Yesterday around noon, the internet at my company started acting up. No matter, slowdowns happen and there’s roadwork going on outside: maybe they hit the fiber or something. So we waited.

Then our Samba servers started getting flaky. And the database too. Uh oh… That’s different.

We started investigating. Some machines were dropping ICMP packets like crazy, then recovered, then other machines started to become unpingable too. I fired up Wireshark and discovered an absolute flood of IGMP packets on all the trunks, mostly broadcast from Windows machine. It was so bad two Linux machines on the same switch couldn’t ping each other reliably if the switch was connected to the intranet.

So we suspected a DDOS attack initiated from within the intranet by an outside attacker. We cut off the internet, but the storm of packets kept on coming. Physically disconnecting machines from the intranet one by one didn’t do a thing either.

Eventually, we started disconnecting each trunk one by one from the main router until we disconnected one and all the activity lights immediately stopped on all the ports. We reconnected it and the crazy traffic resumed.

So we went to that trunk’s subrouter and did the same thing. When we found the cable that stopped all the traffic, we followed it and finally found one lonely $10 ethernet switch with… a cable with both ends plugged into the switch. We disconnected the cable and everything instantly returned to normal.

One measly cable brought the entire company to a standstill for hours! Because half of the software we have to use are cloud crap or need to call their particular motherships to activate their licenses, many people couldn’t work anymore for no good technical reason at all while we investigated the networking issue.

Anyway, I thought switches had protections against that sort of loopback connection, and routers prevented circular routes. But there’s theory and there’s reality. Crazy!

  • @Socsa@sh.itjust.works
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    76 months ago

    Yup, the good old “loopback FU.”

    Routers do have some protections which can mitigate this, but the entire problem is broadcast flooding which can’t really be dealt with at later 2, or even at layer 3 within the same segment. Most places will have no broadcast forwarding between segments, but even if you detect unusual broadcast activity and ban that class of traffic, you break other things. A lot of times it is ARP floods, so it doesn’t happen when the network is static and converged until someone plugs a new laptop in, and then everyone assumes it’s that laptop.