[Bloat] Detecting bufferbloat from outside a node

Paolo Valente paolo.valente at unimore.it
Mon May 4 06:41:25 EDT 2015


Thanks for this extra information and suggestions. Just to be certain that I am not missing anything: I am assuming that also the observed delay you mention is the delay observed from outside endpoints, and not the total delay that one would obtain by adding also the queueing delays inside end points (which, in my case, is one of the unobservable quantities).

Il giorno 04/mag/2015, alle ore 12:28, Jonathan Morton <chromatix99 at gmail.com> ha scritto:

> Generally, the minimum observed delay will correspond to the case when both inbound and outbound queues are empty throughout the path. This delay should correspond to basic propagation and forwarding delays, which can't be reduced further without altering some aspect of the network.
> 
> Higher observed delays than this will tend to correspond to one or both of the buffers at the bottleneck being persistently filled. To work out which one, you'll need to estimate the network load in each direction. This is of course easiest if you can see all or most of the traffic passing the bottleneck link, or if you yourself are participating in that load, but it's probably possible in some other situations if you get creative.
> 
> To determine that bloat is NOT present, you need to observe delays that are close to the baseline unloaded condition, while also being fairly sure that the bottleneck link is saturated in the relevant direction.
> 
> The most reliable indication of link saturation is to observe ECN marked packets, which will only normally be produced by an AQM algorithm signalling link congestion (where both endpoints of the flow have negotiated ECN support). A slightly less reliable indication of saturation is to observe lost packets, either via retransmission or ack patterns, especially if they occur in bursts or at remarkably regular intervals.
> 
> - Jonathan Morton


--
Paolo Valente                                                 
Algogroup
Dipartimento di Fisica, Informatica e Matematica		
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