From: Andrea Righi <arighi@nvidia.com>
To: Kuba Piecuch <jpiecuch@google.com>
Cc: Tejun Heo <tj@kernel.org>, David Vernet <void@manifault.com>,
Changwoo Min <changwoo@igalia.com>,
sched-ext@lists.linux.dev, linux-kernel@vger.kernel.org
Subject: Re: [PATCH sched_ext/for-7.2-fixes] selftests/sched_ext: Make allowed_cpus idle validation race-free
Date: Fri, 31 Jul 2026 10:25:42 +0200 [thread overview]
Message-ID: <amxcBhkt-3i-tFYA@gpd4> (raw)
In-Reply-To: <DKC06NICM5DQ.9OON50GZUAN3@google.com>
Hi Kuba,
On Thu, Jul 30, 2026 at 03:19:08PM +0000, Kuba Piecuch wrote:
> Hi Andrea,
>
> On Sun Jul 26, 2026 at 6:47 AM UTC, Andrea Righi wrote:
> > A remotely selected CPU can be re-advertised as idle by an idle-to-idle
> > re-pick before the BPF program validates the selection. Checking that
> > the selected CPU remains absent from the idle mask is therefore
> > inherently racy.
> >
> > Validate the stable local invariant instead: a CPU running a non-idle
> > scheduling context in ops.select_cpu() must not be advertised as idle.
> > Also validate both the requested domain and task affinity for selected
> > CPUs.
> >
> > Moreover, bootstrap the test by running a task on every active CPU while
> > ops.running() refreshes the initial idle state. This ensures that the
> > idle masks are properly initialized before strict validation begins.
> >
> > Signed-off-by: Andrea Righi <arighi@nvidia.com>
> > ---
> > .../selftests/sched_ext/allowed_cpus.bpf.c | 51 ++++++++++++++++---
> > .../selftests/sched_ext/allowed_cpus.c | 38 ++++++++++++++
> > 2 files changed, 82 insertions(+), 7 deletions(-)
> >
> > diff --git a/tools/testing/selftests/sched_ext/allowed_cpus.bpf.c b/tools/testing/selftests/sched_ext/allowed_cpus.bpf.c
> > index 35923e74a2ec3..4a14b05065453 100644
> > --- a/tools/testing/selftests/sched_ext/allowed_cpus.bpf.c
> > +++ b/tools/testing/selftests/sched_ext/allowed_cpus.bpf.c
> > @@ -13,17 +13,46 @@ char _license[] SEC("license") = "GPL";
> > UEI_DEFINE(uei);
> >
> > private(PREF_CPUS) struct bpf_cpumask __kptr * allowed_cpumask;
> > +volatile bool refresh_idle_masks;
> >
> > static void
> > -validate_idle_cpu(const struct task_struct *p, const struct cpumask *allowed, s32 cpu)
> > +validate_local_idle_state(void)
> > {
> > - if (scx_bpf_test_and_clear_cpu_idle(cpu))
> > - scx_bpf_error("CPU %d should be marked as busy", cpu);
> > + struct task_struct *curr;
> > + s32 cpu = bpf_get_smp_processor_id();
> > + bool curr_is_idle;
> >
> > - if (bpf_cpumask_subset(allowed, p->cpus_ptr) &&
> > - !bpf_cpumask_test_cpu(cpu, allowed))
> > + bpf_rcu_read_lock();
> > + curr = scx_bpf_cpu_curr(cpu);
> > + curr_is_idle = curr && (curr->flags & PF_IDLE);
> > + bpf_rcu_read_unlock();
> > +
> > + /*
> > + * Unlike a remote selected CPU, the local CPU cannot go through an
> > + * idle re-pick while this callback is running. If it is running a
> > + * non-idle scheduling context, it must not be advertised as idle.
> > + */
> > + if (!curr_is_idle && scx_bpf_test_and_clear_cpu_idle(cpu) && !refresh_idle_masks)
>
> I don't think it matters much in terms of correctness, but to me it would
> be more intuitive to read refresh_idle_masks first to ensure we're bootstrapped,
> and then check the idle bit.
Ack. And since I read your other comments below, we can remove this condition
entirely if we move the idle-mask initialization before ops.init() in the SCX
core.
>
> > + scx_bpf_error("running CPU %d should be marked as busy", cpu);
> > +}
> > +
> > +static void
> > +validate_selected_cpu(const struct task_struct *p, s32 cpu)
> > +{
> > + const struct cpumask *allowed = cast_mask(allowed_cpumask);
> > +
> > + if (!allowed) {
> > + scx_bpf_error("allowed domain not initialized");
> > + return;
> > + }
> > +
> > + if (!bpf_cpumask_test_cpu(cpu, allowed))
> > scx_bpf_error("CPU %d not in the allowed domain for %d (%s)",
> > cpu, p->pid, p->comm);
> > +
> > + if (!bpf_cpumask_test_cpu(cpu, p->cpus_ptr))
> > + scx_bpf_error("CPU %d not in the affinity mask for %d (%s)",
> > + cpu, p->pid, p->comm);
> > }
> >
> > s32 BPF_STRUCT_OPS(allowed_cpus_select_cpu,
> > @@ -42,8 +71,9 @@ s32 BPF_STRUCT_OPS(allowed_cpus_select_cpu,
> > * Select an idle CPU strictly within the allowed domain.
> > */
> > cpu = scx_bpf_select_cpu_and(p, prev_cpu, wake_flags, allowed, 0);
> > + validate_local_idle_state();
> > if (cpu >= 0) {
> > - validate_idle_cpu(p, allowed, cpu);
> > + validate_selected_cpu(p, cpu);
> > scx_bpf_dsq_insert(p, SCX_DSQ_LOCAL, SCX_SLICE_DFL, 0);
> >
> > return cpu;
> > @@ -71,11 +101,17 @@ void BPF_STRUCT_OPS(allowed_cpus_enqueue, struct task_struct *p, u64 enq_flags)
> > */
> > cpu = scx_bpf_select_cpu_and(p, prev_cpu, 0, allowed, 0);
> > if (cpu >= 0) {
> > - validate_idle_cpu(p, allowed, cpu);
> > + validate_selected_cpu(p, cpu);
> > scx_bpf_kick_cpu(cpu, SCX_KICK_IDLE);
> > }
> > }
> >
> > +void BPF_STRUCT_OPS(allowed_cpus_running, struct task_struct *p)
> > +{
> > + if (refresh_idle_masks)
> > + scx_bpf_test_and_clear_cpu_idle(bpf_get_smp_processor_id());
>
> ops.running() doesn't have to run on the same CPU as @p, e.g. when changing
> the priority of a task running on a remote CPU. I believe the correct thing
> to do here is scx_bpf_test_and_clear_cpu_idle(scx_bpf_task_cpu(p)).
Ah yes, that's a mistake, we should definitely use scx_bpf_task_cpu(p).
>
> > +}
> > +
> > s32 BPF_STRUCT_OPS_SLEEPABLE(allowed_cpus_init)
> > {
> > struct bpf_cpumask *mask;
> > @@ -138,6 +174,7 @@ SEC(".struct_ops.link")
> > struct sched_ext_ops allowed_cpus_ops = {
> > .select_cpu = (void *)allowed_cpus_select_cpu,
> > .enqueue = (void *)allowed_cpus_enqueue,
> > + .running = (void *)allowed_cpus_running,
> > .init = (void *)allowed_cpus_init,
> > .exit = (void *)allowed_cpus_exit,
> > .name = "allowed_cpus",
> > diff --git a/tools/testing/selftests/sched_ext/allowed_cpus.c b/tools/testing/selftests/sched_ext/allowed_cpus.c
> > index 093f285ab4bae..eb1708e55982b 100644
> > --- a/tools/testing/selftests/sched_ext/allowed_cpus.c
> > +++ b/tools/testing/selftests/sched_ext/allowed_cpus.c
> > @@ -3,6 +3,7 @@
> > * Copyright (c) 2025 Andrea Righi <arighi@nvidia.com>
> > */
> > #include <bpf/bpf.h>
> > +#include <sched.h>
> > #include <scx/common.h>
> > #include <sys/wait.h>
> > #include <unistd.h>
> > @@ -47,14 +48,51 @@ static int test_select_cpu_from_user(const struct allowed_cpus *skel)
> > return 0;
> > }
> >
> > +/*
> > + * Run this task once on every CPU while ops.running() repairs the bootstrap
> > + * idle state. Once a CPU has been refreshed, subsequent idle transitions keep
> > + * its state up to date.
> > + */
> > +static int refresh_idle_masks(void)
> > +{
> > + cpu_set_t original, one;
> > + int cpu, ret = 0;
> > +
> > + if (sched_getaffinity(0, sizeof(original), &original))
> > + return -errno;
> > +
> > + for (cpu = 0; cpu < CPU_SETSIZE; cpu++) {
> > + if (!CPU_ISSET(cpu, &original))
> > + continue;
> > +
> > + CPU_ZERO(&one);
> > + CPU_SET(cpu, &one);
> > + if (sched_setaffinity(0, sizeof(one), &one)) {
> > + ret = -errno;
> > + break;
> > + }
> > +
> > + sched_yield();
> > + }
> > +
> > + if (sched_setaffinity(0, sizeof(original), &original) && !ret)
> > + ret = -errno;
> > +
> > + return ret;
> > +}
> > +
>
> This bootstrapping mechanism feels like a bit of a hack.
> Couldn't we improve SCX itself to ensure the initial state of the idle masks
> is accurate?
>
> I was thinking we could enhance scx_idle_enable() by making it enable idle
> tracking (currently idle tracking is controlled by the __scx_enabled static
> branch), and then iterating over all CPUs, locking their rq locks and setting
> their idle bit based on whether rq->curr == rq->idle. All this would happen
> before calling ops.init(), so the BPF scheduler will be guaranteed to have an
> accurate idle cpumask. WDYT?
Agreed, this is much cleaner. I'll send v2 as a two-patch series and move the
initialization into SCX.
>
> > static enum scx_test_status run(void *ctx)
> > {
> > struct allowed_cpus *skel = ctx;
> > struct bpf_link *link;
> >
> > + skel->bss->refresh_idle_masks = true;
> > link = bpf_map__attach_struct_ops(skel->maps.allowed_cpus_ops);
> > SCX_FAIL_IF(!link, "Failed to attach scheduler");
> >
> > + SCX_FAIL_IF(refresh_idle_masks(), "Failed to refresh idle CPU state");
> > + __atomic_store_n(&skel->bss->refresh_idle_masks, false, __ATOMIC_RELEASE);
> > +
>
> Won't a WRITE_ONCE() suffice here? test_and_clear_bit() implies a full memory
> barrier, so I don't think we need any extra synchronization once the read of
> refresh_idle_masks is moved before scx_bpf_test_and_clear_cpu_idle() in
> validate_local_idle_state().
Yes, WRITE_ONCE() should be sufficient for the current workload.
>
> > /* Pick an idle CPU from user-space */
> > SCX_FAIL_IF(test_select_cpu_from_user(skel), "Failed to pick idle CPU");
> >
Thanks!
-Andrea
prev parent reply other threads:[~2026-07-31 8:25 UTC|newest]
Thread overview: 4+ messages / expand[flat|nested] mbox.gz Atom feed top
2026-07-26 6:47 [PATCH sched_ext/for-7.2-fixes] selftests/sched_ext: Make allowed_cpus idle validation race-free Andrea Righi
2026-07-26 6:58 ` sashiko-bot
2026-07-30 15:19 ` Kuba Piecuch
2026-07-31 8:25 ` Andrea Righi [this message]
Reply instructions:
You may reply publicly to this message via plain-text email
using any one of the following methods:
* Save the following mbox file, import it into your mail client,
and reply-to-all from there: mbox
Avoid top-posting and favor interleaved quoting:
https://en.wikipedia.org/wiki/Posting_style#Interleaved_style
* Reply using the --to, --cc, and --in-reply-to
switches of git-send-email(1):
git send-email \
--in-reply-to=amxcBhkt-3i-tFYA@gpd4 \
--to=arighi@nvidia.com \
--cc=changwoo@igalia.com \
--cc=jpiecuch@google.com \
--cc=linux-kernel@vger.kernel.org \
--cc=sched-ext@lists.linux.dev \
--cc=tj@kernel.org \
--cc=void@manifault.com \
/path/to/YOUR_REPLY
https://kernel.org/pub/software/scm/git/docs/git-send-email.html
* If your mail client supports setting the In-Reply-To header
via mailto: links, try the mailto: link
Be sure your reply has a Subject: header at the top and a blank line
before the message body.
This is a public inbox, see mirroring instructions
for how to clone and mirror all data and code used for this inbox