P6: strict seccomp allowlist + K8s sandbox driver proven on kind
- images/seccomp/agent-profile.json is now a TRUE ALLOWLIST: Docker's default profile (vendored from moby v27.5.1, defaultAction ERRNO) with 18 syscalls an agent never needs stripped from the allow groups (unshare, ptrace, bpf, mount family, setns, module loading, perf_event_open, process_vm_*, reboot, quotactl, ...); arch map trimmed to x86_64 + aarch64. All 6 Docker kernel assertions still green. - K8sDriver (tc-sandbox feature 'k8s', kube-rs): one hardened pod per sandbox — runAsUser 10001, cap-drop ALL, no-new-privs via allowPrivilegeEscalation=false, RuntimeDefault seccomp, read-only rootfs with emptyDir /tmp + /home/agent, resource limits, no service account token — in a PSS-restricted namespace carrying a default-deny NetworkPolicy (applied server-side apply, idempotent). Exec via the API server attach channel with exit codes parsed from v1.Status. - Live suite (feature 'k8s-tests') against a REAL kind cluster: uid / CapEff==0 / NoNewPrivs / rootfs probes from inside pods, PSS label + deny-all policy asserted via the API, lifecycle. Honest limits in the rustdoc: Localhost seccomp profile and CNI-enforced egress are per-cluster provisioning (kindnet does not enforce NetworkPolicy). - rustls 0.23 process provider pinned to ring at driver connect. - CI: dedicated sandbox-k8s job (helm/kind-action) running the suite. 149 Rust tests + 3 live kind tests; clippy clean including the k8s feature. Co-Authored-By: Claude Fable 5 <[email protected]>
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co-authored by
Claude Fable 5
parent
70ec39f696
commit
84c51168be
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//! The K8s sandbox driver against a REAL kind cluster: the same kernel
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//! probes as the Docker suite (uid, capabilities, no-new-privs, rootfs),
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//! plus namespace policy objects. Run with `--features k8s-tests` after
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//! `kind create cluster --name teamclaw-test` and a `kind load` of the
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//! agent image (the harness does both image steps itself).
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#![cfg(feature = "k8s-tests")]
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use std::process::Command;
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use tc_sandbox::{K8sDriver, SandboxDriver, SandboxSpec};
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const IMAGE: &str = "teamclaw/agent-base:dev";
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const CLUSTER: &str = "teamclaw-test";
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const NAMESPACE: &str = "teamclaw-sandboxes-test";
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fn ensure_image_in_kind() {
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let exists = Command::new("docker")
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.args(["image", "inspect", IMAGE])
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.output()
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.expect("docker available")
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.status
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.success();
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if !exists {
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let root = env!("CARGO_MANIFEST_DIR");
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let status = Command::new("docker")
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.args([
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"build",
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"-t",
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IMAGE,
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"-f",
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&format!("{root}/../../images/agent-base/Dockerfile"),
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&format!("{root}/../../images/agent-base"),
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])
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.status()
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.expect("docker build runs");
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assert!(status.success(), "agent-base image build failed");
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}
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let status = Command::new("kind")
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.args(["load", "docker-image", IMAGE, "--name", CLUSTER])
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.status()
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.expect("kind available");
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assert!(status.success(), "kind load failed");
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}
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async fn spawn(suffix: &str) -> (K8sDriver, tc_sandbox::SandboxHandle) {
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ensure_image_in_kind();
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let driver = K8sDriver::connect(NAMESPACE)
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.await
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.expect("cluster reachable");
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let spec = SandboxSpec {
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name: format!("tc-k8s-{suffix}-{}", std::process::id()),
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image: IMAGE.into(),
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memory_bytes: 256 * 1024 * 1024,
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nano_cpus: 1_000_000_000,
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pids_limit: 128,
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};
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let handle = driver.provision(&spec).await.expect("pod provisions");
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(driver, handle)
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}
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#[tokio::test]
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async fn pod_runs_hardened_with_writable_scratch_only() {
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let (driver, handle) = spawn("hard").await;
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let uid = driver.exec(&handle, &["id", "-u"]).await.unwrap();
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assert_eq!(uid.stdout.trim(), "10001", "stderr: {}", uid.stderr);
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let caps = driver
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.exec(&handle, &["grep", "CapEff", "/proc/self/status"])
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.await
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.unwrap();
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let value = caps.stdout.split_whitespace().last().unwrap_or("");
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assert_eq!(u64::from_str_radix(value, 16).unwrap(), 0);
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let nnp = driver
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.exec(&handle, &["grep", "NoNewPrivs", "/proc/self/status"])
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.await
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.unwrap();
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assert!(nnp.stdout.trim().ends_with('1'), "got: {}", nnp.stdout);
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let write_root = driver
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.exec(&handle, &["touch", "/etc/owned"])
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.await
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.unwrap();
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assert_ne!(write_root.exit_code, 0, "rootfs must reject writes");
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let write_tmp = driver
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.exec(&handle, &["touch", "/tmp/scratch"])
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.await
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.unwrap();
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assert_eq!(write_tmp.exit_code, 0, "stderr: {}", write_tmp.stderr);
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let write_home = driver
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.exec(&handle, &["touch", "/home/agent/file"])
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.await
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.unwrap();
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assert_eq!(write_home.exit_code, 0, "stderr: {}", write_home.stderr);
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driver.destroy(&handle).await.unwrap();
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}
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#[tokio::test]
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async fn namespace_carries_pss_restricted_and_default_deny_policy() {
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let (driver, handle) = spawn("policy").await;
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// Assert through the API: PSS label + the deny-all NetworkPolicy.
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// (Kernel-level egress enforcement needs a NetworkPolicy-capable CNI;
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// kind's default kindnet does not enforce — production clusters do.)
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let client = kube::Client::try_default().await.unwrap();
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let namespaces: kube::Api<k8s_openapi::api::core::v1::Namespace> =
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kube::Api::all(client.clone());
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let ns = namespaces.get(NAMESPACE).await.unwrap();
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assert_eq!(
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ns.metadata
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.labels
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.unwrap()
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.get("pod-security.kubernetes.io/enforce")
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.map(String::as_str),
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Some("restricted")
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);
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let policies: kube::Api<k8s_openapi::api::networking::v1::NetworkPolicy> =
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kube::Api::namespaced(client, NAMESPACE);
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let deny = policies.get("sandbox-default-deny").await.unwrap();
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let spec = deny.spec.unwrap();
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assert_eq!(
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spec.policy_types.unwrap(),
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vec!["Ingress".to_owned(), "Egress".to_owned()]
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);
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assert!(spec.ingress.is_none() && spec.egress.is_none(), "deny-all");
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driver.destroy(&handle).await.unwrap();
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}
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#[tokio::test]
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async fn destroy_removes_the_pod_and_health_reflects_it() {
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let (driver, handle) = spawn("life").await;
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assert!(driver.health(&handle).await.unwrap());
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driver.destroy(&handle).await.unwrap();
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for _ in 0..60 {
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if !driver.health(&handle).await.unwrap() {
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return;
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}
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tokio::time::sleep(std::time::Duration::from_millis(500)).await;
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}
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panic!("pod never disappeared");
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}
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