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vm/frame-t
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1a2ff35231 |
@@ -16,18 +16,13 @@ stages:
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script:
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- cd src/$DIR
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- make check | tee build.log
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- grep -q "FAIL tests/$DIR" build.log && exit 1 || exit 0
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- grep -vE "^FAIL $IGNORE\$" build.log | grep -q "FAIL tests/$DIR" && exit 1 || exit 0
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test_devices:
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extends: .pintos_tests
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variables:
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DIR: devices
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test_filesys:
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extends: .pintos_tests
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variables:
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DIR: filesys
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test_threads:
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extends: .pintos_tests
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variables:
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@@ -42,3 +37,4 @@ test_vm:
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extends: .pintos_tests
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variables:
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DIR: vm
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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-read|tests/vm/mmap-close|tests/vm/mmap-overlap|tests/vm/mmap-twice|tests/vm/mmap-write|tests/vm/mmap-exit|tests/vm/mmap-shuffle|tests/vm/mmap-clean|tests/vm/mmap-inherit|tests/vm/mmap-misalign|tests/vm/mmap-null|tests/vm/mmap-over-code|tests/vm/mmap-over-data|tests/vm/mmap-over-stk|tests/vm/mmap-remove)
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@@ -62,6 +62,7 @@ userprog_SRC += userprog/gdt.c # GDT initialization.
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userprog_SRC += userprog/tss.c # TSS management.
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# Virtual memory code.
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vm_SRC += vm/frame.c # Frame table manager.
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vm_SRC += devices/swap.c # Swap block manager.
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#vm_SRC = vm/file.c # Some other file.
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@@ -4,7 +4,7 @@ SRCDIR = ..
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# To add a new test, put its name on the PROGS list
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# and then add a name_SRC line that lists its source files.
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PROGS = cat cmp cp echo halt hex-dump mcat mcp rm \
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bubsort insult lineup matmult recursor
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bubsort insult lineup matmult recursor args-ovf
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# Should work from task 2 onward.
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cat_SRC = cat.c
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@@ -18,6 +18,7 @@ lineup_SRC = lineup.c
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ls_SRC = ls.c
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recursor_SRC = recursor.c
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rm_SRC = rm.c
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args-ovf_SRC = args-ovf.c
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# Should work in task 3; also in task 4 if VM is included.
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bubsort_SRC = bubsort.c
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13
src/examples/args-ovf.c
Normal file
13
src/examples/args-ovf.c
Normal file
File diff suppressed because one or more lines are too long
@@ -32,6 +32,7 @@
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#include "tests/threads/tests.h"
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#endif
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#ifdef VM
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#include "vm/frame.h"
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#include "devices/swap.h"
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#endif
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#ifdef FILESYS
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@@ -101,6 +102,9 @@ main (void)
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palloc_init (user_page_limit);
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malloc_init ();
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paging_init ();
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#ifdef VM
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frame_init ();
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#endif
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/* Segmentation. */
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#ifdef USERPROG
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@@ -119,14 +119,14 @@ sema_up (struct semaphore *sema)
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old_level = intr_disable ();
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if (!list_empty (&sema->waiters))
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{
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/* Enforces wake-up of the highest priority thread waiting for the
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semaphore. */
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struct list_elem *e = list_max (&sema->waiters, priority_less, NULL);
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list_remove (e);
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thread_unblock (list_entry (e, struct thread, elem));
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thread_unblocked = true;
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}
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{
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/* Enforces wake-up of the highest priority thread waiting for the
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semaphore. */
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struct list_elem *e = list_max (&sema->waiters, priority_less, NULL);
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list_remove (e);
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thread_unblock (list_entry (e, struct thread, elem));
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thread_unblocked = true;
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}
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sema->value++;
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intr_set_level (old_level);
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@@ -134,12 +134,12 @@ sema_up (struct semaphore *sema)
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priority that the current running thread, including the case when called
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within an interrupt handler. */
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if (thread_unblocked)
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{
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if (intr_context ())
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intr_yield_on_return ();
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else
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thread_yield ();
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}
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{
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if (intr_context ())
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intr_yield_on_return ();
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else
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thread_yield ();
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}
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}
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static void sema_test_helper (void *sema_);
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@@ -71,7 +71,7 @@ static void kernel_thread (thread_func *, void *aux);
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static void idle (void *aux UNUSED);
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static struct thread *running_thread (void);
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static struct thread *next_thread_to_run (void);
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static void init_process_result (struct thread *t);
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static bool init_process_result (struct thread *t);
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static void init_thread (struct thread *, const char *name, int nice,
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int priority, fp32_t recent_cpu);
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static bool is_thread (struct thread *) UNUSED;
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@@ -84,6 +84,10 @@ void thread_schedule_tail (struct thread *prev);
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static tid_t allocate_tid (void);
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static bool donor_priority_less (const struct list_elem *a_,
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const struct list_elem *b_, void *aux UNUSED);
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static unsigned process_result_hash (const struct hash_elem *e,
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void *aux UNUSED);
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static bool process_result_less (const struct hash_elem *a,
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const struct hash_elem *b, void *aux UNUSED);
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/* Initializes the threading system by transforming the code
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that's currently running into a thread. This can't work in
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@@ -122,6 +126,13 @@ thread_init (void)
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void
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thread_start (void)
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{
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/* Malloc has been initalised, we can allocate the child results table
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for the main thread. */
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struct thread *t = thread_current ();
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if (!hash_init (&t->child_results, process_result_hash, process_result_less,
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t))
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PANIC ("Failed to initialise child results table for main thread.");
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/* Create the idle thread. */
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struct semaphore idle_started;
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sema_init (&idle_started, 0);
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@@ -241,11 +252,25 @@ thread_create (const char *name, int priority,
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struct thread *parent_thread = thread_current ();
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init_thread (t, name, parent_thread->nice, priority, parent_thread->recent_cpu);
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tid = t->tid = allocate_tid ();
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init_process_result (t);
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if (!init_process_result (t))
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{
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palloc_free_page (t);
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return TID_ERROR;
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}
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#ifdef USERPROG
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hash_init (&t->open_files, fd_hash, fd_less, NULL);
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#endif
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#ifdef USERPROG
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/* Initialize the thread's file descriptor table. */
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t->fd_counter = MINIMUM_USER_FD;
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if (!hash_init (&t->open_files, fd_hash, fd_less, NULL)
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|| !hash_init (&t->child_results, process_result_hash,
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process_result_less, t))
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{
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palloc_free_page (t);
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free (t->result);
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return TID_ERROR;
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}
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#endif
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/* Prepare thread for first run by initializing its stack.
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Do this atomically so intermediate values for the 'stack'
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@@ -269,9 +294,7 @@ thread_create (const char *name, int priority,
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intr_set_level (old_level);
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/* No need to synchronise child_results since it is only ever accessed by one
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thread. By the nature of increasing TIDs, this list is ordered. */
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list_push_back (&parent_thread->child_results, &t->result->elem);
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hash_insert (&parent_thread->child_results, &t->result->elem);
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/* Add to run queue. */
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thread_unblock (t);
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@@ -649,15 +672,18 @@ is_thread (struct thread *t)
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}
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/* Allocate and initialise a process result for given thread. */
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static void
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static bool
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init_process_result (struct thread *t)
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{
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struct process_result *result = malloc (sizeof (struct process_result));
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if (result == NULL)
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return false;
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result->tid = t->tid;
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result->exit_status = t->exit_status;
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result->exit_status = -1;
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lock_init (&result->lock);
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sema_init (&result->sema, 0);
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t->result = result;
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return true;
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}
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/* Does basic initialization of T as a blocked thread named
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@@ -688,9 +714,6 @@ init_thread (struct thread *t, const char *name, int nice, int priority,
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t->recent_cpu = recent_cpu;
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t->priority = t->base_priority;
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t->exit_status = -1;
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list_init (&t->child_results);
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old_level = intr_disable ();
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list_push_back (&all_list, &t->allelem);
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intr_set_level (old_level);
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@@ -821,6 +844,29 @@ allocate_tid (void)
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return tid;
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}
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/* Hashing function needed for child_results table.
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Returns hash of process_result's TID. */
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static unsigned
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process_result_hash (const struct hash_elem *e, void *aux UNUSED)
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{
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const struct process_result *result
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= hash_entry (e, struct process_result, elem);
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return hash_int (result->tid);
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}
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/* Comparator function needed for child_results table.
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Returns less than comparison on process_results' TIDs. */
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static bool
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process_result_less (const struct hash_elem *a_, const struct hash_elem *b_,
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void *aux UNUSED)
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{
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const struct process_result *a
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= hash_entry (a_, struct process_result, elem);
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const struct process_result *b
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= hash_entry (b_, struct process_result, elem);
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return a->tid < b->tid;
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}
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/* Offset of `stack' member within `struct thread'.
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Used by switch.S, which can't figure it out on its own. */
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uint32_t thread_stack_ofs = offsetof (struct thread, stack);
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@@ -32,6 +32,9 @@ typedef int tid_t;
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#define NICE_DEFAULT 0 /* Default niceness. */
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#define NICE_MAX 20 /* Highest niceness. */
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/* File Descriptors. */
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#define MINIMUM_USER_FD 2 /* Minimum file descriptor for user programs. */
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/* A process result, synchronised between parent and child. */
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struct process_result
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{
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@@ -41,7 +44,7 @@ struct process_result
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struct lock lock; /* Lock the exit_status and sema. */
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struct semaphore sema; /* Semaphore to signal the parent that the exit_status
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has been set. */
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struct list_elem elem; /* List element for the parent's children list. */
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struct hash_elem elem; /* Hash element for the parent's children map. */
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};
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/* A kernel thread or user process.
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@@ -125,19 +128,19 @@ struct thread
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/* Process wait properties. */
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struct process_result *result; /* Result of the process. */
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struct list child_results; /* List of children's of this thread
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process results. */
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struct hash child_results; /* Map of children's of this thread
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TID to process result. */
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struct file *exec_file; /* Thread's currently running file */
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/* Shared between thread.c and synch.c. */
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struct list_elem elem; /* List element. */
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int exit_status; /* Exit Status: 0 = successful exit. */
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#ifdef USERPROG
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/* Owned by userprog/process.c. */
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uint32_t *pagedir; /* Page directory. */
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struct hash open_files; /* Hash Table of FD -> Struct File */
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unsigned int fd_counter; /* File descriptor counter for thread's
|
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open files. */
|
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struct hash open_files; /* Hash Table of FD -> Struct File. */
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#endif
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/* Owned by thread.c. */
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@@ -1,5 +1,6 @@
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#include "userprog/process.h"
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#include <debug.h>
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#include <hash.h>
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#include <inttypes.h>
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#include <list.h>
|
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#include <round.h>
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@@ -23,11 +24,18 @@
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#include "threads/vaddr.h"
|
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#include "threads/synch.h"
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#include "devices/timer.h"
|
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#ifdef VM
|
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#include "vm/frame.h"
|
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#endif
|
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|
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/* Defines the native number of bytes processed by the processor
|
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(for the purposes of alignment). */
|
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#define WORD_SIZE 4
|
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|
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/* Defines non-negative integer division wherein the result is always rounded
|
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up. */
|
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#define DIV_CEIL(x, y) ((x + (y - 1)) / y)
|
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|
||||
/* Keeps track of the position of pointers to user program arguments
|
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within a linked list. */
|
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struct arg_elem
|
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@@ -40,8 +48,6 @@ struct arg_elem
|
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that executes process_start for the purpose of starting a user process. */
|
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struct process_start_data
|
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{
|
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char *cmd; /* Pointer to a copy of the command used to execute the process.
|
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Allocated a page that must be freed by process_start. */
|
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char *cmd_saveptr; /* Value pointed to by 'saveptr' argument used by
|
||||
successive calls to strtok_r to split 'cmd' into
|
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tokens while maintaining state. */
|
||||
@@ -49,10 +55,11 @@ struct process_start_data
|
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be started. */
|
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bool success; /* Indicates whether the process was successfully loaded. */
|
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struct semaphore loaded; /* Semaphore used to signal that the process has
|
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been loaded. */
|
||||
finished attempting to load. */
|
||||
};
|
||||
|
||||
static thread_func start_process NO_RETURN;
|
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static void destruct_process_result (struct hash_elem *e, void *aux UNUSED);
|
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static bool load (const char *cmdline, void (**eip) (void), void **esp);
|
||||
|
||||
/* Starts a new thread running a user program executed via
|
||||
@@ -64,14 +71,7 @@ process_execute (const char *cmd)
|
||||
{
|
||||
char *cmd_copy;
|
||||
tid_t tid;
|
||||
|
||||
struct process_start_data *data = malloc (sizeof (struct process_start_data));
|
||||
if (data == NULL)
|
||||
{
|
||||
return TID_ERROR;
|
||||
}
|
||||
sema_init (&data->loaded, 0);
|
||||
data->success = false;
|
||||
struct process_start_data data;
|
||||
|
||||
/* Make a copy of command.
|
||||
Otherwise there's a race between the caller and load(). */
|
||||
@@ -85,38 +85,41 @@ process_execute (const char *cmd)
|
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|
||||
/* Retrieve first argument of command, which is the file name
|
||||
of the process. */
|
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char *file_name = strtok_r (cmd_copy, " ", &data->cmd_saveptr);
|
||||
char *file_name = strtok_r (cmd_copy, " ", &data.cmd_saveptr);
|
||||
|
||||
/* NOTE: Currently, the file being executed is closed in load () and then
|
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reopened here. Because load is an exported public function, this
|
||||
might be necessary. */
|
||||
/* Validates that the current file to be executed can be opened/exists. */
|
||||
lock_acquire (&filesys_lock);
|
||||
/* Validates that the current file to be executed is a valid file */
|
||||
bool valid_file = filesys_open (file_name) != NULL;
|
||||
struct file *file = filesys_open (file_name);
|
||||
lock_release (&filesys_lock);
|
||||
if (!valid_file)
|
||||
if (file == NULL)
|
||||
return TID_ERROR;
|
||||
|
||||
/* Create a new thread to execute the command, by initializing
|
||||
it running the function 'start_process' with the appropriate
|
||||
arguments. For details of arguments, see 'start_process'. */
|
||||
data->cmd = cmd_copy;
|
||||
strlcpy (data->file_name, file_name, FNAME_MAX_LEN + 1);
|
||||
strlcpy (data.file_name, file_name, FNAME_MAX_LEN + 1);
|
||||
sema_init (&data.loaded, 0);
|
||||
data.success = false;
|
||||
|
||||
tid = thread_create (file_name, PRI_DEFAULT, start_process, data);
|
||||
if (tid == TID_ERROR)
|
||||
palloc_free_page (cmd_copy);
|
||||
else
|
||||
tid = thread_create (file_name, PRI_DEFAULT, start_process, &data);
|
||||
|
||||
/* Wait until process file has finished attempting to load via the child
|
||||
thread before reporting success of starting execution. */
|
||||
if (tid != TID_ERROR)
|
||||
{
|
||||
sema_down (&data->loaded);
|
||||
if (!data->success)
|
||||
sema_down (&data.loaded);
|
||||
if (!data.success)
|
||||
tid = TID_ERROR;
|
||||
}
|
||||
free (data);
|
||||
|
||||
palloc_free_page (cmd_copy);
|
||||
return tid;
|
||||
}
|
||||
|
||||
static void *get_usr_kpage (enum palloc_flags flags);
|
||||
static void free_usr_kpage (void *kpage);
|
||||
static bool install_page (void *upage, void *kpage, bool writable);
|
||||
|
||||
static bool process_init_stack (char *cmd_saveptr, void **esp, char *file_name);
|
||||
static void *push_to_stack (void **esp, void *data, size_t data_size);
|
||||
#define push_var_to_stack(esp, var) (push_to_stack (esp, &var, sizeof (var)))
|
||||
@@ -124,14 +127,15 @@ static void *push_to_stack (void **esp, void *data, size_t data_size);
|
||||
/* Make the current thread execute 'cmd', passing in a copy of the
|
||||
command string used for processing, the saveptr used by strtok_r
|
||||
(in order to further tokenize the same command and retrieve its
|
||||
arguments), as well as the name of the file being executed. This
|
||||
involves loading the specified file and starting it running. */
|
||||
arguments), the name of the file being executed, and a semaphore that
|
||||
calls sema_up to indicate that the 'success' variable passed to it
|
||||
has been updated to indicate whether the process file loading succeeded.
|
||||
This involves loading the specified file and calling its main () function
|
||||
with the specified command arguments. */
|
||||
static void
|
||||
start_process (void *proc_start_data)
|
||||
{
|
||||
struct intr_frame if_;
|
||||
bool success;
|
||||
|
||||
struct process_start_data *data = proc_start_data;
|
||||
|
||||
/* Initialize interrupt frame and load executable. */
|
||||
@@ -140,41 +144,46 @@ start_process (void *proc_start_data)
|
||||
if_.cs = SEL_UCSEG;
|
||||
if_.eflags = FLAG_IF | FLAG_MBS;
|
||||
|
||||
/* Acquire the file system lock to prevent race conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
|
||||
/* Prevent writing to the file being executed. */
|
||||
struct file *exec_file = filesys_open (data->file_name);
|
||||
if (exec_file == NULL)
|
||||
{
|
||||
/* If the executable file cannot be opened, free resources and quit. */
|
||||
lock_release (&filesys_lock);
|
||||
goto fail;
|
||||
sema_up (&data->loaded);
|
||||
thread_exit ();
|
||||
}
|
||||
thread_current ()->exec_file = exec_file;
|
||||
|
||||
/* Deny write to the executable file to prevent writing to it and release the
|
||||
file system lock. */
|
||||
file_deny_write (exec_file);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
success = load (data->file_name, &if_.eip, &if_.esp);
|
||||
thread_current ()->exec_file = exec_file;
|
||||
|
||||
/* If load failed, quit. */
|
||||
if (!success)
|
||||
/* Load the ELF executable file, and store the success of the operation in
|
||||
the 'success' variable in data. */
|
||||
data->success = load (data->file_name, &if_.eip, &if_.esp);
|
||||
|
||||
/* If load was sucessful, initialize user process stack and free page used
|
||||
to store the command that executed the process. */
|
||||
if (data->success)
|
||||
{
|
||||
palloc_free_page (data->cmd);
|
||||
goto fail;
|
||||
data->success =
|
||||
process_init_stack (data->cmd_saveptr, &if_.esp, data->file_name);
|
||||
}
|
||||
|
||||
/* Initialize user process stack and free page used to store the
|
||||
command that executed the process. */
|
||||
success = process_init_stack (data->cmd_saveptr, &if_.esp, data->file_name);
|
||||
palloc_free_page (data->cmd);
|
||||
|
||||
/* If stack initialization failed, free resources and quit. */
|
||||
if (!success)
|
||||
{
|
||||
goto fail;
|
||||
}
|
||||
|
||||
data->success = true;
|
||||
/* Signal that the process has finished attempting to load. */
|
||||
bool success = data->success;
|
||||
sema_up (&data->loaded);
|
||||
|
||||
/* If the load was unsuccessful or if it was but the stack initialization
|
||||
failed, exit the thread. */
|
||||
if (!success)
|
||||
thread_exit ();
|
||||
|
||||
/* Start the user process by simulating a return from an
|
||||
interrupt, implemented by intr_exit (in
|
||||
threads/intr-stubs.S). Because intr_exit takes all of its
|
||||
@@ -183,12 +192,6 @@ start_process (void *proc_start_data)
|
||||
and jump to it. */
|
||||
asm volatile ("movl %0, %%esp; jmp intr_exit" : : "g" (&if_) : "memory");
|
||||
NOT_REACHED ();
|
||||
|
||||
/* If starting the process failed, exit. */
|
||||
fail:
|
||||
data->success = false;
|
||||
sema_up (&data->loaded);
|
||||
thread_exit ();
|
||||
}
|
||||
|
||||
/* Helper function that initializes the stack of a newly created
|
||||
@@ -196,6 +199,10 @@ fail:
|
||||
static bool
|
||||
process_init_stack (char *cmd_saveptr, void **esp, char *file_name)
|
||||
{
|
||||
ASSERT (cmd_saveptr != NULL);
|
||||
ASSERT (esp != NULL);
|
||||
ASSERT (file_name != NULL);
|
||||
|
||||
/* Load command line argument *data* to user process stack.
|
||||
This can't cause overflow due to enforcing that the size of
|
||||
command line input must fit in a page. Also keep track
|
||||
@@ -207,8 +214,12 @@ process_init_stack (char *cmd_saveptr, void **esp, char *file_name)
|
||||
int arg_count = 0;
|
||||
while (arg != NULL)
|
||||
{
|
||||
/* filename has already been validated to be a safe-to-access string,
|
||||
so we can safely use strlen here. Filename has already been
|
||||
split from the command line arguments. */
|
||||
push_to_stack (esp, arg, (strlen (arg) + 1) * sizeof (char));
|
||||
|
||||
/* Try to allocate memory for the argument pointer. */
|
||||
struct arg_elem *arg_elem = malloc (sizeof (struct arg_elem));
|
||||
if (arg_elem == NULL)
|
||||
{
|
||||
@@ -217,9 +228,11 @@ process_init_stack (char *cmd_saveptr, void **esp, char *file_name)
|
||||
return false;
|
||||
}
|
||||
|
||||
/* Store the argument pointer in the linked list. */
|
||||
arg_elem->arg = *esp;
|
||||
list_push_front (&arg_list, &arg_elem->elem);
|
||||
|
||||
/* Increment the argument count and get the next argument. */
|
||||
arg_count++;
|
||||
arg = strtok_r (NULL, " ", &cmd_saveptr);
|
||||
}
|
||||
@@ -235,13 +248,22 @@ process_init_stack (char *cmd_saveptr, void **esp, char *file_name)
|
||||
+ return_addr_size;
|
||||
|
||||
/* If pushing the rest of the data required for the stack would cause
|
||||
overflow, allocate an extra page that is contiguous within the
|
||||
virtual address space (below the current address range). */
|
||||
if (PHYS_BASE - *esp + remaining_size > PGSIZE)
|
||||
overflow, allocate as many extra pages as needed to the user process
|
||||
contiguously in the virtual address space below the initial page. */
|
||||
int overflow_bytes = (PHYS_BASE - *esp) + remaining_size - PGSIZE;
|
||||
if (overflow_bytes > 0)
|
||||
{
|
||||
uint8_t *kpage = palloc_get_page (PAL_USER | PAL_ZERO);
|
||||
if (!install_page (((uint8_t *) PHYS_BASE) - PGSIZE * 2, kpage, true))
|
||||
return false;
|
||||
/* Calculate the number of pages needed to allocate. */
|
||||
int pages_needed = DIV_CEIL (overflow_bytes, PGSIZE);
|
||||
|
||||
/* Allocate the pages and map them to the user process. */
|
||||
for (int i = 1; i < pages_needed + 1; i++)
|
||||
{
|
||||
uint8_t *kpage = get_usr_kpage (PAL_ZERO);
|
||||
if (!install_page (((uint8_t *) PHYS_BASE) - PGSIZE * (i + 1),
|
||||
kpage, true))
|
||||
return false;
|
||||
}
|
||||
}
|
||||
|
||||
/* Align stack pointer to word size before pushing argv elements for
|
||||
@@ -299,39 +321,35 @@ push_to_stack (void **esp, void *data, size_t data_size)
|
||||
* This function will be implemented in task 2.
|
||||
* For now, it does nothing. */
|
||||
int
|
||||
process_wait (tid_t child_tid UNUSED)
|
||||
process_wait (tid_t child_tid)
|
||||
{
|
||||
struct process_result *child_result = NULL;
|
||||
struct list_elem *e;
|
||||
struct thread *cur = thread_current ();
|
||||
for (e = list_begin (&cur->child_results);
|
||||
e != list_end (&cur->child_results); e = list_next (e))
|
||||
{
|
||||
struct process_result *result
|
||||
= list_entry (e, struct process_result, elem);
|
||||
if (result->tid == child_tid)
|
||||
{
|
||||
child_result = result;
|
||||
break;
|
||||
}
|
||||
/* List is ordered, allowing us to break early. */
|
||||
else if (result->tid > child_tid)
|
||||
break;
|
||||
}
|
||||
if (child_result == NULL)
|
||||
struct thread *t = thread_current ();
|
||||
struct process_result fake_result;
|
||||
fake_result.tid = child_tid;
|
||||
struct hash_elem *e = hash_find (&t->child_results, &fake_result.elem);
|
||||
if (e == NULL)
|
||||
return -1;
|
||||
|
||||
struct process_result *child_result
|
||||
= hash_entry (e, struct process_result, elem);
|
||||
/* Wait for child to die. */
|
||||
sema_down (&child_result->sema);
|
||||
|
||||
/* We need lock release in process_exit, so we need to acquire (and possibly
|
||||
wait) for it here to ensure we don't free the lock memory before it is
|
||||
released in process_exit. */
|
||||
lock_acquire (&child_result->lock);
|
||||
/* To prevent waiting for child twice, remove it from the list.
|
||||
/* To prevent waiting for child twice, remove it from the table.
|
||||
No need to use lock since this is the only thread with access to
|
||||
the struct process_result now. */
|
||||
list_remove (&child_result->elem);
|
||||
hash_delete (&t->child_results, &child_result->elem);
|
||||
|
||||
/* Get the exit status of the child */
|
||||
int exit_status = child_result->exit_status;
|
||||
|
||||
/* Release the lock */
|
||||
lock_release (&child_result->lock);
|
||||
/* Result no-longer used by parent, nor child. Deallocate it. */
|
||||
free (child_result);
|
||||
return exit_status;
|
||||
}
|
||||
@@ -343,62 +361,27 @@ process_exit (void)
|
||||
struct thread *cur = thread_current ();
|
||||
uint32_t *pd;
|
||||
|
||||
printf ("%s: exit(%d)\n", cur->name, cur->exit_status);
|
||||
|
||||
/* Clean up all open files */
|
||||
hash_destroy (&cur->open_files, fd_cleanup);
|
||||
|
||||
/* Close the executable file. */
|
||||
/* Close the executable file, implicitly allowing it to be written to. */
|
||||
if (cur->exec_file != NULL)
|
||||
{
|
||||
/* Acquire the file system lock to prevent race conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
file_close (cur->exec_file);
|
||||
lock_release (&filesys_lock);
|
||||
}
|
||||
|
||||
/* Update process result. */
|
||||
if (cur->result != NULL)
|
||||
{
|
||||
lock_acquire (&cur->result->lock);
|
||||
cur->result->exit_status = cur->exit_status;
|
||||
/* Parent has died, child has to free the struct process_result * */
|
||||
if (sema_try_down (&cur->result->sema))
|
||||
{
|
||||
lock_release (&cur->result->lock);
|
||||
free (cur->result);
|
||||
}
|
||||
/* Parent is still alive and will be the one to free the
|
||||
struct process_result *, and may be waiting so call sema_up */
|
||||
else
|
||||
{
|
||||
sema_up (&cur->result->sema);
|
||||
lock_release (&cur->result->lock);
|
||||
}
|
||||
printf ("%s: exit(%d)\n", cur->name, cur->result->exit_status);
|
||||
/* Update own process result. */
|
||||
destruct_process_result (&cur->result->elem, cur);
|
||||
}
|
||||
|
||||
/* Free child process results or signal parent's death. */
|
||||
struct list_elem *e;
|
||||
for (e = list_begin (&cur->child_results);
|
||||
e != list_end (&cur->child_results);)
|
||||
{
|
||||
struct process_result *result
|
||||
= list_entry (e, struct process_result, elem);
|
||||
struct list_elem *next = list_next (e);
|
||||
lock_acquire (&result->lock);
|
||||
/* Child has died (and was not waited for). Free the result. */
|
||||
if (sema_try_down (&result->sema))
|
||||
{
|
||||
lock_release (&result->lock);
|
||||
free (result);
|
||||
}
|
||||
/* Child is still alive, signal via sema that parent has died. */
|
||||
else
|
||||
{
|
||||
sema_up (&result->sema);
|
||||
lock_release (&result->lock);
|
||||
}
|
||||
e = next;
|
||||
}
|
||||
hash_destroy (&cur->child_results, destruct_process_result);
|
||||
|
||||
/* Destroy the current process's page directory and switch back
|
||||
to the kernel-only page directory. */
|
||||
@@ -418,6 +401,28 @@ process_exit (void)
|
||||
}
|
||||
}
|
||||
|
||||
/* Destruct a process_result, with multi-thread awareness.
|
||||
If the other thread is running, simply signals death. Otherwise
|
||||
frees the result. */
|
||||
static void
|
||||
destruct_process_result (struct hash_elem *e, void *aux UNUSED)
|
||||
{
|
||||
struct process_result *result = hash_entry (e, struct process_result, elem);
|
||||
lock_acquire (&result->lock);
|
||||
/* Other thread has died (and was not waited for). Free the result. */
|
||||
if (sema_try_down (&result->sema))
|
||||
{
|
||||
lock_release (&result->lock);
|
||||
free (result);
|
||||
}
|
||||
/* Other thread is still alive, signal via sema that parent has died. */
|
||||
else
|
||||
{
|
||||
sema_up (&result->sema);
|
||||
lock_release (&result->lock);
|
||||
}
|
||||
}
|
||||
|
||||
/* Sets up the CPU for running user code in the current
|
||||
thread.
|
||||
This function is called on every context switch. */
|
||||
@@ -705,7 +710,7 @@ load_segment (struct file *file, off_t ofs, uint8_t *upage,
|
||||
if (kpage == NULL){
|
||||
|
||||
/* Get a new page of memory. */
|
||||
kpage = palloc_get_page (PAL_USER);
|
||||
kpage = get_usr_kpage (0);
|
||||
if (kpage == NULL){
|
||||
return false;
|
||||
}
|
||||
@@ -713,7 +718,7 @@ load_segment (struct file *file, off_t ofs, uint8_t *upage,
|
||||
/* Add the page to the process's address space. */
|
||||
if (!install_page (upage, kpage, writable))
|
||||
{
|
||||
palloc_free_page (kpage);
|
||||
free_usr_kpage (kpage);
|
||||
return false;
|
||||
}
|
||||
|
||||
@@ -748,18 +753,44 @@ setup_stack (void **esp)
|
||||
uint8_t *kpage;
|
||||
bool success = false;
|
||||
|
||||
kpage = palloc_get_page (PAL_USER | PAL_ZERO);
|
||||
kpage = get_usr_kpage (PAL_ZERO);
|
||||
if (kpage != NULL)
|
||||
{
|
||||
success = install_page (((uint8_t *) PHYS_BASE) - PGSIZE, kpage, true);
|
||||
if (success)
|
||||
*esp = PHYS_BASE;
|
||||
else
|
||||
palloc_free_page (kpage);
|
||||
free_usr_kpage (kpage);
|
||||
}
|
||||
return success;
|
||||
}
|
||||
|
||||
/* Claims a page from the user pool and returns its kernel address,
|
||||
updating the frame table if VM is enabled. */
|
||||
static void *
|
||||
get_usr_kpage (enum palloc_flags flags)
|
||||
{
|
||||
void *page;
|
||||
#ifdef VM
|
||||
page = frame_alloc (flags);
|
||||
#else
|
||||
page = palloc_get_page (flags | PAL_USER);
|
||||
#endif
|
||||
return page;
|
||||
}
|
||||
|
||||
/* Frees a page belonging to a user process given its kernel address,
|
||||
updating the frame table if VM is enabled. */
|
||||
static void
|
||||
free_usr_kpage (void *kpage)
|
||||
{
|
||||
#ifdef VM
|
||||
frame_free (kpage);
|
||||
#else
|
||||
palloc_free_page (kpage);
|
||||
#endif
|
||||
}
|
||||
|
||||
/* Adds a mapping from user virtual address UPAGE to kernel
|
||||
virtual address KPAGE to the page table.
|
||||
If WRITABLE is true, the user process may modify the page;
|
||||
|
||||
@@ -16,8 +16,6 @@
|
||||
#define MAX_SYSCALL_ARGS 3
|
||||
#define EXIT_FAILURE -1
|
||||
|
||||
static unsigned fd_counter = MIN_USER_FD;
|
||||
|
||||
struct open_file
|
||||
{
|
||||
int fd; /* File Descriptor / Identifier */
|
||||
@@ -133,7 +131,7 @@ syscall_exit (int status)
|
||||
{
|
||||
/* Sets exit_status of the thread to status. thread_exit () will call
|
||||
process_exit () if user programs are allowed. */
|
||||
thread_current ()->exit_status = status;
|
||||
thread_current ()->result->exit_status = status;
|
||||
thread_exit ();
|
||||
}
|
||||
|
||||
@@ -142,6 +140,7 @@ syscall_exit (int status)
|
||||
static pid_t
|
||||
syscall_exec (const char *cmd_line)
|
||||
{
|
||||
/* Validate the user string before executing the process. */
|
||||
validate_user_string (cmd_line);
|
||||
|
||||
return process_execute (cmd_line); /* Returns the PID of the new process */
|
||||
@@ -161,12 +160,15 @@ syscall_wait (pid_t pid)
|
||||
static bool
|
||||
syscall_create (const char *file, unsigned initial_size)
|
||||
{
|
||||
/* Validate the user string before creating the file. */
|
||||
validate_user_string (file);
|
||||
|
||||
/* Acquire the file system lock to prevent race conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
bool status = filesys_create (file, initial_size);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* Return the status of the file creation. */
|
||||
return status;
|
||||
}
|
||||
|
||||
@@ -176,12 +178,15 @@ syscall_create (const char *file, unsigned initial_size)
|
||||
static bool
|
||||
syscall_remove (const char *file)
|
||||
{
|
||||
/* Validate the user string before removing the file. */
|
||||
validate_user_string (file);
|
||||
|
||||
/* Acquire the file system lock to prevent race conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
bool status = filesys_remove (file);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* Return the status of the file removal. */
|
||||
return status;
|
||||
}
|
||||
|
||||
@@ -192,11 +197,15 @@ syscall_remove (const char *file)
|
||||
static int
|
||||
syscall_open (const char *file)
|
||||
{
|
||||
/* Validate the user string before opening the file. */
|
||||
validate_user_string (file);
|
||||
|
||||
/* Acquire the file system lock to prevent race conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
struct file *ptr = filesys_open (file);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* If the file could not be opened, return failure. */
|
||||
if (ptr == NULL)
|
||||
return EXIT_FAILURE;
|
||||
|
||||
@@ -206,12 +215,14 @@ syscall_open (const char *file)
|
||||
= (struct open_file*) malloc (sizeof (struct open_file));
|
||||
if (file_info == NULL)
|
||||
{
|
||||
/* If we could not allocate memory for the file_info struct, close the
|
||||
file and return failure. */
|
||||
file_close (ptr);
|
||||
return EXIT_FAILURE;
|
||||
}
|
||||
|
||||
/* Populate the above struct, with a unique FD and the current open file */
|
||||
file_info->fd = fd_counter++;
|
||||
file_info->fd = thread_current ()->fd_counter++;
|
||||
file_info->file = ptr;
|
||||
|
||||
/* Add the new FD->file mapping to the hashtable for the current thread */
|
||||
@@ -227,14 +238,17 @@ syscall_open (const char *file)
|
||||
static int
|
||||
syscall_filesize (int fd)
|
||||
{
|
||||
/* Try to get the file from the FD. If it does not exist, return failure. */
|
||||
struct open_file *file_info = fd_get_file (fd);
|
||||
if (file_info == NULL)
|
||||
return EXIT_FAILURE;
|
||||
|
||||
/* Acquire the file system lock to prevent any race conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
int bytes = file_length (file_info->file);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* Return the number of bytes in the file. */
|
||||
return bytes;
|
||||
}
|
||||
|
||||
@@ -247,30 +261,37 @@ syscall_read (int fd, void *buffer, unsigned size)
|
||||
{
|
||||
/* Only console (fd = 0) or other files, not including STDOUT, (fd > 1) are
|
||||
allowed. */
|
||||
if (fd < 0 || fd == STDOUT_FILENO)
|
||||
if (fd < STDIN_FILENO || fd == STDOUT_FILENO)
|
||||
return EXIT_FAILURE;
|
||||
|
||||
/* Validate the user buffer for the provided size before reading. */
|
||||
validate_user_pointer (buffer, size);
|
||||
|
||||
if (fd == STDIN_FILENO)
|
||||
{
|
||||
/* Reading from the console. */
|
||||
char *write_buffer = buffer;
|
||||
for (int i = 0; i < size; i++)
|
||||
for (unsigned i = 0; i < size; i++)
|
||||
write_buffer[i] = input_getc ();
|
||||
|
||||
/* In case of console, read is always (eventually) successful. So return
|
||||
the size for the number of bytes read. */
|
||||
return size;
|
||||
}
|
||||
else
|
||||
{
|
||||
/* Reading from a file. */
|
||||
/* Find the file from the FD. If it does not exist, return failure. */
|
||||
struct open_file *file_info = fd_get_file (fd);
|
||||
if (file_info == NULL)
|
||||
return EXIT_FAILURE;
|
||||
|
||||
/* Acquire the file system lock to prevent race-conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
int bytes_written = file_read (file_info->file, buffer, size);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* Return the number of bytes read. */
|
||||
return bytes_written;
|
||||
}
|
||||
}
|
||||
@@ -287,25 +308,32 @@ syscall_write (int fd, const void *buffer, unsigned size)
|
||||
if (fd <= 0)
|
||||
return 0;
|
||||
|
||||
/* Validate the user buffer for the provided size before writing. */
|
||||
validate_user_pointer (buffer, size);
|
||||
|
||||
if (fd == STDOUT_FILENO)
|
||||
{
|
||||
/* Writing to the console. */
|
||||
putbuf (buffer, size);
|
||||
|
||||
/* In case of console, write is always successful. So return the size for
|
||||
the number of bytes written. */
|
||||
return size;
|
||||
}
|
||||
else
|
||||
{
|
||||
/* Writing to a file. */
|
||||
/* Find the file from the FD. If it does not exist, return failure. */
|
||||
struct open_file *file_info = fd_get_file (fd);
|
||||
if (file_info == NULL)
|
||||
return 0;
|
||||
|
||||
/* Acquire the file system lock to prevent race conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
int bytes = file_write (file_info->file, buffer, size);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* Return the number of bytes written. */
|
||||
return bytes;
|
||||
}
|
||||
}
|
||||
@@ -317,13 +345,10 @@ syscall_write (int fd, const void *buffer, unsigned size)
|
||||
static void
|
||||
syscall_seek (int fd, unsigned position)
|
||||
{
|
||||
/* Find the file from the FD. If it does not exist, do nothing. */
|
||||
struct open_file *file_info = fd_get_file (fd);
|
||||
if (file_info != NULL)
|
||||
{
|
||||
lock_acquire (&filesys_lock);
|
||||
file_seek (file_info->file, position);
|
||||
lock_release (&filesys_lock);
|
||||
}
|
||||
}
|
||||
|
||||
/* Handles the syscall for returning the next byte in a file referenced by
|
||||
@@ -332,14 +357,14 @@ syscall_seek (int fd, unsigned position)
|
||||
static unsigned
|
||||
syscall_tell (int fd)
|
||||
{
|
||||
/* Find the file from the FD. If it does not exist, return 0. */
|
||||
struct open_file *file_info = fd_get_file (fd);
|
||||
if (file_info == NULL)
|
||||
return 0;
|
||||
|
||||
lock_acquire (&filesys_lock);
|
||||
unsigned pos = file_tell (file_info->file);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* Return the current position in the file. */
|
||||
return pos;
|
||||
}
|
||||
|
||||
@@ -349,14 +374,21 @@ syscall_tell (int fd)
|
||||
static void
|
||||
syscall_close (int fd)
|
||||
{
|
||||
/* Find the file from the FD. If it does not exist, do nothing. */
|
||||
struct open_file *file_info = fd_get_file (fd);
|
||||
if (file_info != NULL)
|
||||
{
|
||||
/* File exists */
|
||||
/* First, remove the file from the hash table of open files. */
|
||||
hash_delete (&thread_current ()->open_files, &file_info->elem);
|
||||
|
||||
/* Then, close the file, acquiring the file system lock to prevent race
|
||||
conditions. */
|
||||
lock_acquire (&filesys_lock);
|
||||
file_close (file_info->file);
|
||||
lock_release (&filesys_lock);
|
||||
|
||||
/* Free the memory allocated for the file_info struct. */
|
||||
free (file_info);
|
||||
}
|
||||
}
|
||||
@@ -366,7 +398,12 @@ syscall_close (int fd)
|
||||
unsigned
|
||||
fd_hash (const struct hash_elem *element, void *aux UNUSED)
|
||||
{
|
||||
return hash_int (hash_entry (element, struct open_file, elem)->fd);
|
||||
/* We use the FD as the hash value. This is because the FD is incremented
|
||||
sequentially and is therefore unique for each file. It positively affects
|
||||
the performance of the hash table: 1. It is unique so no need to call
|
||||
expensive hash functions. 2. It being sequential means that the hash table
|
||||
is more likely to be weight balanced. */
|
||||
return hash_entry (element, struct open_file, elem)->fd;
|
||||
}
|
||||
|
||||
/* Comparator function for the open_file table. Compares two entries based on
|
||||
@@ -421,17 +458,19 @@ fd_get_file (int fd)
|
||||
static void
|
||||
validate_user_pointer (const void *start, size_t size)
|
||||
{
|
||||
/* If the size is 0, we do not need to check anything. */
|
||||
if (size == 0)
|
||||
return;
|
||||
|
||||
const void *end = start + size - 1;
|
||||
|
||||
/* Check if the start and end pointers are valid user virtual addresses. */
|
||||
if (start == NULL || !is_user_vaddr (start) || !is_user_vaddr (end))
|
||||
syscall_exit (EXIT_FAILURE);
|
||||
|
||||
/* We now need to check if the entire memory block is mapped to physical
|
||||
memory by the page table. */
|
||||
for (const void *ptr = start; ptr <= end; ptr += PGSIZE)
|
||||
for (const void *ptr = pg_round_down (start); ptr <= end; ptr += PGSIZE)
|
||||
if (pagedir_get_page (thread_current ()->pagedir, ptr) == NULL)
|
||||
syscall_exit (EXIT_FAILURE);
|
||||
}
|
||||
@@ -442,9 +481,11 @@ validate_user_pointer (const void *start, size_t size)
|
||||
static void
|
||||
validate_user_string (const char *str)
|
||||
{
|
||||
/* Check if the string pointer is a valid user virtual address. */
|
||||
if (str == NULL || !is_user_vaddr (str))
|
||||
syscall_exit (EXIT_FAILURE);
|
||||
|
||||
/* Calculate the offset of the string within the (first) page. */
|
||||
size_t offset = (uintptr_t) str % PGSIZE;
|
||||
|
||||
/* We move page by page, checking if the page is mapped to physical memory. */
|
||||
@@ -452,6 +493,8 @@ validate_user_string (const char *str)
|
||||
{
|
||||
void *page = pg_round_down (str);
|
||||
|
||||
/* If we reach addresses that are not mapped to physical memory before the
|
||||
end of the string, the thread is terminated. */
|
||||
if (!is_user_vaddr(page) ||
|
||||
pagedir_get_page (thread_current ()->pagedir, page) == NULL)
|
||||
syscall_exit (EXIT_FAILURE);
|
||||
|
||||
@@ -4,8 +4,6 @@
|
||||
#include <hash.h>
|
||||
#include "threads/synch.h"
|
||||
|
||||
#define MIN_USER_FD 2
|
||||
|
||||
typedef int pid_t;
|
||||
|
||||
struct lock filesys_lock;
|
||||
|
||||
137
src/vm/frame.c
Normal file
137
src/vm/frame.c
Normal file
@@ -0,0 +1,137 @@
|
||||
#include <debug.h>
|
||||
#include <hash.h>
|
||||
#include <list.h>
|
||||
|
||||
#include "frame.h"
|
||||
#include "threads/malloc.h"
|
||||
#include "threads/synch.h"
|
||||
|
||||
/* Hash table that maps every active frame's kernel virtual address
|
||||
to its corresponding 'frame_metadata'.*/
|
||||
struct hash frame_table;
|
||||
|
||||
/* Linked list of frame_metadata whose pages are predicted to currently
|
||||
be in the working set of a process. They are not considered for
|
||||
eviction, but are considered for demotion to the 'inactive' list. */
|
||||
struct list active_list;
|
||||
|
||||
/* Linked list of frame_metadata whose pages are predicted to leave the
|
||||
working set of their processes soon, so are considered for eviction.
|
||||
Pages are considered for eviction from the tail end, and are initially
|
||||
demoted to 'inactive' at the head. */
|
||||
struct list inactive_list;
|
||||
|
||||
/* Synchronisation variables. */
|
||||
/* Ensures mutual exclusion to accessing the 'head' and first element of
|
||||
'inactive_list', which is accessed every time a frame is allocated. */
|
||||
struct lock inactive_head_lock;
|
||||
|
||||
struct frame_metadata
|
||||
{
|
||||
void *frame; /* The kernel virtual address holding the frame. */
|
||||
struct hash_elem hash_elem; /* Tracks the position of the frame metadata
|
||||
within 'frame_table', whose key is the
|
||||
kernel virtual address of the frame. */
|
||||
struct list_elem list_elem; /* Tracks the position of the frame metadata
|
||||
in either the 'active' or 'inactive' list,
|
||||
so a victim can be chosen for eviction. */
|
||||
};
|
||||
|
||||
hash_hash_func frame_metadata_hash;
|
||||
hash_less_func frame_metadata_less;
|
||||
|
||||
/* Initialize the frame system by initializing the frame (hash) table with
|
||||
the frame_metadata hashing and comparison functions, as well as initializing
|
||||
the active & inactive lists. Also initializes the system's synchronisation
|
||||
primitives. */
|
||||
void
|
||||
frame_init (void)
|
||||
{
|
||||
hash_init (&frame_table, frame_metadata_hash, frame_metadata_less, NULL);
|
||||
list_init (&active_list);
|
||||
list_init (&inactive_list);
|
||||
|
||||
lock_init (&inactive_head_lock);
|
||||
}
|
||||
|
||||
/* Attempt to allocate a frame for a user process, either by direct
|
||||
allocation of a user page if there is sufficient RAM, or by
|
||||
evicting a currently active page if memory allocated for user
|
||||
processes is fulled and storing it in swap. If swap is full in
|
||||
the former case, panic the kernel. */
|
||||
void *
|
||||
frame_alloc (enum palloc_flags flags)
|
||||
{
|
||||
flags |= PAL_USER;
|
||||
|
||||
void *frame = palloc_get_page (flags);
|
||||
if (frame == NULL)
|
||||
{
|
||||
/* TODO: Find victim page to replace, and swap it with this new page. */
|
||||
return NULL;
|
||||
}
|
||||
|
||||
struct frame_metadata *frame_metadata =
|
||||
malloc (sizeof (struct frame_metadata));
|
||||
frame_metadata->frame = frame;
|
||||
|
||||
/* Newly faulted pages begin at the head of the inactive list. */
|
||||
lock_acquire (&inactive_head_lock);
|
||||
list_push_front (&inactive_list, &frame_metadata->list_elem);
|
||||
lock_release (&inactive_head_lock);
|
||||
|
||||
/* Finally, insert frame metadata within the frame table, with the key as its
|
||||
allocated kernel address. */
|
||||
hash_replace (&frame_table, &frame_metadata->hash_elem);
|
||||
|
||||
return frame;
|
||||
}
|
||||
|
||||
/* Attempt to deallocate a frame for a user process by removing it from the
|
||||
frame table as well as active/inactive list, and freeing the underlying
|
||||
page memory. Panics if the frame isn't active in memory. */
|
||||
void
|
||||
frame_free (void *frame)
|
||||
{
|
||||
struct frame_metadata key_metadata;
|
||||
key_metadata.frame = frame;
|
||||
|
||||
struct hash_elem *e =
|
||||
hash_delete (&frame_table, &key_metadata.hash_elem);
|
||||
if (e == NULL) PANIC ("Attempted to free a frame without a corresponding "
|
||||
"kernel address!\n");
|
||||
|
||||
struct frame_metadata *frame_metadata =
|
||||
hash_entry (e, struct frame_metadata, hash_elem);
|
||||
|
||||
list_remove (&frame_metadata->list_elem);
|
||||
free (frame_metadata);
|
||||
palloc_free_page (frame);
|
||||
}
|
||||
|
||||
/* Hash function for frame metadata, used for storing entries in the
|
||||
frame table. */
|
||||
unsigned
|
||||
frame_metadata_hash (const struct hash_elem *e, void *aux UNUSED)
|
||||
{
|
||||
struct frame_metadata *frame_metadata =
|
||||
hash_entry (e, struct frame_metadata, hash_elem);
|
||||
|
||||
return hash_bytes (&frame_metadata->frame, sizeof (frame_metadata->frame));
|
||||
}
|
||||
|
||||
/* 'less_func' comparison function for frame metadata, used for comparing
|
||||
the keys of the frame table. Returns true iff the kernel virtual address
|
||||
of the first frame is less than that of the second frame. */
|
||||
bool
|
||||
frame_metadata_less (const struct hash_elem *a_, const struct hash_elem *b_,
|
||||
void *aux UNUSED)
|
||||
{
|
||||
struct frame_metadata *a =
|
||||
hash_entry (a_, struct frame_metadata, hash_elem);
|
||||
struct frame_metadata *b =
|
||||
hash_entry (b_, struct frame_metadata, hash_elem);
|
||||
|
||||
return a->frame < b->frame;
|
||||
}
|
||||
|
||||
10
src/vm/frame.h
Normal file
10
src/vm/frame.h
Normal file
@@ -0,0 +1,10 @@
|
||||
#ifndef VM_FRAME_H
|
||||
#define VM_FRAME_H
|
||||
|
||||
#include "threads/palloc.h"
|
||||
|
||||
void frame_init (void);
|
||||
void *frame_alloc (enum palloc_flags);
|
||||
void frame_free (void *frame);
|
||||
|
||||
#endif /* vm/frame.h */
|
||||
Reference in New Issue
Block a user