Hi,

Thanks for your reply.
It's possible openflow messages across several switches until achieve the
controller?
Such as host -> sw1 -> sw2 -> sw3 -> c0 or in a reverse way in linear
topology?
Consider that the host packet need to achieve a server connected to sw3 and
there are only
one controller linked to one switch.

--
scolf

On Thu, Oct 20, 2011 at 06:32, Kyriakos Zarifis <kyr.zari...@gmail.com>wrote:

> Hi,
>
> pyswitch itself is really not aware of any topology. It only stores state
> that is relevant to switches separately (i.e. it stores a mapping of mac
> addresses to local ports for a switch).
>
> Now, whether a control packet (like a packet_in) will reach the controller
> if it's not directly physically connected to it is another issue, and is
> irrelevant to what NOX application (eg pyswitch) is running. Switches are
> connected to the controller through a separate control channel, so as long
> as this channel has been established (which is when the switch first
> connects to NOX), then the packet_ins will find their way to NOX through
> that (irrespective of dataplane connectivity, which is established by NOX
> applications)
>
> (another thing to consider is whether the switch-controller connection is
> in-bound/out-of-bound)
>
> Does this make sense?
>
> On Wed, Oct 19, 2011 at 5:20 PM, scolfield <kscolfi...@gmail.com> wrote:
>
>> Hi,
>>
>> The pyswitch example can learn topology of networks? Such as a corporation
>> architecture when
>> there are hierarchical switches interconnected one to another creating
>> several "layers" of switches,
>> at this case, the one openflow controller connected to two distinct
>> switches, can learn which ports
>> to send a ping packets, for example?  The packet in messages will be
>> forwarded automatically through
>> switches until reach a controller?
>>
>> --
>> scolfield
>>
>> _______________________________________________
>> nox-dev mailing list
>> nox-dev@noxrepo.org
>> http://noxrepo.org/mailman/listinfo/nox-dev
>>
>>
>
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