CP1.1: Control Plane SoT closure - reader, tests, deploy script, ops contract
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red-queen-architecture/control-plane/README.md
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red-queen-architecture/control-plane/README.md
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# PRE_HERMES Control Plane — Betriebsvertrag (CP1)
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Autoritative SoT für die produktive PRE_HERMES Autonomy Control Plane.
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Dieses Verzeichnis ist die **einzige** Quelle für den produktiven Control-Plane-Code.
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Produktiver Deploy-Pfad: `red-queen-architecture/control-plane/` → `/opt/control-plane/`.
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## 1. Zweck
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Minimale, fail-closed Sicherheitsgrundlage für zukünftige Red-Queen/Hermes-Autonomie.
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**CP1 ist KEINE Autonomie-Aktivierung.** Nach CP1 ist das System mindestens so restriktiv wie vorher.
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## 2. Komponenten
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| Datei | Zweck |
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|---|---|
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| `control_reader.py` | Fail-closed, deterministischer Control-State-Reader (produktiver Code) |
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| `test_control_reader.py` | Statische + adversariale Tests (A–J, 25 Fälle) |
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| `deploy_control_plane.sh` | Reproduzierbarer Deployment-Pfad (root, idempotent) |
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| `README.md` | Dieser Betriebsvertrag |
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## 3. Control State (Source of Truth)
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Produktiver Pfad: `/opt/control-plane/state/` (root:root, 0700, Dateien 0600).
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| Datei | Typ | Erlaubte RAW-Werte |
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|---|---|---|
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| `global_autonomy` | positiv | `ON` / `OFF` (+ `boot_id=`) |
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| `productive_mutations` | positiv | `ON` / `OFF` (+ `boot_id=`) |
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| `save_execution` | positiv | `ON` / `OFF` (+ `boot_id=`) |
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| `delete_execution` | positiv | `ON` / `OFF` (+ `boot_id=`) |
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| `trading_execution` | positiv | `ON` / `OFF` (+ `boot_id=`) |
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| `emergency_stop` | negativ | `ON` / `OFF` |
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**Positives ON-Grant-Format:**
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```
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ON
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boot_id=<current_kernel_boot_id>
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```
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## 4. Gate-Semantik (fail-closed)
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- **Positives Gate:** `EFFECTIVE=ON` nur wenn `RAW==ON` UND `grant_boot_id == current_boot_id` UND `EMERGENCY_EFFECTIVE==OFF`. Sonst `OFF`.
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- **Emergency Stop (negativ):** `EFFECTIVE=ON` wenn `RAW==ON` ODER Datei fehlt ODER malformed. `OFF` nur bei explizitem `RAW==OFF`.
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- **UNKNOWN = MORE RESTRICTIVE.** Fehlende/unlesbare/malformed Datei → positives Gate `OFF`, Emergency `ON`.
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- **Hierarchie:** `SAVE/DELETE/TRADING_EFFECTIVE` benötigen `GLOBAL_AUTONOMY_EFFECTIVE==ON` UND `MUTATIONS_EFFECTIVE==ON` UND eigenen Grant gültig UND `EMERGENCY_EFFECTIVE==OFF`. Kein spezifischer Execution-Switch umgeht den globalen Mutation-Gate.
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## 5. Boot-ID-Validierung
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- Quelle: `/proc/sys/kernel/random/boot_id` (Kernel-Boot-ID, ändert sich bei jedem Host-Boot).
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- Positiver Grant ist nur gültig, wenn `grant_boot_id == current_boot_id`.
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- `missing boot_id` → `EFFECTIVE=OFF`. `malformed boot_id` → `EFFECTIVE=OFF`.
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- **Keine manuell gepflegte Epoch, kein persistenter Alt-Grant.**
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## 6. Restart-Semantik (korrekt dokumentiert)
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- **HOST REBOOT:** `current_boot_id` ändert sich → alle alten positiven Grants ungültig → `EFFECTIVE=OFF`. Operator muss erneut autorisieren.
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- **CONTAINER RESTART OHNE HOST REBOOT:** `current_boot_id` bleibt gleich → ein gültiger positiver Grant kann weiterhin gültig bleiben (kein neuer Boot, keine neue Autorisierung nötig).
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- **Negative/Deny-States** (`emergency_stop=ON`, `*_execution=OFF`) persistieren über Restart hinweg (fail-closed).
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## 7. Status Projection Contract
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- Produktiver Pfad: `/opt/control-plane/status/latest.txt` (root:root, 0444, read-only).
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- **STATUS PROJECTION != AUTHORITY.**
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- **Authority ist ausschließlich:** Control State + aktuelle Kernel-Boot-ID + fail-closed effective-state evaluation.
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- `latest.txt` dient **ausschließlich der Observability**.
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- Wenn die Projection fehlt/stale/malformed ist, darf das **niemals eine positive Freigabe erzeugen** (die Authority-Evaluation ist davon unabhängig).
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## 8. Ownership / Permissions
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- Control State: root:root, 0700 (dir), 0600 (Dateien).
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- Status Projection: root:root, 0444.
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- Audit: root:root, `chattr +a` (append-only).
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- **Red Queen:** kein Host-Root, kein Docker-Socket, kein Schreibzugriff auf `/opt/control-plane`. RQ kann State nicht lesen (0700) und nicht schreiben. RQ erhält später nur read-only Status-Projection (Observability).
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## 9. Audit-Foundation
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- Pfad: `/opt/control-plane/audit/control_audit.log` (root:root, append-only `+a`).
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- Format: `WHEN | WHO | WHAT | OLD | NEW | WHY | BOOT_ID`.
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- RQ kann Audit nicht überschreiben (root-owned, append-only).
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## 10. Deployment (reproduzierbar)
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```bash
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# Als root auf dem Host, aus frischem Forgejo-Checkout:
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cd red-queen-architecture/control-plane
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./deploy_control_plane.sh
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```
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- Reproduziert ausschließlich die CP1-Artefakte.
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- **Überschreibt KEINE bestehenden State-Dateien** (Runtime-State bleibt unangetastet).
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- Rollback: `rm -rf /opt/control-plane`.
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## 11. NICHT in Git
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- Aktuelle produktive State-Werte als Authority (State ist Runtime, nicht SoT).
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- Aktuelle `boot_id` als persistente Authority.
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- Secrets, Tokens, private Keys.
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- Runtime Audit Log.
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## 12. Sicherheitszustand (CP1 initial)
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```
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GLOBAL_AUTONOMY_EFFECTIVE=OFF
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MUTATIONS_EFFECTIVE=OFF
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SAVE_EFFECTIVE=OFF
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DELETE_EFFECTIVE=OFF
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TRADING_EFFECTIVE=OFF
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EMERGENCY_EFFECTIVE=ON
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A2-A5=NOT_PRESENT HEARTBEAT=NOT_PRESENT SCHEDULER=NOT_PRESENT
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AUTH.4D=FROZEN P15=FALSE DELETE_CANARY=FALSE
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TRADING_ENABLED=false
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```
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red-queen-architecture/control-plane/control_reader.py
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red-queen-architecture/control-plane/control_reader.py
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#!/usr/bin/env python3
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"""
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PRE_HERMES Control Plane — CP1 fail-closed Control-State Reader.
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Deterministischer, minimaler Reader. KEINE generische Config-Engine.
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Erlaubte Werte strikt definiert: "ON" | "OFF".
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Fail-closed Invarianten:
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- positive Enable-Gate: RAW != "ON" ODER fehlend/malformed/epoch-invalid -> EFFECTIVE=OFF
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- Emergency Stop (negativ): RAW == "ON" ODER fehlend/malformed -> EFFECTIVE=ON (restriktiver)
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- UNKNOWN = MORE RESTRICTIVE (niemals weniger restriktiv)
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Boot-Binding:
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- Positive ON-Grants tragen ein boot_id-Feld (eigene Zeile "boot_id=<id>").
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- Grant ist nur gültig, wenn grant_boot_id == current_boot_id.
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- Boot-ID-Quelle: /proc/sys/kernel/random/boot_id (Kernel-Boot-ID).
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CP1: KEINE zeitabhängigen Leases. Boot-Binding genügt.
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"""
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import os
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import sys
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import time
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from datetime import datetime, timezone
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# Konfiguration
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STATE_DIR = os.environ.get("C5_CONTROL_STATE_DIR", "/opt/control-plane/state")
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BOOT_ID_FILE = os.environ.get("C5_BOOT_ID_FILE", "/proc/sys/kernel/random/boot_id")
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# Erlaubte RAW-Werte
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ON = "ON"
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OFF = "OFF"
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_ALLOWED = {ON, OFF}
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# Die sechs Controls
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POSITIVE_GATES = (
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"global_autonomy",
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"productive_mutations",
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"save_execution",
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"delete_execution",
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"trading_execution",
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)
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EMERGENCY = "emergency_stop"
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def _now_iso():
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return datetime.now(timezone.utc).isoformat()
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def read_boot_id():
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"""Liest die aktuelle Kernel-Boot-ID. Fail-closed: fehlend/leer -> None."""
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try:
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with open(BOOT_ID_FILE, "r") as f:
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bid = f.read().strip()
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# Kernel-Boot-ID ist ein UUID. Mindestplausibilität: nicht leer, keine Leerzeichen/Newlines drin.
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if not bid or any(ch.isspace() for ch in bid) or len(bid) < 8:
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return None
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return bid
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except (OSError, IOError):
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return None
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def _parse_raw(path):
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"""
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Liest eine Control-Datei. Rückgabe:
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raw_state : "ON" | "OFF" | None (None = fehlend/malformed)
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boot_id : str | None (aus boot_id-Zeile, nur relevant für positive gates)
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Fail-closed: unlesbar -> (None, None).
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"""
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boot_id = None
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try:
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with open(path, "r") as f:
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content = f.read()
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except (OSError, IOError):
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return None, None
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if not content or not content.strip():
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return None, None # empty file -> UNKNOWN -> restriktiver
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lines = content.strip().splitlines()
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if len(lines) > 2:
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return None, None # malformed: zu viele Zeilen
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raw_state = None
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for line in lines:
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line = line.strip()
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if not line:
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continue
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if line in _ALLOWED:
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if raw_state is not None:
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return None, None # doppelter Wert -> malformed
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raw_state = line
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elif line.startswith("boot_id="):
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bid = line[len("boot_id="):].strip()
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if not bid or any(ch.isspace() for ch in bid):
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return None, None # malformed boot_id
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boot_id = bid
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else:
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return None, None # unknown field -> malformed
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if raw_state is None:
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return None, None # kein gültiger Wert -> malformed
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return raw_state, boot_id
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def _positive_effective(raw, grant_boot_id, current_boot_id, emergency_effective):
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"""
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Effektiver Zustand eines positiven Enable-Gates.
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OFF wenn: emergency==ON, raw!=ON, fehlend/malformed, oder Boot-Binding inkonsistent.
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"""
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if emergency_effective == ON:
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return OFF
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if raw != ON:
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return OFF
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# Boot-Binding: ein positiver ON-Grant MUSS eine boot_id tragen, die == current ist.
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if current_boot_id is None:
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return OFF # missing boot_id -> OFF
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if grant_boot_id is None:
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return OFF # ON-Grant ohne Boot-Binding -> ungültig -> OFF
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if grant_boot_id != current_boot_id:
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return OFF # alter Grant (andere Boot-ID) -> OFF
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return ON
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def read_control_state():
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"""
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Berechnet den vollständigen Control-State (RAW + EFFECTIVE für alle 6 Controls).
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Rückgabe: dict mit allen Feldern für die Status-Projection.
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"""
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current_boot_id = read_boot_id()
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# 1) Emergency Stop (negativ): fail-closed -> fehlend/malformed => ON
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emergency_raw, _ = _parse_raw(os.path.join(STATE_DIR, EMERGENCY))
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emergency_effective = ON if emergency_raw != OFF else OFF
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result = {
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"status_timestamp": _now_iso(),
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"current_boot_id": current_boot_id,
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}
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result["emergency_raw"] = emergency_raw if emergency_raw is not None else "MISSING"
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result["emergency_effective"] = emergency_effective
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# Kurznamen für Status-Projection (save_effective, delete_effective, ...)
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_short = {
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"global_autonomy": "global_autonomy",
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"productive_mutations": "productive_mutations",
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"save_execution": "save",
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"delete_execution": "delete",
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"trading_execution": "trading",
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}
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# 2) Positive Gates (Boot-gebunden, hierarchisch)
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for gate in POSITIVE_GATES:
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raw, grant_boot = _parse_raw(os.path.join(STATE_DIR, gate))
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short = _short[gate]
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# Abhängigkeit: SAVE/DELETE/TRADING brauchen zusätzlich die Master-Gates (siehe unten).
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eff = _positive_effective(raw, grant_boot, current_boot_id, emergency_effective)
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result[f"{short}_raw"] = raw if raw is not None else "MISSING"
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result[f"{short}_effective"] = eff
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# 3) Hierarchische Berechnung (MISSIONS: Mutationen, SAVE, DELETE, TRADING)
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global_eff = result["global_autonomy_effective"]
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mutations_eff = result["productive_mutations_effective"]
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# PRODUCTIVE_MUTATIONS hängt vom Master-Gate GLOBAL_AUTONOMY ab
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if mutations_eff == ON and global_eff == OFF:
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result["productive_mutations_effective"] = OFF
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# SAVE / DELETE / TRADING brauchen: GLOBAL=ON AND MUTATIONS=ON AND eigener Grant gültig
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for gate in ("save_execution", "delete_execution", "trading_execution"):
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short = _short[gate]
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raw = result[f"{short}_raw"]
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grant_boot = _parse_raw(os.path.join(STATE_DIR, gate))[1]
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own_eff = _positive_effective(raw, grant_boot, current_boot_id, emergency_effective)
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if not (global_eff == ON and mutations_eff == ON and own_eff == ON):
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result[f"{short}_effective"] = OFF
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return result
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def format_projection(state):
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"""Stabile, deterministische Textausgabe (read-only Status-Projection)."""
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keys = [
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"current_boot_id",
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"status_timestamp",
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"global_autonomy_raw",
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"global_autonomy_effective",
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"productive_mutations_raw",
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"productive_mutations_effective",
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"save_raw",
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"save_effective",
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"delete_raw",
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"delete_effective",
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"trading_raw",
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"trading_effective",
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"emergency_raw",
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"emergency_effective",
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]
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lines = []
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for k in keys:
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v = state.get(k, "MISSING")
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if v is None:
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v = "MISSING"
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lines.append(f"{k}={v}")
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return "\n".join(lines) + "\n"
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def main():
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state = read_control_state()
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sys.stdout.write(format_projection(state))
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if __name__ == "__main__":
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main()
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42
red-queen-architecture/control-plane/deploy_control_plane.sh
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red-queen-architecture/control-plane/deploy_control_plane.sh
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#!/usr/bin/env bash
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# PRE_HERMES Control Plane — CP1 Deployment-Skript (reproduzierbar aus SoT)
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#
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# Reproduziert AUSSCHLIESSLICH die bereits vorhandenen CP1-Artefakte.
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# KEINE Runtime-State-Änderung. Deployment-Code und Runtime-State strikt getrennt.
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#
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# Verwendung (als root auf dem Host):
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# ./deploy_control_plane.sh
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#
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# Dieses Skript:
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# - installiert control_reader.py nach /opt/control-plane/bin/
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# - erzeugt die Verzeichnisstruktur (falls nicht vorhanden)
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# - überschreibt KEINE bestehenden State-Dateien (Runtime-State bleibt unangetastet)
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# - erzeugt die Status-Projection neu (read-only, root-owned)
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#
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# Rollback: rm -rf /opt/control-plane (reine neue Dateien, keine bestehende Komponente)
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set -euo pipefail
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CP_ROOT="/opt/control-plane"
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CP_BIN="$CP_ROOT/bin"
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CP_STATE="$CP_ROOT/state"
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CP_AUDIT="$CP_ROOT/audit"
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CP_STATUS="$CP_ROOT/status"
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# 1) Verzeichnisstruktur (idempotent)
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install -d -o root -g root -m 0755 "$CP_ROOT"
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install -d -o root -g root -m 0700 "$CP_STATE"
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install -d -o root -g root -m 0700 "$CP_AUDIT"
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install -d -o root -g root -m 0755 "$CP_BIN"
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install -d -o root -g root -m 0755 "$CP_STATUS"
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# 2) Reader installieren (exakt der SoT-Code)
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install -o root -g root -m 0755 "$(dirname "$0")/control_reader.py" "$CP_BIN/control_reader.py"
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# 3) Status-Projection neu erzeugen (read-only, root-owned)
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"$CP_BIN/control_reader.py" > "$CP_STATUS/latest.txt"
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chown root:root "$CP_STATUS/latest.txt"
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chmod 0444 "$CP_STATUS/latest.txt"
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echo "CP1 deployt. State-Dateien wurden NICHT überschrieben (Runtime-State bleibt erhalten)."
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echo "Status-Projection: $CP_STATUS/latest.txt"
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239
red-queen-architecture/control-plane/test_control_reader.py
Normal file
239
red-queen-architecture/control-plane/test_control_reader.py
Normal file
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@ -0,0 +1,239 @@
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#!/usr/bin/env python3
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"""CP1 statische + adversariale Tests (A-J) für control_reader.py."""
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import os
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import shutil
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import sys
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import tempfile
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import control_reader as cr
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PASS = 0
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FAIL = 0
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results = []
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def check(name, cond):
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global PASS, FAIL
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if cond:
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PASS += 1
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results.append(f"PASS {name}")
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else:
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FAIL += 1
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results.append(f"FAIL {name}")
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class Env:
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def __init__(self):
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self.tmp = tempfile.mkdtemp()
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self.state_dir = os.path.join(self.tmp, "state")
|
||||
os.makedirs(self.state_dir, exist_ok=True)
|
||||
# aktuelle boot_id simulieren
|
||||
self.cur_boot = "boot-test-1234"
|
||||
self.boot_file = os.path.join(self.tmp, "boot_id")
|
||||
with open(self.boot_file, "w") as f:
|
||||
f.write(self.cur_boot + "\n")
|
||||
cr.STATE_DIR = self.state_dir
|
||||
cr.BOOT_ID_FILE = self.boot_file
|
||||
|
||||
def write(self, name, content):
|
||||
with open(os.path.join(self.state_dir, name), "w") as f:
|
||||
f.write(content)
|
||||
|
||||
def missing_boot(self):
|
||||
os.remove(self.boot_file)
|
||||
|
||||
def read():
|
||||
return cr.read_control_state()
|
||||
|
||||
def fmt(eff):
|
||||
return {k: v for k, v in eff.items() if k.endswith("_effective")}
|
||||
|
||||
# ---------- TEST 1: initial safe state ----------
|
||||
print("== TEST 1: Initial Safe State ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "OFF")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "ON")
|
||||
s = read()
|
||||
check("initial global=OFF", s["global_autonomy_effective"] == "OFF")
|
||||
check("initial mutations=OFF", s["productive_mutations_effective"] == "OFF")
|
||||
check("initial save=OFF", s["save_effective"] == "OFF")
|
||||
check("initial delete=OFF", s["delete_effective"] == "OFF")
|
||||
check("initial trading=OFF", s["trading_effective"] == "OFF")
|
||||
check("initial emergency=ON", s["emergency_effective"] == "ON")
|
||||
|
||||
# ---------- TEST A: positive ON mit falscher Boot-ID -> OFF ----------
|
||||
print("== TEST A: wrong boot-id -> OFF ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "ON\nboot_id=other-boot\n")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
s = read()
|
||||
check("A global OFF bei falscher boot_id", s["global_autonomy_effective"] == "OFF")
|
||||
|
||||
# ---------- TEST B: ON aktueller boot_id aber emergency ON -> OFF ----------
|
||||
print("== TEST B: emergency ON blockiert positives Gate ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", f"ON\nboot_id={e.cur_boot}\n")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "ON")
|
||||
s = read()
|
||||
check("B global OFF bei emergency ON", s["global_autonomy_effective"] == "OFF")
|
||||
check("B emergency ON", s["emergency_effective"] == "ON")
|
||||
|
||||
# ---------- TEST C: save ON aber mutations OFF -> SAVE OFF ----------
|
||||
print("== TEST C: save ON, mutations OFF -> SAVE OFF ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", f"ON\nboot_id={e.cur_boot}\n")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", f"ON\nboot_id={e.cur_boot}\n")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
s = read()
|
||||
check("C save OFF bei mutations OFF", s["save_effective"] == "OFF")
|
||||
check("C global ON", s["global_autonomy_effective"] == "ON")
|
||||
|
||||
# ---------- TEST D: delete ON aber global OFF -> DELETE OFF ----------
|
||||
print("== TEST D: delete ON, global OFF -> DELETE OFF ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "OFF")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", f"ON\nboot_id={e.cur_boot}\n")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
s = read()
|
||||
check("D delete OFF bei global OFF", s["delete_effective"] == "OFF")
|
||||
check("D global OFF", s["global_autonomy_effective"] == "OFF")
|
||||
|
||||
# ---------- TEST E: trading ON aber emergency ON -> TRADING OFF ----------
|
||||
print("== TEST E: trading ON, emergency ON -> TRADING OFF ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "OFF")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", f"ON\nboot_id={e.cur_boot}\n")
|
||||
e.write("emergency_stop", "ON")
|
||||
s = read()
|
||||
check("E trading OFF bei emergency ON", s["trading_effective"] == "OFF")
|
||||
check("E emergency ON", s["emergency_effective"] == "ON")
|
||||
|
||||
# ---------- TEST F: fehlende emergency_stop -> EMERGENCY ON ----------
|
||||
print("== TEST F: missing emergency_stop -> ON ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "OFF")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
# KEIN emergency_stop schreiben
|
||||
s = read()
|
||||
check("F emergency ON bei fehlender Datei", s["emergency_effective"] == "ON")
|
||||
|
||||
# ---------- TEST G: malformed emergency_stop -> ON ----------
|
||||
print("== TEST G: malformed emergency_stop -> ON ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "OFF")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "MAYBE\n")
|
||||
s = read()
|
||||
check("G emergency ON bei malformed", s["emergency_effective"] == "ON")
|
||||
|
||||
# ---------- TEST H: alter Grant nach simuliertem Reboot -> OFF ----------
|
||||
print("== TEST H: alter Grant nach Reboot -> OFF ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", f"ON\nboot_id={e.cur_boot}\n")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
s = read()
|
||||
check("H vor Reboot global ON", s["global_autonomy_effective"] == "ON")
|
||||
# simulierter Reboot: boot_id ändert sich
|
||||
with open(e.boot_file, "w") as f:
|
||||
f.write("boot-after-reboot-999\n")
|
||||
s = read()
|
||||
check("H nach Reboot global OFF", s["global_autonomy_effective"] == "OFF")
|
||||
|
||||
# ---------- Missing boot_id file -> positive gates OFF ----------
|
||||
print("== TEST: missing boot_id file ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", f"ON\nboot_id={e.cur_boot}\n")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
e.missing_boot()
|
||||
s = read()
|
||||
check("missing boot_id -> global OFF", s["global_autonomy_effective"] == "OFF")
|
||||
|
||||
# ---------- Permission/read error ----------
|
||||
print("== TEST: unreadable control file ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "ON") # no boot_id -> invalid anyway
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "ON")
|
||||
os.chmod(os.path.join(e.state_dir, "emergency_stop"), 0o000)
|
||||
s = read()
|
||||
check("unreadable emergency -> ON", s["emergency_effective"] == "ON")
|
||||
os.chmod(os.path.join(e.state_dir, "emergency_stop"), 0o644)
|
||||
|
||||
# ---------- Positive gate OHNE boot_id (ON-Grant ohne Binding) -> OFF ----------
|
||||
print("== TEST: ON-Grant ohne boot_id ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "ON\n") # no boot_id line
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
s = read()
|
||||
check("ON ohne boot_id -> global OFF", s["global_autonomy_effective"] == "OFF")
|
||||
|
||||
# ---------- Empty file -> OFF (positive), ON (emergency) ----------
|
||||
print("== TEST: empty positive file ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "") # empty
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
s = read()
|
||||
check("empty positive -> global OFF", s["global_autonomy_effective"] == "OFF")
|
||||
check("empty positive raw MISSING", s["global_autonomy_raw"] == "MISSING")
|
||||
|
||||
# ---------- unknown field -> malformed -> OFF ----------
|
||||
print("== TEST: unknown field ==")
|
||||
e = Env()
|
||||
e.write("global_autonomy", "ON\nfoo=bar\nboot_id=xyz\n")
|
||||
e.write("productive_mutations", "OFF")
|
||||
e.write("save_execution", "OFF")
|
||||
e.write("delete_execution", "OFF")
|
||||
e.write("trading_execution", "OFF")
|
||||
e.write("emergency_stop", "OFF")
|
||||
s = read()
|
||||
check("unknown field -> global OFF", s["global_autonomy_effective"] == "OFF")
|
||||
|
||||
print()
|
||||
print(f"RESULT: PASS={PASS} FAIL={FAIL}")
|
||||
for r in results:
|
||||
print(r)
|
||||
sys.exit(1 if FAIL else 0)
|
||||
Loading…
Reference in a new issue