<feed xmlns='http://www.w3.org/2005/Atom'>
<title>linux-stable.git/kernel/sched, branch v6.6.59</title>
<subtitle>Linux kernel stable tree</subtitle>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/'/>
<entry>
<title>sched/core: Disable page allocation in task_tick_mm_cid()</title>
<updated>2024-11-01T00:58:20+00:00</updated>
<author>
<name>Waiman Long</name>
<email>longman@redhat.com</email>
</author>
<published>2024-10-10T01:44:32+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=509c29d0d26f68a6f6d0a05cb1a89725237e2b87'/>
<id>509c29d0d26f68a6f6d0a05cb1a89725237e2b87</id>
<content type='text'>
[ Upstream commit 73ab05aa46b02d96509cb029a8d04fca7bbde8c7 ]

With KASAN and PREEMPT_RT enabled, calling task_work_add() in
task_tick_mm_cid() may cause the following splat.

[   63.696416] BUG: sleeping function called from invalid context at kernel/locking/spinlock_rt.c:48
[   63.696416] in_atomic(): 1, irqs_disabled(): 1, non_block: 0, pid: 610, name: modprobe
[   63.696416] preempt_count: 10001, expected: 0
[   63.696416] RCU nest depth: 1, expected: 1

This problem is caused by the following call trace.

  sched_tick() [ acquire rq-&gt;__lock ]
   -&gt; task_tick_mm_cid()
    -&gt; task_work_add()
     -&gt; __kasan_record_aux_stack()
      -&gt; kasan_save_stack()
       -&gt; stack_depot_save_flags()
        -&gt; alloc_pages_mpol_noprof()
         -&gt; __alloc_pages_noprof()
	  -&gt; get_page_from_freelist()
	   -&gt; rmqueue()
	    -&gt; rmqueue_pcplist()
	     -&gt; __rmqueue_pcplist()
	      -&gt; rmqueue_bulk()
	       -&gt; rt_spin_lock()

The rq lock is a raw_spinlock_t. We can't sleep while holding
it. IOW, we can't call alloc_pages() in stack_depot_save_flags().

The task_tick_mm_cid() function with its task_work_add() call was
introduced by commit 223baf9d17f2 ("sched: Fix performance regression
introduced by mm_cid") in v6.4 kernel.

Fortunately, there is a kasan_record_aux_stack_noalloc() variant that
calls stack_depot_save_flags() while not allowing it to allocate
new pages.  To allow task_tick_mm_cid() to use task_work without
page allocation, a new TWAF_NO_ALLOC flag is added to enable calling
kasan_record_aux_stack_noalloc() instead of kasan_record_aux_stack()
if set. The task_tick_mm_cid() function is modified to add this new flag.

The possible downside is the missing stack trace in a KASAN report due
to new page allocation required when task_work_add_noallloc() is called
which should be rare.

Fixes: 223baf9d17f2 ("sched: Fix performance regression introduced by mm_cid")
Signed-off-by: Waiman Long &lt;longman@redhat.com&gt;
Signed-off-by: Peter Zijlstra (Intel) &lt;peterz@infradead.org&gt;
Link: https://lkml.kernel.org/r/20241010014432.194742-1-longman@redhat.com
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit 73ab05aa46b02d96509cb029a8d04fca7bbde8c7 ]

With KASAN and PREEMPT_RT enabled, calling task_work_add() in
task_tick_mm_cid() may cause the following splat.

[   63.696416] BUG: sleeping function called from invalid context at kernel/locking/spinlock_rt.c:48
[   63.696416] in_atomic(): 1, irqs_disabled(): 1, non_block: 0, pid: 610, name: modprobe
[   63.696416] preempt_count: 10001, expected: 0
[   63.696416] RCU nest depth: 1, expected: 1

This problem is caused by the following call trace.

  sched_tick() [ acquire rq-&gt;__lock ]
   -&gt; task_tick_mm_cid()
    -&gt; task_work_add()
     -&gt; __kasan_record_aux_stack()
      -&gt; kasan_save_stack()
       -&gt; stack_depot_save_flags()
        -&gt; alloc_pages_mpol_noprof()
         -&gt; __alloc_pages_noprof()
	  -&gt; get_page_from_freelist()
	   -&gt; rmqueue()
	    -&gt; rmqueue_pcplist()
	     -&gt; __rmqueue_pcplist()
	      -&gt; rmqueue_bulk()
	       -&gt; rt_spin_lock()

The rq lock is a raw_spinlock_t. We can't sleep while holding
it. IOW, we can't call alloc_pages() in stack_depot_save_flags().

The task_tick_mm_cid() function with its task_work_add() call was
introduced by commit 223baf9d17f2 ("sched: Fix performance regression
introduced by mm_cid") in v6.4 kernel.

Fortunately, there is a kasan_record_aux_stack_noalloc() variant that
calls stack_depot_save_flags() while not allowing it to allocate
new pages.  To allow task_tick_mm_cid() to use task_work without
page allocation, a new TWAF_NO_ALLOC flag is added to enable calling
kasan_record_aux_stack_noalloc() instead of kasan_record_aux_stack()
if set. The task_tick_mm_cid() function is modified to add this new flag.

The possible downside is the missing stack trace in a KASAN report due
to new page allocation required when task_work_add_noallloc() is called
which should be rare.

Fixes: 223baf9d17f2 ("sched: Fix performance regression introduced by mm_cid")
Signed-off-by: Waiman Long &lt;longman@redhat.com&gt;
Signed-off-by: Peter Zijlstra (Intel) &lt;peterz@infradead.org&gt;
Link: https://lkml.kernel.org/r/20241010014432.194742-1-longman@redhat.com
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched: psi: fix bogus pressure spikes from aggregation race</title>
<updated>2024-10-10T09:58:03+00:00</updated>
<author>
<name>Johannes Weiner</name>
<email>hannes@cmpxchg.org</email>
</author>
<published>2024-10-03T11:29:05+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=1f997b1d13e0b9819468e577622e747b546516fe'/>
<id>1f997b1d13e0b9819468e577622e747b546516fe</id>
<content type='text'>
[ Upstream commit 3840cbe24cf060ea05a585ca497814609f5d47d1 ]

Brandon reports sporadic, non-sensical spikes in cumulative pressure
time (total=) when reading cpu.pressure at a high rate. This is due to
a race condition between reader aggregation and tasks changing states.

While it affects all states and all resources captured by PSI, in
practice it most likely triggers with CPU pressure, since scheduling
events are so frequent compared to other resource events.

The race context is the live snooping of ongoing stalls during a
pressure read. The read aggregates per-cpu records for stalls that
have concluded, but will also incorporate ad-hoc the duration of any
active state that hasn't been recorded yet. This is important to get
timely measurements of ongoing stalls. Those ad-hoc samples are
calculated on-the-fly up to the current time on that CPU; since the
stall hasn't concluded, it's expected that this is the minimum amount
of stall time that will enter the per-cpu records once it does.

The problem is that the path that concludes the state uses a CPU clock
read that is not synchronized against aggregators; the clock is read
outside of the seqlock protection. This allows aggregators to race and
snoop a stall with a longer duration than will actually be recorded.

With the recorded stall time being less than the last snapshot
remembered by the aggregator, a subsequent sample will underflow and
observe a bogus delta value, resulting in an erratic jump in pressure.

Fix this by moving the clock read of the state change into the seqlock
protection. This ensures no aggregation can snoop live stalls past the
time that's recorded when the state concludes.

Reported-by: Brandon Duffany &lt;brandon@buildbuddy.io&gt;
Link: https://bugzilla.kernel.org/show_bug.cgi?id=219194
Link: https://lore.kernel.org/lkml/20240827121851.GB438928@cmpxchg.org/
Fixes: df77430639c9 ("psi: Reduce calls to sched_clock() in psi")
Cc: stable@vger.kernel.org
Signed-off-by: Johannes Weiner &lt;hannes@cmpxchg.org&gt;
Reviewed-by: Chengming Zhou &lt;chengming.zhou@linux.dev&gt;
Signed-off-by: Linus Torvalds &lt;torvalds@linux-foundation.org&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit 3840cbe24cf060ea05a585ca497814609f5d47d1 ]

Brandon reports sporadic, non-sensical spikes in cumulative pressure
time (total=) when reading cpu.pressure at a high rate. This is due to
a race condition between reader aggregation and tasks changing states.

While it affects all states and all resources captured by PSI, in
practice it most likely triggers with CPU pressure, since scheduling
events are so frequent compared to other resource events.

The race context is the live snooping of ongoing stalls during a
pressure read. The read aggregates per-cpu records for stalls that
have concluded, but will also incorporate ad-hoc the duration of any
active state that hasn't been recorded yet. This is important to get
timely measurements of ongoing stalls. Those ad-hoc samples are
calculated on-the-fly up to the current time on that CPU; since the
stall hasn't concluded, it's expected that this is the minimum amount
of stall time that will enter the per-cpu records once it does.

The problem is that the path that concludes the state uses a CPU clock
read that is not synchronized against aggregators; the clock is read
outside of the seqlock protection. This allows aggregators to race and
snoop a stall with a longer duration than will actually be recorded.

With the recorded stall time being less than the last snapshot
remembered by the aggregator, a subsequent sample will underflow and
observe a bogus delta value, resulting in an erratic jump in pressure.

Fix this by moving the clock read of the state change into the seqlock
protection. This ensures no aggregation can snoop live stalls past the
time that's recorded when the state concludes.

Reported-by: Brandon Duffany &lt;brandon@buildbuddy.io&gt;
Link: https://bugzilla.kernel.org/show_bug.cgi?id=219194
Link: https://lore.kernel.org/lkml/20240827121851.GB438928@cmpxchg.org/
Fixes: df77430639c9 ("psi: Reduce calls to sched_clock() in psi")
Cc: stable@vger.kernel.org
Signed-off-by: Johannes Weiner &lt;hannes@cmpxchg.org&gt;
Reviewed-by: Chengming Zhou &lt;chengming.zhou@linux.dev&gt;
Signed-off-by: Linus Torvalds &lt;torvalds@linux-foundation.org&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched/numa: Fix the vma scan starving issue</title>
<updated>2024-10-04T14:29:22+00:00</updated>
<author>
<name>Yujie Liu</name>
<email>yujie.liu@intel.com</email>
</author>
<published>2024-08-27T11:29:58+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=66f3fc741177848f0b5dcb51cc93328fbafc43f0'/>
<id>66f3fc741177848f0b5dcb51cc93328fbafc43f0</id>
<content type='text'>
[ Upstream commit f22cde4371f3c624e947a35b075c06c771442a43 ]

Problem statement:
Since commit fc137c0ddab2 ("sched/numa: enhance vma scanning logic"), the
Numa vma scan overhead has been reduced a lot.  Meanwhile, the reducing of
the vma scan might create less Numa page fault information.  The
insufficient information makes it harder for the Numa balancer to make
decision.  Later, commit b7a5b537c55c08 ("sched/numa: Complete scanning of
partial VMAs regardless of PID activity") and commit 84db47ca7146d7
("sched/numa: Fix mm numa_scan_seq based unconditional scan") are found to
bring back part of the performance.

Recently when running SPECcpu omnetpp_r on a 320 CPUs/2 Sockets system, a
long duration of remote Numa node read was observed by PMU events: A few
cores having ~500MB/s remote memory access for ~20 seconds.  It causes
high core-to-core variance and performance penalty.  After the
investigation, it is found that many vmas are skipped due to the active
PID check.  According to the trace events, in most cases,
vma_is_accessed() returns false because the history access info stored in
pids_active array has been cleared.

Proposal:
The main idea is to adjust vma_is_accessed() to let it return true easier.
Thus compare the diff between mm-&gt;numa_scan_seq and
vma-&gt;numab_state-&gt;prev_scan_seq.  If the diff has exceeded the threshold,
scan the vma.

This patch especially helps the cases where there are small number of
threads, like the process-based SPECcpu.  Without this patch, if the
SPECcpu process access the vma at the beginning, then sleeps for a long
time, the pid_active array will be cleared.  A a result, if this process
is woken up again, it never has a chance to set prot_none anymore.
Because only the first 2 times of access is granted for vma scan:
(current-&gt;mm-&gt;numa_scan_seq) - vma-&gt;numab_state-&gt;start_scan_seq) &lt; 2 to be
worse, no other threads within the task can help set the prot_none.  This
causes information lost.

Raghavendra helped test current patch and got the positive result
on the AMD platform:

autonumabench NUMA01
                            base                  patched
Amean     syst-NUMA01      194.05 (   0.00%)      165.11 *  14.92%*
Amean     elsp-NUMA01      324.86 (   0.00%)      315.58 *   2.86%*

Duration User      380345.36   368252.04
Duration System      1358.89     1156.23
Duration Elapsed     2277.45     2213.25

autonumabench NUMA02

Amean     syst-NUMA02        1.12 (   0.00%)        1.09 *   2.93%*
Amean     elsp-NUMA02        3.50 (   0.00%)        3.56 *  -1.84%*

Duration User        1513.23     1575.48
Duration System         8.33        8.13
Duration Elapsed       28.59       29.71

kernbench

Amean     user-256    22935.42 (   0.00%)    22535.19 *   1.75%*
Amean     syst-256     7284.16 (   0.00%)     7608.72 *  -4.46%*
Amean     elsp-256      159.01 (   0.00%)      158.17 *   0.53%*

Duration User       68816.41    67615.74
Duration System     21873.94    22848.08
Duration Elapsed      506.66      504.55

Intel 256 CPUs/2 Sockets:
autonuma benchmark also shows improvements:

                                               v6.10-rc5              v6.10-rc5
                                                                         +patch
Amean     syst-NUMA01                  245.85 (   0.00%)      230.84 *   6.11%*
Amean     syst-NUMA01_THREADLOCAL      205.27 (   0.00%)      191.86 *   6.53%*
Amean     syst-NUMA02                   18.57 (   0.00%)       18.09 *   2.58%*
Amean     syst-NUMA02_SMT                2.63 (   0.00%)        2.54 *   3.47%*
Amean     elsp-NUMA01                  517.17 (   0.00%)      526.34 *  -1.77%*
Amean     elsp-NUMA01_THREADLOCAL       99.92 (   0.00%)      100.59 *  -0.67%*
Amean     elsp-NUMA02                   15.81 (   0.00%)       15.72 *   0.59%*
Amean     elsp-NUMA02_SMT               13.23 (   0.00%)       12.89 *   2.53%*

                   v6.10-rc5   v6.10-rc5
                                  +patch
Duration User     1064010.16  1075416.23
Duration System      3307.64     3104.66
Duration Elapsed     4537.54     4604.73

The SPECcpu remote node access issue disappears with the patch applied.

Link: https://lkml.kernel.org/r/20240827112958.181388-1-yu.c.chen@intel.com
Fixes: fc137c0ddab2 ("sched/numa: enhance vma scanning logic")
Signed-off-by: Chen Yu &lt;yu.c.chen@intel.com&gt;
Co-developed-by: Chen Yu &lt;yu.c.chen@intel.com&gt;
Signed-off-by: Yujie Liu &lt;yujie.liu@intel.com&gt;
Reported-by: Xiaoping Zhou &lt;xiaoping.zhou@intel.com&gt;
Reviewed-and-tested-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Acked-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Cc: "Chen, Tim C" &lt;tim.c.chen@intel.com&gt;
Cc: Ingo Molnar &lt;mingo@redhat.com&gt;
Cc: Juri Lelli &lt;juri.lelli@redhat.com&gt;
Cc: Peter Zijlstra &lt;peterz@infradead.org&gt;
Cc: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Cc: Vincent Guittot &lt;vincent.guittot@linaro.org&gt;
Signed-off-by: Andrew Morton &lt;akpm@linux-foundation.org&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit f22cde4371f3c624e947a35b075c06c771442a43 ]

Problem statement:
Since commit fc137c0ddab2 ("sched/numa: enhance vma scanning logic"), the
Numa vma scan overhead has been reduced a lot.  Meanwhile, the reducing of
the vma scan might create less Numa page fault information.  The
insufficient information makes it harder for the Numa balancer to make
decision.  Later, commit b7a5b537c55c08 ("sched/numa: Complete scanning of
partial VMAs regardless of PID activity") and commit 84db47ca7146d7
("sched/numa: Fix mm numa_scan_seq based unconditional scan") are found to
bring back part of the performance.

Recently when running SPECcpu omnetpp_r on a 320 CPUs/2 Sockets system, a
long duration of remote Numa node read was observed by PMU events: A few
cores having ~500MB/s remote memory access for ~20 seconds.  It causes
high core-to-core variance and performance penalty.  After the
investigation, it is found that many vmas are skipped due to the active
PID check.  According to the trace events, in most cases,
vma_is_accessed() returns false because the history access info stored in
pids_active array has been cleared.

Proposal:
The main idea is to adjust vma_is_accessed() to let it return true easier.
Thus compare the diff between mm-&gt;numa_scan_seq and
vma-&gt;numab_state-&gt;prev_scan_seq.  If the diff has exceeded the threshold,
scan the vma.

This patch especially helps the cases where there are small number of
threads, like the process-based SPECcpu.  Without this patch, if the
SPECcpu process access the vma at the beginning, then sleeps for a long
time, the pid_active array will be cleared.  A a result, if this process
is woken up again, it never has a chance to set prot_none anymore.
Because only the first 2 times of access is granted for vma scan:
(current-&gt;mm-&gt;numa_scan_seq) - vma-&gt;numab_state-&gt;start_scan_seq) &lt; 2 to be
worse, no other threads within the task can help set the prot_none.  This
causes information lost.

Raghavendra helped test current patch and got the positive result
on the AMD platform:

autonumabench NUMA01
                            base                  patched
Amean     syst-NUMA01      194.05 (   0.00%)      165.11 *  14.92%*
Amean     elsp-NUMA01      324.86 (   0.00%)      315.58 *   2.86%*

Duration User      380345.36   368252.04
Duration System      1358.89     1156.23
Duration Elapsed     2277.45     2213.25

autonumabench NUMA02

Amean     syst-NUMA02        1.12 (   0.00%)        1.09 *   2.93%*
Amean     elsp-NUMA02        3.50 (   0.00%)        3.56 *  -1.84%*

Duration User        1513.23     1575.48
Duration System         8.33        8.13
Duration Elapsed       28.59       29.71

kernbench

Amean     user-256    22935.42 (   0.00%)    22535.19 *   1.75%*
Amean     syst-256     7284.16 (   0.00%)     7608.72 *  -4.46%*
Amean     elsp-256      159.01 (   0.00%)      158.17 *   0.53%*

Duration User       68816.41    67615.74
Duration System     21873.94    22848.08
Duration Elapsed      506.66      504.55

Intel 256 CPUs/2 Sockets:
autonuma benchmark also shows improvements:

                                               v6.10-rc5              v6.10-rc5
                                                                         +patch
Amean     syst-NUMA01                  245.85 (   0.00%)      230.84 *   6.11%*
Amean     syst-NUMA01_THREADLOCAL      205.27 (   0.00%)      191.86 *   6.53%*
Amean     syst-NUMA02                   18.57 (   0.00%)       18.09 *   2.58%*
Amean     syst-NUMA02_SMT                2.63 (   0.00%)        2.54 *   3.47%*
Amean     elsp-NUMA01                  517.17 (   0.00%)      526.34 *  -1.77%*
Amean     elsp-NUMA01_THREADLOCAL       99.92 (   0.00%)      100.59 *  -0.67%*
Amean     elsp-NUMA02                   15.81 (   0.00%)       15.72 *   0.59%*
Amean     elsp-NUMA02_SMT               13.23 (   0.00%)       12.89 *   2.53%*

                   v6.10-rc5   v6.10-rc5
                                  +patch
Duration User     1064010.16  1075416.23
Duration System      3307.64     3104.66
Duration Elapsed     4537.54     4604.73

The SPECcpu remote node access issue disappears with the patch applied.

Link: https://lkml.kernel.org/r/20240827112958.181388-1-yu.c.chen@intel.com
Fixes: fc137c0ddab2 ("sched/numa: enhance vma scanning logic")
Signed-off-by: Chen Yu &lt;yu.c.chen@intel.com&gt;
Co-developed-by: Chen Yu &lt;yu.c.chen@intel.com&gt;
Signed-off-by: Yujie Liu &lt;yujie.liu@intel.com&gt;
Reported-by: Xiaoping Zhou &lt;xiaoping.zhou@intel.com&gt;
Reviewed-and-tested-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Acked-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Cc: "Chen, Tim C" &lt;tim.c.chen@intel.com&gt;
Cc: Ingo Molnar &lt;mingo@redhat.com&gt;
Cc: Juri Lelli &lt;juri.lelli@redhat.com&gt;
Cc: Peter Zijlstra &lt;peterz@infradead.org&gt;
Cc: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Cc: Vincent Guittot &lt;vincent.guittot@linaro.org&gt;
Signed-off-by: Andrew Morton &lt;akpm@linux-foundation.org&gt;
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched/numa: Complete scanning of inactive VMAs when there is no alternative</title>
<updated>2024-10-04T14:29:22+00:00</updated>
<author>
<name>Mel Gorman</name>
<email>mgorman@techsingularity.net</email>
</author>
<published>2023-10-10T08:31:43+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=e3a2d3f6c40e749ad431a1cb7fd5dd78a02ab592'/>
<id>e3a2d3f6c40e749ad431a1cb7fd5dd78a02ab592</id>
<content type='text'>
[ Upstream commit f169c62ff7cd1acf8bac8ae17bfeafa307d9e6fa ]

VMAs are skipped if there is no recent fault activity but this represents
a chicken-and-egg problem as there may be no fault activity if the PTEs
are never updated to trap NUMA hints. There is an indirect reliance on
scanning to be forced early in the lifetime of a task but this may fail
to detect changes in phase behaviour. Force inactive VMAs to be scanned
when all other eligible VMAs have been updated within the same scan
sequence.

Test results in general look good with some changes in performance, both
negative and positive, depending on whether the additional scanning and
faulting was beneficial or not to the workload. The autonuma benchmark
workload NUMA01_THREADLOCAL was picked for closer examination. The workload
creates two processes with numerous threads and thread-local storage that
is zero-filled in a loop. It exercises the corner case where unrelated
threads may skip VMAs that are thread-local to another thread and still
has some VMAs that inactive while the workload executes.

The VMA skipping activity frequency with and without the patch:

	6.6.0-rc2-sched-numabtrace-v1
	=============================
	    649 reason=scan_delay
	  9,094 reason=unsuitable
	 48,915 reason=shared_ro
	143,919 reason=inaccessible
	193,050 reason=pid_inactive

	6.6.0-rc2-sched-numabselective-v1
	=============================
	    146 reason=seq_completed
	    622 reason=ignore_pid_inactive

	    624 reason=scan_delay
	  6,570 reason=unsuitable
	 16,101 reason=shared_ro
	 27,608 reason=inaccessible
	 41,939 reason=pid_inactive

Note that with the patch applied, the PID activity is ignored
(ignore_pid_inactive) to ensure a VMA with some activity is completely
scanned. In addition, a small number of VMAs are scanned when no other
eligible VMA is available during a single scan window (seq_completed).
The number of times a VMA is skipped due to no PID activity from the
scanning task (pid_inactive) drops dramatically. It is expected that
this will increase the number of PTEs updated for NUMA hinting faults
as well as hinting faults but these represent PTEs that would otherwise
have been missed. The tradeoff is scan+fault overhead versus improving
locality due to migration.

On a 2-socket Cascade Lake test machine, the time to complete the
workload is as follows;

                                                 6.6.0-rc2              6.6.0-rc2
                                       sched-numabtrace-v1 sched-numabselective-v1
  Min       elsp-NUMA01_THREADLOCAL      174.22 (   0.00%)      117.64 (  32.48%)
  Amean     elsp-NUMA01_THREADLOCAL      175.68 (   0.00%)      123.34 *  29.79%*
  Stddev    elsp-NUMA01_THREADLOCAL        1.20 (   0.00%)        4.06 (-238.20%)
  CoeffVar  elsp-NUMA01_THREADLOCAL        0.68 (   0.00%)        3.29 (-381.70%)
  Max       elsp-NUMA01_THREADLOCAL      177.18 (   0.00%)      128.03 (  27.74%)

The time to complete the workload is reduced by almost 30%:

                     6.6.0-rc2   6.6.0-rc2
                  sched-numabtrace-v1 sched-numabselective-v1 /
  Duration User       91201.80    63506.64
  Duration System      2015.53     1819.78
  Duration Elapsed     1234.77      868.37

In this specific case, system CPU time was not increased but it's not
universally true.

From vmstat, the NUMA scanning and fault activity is as follows;

                                        6.6.0-rc2      6.6.0-rc2
                              sched-numabtrace-v1 sched-numabselective-v1
  Ops NUMA base-page range updates       64272.00    26374386.00
  Ops NUMA PTE updates                   36624.00       55538.00
  Ops NUMA PMD updates                      54.00       51404.00
  Ops NUMA hint faults                   15504.00       75786.00
  Ops NUMA hint local faults %           14860.00       56763.00
  Ops NUMA hint local percent               95.85          74.90
  Ops NUMA pages migrated                 1629.00     6469222.00

Both the number of PTE updates and hint faults is dramatically
increased. While this is superficially unfortunate, it represents
ranges that were simply skipped without the patch. As a result
of the scanning and hinting faults, many more pages were also
migrated but as the time to completion is reduced, the overhead
is offset by the gain.

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Tested-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-7-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit f169c62ff7cd1acf8bac8ae17bfeafa307d9e6fa ]

VMAs are skipped if there is no recent fault activity but this represents
a chicken-and-egg problem as there may be no fault activity if the PTEs
are never updated to trap NUMA hints. There is an indirect reliance on
scanning to be forced early in the lifetime of a task but this may fail
to detect changes in phase behaviour. Force inactive VMAs to be scanned
when all other eligible VMAs have been updated within the same scan
sequence.

Test results in general look good with some changes in performance, both
negative and positive, depending on whether the additional scanning and
faulting was beneficial or not to the workload. The autonuma benchmark
workload NUMA01_THREADLOCAL was picked for closer examination. The workload
creates two processes with numerous threads and thread-local storage that
is zero-filled in a loop. It exercises the corner case where unrelated
threads may skip VMAs that are thread-local to another thread and still
has some VMAs that inactive while the workload executes.

The VMA skipping activity frequency with and without the patch:

	6.6.0-rc2-sched-numabtrace-v1
	=============================
	    649 reason=scan_delay
	  9,094 reason=unsuitable
	 48,915 reason=shared_ro
	143,919 reason=inaccessible
	193,050 reason=pid_inactive

	6.6.0-rc2-sched-numabselective-v1
	=============================
	    146 reason=seq_completed
	    622 reason=ignore_pid_inactive

	    624 reason=scan_delay
	  6,570 reason=unsuitable
	 16,101 reason=shared_ro
	 27,608 reason=inaccessible
	 41,939 reason=pid_inactive

Note that with the patch applied, the PID activity is ignored
(ignore_pid_inactive) to ensure a VMA with some activity is completely
scanned. In addition, a small number of VMAs are scanned when no other
eligible VMA is available during a single scan window (seq_completed).
The number of times a VMA is skipped due to no PID activity from the
scanning task (pid_inactive) drops dramatically. It is expected that
this will increase the number of PTEs updated for NUMA hinting faults
as well as hinting faults but these represent PTEs that would otherwise
have been missed. The tradeoff is scan+fault overhead versus improving
locality due to migration.

On a 2-socket Cascade Lake test machine, the time to complete the
workload is as follows;

                                                 6.6.0-rc2              6.6.0-rc2
                                       sched-numabtrace-v1 sched-numabselective-v1
  Min       elsp-NUMA01_THREADLOCAL      174.22 (   0.00%)      117.64 (  32.48%)
  Amean     elsp-NUMA01_THREADLOCAL      175.68 (   0.00%)      123.34 *  29.79%*
  Stddev    elsp-NUMA01_THREADLOCAL        1.20 (   0.00%)        4.06 (-238.20%)
  CoeffVar  elsp-NUMA01_THREADLOCAL        0.68 (   0.00%)        3.29 (-381.70%)
  Max       elsp-NUMA01_THREADLOCAL      177.18 (   0.00%)      128.03 (  27.74%)

The time to complete the workload is reduced by almost 30%:

                     6.6.0-rc2   6.6.0-rc2
                  sched-numabtrace-v1 sched-numabselective-v1 /
  Duration User       91201.80    63506.64
  Duration System      2015.53     1819.78
  Duration Elapsed     1234.77      868.37

In this specific case, system CPU time was not increased but it's not
universally true.

From vmstat, the NUMA scanning and fault activity is as follows;

                                        6.6.0-rc2      6.6.0-rc2
                              sched-numabtrace-v1 sched-numabselective-v1
  Ops NUMA base-page range updates       64272.00    26374386.00
  Ops NUMA PTE updates                   36624.00       55538.00
  Ops NUMA PMD updates                      54.00       51404.00
  Ops NUMA hint faults                   15504.00       75786.00
  Ops NUMA hint local faults %           14860.00       56763.00
  Ops NUMA hint local percent               95.85          74.90
  Ops NUMA pages migrated                 1629.00     6469222.00

Both the number of PTE updates and hint faults is dramatically
increased. While this is superficially unfortunate, it represents
ranges that were simply skipped without the patch. As a result
of the scanning and hinting faults, many more pages were also
migrated but as the time to completion is reduced, the overhead
is offset by the gain.

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Tested-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-7-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched/numa: Complete scanning of partial VMAs regardless of PID activity</title>
<updated>2024-10-04T14:29:22+00:00</updated>
<author>
<name>Mel Gorman</name>
<email>mgorman@techsingularity.net</email>
</author>
<published>2023-10-10T08:31:42+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=cb7846df6b4f347fa6bd27aaff83db8c144bea74'/>
<id>cb7846df6b4f347fa6bd27aaff83db8c144bea74</id>
<content type='text'>
[ Upstream commit b7a5b537c55c088d891ae554103d1b281abef781 ]

NUMA Balancing skips VMAs when the current task has not trapped a NUMA
fault within the VMA. If the VMA is skipped then mm-&gt;numa_scan_offset
advances and a task that is trapping faults within the VMA may never
fully update PTEs within the VMA.

Force tasks to update PTEs for partially scanned PTEs. The VMA will
be tagged for NUMA hints by some task but this removes some of the
benefit of tracking PID activity within a VMA. A follow-on patch
will mitigate this problem.

The test cases and machines evaluated did not trigger the corner case so
the performance results are neutral with only small changes within the
noise from normal test-to-test variance. However, the next patch makes
the corner case easier to trigger.

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Tested-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-6-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit b7a5b537c55c088d891ae554103d1b281abef781 ]

NUMA Balancing skips VMAs when the current task has not trapped a NUMA
fault within the VMA. If the VMA is skipped then mm-&gt;numa_scan_offset
advances and a task that is trapping faults within the VMA may never
fully update PTEs within the VMA.

Force tasks to update PTEs for partially scanned PTEs. The VMA will
be tagged for NUMA hints by some task but this removes some of the
benefit of tracking PID activity within a VMA. A follow-on patch
will mitigate this problem.

The test cases and machines evaluated did not trigger the corner case so
the performance results are neutral with only small changes within the
noise from normal test-to-test variance. However, the next patch makes
the corner case easier to trigger.

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Tested-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-6-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched/numa: Move up the access pid reset logic</title>
<updated>2024-10-04T14:29:21+00:00</updated>
<author>
<name>Raghavendra K T</name>
<email>raghavendra.kt@amd.com</email>
</author>
<published>2023-10-10T08:31:41+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=7f01977665d700924f24d9113d3fe99a96d0f47b'/>
<id>7f01977665d700924f24d9113d3fe99a96d0f47b</id>
<content type='text'>
[ Upstream commit 2e2675db1906ac04809f5399bf1f5e30d56a6f3e ]

Recent NUMA hinting faulting activity is reset approximately every
VMA_PID_RESET_PERIOD milliseconds. However, if the current task has not
accessed a VMA then the reset check is missed and the reset is potentially
deferred forever. Check if the PID activity information should be reset
before checking if the current task recently trapped a NUMA hinting fault.

[ mgorman@techsingularity.net: Rewrite changelog ]

Suggested-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-5-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit 2e2675db1906ac04809f5399bf1f5e30d56a6f3e ]

Recent NUMA hinting faulting activity is reset approximately every
VMA_PID_RESET_PERIOD milliseconds. However, if the current task has not
accessed a VMA then the reset check is missed and the reset is potentially
deferred forever. Check if the PID activity information should be reset
before checking if the current task recently trapped a NUMA hinting fault.

[ mgorman@techsingularity.net: Rewrite changelog ]

Suggested-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Raghavendra K T &lt;raghavendra.kt@amd.com&gt;
Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-5-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched/numa: Trace decisions related to skipping VMAs</title>
<updated>2024-10-04T14:29:21+00:00</updated>
<author>
<name>Mel Gorman</name>
<email>mgorman@techsingularity.net</email>
</author>
<published>2023-10-10T08:31:40+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=6654e54ae7e7cb2ceb3da85e72ebb7487996a9d9'/>
<id>6654e54ae7e7cb2ceb3da85e72ebb7487996a9d9</id>
<content type='text'>
[ Upstream commit ed2da8b725b932b1e2b2f4835bb664d47ed03031 ]

NUMA balancing skips or scans VMAs for a variety of reasons. In preparation
for completing scans of VMAs regardless of PID access, trace the reasons
why a VMA was skipped. In a later patch, the tracing will be used to track
if a VMA was forcibly scanned.

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-4-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit ed2da8b725b932b1e2b2f4835bb664d47ed03031 ]

NUMA balancing skips or scans VMAs for a variety of reasons. In preparation
for completing scans of VMAs regardless of PID access, trace the reasons
why a VMA was skipped. In a later patch, the tracing will be used to track
if a VMA was forcibly scanned.

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-4-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched/numa: Rename vma_numab_state::access_pids[] =&gt; ::pids_active[], ::next_pid_reset =&gt; ::pids_active_reset</title>
<updated>2024-10-04T14:29:21+00:00</updated>
<author>
<name>Mel Gorman</name>
<email>mgorman@techsingularity.net</email>
</author>
<published>2023-10-10T08:31:39+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=707e9a6c880f82d17a684278b8842b08f885c203'/>
<id>707e9a6c880f82d17a684278b8842b08f885c203</id>
<content type='text'>
[ Upstream commit f3a6c97940fbd25d6c84c2d5642338fc99a9b35b ]

The access_pids[] field name is somewhat ambiguous as no PIDs are accessed.
Similarly, it's not clear that next_pid_reset is related to access_pids[].
Rename the fields to more accurately reflect their purpose.

[ mingo: Rename in the comments too. ]

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-3-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit f3a6c97940fbd25d6c84c2d5642338fc99a9b35b ]

The access_pids[] field name is somewhat ambiguous as no PIDs are accessed.
Similarly, it's not clear that next_pid_reset is related to access_pids[].
Rename the fields to more accurately reflect their purpose.

[ mingo: Rename in the comments too. ]

Signed-off-by: Mel Gorman &lt;mgorman@techsingularity.net&gt;
Signed-off-by: Ingo Molnar &lt;mingo@kernel.org&gt;
Link: https://lore.kernel.org/r/20231010083143.19593-3-mgorman@techsingularity.net
Stable-dep-of: f22cde4371f3 ("sched/numa: Fix the vma scan starving issue")
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>sched/fair: Make SCHED_IDLE entity be preempted in strict hierarchy</title>
<updated>2024-10-04T14:29:14+00:00</updated>
<author>
<name>Tianchen Ding</name>
<email>dtcccc@linux.alibaba.com</email>
</author>
<published>2024-06-26T02:35:05+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=5a4f8de92dd7ddaa7ce33aa804cbad254b844b8f'/>
<id>5a4f8de92dd7ddaa7ce33aa804cbad254b844b8f</id>
<content type='text'>
[ Upstream commit faa42d29419def58d3c3e5b14ad4037f0af3b496 ]

Consider the following cgroup:

                       root
                        |
             ------------------------
             |                      |
       normal_cgroup            idle_cgroup
             |                      |
   SCHED_IDLE task_A           SCHED_NORMAL task_B

According to the cgroup hierarchy, A should preempt B. But current
check_preempt_wakeup_fair() treats cgroup se and task separately, so B
will preempt A unexpectedly.
Unify the wakeup logic by {c,p}se_is_idle only. This makes SCHED_IDLE of
a task a relative policy that is effective only within its own cgroup,
similar to the behavior of NICE.

Also fix se_is_idle() definition when !CONFIG_FAIR_GROUP_SCHED.

Fixes: 304000390f88 ("sched: Cgroup SCHED_IDLE support")
Signed-off-by: Tianchen Ding &lt;dtcccc@linux.alibaba.com&gt;
Signed-off-by: Peter Zijlstra (Intel) &lt;peterz@infradead.org&gt;
Reviewed-by: Josh Don &lt;joshdon@google.com&gt;
Reviewed-by: Vincent Guittot &lt;vincent.guittot@linaro.org&gt;
Link: https://lkml.kernel.org/r/20240626023505.1332596-1-dtcccc@linux.alibaba.com
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
[ Upstream commit faa42d29419def58d3c3e5b14ad4037f0af3b496 ]

Consider the following cgroup:

                       root
                        |
             ------------------------
             |                      |
       normal_cgroup            idle_cgroup
             |                      |
   SCHED_IDLE task_A           SCHED_NORMAL task_B

According to the cgroup hierarchy, A should preempt B. But current
check_preempt_wakeup_fair() treats cgroup se and task separately, so B
will preempt A unexpectedly.
Unify the wakeup logic by {c,p}se_is_idle only. This makes SCHED_IDLE of
a task a relative policy that is effective only within its own cgroup,
similar to the behavior of NICE.

Also fix se_is_idle() definition when !CONFIG_FAIR_GROUP_SCHED.

Fixes: 304000390f88 ("sched: Cgroup SCHED_IDLE support")
Signed-off-by: Tianchen Ding &lt;dtcccc@linux.alibaba.com&gt;
Signed-off-by: Peter Zijlstra (Intel) &lt;peterz@infradead.org&gt;
Reviewed-by: Josh Don &lt;joshdon@google.com&gt;
Reviewed-by: Vincent Guittot &lt;vincent.guittot@linaro.org&gt;
Link: https://lkml.kernel.org/r/20240626023505.1332596-1-dtcccc@linux.alibaba.com
Signed-off-by: Sasha Levin &lt;sashal@kernel.org&gt;
</pre>
</div>
</content>
</entry>
<entry>
<title>membarrier: riscv: Add full memory barrier in switch_mm()</title>
<updated>2024-09-12T09:11:45+00:00</updated>
<author>
<name>Andrea Parri</name>
<email>parri.andrea@gmail.com</email>
</author>
<published>2024-01-31T14:49:33+00:00</published>
<link rel='alternate' type='text/html' href='https://git.tavy.me/linux-stable.git/commit/?id=a2977c0ca3e97dc4c1665f27117810902fdeb0a9'/>
<id>a2977c0ca3e97dc4c1665f27117810902fdeb0a9</id>
<content type='text'>
commit d6cfd1770f20392d7009ae1fdb04733794514fa9 upstream.

The membarrier system call requires a full memory barrier after storing
to rq-&gt;curr, before going back to user-space.  The barrier is only
needed when switching between processes: the barrier is implied by
mmdrop() when switching from kernel to userspace, and it's not needed
when switching from userspace to kernel.

Rely on the feature/mechanism ARCH_HAS_MEMBARRIER_CALLBACKS and on the
primitive membarrier_arch_switch_mm(), already adopted by the PowerPC
architecture, to insert the required barrier.

Fixes: fab957c11efe2f ("RISC-V: Atomic and Locking Code")
Signed-off-by: Andrea Parri &lt;parri.andrea@gmail.com&gt;
Reviewed-by: Mathieu Desnoyers &lt;mathieu.desnoyers@efficios.com&gt;
Link: https://lore.kernel.org/r/20240131144936.29190-2-parri.andrea@gmail.com
Signed-off-by: Palmer Dabbelt &lt;palmer@rivosinc.com&gt;
Signed-off-by: WangYuli &lt;wangyuli@uniontech.com&gt;
Signed-off-by: Greg Kroah-Hartman &lt;gregkh@linuxfoundation.org&gt;
</content>
<content type='xhtml'>
<div xmlns='http://www.w3.org/1999/xhtml'>
<pre>
commit d6cfd1770f20392d7009ae1fdb04733794514fa9 upstream.

The membarrier system call requires a full memory barrier after storing
to rq-&gt;curr, before going back to user-space.  The barrier is only
needed when switching between processes: the barrier is implied by
mmdrop() when switching from kernel to userspace, and it's not needed
when switching from userspace to kernel.

Rely on the feature/mechanism ARCH_HAS_MEMBARRIER_CALLBACKS and on the
primitive membarrier_arch_switch_mm(), already adopted by the PowerPC
architecture, to insert the required barrier.

Fixes: fab957c11efe2f ("RISC-V: Atomic and Locking Code")
Signed-off-by: Andrea Parri &lt;parri.andrea@gmail.com&gt;
Reviewed-by: Mathieu Desnoyers &lt;mathieu.desnoyers@efficios.com&gt;
Link: https://lore.kernel.org/r/20240131144936.29190-2-parri.andrea@gmail.com
Signed-off-by: Palmer Dabbelt &lt;palmer@rivosinc.com&gt;
Signed-off-by: WangYuli &lt;wangyuli@uniontech.com&gt;
Signed-off-by: Greg Kroah-Hartman &lt;gregkh@linuxfoundation.org&gt;
</pre>
</div>
</content>
</entry>
</feed>
