# 2026-07-10 — General gated execution: from fixed actions to unlimited-but-gated **Status:** Planned ## Goal Make Nomos able to do **anything** needed to maintain the homelab — provision LXCs, deploy services, debug, restart, fix configs, investigate — without that capability being a fixed enum of hand-coded actions. The action space is unlimited; the *gate* on it is a risk classifier + operator approval, not a whitelist of tricks. Knowledge (the graph + runbooks) supplies the *how*; the agent's reasoning supplies the *what*; the classifier supplies the *may I*. Operator directive (2026-07-10): **"The number of actions the agent should be able to do is unlimited. We need logic to gate destructive actions, but we should not limit what the agent can do."** Chosen autonomy posture for v1: **approve-most (cautious)** — only genuinely read-only commands auto-run; anything that changes state requires operator approval. We can relax later once the classifier and ledger have earned trust. ## This is a realignment, not a new idea [.agents/OIKOS.md](../.agents/OIKOS.md) already specifies this exact model: > The classifier scores **risk class × blast radius × confidence** and routes: > auto-act / escalate / queue. The classifier can only *lower* autonomy relative > to policy, never raise it. When in doubt, escalate. > Act — execute through `homelab` commands or **runbooks** (never ad-hoc SSH). So the target architecture is the *documented* architecture. The problem is the implementation diverged from it on the agent's action path. ## Gap analysis (grounded in code) | Designed (OIKOS.md) | Actually implemented today | |---|---| | Classifier routes every action by risk × blast × confidence | [`internal/policy/classify.go`](../internal/policy/classify.go) `ClassifySignal()` only classifies **Signals** (the Observe pipeline), by entity+action-type. It is **not** called by the agent's mutation path. | | Agent acts through unlimited **runbooks** | Agent acts through `request_execution` with a **hard-coded enum**: `restart, systemctl, pct_exec, apt_upgrade, pct_create` ([`internal/mcp/server.go`](../internal/mcp/server.go)), each bespoke Go, gated by per-action `if`s, not the classifier. New capability = new Go + redeploy. | | Runbooks/skills are executable data | `skills` table + `.agents/skills/*` + `knowledge_entities` exist and are *readable* (`get_skills`), but **nothing executes a runbook**. The knowledge is inert w.r.t. action. | | Auto-act loop consumes classified signals and acts | [`internal/actuator/actuator.go:124`](../internal/actuator/actuator.go) is a literal `"stub execution"` — it marks work done without doing it. | | "Never ad-hoc SSH" | `pct_exec` **is** ad-hoc SSH (arbitrary shell in a container) and **auto-runs with no approval or classification**. | Net: the elegant model exists as scaffolding (classifier, policy schema, risk classes, blast-radius graph walks, skills-as-data, ledger, and the approval+feedback plumbing hardened in the 2026-07-09/10 sessions), but the live agent→action path is a bag of tricks that bypasses all of it. Everything added in the recent LXC-deploy work (`pct_create` + DNS/VMID/template logic) made the bag *bigger* — reliable, but on the wrong axis. **Bones that already exist and get reused:** `internal/policy` (classifier + `computeBlastRadius`/`blast_radius()` SQL), `risk_classes`/`action_risk` tables, `seeds/policy.yaml`, `executions`/`approvals`/`audit_log`, the MCP SSH machinery, and the inline approval + execution-status feedback loop (chat polls `GET /executions/{id}`). ## Target architecture — three layers ### Layer 0 — one general gated primitive (the foundation) Collapse the fixed enum into essentially one tool: ``` run(target, command, purpose, [declared_risk]) ``` - `target` — any host or LXC slug; resolves to SSH (host) or `pct exec` (LXC). - `command` — arbitrary shell. - `purpose` — the agent's stated intent (shown to the operator, feeds classify). - `declared_risk` — optional agent self-assessment. Every call flows through: 1. **Classify** the command → `read_only | reversible_low | config_mutation | destructive`. Rule-based: - read-only **allowlist** (e.g. leading verb in `cat, ls, stat, journalctl, systemctl status|is-active, pct config|status, df, free, uptime, ip, ss, docker ps|logs, git status|log`) → `read_only`; - destructive **denylist** (`rm -rf`, `dd`, `mkfs`, `wipefs`, `pct destroy`, `qm destroy`, `shutdown`, `reboot`, `> /dev/`, `:(){ :|:& };:`, secret exfiltration, piping remote scripts to a root shell) → `destructive`; - anything writing state / installing / editing configs → `config_mutation`; - **default → escalate** (`config_mutation`) when unsure. The classifier may only make `declared_risk` **stricter**, never looser (mirrors "can only lower autonomy, never raise"). 2. **Route** (approve-most posture): - `read_only` → auto-run + ledger, no approval. - `reversible_low` / `config_mutation` → **operator approval** (v1 gates all state changes; a later posture can auto-run `reversible_low`). - `destructive` → approval **+ typed confirmation phrase**. 3. **Execute** (existing SSH/`pct exec`), **verify** (optional check command), **ledger** (`executions` + `audit_log`), **stream feedback to chat** (reuse the `GET /executions/{id}` polling + `InlineApproval` phases already built). Layer 0 alone delivers "the agent can attempt anything; state changes are gated." ### Layer 1 — runbooks as executable data (reliability without rigidity) The hard-won procedures become **runbooks in the knowledge DB**, retrieved and executed step-by-step via Layer 0 — not frozen Go: - `pct_create` + its DNS-self-heal / VMID-collision / template-resolution / locale logic becomes the canonical **"provision LXC" runbook** (parametric steps the agent fills in and runs through `run`). The reliability survives as documented, reusable steps rather than a compiled handler. - New capability = **new runbook (data)**, no redeploy. - Keep a *small* set of mechanical helpers where a shell step is genuinely fiddly (e.g. "pick a free cluster VMID"), exposed as callable sub-tools — but the flow is agent-driven, not enum-driven. This is the crucial **both/and**: the general primitive is the unlimited escape hatch; curated runbooks are the reliable fast-path so the agent doesn't re-derive DNS/VMID/docker every time (the exact thing that failed repeatedly in the 2026-07-09 sessions). ### Layer 2 — learning closes the loop Successful ad-hoc `run` sequences get promoted into runbooks/patterns (the `learning` engine + `skills` table already exist for this); the failure ledger informs retries. The system grows more capable **as data**, not as code. ## Safety model (the whole point of the gate) - **Default-escalate.** Nothing is *forbidden*; risky things need the operator's "yes." Unknown/unparseable risk → approval. - **Hard denylist** for catastrophic patterns → always typed confirmation, even if the agent declared them safe. - **Blast radius at approval time** — graph walk (`blast_radius()` exists): "this restarts caddy → 8 downstream services." - **Preview / dry-run** where the command supports it. - **Kill-switch** (`global.auto_act`, per-target `never_auto_act.*`) already exists; extend to a global "require approval for everything" flip. - **Full audit ledger** — every command, its classification, decision, actor, output. Non-negotiable. - **Scope guards** — resolve `target` to a real entity first; refuse commands against `destroyed`/unknown targets; cap output size (already done). ## Honest risks / tradeoffs - Trades a small vetted surface (5 actions) for arbitrary root across the fleet, LLM-driven, gated only by classifier + approval. Classifying arbitrary shell perfectly is impossible; **default-escalate + hard denylist + always-on audit** is the mitigation, not perfect classification. - Approve-most means more operator clicks initially. Acceptable while trust is built; the posture is a config knob, not a rewrite. - Runbook-as-data can drift from reality like any doc; the ledger + verify step + learning loop are the correction mechanism. ## Migration path (incremental, each step shippable) 1. **Command classifier** — extend `internal/policy` with `ClassifyCommand(cmd, declaredRisk) → riskClass` (allowlist/denylist/default- escalate + can-only-escalate rule). Unit-tested against a corpus of safe / mutating / catastrophic commands. 2. **`run` tool** — new MCP tool routing classify → gate → execute → the existing feedback path. Ship alongside the current tools (no removal yet). 3. **Approval context** — surface risk class + blast radius + purpose on the approval (chat `InlineApproval` + Ops page); typed-confirmation for destructive. 4. **Runbook execution** — a "provision LXC" runbook (ports the current `pct_create` logic) executed via `run`; validate parity with today's handler. 5. **Retire the enum** — convert remaining hard-coded actions to runbooks; make `request_execution` a thin deprecated alias or remove it. 6. **Revive auto-act** — replace the actuator stub, reusing the *same* classifier for the Observe→Act direction (signals), still approve-most. ## Verification - Classifier corpus test: read-only commands auto-pass; a set of known catastrophic commands always route to destructive+confirmation; ambiguous commands escalate. No command auto-runs that mutates state. - End-to-end: operator asks Nomos a novel task **not** in the old enum (e.g. "tail caddy's error log and restart it if it's flapping"); Nomos composes `run` calls; read-only steps auto-run, the restart gates for approval; chat shows live status; ledger records each command + classification. - Parity: "provision an LXC with a service" via the runbook path matches the reliability proven for the `pct_create` handler (free VMID, DNS, install, verify), then destroy. ## Open questions for the operator - **Reversible-low posture:** keep gating restarts/syncs in v1 (chosen), or auto-run them once the classifier is trusted? - **Confirmation phrase:** per-action typed phrase for destructive, or a global one? - **Runbook authorship:** operator-authored only, or may Nomos propose new runbooks (subject to approval) from successful ad-hoc sequences? - **Blast-radius threshold:** should a large blast radius force approval even for otherwise-reversible actions?