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238 lines
6.7 KiB
Nix
238 lines
6.7 KiB
Nix
# This test sets up an IPsec VPN server that allows a client behind an IPv4 NAT
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# router to access the IPv6 internet. We check that the client initially can't
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# ping an IPv6 hosts and its connection to the server can be eavesdropped by
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# the router, but once the IPsec tunnel is enstablished it can talk to an
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# IPv6-only host and the connection is secure.
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#
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# Notes:
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# - the VPN is implemented using policy-based routing.
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# - the client is assigned an IPv6 address from the same /64 subnet
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# of the server, without DHCPv6 or SLAAC.
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# - the server acts as NDP proxy for the client, so that the latter
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# becomes reachable at its assigned IPv6 via the server.
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# - the client falls back to TCP if UDP is blocked
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{ lib, pkgs, ... }:
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let
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# Common network setup
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baseNetwork = {
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# shared hosts file
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networking.extraHosts = lib.mkVMOverride ''
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203.0.113.1 router
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203.0.113.2 server
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2001:db8::2 inner
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192.168.1.1 client
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'';
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# open a port for testing
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networking.firewall.allowedUDPPorts = [ 1234 ];
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};
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# Common IPsec configuration
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baseTunnel = {
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services.libreswan.enable = true;
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environment.etc."ipsec.d/tunnel.secrets" =
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{ text = ''@server %any : PSK "j1JbIi9WY07rxwcNQ6nbyThKCf9DGxWOyokXIQcAQUnafsNTUJxfsxwk9WYK8fHj"'';
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mode = "600";
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};
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};
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# Helpers to add a static IP address on an interface
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setAddress4 = iface: addr: {
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networking.interfaces.${iface}.ipv4.addresses =
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lib.mkVMOverride [ { address = addr; prefixLength = 24; } ];
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};
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setAddress6 = iface: addr: {
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networking.interfaces.${iface}.ipv6.addresses =
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lib.mkVMOverride [ { address = addr; prefixLength = 64; } ];
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};
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in
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{
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name = "libreswan-nat";
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meta = with lib.maintainers; {
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maintainers = [ rnhmjoj ];
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};
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nodes.router = { pkgs, ... }: lib.mkMerge [
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baseNetwork
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(setAddress4 "eth1" "203.0.113.1")
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(setAddress4 "eth2" "192.168.1.1")
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{
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virtualisation.vlans = [ 1 2 ];
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environment.systemPackages = [ pkgs.tcpdump ];
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networking.nat = {
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enable = true;
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externalInterface = "eth1";
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internalInterfaces = [ "eth2" ];
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};
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networking.firewall.trustedInterfaces = [ "eth2" ];
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}
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];
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nodes.inner = lib.mkMerge [
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baseNetwork
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(setAddress6 "eth1" "2001:db8::2")
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{ virtualisation.vlans = [ 3 ]; }
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];
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nodes.server = lib.mkMerge [
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baseNetwork
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baseTunnel
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(setAddress4 "eth1" "203.0.113.2")
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(setAddress6 "eth2" "2001:db8::1")
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{
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virtualisation.vlans = [ 1 3 ];
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networking.firewall.allowedUDPPorts = [ 500 4500 ];
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networking.firewall.allowedTCPPorts = [ 993 ];
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# see https://github.com/NixOS/nixpkgs/pull/310857
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networking.firewall.checkReversePath = false;
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boot.kernel.sysctl = {
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# enable forwarding packets
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"net.ipv6.conf.all.forwarding" = 1;
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"net.ipv4.conf.all.forwarding" = 1;
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# enable NDP proxy for VPN clients
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"net.ipv6.conf.all.proxy_ndp" = 1;
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};
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services.libreswan.configSetup = "listen-tcp=yes";
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services.libreswan.connections.tunnel = ''
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# server
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left=203.0.113.2
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leftid=@server
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leftsubnet=::/0
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leftupdown=${pkgs.writeScript "updown" ''
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# act as NDP proxy for VPN clients
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if test "$PLUTO_VERB" = up-client-v6; then
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ip neigh add proxy "$PLUTO_PEER_CLIENT_NET" dev eth2
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fi
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if test "$PLUTO_VERB" = down-client-v6; then
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ip neigh del proxy "$PLUTO_PEER_CLIENT_NET" dev eth2
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fi
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''}
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# clients
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right=%any
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rightaddresspool=2001:db8:0:0:c::/97
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modecfgdns=2001:db8::1
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# clean up vanished clients
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dpddelay=30
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auto=add
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keyexchange=ikev2
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rekey=no
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narrowing=yes
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fragmentation=yes
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authby=secret
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leftikeport=993
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retransmit-timeout=10s
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'';
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}
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];
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nodes.client = lib.mkMerge [
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baseNetwork
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baseTunnel
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(setAddress4 "eth1" "192.168.1.2")
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{
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virtualisation.vlans = [ 2 ];
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networking.defaultGateway = {
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address = "192.168.1.1";
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interface = "eth1";
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};
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services.libreswan.connections.tunnel = ''
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# client
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left=%defaultroute
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leftid=@client
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leftmodecfgclient=yes
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leftsubnet=::/0
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# server
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right=203.0.113.2
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rightid=@server
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rightsubnet=::/0
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auto=add
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narrowing=yes
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rekey=yes
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fragmentation=yes
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authby=secret
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# fallback when UDP is blocked
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enable-tcp=fallback
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tcp-remoteport=993
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retransmit-timeout=5s
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'';
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}
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];
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testScript =
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''
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def client_to_host(machine, msg: str):
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"""
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Sends a message from client to server
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"""
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machine.execute("nc -lu :: 1234 >/tmp/msg &")
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client.sleep(1)
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client.succeed(f"echo '{msg}' | nc -uw 0 {machine.name} 1234")
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client.sleep(1)
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machine.succeed(f"grep '{msg}' /tmp/msg")
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def eavesdrop():
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"""
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Starts eavesdropping on the router
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"""
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match = "udp port 1234"
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router.execute(f"tcpdump -i eth1 -c 1 -Avv {match} >/tmp/log &")
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start_all()
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with subtest("Network is up"):
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client.wait_until_succeeds("ping -c1 server")
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client.succeed("systemctl restart ipsec")
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server.succeed("systemctl restart ipsec")
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with subtest("Router can eavesdrop cleartext traffic"):
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eavesdrop()
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client_to_host(server, "I secretly love turnip")
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router.sleep(1)
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router.succeed("grep turnip /tmp/log")
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with subtest("Libreswan is ready"):
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client.wait_for_unit("ipsec")
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server.wait_for_unit("ipsec")
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client.succeed("ipsec checkconfig")
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server.succeed("ipsec checkconfig")
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with subtest("Client can't ping VPN host"):
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client.fail("ping -c1 inner")
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with subtest("Client can start the tunnel"):
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client.succeed("ipsec start tunnel")
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client.succeed("ip -6 addr show lo | grep -q 2001:db8:0:0:c")
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with subtest("Client can ping VPN host"):
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client.wait_until_succeeds("ping -c1 2001:db8::1")
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client.succeed("ping -c1 inner")
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with subtest("Eve no longer can eavesdrop"):
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eavesdrop()
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client_to_host(inner, "Just kidding, I actually like rhubarb")
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router.sleep(1)
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router.fail("grep rhubarb /tmp/log")
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with subtest("TCP fallback is available"):
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server.succeed("iptables -I nixos-fw -p udp -j DROP")
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client.succeed("ipsec restart")
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client.execute("ipsec start tunnel")
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client.wait_until_succeeds("ping -c1 inner")
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'';
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}
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