--- report_only_agents: - koby # ⛔ KOBY IS NEVER REPAIRED (Rule 17, 2026-08-17) — detect + report, never fix on .129 # ⛔ The guest/host-keyed report-only gate the GC executor MUST honour lives in the body # "Hard gate" YAML block below — that block is authoritative and is the only copy. kind: responsibility name: disk-gc-threat-response description: > Recurring disk health scan, garbage collection, and threat response across 20 Proxmox guests (17 LXC + 3 QEMU VMs) + 3 GPU bare-metal hosts (fleet verified against `pvesh get /cluster/resources` 2026-09-12). Triggered by incident 2026-07-04 where CT 105 (kagentz) hit 87% disk (49G/59G) from Docker image bloat — 5 dangling images, 15 build cache layers. Recovered 35.67GB. Second incident 2026-07-09: amdpve (.15) Docker bloat (15.5GB abandoned HIP image), reclaimed 11.56GB. id: 067NV8KJ03ZG71S44N41F31022 version: 1.0.0 --- --- # Disk GC & Threat Response ## Goal Every container in the fleet stays below 80% disk usage through regular inspection and automated garbage collection. Critical breaches are detected, remediated, and logged within 5 minutes of discovery. ## Scope All 20 Proxmox guests (17 LXC via `pct-run` + 3 QEMU VMs via direct SSH) + 3 GPU bare-metal hosts via direct SSH. Docker hosts get special attention: | Host | CT | Disk Risk | GC Strategy | |------|----|-----------|-------------| | kagentz | 105 | HIGH — Agent Zero builds images | `docker system prune -a` | | syslog-api | 116 | HIGH — Prometheus data, 10 containers | `docker system prune`, log rotate | | docker-vm | 109 | HIGH — 16 containers across 4 stacks, NFS mounts | `docker system prune`, check mounts | | amdpve | — | MED — GPU bare metal, Docker for one-off builds | `docker system prune -a` | | abiba | 100 | LOW — local docker, go cache | apt/docker/log prune | | All other CTs | — | LOW — no Docker | apt clean, log rotate | | GPU bare metal (.8, .110) | — | LOW — no Docker on GPU hosts | log rotate | > **Note:** CT 118 is now jdownloader (active on storepve). CT 101 (llm-gpu) → bare metal .8, CT 103 (ocu-llm) → bare metal .110. ## Threat Levels (GUEST filesystems) | Level | Threshold | Response | Escalation | |-------|-----------|----------|------------| | **GREEN** | < 75% | Log only | None | | **AMBER** | 75-84% | Warn via Zulip DM | GC scheduled for next run | | **RED** | 85-94% | Immediate GC attempt | Zulip DM + channel alert | | **CRITICAL** | ≥ 95% | Aggressive GC + emergency cleanup | Zulip + relay to Kwame | | **FULL** | 100% (df shows 100%) | Stop writes, manual intervention | Call/Telegram Kwame | ## Host Filesystem Thresholds (HOST nodes — separate bands from guest bands) Host filesystems have their own risk profile and their own bands. A host root near full is a real risk (backup staging writes to it, thin-pool metadata pressure), a media volume near full is a capacity decision for the owner, and the backup datastore near full breaks backups. These are **report-only** — no automatic deletion of media or datastore content ever. | Level | Threshold | Response | Escalation | |-------|-----------|----------|------------| | **HOST-WARN** | 85% | Name the volume + % + absolute free space in the scan output | None | | **HOST-AMBER** | 90% | Name the volume + % + absolute free space; flag for owner attention | Zulip DM to owner (state-change only) | | **HOST-RED** | 95% | Name the volume + % + absolute free space; **media volumes: "capacity decision — owner to decide"; pbs-datastore/host-root: "immediate owner attention"** | Zulip DM + channel alert (state-change only) | **Escalations are STATE-CHANGE driven, not per-run.** A volume alerts ONCE when it enters a higher band (GREEN->WARN, WARN->AMBER, AMBER->RED) and ONCE when it drops back down (a recovery notice). While a volume stays in the same band, it is reported in the scan output only — no DM, no channel alert. This prevents the same 96% easystore2 from re-DMing the owner on every 6-hour scan and drowning a real warning in noise. **State lives in a small JSON state file:** the scanner resolves it to an absolute path from the script's location — `$(dirname "$0")/state/host-disk-bands.json` (i.e., the `state/` directory next to the `scripts/` directory in the prose-contracts repo). The state file is gitignored runtime state — the scanner creates it on first run. Keyed by `host/volume` → last-seen band. The scanner reads the prior band, compares to the current band, and DMs only on a transition. The state file is written after every scan. (Chosen over a periodic digest because the scan already runs every 6h and a transition is genuinely new, actionable state that warrants an immediate DM — but only once.) **Volume naming rule:** Every host line MUST name the volume and what lives on it. Example output: ``` storepve /media/easystore2 (media): 96% (3.5T/3.7T, 177G free) -> HOST-RED storepve /media/reanim (media): 86% (797G/932G, 135G free) -> HOST-WARN storepve /media/mediastore (media): 77% (5.3T/7.3T, 1.6T free) -> GREEN storepve /dev/mapper/pve-root (host-root): 81% (73G/94G, 17G free) -> GREEN storepve tank (pbs-datastore): 1% (128K/12T, 12T free) -> GREEN ``` **First-run behavior:** When the state file does not yet exist (first scan), the current band of every volume is recorded as the baseline WITHOUT alerting — a first run would otherwise DM every already-elevated volume at once. From the second run onward, transitions alert. **Action classes by volume type:** - **host-root**: near full = real risk (backup staging, thin-pool metadata, journald). HOST-AMBER or above → owner must investigate. - **media** (/media/*): near full = capacity decision for the owner. HOST-AMBER or above → report only, never auto-delete. - **pbs-datastore** (tank, ZFS): near full = breaks Proxmox Backup Server. HOST-RED → escalate immediately. **Justification (measured 2026-09-15, firstmate):** storepve (192.168.68.6) shows /media/easystore2 at 96%, /media/reanim at 86%, /dev/mapper/pve-root at 81%, and tank at 1%. The previous scan reported "0/19 guests >80%, no GC action needed" while easystore2 sat at 96% — the host filesystems were printed but never banded and never acted on. Two incidents this weekend (amdpve host root filled during container backup staging, acerpve root went read-only when its thin pool errored) showed the host filesystem is the thing that breaks, not the guest's. ## Requires - SSH access to all Docker hosts (matrix from infrastructure-control pattern) - Proxmox API access from abiba (token already provisioned) - Zulip bot credentials for alerting ## Maintains Per-CT disk state, GC history, and threat resolution ledger. Each entry carries the CT ID, hostname, node, disk usage snapshot, GC action taken, and reclaimed bytes. Postcondition: no CT runs above 85% for more than one scan cycle without documented reason. ### disk-health Current disk state for every CT: `pct_used`, `pct_avail`, `rootfs_size`, last GC timestamp, and active threat level. ### gc-history Append-only log of every GC action: timestamp, CT, action taken, bytes reclaimed, and whether threat was resolved. ### threat-log Active and resolved threat entries with severity, timestamps, remediation applied, and escalation trail. ## Continuity - self-driven: full fleet scan every 6 hours - May also be invoked manually: `prose run disk-gc-threat-response` - Threat-driven: if Amber/Red/Critical detected, immediate GC phase activates ## Scanner: scripts/disk-gc-scan.py The fleet scan is executed by `scripts/disk-gc-scan.py`, which makes reachability verdicts deterministic: 1. **Retry on failure:** Each probe retries once before declaring a guest unreachable. 2. **Named probe target:** Every rendered line names the guest, CT id, node, and access method actually used. 3. **Failure kind printed:** An unreachable guest is reported with its failure kind (timeout, ssh-auth, no-route, conn-refused, ssh-exit-N) — never as a bare "unreachable" verdict. 4. **Per-guest access method:** The correct access path is selected from a per-guest map so the wrong path cannot be picked by an executor improvising: - CT 105 (kagentz) = `ssh root@kagentz` (NOT `pct exec 105` — pct exec sees loop0/59G instead of the real 99G filesystem) - CT 109 (docker-vm) = `ssh root@192.168.68.7` (NOT `pct exec` — it's a KVM VM) - All other CTs = `pct-run ` (which uses `pct exec` via SSH to the node) 5. **Every figure traces to a named probe:** The scan output prints the exact command that produced each disk figure, so two different guests can never render identical numbers without the probe commands proving it. Run: `python3 scripts/disk-gc-scan.py` (or `--json` for machine-readable output). The scan feeds into `scripts/disk-gc-plan.py`, which applies the report-only gate from the `report_only_guests` YAML block above. ## Shape - `self`: scan all CTs via Proxmox API + SSH exec, trigger GC, alert - `delegates`: - `disk-scanner`: per-CT disk check (pct exec df or SSH) - `gc-docker`: docker system prune execution - `gc-system`: apt clean, log rotate, tmp cleanup - `alerter`: Zulip notification dispatch - `prohibited`: deleting user data, removing running containers, force-killing production services ## Runtime - `timeout`: 300 seconds per CT (GC may take time on large docker hosts) - `retry`: 2 attempts for SSH failures before marking a CT unreachable ## Execution ### Host filesystems: report-only, NEVER auto-delete Host filesystems are always report-only — no automatic deletion of media or datastore content. A host root near full requires investigation by the owner, but the executor must never delete content on a host filesystem. This restriction is absolute. ### Hard gate: report-only guests (READ THIS BEFORE RUNNING GC) **CT 111 / hostname `tdunna` / 192.168.68.129 is DETECT-AND-REPORT-ONLY.** It belongs to Theo. The captain ruled 2026-08-17 and re-confirmed 2026-09-10 that Theo handles CT 111 himself. At **every** threat level — AMBER, RED, or CRITICAL — the executor must: - push the threat row and alert the owner, and - **never** call `gc-executor`, and **never** run any GC command against that guest: no `apt-get clean/autoremove`, no `journalctl --vacuum-*`, no `find /var/log -delete`, no `/tmp`/`/var/tmp` deletion, no snap removal, no `docker system prune`. This gate is keyed on **guest id / hostname / IP**, not on an agent name. The frontmatter `report_only_agents` marker (e.g. `koby`) names an AGENT while the scan unit is a GUEST, so an agent-name marker can silently miss the guest it lives on — it must never be the only gate. **The authoritative machine-readable exclusion list is the YAML block below.** The executor reads it at run time; `scripts/disk-gc-plan.py` turns a fleet scan into the action plan using it. Extend the list here, never by hand-maintaining a second copy. The Execution loop below MUST call that planner and MUST NOT reimplement the gate. ```yaml # disk-gc report-only guests — authoritative. Keyed on guest/host, not agent. report_only_guests: - guest: 111 hostname: tdunna ip: 192.168.68.129 node: storepve reason: "Theo's box — captain ruling 2026-08-17, re-confirmed 2026-09-10" ``` ### Loop ```prose let fleet = call disk-scanner scope: all -- The report-only gate is IMPLEMENTED IN scripts/disk-gc-plan.py and MUST NOT be -- reimplemented here. That planner reads the contract's `report_only_guests` YAML block -- and matches on guest id OR hostname OR IP, so the tested gate is the executed gate. let plan = call disk-gc-plan fleet: fleet for row in plan: if row.action == "report-only": -- Excluded guest: alert only. No gc-executor call is constructed for it, at any level. call alerter threat: row result: { action: "report-only", reason: row.reason } else: let result = call gc-executor ct: row.target level: row.level strategy: lookup-gc-strategy(row.target) call alerter threat: row result: result call summary-reporter fleet: fleet plan: plan ``` ## GC SCHEDULE (PBS datastore only) The PBS GC schedule is defined in ONE authoritative place: `/etc/cron.d/pbs-gc` on storepve. The schedule is `0 20 * * *` (20:00 LOCAL = 00:00 UTC, since host timezone is America/New_York). This applies **only** to the PBS datastore (`/tank/pbs-backup`), NOT to media volumes. Media volumes (/media/*) are report-only at all threat levels. The cron runs `/usr/local/bin/pbs-gc.sh` which executes: ```bash proxmox-backup-manager garbage-collection start storepve-datastore ``` This is NOT a `prune` operation; it is a GC pass that reclaims unreferenced chunks. There is no `--keep-daily` flag; retention is governed by jobs.cfg (keep-daily=35). The GC does not touch media volumes or any other filesystem. ## GC Strategies by Host Type ### Docker Hosts (kagentz 105, syslog-api 116, docker-vm 109, amdpve .15) ```bash # Phase 1: Safe prune (won't touch running containers' images) docker system prune -f # Phase 2: Aggressive (if still > 85% after Phase 1) docker system prune -a --force # Phase 3: Emergency (if still > 95%) docker system prune -a --force --volumes docker builder prune --all --force # Verification after each phase df -h / docker system df ``` ### Non-Docker CTs ```bash # Package cache apt-get clean apt-get autoremove --yes # Log rotation journalctl --vacuum-size=100M find /var/log -type f -name "*.log" -mtime +30 -delete # Temp files find /tmp -type f -mtime +7 -delete find /var/tmp -type f -mtime +30 -delete # Snap (if installed) snap list --all | awk '/disabled/ {print $1, $3}' | while read snap rev; do snap remove "$snap" --revision="$rev" done ``` ### Special Cases | CT | Special GC | |----|-----------| | 116 (syslog-api) | Prometheus retention: check `--storage.tsdb.retention.time` | | 100 (abiba) | Go module cache: `go clean -cache -modcache` if > 500MB | | 106 (ra-h-os) | Check relay DB size, enforce TTL | | 109 (docker-vm) | Check `/media/storage` and `/media/mediastore` mounts first | ## Alert Templates ### HOST-WARN / HOST-AMBER / HOST-RED (host filesystems, report-only) ``` ⚠️ Host Disk — {hostname} {volume} ({volume_type}): {pct}% ({used}/{total}, {free} free) -> {level} Action: {volume_type-specific action} ``` ### AMBER (75-84%) ``` ⚠️ Disk GC — {hostname} (CT {id}) at {pct}% ({used}G/{total}G) Next scheduled GC will attempt cleanup. No immediate action needed. ``` ### RED (85-94%) ``` 🚨 Disk Threat — {hostname} (CT {id}) at {pct}% ({used}G/{total}G) GC executed: reclaimed {reclaimed}G. New usage: {new_pct}%. Status: {resolved|still elevated — {reason}} ``` ### CRITICAL (≥95%) ``` 🔥 CRITICAL Disk — {hostname} (CT {id}) at {pct}% ({used}G/{total}G) Emergency GC: reclaimed {reclaimed}G. New usage: {new_pct}%. {service_status} — {manual_action if needed} @Kwame — container nearly full, resolved: {yes_no} ``` ## Incident Log: 2026-07-04 — kagentz docker bloat ### Discovery Kwame noticed kagentz was full, asked Abiba to investigate. ### Diagnosis - CT 105 (kagentz, amdpve): 49G used / 59G total (87%) - `/var/lib` = 55G (93% of disk) - Docker images: 7 total, 5 dangling, 47.83GB disk, 34.98GB reclaimable - 1 stopped container, 1 unused network, 15 build cache layers ### Resolution ``` docker system prune -a --force → Reclaimed 35.67GB → Post: 16G / 59G (27%), 41G free → 5 dangling images removed (kagentz-bridge + old builds) → 1 stopped container removed → 1 unused network removed (kagentz-bridge_default) → 15 build cache layers removed ``` ### Root Cause Agent Zero's iterative development pattern (rebuild kagentz-bridge) creates dangling images and orphaned build cache. No automated GC was in place. ### Preventive Measures - This contract now runs disk GC fleet-wide every 6 hours - Docker hosts get `docker system prune` on amber, `-a --force` on red - kagentz is flagged as HIGH risk due to development activity - amdpve is flagged for Docker bloat monitoring — abandoned build images accumulate ``` ## Incident Log: 2026-07-09 — amdpve docker bloat ### Discovery Scheduled fleet disk scan across all 20 Proxmox guests (17 LXC via `pct-run`, 3 QEMU VMs via direct SSH) + 3 GPU bare-metal hosts. > **Report-only gate applies to this scan:** CT 111 (`tdunna`, 192.168.68.129) is alerted but never > garbage-collected at any level. amdpve (.15) flagged at 78% (AMBER threshold: 75%). ### Diagnosis - amdpve (.15, Strix Halo host): 70G used / 94G total (78%) - Docker images: 1 image, 0 containers running, 15.47GB (100% reclaimable) - Image: `llama-strix-hip:latest` — abandoned ROCm/HIP Docker build from 7 days ago - Root cause: Strix Halo migrated from Docker-based HIP path to bare-metal Vulkan (`/root/llama.cpp/build-vk/`) but the old Docker image was never cleaned up - Not a running service — zero containers, zero active volumes ### Resolution ``` docker system prune -a --force → Reclaimed 11.56GB → Post: 55G / 94G (62%), 35G free → 1 image removed (llama-strix-hip:latest, 15.5GB) → 8 build cache layers removed → amdpve now GREEN ``` ### Root Cause Technology migration (Docker HIP → bare-metal Vulkan) left orphaned build artifacts. Docker on amdpve serves no running purpose — it's only used for one-off GPU builds. No automated post-migration cleanup was in place. ### Preventive Measures - amdpve added to Docker GC scan list - Post-migration cleanup step added: after any GPU backend migration, prune the old backend's Docker images within 24 hours - Contract now scans GPU bare-metal hosts alongside CTs - Access via `pct-run` script for all CTs (no hardcoded IPs) ## Access Matrix (verified against `pvesh get /cluster/resources` 2026-09-12) ### Guest Access (via `pct-run` — CT id only, node resolved by `scripts/pct-run.sh`) | Guest | Name | Node | Type | Status | |------|------|------|------|--------| | 100 | abiba | minipve | lxc | ✅ reachable (probed via pct-run like any other guest; no local shortcut) | | 102 | adguard | minipve | lxc | ✅ reachable | | 104 | authentik | minipve | lxc | ✅ reachable | | 105 | kagentz | **amdpve** | lxc | ✅ reachable (was documented as minipve — corrected) | | 106 | ra-h-os | storepve | lxc | ✅ reachable | | 107 | pbs | storepve | lxc | ✅ reachable | | 108 | media | storepve | lxc | ✅ reachable | | 110 | gitea | minipve | lxc | ✅ reachable | | 111 | tdunna | **storepve** | lxc | ⛔ **REPORT-ONLY** (192.168.68.129, Theo's box — no GC at any level) | | 112 | tanko | amdpve | lxc | ✅ reachable | | 113 | baggy | amdpve | lxc | ✅ reachable | | 115 | scottdenya | amdpve | lxc | ✅ reachable | | 116 | syslog-api | minipve | lxc | ✅ reachable | | 117 | zulip | storepve | lxc | ✅ reachable | | 118 | jdownloader | storepve | lxc | ✅ reachable | | 119 | infisical-vault | minipve | lxc | ✅ reachable | | 120 | adguard2 | amdpve | lxc | ✅ reachable | ### QEMU VMs (via direct SSH) | VM | Name | Node | IP | Status | |----|------|------|-----|--------| | 101 | llm-gpu (workload now bare metal .8) | acerpve | — | ✅ reachable | | 103 | ocu-llm (workload now bare metal .110) | ocupve | — | ✅ reachable | | 109 | docker-vm | storepve | 192.168.68.7 | ✅ reachable | ### GPU Bare Metal (via direct SSH) | Host | IP | GPU | Status | |------|-----|-----|--------| | llm-gpu | 192.168.68.8 | RTX 3090 | ✅ reachable | | ocu-llm | 192.168.68.110 | RTX 5070 | ✅ reachable | | amdpve | 192.168.68.15 | Strix Halo | ✅ reachable | > **Fleet count:** 20 Proxmox guests (17 LXC + 3 QEMU VMs) + 3 GPU bare-metal hosts. Corrected > 2026-09-12: CT 105 → amdpve, CT 111 → storepve, and guests 118/119/120 were missing. > > **CT 100 probe gap (folded in):** CT 100 previously reported "unreachable (not reported)" every > run. Root cause is the same stale access layer: `pct-run` resolves the guest's node from its map, > and the map/contract must reflect `pvesh /cluster/resources`. Verified working from inside CT 100: > `scripts/pct-run.sh 100 "df -P / | tail -1"` → `23% /`. Probe CT 100 through `pct-run` like any > other guest — never through a local-only path, since the scanner itself runs inside CT 100 and a > container has no `pct` binary. > > **KVM VM:** CT 109 (docker-vm) is a QEMU VM, not LXC — access via SSH .7. > **NOTE:** For kagentz (CT 105), use `ssh root@kagentz` (hostname), NOT `pct exec 105` — `pct exec 105` shows loop0 (59G) while `ssh root@kagentz` shows the real filesystem (99G). For docker-vm (CT 109), use `ssh root@192.168.68.7`, not `pct exec`.