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v0.4.7
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428229bd5a
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65a3d4eb29 |
@@ -273,6 +273,61 @@ migration and Reset. Four things here are not obvious:
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actively **removes** `triple-c-*.crt` when the setting is cleared — `/usr/local/share` rides the
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project's snapshot image, so turning the feature off has to undo, not merely stop.
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### VPN support (`vpn_support_enabled`, `docker/container.rs`)
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An opt-in per-project switch granting the container what a VPN client needs to build a tunnel.
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`vpn_host_config()` is the single definition of what that means, and it is unit-tested because a
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container is created once by a very long function where a dropped capability is invisible.
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- **All three pieces or none.** `CAP_NET_ADMIN` (Docker's default set has `net_raw` but *not*
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`net_admin`, so a client can ping but never connect), the `/dev/net/tun` device (absent
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entirely from a default container — nothing to open even with the capability), and
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`net.ipv4.conf.all.src_valid_mark=1` (WireGuard's `wg-quick` sets it and cannot from inside a
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container, since `/proc/sys` is read-only, so handshake packets die to reverse-path filtering).
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Any two without the third still presents as a connection that hangs to a timeout, which is why
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the tests assert the whole set.
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- **The device is passed through from the host, never `mknod`-ed inside.** The kernel's `tun`
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module has to back it.
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- **A missing device fails at `start`, not `create` — verified against Docker 29.7.** `docker
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create --device /dev/does-not-exist` succeeds and prints an id; runc resolves the device (and
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validates sysctls) only when it builds the container. So the guard belongs on the start path:
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`explain_container_failure()` covers both and is called from `start_container`, where it has a
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container id and no project — which is why it keys off the error naming `/dev/net/tun` rather
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than off `vpn_support_enabled`. Nothing else in Triple-C requests a device, so that is
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unambiguous. A version of this check wired to `create` alone is dead code that looks correct.
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- **`NET_ADMIN` here is not user-namespaced.** Docker does not enable userns remapping by default,
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so only the *network* namespace confines it: no reach onto host interfaces, but promiscuous
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mode, arbitrary addresses/routes/NAT on the shared `docker0` segment (sibling containers, the
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LiteLLM gateway among them, are ARP-spoofable), netlink-triggered host module auto-load, and
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enough authority to flush in-container netfilter rules that sandbox mode may rely on. Keep the
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code comments honest about this — an earlier draft claimed it "confers no authority" outside the
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container, which is too strong.
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- **`triple-c.vpn-support` is written unconditionally, including `false`.** The usual
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`docker commit` reason: a `true` stamped once would ride the snapshot image into every future
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container and make the switch impossible to turn off.
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- Off is byte-identical to a container created before the feature existed, and a missing label
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reads as `false`, so no existing project is churned.
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- **The toggle grants capability and stops there — it routes nothing.** `vpn_host_config()` returns
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a cap, a device and a sysctl; no client is installed, no route is touched, no tunnel is started
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or restored. Users read the name as "turn the VPN on" and report the default network not routing
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through it as a bug. It isn't, and the docs say so explicitly; keep it that way.
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- **The tooling is baked, not installed at runtime.** `iproute2` and `wireguard-tools` are in
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`container/Dockerfile` because a runtime install lands in the writable layer and is lost on
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base-image migration — leaving a project holding the capability with nothing able to exercise it,
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and no error that points at why. `iptables` is deliberately absent; see the Dockerfile comment.
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- **Anything built on this fails open.** The network namespace is rebuilt on every start and no
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service manager runs inside, so a tunnel never survives stop/start or recreation while `/run`
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state persists through the snapshot and makes it look as though it did. Traffic silently reverts
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to the real address. Any future autostart or killswitch work starts here.
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- **The `pia-vpn` skill is installed *and removed* from `VPN_SUPPORT_ENABLED`.** `container/skills/`
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is baked to `/opt/triple-c-skills` and `install_feature_skill()` in `entrypoint.sh` copies it into
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`~/.claude/skills/` on every start — refreshed each time, so a fix reaches existing projects, and
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`rm -rf`'d first, so files dropped from a later version do not linger. The removal branch matters
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as much as the install: `~/.claude` is a persisted volume, so a skill left behind after the toggle
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goes off would keep instructing an agent to use a capability the container no longer has. Which is
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also why the variable is sent as `0` rather than omitted, and why it is in `RESERVED_ENV_EXACT` —
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a custom env var of that name could otherwise claim the skill without the capability behind it.
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### Container Lifecycle
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Containers use a **stop/start** model (not create/destroy). Installed packages persist across stops. The `.claude` config dir uses a named Docker volume (`triple-c-claude-config-{projectId}`), nested inside the home volume (`triple-c-home-{projectId}`), so OAuth tokens and Claude Code config survive container stop/start *and* container recreation.
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@@ -471,6 +471,65 @@ When enabled, the host Docker socket is mounted into the container so Claude Cod
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> Toggling this requires stopping and restarting the container to take effect.
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### VPN Support
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When enabled, the container is given the three things a VPN client needs to build a tunnel:
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the `NET_ADMIN` capability, the `/dev/net/tun` device, and the `net.ipv4.conf.all.src_valid_mark`
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sysctl that WireGuard requires. The `ip` and `wg` commands are always present to use them. This is
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**off by default**.
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**This setting makes a tunnel possible; it does not make one.** Nothing is connected, no traffic is
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redirected, and no client is installed or started on your behalf. Enabling it and expecting the
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container's traffic to start leaving through a VPN is the most common misreading of what it does —
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installing a client and routing traffic into it remains yours to do.
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To make that second half easier, enabling this also installs a **`pia-vpn` skill** into the
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container's `~/.claude/skills/`, so Claude Code can bring up a Private Internet Access tunnel over
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WireGuard for you — ask it to connect the VPN and it will. The skill carries the parts that are
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easy to get wrong (see the DNS note below), and it is removed again when you turn the setting off.
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It needs your PIA credentials in `~/pia-creds`, two lines, username then password. If you use a
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different provider, ignore it and set up your own client; nothing else depends on it.
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Without it, a client such as PIA, WireGuard or OpenVPN installs and its daemon starts normally, but
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the connection attempt **hangs until it times out** — a default container has no tun device to open
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and no permission to add an interface or a route, and most clients report that as a generic timeout
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rather than a permissions error.
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Things worth knowing:
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- Tailscale is the exception: in its `--tun=userspace-networking` mode it needs neither the
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capability nor the device, so leave this off if that is all you want.
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- `NET_ADMIN` applies to the container's **own** network namespace — it cannot touch the host's
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interfaces. It is not nothing, though: within that namespace anything in the container can set
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promiscuous mode and add arbitrary addresses, routes and firewall rules on the Docker bridge it
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shares with your other containers, and it can flush firewall rules that sandbox mode relies on.
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Grant it per project, to projects that need it.
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- The **Docker host's** kernel must have the `tun` module available. With Docker Desktop that is
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the Linux VM, not your own machine. If it is missing, the container is created but fails to
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**start**, with an error naming `/dev/net/tun` and pointing back at this setting.
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- A VPN client's kill switch applies to everything in the container, Claude Code included. If the
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tunnel drops, expect API calls to fail until it reconnects or the kill switch is turned off.
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- **No tunnel survives a restart.** The network namespace is built fresh every time the container
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starts, and there is no service manager inside to reconnect anything. Files under `/run` may
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persist via the snapshot and make it *look* like the tunnel is still configured, but after any
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stop/start, Reset or recreation the interface and its routes are gone and traffic goes out your
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real address again — with no error and nothing visibly different. Re-establish it after every
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start, and check rather than assume.
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- **A full tunnel breaks DNS unless the client is told to leave private ranges alone.** Containers
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resolve through an address on the Docker network (`192.168.65.7` under Docker Desktop) that sits
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outside the container's own subnet, so a default route of `0.0.0.0/0` — or a `0.0.0.0/1` plus
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`128.0.0.0/1` pair — captures it and sends every lookup into a tunnel that cannot carry it. The
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symptom is total: Claude Code reports it cannot connect, because it cannot resolve
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`api.anthropic.com`. Route `10.0.0.0/8`, `172.16.0.0/12`, `192.168.0.0/16` and `169.254.0.0/16`
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via the original gateway, and use the VPN provider's own resolver for everything else. Note that
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a health check which fetches an IP literal such as `1.1.1.1` passes cleanly while this is broken —
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resolve a name instead.
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> This setting can only be changed when the container is stopped. Capabilities and devices are
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> fixed when a container is created, so toggling it recreates the container on the next start.
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> Recreation preserves the home and `.claude` volumes — it is not a Reset.
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### Mission Control
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Toggle **Mission Control** to integrate Flight Control — an AI-first development methodology bundled with Triple-C — into the project. When enabled:
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@@ -233,6 +233,7 @@ const RESERVED_ENV_EXACT: &[&str] = &[
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"MCP_SERVERS_JSON",
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"CLAUDE_CODE_SETTINGS_JSON",
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"MISSION_CONTROL_ENABLED",
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"VPN_SUPPORT_ENABLED",
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"TRIPLE_C_PERMISSION_MODE",
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CLAUDE_OAUTH_TOKEN_ENV,
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// The model-alias vars are already covered by the `ANTHROPIC_` prefix
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@@ -798,6 +799,111 @@ async fn resolve_base_image_id(image_name: &str, base_image_name: &str) -> Strin
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.unwrap_or_default()
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}
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/// The `/dev/net/tun` character device, as it is named on both sides.
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const TUN_DEVICE: &str = "/dev/net/tun";
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/// The `HostConfig` fields "VPN support" contributes: `CapAdd`, `Devices`,
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/// `Sysctls` — in that order.
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type VpnHostConfigParts = (
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Option<Vec<String>>,
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Option<Vec<bollard::models::DeviceMapping>>,
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Option<HashMap<String, String>>,
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);
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/// The three host-config pieces a VPN client needs, or all-`None` when the
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/// project has not opted in.
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///
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/// Returned as a triple rather than set inline so the exact shape is unit
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/// testable — a container is created once, by a very long async function, and a
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/// silently-dropped capability looks identical to a VPN server that is simply
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/// unreachable.
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///
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/// All three are required together and each fails differently on its own:
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/// * **`CAP_NET_ADMIN`** — without it the client cannot create an interface or
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/// write a route. Docker's default bounding set grants `net_raw` but not
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/// `net_admin`, which is why a client can ping but never connect.
|
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/// * **`/dev/net/tun`** — the device is absent from a default container, so
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/// there is nothing to open even with the capability. It is passed through
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/// from the host rather than `mknod`-ed inside, so the kernel's `tun` module
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/// backs it.
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/// * **`net.ipv4.conf.all.src_valid_mark`** — WireGuard's own `wg-quick` sets
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/// this, and cannot from inside a container (`/proc/sys` is read-only), so
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/// its handshake packets are dropped by reverse-path filtering. Harmless for
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/// OpenVPN-based clients, so it is set unconditionally with the rest.
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///
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/// What it costs, stated accurately: Docker does not enable user-namespace
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/// remapping by default, so this is a real `CAP_NET_ADMIN` in the *initial*
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/// user namespace and only the **network** namespace confines it. It cannot
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/// touch the host's interfaces, but within its own namespace it can set
|
||||
/// promiscuous mode and add arbitrary addresses, routes and NAT rules on the
|
||||
/// shared `docker0` L2 segment — which puts sibling containers (the LiteLLM
|
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/// gateway among them) within reach of ARP spoofing, and lets netlink trigger
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/// host-kernel module auto-loading. It is also enough to flush netfilter rules
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/// inside the container, so pair it with `sandbox_mode_enabled` advisedly.
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/// Hence opt-in, per project, rather than on for everyone.
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fn vpn_host_config(enabled: bool) -> VpnHostConfigParts {
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if !enabled {
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return (None, None, None);
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}
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let devices = vec![bollard::models::DeviceMapping {
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path_on_host: Some(TUN_DEVICE.to_string()),
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path_in_container: Some(TUN_DEVICE.to_string()),
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cgroup_permissions: Some("rwm".to_string()),
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}];
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let sysctls = HashMap::from([(
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"net.ipv4.conf.all.src_valid_mark".to_string(),
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"1".to_string(),
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)]);
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(
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Some(vec!["NET_ADMIN".to_string()]),
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Some(devices),
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Some(sysctls),
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)
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}
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|
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/// Turn the daemon's device-passthrough failure into an explanation.
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///
|
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/// **This fires on `start`, not `create`.** Verified against Docker 29.7:
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/// `docker create --device /dev/does-not-exist` succeeds and prints an id; the
|
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/// device is only resolved when runc builds the container, so the failure lands
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/// on the *next* call. Sysctls validate at the same point. Anything that
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/// inspects only the create path will never see it — which is why both paths
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/// route through here and the tests exercise the start-side string.
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///
|
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/// Unmapped, this reads as `Failed to start container: Docker responded with
|
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/// status code 500: error gathering device information while adding custom
|
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/// device "/dev/net/tun": no such file or directory` — a path the user will go
|
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/// looking for on the wrong machine, since with Docker Desktop the relevant
|
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/// host is the Linux VM rather than their own, and with nothing pointing back
|
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/// at the switch that caused it.
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///
|
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/// Deliberately not gated on `vpn_support_enabled`: nothing else in Triple-C
|
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/// ever asks for a device, so an error naming `/dev/net/tun` can only have come
|
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/// from a container created with the switch on. That keeps the check usable
|
||||
/// from [`start_container`], which has a container id and no project.
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fn explain_container_failure(action: &str, err: &str) -> String {
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let device_missing = err.contains(TUN_DEVICE)
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&& (err.contains("no such file or directory")
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|| err.contains("No such file or directory")
|
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|| err.contains("error gathering device information"));
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|
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if device_missing {
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return format!(
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"Failed to {} container: the Docker host has no {} device, which \
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\"VPN support\" requires. The host kernel needs the `tun` module \
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loaded (on Docker Desktop that is the Linux VM, not your own \
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machine). Turn VPN support off in Config → Runtime to start this \
|
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project without it. Original error: {}",
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action, TUN_DEVICE, err
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);
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}
|
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|
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format!("Failed to {} container: {}", action, err)
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}
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|
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pub async fn create_container(
|
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project: &Project,
|
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docker_socket_path: &str,
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@@ -1170,6 +1276,15 @@ pub async fn create_container(
|
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env_vars.push("MISSION_CONTROL_ENABLED=1".to_string());
|
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}
|
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|
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// Drives the pia-vpn skill install in entrypoint.sh. Sent as 0 rather than
|
||||
// omitted when off, because ~/.claude is a persisted volume: entrypoint has
|
||||
// to be told to *remove* a skill left there by an earlier run with the
|
||||
// toggle on, and an absent variable cannot say that.
|
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env_vars.push(format!(
|
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"VPN_SUPPORT_ENABLED={}",
|
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u8::from(project.vpn_support_enabled)
|
||||
));
|
||||
|
||||
// Permission mode — read by triple-c-task-runner for scheduled (headless)
|
||||
// Claude Code runs. Interactive terminals get the flags directly instead.
|
||||
env_vars.push(format!(
|
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@@ -1375,6 +1490,13 @@ pub async fn create_container(
|
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labels.insert("triple-c.image".to_string(), image_name.to_string());
|
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labels.insert("triple-c.timezone".to_string(), timezone.unwrap_or("").to_string());
|
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labels.insert("triple-c.mission-control".to_string(), project.mission_control_enabled.to_string());
|
||||
// Capabilities, devices and sysctls are fixed at creation, so this is
|
||||
// container state and gets the label-and-compare treatment. Written
|
||||
// unconditionally (`false`, not omitted) because `docker commit` copies
|
||||
// container labels onto the snapshot image: a `true` stamped once would
|
||||
// otherwise ride that snapshot into every future container and make the
|
||||
// switch impossible to turn back off.
|
||||
labels.insert("triple-c.vpn-support".to_string(), project.vpn_support_enabled.to_string());
|
||||
labels.insert("triple-c.permission-mode".to_string(),
|
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project.effective_permission_mode().as_env_value().to_string());
|
||||
labels.insert("triple-c.custom-env-fingerprint".to_string(), custom_env_fingerprint.clone());
|
||||
@@ -1443,10 +1565,15 @@ pub async fn create_container(
|
||||
labels.insert((*key).to_string(), (*value).to_string());
|
||||
}
|
||||
|
||||
let (cap_add, devices, sysctls) = vpn_host_config(project.vpn_support_enabled);
|
||||
|
||||
let host_config = HostConfig {
|
||||
mounts: Some(mounts),
|
||||
port_bindings: if port_bindings.is_empty() { None } else { Some(port_bindings) },
|
||||
init: Some(true),
|
||||
cap_add,
|
||||
devices,
|
||||
sysctls,
|
||||
..Default::default()
|
||||
};
|
||||
|
||||
@@ -1476,7 +1603,7 @@ pub async fn create_container(
|
||||
let response = docker
|
||||
.create_container(Some(options), config)
|
||||
.await
|
||||
.map_err(|e| format!("Failed to create container: {}", e))?;
|
||||
.map_err(|e| explain_container_failure("create", &e.to_string()))?;
|
||||
|
||||
Ok(response.id)
|
||||
}
|
||||
@@ -1486,7 +1613,7 @@ pub async fn start_container(container_id: &str) -> Result<(), String> {
|
||||
docker
|
||||
.start_container(container_id, None::<StartContainerOptions<String>>)
|
||||
.await
|
||||
.map_err(|e| format!("Failed to start container: {}", e))
|
||||
.map_err(|e| explain_container_failure("start", &e.to_string()))
|
||||
}
|
||||
|
||||
pub async fn stop_container(container_id: &str) -> Result<(), String> {
|
||||
@@ -2367,6 +2494,19 @@ pub async fn container_needs_recreation(
|
||||
return Ok(true);
|
||||
}
|
||||
|
||||
// ── VPN support (NET_ADMIN + /dev/net/tun + sysctl) ───────────────────
|
||||
// A container's capabilities, devices and sysctls are set at creation and
|
||||
// cannot be changed on a running or stopped container, so recreation is the
|
||||
// only way a toggle here takes effect. A missing label means the container
|
||||
// predates the feature, which is the same thing as having it off — so
|
||||
// existing projects are not churned until someone actually turns it on.
|
||||
let expected_vpn = project.vpn_support_enabled.to_string();
|
||||
let container_vpn = get_label("triple-c.vpn-support").unwrap_or_else(|| "false".to_string());
|
||||
if container_vpn != expected_vpn {
|
||||
log::info!("VPN support mismatch (container={:?}, expected={:?})", container_vpn, expected_vpn);
|
||||
return Ok(true);
|
||||
}
|
||||
|
||||
// ── Permission mode ────────────────────────────────────────────────────
|
||||
// The mode is injected as the TRIPLE_C_PERMISSION_MODE env var, and
|
||||
// container env can only change by recreating the container. A missing
|
||||
@@ -2616,6 +2756,115 @@ mod tests {
|
||||
assert_eq!(fp, "");
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn vpn_support_off_touches_nothing_in_the_host_config() {
|
||||
// The default must stay byte-identical to a container created before the
|
||||
// feature existed, or every project recreates on the next start.
|
||||
let (cap_add, devices, sysctls) = vpn_host_config(false);
|
||||
assert_eq!(cap_add, None);
|
||||
assert_eq!(devices, None);
|
||||
assert_eq!(sysctls, None);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn vpn_support_on_grants_all_three_pieces() {
|
||||
// Each is useless without the others — a client with the capability but
|
||||
// no device, or the device but no capability, still times out — so this
|
||||
// asserts the whole set rather than any one of them.
|
||||
let (cap_add, devices, sysctls) = vpn_host_config(true);
|
||||
|
||||
assert_eq!(cap_add, Some(vec!["NET_ADMIN".to_string()]));
|
||||
|
||||
let devices = devices.expect("the tun device must be passed through");
|
||||
assert_eq!(devices.len(), 1);
|
||||
assert_eq!(devices[0].path_on_host.as_deref(), Some(TUN_DEVICE));
|
||||
assert_eq!(devices[0].path_in_container.as_deref(), Some(TUN_DEVICE));
|
||||
assert_eq!(devices[0].cgroup_permissions.as_deref(), Some("rwm"));
|
||||
|
||||
assert_eq!(
|
||||
sysctls
|
||||
.expect("wireguard needs src_valid_mark")
|
||||
.get("net.ipv4.conf.all.src_valid_mark")
|
||||
.map(String::as_str),
|
||||
Some("1")
|
||||
);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn vpn_support_never_grants_more_than_net_admin() {
|
||||
// NET_ADMIN is already a step out of the sandbox. Anything else added
|
||||
// here (SYS_ADMIN, or a blanket privileged flag) would be a much larger
|
||||
// one, so pin the set.
|
||||
let (cap_add, _, _) = vpn_host_config(true);
|
||||
assert_eq!(cap_add.unwrap(), vec!["NET_ADMIN"]);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn the_vpn_skill_flag_is_reserved_from_custom_env() {
|
||||
// entrypoint.sh installs and removes the pia-vpn skill from this
|
||||
// variable. A custom env var of the same name would let a project claim
|
||||
// the skill without the capability behind it — or keep it after the
|
||||
// toggle is off — so it has to be unsettable like the others.
|
||||
assert!(is_reserved_env_key("VPN_SUPPORT_ENABLED"));
|
||||
assert!(is_reserved_env_key("vpn_support_enabled"));
|
||||
assert_eq!(
|
||||
compute_env_fingerprint(&[EnvVar {
|
||||
key: "VPN_SUPPORT_ENABLED".to_string(),
|
||||
value: "1".to_string(),
|
||||
}]),
|
||||
""
|
||||
);
|
||||
}
|
||||
|
||||
/// What bollard actually hands us when a tun-less host rejects the device.
|
||||
///
|
||||
/// Captured verbatim from Docker 29.7: `docker create` with a missing
|
||||
/// device **succeeds**, and this arrives from the subsequent `start`.
|
||||
/// `DockerResponseServerError`'s Display is
|
||||
/// `"Docker responded with status code {code}: {message}"` with the
|
||||
/// daemon's message unaltered.
|
||||
const REAL_TUN_ERROR: &str = "Docker responded with status code 500: error \
|
||||
gathering device information while adding custom device \
|
||||
\"/dev/net/tun\": no such file or directory";
|
||||
|
||||
#[test]
|
||||
fn a_missing_tun_device_is_explained_on_the_path_that_actually_fails() {
|
||||
// The start path is the one that matters: the daemon defers device
|
||||
// resolution to runc, so create returns an id on a host with no tun
|
||||
// module and only start fails. A version of this that checked create
|
||||
// alone would be dead code.
|
||||
let msg = explain_container_failure("start", REAL_TUN_ERROR);
|
||||
assert!(msg.starts_with("Failed to start container:"), "{}", msg);
|
||||
assert!(msg.contains("VPN support"), "should name the switch: {}", msg);
|
||||
assert!(msg.contains("tun` module"), "should name the cause: {}", msg);
|
||||
assert!(msg.contains("Config → Runtime"), "should say where to fix it: {}", msg);
|
||||
assert!(msg.contains(REAL_TUN_ERROR), "should keep the original: {}", msg);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn the_same_explanation_covers_create_if_the_daemon_ever_checks_earlier() {
|
||||
// Belt and braces — older and future daemons may validate at create.
|
||||
let msg = explain_container_failure("create", REAL_TUN_ERROR);
|
||||
assert!(msg.starts_with("Failed to create container:"), "{}", msg);
|
||||
assert!(msg.contains("VPN support"), "{}", msg);
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn unrelated_failures_are_left_alone() {
|
||||
for (action, err) in [
|
||||
("create", "Conflict. The container name \"/triple-c-x\" is already in use"),
|
||||
("start", "Docker responded with status code 404: No such container"),
|
||||
("start", "error gathering device information while adding custom device \"/dev/dri/card0\""),
|
||||
] {
|
||||
assert_eq!(
|
||||
explain_container_failure(action, err),
|
||||
format!("Failed to {} container: {}", action, err),
|
||||
"{} should pass through untouched",
|
||||
err
|
||||
);
|
||||
}
|
||||
}
|
||||
|
||||
#[test]
|
||||
fn the_orphan_sweep_only_ever_looks_at_our_own_untagged_images() {
|
||||
// Both conditions are load-bearing. Without `dangling` the sweep would
|
||||
|
||||
@@ -145,6 +145,22 @@ pub struct Project {
|
||||
/// container-recreation label.
|
||||
#[serde(default)]
|
||||
pub browser_view_enabled: bool,
|
||||
/// Grant the container what a VPN client needs to build a tunnel:
|
||||
/// `CAP_NET_ADMIN`, the `/dev/net/tun` device, and the WireGuard
|
||||
/// `src_valid_mark` sysctl. Without all three a client (PIA, WireGuard,
|
||||
/// OpenVPN) installs and runs but its connection attempt hangs until it
|
||||
/// times out, because it cannot create the tunnel interface or touch the
|
||||
/// routing table.
|
||||
///
|
||||
/// Off by default and deliberately opt-in: `NET_ADMIN` lets anything in the
|
||||
/// container reconfigure its own network stack, which reaches further than
|
||||
/// it sounds — see `vpn_host_config` for what it does and does not confer.
|
||||
/// Unlike `auth_bridge_enabled` this *is*
|
||||
/// container state, so it carries a `triple-c.vpn-support` label and is
|
||||
/// compared in `container_needs_recreation` — capabilities and devices are
|
||||
/// fixed at creation and can only change by recreating the container.
|
||||
#[serde(default)]
|
||||
pub vpn_support_enabled: bool,
|
||||
/// Use the shared, long-lived Claude Code OAuth token (from
|
||||
/// `claude setup-token`, held in the OS keychain) for this project instead
|
||||
/// of requiring its own `claude login`. Only consulted when `backend` is
|
||||
@@ -366,6 +382,7 @@ impl Project {
|
||||
mission_control_enabled: false,
|
||||
auth_bridge_enabled: false,
|
||||
browser_view_enabled: false,
|
||||
vpn_support_enabled: false,
|
||||
use_shared_auth_token: default_use_shared_auth_token(),
|
||||
full_permissions: false,
|
||||
permission_mode: None,
|
||||
|
||||
@@ -120,6 +120,15 @@ export default function OverviewTab({
|
||||
{project.mission_control_enabled ? "ON" : "OFF"}
|
||||
</span>
|
||||
</span>
|
||||
{/* Only when granted. It is off for nearly every project and an
|
||||
always-present "VPN OFF" would be noise, but where it *is* on the
|
||||
container holds NET_ADMIN, which is worth seeing at a glance. */}
|
||||
{project.vpn_support_enabled && (
|
||||
<span className="text-[var(--text-secondary)]">
|
||||
VPN support{" "}
|
||||
<span className="text-[var(--text-primary)] font-medium">ON</span>
|
||||
</span>
|
||||
)}
|
||||
<button
|
||||
type="button"
|
||||
onClick={() => onOpenTab("config")}
|
||||
|
||||
@@ -0,0 +1,94 @@
|
||||
import { describe, it, expect, vi, beforeEach } from "vitest";
|
||||
import { render, screen, fireEvent } from "@testing-library/react";
|
||||
import RuntimeSection from "./RuntimeSection";
|
||||
import type { Project } from "../../../../lib/types";
|
||||
|
||||
const baseProject: Project = {
|
||||
id: "p1",
|
||||
name: "api-server",
|
||||
paths: [{ host_path: "/src/api", mount_name: "api" }],
|
||||
container_id: null,
|
||||
status: "stopped",
|
||||
backend: "anthropic",
|
||||
bedrock_config: null,
|
||||
ollama_config: null,
|
||||
llamacpp_config: null,
|
||||
openai_compatible_config: null,
|
||||
allow_docker_access: false,
|
||||
sandbox_mode_enabled: true,
|
||||
mission_control_enabled: false,
|
||||
auth_bridge_enabled: false,
|
||||
browser_view_enabled: false,
|
||||
vpn_support_enabled: false,
|
||||
use_shared_auth_token: true,
|
||||
full_permissions: false,
|
||||
permission_mode: null,
|
||||
ssh_key_path: null,
|
||||
ca_cert_path: null,
|
||||
git_token: null,
|
||||
git_user_name: null,
|
||||
git_user_email: null,
|
||||
custom_env_vars: [],
|
||||
port_mappings: [],
|
||||
claude_instructions: null,
|
||||
claude_code_settings: null,
|
||||
renamed_session_names: {},
|
||||
created_at: "2026-01-01T00:00:00Z",
|
||||
updated_at: "2026-01-01T00:00:00Z",
|
||||
};
|
||||
|
||||
const VPN = "VPN support";
|
||||
|
||||
const save = vi.fn().mockResolvedValue(true);
|
||||
|
||||
function renderSection(over: Partial<Project> = {}, disabled = false) {
|
||||
return render(
|
||||
<RuntimeSection
|
||||
project={{ ...baseProject, ...over }}
|
||||
save={save}
|
||||
disabled={disabled}
|
||||
disabledReason="Container must be stopped to change this setting."
|
||||
/>,
|
||||
);
|
||||
}
|
||||
|
||||
describe("RuntimeSection — VPN support toggle", () => {
|
||||
beforeEach(() => vi.clearAllMocks());
|
||||
|
||||
it("saves only the VPN flag when switched on", () => {
|
||||
renderSection();
|
||||
fireEvent.click(screen.getByRole("switch", { name: VPN }));
|
||||
expect(save).toHaveBeenCalledWith({ vpn_support_enabled: true });
|
||||
});
|
||||
|
||||
it("saves the flag off again, rather than dropping the key", () => {
|
||||
// Off has to be written explicitly: the container carries a
|
||||
// `triple-c.vpn-support` label either way, and an absent value would leave
|
||||
// the capability granted.
|
||||
renderSection({ vpn_support_enabled: true });
|
||||
fireEvent.click(screen.getByRole("switch", { name: VPN }));
|
||||
expect(save).toHaveBeenCalledWith({ vpn_support_enabled: false });
|
||||
});
|
||||
|
||||
it("reflects the project's current state", () => {
|
||||
renderSection({ vpn_support_enabled: true });
|
||||
expect(screen.getByRole("switch", { name: VPN })).toBeChecked();
|
||||
});
|
||||
|
||||
it("cannot be changed while the container is running", () => {
|
||||
// Capabilities and devices are fixed at creation, so this setting is gated
|
||||
// on the container being stopped along with the rest of the tab.
|
||||
renderSection({}, true);
|
||||
const toggle = screen.getByRole("switch", { name: VPN });
|
||||
expect(toggle).toBeDisabled();
|
||||
fireEvent.click(toggle);
|
||||
expect(save).not.toHaveBeenCalled();
|
||||
});
|
||||
|
||||
it("warns that the change recreates the container", () => {
|
||||
renderSection();
|
||||
expect(
|
||||
screen.getByText(/recreates the container on its next start/i),
|
||||
).toBeInTheDocument();
|
||||
});
|
||||
});
|
||||
@@ -57,6 +57,19 @@ export default function RuntimeSection({
|
||||
}
|
||||
/>
|
||||
|
||||
<SwitchRow
|
||||
label="VPN support"
|
||||
hint="Grants NET_ADMIN and the /dev/net/tun device so a VPN client (PIA, WireGuard, OpenVPN) can build a tunnel inside the container. Without it a client installs and runs but its connection hangs until it times out. Anything in the container can then reconfigure the container's own network stack; the host's is untouched. Changing this recreates the container on its next start — the home and .claude volumes are preserved."
|
||||
control={
|
||||
<Toggle
|
||||
label="VPN support"
|
||||
checked={project.vpn_support_enabled}
|
||||
disabled={disabled}
|
||||
onChange={(v) => save({ vpn_support_enabled: v })}
|
||||
/>
|
||||
}
|
||||
/>
|
||||
|
||||
<SwitchRow
|
||||
label="Mission Control"
|
||||
hint="A web dashboard for monitoring and managing Claude sessions remotely."
|
||||
|
||||
@@ -33,6 +33,10 @@ export interface Project {
|
||||
auth_bridge_enabled: boolean;
|
||||
/** Opt in to the browser-view pane. Host-side only, like `auth_bridge_enabled`. */
|
||||
browser_view_enabled: boolean;
|
||||
/** Grant NET_ADMIN, /dev/net/tun and the WireGuard `src_valid_mark` sysctl so
|
||||
* a VPN client inside the container can build a tunnel. Unlike the two flags
|
||||
* above this is container state — changing it recreates the container. */
|
||||
vpn_support_enabled: boolean;
|
||||
/** Use the shared long-lived Claude Code token (from `claude setup-token`,
|
||||
* held in the OS keychain) instead of this project's own `claude login`.
|
||||
* Defaults to true; only applies when `backend` is "anthropic" and a token
|
||||
|
||||
@@ -34,6 +34,8 @@ RUN for i in 1 2 3 4 5; do \
|
||||
cron \
|
||||
bubblewrap \
|
||||
socat \
|
||||
iproute2 \
|
||||
wireguard-tools \
|
||||
&& rm -rf /var/lib/apt/lists/*
|
||||
|
||||
# `libnss3-tools` above provides `certutil`. Chrome/Chromium read neither
|
||||
@@ -42,6 +44,23 @@ RUN for i in 1 2 3 4 5; do \
|
||||
# corporate CA, no matter what the system trust store says. entrypoint.sh
|
||||
# degrades to a warning if it is ever missing.
|
||||
|
||||
# `iproute2` and `wireguard-tools` above are what the VPN support toggle
|
||||
# (`vpn_support_enabled`) grants capability *for*. That toggle hands a project
|
||||
# CAP_NET_ADMIN and /dev/net/tun; without `ip` there is then no way to add a
|
||||
# route, and without `wg` no way to build the tunnel those two exist to serve —
|
||||
# a capability with nothing able to use it.
|
||||
#
|
||||
# They are baked rather than left to a runtime `apt-get install` for the same
|
||||
# reason as the Playwright libraries below: the writable layer is re-paid after
|
||||
# every Reset and lost on base-image migration. A hand-installed `wg` therefore
|
||||
# works right up until an upgrade, then disappears and takes the tunnel with it
|
||||
# — silently, since a VPN that fails to come up looks exactly like one that was
|
||||
# never started. Together they are ~4.3 MB including dependencies.
|
||||
#
|
||||
# `iptables` is deliberately NOT here. The only thing that wants it is a desktop
|
||||
# VPN client's killswitch, and those clients need a GUI that a container has no
|
||||
# way to give them; leaving it out keeps the reach of CAP_NET_ADMIN smaller.
|
||||
|
||||
# Remove default ubuntu user to free UID 1000 for host-user remapping
|
||||
RUN if id ubuntu >/dev/null 2>&1; then userdel -r ubuntu 2>/dev/null || userdel ubuntu; fi \
|
||||
&& if getent group ubuntu >/dev/null 2>&1; then groupdel ubuntu 2>/dev/null || true; fi
|
||||
@@ -314,6 +333,15 @@ RUN chmod +x /usr/local/bin/triple-c-sso-refresh
|
||||
|
||||
COPY mission-control /opt/mission-control
|
||||
|
||||
# Skills that ship with a Triple-C feature rather than with Mission Control.
|
||||
# entrypoint.sh installs them into ~/.claude/skills/ when the feature that owns
|
||||
# them is enabled, and removes them when it is not — a skill telling an agent to
|
||||
# build a tunnel in a container that no longer has CAP_NET_ADMIN is worse than
|
||||
# no skill at all. Staged in /opt because ~/.claude is a volume mount: an image
|
||||
# copy underneath it would be masked from the project's first start onward.
|
||||
COPY skills /opt/triple-c-skills
|
||||
RUN chmod +x /opt/triple-c-skills/*/*.sh
|
||||
|
||||
COPY entrypoint.sh /usr/local/bin/entrypoint.sh
|
||||
RUN chmod +x /usr/local/bin/entrypoint.sh
|
||||
COPY triple-c-scheduler /usr/local/bin/triple-c-scheduler
|
||||
|
||||
@@ -338,6 +338,35 @@ if [ "$MISSION_CONTROL_ENABLED" = "1" ]; then
|
||||
unset MISSION_CONTROL_ENABLED
|
||||
fi
|
||||
|
||||
# ── Feature skills ──────────────────────────────────────────────────────────
|
||||
# Skills owned by a Triple-C feature rather than by Mission Control. Installed
|
||||
# when the feature is on, removed when it is off: ~/.claude is a persisted
|
||||
# volume, so a skill left behind after its feature is disabled would keep
|
||||
# telling an agent to use a capability the container no longer has.
|
||||
#
|
||||
# Copied on every start rather than only when absent, so a fix to a skill
|
||||
# reaches projects that already have the old copy. Local edits under these
|
||||
# directories do not survive — treat /opt/triple-c-skills as the source.
|
||||
install_feature_skill() {
|
||||
_name=$1
|
||||
_enabled=$2
|
||||
_dest="/home/claude/.claude/skills/$_name"
|
||||
if [ "$_enabled" = "1" ]; then
|
||||
[ -d "/opt/triple-c-skills/$_name" ] || return 0
|
||||
mkdir -p /home/claude/.claude/skills
|
||||
rm -rf "$_dest"
|
||||
cp -r "/opt/triple-c-skills/$_name" "$_dest"
|
||||
chown -R claude:claude "$_dest"
|
||||
echo "entrypoint: $_name skill installed to ~/.claude/skills/"
|
||||
elif [ -d "$_dest" ]; then
|
||||
rm -rf "$_dest"
|
||||
echo "entrypoint: $_name skill removed (feature disabled)"
|
||||
fi
|
||||
}
|
||||
|
||||
install_feature_skill pia-vpn "${VPN_SUPPORT_ENABLED:-0}"
|
||||
unset VPN_SUPPORT_ENABLED
|
||||
|
||||
# ── Claude Code settings ────────────────────────────────────────────────────
|
||||
# Merge Claude Code settings into ~/.claude/settings.json (preserves existing
|
||||
# keys). Creates the file if it doesn't exist. These control TUI mode, effort
|
||||
|
||||
@@ -0,0 +1,175 @@
|
||||
---
|
||||
name: pia-vpn
|
||||
description: Connect this container's traffic through a PIA VPN tunnel over WireGuard, or diagnose one that is not working. Use when asked to enable, route through, check, or tear down a VPN, when traffic needs to leave from a different location, or when DNS or connectivity broke after a VPN was brought up.
|
||||
---
|
||||
|
||||
# PIA VPN
|
||||
|
||||
Bring this container's traffic out through Private Internet Access over
|
||||
WireGuard, using the API PIA documents for headless use.
|
||||
|
||||
Run `sudo ~/.claude/skills/pia-vpn/pia-wg.sh` with `up`, `up --full`, `down` or
|
||||
`status`. Read the rest of this page before the first `up --full` — three of the
|
||||
behaviours below are actively misleading if you meet them without warning, and
|
||||
each one presents as "the VPN is fine" or "Claude is broken" rather than as
|
||||
what it is.
|
||||
|
||||
## Before anything else: what the toggle does not do
|
||||
|
||||
Triple-C's **VPN support** setting grants three things — `CAP_NET_ADMIN`, the
|
||||
`/dev/net/tun` device, and the `net.ipv4.conf.all.src_valid_mark` sysctl — and
|
||||
stops there. It starts no client, builds no tunnel and changes no route.
|
||||
|
||||
So "the VPN is enabled but traffic isn't going through it" is normally not a
|
||||
fault. It means the capability is present and nothing has used it yet. Check
|
||||
with `status` before assuming something is broken.
|
||||
|
||||
If the toggle is off, the script says so and names the setting. It cannot be
|
||||
turned on from inside the container; the user changes it in Config → Runtime,
|
||||
and it recreates the container on the next start (home and `.claude` volumes
|
||||
are preserved — it is not a Reset).
|
||||
|
||||
## Two modes
|
||||
|
||||
| | routes | use when |
|
||||
|---|---|---|
|
||||
| `up` | only `1.1.1.1/32` | verifying the tunnel works without disturbing anything |
|
||||
| `up --full` | all public traffic | you actually want traffic leaving via PIA |
|
||||
|
||||
Prefer `up` first. It proves the handshake, credentials and region are good
|
||||
while your own connectivity is untouched, so a failure is cheap.
|
||||
|
||||
**`up --full` routes Claude Code's own API traffic through PIA.** If the tunnel
|
||||
drops, that traffic stops until it recovers or you run `down`. Say so before
|
||||
running it — the user may be mid-session, and they will experience the failure
|
||||
as Claude going away, not as a VPN problem.
|
||||
|
||||
## Trap 1: a full tunnel takes DNS with it
|
||||
|
||||
The container resolves through an address on the Docker network — under Docker
|
||||
Desktop, `192.168.65.7` — which sits **outside** the container's own subnet. A
|
||||
default route of `0.0.0.0/0`, or the `0.0.0.0/1` + `128.0.0.0/1` pair, captures
|
||||
it and posts every lookup into a tunnel that cannot carry private traffic.
|
||||
|
||||
Nothing resolves after that. The visible symptom is Claude Code reporting it
|
||||
cannot connect, because `api.anthropic.com` no longer resolves:
|
||||
|
||||
```
|
||||
$ curl https://api.anthropic.com/v1/messages
|
||||
* Could not resolve host: api.anthropic.com (rc=6)
|
||||
```
|
||||
|
||||
`pia-wg.sh` already handles this: it routes `10.0.0.0/8`, `172.16.0.0/12`,
|
||||
`192.168.0.0/16` and `169.254.0.0/16` back via the original gateway, then pins
|
||||
PIA's own resolvers through the tunnel with `/32` routes that outrank the
|
||||
`10/8` exclusion. If you ever route traffic by hand, you owe both halves — the
|
||||
exclusions *and* a resolver reachable from wherever you pointed the default.
|
||||
|
||||
## Trap 2: an IP-literal health check cannot see a dead resolver
|
||||
|
||||
`curl https://1.1.1.1/cdn-cgi/trace` needs no DNS, so it returns a cheerful
|
||||
PIA exit address while name resolution is entirely broken. A tunnel verified
|
||||
that way looks perfect and works for nothing.
|
||||
|
||||
`status` resolves a real name for this reason. Trust its `DNS:` line, and if
|
||||
you check by hand, resolve a name rather than fetching an address.
|
||||
|
||||
## Trap 3: in test mode, the obvious probe is the one thing tunnelled
|
||||
|
||||
`up` routes `1.1.1.1` and nothing else. So checking your address by fetching
|
||||
`https://1.1.1.1/cdn-cgi/trace` reports a **PIA** address — not because your
|
||||
traffic is going through PIA, but because that single probe is. Everything else
|
||||
still leaves directly.
|
||||
|
||||
This reads exactly like a working full tunnel, and it is the likeliest reason
|
||||
someone concludes the VPN is on when it is not. `status` prints both exits in
|
||||
test mode for this reason:
|
||||
|
||||
```
|
||||
mode: test route only (1.1.1.1 through the tunnel, nothing else)
|
||||
through the tunnel: 64.113.5.73
|
||||
everything else: 172.116.197.166 <- your real address
|
||||
```
|
||||
|
||||
Two different addresses there is correct and expected in test mode. If you want
|
||||
the second line to change, you want `up --full`.
|
||||
|
||||
## Trap 4: no tunnel survives a restart, and it fails open
|
||||
|
||||
The network namespace is rebuilt every time the container starts, and nothing
|
||||
inside reconnects anything. After a stop/start, Reset or any config change that
|
||||
recreates the container, the interface and its routes are gone.
|
||||
|
||||
State under `/run/pia-wg` rides the snapshot and persists, so leftover files
|
||||
make it look as though the tunnel is still configured. It is not. Traffic goes
|
||||
out the real address with no error and nothing visibly different.
|
||||
|
||||
Never infer from `/run/pia-wg` that a tunnel is up. Run `status` — if the
|
||||
handshake line is missing, there is no tunnel. Re-run `up` after every start.
|
||||
|
||||
## Credentials
|
||||
|
||||
Two lines in `~/pia-creds` — username, then password:
|
||||
|
||||
```
|
||||
p1234567
|
||||
your-password
|
||||
```
|
||||
|
||||
Set `PIA_CREDS` to use a different path. Treat the contents as secret: never
|
||||
print the file, never echo the values, and never include them in a commit, a
|
||||
log or a message. The script reads it directly and does not echo it.
|
||||
|
||||
## Regions
|
||||
|
||||
Defaults to `us_chicago`. Override with `PIA_REGION`:
|
||||
|
||||
```bash
|
||||
sudo PIA_REGION=uk_london ~/.claude/skills/pia-vpn/pia-wg.sh up --full
|
||||
```
|
||||
|
||||
List the ids:
|
||||
|
||||
```bash
|
||||
curl -s https://serverlist.piaservers.net/vpninfo/servers/v6 \
|
||||
| head -1 | jq -r '.regions[].id'
|
||||
```
|
||||
|
||||
## Verifying
|
||||
|
||||
`status` prints the handshake, DNS, and which address traffic actually leaves
|
||||
from — labelled by mode, so the answer cannot be misread:
|
||||
|
||||
```
|
||||
latest handshake: 2 seconds ago
|
||||
transfer: 92 B received, 180 B sent
|
||||
DNS: ok (via 10.0.0.243 10.0.0.242)
|
||||
mode: full tunnel
|
||||
all traffic exits: 64.113.5.244
|
||||
```
|
||||
|
||||
All of it matters. A handshake with `DNS: BROKEN` is trap 1. `mode: test route
|
||||
only` with two different addresses is trap 3, and is correct — it means the
|
||||
tunnel works and you have not asked for it to carry anything yet. Report the
|
||||
mode line when telling someone the VPN is on; "the public IP is a PIA one" is
|
||||
true in test mode too, and means much less than it sounds like.
|
||||
|
||||
## Tearing down
|
||||
|
||||
`down` restores `resolv.conf` from its backup and removes exactly the routes
|
||||
that were added, in reverse order, then deletes the interface. It is safe to
|
||||
run when nothing is up. Confirm afterwards that the public address is back to
|
||||
the container's own.
|
||||
|
||||
## What this deliberately does not do
|
||||
|
||||
- **No killswitch.** Blocking non-tunnel egress needs `iptables`, which is not
|
||||
in the image, and would cut Claude Code's API traffic whenever the tunnel is
|
||||
down. If the user needs guaranteed egress rather than convenient egress, say
|
||||
so plainly rather than improvising one — it is a real design decision.
|
||||
- **No autostart.** There is no service manager in the container and Triple-C
|
||||
has no start hook, so nothing can re-establish the tunnel automatically.
|
||||
- **Not PIA's desktop client.** `pia-daemon` and `piactl` are installable but
|
||||
cannot work headless: the daemon never accepts a client connection without
|
||||
the GUI, and `piactl --help` states that connecting requires it. If you find
|
||||
one installed, it is not a working alternative to this script.
|
||||
@@ -0,0 +1,201 @@
|
||||
#!/usr/bin/env bash
|
||||
# PIA over WireGuard, headless.
|
||||
#
|
||||
# PIA's desktop client (pia-daemon + piactl) cannot work here: its daemon never
|
||||
# accepts a client connection without the GUI running, and `piactl --help` says
|
||||
# as much. This talks to PIA's public API directly instead, which is the path
|
||||
# PIA themselves document for headless use.
|
||||
#
|
||||
# sudo pia-wg.sh up tunnel up, only 1.1.1.1 routed through it (safe test)
|
||||
# sudo pia-wg.sh up --full tunnel up, all *public* traffic exits via PIA
|
||||
# sudo pia-wg.sh down tear down, restoring DNS and routes
|
||||
# sudo pia-wg.sh status handshake, DNS and current public IP
|
||||
#
|
||||
# Requires the project's "VPN support" setting (Config -> Runtime) to be on.
|
||||
#
|
||||
# PIA_CREDS credentials file, two lines: username, then password
|
||||
# (default ~/pia-creds; never echoed by this script)
|
||||
# PIA_REGION region id (default us_chicago). List them with:
|
||||
# curl -s https://serverlist.piaservers.net/vpninfo/servers/v6 \
|
||||
# | head -1 | jq -r '.regions[].id'
|
||||
set -euo pipefail
|
||||
|
||||
CREDS=${PIA_CREDS:-/home/claude/pia-creds}
|
||||
REGION=${PIA_REGION:-us_chicago}
|
||||
IFACE=pia0
|
||||
STATE=/run/pia-wg
|
||||
|
||||
# Kept off the tunnel in --full mode. The container's DNS resolver, the Docker
|
||||
# host network (host.docker.internal, any host-side Ollama), sibling containers
|
||||
# and the LAN all live in here. PIA cannot route any of it, so without these
|
||||
# exclusions the container reaches the public internet and nothing else --
|
||||
# including, fatally, its own resolver.
|
||||
PRIVATE_NETS="10.0.0.0/8 172.16.0.0/12 192.168.0.0/16 169.254.0.0/16"
|
||||
|
||||
# Args are joined with spaces so a long message can be written as several
|
||||
# source lines without the indentation ending up in the output.
|
||||
die() { echo "pia-wg: $*" >&2; exit 1; }
|
||||
|
||||
preflight() {
|
||||
[ "$(id -u)" = 0 ] || die "run with sudo"
|
||||
# CAP_NET_ADMIN is bit 12. Checking it by name gives a usable error; without
|
||||
# it the first `ip` call fails with a bare "Operation not permitted" that
|
||||
# points nowhere near the setting that actually needs changing.
|
||||
local caps
|
||||
caps=$(awk '/^CapEff:/{print $2}' /proc/self/status)
|
||||
if [ $(( 0x$caps & 0x1000 )) -eq 0 ]; then
|
||||
die "this container has no CAP_NET_ADMIN." \
|
||||
"Turn on \"VPN support\" in Config -> Runtime and start the project" \
|
||||
"again. That recreates the container; the home and .claude volumes" \
|
||||
"are preserved, so nothing in them is lost."
|
||||
fi
|
||||
[ -e /dev/net/tun ] || \
|
||||
die "/dev/net/tun is missing." \
|
||||
"Same fix: turn on \"VPN support\" in Config -> Runtime. If it is" \
|
||||
"already on, the Docker host's kernel is missing the tun module."
|
||||
command -v wg >/dev/null || die "wireguard-tools is not installed."
|
||||
[ -r "$CREDS" ] || \
|
||||
die "no credentials at $CREDS." \
|
||||
"Two lines are expected: username, then password." \
|
||||
"Set PIA_CREDS to read them from somewhere else."
|
||||
}
|
||||
|
||||
# Record every route we add so teardown removes exactly those and nothing else.
|
||||
add_route() { ip route add $1 2>/dev/null && echo "$1" >> "$STATE/routes" || true; }
|
||||
|
||||
up() {
|
||||
preflight
|
||||
mkdir -p "$STATE"; cd "$STATE"
|
||||
[ -f ca.rsa.4096.crt ] || curl -sf -m 20 -o ca.rsa.4096.crt \
|
||||
https://raw.githubusercontent.com/pia-foss/manual-connections/master/ca.rsa.4096.crt \
|
||||
|| die "could not fetch PIA's CA certificate"
|
||||
|
||||
local u p tok srv sip scn priv pub resp ep gw dns
|
||||
u=$(sed -n 1p "$CREDS"); p=$(sed -n 2p "$CREDS")
|
||||
tok=$(curl -sf -m 25 -u "$u:$p" \
|
||||
https://www.privateinternetaccess.com/gtoken/generateToken | jq -r .token)
|
||||
[ -n "$tok" ] && [ "$tok" != null ] || die "PIA authentication failed - check $CREDS"
|
||||
|
||||
curl -sf -m 30 https://serverlist.piaservers.net/vpninfo/servers/v6 | head -1 > servers.json
|
||||
srv=$(jq -r --arg r "$REGION" '.regions[] | select(.id==$r) | .servers.wg[0]' servers.json)
|
||||
sip=$(echo "$srv" | jq -r .ip); scn=$(echo "$srv" | jq -r .cn)
|
||||
[ -n "$sip" ] && [ "$sip" != null ] || die "no WireGuard server for region $REGION"
|
||||
|
||||
priv=$(wg genkey); pub=$(echo "$priv" | wg pubkey)
|
||||
printf '%s' "$priv" > wg.priv; chmod 600 wg.priv
|
||||
|
||||
# PIA pins its certificate to the server's common name, which is why this
|
||||
# connects by CN and lets --connect-to point that name at the real address.
|
||||
resp=$(curl -sf -m 25 -G --connect-to "$scn::$sip:" --cacert ca.rsa.4096.crt \
|
||||
--data-urlencode "pt=$tok" --data-urlencode "pubkey=$pub" \
|
||||
"https://$scn:1337/addKey")
|
||||
[ "$(echo "$resp" | jq -r .status)" = OK ] || die "key registration failed: $resp"
|
||||
|
||||
: > "$STATE/routes"
|
||||
ip link del "$IFACE" 2>/dev/null || true
|
||||
ip link add "$IFACE" type wireguard
|
||||
wg set "$IFACE" private-key wg.priv \
|
||||
peer "$(echo "$resp" | jq -r .server_key)" \
|
||||
endpoint "$(echo "$resp" | jq -r .server_ip):$(echo "$resp" | jq -r .server_port)" \
|
||||
allowed-ips 0.0.0.0/0 persistent-keepalive 25
|
||||
ip addr add "$(echo "$resp" | jq -r .peer_ip)/32" dev "$IFACE"
|
||||
ip link set "$IFACE" up
|
||||
|
||||
if [ "${1:-}" = "--full" ]; then
|
||||
# Pin the endpoint to the pre-existing gateway first, so the tunnel's own
|
||||
# packets do not try to route through the tunnel. Then beat the default
|
||||
# route with two half-routes rather than replacing it -- nothing to restore
|
||||
# on teardown, and the container keeps working if this script dies midway.
|
||||
ep=$(echo "$resp" | jq -r .server_ip)
|
||||
gw=$(ip route show default | awk '{print $3; exit}')
|
||||
add_route "$ep/32 via $gw"
|
||||
add_route "0.0.0.0/1 dev $IFACE"
|
||||
add_route "128.0.0.0/1 dev $IFACE"
|
||||
|
||||
# Keep container, host and LAN traffic off the tunnel. Longer prefixes than
|
||||
# the two halves above, so these win.
|
||||
for n in $PRIVATE_NETS; do add_route "$n via $gw"; done
|
||||
|
||||
# PIA's resolver lives inside 10/8, so pin it back through the tunnel with a
|
||||
# /32 -- longer still, so it beats the 10.0.0.0/8 exclusion just added.
|
||||
# Using PIA's resolver rather than the container's keeps DNS from leaking,
|
||||
# and the container's own resolver is unreachable from inside the tunnel.
|
||||
dns=$(echo "$resp" | jq -r '.dns_servers[]? // empty' | head -2)
|
||||
if [ -n "$dns" ]; then
|
||||
cp /etc/resolv.conf "$STATE/resolv.conf.bak"
|
||||
for d in $dns; do add_route "$d/32 dev $IFACE"; done
|
||||
# resolv.conf is a bind mount: write through it, never replace it.
|
||||
for d in $dns; do echo "nameserver $d"; done > /etc/resolv.conf
|
||||
else
|
||||
echo "pia-wg: warning - PIA returned no DNS servers; leaving resolv.conf alone" >&2
|
||||
fi
|
||||
echo "full tunnel: public traffic exits via PIA; private ranges stay local"
|
||||
else
|
||||
add_route "1.1.1.1/32 dev $IFACE"
|
||||
echo "test route only: 1.1.1.1 goes via PIA, everything else unchanged"
|
||||
fi
|
||||
|
||||
sleep 2
|
||||
status
|
||||
}
|
||||
|
||||
down() {
|
||||
[ "$(id -u)" = 0 ] || die "run with sudo"
|
||||
if [ -f "$STATE/resolv.conf.bak" ]; then
|
||||
cat "$STATE/resolv.conf.bak" > /etc/resolv.conf
|
||||
rm -f "$STATE/resolv.conf.bak"
|
||||
fi
|
||||
if [ -f "$STATE/routes" ]; then
|
||||
# Reverse order: the specific overrides go before the ranges they sit in.
|
||||
tac "$STATE/routes" | while read -r r; do
|
||||
[ -n "$r" ] && ip route del $r 2>/dev/null || true
|
||||
done
|
||||
rm -f "$STATE/routes"
|
||||
fi
|
||||
ip link del "$IFACE" 2>/dev/null || true
|
||||
echo "tunnel down"
|
||||
}
|
||||
|
||||
# Both are Cloudflare and both answer /cdn-cgi/trace over their bare address, so
|
||||
# neither needs DNS. Only 1.1.1.1 is ever routed into the tunnel, which is what
|
||||
# lets status tell the two exits apart.
|
||||
TRACE_TUNNELLED=https://1.1.1.1/cdn-cgi/trace
|
||||
TRACE_DIRECT=https://1.0.0.1/cdn-cgi/trace
|
||||
|
||||
exit_ip() { curl -s -m 20 "$1" | sed -n 's/^ip=//p'; }
|
||||
|
||||
status() {
|
||||
wg show "$IFACE" 2>/dev/null | grep -E "latest handshake|transfer" || echo "no tunnel up"
|
||||
|
||||
# Resolve a name, not an IP literal. A curl to 1.1.1.1 succeeds while DNS is
|
||||
# completely broken, which is exactly how a dead resolver goes unnoticed.
|
||||
printf 'DNS: '
|
||||
if timeout 10 getent hosts api.anthropic.com >/dev/null 2>&1; then
|
||||
echo "ok (via $(sed -n 's/^nameserver //p' /etc/resolv.conf | tr '\n' ' '))"
|
||||
else
|
||||
echo "BROKEN - cannot resolve api.anthropic.com"
|
||||
fi
|
||||
|
||||
# Report the exit per mode. In test mode the probe address is itself the one
|
||||
# thing inside the tunnel, so a single "public IP" line would print a PIA
|
||||
# address while every other packet leaves directly -- the exact reading that
|
||||
# makes a test tunnel look like a full one.
|
||||
if ip route show 0.0.0.0/1 2>/dev/null | grep -q "$IFACE"; then
|
||||
echo "mode: full tunnel"
|
||||
echo " all traffic exits: $(exit_ip "$TRACE_TUNNELLED")"
|
||||
elif ip link show "$IFACE" >/dev/null 2>&1; then
|
||||
echo "mode: test route only (1.1.1.1 through the tunnel, nothing else)"
|
||||
echo " through the tunnel: $(exit_ip "$TRACE_TUNNELLED")"
|
||||
echo " everything else: $(exit_ip "$TRACE_DIRECT") <- your real address"
|
||||
else
|
||||
echo "mode: no tunnel"
|
||||
echo " all traffic exits: $(exit_ip "$TRACE_DIRECT")"
|
||||
fi
|
||||
}
|
||||
|
||||
case "${1:-}" in
|
||||
up) shift; up "${1:-}" ;;
|
||||
down) down ;;
|
||||
status) status ;;
|
||||
*) sed -n '2,20p' "$0" | sed 's/^# \{0,1\}//'; exit 1 ;;
|
||||
esac
|
||||
Reference in New Issue
Block a user