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| author | Usama Arif <usama.arif@linux.dev> | 2026-07-07 08:38:00 -0700 |
|---|---|---|
| committer | Thomas Gleixner <tglx@kernel.org> | 2026-07-07 23:26:58 +0200 |
| commit | c4415c993fc2c8bdf2cf0bfbcbb1ac0e0f7a9eaf (patch) | |
| tree | 20b98756e04c290cde9976f1bd4da84b467953f5 /tools/perf/scripts/python/syscall-counts.py | |
| parent | 1d28a67d496f482933b0ba5d8577835bdbe601ca (diff) | |
hrtimer: Don't take cpu_base::lock in hrtimer_get_next_event() when hres_active
hrtimer_get_next_event() runs on every tick-stop decision via
get_next_timer_interrupt() -> cmp_next_hrtimer_event(). When high
resolution timers are active it must return KTIME_MAX -- the caller
documents and depends on this.
The function takes cpu_base->lock, checks hres_active, and returns
KTIME_MAX.
Taking the lock is not required because cpu_base->hres_active is only
written by the local CPU in hrtimer_switch_to_hres() from hard interrupt
context and in hrtimers_cpu_starting() during bring-up.
All callers of hrtimer_get_next_event() reach it from the tick-stop /
cpuidle paths with interrupts disabled on that CPU. No writer can therefore
race with the read, so an unlocked hres_active check is stable and the lock
can be skipped in this case.
On a 176-thread AMD EPYC 9D64 running a production workload, bucketing
callers of native_queued_spin_lock_slowpath(), the slowpath had 199 samples
in total, of which 54 are attributed to hrtimer_get_next_event(), i.e. this
accounts for ~27% of slowpath hits on this specific workload.
Move the hres_active check before the lock guard region to address this.
[ tglx: Massaged change log and comments ]
Signed-off-by: Usama Arif <usama.arif@linux.dev>
Signed-off-by: Thomas Gleixner <tglx@kernel.org>
Link: https://patch.msgid.link/20260707153800.542394-1-usama.arif@linux.dev
Diffstat (limited to 'tools/perf/scripts/python/syscall-counts.py')
0 files changed, 0 insertions, 0 deletions
