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Author SHA1 Message Date
EDiasAlberto
7965c007c8 feat: add general SPT lock for operations across threads 2024-12-06 06:03:22 +00:00
10 changed files with 79 additions and 131 deletions

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@@ -38,3 +38,4 @@ test_vm:
extends: .pintos_tests extends: .pintos_tests
variables: variables:
DIR: vm DIR: vm
IGNORE: (tests/vm/pt-grow-stack|tests/vm/pt-grow-pusha|tests/vm/pt-big-stk-obj|tests/vm/pt-overflowstk|tests/vm/pt-write-code2|tests/vm/pt-grow-stk-sc|tests/vm/page-linear|tests/vm/page-parallel|tests/vm/page-merge-seq|tests/vm/page-merge-par|tests/vm/page-merge-stk|tests/vm/page-merge-mm|tests/vm/mmap-over-stk)

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@@ -736,8 +736,9 @@ init_thread (struct thread *t, const char *name, int nice, int priority,
t->recent_cpu = recent_cpu; t->recent_cpu = recent_cpu;
t->priority = t->base_priority; t->priority = t->base_priority;
lock_init (&t->pages_lock); #ifdef VM
lock_init (&t->pagedir_lock); lock_init (&t->spt_lock);
#endif
old_level = intr_disable (); old_level = intr_disable ();
list_push_back (&all_list, &t->allelem); list_push_back (&all_list, &t->allelem);

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@@ -136,7 +136,6 @@ struct thread
struct list_elem elem; /* List element. */ struct list_elem elem; /* List element. */
struct hash pages; /* Table of open user pages. */ struct hash pages; /* Table of open user pages. */
struct lock pages_lock; /* Lock for the supplementary page table. */
/* Memory mapped files for user virtual memory. */ /* Memory mapped files for user virtual memory. */
struct hash mmap_files; /* List of memory mapped files. */ struct hash mmap_files; /* List of memory mapped files. */
@@ -145,12 +144,13 @@ struct thread
#ifdef USERPROG #ifdef USERPROG
/* Owned by userprog/process.c. */ /* Owned by userprog/process.c. */
uint32_t *pagedir; /* Page directory. */ uint32_t *pagedir; /* Page directory. */
struct lock pagedir_lock; /* Lock for the page directory. */
unsigned int fd_counter; /* File descriptor counter for thread's unsigned int fd_counter; /* File descriptor counter for thread's
open files. */ open files. */
struct hash open_files; /* Hash Table of FD -> Struct File. */ struct hash open_files; /* Hash Table of FD -> Struct File. */
#endif #endif
struct lock spt_lock;
void *curr_esp; void *curr_esp;
/* Owned by thread.c. */ /* Owned by thread.c. */

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@@ -233,19 +233,12 @@ static bool
grow_stack (void *upage) grow_stack (void *upage)
{ {
/* Allocate new page for stack */ /* Allocate new page for stack */
struct thread *t = thread_current ();
lock_acquire (&t->pagedir_lock);
void *new_page = frame_alloc (PAL_ZERO, upage, thread_current ()); void *new_page = frame_alloc (PAL_ZERO, upage, thread_current ());
if (new_page == NULL) if (new_page == NULL)
{ return false;
lock_release (&t->pagedir_lock);
return false;
}
/* Install the page into user page table */ /* Install the page into user page table */
bool result = pagedir_set_page (t->pagedir, upage, new_page, true); if (!pagedir_set_page (thread_current ()->pagedir, upage, new_page, true))
lock_release (&t->pagedir_lock);
if (!result)
{ {
frame_free (new_page); frame_free (new_page);
return false; return false;
@@ -268,7 +261,6 @@ fetch_page (void *upage, bool write)
the faulted virtual address to point to the newly allocated the faulted virtual address to point to the newly allocated
frame. */ frame. */
struct thread *t = thread_current (); struct thread *t = thread_current ();
lock_acquire (&t->pagedir_lock);
if (page_in_swap (t, upage)) if (page_in_swap (t, upage))
{ {
/* NOTE: This code should be refactored and moved into helper functions /* NOTE: This code should be refactored and moved into helper functions
@@ -282,11 +274,12 @@ fetch_page (void *upage, bool write)
lock_release (&page->lock); lock_release (&page->lock);
bool writeable = pagedir_is_writable (t->pagedir, upage); bool writeable = pagedir_is_writable (t->pagedir, upage);
bool result = pagedir_set_page (t->pagedir, upage, kpage, writeable);
lock_release (&t->pagedir_lock); /* TODO: When this returns false we should quit the page fault,
return result; but currently we continue and check the stack conditions in the
page fault handler. */
return pagedir_set_page (t->pagedir, upage, kpage, writeable);
} }
lock_release (&t->pagedir_lock);
/* An attempt to write to a non-writeable should fail. */ /* An attempt to write to a non-writeable should fail. */
if (write && !page->writable) if (write && !page->writable)
@@ -296,7 +289,7 @@ fetch_page (void *upage, bool write)
bool success = false; bool success = false;
switch (page->type) { switch (page->type) {
case PAGE_MMAP: case PAGE_MMAP:
case PAGE_EXECUTABLE: case PAGE_FILE:
case PAGE_SHARED: case PAGE_SHARED:
success = page_load_file (page); success = page_load_file (page);
break; break;
@@ -304,5 +297,9 @@ fetch_page (void *upage, bool write)
return false; return false;
} }
if (success && page->writable &&
!pagedir_is_writable(thread_current()->pagedir, upage))
pagedir_set_writable(thread_current()->pagedir, upage, true);
return success; return success;
} }

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@@ -371,9 +371,7 @@ process_exit (void)
hash_destroy (&cur->open_files, fd_cleanup); hash_destroy (&cur->open_files, fd_cleanup);
/* Clean up the thread's supplemental page table. */ /* Clean up the thread's supplemental page table. */
lock_acquire (&cur->pages_lock);
hash_destroy (&cur->pages, page_cleanup); hash_destroy (&cur->pages, page_cleanup);
lock_release (&cur->pages_lock);
/* Close the executable file, implicitly allowing it to be written to. */ /* Close the executable file, implicitly allowing it to be written to. */
if (cur->exec_file != NULL) if (cur->exec_file != NULL)
@@ -396,7 +394,6 @@ process_exit (void)
/* Destroy the current process's page directory and switch back /* Destroy the current process's page directory and switch back
to the kernel-only page directory. */ to the kernel-only page directory. */
lock_acquire (&cur->pagedir_lock);
pd = cur->pagedir; pd = cur->pagedir;
if (pd != NULL) if (pd != NULL)
{ {
@@ -411,7 +408,6 @@ process_exit (void)
pagedir_activate (NULL); pagedir_activate (NULL);
pagedir_destroy (pd); pagedir_destroy (pd);
} }
lock_release (&cur->pagedir_lock);
} }
/* Destruct a process_result, with multi-thread awareness. /* Destruct a process_result, with multi-thread awareness.
@@ -537,9 +533,7 @@ load (const char *file_name, void (**eip) (void), void **esp)
lock_acquire (&filesys_lock); lock_acquire (&filesys_lock);
/* Allocate and activate page directory. */ /* Allocate and activate page directory. */
lock_acquire (&t->pagedir_lock);
t->pagedir = pagedir_create (); t->pagedir = pagedir_create ();
lock_release (&t->pagedir_lock);
if (t->pagedir == NULL) if (t->pagedir == NULL)
goto done; goto done;
process_activate (); process_activate ();
@@ -721,7 +715,7 @@ load_segment (struct file *file, off_t ofs, uint8_t *upage,
/* Add the page metadata to the SPT to be lazy loaded later on */ /* Add the page metadata to the SPT to be lazy loaded later on */
if (page_insert_file (file, ofs, upage, page_read_bytes, page_zero_bytes, if (page_insert_file (file, ofs, upage, page_read_bytes, page_zero_bytes,
writable, PAGE_EXECUTABLE) == NULL) writable, PAGE_FILE) == NULL)
return false; return false;
/* Advance. */ /* Advance. */
@@ -765,16 +759,11 @@ get_usr_kpage (enum palloc_flags flags, void *upage)
void *page; void *page;
#ifdef VM #ifdef VM
struct thread *t = thread_current (); struct thread *t = thread_current ();
lock_acquire (&t->pagedir_lock);
if (pagedir_get_page (t->pagedir, upage) != NULL) if (pagedir_get_page (t->pagedir, upage) != NULL)
{ return NULL;
lock_release (&t->pagedir_lock);
return NULL;
}
else else
page = frame_alloc (flags, upage, t); page = frame_alloc (flags, upage, t);
pagedir_set_accessed (t->pagedir, upage, true); pagedir_set_accessed (t->pagedir, upage, true);
lock_release (&t->pagedir_lock);
#else #else
page = palloc_get_page (flags | PAL_USER); page = palloc_get_page (flags | PAL_USER);
#endif #endif

View File

@@ -461,9 +461,10 @@ syscall_mmap (int fd, void *addr)
/* Check and ensure that there is enough space in the user virtual memory to /* Check and ensure that there is enough space in the user virtual memory to
hold the entire file. */ hold the entire file. */
for (off_t ofs = 0; ofs < file_size; ofs += PGSIZE) for (off_t ofs = 0; ofs < file_size; ofs += PGSIZE)
{
if (page_get (thread_current (), addr + ofs) != NULL) if (page_get (thread_current (), addr + ofs) != NULL)
return MMAP_FAILURE; return MMAP_FAILURE;
}
/* Map the file data into the user virtual memory starting from addr. */ /* Map the file data into the user virtual memory starting from addr. */
for (off_t ofs = 0; ofs < file_size; ofs += PGSIZE) for (off_t ofs = 0; ofs < file_size; ofs += PGSIZE)
@@ -472,7 +473,7 @@ syscall_mmap (int fd, void *addr)
off_t zero_bytes = PGSIZE - read_bytes; off_t zero_bytes = PGSIZE - read_bytes;
if (page_insert_file (file, ofs, addr + ofs, read_bytes, zero_bytes, true, if (page_insert_file (file, ofs, addr + ofs, read_bytes, zero_bytes, true,
PAGE_MMAP) == NULL) PAGE_FILE) == NULL)
return MMAP_FAILURE; return MMAP_FAILURE;
} }
@@ -481,6 +482,7 @@ syscall_mmap (int fd, void *addr)
if (mmap == NULL) if (mmap == NULL)
return MMAP_FAILURE; return MMAP_FAILURE;
return mmap->mapping; return mmap->mapping;
} }
@@ -575,7 +577,6 @@ validate_user_ptr_helper (const void *start, size_t size, bool write, bool pin)
if (!is_user_vaddr (end)) if (!is_user_vaddr (end))
syscall_exit (EXIT_FAILURE); syscall_exit (EXIT_FAILURE);
struct thread *t = thread_current ();
for (const void *ptr = pg_round_down (start); ptr <= end; ptr += PGSIZE) for (const void *ptr = pg_round_down (start); ptr <= end; ptr += PGSIZE)
{ {
int result; int result;
@@ -591,9 +592,7 @@ validate_user_ptr_helper (const void *start, size_t size, bool write, bool pin)
/* If pin is set, pin the frame to prevent eviction. */ /* If pin is set, pin the frame to prevent eviction. */
if (pin) if (pin)
{ {
lock_acquire (&t->pagedir_lock); void *kpage = pagedir_get_page(thread_current()->pagedir, ptr);
void *kpage = pagedir_get_page (t->pagedir, ptr);
lock_release (&t->pagedir_lock);
if (kpage == NULL) if (kpage == NULL)
{ {
// If it was evicted, try to load it back in. // If it was evicted, try to load it back in.
@@ -643,21 +642,18 @@ validate_and_pin_user_ptr (const void *start, size_t size, bool write)
static void static void
unpin_user_ptr (const void *start, size_t size) unpin_user_ptr (const void *start, size_t size)
{ {
struct thread *t = thread_current ();
void *end = start + size - 1; void *end = start + size - 1;
/* We don't need to do any checks as this function is always called after /* We don't need to do any checks as this function is always called after
validate_and_pin_user_ptr. */ validate_and_pin_user_ptr. */
/* Go through all pages in the block range, unpinning the frames. */ /* Go through all pages in the block range, unpinning the frames. */
lock_acquire (&t->pagedir_lock);
for (void *ptr = pg_round_down (start); ptr <= end; ptr += PGSIZE) for (void *ptr = pg_round_down (start); ptr <= end; ptr += PGSIZE)
{ {
void *kpage = pagedir_get_page (t->pagedir, ptr); void *kpage = pagedir_get_page (thread_current ()->pagedir, ptr);
ASSERT (kpage != NULL); ASSERT (kpage != NULL);
frame_unpin (kpage); frame_unpin (kpage);
} }
lock_release (&t->pagedir_lock);
} }
/* Validates of a C-string starting at ptr is fully contained within valid /* Validates of a C-string starting at ptr is fully contained within valid
@@ -665,7 +661,6 @@ unpin_user_ptr (const void *start, size_t size)
static void static void
validate_and_pin_user_str (const char *ptr) validate_and_pin_user_str (const char *ptr)
{ {
struct thread *t = thread_current ();
size_t offset = (uintptr_t) ptr % PGSIZE; size_t offset = (uintptr_t) ptr % PGSIZE;
for (;;) for (;;)
@@ -678,9 +673,7 @@ validate_and_pin_user_str (const char *ptr)
/* Pin the frame to prevent eviction. */ /* Pin the frame to prevent eviction. */
void *page = pg_round_down (ptr); void *page = pg_round_down (ptr);
lock_acquire (&t->pagedir_lock); void *kpage = pagedir_get_page (thread_current ()->pagedir, page);
void *kpage = pagedir_get_page (t->pagedir, page);
lock_release (&t->pagedir_lock);
if (kpage == NULL) if (kpage == NULL)
{ {
// If it was evicted, attempt to reload. // If it was evicted, attempt to reload.
@@ -710,15 +703,13 @@ validate_and_pin_user_str (const char *ptr)
static void static void
unpin_user_str (const char *ptr) unpin_user_str (const char *ptr)
{ {
struct thread *t = thread_current ();
size_t offset = (uintptr_t)ptr % PGSIZE; size_t offset = (uintptr_t)ptr % PGSIZE;
const char *str_ptr = ptr; const char *str_ptr = ptr;
lock_acquire (&t->pagedir_lock);
for (;;) for (;;)
{ {
void *page = pg_round_down(str_ptr); void *page = pg_round_down(str_ptr);
void *kpage = pagedir_get_page (t->pagedir, page); void *kpage = pagedir_get_page(thread_current()->pagedir, page);
ASSERT(kpage != NULL); ASSERT(kpage != NULL);
frame_unpin (kpage); frame_unpin (kpage);
@@ -726,11 +717,7 @@ unpin_user_str (const char *ptr)
while (offset < PGSIZE) while (offset < PGSIZE)
{ {
if (*str_ptr == '\0') if (*str_ptr == '\0')
{ return; /* Found end of string */
/* Found end of string */
lock_release (&t->pagedir_lock);
return;
}
str_ptr++; str_ptr++;
offset++; offset++;
} }

View File

@@ -28,6 +28,9 @@ struct list lru_list;
victim. Otherwise, the next element in the queue is similarly considered. */ victim. Otherwise, the next element in the queue is similarly considered. */
struct list_elem *next_victim = NULL; struct list_elem *next_victim = NULL;
/* Synchronisation variables. */
/* Protects access to 'lru_list'. */
struct lock lru_lock;
struct frame_metadata struct frame_metadata
{ {
@@ -40,8 +43,8 @@ struct frame_metadata
within 'frame_table', whose key is the within 'frame_table', whose key is the
kernel virtual address of the frame. */ kernel virtual address of the frame. */
struct list_elem list_elem; /* Tracks the position of the frame metadata struct list_elem list_elem; /* Tracks the position of the frame metadata
within 'lru_list', so a victim can be in either the 'active' or 'inactive' list,
chosen for eviction. */ so a victim can be chosen for eviction. */
}; };
hash_hash_func frame_metadata_hash; hash_hash_func frame_metadata_hash;
@@ -50,7 +53,7 @@ hash_less_func frame_metadata_less;
static struct list_elem *lru_next (struct list_elem *e); static struct list_elem *lru_next (struct list_elem *e);
static struct list_elem *lru_prev (struct list_elem *e); static struct list_elem *lru_prev (struct list_elem *e);
static struct frame_metadata *frame_metadata_get (void *frame); static struct frame_metadata *frame_metadata_get (void *frame);
static struct frame_metadata *get_victim (struct thread *cur); static struct frame_metadata *get_victim (void);
static void free_owners (struct list *owners); static void free_owners (struct list *owners);
static struct frame_metadata *frame_metadata_find (void *frame); static struct frame_metadata *frame_metadata_find (void *frame);
@@ -63,7 +66,7 @@ frame_init (void)
hash_init (&frame_table, frame_metadata_hash, frame_metadata_less, NULL); hash_init (&frame_table, frame_metadata_hash, frame_metadata_less, NULL);
list_init (&lru_list); list_init (&lru_list);
lock_init (&ftable_lock); lock_init (&lru_lock);
} }
/* TODO: Consider synchronisation more closely (i.e. just for hash /* TODO: Consider synchronisation more closely (i.e. just for hash
@@ -79,7 +82,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
struct frame_metadata *frame_metadata; struct frame_metadata *frame_metadata;
flags |= PAL_USER; flags |= PAL_USER;
lock_acquire (&ftable_lock); lock_acquire (&lru_lock);
void *frame = palloc_get_page (flags); void *frame = palloc_get_page (flags);
/* If a frame couldn't be allocated we must be out of main memory. Thus, /* If a frame couldn't be allocated we must be out of main memory. Thus,
@@ -91,7 +94,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
if (next_victim == NULL) if (next_victim == NULL)
PANIC ("Couldn't allocate a single page to main memory!\n"); PANIC ("Couldn't allocate a single page to main memory!\n");
struct frame_metadata *victim = get_victim (owner); struct frame_metadata *victim = get_victim ();
ASSERT (victim != NULL); /* get_victim () should never return null. */ ASSERT (victim != NULL); /* get_victim () should never return null. */
/* 2. Handle victim page writing based on its type. */ /* 2. Handle victim page writing based on its type. */
@@ -111,7 +114,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
else else
{ {
/* Otherwise, insert the page into swap. */ /* Otherwise, insert the page into swap. */
page_insert_swapped (victim->upage, victim->frame, &victim->owners, owner); page_insert_swapped (victim->upage, victim->frame, &victim->owners);
} }
/* Free victim's owners. */ /* Free victim's owners. */
@@ -122,7 +125,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
memset (victim->frame, 0, PGSIZE); memset (victim->frame, 0, PGSIZE);
/* 3. Indicate that the new frame's metadata will be stored /* 3. Indicate that the new frame's metadata will be stored
inside the same structure that stored the victim's metadata.frame.c inside the same structure that stored the victim's metadata.
As both the new frame and the victim frame share the same kernel As both the new frame and the victim frame share the same kernel
virtual address, the hash map need not be updated, and neither virtual address, the hash map need not be updated, and neither
the list_elem value as both share the same lru_list position. */ the list_elem value as both share the same lru_list position. */
@@ -133,7 +136,7 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
we must update the frame table with a new entry, and grow lru_list. */ we must update the frame table with a new entry, and grow lru_list. */
else else
{ {
/* Must own ftable_lock here, as otherwise there is a race condition /* Must own lru_lock here, as otherwise there is a race condition
with next_victim either being NULL or uninitialized. */ with next_victim either being NULL or uninitialized. */
frame_metadata = malloc (sizeof (struct frame_metadata)); frame_metadata = malloc (sizeof (struct frame_metadata));
if (frame_metadata == NULL) if (frame_metadata == NULL)
@@ -165,36 +168,30 @@ frame_alloc (enum palloc_flags flags, void *upage, struct thread *owner)
list_push_back (&frame_metadata->owners, &frame_owner->elem); list_push_back (&frame_metadata->owners, &frame_owner->elem);
frame_metadata->upage = upage; frame_metadata->upage = upage;
frame_metadata->pinned = false; frame_metadata->pinned = false;
lock_release (&ftable_lock); lock_release (&lru_lock);
return frame_metadata->frame; return frame_metadata->frame;
} }
void void
frame_pin (void *frame) frame_pin (void *frame)
{ {
ASSERT (frame != NULL);
lock_acquire (&ftable_lock);
struct frame_metadata *frame_metadata = frame_metadata_get (frame); struct frame_metadata *frame_metadata = frame_metadata_get (frame);
if (frame_metadata == NULL) if (frame_metadata == NULL)
PANIC ("Attempted to pin a frame at an unallocated kernel address '%p'\n", PANIC ("Attempted to pin a frame at an unallocated kernel address '%p'\n",
frame); frame);
frame_metadata->pinned = true; frame_metadata->pinned = true;
lock_release (&ftable_lock);
} }
void void
frame_unpin (void *frame) frame_unpin (void *frame)
{ {
ASSERT (frame != NULL);
lock_acquire (&ftable_lock);
struct frame_metadata *frame_metadata = frame_metadata_get (frame); struct frame_metadata *frame_metadata = frame_metadata_get (frame);
if (frame_metadata == NULL) if (frame_metadata == NULL)
PANIC ("Attempted to unpin a frame at an unallocated kernel address '%p'\n", PANIC ("Attempted to unpin a frame at an unallocated kernel address '%p'\n",
frame); frame);
frame_metadata->pinned = false; frame_metadata->pinned = false;
lock_release (&ftable_lock);
} }
/* Attempt to deallocate a frame for a user process by removing it from the /* Attempt to deallocate a frame for a user process by removing it from the
@@ -210,7 +207,7 @@ frame_free (void *frame)
frame); frame);
free_owners (&frame_metadata->owners); free_owners (&frame_metadata->owners);
lock_acquire (&ftable_lock); lock_acquire (&lru_lock);
hash_delete (&frame_table, &frame_metadata->hash_elem); hash_delete (&frame_table, &frame_metadata->hash_elem);
list_remove (&frame_metadata->list_elem); list_remove (&frame_metadata->list_elem);
@@ -224,7 +221,7 @@ frame_free (void *frame)
else else
next_victim = lru_next (next_victim); next_victim = lru_next (next_victim);
} }
lock_release (&ftable_lock); lock_release (&lru_lock);
free (frame_metadata); free (frame_metadata);
palloc_free_page (frame); palloc_free_page (frame);
@@ -287,10 +284,11 @@ frame_metadata_find (void *frame)
return hash_entry (e, struct frame_metadata, hash_elem); return hash_entry (e, struct frame_metadata, hash_elem);
} }
/* TODO: Account for page aliases when checking accessed bit. */
/* A pre-condition for calling this function is that the calling thread /* A pre-condition for calling this function is that the calling thread
owns ftable_lock and that lru_list is non-empty. */ owns lru_lock and that lru_list is non-empty. */
static struct frame_metadata * static struct frame_metadata *
get_victim (struct thread *cur) get_victim (void)
{ {
struct list_elem *ve = next_victim; struct list_elem *ve = next_victim;
struct frame_metadata *frame_metadata; struct frame_metadata *frame_metadata;
@@ -312,8 +310,6 @@ get_victim (struct thread *cur)
{ {
struct frame_owner *frame_owner struct frame_owner *frame_owner
= list_entry (oe, struct frame_owner, elem); = list_entry (oe, struct frame_owner, elem);
if (frame_owner->owner != cur)
lock_acquire (&frame_owner->owner->pagedir_lock);
uint32_t *pd = frame_owner->owner->pagedir; uint32_t *pd = frame_owner->owner->pagedir;
void *upage = frame_metadata->upage; void *upage = frame_metadata->upage;
@@ -322,8 +318,6 @@ get_victim (struct thread *cur)
found = false; found = false;
pagedir_set_accessed (pd, upage, false); pagedir_set_accessed (pd, upage, false);
} }
if (frame_owner->owner != cur)
lock_release (&frame_owner->owner->pagedir_lock);
} }
} }
@@ -378,6 +372,7 @@ frame_metadata_get (void *frame)
struct hash_elem *e = hash_find (&frame_table, &key_metadata.hash_elem); struct hash_elem *e = hash_find (&frame_table, &key_metadata.hash_elem);
if (e == NULL) return NULL; if (e == NULL) return NULL;
return hash_entry (e, struct frame_metadata, hash_elem); return hash_entry (e, struct frame_metadata, hash_elem);
} }

View File

@@ -10,12 +10,7 @@ struct frame_owner
struct list_elem elem; /* List element for the list of owners. */ struct list_elem elem; /* List element for the list of owners. */
}; };
/* Synchronisation variables. */
/* Protects access to the frame table and its related components. */
struct lock ftable_lock;
void frame_init (void); void frame_init (void);
void *frame_alloc (enum palloc_flags, void *, struct thread *); void *frame_alloc (enum palloc_flags, void *, struct thread *);
void frame_pin (void *frame); void frame_pin (void *frame);
void frame_unpin (void *frame); void frame_unpin (void *frame);

View File

@@ -70,16 +70,13 @@ static void page_set_swap (struct thread *owner, uint32_t *pte,
insert a new page entry into the user process thread's SPT representing insert a new page entry into the user process thread's SPT representing
this swapped out page. */ this swapped out page. */
bool bool
page_insert_swapped (void *upage, void *kpage, struct list *owners, page_insert_swapped (void *upage, void *kpage, struct list *owners)
struct thread *cur)
{ {
struct file *exec_file = NULL; struct file *exec_file = NULL;
struct list_elem *e; struct list_elem *e;
for (e = list_begin (owners); e != list_end (owners); e = list_next (e)) for (e = list_begin (owners); e != list_end (owners); e = list_next (e))
{ {
struct thread *owner = list_entry (e, struct frame_owner, elem)->owner; struct thread *owner = list_entry (e, struct frame_owner, elem)->owner;
if (owner != cur)
lock_acquire (&owner->pagedir_lock);
uint32_t *pte = lookup_page (owner->pagedir, upage, false); uint32_t *pte = lookup_page (owner->pagedir, upage, false);
if (exec_file != NULL || page_is_shared_pte (pte)) if (exec_file != NULL || page_is_shared_pte (pte))
{ {
@@ -87,24 +84,17 @@ page_insert_swapped (void *upage, void *kpage, struct list *owners,
pagedir_clear_page (owner->pagedir, upage); pagedir_clear_page (owner->pagedir, upage);
exec_file = owner->exec_file; exec_file = owner->exec_file;
ASSERT (exec_file != NULL); ASSERT (exec_file != NULL);
if (owner != cur)
lock_release (&owner->pagedir_lock);
continue; continue;
} }
ASSERT (list_size (owners) == 1); ASSERT (list_size (owners) == 1);
/* 1. Initialize swapped page entry. */ /* 1. Initialize swapped page entry. */
struct page_entry *page = page_get (owner, upage); struct page_entry *page = page_get (owner, upage);
lock_acquire (&owner->pages_lock);
if (page == NULL) if (page == NULL)
{ {
page = malloc (sizeof (struct page_entry)); page = malloc (sizeof (struct page_entry));
if (page == NULL) if (page == NULL)
{ return NULL;
if (owner != cur)
lock_release (&owner->pagedir_lock);
return false;
}
page->upage = upage; page->upage = upage;
lock_init (&page->lock); lock_init (&page->lock);
hash_insert (&owner->pages, &page->elem); hash_insert (&owner->pages, &page->elem);
@@ -123,9 +113,6 @@ page_insert_swapped (void *upage, void *kpage, struct list *owners,
page_set_swap (owner, pte, swap_slot); page_set_swap (owner, pte, swap_slot);
lock_release (&page->lock); lock_release (&page->lock);
lock_release (&owner->pages_lock);
if (owner != cur)
lock_release (&owner->pagedir_lock);
} }
if (exec_file != NULL) if (exec_file != NULL)
{ {
@@ -146,7 +133,8 @@ page_insert_file (struct file *file, off_t ofs, void *upage,
enum page_type type) enum page_type type)
{ {
/* If page exists, just update it. */ /* If page exists, just update it. */
struct page_entry *existing = page_get (thread_current (), upage); struct thread *t = thread_current ();
struct page_entry *existing = page_get (t, upage);
if (existing != NULL) if (existing != NULL)
{ {
ASSERT (existing->read_bytes == read_bytes); ASSERT (existing->read_bytes == read_bytes);
@@ -168,10 +156,7 @@ page_insert_file (struct file *file, off_t ofs, void *upage,
page->writable = writable; page->writable = writable;
lock_init (&page->lock); lock_init (&page->lock);
struct thread *t = thread_current (); hash_insert (&thread_current ()->pages, &page->elem);
lock_acquire (&t->pages_lock);
hash_insert (&t->pages, &page->elem);
lock_release (&t->pages_lock);
return page; return page;
} }
@@ -180,13 +165,13 @@ page_insert_file (struct file *file, off_t ofs, void *upage,
struct page_entry * struct page_entry *
page_get (struct thread *thread, void *upage) page_get (struct thread *thread, void *upage)
{ {
lock_acquire (&thread->spt_lock);
struct page_entry fake_page_entry; struct page_entry fake_page_entry;
fake_page_entry.upage = upage; fake_page_entry.upage = upage;
lock_acquire (&thread->pages_lock);
struct hash_elem *e struct hash_elem *e
= hash_find (&thread->pages, &fake_page_entry.elem); = hash_find (&thread->pages, &fake_page_entry.elem);
lock_release (&thread->pages_lock); lock_release (&thread->spt_lock);
if (e == NULL) if (e == NULL)
return NULL; return NULL;
@@ -201,7 +186,6 @@ page_load_file (struct page_entry *page)
panics as this should not happen if eviction is working correctly. */ panics as this should not happen if eviction is working correctly. */
struct thread *t = thread_current (); struct thread *t = thread_current ();
bool shareable = !page->writable && file_compare (page->file, t->exec_file); bool shareable = !page->writable && file_compare (page->file, t->exec_file);
lock_acquire (&t->pagedir_lock);
if (shareable) if (shareable)
{ {
lock_acquire (&shared_file_pages_lock); lock_acquire (&shared_file_pages_lock);
@@ -215,24 +199,27 @@ page_load_file (struct page_entry *page)
if (!install_page (page->upage, sfp->frame, page->writable)) if (!install_page (page->upage, sfp->frame, page->writable))
{ {
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
lock_release (&t->pagedir_lock);
return false; return false;
} }
frame_owner_insert (sfp->frame, t); /* First time adding the shared page, so add thread as owner. */
if (page->type != PAGE_SHARED)
{
frame_owner_insert (sfp->frame, t);
}
} }
/* Shared page is in swap. Load it. */ /* Shared page is in swap. Load it. */
else else
{ {
void *frame = frame_alloc (PAL_USER, page->upage, t); void *frame = frame_alloc (PAL_USER, page->upage, t);
if (frame == NULL) if (frame == NULL)
PANIC ("Could not allocate a frame to load page into memory."); PANIC (
"Could not allocate a frame to load page into memory.");
swap_in (frame, sfp->swap_slot); swap_in (frame, sfp->swap_slot);
if (!install_page (page->upage, frame, false)) if (!install_page (page->upage, frame, false))
{ {
frame_free (frame); frame_free (frame);
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
lock_release (&t->pagedir_lock);
return false; return false;
} }
} }
@@ -243,7 +230,6 @@ page_load_file (struct page_entry *page)
page->type = PAGE_SHARED; page->type = PAGE_SHARED;
} }
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
lock_release (&t->pagedir_lock);
return true; return true;
} }
} }
@@ -259,7 +245,6 @@ page_load_file (struct page_entry *page)
if (shareable) if (shareable)
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
frame_free (frame); frame_free (frame);
lock_release (&t->pagedir_lock);
return false; return false;
} }
@@ -271,7 +256,6 @@ page_load_file (struct page_entry *page)
{ {
if (shareable) if (shareable)
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
lock_release (&t->pagedir_lock);
frame_free (frame); frame_free (frame);
return false; return false;
} }
@@ -286,7 +270,6 @@ page_load_file (struct page_entry *page)
if (sfp == NULL) if (sfp == NULL)
{ {
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
lock_release (&t->pagedir_lock);
frame_free (frame); frame_free (frame);
return false; return false;
} }
@@ -301,7 +284,6 @@ page_load_file (struct page_entry *page)
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
} }
lock_release (&t->pagedir_lock);
/* Mark the page as loaded successfully. */ /* Mark the page as loaded successfully. */
return true; return true;
} }
@@ -311,6 +293,7 @@ page_load_file (struct page_entry *page)
void void
page_cleanup (struct hash_elem *e, void *aux UNUSED) page_cleanup (struct hash_elem *e, void *aux UNUSED)
{ {
lock_acquire (&thread_current ()->spt_lock);
struct page_entry *page = hash_entry (e, struct page_entry, elem); struct page_entry *page = hash_entry (e, struct page_entry, elem);
if (page->type == PAGE_SHARED) if (page->type == PAGE_SHARED)
{ {
@@ -333,6 +316,7 @@ page_cleanup (struct hash_elem *e, void *aux UNUSED)
lock_release (&shared_file_pages_lock); lock_release (&shared_file_pages_lock);
} }
free (page); free (page);
lock_release (&thread_current ()->spt_lock);
} }
/* Flags the provided page table entry as representing a swapped out page. */ /* Flags the provided page table entry as representing a swapped out page. */
@@ -364,7 +348,9 @@ page_set_swap (struct thread *owner, uint32_t *pte, size_t swap_slot)
bool bool
page_in_swap (struct thread *owner, void *upage) page_in_swap (struct thread *owner, void *upage)
{ {
lock_acquire (&owner->spt_lock);
uint32_t *pte = lookup_page (owner->pagedir, upage, false); uint32_t *pte = lookup_page (owner->pagedir, upage, false);
lock_release (&owner->spt_lock);
return page_in_swap_pte (pte); return page_in_swap_pte (pte);
} }
@@ -381,6 +367,7 @@ page_in_swap_pte (uint32_t *pte)
size_t size_t
page_get_swap (struct thread *owner, void *upage) page_get_swap (struct thread *owner, void *upage)
{ {
lock_acquire (&owner->spt_lock);
uint32_t *pte = lookup_page (owner->pagedir, upage, false); uint32_t *pte = lookup_page (owner->pagedir, upage, false);
ASSERT (pte != NULL); ASSERT (pte != NULL);
@@ -388,6 +375,7 @@ page_get_swap (struct thread *owner, void *upage)
/* Masks the address bits and returns truncated value. */ /* Masks the address bits and returns truncated value. */
page_flag_swap (pte, false); page_flag_swap (pte, false);
lock_release (&owner->spt_lock);
return ((*pte & PTE_ADDR) >> ADDR_START_BIT); return ((*pte & PTE_ADDR) >> ADDR_START_BIT);
} }

View File

@@ -7,8 +7,9 @@
enum page_type enum page_type
{ {
PAGE_EXECUTABLE, PAGE_FILE,
PAGE_MMAP, PAGE_MMAP,
PAGE_EMPTY,
PAGE_SHARED PAGE_SHARED
}; };
@@ -34,23 +35,17 @@ struct page_entry
struct shared_file_page struct shared_file_page
{ {
struct file *file; /* The shared file page's source file, used for indexing struct file *file;
the table. */ void *upage;
void *upage; /* The shared page's upage which is the same across all process void *frame;
using it. Used for indexing the table. */ size_t swap_slot;
void *frame; /* Set to the frame address of the page when it is in memory. int ref_count;
Set to NULL when the page is in swap. */
size_t swap_slot; /* Set to the swap_slot of the shared paged if it is
currently in swap. Should not be used when frame is not
NULL.*/
int ref_count; /* Number of processes that are using this shared page. */
struct hash_elem elem; /* AN elem for the hash table. */ struct hash_elem elem;
}; };
bool init_pages (struct hash *pages); bool init_pages (struct hash *pages);
bool page_insert_swapped (void *upage, void *kpage, struct list *owners, bool page_insert_swapped (void *upage, void *kpage, struct list *owners);
struct thread *cur);
struct page_entry *page_insert_file (struct file *file, off_t ofs, void *upage, struct page_entry *page_insert_file (struct file *file, off_t ofs, void *upage,
uint32_t read_bytes, uint32_t zero_bytes, uint32_t read_bytes, uint32_t zero_bytes,
bool writable, enum page_type); bool writable, enum page_type);