*/
struct timer_list preempt;
+ /**
+ * @preempt_target: active request at the time of the preemption request
+ *
+ * We force a preemption to occur if the pending contexts have not
+ * been promoted to active upon receipt of the CS ack event within
+ * the timeout. This timeout maybe chosen based on the target,
+ * using a very short timeout if the context is no longer schedulable.
+ * That short timeout may not be applicable to other contexts, so
+ * if a context switch should happen within before the preemption
+ * timeout, we may shoot early at an innocent context. To prevent this,
+ * we record which context was active at the time of the preemption
+ * request and only reset that context upon the timeout.
+ */
+ const struct i915_request *preempt_target;
+
/**
* @ccid: identifier for contexts submitted to this engine
*/
if (!rq)
return 0;
+ /* Only allow ourselves to force reset the currently active context */
+ engine->execlists.preempt_target = rq;
+
/* Force a fast reset for terminated contexts (ignoring sysfs!) */
if (unlikely(intel_context_is_banned(rq->context) || bad_request(rq)))
return INTEL_CONTEXT_BANNED_PREEMPT_TIMEOUT_MS;
GEM_BUG_ON(inactive - post > ARRAY_SIZE(post));
if (unlikely(preempt_timeout(engine))) {
+ const struct i915_request *rq = *engine->execlists.active;
+
+ /*
+ * If after the preempt-timeout expired, we are still on the
+ * same active request/context as before we initiated the
+ * preemption, reset the engine.
+ *
+ * However, if we have processed a CS event to switch contexts,
+ * but not yet processed the CS event for the pending
+ * preemption, reset the timer allowing the new context to
+ * gracefully exit.
+ */
cancel_timer(&engine->execlists.preempt);
- engine->execlists.error_interrupt |= ERROR_PREEMPT;
+ if (rq == engine->execlists.preempt_target)
+ engine->execlists.error_interrupt |= ERROR_PREEMPT;
+ else
+ set_timer_ms(&engine->execlists.preempt,
+ active_preempt_timeout(engine, rq));
}
if (unlikely(READ_ONCE(engine->execlists.error_interrupt))) {