name: measure-before-you-fix version: 1.0.0 description: | Before fixing a slow/stale/timeout alert, measure the step yourself. Kill the theory with a stopwatch, not a code change. Measure-first ops triage for temporal alerts (stale, timeout, freshness, wedged, N hours behind) from gbrain doctor, autopilot, sync, and cron monitors — runs BEFORE any timeout raise, threshold change, or pipeline rewrite. triggers:
- "keeps timing out"
- "ETIMEDOUT"
- "why is this data stale"
- "freshness alert"
- "wedged"
- "job is slow"
- "sync is stuck"
- "raise the timeout" mutating: false writes_pages: false writes_to: [] upstream: measure-before-you-fix@fc834ee
Measure Before You Fix
Convention: see conventions/brain-first.md — before re-deriving a diagnosis,
searchthe brain for prior incidents of the same alert. A recurring alert usually has a recorded verdict already.
Route here on any alert whose claim is temporal — "X is stale", "step timed out", "pipeline wedged", "job is slow", "N hours behind". These alerts invite an immediate structural fix (raise the timeout, split the step, reorder the pipeline). Do the measurement first. It is almost always cheaper than the fix, and it frequently invalidates it. (Routing is a harness convention, not a mechanical guarantee — the contract below is the discipline that makes it stick.)
On gbrain surfaces this covers: gbrain doctor staleness checks (e.g. sync
freshness, cycle freshness), autopilot cycle alerts, the sync stall watchdog
(reason: 'stall_timeout'), and any cron monitor built on top of them.
The rule
One stopwatch measurement of the suspect step, before any code change.
If you cannot state the measured duration of the thing you claim is slow, you do not yet know the root cause, and any fix you write is a guess wearing a diff.
Contract
This skill guarantees:
- No structural fix (timeout raise, step split, pipeline reorder, wrapper rewrite) is proposed before a measured duration of the blamed step exists.
- The measurement targets the specific entity the alert named, not the
aggregate (
--allhides which member is slow). - The alert's threshold is compared against the authoritative one
(
gbrain doctor's warn/fail lines) before the system is declared unhealthy. - The verdict explicitly distinguishes "needs more time" from "is wedged" — they have opposite fixes.
- Read-only: this skill changes no timeouts, thresholds, or code. It produces a measurement verdict that sizes the fix; the fix itself is a separate, now-informed change.
Procedure
-
Read the alert's own numbers. They often contradict the theory already. (
Locks: nonemeans it isn't lock contention. Note it and drop that branch.) -
Time the suspect step directly. Isolate the smallest unit that the alert blames, and run it with a clock:
time gbrain sync --source source-a --no-embedRun it on the specific named entity, not the aggregate. A whole-brain run hides which member is slow;
--source source-aanswers the question. Cross-check state withgbrain sources status(per-source sync lag). -
Compare measured vs. budgeted. Grep every timeout in the wrapper, not just the default in the helper signature:
grep -n "timeoutMs\|timeout:" <the wrapper or cron script>A generous per-call override makes the helper's default irrelevant. Check the call site before blaming the default.
-
Check the alert threshold against the authoritative one. Before concluding the system is broken, confirm the alerter and the audit agree on what "bad" means.
gbrain doctor's sync-freshness check defaults to 24h warn / 72h fail (env-overridable viaGBRAIN_SYNC_FRESHNESS_WARN_HOURS/GBRAIN_SYNC_FRESHNESS_FAIL_HOURS); a cron monitor paging at 12h is speaking below the authoritative warn line. A monitor that acts early is correct; a monitor that speaks at its act-line is a false-positive generator. -
Only now design the fix — against the number you measured.
The threshold-mismatch failure mode
A cron monitor legitimately acts earlier than the doctor fails, to keep drift out of FAIL territory. That is good design. The bug is reusing the act-threshold as the alert-threshold: everything between "act" and "warn" becomes a recurring page about a healthy system.
Separate the two constants. Act at the aggressive line, speak at the authoritative one:
const ACT_HOURS = Number(env.MONITOR_ACT_HOURS || 12); // act early — fine
const ALERT_HOURS = Math.max(ACT_HOURS, DOCTOR_WARN_HOURS); // speak at the audit's line
Symptom to recognize instantly: a repeating alert whose numbers sit below the doctor's own warn line, while the underlying resource looks fine when queried directly.
Red flags that you are theorizing, not diagnosing
- You have a root cause but no measured duration.
- Your fix is a rewrite and you have not run the step once.
- You revise the theory twice without taking a new measurement between revisions.
- The alert says "no recovery in flight" — verify whether recovery is in fact
running before believing it (
psfor the worker; check the launch flag;gbrain jobs listfor queued work). - "Already up to date" in the step output. That step is not your bottleneck.
Anti-Patterns
- Raising a timeout to fix a stall. If the step is genuinely hung, a bigger budget just hangs longer. Measure, then decide between "needs more time" and "is wedged" — they have opposite fixes. (gbrain's sync stall watchdog makes the same distinction natively: it keys on forward progress, not elapsed time.)
- Rewriting a pipeline on an unmeasured starvation theory. Splitting steps to fix starvation that does not exist adds surface area and fixes nothing.
- Trusting the alert's causal claim. Alerts report symptoms accurately and causes badly. The staleness number is real; the reason attached to it is a guess.
- Skillifying or persisting a root cause you have not measured. A confident wrong diagnosis baked into a playbook is worse than the original bug.
Known failure modes handled
- Triple-wrong diagnosis on a freshness alert. A cron monitor paged
repeatedly about two sources (
source-a,source-b) reported hours-stale. Three successive root causes were asserted and a wrapper rewrite approved — before any measurement. The measurement:time gbrain sync --source source-a --no-embedfinished in single-digit seconds with "Already up to date" (same forsource-b), andgbrain sources statusshowed every source synced that morning. Every theory died at once. Actual cause: the monitor alerted at its act-threshold, hours belowgbrain doctor's authoritative warn line. The fix was two lines (ALERT_HOURS = max(ACT_HOURS, WARN_HOURS)), not a rewrite. Lesson: when a page repeats about a system that measures healthy, suspect the thresholds before the system. - Contention-theory corollary caught in the same pass: a CPU-contention
worry about a deprioritized (
nice'd) step was equally unfounded — the step finished in seconds while the host was under sustained concurrent load. Contention theories need the same stopwatch as staleness theories.
Output Format
The output is a measurement verdict (conversation-level; this skill writes no brain pages). Only after the verdict is a fix proposed, sized against the measured number:
## Measurement verdict
- Alert: <the alert text and which monitor emitted it>
- Claim: <the temporal claim, e.g. "source-a 14h stale">
- Measured: <exact command> → <duration> (<key output, e.g. "Already up to date">)
- Budgeted: <timeout constant + any call-site override, file:line>
- Thresholds: monitor act-line <X>h vs doctor warn-line <Y>h → <match | MISMATCH>
- Verdict: false page on healthy system | needs more time | wedged | genuine regression
- Fix: <the change, justified by the measured number — or "none; adjust the alert line">
Dedup (sharp boundaries)
- GStack
investigate— systematic debugging of code bugs ("why is this broken", 500 errors, wrong output). Boundary:investigateroot-causes code behavior; this skill is the measure-first gate for temporal ops alerts (stale/timeout/freshness/wedged) that runs before any timeout or threshold is touched. If the stopwatch confirms a genuine slowness or regression, hand off toinvestigatewith the measured number. skills/maintain/SKILL.md— runs brain health checks and repairs (doctor, extraction, dream cycle). Boundary: maintain emits and acts on health output; this skill governs how to respond when one of those checks pages, before budgets or wrappers change.- smoke-test (host-side) — binary post-restart health checks with auto-fix. Boundary: smoke-test answers "is it up after a restart"; this skill answers "is this slow/stale claim even true".
skills/cron-scheduler/SKILL.md— schedules monitors and jobs. Boundary: cron-scheduler decides when monitors run; this skill supplies the act-line vs alert-line rule their thresholds must encode.skills/conventions/test-before-bulk.md— trial-before-bulk for mutations. Same spirit (evidence before action), different object: that convention gates bulk writes; this skill gates timeout/threshold/pipeline changes.