From: Peter Zijlstra <peterz@infradead.org>
To: "Paul E. McKenney" <paulmck@linux.vnet.ibm.com>
Cc: Oleg Nesterov <oleg@redhat.com>, Mel Gorman <mgorman@suse.de>,
Rik van Riel <riel@redhat.com>,
Srikar Dronamraju <srikar@linux.vnet.ibm.com>,
Ingo Molnar <mingo@kernel.org>,
Andrea Arcangeli <aarcange@redhat.com>,
Johannes Weiner <hannes@cmpxchg.org>,
Linux-MM <linux-mm@kvack.org>,
LKML <linux-kernel@vger.kernel.org>,
Thomas Gleixner <tglx@linutronix.de>,
Steven Rostedt <rostedt@goodmis.org>
Subject: Re: [PATCH] hotplug: Optimize {get,put}_online_cpus()
Date: Thu, 26 Sep 2013 13:10:42 +0200 [thread overview]
Message-ID: <20130926111042.GS3081@twins.programming.kicks-ass.net> (raw)
In-Reply-To: <20130925212200.GA7959@linux.vnet.ibm.com>
On Wed, Sep 25, 2013 at 02:22:00PM -0700, Paul E. McKenney wrote:
> A couple of nits and some commentary, but if there are races, they are
> quite subtle. ;-)
*whee*..
I made one little change in the logic; I moved the waitcount increment
to before the __put_online_cpus() call, such that the writer will have
to wait for us to wake up before trying again -- not for us to actually
have acquired the read lock, for that we'd need to mess up
__get_online_cpus() a bit more.
Complete patch below.
---
Subject: hotplug: Optimize {get,put}_online_cpus()
From: Peter Zijlstra <peterz@infradead.org>
Date: Tue Sep 17 16:17:11 CEST 2013
The current implementation of get_online_cpus() is global of nature
and thus not suited for any kind of common usage.
Re-implement the current recursive r/w cpu hotplug lock such that the
read side locks are as light as possible.
The current cpu hotplug lock is entirely reader biased; but since
readers are expensive there aren't a lot of them about and writer
starvation isn't a particular problem.
However by making the reader side more usable there is a fair chance
it will get used more and thus the starvation issue becomes a real
possibility.
Therefore this new implementation is fair, alternating readers and
writers; this however requires per-task state to allow the reader
recursion.
Many comments are contributed by Paul McKenney, and many previous
attempts were shown to be inadequate by both Paul and Oleg; many
thanks to them for persisting to poke holes in my attempts.
Cc: Oleg Nesterov <oleg@redhat.com>
Cc: Paul McKenney <paulmck@linux.vnet.ibm.com>
Cc: Thomas Gleixner <tglx@linutronix.de>
Cc: Steven Rostedt <rostedt@goodmis.org>
Signed-off-by: Peter Zijlstra <peterz@infradead.org>
---
include/linux/cpu.h | 58 +++++++++++++
include/linux/sched.h | 3
kernel/cpu.c | 209 +++++++++++++++++++++++++++++++++++---------------
kernel/sched/core.c | 2
4 files changed, 208 insertions(+), 64 deletions(-)
--- a/include/linux/cpu.h
+++ b/include/linux/cpu.h
@@ -16,6 +16,7 @@
#include <linux/node.h>
#include <linux/compiler.h>
#include <linux/cpumask.h>
+#include <linux/percpu.h>
struct device;
@@ -173,10 +174,61 @@ extern struct bus_type cpu_subsys;
#ifdef CONFIG_HOTPLUG_CPU
/* Stop CPUs going up and down. */
+extern void cpu_hotplug_init_task(struct task_struct *p);
+
extern void cpu_hotplug_begin(void);
extern void cpu_hotplug_done(void);
-extern void get_online_cpus(void);
-extern void put_online_cpus(void);
+
+extern int __cpuhp_state;
+DECLARE_PER_CPU(unsigned int, __cpuhp_refcount);
+
+extern void __get_online_cpus(void);
+
+static inline void get_online_cpus(void)
+{
+ might_sleep();
+
+ /* Support reader recursion */
+ /* The value was >= 1 and remains so, reordering causes no harm. */
+ if (current->cpuhp_ref++)
+ return;
+
+ preempt_disable();
+ if (likely(!__cpuhp_state)) {
+ /* The barrier here is supplied by synchronize_sched(). */
+ __this_cpu_inc(__cpuhp_refcount);
+ } else {
+ __get_online_cpus(); /* Unconditional memory barrier. */
+ }
+ preempt_enable();
+ /*
+ * The barrier() from preempt_enable() prevents the compiler from
+ * bleeding the critical section out.
+ */
+}
+
+extern void __put_online_cpus(void);
+
+static inline void put_online_cpus(void)
+{
+ /* The value was >= 1 and remains so, reordering causes no harm. */
+ if (--current->cpuhp_ref)
+ return;
+
+ /*
+ * The barrier() in preempt_disable() prevents the compiler from
+ * bleeding the critical section out.
+ */
+ preempt_disable();
+ if (likely(!__cpuhp_state)) {
+ /* The barrier here is supplied by synchronize_sched(). */
+ __this_cpu_dec(__cpuhp_refcount);
+ } else {
+ __put_online_cpus(); /* Unconditional memory barrier. */
+ }
+ preempt_enable();
+}
+
extern void cpu_hotplug_disable(void);
extern void cpu_hotplug_enable(void);
#define hotcpu_notifier(fn, pri) cpu_notifier(fn, pri)
@@ -200,6 +252,8 @@ static inline void cpu_hotplug_driver_un
#else /* CONFIG_HOTPLUG_CPU */
+static inline void cpu_hotplug_init_task(struct task_struct *p) {}
+
static inline void cpu_hotplug_begin(void) {}
static inline void cpu_hotplug_done(void) {}
#define get_online_cpus() do { } while (0)
--- a/include/linux/sched.h
+++ b/include/linux/sched.h
@@ -1454,6 +1454,9 @@ struct task_struct {
unsigned int sequential_io;
unsigned int sequential_io_avg;
#endif
+#ifdef CONFIG_HOTPLUG_CPU
+ int cpuhp_ref;
+#endif
};
/* Future-safe accessor for struct task_struct's cpus_allowed. */
--- a/kernel/cpu.c
+++ b/kernel/cpu.c
@@ -49,88 +49,173 @@ static int cpu_hotplug_disabled;
#ifdef CONFIG_HOTPLUG_CPU
-static struct {
- struct task_struct *active_writer;
- struct mutex lock; /* Synchronizes accesses to refcount, */
- /*
- * Also blocks the new readers during
- * an ongoing cpu hotplug operation.
- */
- int refcount;
-} cpu_hotplug = {
- .active_writer = NULL,
- .lock = __MUTEX_INITIALIZER(cpu_hotplug.lock),
- .refcount = 0,
-};
+enum { readers_fast = 0, readers_slow, readers_block };
+
+int __cpuhp_state;
+EXPORT_SYMBOL_GPL(__cpuhp_state);
+
+DEFINE_PER_CPU(unsigned int, __cpuhp_refcount);
+EXPORT_PER_CPU_SYMBOL_GPL(__cpuhp_refcount);
+
+static DEFINE_PER_CPU(unsigned int, cpuhp_seq);
+static atomic_t cpuhp_waitcount;
+static DECLARE_WAIT_QUEUE_HEAD(cpuhp_readers);
+static DECLARE_WAIT_QUEUE_HEAD(cpuhp_writer);
+
+void cpu_hotplug_init_task(struct task_struct *p)
+{
+ p->cpuhp_ref = 0;
+}
+
+void __get_online_cpus(void)
+{
+again:
+ /* See __srcu_read_lock() */
+ __this_cpu_inc(__cpuhp_refcount);
+ smp_mb(); /* A matches B, E */
+ __this_cpu_inc(cpuhp_seq);
+
+ if (unlikely(__cpuhp_state == readers_block)) {
+ /*
+ * Make sure an outgoing writer sees the waitcount to ensure
+ * we make progress.
+ */
+ atomic_inc(&cpuhp_waitcount);
+ __put_online_cpus();
+
+ /*
+ * We either call schedule() in the wait, or we'll fall through
+ * and reschedule on the preempt_enable() in get_online_cpus().
+ */
+ preempt_enable_no_resched();
+ __wait_event(cpuhp_readers, __cpuhp_state != readers_block);
+ preempt_disable();
+
+ if (atomic_dec_and_test(&cpuhp_waitcount))
+ wake_up_all(&cpuhp_writer);
+
+ goto again;
+ }
+}
+EXPORT_SYMBOL_GPL(__get_online_cpus);
-void get_online_cpus(void)
+void __put_online_cpus(void)
{
- might_sleep();
- if (cpu_hotplug.active_writer == current)
- return;
- mutex_lock(&cpu_hotplug.lock);
- cpu_hotplug.refcount++;
- mutex_unlock(&cpu_hotplug.lock);
+ /* See __srcu_read_unlock() */
+ smp_mb(); /* C matches D */
+ /*
+ * In other words, if they see our decrement (presumably to aggregate
+ * zero, as that is the only time it matters) they will also see our
+ * critical section.
+ */
+ this_cpu_dec(__cpuhp_refcount);
+ /* Prod writer to recheck readers_active */
+ wake_up_all(&cpuhp_writer);
}
-EXPORT_SYMBOL_GPL(get_online_cpus);
+EXPORT_SYMBOL_GPL(__put_online_cpus);
+
+#define per_cpu_sum(var) \
+({ \
+ typeof(var) __sum = 0; \
+ int cpu; \
+ for_each_possible_cpu(cpu) \
+ __sum += per_cpu(var, cpu); \
+ __sum; \
+)}
-void put_online_cpus(void)
+/*
+ * See srcu_readers_active_idx_check() for a rather more detailed explanation.
+ */
+static bool cpuhp_readers_active_check(void)
{
- if (cpu_hotplug.active_writer == current)
- return;
- mutex_lock(&cpu_hotplug.lock);
+ unsigned int seq = per_cpu_sum(cpuhp_seq);
+
+ smp_mb(); /* B matches A */
+
+ /*
+ * In other words, if we see __get_online_cpus() cpuhp_seq increment,
+ * we are guaranteed to also see its __cpuhp_refcount increment.
+ */
- if (WARN_ON(!cpu_hotplug.refcount))
- cpu_hotplug.refcount++; /* try to fix things up */
+ if (per_cpu_sum(__cpuhp_refcount) != 0)
+ return false;
- if (!--cpu_hotplug.refcount && unlikely(cpu_hotplug.active_writer))
- wake_up_process(cpu_hotplug.active_writer);
- mutex_unlock(&cpu_hotplug.lock);
+ smp_mb(); /* D matches C */
+ /*
+ * On equality, we know that there could not be any "sneak path" pairs
+ * where we see a decrement but not the corresponding increment for a
+ * given reader. If we saw its decrement, the memory barriers guarantee
+ * that we now see its cpuhp_seq increment.
+ */
+
+ return per_cpu_sum(cpuhp_seq) == seq;
}
-EXPORT_SYMBOL_GPL(put_online_cpus);
/*
- * This ensures that the hotplug operation can begin only when the
- * refcount goes to zero.
- *
- * Note that during a cpu-hotplug operation, the new readers, if any,
- * will be blocked by the cpu_hotplug.lock
- *
- * Since cpu_hotplug_begin() is always called after invoking
- * cpu_maps_update_begin(), we can be sure that only one writer is active.
- *
- * Note that theoretically, there is a possibility of a livelock:
- * - Refcount goes to zero, last reader wakes up the sleeping
- * writer.
- * - Last reader unlocks the cpu_hotplug.lock.
- * - A new reader arrives at this moment, bumps up the refcount.
- * - The writer acquires the cpu_hotplug.lock finds the refcount
- * non zero and goes to sleep again.
- *
- * However, this is very difficult to achieve in practice since
- * get_online_cpus() not an api which is called all that often.
- *
+ * This will notify new readers to block and wait for all active readers to
+ * complete.
*/
void cpu_hotplug_begin(void)
{
- cpu_hotplug.active_writer = current;
+ /*
+ * Since cpu_hotplug_begin() is always called after invoking
+ * cpu_maps_update_begin(), we can be sure that only one writer is
+ * active.
+ */
+ lockdep_assert_held(&cpu_add_remove_lock);
- for (;;) {
- mutex_lock(&cpu_hotplug.lock);
- if (likely(!cpu_hotplug.refcount))
- break;
- __set_current_state(TASK_UNINTERRUPTIBLE);
- mutex_unlock(&cpu_hotplug.lock);
- schedule();
- }
+ /* Allow reader-in-writer recursion. */
+ current->cpuhp_ref++;
+
+ /* Notify readers to take the slow path. */
+ __cpuhp_state = readers_slow;
+
+ /* See percpu_down_write(); guarantees all readers take the slow path */
+ synchronize_sched();
+
+ /*
+ * Notify new readers to block; up until now, and thus throughout the
+ * longish synchronize_sched() above, new readers could still come in.
+ */
+ __cpuhp_state = readers_block;
+
+ smp_mb(); /* E matches A */
+
+ /*
+ * If they don't see our writer of readers_block to __cpuhp_state,
+ * then we are guaranteed to see their __cpuhp_refcount increment, and
+ * therefore will wait for them.
+ */
+
+ /* Wait for all now active readers to complete. */
+ wait_event(cpuhp_writer, cpuhp_readers_active_check());
}
void cpu_hotplug_done(void)
{
- cpu_hotplug.active_writer = NULL;
- mutex_unlock(&cpu_hotplug.lock);
+ /* Signal the writer is done, no fast path yet. */
+ __cpuhp_state = readers_slow;
+ wake_up_all(&cpuhp_readers);
+
+ /*
+ * The wait_event()/wake_up_all() prevents the race where the readers
+ * are delayed between fetching __cpuhp_state and blocking.
+ */
+
+ /* See percpu_up_write(); readers will no longer attempt to block. */
+ synchronize_sched();
+
+ /* Let 'em rip */
+ __cpuhp_state = readers_fast;
+ current->cpuhp_ref--;
+
+ /*
+ * Wait for any pending readers to be running. This ensures readers
+ * after writer and avoids writers starving readers.
+ */
+ wait_event(cpuhp_writer, !atomic_read(&cpuhp_waitcount));
}
/*
--- a/kernel/sched/core.c
+++ b/kernel/sched/core.c
@@ -1736,6 +1736,8 @@ static void __sched_fork(unsigned long c
INIT_LIST_HEAD(&p->numa_entry);
p->numa_group = NULL;
#endif /* CONFIG_NUMA_BALANCING */
+
+ cpu_hotplug_init_task(p);
}
#ifdef CONFIG_NUMA_BALANCING
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next prev parent reply other threads:[~2013-09-26 11:11 UTC|newest]
Thread overview: 182+ messages / expand[flat|nested] mbox.gz Atom feed top
2013-09-10 9:31 [PATCH 0/50] Basic scheduler support for automatic NUMA balancing V7 Mel Gorman
2013-09-10 9:31 ` [PATCH 01/50] sched: monolithic code dump of what is being pushed upstream Mel Gorman
2013-09-11 0:58 ` Joonsoo Kim
2013-09-11 3:11 ` Hillf Danton
2013-09-13 8:11 ` Mel Gorman
2013-09-10 9:31 ` [PATCH 02/50] mm: numa: Document automatic NUMA balancing sysctls Mel Gorman
2013-09-10 9:31 ` [PATCH 03/50] sched, numa: Comment fixlets Mel Gorman
2013-09-10 9:31 ` [PATCH 04/50] mm: numa: Do not account for a hinting fault if we raced Mel Gorman
2013-09-10 9:31 ` [PATCH 05/50] mm: Wait for THP migrations to complete during NUMA hinting faults Mel Gorman
2013-09-10 9:31 ` [PATCH 06/50] mm: Prevent parallel splits during THP migration Mel Gorman
2013-09-10 9:31 ` [PATCH 07/50] mm: Account for a THP NUMA hinting update as one PTE update Mel Gorman
2013-09-16 12:36 ` Peter Zijlstra
2013-09-16 13:39 ` Rik van Riel
2013-09-16 14:54 ` Peter Zijlstra
2013-09-16 16:11 ` Mel Gorman
2013-09-16 16:37 ` Peter Zijlstra
2013-09-10 9:31 ` [PATCH 08/50] mm: numa: Sanitize task_numa_fault() callsites Mel Gorman
2013-09-10 9:31 ` [PATCH 09/50] mm: numa: Do not migrate or account for hinting faults on the zero page Mel Gorman
2013-09-10 9:31 ` [PATCH 10/50] sched: numa: Mitigate chance that same task always updates PTEs Mel Gorman
2013-09-10 9:31 ` [PATCH 11/50] sched: numa: Continue PTE scanning even if migrate rate limited Mel Gorman
2013-09-10 9:31 ` [PATCH 12/50] Revert "mm: sched: numa: Delay PTE scanning until a task is scheduled on a new node" Mel Gorman
2013-09-10 9:31 ` [PATCH 13/50] sched: numa: Initialise numa_next_scan properly Mel Gorman
2013-09-10 9:31 ` [PATCH 14/50] sched: Set the scan rate proportional to the memory usage of the task being scanned Mel Gorman
2013-09-16 15:18 ` Peter Zijlstra
2013-09-16 15:40 ` Mel Gorman
2013-09-10 9:31 ` [PATCH 15/50] sched: numa: Correct adjustment of numa_scan_period Mel Gorman
2013-09-10 9:31 ` [PATCH 16/50] mm: Only flush TLBs if a transhuge PMD is modified for NUMA pte scanning Mel Gorman
2013-09-10 9:31 ` [PATCH 17/50] mm: Do not flush TLB during protection change if !pte_present && !migration_entry Mel Gorman
2013-09-16 16:35 ` Peter Zijlstra
2013-09-17 17:00 ` Mel Gorman
2013-09-10 9:31 ` [PATCH 18/50] sched: numa: Slow scan rate if no NUMA hinting faults are being recorded Mel Gorman
2013-09-10 9:31 ` [PATCH 19/50] sched: Track NUMA hinting faults on per-node basis Mel Gorman
2013-09-10 9:32 ` [PATCH 20/50] sched: Select a preferred node with the most numa hinting faults Mel Gorman
2013-09-10 9:32 ` [PATCH 21/50] sched: Update NUMA hinting faults once per scan Mel Gorman
2013-09-10 9:32 ` [PATCH 22/50] sched: Favour moving tasks towards the preferred node Mel Gorman
2013-09-10 9:32 ` [PATCH 23/50] sched: Resist moving tasks towards nodes with fewer hinting faults Mel Gorman
2013-09-10 9:32 ` [PATCH 24/50] sched: Reschedule task on preferred NUMA node once selected Mel Gorman
2013-09-10 9:32 ` [PATCH 25/50] sched: Add infrastructure for split shared/private accounting of NUMA hinting faults Mel Gorman
2013-09-10 9:32 ` [PATCH 26/50] sched: Check current->mm before allocating NUMA faults Mel Gorman
2013-09-10 9:32 ` [PATCH 27/50] mm: numa: Scan pages with elevated page_mapcount Mel Gorman
2013-09-12 2:10 ` Hillf Danton
2013-09-13 8:11 ` Mel Gorman
2013-09-10 9:32 ` [PATCH 28/50] sched: Remove check that skips small VMAs Mel Gorman
2013-09-10 9:32 ` [PATCH 29/50] sched: Set preferred NUMA node based on number of private faults Mel Gorman
2013-09-10 9:32 ` [PATCH 30/50] sched: Do not migrate memory immediately after switching node Mel Gorman
2013-09-10 9:32 ` [PATCH 31/50] sched: Avoid overloading CPUs on a preferred NUMA node Mel Gorman
2013-09-10 9:32 ` [PATCH 32/50] sched: Retry migration of tasks to CPU on a preferred node Mel Gorman
2013-09-10 9:32 ` [PATCH 33/50] sched: numa: increment numa_migrate_seq when task runs in correct location Mel Gorman
2013-09-10 9:32 ` [PATCH 34/50] sched: numa: Do not trap hinting faults for shared libraries Mel Gorman
2013-09-17 2:02 ` 答复: " 张天飞
2013-09-17 8:05 ` ????: " Mel Gorman
2013-09-17 8:22 ` Figo.zhang
2013-09-10 9:32 ` [PATCH 35/50] mm: numa: Only trap pmd hinting faults if we would otherwise trap PTE faults Mel Gorman
2013-09-10 9:32 ` [PATCH 36/50] stop_machine: Introduce stop_two_cpus() Mel Gorman
2013-09-10 9:32 ` [PATCH 37/50] sched: Introduce migrate_swap() Mel Gorman
2013-09-17 14:30 ` [PATCH] hotplug: Optimize {get,put}_online_cpus() Peter Zijlstra
2013-09-17 16:20 ` Mel Gorman
2013-09-17 16:45 ` Peter Zijlstra
2013-09-18 15:49 ` Peter Zijlstra
2013-09-19 14:32 ` Peter Zijlstra
2013-09-21 16:34 ` Oleg Nesterov
2013-09-21 19:13 ` Oleg Nesterov
2013-09-23 9:29 ` Peter Zijlstra
2013-09-23 17:32 ` Oleg Nesterov
2013-09-24 20:24 ` Peter Zijlstra
2013-09-24 21:02 ` Peter Zijlstra
2013-09-25 15:55 ` Oleg Nesterov
2013-09-25 16:59 ` Paul E. McKenney
2013-09-25 17:43 ` Peter Zijlstra
2013-09-25 17:50 ` Oleg Nesterov
2013-09-25 18:40 ` Peter Zijlstra
2013-09-25 21:22 ` Paul E. McKenney
2013-09-26 11:10 ` Peter Zijlstra [this message]
[not found] ` <20130926155321.GA4342@redhat.com>
2013-09-26 16:13 ` Peter Zijlstra
2013-09-26 16:14 ` Oleg Nesterov
2013-09-26 16:40 ` Peter Zijlstra
2013-09-26 16:58 ` Oleg Nesterov
2013-09-26 17:50 ` Peter Zijlstra
2013-09-27 18:15 ` Oleg Nesterov
2013-09-27 20:41 ` Peter Zijlstra
2013-09-28 12:48 ` Oleg Nesterov
2013-09-28 14:47 ` Peter Zijlstra
2013-09-28 16:31 ` Oleg Nesterov
2013-09-30 20:11 ` Rafael J. Wysocki
2013-10-01 17:11 ` Srivatsa S. Bhat
2013-10-01 17:36 ` Peter Zijlstra
2013-10-01 17:45 ` Oleg Nesterov
2013-10-01 17:56 ` Peter Zijlstra
2013-10-01 18:07 ` Oleg Nesterov
2013-10-01 19:05 ` Paul E. McKenney
2013-10-02 12:16 ` Oleg Nesterov
2013-10-02 9:08 ` Peter Zijlstra
2013-10-02 12:13 ` Oleg Nesterov
2013-10-02 12:25 ` Peter Zijlstra
2013-10-02 13:31 ` Peter Zijlstra
2013-10-02 14:00 ` Oleg Nesterov
2013-10-02 15:17 ` Peter Zijlstra
2013-10-02 16:31 ` Oleg Nesterov
2013-10-02 17:52 ` Paul E. McKenney
2013-10-01 19:03 ` Srivatsa S. Bhat
2013-10-01 18:14 ` Srivatsa S. Bhat
2013-10-01 18:56 ` Srivatsa S. Bhat
2013-10-02 10:14 ` Srivatsa S. Bhat
2013-09-28 20:46 ` Paul E. McKenney
2013-10-01 3:56 ` Paul E. McKenney
2013-10-01 14:14 ` Oleg Nesterov
2013-10-01 14:45 ` Paul E. McKenney
2013-10-01 14:48 ` Peter Zijlstra
2013-10-01 15:24 ` Paul E. McKenney
2013-10-01 15:34 ` Oleg Nesterov
2013-10-01 15:00 ` Oleg Nesterov
2013-09-29 13:56 ` Oleg Nesterov
2013-10-01 15:38 ` Paul E. McKenney
2013-10-01 15:40 ` Oleg Nesterov
2013-10-01 20:40 ` Paul E. McKenney
2013-09-23 14:50 ` Steven Rostedt
2013-09-23 14:54 ` Peter Zijlstra
2013-09-23 15:13 ` Steven Rostedt
2013-09-23 15:22 ` Peter Zijlstra
2013-09-23 15:59 ` Steven Rostedt
2013-09-23 16:02 ` Peter Zijlstra
2013-09-23 15:50 ` Paul E. McKenney
2013-09-23 16:01 ` Peter Zijlstra
2013-09-23 17:04 ` Paul E. McKenney
2013-09-23 17:30 ` Peter Zijlstra
2013-09-23 17:50 ` Oleg Nesterov
2013-09-24 12:38 ` Peter Zijlstra
2013-09-24 14:42 ` Paul E. McKenney
2013-09-24 16:09 ` Peter Zijlstra
2013-09-24 16:31 ` Oleg Nesterov
2013-09-24 21:09 ` Paul E. McKenney
2013-09-24 16:03 ` Oleg Nesterov
2013-09-24 16:43 ` Steven Rostedt
2013-09-24 17:06 ` Oleg Nesterov
2013-09-24 17:47 ` Paul E. McKenney
2013-09-24 18:00 ` Oleg Nesterov
2013-09-24 20:35 ` Peter Zijlstra
2013-09-25 15:16 ` Oleg Nesterov
2013-09-25 15:35 ` Peter Zijlstra
2013-09-25 16:33 ` Oleg Nesterov
2013-09-24 16:49 ` Paul E. McKenney
2013-09-24 16:54 ` Peter Zijlstra
2013-09-24 17:02 ` Oleg Nesterov
2013-09-24 16:51 ` Peter Zijlstra
2013-09-24 16:39 ` Steven Rostedt
2013-09-29 18:36 ` [RFC] introduce synchronize_sched_{enter,exit}() Oleg Nesterov
2013-09-29 20:01 ` Paul E. McKenney
2013-09-30 12:42 ` Oleg Nesterov
2013-09-29 21:34 ` Steven Rostedt
2013-09-30 13:03 ` Oleg Nesterov
2013-09-30 12:59 ` Peter Zijlstra
2013-09-30 14:24 ` Peter Zijlstra
2013-09-30 15:06 ` Peter Zijlstra
2013-09-30 16:58 ` Oleg Nesterov
2013-09-30 16:38 ` Oleg Nesterov
2013-10-02 14:41 ` Peter Zijlstra
2013-10-03 7:04 ` Ingo Molnar
2013-10-03 7:43 ` Peter Zijlstra
2013-09-17 14:32 ` [PATCH 37/50] sched: Introduce migrate_swap() Peter Zijlstra
2013-09-10 9:32 ` [PATCH 38/50] sched: numa: Use a system-wide search to find swap/migration candidates Mel Gorman
2013-09-10 9:32 ` [PATCH 39/50] sched: numa: Favor placing a task on the preferred node Mel Gorman
2013-09-10 9:32 ` [PATCH 40/50] mm: numa: Change page last {nid,pid} into {cpu,pid} Mel Gorman
2013-09-10 9:32 ` [PATCH 41/50] sched: numa: Use {cpu, pid} to create task groups for shared faults Mel Gorman
2013-09-12 12:42 ` Hillf Danton
2013-09-12 14:40 ` Mel Gorman
2013-09-12 12:45 ` Hillf Danton
2013-09-10 9:32 ` [PATCH 42/50] sched: numa: Report a NUMA task group ID Mel Gorman
2013-09-10 9:32 ` [PATCH 43/50] mm: numa: Do not group on RO pages Mel Gorman
2013-09-10 9:32 ` [PATCH 44/50] sched: numa: stay on the same node if CLONE_VM Mel Gorman
2013-09-10 9:32 ` [PATCH 45/50] sched: numa: use group fault statistics in numa placement Mel Gorman
2013-09-10 9:32 ` [PATCH 46/50] sched: numa: Prevent parallel updates to group stats during placement Mel Gorman
2013-09-20 9:55 ` Peter Zijlstra
2013-09-20 12:31 ` Mel Gorman
2013-09-20 12:36 ` Peter Zijlstra
2013-09-20 13:31 ` Mel Gorman
2013-09-10 9:32 ` [PATCH 47/50] sched: numa: add debugging Mel Gorman
2013-09-10 9:32 ` [PATCH 48/50] sched: numa: Decide whether to favour task or group weights based on swap candidate relationships Mel Gorman
2013-09-10 9:32 ` [PATCH 49/50] sched: numa: fix task or group comparison Mel Gorman
2013-09-10 9:32 ` [PATCH 50/50] sched: numa: Avoid migrating tasks that are placed on their preferred node Mel Gorman
2013-09-11 2:03 ` [PATCH 0/50] Basic scheduler support for automatic NUMA balancing V7 Rik van Riel
2013-09-14 2:57 ` Bob Liu
2013-09-30 10:30 ` Mel Gorman
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