90 lines
2.5 KiB
C
Executable file
90 lines
2.5 KiB
C
Executable file
/* The main thread acquires locks A and B, then it creates three
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higher-priority threads. The first two of these threads block
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acquiring one of the locks and thus donate their priority to
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the main thread. The main thread releases the locks in turn
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and relinquishes its donated priorities, allowing the third thread
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to run.
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In this test, the main thread releases the locks in a different
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order compared to priority-donate-multiple.c.
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Written by Godmar Back <gback@cs.vt.edu>.
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Based on a test originally submitted for Stanford's CS 140 in
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winter 1999 by Matt Franklin <startled@leland.stanford.edu>,
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Greg Hutchins <gmh@leland.stanford.edu>, Yu Ping Hu
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<yph@cs.stanford.edu>. Modified by arens. */
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#include <stdio.h>
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#include "tests/threads/tests.h"
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#include "threads/init.h"
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#include "threads/synch.h"
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#include "threads/thread.h"
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static thread_func a_thread_func;
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static thread_func b_thread_func;
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static thread_func c_thread_func;
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void
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test_priority_donate_multiple2 (void)
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{
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struct lock a, b;
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/* This test does not work with the MLFQS. */
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ASSERT (!thread_mlfqs);
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/* Make sure our priority is the default. */
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ASSERT (thread_get_priority () == PRI_DEFAULT);
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lock_init (&a);
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lock_init (&b);
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lock_acquire (&a);
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lock_acquire (&b);
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thread_create ("a", PRI_DEFAULT + 3, a_thread_func, &a);
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msg ("Main thread should have priority %d. Actual priority: %d.",
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PRI_DEFAULT + 3, thread_get_priority ());
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thread_create ("c", PRI_DEFAULT + 1, c_thread_func, NULL);
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thread_create ("b", PRI_DEFAULT + 5, b_thread_func, &b);
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msg ("Main thread should have priority %d. Actual priority: %d.",
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PRI_DEFAULT + 5, thread_get_priority ());
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lock_release (&a);
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msg ("Main thread should have priority %d. Actual priority: %d.",
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PRI_DEFAULT + 5, thread_get_priority ());
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lock_release (&b);
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msg ("Threads b, a, c should have just finished, in that order.");
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msg ("Main thread should have priority %d. Actual priority: %d.",
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PRI_DEFAULT, thread_get_priority ());
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}
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static void
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a_thread_func (void *lock_)
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{
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struct lock *lock = lock_;
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lock_acquire (lock);
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msg ("Thread a acquired lock a.");
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lock_release (lock);
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msg ("Thread a finished.");
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}
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static void
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b_thread_func (void *lock_)
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{
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struct lock *lock = lock_;
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lock_acquire (lock);
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msg ("Thread b acquired lock b.");
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lock_release (lock);
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msg ("Thread b finished.");
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}
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static void
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c_thread_func (void *a_ UNUSED)
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{
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msg ("Thread c finished.");
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}
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