim);
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}
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lock_release (&lru_lock);
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lock_release (&ftable_lock);
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free (frame_metadata);
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palloc_free_page (frame);
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@@ -287,9 +287,8 @@ frame_metadata_find (void *frame)
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return hash_entry (e, struct frame_metadata, hash_elem);
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}
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/* TODO: Account for page aliases when checking accessed bit. */
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/* A pre-condition for calling this function is that the calling thread
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owns lru_lock and that lru_list is non-empty. */
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owns ftable_lock and that lru_list is non-empty. */
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static struct frame_metadata *
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get_victim (void)
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{
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@@ -11,8 +11,9 @@ struct frame_owner
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};
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/* Synchronisation variables. */
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/* Protects access to 'lru_list'. */
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struct lock lru_lock;
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/* Protects access to the frame table and its related components. */
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struct lock ftable_lock;
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void frame_init (void);
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void *frame_alloc (enum palloc_flags, void *, struct thread *);
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