WIP: Ship a pia-vpn skill with the VPN support toggle #29
+15
-5
@@ -359,21 +359,31 @@ install_feature_skill() {
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local _src="/opt/triple-c-skills/$1"
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local _dest="/home/claude/.claude/skills/$1"
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# A blank name would make the disabled branch `rm -rf` the whole skills
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# directory, Mission Control's included, under a persisted volume.
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[ -n "$_name" ] || { echo "entrypoint: install_feature_skill called with no name"; return 1; }
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# Reject anything that is not a plain directory name. The disabled branch
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# `rm -rf`s $_dest under a *persisted volume*, so a blank name would take the
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# whole skills directory (Mission Control's included) and `../x` would escape
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# it entirely. Only the literal `pia-vpn` is passed today; this is so that
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# stays true.
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case "$_name" in
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''|*/*|.*) echo "entrypoint: install_feature_skill: bad skill name '$_name'"; return 1 ;;
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esac
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if [ "$_enabled" = "1" ]; then
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if [ ! -d "$_src" ]; then
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echo "entrypoint: $_name skill unavailable — this container's base image predates it; migrate the project to get it"
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return 0
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fi
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mkdir -p /home/claude/.claude/skills
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# Checked, not assumed: with no `set -e` in this script every step here
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# can fail (full volume, read-only mount, a file where the directory
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# should be) and the success line would still print.
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mkdir -p /home/claude/.claude/skills || {
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echo "entrypoint: $_name skill install FAILED (cannot create ~/.claude/skills)"; return 1; }
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# Not just $_dest: when Mission Control is off nothing else creates the
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# parent, so root would own it and `claude` could not add a skill there.
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chown claude:claude /home/claude/.claude/skills
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rm -rf "$_dest"
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cp -r "$_src" "$_dest"
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cp -r "$_src" "$_dest" || {
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echo "entrypoint: $_name skill install FAILED (copy from $_src)"; return 1; }
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chown -R claude:claude "$_dest"
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echo "entrypoint: $_name skill installed to ~/.claude/skills/"
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elif [ -e "$_dest" ] || [ -L "$_dest" ]; then
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@@ -183,22 +183,34 @@ true in test mode too, and means much less than it sounds like.
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`down` restores `resolv.conf` from its backup (only if that backup still looks
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like a resolver file — restoring a truncated one would leave the container with
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no DNS at all), removes exactly the routes that were added, in reverse order,
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deletes the interface, and shreds the WireGuard private key. It is safe to run
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when nothing is up, and `up` runs it first so a repeat `up` cannot stack state.
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Confirm afterwards that the public address is back to the container's own.
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and deletes the interface. It is safe to run when nothing is up. Confirm
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afterwards that the public address is back to the container's own.
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The key deletion is not housekeeping: `/run` is in the container's writable
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layer, so `docker commit` bakes whatever is there into the project's snapshot
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image. A key left behind rides that image into every future container.
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`up` calls it too, but only *after* every network fetch has succeeded, so a
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failed `up` leaves an existing tunnel alone rather than tearing it down to
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report a bad password. From that point on a rollback is armed: if any step of
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the setup fails, the tunnel is torn down rather than left half-configured.
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The private key is deleted earlier still — the moment `wg set` has read it,
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while the tunnel is being built. That is not housekeeping: `/run` is in the
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container's writable layer, and recreating or migrating the project runs
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`docker commit` over it *without* tearing the tunnel down first. A key that
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lived for the tunnel's lifetime would be baked into the snapshot image and
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copied forward from then on. The kernel keeps its own copy, so nothing is lost.
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## What this deliberately does not do
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- **No killswitch.** Blocking non-tunnel egress needs `iptables`, which is not
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in the image, and would cut Claude Code's API traffic whenever the tunnel is
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down. If the user needs guaranteed egress rather than convenient egress, say
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so plainly rather than improvising one — it is a real design decision.
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- **No killswitch.** `iptables` *is* in the image, so one is buildable — this
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is a deliberate omission, not a missing dependency. Blocking non-tunnel egress
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cuts Claude Code's own API traffic the moment the tunnel drops, which ends the
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session that would otherwise fix it. If the user needs guaranteed egress
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rather than convenient egress, say so plainly and let them decide, rather than
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improvising one.
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- **No autostart.** There is no service manager in the container and Triple-C
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has no start hook, so nothing can re-establish the tunnel automatically.
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has no start hook, so nothing re-establishes the tunnel on its own. `cron` is
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in the image and `triple-c-scheduler` runs on it, so a scheduled reconnect is
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possible if the user wants one — it is just not set up, and a tunnel that
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reconnects unattended deserves an explicit decision.
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- **Not PIA's desktop client.** `pia-daemon` and `piactl` are installable but
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cannot work headless: the daemon never accepts a client connection without
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the GUI, and `piactl --help` states that connecting requires it. If you find
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@@ -27,6 +27,9 @@
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set -euo pipefail
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# Not ~/pia-creds: under sudo, HOME is /root.
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# Read by up()'s EXIT trap, which runs after the function's locals are gone.
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SETUP_OK=0
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CREDS=${PIA_CREDS:-/home/claude/pia-creds}
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REGION=${PIA_REGION:-us_chicago}
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IFACE=pia0
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@@ -88,7 +91,7 @@ preflight() {
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# tunnel captures everything while the exclusions that keep DNS and the Docker
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# host reachable are quietly missing -- and `status` still says "full tunnel".
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add_route() {
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ip route add "$@" || die "could not add route '$*'. Run 'down' to undo the partial setup."
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ip route add "$@" || die "could not add route '$*'"
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printf '%s\n' "$*" >> "$STATE/routes"
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}
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@@ -100,11 +103,6 @@ up() {
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esac
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preflight
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# Always start from a known state. Without this a second `up` overwrites the
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# saved resolv.conf with PIA's own resolvers, so the later `down` "restores"
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# those and leaves the container with no working DNS and no way back.
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down >/dev/null 2>&1 || true
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mkdir -p "$STATE"; cd "$STATE"
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# `curl -o` creates the file before it knows the request failed, so a plain
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@@ -135,6 +133,27 @@ up() {
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sip=$(echo "$srv" | jq -r .ip); scn=$(echo "$srv" | jq -r .cn)
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[ -n "$sip" ] && [ "$sip" != null ] || die "no WireGuard server for region '$REGION'"
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# Only now tear down any previous tunnel. Doing it up front (as an earlier
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# version did) meant a failed token fetch or an unreachable server list took
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# a *working* tunnel down with it and silently reverted the container to its
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# real address, while the error talked about credentials. Everything above
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# this line can fail; nothing above it has touched the network stack.
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#
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# It also still does the job it was added for: clearing a stale resolv.conf
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# backup so a second `up` cannot save PIA's own resolvers over the real ones.
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down >/dev/null 2>&1 || true
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# From here on the network stack is being modified, so any failure has to put
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# it back rather than exit half-configured. `down` is idempotent and restores
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# routes and resolv.conf exactly.
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#
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# EXIT rather than ERR, and a flag rather than the trap's own exit status: an
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# ERR trap is not inherited by shell functions without `set -E`, so a failure
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# inside add_route would not fire it, and `die` exits explicitly, which is not
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# an error and would not fire it either. EXIT catches both.
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SETUP_OK=0
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trap '[ "$SETUP_OK" = 1 ] || { echo "pia-wg: setup failed - rolling back" >&2; down >/dev/null 2>&1; }' EXIT
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# umask, not a later chmod: the file is created under the inherited 0022
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# otherwise, so the key is world-readable for the moment in between.
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( umask 077; priv=$(wg genkey); printf '%s' "$priv" > wg.priv )
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@@ -159,6 +178,12 @@ up() {
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peer "$(echo "$resp" | jq -r .server_key)" \
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endpoint "$(echo "$resp" | jq -r .server_ip):$(echo "$resp" | jq -r .server_port)" \
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allowed-ips 0.0.0.0/0 persistent-keepalive 25
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# The kernel holds the key from here, so the file has no reason to outlive
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# this line -- and every reason not to: /run is in the writable layer, and a
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# recreate or migrate runs `docker commit` over it without tearing the tunnel
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# down first, baking the key into the project's snapshot image. `down` also
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# removes it, for the case where `up` never got this far.
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rm -f wg.priv
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ip addr add "$(echo "$resp" | jq -r .peer_ip)/32" dev "$IFACE"
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ip link set "$IFACE" up
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@@ -201,7 +226,18 @@ up() {
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echo "test route only: 1.1.1.1 goes via PIA, everything else unchanged"
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fi
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sleep 2
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# A tunnel with no handshake still routes -- into a black hole. Without this
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# `up --full` would exit 0 having pointed all traffic *and* resolv.conf at a
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# peer that never answered, and `status` would print "mode: full tunnel".
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local waited=0
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until [ "$(wg show "$IFACE" latest-handshakes | awk '{print $2; exit}')" != 0 ]; do
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waited=$((waited + 1))
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[ "$waited" -lt 20 ] || die "no handshake from $REGION after 10s - rolled back"
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sleep 0.5
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done
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SETUP_OK=1
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trap - EXIT
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status
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}
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@@ -242,6 +278,10 @@ TRACE_DIRECT=https://1.0.0.1/cdn-cgi/trace
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exit_ip() { curl -s -m 20 "$1" | sed -n 's/^ip=//p'; }
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status() {
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# `wg show` needs root; `ip route`/`ip link` do not. Without this guard an
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# unprivileged run prints "no tunnel up" and then "mode: full tunnel" in the
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# same breath, and an agent reading the first line re-runs `up`.
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[ "$(id -u)" = 0 ] || die "run with sudo"
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wg show "$IFACE" 2>/dev/null | grep -E "latest handshake|transfer" || echo "no tunnel up"
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# Resolve a name, not an IP literal. A curl to 1.1.1.1 succeeds while DNS is
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@@ -274,5 +314,5 @@ case "${1:-}" in
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up) shift; up "${1:-}" ;;
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down) down ;;
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status) status ;;
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*) sed -n '2,27p' "$0" | sed 's/^# \{0,1\}//'; exit 1 ;;
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*) sed -n '2,26p' "$0" | sed 's/^# \{0,1\}//'; exit 1 ;;
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esac
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