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selftests/sched_ext: Add NUMA-aware scheduler test
Add a selftest to validate the behavior of the NUMA-aware scheduler functionalities, including idle CPU selection within nodes, per-node DSQs and CPU to node mapping. Signed-off-by: Andrea Righi <arighi@nvidia.com> Signed-off-by: Tejun Heo <tj@kernel.org>
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@ -172,6 +172,7 @@ auto-test-targets := \
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maximal \
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maximal \
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maybe_null \
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maybe_null \
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minimal \
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minimal \
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numa \
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prog_run \
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prog_run \
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reload_loop \
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reload_loop \
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select_cpu_dfl \
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select_cpu_dfl \
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100
tools/testing/selftests/sched_ext/numa.bpf.c
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100
tools/testing/selftests/sched_ext/numa.bpf.c
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// SPDX-License-Identifier: GPL-2.0
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/*
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* A scheduler that validates the behavior of the NUMA-aware
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* functionalities.
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*
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* The scheduler creates a separate DSQ for each NUMA node, ensuring tasks
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* are exclusively processed by CPUs within their respective nodes. Idle
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* CPUs are selected only within the same node, so task migration can only
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* occurs between CPUs belonging to the same node.
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*
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* Copyright (c) 2025 Andrea Righi <arighi@nvidia.com>
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*/
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#include <scx/common.bpf.h>
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char _license[] SEC("license") = "GPL";
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UEI_DEFINE(uei);
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const volatile unsigned int __COMPAT_SCX_PICK_IDLE_IN_NODE;
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static bool is_cpu_idle(s32 cpu, int node)
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{
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const struct cpumask *idle_cpumask;
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bool idle;
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idle_cpumask = __COMPAT_scx_bpf_get_idle_cpumask_node(node);
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idle = bpf_cpumask_test_cpu(cpu, idle_cpumask);
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scx_bpf_put_cpumask(idle_cpumask);
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return idle;
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}
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s32 BPF_STRUCT_OPS(numa_select_cpu,
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struct task_struct *p, s32 prev_cpu, u64 wake_flags)
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{
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int node = __COMPAT_scx_bpf_cpu_node(scx_bpf_task_cpu(p));
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s32 cpu;
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/*
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* We could just use __COMPAT_scx_bpf_pick_any_cpu_node() here,
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* since it already tries to pick an idle CPU within the node
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* first, but let's use both functions for better testing coverage.
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*/
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cpu = __COMPAT_scx_bpf_pick_idle_cpu_node(p->cpus_ptr, node,
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__COMPAT_SCX_PICK_IDLE_IN_NODE);
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if (cpu < 0)
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cpu = __COMPAT_scx_bpf_pick_any_cpu_node(p->cpus_ptr, node,
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__COMPAT_SCX_PICK_IDLE_IN_NODE);
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if (is_cpu_idle(cpu, node))
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scx_bpf_error("CPU %d should be marked as busy", cpu);
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if (__COMPAT_scx_bpf_cpu_node(cpu) != node)
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scx_bpf_error("CPU %d should be in node %d", cpu, node);
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return cpu;
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}
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void BPF_STRUCT_OPS(numa_enqueue, struct task_struct *p, u64 enq_flags)
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{
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int node = __COMPAT_scx_bpf_cpu_node(scx_bpf_task_cpu(p));
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scx_bpf_dsq_insert(p, node, SCX_SLICE_DFL, enq_flags);
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}
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void BPF_STRUCT_OPS(numa_dispatch, s32 cpu, struct task_struct *prev)
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{
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int node = __COMPAT_scx_bpf_cpu_node(cpu);
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scx_bpf_dsq_move_to_local(node);
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}
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s32 BPF_STRUCT_OPS_SLEEPABLE(numa_init)
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{
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int node, err;
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bpf_for(node, 0, __COMPAT_scx_bpf_nr_node_ids()) {
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err = scx_bpf_create_dsq(node, node);
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if (err)
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return err;
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}
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return 0;
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}
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void BPF_STRUCT_OPS(numa_exit, struct scx_exit_info *ei)
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{
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UEI_RECORD(uei, ei);
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}
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SEC(".struct_ops.link")
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struct sched_ext_ops numa_ops = {
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.select_cpu = (void *)numa_select_cpu,
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.enqueue = (void *)numa_enqueue,
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.dispatch = (void *)numa_dispatch,
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.init = (void *)numa_init,
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.exit = (void *)numa_exit,
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.name = "numa",
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};
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59
tools/testing/selftests/sched_ext/numa.c
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59
tools/testing/selftests/sched_ext/numa.c
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// SPDX-License-Identifier: GPL-2.0
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/*
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* Copyright (c) 2025 Andrea Righi <arighi@nvidia.com>
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*/
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#include <bpf/bpf.h>
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#include <scx/common.h>
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#include <sys/wait.h>
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#include <unistd.h>
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#include "numa.bpf.skel.h"
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#include "scx_test.h"
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static enum scx_test_status setup(void **ctx)
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{
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struct numa *skel;
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skel = numa__open();
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SCX_FAIL_IF(!skel, "Failed to open");
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SCX_ENUM_INIT(skel);
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skel->rodata->__COMPAT_SCX_PICK_IDLE_IN_NODE = SCX_PICK_IDLE_IN_NODE;
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skel->struct_ops.numa_ops->flags = SCX_OPS_BUILTIN_IDLE_PER_NODE;
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SCX_FAIL_IF(numa__load(skel), "Failed to load skel");
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*ctx = skel;
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return SCX_TEST_PASS;
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}
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static enum scx_test_status run(void *ctx)
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{
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struct numa *skel = ctx;
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struct bpf_link *link;
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link = bpf_map__attach_struct_ops(skel->maps.numa_ops);
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SCX_FAIL_IF(!link, "Failed to attach scheduler");
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/* Just sleeping is fine, plenty of scheduling events happening */
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sleep(1);
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SCX_EQ(skel->data->uei.kind, EXIT_KIND(SCX_EXIT_NONE));
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bpf_link__destroy(link);
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return SCX_TEST_PASS;
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}
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static void cleanup(void *ctx)
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{
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struct numa *skel = ctx;
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numa__destroy(skel);
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}
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struct scx_test numa = {
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.name = "numa",
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.description = "Verify NUMA-aware functionalities",
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.setup = setup,
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.run = run,
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.cleanup = cleanup,
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};
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REGISTER_SCX_TEST(&numa)
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