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authorBenjamin Berg <benjamin.berg@intel.com>2025-10-28 12:58:37 +0200
committerJohannes Berg <johannes.berg@intel.com>2025-10-28 14:56:30 +0100
commit7ceba45a6658ce637da334cd0ebf27f4ede6c0fe (patch)
treea9f9f257963f41585ca0c05bc020b93a6436bf4d /net/wireless/core.c
parent3b8694e56f6b69aaba1cffdf0c0760cd76712422 (diff)
downloadlinux-next-7ceba45a6658ce637da334cd0ebf27f4ede6c0fe.tar.gz
linux-next-7ceba45a6658ce637da334cd0ebf27f4ede6c0fe.zip
wifi: cfg80211: add an hrtimer based delayed work item
The normal timer mechanism assume that timeout further in the future need a lower accuracy. As an example, the granularity for a timer scheduled 4096 ms in the future on a 1000 Hz system is already 512 ms. This granularity is perfectly sufficient for e.g. timeouts, but there are other types of events that will happen at a future point in time and require a higher accuracy. Add a new wiphy_hrtimer_work type that uses an hrtimer internally. The API is almost identical to the existing wiphy_delayed_work and it can be used as a drop-in replacement after minor adjustments. The work will be scheduled relative to the current time with a slack of 1 millisecond. CC: stable@vger.kernel.org # 6.4+ Signed-off-by: Benjamin Berg <benjamin.berg@intel.com> Reviewed-by: Johannes Berg <johannes.berg@intel.com> Signed-off-by: Miri Korenblit <miriam.rachel.korenblit@intel.com> Link: https://patch.msgid.link/20251028125710.7f13a2adc5eb.I01b5af0363869864b0580d9c2a1770bafab69566@changeid Signed-off-by: Johannes Berg <johannes.berg@intel.com>
Diffstat (limited to 'net/wireless/core.c')
-rw-r--r--net/wireless/core.c56
1 files changed, 56 insertions, 0 deletions
diff --git a/net/wireless/core.c b/net/wireless/core.c
index 797f9f2004a6..54a34d8d356e 100644
--- a/net/wireless/core.c
+++ b/net/wireless/core.c
@@ -1787,6 +1787,62 @@ bool wiphy_delayed_work_pending(struct wiphy *wiphy,
}
EXPORT_SYMBOL_GPL(wiphy_delayed_work_pending);
+enum hrtimer_restart wiphy_hrtimer_work_timer(struct hrtimer *t)
+{
+ struct wiphy_hrtimer_work *hrwork =
+ container_of(t, struct wiphy_hrtimer_work, timer);
+
+ wiphy_work_queue(hrwork->wiphy, &hrwork->work);
+
+ return HRTIMER_NORESTART;
+}
+EXPORT_SYMBOL_GPL(wiphy_hrtimer_work_timer);
+
+void wiphy_hrtimer_work_queue(struct wiphy *wiphy,
+ struct wiphy_hrtimer_work *hrwork,
+ ktime_t delay)
+{
+ trace_wiphy_hrtimer_work_queue(wiphy, &hrwork->work, delay);
+
+ if (!delay) {
+ hrtimer_cancel(&hrwork->timer);
+ wiphy_work_queue(wiphy, &hrwork->work);
+ return;
+ }
+
+ hrwork->wiphy = wiphy;
+ hrtimer_start_range_ns(&hrwork->timer, delay,
+ 1000 * NSEC_PER_USEC, HRTIMER_MODE_REL);
+}
+EXPORT_SYMBOL_GPL(wiphy_hrtimer_work_queue);
+
+void wiphy_hrtimer_work_cancel(struct wiphy *wiphy,
+ struct wiphy_hrtimer_work *hrwork)
+{
+ lockdep_assert_held(&wiphy->mtx);
+
+ hrtimer_cancel(&hrwork->timer);
+ wiphy_work_cancel(wiphy, &hrwork->work);
+}
+EXPORT_SYMBOL_GPL(wiphy_hrtimer_work_cancel);
+
+void wiphy_hrtimer_work_flush(struct wiphy *wiphy,
+ struct wiphy_hrtimer_work *hrwork)
+{
+ lockdep_assert_held(&wiphy->mtx);
+
+ hrtimer_cancel(&hrwork->timer);
+ wiphy_work_flush(wiphy, &hrwork->work);
+}
+EXPORT_SYMBOL_GPL(wiphy_hrtimer_work_flush);
+
+bool wiphy_hrtimer_work_pending(struct wiphy *wiphy,
+ struct wiphy_hrtimer_work *hrwork)
+{
+ return hrtimer_is_queued(&hrwork->timer);
+}
+EXPORT_SYMBOL_GPL(wiphy_hrtimer_work_pending);
+
static int __init cfg80211_init(void)
{
int err;