tools/memory-model: Use "buf" and "flag" for message-passing tests
The use of "x" and "y" for message-passing tests is fine for people familiar with memory models and litmus-test nomenclature, but is a bit obtuse for others. This commit therefore substitutes "buf" for "x" and "flag" for "y" for the MP tests. There are a few special-case MP tests that use locks and these are unchanged. There is another MP test that uses pointers, and this is changed to name the pointer "p". Reported-by: Johannes Weiner <hannes@cmpxchg.org> Signed-off-by: Paul E. McKenney <paulmck@kernel.org>
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@ -9,25 +9,25 @@ C MP+fencewmbonceonce+fencermbonceonce
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*)
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{
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int x;
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int y;
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int buf;
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int flag;
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}
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P0(int *x, int *y)
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P0(int *buf, int *flag)
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{
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WRITE_ONCE(*x, 1);
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WRITE_ONCE(*buf, 1);
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smp_wmb();
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WRITE_ONCE(*y, 1);
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WRITE_ONCE(*flag, 1);
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}
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P1(int *x, int *y)
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P1(int *buf, int *flag)
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{
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int r0;
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int r1;
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r0 = READ_ONCE(*y);
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r0 = READ_ONCE(*flag);
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smp_rmb();
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r1 = READ_ONCE(*x);
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r1 = READ_ONCE(*buf);
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}
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exists (1:r0=1 /\ 1:r1=0)
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@ -10,24 +10,24 @@ C MP+onceassign+derefonce
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*)
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{
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int *p=y;
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int x;
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int *y=z;
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int z=0;
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int y=0;
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}
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P0(int *x, int **y)
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P0(int *x, int **p)
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{
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WRITE_ONCE(*x, 1);
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rcu_assign_pointer(*y, x);
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rcu_assign_pointer(*p, x);
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}
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P1(int *x, int **y)
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P1(int *x, int **p)
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{
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int *r0;
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int r1;
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rcu_read_lock();
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r0 = rcu_dereference(*y);
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r0 = rcu_dereference(*p);
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r1 = READ_ONCE(*r0);
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rcu_read_unlock();
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}
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@ -13,27 +13,27 @@ C MP+polocks
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{
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spinlock_t mylock;
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int x;
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int y;
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int buf;
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int flag;
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}
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P0(int *x, int *y, spinlock_t *mylock)
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P0(int *buf, int *flag, spinlock_t *mylock)
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{
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WRITE_ONCE(*x, 1);
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WRITE_ONCE(*buf, 1);
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spin_lock(mylock);
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WRITE_ONCE(*y, 1);
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WRITE_ONCE(*flag, 1);
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spin_unlock(mylock);
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}
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P1(int *x, int *y, spinlock_t *mylock)
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P1(int *buf, int *flag, spinlock_t *mylock)
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{
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int r0;
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int r1;
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spin_lock(mylock);
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r0 = READ_ONCE(*y);
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r0 = READ_ONCE(*flag);
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spin_unlock(mylock);
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r1 = READ_ONCE(*x);
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r1 = READ_ONCE(*buf);
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}
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exists (1:r0=1 /\ 1:r1=0)
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@ -8,23 +8,23 @@ C MP+poonceonces
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*)
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{
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int x;
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int y;
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int buf;
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int flag;
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}
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P0(int *x, int *y)
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P0(int *buf, int *flag)
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{
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WRITE_ONCE(*x, 1);
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WRITE_ONCE(*y, 1);
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WRITE_ONCE(*buf, 1);
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WRITE_ONCE(*flag, 1);
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}
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P1(int *x, int *y)
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P1(int *buf, int *flag)
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{
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int r0;
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int r1;
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r0 = READ_ONCE(*y);
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r1 = READ_ONCE(*x);
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r0 = READ_ONCE(*flag);
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r1 = READ_ONCE(*buf);
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}
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exists (1:r0=1 /\ 1:r1=0)
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@ -9,23 +9,23 @@ C MP+pooncerelease+poacquireonce
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*)
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{
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int x;
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int y;
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int buf;
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int flag;
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}
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P0(int *x, int *y)
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P0(int *buf, int *flag)
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{
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WRITE_ONCE(*x, 1);
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smp_store_release(y, 1);
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WRITE_ONCE(*buf, 1);
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smp_store_release(flag, 1);
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}
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P1(int *x, int *y)
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P1(int *buf, int *flag)
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{
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int r0;
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int r1;
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r0 = smp_load_acquire(y);
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r1 = READ_ONCE(*x);
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r0 = smp_load_acquire(flag);
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r1 = READ_ONCE(*buf);
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}
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exists (1:r0=1 /\ 1:r1=0)
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@ -13,27 +13,27 @@ C MP+porevlocks
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{
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spinlock_t mylock;
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int x;
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int y;
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int buf;
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int flag;
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}
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P0(int *x, int *y, spinlock_t *mylock)
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P0(int *buf, int *flag, spinlock_t *mylock)
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{
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int r0;
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int r1;
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r0 = READ_ONCE(*y);
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r0 = READ_ONCE(*flag);
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spin_lock(mylock);
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r1 = READ_ONCE(*x);
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r1 = READ_ONCE(*buf);
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spin_unlock(mylock);
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}
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P1(int *x, int *y, spinlock_t *mylock)
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P1(int *buf, int *flag, spinlock_t *mylock)
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{
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spin_lock(mylock);
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WRITE_ONCE(*x, 1);
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WRITE_ONCE(*buf, 1);
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spin_unlock(mylock);
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WRITE_ONCE(*y, 1);
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WRITE_ONCE(*flag, 1);
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}
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exists (0:r0=1 /\ 0:r1=0)
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