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Re: [PATCH v2] mm/vmalloc: terminate searching since one node found

Started byzijun_hu <zijun_hu@zoho.com>
First post2017-07-17 10:50 +0200
Last post2017-07-17 11:10 +0200
Articles 2 — 1 participant

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  Re: [PATCH v2] mm/vmalloc: terminate searching since one node found zijun_hu <zijun_hu@zoho.com> - 2017-07-17 10:50 +0200
    Re: [PATCH v2] mm/vmalloc: terminate searching since one node found zijun_hu <zijun_hu@zoho.com> - 2017-07-17 11:10 +0200

#1688769 — Re: [PATCH v2] mm/vmalloc: terminate searching since one node found

Fromzijun_hu <zijun_hu@zoho.com>
Date2017-07-17 10:50 +0200
SubjectRe: [PATCH v2] mm/vmalloc: terminate searching since one node found
Message-ID<u49T4-2FF-25@gated-at.bofh.it>
On 07/17/2017 04:07 PM, Zhaoyang Huang wrote:
> It is no need to find the very beginning of the area within
> alloc_vmap_area, which can be done by judging each node during the process
> 
> For current approach, the worst case is that the starting node which be found
> for searching the 'vmap_area_list' is close to the 'vstart', while the final
> available one is round to the tail(especially for the left branch).
> This commit have the list searching start at the first available node, which
> will save the time of walking the rb tree'(1)' and walking the list(2).
> 
>       vmap_area_root
>           /      \
>      tmp_next     U
>         /   (1)
>       tmp
>        /
>      ...
>       /
>     first(current approach)
> 
> vmap_area_list->...->first->...->tmp->tmp_next

the original code can ensure the following two points :
A, the result vamp_area has the lowest available address in the range [vstart, vend)
B, it can maintain the cached vamp_area node rightly which can speedup relative allocation
i suspect this patch maybe destroy the above two points 
>                             (2)
> 
> Signed-off-by: Zhaoyang Huang <zhaoyang.huang@spreadtrum.com>
> ---
>  mm/vmalloc.c | 7 +++++++
>  1 file changed, 7 insertions(+)
> 
> diff --git a/mm/vmalloc.c b/mm/vmalloc.c
> index 34a1c3e..f833e07 100644
> --- a/mm/vmalloc.c
> +++ b/mm/vmalloc.c
> @@ -459,9 +459,16 @@ static struct vmap_area *alloc_vmap_area(unsigned
> long size,
> 
>                 while (n) {
>                         struct vmap_area *tmp;
> +                       struct vmap_area *tmp_next;
>                         tmp = rb_entry(n, struct vmap_area, rb_node);
> +                       tmp_next = list_next_entry(tmp, list);
>                         if (tmp->va_end >= addr) {
>                                 first = tmp;
> +                               if (ALIGN(tmp->va_end, align) + size
> +                                               < tmp_next->va_start) {
> +                                       addr = ALIGN(tmp->va_end, align);
> +                                       goto found;
> +                               }
is the aim vamp_area the lowest available one if the goto occurs ?
it will bypass the latter cached vamp_area info  cached_hole_size update possibly if the goto occurs
>                                 if (tmp->va_start <= addr)
>                                         break;
>                                 n = n->rb_left;
> --
> 1.9.1
> 

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#1688787

Fromzijun_hu <zijun_hu@zoho.com>
Date2017-07-17 11:10 +0200
Message-ID<u4acr-32J-17@gated-at.bofh.it>
In reply to#1688769
On 07/17/2017 04:45 PM, zijun_hu wrote:
> On 07/17/2017 04:07 PM, Zhaoyang Huang wrote:
>> It is no need to find the very beginning of the area within
>> alloc_vmap_area, which can be done by judging each node during the process
>>
>> For current approach, the worst case is that the starting node which be found
>> for searching the 'vmap_area_list' is close to the 'vstart', while the final
>> available one is round to the tail(especially for the left branch).
>> This commit have the list searching start at the first available node, which
>> will save the time of walking the rb tree'(1)' and walking the list(2).
>>
>>       vmap_area_root
>>           /      \
>>      tmp_next     U
>>         /   (1)
>>       tmp
>>        /
>>      ...
>>       /
>>     first(current approach)
>>
>> vmap_area_list->...->first->...->tmp->tmp_next
> 
> the original code can ensure the following two points :
> A, the result vamp_area has the lowest available address in the range [vstart, vend)
> B, it can maintain the cached vamp_area node rightly which can speedup relative allocation
> i suspect this patch maybe destroy the above two points 
>>                             (2)
>>
>> Signed-off-by: Zhaoyang Huang <zhaoyang.huang@spreadtrum.com>
>> ---
>>  mm/vmalloc.c | 7 +++++++
>>  1 file changed, 7 insertions(+)
>>
>> diff --git a/mm/vmalloc.c b/mm/vmalloc.c
>> index 34a1c3e..f833e07 100644
>> --- a/mm/vmalloc.c
>> +++ b/mm/vmalloc.c
>> @@ -459,9 +459,16 @@ static struct vmap_area *alloc_vmap_area(unsigned
>> long size,
>>
>>                 while (n) {
>>                         struct vmap_area *tmp;
>> +                       struct vmap_area *tmp_next;
>>                         tmp = rb_entry(n, struct vmap_area, rb_node);
>> +                       tmp_next = list_next_entry(tmp, list);
>>                         if (tmp->va_end >= addr) {
>>                                 first = tmp;
>> +                               if (ALIGN(tmp->va_end, align) + size
>> +                                               < tmp_next->va_start) {
>> +                                       addr = ALIGN(tmp->va_end, align);
>> +                                       goto found;
>> +                               }
> is the aim vamp_area the lowest available one if the goto occurs ?
> it will bypass the latter cached vamp_area info  cached_hole_size update possibly if the goto occurs
  it think the aim area maybe don't locates the required range [vstart, vend) possibly.
>>                                 if (tmp->va_start <= addr)
>>                                         break;
>>                                 n = n->rb_left;
>> --
>> 1.9.1
>>
> 

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