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authorDou Liyang <douly.fnst@cn.fujitsu.com>2018-09-09 01:58:38 +0800
committerGreg Kroah-Hartman <gregkh@linuxfoundation.org>2019-03-05 17:58:45 +0100
commit8cae7757e862b1b77fd55628b196419e0c4b722e (patch)
tree629605efe5a8003ac9b5ae77cdd58f5a17c96c45 /kernel
parent2948b8875df4793bb4614284b862d8217c0ad346 (diff)
irq/matrix: Spread managed interrupts on allocation
[ Upstream commit 76f99ae5b54d48430d1f0c5512a84da0ff9761e0 ] Linux spreads out the non managed interrupt across the possible target CPUs to avoid vector space exhaustion. Managed interrupts are treated differently, as for them the vectors are reserved (with guarantee) when the interrupt descriptors are initialized. When the interrupt is requested a real vector is assigned. The assignment logic uses the first CPU in the affinity mask for assignment. If the interrupt has more than one CPU in the affinity mask, which happens when a multi queue device has less queues than CPUs, then doing the same search as for non managed interrupts makes sense as it puts the interrupt on the least interrupt plagued CPU. For single CPU affine vectors that's obviously a NOOP. Restructre the matrix allocation code so it does the 'best CPU' search, add the sanity check for an empty affinity mask and adapt the call site in the x86 vector management code. [ tglx: Added the empty mask check to the core and improved change log ] Signed-off-by: Dou Liyang <douly.fnst@cn.fujitsu.com> Signed-off-by: Thomas Gleixner <tglx@linutronix.de> Cc: hpa@zytor.com Link: https://lkml.kernel.org/r/20180908175838.14450-2-dou_liyang@163.com Signed-off-by: Sasha Levin <sashal@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
Diffstat (limited to 'kernel')
-rw-r--r--kernel/irq/matrix.c17
1 files changed, 14 insertions, 3 deletions
diff --git a/kernel/irq/matrix.c b/kernel/irq/matrix.c
index 67768bbe736e..6e6d467f3dec 100644
--- a/kernel/irq/matrix.c
+++ b/kernel/irq/matrix.c
@@ -260,11 +260,21 @@ void irq_matrix_remove_managed(struct irq_matrix *m, const struct cpumask *msk)
* @m: Matrix pointer
* @cpu: On which CPU the interrupt should be allocated
*/
-int irq_matrix_alloc_managed(struct irq_matrix *m, unsigned int cpu)
+int irq_matrix_alloc_managed(struct irq_matrix *m, const struct cpumask *msk,
+ unsigned int *mapped_cpu)
{
- struct cpumap *cm = per_cpu_ptr(m->maps, cpu);
- unsigned int bit, end = m->alloc_end;
+ unsigned int bit, cpu, end = m->alloc_end;
+ struct cpumap *cm;
+
+ if (cpumask_empty(msk))
+ return -EINVAL;
+ cpu = matrix_find_best_cpu(m, msk);
+ if (cpu == UINT_MAX)
+ return -ENOSPC;
+
+ cm = per_cpu_ptr(m->maps, cpu);
+ end = m->alloc_end;
/* Get managed bit which are not allocated */
bitmap_andnot(m->scratch_map, cm->managed_map, cm->alloc_map, end);
bit = find_first_bit(m->scratch_map, end);
@@ -273,6 +283,7 @@ int irq_matrix_alloc_managed(struct irq_matrix *m, unsigned int cpu)
set_bit(bit, cm->alloc_map);
cm->allocated++;
m->total_allocated++;
+ *mapped_cpu = cpu;
trace_irq_matrix_alloc_managed(bit, cpu, m, cm);
return bit;
}