Link: https://lore.kernel.org/r/20260217200002.683975158@linuxfoundation.org Tested-by: Florian Fainelli <florian.fainelli@broadcom.com> Tested-by: Takeshi Ogasawara <takeshi.ogasawara@futuring-girl.com> Tested-by: Peter Schneider <pschneider1968@googlemail.com> Tested-by: Jon Hunter <jonathanh@nvidia.com> Tested-by: Salvatore Bonaccorso <carnil@debian.org> Tested-by: Brett A C Sheffield <bacs@librecast.net> Tested-by: Mark Brown <broonie@kernel.org> Tested-by: Luna Jernberg <droidbittin@gmail.com> Tested-by: Ronald Warsow <rwarsow@gmx.de> Tested-by: Justin M. Forbes <jforbes@fedoraproject.org> Tested-by: Ron Economos <re@w6rz.net> Tested-by: Miguel Ojeda <ojeda@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
33 lines
508 B
Plaintext
33 lines
508 B
Plaintext
C Atomic-RMW+mb__after_atomic-is-stronger-than-acquire
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(*
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* Result: Never
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*
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* Test that an atomic RMW followed by a smp_mb__after_atomic() is
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* stronger than a normal acquire: both the read and write parts of
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* the RMW are ordered before the subsequential memory accesses.
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*)
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{
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}
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P0(int *x, atomic_t *y)
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{
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int r0;
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int r1;
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r0 = READ_ONCE(*x);
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smp_rmb();
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r1 = atomic_read(y);
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}
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P1(int *x, atomic_t *y)
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{
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atomic_inc(y);
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smp_mb__after_atomic();
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WRITE_ONCE(*x, 1);
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}
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exists
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(0:r0=1 /\ 0:r1=0)
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