- DELETE infrastructure-monitoring.prose.md (redundant — proxmox-monitor already deployed this) - FIX infrastructure-control.prose.md: remove /grafana/ nginx route (reverted Jul 2, broke gpu-fleet) - FIX infrastructure-update.prose.md: wrong CT IDs (122→112 Tanko, 123→114 Mumuni, .19→storepve Zulip) - FIX infrastructure-update.prose.md: Strix Halo :8080→router health check (firewalled to .116 only) - FIX proxmox-monitor.prose.md: stale /grafana/ URLs→:3001 (post-revert cleanup) - ADD disk-gc-threat-response.prose.md: verified run (2026-07-04, reclaimed 35.67GB from kagentz) - ADD infrastructure-update.prose.md, pi-approval-architecture.prose.md, zulip-approval-fix.prose.md, zulip-self-heal.prose.md - UPDATE hermes-config, litellm-health/self-heal, pm2-self-heal, zulip-* contracts - ADD runs/20260704-005804-51f9a9 (disk-gc-threat-response run artifacts) All contracts verified against live PVE API, nginx config, and firewall state.
8.2 KiB
kind, name, description, id, version
| kind | name | description | id | version |
|---|---|---|---|---|
| responsibility | disk-gc-threat-response | Recurring disk health scan, garbage collection, and threat response across all 19 Proxmox CTs and Docker hosts. 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 via `docker system prune -a --force`. | 067NV8KJ03ZG71S44N41F31022 | 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 CTs in the Proxmox cluster, with special attention to Docker hosts:
| Host | CT | Disk Risk | GC Strategy |
|---|---|---|---|
| kagentz | 105 | HIGH — Agent Zero builds images | docker system prune -a |
| syslog-api | 116 | HIGH — Prometheus data, 8 containers | docker system prune, log rotate |
| docker-vm | 109 | MED — 11 containers, NFS mounts | docker system prune, check mounts |
| abiba | 100 | LOW — local docker, go cache | apt/docker/log prune |
| All others | — | LOW — no Docker | apt clean, log rotate |
Threat Levels
| 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 |
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
Shape
self: scan all CTs via Proxmox API + SSH exec, trigger GC, alertdelegates:disk-scanner: per-CT disk check (pct exec df or SSH)gc-docker: docker system prune executiongc-system: apt clean, log rotate, tmp cleanupalerter: 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
let fleet = call disk-scanner
scope: all
let threats = []
for ct in fleet:
if ct.usage_pct >= 95:
push threats { ct: ct.id, level: "CRITICAL", pct: ct.usage_pct }
else if ct.usage_pct >= 85:
push threats { ct: ct.id, level: "RED", pct: ct.usage_pct }
else if ct.usage_pct >= 75:
push threats { ct: ct.id, level: "AMBER", pct: ct.usage_pct }
-- sort by severity descending
sort threats by pct desc
for threat in threats:
let result = call gc-executor
ct: threat.ct
level: threat.level
strategy: lookup-gc-strategy(threat.ct)
call alerter
threat: threat
result: result
call summary-reporter
fleet: fleet
threats: threats
GC Strategies by Host Type
Docker Hosts (kagentz 105, syslog-api 116, docker-vm 109)
# 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
# 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
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 pruneon amber,-a --forceon red - kagentz is flagged as HIGH risk due to development activity
Done. Here's what we have:
## Storage Summary
| System | Used | Free | Health |
|--------|------|------|--------|
| **Abiba** (CT 100) | 12G / 59G (21%) | 45G | ✅ Green |
| **kagentz** (CT 105) | 16G / 59G (27%) | 41G | ✅ Resolved (was 87%) |
| **/var/lib/docker** (abiba) | 2.8G | — | Fine |
| **/root/go** (abiba) | 773M | — | Fine |
## New Contract: `disk-gc-threat-response.prose.md`
Created at `/root/prose-contracts/disk-gc-threat-response.prose.md`. Here's what it does:
### Three-in-One
1. **Infra Update** — Fleet-wide disk scan every 6 hours across all 19 CTs, with per-host GC strategy (Docker hosts vs standard LXC). Today's incident is logged as the baseline.
2. **Garbage Collection** — Tiered response: Phase 1 (`docker system prune -f`) for amber, Phase 2 (`-a --force`) for red, Phase 3 (`--volumes` + `builder prune --all`) for critical. Non-Docker CTs get `apt clean`, log rotation, journalctl vacuum.
3. **Threat Resolution** — Five severity levels (Green → Amber → Red → Critical → Full), with escalating alerts via Zulip DM, channel, and relay to you for critical breaches. kagentz is flagged HIGH risk due to Agent Zero dev patterns.
### The incident root cause
Agent Zero was repeatedly rebuilding `kagentz-bridge`, generating 5 dangling images and 15 build cache layers. No automated GC existed. Recovery: **35.67GB freed** in one `docker system prune -a --force`.
Want me to push this to the prose-contracts repo?