mirror of
https://github.com/abhigyanpatwari/GitNexus.git
synced 2026-10-07 02:58:02 +00:00
33 commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
|
|
c6b24162d9
|
perf(kotlin): index import resolution instead of scanning per import (#2872)
Some checks are pending
CodeQL / Analyze (javascript-typescript) (push) Waiting to run
CodeQL / Analyze (python) (push) Waiting to run
Gitleaks / gitleaks (push) Waiting to run
Publish / Classify release event (push) Waiting to run
Publish / RC guard (marker + release-PR skip) (push) Blocked by required conditions
Publish / ci (push) Blocked by required conditions
Publish / Publish to npm (push) Blocked by required conditions
Publish / Build & Push RC Docker images (push) Blocked by required conditions
Scorecard / Scorecard analysis (push) Waiting to run
Skill copy sync / shipped skills drift guard (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-cli) (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-web) (push) Waiting to run
* perf(kotlin): index import resolution instead of scanning per import
`resolveKotlinImportTarget` walked the entire workspace on every import.
Its four tiers — exact/suffix, directory child, package fan-out and
progressive prefix strip — each ran `for (const raw of allFilePaths)` with a
`replace(/\\/g, '/')` and several string scans per entry, and they are tried
in cascade, so one unresolved import cost two to four full passes.
Across a repository with tens of thousands of Kotlin files that is
O(imports x files): on the order of 10^10 string operations on a single
thread. It does not look like a hot loop from the outside - analyze sits at
exactly 1.00 core with a completely flat heap and emits nothing for hours,
because every allocation is a short-lived string and nothing accumulates to
hint at progress. Small repositories hide it entirely: at a few hundred files
each pass is free.
Three maps, built once per `allFilePaths` Set and memoized on its identity,
make each tier O(1): stem -> path for the exact tier, every component-suffix
of the stem for the suffix tier, and directory -> direct children for both the
fan-out and the first-child fallback. Cost becomes O(files) once plus O(1) per
import. This mirrors the existing Python index (`getPythonFileIndex`), down to
the WeakMap keying and the build counter.
Semantics are unchanged, including the parts the scans expressed only through
iteration order:
- an exact match anywhere beats a suffix match found earlier, because the
scan returned on the first exact hit but merely remembered the first
suffix hit;
- "first match" stays first in set-iteration order, so both stem maps keep
the earliest path inserted for a key;
- a directory-name match still honours the scan's `startsWith`-then-`indexOf`
rule, which only ever considered the FIRST occurrence of `/dir/`. A path
like `data/src/main/kotlin/com/example/data/Repo.kt` is therefore still
NOT a child of `data`. That is arguably wrong, but fixing it here would
silently move edges in every Kotlin repository; it belongs in its own
change with its own fixtures.
That claim is gated, not asserted. `bench/kotlin-import-target` fingerprints
every `fromFile | targetRaw -> result` triple over an exhaustive branch matrix
plus a deterministic fuzz, each file set resolved in BOTH iteration orders
because that is the only place the tie-breaks above are expressed. The
committed baseline is the value the PRE-INDEX implementation produces: both
implementations print
5ad605c179081505705ff7698a09dbdbdc4831080af6d9fdec5499cc6bce28ee over the same
20074 cases, 11612 of them non-null, and anyone can re-run it by pointing the
harness's module specifier at the old file.
Its second arm is the scaling ratio, `(t_large/t_small)/(1600/400)` over a
synthetic Kotlin monorepo whose imports are ~40% unresolvable — only a miss
drives all four tiers, which is where the scan was worst. The index measures
0.99 (8.0 ms / 31.7 ms); the implementation it replaces measures 3.737
(2207.8 ms / 33003.5 ms) on that same corpus, so the budget of 1.6 separates
them by a wide margin. Take the absolute times as an order of magnitude only
(~276x, ~1041x): the floor arm was run once cold because best-of-seven against
a quadratic implementation costs minutes, while the index arm is the usual
best-of-seven. The ratios are the comparable pair. Both arms run in the
existing always-on `benchmarks (GITNEXUS_BENCH)` job, next to the C++ guard
from #2788 and the Python one from #1918.
Two unit-level guards sit alongside it: a parity test pinning the curated
cases, and an integration test asserting the index is built once across many
imports — the adapter must pass the Set through, since a defensive copy would
hand a fresh WeakMap key per call and restore the old behaviour (the same trap
Python hit in PR #1918).
Two other providers have the same defect and are left alone here, having no
repository at hand to verify a change against:
- `go/import-target.ts`: `findRootPackageFiles` and `findAllFilesInPkgDir`
scan unmemoized, and the GOPATH fallback calls the latter once per path
segment but the last, so a single import can trigger several full passes;
- `dart/import-target.ts`: the `package:` branch scans once per candidate
path — `lib/<rel>` and bare `<rel>` — and `resolveRelative` scans again in
its suffix fallback, also unmemoized.
`csharp/import-target.ts` is a partial case worth noting: it already builds a
memoized `getWorkspaceFileIndex`, but that is reached only when a `.csproj` is
found; the no-csproj path hands the raw Set to `resolveDirectMatch` and
`resolveByProgressiveStripping`, which scan past it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* test(kotlin): close the blind axes in the import-resolution gate
Review of #2872 found the weak part was the gate, not the resolver: four
plausible follow-up mutations passed `--check` with a byte-identical
fingerprint, `cases` AND `non_null`. Each is now caught, and each was
re-checked against the mutation it exists to stop.
- The hashed record carried `order | fromFile | targetRaw | result` but not
the FILE SET, so a corpus edit that swapped the workspace under a case
while leaving its result string alone was invisible. Leaving the resolver
untouched and editing only the corpus, two documented load-bearing cases
could be gutted — the "exact beats an earlier suffix" case losing its
competing file, the repeated-directory negative case losing its file
entirely — with the gate green. The file set is now part of the record, and
that same edit now moves the fingerprint.
- The corpus capped path depth at 8 components and packages at 16 files,
which are precisely the two axes the loops this change added run on. It now
carries 11- and 13-component paths, queries against suffix keys deeper than
seven segments, a 40-file package, and a fuzz that spans both. Verified:
capping suffix-key depth at 7, skipping the `dirChildren` suffix loop above
depth 8, and capping a bucket at 17 entries each now move the fingerprint,
where all three previously passed.
- `non_null` was reported but never asserted; it is asserted beside `cases`.
That closes only the "resolves nothing at all" hole — it stayed 11612 under
all three code mutations above and under the corpus edit — so it is a
companion to the two fixes above, not a substitute for either.
- A ratio cannot see a constant factor, and a file-count ratio cannot see a
depth cost. `--check` now also asserts a DEPTH ratio (file count fixed,
paths 24 components against 8) and an absolute ceiling on the small arm: a
full workspace scan reintroduced on 1-in-32 imports scores 1.490, inside
the scaling budget, while running 2.8x slower.
The baseline is re-derived, not adjusted: the pre-index implementation and the
index both print
ebf1790bf1d42dad483a51f2cbdeb2351e493b9e8236e4eedeef592dd81e2c5c over the new
20106-case corpus, 13256 of them non-null.
Both test suites were shown to be non-load-bearing and now are:
- the parity test's repeated-directory case put `data` at the LEADING
segment, so the `startsWith` guard fired and the `indexOf` rule its own
comment describes was never reached — a resolver with that check relaxed to
`>= 0` passed all 18 cases. A mid-path case now pins it, and a backslash
fan-out case pins `norm.lastIndexOf` against `raw.lastIndexOf`, which was
also bench-only. Both mutations now fail the unit suite.
- the index-reuse test discarded all 200 return values, so a build count of 1
was equally true of an adapter that had stopped resolving anything. It now
asserts results, and its docstring premise is corrected: every one of its
imports hit the tier-1 suffix lookup and none reached the fan-out it
claimed to exercise. Half now genuinely do. The `undefined as never` casts
and the `?.` are gone — both trailing parameters are optional and the
member is required.
Resolver changes, all output-identical against the differential above:
- `dirChildren` buckets are frozen once built. `findKotlinPackageFiles` hands
a bucket straight out of the index, and the `readonly string[]` return type
does not survive the caller: the finalize pass normalizes with
`Array.isArray(t) ? t : [t]`, and `isArray`'s `arg is any[]` predicate
widens the true branch, so `tsc --strict` accepts a `.sort()` there. A
downstream sort would permanently reorder the cached bucket and flip the
first-child tier for every later import in the run.
- `stripped` is computed only after tier 1 misses, with `lastIndexOf`/`slice`
instead of `split`/`slice`/`join`. Measured -20% small arm, -21% large arm.
- `KOTLIN_EXTENSIONS` now comes from the existing `import-resolvers/jvm.ts`
export instead of a fourth inlined copy.
- A note on why the shared `buildSuffixIndex` is not reused, with the four
probes that diverge, and the measured basename-bucket comparison — the one
place this was less documented than the Python precedent it follows, and
the question the Go/Dart/C# follow-ups will each face.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
Co-authored-by: Gergő Magyar <gergomagyar@icloud.com>
|
||
|
|
74409a37f6
|
perf(cpp): index qualified namespace members once per pipeline run (#2788) (#2794)
* perf(cpp): index qualified namespace members once per pipeline run (#2788)
`resolveCppQualifiedNamespaceMember` walked every parsed file — rebuilding a
per-file `scopesById` map each time — once per qualified `ns::member()` call
site, so the scope-resolution emit phase cost O(callsites x scopes). On a
1,473-file C++ repo that was 25.3 min of a 33-min analyze, with 75% of total
self-time in this one function. Its inner `findMemberInNamespaceTransitive`
compounded it: each recursion step filtered `scopesById.values()` by parent,
O(scopes^2) per file on its own.
This is the same bug #1990 fixed in the sibling ADL path (`pickCppAdlCandidates`
-> `AdlCandidateIndex`), so it gets the same fix: a `QualifiedNsMemberIndex`
(receiver simple name -> member simple name -> callable defs) built lazily once
per `parsedFiles` identity and reset by `clearCppInlineNamespaces`, which runs
from `cppScopeResolver.loadResolutionConfig` at the start of every pass. Per
call site the work drops to two Map lookups.
Ordering is preserved exactly — file-major, `parsed.scopes` declaration order,
a namespace's own `ownedDefs` before its inline-namespace children, depth-first
— because the caller takes `allHits[0]` for the single-hit case and
`narrowOverloadCandidates` is first-wins. Non-inline nested namespaces are
still not descended into, and same-name hits across inline children still
report `'ambiguous'` (#1564).
Measured with `PROF_SCOPE_RESOLUTION=1 analyze --force --index-only` on a
synthetic corpus (`namespace ns_i { inline namespace v1 { ... } }` plus 20
`ns_j::fn()` call sites per file):
| files | emit before | emit after |
|-------|-------------|------------|
| 100 | 153ms | 16ms |
| 200 | 704ms | 24ms |
| 400 | 3,293ms | 42ms |
| 800 | 16,898ms | 78ms |
Before, doubling the file count quadrupled emit; now it doubles. At 800 files
total scope resolution goes 17.2s -> 394ms.
Output is unchanged, verified rather than assumed: a full graph dump (sorted
nodes + relationships) from a baseline build at the parent commit and from this
one are byte-identical on all 134 `cpp-*` fixtures merged into a single repo
(1573 nodes / 1997 relationships) and on the 400-file synthetic corpus.
`test/integration/resolvers/cpp.test.ts` passes 334/334.
#1990 shipped its ADL fix without a scaling gate, which is how the bug class
came straight back here, so this adds one: `bench/cpp-qualified-ns` measures
`(t_large/t_small)/(1600/400)` — 0.93-1.21 indexed versus 3.45 for the old
per-call-site scan — alongside a fingerprint over every
`receiver::member -> outcome` the corpus resolves, and CI runs it with
`--check`. `test/unit/cpp-qualified-ns-index.test.ts` covers the cache
invalidation the index introduces.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* fix(cpp): address tri-review findings on the qualified-namespace index (#2788)
Multi-engine review of this PR (Claude swarm + ce-code-review, Codex
gpt-5.6-sol swarm + ce + adversarial) returned two P1s and five smaller
findings. All are fixed here.
P1 — the index defeated the pipeline's post-language memory release.
`scope-resolution/pipeline/phase.ts` evicts each language's files and then
calls `forceGc()`, on a stated premise that "This language's ParsedFiles are
now unreachable", sizing C/C++ at ~17-20GB on the Linux kernel. The
module-level `let qualifiedNsIndexSource` falsified that: it pinned the whole
`parsedFiles` array, and the index held defs reaching into those files'
scopes, until the *next* C++ pass cleared it — which in a single analyze never
comes. C++ is 7th of 16 in SCOPE_RESOLVERS, so the set survived nine later
language passes plus emit. Replaced with a
`WeakMap<readonly ParsedFile[], QualifiedNsMemberIndex>`, the pattern already
used by `moduleScopeIndexByPass` in `cpp/file-local-linkage.ts`.
`clearCppInlineNamespaces` still swaps in a fresh WeakMap, because the index
has a second input (`inlineNamespaceScopeIds`) the key cannot observe.
Measured with `--expose-gc`: 61.2MB retained after the caller drops the array
before, 0.1MB after.
The ADL twin (`adl.ts`) has the same pattern, so the hazard predates this PR —
but `pickCppAdlCandidates` returns early before `ensureAdlIndex` on
`noAdlSites`/empty `argInfoBySite`, so it rarely arms, whereas a qualified
`ns::member()` index arms on almost every C++ workspace. Moving the ADL twin
to a WeakMap is left as a follow-up.
P1 — the new bench could not see the regression class it exists to gate.
`callSites()` drew every receiver from `ns_${...}`, so the receiver lookup
never missed; production is the opposite, since Case 1.5 in
`receiver-bound-calls.ts` is reached by every plain-identifier receiver call
and misses on most. A rescan reintroduced only on the receiver-bucket-absent
path scored 1.279 and PASSED the old bench. The corpus now mirrors production
(~1 in 5 receivers name a declared namespace) and adds a namespace reopened
across files, a same-name inline nest, a member declared at both namespace and
inline-child level, and call sites carrying a real `Callsite` so
`narrowOverloadCandidates`/`cppConversionRank`/
`isOverloadAmbiguousAfterNormalization` are inside the fingerprinted surface at
all. That same rescan now measures 4.538 and FAILS; defeating the dedup now
fails the fingerprint arm where it previously passed byte-identical. The
fingerprint moved once, deliberately, for the corpus expansion — recorded in
`_rebaseline_2788_review`, explicitly not precedent.
Also fixed:
- Unbounded recursion aborted analyze. `collectNamespaceMembers` recursed per
inline child with no bound and threw an uncontained `RangeError` at inline
depth 8000 (`phase.ts`'s try has a `finally`, no `catch`), and a receiver
*miss* paid full recursion where the deleted walker skipped on a name
mismatch. An explicit work-stack alone would only have converted that into
an OOM at depth 6000, because the eager table was quadratic in memory too:
for a depth-D chain it legitimately holds D(D+1)/2 entries, since `v2::foo()`
is a valid receiver at every level. Replaced with a lazily-queried node graph
(per-scope own-member buckets plus direct child links, resolved on demand and
memoized per receiver+member). Build is now linear; depth 100000 costs 133ms
where 8000 previously threw.
- "#1990 shipped without a scaling gate" was false. #1990 did ship
`test/integration/cpp-adl-benchmark.test.ts` (
|
||
|
|
911151e230
|
fix(resolution): resolve Go pointer-receiver calls, and report the program boundary instead of hedging (#2766) (#2782)
Some checks are pending
CodeQL / Analyze (javascript-typescript) (push) Waiting to run
CodeQL / Analyze (python) (push) Waiting to run
Gitleaks / gitleaks (push) Waiting to run
Publish / Classify release event (push) Waiting to run
Publish / RC guard (marker + release-PR skip) (push) Blocked by required conditions
Publish / ci (push) Blocked by required conditions
Publish / Publish to npm (push) Blocked by required conditions
Publish / Build & Push RC Docker images (push) Blocked by required conditions
Scorecard / Scorecard analysis (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-cli) (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-web) (push) Waiting to run
|
||
|
|
de84ad6297
|
feat(spring): index @Bean factories and @Resource injection (#2740)
* feat(spring): index Bean factories and Resource injection * fix(spring): address Bean and Resource review findings * refactor(lbug): keep relation pair parsing in router * test(lbug): preserve schema exports in WAL mocks * test(cache): align schema bump pin --------- Co-authored-by: Shining <xuenning@qiyi.com> Co-authored-by: Gergo Magyar <gergomagyar0@gmail.com> |
||
|
|
27ab37c432
|
feat(resolution): type receiver chains from AST structure across all 14 languages (#2708) + epistemic lower-bound (#2744) (#2747) | ||
|
|
4906daf27b
|
fix(scope-resolution): resolve calls through a closure-valued binding across languages (#2693) (#2695)
* fix(scope-resolution): resolve calls through a closure-valued binding (#2693)
`val f = { }; f()` emitted no CALLS edge in Kotlin or Swift, so `impact` on
such a symbol under-reported to zero — the same false all-clear as #2687.
The cause was not, as first suspected, that these languages fail to feed
`callable-value-flow`. They do: `synthesizeCallableFlowCaptures` is called
from 15 language capture modules, and Kotlin already resolves reassignment
through the pass (`var f = ::a; if (c) f = ::b; f(1)` reaches both targets).
Their captures are already exactly right — the seed names the binding as its
own callable, per the anonymous-callable convention in
callable-flow-captures.ts.
They died one layer later, at the `buildGraphTargetIndex` gate:
if (!isCallable(def) && providerTarget?.(def) !== true) continue;
`isCallable` is Function/Method/Constructor, but the scope-resolution layer
declares a closure binding with its VALUE label (Kotlin/Swift `Property`),
and `isCallableValueTarget` is implemented by exactly one provider — COBOL.
So the binding never entered `graphTargets`; `lexicalCallableLookup` then
returned `shadowed: true` with no targets, which also suppressed the
workspace-wide fallback, and the seed resolved to nothing.
Only the graph knows a value binding holds a callable — since #2687 it emits
a single `Function` node for one. So value bindings now resolve their graph
id first and are admitted on the label of the node they actually reach.
This is self-limiting: a genuine constant keeps its own Const/Property node,
so `resolveDefGraphId`'s qualified key hits before the label-agnostic
`simpleKey` fallback can reach a same-named callable. Only a binding whose
own value node was replaced by a callable one gets through.
No scope kind changes — Kotlin's `lambda_literal` stays `@scope.block`, so
#1757 smart-cast semantics are untouched by construction. The fix is
language-neutral: it discriminates on the graph node label, never on a
language name.
Dart is fixed separately; its root cause is independent.
* fix(dart): resolve calls through a closure-valued binding (#2693)
Dart needed more than the shared gate fix: neither of its closure-binding
forms could resolve, for two different reasons, and the plan's one-line
diagnosis turned out to be incomplete.
TOP-LEVEL `var f = (x) => x;`
A graph Function node already existed (#2687), but no `@declaration.*`
matched the binding, so scope resolution had no SymbolDefinition to attach
a flow seed to. Adding the declaration exposed a second problem: Dart's
`initialized_identifier` is FIELDLESS, so the shared field-based assignment
fallback (`left`/`name`/`value`/…) decomposed nothing and the binding still
emitted no flow captures at all. Kotlin's fieldless `assignment` node hit
exactly this and took the same remedy — a provider `extractAssignment`.
FUNCTION-LOCAL `void m() { var f = (x) => x; }`
Locals parse as `initialized_variable_definition`, which the top-level
graph-node rules are deliberately anchored under (program) to avoid, so a
local closure had no graph node at all — nothing for the widened
`buildGraphTargetIndex` gate to admit.
Both new rules are restricted to a `function_expression` value. Declaring
every Dart variable would mint defs and nodes repo-wide for no resolution
benefit; ordinary locals stay unindexed exactly as before. The top-level
declaration reuses the (program) anchor the graph-node query already relies
on, so class-body fields — which share `initialized_identifier_list` and are
already `@declaration.property` — are never matched twice.
Also drops the now-false note in tree-sitter-queries.ts claiming `f()` does
not resolve for Dart. That node is now the evidence that makes it resolve.
* docs(scope-resolution): document the callable-flow capture contract (#2693)
The module is 1200+ lines behind a nine-line docblock, and the only worked
example was C. Both root causes fixed in this series were "the contract was
discoverable only by reading the emitter":
- the anonymous-callable convention (a seed whose source is a closure takes
its DESTINATION's name) is what makes closure bindings resolvable at all,
and is the reason the widened target gate is correct;
- a fieldless binding node silently decomposes to nothing under the shared
assignment fallback, which cost Kotlin one debugging cycle in #2522 and
Dart another here;
- captures alone are never enough — the bound name also needs a
`@declaration.*` or there is no cell to key the seed on.
Records the cell/site model, both traps, and points at the fullest and
smallest worked examples.
Bumps INCREMENTAL_SCHEMA_VERSION 15 → 16 and the parse-cache SCHEMA_BUMP
22 → 23: this series emits NEW CALLS edges and new Dart Function nodes, and
the incremental write set only covers changed files, so an existing index
would keep reporting a zero blast radius for exactly the symbols the fix is
about.
* perf(scope-resolution): pre-filter value bindings in the callable target index (#2693)
Widening the `buildGraphTargetIndex` gate to consider VALUE bindings put the
hot loop on a much larger def population — value bindings outnumber callables
in real source — and the naive version paid full price per binding. Measured
on a synthetic 800-file corpus (8 value bindings per file, 1 of them a closure
binding), the widening cost 2.50-2.82x the pre-#2693 callable-only build.
Two wastes, both provable rather than guessed:
1. `definitionAnchorKey` ran for every def, including value bindings. The
anchor index is keyed by callable LABEL and the key is built from
`def.type`, so a value def can never hit it — and the key costs a regex
per def.
2. Every value binding paid the whole `resolveDefGraphId` key chain only to be
rejected. It need not: every qualified key that function tries embeds
`def.type`, so for a VALUE def those can only ever reach a value-labelled
node. Its one route to a callable is the label-agnostic
`simpleKey(filePath, simpleName)` fallback, which by construction requires
a callable node with the SAME file and simple name. So a value binding with
no such node cannot resolve to a callable, and one Set lookup decides it.
That set is derived in the graph walk the anchor index already performs, so it
costs no extra pass.
large_ms 7.79-8.37 -> 4.90-5.02 (1.61x faster)
widening_overhead 2.50-2.82 -> 1.45-1.50
The resolved target-set fingerprint is byte-identical across both, which is
the point: this is a cost change, not a behaviour change.
Adds bench/callable-value-flow/ (fingerprint + scaling + widening-overhead
gates) and wires it into ci-tests.yml beside the other build-free benches. The
overhead budget of 1.9 sits between the measured with-filter and without-filter
bands, so it cannot be met if the pre-filter is removed. Timings use the MIN of
15 warmed reps, not the median: the same build reported 1.65 idle and 2.03
under load, and a median-based gate would have to be loosened past the point of
detecting the regression it exists to catch.
`buildGraphTargetIndex` is exported for the bench; it is pure and not part of
the pass's public contract.
* test(scope-resolution): assert the declaration route does not double-emit (#2693)
Go, Python, C++ and TS/JS already resolved a closure-binding call through
their `@declaration.function` capture. The widened `buildGraphTargetIndex`
gate gives the same call a SECOND possible route, so each must still produce
exactly one edge.
`tryEmitEdge` dedups by key, but a collapsed key and a site-anchored key are
DIFFERENT keys — a real double-emit would show up as two ids for one call
site, not be silently collapsed. Asserting on edge ids rather than target ids
is what makes that visible.
* fix(scope-resolution): join value bindings to their callable node by POSITION (#2693)
Review found the first cut of this series minted FALSE CALLS edges. Admitting a
value binding whose *resolved* graph node is callable let `resolveDefGraphId`
fall through to its label-agnostic, first-write-wins
`simpleKey(filePath, simpleName)` and bind the name to ANY same-named callable
in the file.
The safety argument in the previous commit — "a genuine constant keeps its own
Const/Property node, so the qualified key hits first" — silently assumed
`def.type === node.label`. It does not hold:
- TypeScript declares `const` as `Variable` but emits a `Const` NODE, so the
qualified key misses even though the value node exists;
- Rust `let` bindings get no graph node at all, so the fallback is the only
route.
Reproduced, all previously emitting a fabricated caller:
const save = (x: number) => x * 2; // next to an unrelated Svc.save
-> Method:svc.ts:Svc.save#1 // Svc never instantiated
const handler = other; // shadowing a top-level handler
-> Function:app.ts:handler // unreachable from here
let handler = cb; // Rust
-> Function:main.rs:handler
Worse in Dart, where the same collision INVERTED the feature: the only edge went
to the class method and the closure's own node got none. The result was also
declaration-order dependent — two files differing only in declaration order got
different CALLS sets — and it propagated through argument-to-formal binding into
functions whose source never mentions the name.
A closure binding IS its callable node: same file, same line, same name. An
aliasing local is not. So the join is positional now — a file/line/name index
built in the graph walk `byAnchor` already performs — and value bindings never
run the key chain at all. That is both correct and cheaper:
large_ms 4.90-5.02 -> 4.37-4.63
widening_overhead 1.45-1.50 -> 1.43-1.58 (name-match design: 2.50-2.82)
with a byte-identical target-set fingerprint on the bench corpus.
Also from review:
- `Static` dropped from VALUE_BINDING_DEF_TYPES: `normalizeNodeLabel` has no
`static` case, so no def can carry that type — it was an entry no fixture
could ever exercise. The remaining set now documents why it deliberately
does NOT reuse `isOwnableValueLabel`, which is contracted to a different
consumer.
- Dart `final`/`const` top-level closures (static_final_declaration_list) and
every declarator after the first in a multi-name local now resolve; both
parse into shapes the earlier rules never reached.
- The bench source carried a literal NUL byte, so git recorded it as BINARY
and the only artifact pinning the target set was unreviewable in the PR
diff. It is written as an escape now. Its corpus also modelled `startLine`
as 1-based where graph nodes are 0-based, which would have stopped it
exercising the value-binding path at all.
- `call-summary-schema-version.test.ts` asserted `passesReuseGate(15)` is
true; the 15 to 16 bump made that false and the test RED. It now pins 16 as
current and 15 as rejected, matching the pattern every prior bump followed.
- The v23 parse-cache comment is at the top of the list, not mid-list.
Tests: the five collision cases above are new regression tests, each confirmed
failing against the previous commit. Also added Kotlin class-body closures (the
only case exercising the Method arm), Dart top-level `final`, Dart multi-name
locals, and a warm-parse-cache replay for Kotlin and Dart — the #2693 captures
are replayed verbatim, so a serialization change would surface only on a SECOND
analyze and every other test here runs cold. The previous negative tests were
vacuous: they paired names that did not collide (`maxSize` vs `size`), so the
pre-filter rejected them before the guard they were named after could run.
* docs(storage): fix the schema-version changelog blocks (#2693)
Two problems, one mine and one not.
MINE: the `INCREMENTAL_SCHEMA_VERSION` block is ASCENDING (v2 … v15), and I
inserted v16 above v15 rather than at the end — I had just moved the parse-cache
entry to the top of ITS block, which is descending, and applied the same habit
to a list ordered the other way. Moved to the end; both blocks are now
internally consistent.
NOT MINE: the parse-cache block carries TWO v21 entries, with v20 wedged between
them. Tracing it: #2632 (Spring DI facts) bumped 20 -> 21 and merged first;
#2653 (Java JLS local-class identities) had branched at 20, also bumped to 21,
and merged second — so it shipped with NO invalidation of its own. An index
already stamped 21 by the first change was treated as current by the second and
kept serving stale local-class identities from the warm cache.
Numbers left alone: both genuinely shipped as 21, and renumbering them now would
misstate what users' indexes actually contain. Instead the entry says so
explicitly, and points at the process fix — re-check the constant against
origin/main immediately before merging, not just when the branch is cut. The
identical collision hit INCREMENTAL_SCHEMA_VERSION in #2653/#2654, so this is a
recurring failure mode of concurrent PRs, not a one-off typo.
Comment-only; no constant changes value.
* feat(scope-resolution): resolve closure bindings in Ruby, Java, C#, PHP and JS/TS var (#2693)
Ruby, Java, C# and PHP already emitted correct callable-flow seeds and invokes.
What they lacked was the #2687 piece — a CALLABLE graph node at the binding,
which is what buildGraphTargetIndex joins to by position. PHP additionally had
no scope declaration for the bound name, so the flow pass had nothing to attach
its seed to.
ruby handler = ->(x) { x } handler.call(1) -> Function:a.rb:handler
java Function<..> handler = x->x handler.apply(1) -> Function:A.java:A.handler
csharp Func<int,int> handler = ... handler(1) -> Function:A.cs:A.handler
php $handler = fn($x) => $x $handler(1) -> Function:a.php:handler
Ruby and Java invoke through the callable-object protocol; C# and PHP call the
binding directly. Locals work in all four, and a binding whose name collides
with a same-named method resolves to the CLOSURE, not the method.
Two things the sweep caught:
JAVA TWIN. Anchoring the rule on the inner variable_declarator produced BOTH a
Function and a Property node — the exact double-indexing #2687 removed. The
parse-worker dedup keys on (definition node, name), and Java's value rule
anchors on field_declaration, so the keys never matched. Re-anchored on
field_declaration / local_variable_declaration.
JS/TS `var`. `var f = (x) => x` kept a Variable label while const/let got
Function, because `var` is a different grammar node (variable_declaration vs
lexical_declaration) that no closure rule covered. A call through the binding
still resolved via the declaration route, so the CALLS edge pointed at a
NON-callable node. Now consistent across const/let/var.
That last one flipped an existing assertion in const-function-twin.test.ts,
which expected `Variable` for a var-bound function-expression. Its comment
explained why — "var has no matching @definition.function pattern, so nothing
claims the name" — i.e. it documented the gap rather than defending it. The
property it was really protecting (an UNCLAIMED value node survives) now has
its own case with a non-function initializer, and the var-closure case asserts
the collapse to one node, which is also the twin guard for the new rule.
Known limits, both pre-existing and both failing safe:
- A PHP local closure whose name collides with a top-level function gets no
edge: both want id Function:<file>:<name>, so the closure never gets its own
node. This is the file-scoped node-identity convention — TypeScript, Python
and Dart collapse identically at base.
- TS/JS class-field arrows stay Property (Kotlin's equivalent emits Method).
They already resolve; changing the label risks the HAS_PROPERTY ownership
regression #2687 hit once.
The invalidation constants already bumped in this PR (INCREMENTAL_SCHEMA_VERSION
16, SCHEMA_BUMP 23) cover these additional languages; their notes now say so.
Tests: one case per newly-resolving language plus the PHP anonymous-function
form and the JS var form, in closure-binding-labels.test.ts. The file now spins
a worker pool per test across a dozen languages, so its timeout is raised
file-wide — a case that takes ~7s alone was exceeding the 30s default under
that contention.
* fix(ingestion): class-field closures are callable members in TS/JS (#2693)
A CALLS edge must target a callable node. `class A { handler = (x) => x }` emitted
a Property, so calling it produced `CALLS -> Property:A.ts:A.handler` — an edge
pointing at something the graph says is not callable. Same defect class as the
JS/TS `var` binding fixed in the previous commit, and the last place a closure
binding still carried a value label.
Kotlin already models its class-body closure as Method + HAS_METHOD; TS/JS now
match, so all three agree:
class-field closure -> Method + HAS_METHOD (CALLS target is callable)
plain class field -> Property + HAS_PROPERTY (unchanged, no CALLS)
Anchored on public_field_definition / field_definition — the same nodes the
property rules use — so the parse-worker dedup collapses the pair rather than
leaving a Method/Property twin, the failure the Java rule hit in the previous
commit.
ON MATCHING THE COMPILERS. This deliberately diverges from tsc and SCIP. The
TypeScript compiler classes `handler = () => {}` as a PropertyDeclaration
("a property declaration independently from what it's assigned to"), and SCIP
gives it a `.` term descriptor, the same suffix as any field — both call it a
property, and Kotlin's compiler likewise treats `val f = { }` as a property with
a function type. The divergence is intentional: GitNexus's Function/Method label
does not mean "tsc SymbolFlags", it means "this node can be the target of a
CALLS edge", which is the convention #2687 set for closure bindings in every
language. Modelling it the compiler's way would mean either dropping call
resolution for these members or emitting a separate node for the lambda and
flowing the property to it — the two-node shape #2687 removed. Recorded here so
the next reader does not "fix" it back.
Tests: TS and JS class-field arrows resolve to their Method node, plus a guard
that a NON-closure class field stays a Property — the closure rule must key on
the initializer, not on the field syntax.
* fix(php): keep the $ sigil on closure-binding nodes so locals stop colliding (#2693)
A PHP local closure whose name matched a file-level function got NO edge at all:
function save($x) { return $x; }
function run() {
$save = fn($x) => $x * 2;
return $save(1); // no CALLS edge
}
Both minted the id Function:<file>:save, so the closure's node was swallowed by
the function's and the positional join found nothing at the binding's line.
The fix is PHP's own semantics rather than a change to node identity across the
graph. PHP holds variables and functions in SEPARATE namespaces — $save and
save() cannot collide in the language — and the sigil is what separates them.
Dropping it was the bug. The node rule now captures the whole variable_name, so
the closure is Function:<file>:$save and the function stays Function:<file>:save.
languages/php/query.ts already keeps the sigil on property declarations for the
same reason, so this makes the two consistent.
The positional join normalises a leading $/@ on both sides, matching what the
scope layer and the callable-flow synthesizer already do, so the binding still
matches its own declaration while its NODE stays distinct.
local closure + same-named function -> Function:c.php:$save (the closure)
calling the real function -> Function:f.php:save (unchanged)
plain $max = 10 -> no node, no edge (unchanged)
WHAT THIS DOES NOT FIX. The general problem is wider than PHP: GitNexus node ids
are file-scoped, so a function-local symbol and a file-level one with the same
name collapse in TypeScript, Python and Dart too, and Java/C# only escape by
qualifying on the enclosing CLASS (so two same-named locals in different methods
still collide). SCIP solves it with a separate `local <id>` keyspace that is
document-scoped and never globally addressable. That is issue #2699 — it changes
persisted ids for every function-local symbol and needs its own invalidation, so
it is not bundled here. PHP is fixed on its own merits: the sigil belongs in the
identity regardless of how locals are eventually scoped.
* test(scope-resolution): pin the closure-binding caller-attribution limit (#2693)
Review of this PR found the new callable nodes are call TARGETS but never call
SOURCES: a call made INSIDE a closure binding is attributed to the enclosing
scope, so `impact(handler, direction:"downstream")` reports nothing even though
the closure calls out. Consistent across Kotlin, Dart, Ruby and PHP; TS/JS free
bindings are the exception because their arrow carries a @scope.function whose
range matches.
Not fixed here — pinned, so the boundary is visible instead of surprising, and
so a change in EITHER direction fails a test.
The cause is precise: `pickCallerCallableDef` (graph-bridge/ids.ts) finds the
caller by walking CHILD scopes whose range contains the call site, gated on
`child.kind === 'Function'`. A closure literal is a BLOCK scope in these
languages (Kotlin deliberately, #1757 smart casts), AND the binding's def is
owned by the enclosing scope rather than by the closure's scope — so neither
half of the link exists. Fixing it needs "callable boundary" decoupled from
scope `kind` plus an association between the closure scope and its binding.
That is a change to the caller anchor used by every call in the repo, which is
not something to land at the tail of this PR.
Also adds a unit suite for `buildGraphTargetIndex` itself, covering what the
integration tier cannot isolate: a binding is admitted only on POSITIONAL
evidence, a name-only match is rejected, a non-callable node at that position is
rejected, an ambiguous position claimed by two callables is rejected, and the
PHP dollar sigil normalises across the join while still not matching a
same-named function on another line. That last one closes the review's LOW —
the node/declaration name asymmetry now has an executable contract rather than
resting on a comment.
* docs(test): correct the per-language cause of the attribution limit (#2693)
The comment on the pinned attribution tests claimed "a closure literal is a
BLOCK scope in these languages". That is true for Kotlin (lambda_literal
@scope.block, #1757) and Ruby (do_block/block @scope.block) and FALSE for PHP:
anonymous_function and arrow_function are already @scope.function
(php/query.ts:61-62). Dart is a third case again — it has no scope over a
closure literal at all.
So the four languages fail at three different points, not one:
Kotlin, Ruby fail the `child.kind === 'Function'` gate
PHP passes that gate; its closure scope owns no callable def,
because the binding's def belongs to the enclosing scope
Dart has no child scope for the walk to consider
Worth correcting carefully rather than tidying: a follow-up plan re-stated this
comment instead of re-deriving it, and inherited the misdiagnosis — it proposed
"relax the kind gate" as required for all four, which is a no-op for PHP and
unreachable for Dart. A review caught it. The comment now states each language's
actual blocker and says why the distinction matters.
Comment-only; the three pinned tests are unchanged and still pass.
* fix(scope-resolution): an ordinary JS/TS `function` binds its own `this` (#2701)
`this.m()` inside a nested `function` resolved to the lexically enclosing
class, so it emitted a CALLS edge that does not exist at runtime — including
the exact `forEach(function () { this.m(); })` shape arrow functions were
introduced to avoid:
class D {
m() {}
build() { const h = function () { this.m(); }; return h; }
}
// CALLS: Function:D.ts:D.h -> Method:D.ts:D.m#0 FALSE
ECMA-262 gives an arrow `[[ThisMode]] = lexical`: it has no `this` binding in
its environment record, so the lookup passes through to the enclosing
environment. Every other function form binds `this` at call time. `tsc` draws
the same line by resolving `this` through `getThisContainer` with
`includeArrowFunctions = false`. That one rule is the whole fix.
Languages declare it; shared code never learns a language. The query files —
the one place that already names grammar nodes — tag every non-arrow function
form with `@receiver-owner.this`, which becomes `Scope.ownsReceivers`. A
receiver walk that reaches such a scope without finding the name stops there
instead of borrowing an enclosing scope's binding. Every other language leaves
the field unset and is bit-for-bit unchanged; a Kotlin lambda, which DOES
capture the enclosing `this`, still resolves (pinned as a test).
THREE GATES, ALL LOAD-BEARING. The false edge survived each one alone, which
is why the tests assert on the emitted edge rather than any single walk:
1. `Scope.ownsReceivers` stops BOTH receiver-type walks — `findReceiver
TypeBinding` here and its twin `lookupReceiverType` in gitnexus-shared's
`lookup-core`, which was resolving the receiver independently.
2. `LanguageTypeConfig.thisBoundaryNodeTypes` stops the type-env AST walk
that infers a receiver's type during capture.
3. `isReceiverOwnedButUnbound` makes `receiver-bound-calls` SUPPRESS the
site. Without it the member still resolved by NAME through `lookupCore`'s
lexical chain — the class-body scope binds `m` two scopes up — merely at
lower confidence. An owned-but-unbound receiver is a definitive negative,
not a miss, so it must not reach a receiver-blind fallback.
Also fixed: `function*(){}` as an expression was not a `@scope.function` at
all, so `this` inside one read as the enclosing method's.
WHAT THIS GIVES UP. The fix REMOVES edges, and some were correct:
`.bind(this)`, `.call(this)` and `forEach(fn, thisArg)` do make `this` the
instance at runtime. Their correctness is fixed at the CALL SITE, which no
scope-level rule can see, so the choice is between losing them and keeping
every detached-callback false positive. All three are pinned as tests
asserting the empty result, so changing the trade later is deliberate.
`this` in a static method also stops resolving to the INSTANCE member — that
edge was wrong in the other direction.
INVALIDATION. Both constants move, and the parse-cache one is not optional:
`ownsReceivers` lives on the cached `Scope`, and a warm cache replays scopes
without it — verified by probe that `--force` alone does NOT re-derive it, so
the fix silently did nothing until SCHEMA_BUMP moved. INCREMENTAL_SCHEMA_
VERSION 16 -> 17 (the incremental write set covers only changed files, so
unchanged TS/JS files would keep their fabricated `this` edges);
SCHEMA_BUMP 23 -> 24.
Verified against a built index, not by reading: all three false edges from the
issue gone, every correct edge kept, same result in JavaScript through its
separate grammar. 64 tests green across the new suite plus the closure-binding
and schema-version suites. The full suite's 36 failures are pre-existing
load-flakes — confirmed by A/B: `skip-git-cli` fails FOUR tests on a clean
HEAD versus three with this change, and `pipeline-pdg-streaming` passes in
isolation either way.
Refs #2701
* fix(ingestion): give function-local callables their own identity (#2699)
Graph node ids were file-scoped, so a local callable and a same-named
file-level one collapsed onto ONE node. That is a wrong answer, not a missing
one — the local call was attributed to the file-level symbol:
export function save(x) { return x; }
export function run() { const save = x => x * 2; return save(1); }
export function other() { const save = x => x * 3; return save(2); }
// ONE node Function:a.ts:save, and BOTH run and other pointed at it, so
// `impact` on the top-level save reported two callers that never call it.
A local's identity is now its enclosing-callable chain plus its own position —
`run.save@2:2`. The chain is for humans reading `impact`; the position is what
makes it correct. Names alone cannot express what ECMAScript actually
specifies, and the gap is the language's, not the grammar's: an environment
record is created per function AND per block, so an anonymous function has no
name to contribute and sibling blocks hold distinct bindings under the same
name. One positional rule settles both, with no conditionals and no
"disambiguate only when it looks ambiguous" heuristic — the ambiguity-flag
class of bug that bit #2514. SCIP reaches the same place with its
document-scoped `local <id>` keyspace.
Top-level functions and class methods are NOT locals and keep their ids
byte-for-byte. That is the bound on the churn: this touches only symbols that
are unreachable from outside their own document anyway.
RESOLUTION JOINS BY POSITION, NOT BY NAME. `resolveDefGraphId` matches a def
to its node on (file, label, line, simple name). A def and its node are the
same construct, so this needs no scope chain at all — which is the point:
re-deriving the chain in the resolver would be a second implementation that
could silently disagree with the first. A genuine tie (two callables on one
line) stores an AMBIGUOUS_POSITION tombstone and falls through to the existing
name keys rather than picking by source order. Without this the node ids were
already correct and calls STILL resolved to the file-level symbol — the fix is
only half a fix without it.
JS/TS GAIN BLOCK SCOPES. They emitted no `@scope.block` at all, so the
resolver could not tell two `const pick` in sibling branches apart. Giving
them distinct ids made that visible as DUPLICATE edges — each call resolving
to BOTH — which is worse than the collapse it replaced. `(statement_block)
@scope.block` supplies the missing environment record. The other half of the
ECMAScript rule was already implemented and waiting: `tsBindingScopeFor`
hoists `var` past blocks to the enclosing Function/Module while `let`/`const`
bind innermost, and its docblock already claimed "the innermost default covers
these" for block scopes that did not exist. All 82 scope-resolution test files
pass with blocks on.
Verified by probe, per case: two locals in different functions, a local inside
an ANONYMOUS function (`outer.fn@1:9.save@2:4`), sibling blocks resolving to
their own binding, `var` still hoisting out of its block, a nested named
`function` vs a file-level one, PHP composing with the `$` sigil from #2693,
and Python. Top-level/method ids unchanged, asserted directly.
Every assertion is on the EDGE, not on node existence. Ids are built twice and
independently — definition phase and caller attribution — and a one-character
disagreement makes the caller attach to a node that does not exist and the
edge vanish, with nothing thrown and no test failing. An edge assertion can
only pass if both phases agree.
INVALIDATION. INCREMENTAL_SCHEMA_VERSION 17 -> 18 and SCHEMA_BUMP 24 -> 25:
persisted node ids change for every function-local callable, and the cached
scope tree lacks block scopes. A top-up would leave unchanged files on the old
ids while changed files emit the new ones, splitting each symbol in two.
Bench fingerprint unchanged and both timing budgets pass. The one full-suite
failure (incremental-orchestration) passes in isolation — its log shows stale
init locks and WAL reclaim, i.e. LadybugDB contention under the parallel run.
Refs #2699
* perf(ingestion): emit block scopes only where they bind something (#2699)
Block scopes make `let`/`const` in sibling blocks distinct bindings, which is
what stopped a call in one branch resolving to both. Emitted naively — one
scope per `statement_block` — they also cost ~10% of analyze wall time, because
every scope-chain walk in every function then steps through levels that bind
nothing.
Two emit-side filters keep the semantics and drop the waste:
1. A block that IS a function body duplicates the enclosing Function scope.
Nothing can be declared between a function and its own body, so a binding
in either resolves identically — the inner scope is pure depth.
2. A block that declares no `let`/`const`/`class`/`function` binds nothing,
so it is transparent: a lookup finds nothing in it and walks to the
parent. `var` is deliberately excluded from that list — it hoists past the
block to the function, so a block containing only `var` still binds
nothing.
MEASURED, on a 762-file / 228k-line TypeScript corpus (gitnexus/src), min of 6
warmed reps with the cold first rep discarded:
block scopes emitted 19,389 -> 5,331 (-72%)
total scopes 35,942 -> 21,884 (-39%)
analyze wall time +9.8% -> +1.6-2.5% vs pre-#2699
peak RSS (whole tree) 2398MB -> 2434MB (+1.5%, inside run-to-run noise)
The filters themselves are free: scope emission over the same corpus measured
12.6s naive vs 12.5s filtered.
Wall-clock on a shared runner has a ±10% spread run to run, which is wider than
the effect being optimised, so the durable gate added here counts scopes
instead. `bench/scope-emission/measure.mjs --check` asserts an EXACT scope set
over a synthetic corpus that mixes the shapes the filters discriminate between
— function/method/arrow bodies, non-declaring if/else/for/while/try, blocks
that declare `const`, and a `var`-only block. Baseline is 2 block scopes per
module: only the two `if`/`else` branches that declare `const chosen`. If the
filters regress that number jumps immediately, in a way wall-clock CI could
never resolve from noise. Wired into the existing benchmarks job.
Behaviour is unchanged: 86 scope-resolution and identity test files, 1371
tests, all green — including the sibling-block case this could plausibly have
broken — and the callable-value-flow fingerprint is untouched.
Refs #2699
* test(bench): re-baseline the TS/JS scope-capture fingerprints for #2701
`bench/scope-capture` fingerprints the full capture set per language, and
#2701 added a `@receiver-owner.this` marker to every non-arrow function form
so a scope that BINDS its own `this` can terminate the receiver walk. That is
a capture-set change, so the TypeScript and JavaScript fingerprints moved and
the benchmarks job has been failing since that commit — I pushed it without
checking CI.
A fingerprint is a correctness gate, so this does not simply adopt the new
value. Verified first by diffing the capture-name HISTOGRAM over the same
fixture corpus against
|
||
|
|
d3d4fa31bb
|
fix(scope-resolution): gate C#/Kotlin free calls by instance ownership (#2563) (#2654)
Some checks are pending
CodeQL / Analyze (javascript-typescript) (push) Waiting to run
CodeQL / Analyze (python) (push) Waiting to run
Gitleaks / gitleaks (push) Waiting to run
Publish / Classify release event (push) Waiting to run
Publish / RC guard (marker + release-PR skip) (push) Blocked by required conditions
Publish / ci (push) Blocked by required conditions
Publish / Publish to npm (push) Blocked by required conditions
Publish / Build & Push RC Docker images (push) Blocked by required conditions
Scorecard / Scorecard analysis (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-cli) (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-web) (push) Waiting to run
* Initial plan * fix(scope-resolution): gate C# and Kotlin free calls * fix(scope-resolution): keep Kotlin ownership gate safe * Apply remaining changes * perf(scope-resolution): benchmark and cache ownership gates * test(scope-resolution): simplify benchmark scaling loop * refactor(scope-resolution): encapsulate ownership cache * test(scope-resolution): enforce subquadratic ownership scaling * fix(scope-resolution): address ownership review findings * test(csharp): regenerate capture golden for #2563 fixtures The committed expected-captures.json was missing the new NamespaceOwnerCollision.cs entry and carried a stale SameFileCases.cs digest/count (56 → 67), so csharp-captures-golden.test.ts was the sole red check on the PR. Regenerate with UPDATE_GOLDEN=1 to match the fixtures the bench fingerprint already reflects. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> Co-authored-by: Gergo Magyar <gergomagyar0@gmail.com> Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
||
|
|
47f3932c8c
|
chore(deps): bump actions/setup-node from 6.4.0 to 7.0.0
Bumps [actions/setup-node](https://github.com/actions/setup-node) from 6.4.0 to 7.0.0.
- [Release notes](https://github.com/actions/setup-node/releases)
- [Commits](
|
||
|
|
7f7255aef8
|
fix(analyze): load VECTOR before the incremental writeback touches embedding rows (#2623) (#2624)
* feat(lbug): add ensureEmbeddingRowDmlSafe VECTOR gate for embedding-row DML LadybugDB refuses every mutation of a table carrying an HNSW index while the VECTOR extension is not loaded on that connection: DELETE and CREATE raise a Binder exception, DROP TABLE is refused while the index references it, and SET segfaults the process. Dropping the index is not an available recovery either — CALL DROP_VECTOR_INDEX is itself a VECTOR-extension function and is undefined in exactly that state. Add a single primitive that loads VECTOR under the analyze install policy and, only when that fails, reads CALL SHOW_INDEXES (which works without the extension) to decide whether an index actually exists to trip over. No call sites yet. Refs #2623 Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(lbug): pin the #2623 VECTOR gate for embedding-row DML Three cases: no index + VECTOR unavailable stays safe (no needless escalation); index present + VECTOR unavailable is reported blocked AND the raw deleteNodesForFiles genuinely throws 'extension is not loaded' (proving the hazard is real, not theoretical); index present + VECTOR loadable is safe, the delete works, and the HNSW index survives — the invariant run-analyze relies on when it keeps the index across a surgical incremental run. Refs #2623 Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(analyze): load VECTOR before the incremental writeback touches embedding rows Incremental analyze died on every content change once a repo had built code_embedding_idx: Analysis failed: Binder exception: Trying to delete from an index on table CodeEmbedding but its extension is not loaded. The surgical writeback's first statement is deleteNodesForFiles' CodeEmbedding join-delete, but nothing on that path loaded VECTOR until Phase 4 — so the engine refused the delete. This is an ordering defect, not an environment one: it reproduces on machines where VECTOR loads fine. The dirty-flag recovery then forced a full rebuild on the next run, which is why it read as 'just slow'. Call ensureEmbeddingRowDmlSafe() once, before the escalation gate and before any row is touched — the same 'index lifecycle before row DML' seam dropSearchFTSIndexes occupies for FTS (#2589). Unconditional, because a DB carrying the index from an earlier --embeddings run hits the same wall on a plain incremental run. When VECTOR truly cannot load the table is immutable (the index cannot be dropped without the extension either), so the run falls through to the existing wipe-and-COPY escalation with a message naming cause, consequence and remedy. Fixes #2623 Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(analyze): pin the #2623 VECTOR-before-embedding-DML ordering end-to-end Sibling of the #2589 FTS drop-before-delete suite, same shape: drive the real runFullAnalysis incremental path over a real git repo and a real LadybugDB, seed real embedding rows, build the HNSW index, then assert the index state at the exact moment deleteNodesForFiles is invoked. Both cases were confirmed to discriminate — with the run-analyze change reverted they fail with the reported 'Trying to delete from an index on table CodeEmbedding but its extension is not loaded', and pass with it: - surgical path: the run completes, the index is still present AND extension_loaded at delete time, exactly one row per nodeId survives, and the untouched file's rows are preserved - blocked path: with GITNEXUS_LBUG_EXTENSION_INSTALL=never the run escalates to a full DB write and says so, instead of crashing Also applies prettier's reindent to the run-analyze log ternary. Refs #2623 Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(lbug): cite the pinned LadybugDB version in the #2623 probe note The probe matrix behind ensureEmbeddingRowDmlSafe was first recorded on 0.18.0, but gitnexus/package-lock.json pins 0.18.2 (#2587). Re-ran every case on 0.18.2: refused DELETE, refused CREATE, SIGSEGV on SET, DROP_VECTOR_INDEX undefined, DROP TABLE refused, SHOW_INDEXES readable with extension_loaded intact. Identical on both, so the design is unchanged — only the citation was wrong. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(analyze): preserve embeddings across the VECTOR-blocked rebuild, and check the catalog before loading Three follow-ups from reviewing the fix itself. 1. Data loss on the blocked path. Escalating wipes the DB files, and Phase 3.5 restores embedding rows from cachedEmbeddings — which deriveEmbeddingMode only populates when meta.stats.embeddings > 0. A DB holding embedding rows that its meta does not account for therefore had every vector destroyed silently by a rebuild it never asked for. Probe on a 3-file repo: 3 rows before, 0 after, no warning. Read the rows before escalating (a plain MATCH, no extension needed) so the existing restore has something to restore, and say so in the log. The blocked-path test now asserts the seeded rows survive exactly once, and that assertion fails without this rescue. 2. Catalog before extension. ensureEmbeddingRowDmlSafe loaded VECTOR first and only read SHOW_INDEXES on failure, so every incremental analyze on a machine without VECTOR paid a bounded out-of-process INSTALL attempt plus an 'extension unavailable' warning — including repos that never built an embedding index and can never hit this bug. One local catalog read settles that case first; the load is attempted only when an index actually gates DML, or when the catalog cannot be read. 3. Dead branch. targetConn is always the module singleton there, so the isSharedSingletonConn ternary could never take its second arm. Collapsed to withConnLock. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(doctor): live-probe the VECTOR extension instead of printing the static platform capability Review finding on #2624 (MEDIUM), and exactly what #2623's reporter hit: doctor printed 'VECTOR index: available' — derived from a static platform check — while every incremental analyze on the same machine was dying on an unloaded VECTOR extension. The FTS line was switched to a live LOAD probe for the identical contradiction under #2374; VECTOR now gets the same treatment. probeVectorExtensionLoad shares the FTS probe's implementation (bounded, offline-safe, never runs the installer) and doctor's semantic-mode line now follows the probe, not the platform: without a loadable extension the vector index can be neither built nor queried, so search really is on exact scan. The load-error classifier's remedies are label-parameterized so the VECTOR row stops dispensing FTS-specific advice — 'run analyze --repair-fts' repairs FTS indexes only and was actively wrong for a missing vector extension. Default label stays 'FTS'; every existing caller and pinned remedy string is unchanged. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(lbug): remove the stale Windows VECTOR gate — the extension ships for win_amd64 The codebase categorically refused VECTOR on Windows (platform !== 'win32' in isVectorExtensionSupportedByPlatform, plus a hard early-return in loadVectorExtension) on the strength of an early-era report that in-process INSTALL VECTOR could SIGSEGV (#1365). That belief is stale, verified directly: - the extension server hosts win_amd64 VECTOR artifacts for every 0.18.x extension version — v0.18.0 and v0.18.1 both serve a real 14 MB PE32+ DLL (curl-probed; 'file' confirms PE32+ x86-64) - the pinned 0.18.2 core resolves its extension directory to 0.18.1 (strace-verified LOAD open()), so the pinned version's Windows artifact exists too - INSTALL now runs in a spawned child (installDuckDbExtensionOutOfProcess), so even a crashing installer kills only the child and degrades to unavailable — the original hazard cannot reach the parent process any more Windows now takes the same runtime path as every other OS: try LOAD, install out-of-process when policy allows, degrade to exact scan when it truly fails. The MCP semantic-search lane loses its static platform gate too — it always attempts the vector index and falls back to the exact scan on runtime failure, with a once-per-backend diagnostic naming the real error instead of a platform-policy message. isVectorExtensionSupportedByPlatform is deleted; getRuntimeCapabilities reports the platform capability as available everywhere and defers machine truth to the live probe. Windows CI is the enforcement: the vector suites skip visibly only when the extension genuinely cannot load, so green Windows lanes now actually exercise VECTOR instead of silently skipping by policy. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(lbug): pin the catalog-read-failure fallback in ensureEmbeddingRowDmlSafe Review finding on #2624 (LOW): the one branch where the gate cannot cheaply prove safety — SHOW_INDEXES itself erroring — was exercised only by inference. Force it with a Connection.prototype.query spy over the real DB: the catalog read fails, and the gate must fall through to actually attempting the extension load (asserted via the recorded statement stream) rather than guessing, returning true here because the extension is loadable. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(mcp): load VECTOR on the pool's shared Database so the semantic vector lane actually works Review finding on #2624 (MEDIUM): extension load scope is per-Database (probe-verified — LOAD on one connection enables QUERY_VECTOR_INDEX on every connection of the same Database), and the pool pre-warm loaded only FTS. So LocalBackend's vector lane has ALWAYS raised 'Catalog exception: function QUERY_VECTOR_INDEX is not defined' through the pool and silently fallen back to the exact scan — repos above the 10k exact-scan cap got empty semantic results. The serve path was unaffected (the embedding pipeline loads the extension itself). Mirror the FTS line at BOTH load sites — doInitLbug's pre-warm and initLbugWithDb's external-Database adoption — under the same load-only contract (the read pool never triggers a network install), tracked by a new SharedDB.vectorLoaded flag reset where ftsLoaded resets. The new pool test is discriminating and deliberately closes the writable core adapter before the pool opens: a shared/injected Database would inherit the VECTOR load from test seeding and pass either way, so the case forces the pool onto its OWN fresh read-only Database where only the pre-warm can make the lane legal. Verified: fails at the pre-fix tree with the exact Catalog exception, passes with the fix. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * ci: run the #2623 ordering suite on Windows/macOS and pre-install VECTOR alongside FTS Two review findings on #2624, both landing in existing seams: - scripts/cross-platform-tests.ts gains incremental-vector-extension-ordering .test.ts: the win32 VECTOR gate is gone in this PR, so the #2623 drop-ordering + blocked-path escalation must be proven on the windows-latest native addon, not just Ubuntu. (The review's claim that lbug-delete-nodes-for-files.test.ts was also missing was wrong — it has been on the roster since #2409.) - scripts/ensure-fts.ts now pre-installs VECTOR under the same best-effort auto-policy contract, so every sharded CI process LOADs from ~/.lbdb instead of racing its own bounded out-of-process INSTALL; the workflow's extension cache already covers it (path is the whole extension dir — key kept for cache continuity). The cross-platform job sets GITNEXUS_REQUIRE_VECTOR=1 beside GITNEXUS_REQUIRE_FTS so a genuinely unavailable VECTOR is a loud failure, never a silent skip. Windows/macOS cannot be executed locally; the PR's CI lanes are the proof for this commit. Linux smoke: ensure-fts.ts reports both extensions ready; all 79 roster entries resolve. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(pool): register loadVectorExtension in the pool unit-suite mocks The pool adapter's new loadVectorExtension import surfaced in four suites that mock lbug-adapter.js with explicit factories (vitest fails loudly on a missing mocked export). Register the export in each — resolving false where the suite's world assumes no vector, true where it mirrors FTS — and extend lbug-pool-fts-load.test.ts, the suite that owns pre-warm extension loading, with the vector pair: successful load cached per shared Database, failed load retried on the next open, both pinned to policy load-only. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(analyze): use POSIX literals for graph paths in the #2623 ordering suite First Windows CI run of this suite (it joined the cross-platform roster this PR) failed with 'Parser exception: Invalid input <MATCH (n:Function) WHERE n.filePath = '>' — path.join produces backslashes on Windows, and a backslash inside the seed helper's single-quoted Cypher literal breaks the parser. The graph stores repo-relative filePaths with forward slashes on every OS, so graph-side paths are POSIX literals now (the incremental-orchestration convention); path.join stays only for real filesystem access. The same Windows lane also proved the substance this suite exists for: lbug-vector-extension passed 7/7 on windows-latest — the extension installed, loaded, and built a real HNSW index there — and the pool vector-lane and DML gate suites passed too. This commit fixes the harness, not the fix. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Gergo Magyar <abhigyan1.patwari@gmail.com> Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
||
|
|
eea9ac92dc |
ci: move Node pins to the 22.18 floor
With the supported minimum raised to Node 22.18, retarget every lane and pinned runtime that sat at a lower version so nothing builds or runs the package on an unsupported (EBADENGINE-warning) Node: - ci-tests.yml: node-floor-compat 22.14 -> 22.18.0 (name, comment, pin, version assertion) so the floor gate guards the new minimum; its #2372 registerHooks failure mode cannot recur above 22.15. Containment-canary pin 22.16.0 -> 22.18.0. - gitnexus-review-agent.yml + the pinned review/canary runtime: the reproducible runtime is version-locked in lockstep across .github/{gitnexus-review-runtime,claude-canary-runtime}/package.json and their lockfiles (engines), the workflow's node-version, its two 'node --version = v22.18.0' assertions, the lockfile-engines guard, and NODE_VERSION. Moved all of them 22.16.0 -> 22.18.0. - gitnexus-skill-evolution.yml: pinned runtime 22.16.0 -> 22.18.0. - CONTRIBUTING.md prerequisite floor updated. - review-agent-workflow.test.ts, which enforces the runtime lock, updated to expect 22.18.0. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
||
|
|
8b5057f325
|
feat(skills): GitNexus Engineering Tool Kits (#2566)
* feat(skills): add ce-plan — GitNexus+PDG implementation-planning skill Adds .claude/skills/ce-plan: a planning-only skill that builds implementation-ready plans from GitNexus graph navigation (query/context/ impact/trace), bounded statement-level PDG slices (pdg_query, impact mode:pdg, explain), and targeted source verification, with a context ledger to prevent repeated reads and a machine-readable implementation context pack (stable contract for a future ce-implement). Whitelisted in .gitignore and registered in AGENTS.md and CLAUDE.md outside the auto-managed gitnexus block. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(skills): apply ce-plan validation findings (tool contract, consistency, conventions) Tool contract: impact mode:'pdg' shape now includes the schema-required direction param; CDG branch sense documented as the result 'label' field (reason is cypher/raw-edge only); explain caveats corrected to its real false-negative classes (cross-function TAINT_PATH is modeled). Consistency: PDG slice homed in working memory (ledger keeps one-liners); depth knob defined and category-overrides-baseline ordering stated; call_depth (consumed by nothing) and content-hash bookkeeping dropped; Never section folded into Hard rules; Phase 3 deduplicated to a pointer; allowed-repeat escalations defined; budget/discard accounting clarified; verification-commands gathering added to Phase 4; open_questions added to the context pack. From scenario runs: plans now pin the verified-at HEAD commit and index freshness in a header, tag claims [verified]/[graph]/[inferred]/[assumed], quote load-bearing tool output, prefer pre-hook-carrying npm scripts, and support an out:<path> destination override; output path defined as the Phase 1 target repo root. Conventions: AGENTS.md 1.9.0 / CLAUDE.md 1.4.0 changelog rows + metadata bumps; future ce-implement qualified as future. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): rename ce-plan → gitnexus-plan; add cross-CLI (Codex) entrypoints Renames the skill dir, frontmatter, output filename convention, plan H1 (GitNexus Engineering Plan), the future executor handle (gitnexus-implement), the .gitignore whitelist entry, and all AGENTS.md/CLAUDE.md references. Follows the pr-swarm-review cross-CLI pattern: SKILL.md is the canonical CLI-neutral spec, AGENTS.md § Engineering planning is the Codex/any-agent entrypoint, and the README documents the optional user-level ~/.codex/prompts/gitnexus-plan.md slash command plus an invocation matrix. Skill prose de-branded from Claude Code (agent-neutral verification layer). Also fixes two post-review README contradictions: the anti-reread claim now names the ledger's allowed escalations, and 'read-only by contract' is now 'planning-only' (the skill writes exactly one repo file — the plan); the scope-creep rule and template §12 now agree on where deferred follow-ups land. Drops the stale plugin-collision limitation. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(skills): document Codex user-level install path for gitnexus-plan Codex discovers SKILL.md skills from ~/.agents/skills (same path the other gitnexus-* skills install to); README now documents the cp install plus the optional ~/.codex/prompts slash-command file, with the prompt body preferring the repo copy and falling back to the user-level install. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): gitnexus-plan freshness gate + active PDG-layer refresh Freshness is now a Phase 1 gate, not advisory: under the default freshness:strict, a stale index is refreshed once per planning session via node .gitnexus/run.cjs analyze --index-only (appending --pdg when the task will reach the PDG phase), then the context resource is re-read. A missing PDG layer likewise triggers the one permitted --index-only --pdg refresh and re-probe instead of a passive recommendation. freshness:accept (or a failed/impractical refresh) preserves the old behavior: plan on the stale graph, source-weighted, labelled in the plan header. --index-only is the load-bearing flag choice — it suppresses all file generation, so the planning-only contract holds (only the .gitnexus store changes). Ledger gains an index_refresh record; plan header states fresh / refreshed / refresh-skipped-with-reason. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): gitnexus-plan runner build check before freshness refresh When the target repo builds the analyzer from its own source (bin → dist/ mapping, as gitnexus/ does), the Phase 1 freshness gate now verifies dist/ is current before running the analyze refresh — rebuilding via the package's build script when any analyzer source file is newer than the built entrypoint — and prefers that freshly built CLI. Otherwise a stale dist re-indexes with outdated extraction logic and the 'fresh' index lies. Rebuilds are recorded in the ledger's index_refresh; the PDG-phase refresh inherits the same check. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): add gitnexus-work executor and gitnexus-lfg pipeline gitnexus-work executes a gitnexus-plan as verified atomic commits: consumes the §11 implementation_context pack, drift-checks the plan's evidence pin against HEAD, re-verifies assumptions before relying on them, runs impact before every symbol edit and detect_changes before every commit (repo mandates), builds tests from the plan's scenarios, and routes structural drift back to gitnexus-plan Deepen mode instead of coding around it. gitnexus-lfg is a thin orchestrator: gitnexus-plan → blocking user gate (deepen / proceed / stop, deepen loops allowed) → gitnexus-work → review via the existing gitnexus-pr-review skill (open PR, else branch diff vs default). One bounded fix cycle for review findings; never pushes or opens a PR on its own. gitnexus-plan gains a Deepen mode (re-run freshness gate, escalate to depth:deep, re-verify graph/inferred/assumed claims toward verified, rewrite the same file); its 'future gitnexus-implement' placeholder is retired in favor of gitnexus-work. Registered via .gitignore whitelists, AGENTS.md 1.10.0 (section renamed to Engineering planning & execution), CLAUDE.md 1.5.0. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(skills): apply cross-skill review findings to the gitnexus skill family Two P1s: gitnexus-plan Deepen mode now re-anchors before re-pinning (diffs the old evidence pin over every [verified]-claim file and re-reads or downgrades before the header moves — moving the pin without this laundered stale claims as verified); the index-refresh budget is stated once in Phase 1 (one --index-only refresh plus at most one Phase 3 --pdg upgrade per session, Deepen = its own session) with ledger and pdg-slice deferring to it. Contract fixes: gitnexus-work's drift check now covers every file the pack cites (not just files_to_modify) and parses the full pack incl. primary/related symbols and acceptance_criteria (walked in Phase 4 alongside §13); a pre-completed check skips §7 steps already landed and Deepen gains a reconcile-execution-state step, closing the mid-execution route-back loop; pack assumptions must name what to check and how. lfg: Lane 4 passes the merge-base to detect_changes compare (two-dot diff misattributes upstream commits when default advanced), branch-diff is the stated normal case, oversized review findings route to the plan gate instead of overflowing direct mode, the one-fix-cycle cap is explicit on re-run, and headless runs end at the plan gate with the plan as deliverable. work: blank mode narrowed to *gitnexus-plan*.md with a re-execution guard, direct-mode discipline spelled out, branch meaningfulness defined against the plan slug, and the plan document is committed as the branch's docs commit (review diff includes it). Planning-only contract now names the dist/ rebuild as the second permitted state change; Phase 5.1 names the four claim tags; stale AGENTS.md anchors fixed. Known latent issue left untouched: gitnexus/gitnexus-pr-review pairs a three-dot example with a two-dot detect_changes compare — that skill is also shipped by the plugin, so fixing it here would drift the copies; lfg compensates by passing the merge-base. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): ship the engineering skill family with the gitnexus package npm i -g gitnexus users now get gitnexus-plan / gitnexus-work / gitnexus-lfg: the three skills are added to gitnexus/skills/ in directory form (SKILL.md + references/), which installSkillsTo already enumerates dynamically and copies recursively to every editor target (~/.agents/skills for Codex, Cursor, OpenCode, Qoder, ...) on gitnexus setup — uninstall enumerates the same root, so removal stays clean. The Claude Code plugin channel (gitnexus-claude-plugin/skills/) carries the same copies plus the standard per-skill mcp.json. Global-install support in the skill text: gitnexus-plan Phase 1 now resolves the analyzer runner explicitly — node .gitnexus/run.cjs analyze when the project has a runner, else gitnexus analyze (installed CLI), else npx gitnexus analyze — and all analyze mentions route through it, satisfying the skills-steering policy (#1939/#1945) which sweeps the plugin copies. New drift guard test/unit/shipped-skills-sync.test.ts asserts the npm and plugin copies stay byte-identical to the canonical .claude/skills/ family (plugin = canonical + mcp.json), same discipline as run.cjs ↔ resolve-invocation.ts. skills-steering + shipped-skills-sync: 11/11 green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(eval): workflow_bench — measure the skill workflow's token savings Benchmarks gitnexus-plan → gitnexus-work against a baseline agent (--disallowedTools Skill) on identical tasks, in fresh detached worktrees, using real headless Claude Code sessions; every number comes from the CLI's --output-format json usage report (field names validated against a live 2.1.207 session). Reports per-arm medians (input/cache/output tokens, cost, wall time, turns), a savings row, and resolve status from a per-task verify command — savings on failed tasks are flagged, not celebrated. Per-task setup hook prepares fresh worktrees (deps); --permission-mode bypassPermissions (default) lets sessions run unattended in the throwaway trees. Free-model support: --base-url/--auth-token/--model route headless sessions through any Anthropic-compatible endpoint; free-model.litellm.yaml is a ready litellm-proxy template for OpenRouter :free variants or local Ollama, so benchmarking burns no paid tokens (README documents rate limits and the small-model skill-following caveat). Harness validated end-to-end with a stub CLI (worktree lifecycle, both arms, plan→work chaining, verify, aggregation, report) and 4 pytest units for the pure aggregation/savings/report helpers. AGENTS.md 1.11.0. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(eval): record first workflow_bench calibration run Trivial-task calibration (add -V alias): both arms resolved; workflow arm ~4.3x baseline cost — the documented overhead-dominated regime, recorded so the regime boundary is empirical rather than asserted. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(eval): workflow_bench scenario matrix — arm variants, task classes, churn Ground-base measurement across scenarios: tasks.scenarios.yaml spans four labeled classes (trivial → investigation-bug → investigation-feature → cross-module) with deterministic verifies (prescribed test files). New arms: workflow_direct (gitnexus-work direct mode — the middle option that locates the routing boundary lfg's gate and work's triage encode) and baseline_nomcp (no skills AND no graph tools — separates workflow-discipline value from GitNexus-tool value; off by default). Records now carry task class and diff churn (files/+ins/−del vs the starting commit) as an over-engineering proxy; the report renders a class column and per-arm savings rows vs baseline. 5 pytest units + stub-CLI e2e of the full three-arm matrix. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(eval): record workflow_bench ground base; fix churn measurement bias Ground base (3 classes x 3 arms, n=1/cell): every arm resolved every task — pass/fail quality saturates at this difficulty, making the comparison pure cost. Full plan→work never amortized its ~$9-11 fixed cost on tasks a baseline finishes in ≤35 turns (−211% to −333% cost); workflow_direct sits near baseline (−15% to −55%, once faster wall) with more test coverage. Routing implication recorded: direct mode/plain agent below this scale, full workflow for cross-module / multi-session / plan-as-deliverable work. The cross-module cell and multi-run variance are the next measurements. Churn fix: git add --intent-to-add -A before diffing (arms that never commit no longer undercount new files) and :(exclude)docs/plans (the committed plan doc no longer inflates workflow churn); this run's churn numbers predate the fix and are omitted from the recorded table. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * perf(skills): cost-optimize the workflow from measured ground base Every optimization targets a measured fixed-cost component (eval/workflow_bench ground base: workflow arm −211% to −333% vs baseline, all tasks resolved): - Plan form is category-priced: compact form (core sections w/ § anchors preserved, ≤80 lines excl. pack, mini-pack subset of the context pack) for narrow/default categories; the full 13 sections only for deep work (refactor/security/performance/concurrency/architecture). A compact plan outgrowing its cap reclassifies to full rather than overflowing. - Freshness gate is category-priced: compact categories default to accept (source-weighted, refresh only when a graph claim becomes load-bearing); strict stays the default for full-plan categories — the rebuild+re-index was the largest single fixed cost. - Turn economy: per-category tool-call budgets (~10 to ~45; architecture uncapped); budget exhaustion routes open questions to §12 instead of more digging. - gitnexus-work fast path: HEAD == evidence pin → skip all citation re-reading (the pin's entire point); mini-pack fields tolerated. - lfg Lane 1 boundary triage: tasks below the measured ~35-turn boundary get offered gitnexus-work direct mode before the plan lane is spent. Copies re-synced (npm skills/, plugin, ~/.agents); steering + sync guards green. Re-measurement of the workflow arm follows to verify the numbers actually improve. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(eval): record optimization re-measurement — inv-bug workflow cell −20% cost Same task, same conditions, post-830a0459 skills: $14.56→$11.70 (−20%), 83→72 turns, cache_read −24%; verified in-transcript that the compact form, turn budget, and skipped rebuild/re-index all fired. Wall +15% from a work- session test-debugging tail (n=1 variance). Regime unchanged (~3.5x baseline on this class) — routing rule stands. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(eval): per-arm clone isolation — worktree ref-namespace leak contaminated an arm The cross-module workflow_direct cell reported an impossible 28-turn solve with churn byte-identical to the workflow arm: git worktree add shares the repo's ref namespace, so the workflow arm's slug branch (created by gitnexus-work Phase 2) survived worktree removal and the direct arm found and adopted the completed work. Arms now get isolated git clone --shared copies (object store via alternates, refs clone-local — agent branches and stashes die with the clone; origin/<ref> fallback for non-default refs). Leaked branch deleted; baseline arm verified clean (0 branch references in its transcript); cell marked invalidated pending re-run. Records the valid cross-module cells: workflow $18.32 vs baseline $18.03 (premium −1.6%, vs −211%..−333% on smaller classes) — fixed costs amortize at this scale, with a less destructive diff and a plan artifact as bonus; resolve rate still tied. Churn fingerprinting is what caught the contamination — noted in the README as an integrity check. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(eval): complete cross-module cell — direct mode wins 47% cost / 56% wall Clean clone-isolated re-run: workflow_direct resolved the hardest class at $9.53/52 turns/15m vs $18.03/98/34m baseline and $18.32/107/37m full workflow. The measured story across all four classes: the execution discipline (gitnexus-work) is the consistent sweet spot and delivers real token savings on hard tasks; the planning pass buys its artifact, not same-session savings. Resolve rate tied everywhere (n=1/cell caveat). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(eval): add trajectory-gated skill evolution (#2431) - Pair prompt candidates with incumbent workflow arms - Gate promotions on pinned-model quality and efficiency - Expire router evidence and document its lifecycle * fix(eval): allow pr-review skill candidates * feat(skills): rename and generalize GitNexus review * feat(eval): external-comparator and review arms for workflow_bench - ce_workflow / ce_workflow_direct: compound-engineering ce-plan/ce-work arms prompted with the same structure as the gitnexus arms - review / ce_review: gitnexus-review vs ce-code-review on an identical diff applied by the task's setup - plan handoff is snapshot-based: committed example plans in docs/plans/ tie on clone mtimes and broke the name-glob pick (executed a stale plan) - verify output tail is recorded per run and the final working-tree patch is kept, so failed rows are diagnosable after the clone is destroyed Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(skills,eval): address #2431 review — data-safe rename migration, fail-closed bench evidence - setup: never delete a legacy renamed skill dir — the installer cannot prove ownership (users customize or hand-write skills under these names); warn with the path instead, and the test now asserts survival - workflow_bench: fail closed when a session's --output-format json report is empty, malformed, or missing usage fields — an exit-0 shell with no parseable usage no longer counts as measured evidence (5 parametrized regression tests) - workflow_bench: document the trust model prominently (task setup/verify are shell-executed, sessions run bypassPermissions with the parent env, candidate overlays are prompt injection surface) in README + docstring - free-model.litellm.yaml: master_key from LITELLM_MASTER_KEY env instead of a static token; loopback-binding warning - ci: run the eval workflow_bench pytest suite on ubuntu (pytest+pyyaml only — no full eval stack) Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(eval): demand observed foreground verification in headless work-arm prompts In a headless -p session there is no later turn: a work arm backgrounded its slow test run, scheduled wakeups that can never fire, and reported done while two of its tests failed. All four work-arm prompts (both skill families, symmetric) now require verification output to be observed inside the session. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): ask plan depth up front instead of offering deepen afterwards gitnexus-plan Phase 0 now asks one blocking question in interactive sessions — quick / standard / deep, mapped onto the existing depth/form/ freshness knobs — when the invocation carries no explicit depth signal. Explicit knobs and headless runs skip the question (category posture unchanged, so benchmarks and automation behave as before). gitnexus-lfg's plan gate slims to proceed/stop: depth was already the user's up-front choice, so deepening is no longer offered by default — an explicit deepen request at the gate and executor route-backs still run Deepen mode, which remains the mechanism for strengthening an existing plan document. All shipped copies resynced (npm skills/, Claude plugin); AGENTS.md 1.13.0 and CLAUDE.md 1.7.0 pointers updated, including the analyzer's regenerated index-stats block at this branch's head. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): taint pass, expert lenses, and post-work index refresh gitnexus-review gains a PDG-backed taint-and-dependence pass (explain + pdg_query, --pdg folded into the stale refresh on trust-boundary diffs) and an Expert lenses section: domain reviewers derived from the graph's clusters plus four cross-cutting lenses (architectural fit, language conformance per the repo's own contract, Definition of Done, simplicity), dispatched once after the evidence-gathering steps and scaled to the diff. gitnexus-work Phase 4 now refreshes the knowledge graph after the DoD walk via the resolved-runner ladder with analyze --index-only, so the lfg review lane and later sessions query the finished work without dirtying the tree. lfg's threshold-governance paragraph moves to its README; eval citations are tagged as measured in the GitNexus repo. All shipped copies re-synced. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(cli): remove legacy gitnexus-pr-review on uninstall; cover the rename migration uninstall's removal set now includes LEGACY_SKILL_DIR_NAMES derived from RENAMED_SKILL_DIRS, so a pre-rename install is cleaned up instead of orphaned. The rename warning gains behavioral coverage (fires with a legacy dir present, silent without), and shipped-skills-sync asserts legacy names stay absent from every shipped tree. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(eval): metric provenance, error-kind rows, skill-invocation verification, gate noise floor The promotion gate defaults to cost_usd (the only metric that includes subagent spend); token metrics carry an explicit main-loop-only warning in the report and promotion.json. Rows are classified by error_kind (session-error / verify-failed / infra-error), excluded from efficiency medians, and the gate requires equal valid-run counts. Each session's transcript is scanned for the expected Skill invocation and fails closed on a verified miss; a one-run resolution edge no longer promotes (noise floor). Per-run timeouts and setup failures record an infra-error row instead of aborting the sweep. Overlays touching skills no candidate arm exercises are rejected up front. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs: fix skill routing paths, version headers, and skill rosters Routing tables point at the tracked direct skill paths (matching the post-#2434 generator output), AGENTS.md/CLAUDE.md headers match their latest changelog rows, the 1.12.0 row describes what the migration actually does, package/cursor READMEs list the full shipped skill roster, and the swarm READMEs describe /gitnexus-review's expert lenses instead of calling it single-agent. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * ci: drift-guard workflow for skill copies; pin eval pip deps; track docs/plans ci.yml ignores '**.md', so an md-only skill edit would merge without the shipped-skills-sync test running — skill-sync.yml triggers exactly on the guarded trees. The eval job's pip install is version-pinned, and docs/plans/ is unignored so gitnexus-plan output can be committed. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(ci): keep the runner-invocation literal in gitnexus-review; add concurrency block to skill-sync skills-steering requires skills with a stale-index hint to carry the exact 'node .gitnexus/run.cjs analyze' form — restore it with the fallback ladder as a parenthetical instead of replacing it. skill-sync.yml gains the top-level concurrency block the workflow-convention check enforces. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(skills): token-economy guidance for expert lenses Merge lenses that ground in the same material into one reviewer, and use cheaper model/effort tiers for mechanical lenses where the harness offers them, reserving the strongest engine for adversarial judgment. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * test(eval): isolate transcript home on Windows Ensure workflow_bench transcript tests set USERPROFILE alongside HOME so Path.home() resolves to the temporary test home on Windows. * docs(skills): fold PR #2522 execution learnings into review/work/plan Eight incident-backed hardenings from running the full skill cycle (review -> plan -> work, 28-finding fix series) on PR #2522: gitnexus-review: - Expert lenses execute the code under review on candidate failing shapes (empirical probe outranks source reading — every HIGH the language lenses found came from a probe, not a read). - Step 7 re-runs the exact CI check for refreshed baselines/fingerprints (a stale committed artifact is invisible in the diff; caught a red benchmarks arm). - Step 8 treats version/invalidation constants as review surface (INCREMENTAL_SCHEMA_VERSION class recurred verbatim from #2494). gitnexus-work: - Step 4 proves regression tests discriminate against the pre-fix tree. - Step 5 rebuilds executed build output before every verification run (parse workers load dist/; a correct fix 'failed' until rebuilt). - Step 6 makes stage -> detect_changes -> commit one unbroken sequence. gitnexus-plan: - Phase 0 seeded-evidence mode: plan FROM a completed review's verified findings instead of re-running the graph ladder. - Template §7: fingerprint/golden-guarded output rebaselines once, at the series tip. All distribution copies resynced; shipped-skills-sync + skills-steering 24/24 locally. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(eval): close the skill-evolution loop with an automated proposer driver workflow_bench.evolve adds the three arrows the README described as manual: a proposer session that turns loser trajectories (results.jsonl rows, transcripts, patches, the learning queue) into ONE bounded candidate overlay, a driver that iterates propose -> paired benchmark -> deterministic gate up to --generations, and an --apply step that copies a promoted overlay onto the canonical skills and shipped mirrors as a working-tree diff. The trust boundary is unchanged: overlays re-validate through candidate_overlay_files before any benchmark or apply consumes them, and committing, CI, and the PR merge stay human. learnings.jsonl is gitignored: it is machine-local evidence, like the session transcripts it complements. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(skills): route live-task friction into the evolution learning queue Each family skill gains a short 'Skill feedback' section: on friction with the skill's own instructions, append one JSON line to eval/workflow_bench/learnings.jsonl (GitNexus repo only) — never self-edit the skill from a live task. The proposer in workflow_bench.evolve consumes the queue as hints; a learning reaches a shipped skill only by beating the incumbent on the paired benchmark. All shipped mirrors re-copied byte- identical. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * ci(tests): run the evolve helper tests in the eval pytest job test_evolve.py needs only pytest+pyyaml, same as the harness tests the job already runs — without this line the new module had no CI coverage. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(ci): comment-triggered GitNexus review agent for PRs '@gitnexus review' from a maintainer (OWNER/MEMBER/COLLABORATOR; the action re-validates write access) runs the repo's gitnexus-review skill headlessly against the PR and posts the review as a sticky comment — remote triggering with no local setup. Read-only by construction: contents: read token, Write/Edit and web tools disallowed, Bash allowlisted to git reads and the gitnexus CLI; analyze parses PR code with tree-sitter, never executes it. Requires the ANTHROPIC_API_KEY repository secret; activates once the file is on the default branch. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(ci): dispatch lane + existing OAuth secret for the review agent Align with claude.yml: same action pin and the CLAUDE_CODE_OAUTH_TOKEN secret the repo already carries — no new secret to configure. Add a workflow_dispatch lane (PR number input) so the agent can be triggered from the Actions UI and tested before the issue_comment trigger reaches the default branch. Allowlist gh pr view/diff and gh api, which the review skill uses to pin PR SHAs. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(ci): close a fork-PR RCE vector in the review agent's tool allowlist A live headless run of the exact workflow session against PR #2431 (66 turns, full gitnexus-review pass) surfaced a real HIGH-severity confused deputy: .gitnexus/ is gitignored, not blocked — a fork PR can commit its own .gitnexus/run.cjs, issue_comment checks out PR-head content, and the skill's runner ladder tries 'node .gitnexus/run.cjs analyze' first. That would execute fork-controlled JS inside a job holding CLAUDE_CODE_OAUTH_TOKEN and a write-scoped GITHUB_TOKEN — the opposite of the 'PR code is read, never executed' claim in the workflow's own header. Fix: drop the run.cjs allowlist entry so analyze always resolves through npx gitnexus (npm registry, not the checked-out tree); the skill's documented fallback mode covers the resulting graceful degradation. Also drop 'gh api' (not read-only — accepts -X POST/PATCH/DELETE) and downgrade pull-requests: write to read (comment posting only needs issues: write; the prompt already forbids formal review submission). Same session flagged a latent evolve.py bug: select_evidence's cost sort used dict.get's missing-key default, which doesn't cover an explicit JSON null in a foreign --seed-results row and crashes proposer setup with TypeError. Guarded with 'or 0.0' and added a regression test. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix: harden PR review and evolution trust boundaries * ci: follow workflow concurrency convention * fix(eval): make terminating error paths explicit * fix: unblock hardened review runtime checks * test: make containment canaries deterministic * test: expose Claude canary tool failures * fix: adapt clean shell environment for Claude * fix(eval): accept the runner's transcript source key in evidence preflight The proposer evidence preflight required transcript-artifact metadata to be exactly {path, sha256, bytes}, but the runner stamps a fourth provenance key (source=parent-captured-stream-json). Any --seed-results or generation>=2 run therefore aborted with SandboxError before proposing or promoting. Pin the producer literal as PARENT_EVENT_STREAM_SOURCE and validate it in the metadata check, and round-trip real producer output through sum_sessions into the preflight so the schema can't drift again. * fix(eval): treat an unmeasured session cost as unavailable, not $0 well_formed validated only the nested usage block, so an otherwise-successful session missing total_cost_usd was recorded as cost_usd=0.0 — and cost_usd is the default promotion metric (lower wins), so a cost-less session scored as free and could win promotion it never earned. Extract cost via measured_cost() (None on absent/garbage, a measured 0.0 preserved), propagate None through sum_sessions/aggregate/savings/report, and have the gate refuse to rank on a metric that was not measured on every run in both arms. * fix(eval): warn when ranking on the main-loop-only num_turns metric num_turns comes from the CLI's top-level usage (main-loop session only), like output_tokens, but selecting it emitted no metric_warning — so a subagent-heavy candidate could look artificially efficient. Add num_turns to MAIN_LOOP_ONLY_METRICS and broaden the warning to cover turns. * fix(eval): fail closed when an overlay adds a file with no committed base An overlay adding a new .md under gitnexus-{plan,work} passes the structural overlay checks but has no committed base for committed_destination_base_digests to bind against, so it raised an uncaught ValueError that crashed the evolve driver (and runner --candidate-overlay) mid-run. Catch it at both call sites: evolve reports NOT PROMOTED and exits, runner routes it through parser.error. * feat(eval): circuit-break the runner sweep on a systemic outage A sustained upstream outage used to pay out every remaining --timeout window one session at a time. Track consecutive session/infra/cleanup failures via a pure systemic_outage_streak helper; after --outage-streak (default 5) in a row, stop the sweep, still write report.md/promotion.json from partial evidence, and exit non-zero so evolve.py halts instead of proposing from truncated evidence. A task's own resolved=False never trips the breaker. * fix(cli): report a dirty working tree as stale in gitnexus status status --json (and the human output) computed up-to-date from commit + runner identity + completeness only, so a repo with uncommitted source changes at a matching HEAD was reported up-to-date while analyze would still re-index it. A graph-backed agent gating on that JSON could skip re-analysis on a stale graph. Extract analyze's dirty-tree check into a shared isWorkingTreeDirty() in storage/git and fold it into the status freshness decision. * fix(ci): use single-slash deny globs in the review agent's disallowedTools github.workspace already expands to an absolute path, so Read(/${{ github.workspace }}/**) and Read(//proc/**),(//sys/**),(//dev/**) produced double-slash patterns that a normalizing matcher may not match — silently no-opping the deny layer. Not exploitable (the allowlist is the primary control and never grants those paths), but the globs should be well-formed. Update the pinned test strings. * ci: install gitnexus-shared with npm ci from the committed lockfile The gitnexus-shared build floated its deps via npm install in three workflows (skill-sync, ci-tests, and — most importantly — the release publish.yml) while every other install step uses npm ci. The lockfile is committed and in sync, so switch all three to npm ci for reproducible, locked installs. * test(cli): make the shipped-skills drift guard reject symlinks listFilesRecursive walked with readdirSync and snapshotDir read with readFileSync, both of which follow symlinks — so a mirror file symlinked to the canonical tree passed the byte-compare (and a symlinked mirror dir would be followed too). Reject a symlinked root via lstat and any symlinked entry via Dirent.isSymbolicLink, with negative tests (skipped on Windows). * test(eval): guard the candidate-skill vs mirror-root coverage invariant MIRROR_SKILL_ROOTS omits the Cursor tree, safe only because no candidate skill is cursor-shipped. Pin that invariant: every CANDIDATE_SKILLS entry must exist under canonical + every mirror root and must not ship to Cursor, so adding a cursor-shipped skill to the candidate set (the PR #2488 asymmetric-sync class) fails loudly instead of syncing three of four trees. * docs(ci): describe the review agent's staged post-merge rollout The DoD asked for a dry-run or triggered run before merge, but an issue_comment (or newly added workflow_dispatch) workflow only ever executes the default-branch copy, so it cannot be exercised from the PR that introduces it. Reword the DoD and the activation checklist to a staged rollout: merge registered-but-disabled, validate same-repo and fork execution post-merge, then enable the variable. * fix: pin plugin skill mcp.json to the release version via #2445 tooling The ten plugin skill mcp.json launched `npx -y gitnexus@latest mcp` on every skill connect — non-reproducible and a supply-chain surface, and (unlike the persisted setup config) never pinned. Extend sync-plugin-manifests.mjs with an mcp surface kind that stamps the gitnexus@<version> launch arg, pin all ten to 1.6.9 now, and keep them byte-identical so the drift guard stays green. The release lifecycle + publish.yml --check now re-stamp them like the four manifest surfaces; only READMEs stay on @latest as docs. * test(eval): prove the proposer's built-in file tools are confined The real-Claude canary only exercised Bash + MCP, so it proved process/MCP containment but not that the proposer's built-in file tools stay inside their mounts. Add a canary over the exact PROPOSER_ALLOWED_TOOLS surface and the same read-only /evidence mount as run_proposer (allowlist extracted to a shared constant so it can't drift): Read reaches /evidence, a Write into the read-only evidence mount is denied, and a Write lands in the output tree. * fix(eval): apply the candidate overlay after task setup for fair arms The candidate overlay was applied before the task's untrusted setup ran, so setup could observe candidate prose and the incumbent/candidate arms started from different pre-overlay state. Reorder within the sandbox: capture the base (pre-overlay) skill digest, run setup against the base skills, verify setup did not tamper them, then apply the overlay and capture the post-overlay digest the model must preserve. apply_candidate_overlay stages path-specific overlay files, so setup's uncommitted changes stay out of the baseline and churn is unchanged. Graph freshness for the review arm is handled by the status dirty-tree fix plus the review skill's stale-triggered re-index, not by reordering the cached per-task-sha graph materialization (which is mechanically blocked). * test(eval): end-to-end containment proof of the autonomous proposer Drives the real run_proposer through bubblewrap with a deterministic scripted model (no paid API): it reads the read-only evidence bundle and writes a candidate gitnexus-plan skill edit plus a rationale into the sandbox output tree; run_proposer enforces the trust boundary and copies only the validated overlay + proposal out. This exercises the autonomous-proposal stage of the self-evolution loop end-to-end in the eval/containment CI job (the gate and apply stages are covered by test_workflow_bench_evolution and test_promotion_apply). Env-gated on GITNEXUS_REQUIRE_CLAUDE_CANARY, so it runs only where the pinned Claude binary and user namespaces are available. * fix(eval): let the proposer author its overlay via Bash Running the end-to-end proposer canary in the containment CI job surfaced a real bug: run_proposer starts the session with --bare, which hard-disables the Write/Edit tools ("Write exists but is not enabled in this context"), yet allowlisted Edit/Write and omitted Bash. The proposer therefore had no working way to write its candidate overlay — the self-evolution loop could never produce a candidate. The sandbox settings already pre-authorize Bash (autoAllowBashIfSandboxed) and confine writes to workspace/tmp/home, so switch PROPOSER_ALLOWED_TOOLS to Read/Grep/Glob/Bash and tell the proposer to author files with Bash. The end-to-end test now drives the real run_proposer through bubblewrap and asserts a validated overlay + proposal are produced (this also replaces the earlier file-tool canary, whose Write/Edit premise was moot). * test(eval): author the proposer overlay with newline-free Bash content The nested shell-sandbox prefix mangles embedded newlines, so the multi-line overlay content never landed. Use single-line content for the deterministic proposer canary. * test(eval): drop the unverifiable end-to-end proposer canary The scripted proposer overlay never materialized in the containment job across runs, and the model tool-result content is not visible in CI logs, so the test cannot be finalized without an environment where the sandbox can actually run. Keep the verified production fix (Bash-authoring in run_proposer); the proposer sandbox/containment stays covered by the existing Bash+MCP and process-tree canaries. * test(cli): drop run-analyze.ts from the windowsHide spawn-family list U7 moved run-analyze.ts's only child_process call (the git status --porcelain dirty check) into storage/git.ts (already covered by this test, with windowsHide). run-analyze.ts no longer imports a spawn-family function, so the windowsHide-regression test's 'must have >=1 spawn call' invariant failed for it. Remove it from SRC_FILES. --------- Co-authored-by: Claude Fable 5 <noreply@anthropic.com> Co-authored-by: Zander Raycraft <zanderjraycraft@gmail.com> Co-authored-by: Azizur Rahman <azizur100389@gmail.com> |
||
|
|
573a777ef5 |
ci(tests): widen the Windows shard watchdog and keep exit diagnostics (#2449)
The busiest Windows platform shard reached 14m57s against the 15 minute watchdog on the rc.19 green run and has timed out once since. CI now sets GITNEXUS_CROSS_PLATFORM_TIMEOUT_MINUTES=20 (the job timeout stays 25), the stale comfortably-under comment reflects reality, and the runner always logs status, signal, spawn code and elapsed time so the next status-null death is diagnosable. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> |
||
|
|
f236be05e0
|
feat: gate Icebug community engine prototype (#2376) | ||
|
|
8402963198
|
fix(ci): shard platform-sensitive matrix + spawn built CLI to fix Windows cross-platform timeout (#2394)
* fix(ci): shard platform-sensitive matrix + spawn built CLI to fix Windows cross-platform timeout The `windows-latest (platform-sensitive)` job was hitting its 15-min internal vitest watchdog in run-cross-platform.ts. It's cumulative slowness, not a hang: the fixed 72-file suite is dominated by ~50 CLI/worker process spawns, and Windows is ~5x slower than macOS at process startup (macOS ran the same set in ~3min of tests). Two complementary changes bring it back under the watchdog with headroom, without touching any test assertion: - Shard the platform-sensitive matrix (windows/macos × shard [1,2]) and forward `--shard=i/2` through run-cross-platform.ts to vitest, which partitions the fixed file list deterministically (sha1, equal file-count) — halving each runner. macOS/Ubuntu were already under budget. - New test/helpers/cli-entry.ts (`CLI_SPAWN_PREFIX`): spawn the built `dist/cli/index.js` when `GITNEXUS_E2E_CLI=dist` (set on the cross-platform job, which already builds) instead of `node --import tsx src/cli/index.ts`, which re-transpiles the whole CLI on every spawn. Defaults to tsx-on-source so local runs always reflect current source; `GITNEXUS_E2E_CLI=dist` on an unbuilt tree throws an actionable "run npm run build" error. dist is opt-in only — never inferred from a generic `CI` env — so an ambient `CI=1` can't silently run a stale build. Converted 8 spawn-based e2e suites; added test/unit/cli-entry.test.ts. The Ubuntu coverage job leaves `GITNEXUS_E2E_CLI` unset, so the tsx-on-source path stays exercised in CI too (both entry points covered). Measured on Linux: cli-limit-e2e 121.5s→91s, cli-e2e 289s→217s (~25%); larger on Windows where the transpile is a bigger share of each spawn. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(ci): derive platform-sensitive shard count from one source (#2394) The shard total was hardcoded in three coupled, unenforced places (matrix length, job-name suffix, --shard denominator); editing one without the others silently dropped a shard's tests with green CI. Add a checkout-free shard-plan job whose single TOTAL generates both the shard index list (consumed via fromJSON) and the /N denominator (job name + --shard arg), so they cannot drift. Asserts TOTAL>=1 to rule out an empty-matrix silent skip. No behavior change — still 2 shards per OS. Addresses PR #2394 tri-review finding F2. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): 3 shards for real Windows headroom + honest sharding comments (#2394) vitest shards by file COUNT, not runtime, so the heaviest spawn suites cluster into one shard: live CI showed Windows shard 1/2 at 12m12s (~81% of the 15-min watchdog) vs shard 2/2 at 3m0s. The old comments claimed "comfortable/generous headroom", which the count-based split doesn't deliver at 2 shards. Bump TOTAL to 3 (one line, single source) so even the busiest Windows shard clears the watchdog, and reword the comments to describe count-based (not time-based) sharding. Addresses PR #2394 tri-review finding F1. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ci): extract testable parseShardArg from run-cross-platform (#2394) The --shard parse/forward glue had no unit test. Extract it into a pure scripts/shard-arg.ts (mirroring the computeSpawnPrefix extraction precedent) so the branch logic is lockable without the script's top-level execFileSync, and add test/unit/shard-arg.test.ts (absent -> undefined, valid token -> passed through, found amid other args). Behavior unchanged; U4 adds the malformed fail-loud on top. Addresses PR #2394 tri-review finding F3. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): fail loud on a malformed --shard arg (#2394) A shard-shaped-but-malformed arg (--shard=1, --shard, --shard=abc) was silently ignored, dropping the shard flag so both legs ran the full unsharded ~50-spawn suite — re-arming the Windows watchdog timeout with no signal. parseShardArg now throws an actionable error on any --shard/--shard=… arg that fails the strict regex (unrelated flags like --shardx= pass through), and the call site in run-cross-platform.ts catches it into console.error + exit 1, kept outside the execFileSync try so the message isn't swallowed by that catch's watchdog-only branch. Addresses PR #2394 tri-review finding F4. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(test): fail loud on an unknown GITNEXUS_E2E_CLI value (#2394) computeSpawnPrefix silently degraded any unknown GITNEXUS_E2E_CLI value to tsx-on-source, so a typo (e.g. `dsit`) would make CI believe it tests the dist entry point while actually running src. Throw on any value other than 'dist'/'src'/unset (the safe tsx default is preserved for unset/''/'src', so it still never selects dist without an explicit opt-in). Flip the unknown-mode unit test to assert the throw and add the missing {mode:undefined, distExists:true} case. Only ci-tests.yml sets the var (=dist), so no existing suite is affected. Addresses PR #2394 tri-review findings minor-a/b. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ci): run cli-entry.test.ts on the cross-platform matrix (#2394) cli-entry.test.ts resolves CLI_SPAWN_PREFIX from a real path, and its last assertion (cli[/\\]index) has a Windows backslash branch that only Ubuntu exercised. Register it in PLATFORM_LOGIC so it runs on the Windows/macOS matrix too. (shard-arg.test.ts stays out — pure string logic, OS-independent.) List grows 73 -> 74; the generated shard matrix keeps coverage complete. Addresses PR #2394 tri-review finding minor-c. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(test): share tsxLoaderUrl(), dedup the last tsx-loader boilerplate (#2394) bridge-cache-reopen.test.ts carried its own copy of the tsx-loader-resolution boilerplate (createRequire -> resolve('tsx/package.json') -> pathToFileURL) — the one site the PR's CLI_SPAWN_PREFIX migration didn't cover (it spawns a seed script, not the CLI). Export the existing tsxLoaderUrl() from cli-entry.ts and reuse it here; the resolved loader URL is byte-identical. Addresses PR #2394 tri-review finding minor-d. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(test): make skipUnlessFtsAvailable install FTS on miss so shards are self-sufficient (#2394) Sharding the platform-sensitive suite into 3 exposed a latent test-isolation bug: load-only FTS primitives (test/integration/lbug-core-adapter.test.ts) only passed because a sibling installer test happened to co-locate in the same shard and install FTS into the shared ~/.lbdb first. At 3 shards, lbug-core-adapter landed in a shard with no installer sibling, so its load-only loadFTSExtension() failed deterministically on macOS+Windows shard 2/3 under GITNEXUS_REQUIRE_FTS=1. Make the gate self-sufficient: on a load-only miss under REQUIRE_FTS, install FTS with `auto` (LOAD-first, then one bounded network INSTALL) before treating it as a hard failure — mirroring withTestIndexedDB. A pre-installed extension still costs no network (auto is LOAD-first); offline/local runs (no env var) still skip gracefully. Verified: with a fresh HOME (no pre-installed FTS) + REQUIRE_FTS=1, lbug-core-adapter now passes 15/15 (previously threw). Addresses the 3-shard CI failure surfaced while validating PR #2394's F1 fix. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * ci: warm-cache the LadybugDB FTS extension across platform shards (#2394) Follow-up to the FTS self-install fix: cache ~/.lbdb/extension per OS + lockfile so a warm run skips the network install entirely and the parallel shards share one download across runs. Pure reliability/speed — on a cache miss the tests still self-install FTS on demand (test/helpers/fts-availability.ts), so this is never a correctness dependency, just a way to cut the network-install surface that made the sharded FTS tests flaky. Keyed by lockfile hash (a LadybugDB version bump re-installs); per-OS since the extension is a native binary. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): pass shard via env to clear zizmor template-injection (#2394) Interpolating ${{ matrix.shard }} (now sourced from the shard-plan job output) directly into the run: shell tripped zizmor's template-injection audit (code-scanning alert #824, ci-tests.yml:147). Move the value into a SHARD env var — assigned via ${{ }} but referenced as "$SHARD" in the shell, which is not an injection sink — and set shell: bash so the expansion is uniform across the windows + macOS matrix (the default run shell is pwsh on Windows, where $SHARD would be empty and trip the new malformed-shard fail-loud). Verified locally with zizmor: the :147 template-injection finding is gone. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * ci: shard the ubuntu coverage job and merge blobs before the threshold gate (#2394) The coverage job ran the full suite unsharded (~16 min). Shard it like the cross-platform matrix, then merge the per-shard coverage before enforcing the threshold gate: - shard-plan now also single-sources the coverage shard count (cov_total / cov_shards), so the coverage matrix + /N denominator can't drift. - The `tests` job becomes a coverage shard matrix: each shard runs `vitest run --shard --coverage --reporter=blob` with thresholds forced to 0 (a single shard's partial coverage can never meet the gate) and uploads its blob. FTS self-installs per shard, so sharding the full suite is safe. - New `coverage-merge` job (needs: tests) reduces the blobs with `vitest --mergeReports`, enforcing the REAL config thresholds on the combined ('new') coverage — this is the gate. It also emits the merged test-results.json and runs the unsharded web + docker suites, so the `test-reports` artifact keeps the exact shape ci-report.yml consumes for its base-branch ('baseline') vs new coverage delta. The shard arg goes through a SHARD env var + shell: bash (no template-injection). Validated locally: shard blobs write and merge into a coverage-summary.json + merged test-results.json; the merge enforces thresholds on the union. CI Gate still aggregates the coverage-merge result via the reusable-workflow call. Note: the coverage check names change (ubuntu / coverage 1/3 … + merge) — update any pinned branch-protection required checks. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): include hidden files when uploading the coverage blob (#2394) The coverage shards write their blob to gitnexus/.vitest-reports/ (a dotdir). actions/upload-artifact excludes hidden files by default, so the coverage-blob-* artifacts uploaded empty — the merge job then downloaded 0 artifacts and vitest --mergeReports failed with ENOENT scandir '.vitest-reports'. Set include-hidden-files: true on the blob upload so the blobs actually ship. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): group shard-plan GITHUB_OUTPUT writes to satisfy shellcheck SC2129 (#2394) Adding the coverage shard outputs (cov_shards/cov_total) made the shard-plan gen step write four individual `>> "$GITHUB_OUTPUT"` redirects, which shellcheck (run by the actionlint check) flags as SC2129. Group the echoes into a single `{ …; } >> "$GITHUB_OUTPUT"` block. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(test): cost-balanced shard sequencer to cut CPU contention (#2394) vitest's default --shard hashes file paths and splits by file COUNT, which clustered the spawn-heavy suites onto one runner (Windows platform shard 1 ran ~4x the others). Add a custom sequence.sequencer that overrides only shard() and balances by estimated WORK instead: - specWeight() weights the fileParallelism:false spawn-heavy suites (cli-e2e, lbug-db — already isolated to run sequentially) far above the parallel default files, plus file size as a cheap finer signal. Deterministic per checkout. - assignShards() does greedy longest-processing-time bin-packing (heaviest file into the currently-lightest shard). The partition stays complete and disjoint — verified: on the 74-file cross-platform set the three shards weigh 7611/7610/8064 (the sequential-heavy files spread ~7/7/8) with zero overlap and no file dropped, vs the hash split's count-only balance. sort() is left to the base sequencer so project groupOrder / duration-cache ordering is untouched. Pure logic split into shard-balance.ts with a unit test locking the disjoint+complete, balance, and determinism properties. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): install + cache FTS up front on the coverage (and cross-platform) shards (#2394) coverage 3/3 failed on extension-binary-real.test.ts: it uses the file-path FTS gate (requireFtsResourceOrSkip), which resolves ~/.lbdb/extension at MODULE LOAD and cannot self-install the way the load-path gate (skipUnlessFtsAvailable, U8) does. The coverage job had no FTS cache and relied on an installer test running first in the shard — the balancing sequencer reshuffled the shards and dropped extension-binary-real into a shard with no installer, so FTS was absent. Remove the ordering dependency: add scripts/ensure-fts.ts (init a throwaway lbug db, loadFTSExtension with policy:auto → LOAD-first, INSTALL on miss) and run it up front on every coverage AND cross-platform shard, after restoring the per-OS FTS cache. The coverage job now shares that same cache key (it previously had none — this is the "share the cached FTS with coverage" the failure pointed at). Cold cache installs once; warm cache is a no-network load. Verified locally: ensure-fts installs FTS into a fresh HOME and is a no-op when already present. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
||
|
|
cdad478c96
|
fix: proxy-blocked installs survive onnxruntime-node postinstall and self-heal embeddings (#2370) (#2372)
Some checks are pending
CodeQL / Analyze (javascript-typescript) (push) Waiting to run
CodeQL / Analyze (python) (push) Waiting to run
Gitleaks / gitleaks (push) Waiting to run
Publish / Classify release event (push) Waiting to run
Publish / RC guard (marker + release-PR skip) (push) Blocked by required conditions
Publish / ci (push) Blocked by required conditions
Publish / Publish to npm (push) Blocked by required conditions
Publish / Build & Push RC Docker images (push) Blocked by required conditions
Scorecard / Scorecard analysis (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-cli) (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-web) (push) Waiting to run
|
||
|
|
576e81442e
|
fix(search): index description field for FTS so doc comments are keyword-searchable (#2300)
Some checks failed
CodeQL / Analyze (javascript-typescript) (push) Waiting to run
CodeQL / Analyze (python) (push) Waiting to run
Gitleaks / gitleaks (push) Waiting to run
Publish / Classify release event (push) Waiting to run
Publish / RC guard (marker + release-PR skip) (push) Blocked by required conditions
Publish / ci (push) Blocked by required conditions
Publish / Publish to npm (push) Blocked by required conditions
Publish / Build & Push RC Docker images (push) Blocked by required conditions
Scorecard / Scorecard analysis (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-cli) (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-web) (push) Waiting to run
Devcontainer Smoke / Config-transform unit tests (push) Has been cancelled
Devcontainer Smoke / Build devcontainer image (push) Has been cancelled
* fix(search): index description column for FTS so doc comments are keyword-searchable Closes #2299. descriptionExtractor (#2286) populates the `description` column for every symbol table, but FTS only indexed name+content on 5 tables, so doc-comment keywords (Javadoc/KDoc/godoc/Rust ///) were invisible to BM25 keyword search. - Add `description` to the Function/Class/Method/Interface FTS indexes (File has no description column, left as name+content). - Add FTS indexes for the remaining EMBEDDABLE_LABELS symbol tables (Struct, Enum, Trait, Impl, Macro, Namespace, Constructor, TypeAlias, Typedef, Const, Property, Record, Union, Static, Variable). - createSearchFTSIndexes now drops-then-creates each index so the schema change reaches existing DBs on incremental re-analyze and --repair-fts (createFTSIndex is idempotent-by-name and would otherwise skip stale indexes). Tests: fts-schema column-subset + coverage guards; drop-before-create order; e2e doc-comment keyword search (Java class + Rust struct found by description-only terms). bm25-search assertions derive from FTS_INDEXES. * fix(review): apply autofix feedback - Guard the --repair-fts path on FTS-extension availability before createSearchFTSIndexes drops-then-creates indexes (P1 regression: without the gate, an unavailable extension could drop existing indexes then fail to recreate them, leaving the DB index-less). Mirrors the analyze path's ftsAvailable gate and fails loudly first. - Add a re-analyze upgrade integration test: seed an old name+content-only DB (no Struct index), run the real createSearchFTSIndexes(), and assert description keyword search + the previously un-indexed Struct now resolve. Proves drop-then-create upgrades a live stale index end-to-end. * fix(ci): add loadFTSExtension to --repair-fts test mocks The R3 review fix added a loadFTSExtension availability gate to the --repair-fts path, but run-analyze-fts-repair.test.ts mocked the lbug adapter without that export, so both repair tests threw `No "loadFTSExtension" export`. Add loadFTSExtension to the two mocks (returning true to preserve their original intent) and add a dedicated test proving the guard fails loudly — and does NOT drop any index — when the extension is unavailable. * test(fts): run fts-description-search in the sequential lbug-db project It was the only FTS-index-creating integration test left in the parallel `default` vitest project; every other ftsIndexes-using test (search-core, search-pool, augmentation, …) runs in the `lbug-db` project, which forces fileParallelism: false to avoid LadybugDB native mmap file-lock conflicts in parallel forks (Windows). Add it to the lbug-db include list and the default exclude list to match the convention and remove the flake risk. * test(ci): fail loudly when FTS extension is unavailable, never silently skip FTS-dependent lbug integration suites (search-core, search-pool, augmentation, fts-description-search, …) self-skip via ctx.skip() when the LadybugDB FTS extension can't load, emitting only a console.warn while the job stays green. That means a broken/missing FTS extension in CI would make these integration tests silently vanish with no signal — false confidence. withTestLbugDB now honors GITNEXUS_REQUIRE_FTS=1: when set and the extension is unavailable, setup() throws instead of skipping, so the suite fails loudly. The CI test jobs (ubuntu coverage + windows/macOS cross-platform) set the flag; local/offline runs leave it unset and keep skipping gracefully. (Verified the extension currently loads on all three runners, so this is a guard against regression, not a behavior change today.) * test(ci): run fts-description-search on macOS/Windows cross-platform jobs The new FTS description-search suite was registered in the sequential lbug-db vitest project (ubuntu/coverage) but absent from LBUG_NATIVE, so the macOS/Windows platform-sensitive jobs (which run only the explicit ALL_CROSS_PLATFORM allowlist via run-cross-platform.ts) never executed it. The GITNEXUS_REQUIRE_FTS=1 hardening on those jobs guarded the old FTS fixtures but not the new 20-index/description path. Add the suite to LBUG_NATIVE so the new path is validated cross-platform too. Refs #2299. * fix(search): verify FTS indexes cover description, not just queryability verifySearchFTSIndexes probed each index with QUERY_FTS_INDEX and treated 'queryable' as 'present'. A stale name+content-only index left on a pre-#2299 DB stays queryable yet silently misses the description column, so verification would pass green while doc-comment search stayed broken. Switch to a single CALL SHOW_INDEXES() that exposes property_names per index, and report an index as missing when it is absent OR does not cover its configured columns. Return contract (string[] of table.indexName) is unchanged, so both run-analyze.ts call sites are untouched. The per-index string interpolation is gone, so the now-dead safeIdentifier helper is removed. The real caller of the live function in tests is bm25-search.test.ts (the repair test mocks verifySearchFTSIndexes wholesale); its two probe-shaped cases are rewritten to feed SHOW_INDEXES rows and now assert column coverage, plus an absent-index case. Refs #2299. * test(search): assert description search via the public query surface The #2299 integration suite only exercised the searchFTSFromLbug helper. Add a third block that drives the public LocalBackend.callTool('query') path — which resolves the repo via the registry and routes BM25 through the pool adapter (a different connection context than the core-adapter helper) — and asserts a description-only keyword returns the seeded class. Reuses the existing description-only SEED and production FTS_INDEXES; partial-mocks repo-manager so listRegisteredRepos points at the test DB while cleanupOldKuzuFiles and the rest stay real. Refs #2299. * test(search): make lbug-core-adapter FTS gate honor GITNEXUS_REQUIRE_FTS lbug-core-adapter.test.ts has its own per-test FTS gate (skipUnlessFtsAvailable) that called ctx.skip() whenever the extension could not load — bypassing the GITNEXUS_REQUIRE_FTS=1 hardening that withTestLbugDB already honors. Since this file is in LBUG_NATIVE it runs on the ubuntu/macOS/windows jobs that all set GITNEXUS_REQUIRE_FTS=1, so an FTS regression on a runner would have let these FTS-primitive tests silently vanish from a green run — the exact gap #2299's test-infra hardening set out to close. Make the helper mirror withTestLbugDB: when GITNEXUS_REQUIRE_FTS=1 and the extension is unavailable, throw (hard fail) instead of skipping. Offline/local runs (no env var) still skip gracefully. Refs #2299. |
||
|
|
5f667c32a3
|
chore(deps): bump actions/checkout from 6.0.3 to 7.0.0 (#2292)
* chore(deps): bump actions/checkout from 6.0.3 to 7.0.0
Bumps [actions/checkout](https://github.com/actions/checkout) from 6.0.3 to 7.0.0.
- [Release notes](https://github.com/actions/checkout/releases)
- [Changelog](https://github.com/actions/checkout/blob/main/CHANGELOG.md)
- [Commits](
|
||
|
|
3c82361b66
|
perf(cfg): streaming/chunked PDG graph emit for full-kernel-scale repos (#2202) (#2216) | ||
|
|
df08ecc397
|
perf(lbug): cut graph-DB emit/persistence wall time (#2203) (#2215)
* perf(lbug): add PROF_LBUG_LOAD persistence-path timing breakdown (#2203 U1) loadGraphToLbug is un-timed today; the analyze 'emit' number is the scope-resolution emit bucket, not the CSV->COPY persistence path. Add a zero-cost-when-off per-stage breakdown (csv-emit/copy-nodes/rel-split/ copy-rels/fallback/total + node/rel counts) gated by PROF_LBUG_LOAD=1, mirroring the PROF_SCOPE_RESOLUTION pattern. Document the flag in README. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(lbug): route relationships to per-pair CSVs in the emit pass (#2203 U2) Relationships were written once to a monolithic relations.csv, then re-read line-by-line (regex per edge) and re-split into per-FROM->TO-label-pair files before COPY — writing and reading the entire ~1M-edge set twice. Route each edge to its pair file directly during the single emit pass via a shared RelPairRouter, eliminating the monolithic write + re-read + per-edge regex. The router applies the SAME getNodeLabel + validTables filter as the legacy splitRelCsvByLabelPair, which is retained as a differential oracle. A new differential test asserts the direct-emit per-pair files are byte-for-byte identical to the oracle's, with identical skip/total accounting. The prof line (U1) drops its rel-split stage (routing now folds into csv-emit). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(lbug): skip per-row microtask tick in BufferedCSVWriter (#2203 U3) addRow awaited an already-resolved promise on every buffered row, scheduling a microtask per node even when nothing flushed (millions at scale). It now returns a promise ONLY when it flushes; the node-emit loop awaits once per iteration after the switch. Flush/drain semantics are unchanged, so backpressure on the rows that actually write is preserved and the emitted CSV bytes are byte-identical (covered by the determinism + differential tests). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * bench(lbug): emit throughput + byte-identity gate for the persistence path (#2203 U4) Build-free bench (bench/emit-persistence/measure.mjs) times streamAllCSVsToDisk on a synthetic graph at two scales and gates: (1) an order-independent sha256 fingerprint over every emitted CSV line — the byte-identity guard for the U2/U3 emit optimisations — and (2) a scaling-ratio budget catching an O(n^2) emit re-regression. Wired into ci-tests.yml alongside the cfg/scope-capture benches. The LadybugDB COPY half needs a real DB, so its timing stays in PROF_LBUG_LOAD + the integration round-trip tests (documented in the bench README, with the deferred COPY-parallelism follow-up). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(review): apply autofix feedback (#2203) - P1: router backpressure drain-await rejected with a generic AbortError, masking the real EMFILE/disk-full error. Expose RelPairRouter.lastError and rethrow it in the emit catch — mirrors the oracle's throw streamError ?? err. - P1: cover RelPairRouter error + backpressure + teardown paths with a new unit test (test/unit/rel-pair-routing.test.ts) using an injected mock stream. - P2: wrap streamAllCSVsToDisk body in try/finally so the setMaxListeners bump is always restored (the U2 rel-routing throw path could leak it). - P2: dedup WriteStreamFactory — re-export the canonical type from rel-pair-routing instead of a second identical declaration. - P2: annotate splitRelCsvByLabelPair @internal as the retained differential oracle so a future dead-code sweep doesn't delete the byte-identity guard. - P3: differential test now covers the proc_ prefix + clears GITNEXUS_SORT_GRAPH_OUTPUT to prevent env-leak desync. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(lbug): scope byte-identity to quote-free ids + lock the quote-in-id divergence (#2215 review) The 'byte-identical' claim was unconditional, but the router derives labels from the raw id while the retained splitRelCsvByLabelPair oracle re-derives them via a regex over the escaped row — so for an id containing a double-quote they diverge (the router is the more-correct path). Soften the wording in rel-pair-routing.ts, the bench README, and the differential-test comment to document the exception, and add a differential test asserting the intended divergence (router routes the quote-in-id edge; oracle drops it) so a future change can't silently revert to the buggy regex semantics. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * bench(lbug): per-file fingerprint so the gate catches pair-file mis-routing (#2215 review) fingerprintEmit flattened every line of every per-pair file into one array, sorted globally, and hashed — losing file boundaries, so a row routed to the WRONG pair file produced an identical fingerprint. Hash a per-file digest (filename + sha256(file bytes)) and combine the sorted entry list, so mis-routing (and within-file row reordering) now changes the fingerprint. Baseline regenerated; the new scheme yields a different hash on byte-identical emit, confirming it is sensitive to file structure the old flatten ignored. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * bench(lbug): add absolute large-scale wall-time backstop to the emit gate (#2215 review) The scaling-ratio gate only compares large/small, so a uniform Nx slowdown at both scales passes with ratio ~1.0. Add an opt-in max_ms_large ceiling (1000ms vs observed ~200ms — generous, host-noise-tolerant) that --check enforces alongside the ratio, catching a gross absolute regression the ratio misses. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(lbug): cover the sorted-output path in the byte-identity differential (#2215 review) The differential test only exercised the default insertion-order emit path. Add a case under GITNEXUS_SORT_GRAPH_OUTPUT=1 that feeds the oracle the same id-sorted order orderedRelationships() uses and asserts per-pair byte-identity, so within-pair row reordering on the sorted path can't slip past the gate. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(lbug): cover the invalid-TO-label skip branch (#2215 review) Only an invalid-FROM label was exercised; the validTables skip is an OR over both endpoints, so the invalid-TO branch was untested (an inverted && would have slipped through). Add a valid-FROM/invalid-TO edge to the differential test and the router unit test, asserting it's skipped identically by router and oracle. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(lbug): exercise the BufferedCSVWriter FLUSH_EVERY boundary in vitest (#2215 review) The U3 addRow change (returns a flush promise only on flush; undefined when buffered) and the loop's `if (pending) await pending` were only crossed by the bench, never vitest (all fixtures are <500 nodes). Add a 600-node graph through streamAllCSVsToDisk asserting all rows land exactly once across the 500-row flush boundary — no drops, dups, or corruption. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(lbug): drop redundant step cast in buildRelRow (#2215 review) GraphRelationship.step is already typed number?, so (rel as { step?: number }).step was a no-op structural cast that obscured the shared-type coupling. Use rel.step directly. Byte-identical — bench fingerprint unchanged, differential test green. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(lbug): make the unknown-label node drop explicit (#2215 review) With the U3 `let pending` switch idiom, a node whose label matches neither codeWriterMap nor multiLangWriters left `pending` undefined and was silently dropped — a footgun for a future node type. Add an explicit else with a comment documenting that unknown labels are intentionally not persisted and that a new type must be wired into a writer map. No behavior change (byte-identity + tests unchanged). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(lbug): drop the unused WriteStreamFactory re-export (#2215 review) The type was re-exported from lbug-adapter 'to preserve this module's surface,' but no external code imports it by name from here (the only test reference is a comment). Keep the import from rel-pair-routing.ts (its canonical home, still used by splitRelCsvByLabelPair's signature) and drop the dead re-export. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
||
|
|
1150eea98f
|
chore(deps): bump actions/checkout from 6.0.2 to 6.0.3 (#2152)
Bumps [actions/checkout](https://github.com/actions/checkout) from 6.0.2 to 6.0.3.
- [Release notes](https://github.com/actions/checkout/releases)
- [Changelog](https://github.com/actions/checkout/blob/main/CHANGELOG.md)
- [Commits](
|
||
|
|
5bf8a17cd5
|
feat(ingestion): add control-flow-graph layer for TS/JS (#2081) (#2099)
* feat(cfg): language-agnostic CFG construction core (#2081) U1 of M1 (CFG layer). Plain JSON-serializable CFG data model (BasicBlockData/ CfgEdgeData/FunctionCfg — must survive the worker→main boundary + ParsedFile store), a CfgBuilder accumulator (leaders→blocks→edges, synthetic ENTRY/EXIT, idempotent edges), a ControlFlowContext (break/continue/switch + labeled-jump target stacks), and a TraversalResult ({entry, dangling exits}). AST-agnostic and unit-tested on the classic control-flow topologies (if/else, while back-edge, mid-block return, labeled break/continue) the S2 spike validated; reachability helper backs the R9 property test. * feat(ingestion): U2 — TS/JS CFG visitor over tree-sitter AST (#2081) Add the TS/JS CfgVisitor that walks a function's tree-sitter AST and drives the U1 CfgBuilder to produce a serializable FunctionCfg. One visitor covers both languages (shared grammar family). Handles the classic CFG hazards explicitly (R2, R10): - loops allocate a dedicated loop-exit block so `break` has a concrete target before the loop's successor is known; `continue`/back-edge close the loop (while, do-while, C-for with init-once + increment-as-continue-target, for-in, for-of) - switch fallthrough falls out naturally: a non-breaking case yields exits we wire to the next case as `fallthrough`; a breaking case wires to the switch exit via ControlFlowContext - try/catch/finally: normal completion AND exceptional flow both route through finally (post-domination); a conservative exceptional edge models that the protected region may raise to its handler (not just explicit `throw`) - labeled break/continue resolve against the labeled loop's frame - early return/throw wire to EXIT/handler and terminate their block 19 hazard tests (one per construct) + AC1 10-function fixture; all green. No change to the committed U1 core or ControlFlowContext. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(ingestion): U3 — worker CFG build + cfgSideChannel + cache coherence (#2081) Run the CFG visitor in the parse worker (where the AST lives), serialize the per-function CFG onto a new ParsedFile.cfgSideChannel, and keep it coherent across the disk-backed store and the warm/durable parse cache (R3, R4). - gitnexus-shared parsed-file.ts: add `cfgSideChannel?: unknown` as a DISTINCT field from captureSideChannel (different producer/consumer/lifecycle; plain JSON data — blocks/edges deliberately lack the `nodeId` the store's interning reviver keys on, so no mis-interning). - cfg/types.ts + visitors/typescript.ts: add CfgVisitor.isFunction so the worker enumerates functions (and applies the line budget) by a cheap node-type test. - cfg/collect.ts (new): collectFunctionCfgs walks the tree, builds one CFG per function (nested included), applies maxFunctionLines (over-cap = skipped). - language-provider.ts: add `cfgVisitor?: CfgVisitor<SyntaxNode>` hook; typescript.ts attaches it to both the TS and JS providers (shared grammar). - parse-worker.ts: read pdg + pdgMaxFunctionLines from workerData (read once at init — the worker never sees PipelineOptions), gate the build, attach cfgSideChannel alongside captureSideChannel. - parse-cache.ts: bump SCHEMA_BUMP 4→5 (ParsedFile shape changed) and fold the pdg flag into computeChunkHash so a pdg-off cached chunk is NOT reused on a --pdg run (the #2038-class warm-cache trap). Default path keeps its keys. - worker-pool.ts + parse-impl.ts + pipeline.ts: thread pdg/pdgMaxFunctionLines PipelineOptions → WorkerPoolOptions → workerData, and into the chunk-hash key. 9 boundary tests: collect contract, JSON round-trip identity (no AST leakage), the pdg cache-key guard, the line-cap skip, and the no-visitor gate. Full CFG suite (U1+U2+U3) green; build clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(ingestion): U4 — emit BasicBlock + CFG within scope-resolution (#2081) Emit persisted BasicBlock nodes + CFG edges from each ParsedFile's worker-built cfgSideChannel, INSIDE scope-resolution's Phase-4 graph emission — the last point where the worker-built CFGs are loaded (emitParsedFiles carries the channel; the disk store is cleared right after the orchestrator returns). This is the architecture the doc-review corrected to: a standalone post-`mro` phase (the issue's literal subtask) provably reads empty data (KTD1). - cfg/emit.ts (new): pure emitFileCfgs(graph, cfgs, maxEdgesPerFunction, onWarn). BasicBlock id = `BasicBlock:<filePath>:<functionStartLine>:<blockIndex>` (KTD3 — funcStart disambiguates blocks across functions in one file; no `name` column). CFG edge = CodeRelation type 'CFG' with the edge KIND (seq/cond-true/…) in `reason` (kinds can't be their own edge type). Per- function edge cap stops at the cap and warns with the dropped count — no silent truncation (R6/KTD6). - run.ts: pdg-gated emit pass over emitParsedFiles after emitPostResolutionEdges (store still live); RunScopeResolutionInput gains pdg + pdgMaxEdgesPerFunction. - phase.ts: thread ctx.options.pdg / pdgMaxEdgesPerFunction into the call. - pipeline.ts: PipelineOptions.pdgMaxEdgesPerFunction. 6 tests: node/edge shape (KTD3 id, no name, type='CFG', kind in reason), cross-function id uniqueness, AC2 reachability-from-ENTRY property, the edge cap's no-silent-truncation contract, and empty-input no-op. Flag-off byte-identity + full runPipelineFromRepo round-trip land in U7. Build clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(cli): U5 — `--pdg` opt-in plumbing (CLI + .gitnexusrc → both sinks) (#2081) Expose the CFG/PDG substrate as an opt-in and thread it from CLI/.gitnexusrc to the single source of truth (PipelineOptions.pdg), which fans out to BOTH sinks already wired in U3/U4: the worker build gate (workerData.pdg) and the scope-resolution emit gate. Off by default (R7). - cli/index.ts: `--pdg` commander flag. - cli/analyze.ts: AnalyzeOptions.pdg + pass `pdg` into runFullAnalysis options. - cli/analyze-config.ts: KEY_SPECS `pdg` (boolean) so `.gitnexusrc { "pdg": true }` normalizes and a non-boolean value fails closed with GitNexusRcError. - core/run-analyze.ts: AnalyzeOptions.pdg → runPipelineFromRepo({ pdg }). (The internal PipelineOptions/WorkerPoolOptions/workerData fields + the parse-cache key fold landed in U3/U4; this unit adds the user-facing surface. The budget knobs stay at internal defaults for M1.) Tests: analyze-config pdg normalization + non-boolean rejection; opt-in.test.ts covers the CLI/file merge precedence and that pdg perturbs the chunk-dispatch key. The full worker-build + main-emit round-trip is the U7 integration test. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): U7 — CFG acceptance fixtures, parity, end-to-end + docs (#2081) Acceptance criteria for the M1 CFG layer: - AC1: a 10-function TS fixture's CFG node/edge set matches a committed snapshot (cfg-snapshot.test.ts). - AC2: every BasicBlock is reachable from its function ENTRY (property test over the emitted graph; the fixture has no dead code). - AC3: hazard fixtures lock the classic-bug coverage — try/throw/finally post-domination + labeled break/continue resolution. - AC4: the existing pipeline-graph-golden test stays byte-identical with --pdg off (verified; no UPDATE_GOLDEN), proving the opt-in adds zero default-run drift. - End-to-end (pipeline-pdg.test.ts): runPipelineFromRepo({ pdg: true }) on a tiny repo emits BasicBlock nodes + CFG edges with both endpoints present — the true both-sinks proof (worker builds → store → scope-resolution emits); the default run emits zero. Docs: CHANGELOG M1 entry, ARCHITECTURE "Optional CFG/PDG emission" subsection (why emit is in-phase, not post-mro), README CFG language-support note. Full CFG suite (U1–U7): 56 tests green. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): drop unused helper in cfg-snapshot test (#2081) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(review): apply ce-code-review autofix feedback (#2081) Review (10 reviewers) confirmed OFF-path byte-identity (adversarial + golden) and found defects all within the --pdg path. Fixes: - P1 same-line BasicBlock id collision: add a start-column disambiguator to FunctionCfg + the id (`BasicBlock:<file>:<line>:<col>:<idx>`) so two functions sharing a start line no longer collide under first-writer-wins addNode. - P1 worker crash-cascade: per-file try/catch around collectFunctionCfgs so a CFG-build throw cannot escape to the language-group catch and silently drop every remaining file in the group. - P2 edge-cap drop now logs unconditionally (input.onWarn is validator-gated/ silent in prod) — upholds the no-silent-truncation guarantee. - P2 Array.isArray guard before the cfgSideChannel cast in run.ts. - P2 maxFunctionLines default: worker applies DEFAULT_PDG_MAX_FUNCTION_LINES=2000 when unset; caps forwarded through run-analyze AnalyzeOptions (closes the server-path drop). - P3 README duplicate paragraph removed; `0`-vs-default docstrings corrected; CLI --pdg flag made language-neutral; reachableBlocks JSDoc corrected. - Documented the break-through-finally + stacked-label CFG limitations. - Tests: same-line id-collision regression, standalone throw→EXIT, dead-code- after-return, async/generator/method coverage, strengthened labeled-continue. Refuted: the HTTP-500 getNodeQuery finding — M0 already shipped the BasicBlock branch + name-floor (R12/web-safety handled). CFG + analyze-config suites: 95 tests green; golden parity (AC4) byte-identical. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(ingestion): benchmark CFG construction + O(n) block-text accumulation (#2081) Closes the M1 review's requires_verification perf gap ("no benchmark for collectFunctionCfgs; a wall-time + cfgSideChannel byte-size regression gate would catch the extendBlock concatenation before kernel scale"). - bench/cfg/measure.mjs (new): build-free tsx harness timing collectFunctionCfgs (parse once, reuse the tree) across three scaling scenarios — straight-line (extendBlock path), many-functions (collect walk), branchy (block/edge growth) — at 500→2000. Reports a wall-time scaling ratio AND a cfgSideChannel byte-size ratio, plus an order-independent sha256 over the emitted blocks/edges as the behavior gate. `--check` compares both ratios + the fingerprint against bench/cfg/baselines.json; mirrors the scope-capture / python-scope harnesses. - .github/workflows/ci-tests.yml: run the gate on every test job (build-free, alongside the existing scope-capture guards) so an O(n^2) re-regression fails CI. - cfg-builder.ts: structural fix for the one real hotspot the bench surfaced — accumulate basic-block text as fragments joined once in finish(), instead of concatenating onto a growing string per coalesced statement (O(n^2) → O(n)). Behavior-identical (the CFG fingerprint + the AC1 snapshot are unchanged). Measured (post-fix): time ratios straight-line ~1.3, many-functions ~1.0, branchy ~1.1 (all sub-quadratic; a true O(n^2) would be ~4.0). cfgSideChannel bytes scale linearly (~1.0-1.04). 60 CFG tests green; build clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(ingestion): add memory + disk growth gates to the CFG benchmark (#2081) Extend bench/cfg/measure.mjs beyond wall-time to the two other scalability dimensions that matter at kernel scale: - DISK growth: utf8 byte size of the serialized cfgSideChannel — exactly what a --pdg run writes onto every ParsedFile shard (durable store + parse cache). - MEMORY growth: retained JS heap of the cfgSideChannel payload, measured by the release-delta method (heap held minus heap after dropping it) — robust to pre-existing garbage and dead-stable run-to-run. Needs `node --expose-gc`; without it the heap metric is null and its gate is skipped (local runs still work). ci-tests.yml now passes --expose-gc so the heap gate runs in CI. Both gated on linear scaling in baselines.json (disk_bytes_budget / heap_budget 1.2-1.3). Measured: disk ~1.0-1.04, retained heap ~0.87-1.0 — both linear (~1KB/function each; ~2MB heap / 1.6MB disk at 2000 functions, --pdg only). Bumped REPS 7->15 to stabilize the noisier time signal and widened the coarse time tripwire budgets (the disk/heap gates carry the tight regression detection). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): address tri-review + CFG-expert findings (#2081) Corroborated findings from the tri-review (Codex + CE personas + GitNexus swarm + a CFG/program-analysis domain-expert lane). The OFF-path stays byte-identical; all fixes are within the --pdg path or the benchmark. - [Codex+CFG-expert] Exceptional `throw` edges now wire EVERY block in a try's protected region to the handler, not just the body ENTRY. A branched try body (`try { if (x) { use(t); } } catch`) previously left interior blocks with no path to `catch` — a taint false-negative into the handler for the M2 PDG pass. - [Codex+CFG-expert] An unresolved labeled jump (a stacked outer label or a labeled non-loop block) now routes to the function EXIT instead of leaving a dangling sink — restores the single-exit invariant post-dominator/PDG computation needs. - [Codex] computeChunkHash now folds pdgMaxFunctionLines/pdgMaxEdgesPerFunction into the chunk key (not just the pdg boolean), so a warm cache built under one cap is never served to a run with a different cap (#2038 class, extended to the budgets). Adds PdgCacheKey; boolean form kept for back-compat. - [perf] visitTry resolves catch/finally in a single namedChild pass (the double `namedChildren.find` allocated two throwaway arrays). - [adversarial] The bench `straight-line` scenario now runs at 2000->8000: output is a constant 4 blocks so disk/heap can't see the concat path, and at the old N a genuine O(n²) was masked by V8 cons-strings. Verified at the new N: the array-join impl ~1.0, a rope-optimized `+=` ~1.0 (correctly not flagged), a real O(n²) (re-join-every-append) ~3.8 — budget tightened 2.0->1.5. - [adversarial+Codex] The bench `--check` now FAILS LOUDLY when run without `--expose-gc` instead of silently skipping the retained-heap gate. - Doc: re-labeled the finally-bypass as a SOUNDNESS (false-negative) limitation tracked for M2, not mere "precision." 3 new regression tests (branched-try interior→handler, stacked-label→EXIT, cap-fold key). 99 CFG tests pass; build clean; bench gate green. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(parse-cache): clarify that SCHEMA_BUMP still invalidates caches once (#2099 F6) The computeChunkHash comment claimed pdg-off warm caches "survive this change untouched" — true for the key FORMAT, but misleading as an upgrade-behavior promise: SCHEMA_BUMP 4→5 changes PARSE_CACHE_VERSION and both stores hard-invalidate on it. Separate the two facts so the next cache change isn't reasoned about from a false premise. Review finding F6 (P3) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): correct for-loop back-edge kinds when no increment clause (#2099 F5) A for with a body but no increment emitted an unconditional header→header 'loop-back' self-edge (a path that never executes the body) while the real back-edge body→header was labeled 'seq'. Any consumer identifying loops via reason='loop-back' picked the phantom edge and excluded the body from the natural loop. Gate the self-edge on the body being absent (the one case where the header genuinely re-tests itself) and carry 'loop-back' on the body's exits when they ARE the back-edge, matching visitWhile/visitForIn. Review finding F5 (P3) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): treat an empty catch clause as a real handler (#2099 F2) visitTry keyed handler semantics off the traversal result — null for an empty body, since visitSeq([]) returns null — instead of the syntactic clause. An empty `catch {}` was therefore treated as NO catch: the swallowed exception escaped to the outer handler/EXIT, the no-catch re-propagation misfired past finally, and code after a try whose body always throws became unreachable from ENTRY — a hard false-negative source for the M2 taint pass, on an extremely common pattern. Synthesize one empty block spanning the clause (entry == sole exit) when the catch body traverses to null, before the protected region is walked. Exception flow lands in it and rejoins the normal continuation; all downstream wiring (handler selection, finally routing, the !catchRes re-propagation gate) operates on the syntactically-correct shape. Review finding F2 (P2, reproduced) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): guard CFG emission per element, not just per outer array (#2099 F4) The cfgSideChannel guard checked only Array.isArray before casting to FunctionCfg[] — its own comment promised a wrong-shape value would 'skip emission, not throw a TypeError mid-graph-build', but a malformed ELEMENT sailed through. Worse, the obvious-looking failure shape never throws at all: emitFileCfgs string-templates any edge endpoint into the BasicBlock id and graph inserts are no-throw, so a non-integer endpoint silently became a dangling 'BasicBlock:…:undefined' edge that degrades the DB rel-pair COPY to row-by-row fallback inserts much later. Layered fix matching house precedents (parsedfile-store reviver, worker-side per-file catch): a per-element shape+content predicate (arrays + integer edge endpoints) that warns and skips malformed elements while valid siblings still emit, plus a per-file try/catch backstop for shapes that genuinely throw (e.g. a null inside blocks). Review finding F4 (P3) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse-cache): drop emit-time edge cap from the pdg chunk key (#2099 F3) pdgMaxEdgesPerFunction is applied exclusively in emitFileCfgs during scope-resolution on the main thread — the worker never receives it (workerData carries only pdg + pdgMaxFunctionLines), so the cached worker output is byte-identical across cap values. Folding it into the chunk key (added by a prior review round) only converted a free knob into a repo-sized cost: every cap change forced a full re-parse and a durable-store rewrite of unchanged data. Keep pdg + maxFunctionLines (genuinely worker-visible, shape the cached cfgSideChannel) and document the classification test in the PdgCacheKey doc comment so the next option gets sorted deliberately: worker-shard inputs go in this key; persisted-graph-only inputs belong in the RepoMeta pdg stamp (F1). Chunks written under the old ns string miss once and prune — no migration needed. Review finding F3 (P2) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(analyze): record pdg config in RepoMeta; force full writeback on mode flip (#2099 F1) Running --pdg against an already-indexed repo silently persisted ~zero CFG: incremental eligibility had no pdg term, RepoMeta recorded no mode, and extractChangedSubgraph keeps only changed-file nodes — on a no-change --pdg re-run every freshly built BasicBlock was dropped from the written subgraph ('Incremental: changed=0', run succeeds, zero rows). The converse flip left zombie mixed-coverage blocks only --force could clean. Worse, a clean-tree flip hit the alreadyUpToDate fast path and never ran the pipeline at all. - RepoMeta gains an additive-optional pdg stamp ({maxFunctionLines, maxEdgesPerFunction}, resolved values; absent ≡ pdg-off, which covers every legacy meta). No INCREMENTAL_SCHEMA_VERSION bump — that would force a one-time full rebuild for everyone. The end-of-run meta is a fresh literal, so omitting the field on a pdg-off run is what clears the stamp after an on→off flip. - pdgModeMismatch (pure, exported) compares the resolved triple; the flip check sits before the fast path and always logs its notice (not gated on options.force — --skills implies force with no message of its own), naming the .gitnexusrc pdg key that pins the mode. - The full-rebuild branch now writes the incrementalInProgress dirty flag (toWriteCount: 0 sentinel) before the wipe whenever a prior meta exists, mirroring the incremental branch. This closes the crash window where a rebuild dying between the bulk load and saveMeta left meta/DB inconsistent and the fast path certified zombie (or missing) CFG rows indefinitely — and incidentally closes the same pre-existing hole for user --force runs. Recovery log reworded accordingly. Tests: pdg-mode-flip.test.ts (real git + LadybugDB; primary assertion is a direct BasicBlock table count — meta.stats aggregates nondeterministic Community/Process rows) covering off→on, steady-state fast path, on→off zombie cleanup, cap-change rebuild, and dirty-flag + flip composition; pure-helper tests for default resolution and the 0=unlimited carve-out. Review finding F1 (P1) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
||
|
|
cef63dd044
|
feat(install): toolchain-free tree-sitter via vendored prebuilds (#2113)
* feat(install): toolchain-free tree-sitter via vendored GitNexus-built prebuilds
Eliminate the C/C++-toolchain requirement at install for the at-risk grammars
(dart, proto, kotlin) by generating + vendoring native prebuilds, mirroring the
existing vendored tree-sitter-swift. The 10 grammars that already ship 6 upstream
prebuilds stay npm dependencies (toolchain-free AND dependency-review-tracked).
- .github/workflows/build-tree-sitter-prebuilds.yml: a registry-parameterized
workflow that builds {dart,proto,kotlin} x {linux,darwin,win32}-{x64,arm64}
prebuilds natively, validates each loads + parses on its arch, and opens a PR
vendoring them. A `guard` job gates the heavy matrix to run ONLY on dispatch
or a real grammar-version change — ordinary code PRs cost zero matrix minutes.
- dart/proto: prefer a committed prebuild; fall back to today's source build
when none matches (no behavior change until prebuilds are vendored).
- kotlin: vendor it (Swift parity) instead of compiling the third-party
optionalDependency from source at the user's install — supersedes #2110's
optionalDependency mechanism. The ~23 MB parser.c is NOT vendored (the
workflow builds from the published package); only node-types + bindings +
prebuilds are. Removed from optionalDependencies; lock regenerated; probe,
parser-loader note, README/.devcontainer docs, and the #2110 tests updated.
DO NOT MERGE until vendor/tree-sitter-kotlin/prebuilds/ is populated by the
build-tree-sitter-prebuilds workflow: until then Kotlin is unavailable (vendored
with no source-build fallback). dart/proto remain fully functional throughout.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* test(install): guard 6/6 N-API prebuild coverage for every grammar
Regression guard so a toolchain-less install can never silently lose a tree-sitter
language on a supported platform-arch:
- Vendored grammars (vendor/tree-sitter-*): every one MUST ship a loadable N-API
prebuild for all 6 tuples {linux,darwin,win32}-{x64,arm64}. Asserts the
napi_register_module_v1 entry symbol in each .node (cross-platform, no need to
run the binary). Currently RED for dart/proto/kotlin until the
build-tree-sitter-prebuilds workflow populates their prebuilds/ — this is the
must-fill-before-merge gate (swift already passes 6/6).
- npm-dependency grammars: asserts upstream ships 6/6 N-API too, catching a
future platform drop. tree-sitter-c is allow-listed at 4/6 (missing
linux-arm64/win32-arm64) pending #2116; the guard also fails if that gap is
silently closed (prompting allow-list removal).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(install): vendor tree-sitter-c at 0.21.4 with GitNexus-built prebuilds (#2116)
tree-sitter-c is the one grammar dependency upstream ships incomplete prebuilds
for (4/6 — no linux-arm64/win32-arm64), AND it is a REQUIRED grammar: its own
`install` (node-gyp-build) compiles from source when no prebuild matches and
exits non-zero, so on a toolchain-less ARM host `npm install gitnexus` HARD-FAILS
at the c step — during npm's dependency phase, before any GitNexus postinstall
runs (so a postinstall "supplement" can't help).
Fix: vendor c prebuild-only at the pinned 0.21.4 (Kotlin pattern), with all six
prebuilds GitNexus-cross-built, and drop it from `dependencies`:
- vendor/tree-sitter-c/ (bindings + node-types + manifest + prebuilds); build
probe scripts/build-tree-sitter-c.cjs; added to the build workflow registry
(kind 'npm' — built from c@0.21.4 source).
- materialize-vendor-grammars.cjs: c is REQUIRED, so it is always materialized,
even under GITNEXUS_SKIP_OPTIONAL_GRAMMARS (it needs no toolchain).
- Removed from package.json dependencies + lockfile (nothing else needs npm c —
tree-sitter-cpp's dep on c is dev-only and not installed). Preserves the #1242
ABI pin: vendoring 0.21.4 keeps the good ABI while closing the ARM gap.
- parser-loader note + the prebuild-coverage guard + a cli-commands assertion
updated; c moves from the npm-gap allow-list into the vendored 6/6 cohort.
Verified: tsc clean, 31 unit tests pass, c loads/parses; the guard is RED for
c/dart/proto/kotlin until the workflow populates prebuilds (the must-fill gate).
Closes the operational risk in #2116.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(ci): source-build fallback for vendored c/kotlin so CI is healthy pre-prebuilds
The vendored prebuild-only grammars (c, kotlin) had empty prebuilds/ until the
build-tree-sitter-prebuilds workflow runs, so they could not load in CI — and
C is hard-required by cross-platform tests (tree-sitter-languages/parsing on
ubuntu+macos+windows), which I cannot pre-build for macos/windows locally. The
robust fix is a source-build fallback that works on every CI runner (all have a
toolchain), mirroring dart/proto:
- Vendor the grammar source (binding.gyp + src/) for c and kotlin; their build
scripts now PREFER a committed prebuild (toolchain-free) and fall back to
`node-gyp rebuild` from the vendored source when no prebuild matches. Verified
both compile against the hoisted node-addon-api@^8 and the runtime loads.
- prebuild-coverage guard is now bootstrap-tolerant: a grammar that vendors its
source (binding.gyp) may have an incomplete prebuild set (the workflow fills
it); a prebuild-only grammar (swift) still must ship all six. Any present
prebuild must still be N-API. Guard goes green; it re-tightens per-grammar as
the workflow populates prebuilds.
- actionlint: silence a false-positive SC2016 (JS template literals inside the
single-quoted `node -e` validate block).
Note: kotlin's generated parser.c is large (~23 MB on disk; compresses heavily
in git). Once the workflow populates all six kotlin prebuilds, the source serves
only as the fallback and could be slimmed if desired.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(docker): re-materialize+rebuild vendored grammars after npm prune
`npm prune --omit=dev` in the gitnexus CLI image drops anything not in
package.json's dependency tree — including the VENDORED tree-sitter grammars
(materialized by postinstall, not declared deps) and their built bindings. The
`serve` image analyzes/parses repos at runtime, so re-run the grammar postinstall
after the prune (in the toolchain-equipped builder) to restore them. Load-bearing
for tree-sitter-c, a core REQUIRED grammar now vendored (#2116): as a former
dependency it survived prune; vendored, it would not. Also restores
swift/dart/proto/kotlin, which were silently pruned from the image before.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(grammars): unify tree-sitter-swift with the vendored-source build pipeline
Swift was the last grammar handled differently — it shipped only upstream
prebuilds, while c/dart/proto/kotlin vendor their grammar source and use a
prefer-prebuild -> source-build-fallback activation script. Vendor swift's
source so all five are handled identically (one uniform build path).
- vendor/tree-sitter-swift: add binding.gyp (win-hardened), bindings/node/
binding.cc, src/parser.c (ABI-14 default, ~18 MB), src/scanner.c, and
src/tree_sitter/ headers. The 6/6 prebuilds are retained. The legacy
parser_abi13.c alternate is intentionally not vendored.
- build-tree-sitter-swift.cjs: rewrite the prebuild probe into the dart-style
prefer-prebuild then source-build fallback (keeps the GITNEXUS_SKIP gate and
the never-exit-non-zero postinstall invariant).
- build-tree-sitter-prebuilds.yml: register swift (kind 'vendored'); add its
package.json to the version-gated pull_request paths and a validate snippet.
- prebuild-coverage guard auto-moves swift into the source-fallback cohort
(binding.gyp now present); refresh the stale "swift is prebuild-only" comments.
- tests: add build-tree-sitter-swift-probe.test.ts; fix the pre-existing
build-tree-sitter-kotlin-probe.test.ts breakage (it still asserted the old
probe strings after kotlin's dart-style conversion); assert swift's vendored
source in cli-commands.test.ts.
- docs: README / .devcontainer / kotlin vendor README — swift's prebuilds are
now GitNexus-cross-built from vendored source like the rest, not upstream-only.
Verified: swift source-builds against node-addon-api@8 -> N-API binary -> loads
against the pinned tree-sitter@0.21.1 (ABI 14) -> parses cleanly.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(publish): gate a lean prebuilds-only npm tarball behind a coverage guard
Vendoring grammar source (parser.c) alongside the prebuilds means the npm
tarball now carries ~50 MB of generated source it almost never compiles (every
supported platform-arch has a prebuild). Prepare to drop it from the published
package once all prebuilds exist — safely.
- .npmignore: add a GATED, commented-out "lean publish" block that excludes the
source-build inputs (parser.c/scanner.c/tree_sitter/binding.gyp/binding.cc) but
keeps prebuilds/ + the runtime files. Uncommenting ships prebuilds-only.
- scripts/assert-publish-grammar-coverage.cjs: a prepack guard that refuses to
pack/publish if the source exclusion is active while any vendored grammar still
lacks 6/6 prebuilds (which would ship a grammar with no loadable binding). Wired
into `prepack` (runs on npm pack + publish, incl. the publish.yml dry-run) and
exposed as `npm run assert-publish-coverage`.
- test: pure-core decision cases + a real-repo publish-safety check that fails CI
if .npmignore is activated prematurely.
Net: the prebuilds already publish today (files: ["vendor"]); this makes the
future switch to a prebuilds-only tarball a one-line uncomment that can't ship a
dead grammar. The guard currently reports "source + prebuilds" (only swift has
6/6 prebuilds so far) and passes.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* refactor(grammars): consolidate the 5 build-tree-sitter-*.cjs into one
The per-grammar activation scripts (c/dart/proto/swift/kotlin) were ~95%
identical — same prefer-prebuild → source-build → never-fail flow, differing only
in name, target_name, required-vs-optional, and the display label in warnings.
- scripts/build-tree-sitter-grammars.cjs: one registry-driven script. Bare call
builds all (postinstall); `... <name>` builds only the named grammars (so the
probe test can isolate one). c is `required: true` (ignores the opt-out gate);
the rest honor GITNEXUS_SKIP_OPTIONAL_GRAMMARS. Per-grammar try/catch + a final
process.exit(0) preserve the postinstall never-exit-non-zero invariant.
- package.json: postinstall is now `materialize && build-tree-sitter-grammars.cjs`
(was five chained `build-tree-sitter-<name>.cjs` calls).
- tests: replace the two near-identical *-probe.test.ts files with one
parameterized build-tree-sitter-grammars-probe.test.ts that also covers the
required-vs-optional opt-out split and an unknown-grammar arg.
- update cli-commands.test.ts postinstall assertions + the vendor c/kotlin/swift
README + swift provenance to reference the consolidated script.
Behavior is preserved (warnings normalized to one consistent format). Removes 5
scripts + 1 test file; adds 1 script + 1 test.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(ingestion): lazy-load tree-sitter-c to prevent module-load crash
tree-sitter-c is now vendored prebuild-only (#2116) with 0/6 committed
prebuilds, so on a toolchain-less or `--ignore-scripts` install C has no native
binding. Three modules loaded it via a hard top-level `import C from
'tree-sitter-c'`, which throws ERR_MODULE_NOT_FOUND at module-load — crashing
`analyze` before parser-loader's optional/severity:error degradation can run.
This is the #2091/#2093 bug class (previously fixed for swift/dart/kotlin); C was
left static because it used to be an always-present npm dependency.
- languages/c/query.ts: load via the lazy guarded getLanguageGrammar(C), mirroring
swift/query.ts; the main-thread isLanguageAvailable filter ensures the getters
are reached only when C is present.
- workers/parse-worker.ts: guarded `_require('tree-sitter-c')` + conditional
languageMap spread, like swift/dart/kotlin.
- group/extractors/include-extractor.ts: guarded `_require`; getLanguageForFile
returns null for .c/.h when absent, so C include-extraction degrades to a no-op
(C++ unaffected).
- extend the registry-import-closure regression test (#2091/#2093) to assert C
also loads lazily at registry static-import time.
* fix(ci): repin attest-build-provenance to the real v2.4.0 SHA
The workflow pinned actions/attest-build-provenance@bd77c077… commented
`# v2.4.0`, but v2.4.0 is e8998f94… (verified via the GitHub API); bd77c077…
is an untagged mid-stream commit, so the SLSA-attestation step ran unvetted
action code and the comment misrepresented what runs. Repin to the real
v2.4.0 commit and drop the `# PLACEHOLDER-PIN` markers on both this line and
the setup-python pin (a26af69b… is already the correct v5.6.0 — only its
comment was stale). Update the header NOTE accordingly.
* fix(ci): skip the prebuild-PR aggregate when release App secrets are absent
The aggregate job mints a GitHub App token as its first step; with
RELEASE_APP_ID/RELEASE_APP_PRIVATE_KEY unset it hard-failed AFTER a full
(up-to-6-runner) native build. Since the `secrets` context isn't available in
a job-level `if:`, the guard job now computes a `release_app` boolean output
(a step can read secrets) and emits an actionable `::notice::`; aggregate
gates on it and skips cleanly, while the build job's artifacts still upload
(run with open_pr=false for artifacts-only).
* chore(ci): drop package-lock.json from the prebuild paths filter; widen build timeout
`gitnexus/package-lock.json` changes on nearly every dependency PR, so it
fired the prebuild workflow's guard job on unrelated churn (the matrix stayed
correctly skipped — `gitnexus/package.json` already covers the transition-window
pin, so removing the lock only drops guard noise). Also bump the native build
job timeout 30 -> 45 min for headroom compiling the 23 MB kotlin / 18 MB swift
parser.c, especially under arm emulation.
* fix(ci): event-gate the aggregate open-PR condition explicitly
`inputs.open_pr` is null on pull_request events, and the prior
`inputs.open_pr != false` leg relied on GHA's direction-ambiguous null
coercion (Codex F4) to decide whether to open the prebuild PR. Gate
explicitly on the event: a non-fork pull_request that bumped a grammar
version opens the prebuild PR (the documented flow), and `open_pr` is only
consulted on workflow_dispatch — so a manual run with open_pr=false stays
artifacts-only and no event's behavior rests on coercion.
* fix(publish): validate the effective npm-pack contents in the coverage guard
The publish guard inferred "is source shipped?" from a single .npmignore toggle
line, which a partial/out-of-order edit could defeat (exclude binding.gyp but
leave parser.c → unbuildable yet "source-shipping"). It now inspects the
EFFECTIVE tarball via `npm pack --dry-run --ignore-scripts --json` (the
--ignore-scripts avoids re-entering this guard through prepack): a grammar
"ships source" only when EVERY on-disk source-build input (binding.gyp +
binding.cc + parser.c + scanner.c when present + a tree_sitter header) is
actually in the packed file list.
This also surfaced that the gated lean-publish .npmignore block was inert:
package.json's `files: ["vendor"]` allow-list overrides .npmignore for the
vendored subtree, so those exclusion lines never dropped anything. Replace the
dead toggle with documentation of the real mechanism (narrow the `files` field)
and note the guard enforces safety on the effective pack regardless of how the
slim is done.
* test(prebuild): hard-gate declared-fully-prebuilt grammars on 6/6 coverage
The strict 6/6 prebuild assertion was dormant whenever a grammar vendors source
(binding.gyp) — which is every grammar — so a dropped prebuild passed CI
silently. Add a FULLY_PREBUILT allowlist of grammars GitNexus has committed 6/6
for (today: swift); those must keep all six even with a source fallback, so
losing one now fails CI. Grammars graduate into the set as the
build-tree-sitter-prebuilds workflow lands their binaries. (The static-import
degradation smoke is covered by the registry-import-closure regression test
extended in the C lazy-load commit.)
* chore(deps): promote node-gyp-build/node-addon-api to regular dependencies
Every vendored grammar's index.js does `require("node-gyp-build")` at runtime
to load even a prebuilt .node, so node-gyp-build is runtime-load-critical (and
node-addon-api is needed for the source-build fallback). They were
optionalDependencies, surviving `--omit=optional` only via the required
tree-sitter's transitive edge — correct today but fragile. Promote both to
regular dependencies so the contract is explicit (optionalDependencies is now
empty and removed). Lock the contract with a cli-commands assertion.
* chore(vendor): add Windows cflags parity block to tree-sitter-c/binding.gyp
c's binding.gyp used an unconditional `cflags_c: ["-std=c11"]`, while
kotlin/swift gate MSVC flags behind an `OS=='win'` condition (/std:c11 /utf-8).
Inert today (no non-ASCII bytes in c's parser.c, and node-gyp ignores cflags_c
on MSVC anyway), but align the three so a future source-build fallback on
Windows behaves consistently.
* docs(agents): correct stale optional-grammar / postinstall notes
AGENTS.md still said postinstall "patches tree-sitter-swift, builds
tree-sitter-proto" and that only kotlin/swift are "optional". Update to the
vendored-uniform model: postinstall materializes the vendored grammars and
prefers a committed prebuild (source-build only when none matches); c is
required while dart/proto/swift/kotlin are optional + skippable via
GITNEXUS_SKIP_OPTIONAL_GRAMMARS=1, with non-fatal warnings only on a
toolchain-less host with no matching prebuild.
* fix(install): preserve the backup and warn loudly on a failed materialize rollback
If renameSync(partial, dest) failed AND the rollback renameSync(backup, dest)
also failed, the grammar was left unmaterialized (node_modules/<name> missing)
with only a generic "could not materialize" warning — the recoverable backup at
<dest>.materialize-bak was unmentioned. Emit a CRITICAL warning naming the
backup path and the recovery command on that double-failure, and document that
the fail-soft catch removes only the scratch `partial`, never the `backup`
(which may be the sole recoverable copy). Never-throw / exit-0 contract intact.
* fix(publish): make the coverage guard's npm-pack inspection script-safe
The prepack guard shelled out to `npm pack --dry-run --ignore-scripts --json`,
but the `--ignore-scripts` flag is not reliably honored by npm pack's
prepare/prepack lifecycle on the CI npm — so build.js ran, polluted the --json
stdout with `[build] …`, and the guard's JSON.parse threw. That broke every
`npm pack` (packaged-install-smoke on ubuntu+windows) and failed the guard's own
real-repo unit test (the only coverage-job failure). Force script-skipping via
the reliable `npm_config_ignore_scripts` env config (also removes the prepack
re-entry/recursion risk) and parse defensively from the JSON-array start.
* fix(publish): make the coverage guard deterministic — read `files`, not `npm pack`
The npm-pack-based guard timed out in CI: `npm pack`'s prepare/prepack lifecycle
is not skipped by `--ignore-scripts` (flag or env config) on the CI npm, so the
inner pack ran the full build (~20s+) — fine for the slow smoke job, but it blew
past vitest's 30s test timeout in the coverage job (and risked re-entering this
prepack guard).
Replace it with a deterministic, fast (~0.1s) check that needs no subprocess:
since `files: ["vendor"]` OVERRIDES `.npmignore` for the vendored subtree (so
`.npmignore` can never drop vendored source — verified), the ONLY lever that can
exclude source is narrowing the package.json `files` field. The guard now reads
`files` directly: a grammar "ships source" iff `files` includes the vendor
subtree AND the grammar carries a buildable source set on disk. A lean publish
that narrows `files` while a grammar lacks 6/6 prebuilds still fails the gate.
* feat(ci): vendored tree-sitter grammar update monitor
Adds a weekly (+ dispatchable) workflow that checks each vendored grammar against
its source-of-origin (npm for swift/kotlin, the GitHub default branch for
dart/proto; c is excluded — held at 0.21.4 for ABI safety) and opens a PR
re-vendoring any update that is ABI-COMPATIBLE with the pinned tree-sitter@0.21.1
(LANGUAGE_VERSION 13-14).
ABI awareness is the point: most upstreams have moved to ABI 15 (newer
tree-sitter), so a blind "bump to latest" would open PRs that can't build. The
monitor fetches the candidate source, reads its parser.c LANGUAGE_VERSION, and
only re-vendors 13/14 — incompatible updates are reported (notice + job summary),
never applied. (Confirmed live: dart/proto upstreams are ABI 15 today and are
correctly held; swift/kotlin are current.)
The re-vendor refreshes only the source-build inputs + runtime entrypoints,
preserving the GitNexus-hardened binding.gyp / README / prebuilds; the version
bump then triggers build-tree-sitter-prebuilds.yml, whose ABI-validation is the
final safety net so a subtly-wrong re-vendor can't silently ship. PR creation is
gated on the RELEASE_APP secret (skips with a notice if absent), mirroring the
build aggregate. Unit test locks the ABI gate; the script is import-safe.
* feat(ci): monitor tree-sitter-c too (report-only, ABI-pinned)
c was excluded from the update monitor, so an upstream c update went unnoticed.
Include it, but as report-only via a `hold`: c is ABI-pinned at 0.21.4
(#1242/#858) and must not auto-bump without a tree-sitter runtime upgrade, so an
available c update is detected + surfaced (notice + job summary) but never
auto-PR'd — even if it were ABI-13/14. `--apply c` refuses defensively. (Live:
upstream c is 0.24.1 / ABI 15 today, so c is doubly held — reported, not applied.)
* fix(ci): drop the shell in the grammar monitor's github fetch (CodeQL)
CodeQL flagged the GitHub-tarball fetch — it used `bash -c "gh api …/tarball/$ref
> src.tgz && tar xzf src.tgz"`, interpolating the API-derived ref into a shell
command (the shell-command-injection family: "this shell command depends on an
uncontrolled file name"). Replace it with a shell-free path: capture `gh api`'s
binary tarball as a Buffer via execFileSync, write it to a fixed file, and
extract with execFileSync('tar', …). No shell, no injection surface. Verified the
dart/proto fetch + ABI read still work.
---------
Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
|
||
|
|
fca30c7e26
|
fix(audit): Centralize heritage supertype matching (#1921/#1922) (#1940)
* fix(audit): Centralizes heritage supertype matching so qualified, generic, scoped, and interface bases produce inheritance edges across all OO languages, with per-language configs and fixtures. * fix(audit): Harden parsing for #1922 with per-parse timeouts, ERROR/partial parse flags, tree-sitter pinned to 0.21.1, and CI ABI checks for every grammar. * fix: action lint passing * fix: feedback from triage review --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
||
|
|
d1d2a64d0f
|
perf(ingestion): linearize scope-capture across all languages + Python import resolution (O(n²)→O(n)) (#1918)
Some checks are pending
CodeQL / Analyze (javascript-typescript) (push) Waiting to run
CodeQL / Analyze (python) (push) Waiting to run
Gitleaks / gitleaks (push) Waiting to run
Publish / Classify release event (push) Waiting to run
Publish / RC guard (marker + release-PR skip) (push) Blocked by required conditions
Publish / ci (push) Blocked by required conditions
Publish / Publish to npm (push) Blocked by required conditions
Publish / Build & Push RC Docker images (push) Blocked by required conditions
Scorecard / Scorecard analysis (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-cli) (push) Waiting to run
Trivy Image Scan / Trivy (gitnexus-web) (push) Waiting to run
* bench(python-scope): build-free measure harness + baseline fingerprint for emitPythonScopeCaptures
ce-optimize scaffolding for the python-scope-capture run. Mirrors the Go
scope-capture harness (#1848): imports the .ts hotpath via tsx, times
emitPythonScopeCaptures on a synthetic DAO source at 250/800 entities, and
pins an order-independent sha256 capture fingerprint over the whole
lang-resolution/python-* corpus + a fixed 20-entity DAO as the correctness gate.
Baseline (current code) is O(n^2): 250->800 entities (3.2x) -> 10.7x time
(1062->11343ms), scaling_ratio 3.34.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* optimize(python-scope-capture): thread captured nodes to kill O(n^2) findNodeAtRange re-walks
emitPythonScopeCaptures re-derived each tree-sitter match's AST node via
findNodeAtRange(tree.rootNode, ...) on every match, scanning all of root's named
children per call -> O(matches x rootChildren) ~ O(n^2). The same #1848 bug Go
had (fixed in
|
||
|
|
ac9a2ee12f
|
chore(ci): consolidate parity shards and narrow cross-platform matrix (#1798)
* chore(ci): reduce CI runner-minutes by consolidating parity and narrowing cross-platform
Scope-resolution parity previously spawned 9 separate GitHub Actions jobs
(one per migrated language), each doing full checkout + npm ci + build for
a single test file. Consolidate into one job running scripts/run-parity.ts
which loops through all migrated languages sequentially — same coverage,
~45 fewer runner-minutes of redundant setup per PR.
Cross-platform (Windows/macOS) previously ran the full 373-file test suite.
Narrow to 45 platform-sensitive files (native LadybugDB, process spawning,
path separators, worker threads, filesystem behavior). Full suite still runs
on Ubuntu with coverage.
Also adds 2 missing lbug integration tests (lbug-orphan-sidecar-recovery,
lbug-readonly-init) to the sequential lbug-db vitest project where they
belong, and rewrites TESTING.md to document all test lanes.
* fix: address code review findings on parity and cross-platform scripts
- Capture stderr in run-parity.ts (vitest writes diagnostics to stderr)
- Lower per-invocation timeout from 5min to 60s to stay within CI job limit
- Add --language flag validation (error on missing value)
- Add timeout diagnostic to run-cross-platform.ts catch block
- Add analyze-wal-checkpoint-failure.test.ts to lbug-db sequential project
- Expand cross-platform list: parser-loader, pipeline, pipeline-graph-golden,
setup-skills, cli/tool-no-index-stderr (51 files, was 45)
* fix: add shell:true for Windows npx resolution and simplify fs import
execFileSync('npx', ...) fails with ENOENT on Windows because npx is
npx.cmd — shell:true resolves this. Also replaces dynamic await
import('fs') with static import, and fixes timeout detection to use
err.killed instead of err.code.
* fix(ci): raise parity per-invocation timeout to 120s and job timeout to 30min
TypeScript and C++ resolver tests take 60-90s on CI runners, exceeding
the 60s per-invocation timeout. Raise to 120s. Also bump the job-level
timeout from 25 to 30 minutes for margin (realistic total is ~11 min).
* fix(ci): raise parity per-invocation timeout to 180s for C++ resolver
C++ resolver tests take 130-150s on CI runners due to template
metaprogramming, ADL, and SFINAE fixture volume. 120s was still too
tight. Realistic total across all 9 languages is ~12 min, well under
the 30-min job timeout.
* fix(ci): use stdio inherit for parity — no per-invocation timeout
Switch from piped stdio with per-invocation timeouts to stdio: 'inherit'.
Vitest output streams to CI console in real time, making failures
immediately visible. The CI job-level timeout (30 min) is the only
guard — no more artificial per-invocation timeouts that cut off slow
resolver tests like C++ (which genuinely takes 3+ minutes).
---------
Co-authored-by: Test <test@example.com>
|
||
|
|
d3de5fa5d5
|
fix(install): materialize vendored grammars to fix Windows EPERM (#1728) (#1729)
* fix(install): materialize vendored grammars to fix Windows EPERM (#1728) Stop using file: optionalDependencies for tree-sitter-dart/proto/swift, which made npm symlink vendor paths on install and fail on Windows without symlink privileges. Copy vendor trees into node_modules at postinstall instead; keep native builds and #836 vendor hygiene. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(install): atomic materialize swap + fail-soft tests (#1728, #836) Hardens PR #1729 against two issues the original implementation could still hit: 1. Torn-state on rmSync→cpSync. The previous loop deleted the destination before copying. If cpSync threw — the exact Windows EPERM scenario this PR targets — a previously-working grammar was silently wiped. Now we copy to {dest}.materialize-tmp first and renameSync into place, so an interrupted copy leaves the prior materialization intact. 2. Fail-soft try/catch had no test coverage. Adds two POSIX-only tests (chmod 0o555 to deterministically force cpSync to throw) that verify (a) a single grammar failure does not abort the other two, and (b) an existing materialization survives a partial-copy failure. Skipped on Windows where chmod doesn't enforce write restriction; runs on Linux CI. Other test improvements locking in the install-hygiene invariants: - All three vendored grammars (dart/proto/swift) checked, not just dart. - GITNEXUS_SKIP_OPTIONAL_GRAMMARS=1 short-circuit is exercised. - Vendor cleanliness (#836): no node_modules/build under vendor/. - Idempotent re-runs (clean overwrite verified via sentinel file). - Missing-vendor warn+continue path now has explicit coverage. - Vendored package manifests asserted to carry no install script or runtime dependencies. - package.json optionalDependencies asserted free of vendored grammars. - package-lock.json assertion tightened from `if (entry !== undefined) { expect(entry.link).not.toBe(true); }` (vacuous when entry is absent, i.e. the expected post-fix state) to `expect(...).toBeUndefined()`. Verified locally: - npx tsc --noEmit: clean - vitest test/unit/materialize-vendor-grammars.test.ts: 8 pass + 2 POSIX-only skipped on Windows - npm pack tarball: no vendor/*/node_modules or vendor/*/build entries - Isolated global install (clean + upgrade + SKIP env) into temp prefix: succeeds; gitnexus --version → 1.6.5; vendor stays clean post-install. * fix(install): address review feedback — Swift parity, atomicity, CI smoke Resolves all findings from the automated production-readiness review on verify/issue-1728-symlink. Swift warning parity (review #2): Add tree-sitter-swift to OPTIONAL_GRAMMARS in src/cli/optional-grammars.ts alongside Dart and Proto. Before this commit, Swift was materialized at postinstall and probed by build-tree-sitter-swift.cjs but the runtime warnMissingOptionalGrammars() never warned when it failed to load — users got silent Swift degradation from the optional-grammars surface (parser-loader's separate unavailableNote only fires on demand). Now the warning path matches the materialize path. README env-var table (review #1): Update the GITNEXUS_SKIP_OPTIONAL_GRAMMARS row at README.md line 248 to list all three vendored grammars (dart, proto, swift). The quick note earlier in the README already mentioned all three; only the table row was stale. Atomicity hardening (review #3): materialize-vendor-grammars.cjs now copies to {dest}.materialize-tmp, renames the existing dest to {dest}.materialize-bak (if present), then renames the partial into dest, then removes the backup. If the partial→dest rename fails (e.g. Windows AV scanner racing the swap), the catch block restores from backup so the previously-materialized grammar is preserved. Closes the narrow torn-state window where the prior implementation could leave dest deleted after rmSync succeeded but renameSync failed. Swift probe docs (review #4): build-tree-sitter-swift.cjs script header rewritten to describe what the script actually does — probe node-gyp-build at install time so missing-prebuild failures surface as install-time warnings instead of first-parse runtime errors. The script does not "activate" anything; the runtime require() in parser-loader does the actual load. Console warning text updated to match ("prebuild probe" not "activation"). Windows packaged-install smoke test (review #5): New CI job `packaged-install-smoke` in .github/workflows/ci-tests.yml matrices on windows-latest and ubuntu-latest. Runs npm pack, installs the produced tarball globally into RUNNER_TEMP, then asserts: * no vendor/*/node_modules or vendor/*/build (#836 invariant) * tree-sitter-{dart,proto,swift} in node_modules are real directories, not junctions/symlinks (#1728 invariant) * gitnexus --version runs against the installed CLI Closes the coverage gap where the existing windows-latest job only ran `npm ci` in the source checkout — exercising postinstall but not the tarball reify step that historically tripped EPERM. Verified locally: npx tsc --noEmit: clean vitest test/unit/materialize-vendor-grammars.test.ts test/unit/cli-commands.test.ts: 18 pass + 2 POSIX-only skipped on Windows prettier + eslint on all changed files: clean * fix(ci): disable credential persistence on packaged-install-smoke checkout GitHub Advanced Security (zizmor artipacked) flagged the new packaged-install-smoke job's actions/checkout step as a potential credential-persistence risk. The job runs `npm pack` + global install and never pushes back, so the GITHUB_TOKEN that checkout would persist in .git/config provides no value and only widens the leak surface (any future artifact-upload step in this job would carry the token). Disable persistence explicitly via `persist-credentials: false` on this job's checkout. Scoped to the new job — pre-existing checkouts above are left unchanged. * fix(ci): use find instead of ls for tarball lookup (SC2012) actionlint shellcheck SC2012 flagged `TARBALL=$(ls gitnexus-*.tgz | head -n1)`. Switch to `find . -maxdepth 1 -name 'gitnexus-*.tgz' -print -quit` which handles non-alphanumeric filenames safely. Also add an explicit empty-result check so the failure mode is a clear error message instead of a silent `npm install -g ""` later. * fix(tests): sabotage vendor src (not partial path) in POSIX fail-soft tests The fail-soft tests in materialize-vendor-grammars.test.ts pre-chmod'd the destination's .materialize-tmp partial directory to 0o555 to force cpSync to throw. After the atomicity rewrite (`fix(install): atomic materialize swap + fail-soft tests`), the materialize script now starts each grammar's loop with `fs.rmSync(partial, { force: true })`, which deletes the chmod'd sabotage before cpSync runs — so cpSync succeeds and the partial is then renamed into dest, leaving the test's `finally` block with no path to chmod back (ENOENT) and the assertion that proto remained unmaterialized failing because it materialized cleanly. Fix: sabotage the *vendor source* directory (which the script reads from but never modifies) by chmod'ing it to 0o000. cpSync then fails on readdir, the catch block fires per-grammar, dart and swift still materialize from their unaffected sources, and the existing-dest preservation test verifies that a sabotaged second-run leaves the prior materialization (and its sentinel file) intact. Tests now pass locally (8 pass + 2 POSIX-only skipped on Windows) and should pass on macOS/Ubuntu CI where the sabotage runs. * fix(tests): restrict fail-soft tests to Linux (macOS Node cpSync abort) Node 22 on macOS aborts the process with `libc++abi: terminating due to uncaught exception filesystem_error` when fs.cpSync hits a source directory it can't read — the abort happens at the C++ filesystem layer and bypasses Node's JS try/catch entirely (nodejs/node#51399). My chmod-0o000-the-source sabotage strategy triggers this SIGABRT on macOS CI before the production script's `try { cpSync } catch` ever runs, so the test sees a child-process crash instead of the fail-soft warning it's verifying. The production script's fail-soft is correct on Linux (where EACCES surfaces as a normal JS exception) and effectively untestable on macOS via permission sabotage. Real installs don't hit this — npm always ships vendor/ with readable permissions — so the macOS gap is a test artifact, not a behavior gap. Restrict the two chmod-based tests to Linux only by replacing `skipOnWin` with `linuxOnly`. Linux CI continues to verify both the one-grammar-fails-others-succeed and existing-materialization-preserved invariants. macOS and Windows runs skip these two scenarios; the other 8 tests still run on every platform. * fix(tests): remove materialize unit tests, rely on CI smoke job The materialize-vendor-grammars.test.ts file has been a recurring source of platform-specific CI noise: - Windows: chmod doesn't enforce read/write restrictions the way POSIX does, so the fail-soft tests had to be skipped there. - macOS Node 22: cpSync against an unreadable source aborts the process with a libc++ filesystem_error (nodejs/node#51399) that bypasses JS try/catch entirely — making the chmod-based fail-soft tests unrunnable on macOS too. - The "vendor-cleanliness" and "idempotency" tests on Windows intermittently flake due to fs.cpSync timing on the GitHub runner. The invariants these tests verified are now covered by stronger, more realistic surfaces: - packaged-install-smoke (ci-tests.yml): runs `npm pack` then `npm install -g ./gitnexus-*.tgz` on windows-latest and ubuntu-latest, then asserts no vendor/*/node_modules, no vendor/*/build (#836), no junctions/symlinks on the materialized grammar directories (#1728), and a working `gitnexus --version`. This is the actual end-user install path. - cli-commands.test.ts (kept, unmodified): asserts package.json declares no `file:` optionalDependencies for vendored grammars, the Swift vendor manifest carries no install script or dependencies, and the postinstall chain runs materialize-vendor-grammars.cjs + build-tree-sitter-swift.cjs. These are static manifest checks — deterministic, fast, no flake risk. Removing the dynamic script-execution tests trades unit-level coverage for end-to-end smoke coverage that actually exercises the `file:` → cpSync change against a real npm install lifecycle, on the platform the fix targets (windows-latest). --------- Co-authored-by: Cursor <cursoragent@cursor.com> |
||
|
|
6f1cfffdd7
|
fix(security): Harden CI permissions (#1454)
* Initial plan * chore(security): harden workflow permissions and pin Docker base image digests Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/2ddc8f2b-7355-48cf-9a0b-c06df66c3f47 * fix(security): restore permissions: {} on publish + release-candidate workflows These two release-publishing workflows had permissions: {} (the strictest valid form) before PR #1454, which replaced it with permissions: read-all. Every job in both files already declares its own permissions block, so the workflow-level default is only the safety net for future jobs added without one — read-all weakens that net for no benefit. Restore {} and the explanatory comment. Scorecard's TokenPermissions check accepts both forms, so this preserves U9 compliance. * fix(security): narrow permissions: read-all to contents: read on 13 workflows PR #1454 added permissions: read-all to 13 workflows that previously had no top-level permissions block. read-all is Scorecard-compliant but unnecessarily broad — every job in scope only needs contents:read at the workflow level (job-level blocks already grant the writes that any job actually performs). Snapshot of every job in the 13 workflows confirms contents:read is sufficient: - ci.yml: quality/tests/scope-parity have explicit contents:read job blocks; save-pr-meta uses upload-artifact only (no token scopes needed); ci-status is pure shell. - ci-e2e.yml, ci-quality.yml, ci-scope-parity.yml, ci-tests.yml: all jobs do checkout + npm + tsc/vitest/playwright/upload-artifact only; no API token scopes required. - claude.yml, codeql.yml, dependency-review.yml, docker.yml, gitleaks.yml, pr-labeler.yml, trivy.yml, workflow-lint.yml: all jobs already declare their own job-level blocks (security-events:write, pull-requests:write, packages:write, etc.) so the workflow-level default does not gate them. zizmor (--min-severity high) is clean on the resulting tree. Pre-existing medium findings (secrets-inherit, artipacked) are in unrelated workflows and untouched by this commit. scorecard.yml also uses read-all but pre-existed PR #1454 and is deferred to a follow-up PR per the plan's scope boundary. --------- Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
||
|
|
040bb7a489
|
feat: add docker support (#848)
* feat: add docker support * feat: move docker files to root * feat: add docker build and push workflow * fix: pin docker action SHAs to verified commits Made-with: Cursor * fix: remove redundant --platform=$TARGETPLATFORM from runtime stage Made-with: Cursor * fix: upgrade docker actions to Node.js 24-compatible versions Made-with: Cursor * docs: updated readme * fix: update docker references * fix(docker-server): reject null bytes in resolvePath Defensively harden the path traversal guard by returning null early when the URL contains a null byte, before normalization runs. Made-with: Cursor * fix(docker-server): handle createReadStream errors Attach an error listener before piping so mid-flight read errors (truncated file, permission change) cleanly destroy the response instead of being silently swallowed. Made-with: Cursor * fix(docker-server): replace existsSync with async stat Eliminates the TOCTOU race between the initial stat call and the subsequent existsSync check. Reuses the async stat pattern already in place and removes the now-unused existsSync import. Made-with: Cursor * test(docker-server): add integration tests; fix %00 null-byte bypass Decode the URL before the null-byte check so percent-encoded null bytes (%00) are also rejected with 400 instead of falling through to the SPA fallback. Adds 5 node:test integration tests covering valid assets, SPA fallback, path traversal, null bytes, and 404. Made-with: Cursor * style: fix prettier formatting in docker-server files Made-with: Cursor * fix(docker): wire tests into CI, fix resolvePath separator, correct image namespace - Add `node --test docker-server.test.mjs` step to ci-tests.yml so the path-traversal guard tests run in every CI pass instead of being silently skipped. - Fix resolvePath containment check: `startsWith(root)` would allow sibling directories like `/app/dist-evil/`; now guards with `root + sep` or exact match. - Update docker-compose.yaml default image from `abhigyanpatwari` namespace to `brainifii` to match what docker.yml publishes to GHCR. * fix(docker): update apt-get commands and set user permissions - Modify Dockerfile and Dockerfile.test to include options for apt-get to bypass validity checks during updates. - Set ownership of the /app directory to the 'node' user in the runtime stage for improved security and proper permission handling. * fix(docker): switch to Alpine base images for smaller footprint - Update Dockerfile to use Alpine-based Node.js images for both builder and runtime stages, reducing image size and improving performance. - Replace apt-get commands with apk for package installation in the runtime stage. * fix(docker): update Node.js version in Dockerfile - Change base image from node:20-alpine to node:22-alpine * fix(docker): update Node.js version in Dockerfile to 22-alpine for runtime --------- Co-authored-by: kritik.b <kritik.b@media.net> |
||
|
|
3fd4346bcb
|
chore(deps): bump actions/checkout from 4.3.1 to 6.0.2 (#842)
Bumps [actions/checkout](https://github.com/actions/checkout) from 4.3.1 to 6.0.2. - [Release notes](https://github.com/actions/checkout/releases) - [Changelog](https://github.com/actions/checkout/blob/main/CHANGELOG.md) - [Commits](https://github.com/actions/checkout/compare/v4.3.1...de0fac2e4500dabe0009e67214ff5f5447ce83dd) --- updated-dependencies: - dependency-name: actions/checkout dependency-version: 6.0.2 dependency-type: direct:production update-type: version-update:semver-major ... Signed-off-by: dependabot[bot] <support@github.com> Co-authored-by: dependabot[bot] <49699333+dependabot[bot]@users.noreply.github.com> |
||
|
|
c2734cd25e
|
chore(deps): bump actions/upload-artifact from 4.6.2 to 7.0.1 (#838)
Bumps [actions/upload-artifact](https://github.com/actions/upload-artifact) from 4.6.2 to 7.0.1.
- [Release notes](https://github.com/actions/upload-artifact/releases)
- [Commits](
|
||
|
|
fd7fb5bf1f
|
feat: unify web and cli ingestion pipeline (#536)
* feat: add server-side ingestion API (POST /api/analyze, SSE progress)
Extract core analysis orchestration from CLI into shared run-analyze.ts
module. Add server-side analyze endpoints so the web app can trigger
ingestion via HTTP instead of running the full pipeline in-browser.
New files:
- src/core/run-analyze.ts — shared runFullAnalysis() orchestrator
- src/server/analyze-job.ts — job manager (single-slot, dedup, SSE events)
- src/server/analyze-worker.ts — forked child process (8GB heap, IPC)
- src/server/git-clone.ts — shallow clone/pull with SSRF protection
API endpoints:
- POST /api/analyze — start analysis (returns 202 + jobId)
- GET /api/analyze/:jobId — poll job status
- GET /api/analyze/:jobId/progress — SSE progress stream
Security: URL validation blocks private IPs and non-HTTP schemes.
Path validation requires absolute paths. Git stderr not leaked to API.
* feat(web): add server-side analyze UI (Phase 2)
Add "Analyze on Server" flow to the web app's Server tab so users
can trigger server-side ingestion from the browser. On completion,
the graph is automatically loaded via the existing connectToServer flow.
New files:
- AnalyzeProgress.tsx — progress bar with phase label, elapsed time, cancel
Modified files:
- backend.ts — startAnalyze(), streamAnalyzeProgress() SSE client
- DropZone.tsx — analyze URL input + button below Connect section
- App.tsx — onServerAnalyze handler wires analyze -> connect flow
* feat: add job cancellation, timeout, and child process tracking (Phase 3)
- DELETE /api/analyze/:jobId — cancel running analysis (SIGTERM to worker)
- 30-minute timeout kills long-running workers automatically
- Child process refs tracked in JobManager for cleanup on shutdown
- dispose() kills all active children on SIGINT/SIGTERM
- Web cancel button now calls server DELETE endpoint
- cancelAnalyze() added to web backend client
* refactor(web): remove browser ingestion pipeline (Phase 4)
Delete 16 duplicated ingestion files, 2 unused service files
(git-clone, zip), and tree-sitter parser-loader from gitnexus-web.
All ingestion now runs server-side via POST /api/analyze.
Deleted (18 files, ~5,000 lines):
- core/ingestion/*.ts (16 pipeline processors)
- core/tree-sitter/parser-loader.ts (WASM tree-sitter loader)
- services/git-clone.ts (isomorphic-git client-side clone)
- services/zip.ts (JSZip extraction)
Simplified:
- DropZone.tsx — server-only (removed ZIP/GitHub tabs)
- ingestion.worker.ts — removed runPipeline/runPipelineFromFiles
- useAppState.tsx — removed pipeline callbacks
- App.tsx — removed handleFileSelect/handleGitClone
- main.tsx — removed Buffer polyfill for isomorphic-git
- types/pipeline.ts — removed PipelineResult/serialize helpers
Kept: cluster-enricher.ts (LLM enrichment, still used by worker)
Dependencies now removable: web-tree-sitter, isomorphic-git,
@isomorphic-git/lightning-fs, jszip (estimated 3-4MB bundle savings)
* refactor(web): sync graph schema from CLI + delete WASM grammars
Sync graph/types.ts and lbug/schema.ts from the CLI (source of truth)
to the web module so the browser LadybugDB can handle all node and
relationship types the server pipeline produces.
Synced types: Route, Tool, Section node labels; HANDLES_ROUTE, FETCHES,
HANDLES_TOOL, ENTRY_POINT_OF, WRAPS, QUERIES relationship types;
description fields on Function/Class/Interface/Method/CodeElement.
Deleted: public/wasm/ directory (14 tree-sitter WASM grammars + core).
Removed deps: web-tree-sitter, isomorphic-git, @isomorphic-git/lightning-fs,
jszip, buffer, @types/jszip (~3-4MB bundle savings).
* feat: create gitnexus-shared package for unified type definitions
Create a new gitnexus-shared package that is the single source of truth
for types shared between the CLI and web modules:
- SupportedLanguages enum (15 languages)
- Graph types: NodeLabel, NodeProperties, RelationshipType, GraphNode, GraphRelationship
- Schema constants: NODE_TABLES, REL_TYPES, REL_TABLE_NAME, EMBEDDING_TABLE_NAME
- Pipeline types: PipelinePhase, PipelineProgress
Both gitnexus (CLI) and gitnexus-web import from gitnexus-shared via
file: dependency. Each package re-exports and extends with platform-specific
additions (CLI: KnowledgeGraph with mutation methods; Web: simpler KnowledgeGraph).
This ensures types can never drift between packages — adding a new
language, node type, or relationship type in gitnexus-shared automatically
propagates to both consumers.
* refactor: import shared types directly from gitnexus-shared at call sites
Replace all re-export patterns with direct imports from gitnexus-shared.
72 files updated across CLI and web:
- SupportedLanguages: 49 CLI files now import from 'gitnexus-shared'
instead of '../config/supported-languages.js'
- GraphNode, GraphRelationship, NodeLabel: 22 CLI + 10 web files now
import from 'gitnexus-shared' instead of local re-export wrappers
- NODE_TABLES: api.ts imports from 'gitnexus-shared'
- PipelineProgress: useAppState.tsx imports from 'gitnexus-shared'
Local types.ts files now only define platform-specific KnowledgeGraph
(CLI has mutation methods, web has add-only). No more re-exports.
* fix: update lock files for gitnexus-shared, remove stale vite polyfills
Add gitnexus-shared@1.0.0 to lock files so npm ci succeeds in CI.
Remove buffer polyfill and global define from vite.config.ts (isomorphic-git was removed).
* fix(security): add write guard to HTTP /api/query, fix CORS proxy bypass
- Add isWriteQuery() check to POST /api/query handler — blocks CREATE,
DELETE, SET, MERGE, DROP, etc. via HTTP API (guard was only in MCP
pool adapter and browser-side, not the HTTP server path)
- Extend CYPHER_WRITE_RE with CALL, INSTALL, LOAD keywords
- Fix CORS proxy subdomain bypass: endsWith('github.com') allowed
'evil-github.com'. Now requires exact match or '.github.com' suffix
* feat(server): enhance /api/search with enrichment, add /api/grep, strip graph content
- POST /api/search: add mode param (hybrid|semantic|bm25), server-side
enrichment returns connections/cluster/processes per result in one call
(collapses 31 sequential HTTP calls to 1 for the agent search tool)
- GET /api/grep: regex search across indexed file contents, eliminates
need to transfer all file contents to browser
- GET /api/graph: strip content field by default (80-95% payload
reduction). Use ?includeContent=true for backward compat
- Add LRU cache invalidation hook point for future caching
* feat(server): add /api/embed endpoint for server-side embedding generation
- POST /api/embed: triggers embedding pipeline via onnxruntime-node
with JobManager for single-slot concurrency, timeout, and dedup
- GET /api/embed/:jobId: poll job status
- GET /api/embed/:jobId/progress: SSE stream with heartbeat, event IDs,
and X-Accel-Buffering:no header for proxy compatibility
- DELETE /api/embed/:jobId: cancel running embedding job
- Maps embedding pipeline phases (ready→complete, error→failed) to
JobManager status conventions
* feat(web): create consolidated BackendClient module
Single HTTP client replacing backend.ts, server-connection.ts, and
worker HTTP helpers. Includes:
- Typed methods: runQuery, search (enriched), grep, readFile, connect
- Generic streamSSE<T> utility extracted from analyze progress pattern
- BackendError with discriminated code field (network/server/client/timeout)
- Embed API: startEmbeddings, streamEmbeddingProgress, cancelEmbeddings
- Search with mode param (hybrid|semantic|bm25) and enrichment
* refactor(web): rewrite Graph RAG tools for backend-only HTTP queries
- Search tool: uses enriched /api/search (1 call replaces 31 sequential queries)
- Cypher tool: removes browser-side embedding; {{QUERY_VECTOR}} routes to
/api/search with mode:'semantic' instead of local transformers.js
- Grep tool: uses /api/grep instead of in-memory fileContents map
- Read tool: uses /api/file instead of fileContents map lookup
- Impact tool: getCallSiteSnippet now async via /api/file
- createGraphRAGTools now accepts GraphRAGBackend interface instead of
7 separate function params + fileContents map
- createGraphRAGAgent simplified to (config, backend, context?)
- Removed imports: embedder, lbug/schema (replaced with gitnexus-shared)
- Net: -205 lines
* refactor(web): delete WASM infrastructure, remove 7 packages (-5242 lines)
Delete browser-side LadybugDB, embeddings, search, and worker:
- gitnexus-web/src/core/lbug/ (adapter, csv-generator, schema, query-result)
- gitnexus-web/src/core/embeddings/ (embedder, pipeline, text-gen, types)
- gitnexus-web/src/core/search/ (bm25-index, hybrid-search)
- gitnexus-web/src/workers/ingestion.worker.ts (828 lines)
- gitnexus-web/src/services/server-connection.ts (merged into backend-client)
- gitnexus-web/src/types/lbug-wasm.d.ts
Remove packages: @ladybugdb/wasm-core, @huggingface/transformers,
comlink, minisearch, vite-plugin-wasm, vite-plugin-top-level-await,
vite-plugin-static-copy
Update vite.config.ts: remove WASM plugins, COOP/COEP headers,
worker config, optimizeDeps exclude
Update imports: App.tsx, DropZone, Header, AnalyzeProgress,
BackendRepoSelector, useBackend → backend-client
* refactor(web): replace Worker/Comlink with direct BackendClient calls
- useAppState: remove Worker instantiation, Comlink.wrap, apiRef.
All queries now go through BackendClient HTTP functions directly.
- Agent runs on main thread (I/O-bound LLM streaming, not CPU-bound)
- initializeAgent: creates GraphRAGAgent with GraphRAGBackend interface
bound to BackendClient methods (runQuery, search, grep, readFile)
- startEmbeddings: calls POST /api/embed + SSE progress instead of
running browser-side transformers.js pipeline
- switchRepo: no longer loads graph into WASM DB or extracts fileContents
- App.tsx: handleServerConnect simplified (no fileContents, no loadServerGraph)
- Delete old backend.ts (replaced by backend-client.ts)
- Net: -396 lines
* fix(web): fix await-in-map build error in agent streaming
Move dynamic import of AIMessage outside .map() callback to avoid
"await can only be used inside an async function" build error.
* fix(web): remove stale apiRef references that broke chat functionality
sendChatMessage referenced apiRef.current (deleted Worker ref) which
would throw TypeError. Replaced with agentRef.current guard since agent
now runs on main thread.
* fix(server): dispose embedJobManager on shutdown, fix job mutation
- Add embedJobManager.dispose() to shutdown handler (was missing,
causing cleanup timer to keep Node process alive)
- Replace direct job.repoName/status mutation with updateJob() to
ensure SSE event emission for initial status change
* fix(server): parameterize Cypher, harden grep, unify SSE endpoints
- Search enrichment: replace string interpolation with executePrepared()
using $nid parameter binding to prevent Cypher injection
- Add executePrepared() to core lbug-adapter (prepare/execute pattern)
- /api/grep: add 200-char pattern length limit (ReDoS protection),
search files on disk instead of loading entire corpus into memory
(constant memory usage regardless of repo size)
- Extract mountSSEProgress() shared helper for SSE streaming — both
analyze and embed endpoints now have consistent heartbeat (30s),
event IDs (reconnection support), and X-Accel-Buffering header
* refactor(web): remove dead code from Worker-era architecture
- Remove loadServerGraph no-op function, interface member, and all consumers
- Remove testArrayParams stub and interface member
- Remove fileContents state from GraphStateProvider (never populated in
server-side architecture)
- Remove forceDevice parameter from startEmbeddings (server-side, no device choice)
- Replace phantom EmbeddingProgress type with inline { phase, percent }
- Replace resolvePathFromContents (needed fileContents Map) with graph-based
file path resolution using filePathIndex built from graph nodes
- Fix: AI citation grounding ([[file.ts:10]]) now works via graph node lookup
instead of broken fileContents-based resolution
* fix(web): use streamAgentResponse for full tool_call/reasoning streaming
Replace naive agent.stream() loop that only handled content chunks with
streamAgentResponse() generator from agent.ts. This properly routes:
- reasoning tokens (before/between tool calls)
- tool_call events (name, args, status)
- tool_result events (completed tool output)
- content tokens (final answer after all tools done)
Previously the onChunk handler for tool_call/tool_result/reasoning was
dead code since the streaming loop only emitted content events.
* fix(web): resolve CI type errors from dead code removal
- Import GraphNode/GraphRelationship from gitnexus-shared in graph.ts
(not re-exported from local types.ts)
- Add Route, Tool entries to NODE_COLORS and NODE_SIZES constants
- Add PipelineResult type to web types/pipeline.ts
- Remove fileContents from CodeReferencesPanel and RightPanel
- Remove testArrayParams and forceDevice from EmbeddingStatus
- Remove forceDevice args from startEmbeddings() calls in App.tsx
- Fix embeddingProgress property accesses for simplified type
* fix(ci): add setup-gitnexus-web action, build shared once per job
- Remove prepare script from gitnexus-shared (tsc not available during
npm ci of consuming packages)
- Create .github/actions/setup-gitnexus-web composite action: builds
gitnexus-shared then runs npm ci for gitnexus-web
- setup-gitnexus action: already builds gitnexus-shared for CLI jobs
- ci-quality typecheck-web: uses setup-gitnexus-web (DRY)
- ci-e2e: uses setup-gitnexus-web (DRY)
- ci-tests: gitnexus-shared already built by setup-gitnexus, just
install web deps without rebuilding
* fix(ci): use prepare script so gitnexus-shared builds during npm ci
Move typescript from devDependencies to dependencies in gitnexus-shared
so the prepare script (tsc) works when npm resolves file: deps during
npm ci. No GHA modifications needed — npm handles the build lifecycle
automatically.
Remove manual gitnexus-shared build steps from setup-gitnexus and
setup-gitnexus-web actions.
* fix(ci): build gitnexus-shared explicitly in setup actions
The file: dependency protocol doesn't reliably run prepare scripts
because devDependencies aren't installed first. Instead of fragile
lifecycle hacks, build gitnexus-shared explicitly in both setup actions:
- setup-gitnexus: npm install && npm run build in gitnexus-shared/
- setup-gitnexus-web: same, before npm ci in gitnexus-web/
- ci-tests: shared already built by setup-gitnexus, web just npm ci
No prepare script, no dist in git, no typescript as a prod dependency.
* fix: remove CALL from CYPHER_WRITE_RE — breaks FTS and vector search
CALL is used by read-only procedures: CALL QUERY_FTS_INDEX(...) and
CALL QUERY_VECTOR_INDEX(...). Adding it to the write guard blocked all
FTS search, causing 3 test failures. The database is opened in read-only
mode as defense-in-depth against write procedures via CALL.
Keep INSTALL and LOAD in the blocklist (genuinely dangerous).
* fix(web): update vercel.json for gitnexus-shared, remove COOP/COEP
- Add installCommand that builds gitnexus-shared before installing
web deps (Vercel doesn't know about the monorepo file: dependency)
- Remove Cross-Origin-Opener-Policy and Cross-Origin-Embedder-Policy
headers (no longer needed — WASM LadybugDB removed)
* fix(web): update tests for deleted modules
- Delete csv-generator.test.ts (tests deleted WASM-only csv-generator)
- Update security-guards.test.ts: import NODE_TABLES/REL_TYPES from
gitnexus-shared instead of deleted src/core/lbug/schema
- Update server-connection.test.ts: import normalizeServerUrl from
backend-client, remove extractFileContents tests (function deleted)
* fix(e2e): remove Server tab click — UI is now server-only
The DropZone no longer has ZIP/GitHub/Server tabs (browser ingestion
was removed). The server URL input is directly visible on the landing
page. Update e2e test to skip the tab click and go straight to input.
All 5 e2e tests pass locally.
* refactor: use gitnexus-shared for PipelinePhase/PipelineProgress types
CLI was duplicating PipelinePhase and PipelineProgress locally instead
of importing from gitnexus-shared. Updated all consumers to import
directly. Also removed dead code: SerializablePipelineResult,
serializePipelineResult(), deserializePipelineResult().
* fix(server): address PR #536 review — security, race conditions, dead code
- Fix path traversal in POST /api/analyze: split into isAbsolute + normalize check
- Add shared repo lock (activeRepoPaths) preventing concurrent analyze+embed on same repo
- Fix 202 response returning actual job.status instead of hardcoded 'queued'
- Add 30-minute timeout for embedding jobs (was missing unlike analyze jobs)
- Fix DropZone calling startAnalyze without setting backend URL first
- Add SSE reconnect with exponential backoff (3 retries) and Last-Event-ID
- Fix normalizeServerUrl to return base URL (no /api suffix) — clear contract
- Delete dead code: proxy.ts, server-graph-hydration.ts, pipeline.ts re-export barrel
- Update LoadingOverlay to import PipelineProgress directly from gitnexus-shared
* fix(server): fix repo lock key mismatch and embed cancel race
- Use getStoragePath(targetPath) as lock key in analyze handler to match
embed handler's entry.storagePath — keys now always align
- Guard embed completion: don't overwrite 'failed' with 'complete' when
job was cancelled while pipeline was still running
- Remove unused jobType parameter from acquireRepoLock
- Log backend.init() errors instead of silently swallowing
* fix: add gitnexus-shared as a local dependency in package-lock.json
* refactor: move language detection to gitnexus-shared, add syntax highlighting for all 15 languages
Move getLanguageFromFilename() from CLI to gitnexus-shared with COBOL
support added. Add getSyntaxLanguageFromFilename() for Prism-compatible
syntax highlighting covering all 15 code languages plus auxiliary
formats (json, yaml, markdown, html, css, bash, sql, xml).
Refactor CodeReferencesPanel to use shared function instead of a local
30-line switch. Delete dead gitnexus-web/src/config/supported-languages.ts
(web already imports SupportedLanguages from gitnexus-shared).
* feat(web): add first-time user onboarding with auto server detection
Replace the manual "Connect to Server" panel with an automatic onboarding
flow that guides first-time users through starting the GitNexus server.
Server detection:
- useBackend hook polls via setTimeout chain (3s, no overlap)
- Page Visibility API pauses polling when tab is hidden
- SSE heartbeat (/api/heartbeat) for instant disconnect detection
Onboarding UI (OnboardingGuide.tsx):
- Step-by-step flow: copy command → run → auto-connect
- Smart command: shows `gitnexus serve` in dev, `npx gitnexus@latest serve` in prod
- Node.js version auto-detected from package.json via Vite define
- Faux terminal windows with copy-to-clipboard, platform tabs, polling indicator
Transitions (DropZone.tsx):
- Crossfade wrapper with snapshot pattern for smooth phase transitions
- Three phases: onboarding → success (1.2s hold) → loading → graph
- Auto-recovery: falls back to onboarding if server dies or connect fails
Server changes:
- GET /api/heartbeat: SSE endpoint for liveness detection
- GET /api/info: version, launch context, Node.js version
- npm run serve script for local development
- app.disable('x-powered-by') hardening
* feat(web): add repo analysis UI, SSE heartbeat, and review fixes
Repo analysis:
- AnalyzeOnboarding: empty-state card when server has zero repos
- RepoAnalyzer: GitHub URL + Local Folder tabs with browse button
- Header repo dropdown: click project badge to switch repos or analyze new
- DropZone 'analyze' phase integrated into Crossfade transitions
Reliability fixes from 5-agent review:
- Polling: stop scheduling timers when tab hidden, restart on visibility return
- Heartbeat: exponential backoff (1s/2s/4s, 3 retries) prevents graph loss on blip
- RepoAnalyzer: completion timer tracked in ref, cleaned up on unmount
- DropZone: standardized card padding (p-7), heading sizes (text-lg)
Accessibility:
- prefers-reduced-motion global CSS rule (WCAG 2.3.3)
- focus-visible rings on CopyButton
- cursor-pointer on all Header buttons
- Consistent rounded-xl on all dropdowns
Cleanup:
- Deleted dead AnalyzeSheet.tsx (219 LOC) and BackendRepoSelector.tsx (89 LOC)
- Fixed AnalyzeProgress lucide import (lucide-react → @/lib/lucide-icons)
* fix(server): resolve analyze worker fork crash in dev mode
The forked analyze worker was crashing immediately with exit code 1
when running via `npm run serve` (tsx). Two issues:
1. Worker path resolved to `analyze-worker.js` but only `.ts` exists
in the source directory — the `.js` file is only in `dist/`.
2. On Windows, bare `--import tsx` in execArgv fails because Node's
ESM resolver for --import uses the child's CWD, not the parent's
node_modules. Windows also rejects raw paths as `d:` is not a
valid URL scheme.
Fix: detect dev vs prod via `import.meta.url` extension. In dev mode,
resolve `tsx/esm` to an absolute `file://` URL via `pathToFileURL()`
anchored to the parent's `createRequire` context. This works on all
platforms and doesn't depend on the child's CWD or PATH.
Also captures child stderr for better crash diagnostics.
Verified: `POST /api/analyze` with GitHub URL completes successfully
in dev mode (tsx) — status goes from cloning → analyzing → complete.
* fix(server): add worker auto-retry, error handling, and crash diagnostics
Worker resilience:
- Auto-retry up to 2 times with exponential backoff (1s, 2s) on crash
- SSE progress shows "Retrying after crash (1/2)..." during retry
- Captures child stderr for crash diagnostics in failure message
- AnalyzeJob tracks retryCount per job
Server error handling:
- app.listen wrapped in Promise so EADDRINUSE/EACCES propagate cleanly
- serve.ts catches startup errors with friendly messages and exit code 1
- EADDRINUSE gets actionable guidance (stop other process or --port flag)
- Global uncaughtException/unhandledRejection handlers prevent silent exits
- DEBUG=1 env var shows full stack traces
* feat: add e2e tests for onboarding flows, worker retry, and error handling
E2E tests (onboarding.spec.ts — 11 tests):
- Flow 1: OnboardingGuide shown when server unreachable (6 tests)
- Flow 2: Auto-connect with success card, analyze phase for zero repos
- Flow 3: Analyze form — GitHub URL validation, Local Folder tab, tab switching
- Flow 4: Repo dropdown in exploring view (skipped without live server)
Updated server-connect.spec.ts:
- Replaced manual Connect button flow with auto-connect waitForGraphLoaded
Server resilience:
- Worker auto-retry (2 attempts with exponential backoff) on crash
- Friendly error messages for serve startup failures (EADDRINUSE etc.)
- Global uncaughtException/unhandledRejection handlers prevent silent exits
- app.listen wrapped in Promise for proper error propagation
* refactor(shared): enforce exhaustive language coverage via Record types
Replace the if/else chain in getLanguageFromFilename with two exhaustive
Record<SupportedLanguages, ...> maps:
- EXTENSION_MAP: every language → its file extensions
- SYNTAX_MAP: every language → its Prism syntax identifier
Adding a new member to the SupportedLanguages enum without adding it to
both maps now produces a TypeScript compile error:
Property '[SupportedLanguages.NewLang]' is missing in type...
This matches the existing pattern in languages/index.ts (providers table)
which already uses `satisfies Record<SupportedLanguages, LanguageProvider>`.
Three compile-time enforcement points now exist:
1. EXTENSION_MAP in language-detection.ts (file extensions)
2. SYNTAX_MAP in language-detection.ts (Prism syntax identifiers)
3. providers in languages/index.ts (LanguageProvider instances)
* feat(web): load source code from server and scroll to selected line
CodeReferencesPanel now fetches file content via GET /api/file when a
node is selected, instead of showing "Code not available in memory".
- Fetches via readFile() from backend-client when selectedFilePath changes
- Shows loading spinner while fetching
- After content loads, auto-scrolls to the selected node's startLine
- Highlights the selected line range with a cyan left border
- Cancels in-flight fetch if selection changes before it completes
Also: refactored language-detection.ts to use exhaustive Record types
(EXTENSION_MAP and SYNTAX_MAP) so adding a new SupportedLanguages enum
member without implementing extensions/syntax is a compile error.
* feat: buffered file reading for Code Inspector
Server: GET /api/file now supports ?startLine=N&endLine=M for reading
a line range instead of the entire file. Returns { content, startLine,
endLine, totalLines }.
Client: readFile() returns ReadFileResult with metadata. When selecting
a symbol (function, class, method), fetches only ±50 lines around the
symbol's startLine/endLine instead of the full file. File nodes still
fetch the entire file.
SyntaxHighlighter startingLineNumber set from the buffer offset so line
numbers are correct even for partial reads.
* fix: adapt readFile callers to new ReadFileResult return type
tools.ts: readFile comes from GraphRAGBackend interface which returns
Promise<string> (the adapter in useAppState extracts .content), so
revert the { content } destructuring back to plain string assignment.
useAppState.tsx: wrap backendReadFile with { repo } options object
and extract .content to satisfy the GraphRAGBackend interface.
* fix(web): ensure new repos appear in list immediately after analysis
Two fixes:
1. DropZone: handleAnalyzeComplete now passes the repoName through to
connectToServer so the specific newly-analyzed repo loads — not the
server's default first repo.
2. App.tsx: fetchRepos() is now awaited BEFORE handleServerConnect in
both the DropZone and Header flows. This ensures the repo list is
populated before the exploring view renders, so the new repo appears
in the header dropdown immediately without a page reload.
* feat: delete repos, re-analyze with force, select after analysis
Server — DELETE /api/repo:
- Acquires repo lock first (409 if analyze/embed in flight)
- Closes LadybugDB, deletes index + clone dir, unregisters, re-inits
- Lock released in finally block
Server — analyze complete:
- backend.init() must succeed before SSE complete fires
- If backend.init() fails, job is marked failed (not complete)
Web — Header repo dropdown:
- Re-analyze: calls POST /api/analyze with force=true, shows spinning
icon + inline progress bar via SSE
- Delete: acquires lock, aborts any running re-analysis SSE for same
repo, refreshes list, switches to next repo
- After analysis completes: refreshes repo list, connects to the
specific repo by name, loads graph, shows in explorer
- Retry with 1.5s backoff on 404 (server may still be reinitializing)
Type safety:
- err: any → err: unknown + instanceof BackendError in retry loop
- Added missing BackendRepo + BackendError imports in App.tsx
|
||
|
|
f0540b33fb
|
ci: E2E workflow, web typecheck job, pre-commit hook, test suite (#486) | ||
|
|
60c93d7d4a
|
feat: upgrade @ladybugdb/core to 0.15.2 and remove segfault workarounds (#374)
* feat: upgrade @ladybugdb/core to 0.15.2 and remove segfault workarounds
The upstream fix (ladybug-nodejs#1) resolves the child QueryResult lifetime
segfault, making .close() safe on all platforms. This removes 6 workaround
sites:
- Remove `dangerouslyIgnoreUnhandledErrors` from vitest config
- Remove platform-conditional .close() guards in global-setup and test helper
- Delete test/setup.ts (process._getActiveHandles unref hack)
- Replace no-op cleanup in test-indexed-db.ts with real adapter close
- Fix pool adapter closeOne() to properly close connections with shared
Database refcount guard and orphaned connection handling in checkin()
- Update segfault-related comments across the codebase
Also bumps @ladybugdb/wasm-core to ^0.15.2 in gitnexus-web for consistency.
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
* fix: keep dangerouslyIgnoreUnhandledErrors for macOS N-API exit crash
The N-API destructor ordering crash during worker fork exit on macOS is
independent of the QueryResult lifetime fix in 0.15.2. Tests pass, but
the exit triggers a crash. Keep the flag with an updated comment
explaining the actual cause. Can be removed once LadybugDB fixes all
destructor ordering issues upstream.
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
* ci: unify test run for single-pass coverage
- Update `npm test` to run all tests (unit + integration + lbug-db)
via `vitest run` instead of `vitest run test/unit`
- Add `test:unit` script for running unit tests only
- Remove `ci-integration.yml` — the per-file lbug-db process isolation
is no longer needed with `dangerouslyIgnoreUnhandledErrors` and
`fileParallelism: false` handling fork exit issues
- Update `ci-unit-tests.yml` to run all tests with build + coverage
- Simplify `ci.yml` gate (two jobs: quality + tests)
- Simplify `ci-report.yml` (single coverage artifact, no merge step)
* fix: update cli-commands test for renamed test:all → test:unit script
* fix: set USERPROFILE in setup-skills test for Windows compatibility
os.homedir() checks USERPROFILE on Windows, not HOME.
* fix: add isolate: false to lbug-db project to prevent fork crashes
On macOS, N-API destructors crash fork workers on exit. With
isolate: true (default), vitest recycles the fork between files,
triggering the crash after each file. After several crashes, the
remaining lbug-db files never execute.
isolate: false keeps all 8 lbug-db files in a single fork — the
fork only exits once after all files complete, and that single exit
crash is caught by dangerouslyIgnoreUnhandledErrors.
* fix: add unique sequence.groupOrder to vitest projects
Vitest v4 requires unique groupOrder when projects have different
maxWorkers (lbug-db has fileParallelism: false → maxWorkers: 1).
* fix: await async close() in global-setup and remove isolate: false
global-setup.ts called conn.close() and db.close() without await —
these return Promise<void> in @ladybugdb/core 0.15.2. The setup
function returned before the DB was fully closed, so vitest forks
hit a stale file lock when opening the same DB path, crashing the
lbug-db worker before any test ran.
isolate: false caused native state corruption after 2-3 open/close
cycles in the same fork (vitest-specific, not reproducible in plain
Node.js). Without it, each file gets its own module scope and the
N-API destructor crash at fork exit is caught by
dangerouslyIgnoreUnhandledErrors.
Also fixes fire-and-forget close() calls in the pool adapter —
try/catch around an async close() never catches rejections; changed
to .catch(() => {}) for proper unhandled-rejection prevention.
Before: 0/8 lbug-db files ran on macOS CI (fork crash).
After: 8/8 pass, 84 files, 3077 tests, zero errors.
* fix: update project index references in AGENTS.md and CLAUDE.md to reflect correct symbol counts and relationships
* feat: enhance lbug adapter with external database support and write operation validation
* feat: create ci-tests workflow for comprehensive test coverage across platforms
* ci: move PR report inline to ci.yml, delete ci-report.yml
The old ci-report.yml used workflow_run which always runs code from
the default branch (main). This meant the PR comment used main's
stale report template that still referenced the old unit/integration
split architecture — causing "Merge coverage reports" failures.
Moving the report inline to ci.yml means it runs from the PR branch
and uses the current report template. The report now shows:
- per-platform status (Ubuntu/Windows/macOS columns)
- unified test counts from the single vitest run
- coverage with base branch (main) delta comparison
- commit SHA for traceability
Also removes the save-pr-meta job since the report no longer needs
a separate workflow_run trigger.
---------
Co-authored-by: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
Co-authored-by: Gergo Magyar <gergomagyar@icloud.com>
|
Renamed from .github/workflows/ci-unit-tests.yml (Browse further)