Compare commits
| Author | SHA1 | Date | |
|---|---|---|---|
|
|
d686352098 | ||
|
|
4073fd63f7 | ||
|
|
1ba18aeb77 | ||
|
|
f1477a5279 | ||
|
|
a31f07baef | ||
|
|
5db70e903b | ||
|
|
a9ec9daf84 | ||
|
|
3d832658b9 | ||
|
|
fc88265e76 | ||
|
|
51da19d92d | ||
|
|
6570fd60e7 | ||
|
|
5d2ecbace6 | ||
|
|
99789a00a1 | ||
|
|
a68879e904 | ||
|
|
06d2bcbc9e | ||
|
|
c4a8c45835 | ||
|
|
1d027f71f6 | ||
|
|
a74229ee74 | ||
|
|
aebc98ead6 | ||
|
|
17a77e6b3f | ||
|
|
23f3f378c5 | ||
|
|
14d27a09b5 | ||
|
|
bddbb22f03 | ||
|
|
31ec70ae36 | ||
|
|
5eb6d3bfbd | ||
|
|
33cb88d571 | ||
|
|
4a1f476623 | ||
|
|
ba2c55c7e6 | ||
|
|
b9149bce47 | ||
|
|
65c99dab50 | ||
|
|
20cbb96e2d | ||
|
|
8215b84f88 | ||
|
|
24cd7f72ac | ||
|
|
d6e85e68e9 | ||
|
|
b7e23e2592 | ||
|
|
369c312ccb | ||
|
|
7f39a444d6 | ||
|
|
17f4c79fe4 | ||
|
|
a9caf5b216 | ||
|
|
15a826457e | ||
|
|
cd52deda92 | ||
|
|
97f1cd77e4 | ||
|
|
dc572889f8 | ||
|
|
d0feb7881e | ||
|
|
9fd8c68bd2 | ||
|
|
39e2fa0cfa | ||
|
|
622cf7b176 | ||
|
|
30bf42b841 | ||
|
|
190ceb9be4 | ||
|
|
22eaaf4254 | ||
|
|
fdb22948d9 | ||
|
|
e9968e165d | ||
|
|
44ba53cf71 | ||
|
|
b96b334283 | ||
|
|
dc829bb09d | ||
|
|
a8354e88bc | ||
|
|
98d8ce6772 | ||
|
|
548e421fa1 |
@@ -128,3 +128,10 @@ safe-mutate --verify "CMD" [--expect "PATTERN"] --mutate "CMD" [--reason "WHY"]
|
||||
Read the [Authoring Guide](docs/AUTHORING-GUIDE.md) before writing any new contract.
|
||||
It covers the full process: verify → draft → lint → review → ship, with templates
|
||||
and style rules.
|
||||
|
||||
## Maintaining this file
|
||||
|
||||
Keep this file for knowledge useful to almost every future agent session in this project.
|
||||
Do not repeat what the codebase already shows; point to the authoritative file or command instead.
|
||||
Prefer rewriting or pruning existing entries over appending new ones.
|
||||
When updating this file, preserve this bar for all agents and keep entries concise.
|
||||
|
||||
@@ -0,0 +1,309 @@
|
||||
---
|
||||
kind: function
|
||||
name: abiba-zulip-restore
|
||||
description: >
|
||||
Restores Zulip connectivity for Abiba (pi agent). Verifies the v2 router-worker
|
||||
extension code, starts a PM2 process as the Zulip gateway with correct env vars,
|
||||
validates health endpoint, and confirms DM delivery. Run this whenever Abiba
|
||||
stops responding on Zulip or after system restart.
|
||||
agent: abiba
|
||||
version: 1.0.0
|
||||
status: active
|
||||
runtime_contract: 2
|
||||
---
|
||||
|
||||
# Abiba Zulip Restore — Resume pi Zulip Communication
|
||||
|
||||
Single-shot function that restores full Zulip connectivity for the Abiba pi agent.
|
||||
Covers extension code validation, PM2 process management, health endpoint
|
||||
verification, and DM loopback testing.
|
||||
|
||||
## Live-State Fields
|
||||
|
||||
| Field | Value | Trust |
|
||||
|-------|-------|-------|
|
||||
| Agent name | abiba | ✅ |
|
||||
| Bot email | abiba-bot@chat.sysloggh.net | ✅ |
|
||||
| Zulip server | https://chat.sysloggh.net | ✅ |
|
||||
| Extension path | /root/.pi/agent/extensions/zulip/index.js | ✅ |
|
||||
| Config path | /root/.pi/agent/extensions/zulip/config.yaml | ✅ |
|
||||
| Health port | 9200 | ✅ |
|
||||
| @all-bots user ID | 20 | ✅ (config, verified by API at runtime) |
|
||||
| PM2 process name | abiba-zulip | ✅ |
|
||||
| Provider | syslog-harness (http://192.168.68.116/v1) | ✅ |
|
||||
| Default model | deepseek-v4-pro | ✅ (settings.json) |
|
||||
|
||||
## Architecture
|
||||
|
||||
The pi Zulip extension uses a **router-worker architecture** (v2):
|
||||
|
||||
- **Router** (PM2 `abiba-zulip`, `ZULIP_ROLE=router`): Polls Zulip for events,
|
||||
maintains a per-sender pool of pi RPC worker processes. Each sender gets
|
||||
their own `pi --mode rpc --session-dir` process with persistent sessions.
|
||||
Handles streaming edits back to Zulip.
|
||||
- **Worker** (child `pi --mode rpc`): Runs the agent with per-sender persistent
|
||||
sessions. No Zulip logic in the worker — the router handles all Zulip I/O.
|
||||
|
||||
The extension loads in ALL pi sessions (via `settings.json` extensions array)
|
||||
but is a **NO-OP** unless `ZULIP_ROLE=router` is set. Only the PM2 router process
|
||||
carries the env var.
|
||||
|
||||
## Maintains
|
||||
|
||||
- extension_valid: bool — Extension code imports without errors
|
||||
- pm2_running: bool — PM2 process `abiba-zulip` is online
|
||||
- health_responding: bool — GET :9200/health returns "ok"
|
||||
- zulip_connected: bool — Queue registered, bot identity resolved
|
||||
- loopback_delivered: bool — Test DM sent and received
|
||||
- model_valid: bool — Configured models match LiteLLM authorized models
|
||||
|
||||
### Postconditions
|
||||
|
||||
- PM2 process `abiba-zulip` online and stable (uptime > 30s)
|
||||
- Health endpoint returns `{ status: "ok", connected: true }`
|
||||
- Worker pool creates sessions on demand
|
||||
- Echo prevention active (BOT_EMAILS includes all known bots)
|
||||
- PM2 saved for auto-restart on boot
|
||||
|
||||
## Requires
|
||||
|
||||
- Node.js with `yaml` module available
|
||||
- PM2 installed globally
|
||||
- Zulip API key in `config.yaml`
|
||||
- `pi` CLI available on PATH
|
||||
- Zulip server accessible at https://chat.sysloggh.net
|
||||
- LiteLLM provider accessible at http://192.168.68.116/v1
|
||||
|
||||
## Execution
|
||||
|
||||
### Step 1: Validate Extension Code
|
||||
|
||||
```bash
|
||||
node -e "import('file:///root/.pi/agent/extensions/zulip/index.js').then(() => console.log('OK')).catch(e => {console.error('FAIL:', e.message); process.exit(1)})"
|
||||
```
|
||||
|
||||
Expected: `OK`. If FAIL → check for missing dependencies, syntax errors.
|
||||
|
||||
### Step 2: Validate Model IDs
|
||||
|
||||
Compare configured models against LiteLLM authorized models:
|
||||
|
||||
```bash
|
||||
API_KEY=$(grep -oP 'apiKey:\s*\K.*' /root/.pi/agent/models.json | head -1)
|
||||
curl -s -H "Authorization: Bearer $API_KEY" http://192.168.68.116/v1/models | \
|
||||
python3 -c "import json,sys; d=json.load(sys.stdin); [print(m['id']) for m in d.get('data',[])]" 2>/dev/null
|
||||
```
|
||||
|
||||
Check: Every model ID in `models.json` must appear in the authorized list.
|
||||
If not → fix `models.json` to only include authorized models (prefer `syslog-auto`).
|
||||
|
||||
### Step 3: Verify Config Integrity
|
||||
|
||||
```bash
|
||||
python3 -c "
|
||||
import yaml, sys
|
||||
with open('/root/.pi/agent/extensions/zulip/config.yaml') as f:
|
||||
cfg = yaml.safe_load(f)
|
||||
required = ['zulip.site', 'zulip.email', 'zulip.api_key', 'agent.name']
|
||||
for k in required:
|
||||
keys = k.split('.')
|
||||
v = cfg
|
||||
for kk in keys:
|
||||
v = v.get(kk)
|
||||
if v is None:
|
||||
print(f'MISSING: {k}')
|
||||
sys.exit(1)
|
||||
print('Config valid')
|
||||
print(f' site={cfg[\"zulip\"][\"site\"]}')
|
||||
print(f' email={cfg[\"zulip\"][\"email\"]}')
|
||||
print(f' agent={cfg[\"agent\"][\"name\"]}')
|
||||
print(f' health_port={cfg.get(\"health_port\", 9200)}')
|
||||
"
|
||||
```
|
||||
|
||||
Expected: Config valid with all fields non-empty.
|
||||
|
||||
### Step 4: Remove Stale Systemd Service
|
||||
|
||||
The old `abiba-zulip.service` points to `/opt/abiba-zulip/dist/index.js` (compiled
|
||||
TypeScript, not the v2 extension). It's disabled and stale. Remove it:
|
||||
|
||||
```bash
|
||||
systemctl stop abiba-zulip 2>/dev/null || true
|
||||
systemctl disable abiba-zulip 2>/dev/null || true
|
||||
rm -f /etc/systemd/system/abiba-zulip.service
|
||||
systemctl daemon-reload
|
||||
```
|
||||
|
||||
### Step 5: Start PM2 Process
|
||||
|
||||
**Critical:** The extension MUST run via `pi --mode rpc`, NOT `node index.js` directly.
|
||||
The extension exports a function that requires pi's session lifecycle. Running
|
||||
`node index.js` loads the module but never calls the export, so nothing happens.
|
||||
`pi --mode rpc` loads all extensions (including Zulip) and fires `session_start`.
|
||||
|
||||
```bash
|
||||
# Stop existing if any
|
||||
pm2 delete abiba-zulip 2>/dev/null || true
|
||||
|
||||
# Start pi in RPC mode with ZULIP_ROLE=router env
|
||||
ZULIP_ROLE=router pm2 start "$(which pi)" \
|
||||
--name abiba-zulip \
|
||||
--interpreter none \
|
||||
-- --mode rpc --no-session
|
||||
```
|
||||
|
||||
Wait 10 seconds for pi to load all extensions, fire session_start, and the Zulip
|
||||
router to register its event queue.
|
||||
|
||||
### Step 6: Validate PM2 Process
|
||||
|
||||
```bash
|
||||
pm2 show abiba-zulip --no-color
|
||||
```
|
||||
|
||||
Check: `status=online`, `restarts=0`, `uptime > 5s`.
|
||||
|
||||
### Step 7: Check Logs for Connection
|
||||
|
||||
```bash
|
||||
sleep 3
|
||||
tail -20 /root/.pm2/logs/abiba-zulip-out.log
|
||||
```
|
||||
|
||||
Look for:
|
||||
- `[zulip-ext] Connecting to https://chat.sysloggh.net as abiba-bot@chat.sysloggh.net…`
|
||||
- `[zulip-ext] Bot user_id=N, all-bots user_id=N`
|
||||
- `[zulip-ext] Connected, queue=N`
|
||||
- `[zulip-ext] Echo prevention: N bot emails`
|
||||
- `[zulip-ext] Health endpoint on :9200`
|
||||
|
||||
If error → check API key, network to chat.sysloggh.net.
|
||||
|
||||
### Step 8: Health Endpoint
|
||||
|
||||
```bash
|
||||
curl -s http://localhost:9200/health | python3 -m json.tool
|
||||
```
|
||||
|
||||
Check:
|
||||
- `status: "ok"` (not "down")
|
||||
- `zulip.connected: true`
|
||||
- `zulip.queue_id` is non-null string
|
||||
- `zulip.bot_user_id` is positive integer
|
||||
|
||||
### Step 9: DM Loopback Test
|
||||
|
||||
```bash
|
||||
curl -s http://localhost:9200/health | python3 -c "
|
||||
import json,sys
|
||||
d = json.load(sys.stdin)
|
||||
if d.get('zulip',{}).get('connected'):
|
||||
print(f'✅ Zulip connected. Queue: {d[\"zulip\"][\"queue_id\"]}')
|
||||
print(f' Bot user_id: {d[\"zulip\"][\"bot_user_id\"]}')
|
||||
print(f' Messages processed: {d[\"zulip\"][\"messages_processed\"]}')
|
||||
else:
|
||||
print('❌ Zulip NOT connected')
|
||||
sys.exit(1)
|
||||
"
|
||||
```
|
||||
|
||||
### Step 10: Save PM2 for Auto-Start
|
||||
|
||||
```bash
|
||||
pm2 save
|
||||
pm2 startup systemd -u root --hp /root 2>/dev/null || true
|
||||
```
|
||||
|
||||
### Step 11: Report
|
||||
|
||||
Compile results:
|
||||
|
||||
| Check | Pass? |
|
||||
|-------|-------|
|
||||
| Extension code imports | extension_valid |
|
||||
| Model IDs authorized | model_valid |
|
||||
| Config integrity | config_valid |
|
||||
| PM2 process online | pm2_running |
|
||||
| Health endpoint | health_responding |
|
||||
| Zulip connected | zulip_connected |
|
||||
|
||||
All pass → ✅ **Abiba Zulip restored.** Relay success to user.
|
||||
|
||||
Partial failure → see recovery matrix below.
|
||||
|
||||
## Recovery Matrix
|
||||
|
||||
| Failure | Recovery |
|
||||
|---------|----------|
|
||||
| Extension import fails | Check `node_modules/zulip-js` exists; run `npm install` in extension dir |
|
||||
| Model ID mismatch | Fix `models.json` to use `syslog-auto` as default model; remove invalid IDs |
|
||||
| Config missing | Restore from backup or recreate from scratch |
|
||||
| PM2 won't start | Check `node` version (>=18); check port 9200 not in use |
|
||||
| Health "down" | Check logs for connection errors; verify Zulip API key; check network |
|
||||
| "address already in use" | Kill old process: `fuser -k 9200/tcp` |
|
||||
| Queue registration fails | Check Zulip API key validity; verify bot is active in Zulip admin |
|
||||
| Rate limit (429) | Extension has built-in retry-after handling — wait, don't restart |
|
||||
|
||||
## Known Failure Modes
|
||||
|
||||
| Symptom | Root Cause | Recovery |
|
||||
|---------|-----------|----------|
|
||||
| Extension loads but no events | `ZULIP_ROLE` not set | Ensure PM2 env has `ZULIP_ROLE=router` |
|
||||
| Worker stays "busy" forever | Model ID not authorized by LiteLLM | Fix models.json (lesson #11) |
|
||||
| Placeholder sent but no response | editMessage API fails silently | Extension has fallback (sends new msg); check Zulip API |
|
||||
| Queue expires rapidly | Poll interval too aggressive | v2 uses 3s poll with long-poll — should be fine |
|
||||
| Bot doesn't respond to @mentions | Not subscribed to stream | Bot auto-subscribes via API |
|
||||
| Stale error in health | `last_error` not cleared | v2 clears on successful poll (lesson #4) |
|
||||
|
||||
## Appendix: Root Cause & Fix Summary (2026-07-13)
|
||||
|
||||
**Problem:** Zulip extension was offline — no PM2 process running.
|
||||
|
||||
**Root cause:** The PM2 command ran `node index.js` directly (which loads the
|
||||
extension module but never calls the exported function). The extension requires
|
||||
pi's session lifecycle — pi loads extensions, fires `session_start`, and the
|
||||
Zulip extension hooks into that event.
|
||||
|
||||
**Fix:** Run `pi --mode rpc` (not `node index.js`). The `--mode rpc` flag keeps
|
||||
pi alive listening for RPC commands on stdin while the Zulip extension's router
|
||||
runs in the background via the `session_start` hook.
|
||||
|
||||
```bash
|
||||
ZULIP_ROLE=router pm2 start "$(which pi)" --name abiba-zulip \
|
||||
--interpreter none -- --mode rpc --no-session
|
||||
```
|
||||
|
||||
**Additional fixes applied:**
|
||||
- Fixed `models.json`: replaced `qwen3.6-35B-A3B` (not authorized by LiteLLM)
|
||||
with `syslog-auto` + `strix-moe` (prevents silent worker failure per
|
||||
Lesson #11)
|
||||
- Removed stale systemd unit `abiba-zulip.service` (pointed to old TS code)
|
||||
- PM2 saved for auto-restart on boot
|
||||
|
||||
## Appendix: PM2 Ecosystem Config (Optional)
|
||||
|
||||
If preferred over manual `pm2 start`, create `/root/ecosystem.config.js` entry:
|
||||
|
||||
```js
|
||||
module.exports = {
|
||||
apps: [{
|
||||
name: 'abiba-zulip',
|
||||
script: '/bin/pi',
|
||||
interpreter: 'none',
|
||||
args: '--mode rpc --no-session',
|
||||
cwd: '/root',
|
||||
env: {
|
||||
ZULIP_ROLE: 'router',
|
||||
},
|
||||
log_file: '/root/.pm2/logs/abiba-zulip-out.log',
|
||||
error_file: '/root/.pm2/logs/abiba-zulip-error.log',
|
||||
max_restarts: 20,
|
||||
restart_delay: 5000,
|
||||
}]
|
||||
};
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
**Last verified good state**: 2026-07-13 — Extension v2 running via `pi --mode rpc`, health endpoint :9200 returning `{status:"ok",connected:true}`, queue a669f21e.
|
||||
File diff suppressed because it is too large
Load Diff
@@ -0,0 +1,612 @@
|
||||
# Cron Prompts Review — All 10 Scheduled Contracts
|
||||
|
||||
Generated: 2026-07-13 20:59:18 ET
|
||||
|
||||
---
|
||||
|
||||
## hermes-key-enforcement
|
||||
|
||||
**Category:** compliance | **Domain:** hermes-agent | **Owner:** abiba | **Schedule:** 0 6 * * *
|
||||
|
||||
```
|
||||
Contract Enforcement: hermes-key-enforcement
|
||||
|
||||
Category: compliance
|
||||
Domain: hermes-agent
|
||||
Owner: abiba
|
||||
Schedule: Daily compliance scan at 6am ET
|
||||
|
||||
This is a compliance contract. Verify that the contract enforces the required standards and policies. Report any violations found.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: hermes-key-enforcement.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/hermes-key-enforcement/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "no plaintext API keys in config",
|
||||
"verify": "grep -rc 'api_key: sk-' /root/.hermes/config.yaml",
|
||||
"expect": "0 matches"
|
||||
},
|
||||
{
|
||||
"check": "api_key_env used for harness/litellm providers",
|
||||
"verify": "grep -c 'api_key_env.*LITELLM_API_KEY' /root/.hermes/config.yaml",
|
||||
"expect": "count > 0"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert + pause
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + pause + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/hermes-key-enforcement/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=hermes-key-enforcement, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## hermes-config-template
|
||||
|
||||
**Category:** compliance | **Domain:** hermes-agent | **Owner:** abiba | **Schedule:** 0 4 * * 1
|
||||
|
||||
```
|
||||
Contract Enforcement: hermes-config-template
|
||||
|
||||
Category: compliance
|
||||
Domain: hermes-agent
|
||||
Owner: abiba
|
||||
Schedule: Weekly config drift check Monday at 4am ET
|
||||
|
||||
This is a compliance contract. Verify that the contract enforces the required standards and policies. Report any violations found.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: hermes-config-template.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/hermes-config-template/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "agent config template_version matches template file",
|
||||
"verify": "grep -q 'template_version' /root/.hermes/config.yaml && diff <(grep 'template_version' /root/.hermes/config.yaml | cut -d: -f2 | xargs) <(grep 'template_version' /root/prose-contracts/hermes-config-template.prose.md | cut -d: -f2 | xargs) && echo match || echo mismatch",
|
||||
"expect": "match"
|
||||
},
|
||||
{
|
||||
"check": "config file is valid YAML",
|
||||
"verify": "python3 -c 'import yaml; yaml.safe_load(open(\"/root/.hermes/config.yaml\"))' && echo valid || echo invalid",
|
||||
"expect": "valid"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/hermes-config-template/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=hermes-config-template, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## hermes-agent-baseline
|
||||
|
||||
**Category:** compliance | **Domain:** hermes-agent | **Owner:** abiba | **Schedule:** 0 5 * * 1
|
||||
|
||||
```
|
||||
Contract Enforcement: hermes-agent-baseline
|
||||
|
||||
Category: compliance
|
||||
Domain: hermes-agent
|
||||
Owner: abiba
|
||||
Schedule: Weekly baseline verification Monday at 5am ET
|
||||
|
||||
This is a compliance contract. Verify that the contract enforces the required standards and policies. Report any violations found.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: hermes-agent-baseline.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/hermes-agent-baseline/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "Hermes agent process running",
|
||||
"verify": "pgrep -f 'hermes' > /dev/null && echo running || echo stopped",
|
||||
"expect": "running"
|
||||
},
|
||||
{
|
||||
"check": "agent config file exists and valid YAML",
|
||||
"verify": "test -f /root/.hermes/config.yaml && python3 -c 'import yaml; yaml.safe_load(open(\"/root/.hermes/config.yaml\"))' && echo valid || echo invalid",
|
||||
"expect": "valid"
|
||||
},
|
||||
{
|
||||
"check": "no uncommitted changes in hermes directory",
|
||||
"verify": "cd /root/.hermes && git status --porcelain | wc -l",
|
||||
"expect": "0"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/hermes-agent-baseline/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=hermes-agent-baseline, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## proxmox-monitor
|
||||
|
||||
**Category:** monitoring | **Domain:** proxmox | **Owner:** abiba | **Schedule:** */15 * * * *
|
||||
|
||||
```
|
||||
Contract Enforcement: proxmox-monitor
|
||||
|
||||
Category: monitoring
|
||||
Domain: proxmox
|
||||
Owner: abiba
|
||||
Schedule: Every 15 minutes
|
||||
|
||||
This is a monitoring contract. Execute the monitoring checks defined in the contract. Report any deviations from expected state.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: proxmox-monitor.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/proxmox-monitor/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "all Proxmox nodes reachable",
|
||||
"verify": "curl -sf http://192.168.68.10:8006/api2/json/status | jq '.status'",
|
||||
"expect": "healthy"
|
||||
},
|
||||
{
|
||||
"check": "no VMs in crashed state",
|
||||
"verify": "pvesh get /nodes -output-format=json | jq '.[] | select(.status==\"Crashed\")'",
|
||||
"expect": "empty"
|
||||
},
|
||||
{
|
||||
"check": "backups running on schedule",
|
||||
"verify": "pbs-info --check",
|
||||
"expect": "last_backup < 24h ago"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba, mumuni → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert + trigger_remediation
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + pause + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/proxmox-monitor/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=proxmox-monitor, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## gpu-monitor
|
||||
|
||||
**Category:** monitoring | **Domain:** gpu | **Owner:** abiba | **Schedule:** */15 * * * *
|
||||
|
||||
```
|
||||
Contract Enforcement: gpu-monitor
|
||||
|
||||
Category: monitoring
|
||||
Domain: gpu
|
||||
Owner: abiba
|
||||
Schedule: Every 15 minutes — polls all GPU subsystems
|
||||
|
||||
This is a monitoring contract. Execute the monitoring checks defined in the contract. Report any deviations from expected state.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: gpu-monitor.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/gpu-monitor/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "GPU metrics accessible",
|
||||
"verify": "curl -sf http://localhost:9100/gpu-data",
|
||||
"expect": "200 OK, populated data"
|
||||
},
|
||||
{
|
||||
"check": "dashboard serving",
|
||||
"verify": "curl -sf http://localhost:9100/gpu-fleet.html",
|
||||
"expect": "200 OK, HTML returned"
|
||||
},
|
||||
{
|
||||
"check": "health endpoint responsive",
|
||||
"verify": "curl -sf http://localhost:9100/health",
|
||||
"expect": "200 OK"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba, mumuni → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert + trigger_remediation
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + pause + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/gpu-monitor/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=gpu-monitor, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## infrastructure-monitoring
|
||||
|
||||
**Category:** monitoring | **Domain:** infrastructure | **Owner:** abiba | **Schedule:** */30 * * * *
|
||||
|
||||
```
|
||||
Contract Enforcement: infrastructure-monitoring
|
||||
|
||||
Category: monitoring
|
||||
Domain: infrastructure
|
||||
Owner: abiba
|
||||
Schedule: Every 30 minutes
|
||||
|
||||
This is a monitoring contract. Execute the monitoring checks defined in the contract. Report any deviations from expected state.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: infrastructure-monitoring.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/infrastructure-monitoring/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "Proxmox API reachable",
|
||||
"verify": "curl -sf http://192.168.68.10:8006/api2/json",
|
||||
"expect": "200 OK"
|
||||
},
|
||||
{
|
||||
"check": "Zulip API reachable",
|
||||
"verify": "curl -sf https://chat.sysloggh.net/api/v1/me",
|
||||
"expect": "200 OK"
|
||||
},
|
||||
{
|
||||
"check": "LiteLLM proxy reachable",
|
||||
"verify": "curl -sf http://192.168.68.116/litellm/v1/models",
|
||||
"expect": "200 OK"
|
||||
},
|
||||
{
|
||||
"check": "Gitea API reachable",
|
||||
"verify": "curl -sf https://git.sysloggh.net/api/v1/version",
|
||||
"expect": "200 OK"
|
||||
},
|
||||
{
|
||||
"check": "SearXNG reachable",
|
||||
"verify": "curl -sf http://192.168.68.17:8080",
|
||||
"expect": "200 OK"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba, mumuni → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert + trigger_remediation
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + pause + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/infrastructure-monitoring/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=infrastructure-monitoring, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## zulip-health
|
||||
|
||||
**Category:** monitoring | **Domain:** zulip | **Owner:** abiba | **Schedule:** */15 * * * *
|
||||
|
||||
```
|
||||
Contract Enforcement: zulip-health
|
||||
|
||||
Category: monitoring
|
||||
Domain: zulip
|
||||
Owner: abiba
|
||||
Schedule: Every 15 minutes — monitors all Zulip-connected agents
|
||||
|
||||
This is a monitoring contract. Execute the monitoring checks defined in the contract. Report any deviations from expected state.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: zulip-health.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/zulip-health/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "bot registration active",
|
||||
"verify": "curl -sf https://chat.sysloggh.net/api/v1/me | jq '.user_id'",
|
||||
"expect": "bot_id present"
|
||||
},
|
||||
{
|
||||
"check": "DM delivery working",
|
||||
"verify": "curl -sf https://chat.sysloggh.net/api/v1/users/me/is-online",
|
||||
"expect": "online: true"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba, mumuni → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert + trigger_remediation
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + pause + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/zulip-health/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=zulip-health, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## litellm-health
|
||||
|
||||
**Category:** monitoring | **Domain:** litellm | **Owner:** abiba | **Schedule:** */10 * * * *
|
||||
|
||||
```
|
||||
Contract Enforcement: litellm-health
|
||||
|
||||
Category: monitoring
|
||||
Domain: litellm
|
||||
Owner: abiba
|
||||
Schedule: Every 10 minutes — LiteLLM proxy health
|
||||
|
||||
This is a monitoring contract. Execute the monitoring checks defined in the contract. Report any deviations from expected state.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: litellm-health.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/litellm-health/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "LiteLLM proxy reachable",
|
||||
"verify": "curl -sf http://192.168.68.116/litellm/v1/models",
|
||||
"expect": "200 OK, models returned"
|
||||
},
|
||||
{
|
||||
"check": "router deprecated, nginx routes work",
|
||||
"verify": "curl -sf https://litellm.sysloggh.net/v1/models",
|
||||
"expect": "200 OK (via nginx)"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba, mumuni → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert + trigger_remediation
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + pause + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/litellm-health/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=litellm-health, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## memory-audit-maintenance
|
||||
|
||||
**Category:** maintenance | **Domain:** memory | **Owner:** mumuni | **Schedule:** 0 3 * * *
|
||||
|
||||
```
|
||||
Contract Enforcement: memory-audit-maintenance
|
||||
|
||||
Category: maintenance
|
||||
Domain: memory
|
||||
Owner: mumuni
|
||||
Schedule: Daily at 3am ET
|
||||
|
||||
This is a maintenance contract. Execute the maintenance tasks defined in the contract. Report any issues found.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: memory-audit-maintenance.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/memory-audit-maintenance/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "memory files below 80% capacity",
|
||||
"verify": "wc -l ~/.hermes/memories/*.md",
|
||||
"expect": "total lines < threshold"
|
||||
},
|
||||
{
|
||||
"check": "no stale entries",
|
||||
"verify": "grep -r 'STALE' ~/.hermes/memories/",
|
||||
"expect": "0 matches"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify mumuni → action: relay_alert
|
||||
- CRITICAL: notify mumuni, abiba → action: relay_alert
|
||||
- FATAL: notify mumuni, abiba, kwame → action: relay_alert + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 3 per 60.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/memory-audit-maintenance/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=memory-audit-maintenance, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## infrastructure-update
|
||||
|
||||
**Category:** maintenance | **Domain:** infrastructure | **Owner:** abiba | **Schedule:** 0 2 * * 0
|
||||
|
||||
```
|
||||
Contract Enforcement: infrastructure-update
|
||||
|
||||
Category: maintenance
|
||||
Domain: infrastructure
|
||||
Owner: abiba
|
||||
Schedule: Weekly system updates Sunday at 2am ET
|
||||
|
||||
This is a maintenance contract. Execute the maintenance tasks defined in the contract. Report any issues found.
|
||||
|
||||
Steps:
|
||||
1. Load contract from prose-contracts/main (file: infrastructure-update.prose.md)
|
||||
2. Verify prerequisites (connectivity, tools, deps)
|
||||
3. Execute contract per SOP
|
||||
4. Run postconditions from contract registry
|
||||
5. Generate receipt with status (pass/fail/escalated)
|
||||
6. If any postcondition fails, escalate per contract escalation tiers
|
||||
7. Log to ~/.hermes/runs/infrastructure-update/
|
||||
|
||||
Postconditions to verify:
|
||||
[
|
||||
{
|
||||
"check": "all services running after update",
|
||||
"verify": "systemctl list-units --state=running",
|
||||
"expect": "all critical services"
|
||||
}
|
||||
]
|
||||
|
||||
Escalation Tiers:
|
||||
- INFO: notify nobody → action: log_to_receipt
|
||||
- WARNING: notify abiba → action: relay_alert
|
||||
- CRITICAL: notify abiba, mumuni → action: relay_alert
|
||||
- FATAL: notify abiba, mumuni, kwame → action: relay_alert + human_required
|
||||
|
||||
Circuit Breaker:
|
||||
- Max retries: 1 per 120.0min window
|
||||
- On trip: escalate_to_fatal
|
||||
|
||||
Receipt format: JSON with contract, run_id, timestamp, agent, status, actions_taken, postconditions, drift_alerts, evidence_path
|
||||
Receipt storage: ~/.hermes/runs/infrastructure-update/receipt-{timestamp}.json
|
||||
Graph node: Create RA-H OS node for receipt with metadata: type=receipt, contract=infrastructure-update, status=<status>
|
||||
|
||||
If the contract has no postconditions defined (e.g., reference/pattern contracts), log that it was loaded and skip execution.
|
||||
|
||||
IMPORTANT: If the contract file does not exist in prose-contracts/main, report failure and do NOT hallucinate forward.
|
||||
```
|
||||
|
||||
|
||||
---
|
||||
*End of review*
|
||||
+119
-46
@@ -5,13 +5,16 @@ description: >
|
||||
Manages the GPU inference fleet across all hosts. Handles model deployment,
|
||||
registration, health checks, LiteLLM sync, agent key management, GPU
|
||||
saturation watchdog, Prometheus/Grafana monitoring, and self-healing.
|
||||
UPDATED 2026-07-12: Architecture is DIRECT GPU — LiteLLM routes directly
|
||||
to llama-server on each GPU host (no router in inference path). Router
|
||||
(port 9000) is running but NOT in request path. All GPUs standardized on
|
||||
api-key 'not-needed'. RTX 5070 had api-key mismatch (sk-loc...5678) that
|
||||
caused cascading 401→timeout→401 fallback loops — fixed.
|
||||
Context: RTX 3090 verified at 256K (was documented as 128K — WRONG).
|
||||
Workload: Compression moved to Strix Halo, RTX 5070 → vision/web only.
|
||||
UPDATED 2026-07-15: Stable role-based aliases introduced: strix-moe,
|
||||
gpu-dense, gpu-light. These never change — only the underlying model does.
|
||||
Strix Halo: strix-moe → unsloth/Qwen3.6-35B-A3B-MTP (UD-Q4_K_M, 22GB).
|
||||
RTX 5070: gemma-4-12b Q4_K_M → IQ4_NL + MTP draft (122 tok/s, 2x faster).
|
||||
UPDATED 2026-07-17: Context reduced fleet-wide from 256K to 128K for stability.
|
||||
Strix Halo model swapped to Genesis Hermes V3 APEX (LuffyTheFox, 24GB, uncensored,
|
||||
Hermes agent fine-tune, tensor repair, multimodal with mmproj).
|
||||
Instability observed near 100K at 256K. 128K is the stable ceiling.
|
||||
For larger context needs → fall back to external providers (deepseek).
|
||||
VRAM headroom improved: RTX 3090 ~70%, RTX 5070 ~65%.
|
||||
agent: abiba
|
||||
triggers:
|
||||
- on model add/remove
|
||||
@@ -68,48 +71,72 @@ triggers:
|
||||
│ CT 8 │ │ CT 110 │ │ CT 15 │ │ pi (.24) │
|
||||
│ RTX 3090 │ │ RTX 5070 │ │ Strix Halo│ │ GPU Monitor │
|
||||
│ 24GB │ │ 12GB │ │ 64GB UMA │ │ :9100 │
|
||||
│ 256K ctx │ │ 131K ctx │ │ 256K ctx │ │ Watchdog │
|
||||
│ qwen3.6 │ │ gemma-4-12b │ │ ornith35B │ │ Prometheus │
|
||||
│ 27B-code │ │ :8080 │ │ :8080 │ │ exporter │
|
||||
│ 128K ctx │ │ 128K ctx │ │ 128K ctx │ │ Watchdog │
|
||||
│ qwen3.6 │ │ gemma-4-12b │ │ qwen3.6 │ │ Prometheus │
|
||||
│ 27B-code │ │ :8080 │ │ -35B-udq4 │ │ exporter │
|
||||
│ :8080 │ │ :9400 (exp) │ │ :9400(exp)│ │ :9401 │
|
||||
│ :9400 │ └─────────────┘ └───────────┘ └──────────────┘
|
||||
└──────────┘
|
||||
```
|
||||
|
||||
## Current Model Assignments (2026-07-12)
|
||||
## Stable Role-Based Aliases (Introduced 2026-07-15)
|
||||
|
||||
Agent configs, cron jobs, and workflows MUST use these aliases, never model-specific names.
|
||||
When a model is swapped on a GPU, ONLY the infrastructure layer changes — agent configs are untouched.
|
||||
|
||||
| Alias | GPU | Current Model | Will Route To |
|
||||
|-------|-----|---------------|---------------|
|
||||
| `strix-moe` | Strix Halo (.15) | qwen3.6-35B-udq4 | Whatever runs on Strix Halo |
|
||||
| `gpu-dense` | RTX 3090 (.8) | qwen3.6-27B-code | Whatever runs on RTX 3090 |
|
||||
| `gpu-light` | RTX 5070 (.110) | gemma-4-12b | Whatever runs on RTX 5070 |
|
||||
|
||||
**Backward compatibility**: Old model-specific names (qwen3.6-27B-code, gemma-4-12b, qwen3.6-35B-udq4) still work
|
||||
but are deprecated for agent configs. Only the stable aliases survive model swaps.
|
||||
|
||||
## Current Model Assignments (2026-07-15)
|
||||
|
||||
| Model | GPU | Host | VRAM | Ctx | KV Cache | Parallel | Batch/Ubatch | Status |
|
||||
|-------|-----|------|------|-----|----------|----------|-------------|--------|
|
||||
| qwen3.6-27B-code | RTX 3090 | .8 (llm-gpu) | 20.7/24GB (84%) | **256K** | turbo4 | 1 | default | ✅ healthy |
|
||||
| gemma-4-12b | RTX 5070 | .110 (ocu-llm) | 10.0/12.2GB (82%) | 131K | q4_0 | 2 | 2048/1024 | ✅ healthy |
|
||||
| ornith-1.0-35b | Strix Halo Vulkan | .15 (amdpve) | ~9GB/64GB | 256K | q8_0 | 2 | 2048/512 | ✅ healthy |
|
||||
| qwen3.6-27B-code (MTP) | RTX 3090 | .8 (llm-gpu) | ~17/24.6GB (70%) | **128K** | turbo4 | 2 | default | ✅ 63 tok/s |
|
||||
| gemma-4-12b | RTX 5070 | .110 (ocu-llm) | ~7.8/12.2GB (65%) | 128K | q4_0 | 2 | 2048/1024 | ✅ healthy |
|
||||
| Genesis Hermes V3 APEX | Strix Halo Vulkan | .15 (amdpve) | ~10GB/64GB | 128K | q4_0 | 1 | 4096/1024 | ✅ 65 tok/s |
|
||||
|
||||
## Routing Configuration (LiteLLM — July 2026)
|
||||
|
||||
### syslog-auto Weighted Pool
|
||||
### syslog-auto Weighted Pool (Direct GPU — bypasses router)
|
||||
|
||||
| Model | GPU | Weight | RPM Cap | Purpose |
|
||||
| Model | GPU | Weight | RPM Cap | Timeout |
|
||||
|-------|-----|--------|---------|---------|
|
||||
| qwen3.6-27B-code | RTX 3090 | 0.55 | 500 | Heavy reasoning, code, long context |
|
||||
| ornith-1.0-35b | Strix Halo | 0.30 | **60** | Agentic workflows, tool calling |
|
||||
| gemma-4-12b | RTX 5070 | 0.15 | 200 | Overflow + vision |
|
||||
| qwen3.6-27B-code | RTX 3090 (.8:8080) | **0.55** | 500 | **300s** |
|
||||
| Genesis Hermes V3 APEX | Strix Halo (.15:8080) | **0.30** | 60 | **300s** |
|
||||
| gemma-4-12b | RTX 5070 (.110:8080) | **0.15** | 200 | **120s** |
|
||||
|
||||
Note: All syslog-auto entries route directly to GPUs with `api_key: not-needed`. The router (port 9000) is NOT in the inference path.
|
||||
|
||||
### Direct Model Endpoints
|
||||
|
||||
| Model | RPM Cap | Notes |
|
||||
|-------|---------|-------|
|
||||
| ornith-1.0-35b | 40 | Tight cap — prevents Strix overload |
|
||||
| strix-moe (Hermes V3) | 40 | Tight cap — prevents Strix overload |
|
||||
| qwen3.6-27B-code | 500 | High cap — primary workhorse |
|
||||
| gemma-4-12b | 500 | High cap — fast 12B |
|
||||
| gemma-4-12b | 500 | High cap — IQ4_NL+MTP, 122 tok/s |
|
||||
|
||||
### Stable Aliases (for agent configs — never change)
|
||||
|
||||
| Alias | RPM Cap | Routes To | Purpose |
|
||||
|-------|---------|-----------|---------|
|
||||
| `strix-moe` | 40 | Strix Halo | Compression tasks (MoE models) |
|
||||
| `gpu-dense` | 500 | RTX 3090 | Heavy reasoning |
|
||||
| `gpu-light` | 500 | RTX 5070 | Vision, web extract, light tasks |
|
||||
|
||||
### Fallback Chains
|
||||
- gemma → qwen
|
||||
- qwen → gemma
|
||||
- ornith → qwen → gemma
|
||||
- syslog-auto → qwen → gemma → ornith
|
||||
- strix-moe → qwen → gemma
|
||||
- syslog-auto → qwen → gemma → qwen3.6-35B-udq4
|
||||
|
||||
### Why ornith RPM Is Capped
|
||||
- Direct: 40 RPM (tight) — Strix Halo is shared with compression tasks
|
||||
### Why Strix Halo RPM Is Capped
|
||||
- Direct (strix-moe): 40 RPM (tight) — Strix Halo is shared with compression tasks
|
||||
- Via syslog-auto: 60 RPM (moderate) — prevents flooding when multiple agents use syslog-auto simultaneously
|
||||
- Combined max: ~100 RPM across both paths — Strix Halo can sustain this at 80°C
|
||||
|
||||
@@ -163,7 +190,7 @@ Show full fleet status: GPUs, models, VRAM, context windows, parallel slots, act
|
||||
3. Check LiteLLM: `curl http://192.168.68.116/health` (expect "I'm alive!")
|
||||
4. Check LiteLLM models: `curl -H "Authorization: Bearer $MASTER_KEY" http://192.168.68.116/v1/models`
|
||||
5. Check LiteLLM timeouts: `grep -n 'timeout:' /opt/inference-harness/litellm_config.yaml`
|
||||
- gemma-4-12b: 120s, qwen3.6-27B: 90s, ornith-1.0-35b: 120s
|
||||
- gemma-4-12b: 120s, qwen3.6-27B-code: 300s, qwen3.6-35B-udq4/strix-moe: 300s (strix-moe does NOT exist — legacy name, do not use)
|
||||
- global request_timeout: 300s, nginx proxy_read_timeout: 600s
|
||||
6. Check AMD metrics: `curl http://192.168.68.15:9400/metrics` (Radeon 8060S, util%, VRAM, temp, power)
|
||||
7. Check port conflicts: verify only one llama-server on :8080 per host
|
||||
@@ -203,7 +230,7 @@ If no SSH access, send Zulip DM via abiba-bot with vault update instructions.
|
||||
| `/root/scripts/gpu-saturation-watchdog.py` | pi (.24) | Auto-restart stuck llama-server |
|
||||
| `/root/dashboard/gpu-fleet.html` | pi (.24) | Live HTML dashboard |
|
||||
| `/etc/systemd/system/llama-server.service` | .8, .110 | llama-server daemons (Nvidia GPUs) |
|
||||
| `/etc/systemd/system/ornith-server.service` | .15 (amdpve) | llama-server daemon (Vulkan, Strix Halo). Note: `llama-server.service` and `llama-server@.service` are **masked** on .15 to prevent port 8080 collisions. |
|
||||
| `/etc/systemd/system/strix-server.service` | .15 (amdpve) | llama-server daemon (Vulkan, Strix Halo) running unsloth/Qwen3.6-35B-A3B-MTP-GGUF. Note: `llama-server.service` and `llama-server@.service` are **masked** on .15 to prevent port 8080 collisions. |
|
||||
|
||||
## Prometheus & Grafana
|
||||
|
||||
@@ -220,14 +247,14 @@ If no SSH access, send Zulip DM via abiba-bot with vault update instructions.
|
||||
- **Router startup race**: Compose router.py doesn't call load_roster(). Reload thread sleeps 30s first.
|
||||
Fix: trigger roster reload via SSH after restart, or rebuild image with startup load_roster().
|
||||
- **LiteLLM /metrics**: Requires auth. Prometheus uses `/health/liveliness` as workaround.
|
||||
- **VRAM (2026-07-12)**: RTX 3090 at 20.7/24GB (84%), RTX 5070 at 10.0/12.2GB (82%). RTX 3090 context increased to 256K (was incorrectly documented as 128K — verified via /proc/PID/cmdline).
|
||||
- **RTX 3090 runs `--parallel 1`** (verified 2026-07-12). RTX 5070 and Strix at parallel 2.
|
||||
- **RTX 3090 config**: `-c 262144 -ctk turbo4 -ctv turbo4 --parallel 1 --flash-attn on --cont-batching`. Service: `/home/llmuser/llama-wrapper.sh`.
|
||||
- **RTX 5070 config**: `--ctx-size 131072 --cache-type-k q4_0 --cache-type-v q4_0 --batch-size 2048 --ubatch-size 1024 --parallel 2`. Api-key standardized to `not-needed` (was `sk-loc...5678` causing 401 loops). Service: `/home/llmuser/llama-wrapper.sh`.
|
||||
- **LiteLLM timeout tuning (2026-07-08)**: gemma-4-12b 25→120s, qwen3.6-27B-code 40→90s, syslog-auto (qwen route) 40→90s. Nginx proxy_read_timeout: 600s. Global request_timeout: 300s. Config at `/opt/inference-harness/litellm_config.yaml`.
|
||||
- **Strix Halo GPU**: Vulkan is the working backend (ROCm/HIP path abandoned — HSA runtime blocked on Debian 13). Build at `/root/llama.cpp/build-vk/`, commit `4fc4ec5` (2026-07-01), ggml 0.15.3 shared-lib arch. Mesa RADV 25.0.7, KHR_coopmat fast path active. ~70 tok/s gen, 532 tok/s prompt. Service: `ornith-server.service` on port 8080, 256K context, flash-attn + q8 KV.
|
||||
- **VRAM (2026-07-15)**: RTX 3090 at ~17/24.6GB (~70%) with **128K context** (reduced from 256K 2026-07-17). RTX 5070 at ~7.8/12.2GB (~65%) with 128K context + MTP. Strix Halo at ~7GB/64GB.
|
||||
- **RTX 3090 runs `--parallel 2`** with MTP draft (spec-type draft-mtp, spec-draft-n-max 2).
|
||||
- **RTX 3090 config**: `-c 131072 -ctk turbo4 -ctv turbo4 --parallel 2 --flash-attn on --cont-batching --spec-type draft-mtp`. Context reduced to 128K (2026-07-17, was 256K). VRAM: ~70%. Service: `/home/llmuser/llama-wrapper.sh`.
|
||||
- **RTX 5070 config (2026-07-15)**: Switched to IQ4_NL + MTP draft (Q8_0) at 128K context. Gen speed: 122 tok/s. VRAM: ~7.8/12.2GB (~65%). Service: `/home/llmuser/llama-wrapper.sh`. Config: `--model gemma-4-12b-it-IQ4_NL.gguf --spec-draft-model gemma-4-12b-it-Q8_0-MTP.gguf --spec-type draft-mtp --spec-draft-n-max 4 --ctx-size 131072`.
|
||||
- **LiteLLM timeout tuning (verified 2026-07-16 against `/opt/inference-harness/litellm_config.yaml` on CT 116)**: gemma-4-12b 120s, qwen3.6-27B-code 300s, qwen3.6-35B-udq4 300s, strix-moe 300s, syslog-auto routes all 300s. Nginx proxy_read_timeout: 600s. Global request_timeout: 300s.
|
||||
- **Strix Halo GPU**: Vulkan is the working backend (ROCm/HIP path abandoned — HSA runtime blocked on Debian 13). Build at `/root/llama.cpp/build-vk/`, commit `4fc4ec5` (2026-07-01), ggml 0.15.3 shared-lib arch. Mesa RADV 25.0.7, KHR_coopmat fast path active. ~70 tok/s gen, 532 tok/s prompt. Service: `strix-server.service` on port 8080, model: `LuffyTheFox/Qwen3.6-35B-A3B-Uncensored-Genesis-Hermes-V3-GGUF` (APEX quant), alias `strix-moe`, 128K context, flash-attn + q4 KV, multimodal (mmproj loaded). Hermes agent fine-tune, tensor repair (SSM layers fixed via SVD), uncensored (0/465 refusals).
|
||||
- **Port conflict detection (2026-07-05)**: All 3 GPU wrappers now detect ghost processes squatting port 8080 before starting. `.8` and `.110` use inline pre-start check in `llama-wrapper.sh`; `.15` uses `/usr/local/bin/port-cleanup.sh` ExecStartPre. Replaces the blanket `pkill -9 -x llama-server` on .15 which would kill ALL llama-server instances regardless of port. Ghost detection was the root cause of .8 crash-looping for 27+ restarts (stale pid 25836 squatting 8080 after OOM kill).
|
||||
- **Strix Halo thermal safeguard (2026-07-02)**: `ornith-server.service` has `-n 8192` (hard generation cap per request). Without it, `--predict` defaults to -1 (infinity) — a runaway request from .123 (Mumuni) decoded 39,868 tokens over 24 min, pushing Tctl to 98°C (crit 89.8°C) and throttling 70→29 t/s. The cap bounds worst-case generation to ~5 min. Do NOT remove `-n` without a replacement ceiling. Sustained load hits ~84°C even at 92s; the APU is fanless/low-flow. Clients MUST also set `max_tokens`.
|
||||
- **Strix Halo thermal safeguard (2026-07-02)**: `strix-server.service` has `-n 8192` (hard generation cap per request). Without it, `--predict` defaults to -1 (infinity) — a runaway request from .123 (Mumuni) decoded 39,868 tokens over 24 min, pushing Tctl to 98°C (crit 89.8°C) and throttling 70→29 t/s. The cap bounds worst-case generation to ~5 min. Do NOT remove `-n` without a replacement ceiling. Sustained load hits ~84°C even at 92s; the APU is fanless/low-flow. Clients MUST also set `max_tokens`.
|
||||
- **Port 8080 firewall**: amdpve iptables restricts 8080 to 192.168.68.116 (LiteLLM/router host) only. All inbound connections are from .116 (LiteLLM proxied via nginx). Localhost curls hang (SYN dropped). Always test from .116.
|
||||
- **Router sidecar fallback**: `router.py` `check_gpu_health()` now probes GPU `/health` directly when sidecar at :8090 is absent. Sidecar JSON exporters not deployed on any GPU host — router relies on GPU-direct fallback.
|
||||
- **Router GPU_MOE_URL bug (fixed 2026-07-01)**: docker-compose had `GPU_MOE_URL=.110:8080` (gemma host) instead of `.15:8080` (amdpve). Corrected.
|
||||
@@ -237,11 +264,14 @@ If no SSH access, send Zulip DM via abiba-bot with vault update instructions.
|
||||
|
||||
## GPU Inference Benchmarks (Current)
|
||||
|
||||
| GPU | Model | Gen tok/s | Prompt tok/s | Baseline | Samples |
|
||||
| GPU | Model | Gen tok/s | Prompt tok/s | Baseline | Context |
|
||||
|-----|-------|-----------|--------------|----------|---------|
|
||||
| RTX 3090 (.8) | qwen3.6-27B-code | 75 | 305 | 74 | 6 |
|
||||
| RTX 5070 (.110) | gemma-4-12b | 75 | 323 | 75 | 6 |
|
||||
| Strix Halo (.15) | ornith-1.0-35b | 70 | 532 | 70 | 6 |
|
||||
| RTX 3090 (.8) | qwen3.6-27B-code (MTP) | **63** | — | — | **128K** |
|
||||
| RTX 5070 (.110) | gemma-4-12b (IQ4_NL+MTP) | **191** | — | — | **128K** |
|
||||
| Strix Halo (.15) | Genesis Hermes V3 APEX | **65** | 140 | — | **128K** |
|
||||
|
||||
Benchmarks from 2026-07-17. Strix Halo swapped to Genesis Hermes V3 APEX (LuffyTheFox). RTX 5070 MTP provides 2.7x speedup over pre-upgrade 70 tok/s.
|
||||
All 3 GPUs now at 128K context (2026-07-17, reduced from 256K for stability).
|
||||
|
||||
Benchmarks run through LiteLLM proxy (192.168.68.116:4001) every 5 minutes.
|
||||
Degradation alerts fire at 30% (warning) and 50% (critical) below baseline.
|
||||
@@ -249,12 +279,55 @@ History stored at `/root/data/toks-history.json` with 7-day rolling window.
|
||||
|
||||
**Note (2026-07-01)**: Strix Halo prompt tok/s jumped 209→532 after Vulkan rebuild (cooperative-matrix fast path now active on GFX1151). Baseline may need re-calibration.
|
||||
|
||||
## Agent Config Implications (2026-07-12)
|
||||
## Agent Config Implications (2026-07-15)
|
||||
|
||||
With RTX 3090 at 256K context (verified July 2026):
|
||||
- Agents using `syslog-auto` (55/30/15 qwen+ornith+gemma): `context_length: 262144` — ornith and qwen both support it
|
||||
- Agents using `qwen3.6-27B-code` directly: `context_length: 262144` (256K ctx verified)
|
||||
- Agents using `gemma-4-12b` directly (auxiliary tasks): `context_length: 131072`
|
||||
- Compression threshold at 0.65: fires at ~170K for 262K context window on Strix Halo
|
||||
- All Hermes clients MUST set `max_tokens: 4096` — first line of defense before server-side `-n 8192` cap
|
||||
- Port 8080 is used on all 3 GPU hosts (not 8090 as previously documented)
|
||||
### Stable Aliases — CRITICAL
|
||||
|
||||
All agent configs MUST use stable role-based aliases, never model-specific names:
|
||||
- `compression.model: strix-moe` (NOT `qwen3.6-35B-udq4`)
|
||||
- `auxiliary.vision.model: gpu-light` (NOT `gemma-4-12b`)
|
||||
- `delegation.model: gpu-dense` (NOT `qwen3.6-27B-code`)
|
||||
- `auxiliary.web_extract.model: gpu-light`
|
||||
|
||||
When the underlying model is swapped, only the LiteLLM config changes — agent configs are untouched.
|
||||
|
||||
### Context Windows
|
||||
- RTX 3090: **128K** (reduced from 256K 2026-07-17) | RTX 5070: **128K** (reduced from 256K) | Strix Halo: **128K**
|
||||
- **All agents**: 128K ceiling — stable margin. For >128K workloads, use external providers (deepseek)
|
||||
- Compression threshold 0.65: fires at ~85K (~43K headroom before 128K ceiling)
|
||||
- Mumuni compression model alias: `strix-moe` with 300s timeout
|
||||
|
||||
### Mumuni Agent Profile
|
||||
|
||||
Mumuni (CT114, 192.168.68.123) is the primary business assistant. This profile is the reference for all agent configs:
|
||||
|
||||
| Setting | Value | Notes |
|
||||
|---------|-------|-------|
|
||||
| `model.default` | `syslog-auto` | Weighted pool (55% qwen, 30% strix, 15% gemma) |
|
||||
| `model.provider` | `custom:litellm` | LiteLLM on CT116 |
|
||||
| `compression.model` | `strix-moe` | Stable alias — survives model swaps |
|
||||
| `aux.compression.model` | `strix-moe` | Compression auxiliary model |
|
||||
| `aux.vision.model` | `gpu-light` | Vision tasks (RTX 5070) |
|
||||
| `aux.web_extract.model` | `gpu-light` | Web extraction |
|
||||
| `delegation.model` | `gpu-dense` | Sub-agent reasoning (RTX 3090) |
|
||||
| `context.max_context_window` | 131072 (128K) | Reduced from 256K 2026-07-17 — stable 128K ceiling |
|
||||
| `compression.threshold` | 0.65 | Triggers at ~85K |
|
||||
| `compression.target_ratio` | 0.3 | Compresses to ~38K |
|
||||
| `compression.protect_last_n` | 40 | Preserves last 40 messages |
|
||||
| `memory.memory_char_limit` | 800 | Brief memory entries |
|
||||
| `personalities` | `creative` | Creative assistant personality |
|
||||
| Platforms | cli, discord, homeassistant, signal, telegram, zulip | All Hermes platforms |
|
||||
| Main model timeout | 300s | LiteLLM global timeout |
|
||||
| Compression model timeout | 300s | strix-moe timeout increased from 120s |
|
||||
|
||||
### Agent Update Status (2026-07-15)
|
||||
|
||||
| Agent | Host | Status |
|
||||
|-------|------|--------|
|
||||
| **Mumuni** | CT114 (.123) | ✅ Updated to stable aliases |
|
||||
| **Tanko** | CT112 (.122) | ✅ Updated to stable aliases |
|
||||
| **Koby** | CT111 (.129) | ❌ SSH unreachable — needs Zulip DM |
|
||||
| **Koonimo** | CT113 | ❌ SSH unreachable — needs Zulip DM |
|
||||
| **Kagenz0** | CT105 | ❌ SSH unreachable — needs Zulip DM |
|
||||
|
||||
All Hermes clients MUST set `max_tokens: 4096` — first line of defense before server-side `-n 8192` cap.
|
||||
|
||||
+93
-69
@@ -6,10 +6,15 @@ description: >
|
||||
benchmarks, and predicts failures before they happen. Extends gpu-monitor
|
||||
(v2.1.0) with active remediation rules, Prometheus metrics consumption,
|
||||
VRAM trend analysis, and predictive alerting.
|
||||
UPDATED 2026-07-18: Model assignments synced to 2026-07-17 swaps.
|
||||
Router (port 9000) references replaced with direct GPU routing.
|
||||
Benchmark baselines refreshed to live values.
|
||||
Prometheus exporters removed — not deployed; fall back to direct sidecar probes.
|
||||
Stable role-based aliases (strix-moe, gpu-dense, gpu-light) from gpu-fleet.
|
||||
agent: abiba
|
||||
depends_on:
|
||||
- gpu-monitor.prose.md (live data source on .24:9100)
|
||||
- gpu-fleet.prose.md (source of truth for topology)
|
||||
- gpu-fleet.prose.md (source of truth for topology, aliases, model assignments)
|
||||
---
|
||||
|
||||
## Maintains
|
||||
@@ -22,8 +27,8 @@ depends_on:
|
||||
|
||||
## Requires
|
||||
|
||||
- gpu-monitor:function — Live fleet data from .24:9100/gpu-data
|
||||
- Prometheus exporters on all 3 GPUs (:9400/metrics)
|
||||
- gpu-monitor:function — Live fleet data from localhost:9100/gpu-data
|
||||
- Direct sidecar probe access to all GPU hosts (:8080/health)
|
||||
- SSH access to GPU hosts for restart operations
|
||||
|
||||
## Continuity
|
||||
@@ -35,21 +40,37 @@ depends_on:
|
||||
|
||||
---
|
||||
|
||||
## Current Fleet Baseline (2026-07-18)
|
||||
|
||||
| Alias | GPU | Host | Model | VRAM | Ctx | tok/s | Role |
|
||||
|-------|-----|------|-------|------|-----|-------|------|
|
||||
| `gpu-dense` | RTX 3090 24GB | ct8 (.8:8080) | ThinkingCap Qwen3.6-27B Q4_K_M + MTP + vision | 21.6/24.6GB (88%) | 128K | 74.9 | Heavy reasoning, code gen |
|
||||
| `gpu-light` | RTX 5070 12GB | ct110 (.110:8080) | HauhauCS Gemma4-12B QAT Q4_K_M + MTP draft | 10.1/12.2GB (83%) | 128K | 169.6 | Vision, web extract, light tasks |
|
||||
| `strix-moe` | Strix Halo 64GB | ct15 (.15:8080) | Genesis Hermes V3 APEX (LuffyTheFox, 24GB) | ~10/64GB (16%) | 128K | 62.9 | Compression, summarization, long docs |
|
||||
|
||||
Key notes:
|
||||
- All models use direct GPU routing via LiteLLM (`api_key: not-needed`). Router (port 9000) is deprecated and NOT in the inference path.
|
||||
- Stable aliases (gpu-dense, gpu-light, strix-moe) from gpu-fleet are the canonical names for agent configs. Model-specific names still work but are deprecated.
|
||||
- RTX 5070 tok/s is 2.3x faster than RTX 3090 for its model — gpu-light is the fastest endpoint. Route vision/web/light work there first.
|
||||
- Strix Halo is 62.9 tok/s (89% of 70.5 baseline) — below optimal but stable. Check for competing workloads.
|
||||
- RTX 3090 VRAM at 88% — within role-appropriate range (role = heavy reasoning, needs the headroom).
|
||||
- RTX 5070 VRAM at 83% — role-appropriate for vision/web (smaller batch sizes).
|
||||
|
||||
## Remediation Rules
|
||||
|
||||
### Rule 1: GPU Temperature Critical (>85°C for >2 min)
|
||||
- **Detect**: Any GPU temp >85°C sustained for 2+ consecutive polls
|
||||
- **Fix**:
|
||||
1. Reduce inference concurrency on that GPU (load-side cooling only — NO fan control)
|
||||
2. Redirect new requests to cooler GPUs via LiteLLM fallback chains
|
||||
2. Redirect new requests to cooler GPUs via LiteLLM fallback chains (gemma → qwen, qwen → gemma)
|
||||
3. If all GPUs hot, alert about cooling infrastructure
|
||||
- **Verify**: Temp drops below 80°C within 5 minutes
|
||||
- **Escalate after**: 3 verification failures → Zulip alert
|
||||
|
||||
### Rule 2: VRAM Leak Detection (tiered by GPU capacity)
|
||||
- **Detect**: VRAM growing at sustained rate over 6+ hour window
|
||||
- RTX 3090 (24GB): ≥100MB/hour
|
||||
- RTX 5070 (12GB): ≥50MB/hour
|
||||
- RTX 3090 (24GB): ≥300MB/hour
|
||||
- RTX 5070 (12GB): ≥300MB/hour
|
||||
- Strix Halo (64GB UMA): ≥200MB/hour
|
||||
- **Fix**:
|
||||
1. Log VRAM snapshot with process list (nvidia-smi/rocm-smi + ps aux)
|
||||
@@ -69,6 +90,9 @@ depends_on:
|
||||
|
||||
### Rule 4: Benchmark Regression (>20% drop)
|
||||
- **Detect**: gen_tok_per_sec drops >20% below baseline over 3+ benchmarks
|
||||
- RTX 3090 baseline: 74.8 tok/s → alert at <59.8 tok/s
|
||||
- RTX 5070 baseline: 165.2 tok/s → alert at <132.2 tok/s
|
||||
- Strix Halo baseline: 70.5 tok/s → alert at <56.4 tok/s
|
||||
- **Fix**:
|
||||
1. Check GPU utilization — if >90%, other process is competing
|
||||
2. Check power limit — if throttled, restore to max
|
||||
@@ -78,32 +102,31 @@ depends_on:
|
||||
|
||||
### Rule 5: Circuit Breaker Stuck Open
|
||||
- **Detect**: Circuit breaker open >10 minutes with GPU reporting healthy
|
||||
- **Note**: Router (port 9000) is deprecated. If circuit breakers are reported by gpu-monitor, they come from LiteLLM's internal tracking, not the old router.
|
||||
- **Fix**:
|
||||
1. Verify GPU /health returns 200
|
||||
2. If GPU healthy, send 1 test inference
|
||||
3. If test succeeds → reset circuit breaker via router API
|
||||
4. 60s cooldown — if CB re-opens immediately, it was legitimate, do NOT re-reset
|
||||
5. Max 1 auto-reset per GPU per hour
|
||||
- **Verify**: CB closes, inference succeeds, CB stays closed for 60s+
|
||||
- **Escalate after**: CB won't close after reset → router issue
|
||||
1. Verify GPU /health returns 200 on direct port (:8080)
|
||||
2. If GPU healthy, alert but do NOT reset via router API (deprecated)
|
||||
3. Check LiteLLM health directly: http://192.168.68.116/litellm/health/liveliness
|
||||
4. Restart LiteLLM container on CT 116 if circuit breakers are stuck
|
||||
- **Verify**: LiteLLM returns healthy, circuit breaker clears within 60s
|
||||
- **Escalate after**: LiteLLM restart doesn't clear → human investigation
|
||||
|
||||
### Rule 6: Strix Halo Unreachable
|
||||
- **Detect**: Strix not responding — probe .15:8080 directly (firewall opened .24→.15)
|
||||
- **Fix**:
|
||||
1. SSH to .15 → check llama-server process
|
||||
2. Restart llama-server if not running
|
||||
3. Verify through both direct probe AND router
|
||||
- **Verify**: Direct health probe returns 200, router reports Strix healthy
|
||||
3. Verify through both direct probe AND LiteLLM health
|
||||
- **Verify**: Direct health probe returns 200, LiteLLM reports model healthy
|
||||
- **Escalate**: If host .15 itself is unreachable → infrastructure alert
|
||||
|
||||
### Rule 7: Prometheus Exporter Down
|
||||
- **Detect**: Any GPU :9400/metrics unreachable for >2 polls
|
||||
### Rule 7: GPU Data Source Unreachable (replaces old Prometheus rule)
|
||||
- **Detect**: gpu-monitor endpoint (localhost:9100/gpu-data) or sidecar port (:8080) on any GPU unreachable for >2 polls
|
||||
- **Fix**:
|
||||
1. SSH to GPU host → check prometheus-exporter process
|
||||
2. Restart exporter if dead
|
||||
3. While exporter is down, fall back to nvidia-smi/rocm-smi direct probes
|
||||
4. If exporter is running but unreachable → check firewall/host networking
|
||||
- **Verify**: :9400/metrics returns 200
|
||||
1. If gpu-monitor is down: restart systemd service `gpu-monitor.service` on this host
|
||||
2. If sidecar is down: SSH to GPU host → check llama-server process → restart systemd service
|
||||
3. Fall back to direct nvidia-smi/rocm-smi probe via SSH if all API paths fail
|
||||
- **Verify**: gpu-monitor returns healthy + all sidecars reachable
|
||||
- **Escalate after**: 3 failed restarts → networking issue
|
||||
|
||||
### Rule 8: Predictive Thermal Warning (two-tier)
|
||||
@@ -117,29 +140,31 @@ depends_on:
|
||||
- **Escalate**: If Tier 2 triggers and temp still rising after 5 min → possible hardware failure
|
||||
|
||||
### Rule 9: Context Window Optimization
|
||||
- **Detect**: Benchmark tok/s vs baseline for each GPU at current context
|
||||
- RTX 3090 (256K ctx, qwen3.6-27B-code): target 75+ tok/s — currently at baseline
|
||||
- RTX 5070 (131K ctx, gemma-4-12b): target 76+ tok/s — optimal for vision/web role
|
||||
- Strix Halo (256K ctx, ornith-1.0-35b): target 70+ tok/s — currently above baseline
|
||||
- **Detect**: Benchmark tok/s vs baseline for each GPU at current context (all 128K)
|
||||
- RTX 3090 (128K ctx, ThinkingCap): baseline 74.8 tok/s — currently at 74.9 (100%)
|
||||
- RTX 5070 (128K ctx, HauhauCS QAT): baseline 165.2 tok/s — currently at 169.6 (103%)
|
||||
- Strix Halo (128K ctx, Genesis Hermes V3): baseline 70.5 tok/s — currently at 62.9 (89%)
|
||||
- **Fix**:
|
||||
- If tok/s > baseline → context has headroom, consider increasing
|
||||
- If tok/s < 90% baseline → reduce context by 25% and retest
|
||||
- If tok/s within 10% of baseline → optimal, no change
|
||||
- Strix Halo at 89% of baseline → MONITOR but do not reduce yet (recent model swap may still be settling)
|
||||
- **Verify**: Re-benchmark after context change, confirm within 10% of target
|
||||
- **Escalate**: If context can't be adjusted without significant perf loss
|
||||
|
||||
### Rule 10: Workload Distribution Optimization
|
||||
### Rule 10: Workload Distribution Optimization (updated 2026-07-18)
|
||||
- **Detect**: GPU roles misaligned with hardware capabilities
|
||||
- **Target distribution**:
|
||||
- RTX 3090 (24GB, 256K, 75 tok/s) → Heavy reasoning, code gen, long conversations
|
||||
- RTX 5070 (12GB, 131K, 76 tok/s) → Vision/image, web search, quick lightweight tasks
|
||||
- Strix Halo (64GB, 256K, 72 tok/s) → Context compression, summarization, long docs
|
||||
- RTX 3090 (gpu-dense, 24GB, 74.9 tok/s) → Heavy reasoning, code gen, long conversations (slowest per-token but largest context capacity). Weight: 0.55 (LiteLLM).
|
||||
- RTX 5070 (gpu-light, 12GB, 169.6 tok/s) → Vision/image, web search, lightweight tasks (2.3x faster than 3090 per token). Weight: 0.15 (LiteLLM).
|
||||
- Strix Halo (strix-moe, 64GB, 62.9 tok/s) → Context compression, summarization, long docs (MoE model). Weight: 0.30 (LiteLLM).
|
||||
- **Note**: RTX 5070 is the fastest endpoint per token. Route high-volume, low-complexity work there first.
|
||||
- **Fix**:
|
||||
- Alert if any GPU is handling workload outside its designated role
|
||||
- Recommend Hermes agent profile updates to match workload to GPU
|
||||
- Recommend agent alias updates to match workload to GPU role (use stable aliases: gpu-dense, gpu-light, strix-moe)
|
||||
- Track per-GPU request distribution via LiteLLM spend logs
|
||||
- **Verify**: Each GPU's request pattern matches its designated role within 24h
|
||||
- **Escalate**: If role mismatch persists >48h → agent profile audit needed
|
||||
- **Escalate**: If role mismatch persists >48h → agent alias audit needed
|
||||
|
||||
---
|
||||
|
||||
@@ -148,7 +173,7 @@ depends_on:
|
||||
```prose
|
||||
-- Phase 1: Fetch live GPU data
|
||||
let fleet = call gpu-monitor
|
||||
endpoint: "http://192.168.68.24:9100/gpu-data"
|
||||
endpoint: "http://localhost:9100/gpu-data"
|
||||
|
||||
-- Phase 2: Evaluate each GPU against remediation rules
|
||||
let actions = []
|
||||
@@ -164,27 +189,25 @@ for gpu in fleet.gpus:
|
||||
|
||||
-- Rule 4: Benchmark regression
|
||||
let bench = fleet.benchmarks[gpu.hostname]
|
||||
if bench.current_tok_sec < bench.baseline_tok_sec * 0.8:
|
||||
if bench.current_tok_s < bench.baseline_tok_s * 0.8:
|
||||
push actions apply-benchmark-fix(gpu, bench)
|
||||
|
||||
-- Rule 3: Model stuck
|
||||
for model in fleet.router.available_models:
|
||||
for model in fleet.summary.available_models:
|
||||
if model.consecutive_timeouts >= 3:
|
||||
push actions apply-model-restart(model)
|
||||
|
||||
-- Rule 5: Circuit breaker
|
||||
for cb in fleet.router.circuit_breaker:
|
||||
if cb.open and cb.open_duration > 600 and gpu_is_healthy(cb.gpu):
|
||||
push actions apply-cb-reset(cb)
|
||||
-- Rule 5: Circuit breaker check via LiteLLM (router deprecated)
|
||||
if fleet.summary.circuit_breakers_open > 0:
|
||||
push actions check-litellm-circuit-breakers()
|
||||
|
||||
-- Rule 6: Strix Halo
|
||||
if not fleet.strix.running and pingable("192.168.68.15"):
|
||||
push actions apply-strix-restart()
|
||||
|
||||
-- Rule 7: Prometheus exporters
|
||||
for gpu in fleet.gpus:
|
||||
if not prometheus_reachable(gpu.hostname, 9400):
|
||||
push actions apply-exporter-restart(gpu)
|
||||
-- Rule 7: GPU data source
|
||||
if not fleet.gpus or len(fleet.gpus) < 2:
|
||||
push actions check-gpu-monitor-service()
|
||||
|
||||
-- Rule 8: Predictive thermal
|
||||
for gpu in fleet.gpus:
|
||||
@@ -212,12 +235,12 @@ call update-gpu-health
|
||||
|
||||
```json
|
||||
{
|
||||
"run_id": "gpu-self-heal-20260712-001",
|
||||
"timestamp": "2026-07-12T16:00:00Z",
|
||||
"run_id": "gpu-self-heal-20260718-001",
|
||||
"timestamp": "2026-07-18T08:00:00Z",
|
||||
"gpu": "ct8-rtx3090",
|
||||
"issue": "thermal-critical",
|
||||
"detected": { "temp_c": 87, "duration_s": 180 },
|
||||
"action": "set-fan-100pct",
|
||||
"action": "load-shedding",
|
||||
"result": "resolved",
|
||||
"verification": { "temp_c": 76, "after_s": 300 },
|
||||
"escalated": false
|
||||
@@ -236,52 +259,53 @@ Every action logged as `[GPU-SELF-HEAL] <run_id>` node with full audit trail.
|
||||
- `issues_escalated > 0` → "⚠ GPU Self-Heal — <gpu> needs attention"
|
||||
- Every 100th clean cycle → "✅ GPU Fleet: All Clear"
|
||||
|
||||
### 3. Prometheus/Grafana Integration
|
||||
- GPU self-heal actions exposed as Prometheus counter metrics
|
||||
- Dashboard panel: "GPU Interventions (24h)" showing count/type/result
|
||||
|
||||
### 4. Weekly Benchmark Report
|
||||
### 3. Weekly Benchmark Report
|
||||
- Per-GPU tok/s trend over 7 days
|
||||
- Regression alerts if any GPU degrades >10% week-over-week
|
||||
|
||||
---
|
||||
|
||||
## Design Decisions (Grilled & Confirmed — 2026-07-12)
|
||||
## Design Decisions (Verified 2026-07-12, Reaffirmed 2026-07-18)
|
||||
|
||||
1. **Fan control**: ❌ NO auto fan control. Load-side cooling only (reduce concurrency, redirect).
|
||||
2. **Model restart**: ✅ Only if >50% failure rate over 60s + 30s grace period. Not on single stuck request.
|
||||
3. **Strix direct access**: ✅ Open firewall .15:8080 → .24 for direct health probe + restart.
|
||||
4. **VRAM thresholds**: Tiered — 100MB/h (RTX 3090), 50MB/h (RTX 5070), 200MB/h (Strix).
|
||||
5. **CB auto-reset**: ✅ With rate limit — 1 test inference + 60s cooldown + max 1/hour per GPU.
|
||||
6. **Benchmark baseline**: Rolling 30-day average, recalculated weekly. Original baseline kept in Grafana.
|
||||
4. **VRAM thresholds**: Tiered — **300MB/h** (RTX 3090), **300MB/h** (RTX 5070), 200MB/h (Strix). Previous values (100/50) were too sensitive; raised 2026-07-18 based on operational data.
|
||||
5. **CB auto-reset**: ✅ Router deprecated — circuit breakers go through LiteLLM health check + container restart if needed. No per-GPU auto-reset.
|
||||
6. **Benchmark baseline**: Rolling 30-day average, recalculated weekly. Current baselines live in gpu-monitor.
|
||||
7. **Predictive alerts**: Two-tier — warn at >70°C+rising (>2°C/min), critical at >80°C+rising.
|
||||
8. **Prometheus**: Primary source. Fall back to nvidia-smi/rocm-smi direct probes if exporter down.
|
||||
8. **Prometheus**: ❌ Not deployed. Use direct sidecar probes (:8080/health) and gpu-monitor API. Prometheus integration deferred until exporters are running on GPU hosts.
|
||||
|
||||
## Lessons Learned (2026-07-12)
|
||||
## Lessons Learned (2026-07-12, Updated 2026-07-18)
|
||||
|
||||
### L1: API Key Standardization Is Critical
|
||||
- All GPU llama-servers MUST use the same api-key as the LiteLLM config.
|
||||
- RTX 5070 had `--api-key sk-loc...5678` while LiteLLM sent `not-needed`.
|
||||
This caused cascading 401 → fallback → timeout → 401 loops, burning all retries.
|
||||
- **Rule**: Any new GPU or model restart MUST verify api-key matches LiteLLM config.
|
||||
This caused cascading 401 → fallback → timeout → 401 loops.
|
||||
- **Rule**: Any new GPU or model restart MUST verify api-key matches LiteLLM config (`not-needed` for direct routing).
|
||||
|
||||
### L2: Fallback Chain Cascading Failures
|
||||
- When one model returns 401 (auth) and another is slow (timeout), the fallback
|
||||
chain creates an infinite loop: gemma 401 → qwen timeout → gemma 401 → ...
|
||||
chain creates an infinite loop.
|
||||
- **Rule**: If a model returns 401 (auth error), do NOT fall back to it again.
|
||||
Mark it as permanently failed for this request.
|
||||
|
||||
### L3: Verify Running State, Not Docs
|
||||
- RTX 3090 was documented at 128K context. Actually running at 256K.
|
||||
- Parallel count wrong (docs said 2, actual is 1 on RTX 3090).
|
||||
- RTX 3090 was documented at 128K context. Running at 128K (verified 2026-07-18).
|
||||
- Parallel count: 1 on both RTX 3090 and RTX 5070 (matches docs for current models).
|
||||
- **Rule**: Before making decisions, check `/proc/PID/cmdline` on GPU hosts.
|
||||
|
||||
### L4: Infisical Is Not Always Available
|
||||
- Tanko's Infisical service token was 404 — gateway ran without API key for hours.
|
||||
- **Rule**: Always keep a local `.env` fallback for `LITELLM_API_KEY`.
|
||||
- Contract hermes-config-template Rule 3 updated.
|
||||
- Keep a local `.env` fallback for `LITELLM_API_KEY`.
|
||||
- **Rule**: Always verify credential source is reachable before relying on it.
|
||||
|
||||
### L5: Zulip Event Queue Can Silently Die
|
||||
- Mumuni's queue accumulated 41 errors/reconnects then stopped polling.
|
||||
Gateway was running but ignoring all messages.
|
||||
- **Rule**: litellm-health-check now monitors gateway responsiveness via Zulip API.
|
||||
### L5: GPU Monitor Response Size Can Cause Self-Heal Crash
|
||||
- gpu-self-heal crashed with KeyboardInterrupt during json.loads() of 20MB response.
|
||||
- Root cause: router poll returns accumulated data → cache balloons.
|
||||
- **Rule**: Self-heal must enforce a read timeout AND max response size on every poll.
|
||||
If monitor response > 1MB, log a warning and skip the cycle rather than crashing.
|
||||
|
||||
### L6: Stable Aliases Replace Model Names
|
||||
- gpu-fleet introduced stable aliases (strix-moe, gpu-dense, gpu-light) on 2026-07-15.
|
||||
- Self-heal must use aliases for reporting and alerting, not model-specific names.
|
||||
- **Rule**: All alert messages and KG nodes use the stable alias as the GPU identifier.
|
||||
|
||||
@@ -5,7 +5,7 @@ version: 1.0.0
|
||||
description: >
|
||||
Canonical known-good baseline for all Syslog Hermes agents. Captures the exact
|
||||
configuration state, keys, workarounds, and audit procedure. When an agent's
|
||||
configuration goes sideways, restore from this baseline. Last verified 2026-07-08. GPU context reduced to 128K on .8/.110, parallel 2 fleet-wide.
|
||||
configuration goes sideways, restore from this baseline. Last verified 2026-07-16. All GPUs 256K context (RTX 3090 .8, RTX 5070 .110, Strix Halo .15). Parallel 1 fleet-wide (Strix Halo handles compression solo).
|
||||
author: Abiba (pi agent)
|
||||
---
|
||||
|
||||
@@ -26,11 +26,11 @@ done
|
||||
|-------|-----|------|-----|---------------|------------|----------|
|
||||
| Tanko | 112 | amdpve | .122 | `tanko` | Infisical vault | Hermes |
|
||||
| Mumuni | 114 | minipve | .123 | `mumuni` | Infisical vault | Hermes |
|
||||
| Koby | 111 | amdpve | srv1079750 | `koby` | Infisical vault | **Hermes** |
|
||||
| Koonimo | 113 | amdpve | ? | `koonimo` | Infisical vault | Hermes |
|
||||
| Shumba | — | 192.168.68.119 | N/A | N/A (DeepSeek) | Hermes |
|
||||
| Koby | 129 | amdpve | srv1079750 | `koby` | Infisical vault | **Hermes** |
|
||||
| Koonimo | 114 | amdpve | ? | `koonimo` | Infisical vault | Hermes |
|
||||
| Shumba | — | 192.168.68.119 | N/A | N/A (DeepSeek) | Hermes (RETIRED — CT119 now Infisical vault) |
|
||||
|
||||
> **Note**: CT hostnames (tdunna→CT111, baggy→CT113) differ from agent identities (koby, koonimo).
|
||||
> **Note**: CT hostnames (tdunna→CT129, baggy→CT114) differ from agent identities (koby, koonimo).
|
||||
|
||||
Access: `pct-run <CT_ID> <command>` — no IPs needed. GPU hosts (.8, .110, .15) use SSH.
|
||||
Keys are stored in Infisical vault (project=agents, env=production) and injected at
|
||||
@@ -169,9 +169,9 @@ pct-run <CT> grep -A8 "vision:" /root/.hermes/config.yaml | grep api_key
|
||||
# Must show both api_key: sk-... and api_key_env: LITELLM_API_KEY
|
||||
```
|
||||
|
||||
### For Koby (CT 111 / tdunna)
|
||||
### For Koby (CT 129 / tdunna)
|
||||
|
||||
Koby runs Hermes on CT 111 (tdunna). Config files at `/root/.hermes/config.yaml`.
|
||||
Koby runs Hermes on CT 129 (tdunna). Config files at `/root/.hermes/config.yaml`.
|
||||
Same Hermes pattern as Tanko/Mumuni/Koonimo — see config sections above.
|
||||
|
||||
**LiteLLM key**: alias `koby` in LiteLLM DB, injected via `infisical run --` wrapper.
|
||||
@@ -192,7 +192,9 @@ Key is injected via `infisical run --` wrapper at PM2 startup:
|
||||
"apiKey": "${LITELLM_API_KEY}",
|
||||
"models": [
|
||||
{ "id": "syslog-auto" },
|
||||
{ "id": "ornith-1.0-35b" },
|
||||
{ "id": "strix-moe" },
|
||||
{ "id": "gpu-dense" },
|
||||
{ "id": "gpu-light" },
|
||||
{ "id": "qwen3.6-27B-code" },
|
||||
{ "id": "gemma-4-12b" }
|
||||
]
|
||||
|
||||
+131
-46
@@ -5,10 +5,14 @@ description: >
|
||||
Standard Hermes configuration template for Syslog Solution LLC agents.
|
||||
Enforces shared infrastructure setup (Firecrawl, SearXNG, local models,
|
||||
RA-H OS MCP) while keeping agent-specific API keys and model choices.
|
||||
UPDATED 2026-07-12: GPU workload redistributed. Compression → Strix Halo (ornith-1.0-35b).
|
||||
RTX 3090 context verified at 256K (was incorrectly documented as 128K).
|
||||
RTX 5070 stays at 131K for vision/web. Infisical .env fallback required (Rule 3).
|
||||
Parallel counts corrected (RTX 3090=1, RTX 5070=2, Strix=2).
|
||||
UPDATED 2026-07-18: Compression model switched to `syslog-auto` (was `strix-moe`)
|
||||
to relieve Strix Halo pressure. syslog-auto distributes compression across the
|
||||
weighted pool (55% RTX 3090, 30% Strix Halo, 15% RTX 5070).
|
||||
UPDATED 2026-07-16: Compression model was the stable alias `strix-moe` (NOT `ornith-1.0-35b`,
|
||||
which LiteLLM does not serve). All 3 GPUs verified at 128K (reduced from 256K 2026-07-17 for stability).
|
||||
Added Rule 12 (Context-Issue Diagnostic) + Rule 13 (.env fallback enforcement) from the
|
||||
2026-07-16 Mumuni root-cause investigation (WAL #1300).
|
||||
UPDATED 2026-07-12: GPU workload redistributed. Compression → Strix Halo (later switched to syslog-auto 2026-07-18). RTX 3090 context verified at 128K. Infisical .env fallback required (Rule 3/13).
|
||||
---
|
||||
|
||||
## Maintains
|
||||
@@ -31,10 +35,10 @@ Sub-agent profiles inherit auth from the main config — no separate keys needed
|
||||
| Agent | Key Alias | Host | SSH | Sub-Agents |
|
||||
|-------|-----------|------|-----|-----------|
|
||||
| Tanko | `tanko-*` | 192.168.68.122 | jerome@.122 | — |
|
||||
| Mumuni | `mumuni-jul2026` | 192.168.68.123 | root@.123 | 6 profiles ✱ |
|
||||
| Mumuni | `mumuni` | 192.168.68.123 | root@.123 | 6 profiles ✱ |
|
||||
| Abiba | `abiba-pi` | 192.168.68.24 | local | — |
|
||||
| Koby | `koby` | CT 111 (tdunna) | Zulip | — |
|
||||
| Koonimo | `koonimo` | CT 113 (baggy) | Zulip | — |
|
||||
| Koonimo | `koonimo` | CT 114 (baggy) | SSH root | — |
|
||||
| Kagenz0 | `kagenz0-*` | ? | Zulip | — |
|
||||
|
||||
> CT hostnames (tdunna, baggy) differ from agent identities (koby, koonimo).
|
||||
@@ -94,13 +98,13 @@ work immediately after restart.
|
||||
```yaml
|
||||
# ─── Model Selection ───
|
||||
model:
|
||||
default: <agent_model> # e.g., ornith-1.0-35b, qwen3.6-27B-code
|
||||
default: <agent_model> # e.g., strix-moe, qwen3.6-27B-code, syslog-auto
|
||||
provider: harness
|
||||
base_url: http://192.168.68.116/v1
|
||||
api_key_env: LITELLM_API_KEY # Injected via infisical run -- wrapper
|
||||
max_tokens: 4096 # ⚠️ CRITICAL: Prevents unbounded generation
|
||||
context_length: 262144 # For syslog-auto (all GPUs support 256K).
|
||||
# Set 131072 if using gemma-4-12b directly (12GB VRAM constraint).
|
||||
context_length: 131072 # For syslog-auto (all GPUs at 128K for stability).
|
||||
# Set 65536 if using gemma-4-12b directly (tight VRAM).
|
||||
|
||||
fallback_providers:
|
||||
provider: deepseek
|
||||
@@ -129,10 +133,11 @@ mcp_servers:
|
||||
# ─── Compression ───
|
||||
compression:
|
||||
enabled: true
|
||||
model: ornith-1.0-35b # ⚠️ Must match auxiliary.compression.model
|
||||
model: syslog-auto # ⚠️ Switched from strix-moe 2026-07-18 to relieve Strix Halo.
|
||||
# syslog-auto distributes across weighted pool (55% RTX 3090,
|
||||
# 30% Strix Halo, 15% RTX 5070). All GPUs at 128K.
|
||||
provider: harness
|
||||
max_context_window: 262144 # For Strix Halo compression (256K ctx).
|
||||
# Set 131072 if using gemma directly.
|
||||
max_context_window: 131072 # MUST match actual GPU capacity. All 3 GPUs are 128K (Jul 17).
|
||||
threshold: 0.65 # Fires at ~170K for 262K window, ~85K for 128K
|
||||
target_ratio: 0.30
|
||||
protect_last_n: 40
|
||||
@@ -142,37 +147,49 @@ compression:
|
||||
|
||||
# ─── Auxiliary Tasks (CONSISTENCY RULE) ───
|
||||
# All auxiliary services MUST use identical model, base_url, and api_key_env:
|
||||
# model: gemma-4-12b
|
||||
# model: gpu-light # stable alias (NOT raw "gemma-4-12b")
|
||||
# base_url: http://192.168.68.116/v1
|
||||
# api_key_env: LITELLM_API_KEY
|
||||
# Do NOT use syslog-auto for auxiliary tasks — it routes to the primary GPU.
|
||||
# gemma-4-12b is a lightweight 12B model on the RTX 5070, freeing the Strix Halo
|
||||
# for agent reasoning.
|
||||
# Compression uses syslog-auto (switched from strix-moe 2026-07-18) to distribute
|
||||
# load across the weighted pool and relieve Strix Halo pressure.
|
||||
# Vision and web_extract use gpu-light = RTX 5070 (12B).
|
||||
# Heavy aux (delegation, x_search) use gpu-dense (RTX 3090) instead.
|
||||
# NEVER use raw model names (gemma-4-12b, qwen3.6-27B-code, qwen3.6-35B-udq4)
|
||||
# in agent configs — use the stable aliases so model swaps don't break agents.
|
||||
auxiliary:
|
||||
vision:
|
||||
provider: harness
|
||||
model: gemma-4-12b
|
||||
model: gpu-light # stable alias for RTX 5070 (was raw gemma-4-12b)
|
||||
base_url: http://192.168.68.116/v1
|
||||
api_key_env: LITELLM_API_KEY
|
||||
timeout: 60
|
||||
download_timeout: 30
|
||||
web_extract:
|
||||
provider: harness
|
||||
model: gemma-4-12b
|
||||
model: gpu-light # stable alias for RTX 5070
|
||||
base_url: http://192.168.68.116/v1
|
||||
api_key_env: LITELLM_API_KEY
|
||||
timeout: 30
|
||||
compression:
|
||||
provider: harness
|
||||
model: ornith-1.0-35b
|
||||
base_url: http://192.168.68.116/v1
|
||||
model: syslog-auto # Switched from strix-moe 2026-07-18. Relieves Strix Halo pressure.
|
||||
base_url: http://192.168.68.116/v1 # Rule 5: /v1 NOT /litellm/v1
|
||||
api_key_env: LITELLM_API_KEY
|
||||
timeout: 60
|
||||
timeout: 300 # gpu-fleet: 300s for large-history summarization (was 60)
|
||||
|
||||
# ─── Delegation / Heavy Aux (use gpu-dense = RTX 3090) ───
|
||||
# delegation.model and x_search.model use gpu-dense (NOT raw qwen3.6-27B-code).
|
||||
|
||||
delegation:
|
||||
model: gpu-dense # stable alias for RTX 3090 (was raw qwen3.6-27B-code)
|
||||
provider: harness
|
||||
base_url: http://192.168.68.116/v1
|
||||
api_key_env: LITELLM_API_KEY
|
||||
|
||||
# ─── Custom Provider ───
|
||||
custom_providers:
|
||||
- name: harness
|
||||
model: <agent_model>
|
||||
model: syslog-auto # weighted pool (default)
|
||||
base_url: http://192.168.68.116/v1
|
||||
api_key_env: LITELLM_API_KEY
|
||||
api_mode: chat_completions
|
||||
@@ -236,45 +253,48 @@ The following MUST be identical across ALL profiles:
|
||||
- Apply to BOTH main config AND all sub-agent profiles
|
||||
- For agents needing longer outputs: raise to 8192, but never omit
|
||||
|
||||
### Rule 7: Auxiliary Model Consistency (UPDATED July 2026)
|
||||
- Vision and web_extract use `gemma-4-12b` (RTX 5070 — 12GB, vision-optimized)
|
||||
- Compression uses `ornith-1.0-35b` (Strix Halo — 64GB, 256K ctx, compression-optimized)
|
||||
### Rule 7: Auxiliary Model Consistency (UPDATED 2026-07-18)
|
||||
- Vision and web_extract use `gpu-light` (stable alias, RTX 5070 — 12GB, vision-optimized)
|
||||
- Compression now uses `syslog-auto` (switched from `strix-moe` 2026-07-18) to distribute
|
||||
compression load across the weighted pool (55% RTX 3090, 30% Strix Halo, 15% RTX 5070).
|
||||
This relieves Strix Halo pressure while keeping compression functional on all GPUs.
|
||||
- **`syslog-auto` is the valid compression model** — LiteLLM serves it as the weighted pool.
|
||||
Old configs with `strix-moe` for compression should be updated to `syslog-auto`.
|
||||
- All auxiliary services MUST use identical routing:
|
||||
- `base_url: http://192.168.68.116/v1`
|
||||
- `base_url: http://192.168.68.116/v1` (Rule 5: `/v1`, NOT `/litellm/v1`)
|
||||
- `api_key_env: LITELLM_API_KEY`
|
||||
- **Do NOT use `syslog-auto`** for auxiliary tasks — it routes unpredictably
|
||||
- **Compression moved to Strix Halo (July 2026)**: The ornith-1.0-35b model on Strix Halo
|
||||
(64GB UMA, 256K context, 72.4 tok/s) is the designated compression GPU. This frees the
|
||||
RTX 5070 for vision and web search, and the RTX 3090 for heavy reasoning.
|
||||
- **Compression via syslog-auto**: Routes through the weighted pool. Strix Halo still handles
|
||||
~30% of compression calls (at 60 RPM via pool vs 40 RPM direct), but the bulk (55%)
|
||||
goes to RTX 3090 which has ample spare capacity.
|
||||
- The `compression:` block's `model` MUST match `auxiliary: compression: model`
|
||||
- The `compression: max_context_window: 262144` MUST match Strix Halo's actual capacity
|
||||
- The `compression: max_context_window: 131072` MUST match actual GPU capacity (128K)
|
||||
|
||||
### Rule 8: GPU Workload Distribution (July 2026)
|
||||
- **RTX 3090 (24GB, 256K ctx, qwen3.6-27B-code)**: Heavy reasoning, code gen, long conversations
|
||||
- **RTX 5070 (12GB, 131K ctx, gemma-4-12b)**: Vision, web search, quick tasks, web_extract
|
||||
- **Strix Halo (64GB, 256K ctx, ornith-1.0-35b)**: Context compression, summarization, long docs
|
||||
### Rule 8: GPU Workload Distribution (UPDATED 2026-07-18)
|
||||
- **RTX 3090 (24GB, 128K ctx, qwen3.6-27B-code)**: Heavy reasoning, code gen, long conversations — also handles ~55% of compression via syslog-auto pool
|
||||
- **RTX 5070 (12GB, 128K ctx, gemma-4-12b)**: Vision, web search, quick tasks, web_extract — handles ~15% of compression via syslog-auto pool
|
||||
- **Strix Halo (64GB, 128K ctx, Geneis Hermes V3 APEX)**: Agent reasoning, compression (~30% via syslog-auto pool), fallback for other GPUs
|
||||
- Agent profiles MUST route auxiliary tasks to the correct GPU:
|
||||
- `auxiliary.vision.model: gemma-4-12b` (RTX 5070)
|
||||
- `auxiliary.web_extract.model: gemma-4-12b` (RTX 5070)
|
||||
- `auxiliary.compression.model: ornith-1.0-35b` (Strix Halo)
|
||||
- `auxiliary.vision.model: gpu-light` (RTX 5070)
|
||||
- `auxiliary.web_extract.model: gpu-light` (RTX 5070)
|
||||
- `auxiliary.compression.model: syslog-auto` (distributed pool, switched from strix-moe 2026-07-18)
|
||||
- Default model (`model.default`) and custom_provider remain `syslog-auto` for auto-routing
|
||||
- For 262K context window: `threshold: 0.65` (fires at ~170K tokens)
|
||||
- For 128K context window: `threshold: 0.65` (fires at ~85K tokens)
|
||||
- Do NOT use `threshold: 0.25` — this fires at 65K, causing premature context loss
|
||||
- Do NOT use `threshold: 0.80` — this delays until 209K, risking the gateway hygiene layer
|
||||
- `max_context_window: 262144` MUST match the model's actual capacity
|
||||
- Do NOT use `threshold: 0.80` — this delays until ~105K, leaving only 23K margin
|
||||
- `max_context_window: 131072` MUST match the model's actual capacity (128K)
|
||||
- See `devops-hermes-compression` skill for full reference
|
||||
|
||||
### Rule 9: Compression Threshold for 256K Models
|
||||
- For 262K context window: `threshold: 0.65` (fires at ~170K tokens)
|
||||
### Rule 9: Compression Threshold for 128K Models
|
||||
- For 128K context window: `threshold: 0.65` (fires at ~85K tokens)
|
||||
- Do NOT use `threshold: 0.25` — this fires at 65K, causing premature context loss
|
||||
- Do NOT use `threshold: 0.80` — this delays until 209K, risking the gateway hygiene layer
|
||||
- `max_context_window: 262144` MUST match the model's actual capacity (Strix Halo = 256K)
|
||||
- Do NOT use `threshold: 0.80` — this delays until ~105K, leaving only 23K margin
|
||||
- `max_context_window: 131072` MUST match the model's actual capacity (all GPUs = 128K)
|
||||
- See `devops-hermes-compression` skill for full reference
|
||||
|
||||
### Rule 10: Default Model Must Be `syslog-auto` (All Agents)
|
||||
- **Hermes agents**: `model.default: syslog-auto`, `custom_providers[0].model: syslog-auto`
|
||||
- **pi agents**: `defaultModel: syslog-auto` in `settings.json`, first model in `models.json`
|
||||
- `syslog-auto` is the LiteLLM routing model — it load-balances between ornith-1.0-35b
|
||||
- `syslog-auto` is the LiteLLM routing model — it load-balances between strix-moe
|
||||
and qwen3.6-27B-code, with gemma-4-12b as fallback. Using it protects against:
|
||||
- Model name typos that cause 403 errors and silent worker failures
|
||||
- Single GPU downtime (routing falls back automatically)
|
||||
@@ -293,6 +313,71 @@ The following MUST be identical across ALL profiles:
|
||||
- A non-existent model ID causes 403 errors that silently break the pi RPC worker
|
||||
(no `agent_end` emitted, worker stays "busy", Zulip messages pile up unprocessed)
|
||||
|
||||
### Rule 12: Context-Issue Diagnostic Checklist (ADDED 2026-07-16, WAL #1300)
|
||||
When an agent shows "context issues" (premature compression, 401s, 504s, DeepSeek fallback),
|
||||
verify ALL FOUR of these against the live config. They are the only root causes found in production:
|
||||
|
||||
1. **max_context_window correct?** — BOTH `compression.max_context_window` AND `context.max_context_window`
|
||||
MUST be `131072` (all GPUs are 128K). A value of `262144` causes instability near 100K and must NOT be used.
|
||||
~83K instead of ~170K. Check: `grep -n max_context_window ~/.hermes/config.yaml`
|
||||
2. **base_url uses /v1 NOT /litellm/v1?** — `custom_providers[0].base_url`, `delegation.base_url`,
|
||||
and ALL `auxiliary.*.base_url` MUST be `http://192.168.68.116/v1` (Rule 5). nginx `/litellm/`
|
||||
has a 60s default timeout → 504 on any inference >60s; `/v1/` has 600s.
|
||||
Check: `grep -n 'litellm/v1' ~/.hermes/config.yaml` (must return NOTHING)
|
||||
3. **LITELLM_API_KEY valid?** — The key must be a real LiteLLM key (`sk-` + 64 hex, 67 chars).
|
||||
Malformed values (e.g. `sk-_SWAl_Vu_…`, 47 chars) return 401 → DeepSeek fallback.
|
||||
Verify: `curl -s -o /dev/null -w '%{http_code}' -H "Authorization: Bearer $LITELLM_API_KEY" http://192.168.68.116/v1/models` (must be 200)
|
||||
4. **custom_providers aligned?** — `model: syslog-auto` (Rule 10), `api_mode: chat_completions`
|
||||
(NOT `responses`). A wrong api_mode causes silent request failures.
|
||||
|
||||
One-line agent health check (run on the agent host):
|
||||
```bash
|
||||
# Use grep -v infisical to avoid matching the bash wrapper that contains the same string
|
||||
PID=$(pgrep -f "python -m hermes_cli.main gateway run" | grep -v infisical | head -1)
|
||||
cat /proc/$PID/environ | tr '\0' '\n' | grep ^LITELLM_API_KEY= | sed 's/=.*/<set>/'
|
||||
curl -s -o /dev/null -w 'key_health: %{http_code}\n' -H "Authorization: Bearer $(cat /proc/$PID/environ | tr '\0' '\n' | grep ^LITELLM_API_KEY= | cut -d= -f2)" http://192.168.68.116/v1/models
|
||||
```
|
||||
|
||||
### Rule 13: API Key Injection — Two Patterns (UPDATED 2026-07-16, WAL #1300)
|
||||
|
||||
Agents inject `LITELLM_API_KEY` via ONE of two mechanisms. Both are valid; the contract
|
||||
requirement is that the key is a **valid LiteLLM virtual key** (HTTP 200 on /v1/models).
|
||||
|
||||
**Pattern A — systemd drop-in (Koby, Koonimo, and any agent without infisical wrapper):**
|
||||
A systemd drop-in `/etc/systemd/system/hermes-gateway.service.d/litellm-key.conf` sets the key:
|
||||
```ini
|
||||
[Service]
|
||||
Environment="LITELLM_API_KEY=sk-<VALID_KEY>"
|
||||
```
|
||||
The service unit `hermes-gateway.service` runs `python -m hermes_cli.main gateway run --replace`
|
||||
directly (no infisical). Apply with `systemctl daemon-reload && systemctl restart hermes-gateway`.
|
||||
- Koonimo (CT113/.114): service = `hermes-gateway.service`, drop-in has the key.
|
||||
- Koby (CT111/.129): service = `hermes-gateway.service` (created 2026-07-16), ExecStart uses `--replace`
|
||||
to win the lock against stray `hermes gateway restart` invocations. Key also in `/etc/environment`.
|
||||
|
||||
**Pattern B — infisical-gateway.sh wrapper (Mumuni):**
|
||||
The wrapper sources `~/.hermes/.env` then exports `LITELLM_API_KEY="$<AGENT>_LITELLM_API_KEY"`.
|
||||
See litellm-api-keys.prose.md § Machine Identity for Vault Writes for vault sync.
|
||||
|
||||
**⚠️ Vault empty-key guard:** If the vault stores the secret as an empty string,
|
||||
the wrapper will inject an empty key and the gateway will silently get 401 errors
|
||||
on all LiteLLM requests (triggering silent DeepSeek fallback). The `.env` fallback
|
||||
is present but the vault takes precedence when the secret key exists (even if empty).
|
||||
|
||||
**Fix:** The wrapper MUST validate the key length after injection. If LITELLM_API_KEY
|
||||
is empty or shorter than 20 chars, log a warning and either fail with a clear error
|
||||
message or fall back to the `.env` value before starting the gateway.
|
||||
|
||||
**Verification (all agents):**
|
||||
```bash
|
||||
# Use grep -v infisical to avoid matching the bash wrapper that contains the same string
|
||||
GP=$(pgrep -f "python -m hermes_cli.main gateway run" | grep -v infisical | head -1)
|
||||
K=$(cat /proc/$GP/environ | tr '\0' '\n' | grep '^LITELLM_API_KEY=' | cut -d= -f2)
|
||||
curl -s -o /dev/null -w '%{http_code}' -H "Authorization: Bearer $K" http://192.168.68.116/v1/models # must be 200
|
||||
```
|
||||
- `/etc/environment` is NO LONGER the canonical key source (stale values there caused 401s).
|
||||
- Do NOT leave a hardcoded stale key in `/etc/environment` — it shadows the drop-in/wrapper.
|
||||
|
||||
## Execution
|
||||
|
||||
1. **Check current config** — Read the target agent's config.yaml
|
||||
|
||||
@@ -72,6 +72,11 @@ External providers are **explicitly exempt** and may use hardcoded keys:
|
||||
|
||||
## Standard Pattern
|
||||
|
||||
> **Canonical vault process (2026-07-16):** see `litellm-api-keys` § Production Vault Access Process.
|
||||
> All agents MUST use the `infisical-gateway.sh` wrapper (live vault injection). Hardcoded systemd
|
||||
> drop-ins / config.yaml keys are DEPRECATED — they rot on rotation (root cause of the 2026-07-16 401 storm).
|
||||
> 4/5 agents migrated; tanko (user jerome) pending.
|
||||
|
||||
```yaml
|
||||
# ✅ CORRECT — all harness/litellm providers (authenticated path, NO /responses suffix)
|
||||
model:
|
||||
|
||||
@@ -0,0 +1,104 @@
|
||||
---
|
||||
name: inference-optimization
|
||||
kind: responsibility
|
||||
description: >
|
||||
Optimizes the full Syslog inference stack — LiteLLM routing weights, GPU model
|
||||
assignments, agent context management, and prompt caching — to reduce response
|
||||
times to sub-15s average. All GPUs now at 128K context (stable ceiling).
|
||||
id: 067NC6KP02RG60S50M40E30928
|
||||
---
|
||||
|
||||
### Goal
|
||||
|
||||
Syslog inference response times reduced to sub-15s average by optimizing the full
|
||||
stack: LiteLLM routing weights, GPU model assignments, Hermes agent context
|
||||
management, and prompt caching — without sacrificing agent capability.
|
||||
|
||||
### Requires
|
||||
|
||||
- `inference-metrics`: current SpendLogs from CT116 LiteLLM Postgres — avg
|
||||
request_duration_ms, prompt_tokens, completion_tokens, model_group breakdown,
|
||||
cache_hit rate over the last 3 hours
|
||||
- `agent-configs`: current config.yaml from each active Hermes agent (Mumuni
|
||||
.123, any others on .129/.122) including compression, model, context_window,
|
||||
prompt_caching, memory settings
|
||||
- `gpu-health`: health check response from all 3 GPU backends (ornith .15:8080,
|
||||
qwen .8:8080, gemma .110:8080)
|
||||
|
||||
### Maintains
|
||||
|
||||
The optimized inference stack configuration — every change is applied and
|
||||
verified end-to-end. Postcondition: avg request_duration_ms ≤ 15000 for 90% of
|
||||
non-ornith traffic; ≤ 30000 for ornith-bound agentic calls.
|
||||
|
||||
#### liteLLM-routing
|
||||
The syslog-auto routing weights, model-specific timeouts, RPM limits, and
|
||||
model_list entries on CT116 `/opt/inference-harness/litellm_config.yaml`.
|
||||
|
||||
#### agent-compression
|
||||
Each Hermes agent's `~/.hermes/config.yaml` compression, context_window,
|
||||
prompt_caching, and model sections.
|
||||
|
||||
#### prompt-caching
|
||||
LiteLLM cache configuration and llama.cpp `--cache-prompt` flag on GPU hosts.
|
||||
|
||||
#### verification
|
||||
End-to-end latency measurements after changes applied — at least 3 test
|
||||
inference calls per model path measuring ttft (time-to-first-token) and total
|
||||
duration.
|
||||
|
||||
### Continuity
|
||||
|
||||
- input-driven
|
||||
|
||||
### Strategies
|
||||
|
||||
**Context is the root cause.** Every ~46K prompt token costs ~87s of ornith
|
||||
prefill time at 532 tok/s. Fix context first, routing second.
|
||||
|
||||
- **Route by task**: ornith for multi-step reasoning only; qwen for code/standard
|
||||
queries; gemma for compression/auxiliary. Never send simple completion to a
|
||||
35B MoE.
|
||||
- **Compress aggressively**: threshold at 40% (not 65%) — a 256K window should
|
||||
compact at 102K, not 166K. Target 15% tail (not 30%).
|
||||
- **Cache everything repeated**: system prompts, skill docs, AGENTS.md — these
|
||||
never change between turns. Single-digit cache hit rate is unacceptable.
|
||||
- **Lower context ceiling**: 128K window is the stable ceiling for agent conversations.
|
||||
GPUs reduced from 256K to 128K (2026-07-17). For larger contexts, route to external providers.
|
||||
|
||||
### Shape
|
||||
|
||||
- `self`: analyze metrics, compute optimal configs, apply changes, verify
|
||||
- `delegates`:
|
||||
- `apply-liteLLM`: update litellm_config.yaml and reload
|
||||
- `apply-agent-config`: update hermes config.yaml per agent
|
||||
- `verify-latency`: run test inference calls and measure response
|
||||
|
||||
### Execution
|
||||
|
||||
```prose
|
||||
-- Phase 1: Analyze current state (already complete)
|
||||
-- Phase 2: Apply LiteLLM routing optimization
|
||||
|
||||
call apply-liteLLM-routing
|
||||
config_path: /opt/inference-harness/litellm_config.yaml
|
||||
host: 192.168.68.116
|
||||
|
||||
-- Phase 3: Apply agent context compression optimization
|
||||
|
||||
call apply-agent-compression
|
||||
agent: mumuni
|
||||
host: 192.168.68.123
|
||||
config_path: /root/.hermes/config.yaml
|
||||
|
||||
-- Phase 4: Enable llama.cpp prompt caching on GPU hosts
|
||||
|
||||
call enable-prompt-caching
|
||||
hosts: [192.168.68.15, 192.168.68.8, 192.168.68.110]
|
||||
|
||||
-- Phase 5: Verify end-to-end latency
|
||||
|
||||
call verify-latency
|
||||
host: 192.168.68.116
|
||||
models: [syslog-auto, qwen3.6-27B-code, gemma-4-12b, ornith-1.0-35b]
|
||||
```
|
||||
@@ -0,0 +1,200 @@
|
||||
---
|
||||
kind: responsibility
|
||||
name: infrastructure-maintenance
|
||||
description: >
|
||||
Weekly system-level maintenance for the Syslog inference fleet: OS package
|
||||
updates on the primary host, Docker image pulls for LiteLLM/SearXNG and other
|
||||
running containers, container restarts with health verification, post-update
|
||||
verification of every critical service (LiteLLM proxy, SearXNG, Zulip, Gitea,
|
||||
PM2 processes, Hermes gateways), and rollback on failure. Consolidates the
|
||||
raw shell scripts that previously did this piecemeal. This contract owns the
|
||||
HOST-LEVEL weekly maintenance loop on the primary host plus Docker image
|
||||
pulls ONLY for .116 and .7, while infrastructure-update owns the FULL-FLEET
|
||||
cluster-wide wave (apt across the full PVE cluster + CTs/VMs AND its Docker
|
||||
image Wave 3 across all stacks). Runs Sunday 2am ET. Owner:
|
||||
ops (firstmate secondmate). Blast radius: an unverified image pull can break
|
||||
LiteLLM (all agents lose inference) or SearXNG (search-stack down); a bad apt
|
||||
upgrade can leave the host in a half-upgraded state. Pre-update backup check
|
||||
and rollback are mandatory for this reason.
|
||||
agent: ops
|
||||
triggers:
|
||||
- weekly (Sunday 02:00 ET) via cron
|
||||
- on demand when ops/abiba triggers "infra maintenance"
|
||||
version: 1.0.0
|
||||
---
|
||||
|
||||
## Maintains
|
||||
|
||||
- maintenance-status: { phase: idle|preflight|apt|images|restarts|verify|rollback|done|failed, host, step, result, timestamp }
|
||||
- image-baseline: { service, current_tag, pulled_tag, digest, updated_at } — last known-good image per container
|
||||
- apt-state: { upgradable_before, upgradable_after, held_broken, kernel_reboot_required }
|
||||
- health-baseline: snapshot of critical-service health captured pre-update (used for regression check post-update)
|
||||
- rollback-snapshot: { backup_path, configs, image_digests, timestamp } — restore point created in preflight
|
||||
- maintenance-history: array of past runs with phase results and any escalations
|
||||
|
||||
## Scope
|
||||
|
||||
Primary host is the maintenance host where apt updates apply. Docker image pulls
|
||||
span the two Docker ecosystems that run critical services. infrastructure-update
|
||||
runs the full-fleet cluster-wide wave (including its Wave 3 Docker pulls across
|
||||
all stacks/hosts); this contract runs a narrower host-level weekly pull limited
|
||||
to .116 and .7. Topology, CT IDs, and IPs are live-state fields — verify against
|
||||
`infrastructure-control.prose.md` (the source of truth) and the live system
|
||||
before mutating.
|
||||
|
||||
| Host | IP | Role | Trust |
|
||||
|------|----|------|-------|
|
||||
| CT 116 (syslog-api) | 192.168.68.116 | LiteLLM proxy + Grafana + Prometheus (inference harness) | ⚠️ VERIFY-BEFORE-USE |
|
||||
| VM 109 (docker-vm) | 192.168.68.7 | SearXNG + Firecrawl + home stack (Docker host) | ⚠️ VERIFY-BEFORE-USE |
|
||||
| CT 117 (zulip) | 192.168.68.19 | Zulip (storepve bridge IP .19) | ⚠️ VERIFY-BEFORE-USE |
|
||||
| Gitea | https://git.sysloggh.net | Prose-contracts + agent configs source control | ⚠️ VERIFY-BEFORE-USE |
|
||||
| CT 100 (abiba/pi) | 192.168.68.24 | PM2 processes (pi agent harness) | ⚠️ VERIFY-BEFORE-USE |
|
||||
|
||||
> "Primary host" for the apt phase is the host the ops agent runs maintenance
|
||||
> from. Confirm which host that is against infrastructure-control before
|
||||
> running; do not assume. If the ops agent is containerized/CT-based, apt runs
|
||||
> inside that CT.
|
||||
|
||||
## Requires
|
||||
|
||||
- SSH/exec access to CT 116 (.116) and VM 109 (.7) for Docker operations
|
||||
- `apt`, `docker`, `docker compose` available on target hosts
|
||||
- LiteLLM master key available (Infisical vault, `LITELLM_API_KEY`) for health verification
|
||||
- `infrastructure-monitoring` run completed within the last 30 minutes — provides the pre-update health baseline used by the regression check
|
||||
- Writable backup directory `/tmp/infra-maintenance-backup-<date>/` on each mutated host
|
||||
- Proxmox snapshot of the primary host available (or confirmed not required) before apt phase
|
||||
|
||||
## Continuity
|
||||
|
||||
- Self-driven: weekly cron `0 2 * * 0` (Sunday 02:00 ET)
|
||||
- Also wakes on: explicit "infra maintenance" trigger from ops/abiba
|
||||
- Depends on `infrastructure-monitoring` for the pre-update health baseline — do not run if the last monitoring run is stale (>30 min) or RED; abort and escalate instead
|
||||
|
||||
## Execution
|
||||
|
||||
### Phase 0 — Preflight (snapshot/backup check + health baseline)
|
||||
|
||||
1. **Capture health baseline** — run the `infrastructure-monitoring` postcondition checks (LiteLLM, Zulip, Gitea, SearXNG, Proxmox API) and record results as `health-baseline`. If any critical service is already down, **abort**: maintenance must not run on a degraded fleet.
|
||||
2. **Backup check** — confirm a Proxmox snapshot of the primary host exists OR `/tmp/infra-maintenance-backup-<date>/` was created this run. Snapshot critical config files into the backup dir:
|
||||
- `/opt/inference-harness/docker-compose.yml`, `/opt/inference-harness/litellm_config.yaml` (CT 116)
|
||||
- `/opt/search-stack/searxng/docker-compose.yml`, `/opt/search-stack/firecrawl-source/docker-compose.yaml` (VM 109)
|
||||
3. **Record image baseline** — `docker inspect --format '{{.Image}} {{.Config.Image}}' <container>` for every running container on .116 and .7; store digests in `image-baseline` so rollback can restore them.
|
||||
4. **Disk check** — `df -h` on each mutated host; abort if free space <20% (apt upgrade + image pulls need headroom).
|
||||
|
||||
### Phase 1 — OS package updates (primary host)
|
||||
|
||||
```bash
|
||||
# On the primary host only (VERIFY host against infrastructure-control first)
|
||||
apt update
|
||||
apt upgrade -y
|
||||
```
|
||||
|
||||
- Capture `apt list --upgradable` before and after → store in `apt-state`.
|
||||
- If apt reports held/broken packages (`apt-get -s upgrade | grep -i broken`, or non-zero exit), **stop** — do not force. Record `held_broken` and go to rollback/escalate.
|
||||
- If `/var/run/reboot-required` exists after upgrade, flag `kernel_reboot_required: true` in `apt-state` but **do not reboot automatically** — that's a separate coordinated action (see infra-update Wave 4). Note it in the report.
|
||||
|
||||
### Phase 2 — Docker image pulls
|
||||
|
||||
Pull latest stable tags for every running container. Do NOT pin to `:main`/`:nightly` — use stable tags where the compose file specifies them; otherwise `latest`.
|
||||
|
||||
```bash
|
||||
# CT 116 (.116) — inference harness
|
||||
cd /opt/inference-harness && docker compose pull
|
||||
|
||||
# VM 109 (.7) — search + home stacks
|
||||
cd /opt/search-stack/searxng && docker compose pull
|
||||
cd /opt/search-stack/firecrawl-source && docker compose pull
|
||||
# any other running stacks on .7 (home stack, audiobookshelf) — pull per their compose files
|
||||
```
|
||||
|
||||
- LiteLLM and SearXNG are the two explicitly required pulls; "any other running containers" means every stack with a compose file on .116 and .7.
|
||||
- Record pulled tag + digest per service in `image-baseline`.
|
||||
|
||||
### Phase 3 — Container restarts with health verification
|
||||
|
||||
Restart one stack at a time, verify health before moving to the next. Do not restart everything at once — a failure mid-wave must leave the rest running.
|
||||
|
||||
```bash
|
||||
# CT 116
|
||||
cd /opt/inference-harness && docker compose up -d
|
||||
# VM 109
|
||||
cd /opt/search-stack/searxng && docker compose up -d
|
||||
cd /opt/search-stack/firecrawl-source && docker compose up -d
|
||||
```
|
||||
|
||||
After each stack comes up, wait for health (max 120s):
|
||||
- `docker ps` shows the container `Up` (and `healthy` if a healthcheck is defined)
|
||||
- Service-specific probe passes (see Phase 4 probes)
|
||||
|
||||
If a stack fails to come up within 120s, **stop the wave** and go to rollback for that stack only; do not proceed to the next.
|
||||
|
||||
### Phase 4 — Post-update service verification
|
||||
|
||||
After ALL updates (apt + images + restarts), verify every critical service is back up and matches the pre-update baseline. This is the regression gate.
|
||||
|
||||
| Service | Probe | Expect |
|
||||
|---------|-------|--------|
|
||||
| LiteLLM proxy | `curl -sf http://192.168.68.116/litellm/v1/models` | 200 OK, models returned |
|
||||
| LiteLLM MCP gateway | `curl -sf http://192.168.68.116:4000/mcp-rest/tools/list -H "Authorization: Bearer $MASTER_KEY"` | 90 tools (23 RA-H OS + 67 GitHub) |
|
||||
| SearXNG | `curl -sf http://192.168.68.7:8888` | 200 OK |
|
||||
| Zulip | `curl -sf https://chat.sysloggh.net/api/v1/server_settings` | 200 OK |
|
||||
| Gitea | `curl -sf https://git.sysloggh.net/api/v1/version` | 200 OK |
|
||||
| PM2 processes | `pm2 jlist` (CT 100) | all pi-agent processes `online` |
|
||||
| Hermes gateways | SSH to Mumuni CT 114, Tanko CT 112; `systemctl is-active hermes-gateway` | `active` for each |
|
||||
|
||||
Regression check: every service that was GREEN in `health-baseline` must still be GREEN. A service that was already RED (and caused a preflight abort) is excluded — but Phase 0 should have aborted before we got here.
|
||||
|
||||
## Rollback Protocol
|
||||
|
||||
If ANY service in Phase 4 fails to come back up (or regresses vs baseline):
|
||||
|
||||
1. **Image rollback** — for the failing stack, restore the previous image:
|
||||
```bash
|
||||
# Restore from recorded image-baseline digest
|
||||
docker compose down
|
||||
# Pin the service image to the recorded digest in compose, then recreate
|
||||
# image: <name>@sha256:<previous_digest>
|
||||
docker compose pull && docker compose up -d
|
||||
```
|
||||
2. **APT rollback** — restore the primary host from the Proxmox snapshot taken/confirmed in Phase 0. If no snapshot, `apt install <pkg>=<old_version>` per package using apt history (`/var/log/apt/history.log`).
|
||||
3. **Config rollback** — restore configs from `/tmp/infra-maintenance-backup-<date>/`.
|
||||
4. **Re-verify** — re-run the Phase 4 probes on the rolled-back service. If still failing, escalate (do not loop — circuit breaker below).
|
||||
5. **Escalate** — send a Zulip DM to abiba + mumuni with: failing service, phase, baseline vs current, rollback actions taken, backup path.
|
||||
|
||||
## Circuit Breaker
|
||||
|
||||
- `max_retries: 2` per failing phase — after 2 rollback attempts on the same service, stop and escalate.
|
||||
- `window: 7200` seconds — no more than 2 retries within a 2-hour window.
|
||||
- `trip_action: escalate_to_fatal` — when tripped, escalate to fatal (abiba + mumuni + kwame) and pause; a human must clear before the next scheduled run.
|
||||
|
||||
## Report
|
||||
|
||||
After completion (or on abort), emit a receipt (JSON) to `~/.hermes/runs/infrastructure-maintenance/` and send a Zulip DM summary:
|
||||
|
||||
```
|
||||
🛠 Infrastructure Maintenance — YYYY-MM-DD
|
||||
|
||||
Phase: apt | images | restarts | verify | rollback
|
||||
Primary host: <host>
|
||||
APT: <N> packages upgraded, <M> held/broken, kernel_reboot_required=<bool>
|
||||
Images pulled: LiteLLM <tag>, SearXNG <tag>, <others>
|
||||
Services: all GREEN | <service> FAILED (rolled back)
|
||||
Baseline regression: none | <details>
|
||||
Backup: /tmp/infra-maintenance-backup-YYYYMMDD/
|
||||
Escalation: none | warning | critical | fatal
|
||||
```
|
||||
|
||||
## Verification Postconditions
|
||||
|
||||
- All critical services running after update (Phase 4 all GREEN)
|
||||
- No regressions from pre-update health baseline (Phase 0 baseline)
|
||||
- Docker containers on latest stable tags (`image-baseline.pulled_tag` recorded)
|
||||
- APT packages up to date with no held broken packages (`apt-state.held_broken == 0`)
|
||||
|
||||
## Related Contracts
|
||||
|
||||
- `infrastructure-update.prose.md` — owns the full-fleet cluster-wide wave INCLUDING its Wave 3 Docker image updates across all stacks (SearXNG, Firecrawl, Inference Harness on .116, home stack, audiobookshelf); infrastructure-maintenance is a deliberately narrower host-level weekly pull scoped to .116 and .7.
|
||||
- `infrastructure-monitoring.prose.md` — provides the pre-update health baseline (depends_on).
|
||||
- `infrastructure-control.prose.md` — topology source of truth (CT IDs, IPs, hostnames).
|
||||
- `litellm-health.prose.md` — LiteLLM probe details.
|
||||
- `proxmox-monitor.prose.md` — Docker stats + monitoring stack health.
|
||||
+219
-3
@@ -14,9 +14,26 @@ description: >
|
||||
expire/404. The .env fallback prevents agents from running without keys.
|
||||
Tanko incident: token 404 → gateway had no LITELLM_API_KEY for hours.
|
||||
|
||||
UPDATED 2026-07-16: Vault is SYNCED (session-13 keys written to vault via abiba service
|
||||
token, all validate 200). Koby/Koonimo migrated from hardcoded drop-ins to the
|
||||
infisical-gateway.sh wrapper (live vault injection). 4/5 agents now vault-backed.
|
||||
Canonical process: see § Production Vault Access Process. Tanko (user jerome) pending.
|
||||
Abiba's key is now a proper agent key (NOT the master key — stale note removed).
|
||||
|
||||
UPDATED 2026-07-17: FLEET-WIDE STANDARDIZATION. All 4 agents (Mumuni, Tanko, Koby, Koonimo)
|
||||
standardized on a single pattern: systemd drop-in (ExecStart= reset + wrapper path) →
|
||||
infisical-gateway.sh while-true loop → /usr/bin/infisical run --token → bash -c key
|
||||
injection → .env fallback → exec python. Systemd drop-ins are IMMUNE to hermes gateway
|
||||
install which overwrites the unit file ExecStart. Infisical CLI updated to 0.43.109 on
|
||||
all agents (was 0.38.0). Service token st.8e848433 shared across fleet (st.353699cd
|
||||
for tanko was deleted). .env fallback on every agent protects against token loss.
|
||||
Critical lessons: (1) NEVER use shell variables inside single-quoted bash -c in wrappers
|
||||
— hardcode absolute paths. (2) Drop-ins override unit file ExecStart permanently.
|
||||
(3) Capture /proc/<pid>/environ before gateway restarts to preserve running env set.
|
||||
|
||||
Current key inventory and agent list: see gpu-fleet.prose.md § Agent Keys.
|
||||
Source of truth for LiteLLM config: /opt/inference-harness/litellm_config.yaml
|
||||
on CT 116. Last verified: 2026-07-12.
|
||||
on CT 116. Last verified: 2026-07-17.
|
||||
---
|
||||
|
||||
## Parameters
|
||||
@@ -51,8 +68,8 @@ description: >
|
||||
- Generate new key with key_alias: "{agent_name}" (e.g., "tanko" — bare name, no date)
|
||||
- Set metadata: { "agent": "{agent_name}", "purpose": "agent-inference" }
|
||||
- Duration is null (permanent) — inherited from litellm default_key_generate_params
|
||||
- Set models: ["syslog-auto", "qwen3.6-27B-code", "gemma-4-12b", "ornith-1.0-35b"]
|
||||
- Note: qwen3.6-35B-A3B removed from fleet (was never deployed on any GPU)
|
||||
- Set models: ["syslog-auto", "qwen3.6-27B-code", "gemma-4-12b", "strix-moe", "gpu-dense", "gpu-light", "qwen3.6-35B-udq4"]
|
||||
- Note: `ornith-1.0-35b` is NOT a valid LiteLLM model name (use `strix-moe`, the stable alias). qwen3.6-35B-A3B removed from fleet (was never deployed).
|
||||
- Return the new key
|
||||
5. **If action == "rotate"**:
|
||||
- Generate new key with same alias (LiteLLM replaces the old key)
|
||||
@@ -67,3 +84,202 @@ description: >
|
||||
- Test the key against LiteLLM /v1/models
|
||||
- Confirm key alias matches agent_name in LiteLLM key list
|
||||
- Verify agent gateway uses vault wrapper: `cat /proc/<pid>/cmdline` shows `infisical run`
|
||||
|
||||
## Production Vault Access Process (canonical, 2026-07-17)
|
||||
|
||||
The non-fail approach to agentic vault access. Deployed on all 4 Hermes agents
|
||||
(Mumuni, Tanko, Koby, Koonimo) as of 2026-07-17. Abiba (pi) uses a similar pattern
|
||||
through its agent wrapper.
|
||||
|
||||
### The canonical pattern
|
||||
|
||||
1. **infisical CLI** installed on the host at `/usr/bin/infisical` (v0.43.109+, from
|
||||
artifacts-cli.infisical.com apt repo). Update procedure:
|
||||
```bash
|
||||
curl -1sLf 'https://artifacts-cli.infisical.com/setup.deb.sh' | sudo -E bash
|
||||
sudo apt-get update && sudo apt-get install -y infisical
|
||||
# Remove stale old binary if present
|
||||
rm -f /usr/local/bin/infisical /bin/infisical
|
||||
```
|
||||
Wrappers use absolute path `/usr/bin/infisical run`. Never rely on PATH resolution.
|
||||
2. **Service token** (Infisical Machine Identity, `st.…`) stored at `~/.infisical-token`
|
||||
(`chmod 600`). Current: shared `st.8e848433…` (abiba, READ+WRITE on agents project).
|
||||
Tanko's `st.353699cd…` (tanko-agent) was deleted — reverted to shared token.
|
||||
Proper: one machine identity per agent (create in Infisical UI → Project Settings →
|
||||
Machine Identities).
|
||||
3. **`infisical-gateway.sh` wrapper** at `~/.hermes/infisical-gateway.sh` (`chmod 700`):
|
||||
```bash
|
||||
#!/bin/bash
|
||||
export INFISICAL_API_URL="https://vault.sysloggh.net"
|
||||
TOKEN=$(cat $HOME/.infisical-token)
|
||||
LOG=$HOME/.hermes/logs/gateway.log; mkdir -p $HOME/.hermes/logs
|
||||
while true; do
|
||||
echo "[$(date -Iseconds)] Starting gateway with Infisical injection..." >> $LOG
|
||||
/usr/bin/infisical run --token="$TOKEN" \
|
||||
--projectId=322fceab-39da-4854-a55a-568e76c0f13f \
|
||||
--env=prod --domain=https://vault.sysloggh.net -- bash -c '
|
||||
. $HOME/.hermes/.env 2>/dev/null # [FALLBACK Rule 3]
|
||||
export LITELLM_API_KEY="${<AGENT>_LITELLM_API_KEY}"
|
||||
export ZULIP_API_KEY="${<AGENT>_ZULIP_API_KEY}"
|
||||
export ZULIP_SITE="https://chat.sysloggh.net"
|
||||
export ZULIP_EMAIL="<agent>-bot@chat.sysloggh.net"
|
||||
export SEARXNG_URL="http://192.168.68.7:8888"
|
||||
# ⚠️ HARDCODE the full venv path. NEVER use $VENV inside single quotes.
|
||||
exec /root/.hermes/hermes-agent/venv/bin/python -m hermes_cli.main gateway run
|
||||
' >> $LOG 2>&1
|
||||
EXIT_CODE=$?
|
||||
echo "[$(date -Iseconds)] Gateway exited with code $EXIT_CODE — restarting in 5s..." >> $LOG
|
||||
sleep 5
|
||||
done
|
||||
```
|
||||
**CRITICAL: VENV PATH.** The inner `bash -c '...'` uses single quotes. Shell
|
||||
variables set in the outer wrapper are NOT expanded inside single quotes.
|
||||
`$VENV/bin/python` resolves to `/bin/python` (file not found). Always hardcode
|
||||
the absolute path to the venv python binary.
|
||||
4. **Agent key in vault** as `<AGENT>_LITELLM_API_KEY` and `<AGENT>_ZULIP_API_KEY`.
|
||||
Vault = source of truth for ALL platform credentials.
|
||||
5. **`.env` fallback** at `~/.hermes/.env` (`chmod 600`) with agent-specific keys —
|
||||
safety net for vault outage or token revocation. Must be kept in sync on rotation.
|
||||
Example:
|
||||
```bash
|
||||
MUMUNI_LITELLM_API_KEY=sk-OzuWsoX22Hmb3Ps3JY01gw
|
||||
MUMUNI_ZULIP_API_KEY=H8dY6V7aHmWNcfgNtJaDBPZ1dGWn0Ttt
|
||||
```
|
||||
6. **systemd drop-in** at `~/.config/systemd/user/hermes-gateway.service.d/50-vault-wrapper.conf`:
|
||||
```ini
|
||||
[Service]
|
||||
ExecStart=
|
||||
ExecStart=/root/.hermes/infisical-gateway.sh
|
||||
```
|
||||
The `ExecStart=` (empty reset) clears any ExecStart from the main unit file,
|
||||
then the second `ExecStart=` sets the wrapper. This drop-in **survives unit file
|
||||
regeneration** by `hermes gateway install` — the drop-in always wins.
|
||||
|
||||
**Why a drop-in instead of editing the unit file:** `hermes gateway install`
|
||||
(called during Hermes updates and some self-heal operations) regenerates the
|
||||
systemd unit file with `ExecStart=/path/to/python -m hermes_cli.main gateway run`.
|
||||
Editing the unit file directly is futile — it will be overwritten. The drop-in
|
||||
approach explicitly resets ExecStart and sets the wrapper regardless of what the
|
||||
main unit file says.
|
||||
7. **NEVER hardcode** API keys in systemd drop-ins, config.yaml, or /etc/environment.
|
||||
The wrapper injects live from vault at every start.
|
||||
|
||||
### Why this is non-fail
|
||||
|
||||
- **No rot**: keys pulled live from vault at every gateway start. Rotation = one `infisical secrets set` + `systemctl restart`. No per-host file edits.
|
||||
- **Survives vault outage**: the `.env` fallback (Rule 3) keeps the gateway running if Infisical is unreachable or the service token is revoked.
|
||||
- **Survives gateway crash**: the wrapper's `while true` + systemd `Restart=always` revive the gateway. Two-layer defense.
|
||||
- **Survives Hermes updates**: systemd drop-in overrides unit file ExecStart — `hermes gateway install` cannot break the vault injection.
|
||||
- **Survives reboot**: systemd user service + `loginctl enable-linger` ensures gateway starts at boot without a login session.
|
||||
- **Auditable**: `cat /proc/$(pgrep -f 'python.*hermes_cli.main.gateway.run' | grep -v infisical | head -1)/environ` shows all injected keys (note: pipe through grep -v infisical to avoid matching the bash wrapper); `infisical secrets` shows the vault source.
|
||||
|
||||
### Migration status (2026-07-17)
|
||||
|
||||
| Agent | Host | Pattern | Keys | Status |
|
||||
|-------|------|---------|------|--------|
|
||||
| abiba | .24 | pi agent wrapper | ABIBA_LITELLM_API_KEY + ABIBA_ZULIP_API_KEY | ✅ vault-backed |
|
||||
| mumuni | .123 | systemd drop-in + while-true wrapper + st.8e848433 | MUMUNI_LITELLM_API_KEY + MUMUNI_ZULIP_API_KEY | ✅ vault-backed + .env fallback |
|
||||
| tanko | .122 | systemd drop-in + while-true wrapper + st.8e848433 (user jerome) | TANKO_LITELLM_API_KEY + TANKO_ZULIP_API_KEY | ✅ vault-backed + .env fallback |
|
||||
| koby | .129 | systemd drop-in + while-true wrapper + st.8e848433 | KOBY_LITELLM_API_KEY, shares TANKO_ZULIP_API_KEY (tanko-bot) | ✅ vault-backed |
|
||||
| koonimo | .114 | systemd drop-in + while-true wrapper + st.8e848433 | KOONIMO_LITELLM_API_KEY + KOONIMO_ZULIP_API_KEY | ✅ vault-backed |
|
||||
|
||||
> Tanko runs as user `jerome` — wrapper/token at `~/.hermes/infisical-gateway.sh` and
|
||||
> `~/.infisical-token`. Linger enabled (`loginctl enable-linger jerome`) for boot startup.
|
||||
|
||||
### Tanko migration (COMPLETED 2026-07-17)
|
||||
|
||||
Tanko was the last agent migrated from hardcoded keys to vault wrapper.
|
||||
Previously: key hardcoded in `/home/jerome/.hermes/config.yaml` (`api_key: sk-CggiHWlamQy…`)
|
||||
and `zulip-env.conf` systemd drop-in. Now: user-scope systemd service with drop-in
|
||||
`50-vault-wrapper.conf`, `infisical-gateway.sh` wrapper with while-true loop, token at
|
||||
`~/.infisical-token`, `.env` fallback at `~/.hermes/.env`. Keys injected live from vault.
|
||||
|
||||
### Koby migration lessons (2026-07-16, updated 2026-07-17)
|
||||
|
||||
Migrated Koby from hardcoded systemd drop-in → `infisical-gateway.sh` wrapper.
|
||||
**Three mistakes made:**
|
||||
1. **Overwrote `/root/.hermes/.env`** without backing it up. The Zulip API key only existed
|
||||
in the running process memory — the old .env was minimal (just LiteLLM key). Zulip creds were
|
||||
inherited from the pre-migration gateway env, not stored in any file. Lost on restart.
|
||||
2. **Only injected `LITELLM_API_KEY`** in the wrapper — forgot Zulip + Telegram credentials.
|
||||
Agents need ALL their platform env vars. Missing vars cause silent adapter failures.
|
||||
3. (2026-07-17 fix) **VENV variable in single-quoted bash -c**: `exec "$VENV/bin/python"`
|
||||
inside single quotes resolved to `exec "/bin/python"` (file not found). Hardcoded full path.
|
||||
|
||||
**How Koby actually connects:**
|
||||
- Zulip: shares **Tanko's bot** (`tanko-bot@chat.sysloggh.net`, `TANKO_ZULIP_API_KEY=5PeD6f3zo…`).
|
||||
- Telegram: token from `.env` fallback. Allowed users: 6679773481.
|
||||
- Both platforms now connect through the wrapper's env injection.
|
||||
|
||||
**Golden rules for gateway restarts:**
|
||||
1. Always `cat /proc/<pid>/environ` before killing the old process — captures the live env set.
|
||||
2. Hardcode venv python path in wrapper — never use variables inside single-quoted bash -c.
|
||||
3. Use systemd drop-ins (not unit file edits) to override ExecStart — survives Hermes updates.
|
||||
|
||||
### Fleet-wide standardization lessons (2026-07-17)
|
||||
|
||||
After auditing all 4 agents, five systemic patterns caused repeated failures:
|
||||
1. **Three incompatible startup patterns** coexisted (systemd drop-in, direct python, orphaned wrapper)
|
||||
2. **Systemd unit files reverted** by `hermes gateway install` during updates
|
||||
3. **VENV variable scoping** broke wrappers on Koby and Mumuni (single-quote bash -c)
|
||||
4. **Service token expiry** — Tanko's `st.353699cd` was deleted from Infisical
|
||||
5. **No ZULIP_API_KEY** in env on Tanko — wrapper bypassed by systemd direct python
|
||||
|
||||
All resolved by the canonical drop-in + while-true wrapper pattern documented above.
|
||||
|
||||
### Key rotation procedure (one vault operation with this standard)
|
||||
|
||||
1. Generate new key: `POST /key/generate` (master key, admin).
|
||||
2. Update vault: `infisical secrets set <AGENT>_LITELLM_API_KEY=sk-NEW --token=$TOKEN --projectId=322fceab… --env=prod --domain=https://vault.sysloggh.net`.
|
||||
3. Update `.env` fallback: `echo '<AGENT>_LITELLM_API_KEY=sk-NEW' > /root/.hermes/.env && chmod 600 /root/.hermes/.env`.
|
||||
4. Restart: `systemctl restart hermes-gateway`. The wrapper pulls the new key live.
|
||||
5. Verify: `curl -H "Authorization: Bearer sk-NEW" http://192.168.68.116/v1/models` → 200.
|
||||
|
||||
## Machine Identity for Vault Writes (UPDATED 2026-07-17)
|
||||
|
||||
**Current state:** Infisical CLI updated to v0.43.109 on all agents (from v0.38.0).
|
||||
The v0.38.0 bug (user-session auth fails for `secrets set`/`export`) is resolved.
|
||||
Service token `st.8e848433…` (abiba, READ+WRITE) can write to vault from CLI.
|
||||
|
||||
**Proper fix — per-agent Machine Identities:**
|
||||
Create machine identities in Infisical UI → Project Settings → Machine Identities
|
||||
for each agent with READ-only scope on the `agents` project. Store client_id +
|
||||
client_secret per agent. Then vault writes use the shared abiba identity, and
|
||||
reads use per-agent identities. This eliminates the single shared token risk.
|
||||
|
||||
**Service Token Inventory (2026-07-17):**
|
||||
| Token ID | Name | Permissions | Used By | Status |
|
||||
|----------|------|-------------|---------|--------|
|
||||
| `st.8e848433…` | tanko-gateway | READ+WRITE | Mumuni, Tanko, Koby, Koonimo, Abiba | ✅ Active |
|
||||
| `st.353699cd…` | tanko-agent | READ-only | — | ❌ Deleted from Infisical |
|
||||
|
||||
**Per-agent .env fallback inventory (2026-07-17):**
|
||||
| Agent | .env Keys |
|
||||
|-------|-----------|
|
||||
| Mumuni | MUMUNI_LITELLM_API_KEY, MUMUNI_ZULIP_API_KEY |
|
||||
| Tanko | TANKO_LITELLM_API_KEY, TANKO_ZULIP_API_KEY |
|
||||
| Koby | (wrapper injects from vault — .env has Telegram token) |
|
||||
| Koonimo | KOONIMO_LITELLM_API_KEY, KOONIMO_ZULIP_API_KEY |
|
||||
|
||||
## Key Rotation Log
|
||||
|
||||
| Date | Agent | Action | Notes |
|
||||
|------|-------|--------|-------|
|
||||
| 2026-07-17 | fleet | standardize | All 4 agents standardized on systemd drop-in + while-true wrapper + infisical v0.43.109. Removed conflicting zulip-env.conf + litellm-key.conf drop-ins. Added .env fallbacks with ZULIP keys. WAL #1322. |
|
||||
| 2026-07-17 | tanko | fix-zulip | Added ZULIP_API_KEY to env (was missing — systemd bypassed vault). Updated wrapper from exec to while-true. Created .env fallback. Removed hardcoded zulip-env.conf drop-in. WAL #1321. |
|
||||
| 2026-07-16 | vault | cleanup | 4 stale secrets deprecated. 5 personal creds flagged. |
|
||||
| 2026-07-16 | koonimo | add-zulip | Added KOONIMO_ZULIP_API_KEY to vault. Wrapper injects ZULIP_API_KEY + ZULIP_EMAIL. 3 platforms. |
|
||||
| 2026-07-16 | tanko | migrate | Migrated from hardcoded config.yaml to infisical-gateway.sh + st.353699cd. NOTE: st.353699cd later deleted — reverted to st.8e848433 on 2026-07-17. |
|
||||
| 2026-07-16 | mumuni | rotate | Old key malformed (sk-_SWAl_Vu_, 47 chars, not LiteLLM format) → 401. Deleted old `mumuni` key (token 15cbca18…), generated fresh (alias `mumuni`, 7 models: syslog-auto, qwen3.6-27B-code, gemma-4-12b, strix-moe, gpu-dense, gpu-light, qwen3.6-35B-udq4). New key sk-OzuWsoX2… written to /root/.hermes/.env (Rule 3/13 fallback). Vault sync PENDING (needs machine identity). WAL #1300. |
|
||||
| 2026-07-16 | koby | rotate | Old key sk-6sbCNjz (401, stale in /etc/environment). Deleted old `koby` key, generated fresh (alias `koby`). New key sk-BqRRMboTI… in systemd drop-in `hermes-gateway.service.d/litellm-key.conf` + /etc/environment. Created `hermes-gateway.service` unit (was missing — gateway wasn't persistent) with `--replace`. Verified HTTP 200, Telegram connected. |
|
||||
| 2026-07-16 | baggy (koonimo) | rotate | Old key sk-krnw_zGB (401, hardcoded in systemd drop-in). Deleted old `baggy` key, generated fresh (alias `baggy`, metadata agent=koonimo). New key sk-OEK7z26n6E… in drop-in `hermes-gateway.service.d/litellm-key.conf`. CT113 IP changed .113→.114. Verified HTTP 200, Zulip connected. |
|
||||
|
||||
## LiteLLM Master Key (use sparingly — agents should NOT use it directly)
|
||||
|
||||
- Master key: `sk-litellm-7f96080dd99b15c36bd4b333b58a6796` (in /opt/inference-harness/.env on CT116, Infisical project=infrastructure env=production secret=LITELLM_MASTER_KEY)
|
||||
- Used for /key/generate, /key/delete, /key/list (GET), DB queries
|
||||
- **Known violation (RESOLVED 2026-07-16):** Abiba's LITELLM_API_KEY was previously the master key.
|
||||
It is now a dedicated agent key `sk-sxbphLvk1OU…` (vault secret `ABIBA_LITELLM_API_KEY`, alias `abiba-pi`).
|
||||
The master key is admin-only (/key/generate, /key/delete, /key/list). NEVER use it for inference —
|
||||
see `litellm-self-heal` § "NEVER use litellm_proxy_master_key for inference".
|
||||
- LiteLLM key DB: `harness-postgres` container on CT116, table `"LiteLLM_VerificationToken"` (columns: token, key_alias, key_name, created_at, expires). Query: `docker exec harness-postgres psql -U litellm -d litellm -t -c "SELECT key_alias, substr(token,1,16) FROM \"LiteLLM_VerificationToken\" ORDER BY created_at;"`
|
||||
|
||||
+10
-10
@@ -42,8 +42,8 @@ Request → nginx:80 → LiteLLM:4000 → GPU(llama-server, parallel 2)
|
||||
**What changed (v3.2.0 → v4.0.0 — 2026-07-08)**:
|
||||
- Router REMOVED from request path — LiteLLM proxies directly to GPU
|
||||
- All GPUs at parallel 2 (was parallel 1)
|
||||
- NVIDIA context reduced 256K→128K to free VRAM
|
||||
- LiteLLM timeouts tuned: gemma 25→120s, qwen 40→90s
|
||||
- NVIDIA context reduced 256K→128K to free VRAM (SUPERSEDED 2026-07-16: all GPUs back to 256K — see litellm-self-heal)
|
||||
- LiteLLM timeouts tuned: gemma 25→120s, qwen 40→90s (SUPERSEDED 2026-07-16: qwen 300s, gemma 120s, strix 300s — see litellm-self-heal)
|
||||
- nginx proxy_read_timeout: 600s, LiteLLM request_timeout: 300s
|
||||
|
||||
## Parameters
|
||||
@@ -72,18 +72,18 @@ Request → nginx:80 → LiteLLM:4000 → GPU(llama-server, parallel 2)
|
||||
|
||||
| Host | IP | Hardware | Models Served | Engine | Context | Parallel |
|
||||
|------|-----|----------|---------------|--------|---------|----------|
|
||||
| llm-gpu | 192.168.68.8 | NVIDIA RTX 3090 (24 GB) | qwen3.6-27B-code | llama-server systemd | 128K | 2 |
|
||||
| ocu-llm | 192.168.68.110 | NVIDIA RTX 5070 (12 GB) | gemma-4-12b | llama-server systemd | 128K | 2 |
|
||||
| amdpve | 192.168.68.15 | AMD Strix Halo 64GB UMA | ornith-1.0-35b | llama-server systemd (Vulkan) | 256K | 2 |
|
||||
| llm-gpu | 192.168.68.8 | NVIDIA RTX 3090 (24 GB) | qwen3.6-27B-code | llama-server systemd | **256K** | 2 |
|
||||
| ocu-llm | 192.168.68.110 | NVIDIA RTX 5070 (12 GB) | gemma-4-12b | llama-server systemd | **256K** | 2 |
|
||||
| amdpve | 192.168.68.15 | AMD Strix Halo 64GB UMA | qwen3.6-35B-udq4 (LiteLLM alias: strix-moe) | llama-server systemd (Vulkan) | 256K | 2 |
|
||||
|
||||
## Model Fallback Chains (LiteLLM)
|
||||
|
||||
| Primary | Timeout | Fallback | Timeout |
|
||||
|---------|---------|----------|---------|
|
||||
| qwen3.6-27B-code | 90s | gemma-4-12b | 120s |
|
||||
| gemma-4-12b | 120s | qwen3.6-27B-code | 90s |
|
||||
| ornith-1.0-35b | 120s | qwen → gemma | — |
|
||||
| syslog-auto (balanced) | 90s | qwen → gemma | — |
|
||||
| qwen3.6-27B-code | 300s | gemma-4-12b | 120s |
|
||||
| gemma-4-12b | 120s | qwen3.6-27B-code | 300s |
|
||||
| qwen3.6-35B-udq4 / strix-moe | 300s | qwen → gemma | — |
|
||||
| syslog-auto (balanced) | 300s | qwen → gemma | — |
|
||||
|
||||
> Global: request_timeout=300s, nginx proxy_read_timeout=600s
|
||||
|
||||
@@ -129,7 +129,7 @@ Request → nginx:80 → LiteLLM:4000 → GPU(llama-server, parallel 2)
|
||||
7. **Check model inference via LiteLLM** — Test each model:
|
||||
- POST /v1/chat/completions model=gemma-4-12b → expect 200
|
||||
- POST /v1/chat/completions model=qwen3.6-27B-code → expect 200
|
||||
- POST /v1/chat/completions model=ornith-1.0-35b → expect 200
|
||||
- POST /v1/chat/completions model=strix-moe → expect 200
|
||||
- Use master key for auth
|
||||
|
||||
8. **Check agent keys**:
|
||||
|
||||
@@ -6,6 +6,7 @@ note: >
|
||||
DEPLOYED 2026-07-12 on CT 116 cron: 0 */6 * * *
|
||||
Auto-remediation code was removed from the pi Zulip extension (retired 2026-07-04),
|
||||
now reimplemented as `litellm-health-check.sh` on CT 116.
|
||||
Script: `/opt/inference-harness/scripts/litellm-health-check.sh` on CT 116 (cron `0 */6 * * *`).
|
||||
Reports to /var/log/litellm/health-*.json and RA-H OS knowledge graph.
|
||||
GPU monitoring integrated from gpu-monitor on .24:9100.
|
||||
|
||||
@@ -56,18 +57,29 @@ Request → nginx:80 → LiteLLM:4000 → GPU(llama-server, parallel 2)
|
||||
|
||||
| Host | IP | Hardware | Models Served | Engine | Context | Parallel |
|
||||
|------|-----|----------|---------------|--------|---------|----------|
|
||||
| llm-gpu | 192.168.68.8 | NVIDIA RTX 3090 (24 GB) | qwen3.6-27B-code | llama-server systemd | **256K** | 1 |
|
||||
| ocu-llm | 192.168.68.110 | NVIDIA RTX 5070 (12 GB) | gemma-4-12b | llama-server systemd | 131K | 2 |
|
||||
| amdpve | 192.168.68.15 | AMD Strix Halo 64GB UMA | ornith-1.0-35b | llama-server systemd (Vulkan) | 256K | 2 |
|
||||
| llm-gpu | 192.168.68.8 | NVIDIA RTX 3090 (24 GB) | qwen3.6-27B-code | llama-server systemd (`/home/llmuser/llama-wrapper.sh`, `-c 262144 --parallel 2 --ngl 99`) | **256K** | 2 |
|
||||
| ocu-llm | 192.168.68.110 | NVIDIA RTX 5070 (12 GB) | gemma-4-12b | llama-server systemd (`/home/llmuser/llama-wrapper.sh`, `--ctx-size 262144 --parallel 2`, IQ4_NL + MTP draft) | **256K** | 2 |
|
||||
| amdpve | 192.168.68.15 | AMD Strix Halo 64GB UMA | qwen3.6-35B-udq4 (LiteLLM alias: `strix-moe`) | llama-server systemd (Vulkan) | 256K | 2 |
|
||||
|
||||
> Verified on ground 2026-07-16 via `curl /v1/models` on each host + `llama-wrapper.sh`. The AMD host's underlying model is `qwen3.6-35B-udq4`; LiteLLM exposes it under two `model_name`s: `qwen3.6-35B-udq4` and `strix-moe` (rpm 40). The legacy name `ornith-1.0-35b` does NOT exist in LiteLLM and must not be referenced.
|
||||
|
||||
## LiteLLM Model Surface (ground truth — `/opt/inference-harness/litellm_config.yaml` on CT 116)
|
||||
|
||||
`model_name`s served: `qwen3.6-27B-code`, `gemma-4-12b`, `qwen3.6-35B-udq4`, `strix-moe`, `gpu-dense`, `gpu-light`, `syslog-auto`.
|
||||
|
||||
- `syslog-auto` is a weighted router model: qwen3.6-27B-code (0.55, rpm 500) + qwen3.6-35B-udq4 (0.30, rpm 60) + gemma-4-12b (0.15, rpm 200).
|
||||
- `gpu-dense` / `gpu-light` are high-rpm aliases (rpm 500) onto qwen3.6-27B-code / gemma-4-12b respectively.
|
||||
- Key scoping: agent keys are restricted to `['syslog-auto','qwen3.6-27B-code','gemma-4-12b','strix-moe','gpu-dense','gpu-light']`. As of 2026-07-16 the `baggy`/`koby`/`mumuni`/`abiba-pi` keys ALSO include `qwen3.6-35B-udq4`; `abiba-pi` additionally includes `deepseek-v4-pro` (cloud fallback). `kagenz0`/`koonimo`/`pi-agents-unified` have the standard 6 only. Agents should still use the stable alias `strix-moe` (not the raw `qwen3.6-35B-udq4`) so model swaps don't break them.
|
||||
- **NEVER use `litellm_proxy_master_key` (the `sk-litellm-...` master key) for inference.** It is for admin endpoints only (`/key/list`, `/key/generate`, `/key/info`). All inference — agent traffic, health-check model tests, monitor scripts — uses agent-specific keys. The health-check script's model tests use a dedicated `monitor` agent key stored at `/etc/litellm-monitor.env` on CT 116 (root-only, `chmod 600`); `/key/list` is the only call that legitimately uses `$MASTER_KEY`.
|
||||
|
||||
## Model Fallback Chains (LiteLLM)
|
||||
|
||||
| Primary | Timeout | Fallback | Timeout |
|
||||
|---------|---------|----------|---------|
|
||||
| qwen3.6-27B-code | 90s | gemma-4-12b | 120s |
|
||||
| gemma-4-12b | 120s | qwen3.6-27B-code | 90s |
|
||||
| ornith-1.0-35b | 120s | qwen → gemma | — |
|
||||
| syslog-auto (balanced) | 90s | qwen → gemma | — |
|
||||
| qwen3.6-27B-code | 300s | gemma-4-12b | 120s |
|
||||
| gemma-4-12b | 120s | qwen3.6-27B-code | 300s |
|
||||
| qwen3.6-35B-udq4 / strix-moe | 300s | qwen → gemma | — |
|
||||
| syslog-auto (balanced) | 300s | qwen → gemma | — |
|
||||
|
||||
> Global: request_timeout=300s, nginx proxy_read_timeout=600s
|
||||
|
||||
@@ -86,6 +98,13 @@ Request → nginx:80 → LiteLLM:4000 → GPU(llama-server, parallel 2)
|
||||
| harness-docker-stats | python:3.12-alpine | — | container stats exporter |
|
||||
| harness-pve-exporter | prompve/prometheus-pve-exporter | — | Proxmox metrics → Prometheus |
|
||||
|
||||
## Script Operations (synced 2026-07-16)
|
||||
|
||||
- **Health-check script** (`/opt/inference-harness/scripts/litellm-health-check.sh` on CT 116): `gpu-fleet` check fails only on **critical** alerts (warnings are informational). Tests `strix-moe` (not `ornith-1.0-35b`).
|
||||
- **GPU monitor** (`/root/scripts/gpu-monitor-server.py` on pi .24): runs as **systemd unit `gpu-monitor.service`** (was bare `&` process). `gpu_count` includes Strix Halo (was 2, now 3). VRAM alert thresholds: warning 93%, critical 97% (raised from 90/95 — 256K context steady-state is ~96% on RTX 3090, not a fault).
|
||||
- **Agent key monitor** (`/root/scripts/agent-health-check.py` on pi .24, cron `*/10`): reads each agent's **live** `LITELLM_API_KEY` from its gateway process env via SSH — never hardcodes keys (hardcoded keys rot on rotation and caused 9×401/30min). Fleet roster: abiba, tanko, mumuni, koby, koonimo (legacy `tdunna`/`baggy` removed — never existed).
|
||||
- **Stale keys cleaned**: `daily-infra-report.py` SYNTHETIC_API_KEY was stale (`sk-U_ydi3B` → 401); now reads `LITELLM_MASTER_KEY` from env. Deprecated scripts (`router-original.py`, `router-phase0-backup.py`, `apply-fixes.py`) still reference `sk-syslog-local-master-key` but do not actively poll LiteLLM.
|
||||
|
||||
## Maintains
|
||||
|
||||
- litellm-admin-ui: { status: "healthy", last_check: timestamp }
|
||||
@@ -128,7 +147,7 @@ Run this first on every cycle. Results feed into remediation rules below.
|
||||
### 5. Check model inference via LiteLLM — test each model
|
||||
- POST /v1/chat/completions model=gemma-4-12b → expect 200
|
||||
- POST /v1/chat/completions model=qwen3.6-27B-code → expect 200
|
||||
- POST /v1/chat/completions model=ornith-1.0-35b → expect 200
|
||||
- POST /v1/chat/completions model=strix-moe → expect 200
|
||||
- Use master key for auth
|
||||
|
||||
### 6. Check agent keys
|
||||
|
||||
@@ -0,0 +1,290 @@
|
||||
---
|
||||
kind: pattern
|
||||
name: mumuni-delegation
|
||||
description: >
|
||||
Mumuni-specific operating doctrine for task decomposition, worker
|
||||
delegation, verification, and delivery. Defines when to delegate, which
|
||||
worker to use for what, how to handle failures, and the kanban board
|
||||
protocol. Enforces context-window discipline and separation of concerns.
|
||||
Runs on Mumuni (CT 118, storepve, .6) via Hermes agent.
|
||||
version: 1.0.0
|
||||
---
|
||||
|
||||
## Maintains
|
||||
|
||||
- Worker roster: 6 profiles (`syslog-code`, `syslog-devops`, `syslog-email`,
|
||||
`syslog-research`, `syslog-review`, `syslog-writer`)
|
||||
- Kanban board state at `~/.hermes/kanban/kanban.json`
|
||||
- Context window budget: ~65K tokens per request (131K total, 60% threshold)
|
||||
|
||||
## Topology
|
||||
|
||||
**Cluster:** 5 Proxmox nodes (ocupve, acerpve, minipve, amdpve, storepve)
|
||||
**Manager:** Mumuni (CT 118, storepve, .6) via Hermes agent
|
||||
**Workers:** 6 profiles, all running on the same agent — no separate hosts needed
|
||||
|
||||
This contract is infrastructure-agnostic in terms of which nodes are used.
|
||||
Workers execute tasks on whatever infrastructure they're given — SSH to .6,
|
||||
.pm, .9, .12, or .15 depending on the task. The contract defines the
|
||||
**who** and **when** — not the **where**.
|
||||
|
||||
## Why This Matters
|
||||
|
||||
Without enforced delegation, the manager consumes the full iteration budget
|
||||
(60 calls) on single-turn tasks — SSH to 5 nodes, check each VM, read logs —
|
||||
leaving no capacity for actual coordination. The result: context overflow
|
||||
(59K tokens in system prompt), iteration exhaustion, and degraded response
|
||||
quality. This contract exists because I blew through my budget checking
|
||||
Proxmox node status instead of delegating to `syslog-devops`.
|
||||
|
||||
## Context Window Discipline
|
||||
|
||||
**The system prompt is ~6.5K tokens (stable: ~4.5K tool schemas + ~2K other guidance).**
|
||||
**Volatile (MEMORY.md + USER.md): ~300 tokens.**
|
||||
**Total base: ~6,800 tokens per request.**
|
||||
|
||||
The remaining budget is the conversation. Every tool call result adds to it.
|
||||
If a single call returns >10K tokens (e.g., `grep` on a large file, SSH output
|
||||
from multiple nodes), the context fills fast. That's why we delegate: workers
|
||||
process in isolation and return compact results.
|
||||
|
||||
## Trigger Conditions
|
||||
|
||||
Delegation is **mandatory** when any of these apply:
|
||||
|
||||
| Condition | Threshold | Example |
|
||||
|-----------|-----------|---------|
|
||||
| Multiple tool calls needed | 2+ calls with intermediate logic | Read file → analyze → write report |
|
||||
| Large data retrieval | Output >5K tokens | `grep -r "pattern" /path` on large dirs |
|
||||
| Cross-domain work | Spans 2+ worker specialties | Infra check + email filter |
|
||||
| Infrastructure changes | Any mutating operation | `qm set`, `systemctl restart`, `git push` |
|
||||
| Research/analysis | Needs browser or deep reading | Web research, code review, data analysis |
|
||||
| Code builds or changes | Writing or modifying code | Scripts, configs, patches |
|
||||
| Sequential dependencies | Worker B needs Worker A's output | Code → Review → Deliver |
|
||||
|
||||
**Single tool calls stay at manager level.** Quick `grep`, `ls`, `cat`,
|
||||
`curl`, `hermes tools list` — these are decision-making tools. The manager
|
||||
reads them directly.
|
||||
|
||||
## Data Source Integrity (CRITICAL)
|
||||
|
||||
**Workers MUST use the data provided in their task context. They MUST NOT
|
||||
fetch their own data from external sources unless explicitly told to.**
|
||||
|
||||
When a task says "Read file X and format it", the worker reads file X. It does
|
||||
not query a separate API, run its own diagnostics, or pull data from a different
|
||||
system. This is the #1 source of cross-worker inconsistency: one worker gathers
|
||||
SSH data, another queries the Proxmox API, and the report merges two incompatible
|
||||
datasets.
|
||||
|
||||
**Rule:** If a worker needs additional data beyond what's in its task description,
|
||||
it asks the manager (via relay) — it doesn't go find it on its own.
|
||||
|
||||
**This is a hard rule, not a recommendation.** Violating it produces the exact
|
||||
type of discrepancy the kanban pipeline exists to prevent: a review worker finds
|
||||
"5 nodes present" in the raw data but "5/5 online" in the report — even though
|
||||
one of those nodes was unreachable. The report lied because it used data the
|
||||
raw data never provided.
|
||||
|
||||
## Worker Selection Matrix
|
||||
|
||||
| Worker | Model | Toolsets | Role | Use When |
|
||||
|--------|-------|----------|------|----------|
|
||||
| `syslog-code` | qwen3.6-27B-code | terminal, file, web, memory, skills | Code patches, automation, scripts | Writing/modifying code, creating scripts, debugging, reading/writing files |
|
||||
| `syslog-devops` | qwen3.6-27B-code | terminal, file, web, memory, skills | Infrastructure, DB, bridge, Proxmox | Server ops, SSH, Docker, Proxmox, DB queries, hardware checks |
|
||||
| `syslog-email` | strix-moe | terminal, file, web, memory, skills | Email automation, mail operations | Sending/receiving email, inbox management, SMTP operations |
|
||||
| `syslog-research` | strix-moe | terminal, file, web, memory, skills, **browser** | Analysis, classification, data processing | Web research, browser tasks, data analysis, classification, reading docs |
|
||||
| `syslog-review` | strix-moe | terminal, file, web, memory, skills | Verification, QA, audit validation | **ALWAYS** verify worker output before delivery — especially for infra changes, code builds, and research findings |
|
||||
| `syslog-writer` | strix-moe | terminal, file, web, memory, skills | Docs, content, branding, reports | Writing docs, reports, proposals, content, markdown formatting |
|
||||
|
||||
### Selection Rules
|
||||
|
||||
1. **Match specialty first.** A code task → `syslog-code`. An infra task →
|
||||
`syslog-devops`. Don't put a `syslog-email` worker on a code review.
|
||||
2. **Research tasks with browser needs → `syslog-research`.** Other workers
|
||||
don't have the browser toolset.
|
||||
3. **Verification → `syslog-review`.** Never deliver raw worker output.
|
||||
4. **Documentation/content → `syslog-writer`.** Let them own the prose.
|
||||
5. **If unsure, delegate to `syslog-research`** — it has the broadest toolset
|
||||
(includes browser) and high reasoning effort.
|
||||
|
||||
## Delegation Protocol
|
||||
|
||||
### Step 1: Decompose
|
||||
|
||||
Break the task into lanes. Each lane does ONE thing. Workers are independent —
|
||||
no lane depends on another's output mid-flight. If lanes depend on each other,
|
||||
dispatch sequentially.
|
||||
|
||||
### Step 2: Dispatch
|
||||
|
||||
Fire workers via `delegate_task`:
|
||||
|
||||
**Critical: Pass the data, not just the goal.** When dispatching a worker that
|
||||
processes output from another worker, include the file path AND explicit
|
||||
instructions to use ONLY that source. Example:
|
||||
|
||||
```
|
||||
delegate_task(
|
||||
goal="Format the cluster check into a clean report",
|
||||
context="Source data is at /tmp/proxmox-check-raw.md. Format ONLY the data
|
||||
in that file. Do NOT query the Proxmox API or any other data source. Use the
|
||||
file as your sole source of truth."
|
||||
)
|
||||
```
|
||||
|
||||
**Parallel (independent lanes):**
|
||||
```
|
||||
delegate_task(
|
||||
tasks=[
|
||||
{"goal": "Check all 5 Proxmox nodes for VM status", "context": "SSH to each node via 192.168.68.x, run 'qm list'"},
|
||||
{"goal": "Check Docker container health on .7/.116/.17", "context": "SSH to each host, check container status"},
|
||||
]
|
||||
)
|
||||
```
|
||||
|
||||
**Sequential (dependent lanes):**
|
||||
Dispatch lane 1 → wait for result → dispatch lane 2.
|
||||
|
||||
### Step 3: Verify
|
||||
|
||||
**MANDATORY for:**
|
||||
- Infrastructure changes (any `qm`, `pct`, `systemctl`, `git push`)
|
||||
- Code builds and modifications
|
||||
- Research findings (web data, external sources)
|
||||
- Any output that will reach the user
|
||||
|
||||
**Fire `syslog-review` to verify:**
|
||||
```
|
||||
delegate_task(
|
||||
goal="Review the output of the devops worker. Verify the node status
|
||||
report is accurate, check for inconsistencies, confirm all nodes were
|
||||
reachable.",
|
||||
context="Worker was syslog-devops. Output is at /tmp/node-report.md.
|
||||
Verify against live system."
|
||||
)
|
||||
```
|
||||
|
||||
**If verification fails:**
|
||||
1. Send work back to original worker with review feedback
|
||||
2. Re-verify
|
||||
3. Max 2 re-verify cycles before escalating to Kwame
|
||||
|
||||
### Step 4: Deliver
|
||||
|
||||
Only verified results reach Kwame. Format per channel:
|
||||
- Telegram: Use `telegram-formatting` skill
|
||||
- Zulip: Use Zulip Markdown (CommonMark)
|
||||
- Email: Use `syslog-email` skill
|
||||
|
||||
## Kanban Board Protocol
|
||||
|
||||
**File:** `~/.hermes/kanban/kanban.json`
|
||||
|
||||
```json
|
||||
{
|
||||
"task_id": "unique-id",
|
||||
"title": "Task description",
|
||||
"created": "2026-07-09T01:00:00",
|
||||
"status": "backlog|in_progress|review|done",
|
||||
"lanes": [
|
||||
{
|
||||
"lane_id": "devops-check",
|
||||
"worker": "syslog-devops",
|
||||
"goal": "Check all 5 Proxmox nodes",
|
||||
"status": "dispatched|completed|failed",
|
||||
"output_file": "/tmp/node-report.md"
|
||||
}
|
||||
]
|
||||
}
|
||||
```
|
||||
|
||||
**Update the board on every state change.**
|
||||
|
||||
## Failure Handling
|
||||
|
||||
### Worker Timeouts
|
||||
|
||||
- Child timeout: **900 seconds** (15 minutes)
|
||||
- Worker model `syslog-auto` is slow — it can hit the timeout limit with
|
||||
22+ API calls
|
||||
- **If a worker times out:** Re-dispatch with a narrower scope. Break the
|
||||
task into smaller pieces that fit in the timeout window.
|
||||
- **Avoid delegating sequential SSH hops** — each SSH connection adds latency
|
||||
that compounds quickly. Prefer API-based or local approaches when possible.
|
||||
|
||||
### Worker Selection Failures
|
||||
|
||||
- `syslog-devops` is best for infrastructure tasks (SSH, Proxmox, Docker)
|
||||
- `syslog-code` is best for code-level work (reading files, writing scripts)
|
||||
- `syslog-research` has the browser toolset — use for web research
|
||||
- `syslog-review` is the QA gate — always fire before delivery
|
||||
- **Never fire more than 3 parallel workers** (max_concurrent_children: 3)
|
||||
- **Never nest delegation** (max_spawn_depth: 1)
|
||||
|
||||
### Context Overflow
|
||||
|
||||
- If a task requires >10K tokens of output, delegate the processing
|
||||
- Workers return compact summaries, not raw data dumps
|
||||
- Pass file paths and concrete goals — never dump raw data into context
|
||||
|
||||
## Anti-patterns
|
||||
|
||||
- ❌ Reading large files into your own context before deciding → delegate the read
|
||||
- ❌ Carrying SSH/grep/output results in your context → delegate the analysis
|
||||
- ❌ Doing work yourself and then "pretending" to delegate → the user can tell
|
||||
- ❌ Skipping verification → raw worker output never reaches the user
|
||||
- ❌ Delegating single tool calls → keep quick reads/writes at manager level
|
||||
- ❌ Firing more than 3 workers in parallel → hard limit
|
||||
- ❌ **Workers fetching their own data sources** → a writer worker that queries the Proxmox API when told to "format the raw file" is fabricating data. Use the input given, not external sources
|
||||
|
||||
## Emergency Exception
|
||||
|
||||
**In an emergency (server down, service must be restored immediately):**
|
||||
- Delegate the diagnosis (find the problem)
|
||||
- Execute the fix yourself (minimize handoff latency)
|
||||
- Verify the fix after delivery
|
||||
- Log the exception in the kanban board
|
||||
|
||||
The emergency exception exists because the user needs the service back NOW,
|
||||
not after three worker round-trips. But it's an exception — not the rule.
|
||||
|
||||
## What This Contract Doesn't Cover
|
||||
|
||||
1. **Worker profile configuration** — covered by `hermes-config-template.prose.md`
|
||||
2. **SSH key management** — covered by existing SSH/Proxmox contracts
|
||||
3. **Git workflow** — covered by `AGENTS.md` in the prose-contracts repo
|
||||
4. **Cron job management** — covered by individual cron contracts
|
||||
5. **Infra verification** — covered by `verify-before-mutate` protocol
|
||||
|
||||
## Verification
|
||||
|
||||
Run `scripts/worker-audit.py` to verify all 6 profiles are aligned:
|
||||
|
||||
```bash
|
||||
python3 /root/.hermes/skills/kanban-orchestrator/scripts/worker-audit.py
|
||||
```
|
||||
|
||||
## References
|
||||
|
||||
- `kanban-orchestrator` skill: The operational playbook (detailed execution steps)
|
||||
- `worker-profile-audit.md` (skill reference): Worker configuration audit notes
|
||||
- `delegation-timeout-patterns.md` (skill reference): Timeout handling patterns
|
||||
- `verify-before-mutate` protocol: Infrastructure change verification
|
||||
- `hermes-config-template.prose.md`: Worker profile configuration
|
||||
|
||||
## Success Criteria
|
||||
|
||||
This contract succeeds when:
|
||||
|
||||
1. **No context overflow** — single-turn tasks don't exhaust the iteration budget
|
||||
2. **Workers do the work** — manager coordinates, doesn't execute
|
||||
3. **Verification before delivery** — all output passes through `syslog-review`
|
||||
4. **Kanban board is current** — every task has a lane, every lane has a status
|
||||
5. **User gets verified results** — raw worker output never reaches Kwame
|
||||
|
||||
---
|
||||
|
||||
**Last updated:** 2026-07-09
|
||||
**Author:** Mumuni (with Kwame's input on triggers and exception criteria)
|
||||
**Status:** Draft — awaiting PR review and merge to prose-contracts main
|
||||
@@ -0,0 +1,210 @@
|
||||
---
|
||||
kind: pattern
|
||||
name: ra-h-os-custodianship-contract
|
||||
description: >
|
||||
Operational standards for maintaining RA-H OS as a high-functioning shared
|
||||
memory system across all agents. Defines rules for embedding consistency,
|
||||
namespace discipline, staleness management, orphan prevention, agent
|
||||
custodianship, and recovery protocols. Prevents knowledge graph degradation
|
||||
and ensures reliable semantic search capabilities.
|
||||
---
|
||||
|
||||
# RA-H OS Custodianship Contract — Shared Memory Protocol
|
||||
|
||||
## Purpose
|
||||
This contract establishes the operational standards for maintaining RA-H OS as a high-functioning shared memory system across all agents. It defines the rules, responsibilities, and recovery protocols that prevent knowledge graph degradation and ensure consistent, reliable semantic search capabilities.
|
||||
|
||||
## Core Principles
|
||||
|
||||
### 1. Embedding Consistency
|
||||
**Rule:** All nodes MUST use the RA-H OS built-in embedding pipeline via `http://192.168.68.65:8080/v1/embeddings` for consistent vector representation.
|
||||
|
||||
**Requirements:**
|
||||
- The embedding service at `192.168.68.65:8080` is the single source of truth for vector generation
|
||||
- No external embedding APIs (OpenAI, Cohere, etc.) may be used for RA-H OS nodes
|
||||
- All nodes must have `embedding_status: "chunked"` and `chunk_status: "chunked"` upon creation
|
||||
- If embedding fails, the node must be immediately flagged as `state: "unsearchable"` and logged
|
||||
|
||||
### 2. Namespace Discipline
|
||||
**Rule:** All nodes MUST be categorized into one of three namespaces with strict metadata requirements.
|
||||
|
||||
**Namespace Structure:**
|
||||
- `agent-private`: Isolated working notes for individual agents (Mumuni, Tanko, Okyeame, etc.)
|
||||
- `shared`: Policy files, registry nodes, collective knowledge
|
||||
- `syslogsolution`: Business nodes, client data, operational context
|
||||
|
||||
**Metadata Requirements:**
|
||||
Every node MUST have these metadata fields:
|
||||
```json
|
||||
{
|
||||
"agent_id": "<agent_name>",
|
||||
"namespace": "<namespace>",
|
||||
"state": "<state>",
|
||||
"type": "<type>",
|
||||
"owner": "<owner>",
|
||||
"tenant": "<tenant>",
|
||||
"visibility": "<visibility>",
|
||||
"source": "<source>",
|
||||
"captured_by": "<captured_by>"
|
||||
}
|
||||
```
|
||||
|
||||
### 3. Staleness Management
|
||||
**Rule:** Nodes are categorized by type and have specific staleness thresholds.
|
||||
|
||||
**Staleness Thresholds:**
|
||||
- `policy` type: 30 days (e.g., Shared Memory Policy, Agent Registry)
|
||||
- `registry` type: 30 days (e.g., Node State Management, Health Dashboard)
|
||||
- `template` type: 30 days (e.g., Agent SOUL.md)
|
||||
- `note` type: 60 days (e.g., business context, project notes)
|
||||
- `information` type: 90 days (e.g., reference documentation)
|
||||
- `idea` type: 30 days (e.g., brainstorming, experimental notes)
|
||||
|
||||
**Transition Protocol:**
|
||||
- `active` → `stale`: After days since `updated_at` exceeds threshold
|
||||
- `stale` → `review_pending`: Daily cron check flags for human review
|
||||
- `review_pending` → `active`: Human reviews and updates content
|
||||
- `review_pending` → `archived`: After 15 days in review_pending state (automatic purge)
|
||||
|
||||
### 4. Orphan Prevention
|
||||
**Rule:** No node should remain orphaned (0 edges) for more than 7 days.
|
||||
|
||||
**Orphan Detection:**
|
||||
- Daily cron job identifies nodes with 0 incoming/outgoing edges
|
||||
- Orphans are flagged with `state: "review_pending"` and `metadata.orphan_detected: true`
|
||||
- 7-day grace period: Orphans must be either:
|
||||
- Connected to relevant nodes via edges
|
||||
- Merged into existing parent nodes
|
||||
- Archived after 15 days in review_pending state
|
||||
|
||||
### 5. Agent Custodianship
|
||||
**Rule:** Each agent is responsible for maintaining their own created nodes.
|
||||
|
||||
**Responsibilities:**
|
||||
- **Mumuni**: Primary custodian for `syslogsolution` namespace, health dashboard, and all business nodes
|
||||
- **Tanko**: Custodian for `agent-private` namespace, personal notes, and fitness/creative work
|
||||
- **Okyeame**: Custodian for `shared` namespace, policy files, and collective knowledge nodes
|
||||
- **All Agents**: Must verify embedding status before reporting node creation as complete
|
||||
|
||||
### 6. Embedding Failure Recovery
|
||||
**Rule:** When embedding pipeline is unavailable, nodes are blocked from creation or immediately flagged.
|
||||
|
||||
**Recovery Protocol:**
|
||||
1. **Detection**: Daily health check monitors `http://192.168.68.65:8080/health` endpoint
|
||||
2. **Alert**: If embedding service is down, alert is sent to all agents via relay
|
||||
3. **Mitigation**:
|
||||
- New node creation is suspended
|
||||
- Existing nodes with `chunk_status: "not_chunked"` are flagged as `unsearchable`
|
||||
4. **Recovery**: When service returns:
|
||||
- All `not_chunked` nodes are queued for re-embedding
|
||||
- Re-embedding status logged in `embedding_retry_log` table
|
||||
- 5-minute retry window with exponential backoff (1s, 2s, 4s, 8s, 16s)
|
||||
|
||||
### 7. Chunking Verification
|
||||
**Rule:** All node modifications must verify chunking status within 5 minutes.
|
||||
|
||||
**Verification Protocol:**
|
||||
- After `updateNode` or `createNode`, query `chunks` table for `node_id`
|
||||
- If `chunk_status != "chunked"` after 5 minutes, log failure and flag node
|
||||
- Automated cleanup script runs every 6 hours to retry failed chunks
|
||||
- Maximum 3 retry attempts per node before escalation to human
|
||||
|
||||
### 8. Graph Health Monitoring
|
||||
**Rule:** Health dashboard (Node #74) must reflect real-time graph status.
|
||||
|
||||
**Dashboard Requirements:**
|
||||
- Total nodes, edges, orphans, stale nodes, chunk errors
|
||||
- Embedding service health status
|
||||
- Last successful embedding attempt
|
||||
- Alert thresholds:
|
||||
- Orphan rate > 40%: Warning
|
||||
- Stale node rate > 50%: Critical
|
||||
- Chunk error rate > 30%: Critical
|
||||
- Embedding service down: Critical (immediate alert)
|
||||
|
||||
## Operational Procedures
|
||||
|
||||
### Daily Maintenance (Automated)
|
||||
1. **Staleness Check**: Identify nodes past their threshold
|
||||
2. **Orphan Detection**: Flag nodes with 0 edges
|
||||
3. **Chunk Verification**: Retry failed chunks, log errors
|
||||
4. **Health Update**: Refresh Node #74 dashboard
|
||||
|
||||
### Weekly Maintenance (Human Review)
|
||||
1. **Review Pending Nodes**: Examine flagged nodes
|
||||
2. **Edge Optimization**: Connect related orphaned nodes
|
||||
3. **Archive Cleanup**: Remove nodes past 15-day review period
|
||||
4. **Embedding Audit**: Verify all nodes have valid embeddings
|
||||
|
||||
### Emergency Recovery
|
||||
1. **Embedding Service Down**:
|
||||
- Suspend node creation
|
||||
- Alert all agents
|
||||
- Investigate root cause (check `192.168.68.65:8080`)
|
||||
2. **Database Corruption**:
|
||||
- Restore from latest PBS backup
|
||||
- Verify chunk integrity
|
||||
- Re-run embedding for affected nodes
|
||||
3. **Mass Orphan Creation**:
|
||||
- Identify source agent/namespace
|
||||
- Review recent changes
|
||||
- Reconnect or archive affected nodes
|
||||
|
||||
## Compliance & Enforcement
|
||||
|
||||
### Audit Schedule
|
||||
- **Daily**: Automated health checks
|
||||
- **Weekly**: Human review of review_pending nodes
|
||||
- **Monthly**: Comprehensive graph audit (full schema validation)
|
||||
- **Quarterly**: Contract review and threshold adjustment
|
||||
|
||||
### Violation Consequences
|
||||
- **First**: Alert to responsible agent
|
||||
- **Second**: Node placed in `review_pending` state
|
||||
- **Third**: Agent access suspended until remediation
|
||||
- **Fourth**: Escalation to human (Kwame)
|
||||
|
||||
### Metrics for Success
|
||||
- Orphan rate: < 10%
|
||||
- Stale node rate: < 20%
|
||||
- Chunk error rate: < 5%
|
||||
- Embedding service uptime: > 99.9%
|
||||
- Node creation verification: 100%
|
||||
|
||||
## Implementation Notes
|
||||
|
||||
### Database Schema Requirements
|
||||
- `nodes` table: Standard fields plus `embedding_status`, `chunk_status`, `last_embedding_attempt`
|
||||
- `chunks` table: Must track `chunk_status` and `embedding_status`
|
||||
- `embedding_retry_log` table: Track retry attempts for failed chunks
|
||||
- `node_state_history` table: Log state transitions for audit trail
|
||||
|
||||
### Cron Job Requirements
|
||||
- `ra-h-health-check`: Daily (4h interval)
|
||||
- `ra-h-staleness-detection`: Daily
|
||||
- `ra-h-orphan-detection`: Daily
|
||||
- `ra-h-chunk-retry`: Every 6 hours
|
||||
- `ra-h-review-cleanup`: Weekly (15-day archive)
|
||||
|
||||
### Agent Onboarding
|
||||
All new agents must:
|
||||
1. Read this contract
|
||||
2. Understand namespace responsibilities
|
||||
3. Know how to verify embedding status
|
||||
4. Know the alert escalation path
|
||||
|
||||
---
|
||||
|
||||
## Approval
|
||||
This contract is effective immediately upon approval by the primary custodian (Mumuni) and system owner (Kwame).
|
||||
|
||||
**Effective Date:** July 10, 2026
|
||||
**Review Date:** October 10, 2026
|
||||
**Primary Custodian:** Mumuni 🦅
|
||||
**System Owner:** Jerome Tabiri
|
||||
|
||||
---
|
||||
|
||||
*Contract Version: 1.0*
|
||||
*Last Updated: July 10, 2026*
|
||||
*Storage: `/root/.hermes/skills/ra-h-os-custodianship-contract.prose.md`*
|
||||
@@ -184,8 +184,8 @@ def check_agents():
|
||||
print(f" ⬜ {name} (CT {ct}): cannot SSH — skip liveness check")
|
||||
continue
|
||||
|
||||
# Gateway process
|
||||
pid = ssh(host, "pgrep -f 'hermes_cli.main gateway run' | head -1", user=user)
|
||||
# Gateway process (exclude the infisical bash wrapper that contains the same string)
|
||||
pid = ssh(host, "pgrep -f 'hermes_cli.main gateway run' | grep -v infisical | head -1", user=user)
|
||||
if not pid:
|
||||
print(f" ❌ {name}: GATEWAY NOT RUNNING")
|
||||
FAIL.append(f"gateway-down:{name}")
|
||||
|
||||
@@ -79,7 +79,7 @@ description: >
|
||||
`messages_processed` stalls.
|
||||
- **Root cause**: Agent's model config (`models.json` or `settings.json`) references a
|
||||
model ID that doesn't exist in LiteLLM's authorized model list. Example: `qwen3.6-35B-A3B`
|
||||
configured but LiteLLM only exposes `ornith-1.0-35b` under that key. pi's session
|
||||
configured but LiteLLM only exposes `strix-moe` (alias for qwen3.6-35B-udq4) under that key. pi's session
|
||||
workers emit 403 on first prompt, then never recover because the error doesn't trigger
|
||||
`agent_end` — worker stays `busy` and all subsequent messages pile up in the steer queue.
|
||||
- **Detection**: Compare `~/.pi/agent/models.json` model IDs against `curl -H "Authorization: Bearer <KEY>" http://192.168.68.116/v1/models` output. A stuck worker shows
|
||||
@@ -88,7 +88,7 @@ description: >
|
||||
(2) Set `defaultModel` to `syslog-auto` (safe routing model). (3) Delete stale session
|
||||
JSONL files from `~/.pi/agent/sessions/zulip/`. (4) Restart PM2 process.
|
||||
- **Prevention**: Use `syslog-auto` as default model for all agents — it handles model
|
||||
routing and fallback automatically. Direct model IDs (`ornith-1.0-35b`, etc.) should
|
||||
routing and fallback automatically. Direct model IDs (`strix-moe`, etc.) should
|
||||
only be used when explicitly requested. Validate model IDs at agent setup time.
|
||||
- **Applies to**: pi extension (Tdunna CT111, fixed 2026-07-08), any agent using `syslog-harness` provider
|
||||
|
||||
|
||||
+200
-11
@@ -1,9 +1,9 @@
|
||||
---
|
||||
kind: responsibility
|
||||
name: zulip-health
|
||||
description: Multi-platform health monitor for the Zulip messaging mesh spanning Platform A (Agent Zero Docker), Platform B (Hermes agents Tanko/Mumuni), and the Zulip bridge. Verifies bot registration, DM delivery, and cross-platform connectivity.
|
||||
description: Multi-platform health monitor for the Zulip messaging mesh spanning Platform A (Abiba pi), Platform B (Hermes agents Tanko/Mumuni/Koonimo/Koby), and Platform C (Agent Zero). Verifies bot registration, DM delivery, cross-platform connectivity, secret injection, and YAML config integrity.
|
||||
title: Zulip Mesh Health Monitor — Multi-Platform
|
||||
version: 3.0.0
|
||||
version: 3.1.0
|
||||
runtime_contract: 2
|
||||
agent: abiba
|
||||
---
|
||||
@@ -12,11 +12,15 @@ agent: abiba
|
||||
|
||||
Monitors ALL Zulip-connected agents across three platforms (pi, Hermes, Agent Zero).
|
||||
Runs every 15 minutes in the background. Also triggers on session start.
|
||||
v3.1.0 adds Koonimo+Koby to Platform B, Infisical dependency checks, config YAML
|
||||
validation, stale PID/lock detection, Telegram adapter health, and the
|
||||
cli_agent_setup_mixin patch verification.
|
||||
|
||||
## Requires
|
||||
|
||||
- **Zulip API key** for `abiba-bot@chat.sysloggh.net` in `$ZULIP_API_KEY`
|
||||
- **SSH access** to Tanko (192.168.68.122), Mumuni (192.168.68.123), and Agent Zero Docker host (192.168.68.14)
|
||||
- **SSH access to amdpve (192.168.68.15)** for `pct exec` access to Koonimo (CT 113) and Koby (CT 111)
|
||||
- **PM2** on localhost for pi process management
|
||||
- **Network access** to `chat.sysloggh.net`, `localhost:9200`
|
||||
- **Write access** to `/root/zulip-health-monitor.log` and `/tmp/zulip-monitor-debounce`
|
||||
@@ -49,12 +53,22 @@ Runs every 15 minutes in the background. Also triggers on session start.
|
||||
"zulip_state": "connected",
|
||||
"heartbeat_age_seconds": 45,
|
||||
"gateway_pid": 1234,
|
||||
"infisical_present": true,
|
||||
"config_valid": true,
|
||||
"telegram_state": "connected",
|
||||
"no_key_required_count": 0,
|
||||
"edit_fail_rate_pct": 0,
|
||||
"severity": "healthy"
|
||||
}
|
||||
}
|
||||
```
|
||||
|
||||
New fields in v3.1.0:
|
||||
- `infisical_present` — /usr/local/bin/infisical exists on the agent CT
|
||||
- `config_valid` — /root/.hermes/config.yaml passes YAML validation
|
||||
- `telegram_state` — Telegram adapter status from gateway_state.json
|
||||
- `no_key_required_count` — count of `no-key-required` in gateway logs
|
||||
|
||||
### Postconditions
|
||||
|
||||
- Every platform is independently checked; one failure doesn't block others
|
||||
@@ -81,13 +95,13 @@ Log as "unreachable" — don't treat as critical unless it persists for 3+ conse
|
||||
## Streaming Support (2026-07-05)
|
||||
|
||||
Zulip agents now support progressive message editing during agent generation.
|
||||
When a Hermes agent (Tanko, Mumuni) processes a message, the response is
|
||||
streamed in real-time via Zulip's `PATCH /api/v1/messages/{id}` API:
|
||||
When a Hermes agent (Tanko, Mumuni, Koonimo, Koby) processes a message, the
|
||||
response is streamed in real-time via Zulip's `PATCH /api/v1/messages/{id}` API:
|
||||
|
||||
- Adapter implements `edit_message()` using `_api_patch()` helper
|
||||
- Gateway stream consumer progressively edits the Zulip message
|
||||
- User sees real-time agent thinking instead of waiting for full response
|
||||
- Verified: Tanko (CT 112) and Mumuni (CT 114) both have streaming active
|
||||
- Verified: Tanko (CT 112), Mumuni (CT 114), Koonimo (CT 113), Koby (CT 111)
|
||||
|
||||
### Verification
|
||||
```bash
|
||||
@@ -182,50 +196,217 @@ grep -a "Finalized\|Failed to finalize" /root/.pm2/logs/abiba-zulip-out.log | ta
|
||||
| `last_error` set | Log and monitor |
|
||||
| Crash loop >10/h | Alert user |
|
||||
|
||||
### Step 3: Platform B — Hermes (Tanko .122, Mumuni .123)
|
||||
### Step 3: Platform B — Hermes (Tanko .122, Mumuni .123, Koonimo .114, Koby .129)
|
||||
|
||||
Platform B now monitors four Hermes agents:
|
||||
- Tanko (CT 112, 192.168.68.122) — Zulip + Telegram
|
||||
- Mumuni (CT 114, 192.168.68.123) — Zulip + Telegram + Email
|
||||
- Koonimo (CT 113, 192.168.68.114, hostname "baggy") — Zulip + Telegram
|
||||
- Koby (CT 111, 192.168.68.129, hostname "tdunna") — Zulip + Telegram
|
||||
|
||||
SSH access: Koonimo is reachable at .114; Koby has no direct SSH. Use `pct exec`
|
||||
from amdpve as the primary access method for both:
|
||||
```bash
|
||||
ssh root@192.168.68.15 "pct exec 113 -- <command>" # Koonimo (or ssh .114)
|
||||
ssh root@192.168.68.15 "pct exec 111 -- <command>" # Koby (pct exec only)
|
||||
```
|
||||
|
||||
**B1: Gateway State**
|
||||
|
||||
```bash
|
||||
ssh root@192.168.68.122 "cat ~/.hermes/gateway_state.json"
|
||||
ssh root@192.168.68.123 "cat ~/.hermes/gateway_state.json"
|
||||
ssh root@192.168.68.15 "pct exec 113 -- cat /root/.hermes/gateway_state.json"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- cat /root/.hermes/gateway_state.json"
|
||||
```
|
||||
|
||||
Check `platforms.zulip.state`: `connected` ✅ | `disconnected` ❌ | `error` ❌ | missing → not installed.
|
||||
Check `platforms.zulip.state`: `connected` ✅ | `disconnected` ❌ | `error` ❌.
|
||||
|
||||
**B1.5: Infisical Dependency Check**
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "test -f /usr/local/bin/infisical && echo OK || echo MISSING"
|
||||
# pct exec variant for Koonimo/Koby:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- test -f /usr/local/bin/infisical && echo OK || echo MISSING"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- test -f /usr/local/bin/infisical && echo OK || echo MISSING"
|
||||
```
|
||||
|
||||
If MISSING → flag `infisical_present: false`, note as degraded — gateway cannot
|
||||
auto-start on reboot without the infisical binary.
|
||||
|
||||
**B2: Agent Process**
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "ps aux | grep 'gateway run' | grep -v grep"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- ps aux | grep 'gateway run' | grep -v grep"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- ps aux | grep 'gateway run' | grep -v grep"
|
||||
```
|
||||
|
||||
Gateway PID should exist with uptime > 60s.
|
||||
Gateway PID should exist with uptime > 60s. Check for stale PIDs:
|
||||
- `gateway.pid` and `gateway.lock` files that reference a dead process
|
||||
- Multiple gateway processes (duplicate PIDs)
|
||||
|
||||
**B2.5: Config YAML Validation**
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "python3 -c 'import yaml; yaml.safe_load(open(\"/root/.hermes/config.yaml\"))' 2>&1"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- python3 -c 'import yaml; yaml.safe_load(open(\"/root/.hermes/config.yaml\"))' 2>&1"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- python3 -c 'import yaml; yaml.safe_load(open(\"/root/.hermes/config.yaml\"))' 2>&1"
|
||||
```
|
||||
|
||||
Expected: no output (clean parse). If parse fails → flag `config_valid: false`,
|
||||
degraded — gateway is running on stale in-memory config.
|
||||
|
||||
Check specifically for:
|
||||
- Stray `api_key: sk-...` lines indented under `api_key_env` entries in
|
||||
`custom_providers` section (hardcoded keys violate hermes-key-enforcement)
|
||||
- Indentation errors in `custom_providers`, `auxiliary`, or `compression` blocks
|
||||
|
||||
**B3: Heartbeat Verification**
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "grep Heartbeat ~/.hermes/logs/agent.log | tail -3"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- grep Heartbeat /root/.hermes/logs/agent.log | tail -3"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- grep Heartbeat /root/.hermes/logs/agent.log | tail -3"
|
||||
```
|
||||
|
||||
Expected: recent heartbeat (within 5 min), `polls=N` incrementing.
|
||||
Silence > 300s → warning. Silence > 600s → critical.
|
||||
|
||||
**B3.5: Stale PID/Lock Detection**
|
||||
|
||||
Before any restart action, check for stale pid/lock files:
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "ls -la /root/.hermes/gateway.pid /root/.hermes/gateway.lock 2>/dev/null"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- ls -la /root/.hermes/gateway.pid /root/.hermes/gateway.lock 2>/dev/null"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- ls -la /root/.hermes/gateway.pid /root/.hermes/gateway.lock 2>/dev/null"
|
||||
```
|
||||
|
||||
If gateway process is dead (no PID) but pid/lock files exist:
|
||||
```bash
|
||||
ssh root@<CT> "rm -f /root/.hermes/gateway.pid /root/.hermes/gateway.lock"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- rm -f /root/.hermes/gateway.pid /root/.hermes/gateway.lock"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- rm -f /root/.hermes/gateway.pid /root/.hermes/gateway.lock"
|
||||
```
|
||||
|
||||
Pid/lock files blocking restart → clear them before restart attempt.
|
||||
|
||||
**B4: Response Delivery**
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "grep -E 'Finalized|Failed to finalize|Replied to' ~/.hermes/logs/agent.log | tail -10"
|
||||
# pct exec variant for Koonimo/Koby:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- grep -E 'Finalized|Failed to finalize|Replied to' /root/.hermes/logs/agent.log | tail -10"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- grep -E 'Finalized|Failed to finalize|Replied to' /root/.hermes/logs/agent.log | tail -10"
|
||||
```
|
||||
|
||||
> 50% fail rate → critical.
|
||||
|
||||
**B4.5: LiteLLM Key Injection Verification**
|
||||
|
||||
Check gateway logs for `no-key-required` failure pattern (indicates the
|
||||
cli_agent_setup_mixin.py patch is missing):
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "grep -c 'no-key-required' /root/.hermes/logs/gateway.log 2>/dev/null || echo 0"
|
||||
# pct exec variant for Koonimo/Koby:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- grep -c 'no-key-required' /root/.hermes/logs/gateway.log 2>/dev/null || echo 0"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- grep -c 'no-key-required' /root/.hermes/logs/gateway.log 2>/dev/null || echo 0"
|
||||
```
|
||||
|
||||
If > 0 → flag `no_key_required_count: <count>`, note as degraded — provider
|
||||
requests silently fall back to `no-key-required` when LITELLM_API_KEY env var
|
||||
resolves empty.
|
||||
|
||||
**B5: Telegram Adapter Health**
|
||||
|
||||
Check Telegram connectivity in gateway state or logs:
|
||||
|
||||
```bash
|
||||
# From gateway_state.json (all agents):
|
||||
ssh root@<CT> "cat ~/.hermes/gateway_state.json | python3 -c 'import json,sys;d=json.load(sys.stdin);print(d[\"platforms\"].get(\"telegram\",{}).get(\"state\",\"missing\"))'"
|
||||
# pct exec variant for Koonimo/Koby (cat the file; read platforms.telegram.state):
|
||||
ssh root@192.168.68.15 "pct exec 113 -- cat /root/.hermes/gateway_state.json"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- cat /root/.hermes/gateway_state.json"
|
||||
# From logs (check for stuck DNS resolution):
|
||||
ssh root@<CT> "grep -E 'Telegram.*Connecting|Telegram.*Connected|attempt 1/8' /root/.hermes/logs/gateway.log | tail -5"
|
||||
ssh root@192.168.68.15 "pct exec 113 -- grep -E 'Telegram.*Connecting|Telegram.*Connected|attempt 1/8' /root/.hermes/logs/gateway.log | tail -5"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- grep -E 'Telegram.*Connecting|Telegram.*Connected|attempt 1/8' /root/.hermes/logs/gateway.log | tail -5"
|
||||
```
|
||||
|
||||
Telegram states: `connected` ✅ | `disconnected` ❌ | `retrying` ⚠️ | `fatal` ❌ | `paused` ⚠️
|
||||
|
||||
If stuck on "attempt 1/8" for > 60s → flag Telegram as degraded (Zulip may
|
||||
still be fine — do NOT treat as Zulip outage).
|
||||
|
||||
**B6: cli_agent_setup_mixin.py Patch Verification**
|
||||
|
||||
Check whether the `no-key-required` fallback string exists without the
|
||||
LiteLLM-specific guard (only needed when LiteLLM key injection failures are
|
||||
suspected). A bare count of the fallback string cannot distinguish a guarded
|
||||
occurrence from an unguarded one, so count both the fallback string and the
|
||||
LiteLLM guard token:
|
||||
|
||||
```bash
|
||||
ssh root@<CT> "f=\$(grep -c 'no-key-required' /usr/local/lib/hermes-agent/hermes_cli/cli_agent_setup_mixin.py 2>/dev/null || echo 0); g=\$(grep -c 'LITELLM_API_KEY' /usr/local/lib/hermes-agent/hermes_cli/cli_agent_setup_mixin.py 2>/dev/null || echo 0); echo fallback=\$f guard=\$g"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- bash -c 'f=\$(grep -c no-key-required /usr/local/lib/hermes-agent/hermes_cli/cli_agent_setup_mixin.py 2>/dev/null || echo 0); g=\$(grep -c LITELLM_API_KEY /usr/local/lib/hermes-agent/hermes_cli/cli_agent_setup_mixin.py 2>/dev/null || echo 0); echo fallback=\$f guard=\$g'"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- bash -c 'f=\$(grep -c no-key-required /usr/local/lib/hermes-agent/hermes_cli/cli_agent_setup_mixin.py 2>/dev/null || echo 0); g=\$(grep -c LITELLM_API_KEY /usr/local/lib/hermes-agent/hermes_cli/cli_agent_setup_mixin.py 2>/dev/null || echo 0); echo fallback=\$f guard=\$g'"
|
||||
```
|
||||
|
||||
If `fallback > 0` and `guard == 0` → the fallback string is present without
|
||||
the LiteLLM-specific guard, so the patch is missing. If unsure, inspect each
|
||||
occurrence with `grep -n -B2 -A2 'no-key-required'` to confirm the guard
|
||||
wraps it.
|
||||
|
||||
**Platform B Actions**
|
||||
|
||||
| Condition | Action |
|
||||
|-----------|--------|
|
||||
| `zulip.state != "connected"` | `ssh root@<CT> "pkill -f 'gateway run'; sleep 2; hermes gateway restart"` |
|
||||
| No heartbeat in 10min | Same as above |
|
||||
| `zulip.state != "connected"` | Restart gateway (see B2 restart commands below) |
|
||||
| No heartbeat in 10min | Restart gateway |
|
||||
| `Failed to finalize` > 50% | Check PATCH API, Zulip server |
|
||||
| Response empty/short | Check A2A endpoint / LiteLLM model |
|
||||
| `infisical_present: false` | Flag as degraded — log and alert; do NOT auto-restart via the standard command (it cannot inject the key without infisical). Operator may use the Infisical-missing fallback restart below. |
|
||||
| `config_valid: false` | Flag as degraded — alert user, gateway running on stale config |
|
||||
| Stale pid/lock files detected | Clean files before restart |
|
||||
| `no_key_required_count > 0` | Flag as degraded — check LITELLM_API_KEY injection |
|
||||
| Telegram stuck on attempt 1/8 | Flag Telegram as degraded, no Zulip action needed |
|
||||
|
||||
**Restart Commands**
|
||||
|
||||
Standard restart (Infisical present):
|
||||
```bash
|
||||
ssh root@<CT> "pkill -f 'gateway run'; sleep 2; hermes gateway restart"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- bash -c 'pkill -f \"gateway run\"; sleep 2; systemctl restart hermes-gateway'"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- bash -c 'pkill -f \"gateway run\"; sleep 2; systemctl restart hermes-gateway'"
|
||||
```
|
||||
|
||||
The mechanisms differ by design: Tanko/Mumuni launch the gateway through a
|
||||
wrapper loop, so the `hermes gateway restart` CLI is the correct entry point
|
||||
(it re-arms the wrapper). Koonimo/Koby run the gateway as a systemd unit
|
||||
(`hermes-gateway.service`), so `systemctl restart hermes-gateway` is the
|
||||
correct entry point under `pct exec`. Do not swap the two — using the CLI on
|
||||
Koonimo/Koby would bypass the unit, and using `systemctl` on Tanko/Mumuni
|
||||
would miss the wrapper loop.
|
||||
|
||||
Fallback: Infisical missing → start gateway directly from venv with env vars:
|
||||
```bash
|
||||
ssh root@<CT> "source /usr/local/lib/hermes-agent/venv/bin/activate && \
|
||||
export LITELLM_API_KEY=\$(grep -E '^LITELLM_API_KEY=' /root/.hermes/.env | cut -d= -f2-) && \
|
||||
export ZULIP_API_KEY=\$(grep -E '^ZULIP_API_KEY=' /root/.hermes/.env | cut -d= -f2-) && \
|
||||
cd /root/.hermes && nohup hermes gateway run > logs/gateway-manual-start.log 2>&1 &"
|
||||
# pct exec variant:
|
||||
ssh root@192.168.68.15 "pct exec 113 -- bash -c 'source /usr/local/lib/hermes-agent/venv/bin/activate; export LITELLM_API_KEY=\$(grep -E ^LITELLM_API_KEY= /root/.hermes/.env | cut -d= -f2-); export ZULIP_API_KEY=\$(grep -E ^ZULIP_API_KEY= /root/.hermes/.env | cut -d= -f2-); cd /root/.hermes; nohup hermes gateway run > logs/gateway-manual-start.log 2>&1 &'"
|
||||
ssh root@192.168.68.15 "pct exec 111 -- bash -c 'source /usr/local/lib/hermes-agent/venv/bin/activate; export LITELLM_API_KEY=\$(grep -E ^LITELLM_API_KEY= /root/.hermes/.env | cut -d= -f2-); export ZULIP_API_KEY=\$(grep -E ^ZULIP_API_KEY= /root/.hermes/.env | cut -d= -f2-); cd /root/.hermes; nohup hermes gateway run > logs/gateway-manual-start.log 2>&1 &'"
|
||||
```
|
||||
|
||||
### Step 4: Platform C — Agent Zero (kagentz, CT 105 via Docker host .14)
|
||||
|
||||
@@ -278,7 +459,7 @@ Expected: task ID with "working" status. Poll for completion with `tasks/get`.
|
||||
|
||||
Check each agent's log for excessive bot-to-bot chatter:
|
||||
- Abiba: `Skipped.*bot msgs` count
|
||||
- Tanko/Mumuni: Repeated DM exchanges between bots
|
||||
- Tanko/Mumuni/Koonimo/Koby: Repeated DM exchanges between bots
|
||||
- kagentz: Adapter log for bot DMs being processed
|
||||
|
||||
If any bot processes >50 bot-originated messages in 15min → warning.
|
||||
@@ -301,6 +482,14 @@ Track via `/tmp/zulip-monitor-debounce` (unix timestamp of last restart).
|
||||
|
||||
## History
|
||||
|
||||
### v3.1.0 (2026-07-23) — Koonimo Outage Lessons
|
||||
|
||||
Added Koonimo (CT 113) and Koby (CT 111) to Platform B monitoring.
|
||||
Added Infisical dependency check, config YAML validation, stale PID/lock
|
||||
detection, Telegram adapter health, LiteLLM key injection verification, and
|
||||
cli_agent_setup_mixin.py patch verification. Updated restart commands with
|
||||
Infisical-missing fallback path.
|
||||
|
||||
### Gen 5 (2026-07-02) — Rate Limit Death Spiral Fix
|
||||
|
||||
**Root Cause**: Proactive Queue Rotation at 25 min triggered queue re-registration every cycle. Each re-registration + retry loop (3 attempts) + monitor restart = 8-12 API calls per cycle. Combined with monitor's own API calls (server check, stream alerts), `abiba-bot` hit Zulip's rate limit (429 RATE_LIMIT_HIT). Each restart reset the cycle, creating a death spiral: 111 restarts in 24 hours.
|
||||
|
||||
@@ -0,0 +1,476 @@
|
||||
---
|
||||
kind: responsibility
|
||||
name: zulip-resilience-v3
|
||||
description: >
|
||||
Rewrite the pi Zulip gateway with production-grade resilience patterns drawn from
|
||||
Zulip's own event system docs (queue lifecycle, heartbeat monitoring, BAD_EVENT_QUEUE_ID
|
||||
handling, idle_queue_timeout) and battle-tested Node.js resilience patterns
|
||||
(circuit breaker, exponential backoff with jitter, bulkhead isolation, supervisor watchdog).
|
||||
replaces: zulip-self-heal (retired)
|
||||
agent: abiba
|
||||
triggers:
|
||||
- "/zulip self-heal v3"
|
||||
- "zulip stopped responding"
|
||||
- "PM2 abiba-zulip crashed"
|
||||
---
|
||||
|
||||
# Zulip Gateway v3 — Production Resilience
|
||||
|
||||
## Architecture Overview
|
||||
|
||||
The current v2 gateway (`/root/.pi/agent/extensions/zulip/index.js`) has three structural
|
||||
weaknesses that cause repeated deaths:
|
||||
|
||||
1. **No crash recovery** — uncaught errors kill the Node process, PM2 exhausts max_restarts
|
||||
2. **No circuit breaker** — 502/fetch-failed errors escalate to process death with no fallback
|
||||
3. **No queue lifecycle management** — doesn't use Zulip's documented heartbeat protocol or
|
||||
idle_queue_timeout, so BAD_EVENT_QUEUE_ID errors cascade into crashes
|
||||
|
||||
The v3 rewrite addresses all three, following patterns from:
|
||||
|
||||
- [Zulip Events System docs](https://zulip.readthedocs.io/en/11.6/subsystems/events-system.html) —
|
||||
queue registration, heartbeat, BAD_EVENT_QUEUE_ID recovery, call_on_each_event loop
|
||||
- [Zulip API: Get Events](https://zulip.com/api/get-events) — long-poll timeout, dont_block, event ack
|
||||
- [Circuit Breaker & Retry Patterns in Node.js 2026](https://1xapi.com/blog/resilient-api-circuit-breaker-bulkhead-retry-nodejs-2026) —
|
||||
Opossum-based circuit breaker with fallback, retry with jitter, bulkhead isolation
|
||||
|
||||
---
|
||||
|
||||
## Maintains
|
||||
|
||||
- `zulip-gateway`: { status: "healthy" | "degraded" | "down" }
|
||||
- `circuit-breaker`: { state: "CLOSED" | "OPEN" | "HALF_OPEN", failures, successes }
|
||||
- `queue-lifecycle`: { queue_id, last_event_id, idle_timeout, heartbeat_age }
|
||||
- `workers`: { count, busy, idle, stuck }
|
||||
- `supervisor`: { pid, last_check, health_failures }
|
||||
|
||||
---
|
||||
|
||||
## Detection Rules
|
||||
|
||||
### Rule 1: Queue Expired (BAD_EVENT_QUEUE_ID)
|
||||
- **Detect**: Events API returns error with BAD_EVENT_QUEUE_ID in body
|
||||
- **Fix**: Call `POST /register` to create new queue, update queue_id and last_event_id
|
||||
- **Debounce**: If 3 re-registrations fail within 60s, escalate (server may be down)
|
||||
- **Ref**: Zulip docs: "Your software will need to handle that error condition by re-initializing itself"
|
||||
|
||||
### Rule 2: Network Degradation (502/ECONNREFUSED/fetch failed)
|
||||
- **Detect**: Events API returns 502 or network error
|
||||
- **Circuit breaker**: Track failure rate over 10s rolling window
|
||||
- CLOSED → OPEN: 50% failure rate with ≥5 requests
|
||||
- OPEN → HALF_OPEN: After 30s reset timeout
|
||||
- HALF_OPEN → CLOSED: Probe succeeds
|
||||
- HALF_OPEN → OPEN: Probe fails
|
||||
- **While OPEN**: Log errors, skip events, notify user via DM: "⚠️ Zulip connection degraded — will retry in 30s"
|
||||
|
||||
### Rule 3: Long-Poll Timeout (natural)
|
||||
- **Detect**: Events API response takes > `event_queue_longpoll_timeout_seconds`
|
||||
- **Not an error**: Server sends heartbeat events when no real events. Simply re-poll.
|
||||
|
||||
### Rule 4: Worker Busy Timeout (>5 min)
|
||||
- **Detect**: Worker `busySince` exceeds 5 minutes
|
||||
- **Fix**: SIGKILL worker, send error DM, clean up pending replies
|
||||
|
||||
### Rule 5: Process Crash (uncaught)
|
||||
- **Detect**: `uncaughtException` / `unhandledRejection` fires
|
||||
- **Fix**: Log → clear poll timer → attempt reconnect with backoff → if reconnect fails 3x, exit(1) and let PM2 restart
|
||||
|
||||
### Rule 6: Supervisor Detects Router Stall
|
||||
- **Detect**: External supervisor (`zulip-watchdog`) polls `/health` every 30s. If 3 consecutive failures:
|
||||
- **Fix**: `pm2 restart abiba-zulip` gracefully (SIGTERM, drain workers, restart)
|
||||
|
||||
---
|
||||
|
||||
## Implementation Plan
|
||||
|
||||
### Phase 1: Rewrite Router Core (circuit-breaker + queue lifecycle)
|
||||
|
||||
Replace the poll loop in index.js with a resilience-first event loop:
|
||||
|
||||
```js
|
||||
// Queue lifecycle (Zulip docs pattern)
|
||||
async function createOrRefreshQueue() {
|
||||
// POST /register with event_types=["message"]
|
||||
// Store: queueId, lastEventId, eventQueueLongpollTimeoutSeconds
|
||||
// NEW: pass idle_queue_timeout parameter (Zulip 12.0+)
|
||||
}
|
||||
|
||||
// Circuit breaker (Opossum pattern, implemented inline to avoid dependency)
|
||||
class ZulipCircuitBreaker {
|
||||
constructor({ failureThreshold=0.5, resetTimeout=30000, volumeThreshold=5, windowMs=10000 }) {
|
||||
this.state = "CLOSED"; // CLOSED | OPEN | HALF_OPEN
|
||||
this.failures = 0;
|
||||
this.successes = 0;
|
||||
this.totalRequests = 0;
|
||||
this.lastFailureTime = null;
|
||||
this.openedAt = null;
|
||||
this.failureThreshold = failureThreshold;
|
||||
this.resetTimeout = resetTimeout;
|
||||
this.volumeThreshold = volumeThreshold;
|
||||
this.windowMs = windowMs;
|
||||
}
|
||||
|
||||
async fire(fn) {
|
||||
if (this.state === "OPEN") {
|
||||
if (Date.now() - this.openedAt > this.resetTimeout) {
|
||||
this.state = "HALF_OPEN";
|
||||
} else {
|
||||
throw new CircuitOpenError("Circuit is OPEN");
|
||||
}
|
||||
}
|
||||
try {
|
||||
const result = await fn();
|
||||
this.onSuccess();
|
||||
return result;
|
||||
} catch (err) {
|
||||
this.onFailure();
|
||||
throw err;
|
||||
}
|
||||
}
|
||||
|
||||
onSuccess() {
|
||||
this.successes++;
|
||||
this.totalRequests++;
|
||||
if (this.state === "HALF_OPEN") {
|
||||
this.state = "CLOSED";
|
||||
this.failures = 0;
|
||||
}
|
||||
// Reset counters periodically
|
||||
if (this.totalRequests > this.volumeThreshold * 2) {
|
||||
this.failures = Math.floor(this.failures / 2);
|
||||
this.successes = Math.floor(this.successes / 2);
|
||||
this.totalRequests = Math.floor(this.totalRequests / 2);
|
||||
}
|
||||
}
|
||||
|
||||
onFailure() {
|
||||
this.failures++;
|
||||
this.totalRequests++;
|
||||
this.lastFailureTime = Date.now();
|
||||
if (this.totalRequests >= this.volumeThreshold &&
|
||||
this.failures / this.totalRequests >= this.failureThreshold) {
|
||||
if (this.state !== "OPEN") {
|
||||
this.state = "OPEN";
|
||||
this.openedAt = Date.now();
|
||||
console.error(`[zulip-ext] CIRCUIT BREAKER OPEN — ${this.failures}/${this.totalRequests} failures`);
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// Retry with exponential backoff + jitter (from resilience patterns)
|
||||
async function withRetry(fn, { maxAttempts=3, baseDelay=200, maxDelay=10000, shouldRetry=()=>true }={}) {
|
||||
let lastError;
|
||||
for (let attempt = 1; attempt <= maxAttempts; attempt++) {
|
||||
try {
|
||||
return await fn();
|
||||
} catch (err) {
|
||||
lastError = err;
|
||||
if (attempt === maxAttempts || !shouldRetry(err)) throw err;
|
||||
const delay = Math.min(baseDelay * Math.pow(2, attempt - 1), maxDelay);
|
||||
const jitter = delay * (0.5 + Math.random() * 0.5); // 50-100% of delay
|
||||
console.warn(`[zulip-ext] Retry ${attempt}/${maxAttempts} after ${Math.round(jitter)}ms: ${err.message.slice(0,80)}`);
|
||||
await new Promise(r => setTimeout(r, jitter));
|
||||
}
|
||||
}
|
||||
throw lastError;
|
||||
}
|
||||
|
||||
// Resilience-first event loop (Zulip call_on_each_event pattern)
|
||||
async function resilientPollLoop() {
|
||||
while (connected) {
|
||||
try {
|
||||
const events = await circuitBreaker.fire(() =>
|
||||
withRetry(() => zulipQueue.poll(), {
|
||||
maxAttempts: 2,
|
||||
baseDelay: 1000,
|
||||
shouldRetry: (err) => {
|
||||
const msg = err.message || "";
|
||||
return msg.includes("fetch failed") || msg.includes("ECONN") || msg.includes("network");
|
||||
}
|
||||
})
|
||||
);
|
||||
|
||||
lastError = null;
|
||||
retryCount = 0;
|
||||
|
||||
for (const ev of events) {
|
||||
await processEvent(ev);
|
||||
}
|
||||
|
||||
heartbeat();
|
||||
} catch (err) {
|
||||
const msg = err instanceof Error ? err.message : String(err);
|
||||
|
||||
if (msg.includes("BAD_EVENT_QUEUE_ID") || msg.includes("deregistered")) {
|
||||
// Queue expired — re-register (Zulip docs pattern)
|
||||
console.log(`[zulip-ext] Queue expired, re-registering… (${msg.slice(0,80)})`);
|
||||
try {
|
||||
zulipQueue = await createZulipQueue();
|
||||
console.log(`[zulip-ext] Re-registered, new queue=${zulipQueue.queueId}`);
|
||||
} catch (reRegErr) {
|
||||
console.error(`[zulip-ext] Re-registration failed: ${reRegErr.message}`);
|
||||
connected = false;
|
||||
retryCount++;
|
||||
const backoff = Math.min(5000 * Math.pow(2, retryCount), 300000);
|
||||
console.log(`[zulip-ext] Full reconnect in ${Math.round(backoff/1000)}s`);
|
||||
await new Promise(r => setTimeout(r, backoff));
|
||||
await startPolling();
|
||||
return;
|
||||
}
|
||||
} else if (err.name === "CircuitOpenError") {
|
||||
// Circuit is open — skip this cycle, wait for HALF_OPEN
|
||||
lastError = "circuit_open";
|
||||
await new Promise(r => setTimeout(r, POLL_INTERVAL_MS));
|
||||
} else {
|
||||
lastError = msg;
|
||||
retryCount++;
|
||||
const backoff = Math.min(POLL_INTERVAL_MS * Math.pow(1.5, Math.min(retryCount, 8)), 60000);
|
||||
console.error(`[zulip-ext] Poll error (retry ${retryCount}, backoff ${backoff}ms): ${msg}`);
|
||||
await new Promise(r => setTimeout(r, backoff));
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
```
|
||||
|
||||
### Phase 2: PM2 Hardening
|
||||
|
||||
Create `/root/.pm2/ecosystem.config.cjs`:
|
||||
|
||||
```js
|
||||
module.exports = {
|
||||
apps: [
|
||||
{
|
||||
name: "abiba-zulip",
|
||||
script: "/bin/pi",
|
||||
args: "--mode rpc --session-id zulip-service",
|
||||
env: {
|
||||
ZULIP_ROLE: "router",
|
||||
ZULIP_SITE: "https://chat.sysloggh.net",
|
||||
ZULIP_EMAIL: "abiba-bot@chat.sysloggh.net",
|
||||
ZULIP_API_KEY: process.env.ZULIP_API_KEY,
|
||||
AGENT_NAME: "abiba",
|
||||
AGENT_OWNER_EMAIL: "jerome@sysloggh.com",
|
||||
},
|
||||
max_restarts: 100, // Up from default 10 — crash loops won't exhaust
|
||||
min_uptime: "10s", // Must survive 10s to count as "alive"
|
||||
max_memory_restart: "500M", // OOM protection
|
||||
restart_delay: 5000, // 5s between restarts
|
||||
kill_timeout: 15000, // 15s SIGTERM grace before SIGKILL
|
||||
listen_timeout: 30000, // 30s to bind health port
|
||||
log_date_format: "YYYY-MM-DD HH:mm:ss Z",
|
||||
error_file: "/root/.pm2/logs/abiba-zulip-error.log",
|
||||
out_file: "/root/.pm2/logs/abiba-zulip-out.log",
|
||||
merge_logs: true,
|
||||
autorestart: true,
|
||||
watch: false,
|
||||
instances: 1,
|
||||
exec_mode: "fork",
|
||||
},
|
||||
{
|
||||
name: "zulip-watchdog",
|
||||
script: "/root/.pi/agent/extensions/zulip/watchdog.js",
|
||||
max_restarts: 10,
|
||||
min_uptime: "3s",
|
||||
restart_delay: 3000,
|
||||
autorestart: true,
|
||||
},
|
||||
],
|
||||
};
|
||||
```
|
||||
|
||||
### Phase 3: Supervisor Watchdog
|
||||
|
||||
Create `/root/.pi/agent/extensions/zulip/watchdog.js`:
|
||||
|
||||
```js
|
||||
// External supervisor — monitors router health and restarts if stalled.
|
||||
// This is the pattern Hermes uses: an external process that can recover
|
||||
// the gateway even if the gateway process itself is hung (not just crashed).
|
||||
|
||||
const HEALTH_URL = "http://127.0.0.1:9200/health";
|
||||
const CHECK_INTERVAL_MS = 30_000;
|
||||
const MAX_FAILURES = 3;
|
||||
|
||||
let failures = 0;
|
||||
|
||||
async function check() {
|
||||
try {
|
||||
const res = await fetch(HEALTH_URL, { signal: AbortSignal.timeout(5000) });
|
||||
if (res.ok) {
|
||||
const data = await res.json();
|
||||
if (data.status === "ok" && data.zulip?.connected) {
|
||||
if (failures > 0) {
|
||||
console.log(`[watchdog] Router recovered after ${failures} failures`);
|
||||
}
|
||||
failures = 0;
|
||||
return;
|
||||
}
|
||||
}
|
||||
failures++;
|
||||
console.warn(`[watchdog] Health check ${failures}/${MAX_FAILURES}: status not ok`);
|
||||
} catch (err) {
|
||||
failures++;
|
||||
console.warn(`[watchdog] Health check ${failures}/${MAX_FAILURES}: ${err.message}`);
|
||||
}
|
||||
|
||||
if (failures >= MAX_FAILURES) {
|
||||
console.error(`[watchdog] ${MAX_FAILURES} consecutive failures — restarting abiba-zulip`);
|
||||
const { execSync } = require("child_process");
|
||||
try {
|
||||
execSync("pm2 restart abiba-zulip", { timeout: 30000 });
|
||||
console.log("[watchdog] Restart command sent");
|
||||
} catch (e) {
|
||||
console.error(`[watchdog] Restart failed: ${e.message}`);
|
||||
}
|
||||
failures = 0;
|
||||
// Wait for restart to complete before checking again
|
||||
await new Promise(r => setTimeout(r, 15000));
|
||||
}
|
||||
}
|
||||
|
||||
console.log("[watchdog] Zulip gateway supervisor started");
|
||||
setInterval(check, CHECK_INTERVAL_MS);
|
||||
check(); // Immediate first check
|
||||
```
|
||||
|
||||
### Phase 4: Health Endpoint Enhancement
|
||||
|
||||
Add circuit breaker stats to the existing health endpoint:
|
||||
|
||||
```js
|
||||
// In /health response, add:
|
||||
"circuit_breaker": {
|
||||
"state": circuitBreaker.state,
|
||||
"failures": circuitBreaker.failures,
|
||||
"successes": circuitBreaker.successes,
|
||||
"total_requests": circuitBreaker.totalRequests,
|
||||
"failure_rate": circuitBreaker.totalRequests > 0
|
||||
? (circuitBreaker.failures / circuitBreaker.totalRequests).toFixed(2)
|
||||
: "0.00"
|
||||
}
|
||||
```
|
||||
|
||||
---
|
||||
|
||||
## Test Plan
|
||||
|
||||
### Test 1: Queue Re-registration
|
||||
1. Manually delete the Zulip event queue via API
|
||||
2. Next poll should detect BAD_EVENT_QUEUE_ID
|
||||
3. Router should auto re-register within 1 poll cycle
|
||||
4. Verify: `/health` shows new queue_id, connected=true
|
||||
|
||||
### Test 2: Circuit Breaker Trip
|
||||
1. Block Zulip server with iptables: `iptables -A OUTPUT -d 192.168.68.19 -j DROP`
|
||||
2. Router should detect failures, trip circuit after 5 failures
|
||||
3. `/health` should show circuit_breaker.state = "OPEN"
|
||||
4. Remove iptables rule
|
||||
5. Circuit should transition to HALF_OPEN → CLOSED within 60s
|
||||
6. Verify: messages processed after recovery
|
||||
|
||||
### Test 3: Supervisor Recovery
|
||||
1. Kill the router process: `kill -STOP $(pm2 pid abiba-zulip)` (freeze, don't kill)
|
||||
2. Watchdog should detect 3 failed health checks in 90s
|
||||
3. Watchdog should execute `pm2 restart abiba-zulip`
|
||||
4. Verify: router back online, connected=true
|
||||
|
||||
### Test 4: Worker Busy Timeout
|
||||
1. Send a message that triggers a long-running operation
|
||||
2. If worker stays busy >5 minutes, should receive SIGKILL
|
||||
3. User should receive error DM: "Response timed out"
|
||||
|
||||
### Test 5: End-to-End Message
|
||||
1. Send DM "What time is it?" from Jerome
|
||||
2. Should receive response within 30s
|
||||
3. `/health` should show messages_processed incremented
|
||||
|
||||
---
|
||||
|
||||
## Rollback Plan
|
||||
|
||||
If v3 causes issues:
|
||||
1. `pm2 delete abiba-zulip; pm2 delete zulip-watchdog`
|
||||
2. Restore v2 from git: `cd /root/.pi/agent/extensions/zulip && git checkout index.js`
|
||||
3. `pm2 resurrect` to reload previous process list
|
||||
4. Verify: `/health` returns ok
|
||||
|
||||
Backup v2 before starting: `cp index.js index.js.v2-backup-$(date +%Y%m%d-%H%M%S)`
|
||||
|
||||
---
|
||||
|
||||
## Success Metrics
|
||||
|
||||
| Metric | Current (v2) | Target (v3) |
|
||||
|--------|-------------|-------------|
|
||||
| Uptime between manual interventions | 1-3 days | 30+ days |
|
||||
| Crash recovery | Manual (PM2 resurrect) | Automatic (circuit breaker + supervisor) |
|
||||
| Queue expiry handling | Crash | Auto re-register |
|
||||
| Busy worker deadlock | Router death | Worker SIGKILL + error DM |
|
||||
| PM2 restart exhaustion | Yes (max_restarts=10) | No (max_restarts=100 + watchdog) |
|
||||
|
||||
---
|
||||
|
||||
## Incident Log — 2026-07-18 Fleet-Wide Audit
|
||||
|
||||
### Fleet State After Audit
|
||||
|
||||
| Agent | Platform | Zulip State | Issues Found | Fix Applied |
|
||||
|-------|----------|-------------|--------------|-------------|
|
||||
| **Abiba** | pi (CT 100) | ✅ Connected | API key missing from Infisical injection; poll timeout noise | Added .env fallback; AbortError treated as empty poll (no retry); poll timeout 65s→90s |
|
||||
| **Tanko** | Hermes (CT 112) | ✅ Connected | Gateway disconnected since Jul 11; watchdog restart didn't re-establish Zulip | Full gateway restart (kill wrapper, let infisical-gateway.sh respawn) |
|
||||
| **Mumuni** | Hermes (CT 114) | ✅ Connected | No issues found | None needed |
|
||||
|
||||
### Key Fixes Applied
|
||||
|
||||
**1. Abiba — Credential Fallback (L4 Pattern)**
|
||||
- Root cause: `zulip.api_key` in config.yaml is `""` (expected from Infisical). Infisical vault `ABIBA_ZULIP_API_KEY` wasn't being injected into the process environment.
|
||||
- Fix: Added `.env` file fallback at `/root/.pi/agent/extensions/zulip/.env` with known-working key, sourced before the Infisical `exec`.
|
||||
- Lesson: Per L4 from gpu-self-heal, Infisical is not always available — always keep a local `.env` fallback.
|
||||
|
||||
**2. Abiba — Poll Timeout Handling**
|
||||
- Root cause: Zulip long-poll uses `AbortSignal.timeout(65000)`. Zulip's default `event_queue_longpoll_timeout_seconds` can exceed 65s. When the signal fires, an `AbortError` is thrown and caught by the circuit breaker as a failure.
|
||||
- Fix: Caught `AbortError` inside `poll()` and return empty array (no events) instead of throwing. Extended timeout to 90s to match Zulip server default.
|
||||
- Reference: [Zulip Events System — long-poll timeout](https://zulip.readthedocs.io/en/11.6/subsystems/events-system.html)
|
||||
|
||||
**3. Tanko — Gateway Restart**
|
||||
- Root cause: Gateway process was running but Zulip platform stayed in "disconnected" state since Jul 11, 2026. The wrapper script (`infisical-gateway.sh`) restarts on crash but the gateway wasn't re-establishing Zulip on restart.
|
||||
- Fix: Killed gateway PID to trigger wrapper restart. New gateway (PID 331991) established Zulip connection successfully.
|
||||
|
||||
### Fleet-Wide Zulip Health Metrics (as of 2026-07-18)
|
||||
|
||||
| Metric | Value |
|
||||
|--------|-------|
|
||||
| Zulip server | ✅ HTTP 200 |
|
||||
| Agents connected | 3/3 (Abiba, Tanko, Mumuni) |
|
||||
| Abiba circuit breaker | CLOSED (0 failures) |
|
||||
| Abiba uptime | 2D (post-restart) |
|
||||
| Tanko gateway uptime | Ongoing |
|
||||
| Mumuni gateway uptime | Ongoing |
|
||||
| Watchdog status | ✅ Online (2D uptime) |
|
||||
|
||||
### Hermes Agent Zulip Plugin Improvements
|
||||
|
||||
Based on the audit, improvements that should be ported to all Hermes Zulip adapters:
|
||||
|
||||
1. **Circuit breaker pattern** — Already in Abiba's pi extension. Hermes adapters should add the same CLOSED→OPEN→HALF_OPEN state machine with exponential backoff.
|
||||
2. **Credential fallback** — All Hermes agents use Infisical for credentials. Add `.env` local fallback per L4 pattern for `ZULIP_API_KEY`.
|
||||
3. **Queue re-registration** — Handle `BAD_EVENT_QUEUE_ID` with automatic re-registration instead of gateway restart.
|
||||
4. **Supervisor watchdog** — Hermes uses PM2 which auto-restarts on crash, but has no health-check watchdog. Add lightweight external health checks.
|
||||
5. **Streaming** — All agents have `streaming: true` in their zulip config. Verify `edit_message()` is implemented in each adapter.
|
||||
|
||||
### Abiba pi Zulip Extension v2 — Implemented Resilience Summary
|
||||
|
||||
| Feature | Status | Notes |
|
||||
|---------|--------|-------|
|
||||
| Circuit breaker | ✅ | CLOSED→OPEN→HALF_OPEN; 50% failure threshold; 30s reset timeout |
|
||||
| Retry with jitter | ✅ | 2 attempts, 200ms base, 50-100% jitter |
|
||||
| Queue lifecycle | ✅ | 10min idle_queue_timeout; BAD_EVENT_QUEUE_ID handling |
|
||||
| Crash prevention | ✅ | uncaughtException + unhandledRejection recovery |
|
||||
| Worker timeout | ✅ | 5min busy timeout → SIGKILL + error DM |
|
||||
| Health endpoint | ✅ | :9200 with circuit breaker metrics |
|
||||
| Echo prevention | ✅ | Dynamic bot user resolution |
|
||||
| Poll timeout (AbortError) | ✅ v2.1 | Normal timeout returns [] instead of error |
|
||||
| Credential fallback | ✅ v2.1 | .env file before Infisical exec |
|
||||
| Provider auto-fix | ✅ | Detects reasoning_content models, switches to compatible |
|
||||
Reference in New Issue
Block a user