posthog/ai-plugin-grouping-noisy-errors
> Consolidate PostHog error tracking issues that are the same actual error reported under different fingerprints. Use when the user asks "why do I have so many TypeError issues that look the same?", "merge these duplicates", "stop splitting this error into new issues", or wants to clean up fingerprint sprawl. Decides between a one-shot merge of existing issues and a durable grouping rule that keeps future events from creating new fingerprints. Does NOT group conceptually similar bugs across different runtimes, SDKs, or call sites.
npx skills add https://github.com/PostHog/ai-plugin --skill grouping-noisy-errors
The same error can be reported as dozens of separate issues when stack frames or
messages contain volatile data — random IDs, dynamic file paths, build hashes,
anonymous function names. The fix is two-step: merge the existing issues into one
target, then create a grouping rule so future events from the same call site
share a single canonical fingerprint instead of spawning new ones.
Important up front: "same error" here is narrow. Two issues that share a name or
a sentence of message text but came from different code paths, different SDKs,
or different runtimes are different errors and should stay separate, even if
the user thinks of them as "the same kind of bug". Grouping a frontend
TypeError together with a backend TypeError because both messages contain
"undefined" destroys the signal that lets the team find each one. The criteria
in step 1 exist to keep that from happening.
| Tool | Purpose |
| ---------------------------------------------- | ------------------------------------------------------ |
| posthog:query-error-tracking-issues-list | Find candidate duplicate issues |
| posthog:query-error-tracking-issue | Pull compact details for an individual issue |
| posthog:query-error-tracking-issue-events | Sampled $exception events with stack and message |
| posthog:error-tracking-issues-merge-create | Merge existing issues into a target |
| posthog:error-tracking-issues-split-create | Surgically split fingerprints back out if a merge errs |
| posthog:error-tracking-grouping-rules-create | Auto-group future events into one issue |
| posthog:error-tracking-grouping-rules-list | Check existing grouping rules before adding new ones |
| posthog:error-tracking-issues-partial-update | Rename or re-describe the target after a merge |
The two tools solve different halves of the problem:
their events. Future events still group by their original fingerprints — if the
same noisy pattern keeps producing new fingerprints, merging is a treadmill.
event to custom-rule:<rule_id> at ingestion time, so all future matches
share one canonical fingerprint rather than spawning new ones. The first
match either creates a new issue keyed off that fingerprint, or routes to
whatever issue is already bound to it.
Use both together when the issue is recurring: merge historical duplicates
into a target issue, then create the rule. The rule API does not accept a
target issue ID — once the rule starts firing, the resulting custom-rule:...
issue can be merged into the same target so the consolidation sticks. Use
merge alone for historical sprawl that you don't expect to recur. Use a
grouping rule alone for a brand-new pattern you're getting ahead of, when
you don't need to consolidate with an existing issue.
Search by exception type or message to find candidates:
posthog:query-error-tracking-issues-list
{
"searchQuery": "TypeError: Cannot read property",
"status": "active",
"limit": 50,
"orderBy": "occurrences",
"dateRange": { "date_from": "-30d" }
}
For each candidate, pull one sampled exception event to compare stack, type,
and message:
posthog:query-error-tracking-issue-events
{
"issueId": "<candidate_issue_id>",
"limit": 1,
"include": ["exception", "stacktrace", "environment"]
}
Run this once per candidate. The tool defaults to onlyAppFrames: true, which
makes the top in-app frame stand out at a glance. If two candidates share the
same top frame and same exception type, they're likely the same error — but
verify against the full checklist below before merging.
Treat two issues as duplicates only when every one of these matches:
$lib is the same SDK. The browser/JS SDK captures $lib as web (notposthog-js); server SDKs use posthog-python, posthog-node, etc. Confirm
the exact value with read-data-schema (event_property_values for $lib on
$exception) rather than assuming — a wrong value silently matches nothing.
Errors from different SDKs almost always come from different code paths even
when the exception type matches.
$exception_types).numbers and minor offsets within that function are fine; a different file or
a different function on top means a different bug.
data — IDs, hashes, timestamps, dynamic paths. If the difference is a
different verb, object, or operation, it's a different bug.
$exception_handled agrees (both handled or both unhandled). A caughtvariant and an uncaught variant are different code paths and benefit from
staying separate.
If any single one of those differs, they are not duplicates — investigate
separately (investigating-error-issue).
These are the failure modes that destroy debugging signal. Do not group
across any of them, even when the user describes them as "the same kind of
bug":
TypeErrorfrom a browser bundle and a TypeError from a Node service share a name and
often a message word, but the stack, the runtime, and the fix all differ.
web (browser/JS) vs posthog-python vsposthog-node are different call sites.
NullPointerException thrown from OrderService.cancel is not the same bug
as one thrown from PaymentService.refund, even if both messages say
"user was null".
$exception_handledare usually a code path that swallows the error in one place and lets it
propagate in another — keeping them separate makes that visible.
property of undefined" appears in many independent bugs. Without matching
stack frames, message similarity alone is not enough.
Pick the issue that should absorb the others:
first_seen — preserves the original timelineNote the target's ID. The other candidates become ids to merge in.
posthog:error-tracking-issues-merge-create
{
"id": "<target_issue_id>",
"ids": ["<duplicate_id_1>", "<duplicate_id_2>", "..."]
}
Merge is destructive (annotation destructive: true) — once issues are merged
into a target, the source issues are gone from the active list. Confirm the
target with the user before calling. Cap each merge call at ~50 source IDs to
keep failures localized; for larger sprawl, batch.
Merged changes may not appear in the issue list immediately — re-listing right
after the call can still show the source issues for a short window. If a
follow-up error-tracking-issues-list call looks unchanged, wait a few seconds
and re-query rather than re-issuing the merge.
If after the merge the target's metadata looks wrong (a duplicate had a better
name), use error-tracking-issues-partial-update to fix the name or description
on the target rather than re-merging.
A grouping rule is worth creating when both are true:
appear since the last merge)
swallow unrelated errors
The canonical exception properties ($exception_types, $exception_values
for messages, $exception_sources for file paths, $exception_functions for
function names) are arrays at capture time. PostHog's property filters
special-case them — each filter matches against the individual array
elements, so all the standard operators (exact, is_not, icontains,
not_icontains, regex, not_regex) work with the bare value:
exact "TypeError", not exact '["TypeError"]' or regex '"TypeError"'.
The singular forms ($exception_type, $exception_message) and
$exception_stack_trace_raw are emitted on a fraction of a percent of events;
filtering on them produces a rule that silently never matches.
If the volatility is in the message (e.g.,
TypeError at /static/main.<hash>.js), a regex filter on $exception_values
works. If the volatility is in line numbers within a known file, icontains
on $exception_sources does. $exception_handled is also a useful narrowing
dimension — separate handled vs unhandled rather than mixing them.
Skip the grouping rule when:
is enough
instead and revisit later
Translate the step 1 "same error" checklist into rule filters. A rule that
matches more loosely than the checklist will silently merge unrelated bugs
forever — the rule is more dangerous than the merge because it runs against
every future event. At a minimum, scope by SDK and exception type, and add
a third dimension (file path via $exception_sources, or a specific message
phrase via $exception_values) to pin the call site.
Confirm the $lib value first — the browser/JS SDK captures $lib="web", not
posthog-js, so a rule filtering on posthog-js silently never matches. Verify
with read-data-schema (event_property_values for $lib on $exception)
before baking a value into the rule:
posthog:error-tracking-grouping-rules-create
{
"filters": {
"type": "AND",
"values": [
{
"type": "event",
"key": "$lib",
"operator": "exact",
"value": "web"
},
{
"type": "event",
"key": "$exception_types",
"operator": "exact",
"value": "TypeError"
},
{
"type": "event",
"key": "$exception_sources",
"operator": "icontains",
"value": "/static/checkout/"
},
{
"type": "event",
"key": "$exception_values",
"operator": "icontains",
"value": "Cannot read property"
}
]
},
"description": "Cleanup: collapse noisy checkout TypeError fingerprints (web)"
}
Rules are evaluated in order. List existing rules first
(posthog:error-tracking-grouping-rules-list) — if a rule already partially
covers the pattern, prefer adjusting its filter over stacking a near-duplicate.
The optional assignee field auto-assigns issues created by the rule. Skip it
unless the user explicitly wants ownership baked into the rule.
Sample the merged issue's recent events to confirm the merge succeeded.
Watch for the rule's custom-rule:<rule_id> fingerprint to start matching
events — the first match creates a new issue (or routes to whatever was
already bound to that fingerprint). To keep events under your historical
target rather than scattered across the new custom-rule issue, run a second
merge folding the custom-rule issue into the target.
If new (non-rule) fingerprints continue appearing despite the rule, its
filter is too narrow — widen it.
decide _which_ issue an event lands in. Assignment rules decide _who_ owns the
resulting issue.
TypeErrors in different files are different bugs.
fingerprints on the stack, so a stable stack groups itself. A grouping rule
is for cases where the natural fingerprint sprays (volatile filenames,
hashed function names, dynamic line numbers) and you need to override it.
existing events; future events route correctly, past events stay where they
are. Use error-tracking-issues-split-create if you need to surgically
separate fingerprints back out of a merged issue.
Grouping rules; mention this when the user asks where rules live.
Take posthog/ai-plugin-grouping-noisy-errors from the repository into ~/.claude/skills for personal
use, or into .claude/skills inside a project.
The agent identifies a skill by the name field in its header. Two skills with the
same name cannot sit side by side — one of them will be ignored.