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authorDaniel Baumann <daniel.baumann@progress-linux.org>2024-04-11 08:27:49 +0000
committerDaniel Baumann <daniel.baumann@progress-linux.org>2024-04-11 08:27:49 +0000
commitace9429bb58fd418f0c81d4c2835699bddf6bde6 (patch)
treeb2d64bc10158fdd5497876388cd68142ca374ed3 /tools/memory-model/litmus-tests/MP+porevlocks.litmus
parentInitial commit. (diff)
downloadlinux-ace9429bb58fd418f0c81d4c2835699bddf6bde6.tar.xz
linux-ace9429bb58fd418f0c81d4c2835699bddf6bde6.zip
Adding upstream version 6.6.15.upstream/6.6.15
Signed-off-by: Daniel Baumann <daniel.baumann@progress-linux.org>
Diffstat (limited to 'tools/memory-model/litmus-tests/MP+porevlocks.litmus')
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diff --git a/tools/memory-model/litmus-tests/MP+porevlocks.litmus b/tools/memory-model/litmus-tests/MP+porevlocks.litmus
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+C MP+porevlocks
+
+(*
+ * Result: Never
+ *
+ * This litmus test demonstrates how lock acquisitions and releases can
+ * stand in for smp_load_acquire() and smp_store_release(), respectively.
+ * In other words, when holding a given lock (or indeed after releasing a
+ * given lock), a CPU is not only guaranteed to see the accesses that other
+ * CPUs made while previously holding that lock, it is also guaranteed to
+ * see all prior accesses by those other CPUs.
+ *)
+
+{}
+
+P0(int *buf, int *flag, spinlock_t *mylock) // Consumer
+{
+ int r0;
+ int r1;
+
+ r0 = READ_ONCE(*flag);
+ spin_lock(mylock);
+ r1 = READ_ONCE(*buf);
+ spin_unlock(mylock);
+}
+
+P1(int *buf, int *flag, spinlock_t *mylock) // Producer
+{
+ spin_lock(mylock);
+ WRITE_ONCE(*buf, 1);
+ spin_unlock(mylock);
+ WRITE_ONCE(*flag, 1);
+}
+
+exists (0:r0=1 /\ 0:r1=0) (* Bad outcome. *)