show_free_areas() allows to filter out node specific data which is
irrelevant to the allocation request. But hugetlb_show_meminfo() still
shows hugetlb on all nodes, which is redundant and unnecessary.
Use show_mem_node_skip() to skip irrelevant nodes. And replace
hugetlb_show_meminfo() with hugetlb_show_meminfo_node(nid).
before-and-after sample output of OOM:
before:
```
[ 214.362453] Node 1 active_anon:148kB inactive_anon:4050920kB active_file:112kB inactive_file:100kB
[ 214.375429] Node 1 Normal free:45100kB boost:0kB min:45576kB low:56968kB high:68360kB reserved_hig
[ 214.388334] lowmem_reserve[]: 0 0 0 0 0
[ 214.390251] Node 1 Normal: 423*4kB (UE) 320*8kB (UME) 187*16kB (UE) 117*32kB (UE) 57*64kB (UME) 20
[ 214.397626] Node 0 hugepages_total=0 hugepages_free=0 hugepages_surp=0 hugepages_size=2048kB
[ 214.401518] Node 1 hugepages_total=0 hugepages_free=0 hugepages_surp=0 hugepages_size=2048kB
```
after:
```
[ 145.069705] Node 1 active_anon:128kB inactive_anon:4049412kB active_file:56kB inactive_file:84kB u
[ 145.110319] Node 1 Normal free:45424kB boost:0kB min:45576kB low:56968kB high:68360kB reserved_hig
[ 145.152315] lowmem_reserve[]: 0 0 0 0 0
[ 145.155244] Node 1 Normal: 470*4kB (UME) 373*8kB (UME) 247*16kB (UME) 168*32kB (UE) 86*64kB (UME)
[ 145.164119] Node 1 hugepages_total=0 hugepages_free=0 hugepages_surp=0 hugepages_size=2048kB
```
Link: https://lkml.kernel.org/r/20220706034655.1834-1-ligang.bdlg@bytedance.com
Signed-off-by: Gang Li <ligang.bdlg@bytedance.com>
Reviewed-by: Mike Kravetz <mike.kravetz@oracle.com>
Cc: Muchun Song <songmuchun@bytedance.com>
Signed-off-by: Andrew Morton <akpm@linux-foundation.org>
struct page *ref_page, zap_flags_t zap_flags);
void hugetlb_report_meminfo(struct seq_file *);
int hugetlb_report_node_meminfo(char *buf, int len, int nid);
-void hugetlb_show_meminfo(void);
+void hugetlb_show_meminfo_node(int nid);
unsigned long hugetlb_total_pages(void);
vm_fault_t hugetlb_fault(struct mm_struct *mm, struct vm_area_struct *vma,
unsigned long address, unsigned int flags);
return 0;
}
-static inline void hugetlb_show_meminfo(void)
+static inline void hugetlb_show_meminfo_node(int nid)
{
}
nid, h->surplus_huge_pages_node[nid]);
}
-void hugetlb_show_meminfo(void)
+void hugetlb_show_meminfo_node(int nid)
{
struct hstate *h;
- int nid;
if (!hugepages_supported())
return;
- for_each_node_state(nid, N_MEMORY)
- for_each_hstate(h)
- pr_info("Node %d hugepages_total=%u hugepages_free=%u hugepages_surp=%u hugepages_size=%lukB\n",
- nid,
- h->nr_huge_pages_node[nid],
- h->free_huge_pages_node[nid],
- h->surplus_huge_pages_node[nid],
- huge_page_size(h) / SZ_1K);
+ for_each_hstate(h)
+ printk("Node %d hugepages_total=%u hugepages_free=%u hugepages_surp=%u hugepages_size=%lukB\n",
+ nid,
+ h->nr_huge_pages_node[nid],
+ h->free_huge_pages_node[nid],
+ h->surplus_huge_pages_node[nid],
+ huge_page_size(h) / SZ_1K);
}
void hugetlb_report_usage(struct seq_file *m, struct mm_struct *mm)
void show_free_areas(unsigned int filter, nodemask_t *nodemask)
{
unsigned long free_pcp = 0;
- int cpu;
+ int cpu, nid;
struct zone *zone;
pg_data_t *pgdat;
printk(KERN_CONT "= %lukB\n", K(total));
}
- hugetlb_show_meminfo();
+ for_each_online_node(nid) {
+ if (show_mem_node_skip(filter, nid, nodemask))
+ continue;
+ hugetlb_show_meminfo_node(nid);
+ }
printk("%ld total pagecache pages\n", global_node_page_state(NR_FILE_PAGES));