On Mon, Oct 30, 2006 at 12:47:59PM -0800, Paul Menage wrote:
> On 10/30/06, Paul Jackson <[email protected]> wrote:
> >
> >In other words you are recommending delivering a system that internally
> >tracks separate hierarchies for each resource control entity, but where
> >the user can conveniently overlap some of these hierarchies and deal
> >with them as a single hierarchy.
>
> More or less. More concretely:
>
> - there is a single hierarchy of process containers
> - each process is a member of exactly one process container
>
> - for each resource controller, there's a hierarchy of resource "nodes"
> - each process container is associated with exactly one resource node
> of each type
>
> - by default, the process container hierarchy and the resource node
> hierarchies are isomorphic, but that can be controlled by userspace.
For the case where resource node hierarchy is different from process
container hierarchy, I am trying to make sense of "why do we need to
maintain two hierarchies" - one the actual hierarchy used for resource
control purpose, another the process container hierarchy. What purpose
does maintaining the process container hierarchy (in addition to the
resource controller hierarchy) solve?
I am thinking we can avoid maintaining these two hierarchies, by
something on these lines:
mkdir /dev/cpu
mount -t container -ocpu container /dev/cpu
-> Represents a hierarchy for cpu control purpose.
tsk->cpurc = represent the node in the cpu
controller hierarchy. Also maintains
resource allocation information for
this node.
tsk->cpurc->parent = parent node.
mkdir /dev/mem
mount -t container -omem container /dev/mem
-> Represents a hierarchy for mem control purpose.
tsk->memrc = represent the node in the mem
controller hierarchy. Also maintains
resource allocation information for
this node.
tsk->memrc->parent = parent node.
mkdir /dev/containers
mount -t container -ocontainer container /dev/container
-> Represents a (mostly flat?) hierarchy for the real
container (virtualization) purpose.
tsk->container = represent the node in the container
hierarchy. Also maintains relavant
container information for this node.
tsk->container->parent = parent node.
I suspect this may simplify the "container" filesystem, since it doesnt
have to track multiple hierarchies at the same time, and improve lock
contention too (modifying the cpu controller hierarchy can take a different
lock than the mem controller hierarchy).
--
Regards,
vatsa
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