diff --git a/kernel/sched/deadline.c b/kernel/sched/deadline.c --- a/kernel/sched/deadline.c +++ b/kernel/sched/deadline.c @@ -3026,8 +3026,8 @@ static struct task_struct *pick_next_pushable_dl_task(struct rq *rq) next_node = rb_first_cached(&rq->dl.pushable_dl_tasks_root); while (next_node) { i = __node_2_pdl(next_node); - /* make sure task isn't on_cpu (possible with proxy-exec) */ - if (!task_on_cpu(rq, i)) { + /* skip tasks that cannot be migrated */ + if (!task_on_cpu(rq, i) && !is_migration_disabled(i)) { p = i; break; } diff --git a/kernel/sched/fair.c b/kernel/sched/fair.c --- a/kernel/sched/fair.c +++ b/kernel/sched/fair.c @@ -10565,17 +10565,40 @@ static enum llc_mig can_migrate_llc(int src_cpu, int dst_cpu, return mig_llc; } +static inline bool task_misfits_asym_cpu(struct lb_env *env, struct task_struct *p) +{ + /* + * On asymmetric CPU capacity domains, do not let cache-aware + * balancing pull the task onto a destination CPU that cannot + * accommodate it. Doing so would turn the task into a misfit on + * the destination, trading a cache-locality gain for a capacity + * loss. If the task already does not fit its source CPU, the move + * cannot make things worse, so let the LLC preference decide. + */ + if ((env->sd->flags & SD_ASYM_CPUCAPACITY) && p && + !task_fits_cpu(p, env->dst_cpu) && + task_fits_cpu(p, env->src_cpu)) + return true; + + return false; +} + /* * Check if task p can migrate from source LLC to * destination LLC in terms of cache aware load balance. */ -static enum llc_mig can_migrate_llc_task(int src_cpu, int dst_cpu, +static enum llc_mig can_migrate_llc_task(struct lb_env *env, struct task_struct *p) { struct mm_struct *mm; bool to_pref; - int cpu; + int cpu, src_cpu, dst_cpu; + if (task_misfits_asym_cpu(env, p)) + return mig_forbid; + + src_cpu = env->src_cpu; + dst_cpu = env->dst_cpu; mm = p->mm; if (!mm) return mig_unrestricted; @@ -10632,6 +10655,14 @@ alb_break_llc(struct lb_env *env) unsigned long util = 0; struct task_struct *cur; + /* + * Migrating misfit tasks from current CPU + * to CPU with a better fit. + * Prioritize that over LLC preference. + */ + if (env->migration_type == migrate_misfit) + return false; + if (env->src_rq->nr_running <= 1) return true; @@ -10639,7 +10670,8 @@ alb_break_llc(struct lb_env *env) if (cur && cur->sched_class == &fair_sched_class) util = task_util(cur); - if (can_migrate_llc(env->src_cpu, env->dst_cpu, + if (task_misfits_asym_cpu(env, cur) || + can_migrate_llc(env->src_cpu, env->dst_cpu, util, false) == mig_forbid) return true; } @@ -10679,8 +10711,7 @@ static bool migrate_degrades_llc(struct task_struct *p, struct lb_env *env) READ_ONCE(p->preferred_llc) != llc_id(env->dst_cpu)) return true; - if (can_migrate_llc_task(env->src_cpu, - env->dst_cpu, p) != mig_forbid) + if (can_migrate_llc_task(env, p) != mig_forbid) return false; return true; @@ -11743,6 +11774,15 @@ static inline bool llc_balance(struct lb_env *env, struct sg_lb_stats *sgs, if (env->sd->flags & SD_SHARE_LLC) return false; + /* + * On asymmetric domains, group_misfit_task_load + * should be prioritized to move tasks to CPU that fit them + * over aggregating tasks to their preferred LLC. + */ + if ((env->sd->flags & SD_ASYM_CPUCAPACITY) && + sgs->group_misfit_task_load) + return false; + /* * Skip cache aware tagging if nr_balanced_failed is sufficiently high. * Threshold of cache_nice_tries is set to 1 higher than nr_balance_failed diff --git a/kernel/sched/rt.c b/kernel/sched/rt.c --- a/kernel/sched/rt.c +++ b/kernel/sched/rt.c @@ -1871,8 +1871,8 @@ static struct task_struct *pick_next_pushable_task(struct rq *rq) return NULL; plist_for_each_entry(i, head, pushable_tasks) { - /* make sure task isn't on_cpu (possible with proxy-exec) */ - if (!task_on_cpu(rq, i)) { + /* skip tasks that cannot be migrated */ + if (!task_on_cpu(rq, i) && !is_migration_disabled(i)) { p = i; break; }