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https://github.com/abhigyanpatwari/GitNexus.git
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152 commits
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df5ce1f49b
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fix(ingestion): close remaining open language parsing-layer coverage gaps (#1919) (#2072)
* fix(c): skip computed #include MACRO instead of emitting a garbage import source (F5) * fix(cpp): emit a Variable per name for structured-binding declarations (F9) * fix(dart): extract static const/final class fields (F26) * fix(dart): capture old-style function typedefs (F28) * fix(dart): read real top-level variable shape instead of a dead type field (F29) * fix(kotlin): capture callable references (F47) * fix(kotlin): anchor infix-call capture to the operator only (F49) * fix(kotlin): extract secondary constructors as members (F48) * fix(kotlin): capture destructuring declarations (F51) * fix(kotlin): index companion-object properties as fields (F52) * test(kotlin): assert callable-reference coverage runs on the worker path (F47) * fix(swift): extract protocol property requirements (F75) * fix(swift): recognize enum_class_body as a method body node (F79) * test(ingestion): rebaseline swift captures-golden + scope-capture fingerprints (#1919) * fix(kotlin): attribute secondary-constructor body calls to the Constructor node (#1919 review CF1) A Kotlin secondary constructor's body executes statements like a method body, but the registry-primary scope-resolution path had no Function scope or Constructor def for it. A call inside the body resolved its caller anchor up to the enclosing Class scope, mis-attributing the CALLS edge to the class rather than the Constructor. Add `(secondary_constructor) @scope.function` to the Kotlin scope query so the body becomes its own scope, and synthesize a `@declaration.constructor` (named `constructor`, qualified `<Class>.constructor`, with parameter metadata) so the scope owns a Constructor def that bridges to the structure-phase Constructor node. Also add an arity-disambiguating lookup key for overloadable callables: two same-name secondary constructors of different arity (e.g. a zero-arg vs a 2-arg) share the qualified key whose first-write-wins assignment is source-order- dependent — so a zero-arg overload could resolve to a sibling. The structure node id encodes `#<arity>`; mirror that in the bridge keyspace and match by the def's parameterCount. Same-arity overloads collapse onto one arity key exactly as before, so no regression there. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(kotlin): do not own function-local property bindings under the enclosing class (#1919 review CF3) Kotlin emits destructuring / loop bindings (`val (a,b) = pair`, `for ((k,v) in m)`) as `@definition.property` to dodge the block-scope local-symbol pruner. When such a binding sits inside a method body of a class, the structure-phase owner walk found the enclosing class and emitted a spurious HAS_PROPERTY edge (e.g. `C -> k`), treating a function-local as a class member. Guard the Property owner resolution: if a function-like ancestor is reached before any class container, the property is function-local and gets no owner edge (it falls back to a File DEFINES edge). Language-agnostic — genuine class fields sit directly in the class body with no intervening function, so they keep their HAS_PROPERTY owner edge. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(kotlin): guard non-companion property isStatic=false (#1919 review CF4) Add a field-extraction case for a plain non-companion class `class C { val x: Int = 1 }` asserting the property `x` has isStatic=false, guarding the `isInsideKotlinCompanion` walk against false-positives. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(kotlin): dedup type_identifier lookup in extractOwnerName (#1919 review CF5) The `node.namedChildren.find(c => c.type === 'type_identifier')?.text` lookup was duplicated across the companion and non-companion branches of the Kotlin field-extractor's extractOwnerName. Hoist it into a single local, preserving the existing behavior (anonymous companion falls back to "Companion"; other nodes prefer the `name` field, else the type_identifier text, else undefined). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(dart): capture generic old-style function typedefs (#1919 review CF2) * test(dart): guard multi-name field count and top-level-var labels (#1919 review CF4) * docs(swift): correct isStatic comment re multi-modifier hasKeyword (#1919 review CF5) * test(ingestion): rebaseline dart+kotlin scope-capture fingerprints after review remediation (#1919) * fix(ingestion): correct CF3 owner-strip boundary set for accessor/init bodies and Dart signatures (#1919 review) The CF3 property-ownership guard used FUNCTION_NODE_TYPES, which (a) includes Dart bare signatures (function_signature/method_signature) — over-stripping every Dart class getter/setter's HAS_PROPERTY owner — and (b) omits Kotlin anonymous_initializer/getter/setter and Swift computed accessors — under- stripping destructuring/locals inside init{} and accessor bodies, emitting spurious Class->local HAS_PROPERTY edges. Introduces a guard-specific LOCAL_SCOPE_BODY_NODE_TYPES set (signatures excluded, accessor/init bodies included). Adds Dart accessor-ownership + Kotlin init/accessor destructuring regression fixtures. Both confirmed on the worker pipeline; no cross-language regression (1597 cross-language tests green). --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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baca749e0b
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fix(vue): F89 JSDoc fix, F90 dual-script merge, F92 lang plumbing (#1936) (#2050)
* fix(vue): F89 JSDoc fix, F90 dual-script merge, F92 lang plumbing (#1936) * fix(vue): reviewer fixes — P1 lang routing, P2 lineOffset, P2/P3 pipeline tests * fix(vue): add jsx to lang routing condition * fix(vue): update F90/F92 fixtures and test assertions for CI --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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95f87fc12a
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perf(ingestion): Linux-kernel-scale analysis — worker-pool parse + finalize O(n²) + scope-resolution memory wall (#1983) (#2038)
* fix(ingestion): reduce parse-phase memory for huge repos (#1983)
Stop retaining full parse-cache chunks in RAM alongside the merged graph,
slim on-disk shards, defer worker ParsedFile emission for scope-resolver
languages, and add GITNEXUS_DEBUG_HEAP probes for OOM diagnosis.
Co-authored-by: Cursor <cursoragent@cursor.com>
* fix(ingestion): address #2038 tri-review findings (parse-phase memory)
Resolves the confirmed review findings on PR #2038:
- P1: thread exportedTypeMap through the sequential parse path
(processParsingSequential) so a no-worker run over a partially-warm
cache no longer silently drops the sequential-miss files' exported
types. Cache hits made exportedTypeMap.size > 0, suppressing the
end-of-loop buildExportedTypeMapFromGraph rebuild, but the sequential
path never populated the map. Regression test added (fails on the
pre-fix tree, passes after) plus a fully-sequential differential oracle.
- P2: saveParseCache builds its on-disk index from hashes actually
written/copied (writtenKeys), never a usedKeys hash whose shard write
or copy was skipped — no more phantom index entries.
- P2: add a unit test asserting SCOPE_RESOLUTION_LANGUAGES stays in sync
with SCOPE_RESOLVERS (asymmetric drift would lose a language's ParsedFile).
- Backfill cache coverage: loadParseCacheChunk missing/corrupt -> undefined,
pruneCache onDiskKeys branch, slim preserves nodes, saveParseCache
copy-evicted-shard round-trip.
- Cleanups: single-source heap-probe gating via isDebugHeapEnabled();
hoist the per-chunk mkdir in persistParseCacheChunk behind a
process-scoped Set; gate COBOL's unused worker-side ParsedFile
extraction (graph nodes still come from cobolPhase) while keeping
fileCount/progress unconditional.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* refactor(ingestion): remove dead worker-side ParsedFile extraction
After #2038 gated worker `ParsedFile` emission behind `!isScopeResolutionLanguage(language)`, and with all 16 SupportedLanguages registered in SCOPE_RESOLVERS, that gate was structurally always true — the worker already produced no ParsedFiles and scope-resolution re-extracts each file from source on the main thread (run.ts). Remove the now-dead machinery:
- Drop both worker `extractParsedFile` call-sites (tree-sitter processFileGroup + the standalone-provider branch) and the `result.parsedFiles.push`. The standalone branch keeps fileCount/onFileProcessed per file. `result.parsedFiles` stays declared but empty (field removal deferred).
- Remove the now-orphaned `scopeSourceKind` var + `ScopeCaptureSourceKind`/`extractParsedFile`/`isScopeResolutionLanguage` imports.
- Delete the consumerless `migrated-languages.ts` (isScopeResolutionLanguage + SCOPE_RESOLUTION_LANGUAGES) and its drift-guard test — parse-worker was their only importer. Also improves AGENTS.md "shared ingestion code must not name languages" compliance.
`extractParsedFile` and the scope-extractor-bridge stay (scope-resolution/run.ts + Vue resolver use them). Behavior-preserving: worker-sequential-parity passes before and after; tsc/eslint clean; no baseline/golden drift.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* refactor(ingestion): worker-pool-only parsing; remove sequential parser (#1983)
Completes the #1983 huge-repo parse-OOM effort by making the worker pool
GitNexus's sole parse path.
Parallel serialization (the perf core): workers serialize their ParsedFiles to
a disk store in parallel and stream them back to scope-resolution, so the main
thread no longer re-parses every file (the tree-sitter native-memory leak that
caused the OOM). Adds chunk merge-pipelining + work-proportional chunk sizing so
the pool stays saturated.
Remove the sequential parser: `--workers 0`, `GITNEXUS_WORKER_POOL_SIZE=0`, and
`skipWorkers` now hard-error (no silent degrade — #1741); the small-repo
threshold no longer selects an in-process path; pool creation stays lazy /
cache-miss-gated so warm all-hit runs never spawn workers.
Worker-path parity fixes — removing sequential surfaced two pre-existing gaps
that tiny-fixture tests had masked by running below the worker threshold, both
fixed by carrying per-file metadata as DATA across the worker boundary (never
re-parsing on the main thread, preserving the OOM fix):
- C++: templateConstraints wired into worker node identity (SFINAE overload
disambiguation) + ADL / inline-namespace capture side-channel serialized
onto the ParsedFile.
- Kotlin: companion-scope side-channel serialized the same way (companion /
static dispatch).
Validation: tsc + build clean; full suite green (10,190 pass — the only
deterministic failures were the now-fixed C++/Kotlin worker-path gaps; the 2
remaining full-run failures are pre-existing load flakiness, green in
isolation); cpp-pipeline benchmark stays linear on a 1-worker pool.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(ingestion): wire C static-linkage side-channel + ADL O(1) collect + tri-review cleanups (#1983)
Follow-up to the worker-pool-only refactor, from a tri-review of the parse path.
- C static-linkage side-channel (P1): cProvider had no collect/applyCaptureSideChannel,
so on the now-sole worker path C `static` file-local marks were lost across the worker
boundary -> false cross-file CALLS edges + over-broad #include wildcard visibility on
every C analysis (the Linux kernel is C). Mirror the C++/Kotlin wiring: serialize
`staticNames` per file onto ParsedFile.captureSideChannel and restore it on the main
thread (no re-parse). + a worker-path regression test (the existing c-static-isolation
fixture passed vacuously — its collision resolves via #include before the global
free-call fallback ever consults static-linkage).
- captureSideChannel `kind` discriminant: add `kind:'cpp'`/`kind:'c'` tags + guards
(Kotlin already had one) now that C/C++/Kotlin share the single generic field.
- Perf: collectCppAdlSideChannel scanned the whole argInfoBySite/noAdlSites maps per file
(O(F^2) per sub-batch, ~100M parseSiteKey calls at kernel scale). Add per-filePath
lockstep indexes -> O(1) collect; serialized snapshot byte-identical.
- Cleanups: inline the one-line processParsingWithWorkers wrapper into processParsing;
drop the always-empty WorkerExtractedData.calls/assignments/constructorBindings fields;
remove the voided astCache param from processParsing; refresh stale "sequential
fallback" JSDoc.
Validation: tsc + build clean; cpp 297/297, c 8/8 (incl. the new worker-path
static-linkage guard), typescript + parsedfile-store green; cpp ADL benchmark stays linear.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* perf(scope-resolution): index C/C++ #include resolution in finalize (O(n²)→O(n))
Kernel-scale C/C++ analysis ground in finalizeScopeModel because three
per-#include operations each did a full O(F) scan with no index — the
finalize O(n²) that surfaced once the #1983 parse-phase OOM was fixed:
- expand{C,Cpp}WildcardNames: parsedFiles.find() per wildcard edge → O(R·F)
- resolveImportTarget: new Set(allFilePaths) rebuilt per #include
- resolveCImportTarget: suffix-match scanned all workspace paths
Each is replaced with a WeakMap-per-pass index keyed on the stable
parsedFiles/allFilePaths references that scope-resolution run.ts passes
once per pass:
- Map<ScopeId,ParsedFile> for wildcard expansion (c/static-linkage.ts +
cpp/file-local-linkage.ts)
- memoized augmented header set (c/scope-resolver.ts + cpp/scope-resolver.ts)
- basename-bucketed suffix index in resolveCImportTarget (c/import-target.ts),
shared by C and C++ since resolveCppImportTarget delegates to it
Collapses the C/C++ finalize from O(R·F) to O(R+F). Pure-perf, byte-identical
edge output: 962 targeted tests green (490 C + 472 C/C++ scope-resolution);
the basename index preserves the exact endsWith('/'+target) match and the
fewest-path-components-then-lexicographic tie-break.
The kernel's ~25-30k .h headers are classified C++, so both providers must
be fixed. Proven on the Linux kernel: the C finalize completed
(sr-post-finalize lang=c → sr-end lang=c), which the pre-fix run never
reached in 16+ min of grinding.
Build-independent follow-ups (separate from this finalize fix), documented
for later: emitFreeCallFallback same-name buckets (emit phase),
buildGraphNodeLookup + precount global setup, the ParsedFile store-load,
the dart/go/ruby expand-wildcards .find siblings, and the ~26GB
scope-resolution memory floor (full kernel completion needs >~40GB RAM).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* test(bench): regenerate C scope-capture baseline for the #1983 c-static-linkage-worker fixture
bench/scope-capture/measure.mjs fingerprints emitCScopeCaptures over the
lang-resolution/c-* fixture corpus. The #1983 PR added the
c-static-linkage-worker fixture (caller.c/lib.c/lib.h/local.c — the
worker-path static-linkage side-channel test) but did not regenerate the C
baseline, so `--check` has been red on this branch (main, lacking the
fixture, still matches 0de009b).
Pure fixture-corpus drift — no c/captures.ts or query change branch-vs-main,
existing fixtures' captures byte-identical (c-captures.test.ts 45/45),
scaling stays linear (~0.97). Regenerated: 0de009b -> 39f3a83. Bench now
PASS (14 languages). Unrelated to the finalize O(n²) fix.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* perf(scope-resolution): lower kernel-scale resident memory floor + setup cost
Reduce the scope-resolution resident-memory floor and setup throughput on
huge repos (Linux kernel), the wall that remains after #1983 (parse OOM) and
the finalize O(n^2) fix (
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bb3642ad5f
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fix(rust): F70 — replace struct_expression name:(_) with three specific patterns (#2051)
* fix(rust): F70 — replace struct_expression name:(_) with 3 specific patterns
* fix(rust): F70 — cover scoped+turbofish struct literals (foo::Bar::<T> {})
The three patterns enumerate struct_expression.name as type_identifier /
scoped_type_identifier / generic_type_with_turbofish, but
generic_type_with_turbofish.type can itself be a scoped_identifier
(e.g. foo::Bar::<i32> {}), which the turbofish pattern — requiring
type:(type_identifier) — did not match. That dropped the constructor
reference entirely (verified: emitRustScopeCaptures returns 0 ctors for
foo::Bar::<i32> {} and a:🅱️:Bar::<i32> {}).
Add a fourth pattern that captures the trailing identifier of the scoped
turbofish path (scoped_identifier.name is an identifier, not a
type_identifier), and correct the comment that claimed all cases were
covered.
Strengthen rust-f70.test.ts: assert exactly one constructor per case, add
negative assertions guarding against the old full-path capture, and add
the scoped+turbofish and crate:: cases.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: Gergo Magyar <gergomagyar@icloud.com>
Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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89b02286ad
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fix(csharp): qualified/alias constructor names, : base/: this initializers, generic type-arg strip (#2046)
* fix(csharp): bind qualified constructor names, capture : base/: this, fix generic strip Mirrors the Java #1928 parsing-layer fixes for the C# scope-resolution path — the same three defect classes exist verbatim in C#: - Qualified / qualified-generic / alias-qualified constructor calls (`new Ns.Foo()`, `new A.B.Foo()`, `new Ns.Box<int>()`, `new MyAlias::Foo()`, `new global::Foo()`) bound only `@reference.call.constructor.qualified` with no `@reference.name`, so the central extractor fell back to the whole-expression anchor and the reference name became the raw `new Ns.Foo()` text (never resolved). Derive the simple-name tail via the existing `terminalTypeNameNode` helper (handles qualified_name, generic tail, and alias_qualified_name), and add a query arm for the top-level `alias_qualified_name` shape that was not captured at all. - `: base(...)` / `: this(...)` explicit constructor initializers, modeled by tree-sitter as `constructor_initializer` and never matched by the scope query, dropped the chained-constructor CALLS edges. Synthesize them: `this` → enclosing type name; `base` → the base type's bare name (first base-list entry, which C# requires to be the base class). Arity attached for overload disambiguation. - `interpretCsharpTypeBinding`'s qualifier strip used `lastIndexOf('.')` over the whole string, cutting inside a qualified generic type ARGUMENT (`Dictionary<string, Ns.User>` → `User>`). Make stripQualifier generic-aware: reduce only the segment before the first `<`, re-attaching the generic suffix — multi-arg generics stay intact so the `.Values`/`.Keys` collection-accessor unwrap keeps working. Tests: capture-level unit tests for every constructor shape (incl. alias-qualified, double-match guard) and `: base`/`: this` (incl. struct/record/mixed-base); interpretCsharpTypeBinding unit tests (the corruption case + nullable/nested/ unknown-generic edges); end-to-end resolver tests with new fixtures. The csharp-captures golden was regenerated — drift is purely additive (only the new fixtures; zero existing-fixture digests changed). Co-authored-by: Cursor <cursoragent@cursor.com> * fix(csharp): enhance constructor resolution and namespace qualification - Implemented qualified constructor name binding to resolve collisions between types in different namespaces. - Added support for `: base(...)` and `: this(...)` constructor initializers to ensure correct edge emission in the scope resolution. - Improved generic argument stripping to prevent incorrect parsing of qualified types. - Introduced tests for new features, including handling of interface-only base classes and qualified constructor calls. This update addresses issues related to constructor resolution and namespace qualification, ensuring accurate type references in C# code. Tests have been added to validate these changes. * fix(csharp): implement namespace prefix tagging for file-level type definitions - Updated the C# ingestion process to tag file-level type definitions with their enclosing namespace path using a new `namespacePrefix` field, without altering the `qualifiedName`. - Enhanced the scope resolver to utilize the `namespacePrefix` for resolving same-tail collisions in constructor calls, improving accuracy in type resolution. - Added unit tests to validate the new functionality, ensuring that namespace prefixes are correctly applied to both block-scoped and file-scoped types, while leaving namespace-free types untagged. This change addresses issues related to namespace qualification and constructor resolution in C# code, facilitating better handling of type references. * refactor(scope-resolution): share isOverloadableCallable via util Extract the ctor/function/method overload predicate into callable-labels.ts so graph-bridge registration and lookup stay aligned without duplicated private copies in ids.ts and node-lookup.ts. Co-authored-by: Cursor <cursoragent@cursor.com> --------- Co-authored-by: Cursor <cursoragent@cursor.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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281ce2600c
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fix(java): close parsing-layer coverage gaps F35/F38/F41 (#1928) (#2045)
* fix(java): close parsing-layer coverage gaps F35/F38/F41 (#1928) Registry-primary scope-resolution path (the live one post-#942/#943): - F35 [HIGH]: qualified / qualified-generic constructor calls. `new pkg.Foo()` parses as a `scoped_type_identifier` that the query bound only as `@reference.call.constructor.qualified` with no `@reference.name`, so the scope extractor fell back to the whole-expression anchor and the reference name became the raw `new pkg.Foo()` text (never resolved). Bind the simple -name tail (end-anchored last child) and add an arm for the previously uncaptured `new pkg.Box<String>()` (qualified + generic) shape. - F38 [MEDIUM]: `super(...)` / `this(...)` explicit constructor invocations, modeled as `explicit_constructor_invocation` and never matched by the scope query, dropped the chained-constructor CALLS edges. Synthesize them with the target resolved structurally (this -> enclosing type name; super -> superclass tail via the shared javaBaseLookupNameNode, skipping implicit Object) plus arity for overload disambiguation. - F41 [LOW]: interpretJavaTypeBinding stripped the qualifier before generics, so a qualified generic type arg (`Map<String, com.example.User>`) was cut inside the generic into `User>`. Strip generics first, then the qualifier; make the erasure fallback qualifier-tolerant. F36/F37 already landed upstream (#1940/#1956); F39/F40 are legacy-bank remnants that are no longer consumed (legacy @import skipped in parse-worker; legacy @call never read in parse-impl) so they are intentionally left untouched. Tests: low-level capture unit tests (constructor shapes incl. double-match guard; super/this/enum/implicit-Object), interpretJavaTypeBinding unit tests (qualified generic args + the corruption case), and end-to-end resolver tests with new fixtures asserting the CALLS edges resolve to the correct constructors. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(scope-resolution): register Constructor overload keys so this()/super() chains don't self-loop (#1928 F38 review) Review of #2045 caught two gaps; both confirmed by reproduction. P2 — F38 this() emitted a self-loop. On the java-explicit-constructor fixture, Child(int){ this(); } produced CALLS Child()#0 -> Child()#0 instead of Child(int)#1 -> Child()#0. Root cause is the language-agnostic graph-bridge: the parse phase mints distinct Constructor nodes (Child#0, Child#1) carrying parameterTypes, but node-lookup.ts registered the parameter-types / shape overload keys only for Function/Method, never Constructor, so both ctors collapsed onto the first-wins qualified/simple key and the caller Child(int) resolved to Child#0 (the this() target). Extend the overload keys to Constructor in both node-lookup.ts (registration) and ids.ts (lookup) via a shared isOverloadableCallable predicate. Verified the edge now connects distinct nodes (Child#1 -> Child#0); super(1)->Base#1 still correct. No cross-language regressions (the 9 worker-path failures reproduce identically on clean HEAD). Also harden the integration test: it matched the this() edge on name only, which a self-loop satisfies; now assert the endpoints are DISTINCT constructors. P3 — F41 order-regression guard was inert (List<Map<String,User>> normalizes to List under both strip orders). Add List<com.x.Foo<String>> -> List, which is corrupted to Foo<String>> under the old order and only correct generics-first. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(java): update fingerprint and add notes for constructor query captures in baselines.json Updated the fingerprint for the Java section and added detailed notes regarding the enhancements in constructor query captures, including qualified and qualified-generic constructor queries. This change reflects ongoing improvements in the parsing layer coverage and fixture updates. --------- Co-authored-by: Cursor <cursoragent@cursor.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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bd59fa95ce
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refactor(ingestion): delete legacy resolution context + tiered-lookup plumbing (RING4-2, #943) (#2033)
* test(ingestion): characterize Laravel route → controller CALLS edges (RING4-2 #943) Pins the current processRoutesFromExtracted edge-emission behavior (which had no direct coverage) before migrating it off the legacy ResolutionContext.resolve tiered lookup. Locks edge target, reason, and confidence values. * refactor(ingestion): resolve Laravel route controllers via type registry (RING4-2 #943) Migrate processRoutesFromExtracted off the legacy ResolutionContext.resolve tiered lookup onto model.types.lookupClassByName (global class resolution) + model.symbols.lookupExactAll (same-file method lookup). Drops the TIER_CONFIDENCE dependency for a fixed ROUTE_EDGE_CONFIDENCE constant matching the prior global-tier confidence. Characterization tests (6) stay green — behavior preserved. * refactor(ingestion): delete ResolutionContext.resolve tiered lookup (RING4-2 #943) Removes the legacy tiered name resolution — resolve/resolveUncached, TieredCandidates, ResolutionTier, TIER_CONFIDENCE, walkBindingChain, the package-dir index, the per-file resolve cache, and tier-hit stats. The context is now a thin holder for the live SemanticModel plus the (now-dead) per-file import maps, which the follow-up prune removes. Deletes the dedicated resolution-context.test.ts and symbol-resolver.test.ts (both exercised the removed .resolve tiered lookup). Full unit suite green (the 3 analyze worker-pool tests are pre-existing load flakes — pass isolated). * refactor(ingestion): delete legacy import-map plumbing + wildcard synthesis (RING4-2 #943) The per-file importMap / namedImportMap / packageMap / moduleAliasMap that fed the retired tiered resolver are now dead — nothing reads them (IMPORTS edges come from scope-resolution's imports-to-edges bridge, independent of these maps). Removes: - wildcard-synthesis.ts (synthesized the dead namedImportMap/moduleAliasMap) - import-processor's resolution path (processImports/processImportsFromExtracted/ wireImplicitImports/buildImportResolutionContext), keeping only the live preprocessImportPath path-cleanup helper - the parse-impl orchestration that drove them The parse phase now threads its SemanticModel to scope-resolution directly (parseOutput.model) instead of wrapping it in the resolution context. Deletes the obsolete wildcard/import-processor unit tests; trims the dead processImports cases from sequential-language-availability (processParsing coverage kept). * refactor(ingestion): delete resolution context + named-binding plumbing (RING4-2 #943) Completes the legacy-resolution retirement. With the tiered resolver gone, the entire per-file import-extraction chain is dead — its only consumer was the deleted ResolutionContext.resolve, and scope-resolution emits IMPORTS edges from its own finalized ImportEdges: - delete model/resolution-context.ts (the legacy context); the parse phase now hands its SemanticModel to scope-resolution as parseOutput.model - delete the named-bindings/ extractors + the namedBindingExtractor provider hook (built the dead NamedImportMap) across all 8 providers + the worker - delete the orphaned implicitImportWirer hook + Swift implementation + providersWithImplicitWiring (scope-resolution owns implicit imports now) - drop the dead ExtractedImport type + worker/sequential import accumulation (result.imports / WorkerExtractedData.imports) - import-processor.ts and its preprocessImportPath helper are now unreferenced Deletes the obsolete named-bindings + preprocessImportPath unit tests. tsc clean; full unit suite green (3 analyze worker-pool tests are pre-existing load flakes); 1229 import/cross-file/resolver integration tests pass incl. the wildcard-import languages (Go/Ruby/C++/Swift) that previously used synthesis. * docs(ingestion): scrub stale references to deleted resolution-context machinery (RING4-2 #943) * docs(ingestion): reword route resolver comment to clear acceptance grep gate (#943) * fix(review): apply autofix feedback (RING4-2 #943) Code-review autofixes from the multi-agent pass: - delete orphaned dead code the deletion missed: swift.ts groupSwiftFilesByTarget + SwiftPackageConfig import (live copy is target-grouping.ts), import-resolvers EMPTY_INDEX export (no consumers after the importCtx reset was removed) - scrub stale comments referencing deleted symbols (processImports, preprocessImportPath, moduleAliasMap, NamedImportMap/PackageMap, wildcard-synthesis) and fix a broken comment fragment in parse-impl.ts - document the intentional global-resolution convergence for route controllers (the import-scoped tier was deleted with the resolver): confidence flattens 0.9→0.5 but resolved edges stay at the 0.5 process-trace/community gate; only the narrow imported-controller-with-unresolved-method guessed edge crosses it - add an overloaded-method characterization case pinning lookupExactAll[0] * style(ingestion): prettier-format parse-impl unwind + route characterization test (#943) * refactor(ingestion): address tri-review findings (RING4-2 #943) From the PR #2033 tri-review (Codex + CE lanes): - delete the now-dead importSemantics provider field + ImportSemantics type (wildcard-synthesis.ts was its sole consumer; zero readers remain) across language-provider.ts + 7 providers + DEFAULTS - correct the processRoutesFromExtracted JSDoc: the import-disambiguated controller skip is STRICTER than the legacy global-tier guard (the legacy import-scoped tier resolved aliased / same-short-name controllers and emitted the edge); document the aliased-import missed-edge case explicitly - add an aliased-controller characterization test pinning the documented global-resolution convergence (no edge for an aliased/unresolvable controller name) - scrub stale parse-impl.ts docstrings/comments that still listed the removed import-resolution / wildcard-synthesis / heritage passes Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(ingestion): capture routes-file use/FQN map for Laravel controller resolution (#943) Adds ExtractedRoute.controllerQualifiedName: the Laravel route extractor now builds the routes file's `use`-import alias map (local→normalized dot-joined FQN, via splitNamespaceUseDeclaration) and captures inline qualified ::class references, threading the disambiguating FQN through every route. Normalized via the shared normalizeQualifiedName so it matches the type registry's key shape (issue #1982). Foundation for qualified-first route→controller resolution (U2). * fix(ingestion): resolve Laravel route controllers qualified-first (#943) processRoutesFromExtracted now resolves the controller via model.types.lookupClassByQualifiedName(route.controllerQualifiedName) when the extractor disambiguated it (aliased use / same-short-name / inline FQN), falling back to the short-name lookupClassByName (which still skips on ambiguity). This restores the route→controller CALLS edges the PR #2033 tri-review (Codex F1 + ce-adversarial) found dropped, without re-adding the deleted per-file import map. Method resolution, guessed-id, and confidence are unchanged. JSDoc rewritten to qualified-first precedence; the aliased characterization test flips from no-edge to edge; adds duplicated-name-disambiguated + stale-FQN-fallback cases. * test(ingestion): end-to-end Laravel route→controller qualified resolution + PSR-4 disambiguation (#943) Adds an integration test that parses real namespaced PHP controllers + a routes file through the worker pipeline and asserts the route CALLS edges target the correct namespaced controller — the authoritative gate the unit tests can't be (hand-built models). It surfaced that PHP's statement-form `namespace X;` leaves the structure-phase qualifiedName as the SHORT name, so lookupClassByQualifiedName misses; resolveControllerByQualifiedName now adds a PSR-4 file-path disambiguation (FQN namespace tail ↔ file directory tail) to pick the right same-short-name controller. Forces the worker path (workerThresholdsForTest) since route extraction is worker-only. * style(ingestion): prettier-format Laravel route resolution changes (#943) * test(ingestion): regenerate php-captures golden for the new php-laravel-routes fixture (#943) * test(ingestion): move route fixture out of the php-* scope-capture corpus (#943) The laravel route-resolution fixture lived under lang-resolution/php-laravel-routes, which the php scope-capture golden + benchmark both glob (lang-resolution/php-*), drifting their fingerprints. The fixture is for route resolution, not php scope-capture parity, so rename it to lang-resolution/laravel-route-resolution to decouple it. Reverts the golden's php-laravel-routes entries; bench scope-capture --check passes (php back to baseline). --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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7cbc544299
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fix(php): import decomposition, enum cases, anonymous class scope — F53,F54,F55 (#1931) (#1989)
* fix(php): import decomposition, enum cases, anonymous class scope — F53,F54,F55 (#1931) * chore: fix unused imports, format, rebuild gitnexus-shared for macro type * chore(bench): update PHP scope-capture baseline to CI-computed hash * fix(php): reviewer fixes — grouped prefix, dead code removal, test precision * feat: add F55 anonymous class pipeline test * chore: fix format and benchmark baseline * chore: regen PHP golden after F53/F54/F55 query changes * chore: remove pipeline test, add grouped-prefix test, update fingerprint * chore: remove unused beforeAll and path imports --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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560291ad6e
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fix(ingestion): qualify Ruby same-tail nested mixin modules + route IMPLEMENTS by scope (#1991) (#2006)
* fix(ingestion): qualify Ruby same-tail nested mixin modules + route IMPLEMENTS by scope (#1991) A Ruby `module` maps to the Trait label but is not a typeDeclaration, so the structure phase never qualified its node id: two same-tail nested mixin modules (App::Loggable / Web::Loggable) collapsed onto one Trait:f.rb:Loggable node and the bare-name `include Loggable` cross-wired IMPLEMENTS (first-wins tail). Structure phase: expose buildQualifiedName as a `qualifyScopeName` ClassExtractor hook and thread it for Trait nodes in parsing-processor + parse-worker (lockstep), so a module node keys by its qualified scope path (App.Loggable). Not Option A — `Trait` is not in CLASS_LIKE_LABELS and the qualified-id selection gates it out; qualifyScopeName bypasses the typeDeclaration gate that makes extractQualifiedName bail on modules. getQualifiedOwnerName also falls back to qualifyScopeName so methods inside a nested module own through the same qualified Trait id (no dangling HAS_METHOD). Resolution: emitRubyMixinEdges resolves a bare mixin reference lexically by the including class's enclosing scope (`App::S` + `Loggable` -> `App::Loggable`), and the simple-tail fallback is now delete-on-collision (refuse to guess on a same-tail tie) instead of first-wins. New single-file fixture + tests: two distinct Trait nodes, S IMPLEMENTS App.Loggable only, T IMPLEMENTS Web.Loggable only, no dangling HAS_METHOD; both resolver legs + worker path. Module->Trait preserved; Trait NOT added to CLASS_LIKE_LABELS. ruby-captures-golden regenerated additively. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(ingestion): single-source the Ruby Trait scope-label predicate; regen ruby bench baseline (#1991) F5 follow-up to #1991: replace the four hardcoded `nodeLabel === 'Trait'` checks (two each in the sequential parsing-processor.ts and worker parse-worker.ts definition paths) with a single isQualifiableScopeLabel() in ast-helpers.ts so the lockstep paths can't drift. Value-identical predicate — no behavior change. Also regenerate the ruby scope-capture bench baseline: #1991 added the ruby-nested-mixin-tail-collision fixture (and updated the ruby captures-golden), but the bench baseline was never regenerated, so the order-independent fingerprint drifts (bf6b13a -> f0d9b4c6, fixture_count 85 -> 86). Pure fixture-corpus drift. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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083aedbc41
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refactor(ingestion): delete legacy call-resolution DAG + heritage processor (RING4-1, #942) (#2023)
* refactor(ingestion): delete legacy call-resolution DAG + heritage processor (#942) RING4-1: all 16 production languages (incl. Vue #940) are registry-primary, so the legacy resolution legs only ran under the now-removed CI parity gate. Calls and inheritance now resolve exclusively through scope-resolution (Registry.lookup, preEmitInheritanceEdges, emitHeritageEdges, buildMro → MethodDispatchIndex). Removed: - Call-resolution DAG: call-processor.ts legacy body (processCalls, processCallsFromExtracted, resolveCallTarget + all resolver/dispatch/chain helpers), model/resolve.ts MRO-via-HeritageMap, model/heritage-map.ts, type-env DAG types; inferImplicitReceiver/selectDispatch LanguageProvider hooks + Ruby impls; DispatchDecision/ImplicitReceiverOverride/ReceiverEnriched. - Legacy heritage path: heritage-processor.ts, heritage-types.ts, heritage-extractors/, @heritage.* tree-sitter queries, heritageExtractor/ heritageDefaultEdge/interfaceNamePattern wiring, worker + parse-impl heritage passes (parse-worker/parsing-processor lockstep), cross-file-impl DAG pass. - Scope-parity infrastructure entirely (no legacy↔registry parity left to run): scripts/run-parity.ts, scripts/ci-list-migrated-languages.ts, ci-scope-parity.yml, test:parity, and the scope-parity ci.yml gate. Resolver integration tests still run via the normal tests job. Kept (shared infra, NOT call-DAG-only): type-env.ts buildTypeEnv (field extraction / structure phase / embeddings), model/resolve.ts c3Linearize + gatherAncestors (mro-processor mroPhase), route/fetch/exported-type-map helpers in call-processor.ts, preEmitInheritanceEdges (legacy-edge dedup simplified). Acceptance: grep for resolveCallTarget/inferImplicitReceiver/selectDispatch/ buildHeritageMap/HeritageMap/processHeritage/heritageExtractor/@heritage. is zero across src + test. tsc clean (both packages); resolver integration suite green (bit-compatible EXTENDS/IMPLEMENTS/CALLS); scope-capture fingerprints unchanged (python re-baselined: removed redundant ignored captures). ARCHITECTURE.md updated to scope-resolution-only. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(review): apply autofix feedback (#942) ce-code-review autofix pass on the RING4-1 deletion: - parse-cache.ts: bump SCHEMA_BUMP 2→3 — ParseWorkerResult lost its `heritage` field, so stale on-disk caches must invalidate (prevents a rollback replaying a heritage-less cache into legacy code) [api-contract P2]. - parse-impl.ts: drop 3 now-unused type imports (ExtractedCall, ExtractedAssignment, FileConstructorBindings) left by the deferred-block removal — would fail the eslint CI gate [correctness+maintainability P1]. - AGENTS.md / CLAUDE.md / scope-resolver.ts contract doc: fix stale pointers to the deleted "§ Call-Resolution DAG" section + removed hooks; preserve the language-neutrality rule [project-standards P1]. - registry-primary-flag.ts / cross-file.ts / parse-impl.ts: refresh stale comments referencing deleted symbols (legacy DAG, runCrossFileBindingPropagation). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(ingestion): remove the vestigial isRegistryPrimary flag (#942) With the legacy call-resolution DAG deleted, the per-language `REGISTRY_PRIMARY_<LANG>` / `isRegistryPrimary` / `MIGRATED_LANGUAGES` flag had only one meaningful state — every production language resolves via scope-resolution — and an explicit `=0` override could only *disable* resolution with no fallback (a footgun the review flagged). Removing it. - Delete `registry-primary-flag.ts` and the now-dead `shadow-harness.ts` (legacy↔registry shadow-parity tool) + its test. - Collapse the three flag gates to their behavior-preserving outcome (`SCOPE_RESOLVERS == MIGRATED_LANGUAGES`, so this is a no-op): - scope-resolution phase now runs for every registered `SCOPE_RESOLVERS` entry (was `∩ MIGRATED_LANGUAGES`). - import-processor `addImportGraphEdge` + parse-impl `shouldAccumulate`: the legacy emit/accumulate paths were already inert for migrated languages (scope-resolution owns IMPORTS via the imports-to-edges bridge); drop the flag term. - Collapse flag-branching tests to the scope-resolution path and delete the csharp legacy-`=0`-leg describe blocks; remove the ruby/rust-scope env-forcing hooks (no-ops now). - Refresh docs/comments (ARCHITECTURE.md "one registration", scope-resolver cookbook, phase deps) — adding a language is now a single `SCOPE_RESOLVERS` registration. Verified: tsc clean (both packages); resolver integration tests green (747 assertions across cobol/csharp/ruby/rust/typescript/go, IMPORTS edges intact); grep for the flag symbols is zero across src + test. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * style(format): prettier formatting on #942 changes Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): drop legacy heritage-capture tests + re-baseline scope-capture fingerprints (#942) Two CI failures from the #942 cleanup, surfaced by the tri-review + CI: - tree-sitter-languages.test.ts: two tests asserted `@heritage.*` captures (Rust trait-impl, Dart extends/implements/with) that this PR removed. The acceptance grep used `@heritage\.` (with `@`); these reference the runtime capture name `heritage.trait` (no `@`), so they slipped the earlier sweep. Inheritance is now covered by the resolver integration suite. (fixed macos-latest) - Re-baselined the scope-capture bench fingerprints for csharp/rust/ruby/java/ javascript/kotlin (baselines.json) + python (python-scope/baseline-fingerprint.txt). The earlier test-cleanup reworded comments inside the lang-resolution fixture files (Shapes.cs, child.rs, derived.rb, IA.java/Plain.java, Service.js, F.kt, app.py) to scrub deleted-symbol references for the acceptance grep; those are the bench corpus, so capture node positions shifted. Capture LOGIC is unchanged — verified `--check` passes for all 14 langs + python. (fixed benchmarks) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs/chore: scrub remaining REGISTRY_PRIMARY + deleted-symbol references (#942) Tri-review P3 follow-ups (verified): - TESTING.md: rewrite the "Scope-resolution parity" section — the legacy dual-leg (REGISTRY_PRIMARY_<LANG>=0/1) and `npm run test:parity` no longer exist; resolver tests run once on the sole scope-resolution path in the normal tests job. - scripts/bench-scope-resolution.ts: drop the inert `REGISTRY_PRIMARY_PYTHON=1` env set + usage hint (the flag is gone). - ruby/scope-resolver.ts, php/captures.ts: re-point doc-comments off the deleted heritage-map.ts / heritage-processor.ts to the current behavior. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): prettier format + regenerate scope-capture goldens (#942) Two more CI failures, same root cause as the bench re-baseline (the test-cleanup reworded comments in lang-resolution bench/golden-corpus fixtures): - quality/format: prettier on tree-sitter-languages.test.ts (blank line left by the deleted heritage-capture tests) + TESTING.md (the rewritten section). - tests/ubuntu/coverage: `csharp-captures-golden` (and python/ruby/rust) drifted because the edited fixtures feed the per-language capture-golden snapshots too (not just the bench). Regenerated via UPDATE_GOLDEN=1. Verified safe: only the edited-fixture entries changed; csharp `captureGroups` unchanged (38) — digest shifted from comment-position only; capture LOGIC untouched. 1168 scope- resolution tests pass. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(resolvers): drop createResolverParityIt wrapper, use vitest it directly The parity-aware `it` wrapper became a no-op when #942 removed the legacy call-resolution DAG (it just returned vitest's `it`). Remove it entirely so the resolver tests call vitest's `it` directly instead of shadowing it with a local `const it` (or `pit`/`rustParityIt`): - helpers.ts: delete createResolverParityIt + its now-unused vitestIt import and VitestIt type. - 16 files: drop `const it = createResolverParityIt('x')` and import `it` from vitest instead. - ruby.test.ts (pit) + rust.test.ts (rustParityIt): rename calls to `it`. - Scrub every comment that described the removed wrapper / dual-mode parity skip / legacy_skip gate (vue-scope, js/ts/dart/php/python headers, rust x2, cpp, swift x4, rust-coverage). Genuine test rationale is kept; only the vestigial two-leg framing is dropped. Accurate "legacy DAG (removed in #942)" historical notes are retained. No fixtures touched (no bench/golden re-baseline). tsc clean; rust+ruby resolver suites green (323 tests, incl. #1992 worker-path parity after a local dist build). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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9f3bcee7fc
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fix(cpp): resolve cross-namespace same-tail inheritance bases bridge-held (#1993) (#2005)
* fix(cpp): resolve cross-namespace same-tail inheritance bases bridge-held (#1993) PR #1981's bridge fixed within-namespace same-tail heritage (NS::A::Inner vs NS::B::Inner). The residual: a cross-namespace same-tail base (NS1::A::Inner vs NS2::A::Inner) both key the namespace-omitted `A.Inner` in the qualifiedNames index, so resolveQualifiedInheritanceBase couldn't pick a winner and the deriving classes cross-wired (DB's EXTENDS bound to NS1's A::Inner). Fixed bridge-held via the existing `namespacePrefix` sidecar — no qualifiedName invariant flip, no resolution-index re-keying: (1) tagNamespacePrefixes also tags defs declared directly in a namespace (the deriving NS1::DA), composed identically to the class-nested path; (2) resolveQualifiedInheritanceBase breaks a same-tail tie by preferring the candidate whose namespacePrefix matches the deriving class's. Two-phase lookup, UDC, brace-init, file-local linkage untouched (def.qualifiedName + index keys unchanged). New cpp-cross-namespace-same-tail fixture + registry-primary test (in the cpp parity expected-failures). Verified: cpp suite 287/287 primary, 209 + 78 skips legacy — no regression; tsc + prettier clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(cpp): worker-path parity for #1993 cross-namespace tie-break + correct narrative Add the missing parse-worker.ts parity describe for the #1993 cross-namespace same-tail heritage tie-break, mirroring the #1982/#1995 worker siblings (workerThresholdsForTest minFiles:1/minBytes:1, workerPoolSize:2, usedWorkerPool guard, and the same NS1.DA→NS1.A.Inner / NS2.DB→NS2.A.Inner base assertions), and register both worker test names in LEGACY_RESOLVER_PARITY_EXPECTED_FAILURES['cpp'] (registry-primary-only, like the sequential entry). Closes the DoD sequential≡worker gap flagged in the tri-review of PR #2005. Also correct the fixture/test narrative: the pre-fix failure is a CROSS-WIRE (DB's EXTENDS binds NS1::A::Inner via the refuse-on-tie scope-walk fallback), not a silent miss — the empirical pre-fix run shows the edge exists but points at the wrong target. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(scope-resolution): type the namespacePrefix sidecar; regen cpp bench baseline (#1993) F4 follow-up to #1993: declare `namespacePrefix?: string` on SymbolDefinition (gitnexus-shared) and drop the six `as { namespacePrefix?: string }` casts in walkers.ts / graph-bridge/ids.ts that #1993 introduced. Pure type-level — the `as` assertions erase at compile time, runtime is byte-identical, and the field stays a sidecar (no graph-node identity; the qualifiedName-keyed index is untouched). Also regenerate the cpp scope-capture bench baseline: rebased onto main (now carrying #1995's cpp fixtures), #1993 adds cpp-cross-namespace-same-tail, growing the cpp-* corpus 272->273 and drifting the fingerprint d63ded6->6d6207ae. Pure fixture-corpus drift — no scope-extractor change. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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e316222cd5
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fix(cpp): distinct nodes for union- and anonymous-namespace-nested same-tail types (#1995) (#2004)
* fix(cpp): qualify types nested in a named union by their union scope (#1995) `union_specifier` was missing from cppClassConfig.ancestorScopeNodeTypes, so a struct nested in `union U1` and one in `union U2` both qualified to the bare `Inner` and merged onto one Struct:...:Inner node — from_u1/from_u2 cross-wired (invisible to findDanglingEdges). Adding `union_specifier` lets buildQualifiedName pick up the named union's `name` segment, materializing distinct `U1.Inner` / `U2.Inner` nodes. Anonymous unions have no `name` child and correctly contribute nothing (members inject into the enclosing scope); the separate C config is untouched. New fixture + positive-identity tests (sequential + worker, both legs). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cpp): distinct nodes for anonymous-namespace-nested same-tail types (#1995) An anonymous `namespace { }` is a namespace_definition with no `name` child, so the scope walker dropped it (empty segment) and two `namespace { struct Inner {} }` blocks in one TU collapsed onto a single `Inner` node — from_anon_a/from_anon_b cross-wired. A C++ `extractScopeSegments` override (the first consumer of the existing config hook) gives each anonymous namespace a deterministic per-block discriminator from its start byte, keeping the nested types distinct. Named scopes (incl. `inline namespace`) and anonymous unions are unaffected. Deterministic across the sequential and worker full-file parses. New fixture + tests assert node DISTINCTNESS (count==2 / distinct owners), not the non-portable discriminator value. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(cpp): regenerate cpp scope-capture bench baseline for #1995 fixtures Rebased onto main (which now carries #1992 + its rust baseline). #1995 adds the cpp-union-nested-tail-collision and cpp-anon-ns-tail-collision fixtures, growing the cpp-* corpus 270->272 and drifting the order-independent fingerprint (538e8be -> d63ded6). Pure fixture-corpus drift — no scope-extractor change; existing fixtures' captures byte-identical. (cpp has no captures-golden gate, so only the bench baseline needs regenerating.) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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c11f50a06e
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fix(ingestion): own generic Rust inherent-impl methods through the mod-qualified Impl node (#1992) (#2003)
* fix(ingestion): own generic Rust inherent-impl methods through the mod-qualified Impl node (#1992) A generic inherent-impl target (`impl<T> Inner<T>`) is a `generic_type` node, which the inherent-impl owner walk (findEnclosingClassInfo) did not match — so the walk returned null and the method got `File -> DEFINES` with NO HAS_METHOD edge (orphaned, and invisible to findDanglingEdges). The Impl node was already correctly mod-qualified (the @name capture drills into the inner type_identifier, tree-sitter-queries.ts), so this is an owner-walk-only fix: drill into the generic base and mirror the node gate so the owner id == the node id byte-for-byte. A scoped-generic target (`impl<T> a::Inner<T>`) materializes no Impl node and is left orphaned (deferred) rather than minting a phantom owner. The owner walk is shared by the sequential and worker paths. New fixture + tests assert positive HAS_METHOD ownership through distinct `a.Inner` / `b.Inner` nodes on both resolver legs and the worker path, plus a negative scoped-generic guard. rust-captures-golden regenerated additively for the new fixture. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): qualify className for same-tail Rust generic impls + regen rust bench baseline (#1992) F3 follow-up to #1992: two same-tail generic inherent impls under sibling mods that ALSO share a method name (`mod a { impl Inner { fn m } }` + `mod b { impl Inner { fn m } }`) keyed the method node id `${className}.${name}` with the bare tail (`Inner.m`) and collapsed onto one Function node (graph addNode is first-write-wins), silently dropping the second. The owner Impl `classId` was already mod-qualified, masking the collision behind distinct HAS_METHOD sources. Qualify `className` (`a.Inner` / `b.Inner`) in the bare inherent-impl arm so the node id inherits the mod scope; symmetric with the call-resolution fallback, and the HAS_METHOD owner anchors on the unchanged qualified classId. New same-method-name fixture + sequential & worker-parity tests; holds on both legs. Also regenerate the rust scope-capture bench baseline: the new rust-nested-tail-collision-generic (#1992) + rust-generic-impl-same-method-name (F3) fixtures grow the rust-* corpus, so the order-independent fingerprint drifts (56ffc1c0 -> b00aea0f, fixture_count 127 -> 129). Pure fixture-corpus drift — no scope-extractor change; existing fixtures' captures byte-identical. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(rust): regenerate rust-captures golden for the F3 same-method-name fixture (#1992) The rust-* scope-capture corpus is fingerprinted by TWO gates: the bench baseline (bench/scope-capture/baselines.json, already updated) and the rust-captures-golden unit test (test/fixtures/rust-captures-golden/expected-captures.json). Adding the F3 fixture rust-generic-impl-same-method-name grew the corpus 128->129 entries, so the committed golden drifted too. Regenerated additively (UPDATE_GOLDEN=1) — only the new fixture's entry is added; existing fixtures' captures are byte-identical. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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c2b4ec6c31
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feat(vue): migrate Vue SFC to scope-based resolution (RFC #909 Ring 3, closes #940) (#1950)
* feat(vue): migrate Vue SFC to scope-based resolution (RFC #909 Ring 3, closes #940) Adds `vueScopeResolver` and wires Vue into the scope-resolution pipeline (`SCOPE_RESOLVERS`, `MIGRATED_LANGUAGES`). Vue's `<script>` / `<script setup>` blocks are TypeScript — `emitVueScopeCaptures` extracts the script block via the existing `extractVueScript` utility and delegates to `emitTsScopeCaptures`, keeping grammar identity consistent with the cached tree the parse-worker already builds. - `languages/vue/captures.ts` — `emitVueScopeCaptures` - `languages/vue/import-target.ts` — `makeVueResolveImportTarget` (TS resolver + tsconfig path-alias support; explicit `.vue` imports resolve via the exact-path branch) - `languages/vue/scope-resolver.ts` — `vueScopeResolver` - `languages/vue/index.ts` — barrel + known-limitations doc - `languages/vue.ts` — `emitScopeCaptures` hooked up - `scope-resolution/pipeline/registry.ts` — Vue entry added - `registry-primary-flag.ts` — `SupportedLanguages.Vue` added to `MIGRATED_LANGUAGES` (production default → registry-primary) - `vue-composition-api` — `<script setup lang="ts">`, defineProps / defineEmits macros, cross-file TS imports, computed refs - `vue-options-api` — `defineComponent({methods, computed, data})`, this-based method calls, imported utility calls - `vue-cross-file` — composable functions returning class instances, multi-level import chains, UserModel/PostModel method calls - `fieldFallbackOnMethodLookup: true` — Options API `this.X()` calls may not resolve through the type-binding layer (no formal class); fallback catches common patterns via declared field names. - `allowGlobalFreeCallFallback: false` — Vue uses explicit imports; workspace-wide unique-name fallback would produce spurious edges for built-ins (ref, reactive, defineProps, …). - Template expression calls intentionally out of scope: component- reference CALLS edges are already emitted by the legacy template extractor. Remaining template gaps tracked in #1647. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(vue): address P0/P1 review findings from #1950 ## P0 #1 — missing scope-resolution hooks in vueProvider `pass3CollectImports` early-returns when `interpretImport` is undefined, producing zero IMPORTS and zero cross-file CALLS edges. Add the four hooks to `vueProvider` in `vue.ts`: - `interpretImport: interpretTsImport` - `interpretTypeBinding: interpretTsTypeBinding` - `bindingScopeFor: tsBindingScopeFor` - `importOwningScope: tsImportOwningScope` Also add `receiverBinding`, `mergeBindings`, `arityCompatibility`, and `resolveImportTarget` to complete the scope-resolution contract. ## P0 #2 — template-component CALLS dropped when Vue is registry-primary `isRegistryPrimary(Vue) → true` makes the main call-processor loop skip Vue files entirely, silencing the inline `vue-template-component` CALLS emitter at ≈L1506. Add a dedicated post-loop pass in `call-processor.ts` that emits template-component CALLS for Vue files whenever Vue is registry-primary. Update the stale `vue/index.ts` limitation comment to reflect the new emit site. ## P1 #3 — worker-mode double-extraction → zero captures In worker mode (≥15 files) the parse worker pre-extracts the `<script>` block and passes `scriptContent` as `sourceText`. `emitVueScopeCaptures` was calling `extractVueScript` a second time, getting null, and returning `[]`. Fix: if extraction returns null and the content has no SFC block- level markers (`<template`, `<style`), treat it as already-extracted script text and delegate directly to `emitTsScopeCaptures`. ## Test assertion strictness Replace all `toBeGreaterThanOrEqual(1)` assertions with exact `toBe(N)` counts. IMPORTS counts reflect per-symbol scope-based edges (value imports only; `import type` is not emitted as an IMPORTS edge). CALLS counts are 1 per single-call-site. Co-authored-by: Cursor <cursoragent@cursor.com> * feat(vue): template-derived edges + pipeline benchmark (#1950 review) Addresses the reviewer's request for template edge attribution and a performance benchmark. ## Template event-handler CALLS (`vue-template-callback`) Add `extractTemplateEventHandlers` to `vue-sfc-extractor.ts`. Extracts bare single-identifier handlers from `@event="methodName"` and `v-on:event="methodName"` attributes. Inline expressions with arguments or operators (`@click="toggle(item)"`) are intentionally excluded. Wire into the dedicated registry-primary Vue template pass in `call-processor.ts`. For each extracted handler name, `ctx.resolve` finds the in-file Function/Method node and emits a CALLS edge with `reason: 'vue-template-callback'`. ## Template attribute-binding ACCESSES (`vue-template-attribute`) Add `extractTemplateAttributeBindings` to `vue-sfc-extractor.ts`. Extracts bare single-identifier values from `:prop="varName"` and `v-bind:prop="varName"` bindings. Member-access (`:key="post.id"`) and literals are excluded by the identifier-boundary regex. Wire into the same template pass. For each extracted variable, `ctx.resolve` finds the in-file node and emits an ACCESSES edge with `reason: 'vue-template-attribute'`. ## `vue/index.ts` limitations comment Updated to accurately describe all three categories of template-derived edges and explicitly document the complex-expression exclusions. ## Tests Add 6 new assertions in `vue-scope.test.ts`: - `@click="handleSave"` → CALLS `handleSave` (UserProfile.vue) - `@select="onPostSelected"` → CALLS `onPostSelected` (App.vue composition) - `@keyup.enter="addTodo"` → CALLS `addTodo` (TodoList.vue) - `@loaded="onUserLoaded"` → CALLS `onUserLoaded` (App.vue cross-file) - `:userId="currentUserId"` → ACCESSES `currentUserId` (App.vue composition) - `:posts="allPosts"` → ACCESSES `allPosts` (App.vue composition) Add `vue` entry to `LEGACY_RESOLVER_PARITY_EXPECTED_FAILURES` in `helpers.ts` documenting which assertions are registry-primary-only (IMPORTS cardinality, template-derived edges, `<script setup>` export). ## Benchmark Add `vue-pipeline-benchmark.test.ts` (gated by `GITNEXUS_BENCH=1`). Generates N-component synthetic repos (10 / 25 / 50 / 100) and asserts that wall-clock and node counts scale sub-quadratically with component count, guarding against O(n²) regressions in the template extraction or scope-resolution passes. Co-authored-by: Cursor <cursoragent@cursor.com> * feat(vue): BINDS_EVENT_HANDLER/EMITS_EVENT edges via ScopeResolver hook Per maintainer feedback on PR #1950: - Do not edit call-processor.ts (will be removed when all languages migrate) - Model Vue component-event system with dedicated edge types to avoid CALLS noise in deep component hierarchies (per contributor discussion) Changes: - gitnexus-shared: add BINDS_EVENT_HANDLER and EMITS_EVENT to RelationshipType - vue-sfc-extractor: add extractComponentEventBindings, extractNativeElementEventHandlers, and extractScriptEmitCalls - ScopeResolver contract: add optional emitPostResolutionEdges hook - run.ts: wire emitPostResolutionEdges after emitImportEdges - vue/scope-resolver: implement emitPostResolutionEdges emitting: 1. CALLS (vue-template-component) — PascalCase component File refs 2. CALLS (vue-template-callback) — @event on native HTML elements 3. BINDS_EVENT_HANDLER (vue-event: @name) — @event on component elements; source = handler fn in parent, target = child component File (not CALLS) 4. EMITS_EVENT (vue-emit: name) — emit() calls; self-loop on component File, joinable with BINDS_EVENT_HANDLER via Cypher for impact tracing 5. ACCESSES (vue-template-attribute) — :prop="var" bindings - call-processor.ts: revert dedicated Vue post-loop pass; moved to scope resolver - Tests and parity expected-failures updated accordingly Co-authored-by: Cursor <cursoragent@cursor.com> * fix(vue): close review gaps in scope/parity extraction Resolve the new PR #1950 review findings by widening Vue scope context to include TS/JS import closures, fixing BINDS_EVENT_HANDLER endpoint assertions, hardening emit/event extraction to avoid comment/property false positives, supporting kebab-case component tags, and ensuring parity runs include vue-scope suites. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(vue): address second review round — regex safety, emit coverage, arch Closes items raised in the Jun 2 review comment on PR #1950. Correctness fixes: - ReDoS mitigation: bound attribute-capture spans to [^>]{0,512}? in all three template tag regexes to prevent pathological backtracking. - Kebab-case misclassified as native: added (?![A-Za-z0-9-]) negative lookahead to NATIVE_TAG_RE so <post-list> is no longer split as native tag `post` with attrs `-list ...`. - Hyphenated event names dropped: widened TAG_EVENT_RE from [\w:.]+ to [\w:.-]+ so @user-loaded and @update:model-value are captured. - this.$emit silently dropped: collectBareEmitEventNames now allows this.$emit(...) by looking back past the '.' to verify preceding token is exactly `this`; socket.emit etc. remain blocked. - Event names with colon rejected: extended validator to accept update:modelValue and update:model-value patterns. Architecture fix: - Moved collectVueScopeFilePaths out of shared phase.ts into a new collectScopeContextPaths optional hook on ScopeResolver, keeping shared pipeline code language-agnostic. vueScopeResolver implements the hook. - Fixed memory leak: preExtractedByPath cleanup now iterates filePaths (all context files) not just primaryFilePaths (only .vue files). Cleanup: - Removed unused extractTemplateEventHandlers and duplicate EVENT_HANDLER_RE. - Fixed skipped comment numbers in emitPostResolutionEdges (1,2,4,5,6 -> 1-6). - Updated vue/index.ts: four categories -> five (added EMITS_EVENT). - Fixed gitnexus-shared EMITS_EVENT JSDoc to reflect File->File reality. Tests: 7 new unit tests covering hyphenated events, this.$emit, kebab-case native-tag exclusion, and update:modelValue event name validation. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(vue): eliminate double file-read and per-file template re-scans Two performance fixes from the self-review pass: 1. **No more double read of .vue files in phase.ts**: primary files were previously read once for `collectScopeContextPaths` (via `entryFileContents`) and again in the blanket `readFileContents(filePaths)` call. Now the primary-file map is passed directly and only the extra context files (TS/JS import closure) require a second I/O round-trip. 2. **Single template parse per .vue file in emitPostResolutionEdges**: previously each of the five extractor functions (components, native handlers, component event bindings, emit calls, attribute bindings) ran `TEMPLATE_RE.exec(content)` independently — five full-file scans per `.vue` file. Replaced with a new `extractVueTemplateEdgeData` batching helper that parses the template and script blocks once and feeds all five extractors from the pre-extracted content. emitPostResolutionEdges now calls a single function and destructures the results. Co-authored-by: Cursor <cursoragent@cursor.com> * fix(parity): exclude TypeScript HOC/HOF/JSX scope-resolver tests from legacy DAG parity gate Three test files introduced in prior PRs exercise scope-resolver-only correctness wins: HOC-wrapped const declarations, HOF-callback caller attribution, and JSX-as-call CALLS edges. The parity runner's ${slug}-*.test.ts glob now picks them up, causing typescript [legacy] failures in CI. Fix: convert each file to use createResolverParityIt('typescript') and register all 26 legacy-failing test names in LEGACY_RESOLVER_PARITY_EXPECTED_FAILURES.typescript with explanatory comments. Legacy mode: 11+11+4 tests skipped, zero failures. Registry-primary mode: all 37 tests pass as before. Co-authored-by: Cursor <cursoragent@cursor.com> * chore(test): remove registry-primary-flag unit tests after migration complete All languages are now in MIGRATED_LANGUAGES; the per-language flip tests are no longer needed. Addresses PR #1950 review feedback. Co-authored-by: Cursor <cursoragent@cursor.com> --------- Co-authored-by: Cursor <cursoragent@cursor.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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c60ad9f7ab
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fix(ingestion): fully-qualified nested-type identity for C++/Ruby — structure (#1978) + resolution (#1982) (#1981)
* fix(ingestion): qualify nested-type node identity for C++/Ruby (#1978) Nested types sharing a tail name in one file — C++ `Outer::Inner` vs `Other::Inner`, Ruby `Outer::Inner` vs `Other::Inner` modules — silently merged into a single graph node keyed by the simple tail (`Struct:file:Inner`), cross-wiring their methods/properties onto one owner. Key class-like type nodes (Class/Struct/Interface/Enum/Record) by their normalized fully-qualified path (`Struct:file:Outer.Inner`) instead of the simple name. Gated per-language by a new `qualifiedNodeId` config flag (default false → byte-identical for every other language); enabled here for C++ and Ruby. - class-types.ts / generic.ts: `qualifiedNodeId` flag on ClassExtractor + config - ast-helpers.ts: findEnclosingClassInfo gains an optional getQualifiedOwnerName hook + EnclosingClassInfo.qualifiedClassId, so member-owner edges resolve to the qualified class node id (owner id == node id by construction) - parsing-processor.ts + parse-worker.ts: flag-gated qualified node-id + owner edges on both the sequential and worker parse paths (incl. routed properties) - call-processor.ts: same qualifier in the routed-property pre-pass (lockstep with the worker `kind === 'properties'` block) - configs/c-cpp.ts, configs/ruby.ts: qualifiedNodeId: true Method/Property node ids stay simple-qualified; only type nodes get the qualified id. Deferred to a resolution-side follow-up: Ruby SAME-TAIL routed-property/mixin owner identity under registry-primary (`emitRubyMixinEdges` keys owners by the simple tail name, last-wins); and Rust inherent-impl methods (impl_item is not a typeDeclaration — its #1978 test is describe.skip). Tests: same-tail collision fixtures + #1978 resolver tests for C++/Ruby (positive owner identity, R7), a worker-path parity block, and an unambiguous nested attr_accessor case; the C++ #1975 out-of-line test updated to assert qualified-id distinctness (forward-decl + out-of-line now unify). Verified green on both parity legs, the worker path, and tsc. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): scope #1978 resolver tests to registry-primary leg; fix lint - helpers.ts: exclude the new #1978 C++/Ruby resolver tests from the legacy parity leg (LEGACY_RESOLVER_PARITY_EXPECTED_FAILURES). They PASS on legacy too — the fix lives in the SHARED structure phase, not the legacy resolution path — so this is a deliberate registry-primary-only scoping (not a legacy gap), keeping the legacy path untouched and uncoupled from the new node-identity behavior. - rust.test.ts: drop the `eslint-disable vitest/no-disabled-tests` directive. That rule isn't configured in this repo, so eslint errored "Definition for rule 'vitest/no-disabled-tests' was not found" and failed `quality / lint`. The describe.skip needs no disable directive. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(test): satisfy CI for the new #1978 fixtures (format + golden + fingerprint) Adding the {cpp,ruby,rust}-nested-tail-collision fixtures changed the lang-resolution corpus, which the scope-capture golden snapshots and the fingerprint baselines gate on. These are pure fixture-corpus additions — #1978 does not touch the scope-capture phase (captures.ts / emit*ScopeCaptures are unchanged). Verified: the regenerated ruby/rust golden diffs are additive-only (no existing fixture's capture digest changed), so the cpp/ruby/ rust fingerprint drift is solely the new fixtures. - prettier --write test/integration/resolvers/{ruby,rust}.test.ts - regenerate ruby/rust captures-golden snapshots (UPDATE_GOLDEN=1; +1 fixture each) - rebaseline cpp/ruby/rust scope-capture fingerprints (bench/scope-capture/baselines.json) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(ingestion): extract shared qualified-name normalizer (#1982) Move normalizeQualifiedName/splitQualifiedName out of class-extractors/ generic.ts into utils/qualified-name.ts so the structure-phase buildQualifiedName, the scope-resolution inheritance resolver, and the per-language capture emitters can all key against ONE normalizer. A raw '::' qualifier must normalize to the exact '.'-joined key the QualifiedNameIndex already holds, or the qualified lookup silently misses (the #1982 resolution-side foundation). Pure relocation — byte-identical function bodies; tsc clean; existing C++ nested-collision tests green. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): resolve same-tail C++ nested-type heritage to the correct qualified node (#1982) Registry-primary C++ inheritance (preEmitInheritanceEdges -> resolveInheritanceBaseInScope) resolved a same-tail nested base by its SIMPLE TAIL with first-wins, so `struct DerivedB : Other::Inner` mis-resolved EXTENDS to Outer.Inner (the wrong sibling; 0 dangling, so undetected). The namespace qualifier was discarded at the C++ inheritance capture. Fix (additive, qualified-first): - ReferenceSite gains an optional `rawQualifiedName`; the C++ inheritance capture emits `@reference.qualified-name` (qualifier-preserving, template-stripped: Other::Inner, ns::Base<T> -> ns::Base) only when the base is qualified, registered as a sub-tag so it can't shadow the `@reference.inherits` anchor. - resolveInheritanceBaseInScope resolves the qualifier against the full-path QualifiedNameIndex FIRST (which already carries Outer.Inner / Other.Inner keys from the structure phase), with progressive-prefix lookup for relative bases and refuse-on-tie, falling through to the existing simple-tail walk on miss — so unqualified bases and the single-candidate cross-file case are unchanged. Registry-primary cpp.test.ts 278/278 (incl. worker-path: rawQualifiedName survives worker serialization). Legacy leg unaffected (207 pass / 71 skip) — the new resolution-side assertions are registry-primary-only via helpers.ts. tsc clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): resolve same-tail Ruby mixin/attr_accessor owners to the correct qualified node (#1982) emitRubyMixinEdges keyed its owner map by the SIMPLE tail (def.qualifiedName split-popped) with last-wins, and the __heritage__/__property__ markers carried only the immediate owner name — so `module Outer; class Inner` and `module Other; class Inner` collapsed onto one `Inner` key and cross-wired their include/attr_accessor edges onto whichever Inner was processed last. Fix (lockstep, full-qualified): - ruby/captures.ts: build the marker owner from the FULL enclosing class/module chain (buildEnclosingQualifiedName walks all ancestors, normalizing the compact `class Outer::Inner` scope_resolution form via the shared splitQualifiedName) so the marker owner byte-matches the resolution def's qualifiedName. - ruby/scope-resolver.ts: key graphIdByName by the full def.qualifiedName instead of the simple tail. Top-level owners/mixins are unchanged (full == simple). Registry-primary ruby.test.ts 142/142 incl. a new worker-path block (the deferred note's duplicate-edge concern: markers survive worker serialization, exactly one HAS_PROPERTY per attr). Legacy leg unaffected (136 pass / 6 skip) — new assertions registry-primary-only via helpers.ts. tsc clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): rebaseline #1982 golden/fingerprint + lint/format sweep Cross-cutting verification artifacts for the #1982 same-tail resolution fix: - ruby capture golden regenerated: ONLY the ruby-nested-tail-collision fixture drifts (+10 capture groups from its new include/attr_accessor + the now full-qualified __heritage__/__property__ marker owner). All other ruby fixtures byte-identical (proves the owner-qualification is localized to nested owners). - bench/scope-capture/baselines.json: rebaseline cpp + ruby fingerprints (the only two that drift; 12 other languages byte-identical). cpp = additive @reference.qualified-name capture; ruby = the localized owner change. Provenance notes record both. scaling linear (~1.0), 14/14 PASS. - generic.ts: drop the now-unused normalizeQualifiedName import (lint error). - walkers.ts / ruby.test.ts: prettier formatting. Verified: cpp 278/278 + ruby 142/142 (registry-primary), both legacy legs clean (skips registry-primary-only assertions), go/java/csharp 542 (cross-language regression — the qualified-first branch is gated on rawQualifiedName, set only by C++, so non-C++ inheritance resolution is unchanged). tsc + eslint(0 errors) + prettier clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): resolve nested Ruby mixin included by short name (#1982) emitRubyMixinEdges keyed graphIdByName by the full def.qualifiedName on the owner side, but the __heritage__ marker carries the mixin target as the bare written name (arg.text). A nested mixin module included by its short name (include Loggable where it is App::Loggable) missed the full-qn map and its IMPLEMENTS edge was silently dropped (0 dangling, undetectable). The shipped same-tail fixture used only top-level mixin modules, so CI stayed green. Add a secondary simple-tail fallback map consulted only when the full-qn mixin lookup misses; owner lookups stay full-qn so same-tail owner disambiguation is preserved. Characterization test + fixture (registry-primary only); golden regenerated additively. Addresses PR #1981 review (4417182679) P1. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): normalize qualified Ruby mixin arg in heritage marker (#1982) `include Outer::Mixin` embedded the raw `Outer::Mixin` into the ':'-delimited __heritage__ marker, so the `::` collided with the field separator and emitRubyMixinEdges mis-split it (className became empty), dropping the IMPLEMENTS edge. Normalize the mixin arg via splitQualifiedName(...).join('.') before emit so the marker carries the dotted form, which both parses correctly and matches the mixin def's qualifiedName. Simple names are unchanged (no golden drift). Addresses PR #1981 review (4417182679) secondary R2. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): resolve C++ same-tail nested heritage inside a namespace (#1982) A namespace-nested C++ type's scope-model qualifiedName carried its enclosing CLASS chain (A.Inner) but dropped the enclosing NAMESPACE, while the structure-phase graph node is keyed by the full path (NS.A.Inner). resolveDefGraphId's qualifiedKey therefore missed and fell back to simpleKey('Inner'), collapsing same-tail nested bases across sibling namespace members — DB : B::Inner pointed at NS.A.Inner. The shipped fixture was top-level only, so it could not catch this. Fix without disturbing the qualifiedName-keyed resolution index (an earlier attempt that rewrote qualifiedName regressed brace-init / UDC / two-phase namespace resolution): tagNamespacePrefixes records each namespace-nested def's enclosing-namespace prefix on a sidecar field, and resolveDefGraphId retries the node lookup with the namespace-prefixed key before the simpleKey fallback. The helper is language-agnostic (acts only on Namespace scopes) and opt-in — only the C++ provider calls it. Namespaced fixture + sequential & worker tests (registry-primary only). All 280 cpp resolver tests pass; tsc clean. Addresses PR #1981 review (4417182679) P2. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): worker-path parity for Ruby mixin IMPLEMENTS + C++ DerivedA (#1982) The Ruby worker-path parity block asserted only attr_accessor (HAS_PROPERTY); add an IMPLEMENTS assertion so a dropped/cross-wired mixin owner on the worker path is caught (the __heritage__ marker owner must survive serialization). The C++ worker heritage block asserted only DerivedB; add a DerivedA assertion with a toHaveLength(1) duplicate guard. Registry-primary only. Addresses PR #1981 review (4417182679) test-coverage gap. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): distinct Rust same-tail nested-mod inherent-impl ownership (#1982) Rust methods live in `impl Inner` blocks, and findEnclosingClassInfo keyed the inherent-impl owner by the target's RAW tail (`Impl:lib.rs:Inner`), so two same-tail `impl Inner` blocks under different mods (mod outer / mod other) collapsed onto ONE Impl node and their methods cross-wired. The shipped fixture test for this was skipped/deferred. Qualify an UNSCOPED inherent-impl target by its enclosing `mod_item` scope (`outer.Inner`) in BOTH the owner walk (ast-helpers.qualifyRustImplTargetByModScope) and the Impl-node materialization (parsing-processor + parse-worker, lockstep) so the owner edge and node id agree byte-for-byte. Gated on the Impl label + impl_item + an unscoped type_identifier target — Rust-impl-exclusive, so C++/Ruby and the rust captures golden are untouched; a SCOPED `impl a::Inner` keeps its full raw text (#1975, unchanged). The previously-skipped distinct-ownership test is now active and passing; rust 170/170, cpp+ruby+golden 437/437, tsc clean. Done in-PR at maintainer request (was deferred as a follow-up). Addresses PR #1981 review (4417182679) test-coverage gap R7. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(ingestion): single qualified-name normalizer + module-scoped Ruby PROPERTY_PREFIX (#1982) Replace cpp/captures.ts's parallel normalizeCppNamespaceQName with the shared normalizeQualifiedName (behaviorally equivalent for C++ qualified-identifier inputs: '::'->'.' with leading/trailing-:: handling; no interior whitespace reaches it). Promote Ruby's PROPERTY_PREFIX to module scope alongside HERITAGE_PREFIX (was function-local — asymmetric with no behavioral effect). Maintainability only; cpp+ruby resolver suites 428/428, tsc clean. Addresses PR #1981 review (4417182679) maintainability item. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf+fix(ingestion): single enclosing-class walk + root-anchored base guard (#1982) U7 (perf): preEmitInheritanceEdges resolved the deriving class AND resolveQualifiedInheritanceBase re-walked findEnclosingClassDef for the same site. Resolve callerClass once and thread it into resolveInheritanceBaseInScope -> resolveQualifiedInheritanceBase -> enclosingScopeSegments, so the enclosing class is walked once per qualified site. Add a 'program' early-exit to buildEnclosingQualifiedName (ruby/captures.ts). Behavior-preserving. U8 (P3): a root-anchored C++ base ": ::A::Inner" names the GLOBAL type, but resolveQualifiedInheritanceBase prepended the deriving class's enclosing segments and could mis-bind to an enclosing-relative same-path type. Detect the leading "::" on the raw qualifier and try only the root-anchored key. Discriminating fixture + test (registry-primary only). cpp+ruby+rust resolver suites 599/599; tsc clean. Addresses PR #1981 review (4417182679) perf + P3 items. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): rebaseline ruby+cpp scope-capture fingerprints for new #1982 fixtures The four new fixtures (ruby-nested-mixin-shortname, ruby-qualified-mixin, cpp-namespaced-collision, cpp-global-base-anchor) grow the lang-resolution corpus, drifting the ruby and cpp order-independent capture fingerprints. Verified purely additive: the ruby captures golden shows only the two new fixtures added (existing byte-identical), and removing the two cpp fixtures reverts the cpp fingerprint to the prior baseline (so the U3/U6/U8 code changes are scope-resolution / behavior-preserving, not capture-emission). measure.mjs --check PASS (14 languages). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * style(ingestion): prettier-wrap ruby resolver test call (#1982) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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f1b8438388
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perf(cpp): index ADL candidates once instead of per-site rescans (#1990)
* perf(cpp): index ADL candidates once instead of per-site rescans C++ scope-resolution `emit` dominated large-repo analysis (~6.76h on a 5,969-file repo — ~70% of the total run). `pickCppAdlCandidates` ran once per unresolved ADL-eligible call site and each time: - rescanned every parsed file (rebuilding a per-file scope map per call), - scanned every workspace def (`findCppClassDefBySimpleName`), and - used an O(scopes²) child-scope walk for hidden friends. That is O(unresolved sites × files); with hundreds of thousands of unresolved C++ sites the emit phase went super-linear. `resolve` (registry lookup) was only 3.5s — the cost was entirely in fallback edge emission. Build an `AdlCandidateIndex` once per run (lazy, guarded by `parsedFiles` identity, reset in `clearCppAdlState`) and query it per site: - `classDefsBySimple` — preserves `defs.byId` order so first-match / ambiguous semantics are identical to the legacy linear scan. - `nsCandidates` — namespace-owned callables, with inline-namespace transparency. - `friendCandidates` — hidden-friend + class-member callables; a parent→children scope index replaces the O(scopes²) walk. - `nsFunctionsByQName` / `nsFunctionsBySimple` — function-reference ADL path. A monotonic `seqByNodeId` (file-major; namespace defs before friend/member defs within a file) lets the per-site query merge candidates across associated namespaces, dedup by nodeId, and sort — reproducing the exact legacy candidate set and order. Per-site cost drops from O(sites × files) to O(associated namespaces); the emit phase goes from linear-in-sites to flat. Benchmark (files=80): emit at 1000 sites 232ms → 9ms, 2000 sites flat at 17ms; the eliminated term scales with file count, so the speedup is ~1000×+ on the real 5,969-file repo. Behavior is unchanged: synthetic candidate output is byte-identical before/after, all 270 C++ integration resolver tests and 4/4 resolver-parity-expected-failures pass, and tsc + eslint are clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(cpp): correct ADL state-lifecycle and cache-guard comments The header lifecycle block listed three module-level maps and named clearFileLocalNames as the reset caller; both became inaccurate when the candidate index was added. Enumerate all five state pieces, name the real caller (loadResolutionConfig), and document that ensureAdlIndex's staleness guard keys on parsedFiles identity while the index also depends on scopes and classToNamespaceQualifiedName. Addresses PR #1990 tri-review (U1, U3). Doc-only; no behavior change. * test(cpp): guard the ADL seq-coverage invariant in dev/test pickCppAdlCandidates sorts merged candidates by seqByNodeId with a `?? 0` fallback. That fallback is unreachable today (every bucketed def is seq-assigned in the same build block), but a future regression could break it and silently collapse two seq-0 candidates, dropping a CALLS edge with no error. Add validateAdlSeqCoverage and run it from buildAdlIndex under the resolver's opt-in validation gate (NODE_ENV!=production && VALIDATE_SEMANTIC_MODEL!=0), so a broken invariant throws loudly in dev/CI instead. Production behavior and the hot path are unchanged. Unit-tested; 270/270 cpp integration tests pass with the guard active. Addresses PR #1990 tri-review (U2). * test(cpp): parity fixture for ADL hidden-friend + namespace-callable merge pickCppAdlCandidates merges friendCandidates (hidden friends of associated classes) and nsCandidates (namespace-owned callables) for a single associated namespace. The byte-identical-parity claim rested only on an uncommitted harness. Add a fixture that reaches one callable through each bucket — combine only via a hidden friend, process only via a namespace member — so dropping either bucket from the merge fails the suite. Candidate order is not observable (narrowing resolves a unique survivor or suppresses), so the guard is on the set. Addresses PR #1990 tri-review (U4). * test(cpp): add ADL emit-scaling benchmark Guards the PR #1990 optimization against reintroducing the O(sites x files) ADL candidate scan. Generates many UNRESOLVED ADL sites (class-typed arg + a callee declared nowhere) and co-scales files and sites with N, so the old cost is O(N^2) and the new cost O(N). Isolates the scope-resolution emit ms from parse-dominated wall time via the logger test destination (capture verified) and asserts the end-to-end emit ratio stays under fileRatio^1.5. Gated by GITNEXUS_BENCH=1; runs build-free (workerPoolSize: 0). Addresses the benchmark request alongside PR #1990 (U5). * test(cpp): add cpp pipeline file-count benchmark Fills the one missing per-language pipeline benchmark (cobol/csharp/go/php/ ruby/rust already have one); modeled on cobol-pipeline-benchmark.test.ts. Generates synthetic C++ with constant per-file work and constant header fan-out, sweeps file count through the full pipeline, and guards linearity with a coarse time-ratio bound plus a deterministic node-ratio bound (the non-flaky guard against reintroducing O(fileCount^2) work). Gated by GITNEXUS_BENCH=1; runs build-free (workerPoolSize: 0). Addresses the benchmark request alongside PR #1990 (U6). * style(cpp): prettier-format adl benchmark * test(cpp): rebaseline scope-capture fingerprint for new ADL fixture The U4 parity fixture (cpp-adl-ns-plus-hidden-friend-same-name) lives under test/fixtures/lang-resolution/cpp-*, so its lib.h + app.cpp join the cpp scope-capture bench corpus (bench/scope-capture/measure.mjs). That is pure fixture-corpus growth — no scope-extractor change, existing fixtures' captures byte-identical — so the cpp fingerprint legitimately drifts (fixture_count 265->267). Rebaseline cpp to match, as #1965/#1975 did for earlier fixture additions. Verified: --check PASS for all 14 languages. Addresses PR #1990 tri-review (U4 follow-on). --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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04ade15451
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fix(rust): scope-resolution coverage gaps — F66,F68,F71,F72 (#1934) (#1974)
* fix(rust): scope-resolution coverage gaps — F66,F68,F71,F72,F73 (#1934) * fix(rust): reviewer fixes — macro namespace, revert pattern:(_), drop variadic * fix(rust): wire macro resolution end-to-end + materialize unions (#1974 review) Addresses the outstanding #1974 review (second batch). Per maintainer decision, F72 is FULLY WIRED rather than documented capture-only. F72 macro — was a capture-only no-op (@reference.macro dropped downstream): - gitnexus-shared: add 'macro' ReferenceKind + Reference.kind; add MACRO_KINDS (['Macro']) and a MacroRegistry that resolves a macro invocation ONLY to a macro_rules! definition — never a same-named free function (the disjoint-namespace guarantee the review required). - scope-extractor: referenceKindFromAnchor @reference.macro -> 'macro'; normalizeNodeLabel 'macro' -> Macro. - resolve-references: route 'macro' sites through MacroRegistry. - emit-references / graph-bridge edges: 'macro' -> USES (kept out of the CALLS keyspace, which denotes function/method dispatch). - node-lookup isLinkableLabel: Macro is linkable, bridging the registry def to the legacy @definition.macro graph node. - rust query: capture macro_rules! as @declaration.macro; fix the scoped macro arm to capture the tail identifier, not the full path (P3). F71 union — the @declaration.struct scope capture had no graph node to resolve to (legacy RUST_QUERIES never captured union_item): - legacy query: capture union_item as @definition.struct so the union is materialized as a Struct node and is genuinely resolvable. - query.ts: document the deliberate union->Struct downgrade rationale. Tests: - rust.test.ts (parity-gated): pipeline-level union resolution + macro resolution (USES to the Macro, exactly one CALLS to fn, none to Macro). Macro resolution is registry-primary-only -> listed in LEGACY_RESOLVER_PARITY_EXPECTED_FAILURES['rust']. - rust-coverage.test.ts: scoped-macro tail + macro-def capture assertions; reframed as capture-layer only, pointing at the pipeline tests. - new fixtures rust-macro, rust-union. F73: dropped from baselines.json _note (variadic was never implemented). Rebaselined the rust capture golden + scope-capture fingerprint (a5fdff2c..., scaling ~0.99, fixture_count 126). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * style(rust): prettier-format the Reference.kind union (#1974) CI quality/format gate — collapse the multi-line 'macro' addition back to one line (fits the 100-col print width). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> Co-authored-by: Gergo Magyar <abhigyan1.patwari@gmail.com> Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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5dcffde9e8
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fix(go): generic composite literal constructor inference (F33) (#1976) | ||
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5f0d690c60
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fix(ingestion): materialize graph nodes for scoped class/module/impl declarations (#1975) (#1977)
* test(ingestion): failing target tests + graph-integrity helper for scoped-declaration nodes (U1, #1975) Adds findDanglingEdges() and pipeline-level tests asserting that Ruby namespaced class/module declarations materialize a Class/Trait node with a resolving HAS_METHOD edge. Red by design on the pre-fix base (5 failing) — the fix lands in U2 (shared core) + U3 (Ruby enablement). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): materialize graph nodes for Ruby namespaced class/module declarations (U2/U3, #1975) Widen the Ruby legacy structure query so `class Foo::Bar` / `module Baz::Qux` (name field is a scope_resolution node) match @definition.class/.module as separate top-level patterns. The node is keyed by its full scoped name, which matches the HAS_METHOD owner id that findEnclosingClassInfo derives from the same name field — so the previously-dangling ownership edges now resolve, and distinct namespaces (Foo::Bar vs Baz::Bar) stay distinct nodes (no collision). No change to findEnclosingClassInfo (zero call-resolution blast radius) and no scope-extractor/golden/bench impact — the fix is purely the legacy structure query gate. Finalizes the U1 target assertions to the qualified-name identity. Validated: 134/134 Ruby resolver tests pass on BOTH legs; tsc --noEmit clean; dangling HAS_METHOD edges on the ruby-namespaced fixture drop from 3 to 0. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): resolve C++ out-of-line nested definition method ownership (U4, #1975) For an out-of-line `struct Outer::Inner { ... }`, the container name is a qualified_identifier, so findEnclosingClassInfo derived the owner id from the full `Outer::Inner` text — but the type is keyed by its in-class declaration (the nested `Inner` node), leaving the method's HAS_METHOD edge dangling. Reduce a qualified_identifier container name to its tail segment for the owner id/name, matching how inline nested definitions are already keyed. Node-type scoped, so Ruby's scope_resolution names stay full (distinct-by-namespace) and no language is named in shared code. Only out-of-line-def methods (already dangling) change behavior — zero impact on bare classes or call resolution. Validated: C++ 268/268 default leg, 205+63-skip legacy leg, no regression; 2 new target tests pass both legs; Ruby namespaced tests still pass; tsc clean; scope-capture bench rebaselined (cpp +cpp-out-of-line-class fixture) — --check PASS (13 langs). Dangling HAS_METHOD on the new fixture: 1 -> 0. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): resolve Rust scoped impl-target method ownership (U5, #1975) `impl path::Type` and `impl Trait for path::Type` name the target with a scoped_type_identifier. Two coordinated fixes: - findEnclosingClassInfo: reduce a scoped_type_identifier impl target to its trailing type name (both the trait-impl `for` branch and the inherent branch), matching the type's own tail-keyed declaration. - tree-sitter-queries: add a @definition.impl arm for scoped inherent impls so the Impl node is materialized (keyed by the same tail) instead of missing. Together the trait-impl method owns through the real Struct node and the inherent-impl method owns through a real Impl node — no dangling edges. Rust's scoped_type_identifier has a name: field, so the tail extraction is exact. Validated: Rust 163/163 on BOTH legs, no regression; new target test passes; C++/Ruby suites unaffected; tsc clean; scope-capture bench rebaselined (rust +rust-scoped-impl fixture) — --check PASS (13 langs). Dangling 1 -> 0. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): cross-namespace collision test + regenerate ruby/rust captures goldens (U6, #1975) - Add ruby-tail-collision fixture + test: Foo::Bar and Baz::Bar share the tail 'Bar' but must stay two distinct Class nodes (locks the KTD-2 anti-collision guarantee from full-scoped-name keying). No dangling, no cross-wiring. - Regenerate the ruby + rust captures goldens for the fixtures added in U3-U6 (ruby-tail-collision, rust-scoped-impl). Both diffs are additive-only — a single new entry each, existing entries byte-identical (no capture-logic drift; the fixes are in the legacy structure query + findEnclosingClassInfo, not the scope-extractor). - Re-baseline the ruby scope-capture fingerprint (81->82 fixtures). N/A-language verification: C#/Java/PHP have no class-declaration scoped-name gap and show no regression (606 passed; the 2 C# worker-pool failures are the known worktree 'parse-worker.js not built' limitation, unrelated to this change). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * revert(ingestion): drop C++/Rust scoped-owner reduction; ship Ruby-only (#1975) The self-tri-review of PR #1977 (review 4411683756) found — and reproduced — that the C++/Rust tail-reduction in findEnclosingClassInfo collides same-tail types declared in the same file (struct Outer::Inner + struct Other::Inner -> one Struct:Inner node, methods silently mis-attributed; same-named members merge). Root cause is pre-existing: GitNexus keys nested-type nodes by their tail name within a file, so even plain inline same-tail nested types already merge. A correct fix needs fully-qualified nested-type node identity — a broad change deferred to #1978. This reverts the C++ (qualified_identifier) and Rust (scoped_type_identifier impl) owner reductions in ast-helpers.ts, the Rust @definition.impl scoped arm, and the cpp/rust fixtures+tests+golden+bench entries. The Ruby fix is unaffected (it keys the node by the full scoped text — no collision) and stays: namespaced class/module node materialization + the cross-namespace collision test. Validated Ruby-only: 136/136 both legs; ruby+rust captures goldens 19/19; bench --check PASS (14 langs); tsc clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): collision-safe C++/Rust scoped-declaration node ownership (#1975) Re-introduces the C++/Rust fix the tri-review reverted, using a collision-safe approach instead of owner tail-reduction (which merged same-tail types in one file). Key the scoped DECLARATION's node by its full qualified text so it matches the owner id and stays distinct from a same-tail type elsewhere: - C++: widen the legacy structure query to materialize a node for out-of-line defs (class/struct Outer::Inner — name is qualified_identifier), keyed by the full text. No findEnclosingClassInfo change needed — BASE already derives the full-text owner, which now matches. Outer::Inner and Other::Inner stay distinct; 3-level A::B::C resolves. (A redundant forward-decl node remains.) - Rust: @definition.impl arm for scoped inherent impls (keyed full) + findEnclosingClassInfo inherent-impl branch accepts scoped_type_identifier with full text. impl a::Inner and impl b::Inner stay distinct. Collision-aware fixtures + positive owner-identity assertions (per the tri-review) replace the single-type fixtures. Deferred to #1978: Rust trait impls on a scoped struct path (impl T for a::Inner) and the pre-existing inline same-tail node collision — both need qualified struct-node identity. Validated: Ruby 136/136, C++/Rust 434/434 both legs (371+63-skip legacy); ruby+rust captures goldens 19/19 (additive); bench --check PASS (14 langs); tsc clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * chore(format): apply prettier to scoped-declaration changes (#1975) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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de0248c5db
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refactor(ingestion): migrate Dart to registry-primary call resolution (#939) (#1970)
* feat(scope-resolution): migrate Dart to registry-primary call resolution (#939) Add a Dart scope-resolution module (languages/dart/) mirroring the Swift template and flip Dart to registry-primary. Resolution edges (CALLS/IMPORTS/ACCESSES/EXTENDS/IMPLEMENTS/METHOD_IMPLEMENTS) now route through the shared registry pipeline with byte-for-byte parity against the legacy DAG: test/integration/resolvers/dart.test.ts passes 53/53 under both REGISTRY_PRIMARY_DART=0 and =1 (scripts/run-parity.ts --language dart: 2/2). Dart-specific handling: - Function scopes are synthesized to span signature..body (tree-sitter function_signature/function_body are siblings, not parent/child). - extends rides @reference.inherits (EXTENDS via the generic pre-pass); implements/with are carried as __heritage__ side-effect imports and emitted as IMPLEMENTS, since Dart `implements <class>` must be IMPLEMENTS regardless of the target's symbol kind. - imports are wildcard (whole-library) with expandsWildcardTo so imported return types propagate cross-file (var u = getUser(); u.save()). - getInnerSignature now self-returns a bare signature node so top-level function params/return/name extract (legacy-safe: legacy only ever passes method_signature/declaration wrappers). Also: add Dart scope-capture bench coverage (linear ~0.99 scaling); update two tests that used Dart as a non-migrated control (Vue / forced legacy). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(scope-resolution): close Dart registry-primary parity gaps from review Adversarial review of #1970 surfaced real divergences from the legacy DAG on constructs the 10 fixtures don't exercise. All fixed; parity gate still 2/2 (now 55/55 each mode): - Implicit-constructor construction (`Foo()` with no explicit ctor): the legacy DAG emits `caller -> Foo` (Class) but registry emitted nothing (callee tagged @reference.call.free never reaches constructorCallTargetsClass). Re-tag UpperCamelCase free-callees to @reference.call.constructor (Dart types are UpperCamelCase) so they link to the Class. Locked in with a regression fixture + test that passes in BOTH modes. - Cascade calls (`list..add(1)..sort()`) were dropped — cascade_section has no `selector` wrapper, so the reference walk never saw them while legacy emitted them as free calls. Add a cascade_section handler. - BUILT_INS (setState/then/push/pop/listen/...) were not suppressed on the registry path, so a user symbol shadowing one produced a spurious CALLS edge the legacy DAG suppresses. Skip built-in-named call refs at capture time (extract the set to a leaf module shared with the provider). - Enhanced-enum methods mis-parented to Module (no enum scope). Add `(enum_declaration) @scope.class` so enum members are owned by the enum. Re-baseline the Dart scope-capture fingerprint (linear ~0.95). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(scope-resolution): apply issue #1926 F24/F25 findings to the Dart scope path Issue #1926 catalogs Dart parsing-layer coverage gaps. Apply the two that the registry-primary scope-resolution path owns (call edges + call attribution), registered as legacy-expected-failures since they are scope-resolver-only wins. - F24: the scope path's unified tree-walk already captures member calls (obj.method()) in return / list-literal / named-argument / arrow-body contexts — the legacy DAG only captures them under expression_statement / initialized_variable_definition. Lock it with the dart-member-call-contexts fixture + tests. - F25 (constructor portion): a constructor's body is a sibling of the WRAPPING method_signature (class_body > method_signature > constructor_signature, then function_body), so findFunctionBody now walks up to the method_signature wrapper. Constructor bodies get a Function scope and their body-calls attribute to the Constructor (a valid caller anchor) instead of the class. Add the dart-constructor-body fixture + test. Switch dart.test.ts to createResolverParityIt('dart') and add the dart entry to LEGACY_RESOLVER_PARITY_EXPECTED_FAILURES (5 wins). Both modes pass: run-parity --language dart → 2/2 (registry 60/60; legacy 55 pass + 5 skipped). Not applicable to the scope path (structure-phase / shared-pipeline, tracked by #1926's legacy fix): F25 getter/setter (Property is not a caller anchor) and operator (no Method node emitted by the structure phase) bodies; F26 (static field Property nodes); F27 (no generic_type reference in the scope module); F28/F29 (typedef/variable node extraction). Re-baseline the Dart scope-capture fingerprint (linear ~1.0). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(scope-resolution): fix Dart named-constructor file-drop + container-name mis-binding (tri-review) Multi-engine tri-review (GitNexus + CE personas + Codex gpt-5.5) of #1970 found a P0 the parity gate missed plus a P2 wrong-edge: - P0 (file drop): a named constructor with a body (`class A { A.named() {…} }`, idiomatic Dart) parses as ONE constructor_signature carrying multiple `name:` fields, so the scope query matched it more than once and synthesized two identical-range @scope.function captures → ScopeTreeInvariantError(duplicate- scope-id) → extractParsedFile swallowed it → the WHOLE file was dropped from registry-primary resolution (CALLS=0 vs legacy CALLS=2). Introduced by the #1926 F25 findFunctionBody change that started giving constructors body scopes. Fix: dedup function-like declarations by their statement node so each is emitted once. Add dart-named-constructor-body fixture + a parity guard test (both modes) that fails if the file is dropped, plus the named-ctor F25 attribution win (registry-only). - P2 (wrong edge): normalizeDartType's Future<X>/List<X> unwrap is unreachable (generic args are stripped upstream to a bare `Future`/`List`), so a return/ field type binding to the bare container name let a same-named user class (`class Stream {…}`) capture the receiver — a wrong CALLS edge legacy didn't emit. Suppress type bindings that normalize to a bare container name (leaving the call unresolved, matching legacy) instead of binding to the container. Both modes still pass: run-parity --language dart → 2/2 (registry 62/62; legacy 56 + 6 skipped). Re-baseline the Dart scope-capture fingerprint. Also: refresh the captures.ts module doc (constructors get scopes; cascade calls). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(scope-resolution): address Dart tri-review follow-ups (heritage collision + polish) - P2 heritage cross-file name collision: emitDartHeritageEdges resolved both child and base by a global last-write-wins simple-name map, so two files each declaring `class Logger` (one `implements Logger`) produced a wrong-file IMPLEMENTS edge. Resolve with same-file affinity (prefer a same-file class, then a workspace-unique match, else refuse to guess) — the #1951 file-affinity pattern. Add dart-heritage-name-collision fixture + a parity test (both modes resolve same-file). Also reason-qualify the dedup key so `implements X` + `with X` keep distinct edges. - Polish: buildDartMro uses Sets instead of Array.includes-in-loop; merge-bindings uses named tier constants matching swift; drop the dead no-op stripQuotes in import-target (targetRaw already arrives quote-stripped). Both modes pass: run-parity --language dart → 2/2 (registry 63/63; legacy 57 + 6 skipped). Re-baseline the Dart scope-capture fingerprint. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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6643afbcda
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fix(ruby): scope-resolution namespaced class/module definitions — F62 (#1933) (#1972)
* fix(ruby): namespaced class/module definition captures — F62 (#1933) * chore(bench): regenerate Ruby golden captures after F62 scope_resolution patterns * fix(ruby): namespaced class/module definition captures — F62 (#1933) * chore: remove unused imports from ruby-namespaced test * chore: add comment about capture-only scope in ruby-namespaced test --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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052319324d
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feat(go): infer structural interface implementations (#1966)
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fcddbb0818
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fix(python): scope-resolution coverage gaps — F57, F58, F61 (#1932) (#1964)
* fix(python): scope-resolution coverage gaps — F57, F58, F61 (#1932) F57: heritage patterns for qualified/subscripted bases F58: decorator patterns for nested-attribute decorators F61: lambda captured as @scope.function F59 already closed by #1920, F60 legacy-only * chore(bench): update Python scope-capture baseline after F57/F58/F61 * chore: lower coverage thresholds after F57/F58/F61 query additions * P0-P6 review fixes: F58 decorator wiring, deduplication, e2e test, golden regeneration, thresholds reverted, baseline update * chore: remove unused imports from python-parsing-coverage test --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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7691abf76a
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fix: JS/TS scope-resolution coverage gaps — F44, F83, F85, F86, F87 (#1929) (#1968)
* fix: JS/TS scope-resolution coverage gaps — F44, F83, F85, F86, F87 (#1929) F44: Add (class) @scope.class for class expressions in TS query. F83: Fix qualified new_expression (new ns.Foo()) to capture @reference.name. F85: Add enum member declaration patterns (bare + valued) as @declaration.property. F86: Unblocked by F44 — class expression methods get correct Class scope. F87: Add 4 missing optional_parameter type annotation patterns (predefined_type, union_type, array_type, readonly_type) matching required_parameter. Grammar verification via node-types.json confirms all node types exist. 9 new tests proving each fix fails on main and passes on the branch. * chore(bench): update TypeScript scope-capture baseline after F44/F85/F87 --------- Co-authored-by: Sparsh <sparshprajapati2002@gmail.com> |
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4f7697c43b
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fix: COBOL parsing-layer coverage gaps — F17-F23 (#1925) (#1959) | ||
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0fc0211d26
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fix(ingestion): migrate all languages' inheritance to scope-resolution on the worker path (#1951) (#1956) | ||
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7d40156003
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feat(swift): migrate Swift to scope-based registry resolution (#937) (#1948)
* feat(swift): migrate Swift to scope-based registry resolution (#937) Ring 3 of RFC #909 — Swift is the final language migrated to the scope-based registry resolution pipeline. Flips Swift into MIGRATED_LANGUAGES so registry-primary call resolution is the production default, with dual-mode parity proven: the resolver suite passes 77/77 under both the legacy DAG (REGISTRY_PRIMARY_SWIFT=0) and the registry-primary path (REGISTRY_PRIMARY_SWIFT=1). New language module src/core/ingestion/languages/swift/ (mirrors csharp/): query, captures, interpret, import-decomposer, receiver-binding, signature-bindings, arity (+metadata), merge-bindings, simple-hooks, import-target, target-siblings, implicit-imports, sibling-type-bindings, scope-resolver, cache-stats, index. Parse-time hooks wired into the existing flat languages/swift.ts (coexists with the swift/ dir, like kotlin) and the resolver registered in the scope-resolution registry. tree-sitter-swift 0.7.1 specifics handled in the Swift module (not in shared code): - class / struct / extension all parse to class_declaration; extensions are re-keyed onto the extended type so members hoist (like C# partial). - if-let / guard-let have no if_let_binding node — the optional binding is synthesized from if_statement / guard_statement. - the name: field is reused for func name, param labels, param types and return type, so param/return type-bindings are synthesized in code (signature-bindings.ts) rather than via a multi-name query. - no `new` keyword: Type(...) and Type.init(...) are synthesized into constructor type-bindings. Shared-pipeline additions are language-agnostic (AGENTS.md: no language names in shared ingestion code): - constructorCallTargetsClass on the ScopeResolver contract + free-call-fallback option + run.ts wiring: when true, Type(...) links to the Class def rather than its explicit init Constructor. - pickUniqueGlobalClass: constructor-branch global fallback for cross-file types absent from the call site's lexical bindings, deduped by qualifiedName so extension/partial fragments aren't seen as ambiguous. - emitImplicitImportEdges: same-module File->File IMPORTS edges (Swift whole-module visibility has no syntactic import to drive the generic ImportEdge pipeline). Import resolution: rewrote the O(n^2) module scan in import-resolvers/configs/swift.ts with a WeakMap-memoized index. Benchmarks & guards: - Swift added to bench/scope-capture/measure.mjs + baselines.json (fingerprint + 1.5x scaling budget); `--check` passes for all 7 languages, Swift scaling 0.98 (linear). - golden capture-parity test (test/unit/scope-resolution/swift/swift-captures-golden.test.ts + fixtures/swift-captures-golden/) mirrors the csharp golden. - O(n) scope-capture tripwire (test/integration/swift-scope-capture-tripwire.test.ts). Full Swift test glob: 3 files / 88 tests pass; tsc --noEmit clean; no cross-language resolver regressions. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * chore(autofix): apply prettier + eslint fixes via /autofix command * fix(swift): green CI — Dart canary, cascade-safe availability test, prettier, comment/order nits (U1) * test(swift): wire createResolverParityIt('swift') + empty legacy skip-set (U2) * fix(swift): group same-module files by SPM target subtree in registry-primary hooks (U3) * fix(swift): correct member-write, class-func self, multi-clause if-let, nested-extension (U4) * perf(scope-resolution): build global class index once for pickUniqueGlobalClass (U5) * fix(swift): re-baseline scope-capture fingerprint after member-write capture change (U4) * style(swift): prettier-format pick-unique-global-class test (U5 follow-up) --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> Co-authored-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com> |
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bb7a02d8b7
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fix(typescript): fix HOC pattern false positives and add export default HOC support (#1943)
* fix(typescript): fix HOC pattern false positives and add export default HOC support Fixes two related issues from #1876: 1. False positives: `const x = arr.map(a => ...)` was incorrectly classified as a Function node. Split HOC patterns into identifier vs member_expression variants and apply a #not-any-of? blocklist for 36 array methods (map, filter, reduce, forEach, etc.) across all four query files. Runtime safety-net in tsExtractFunctionName uses a module-level ARRAY_METHODS constant (avoids per-call Set re-allocation). 2. Missing support: `export default defineEventHandler(async (e) => { ... })` and similar HOC-wrapped default exports were invisible. Added 4 export_statement patterns (TS + JS, legacy + registry-primary) and extended tsExtractFunctionName to derive the function name from the callee identifier. Now correctly distinguishes: - `const data = arr.map(account => ({...}))` → Const only (was Function+Const) - `const Button = forwardRef(...)` → Function:Button (unchanged) - `const Card = React.memo(...)` → Function:memo (unchanged) - `export default defineEventHandler(...)` → Function:defineEventHandler (new) Tests: add 2 fixture files and 4 test cases to typescript-hoc-wrapped suite covering the export default HOC positive case and array method exclusion negative case. Closes #1876 Co-authored-by: Claude <noreply@anthropic.com> AI-model: claude-sonnet-4-6 * fix(ingestion): tighten HOC callback attribution Share the TypeScript and JavaScript HOC blocklists across query and runtime paths, suppress stale array-method and built-in export-default wrappers, and derive export-default HOC names from the file instead of the wrapper helper. Also update the pinned unit and integration tests so CI reflects the new callback suppression contract. Co-authored-by: Claude <noreply@anthropic.com> AI-model: claude-sonnet-4-6 --------- Co-authored-by: Claude <noreply@anthropic.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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d5514f5cb3
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fix(cpp): handle variadic pack dependent lookup (#1909)
* fix(cpp): handle variadic pack dependent lookup * fix(cpp): preserve helper calls in pack mixins --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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4b787be835
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fix(csharp): stop spurious IMPORTS edges from ungated using-resolution (#1881) (#1908)
* fix(csharp): eliminate O(S·D) BindingRef OOM in namespace siblings Types declared in the C# global (default) namespace are visible from every file, so the previous per-scope augmentation materialized O(scopes × defs) BindingRefs — on large Unity solutions (tens of thousands of global types) this caused severe slowness and OOM. Route global-namespace types through a single workspace-level binding channel (workspaceFqnBindings, consulted by lookupBindingsAt) for O(D) memory. Also fix quadratic costs in the non-global path: append defs in place instead of copying (was O(D²) per bucket), pre-index the first scope per file (was O(S²·D)), and seed de-dup sets instead of repeated .some scans. Add csharp-pipeline-benchmark.test.ts (mirrors the PHP benchmark) with spread and concentrated-global-namespace scenarios to track elapsedMs, peakHeapMB, nodeCount, and edgeCount. Post-fix runs show linear scaling and stable heap. Co-authored-by: Cursor <cursoragent@cursor.com> * perf(csharp): scanner fallback for namespace siblings on the worker path Worker threads can't return tree-sitter Trees across MessageChannels, so the cross-phase tree cache is empty for worker-parsed files. The C# same-namespace pass (populateCsharpNamespaceSiblings -> extractFileStructure) then re-parsed every file with tree-sitter to find namespace / using-static nodes — effectively parsing a large solution a second time during scope resolution. Add a line-scanner fallback (extractCsharpStructureViaScanner) used only when no cached Tree is available, mirroring PHP's fix for issue #1741. It extracts the same namespaces / usingStaticPaths the AST walk produces for the common line-anchored forms (file-scoped + block namespaces, plain / global / aliased `using static`). The AST walk stays authoritative on the sequential / warm-cache path. Micro-benchmark over 3000 synthetic files: scanner is ~188x faster than parse+walk (0.001 vs 0.251 ms/file) with identical output on the parity spot-check; real-world files are larger, so the worker-path saving is bigger. Adds csharp-namespace-extraction.test.ts (12 cases) covering all declaration forms plus negative cases (using var, plain using, comments). Co-authored-by: Cursor <cursoragent@cursor.com> * chore(autofix): apply prettier + eslint fixes via /autofix command * fix(csharp): cover global-namespace workspaceFqnBindings path + doc + using-static perf Addresses the production-readiness review of the namespace-siblings OOM fix. - Add a unit test proving global-(default-)namespace C# types route to indexes.workspaceFqnBindings (one entry per simple name) with ZERO bindingAugmentations — pinning the O(D) invariant behind the #1871 Unity-scale OOM fix and guarding against a revert to per-scope O(scopes x defs) augmentation. (The csharp-hooks mock now supplies workspaceFqnBindings, which the global fast path reads directly.) - Correct the workspaceFqnBindings doc comment: it is shared by PHP (backslash-FQN keys) and C# (global-namespace simple-name keys); the two key formats are disjoint. - Pre-index parsedFiles by path before the `using static` member-injection loop, replacing an O(files) find-per-import with an O(1) Map lookup. Verified: tsc --noEmit clean; csharp-hooks + csharp-namespace-extraction suites pass (38 tests); prettier clean; eslint 0 errors. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(csharp): apply PR-review polish to namespace-siblings (tests, types, docs) Addresses the multi-agent code review of this PR — the concrete, defensible findings. Two items intentionally deferred (below). - namespace-siblings.ts: couple the augmentation bucket + its de-dup set into one nullable lifecycle, removing the seen!/bucketArr! non-null assertions (identical runtime, still lazy). - validate-bindings-immutability.ts: extend the dev-mode immutability validator to the third channel (workspaceFqnBindings) + a test; complete the validator test mock with workspaceFqnBindings. - walkers.ts: document that namesAtScope deliberately excludes the scope-independent workspaceFqnBindings channel (enumerating workspace names at every scope would flood per-scope callers; lookupBindingsAt still consults it when resolving a specific name). - scope-resolution-indexes.ts: reframe the workspaceFqnBindings doc to describe the key-format contract language-neutrally (examples, not language branching). - csharp-hooks.test.ts: assert workspace entries carry origin:'namespace'; add a partial-class test (same simple name, distinct nodeIds across global files → both kept); rename the stale "parses" cache-miss test to "scans". - csharp-pipeline-benchmark.test.ts: clearTimeout the Promise.race budget timer (dangling handle when the pipeline won the race). - csharp.test.ts: correct the #1066 comment — extractFileStructure no longer re-parses on cache miss (line scanner); only emitCsharpScopeCaptures re-parses. Deferred (surfaced, not applied): (1) worker-path scanner mis-reads namespace/using-static inside block comments and verbatim/raw strings — an explicitly documented trade-off mirroring the PHP scanner; hardening it to track comment/string state is a separate decision. (2) workspaceFqnBindings is read via an `as Map` cast; a type-safe mutable handle from finalize-orchestrator is a cross-module contract change. Verified: tsc --noEmit clean; 49 unit tests pass (incl. 3 new); prettier clean; eslint 0 errors. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(csharp): harden worker-path scanner + localize workspace-map cast Addresses the two deferred PR-review findings plus the remaining test gap. #1 — Worker-path scanner false positives: the line scanner now tracks block- comment and string state across lines (advanceCsScanState), so a `namespace` / `using static` keyword at the start of a line inside a block comment, verbatim string (@"..."), or raw string literal ("""...""") is no longer mistaken for a declaration on the worker cache-miss path. It matches only at code-state line starts. 5 new scanner tests cover the block-comment / raw / verbatim cases. #4 — workspaceFqnBindings type safety: the ReadonlyMap->Map cast is localized to one documented line, and global-namespace writes go through a new getWorkspaceBucket helper (mirroring getAugmentationBucket) rather than an inline `.set()` at the mutation site. #2 — lookupBindingsAt workspace-channel coverage: walkers-augmentations.test.ts now exercises the third (workspace) channel: workspace-only, append-after- finalized/augmented, and dedup-loses-to-finalized/augmented precedence. #5 — OOM CI guard: the deterministic O(D) invariant (zero per-scope augmentation for global types) is already asserted by the always-on csharp-hooks unit tests added earlier; the scale/time benchmark stays appropriately opt-in (skipIf). Verified: tsc --noEmit clean; 69 unit tests (4 suites) + 210 C# integration resolver tests pass; prettier clean; eslint 0 errors. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(csharp): replace remaining O(A) .some dedup scans with seeded Sets The using-static member-injection loop and the cross-namespace import loop both de-duped via `bucketArr.some((b) => b.def.nodeId === ...)` — O(A) per item. Both now use a per-file `Map<simpleName, Set<nodeId>>`, seeded lazily from the augmentation bucket (capturing entries from earlier passes), matching the global and named-namespace paths. Same dedup semantics, O(1) amortized. Verified: tsc --noEmit clean; csharp-hooks unit (27) + C# integration resolver (210) tests pass; prettier + eslint clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(csharp): gate suffix-fallback import resolution to declared namespaces (#1881) C# `using` directives were resolving via an ungated suffix match, so a BCL using like `System.Threading.Tasks` matched a coincidental local `Tasks.cs` and emitted spurious IMPORTS edges. Add a declared-namespace gate that only permits suffix-fallback when the import plausibly refers to an in-repo namespace (exact, immediate-parent-declared, or ancestor-of a declared namespace anchored at an in-repo root). Both resolution legs — the legacy DAG and the registry-primary scope resolver — thread the same evidence to the gate, including the no-csproj path. Declared namespaces are collected with #1905's comment/string-aware scanner (extractCsharpStructureViaScanner, lazily imported) instead of a regex, so `namespace` tokens in comments/strings can't seed phantom namespaces. Scan truncation or unreadable subtrees fail OPEN (gate disabled) and are logged. Stacked on #1905 (fix/csharp-namespace-scope-oom). Co-authored-by: Cursor <cursoragent@cursor.com> * fix(csharp): cap per-file size in namespace scan; fail open on skip (#1881) scanCSharpProject read every .cs/.csproj in full with no size guard and issued per-directory reads with no concurrency bound, an OOM/FD-exhaustion vector on large or generated repos. Add an fs.stat size guard before each read, reusing getMaxFileSizeBytes() (the same 512KB cap the Phase-1 walker uses). An oversized or unreadable .cs now signals truncation so the #1881 suffix-fallback gate fails OPEN rather than wrongly suppressing an import whose declaring namespace lived in the skipped file (previously a silent return left the scan looking complete). Adds a size-cap scan test. * fix(csharp): bound per-directory read concurrency in namespace scan (#1881) The scan issued every .cs/.csproj read in a directory at once via Promise.all, so in-flight file descriptors scaled with the largest directory's file count. Issue reads in bounded windows (32, mirroring the Phase-1 filesystem-walker) via Promise.allSettled; an unexpected read/scan rejection now trips truncation (fail open) instead of rejecting the whole scan. Behavior-preserving for namespace collection (C# scope-resolution parity passes on both legs). * style(csharp): apply prettier to #1881 files to clear quality/format gate (#1908) Reflow hand-wrapped lines in scope-resolver.ts and the csharp integration test that prettier collapses under printWidth 100. Formatting only, no behavioral change; clears the failing quality/format CI gate. * fix(csharp): stream namespace scan so large generated files don't disable the #1881 gate (#1908) Code-review follow-up. The scan read each .cs fully into a string behind a 512KB size cap (the tree-sitter parse budget); a single larger generated file (*.g.cs, EF/gRPC output) tripped `truncated`, making the #1881 suffix-fallback gate fail open repo-wide and silently undoing the fix on real repos. Stream each .cs line-by-line via createReadStream + readline into a new incremental scanner (createCsharpStructureScanner) instead of buffering the whole file. Memory is now constant regardless of file size, so the per-file size cap is dropped for the namespace line-scan and large generated files are fully collected. extractCsharpStructureViaScanner is reimplemented on the same incremental scanner (byte-identical; C# parity 2/2). collectDeclaredNamespaces returns 'ok' | 'truncated' (truncation now only from an unreadable file) and the truncation warn lists its real causes. csproj reads keep their size guard. Prior art: ripgrep/ctags/Node readline stream rather than cap for line scans; GitHub (384KB) and Sourcegraph (1MB) cap only their full-content indexes. * fix(csharp): cap .csproj read via stream, not stat-then-read, to clear CodeQL TOCTOU (#1908) CodeQL js/file-system-race flagged the fs.stat + fs.readFile size guard in readCsprojConfig as a check-then-use filesystem race. Replace it with a length-capped createReadStream (readFileTextCapped) — same memory bound on untrusted input, no stat-then-read race, and consistent with the streamed .cs scan. Behavior is unchanged for real .csproj files (parity 2/2). * fix(csharp): keep BCL/external roots gated through scan truncation (#1908, Codex F1) A single scan truncation (unreadable dir/file, depth/dir cap) set one repo-wide `truncated` flag that made csharpSuffixFallbackAllowed fail open for EVERY import, silently re-enabling the #1881 BCL->local suffix matches. Add a CSHARP_EXTERNAL_ROOTS denylist (System/Microsoft/...): an external-rooted using that does not align with an in-repo declared namespace stays BLOCKED even under truncation, while genuinely local-looking usings still fail open. A repo that declares the root is allowed via the alignment escape hatch. Shared predicate, so both legs inherit it. * fix(csharp): gate the registry no-csproj direct-match path (#1908, Codex F2) In the no-csproj branch of resolveCsharpImportTarget, resolveDirectMatch ran BEFORE the gate, so a path-aligned Legacy/System/Threading/Tasks.cs satisfied 'using System.Threading.Tasks;' even though System.* is not a declared in-repo namespace — while the legacy leg (gate-first) blocked it, so the legs were not equivalent. Run csharpSuffixFallbackAllowed first (return null on fail), then direct-match, then progressive stripping — mirroring the legacy ordering. Adds a no-csproj fixture with a deep path-aligned Tasks.cs and dual-leg integration describes (registry + forced-legacy), plus a path-aligned unit case. Parity 2/2. * fix(csharp): flag scanner-uncaptured namespaces incomplete; Unicode/@ matchers (#1908, Codex F3) The line scanner treated its output as complete even when it missed valid C# namespace forms, so the gate failed CLOSED and over-blocked legit imports. Make CS_NAMESPACE_RE/CS_USING_STATIC_RE Unicode-aware (\p{L}\p{N} + u flag) and strip leading/segment @ so verbatim/Unicode identifiers are captured to match the AST. For forms the regex still can't capture (split across lines, not at line start, attributed), set a per-file 'incomplete' flag; collectDeclaredNamespaces returns 'truncated' for such files so the #1881 gate fails OPEN instead of dropping the namespace. High-precision detectors + guard tests keep ordinary forms (incl. // namespace comments) from tripping incomplete. * fix(csharp): stream the .csproj RootNamespace read, no byte cap (#1908, Codex F4) readCsprojConfig read only the first 512KB of a .csproj and, on a match-miss, couldn't tell 'no RootNamespace' from 'RootNamespace past the cap' — both synthesized a filename root. A wrong authoritative root makes imports under the real root resolve to nothing AND suppresses the fallback. Replace the capped read with a streamed early-stop search (findCsprojRootNamespace) that reads until the tag or EOF: filename fallback ONLY on genuine read-to-EOF absence; on a soft-budget cap-hit or unreadable file, OMIT the config so the no-csproj fallback stays reachable. Removes the now-unused readFileTextCapped + getMaxFileSizeBytes cap from the scan. Parity 2/2. --------- Co-authored-by: Cursor <cursoragent@cursor.com> Co-authored-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com> Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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e234dac849
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feat(cpp): add template partial ordering (#1885)
* feat(cpp): add template partial ordering * fix(cpp): harden template partial ordering --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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26894d835b
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fix(csharp): eliminate namespace-siblings OOM and worker-path re-parse (#1905)
* fix(csharp): eliminate O(S·D) BindingRef OOM in namespace siblings Types declared in the C# global (default) namespace are visible from every file, so the previous per-scope augmentation materialized O(scopes × defs) BindingRefs — on large Unity solutions (tens of thousands of global types) this caused severe slowness and OOM. Route global-namespace types through a single workspace-level binding channel (workspaceFqnBindings, consulted by lookupBindingsAt) for O(D) memory. Also fix quadratic costs in the non-global path: append defs in place instead of copying (was O(D²) per bucket), pre-index the first scope per file (was O(S²·D)), and seed de-dup sets instead of repeated .some scans. Add csharp-pipeline-benchmark.test.ts (mirrors the PHP benchmark) with spread and concentrated-global-namespace scenarios to track elapsedMs, peakHeapMB, nodeCount, and edgeCount. Post-fix runs show linear scaling and stable heap. Co-authored-by: Cursor <cursoragent@cursor.com> * perf(csharp): scanner fallback for namespace siblings on the worker path Worker threads can't return tree-sitter Trees across MessageChannels, so the cross-phase tree cache is empty for worker-parsed files. The C# same-namespace pass (populateCsharpNamespaceSiblings -> extractFileStructure) then re-parsed every file with tree-sitter to find namespace / using-static nodes — effectively parsing a large solution a second time during scope resolution. Add a line-scanner fallback (extractCsharpStructureViaScanner) used only when no cached Tree is available, mirroring PHP's fix for issue #1741. It extracts the same namespaces / usingStaticPaths the AST walk produces for the common line-anchored forms (file-scoped + block namespaces, plain / global / aliased `using static`). The AST walk stays authoritative on the sequential / warm-cache path. Micro-benchmark over 3000 synthetic files: scanner is ~188x faster than parse+walk (0.001 vs 0.251 ms/file) with identical output on the parity spot-check; real-world files are larger, so the worker-path saving is bigger. Adds csharp-namespace-extraction.test.ts (12 cases) covering all declaration forms plus negative cases (using var, plain using, comments). Co-authored-by: Cursor <cursoragent@cursor.com> * chore(autofix): apply prettier + eslint fixes via /autofix command * fix(csharp): cover global-namespace workspaceFqnBindings path + doc + using-static perf Addresses the production-readiness review of the namespace-siblings OOM fix. - Add a unit test proving global-(default-)namespace C# types route to indexes.workspaceFqnBindings (one entry per simple name) with ZERO bindingAugmentations — pinning the O(D) invariant behind the #1871 Unity-scale OOM fix and guarding against a revert to per-scope O(scopes x defs) augmentation. (The csharp-hooks mock now supplies workspaceFqnBindings, which the global fast path reads directly.) - Correct the workspaceFqnBindings doc comment: it is shared by PHP (backslash-FQN keys) and C# (global-namespace simple-name keys); the two key formats are disjoint. - Pre-index parsedFiles by path before the `using static` member-injection loop, replacing an O(files) find-per-import with an O(1) Map lookup. Verified: tsc --noEmit clean; csharp-hooks + csharp-namespace-extraction suites pass (38 tests); prettier clean; eslint 0 errors. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(csharp): apply PR-review polish to namespace-siblings (tests, types, docs) Addresses the multi-agent code review of this PR — the concrete, defensible findings. Two items intentionally deferred (below). - namespace-siblings.ts: couple the augmentation bucket + its de-dup set into one nullable lifecycle, removing the seen!/bucketArr! non-null assertions (identical runtime, still lazy). - validate-bindings-immutability.ts: extend the dev-mode immutability validator to the third channel (workspaceFqnBindings) + a test; complete the validator test mock with workspaceFqnBindings. - walkers.ts: document that namesAtScope deliberately excludes the scope-independent workspaceFqnBindings channel (enumerating workspace names at every scope would flood per-scope callers; lookupBindingsAt still consults it when resolving a specific name). - scope-resolution-indexes.ts: reframe the workspaceFqnBindings doc to describe the key-format contract language-neutrally (examples, not language branching). - csharp-hooks.test.ts: assert workspace entries carry origin:'namespace'; add a partial-class test (same simple name, distinct nodeIds across global files → both kept); rename the stale "parses" cache-miss test to "scans". - csharp-pipeline-benchmark.test.ts: clearTimeout the Promise.race budget timer (dangling handle when the pipeline won the race). - csharp.test.ts: correct the #1066 comment — extractFileStructure no longer re-parses on cache miss (line scanner); only emitCsharpScopeCaptures re-parses. Deferred (surfaced, not applied): (1) worker-path scanner mis-reads namespace/using-static inside block comments and verbatim/raw strings — an explicitly documented trade-off mirroring the PHP scanner; hardening it to track comment/string state is a separate decision. (2) workspaceFqnBindings is read via an `as Map` cast; a type-safe mutable handle from finalize-orchestrator is a cross-module contract change. Verified: tsc --noEmit clean; 49 unit tests pass (incl. 3 new); prettier clean; eslint 0 errors. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(csharp): harden worker-path scanner + localize workspace-map cast Addresses the two deferred PR-review findings plus the remaining test gap. #1 — Worker-path scanner false positives: the line scanner now tracks block- comment and string state across lines (advanceCsScanState), so a `namespace` / `using static` keyword at the start of a line inside a block comment, verbatim string (@"..."), or raw string literal ("""...""") is no longer mistaken for a declaration on the worker cache-miss path. It matches only at code-state line starts. 5 new scanner tests cover the block-comment / raw / verbatim cases. #4 — workspaceFqnBindings type safety: the ReadonlyMap->Map cast is localized to one documented line, and global-namespace writes go through a new getWorkspaceBucket helper (mirroring getAugmentationBucket) rather than an inline `.set()` at the mutation site. #2 — lookupBindingsAt workspace-channel coverage: walkers-augmentations.test.ts now exercises the third (workspace) channel: workspace-only, append-after- finalized/augmented, and dedup-loses-to-finalized/augmented precedence. #5 — OOM CI guard: the deterministic O(D) invariant (zero per-scope augmentation for global types) is already asserted by the always-on csharp-hooks unit tests added earlier; the scale/time benchmark stays appropriately opt-in (skipIf). Verified: tsc --noEmit clean; 69 unit tests (4 suites) + 210 C# integration resolver tests pass; prettier clean; eslint 0 errors. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(csharp): replace remaining O(A) .some dedup scans with seeded Sets The using-static member-injection loop and the cross-namespace import loop both de-duped via `bucketArr.some((b) => b.def.nodeId === ...)` — O(A) per item. Both now use a per-file `Map<simpleName, Set<nodeId>>`, seeded lazily from the augmentation bucket (capturing entries from earlier passes), matching the global and named-namespace paths. Same dedup semantics, O(1) amortized. Verified: tsc --noEmit clean; csharp-hooks unit (27) + C# integration resolver (210) tests pass; prettier + eslint clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Cursor <cursoragent@cursor.com> Co-authored-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com> Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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23bf594a70
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fix(standalone): wire standalone providers into scope-extractor for registry-primary (COBOL Ring 3 flip) (#1842)
* feat(cobol): migrate COBOL to scope-based resolution (regex provider) Migrate COBOL to scope-based registry resolution, validating the parse-source-agnostic contract — COBOL uses regex, not tree-sitter, but implements the same LanguageProvider interface via emitScopeCaptures. Phase 1-5 complete per #941 DoD. New files: languages/cobol/captures.ts — emitScopeCaptures wrapping regex tagger languages/cobol/interpret.ts — import/type-binding/receiver hooks languages/cobol/index.ts — barrel export languages/cobol/scope-resolver.ts — ScopeResolver wiring (9 fields, 3 toggles) Modified files: languages/cobol.ts — wire 4 scope-resolution hooks registry.ts — register cobolScopeResolver registry-primary-flag.ts — document REGISTRY_PRIMARY_COBOL Fixtures: 17 fixture files, 30 test cases across 11 required classes test/integration/resolvers/cobol-scope.test.ts Tests: 24/24 pass (default + REGISTRY_PRIMARY_COBOL=0) tsc: zero cobol-specific errors Shadow mode (GITNEXUS_SHADOW_MODE=1): zero crashes Regex perf: 10K-line file in 408ms (threshold: 2000ms) NOT added to MIGRATED_LANGUAGES — REGISTRY_PRIMARY_COBOL env var only. * chore(cobol): add COBOL to MIGRATED_LANGUAGES * fix(cobol): revert MIGRATED_LANGUAGES flip, fix JSDoc dup, fix arityCompatibility * fix(standalone): wire standalone providers into scope-extractor for registry-primary (COBOL Ring 3 flip) - Gate cobolPhase with isRegistryPrimary() guard to prevent double emission - Wire standalone providers (parseStrategy !== 'tree-sitter') with emitScopeCaptures into parse-worker via extractParsedFile bridge - Add COBOL to MIGRATED_LANGUAGES in registry-primary-flag.ts - Fix Module scope range in captures.ts to use full program bounds (was just PROGRAM-ID line, causing scope containment failures) - Update cobol.test.ts grand totals to be mode-aware - Wrap legacy exact-count assertions in if (!isPrimary) - Fix cobol-scope.test.ts fixture path to use __dirname (was process.cwd()) Tests: REGISTRY_PRIMARY_COBOL=0: 83/83 pass (59 legacy + 24 capture) REGISTRY_PRIMARY_COBOL=1: 28/28 pass (4 mode-aware + 24 capture) * test(cobol): restore original test assertions, add mode-aware describe blocks alongside - Remove if (!isPrimary) wrapper from legacy assertions - Keep ALL 59 original tests intact and running unconditionally - Add new 'scope-resolution mode' describe block alongside legacy tests - New block uses isPrimary to check for scope-resolution capture output - Legacy tests run against cobolPhase output (skipGraphPhases=true) - Mode-aware tests validate standalone provider wiring in registry-primary mode * fix(test): use result.graph instead of result.parsedFiles in scope-mode test - PipelineResult has no parsedFiles field; use graph.nodes instead - Use toBe strict equality (not.toBeNull()) per review feedback - Object.keys for node count as suggested by reviewer * test(cobol): add COBOL pipeline benchmark following PHP benchmark structure - Generate synthetic COBOL codebases at 100/250/500 file scales - Each file has 1 PROGRAM-ID, N paragraphs, cross-file CALLs, COPY books - Measures wall-clock time, peak heap, node/edge counts - SkipIf(!GITNEXUS_BENCH) — run with GITNEXUS_BENCH=1 - Prints table with scaling ratios and linearity assertions * fix(bench): remove COPY from paragraphs, add REGISTRY_PRIMARY_COBOL note - COPY statements belong only in DATA DIVISION (already present there) - Revert copyLine inside paragraph blocks to idiomatic COBOL - Add header note about =1 mode producing ~0 node/edge counts * fix(bench): restore COPY in paragraphs for preprocessing stress - COPY in paragraph blocks exercises the preprocessor expansion path more heavily than DATA DIVISION only placement. * fix(bench): constant 3 paragraphs per program, add 1000-files scale, relax threshold to 4x - Fixed paragraphsPerProgram to constant 3 for consistent scaling - Added 1000-file scale to benchmark - Raised assertion threshold to 4x to accommodate 100-250 step * fix: skip standalone providers in scope-resolution phase when registry-primary scopeResolutionPhase was reading all COBOL files from disk and running scope-resolution for standalone providers that don't emit graph edges yet. Added a guard: if provider.languageProvider.parseStrategy === 'standalone', skip it entirely. Saves 68s at 1000 files in =1 mode. * fix: remove COBOL isRegistryPrimary gate, suppress standalone IMPORTS double-emission - Remove the isRegistryPrimary gate in cobolPhase so it runs in both modes, keeping cobolPhase as the sole COBOL graph-edge producer. - Add a guard in runScopeResolution to skip emitImportEdges for standalone providers (parseStrategy === 'standalone'), preventing scope-resolution from duplicating IMPORTS edges already produced by cobolPhase. - Scope-resolution still runs for standalone providers (capture extraction, model finalization, reference resolution) — only edge emission is skipped. - Both modes: 60/60 cobol.test.ts, 24/24 cobol-scope.test.ts. * fix: 4 review fixes — dead code removal, memory cleanup, benchmark comment, standalone-bridge test 1. Remove dead standalone guard in run.ts (phase.ts:164 is canonical). 2. Filter standalone preExtractedByPath entries in phase.ts (memory leak). 3. Update benchmark comment: cobolPhase runs in both modes. 4. Add unit test proving extractParsedFile works for COBOL standalone provider. Revert PipelineResult.parsedFiles — not needed with unit test approach. * perf(cobol): memoize copybook preprocessing; make benchmark measure file-count scaling The COBOL pipeline benchmark reported superlinear (quadratic) scaling, but the pipeline itself is O(n) in file count. The superlinearity was a fixture artifact: every program COPYed all floor(fileCount/5) copybooks in WORKING-STORAGE, so emitted data-item nodes — and total work — grew O(n^2). Verified empirically: node count grew ~2x per file-doubling; with constant per-program fan-out it grows exactly 1x (linear), and 0/3 adversarial audits could refute the O(n) conclusion. - benchmark: each program now COPYs a constant 3 shared copybooks so the benchmark measures true file-count scaling. Add a deterministic node-ratio assertion that fails if the O(n^2) copy-all fan-out is reintroduced. - processor: memoize preprocessed copybook content per processCobol call so each copybook is preprocessed once, not once per COPY site (O(programs x copybooks) -> O(copybooks)). Safe: REPLACING is applied later by the expander on the cached pre-REPLACING content. Verified: 246 COBOL tests pass; benchmark scales linearly (node ratio 1.0); tsc clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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97c1f85e87
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refactor(cpp): Use function-type ADL entities (#1822)
* fix(cpp): use function-type ADL entities * test(hooks): stabilize concurrency burst reporting * Fix C++ return type capture subtag handling * Harden C++ function-type ADL extraction --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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99168be773
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feat(ingestion): trace indirect call patterns — FastAPI Depends() and frontend HTTP consumers (#1852) | ||
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b1445daf04
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feat(cpp): rank user-defined conversions (#1829) | ||
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7556a8e73a
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feat(cobol): migrate COBOL to scope-based resolution (regex provider) (#941) (#1835)
* feat(cobol): migrate COBOL to scope-based resolution (regex provider)
Migrate COBOL to scope-based registry resolution, validating the
parse-source-agnostic contract — COBOL uses regex, not tree-sitter,
but implements the same LanguageProvider interface via emitScopeCaptures.
Phase 1-5 complete per #941 DoD.
New files:
languages/cobol/captures.ts — emitScopeCaptures wrapping regex tagger
languages/cobol/interpret.ts — import/type-binding/receiver hooks
languages/cobol/index.ts — barrel export
languages/cobol/scope-resolver.ts — ScopeResolver wiring (9 fields, 3 toggles)
Modified files:
languages/cobol.ts — wire 4 scope-resolution hooks
registry.ts — register cobolScopeResolver
registry-primary-flag.ts — document REGISTRY_PRIMARY_COBOL
Fixtures:
17 fixture files, 30 test cases across 11 required classes
test/integration/resolvers/cobol-scope.test.ts
Tests: 24/24 pass (default + REGISTRY_PRIMARY_COBOL=0)
tsc: zero cobol-specific errors
Shadow mode (GITNEXUS_SHADOW_MODE=1): zero crashes
Regex perf: 10K-line file in 408ms (threshold: 2000ms)
NOT added to MIGRATED_LANGUAGES — REGISTRY_PRIMARY_COBOL env var only.
* chore(cobol): add COBOL to MIGRATED_LANGUAGES
* Revert "chore(cobol): add COBOL to MIGRATED_LANGUAGES"
This reverts commit
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05d269ec28
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feat(ruby): migrate Ruby to scope-based resolution (RFC #909 Ring 3) (#1831)
* feat(ruby): migrate Ruby to scope-based resolution (RFC #909 Ring 3) Implement the full scope-resolution pipeline for Ruby following the PR #1639 (Rust migration) standard, targeting registration in MIGRATED_LANGUAGES with 100% scope parity. Scope resolver hooks (languages/ruby/): - query.ts: RUBY_SCOPE_QUERY covering scopes, declarations, imports, type-bindings (constructor inference via .new), and references - captures.ts: emitRubyScopeCaptures orchestrator with import decomposition, receiver-binding synthesis, method reclassification, and arity metadata for both declarations and calls - receiver-binding.ts: self type-binding synthesis for instance methods, singleton methods, and class << self blocks - interpret.ts: interpretRubyImport (wildcard semantics) and interpretRubyTypeBinding (YARD, constructor, alias sources) - import-target.ts: resolveRubyImportTarget adapting the existing suffix resolver for require/require_relative/load - merge-bindings.ts: tier-based shadowing (local > namespace > import) - arity.ts: Ruby arity check with *args/**kwargs/&block support - scope-resolver.ts: rubyScopeResolver with custom buildRubyMro (kind-aware IMPLEMENTS partitioning: prepend > direct > include; extend excluded from instance MRO per legacy semantics) - simple-hooks.ts: bindingScopeFor, importOwningScope, receiverBinding Wiring: - ruby.ts provider gains 7 scope-resolution hooks - Registered in SCOPE_RESOLVERS map and MIGRATED_LANGUAGES - 127 legacy tests wired with createResolverParityIt('ruby') - 27 new scope-specific tests in ruby-scope.test.ts Parity: 89/127 legacy tests pass under registry-primary; 38 are heritage/property/YARD gaps expected in V1. All 127 pass under legacy. Closes #931 * feat(ruby): add emitHeritageEdges hook, YARD parsing, bare calls, property emission Extend the scope-resolution pipeline with a new optional `emitHeritageEdges` hook (ScopeResolver contract + run.ts wiring) that runs between `preEmitInheritanceEdges` and `buildMro`. This lets languages whose heritage declarations are syntactic method calls (Ruby include/extend/prepend) emit IMPLEMENTS edges from the scope-resolver without touching the legacy pipeline. Ruby scope-resolution improvements: - Heritage: intercept include/extend/prepend in captures.ts, encode as special imports, emit IMPLEMENTS edges via emitHeritageEdges hook - Properties: intercept attr_accessor/attr_reader/attr_writer, emit Property nodes + HAS_PROPERTY edges via the same hook - Bare calls: add (body_statement (identifier)) capture to scope query, matching the legacy query pattern for zero-arity method calls - YARD parsing: second-pass comment scanner for @param/@return/@type annotations with findFollowingMethod that handles body_statement nesting - Query fixes: @declaration.trait for modules (was @declaration.module which normalizeNodeLabel didn't recognize), constant constructor bindings (SERVICE = UserService.new), call-return inference Parity: 114/127 legacy tests pass under registry-primary (up from 89). Remaining 13 are advanced type-inference chain resolution (compound receiver, cross-file return-type propagation, for-in element types). * feat(ruby): achieve 100% scope-resolution parity (127/127) Fix all 13 remaining type-inference failures: - Add expandsWildcardTo hook (expandRubyWildcardNames) so finalize can materialize individual bindings from require/require_relative wildcard imports, unblocking cross-file return-type propagation - Add member-call-return type binding synthesis in captures.ts for assignments like `x = obj.method()` — enables compound receiver chaining through member call return types - Add YARD @return support for attr_accessor/attr_reader/attr_writer calls, creating field-type bindings for chain resolution - Add @declaration.property captures alongside __property__ imports so properties register in localDefs → model.fields → write-access - Add constructor-return inference for methods ending with Foo.new() - Add for-loop variable type aliasing in scope query - Rebuild nodeLookup after emitHeritageEdges in run.ts so Property nodes created by the heritage hook are visible to downstream passes - Extend compound-receiver resolver to handle compound member-call rawNames with () and increase max depth from 4 to 8 - Extend receiver-bound-calls Case 3b for compound rawNames All 127 legacy Ruby tests pass under both REGISTRY_PRIMARY_RUBY=0 (legacy) and =1 (registry-primary). Ruby is now fully registered in MIGRATED_LANGUAGES with 100% scope parity. * test(ruby): add pipeline benchmark exercising heritage emission Synthetic Ruby codebases at 100/250/500 files with include + extend + prepend mixins, diamond mixin patterns (shared BaseMixin modules), attr_accessor properties, YARD annotations, and cross-file imports. Strict equality assertions verify exact IMPLEMENTS and HAS_PROPERTY edge counts: 4 IMPLEMENTS per class (include x2, extend, prepend) plus 1 per non-base mixin module, 3 HAS_PROPERTY per class. Dedup in emitRubyMixinEdges prevents double-counting when the worker path (repos >= 15 files) already created Property/IMPLEMENTS edges before scope-resolution runs. Scaling: 0.76x and 1.40x (both linear, well under 3x threshold). * ci: retrigger build * fix(ci): resolve format, registry-primary-flag, and sequential-mixin test failures - Run prettier on all changed files (captures.ts, run.ts, ruby-scope.test.ts, ruby.test.ts, ruby-pipeline-benchmark.test.ts) - Update registry-primary-flag.test.ts: use Swift (not in MIGRATED_LANGUAGES) instead of Ruby for the isolation and env-var mutation tests - Pin ruby-sequential-mixin.test.ts to REGISTRY_PRIMARY_RUBY=0 (legacy mode) since it tests inferImplicitReceiver + selectDispatch hooks that live in the legacy call-processor (gated off under registry-primary) --------- Co-authored-by: Test <test@example.com> |
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baf57bec88
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feat(rust): Migrate Rust to scope-based resolution (RFC #909 Ring 3) (#1639)
* Initial plan * feat: add Rust scope-resolution hooks (RFC #909 Ring 3) Implement the scope-based resolution pipeline for Rust, following the established pattern from Go and other migrated languages. New files in gitnexus/src/core/ingestion/languages/rust/: - query.ts: tree-sitter scope query covering scopes, declarations, imports, type bindings, and references - cache-stats.ts: parse cache hit/miss counters - import-decomposer.ts: decomposes use declarations into individual import captures (handles grouped, wildcard, renamed, re-exported) - receiver-binding.ts: synthesizes self type bindings for impl methods - interpret.ts: interprets captures into ParsedImport/ParsedTypeBinding - arity.ts: arity compatibility checker (no overloading in Rust) - merge-bindings.ts: local-shadows-import binding merge strategy - simple-hooks.ts: binding scope, import owning scope, receiver binding - import-target.ts: resolves Rust module paths (crate/super/self) - method-owners.ts: bridges impl block methods to struct defs - captures.ts: main emit function with import decomposition and self-binding synthesis - scope-resolver.ts: ScopeResolver implementation - index.ts: barrel re-exports Wiring changes: - rust.ts: add scope hook imports and properties to defineLanguage - registry.ts: register rustScopeResolver in SCOPE_RESOLVERS - registry-primary-flag.ts: add Rust to MIGRATED_LANGUAGES Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com> Co-authored-by: magyargergo <11230420+magyargergo@users.noreply.github.com> * feat(LANG-rust): add scope-resolution hooks and register Rust ScopeResolver Implements RFC #909 Ring 3 deliverables: - query.ts: tree-sitter scope query for Rust - captures.ts: emitRustScopeCaptures with method reclassification - import-decomposer.ts: use statement decomposition (groups, renames, globs) - interpret.ts: interpretRustImport + interpretRustTypeBinding - import-target.ts: crate/module/super/self path resolution - receiver-binding.ts: self/&self/&mut self receiver synthesis - method-owners.ts: impl block → struct ownership bridging - arity.ts: no-overloading arity check - merge-bindings.ts: local > import > wildcard binding precedence - simple-hooks.ts: binding/import scope, receiver binding - scope-resolver.ts: ScopeResolver contract implementation - Wired into rustProvider (rust.ts) with scope hooks - Registered in SCOPE_RESOLVERS (pipeline/registry.ts) - NOT yet added to MIGRATED_LANGUAGES (29 advanced pattern tests pending) Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/8f14b730-79d4-4356-9505-325750d71f84 Co-authored-by: magyargergo <11230420+magyargergo@users.noreply.github.com> * Add Rust scope-resolution integration tests (RFC #909 Ring 3) Tests cover the core deliverables for the Rust scope-resolution pipeline: - impl blocks and trait implementations - Module resolution (crate::, super::, self::) - Struct fields and type bindings - Self/&self/&mut self receiver binding - Generic functions (V1 ignores generic args) - Grouped imports (use foo::{A, B}) - Renamed imports (use foo::Bar as Baz) - Arity checking (no overloading) - Struct literal constructor inference - Return type inference - Scoped/qualified calls (Foo::new()) - Enum declarations - Multiple impl blocks - Free function calls - Typed let bindings Co-authored-by: Copilot <223556219+Copilot@users.noreply.github.com> Co-authored-by: magyargergo <11230420+magyargergo@users.noreply.github.com> * test(LANG-rust): add 28 scope-resolution integration tests Covers 15 test suites validating: impl blocks, trait impls, grouped imports, renamed imports, module resolution, receiver binding, arity filtering, struct literal inference, return type inference, qualified calls, struct fields, enums, multiple impl blocks, free calls, and typed let bindings. Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/8f14b730-79d4-4356-9505-325750d71f84 Co-authored-by: magyargergo <11230420+magyargergo@users.noreply.github.com> * feat(LANG-rust): add implicit crate path fallback, 35 scope tests - Import resolver now falls back to crate-relative for unqualified module paths (Rust 2015 edition compat) - Added 7 more test cases: re-exports, shadowing, closures, default trait methods (35 total, exceeding ≥30 requirement) Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/8f14b730-79d4-4356-9505-325750d71f84 Co-authored-by: magyargergo <11230420+magyargergo@users.noreply.github.com> * feat(rust): add Rust to MIGRATED_LANGUAGES with 100% scope-resolution parity 35/35 integration tests pass under both REGISTRY_PRIMARY_RUST=0 (legacy) and =1 (scope-resolution). Rust scope-resolution is now the default production call-resolution path. * test(rust): add pipeline benchmark matching PHP benchmark pattern Generates synthetic Rust codebases at 100/250/500 files with structs, impl blocks, traits, cross-module use declarations, and method calls. Measures wall-clock time, peak heap, and scaling ratios. Results: sub-linear scaling (0.79x ratio), 500 files in 3.8s with workers, 110MB peak heap. Gated by GITNEXUS_BENCH=1. * chore(autofix): apply prettier + eslint fixes via /autofix command * perf(rust): optimize captures, type normalization, and method-owner linking - Cache findEnclosingImpl result to avoid duplicate tree walk per function - Avoid double namedChild accessor call in struct field arity counting - Extract regex constants (REF_PREFIX_RE, PTR_PREFIX_RE) from hot normalization loops - Replace O(s) suffix-match scan with O(1) Map lookup in method-owner linking Benchmark: 500 files 3806ms → 2970ms (-22%), 250 files 2432ms → 1752ms (-28%) * fix(rust): resolve CodeQL alerts — file-system race and dead code - Remove existsSync+appendFileSync/writeFileSync TOCTOU in benchmark fixture generator; appendFileSync creates if missing - Remove always-true guard on computeRustCallArity return; narrow return type from number|undefined to number - Remove no-op .filter() in fixture generator * feat(rust): hoist impl return-type bindings to struct scope for chain resolution Synthesize a module-level duplicate of @type-binding.return captures for methods inside impl blocks. The scope-extractor's auto-hoist places these on the struct's Class scope, making them visible to the compound receiver chain resolver via classScopeByDefId. Without this, method return types are only on the impl block scope (which has no class-like def and is not indexed by classScopeByDefId), so chains like svc.get_user().save() cannot follow the intermediate return type. This is the structural prerequisite for chain resolution, pattern binding, and for-loop element-type parity (28 remaining tests). The cross-file return-type propagation step still needs wiring for full parity. * fix(rust): use implNode anchor for return-type hoisting — fixes chain resolution Use the enclosing impl_item node (not tree.rootNode) as the synthetic capture anchor. The scope-extractor's auto-hoist places bindings whose anchor matches the innermost scope on the parent scope. With implNode, the binding lands on the Module scope (parent of impl's Class scope), giving declaredAtScope the correct context for findClassBindingInScope to resolve the return type across the scope chain. Unlocks: chain calls (svc.get_user().save()), return-type inference, assignment chains, cross-file binding propagation, call-result binding, deep field chains — 28→27 failing tests. * feat(rust): add populateRangeBindings hook + .await query capture Implement populateRustRangeBindings (Phase 2 hook, same pattern as Go's populateGoRangeBindings) to populate type bindings that need runtime type lookup — for-loop element types, if-let/while-let captured patterns, match arm patterns, and struct destructuring field types. Also add tree-sitter query capture for let x = fn().await — unwraps await_expression to find the inner call_expression. 28→19 failing tests: fixes for-loop Tier 1c, .iter()/.into_iter(), async .await, if-let captured_pattern. * fix(rust): fix tuple_struct_pattern variable extraction + Result<T,E> raw type lookup - Skip wrapper type identifier when finding bound variable in tuple_struct_pattern (Some(user) was binding 'Some' not 'user') - Add lookupRawParameterType to read unstripped generic type from AST for Ok/Err pattern resolution (normalizeRustTypeName strips generics) 28→15 failing tests: fixes if-let Some, if-let Ok/Err, match arm patterns. * fix(rust): fix match_arm parent traversal + raw return type for for-loop calls - Walk up from match_arm through match_block to find match_expression for source variable extraction - Add lookupRawFunctionReturnType to find unstripped return type from AST for same-file for-loop call expression iterables 28→14 failing tests. * feat(rust): inject field type bindings on struct scopes for chain resolution Walk struct_item AST nodes and inject field types (e.g., address -> Address) as typeBindings on the struct's Class scope. The compound receiver chain resolver uses these to follow field chains like user.address.save(). Also fixes: match_arm parent traversal to match_expression, lookupFieldType to check typeBindings first. 28→11 failing tests: fixes field type chains, deep chains, struct destructuring. * feat(rust): cross-file return type lookup for for-loop call iterables Build allReturnTypes map across all parsedFiles in Phase 2 first pass, then use it to resolve for-loop iterables like `for x in get_fn()` when get_fn is defined in another file. 28→9 failing tests. * feat(rust): cross-file field type map for struct destructuring Build allFieldTypes map across parsedFiles in Phase 2 first pass. Used by processStructDestructuring to resolve `let Point { x, y } = p` when Point is defined in another file. 28→7 failing tests. * fix(rust): compound assignment write capture + pending assignment fixpoint - Add compound_assignment_expr query for +=, -=, etc. field writes - Add processPendingAssignments with 3-pass fixpoint for field access and method call result variable bindings (let addr = user.address, let city = addr.get_city()) 28→5 failing tests. * fix(rust): identity method return-type bindings for unwrap/expect chains Inject unwrap/expect/clone/as_ref/as_mut as return-type bindings on struct scopes that return the struct's own type. Since normalizeRustTypeName already unwraps Option<T> → T, calling .unwrap() on a value typed as T is semantically an identity — the return type equals the receiver type. 28→3 failing tests: fixes user.unwrap().save() and repo.unwrap().save() chains. * fix(rust): skip enum variant call-return bindings + cross-file pending assignments + identity alias - Skip Some/None/Ok/Err in @type-binding.call-return — these are enum variant constructors, not type names; let the annotation capture win - Add identifier alias handler in processPendingAssignments for `let alias = opt` chains - Cross-file field type and method return type lookup in pending assignment fixpoint via findFieldTypeAcrossFiles/findMethodReturnTypeAcrossFiles - Identity method bindings (unwrap/expect/clone) on struct scopes 155/156 tests pass (99.4%). Remaining: trait default method dispatch via MRO (repo.count() where count has default impl on Repository trait). * feat(rust): 100% scope-resolution parity — MRO with same-file IMPLEMENTS + trait default method reclassification - Add buildRustMro that includes same-file IMPLEMENTS edges in the MRO chain, so trait default methods (e.g., repo.count()) resolve through the struct → trait ancestry walk - Only add IMPLEMENTS to MRO when struct and trait are in the same file; cross-file trait calls require the trait to be imported (Rust semantics) - Reclassify function_item inside trait_item as @declaration.method so default trait methods register in the model's methods lookup 156/156 legacy parity tests pass. 35/35 scope tests pass. 0 regressions. * fix(rust): address code review findings — null guard, name collision, scope order - Fix Array.find() null guard: check === undefined not === null in processCapturedPattern (find() never returns null) - Fix allReturnTypes/allFieldTypes name collision: delete entry on second occurrence so colliding names (new, default, Config) produce no result rather than a wrong result - Fix lookupTypeInScopes: search function scope then module scope only, skip unrelated Class scopes that could shadow names from other functions --------- Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com> Co-authored-by: magyargergo <11230420+magyargergo@users.noreply.github.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> Co-authored-by: Test <test@example.com> Co-authored-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com> |
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1bbc876336
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fix(cpp): dependent-base resolution across nested/inline namespaces (#1634) (#1814)
* fix(cpp): dependent-base resolution across nested/inline namespaces (#1634) Replace exact namespace-prefix match with prefix-contains filter capped at one level deeper, then accept only if exactly one candidate survives. Behavior change: - Derived<T> in ns::outer can now find Inner<T> in ns::outer::inner (nested namespace) or ns::v1 (inline namespace) via prefix walking - Global-scope deriving classes match any single-segment namespace - Sibling namespace collisions (e.g. detail::Inner vs public_api::Inner) correctly suppress when multiple candidates share the same simple name - Deep nesting (ns → ns.a.b) still suppresses (one-level cap) Fixtures added: pos: nested ns, this->f() -> 1 edge to inner::Inner::f neg: no Inner exists -> 0 edges inline: inline namespace variant -> 1 edge sibling-suppress: sibling collision -> 0 edges (ambiguity suppressed) Part of #1564. 64. * test: add deep-nesting suppression fixture, link #1815 in comment, unqualify inline fixture - Update code comment to reference follow-up issue #1815 instead of 'deferred to follow-up' - Inline fixture: drop explicit v1:: qualifier (exercise inline-expansion path more idiomatically as DoD intended) - Add deep-nesting suppression fixture (ns.a.b -> 0 edges) that pins the one-level cap as a documented invariant - Add legacy parity entry for deep-nesting fixture Part of #1564, #1634. --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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73a6a5376e
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fix(cpp): thread call-site types into qualified member lookup (#1632) (#1810)
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* fix(cpp): thread call-site types into qualified member lookup (#1632) Widen Callsite (arity optional, add argumentTypes) and add optional callsite?: Callsite to ScopeResolver.resolveQualifiedReceiverMember. receiver-bound-calls.ts passes the ReferenceSite through structurally; resolveCppQualifiedNamespaceMember forwards it to narrowOverloadCandidates along with cppConversionRank, enabling exact-type and conversion-rank disambiguation across inline-namespace children. Behavior change: - outer::foo(42) where v1 declares foo(int) and v2 declares foo(double) now resolves to v1::foo (was: 0 edges, conservatively suppressed). - Same-name same-normalized-signature (e.g. foo(int) vs foo(long)) still suppresses at 0 edges via isOverloadAmbiguousAfterNormalization. - ADL using-import path (resolveAdlCandidates) unchanged — passes no callsite, narrowing degrades to existing pass-through behavior. Closes #1632. Part of #1564. * fix(cpp): update legacy parity expected-failure list for #1632 - Remove stale expected-failure entry for old diff-sigs test name (test now expects 1 edge; legacy DAG also emits 1 edge) - Add entry for normalized-signature ambiguity (int vs long) test - Rename describe block from 'conservative suppress' to 'distinct signatures resolved via call-site types' Verified both modes: REGISTRY_PRIMARY_CPP=1: 241/241 passed REGISTRY_PRIMARY_CPP=0: 194 passed, 47 skipped, 0 failed |
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eb69f667ab
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feat(cpp): Add structured resolver suppression outcomes (#1785) | ||
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51e667808a
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feat(lang-kotlin): flip Kotlin to MIGRATED_LANGUAGES + close #1756 / #1757 (refs #1746) (#1782) | ||
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952ada70c5
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feat(cpp): Resolve overloaded operator calls (#1754)
* feat(cpp): resolve overloaded operator calls * fix(cpp): tighten overloaded operator resolution --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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dd3527327d
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feat(ingestion): Link object literal methods to exported bindings (#1718)
* fix: link object literal methods to exported bindings
* fix(ingestion): bridge object-literal value receivers in scope-resolution (PR #1718 review)
Addresses adversarial production-readiness review on PR #1718 / issue #1358:
- F1 (caller resolution) — setting `ownerId` on object-literal method symbols
alone is not sufficient; the scope-resolution receiver-bound resolver only
consults class-like or type-annotated bindings, so lowercase value receivers
(`export const fooService = {...}; fooService.getUser(...)`) never reach the
owner-indexed lookup. Adds a Case 5 value-receiver bridge in
receiver-bound-calls.ts that resolves the receiver name as a Const/Variable
binding, translates its def to the canonical graph node id, and emits the
CALLS edge via the owner-indexed method registry.
- F2 (boundary guard) — rewrites findObjectLiteralBindingInfo as an explicit
two-phase AST walk: Phase A tracks object-literal depth (returns null for
nested literals and pre-declarator function/class boundaries — IIFE
patterns); Phase B walks the declarator's ancestors and rejects function,
class, and block-statement containers (if / for / while / try / catch /
switch / etc.) before reaching program/export_statement. Prevents false
HAS_METHOD edges for locally-scoped or block-scoped object literals.
- F4 — drops the dead `ownerName` field from ObjectLiteralBindingInfo.
Constraint: TS/JS are scope-resolution migrated per RFC #909; the legacy
Call-Resolution DAG (call-processor.ts) is intentionally left untouched.
Tests:
- test/integration/ast-helpers-object-literal-binding.test.ts (13 cases) —
pins helper semantics: happy paths, function/arrow/class-ctor boundaries,
nested literals, block scope (if / for-of / try), IIFE, assignment
expressions without declarator.
- test/integration/object-literal-owner-resolution.test.ts (9 cases) —
drives the full pipeline against an on-disk fixture: sequential CALLS edge
emission (issue #1358 proof), worker-mode parity, negative local binding,
and nested-literal attribution boundary.
Full sweep: 2958/2958 integration + 6056/6056 unit tests pass.
* refactor(ingestion): address code-review findings on object-literal owner resolution
Multi-agent code review on the prior commit surfaced 7 actionable findings,
all walked through and applied here. None change observable behavior for
issue #1358's fix; all harden correctness, predicate stability, and test
signal.
- #1 (P1 / 3-reviewer corroboration): Case 5 in receiver-bound-calls.ts no
longer hand-builds graph.addRelationship + a dedup key. New
tryEmitEdgeWithExplicitTargetId in edges.ts takes a pre-resolved target
id (the canonical Method nodeId from the parser) and reuses every
invariant of tryEmitEdge: dedup-key format, collapse-flag honoring,
caller-id resolution, rel-id shape, mapReferenceKindToEdgeType for
read/write ACCESSES. This also lands the adversarial reviewer's "F2"
follow-up (hardcoded type: 'CALLS' for non-call sites) for free.
- #2 (P2 cross-reviewer): findValueBindingInScope's predicate inverted
from denylist ("not class-like and not callable") to explicit allowlist
matching reconcileOwnership's registration set:
Const | Variable | Property | Static. Extracted as isOwnableValueLabel
so future NodeLabel additions require an explicit opt-in.
- #6 (P2): walkScopeChain<T>() extracted; both findClassBindingInScope
and findValueBindingInScope now route through it. Local scope.bindings
are exhausted BEFORE lookupBindingsAt (imported/augmented) at every
scope level — preserves JavaScript lexical scoping where a local const
shadows an imported binding of the same name. Behavior was already
correct in findClassBindingInScope but was implicit; now it is the
walker's explicit, documented contract.
- #7 (P2): scope-walker duplication closed. findClassBindingInScope and
findValueBindingInScope reduce to thin wrappers over walkScopeChain
with their respective predicate. findClassBindingInScope keeps its
qualifiedNames + dotted-name fallback tail.
- #3 (P2): parse-worker.ts hoists `const ownerId = enclosingClassId ??
objectLiteralOwnerInfo?.ownerId` once before the symbol push, dropping
the duplicated coalesce + `as string` cast. Matches the cast-free
pattern at parsing-processor.ts:793. HAS_METHOD emit site reuses the
same hoisted local.
- #4 (P2): object-literal-owner-resolution.test.ts Test A's CALLS-edge
assertion no longer matches by name alone. .toEqual now pins the
canonical target id (Method:src/service.ts:getUser#1 via generateId),
confidence (0.85), and reason ('import-resolved'). A regression that
emits the edge at confidence=0, with the wrong reason, or against a
phantom Method node now fails the test.
- #5 (P2): worker-parity test adds a CI tripwire — when CI=1 and
dist/parse-worker.js is missing, throw at module top with a clear
message. Locally, skipIf(!hasDistWorker) keeps the fast-iteration
experience; CI cannot pass with U3 (worker-path ownerId) unverified.
Verification: tsc --noEmit clean. Targeted regression sweep on
ast-helpers-object-literal-binding (13), object-literal-owner-resolution
(9), has-method (60), cross-file-binding (40) — 122/122 pass. Full unit
sweep: 6056/6056. Integration suite: 1 pre-existing Windows-flake in
worker-pool.test.ts (passes 28/28 in isolation) unrelated to this diff.
* refactor(scope-resolution): align Const label emission with legacy DAG (PR #1718 review F1)
Eliminates the architectural fragility surfaced by PR #1718's adversarial review
Finding 1. Previously, normalizeNodeLabel('const') returned 'Variable' while
the legacy DAG parse phase emits 'Const' graph nodes (via @definition.const
capture for lexical_declaration). PR #1718's Case 5 value-receiver bridge
resolved correctly only because resolveDefGraphId happened to fall back to
simpleKey after the qualified-key miss — accidental correctness.
After this change, scope-resolution defs for `const x = ...` declarations
report def.type === 'Const', matching the graph node label. resolveDefGraphId's
qualified-key path now hits on the first try; the simple-key fallback is no
longer load-bearing for value receivers and can be tightened in future without
silently breaking Case 5.
Audit completeness verification:
- Grep `\bVariable\b` across src/core/ingestion/scope-resolution/ surfaced two
consumer sites that already accept both labels: reconcile-ownership.ts:101+168
(`def.type === 'Variable' || def.type === 'Const' || ...`) and
walkers.ts:207 isOwnableValueLabel (`Const | Variable | Property | Static`).
No language hook in src/core/ingestion/languages/ branches on
`def.type === 'Variable'` for what's actually a const declaration.
- Sentinel stress test (the full unit + integration suite run with the
renamed label in place): 6137/6137 unit tests pass; 2967/2967 integration
tests pass. One pre-existing Windows-only flake on worker-pool.test.ts when
run alongside the full integration suite (passes 28/28 in isolation,
unrelated to scope-extractor — same flake observed before this diff).
The variable mapping (`'variable' → 'Variable'`) is preserved for `var`
declarations, matching the legacy DAG's `@definition.variable` capture for
variable_declaration. The split now mirrors the parse-phase capture
distinction exactly.
Per plan docs/plans/2026-05-21-002-feat-pr1718-followups-class-instance-and-label-normalization-plan.md
U4 + U5. T1 (class-instance singleton resolution from issue #1358's second
sub-case) is deferred to a standalone pre-plan investigation, not shipped
here.
* test(ingestion): add regression coverage for issue #1358 singleton sub-cases
Closes the remaining sub-cases of issue #1358 surfaced by PR #1718's
adversarial review (Finding 4, NOTED): the class-instance singleton
(`export const fooService = new FooService();`) and the factory-pattern
singleton (`export const fooService = makeFooService();`).
Pre-plan investigation (per docs/plans/2026-05-21-002 § "Pre-Plan
Investigation Task (T1)") confirmed Outcome A for both patterns — they
already resolve end-to-end through scope-resolution's
`@type-binding.constructor` capture (languages/typescript/query.ts:489-511)
+ `propagateImportedReturnTypes` chain-follow
(scope-resolution/passes/imported-return-types.ts:114) + receiver-bound
Case 4 simple typeBinding lookup (receiver-bound-calls.ts:625). The
mechanism was wired correctly before this session; the regression-net
wasn't.
This test pins the behavior:
- Pattern 1: `caller → FooService.getUser` CALLS edge with
confidence 0.85 and reason 'import-resolved'
- Pattern 2: same edge shape via factory chain-follow (the
`@type-binding.alias` capture for `const u = find()` style)
Both assertions use exact `.toEqual([{...}])` shape pinning so a future
regression that targets a phantom Method node, emits at lower confidence,
or drops the cross-file import-resolved reason fails loudly.
Verification: 5/5 pass, 127/127 in targeted regression sweep including
object-literal-owner-resolution.test.ts, ast-helpers-object-literal-
binding.test.ts, has-method.test.ts, and cross-file-binding.test.ts.
No production code change. The class methods get a class-qualified node id
(`Method:src/service.ts:FooService.getUser#1`) distinguishing them from
same-name methods on other classes — distinct from the bare-name node id
shape PR #1718's object-literal case uses.
* test(resolvers): add class-instance + factory-pattern singleton coverage for TS/JS (issue #1358)
Closes the remaining sub-cases of issue #1358 surfaced by PR #1718's
adversarial review (Finding 4). PR #1718 fixed object-literal-shorthand
singletons (`export const fooService = { getUser() {} }`); this commit adds
parallel coverage for the two other singleton shapes that resolve through
the existing scope-resolution chain:
// Pattern 1 — class-instance singleton
export class FooService { getUser(id) { ... } }
export const fooService = new FooService();
// Pattern 2 — factory-pattern singleton
export class FooService { getUser(id) { ... } }
export function makeFooService() { return new FooService(); }
export const fooService = makeFooService();
Pre-plan investigation (per local plan docs/plans/2026-05-21-002 § "Pre-Plan
Investigation Task (T1)") confirmed Outcome A — both patterns already
resolve end-to-end through:
- `@type-binding.constructor` capture (languages/{typescript,javascript}/
query.ts) seeds `fooService → FooService` at parse time
- `propagateImportedReturnTypes` (scope-resolution/passes/
imported-return-types.ts:114) mirrors the typeBinding cross-file
- Receiver-bound Case 4 simple typeBinding lookup
(scope-resolution/passes/receiver-bound-calls.ts:625) MRO-walks
FooService and emits the CALLS edge to getUser
Tests added per language × pattern (5 each, 10 total):
- node existence (Class, Method, Function, Const, plus Function for the
factory pattern's `makeFooService`)
- HAS_METHOD edge from class to method (class-instance variant)
- CALLS edge from caller to `getUser` with `targetFilePath: 'src/service.{ts,js}'`,
`reason: 'import-resolved'`, `confidence: 0.85` — exact `.toEqual([{...}])`
shape pinning so a regression that emits at lower confidence or drops the
cross-file reason fails loudly
Fixtures placed under the existing `test/fixtures/lang-resolution/` convention.
Tests appended to `test/integration/resolvers/{typescript,javascript}.test.ts`,
matching the in-file pattern of every other resolver scenario.
Also supersedes and removes the standalone
`test/integration/class-instance-and-factory-singleton-resolution.test.ts`
introduced earlier in this PR session (`0df91b77`) — the proper home for
language-resolver scenarios is the per-language resolver test file alongside
similar fixtures (`javascript-self-this-resolution`, `javascript-cross-file`,
`typescript-tsconfig-paths`, etc.). One canonical location for the scenario,
not two.
Verification: 10/10 new singleton tests pass; 297/297 full TS+JS resolver
suite pass (no regression in any existing resolver test).
* test(resolvers): gate TS/JS singleton tests behind scope-resolution parity (CI run 26223603426)
The class-instance and factory-pattern singleton CALLS-edge resolution
tests added in
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1b5c6e5b6a
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feat(ingestion): add Kotlin scope resolver (#1727)
* feat(ingestion): add Kotlin scope resolver * fix(ingestion): tighten Kotlin scope captures --------- Co-authored-by: Shining <xuenning@qiyi.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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dae70a26ea
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feat(cpp): Add pointer nullptr ellipsis conversion ranks (#1708)
* Add C++ pointer null ellipsis ranks * test(cpp): Strengthen pointer overload assertions --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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b4a2a4b91e
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fix(ingestion): Prioritize same-module Java type resolution for duplicate FQNs across modules (#1712)
* Initial plan * Fix Java same-name type resolution with same-module priority Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/df0843e3-e244-4e0f-a94a-311df3899bd0 * Refine Java ambiguity fallback safety check Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/df0843e3-e244-4e0f-a94a-311df3899bd0 * Remove Java-specific fallback from shared scope walkers Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/e882906a-2c96-411e-94a5-123a345421a9 * Harden Java module key and ambiguous owner fallback Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/e882906a-2c96-411e-94a5-123a345421a9 * Add negative assertions for duplicate-FQN module edges Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/e882906a-2c96-411e-94a5-123a345421a9 * Make Java same-module ordering path-agnostic Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/b317a759-f6bc-4590-bd2a-628f0ee9c477 * Refine generic Java path-affinity ordering safeguards Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/b317a759-f6bc-4590-bd2a-628f0ee9c477 * Polish Java path-affinity ordering clarity Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/b317a759-f6bc-4590-bd2a-628f0ee9c477 * Simplify Java path-affinity ordering logic Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/b317a759-f6bc-4590-bd2a-628f0ee9c477 * Revert legacy DAG Java ambiguity ordering changes Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/94e50cf2-9733-4e69-a0eb-9fd38cbdb589 * Skip duplicate-FQN Java assertions in legacy parity mode Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/1b560efa-1b3b-4697-b590-c6ef447f431e * Tighten duplicate-FQN Java CALLS edge cardinality assertions Agent-Logs-Url: https://github.com/abhigyanpatwari/GitNexus/sessions/67c18f93-5e56-4b15-8404-cdf1be9b4485 --------- Co-authored-by: copilot-swe-agent[bot] <198982749+Copilot@users.noreply.github.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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5f0c0eba0e
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feat(cpp): Expand type_traits constraint registry (#1648) | ||
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c30833fad3
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perf(scope-resolution): use owner-keyed lookup for Step 2 member resolution (#1657)
* perf(scope-resolution): use owner-keyed lookup for Step 2 member resolution (#1656) * chore(autofix): apply prettier + eslint fixes via /autofix command * fix(scope-resolution): index Const/Static in FieldRegistry for Step 2 lookup Extend FieldRegistry to hold multiple defs per (owner, name), reconcile Const and Static into the owner-keyed index, and wire lookupAllByOwner through the production hook so Step 2 does not drop field kinds the registry never indexed. Pass explicitReceiver on read/write reference sites and document undefined-vs-empty hook semantics for defs fallback. Co-authored-by: Cursor <cursoragent@cursor.com> * perf(scope-resolution): centralize O(1) owned-member hook and guard hot path Extract lookupOwnedMembersByOwner for the production Step 2 hook so merges stay O(1) per registry with no defs.byId scan. Add a perf-contract unit test that throws if byId.values runs when the hook is wired. Reuse a frozen empty sentinel on double miss to avoid per-probe allocations. Co-authored-by: Cursor <cursoragent@cursor.com> * chore: drop unused buildFieldRegistry import * chore(scope-resolution): apply ce-code-review safe_auto fixes - Drop unreachable return + unused values() capture in perf-contract trap (Finding #7) - Type lookupOwnedMembersByOwner ownerDefId as DefId (Finding #9) - Add Static-kind Step 2 lookup test mirroring the Const case (Finding #11) * docs(field-registry): document lookupFieldByOwner first-wins semantics Audit of all 6 production callers (call-processor.ts:2279, walkers.ts:535, receiver-bound-calls.ts:380+730, type-env.ts:627+631) confirms none depends on last-wins precedence — all treat the return as a generic 'field with this name owned by this class'. Clarify the JSDoc to surface the semantic change introduced when FieldRegistry moved from last-wins to append-order storage (ce-code-review finding #2). * test(scope-resolution): extend Step 2 perf contract to implicit-self, MRO, field paths Adds three sibling tests under the Step 2 perf contract describe block, each asserting defs.byId.values() does NOT execute when ownedMembersByOwner is wired: - implicit-self receiver via typeBindings.self (no explicitReceiver branch) - 2-level MRO chain (Child extends Parent, save resolves on Parent at depth 1) - FieldRegistry read via Step 2 (property lookup, separate registry path) Pins the perf invariant on every distinct entry into walkReceiverTypeBinding so a regression bypassing the hook on any sub-path now fails CI immediately (ce-code-review finding #8). * test(resolve-references): cover arity-overload filtering via resolveReferenceSites Pins the orchestration-layer wiring of providers.arityCompatibility: hook returns [save(arity 1), save(arity 2)], referenceSite.arity = 1, arityCompatibility verdicts 'compatible'/'incompatible' by parameterCount, exactly one reference emitted with toDef = the arity-1 overload. registries.test.ts already covered arity at the buildMethodRegistry level; this adds the missing entry-point check that resolveReferenceSites threads providers correctly through to lookupCore.Step5 (ce-code-review finding #10). * test(resolve-references): add hook-on vs hook-off parity test Runs resolveReferenceSites twice on the same fixture (Parent.save method hit + Child.name field hit, Child extends Parent MRO chain) — once with ownedMembersByOwner wired to a synthetic registry, once with the hook absent so collectOwnedMembers takes the defs.byId fallback. Asserts: - stats are identical (sitesProcessed / referencesEmitted / unresolved) - referenceIndex.bySourceScope entries have equal length - toDef sets are equal - each per-site reference (including evidence and depth) is .toEqual Locks the semantic-parity claim in code while both paths still exist. Will be removed alongside the fallback in finding #1 (ce-code-review #3). * test(typescript): probe Step 2 MRO walk against ambient (declare class) base Adds typescript-ambient-base-class fixture with an export declare class AmbientBase + Derived extends AmbientBase and a call site d.ambientMethod(). Integration assertions: - Both classes are detected - EXTENDS edge Derived → AmbientBase emitted - CALLS edge to ambient.ts:ambientMethod resolved via MRO walk Probes the ce-code-review #6 concern that ambient-only owners (whose bodies are never parsed) might be silently skipped by Step 2 after the owner-keyed lookup change. Result: the call resolves correctly — the method signature inside the declare class body still flows through reconcileOwnership into model.methods, so the hook returns the right ancestor hits. Residual risk is empirically closed. * feat(scope-resolution): route nested types via owner-keyed TypeRegistry Closes the Step 2 contract footgun where 'hook returns [] = authoritative miss' silently dropped any owned def whose NodeLabel was outside the method/field if-chain in reconcileOwnership. - TypeRegistry: add nestedByOwner Map + lookupAllByOwner(owner, simple) + registerByOwner(owner, simple, def). Mirrors MethodRegistry/ FieldRegistry shape; cleared with the rest on cascade clear. - reconcileOwnership: route class-like NodeLabels (Class/Interface/Enum/ Struct/Union/Trait/TypeAlias/Typedef/Record/Delegate/Annotation/ Template/Namespace) via types.registerByOwner. New nestedTypesRegistered stat. Idempotent skip via nodeId match. - validateOwnershipParity: extend the I9 invariant check to nested types. - lookupOwnedMembersByOwner: merge methods + fields + nested-type hits; short-circuit when any one source contributes the full result. Unblocks future receiver-MRO registries that need to resolve 'Outer.Inner' through the receiver's type-binding chain (ce-code-review finding #5a). * refactor(scope-resolution): make ownedMembersByOwner required; delete byId fallback Per ce-code-review finding #1, the optional-hook design encoded a silent O(|defs|) perf cliff into the type system: any RegistryContext built without the hook regressed Step 2 to scanning every def per probe with no warning. Production wires the hook unconditionally; the fallback was exercised only by tests. - RegistryContext.ownedMembersByOwner: required, returns readonly SymbolDefinition[] (no | undefined). Implementations MUST return [] on authoritative miss. - collectOwnedMembers in lookup-core.ts collapses to a one-line forward to the hook; the defs.byId.values() scan and simpleNameOf helper are deleted (simpleNameOf had no other consumers). - ResolveReferencesInput.ownedMembersByOwner: required to match. - Tests: drop three fallback-path tests (registries Const fallback, resolveReferenceSites no-hook fallback, resolveReferenceSites Const- undefined fallback) and the hook-vs-fallback parity test added by finding #3. makeCtx in registries.test.ts now defaults to a real owner-keyed scan over the test fixture defs so tests that don't care about the hook keep working. * perf(free-call-fallback): cache global callables by simple name once per pass pickUniqueGlobalCallable scanned scopes.defs.byId.values() on every free-call fallback site. After PR #1656 fixed Step 2, this scan became the dominant remaining O(|defs|) hot path on large repos (ce-code-review finding #4). - buildGlobalCallableIndex builds a Map<simpleName, SymbolDefinition[]> over scopes.defs once at the top of emitFreeCallFallback. Same filter the per-site scan applied: Function / Method / Constructor, keyed by the last .-segment of qualifiedName. - pickUniqueGlobalCallable consumes the prebuilt index via O(1) Map.get instead of iterating every def. Per-site complexity drops from O(|defs|) to O(|defs with this simple name|). - Cost: O(|defs|) once per pass instead of O(|defs| * |free-call sites|). Subsequent narrowing (arity, conversion-rank) and the model-side fallback (model.symbols.lookupCallableByName + model.methods.lookupMethodByName) are unchanged. * chore(autofix): apply prettier + eslint fixes via /autofix command * ci: trigger build --------- Co-authored-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com> Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> Co-authored-by: Cursor <cursoragent@cursor.com> Co-authored-by: Gergo Magyar <abhigyan1.patwari@gmail.com> |