agentbbs/internal/pods/pods.go
Anthony Ettinger 4be87440d5 tor: premium tor-url / tor-irc / tor routes over Tor
Add three premium-gated SSH routes:
  ssh tor-url@host <url>        one-shot HTTP(S) GET over Tor (host-side,
                               curl via SOCKS, 30s/2MB caps, http/https only)
  ssh -t tor-irc@host <server>  interactive IRC over Tor in the member's pod
  ssh -t tor@host <command...>  run any command over Tor (torsocks) in the pod

tor-url runs host-side and constrained; tor/tor-irc run inside the member's
isolated pod (new pods.Exec) so arbitrary/interactive commands are sandboxed,
never on the host. internal/tor wraps curl/torsocks/irssi. All gated by
ensurePremium; names reserved. setup.sh installs + enables tor (SOCKS
127.0.0.1:9050) and torsocks.

Note: tor-url is host-side and self-contained. tor/tor-irc still need the pod
image to carry torsocks+irssi and reach the Tor SOCKS — follow-up.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-14 10:54:21 +00:00

211 lines
6.4 KiB
Go

// Package pods gives paid members a personal Linux container over SSH
// (`ssh pod@host`) — "run shit in a docker-like" without root on the host.
//
// Engine preference: rootless Podman (daemonless; container root maps to an
// unprivileged host uid via user namespaces), falling back to Docker with a
// hardened profile (cap-drop ALL, no-new-privileges, non-root user, cpu/mem/
// pids caps). Either way the SSH user never touches the host OS.
package pods
import (
"fmt"
"io"
"os"
"os/exec"
"regexp"
"strings"
"sync"
"github.com/charmbracelet/ssh"
"github.com/creack/pty"
)
// Manager provisions and attaches per-user pods.
type Manager struct {
engine string // "podman" or "docker"
image string
mu sync.Mutex
attached map[string]int // container name -> live session count
}
// Detect picks the best available engine. Returns an error if neither
// podman nor docker is present.
func Detect() (*Manager, error) {
image := os.Getenv("AGENTBBS_POD_IMAGE")
if image == "" {
image = "debian:stable-slim"
}
for _, eng := range []string{"podman", "docker"} {
if _, err := exec.LookPath(eng); err == nil {
return &Manager{engine: eng, image: image, attached: map[string]int{}}, nil
}
}
return nil, fmt.Errorf("pods: neither podman nor docker found")
}
// Engine reports the active container engine.
func (m *Manager) Engine() string { return m.engine }
var unsafeName = regexp.MustCompile(`[^a-zA-Z0-9_.-]`)
func (m *Manager) containerName(user string) string {
return "agentbbs-pod-" + unsafeName.ReplaceAllString(strings.ToLower(user), "-")
}
// ensure creates (or starts) the user's container and returns its name.
func (m *Manager) ensure(user string) (string, error) {
name := m.containerName(user)
if m.engine == "docker" {
// Under docker the pod runs as uid 1000 (never container root), so
// the named home volume must be owned by 1000. A trusted one-shot
// init container enforces that on every ensure — volumes can predate
// the container or survive recreation. Rootless podman doesn't need
// this: container root maps to the unprivileged host user.
init := exec.Command(m.engine, "run", "--rm",
"-v", name+"-home:/home/dev", m.image,
"sh", "-c", "chown 1000:1000 /home/dev")
if out, err := init.CombinedOutput(); err != nil {
return "", fmt.Errorf("pods: volume init failed: %v: %s", err, strings.TrimSpace(string(out)))
}
}
// Already exists?
if err := exec.Command(m.engine, "container", "inspect", name).Run(); err == nil {
_ = exec.Command(m.engine, "start", name).Run() // no-op if running
return name, nil
}
args := []string{
"run", "-d",
"--name", name,
"--hostname", "pod-" + unsafeName.ReplaceAllString(user, "-"),
"--memory", env("AGENTBBS_POD_MEM", "512m"),
"--cpus", env("AGENTBBS_POD_CPUS", "1"),
"--pids-limit", "256",
"--cap-drop", "ALL",
"--security-opt", "no-new-privileges",
"--restart", "unless-stopped",
"-v", name + "-home:/home/dev",
"-w", "/home/dev",
"-e", "HOME=/home/dev",
}
if m.engine == "docker" {
// Rootless podman user-ns maps container root safely; under docker,
// refuse to hand out container root at all.
args = append(args, "--user", "1000:1000")
}
args = append(args, m.image, "sleep", "infinity")
out, err := exec.Command(m.engine, args...).CombinedOutput()
if err != nil {
return "", fmt.Errorf("pods: create failed: %v: %s", err, strings.TrimSpace(string(out)))
}
return name, nil
}
// Attach provisions the pod and wires the SSH session to a shell inside it.
// Blocks until the shell exits or the session closes.
func (m *Manager) Attach(s ssh.Session, user string) error {
ptyReq, winCh, hasPty := s.Pty()
if !hasPty {
return fmt.Errorf("pods: a PTY is required (ssh -t)")
}
name, err := m.ensure(user)
if err != nil {
return err
}
shell := env("AGENTBBS_POD_SHELL", "/bin/bash")
cmd := exec.Command(m.engine, "exec", "-it",
"-e", "TERM="+ptyReq.Term,
name, shell, "-l")
f, err := pty.Start(cmd)
if err != nil {
// busybox-ish images may lack bash
cmd = exec.Command(m.engine, "exec", "-it", "-e", "TERM="+ptyReq.Term, name, "/bin/sh", "-l")
f, err = pty.Start(cmd)
if err != nil {
return fmt.Errorf("pods: attach failed: %w", err)
}
}
defer f.Close()
m.ref(name, +1)
defer m.deref(name)
_ = pty.Setsize(f, &pty.Winsize{Rows: uint16(ptyReq.Window.Height), Cols: uint16(ptyReq.Window.Width)})
go func() {
for w := range winCh {
_ = pty.Setsize(f, &pty.Winsize{Rows: uint16(w.Height), Cols: uint16(w.Width)})
}
}()
go func() { _, _ = io.Copy(f, s) }() // ssh -> pod
_, _ = io.Copy(s, f) // pod -> ssh
_ = cmd.Wait()
return nil
}
// Exec provisions the user's pod and runs argv inside it wired to the SSH
// session (PTY required). Used for tor@/tor-irc@ so arbitrary or interactive
// commands run sandboxed in the member's container, never on the host. Blocks
// until the command exits or the session closes.
func (m *Manager) Exec(s ssh.Session, user string, argv []string) error {
if len(argv) == 0 {
return fmt.Errorf("pods: no command given")
}
ptyReq, winCh, hasPty := s.Pty()
if !hasPty {
return fmt.Errorf("pods: a PTY is required (ssh -t)")
}
name, err := m.ensure(user)
if err != nil {
return err
}
args := append([]string{"exec", "-it", "-e", "TERM=" + ptyReq.Term, name}, argv...)
cmd := exec.Command(m.engine, args...)
f, err := pty.Start(cmd)
if err != nil {
return fmt.Errorf("pods: exec failed: %w", err)
}
defer f.Close()
m.ref(name, +1)
defer m.deref(name)
_ = pty.Setsize(f, &pty.Winsize{Rows: uint16(ptyReq.Window.Height), Cols: uint16(ptyReq.Window.Width)})
go func() {
for w := range winCh {
_ = pty.Setsize(f, &pty.Winsize{Rows: uint16(w.Height), Cols: uint16(w.Width)})
}
}()
go func() { _, _ = io.Copy(f, s) }() // ssh -> pod
_, _ = io.Copy(s, f) // pod -> ssh
_ = cmd.Wait()
return nil
}
func (m *Manager) ref(name string, d int) {
m.mu.Lock()
defer m.mu.Unlock()
m.attached[name] += d
}
// deref stops the container shortly after the last session detaches, unless
// AGENTBBS_POD_KEEP=1 keeps pods running between visits.
func (m *Manager) deref(name string) {
m.mu.Lock()
m.attached[name]--
last := m.attached[name] <= 0
m.mu.Unlock()
if last && os.Getenv("AGENTBBS_POD_KEEP") != "1" {
go func() { _ = exec.Command(m.engine, "stop", "-t", "2", name).Run() }()
}
}
func env(k, def string) string {
if v := os.Getenv(k); v != "" {
return v
}
return def
}