From mboxrd@z Thu Jan 1 00:00:00 1970 Return-Path: Received: from vsmx002.dclux.xion.oxcs.net (vsmx002.dclux.xion.oxcs.net [185.74.65.108]) (using TLSv1.2 with cipher ADH-AES256-GCM-SHA384 (256/256 bits)) (No client certificate requested) by lists.bufferbloat.net (Postfix) with ESMTPS id 3C3AF3B29E for ; Wed, 9 Jun 2021 11:23:30 -0400 (EDT) Received: from proxy-1.proxy.oxio.ns.xion.oxcs.net (proxy-1.proxy.oxio.ns.xion.oxcs.net [83.61.18.4]) by mx-out.dclux.xion.oxcs.net (Postfix) with SMTP id 51FCE8C09BF; Wed, 9 Jun 2021 15:23:24 +0000 (UTC) Date: Wed, 9 Jun 2021 17:23:17 +0200 From: Mike Puchol To: Nathan Owens , Dave Taht , starlink@lists.bufferbloat.net, Michael Richardson Message-ID: In-Reply-To: <22686.1623247935@localhost> References: <901ae36f-c5f1-4b0d-af17-90d29c212f78@Spark> <22686.1623247935@localhost> X-Readdle-Message-ID: a956add1-eb1b-4466-80eb-39b15ac35658@Spark MIME-Version: 1.0 Content-Type: multipart/alternative; boundary="60c0dcea_683caad3_312" X-VadeSecure-Status: LEGIT X-VADE-STATUS: LEGIT Subject: Re: [Starlink] dynamically adjusting cake to starlink X-BeenThere: starlink@lists.bufferbloat.net X-Mailman-Version: 2.1.20 Precedence: list List-Id: "Starlink has bufferbloat. Bad." List-Unsubscribe: , List-Archive: List-Post: List-Help: List-Subscribe: , X-List-Received-Date: Wed, 09 Jun 2021 15:23:30 -0000 --60c0dcea_683caad3_312 Content-Type: text/plain; charset="utf-8" Content-Transfer-Encoding: quoted-printable Content-Disposition: inline Hi Michael, inline below: On Jun 9, 2021, 16:12 +0200, Michael Richardson , wro= te: > > welcome=21 So happy to have you. > > Mike Puchol wrote: > > As for the topic at hand, I understand the concept - in essence, if w= e > > can find what the Dishy - satellite - gateway triumvirate is doing in= > > terms of capacity and buffering, we can apply that information into o= ur > > own router=E2=80=99s buffer/queue strategy. I have taken a quick look= at the > > document, and there is one assumption that is wrong, A=46AIK, which i= s > > that the satellites are =E2=80=9Cbent pipes=E2=80=9D - they actually = process packets, > > which means they are an active component of buffering and queuing in > > the path (for optical links to work, satellites would necessarily hav= e > > to process packets). > > So, when we say =22bent pipe=22, we don't mean that literally. (I know = that it > was literally true at some point). We don't mean to imply that the sate= llite > does not reconstruct the binary content of the packet from the baud's o= f > symbols. Understood - however =E2=80=9Cbent pipe=E2=80=9D has some implications fr= om traditional GSO terminology. Modern satellites reconstruct the binary = stream, but still act as a =E2=80=9Cbent pipe=E2=80=9D in the traditional= sense. > > What we primarily mean is that stuff goes in one side *ALL* comes out t= he > other side, and that the satellite does not *at this time*, make nextho= p > decisions based upon (IP) packet content. Of course there are some kind= of > identifier to tell the satellite what end-user station to send data to = in the > direction towards the user. This is correct, with a few twists once you throw in inter-satellite link= s. In future satellite versions, optical links will allow satellites with= in the same orbital plane to use each other as relays, thus providing cov= erage in areas not within a gateway=E2=80=99s coverage. This is particula= rly relevant in high latitudes where fiber is scarce, so the polar orbits= are getting optical links first. Take the scenario where each satellite = has its own gateway, the uplinks and downlinks are balanced. Now, assume = the case where a satellite does not have a gateway in range, but has anot= her satellite in range which does have a gateway link (A): Suddenly, satellite A needs to handle the traffic from its own cells, plu= s the cells served by satellite B. This can go on, with multiple satellit= es being relayed by a single satellite - there will be limits, of course,= as the Ka band gateway links do not have infinite capacity. If you take = a look at my tracker, the velocity of the satellite calls for extremely f= requent topology changes - Starlink has indicataed they re-calculate ever= y 15 seconds. Whatever mechanism Starlink uses to route traffic internally it is certai= nly more advanced than a modern =E2=80=9Cbent pipe=E2=80=9D regenerative = (or I have totally overestimated the capabilities=21), and involves a lev= el of packet or frame handling higher up the stack. > (Also, we talk about uplink/downlink from the point of view of the the = end > user station. But, are there better terms from the satellite's point of= > view to distinguish traffic to/from the end user=3F) In general, downlink is anything from satellite to ground, be it satellit= e -> gateway or satellite -> terminal, and uplink the reverse path. These= are the clearest terms to use IMHO. Thus, if satellite to terminal has 7= 5/25 DL/UL duty cycle, the satellite to gateway link will be reversed, wi= th 25/75 DL/UL duty cycle. > It is my understanding that at some point, traffic between (end-user) > stations will be possible via multiple satellite hops, and without a tr= ip to > the ground to a routing decision. But that isn't happening right now. That isn=E2=80=99t happening, but you don=E2=80=99t want to design a syst= em that needs a massive upgrade further down the line once you put optica= l inter-satellite links into operation. It=E2=80=99s much easier to desig= n, implement and use the mechanism from the get go, as it simplifies othe= r things (traffic delivery from gateways to a specific POP via user conte= xt, for example). Best, Mike --60c0dcea_683caad3_312 Content-Type: multipart/related; boundary="60c0dcea_6353cd2_312" --60c0dcea_6353cd2_312 Content-Type: text/html; charset="utf-8" Content-Transfer-Encoding: quoted-printable Content-Disposition: inline
Hi Michael, inline below:
On Jun 9, 2021, 16:12 +0200, Michael Richardson <= ;mcr=40sandelman.ca>, wrote:

welcome=21 So happy to have you.

Mike Puchol <mike=40starlink.sx> wrote:
As for the topic at hand, I understand the concept - in essence, if we can find what the Dishy - satellite - gateway triumvirate is doing in
terms of capacity and buffering, we can apply that information into our own router=E2=80=99s buffer/queue strategy. I have taken a quick look at = the
document, and there is one assumption that is wrong, A=46AIK, which is that the satellites are =E2=80=9Cbent pipes=E2=80=9D - they actually proc= ess packets,
which means they are an active component of buffering and queuing in
the path (for optical links to work, satellites would necessarily have to process packets).

So, when we say =22bent pipe=22, we don't mean that literally. (I know th= at it
was literally true at some point). We don't mean to imply that the satell= ite
does not reconstruct the binary content of the packet from the baud's of<= br /> symbols.

Understood - however =E2=80=9Cbent pipe=E2=80=9D has some implications fr= om traditional GSO terminology. Modern satellites reconstruct the binary = stream, but still act as a =E2=80=9Cbent pipe=E2=80=9D in the traditional= sense.

What we primarily mean is that stuff goes in one side *ALL* comes out the=
other side, and that the satellite does not *at this time*, make nexthop<= br /> decisions based upon (IP) packet content. Of course there are some kind o= f
identifier to tell the satellite what end-user station to send data to in= the
direction towards the user.

This is correct, with a few twists once you throw in inter-satellite link= s. In future satellite versions, optical links will allow satellites with= in the same orbital plane to use each other as relays, thus providing cov= erage in areas not within a gateway=E2=80=99s coverage. This is particula= rly relevant in high latitudes where fiber is scarce, so the polar orbits= are getting optical links first. Take the scenario where each satellite = has its own gateway, the uplinks and downlinks are balanced. Now, assume = the case where a satellite does not have a gateway in range, but has anot= her satellite in range which does have a gateway link (A):


Suddenly, satellite A needs to handle the traffic from its own cells, plu= s the cells served by satellite B. This can go on, with multiple satellit= es being relayed by a single satellite - there will be limits, of course,= as the Ka band gateway links do not have infinite capacity. If you take = a look at my tracker, the velocity of the satellite calls for extremely f= requent topology changes - Starlink has indicataed they re-calculate ever= y 15 seconds.

Whatever mechanism Starlink uses to route traffic internally it is certai= nly more advanced than a modern =E2=80=9Cbent pipe=E2=80=9D regenerative = (or I have totally overestimated the capabilities=21), and involves a lev= el of packet or frame handling higher up the stack.
(Also, we talk about uplink/downlink from the point of view of the the e= nd
user station. But, are there better terms from the satellite's point of view to distinguish traffic to/from the end user=3F)

In general, downlink is anything from satellite to ground, be it satellit= e -> gateway or satellite -> terminal, and uplink the reverse path.= These are the clearest terms to use IMHO. Thus, if satellite to terminal= has 75/25 DL/UL duty cycle, the satellite to gateway link will be revers= ed, with 25/75 DL/UL duty cycle.
It is my understanding that at some point, traffic between (end-user) stations will be possible via multiple satellite hops, and without a trip= to
the ground to a routing decision. But that isn't happening right now.

That isn=E2=80=99t happening, but you don=E2=80=99t want to design a syst= em that needs a massive upgrade further down the line once you put optica= l inter-satellite links into operation. It=E2=80=99s much easier to desig= n, implement and use the mechanism from the get go, as it simplifies othe= r things (traffic delivery from gateways to a specific POP via user conte= xt, for example).

Best,

Mike
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