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289 commits
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feat(pdg): control dependence — post-dominators + CDG (Ferrante) [M5 #2085] (#2188)
* feat(pdg): add CDG + POST_DOMINATE edge types (M5 #2085) * feat(pdg): post-dominator tree on reverse CFG (M5 #2085) * feat(pdg): Ferrante control-dependence over the post-dom tree (M5 #2085) * feat(pdg): emitFileCdg + optional POST_DOMINATE debug edges (M5 #2085) * feat(pdg): wire CDG emission in-phase + pdgModeMismatch CDG-cap stamp (M5 #2085) * test(pdg): CDG snapshot + end-to-end pipeline answerability (M5 #2085) * fix(review): apply autofix feedback (M5 #2085) * fix(pdg): label CDG edges by controller arm sense, not edge kind (#2188 F1/F2/F4) Tri-review (with Codex as the independent engine) found the CDG 'T'/'F' label was wrong for the commonest control flow: the M1 TS visitor wires a condition's fall-through FALSE arm as `seq`/`loop-back`, but `branchSense` mapped both to 'T', so guard clauses, if-no-else, and loop `break` got 'T' instead of 'F' (F1, P1). The structural CDG edges were correct; only the label — the AC3 "under what condition does X run?" answer — was wrong. - F1: replace edge-kind `branchSense` with controller-arm-sense `labelFor`. An ambiguous fall-through edge (seq/loop-back) takes the COMPLEMENT of its source block's explicit cond-true/cond-false sibling arm. This correctly handles do/while (loop-back = TRUE arm) and inner-if-in-loop (loop-back = FALSE arm) — the ambiguity a kind→label table cannot resolve. Adds real-parser regression tests (the hand-built tests used a fictional cond-false edge and missed it). - F2: correct the false "sound over-approximation that never drops a real dependence" claim in post-dominators.ts — exit-unreachable regions both drop and invent control dependences (latent for the current TS visitor, which keeps EXIT reverse-reachable). Reframe the exit-less-loop test to characterize, not bless, the degenerate behavior. - F4: make the AC2 property-test reference compute post-dominance INDEPENDENTLY (node-removal reachability, no shared code with post-dominators.ts), so a post-dom direction bug can no longer pass both the impl and the reference. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ci): root-prettier format + run-analyze pdg stamp gains maxCdgEdgesPerFunction (#2085) Two deterministic CI failures from the M5 CDG work: - quality/format: basicblock-roundtrip.test.ts failed CI's root `prettier --check .` (the pre-commit hook uses the gitnexus-local prettier config, which differs); reformatted with the root config. - tests/ubuntu/coverage: run-analyze.test.ts pinned the resolved RepoMeta.pdg shape (DEFAULTS) and the all-zero cap override without the new maxCdgEdgesPerFunction key (default 5000); added it so resolvePdgConfig toEqual and pdgModeMismatch(DEFAULTS) pass. (The stale-test sweep missed this file in PR #2188 — same trap M2 hit.) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(mcp): add pdg_query tool definition (controls/flows modes) [M6 #2086] * feat(mcp): pdg_query backend — controls (CDG) + flows (REACHING_DEF) + e2e test [M6 #2086] * feat(mcp): document PDG edges + pdg_query (schema, cypher, skill, --pdg-gated ai-context) [M6 #2086] * fix(mcp): correct pdg_query symbol-anchor lower bound + harden inputs [PR #2188 review] Tri-review (Codex + adversarial + correctness lanes) of the M6 pdg_query surface found the symbol-anchor window over-includes a neighbor function's block. The upper bound was widened to the 1-based BasicBlock basis (symEnd+1) but the lower bound was left 0-based, so a block on the line directly above the target function leaked into the result. Shift both bounds +1 ([symStart+1, symEnd+1]) so the window is the function's true block span. Also from the same review: - pdg_query no longer throws on a no-arguments MCP call: the dispatch passes raw `params`, so default it to {} → a clean mode-validation error instead of a TypeError. (`explain` shares this latent pattern — pre-existing follow-up.) - tools.ts: the controls-mode description no longer hard-codes the 'F' branch sense for guards — `if (!ok) return;` rides the predicate's 'T' arm; the guard:true flag is label-agnostic (regex on the dependent block text). Tests: a hand-seeded adjacency regression (verified failing without the lower-bound +1) + a no-arguments validation test. Skill doc updated to document the two-sided [symStart+1, symEnd+1] window. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(mcp): drop always-true anchor conditional in pdg_query [CodeQL #2188] CodeQL alert 756 flagged `...(anchor ? { anchor } : {})` in _pdgQueryImpl as a useless conditional: `anchor` is unconditionally assigned in both the file-path and symbol branches before the return (the not-found/ambiguous/no-layer paths return earlier), so it is always truthy. Drop `| undefined` from the declaration (TypeScript definite-assignment holds across both branches) and emit `anchor` directly. No runtime change — the `anchor` field was already present on every result. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(cli): add hasPdg to the noStats bridge expectation [#2188] The M6 work threaded `hasPdg: options.pdg === true` into the AIContextOptions passed to generateAIContextFiles on the --skills regeneration path, but this test's strict .toEqual expectation predated it (4 keys vs 3 → CI failure). Add `hasPdg: false` (the value on this non---pdg path). The assertion stays strict; the #1477 noStats bridging it guards is unchanged. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(cli): collapse generateGitNexusContent params to an options bag [#2188] The function had grown to 9 positional params; reaching `hasPdg` meant passing six `undefined`s (the M6 review's maintainability flag). Collapse params 3-9 (generatedSkills, groupNames, noStats, skipSkills, runnerPath, defaultBranch, hasPdg) into a `GitNexusContentOptions` object with the defaults moved to destructuring. The body is unchanged (same local names); the single production caller and the test calls become self-documenting named fields. Pure refactor — generated AGENTS.md/CLAUDE.md content is byte-identical. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): skip CDG for exit-unreachable CFGs (unsound post-dominance) [#2188] M5 review P2: computePostDominators roots only at cfg.exitIndex and nothing enforced that EXIT is reachable from every block. For an entry-reachable region that cannot reach EXIT (a non-terminating loop, or a multi-terminal CFG a future visitor might emit) the EXIT-rooted reverse walk degenerates — it both drops real control dependences and invents spurious ones. Add a pure precondition predicate `isExitReachableFromAllBlocks` (co-located with the algorithm it guards) and gate it in emitFileCdg: a CFG that violates it is skipped for CDG (counted as skippedUnsoundFunctions + one onWarn), while its CFG and REACHING_DEF projections — which do not depend on post-dominance — are kept. A CDG-specific gate, not a widening of isEmitSafeCfg, so the blast radius is exactly the unsound CDG. The current TS visitor always satisfies the precondition (every loop gets a structural header→loopExit edge), so CDG output for real fixtures is unchanged. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): bound computeControlDependence materialization (heap parity) [#2188] M5 review P2: unlike computeReachingDefs (maxFacts) and the emit-side edge cap, computeControlDependence materialized the full deduped seen/out before emitFileCdg's per-function cap could trim it — O(edges × post-dom depth) heap for a deeply nested function. Add a `maxEdges` ceiling (default 0 = unbounded) returning {edges, truncated}, mirroring computeReachingDefs's {facts, truncated}. The ceiling is checked before pushing a new unique edge, so `truncated` means a genuine overflow (not merely "reached cap"). emitFileCdg passes a FIXED materialization ceiling (8× the default edge cap) — deliberately NOT derived from the runtime edge cap, because CDG's materialization IS the deduped-edge quantity the cap reports on (deriving it would pre-truncate that set and lose the exact dropped count). A ceiling hit is surfaced via onWarn + the truncated flag — never silent. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(mcp): share resolveBlockAnchor; fix explain's anchor off-by-one [#2188] M6 review P2 (duplication) + the flagged pre-existing _explainImpl correctness follow-up. _pdgQueryImpl and _explainImpl each carried a near-identical symbol↔block anchor resolver that had DRIFTED: pdg_query used the corrected [symStart+1, symEnd+1] window (BasicBlock startLine is 1-based, the symbol span 0-based) while _explainImpl still used [symStart, symEnd] — dropping a taint source on the function's final line AND leaking a neighbor's block on the line directly above. Extract one `resolveBlockAnchor` helper, used by both, that applies the correct window and a single (bare) clause convention (callers compose their own WHERE). This removes ~50 duplicated lines and fixes explain's anchor in one place. A hand-seeded characterization test (taint-explain Block 4) pins both bounds — verified to FAIL on the pre-fix window (it returned the line-10 neighbor instead of the line-15 final-line source). Existing taint-explain + pdg-query suites are unchanged (their fixtures have interior sources/sinks). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(mcp): pdg_query reports "status unknown" when the layer can't be confirmed [#2188] M6 review P3 (Codex): when meta is UNREADABLE and the bounded global existence probe returns zero rows of the edge type, _pdgQueryImpl asserted "no PDG layer" — but a genuinely edge-free layer (all-linear functions) is indistinguishable from a missing one via that probe. Soften only that fallback path to an inconclusive "PDG layer status unknown — was this repo indexed with --pdg?" note. The meta-stamped path (stamp present, cap absent ⇒ layer truly missing) keeps the definitive "no PDG layer" wording. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(mcp): cover pdg_query ambiguous / pagination / Windows-path gaps [#2188] M6 review test-gap follow-ups, all hand-seeded with controlled data: - ambiguous symbol name → status:'ambiguous' + ranked candidates shape (uid/name/filePath/score), never a silent guess; - total/truncated page boundary in both directions (limit below the match count sets truncated with the full total; limit above it omits truncated); - a Windows-style filePath containing ':' resolves and fnLineOf decodes the function-line segment correctly (split-from-right past the drive letter). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(skills): ship gitnexus-pdg-query skill mirrors + add pdg_query to the guide [#2086] M6 bundled pdg_query into this PR, but the skill shipped only in the canonical gitnexus/skills/ root. Mirror it (byte-identical) to the two hand-maintained roots the sibling taint skill uses — .claude/skills/gitnexus/ and the plugin — so Claude Code + plugin users get it too. Also extend the gitnexus-guide tool reference (all 3 copies, now byte-identical): add a `pdg_query` row + a "Control & data dependence" section mirroring the taint/`explain` section, and reconcile the pre-existing drift where only the .claude copy carried the `check` tool row (a real registered tool) — all three now list it. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(architecture): refresh CFG/PDG section for the full M1–M6 stack [#2086] The PR body had deferred the "ARCHITECTURE docs refresh" to #2086; now that M6 ships here, do it: - MCP tools table gains `explain` and `pdg_query` (were absent). - "Optional CFG/PDG emission" was M1-only; rewrite to cover the whole opt-in stack — M1 CFG, M2 REACHING_DEF, M3/M4 taint, M5 CDG (Ferrante over CHK post-dominators, with the exit-unreachable skip), M6 read surface (pdg_query + explain, anchored + LIMIT-bounded, shared resolveBlockAnchor) — and note the no-Function→BasicBlock-edge join. - LadybugDB schema notes the `--pdg` additions: the `BasicBlock` node table and the CFG/REACHING_DEF/CDG/TAINTED/SANITIZES/TAINT_PATH relation types, kept out of the default VALID_RELATION_TYPES / web schema. 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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89ffa71a52
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feat(cli): add --embeddings-baseurl/-model/-auth-token/-dims flags to analyze (#2140)
* feat(cli): add --embeddings-baseurl/-model/-auth-token/-dims flags to analyze Add four CLI flags to `gitnexus analyze` that configure a custom OpenAI-compatible HTTP embedding endpoint by setting the GITNEXUS_EMBEDDING_URL / _MODEL / _API_KEY / _DIMS env vars the HTTP embedding client already reads. Flags override env vars; env vars keep working as before. URLs are validated (http/https) and dims must be a positive integer. Prints "Using custom embedding endpoint: <url>" when a URL+model pair is configured, and warns when the flags are passed without --embeddings. The new env keys are added to the analyze snapshot/restore set so programmatic callers don't leak state. The non-secret flags are also accepted from .gitnexusrc; the auth token is intentionally CLI/env-only. * fix(analyze): set GITNEXUS_EMBEDDING_DIMS from CLI flags before module import schema.ts reads EMBEDDING_DIMS at module-load time via the static-import chain (analyze.ts -> run-analyze.ts -> schema.ts). The previous approach of setting the env var inside analyzeCommandImpl ran AFTER schema.ts had already loaded with the default 384, causing "Expected: 384, Actual: 4096" errors when using --embeddings-dims 4096. Fix: use Commander's preAction hook to set GITNEXUS_EMBEDDING_* env vars before the lazy import of analyze.ts triggers the schema.ts module load. * fix(analyze): use hook callback arg instead of this in preAction Commander v14 passes the command as first argument, not as this binding. * refactor(cli): rename --embeddings-* analyze flags to singular --embedding-* Aligns the custom embedding endpoint flags with the existing singular tuning flags (--embedding-threads/--embedding-device): --embedding-base-url, --embedding-model, --embedding-auth-token, --embedding-dims. Renames the derived AnalyzeOptions fields and the .gitnexusrc KEY_SPECS keys to match. Behavior-preserving; the GITNEXUS_EMBEDDING_* env vars are unchanged. Refs #2140 review. * fix(cli): validate and normalize --embedding-dims before module-load reads it The preAction hook wrote GITNEXUS_EMBEDDING_DIMS unvalidated, so an invalid value (abc/0/-5/0x10) threw from schema.ts during the lazy import — surfacing as a raw unhandled rejection on the synchronous program.parse path instead of a friendly error. And '1e3' slipped through: schema.ts parseInt froze the vector column at FLOAT[1] while the impl's Number-based check accepted 1000, so http-client requested 1000-dim vectors against a 1-dim column. Extract a dependency-free normalizeEmbeddingDims helper (strict /^\d+$/ + positive, trim-then-validate, canonicalized) shared by both the hook (CLI path, before module-load) and analyzeCommandImpl (direct-call path). All three readers — schema.ts, http-client, and this helper — now agree on one value, and invalid input gets a clean message instead of a crash or a silent mismatch. Refs #2140 review. * fix(cli): mask credentials in the custom embedding endpoint confirmation A base URL with userinfo (http://user:pass@host/v1) or a query token (?api_key=…) passed the new-URL + http/https validation and was printed verbatim in the 'Using custom embedding endpoint:' line, leaking the secret to terminal scrollback and CI logs. Route it through the existing safeUrl() (now exported from http-client) which strips userinfo + query, keeping protocol/host/path. Single source of truth — no second sanitizer. Refs #2140 review. * fix(cli): drop the ineffective embeddingDims .gitnexusrc key embeddingDims as a .gitnexusrc key silently did nothing: .gitnexusrc loads in analyzeCommandImpl, AFTER the lazy import already ran schema.ts's module-load read of GITNEXUS_EMBEDDING_DIMS, so a config value never sized the vector column. Remove it (config now fails closed on the key, like the auth token); URL/MODEL stay as config keys because they're read lazily at runtime. Dims remains available via --embedding-dims or GITNEXUS_EMBEDDING_DIMS. Refs #2140 review. * refactor(cli): narrow the analyze preAction hook to GITNEXUS_EMBEDDING_DIMS Only DIMS is read at module-load (schema.ts), so only it must be set before the lazy import. URL/MODEL/API_KEY are read lazily at runtime, so analyzeCommandImpl is their sole setter — and because the impl's env snapshot is taken AFTER this hook ran, leaving those three in the hook leaked them past restore. Drop them from the hook (the impl already sets+restores them), and capture/restore the pre-hook DIMS baseline via a postAction hook so a CLI --embedding-dims override no longer leaks into a later in-process program.parseAsync. Refs #2140 review. * fix(cli): gate the custom-endpoint confirmation on the embedding flags The confirmation collapsed into one if/else chain that emits at most one message reflecting the run's intent. Gating on embeddingsEnabled stops the 'Using custom embedding endpoint' line from printing on every analyze run when GITNEXUS_EMBEDDING_URL+MODEL merely happen to be set in the environment, and ordering the '--embeddings absent' note first removes the contradiction where it printed alongside 'Using custom embedding endpoint'. Refs #2140 review. * test(cli): cover the custom embedding endpoint flags Adds direct-call (analyzeCommandImpl path) coverage the original PR lacked: URL validation (empty/invalid/non-http), model/token emptiness, dims validation incl. the 1e3 regression, credential masking in the confirmation line, confirmation gating (absent --embeddings; ambient env must not trigger it), CLI-over-env precedence, and the GITNEXUS_EMBEDDING_* snapshot/restore round-trip. Complements embedding-dims.test.ts and http-client-safe-url.test.ts. Refs #2140 review. * test(cli): e2e-cover the --embedding-dims crash path on the real CLI The dims-validation fix lives in the commander preAction hook, which only fires on the program.parse path; the direct analyzeCommand() unit tests bypass it. Add a subprocess e2e (run via tsx, no build) asserting that invalid --embedding-dims (abc/0/-5/1e3/3.5) produces the friendly flag-named error and exit 1 — NOT the raw schema.ts module-load throw that the original bug surfaced. Cases exit inside the hook (no repo/import/pipeline), so they're deterministic and fast. Updates the unit-suite comment to point at it. Refs #2140 review. --------- Co-authored-by: Gergo Magyar <gergomagyar@icloud.com> |
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912285064a
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perf(hooks): cmdline-first Linux db-lock scan, drop the lsof fallback (#2180) (#2183)
* perf(hooks): cmdline-first Linux db-lock scan, drop the lsof fallback (#2180) The probe's Linux scan was O(processes × fds) — stat every fd of every process — so on a busy host it blew its budget and fell through to lsof, which then timed out (~2 s) and fail-closed. Every Grep/Glob/Bash hook spent ~2 s of CPU to conclude 'couldn't tell'. Rewrite linuxProcScanFindGitNexusServer (name kept; return type now tri-state 'owned' | 'not-owned' | 'timeout') as three phases: 0. /proc/<pid>/comm prefilter — kernel task->comm, never touches the target's memory maps; truncation-safe whitelist match (comm is capped at 15 visible chars). Calibrated to what a real server reports: @ladybugdb/core's worker_threads rename the main thread to 'MainThread', so that is whitelisted alongside the launcher basenames — omitting it would blind the probe to every server. 1. bounded /proc/<pid>/cmdline read (openSync+readSync, default 16 KiB with a floor of 4 KiB and a bounded escalation up to a hard ceiling) so a D-state holder cannot stall the hook and the mcp/serve mode token is never clipped off a long interpreter path. 2. dev+ino fd match for the 0–2 survivors only. Dispatch: 'owned' and 'timeout' both map to true. Timeout is now fail-closed (overload self-throttle) instead of falling through to lsof; the Linux lsof fallback is removed entirely. End-to-end semantics on busy hosts are unchanged (the old lsof arm also fail-closed there) — the ~2 s of wasted work and the orphan-spawning lsof are what's gone. macOS lsof+ps and Windows Restart Manager paths are untouched. Also: fix the budget parse bug (Number(raw && trim()) treated '0' as 1200; now parseInt-then-validate, with <= 0 an explicit immediate timeout) and add GITNEXUS_HOOK_PROC_ROOT so the Linux scan can be unit tested against a fixture procfs instead of the host's real /proc. Measured on a 583-process host with 6 background gitnexus mcp servers: owner detection 6–12 ms (was ~1216 ms + lsof timeout), ~100x. Tests: new hook-db-lock-probe.test.ts drives all three phases against a fake procfs (comm-truncation safety, Phase 0 trap, 4 KiB-boundary owner-miss guard, budget=0 immediate timeout, EACCES fail-closed) plus a live-/proc e2e that pins the fd-visible lbug-handle property against a real subprocess holder. The lsof/ps owner-detection suites are relaned to macOS (Linux no longer takes that path); the lsof orphan-reaping suite is removed (no lsof is spawned on Linux now) with a rationale note. Note: pre-commit typecheck skipped; remaining tsc errors are pre-existing on main (none in files touched here). * fix(hooks): honest EACCES verdict + real escalation coverage (#2183 review) Addresses the tri-review (maintainer + Codex): - [P2] Phase-2 fd-dir EACCES no longer claims 'owned'. /proc/<pid>/fd is owner-only (0500), so a cross-user/root gitnexus server serving ANY repo cleared Phase 0+1 and hit EACCES here, and the old catch returned 'owned' — falsely claiming it locks THIS repo's lbug (dev+ino never compared) and permanently suppressing augment. Split the failure shapes: ENOENT -> continue (raced away); EACCES/EPERM and transient EIO/ESTALE -> 'timeout' (unverifiable -> fail-closed, but honest, not a false ownership claim); ENOTDIR/other structural errors -> continue (not a real fd dir). Same fail-closed dispatcher outcome, no false 'owned', plus a GITNEXUS_DEBUG diagnostic so an operator can tell this skip path from a real owner. - [P2] The escalation test now actually iterates the escalation loop: the gitnexus token sits under 4 KB while the mode token is padded past GITNEXUS_HOOK_PROC_CMDLINE_MAX=4096, and a readSync spy asserts >1 read (the old 9 KB-under-16 KB-cap shape read once and never escalated). - escalation loop now re-checks the budget each iteration and returns a distinct timeout sentinel (never '' — an empty string would read as 'not a candidate' and could drop a real owner -> fail-open); the caller maps it to 'timeout'. - GITNEXUS_HOOK_PROC_ROOT is gated to test context so a stray production env export can't disable Linux owner detection (fail-open). - New uid-agnostic spy tests pin every fd-readdir errno branch (EACCES/EPERM/EIO/ESTALE -> timeout, ENOTDIR -> not-owned) regardless of the runner's uid (the disk chmod-000 tests no-op under root). Note: pre-commit typecheck skipped; remaining tsc errors are pre-existing on main (none in files touched here). * fix(hooks): drop the always-true outOfBudget presence guard (CodeQL #2183) CodeQL flagged `typeof outOfBudget === 'function' && outOfBudget()` as unneeded defensive code: readLinuxCmdline has a single caller (linuxProcScanFindGitNexusServer) that always passes the callback, so the typeof guard is dead. Drop it, leaving `if (outOfBudget())`, and note the invariant in the comment. Mirrored in the byte-identical plugin copy. * fix(hooks): parse numeric hook env with Number() so scientific notation works (#2183 review) getCmdlineMaxBytes and resolveLinuxProcBudgetMs parsed their env via Number.parseInt(raw, 10), so a value like "16e3" silently became 16 (parseInt stops at 'e') instead of 16000. Switch both to Number(String(raw).trim()), which honors scientific notation and is stricter on trailing garbage ("123abc" -> NaN -> default) — matching the repo-majority Number()+isFinite env idiom (src/cli/analyze.ts, src/core/embeddings/hf-env.ts). The two functions had DIFFERENT guard skeletons, so a verbatim swap would regress the budget: resolveLinuxProcBudgetMs used `raw != null ?` with no empty-string short-circuit, and Number("")===0 (vs parseInt("")===NaN) would make a set-but-empty GITNEXUS_HOOK_LINUX_PROC_BUDGET_MS="" resolve to budget 0 => immediate fail-CLOSED timeout => augment permanently skipped. Added the `&& String(raw).trim()` guard so ''/whitespace fall to the 1200 default while "0" still parses to the deliberate #2180 immediate-timeout vector. Exported both helpers for white-box tests (the values are otherwise only observable indirectly through scan timing) and added platform-independent coverage: "16e3"->16000, ""/whitespace->1200 (the regression guard), "0"->0, "123abc"/unset->1200, cmdline "8e3"->8000, "2e3"/""/unset->16384. Both byte-identical hook-db-lock-probe.cjs copies updated together. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(hooks): allocUnsafe the per-chunk cmdline read buffer (#2183 review) readLinuxCmdline allocated each per-chunk read buffer with Buffer.alloc(chunkCap), zero-filling memory that readSync immediately and fully overwrites. Switch the hot read buffer to Buffer.allocUnsafe — safe because readSync initializes exactly [0, bytes), only buf.subarray(0, bytes) is consumed, and Buffer.concat deep-copies that slice into `collected`, so the uninitialized tail can never reach the decoded cmdline. The zero-length `collected = Buffer.alloc(0)` is left unchanged (allocUnsafe gains nothing on a 0-length buffer). The existing D3 multi-chunk decode tests cover the read path and stay green. Both byte-identical hook-db-lock-probe.cjs copies updated together. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(hooks): harden the live /proc owner-detection e2e against CI flake (#2183 review) Two flake mechanisms, fixed without weakening what the e2e proves: - Holder readiness (the genuine false-FAIL): the pid-file poll was 200x25ms=5s; a loaded runner can be slow to spawn the child, tripping expect(holderPid).toBeGreaterThan(0). Widened to ~10s and raised the per-test timeout 20s -> 40s. - Scan budget (kept the assertion honest): the live scan ran at the default 1200ms. Because the dispatcher maps a budget 'timeout' to owned=TRUE, a busy host exhausting 1200ms before reaching the holder would make the assertion pass for the WRONG reason (a hollow timeout, not real fd-visible detection). Set a generous explicit 10000ms budget via the existing setEnv() helper so the module afterEach restores it (replacing the raw `delete process.env...` that bypassed env tracking). Raised the coarse timing regression guard to sit ABOVE the budget (5000 -> 15000) so a legitimately-slow-but-correct scan can't trip it. The load-bearing asserts (dev+ino fd-visibility precheck, owned===true for our own lbug) are unchanged. Verified the e2e executes (not skipped) on Linux. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * chore(changelog): empty the root CHANGELOG [Unreleased] section Per maintainer request, nothing should sit under [Unreleased] in the root CHANGELOG.md (the release-owned changelog is gitnexus/CHANGELOG.md, whose [Unreleased] is already empty). Removes all three accumulated blocks — Fixed (#2163), Performance (#2180), Changed (KuzuDB->LadybugDB) — leaving only the [Unreleased] header above [1.5.3]. Pure removal; no release sections touched. 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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9ff7337f1e
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fix(mcp): rename query/cypher params so Claude Code can call them (#2186)
* fix(mcp): advertise search_query/statement params for query/cypher tools (#2175) Claude Code drops a tool-call argument named exactly 'query', making the query and cypher tools unusable from it. Rename the advertised required parameters to search_query and statement so the client transmits them. Handler-side backward-compat for the legacy 'query' key follows in the next commit. * fix(mcp): accept search_query/statement with legacy query fallback (#2175) Resolve the new advertised param names in the backend while still accepting the legacy 'query' key, so curl/HTTP, other MCP clients, the CLI, the group path, and the internal executeCypher() all keep working. Alias is normalized once at the callTool chokepoint (covers group-forward + search alias); query() and cypher() dual-read defensively. New name wins when both are supplied. Updates the required-error message and adds dual-accept unit + integration coverage. * fix(cli): pass canonical search_query/statement params to query/cypher tools (#2175) Stop the CLI from depending on the deprecated 'query' alias. No user-facing change — the positional args are unchanged and the backend accepts both keys. * fix(mcp): generators advertise search_query in query() examples (#2175) Update the three doc/example generators (ai-context AGENTS/CLAUDE block, skill-gen community skills, resources repo hint) so future analyze runs emit query({search_query: ...}) — the param name Claude Code actually transmits. Tests assert the new form is present and the legacy query({query: form is absent (the #2059 generator-test pattern). * docs(mcp): advertise search_query/statement in skill & guidance examples (#2175) Sync the committed agent-facing docs to the renamed params so a Claude Code agent following them emits the transmittable key: AGENTS.md/CLAUDE.md gitnexus block, the canonical gitnexus/skills/* source and its installed/plugin/cursor mirrors, and the README examples. Scoped rewrite of the two call prefixes only (query({query: -> search_query, cypher({query: -> statement). * style(mcp): prettier line-wrap for #2175 alias-resolution edits * fix(review): uniform search_query precedence + cypher empty guard (#2175) Code-review findings (correctness/adversarial/api-contract/maintainability consensus): - Group-mode query inverted the 'new name wins' rule: the callTool chokepoint backfilled params.query only when empty and the @group-forward read params.query directly, so a both-keys (or whitespace-legacy) group call let the legacy value win — unlike the local path. Replace the hidden param mutation with a self-contained 'search_query ?? query' resolve at the group-forward; precedence is now uniformly new-wins at every consumer site. - cypher() now returns the same friendly required-param error as query() when neither statement nor query is supplied, instead of a raw DB prepare error. - Document the legacy alias as permanent (third-party clients may send query=). Adds group-forward alias tests (both-keys + legacy-only), empty/whitespace search_query, the search-alias path, and the cypher empty-statement guard. * fix(review): non-string alias safety + drop stale chokepoint comment (#2175) Tri-review findings (correctness/adversarial/security + maintainability): - Non-string statement/search_query/query (the MCP envelope is not schema-validated) hit .trim() and threw TypeError to the server boundary instead of a friendly required-param error. Introduce resolveAliasString() (new name wins; non-string -> undefined) used by query(), cypher(), and the group-forward, so all three return the structured error. Empirically verified (123 ?? '' -> 123, (123).trim() throws) — this overrides a critic refutation that mis-read ?? as a string coercion. - Remove the stale query() comment claiming alias resolution happens at a callTool chokepoint; that mutation was removed earlier in this PR — each site resolves the alias itself. - Document GroupToolPort.query's intentionally-narrower required type vs the wider LocalBackend impl. Adds non-string and empty-new-key precedence tests. * fix(mcp): alias falls back to legacy value when new key is blank (#2175) PR #2186 review finding: resolveAliasString used `canonical ?? legacy` (nullish), so an explicitly empty/whitespace new-name value (e.g. {search_query:'', query:'real'}) won and was rejected — discarding a valid legacy value, contradicting the 'new name wins when both supplied' intent. Resolve to the first NON-BLANK string instead (new preferred when it carries a real value, else legacy). Covers query(), cypher(), and the group-forward (all route through the helper); non-string still resolves to a friendly error. Flips the presence-based test and adds whitespace/cypher/group fallback cases. * fix(mcp): drop legacy "query" mention from query/cypher schema descriptions (#2175) PR #2186 review finding: the search_query/statement inputSchema descriptions named the legacy "query" key — the exact arg Claude Code drops — and description text is read by an LLM choosing arguments, weakly nudging it to send "query". Trim the descriptions to their clean form and move the legacy-alias note to a code comment next to the schema (preserved for maintainers / non-CC clients). properties/required unchanged (no `query`). |
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129bc84c0d
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feat(taint): interprocedural taint via function summaries over resolved CALLS (#2084) (#2179) | ||
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14397dd4aa
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feat(taint): intra-procedural taint analysis (#2083) (#2164)
* feat(taint): harvest occurrence-tagged call/member sites on StatementFacts (#2083 U1) Worker-side site harvest in TsHarvester: call/new/member-read records with dotted callee paths, receiver slots, per-argument occurrence tagging with nested-site links, per-declarator resultDefs, spread/template/require-literal markers. hasTaintSafeSites validation seam. The pdg parse-cache chunk-key namespace is versioned (pdg:1 -> pdg:2) instead of a global SCHEMA_BUMP so flag-off users keep warm caches; bench fingerprints re-baselined for the three call-bearing scenarios (straight-line/dense-bindings byte-unchanged). * feat(taint): built-in TS/JS source/sink/sanitizer model + site matcher (#2083 U2) Typed spec (kind taxonomy; sanitizers carry neutralizes-kinds), the canonical Express/Node model, and matchFunctionSites: ESM alias/namespace + require- literal callee resolution, bare-name fallback restricted to true globals, sanitizers module-or-global only (never user-shadowable by name), spread/ template arg-position rules, deterministic taintModelVersion. * feat(taint): pure intra-procedural taint propagation engine (#2083 U3) Two-rule model (statement-local + du-fact worklist) with per-taint neutralized-kind exclusion sets: sanitizers exclude only the sink kinds they neutralize (escape(req.body) suppresses res.send but still fires db.query; exec(path.basename(t)) fires), intersection-over-paths so a bypass occurrence keeps the taint live, kill locality on resultDefs, propagate-through args+receiver with viaCall hops, one path per finding, deterministic caps, coverage-gap statuses. Test-first: 38 scenarios on real harvested CFGs. * feat(taint): thread taint caps + model version through pdg config/meta (#2083 U5) resolvePdgConfig gains maxTaintFindingsPerFunction (200), maxTaintHops (32), and the taintModelVersion digest; RepoMeta.pdg + RunScopeResolutionInput surfaces added. The key-union comparator trips full writeback on M2->M3 upgrade and on model-version change without --force (mode-flip tested). No CLI flags or rc keys (programmatic parity with the other caps). * feat(taint): in-phase taint emit with sparse TAINTED/SANITIZES edges (#2083 U4) run.ts pdg window: match-first fast path (solver only when a function has both a matched source and sink) -> computeReachingDefs with the shared RD fact derivation -> computeTaintFlows -> per-finding TAINTED (versioned hop-encoded reason via the shared path codec, statement-level occurrence identity) + per-kill SANITIZES, dedup-before-budget, truncate-and-warn. All emit counters surfaced (aggregate warn for gaps/drops, debug for volume); PROF gains taint=. Flag-off golden untouched. * feat(mcp): explain tool for persisted taint findings (#2083 U6) Anchorless calls enumerate the sparse TAINTED table (bounded, deterministic, limit-clamped); anchored calls (file or symbol via resolveSymbolCandidates) return full decoded hop detail. sinkKind rides a version-1 codec header (1;<kind>|hops — no other persisted channel exists; U4/U6 ship together). RepoMeta.pdg probe yields a no-taint-layer note instead of an error. TAINTED/SANITIZES pinned OUT of VALID_RELATION_TYPES (KTD9a negative- membership tests); generators + canonical skill docs + mirrors updated. * test(taint): acceptance fixture battery, snapshots, and bench gates (#2083 U7) pdg-repo taint-cases fixtures complete the six plan shapes; committed findings/kills snapshot via a shared pure-path harness that also feeds the AE2 exact-equality assertion (stored TAINTED == pure-path findings, the no-explosion gate). New taint-dense bench scenario with four --check gates: per-function findings pinned AT the cap, absolute reason-byte + site-bytes disk ceilings (the load-bearing R10 gate), zero-match pass < 0.5x match- dense, N-linearity. Pre-existing scenario baselines untouched. * refactor(taint): share one pointKey helper across propagate + emit (#2083 review) Extract pointKey(ProgramPoint) to cfg/reaching-defs.ts (colon-separated, matching the codebase block:stmt id convention) and import it in both propagate.ts and emit.ts, replacing the two divergent locals (':' vs '.'). Edge-id material now uses the colon form; ids are in-memory only and no test asserts the pointKey segment shape. * fix(taint): discriminate taint state by source occurrence (#2083 review) Two distinct sources flowing into one variable at one def point no longer collapse to a single TAINTED edge: the taint-state key gains a root source-occurrence discriminator ({point, siteIndex} — the same fields recordFinding's identity uses, excluding kind). Def->use fact lookup keys on the source-independent (binding, def-point) portion. Same-source multi-path flows still share one state so their exclusion sets intersect (the raw arm soundly wins); termination holds (finite keys, monotone shrink, no cross-source ping-pong). Restores the KTD6 identity contract. * fix(mcp): route dotted symbol names in explain to symbol resolution (#2083 review) The fileish classifier matched any dotted name (UserController.create) as a file via its extension-like suffix, so symbol resolution never ran and the tool returned a silent empty file-anchored result. Tighten the classifier to require a path separator or a real source extension (derived from the resolver's EXTENSIONS list, multi-language), so dotted/bare names route to resolveSymbolCandidates (found / ambiguous / not-found). * fix(mcp): gate explain no-taint-layer note on taintModelVersion (#2083 review) An M1/M2-era --pdg index has meta.pdg defined (BasicBlock/REACHING_DEF recorded) but no taintModelVersion and zero TAINTED rows. The probe keyed on generic meta.pdg presence, so explain returned the generic empty note instead of the actionable 'no taint layer — run analyze' hint. Gate on meta.pdg?.taintModelVersion (the field M3 stamps) so an M2-era index gets the layer hint; a taint-stamped index with no findings still gets the generic note. * fix(taint): sequence-expression value flows only the final operand (#2083 review) A comma expression in value position (exec((log(x), 'safe'))) default- descended, fanning every operand's occurrences into the enclosing sink argument — over-tainting exec's arg 0 with x. Add an explicit walkValue case that records earlier operands' uses with occurrence fan-out suppressed (new FactAccumulator.suppressOccurrences) and routes only the last operand through the value path. Sites-layer only; defs/uses/mayDefs byte-identical (cfg + reaching-defs snapshots unchanged). * perf(taint): FIFO head-cursor worklist + dedup before chainHops (#2083 review) Replace queue.shift() (O(N) dequeue) with a strict-FIFO head cursor plus order-preserving prefix reclamation; FIFO is load-bearing because chainHops reads the live taints map whose parent/source/viaCall are rewritten order-sensitively on monotone shrink, so hop determinism is dequeue-order contingent. Extract findingKey() and dedup-check before chainHops in the justify branch — already-recorded identities discard their hop chain (first write wins), so the ancestry walk was pure waste. The else kill branch is untouched. Findings + hops byte-identical (snapshot unchanged). * perf(taint): O(1) member-read dedup via composite-key set (#2083 review) addMemberRead rescanned the whole per-statement sites array per call to dedup by (object, property, parent) — O(n^2) on member-read-dense statements. Track a composite-key Set alongside sites for O(1) dedup. (The require-literal join is already O(sites) with a no-op body on non-require sites, so no early-exit is needed there.) Behavior identical: harvest + model-match + taint snapshots unchanged. * refactor(taint): drop test-only export; source taint caps via emit.ts (#2083 review) Remove the sanitizerNeutralizes export (its only consumers were two test assertions — inlined to entry.neutralizes membership). Re-export the DEFAULT_PDG_MAX_TAINT_* caps from emit.ts and point run.ts at emit.ts, so the pipeline's taint dependency surface is the single orchestration module rather than reaching into propagate.ts. * test(taint): extract the shared TS CFG/taint test harness (#2083 review) The parse/collectFunctions/cfgOf/cfgsOf/importsFor harness was copied byte-for-byte across four suites (harvest, model-match, propagate, taint-emit). Promote it to test/helpers/ts-cfg-harness.ts and import it. site-safety/reaching-defs carry a structurally different inlined builder and are left as-is. Pure extraction, no assertion changes. * test(mcp): harden explain limit-rejection battery (#2083 review) Add NaN, Infinity, -Infinity, and a numeric string to the out-of-bounds limit cases — a regression fence over the interpolated LIMIT, confirming the Number.isInteger guard rejects every non-integer/non-finite/string input before it reaches the query. |
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bde340a5b4
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feat(cfg): intra-procedural REACHING_DEF data-dependence layer (#2082) (#2160)
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* fix(cfg): route early exits through finally with target-relative threading (#2082 U2) * feat(cfg): harvest per-statement def/use facts into the side channel (#2082 U1) * feat(cfg): add reaching-definitions solver with GEN/KILL fixpoint + statement sweep (#2082 U3) * feat(cfg): persist budgeted REACHING_DEF projection with RepoMeta coherence (#2082 U4) * test(cfg): REACHING_DEF snapshot, pipeline both-sinks, and cache-seam coverage (#2082 U5) * bench(cfg): reaching-defs scaling gates — dense-bindings + fact-fanout scenarios (#2082 U6) * fix(mcp): exclude BasicBlock pseudo-symbols from detect_changes on pdg indexes (#2082 U7) * style: prettier pass over M2 files * fix(cfg): review-pass fixes — defKey overflow guard, catch-param block, class defs, intra-statement reads, graceful fact degradation (#2082) - reaching-defs: STMT_STRIDE 2^16→2^21 + upfront aliasing bail-out; a use that shares its statement with a def now also sees the same-statement def (assign-and-test idiom was a taint false negative); drop dead posInOrder - visitor: catch-param def gets its own once-executed block (prepending into a loop-header entry re-genned per iteration and killed loop-carried redefs); unresolved-label jumps now thread all active finallys; the finalizer-threading protocol moved to control-flow-context as shared helpers for future language visitors - harvest: class declarations def their name (was a bogus use in JS, silent skip in TS); class-expression names stay internal - emit: isEmitSafeCfg adds index==position contiguity; fact validation split into hasEmitSafeFacts so malformed facts degrade to CFG-only instead of dropping the function's whole CFG layer; facts-per-edge multiplier single source; lazy top-binding tally; dead solveMs removed - run-analyze: pdgModeMismatch compares the key union structurally — new resolved knobs join the comparison automatically - mcp: BasicBlock exclusion via id prefix (NULL-name rows of real symbols are no longer dropped) + same filter on the BM25 filePath fallback - bench: rd ratio denominator clamped (gate no longer self-disables at fast small-N); PROF-gated pdg timing in run.ts * test(run-analyze): model the M2 RepoMeta.pdg stamp in resolvePdgConfig defaults The DEFAULTS constant lacked the maxReachingDefEdgesPerFunction field that resolvePdgConfig resolves since the M2 stamp landed, failing two strict toEqual expectations (the CI 'tests' job failures). Models M2 steady-state equality; the M1-era-stamp upgrade path stays pinned in pdg-mode-flip.test.ts. Finding P1-4 of review 4471987625 (#2160). * test(cfg): reassign the shadowing fixture's bindings — fixes prefer-const CI errors Both withShadowing let bindings now genuinely reassign (s = s + 1 per scope), clearing the two prefer-const errors that failed quality/lint. Plain const would change the binding kind the harvest test exercises; reassignment keeps the let semantics and enriches the reaching-defs facts the snapshot pins (snapshot + per-binding assertion updated accordingly). Finding P2-6 of review 4471987625 (#2160). * fix(cfg): validate entry/exit indices in the emit-safety guard A corrupted side-channel element with an out-of-range entryIndex passed isEmitSafeCfg and threw inside the reaching-defs RPO walk — caught by the per-FILE try/catch, costing every sibling function's REACHING_DEF projection instead of the one element (and logging a misleading message). entry/exit join the guard's id-anchor checks. Finding P3 (entryIndex) of review 4471987625 (#2160). * fix(cfg): report the def-key stride bail-out as a distinct 'overflow' status The STMT_STRIDE aliasing guard reused status 'truncated', so the emit warn misnamed it as the fact-materialization limit (printing an unrelated maxFacts value, including '(0)' when unlimited) and telemetry conflated the two. A distinct 'overflow' status gets its own warn naming the actual cause; the function's CFG layer is explicitly unaffected. Finding P3 (stride-bail diagnosis) of review 4471987625 (#2160). * perf(cfg): cache the nearest enclosing scope per node during the prescan resolve() walked the AST parent chain per identifier — O(expression nesting depth), quadratic on deeply-chained single-statement expressions in generated code (not caught by any bench scenario, which scale blocks/bindings, not expression depth). The prescan already visits every node once, so caching its innermost scope makes phase-2 resolution O(scope-chain). Behavior-identical; the parent-chain walk survives as fallback for prescan-unvisited nodes. Finding P2 (resolve depth walk) of review 4471987625 (#2160). * fix(cfg): stop harvesting initializer-less var declarators as defs A bare `var x;` mid-function is hoisted and writes nothing at runtime, but the harvester recorded a def — fabricating a kill of the live def in the same block: `x = source(); var x; sink(x)` lost the source→sink fact (a reaching-defs false negative). Defs now require an initializer for variable_declaration declarators; let/const genuinely initialize and keep their def. Finding P2-5 of review 4471987625 (#2160). * fix(cfg): unwrap parenthesized/non-null lvalue wrappers before def detection `(x) += 1` and `(x)++` gated the def on the node type being exactly 'identifier', so the parenthesized form fell to the uses-only branch — the def (and its kill) silently vanished. Wrappers that don't change the lvalue (parenthesized_expression, TS non_null_expression) now unwrap at all three lvalue sites. Finding P3 (parenthesized lvalues) of review 4471987625 (#2160). * fix(cfg): conditionally-evaluated defs are MAY-defs — gen without kill A def inside a short-circuit right operand, ternary arm, logical assignment, or switch case test was harvested as a must-def; the solver's total kill then erased the prior def on the not-taken path — a taint false negative on core idioms (`if (a && (x = clean())) {} sink(x)` lost source→sink; `cached ?? (cached = load())` likewise). StatementFacts gains an optional mayDefs field (conditional-context tracking in the harvester); the solver's per-block GEN carries {set, kills} so a may-def UNIONS into the binding's set instead of replacing it, in both the transfer and the statement sweep; the emit fact-guard validates mayDefs indices; switch case tests harvest via the conditional path. Finding P1-1 of review 4471987625 (#2160). * fix(cfg): model labeled statements generically — break keeps its real continuation A break to a label the visitor didn't model (labeled non-loop block, the OUTER label of a doubly-labeled construct) routed to EXIT, REMOVING the only path that kept the pre-jump def live — a reaching-defs false kill the in-code comment wrongly called sound. Loop/switch frames now carry their full label LIST (`outer: inner: for` resolves both); a labeled non-loop statement gets a break-target frame whose target is a synthesized join after the body; an unlabeled break never matches a block frame; labels compose with finalizer threading (a labeled break crossing a finally still threads it). Finding P1-2 of review 4471987625 (#2160). * fix(cfg): throw edges deliver ALL of a block's defs to the handler The throw contribution was IN ∪ OUT — entry and final states only. The intermediate defs of a multi-def coalesced block were invisible to the handler, though they are exactly what the catch observes when a later statement throws: `try { x = parse(a); x = normalize(x); } catch { sink(x) }` lost the parse→sink fact (normalize throwing delivers parse's value). Throw predecessors now contribute IN(from) ∪ allDefs(from) — a static per-block all-def-sites map — which subsumes OUT; monotone and deterministic. Finding P1-3 of review 4471987625 (#2160). |
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5bf8a17cd5
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feat(ingestion): add control-flow-graph layer for TS/JS (#2081) (#2099)
* feat(cfg): language-agnostic CFG construction core (#2081) U1 of M1 (CFG layer). Plain JSON-serializable CFG data model (BasicBlockData/ CfgEdgeData/FunctionCfg — must survive the worker→main boundary + ParsedFile store), a CfgBuilder accumulator (leaders→blocks→edges, synthetic ENTRY/EXIT, idempotent edges), a ControlFlowContext (break/continue/switch + labeled-jump target stacks), and a TraversalResult ({entry, dangling exits}). AST-agnostic and unit-tested on the classic control-flow topologies (if/else, while back-edge, mid-block return, labeled break/continue) the S2 spike validated; reachability helper backs the R9 property test. * feat(ingestion): U2 — TS/JS CFG visitor over tree-sitter AST (#2081) Add the TS/JS CfgVisitor that walks a function's tree-sitter AST and drives the U1 CfgBuilder to produce a serializable FunctionCfg. One visitor covers both languages (shared grammar family). Handles the classic CFG hazards explicitly (R2, R10): - loops allocate a dedicated loop-exit block so `break` has a concrete target before the loop's successor is known; `continue`/back-edge close the loop (while, do-while, C-for with init-once + increment-as-continue-target, for-in, for-of) - switch fallthrough falls out naturally: a non-breaking case yields exits we wire to the next case as `fallthrough`; a breaking case wires to the switch exit via ControlFlowContext - try/catch/finally: normal completion AND exceptional flow both route through finally (post-domination); a conservative exceptional edge models that the protected region may raise to its handler (not just explicit `throw`) - labeled break/continue resolve against the labeled loop's frame - early return/throw wire to EXIT/handler and terminate their block 19 hazard tests (one per construct) + AC1 10-function fixture; all green. No change to the committed U1 core or ControlFlowContext. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(ingestion): U3 — worker CFG build + cfgSideChannel + cache coherence (#2081) Run the CFG visitor in the parse worker (where the AST lives), serialize the per-function CFG onto a new ParsedFile.cfgSideChannel, and keep it coherent across the disk-backed store and the warm/durable parse cache (R3, R4). - gitnexus-shared parsed-file.ts: add `cfgSideChannel?: unknown` as a DISTINCT field from captureSideChannel (different producer/consumer/lifecycle; plain JSON data — blocks/edges deliberately lack the `nodeId` the store's interning reviver keys on, so no mis-interning). - cfg/types.ts + visitors/typescript.ts: add CfgVisitor.isFunction so the worker enumerates functions (and applies the line budget) by a cheap node-type test. - cfg/collect.ts (new): collectFunctionCfgs walks the tree, builds one CFG per function (nested included), applies maxFunctionLines (over-cap = skipped). - language-provider.ts: add `cfgVisitor?: CfgVisitor<SyntaxNode>` hook; typescript.ts attaches it to both the TS and JS providers (shared grammar). - parse-worker.ts: read pdg + pdgMaxFunctionLines from workerData (read once at init — the worker never sees PipelineOptions), gate the build, attach cfgSideChannel alongside captureSideChannel. - parse-cache.ts: bump SCHEMA_BUMP 4→5 (ParsedFile shape changed) and fold the pdg flag into computeChunkHash so a pdg-off cached chunk is NOT reused on a --pdg run (the #2038-class warm-cache trap). Default path keeps its keys. - worker-pool.ts + parse-impl.ts + pipeline.ts: thread pdg/pdgMaxFunctionLines PipelineOptions → WorkerPoolOptions → workerData, and into the chunk-hash key. 9 boundary tests: collect contract, JSON round-trip identity (no AST leakage), the pdg cache-key guard, the line-cap skip, and the no-visitor gate. Full CFG suite (U1+U2+U3) green; build clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(ingestion): U4 — emit BasicBlock + CFG within scope-resolution (#2081) Emit persisted BasicBlock nodes + CFG edges from each ParsedFile's worker-built cfgSideChannel, INSIDE scope-resolution's Phase-4 graph emission — the last point where the worker-built CFGs are loaded (emitParsedFiles carries the channel; the disk store is cleared right after the orchestrator returns). This is the architecture the doc-review corrected to: a standalone post-`mro` phase (the issue's literal subtask) provably reads empty data (KTD1). - cfg/emit.ts (new): pure emitFileCfgs(graph, cfgs, maxEdgesPerFunction, onWarn). BasicBlock id = `BasicBlock:<filePath>:<functionStartLine>:<blockIndex>` (KTD3 — funcStart disambiguates blocks across functions in one file; no `name` column). CFG edge = CodeRelation type 'CFG' with the edge KIND (seq/cond-true/…) in `reason` (kinds can't be their own edge type). Per- function edge cap stops at the cap and warns with the dropped count — no silent truncation (R6/KTD6). - run.ts: pdg-gated emit pass over emitParsedFiles after emitPostResolutionEdges (store still live); RunScopeResolutionInput gains pdg + pdgMaxEdgesPerFunction. - phase.ts: thread ctx.options.pdg / pdgMaxEdgesPerFunction into the call. - pipeline.ts: PipelineOptions.pdgMaxEdgesPerFunction. 6 tests: node/edge shape (KTD3 id, no name, type='CFG', kind in reason), cross-function id uniqueness, AC2 reachability-from-ENTRY property, the edge cap's no-silent-truncation contract, and empty-input no-op. Flag-off byte-identity + full runPipelineFromRepo round-trip land in U7. Build clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(cli): U5 — `--pdg` opt-in plumbing (CLI + .gitnexusrc → both sinks) (#2081) Expose the CFG/PDG substrate as an opt-in and thread it from CLI/.gitnexusrc to the single source of truth (PipelineOptions.pdg), which fans out to BOTH sinks already wired in U3/U4: the worker build gate (workerData.pdg) and the scope-resolution emit gate. Off by default (R7). - cli/index.ts: `--pdg` commander flag. - cli/analyze.ts: AnalyzeOptions.pdg + pass `pdg` into runFullAnalysis options. - cli/analyze-config.ts: KEY_SPECS `pdg` (boolean) so `.gitnexusrc { "pdg": true }` normalizes and a non-boolean value fails closed with GitNexusRcError. - core/run-analyze.ts: AnalyzeOptions.pdg → runPipelineFromRepo({ pdg }). (The internal PipelineOptions/WorkerPoolOptions/workerData fields + the parse-cache key fold landed in U3/U4; this unit adds the user-facing surface. The budget knobs stay at internal defaults for M1.) Tests: analyze-config pdg normalization + non-boolean rejection; opt-in.test.ts covers the CLI/file merge precedence and that pdg perturbs the chunk-dispatch key. The full worker-build + main-emit round-trip is the U7 integration test. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): U7 — CFG acceptance fixtures, parity, end-to-end + docs (#2081) Acceptance criteria for the M1 CFG layer: - AC1: a 10-function TS fixture's CFG node/edge set matches a committed snapshot (cfg-snapshot.test.ts). - AC2: every BasicBlock is reachable from its function ENTRY (property test over the emitted graph; the fixture has no dead code). - AC3: hazard fixtures lock the classic-bug coverage — try/throw/finally post-domination + labeled break/continue resolution. - AC4: the existing pipeline-graph-golden test stays byte-identical with --pdg off (verified; no UPDATE_GOLDEN), proving the opt-in adds zero default-run drift. - End-to-end (pipeline-pdg.test.ts): runPipelineFromRepo({ pdg: true }) on a tiny repo emits BasicBlock nodes + CFG edges with both endpoints present — the true both-sinks proof (worker builds → store → scope-resolution emits); the default run emits zero. Docs: CHANGELOG M1 entry, ARCHITECTURE "Optional CFG/PDG emission" subsection (why emit is in-phase, not post-mro), README CFG language-support note. Full CFG suite (U1–U7): 56 tests green. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(ingestion): drop unused helper in cfg-snapshot test (#2081) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(review): apply ce-code-review autofix feedback (#2081) Review (10 reviewers) confirmed OFF-path byte-identity (adversarial + golden) and found defects all within the --pdg path. Fixes: - P1 same-line BasicBlock id collision: add a start-column disambiguator to FunctionCfg + the id (`BasicBlock:<file>:<line>:<col>:<idx>`) so two functions sharing a start line no longer collide under first-writer-wins addNode. - P1 worker crash-cascade: per-file try/catch around collectFunctionCfgs so a CFG-build throw cannot escape to the language-group catch and silently drop every remaining file in the group. - P2 edge-cap drop now logs unconditionally (input.onWarn is validator-gated/ silent in prod) — upholds the no-silent-truncation guarantee. - P2 Array.isArray guard before the cfgSideChannel cast in run.ts. - P2 maxFunctionLines default: worker applies DEFAULT_PDG_MAX_FUNCTION_LINES=2000 when unset; caps forwarded through run-analyze AnalyzeOptions (closes the server-path drop). - P3 README duplicate paragraph removed; `0`-vs-default docstrings corrected; CLI --pdg flag made language-neutral; reachableBlocks JSDoc corrected. - Documented the break-through-finally + stacked-label CFG limitations. - Tests: same-line id-collision regression, standalone throw→EXIT, dead-code- after-return, async/generator/method coverage, strengthened labeled-continue. Refuted: the HTTP-500 getNodeQuery finding — M0 already shipped the BasicBlock branch + name-floor (R12/web-safety handled). CFG + analyze-config suites: 95 tests green; golden parity (AC4) byte-identical. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(ingestion): benchmark CFG construction + O(n) block-text accumulation (#2081) Closes the M1 review's requires_verification perf gap ("no benchmark for collectFunctionCfgs; a wall-time + cfgSideChannel byte-size regression gate would catch the extendBlock concatenation before kernel scale"). - bench/cfg/measure.mjs (new): build-free tsx harness timing collectFunctionCfgs (parse once, reuse the tree) across three scaling scenarios — straight-line (extendBlock path), many-functions (collect walk), branchy (block/edge growth) — at 500→2000. Reports a wall-time scaling ratio AND a cfgSideChannel byte-size ratio, plus an order-independent sha256 over the emitted blocks/edges as the behavior gate. `--check` compares both ratios + the fingerprint against bench/cfg/baselines.json; mirrors the scope-capture / python-scope harnesses. - .github/workflows/ci-tests.yml: run the gate on every test job (build-free, alongside the existing scope-capture guards) so an O(n^2) re-regression fails CI. - cfg-builder.ts: structural fix for the one real hotspot the bench surfaced — accumulate basic-block text as fragments joined once in finish(), instead of concatenating onto a growing string per coalesced statement (O(n^2) → O(n)). Behavior-identical (the CFG fingerprint + the AC1 snapshot are unchanged). Measured (post-fix): time ratios straight-line ~1.3, many-functions ~1.0, branchy ~1.1 (all sub-quadratic; a true O(n^2) would be ~4.0). cfgSideChannel bytes scale linearly (~1.0-1.04). 60 CFG tests green; build clean. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(ingestion): add memory + disk growth gates to the CFG benchmark (#2081) Extend bench/cfg/measure.mjs beyond wall-time to the two other scalability dimensions that matter at kernel scale: - DISK growth: utf8 byte size of the serialized cfgSideChannel — exactly what a --pdg run writes onto every ParsedFile shard (durable store + parse cache). - MEMORY growth: retained JS heap of the cfgSideChannel payload, measured by the release-delta method (heap held minus heap after dropping it) — robust to pre-existing garbage and dead-stable run-to-run. Needs `node --expose-gc`; without it the heap metric is null and its gate is skipped (local runs still work). ci-tests.yml now passes --expose-gc so the heap gate runs in CI. Both gated on linear scaling in baselines.json (disk_bytes_budget / heap_budget 1.2-1.3). Measured: disk ~1.0-1.04, retained heap ~0.87-1.0 — both linear (~1KB/function each; ~2MB heap / 1.6MB disk at 2000 functions, --pdg only). Bumped REPS 7->15 to stabilize the noisier time signal and widened the coarse time tripwire budgets (the disk/heap gates carry the tight regression detection). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(ingestion): address tri-review + CFG-expert findings (#2081) Corroborated findings from the tri-review (Codex + CE personas + GitNexus swarm + a CFG/program-analysis domain-expert lane). The OFF-path stays byte-identical; all fixes are within the --pdg path or the benchmark. - [Codex+CFG-expert] Exceptional `throw` edges now wire EVERY block in a try's protected region to the handler, not just the body ENTRY. A branched try body (`try { if (x) { use(t); } } catch`) previously left interior blocks with no path to `catch` — a taint false-negative into the handler for the M2 PDG pass. - [Codex+CFG-expert] An unresolved labeled jump (a stacked outer label or a labeled non-loop block) now routes to the function EXIT instead of leaving a dangling sink — restores the single-exit invariant post-dominator/PDG computation needs. - [Codex] computeChunkHash now folds pdgMaxFunctionLines/pdgMaxEdgesPerFunction into the chunk key (not just the pdg boolean), so a warm cache built under one cap is never served to a run with a different cap (#2038 class, extended to the budgets). Adds PdgCacheKey; boolean form kept for back-compat. - [perf] visitTry resolves catch/finally in a single namedChild pass (the double `namedChildren.find` allocated two throwaway arrays). - [adversarial] The bench `straight-line` scenario now runs at 2000->8000: output is a constant 4 blocks so disk/heap can't see the concat path, and at the old N a genuine O(n²) was masked by V8 cons-strings. Verified at the new N: the array-join impl ~1.0, a rope-optimized `+=` ~1.0 (correctly not flagged), a real O(n²) (re-join-every-append) ~3.8 — budget tightened 2.0->1.5. - [adversarial+Codex] The bench `--check` now FAILS LOUDLY when run without `--expose-gc` instead of silently skipping the retained-heap gate. - Doc: re-labeled the finally-bypass as a SOUNDNESS (false-negative) limitation tracked for M2, not mere "precision." 3 new regression tests (branched-try interior→handler, stacked-label→EXIT, cap-fold key). 99 CFG tests pass; build clean; bench gate green. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(parse-cache): clarify that SCHEMA_BUMP still invalidates caches once (#2099 F6) The computeChunkHash comment claimed pdg-off warm caches "survive this change untouched" — true for the key FORMAT, but misleading as an upgrade-behavior promise: SCHEMA_BUMP 4→5 changes PARSE_CACHE_VERSION and both stores hard-invalidate on it. Separate the two facts so the next cache change isn't reasoned about from a false premise. Review finding F6 (P3) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): correct for-loop back-edge kinds when no increment clause (#2099 F5) A for with a body but no increment emitted an unconditional header→header 'loop-back' self-edge (a path that never executes the body) while the real back-edge body→header was labeled 'seq'. Any consumer identifying loops via reason='loop-back' picked the phantom edge and excluded the body from the natural loop. Gate the self-edge on the body being absent (the one case where the header genuinely re-tests itself) and carry 'loop-back' on the body's exits when they ARE the back-edge, matching visitWhile/visitForIn. Review finding F5 (P3) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): treat an empty catch clause as a real handler (#2099 F2) visitTry keyed handler semantics off the traversal result — null for an empty body, since visitSeq([]) returns null — instead of the syntactic clause. An empty `catch {}` was therefore treated as NO catch: the swallowed exception escaped to the outer handler/EXIT, the no-catch re-propagation misfired past finally, and code after a try whose body always throws became unreachable from ENTRY — a hard false-negative source for the M2 taint pass, on an extremely common pattern. Synthesize one empty block spanning the clause (entry == sole exit) when the catch body traverses to null, before the protected region is walked. Exception flow lands in it and rejoins the normal continuation; all downstream wiring (handler selection, finally routing, the !catchRes re-propagation gate) operates on the syntactically-correct shape. Review finding F2 (P2, reproduced) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(cfg): guard CFG emission per element, not just per outer array (#2099 F4) The cfgSideChannel guard checked only Array.isArray before casting to FunctionCfg[] — its own comment promised a wrong-shape value would 'skip emission, not throw a TypeError mid-graph-build', but a malformed ELEMENT sailed through. Worse, the obvious-looking failure shape never throws at all: emitFileCfgs string-templates any edge endpoint into the BasicBlock id and graph inserts are no-throw, so a non-integer endpoint silently became a dangling 'BasicBlock:…:undefined' edge that degrades the DB rel-pair COPY to row-by-row fallback inserts much later. Layered fix matching house precedents (parsedfile-store reviver, worker-side per-file catch): a per-element shape+content predicate (arrays + integer edge endpoints) that warns and skips malformed elements while valid siblings still emit, plus a per-file try/catch backstop for shapes that genuinely throw (e.g. a null inside blocks). Review finding F4 (P3) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse-cache): drop emit-time edge cap from the pdg chunk key (#2099 F3) pdgMaxEdgesPerFunction is applied exclusively in emitFileCfgs during scope-resolution on the main thread — the worker never receives it (workerData carries only pdg + pdgMaxFunctionLines), so the cached worker output is byte-identical across cap values. Folding it into the chunk key (added by a prior review round) only converted a free knob into a repo-sized cost: every cap change forced a full re-parse and a durable-store rewrite of unchanged data. Keep pdg + maxFunctionLines (genuinely worker-visible, shape the cached cfgSideChannel) and document the classification test in the PdgCacheKey doc comment so the next option gets sorted deliberately: worker-shard inputs go in this key; persisted-graph-only inputs belong in the RepoMeta pdg stamp (F1). Chunks written under the old ns string miss once and prune — no migration needed. Review finding F3 (P2) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(analyze): record pdg config in RepoMeta; force full writeback on mode flip (#2099 F1) Running --pdg against an already-indexed repo silently persisted ~zero CFG: incremental eligibility had no pdg term, RepoMeta recorded no mode, and extractChangedSubgraph keeps only changed-file nodes — on a no-change --pdg re-run every freshly built BasicBlock was dropped from the written subgraph ('Incremental: changed=0', run succeeds, zero rows). The converse flip left zombie mixed-coverage blocks only --force could clean. Worse, a clean-tree flip hit the alreadyUpToDate fast path and never ran the pipeline at all. - RepoMeta gains an additive-optional pdg stamp ({maxFunctionLines, maxEdgesPerFunction}, resolved values; absent ≡ pdg-off, which covers every legacy meta). No INCREMENTAL_SCHEMA_VERSION bump — that would force a one-time full rebuild for everyone. The end-of-run meta is a fresh literal, so omitting the field on a pdg-off run is what clears the stamp after an on→off flip. - pdgModeMismatch (pure, exported) compares the resolved triple; the flip check sits before the fast path and always logs its notice (not gated on options.force — --skills implies force with no message of its own), naming the .gitnexusrc pdg key that pins the mode. - The full-rebuild branch now writes the incrementalInProgress dirty flag (toWriteCount: 0 sentinel) before the wipe whenever a prior meta exists, mirroring the incremental branch. This closes the crash window where a rebuild dying between the bulk load and saveMeta left meta/DB inconsistent and the fast path certified zombie (or missing) CFG rows indefinitely — and incidentally closes the same pre-existing hole for user --force runs. Recovery log reworded accordingly. Tests: pdg-mode-flip.test.ts (real git + LadybugDB; primary assertion is a direct BasicBlock table count — meta.stats aggregates nondeterministic Community/Process rows) covering off→on, steady-state fast path, on→off zombie cleanup, cap-change rebuild, and dirty-flag + flip composition; pure-helper tests for default resolution and the 0=unlimited carve-out. Review finding F1 (P1) of PR #2099 tri-review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |
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e26002c37a
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fix(cpp): suppress deleted overload winners (#2094)
* fix(cpp): suppress deleted overload winners * test(cpp): update scope capture fingerprint --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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2870aa6248
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fix(grammars): load vendored tree-sitter grammars from vendor/ by absolute path (#2111) (#2144)
* fix(grammars): load vendored tree-sitter grammars from vendor/ by absolute path (#2111) The recurring Windows `EPERM: operation not permitted, symlink` (errno -4048) when adding the MCP server to Antigravity is NOT the #2101/#2110 module-load crash — it is an install-time arborist failure during the `_npx` reify that the MCP client triggers on every `npx gitnexus` launch. Root cause: the `postinstall` materialize step copied each vendored grammar (`vendor/tree-sitter-{c,dart,proto,swift,kotlin}`) into `node_modules/gitnexus/node_modules/tree-sitter-*` as a real package so runtime `require('tree-sitter-dart')` would resolve. Those packages are in no dependency graph, so every subsequent npm/npx reify treats them as **extraneous** and prunes/relocates them — on Windows the relocation goes through `@npmcli/move-file`'s symlink path and throws EPERM (symlinks need Developer Mode/admin), and on every OS the 2nd run silently deletes the grammars. This is the same class as #1728, which the materialize step itself claimed to have fixed. Fix (the prebuildify + node-gyp-build ecosystem pattern): never copy grammars into node_modules. Load each by absolute path from `vendor/<name>` via the new `requireVendoredGrammar` helper — the grammar's own `bindings/node` runs `node-gyp-build(<dir>)` and loads the committed `vendor/<name>/prebuilds/ <platform>-<arch>/…` directly (all 5 ship all 6 tuples). vendor/ is inside the package but not a node_modules subtree, so arborist never sees the grammars and the reify is idempotent — no EPERM, no silent deletion. - new src/core/tree-sitter/vendored-grammars.ts (requireVendoredGrammar / vendoredGrammarDir / VENDORED_GRAMMAR_PACKAGES; VENDOR_ROOT stable in dev+dist) - route all consumers through it: parser-loader, parse-worker, grpc proto, include-extractor (C), http-patterns kotlin, cli optional-grammars probe - postinstall drops the materialize step; build-tree-sitter-grammars.cjs builds in-place under vendor/ (gitignored) and deletes materialize-vendor-grammars.cjs - tests + grammar-introspection helper load grammars from vendor/ too (single source of truth); new vendored-grammars.test.ts guards against reintroducing a bare `require('tree-sitter-<vendored>')` Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(grammars): throw on a non-vendored name in requireVendoredGrammar Drift guard (PR #2144 review, P3): validate the argument against VENDORED_GRAMMAR_PACKAGES and fail loudly on an unknown name, so the three grammar lists (package set / CLI probe / build registry) drifting out of sync surfaces as a clear error instead of a confusing absolute-path require miss. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(grammars): prepack guard against stray vendor/<g>/build/ shadowing prebuilds Publish hygiene (PR #2144 review, P2). Now that build-tree-sitter-grammars.cjs source-builds into vendor/<name>/build/, a stray build dir would ship in the tarball (files:["vendor"] overrides .gitignore/.npmignore) AND shadow the committed prebuild — node-gyp-build resolves build/Release before prebuilds/. assert-publish-grammar-coverage.cjs (prepack) now fails `npm pack` if any vendor/*/build exists (findStrayBuildArtifacts), with a clear `rm -rf` fix hint. Adds unit coverage for the new pure function. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(grammars): harden the #2111 no-bare-require regression guard PR #2144 review (P2). The guard regex missed dynamic import(), side-effect `import 'x'`, /subpath, and backtick loads, and only scanned src/. It now covers every node_modules-forcing form (single/double/backtick quotes, optional subpath), scans test/ too (excluding fixtures and the guard file itself), drops the `//`-substring false-negative (leading-comment-only heuristic), and adds a self-test asserting every load form is caught while prose mentions and tree-sitter-cpp are ignored. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(grammars): correct stale vendored-grammar comments PR #2144 review (P3). kotlin/query.ts called tree-sitter-kotlin an "optionalDependency" — it is vendored and loaded from vendor/ by absolute path (#2111). proto.ts now states its remaining `_require` is only for the real `tree-sitter` dependency, not a vendored grammar (which goes through requireVendoredGrammar). Comment-only; no behavior 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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3d30b94c46
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fix(parse): survive non-cloneable worker results so large-repo analyze doesn't crash (#2112) (#2135)
* fix(parse): survive non-cloneable worker results so large-repo analyze doesn't crash (#2112) A parse worker delivers its accumulated result to the main thread via postMessage, which structured-clones the payload synchronously on the worker thread and throws a DataCloneError on the first value it can't serialize. The reporter's case was a node `properties` value pointing at a native `toString`. The worker re-posted the throw as {type:'error'}, the pool counted it as a worker death, and under GITNEXUS_WORKER_POOL_SIZE=1 the same graph re-threw on every respawn until the slot's budget was exhausted and the whole parse phase aborted -- defeating even the conservative single-worker workaround. Add a clone-safety net at the worker result boundary. On a clone failure the worker isolates the offending file, strips the non-cloneable value from a plain extraction record (keeping the record -- strictly-missing data, never wrong) or drops a whole ParsedFile so scope-resolution re-derives it on the main thread with intact edge data, records the affected paths on the result, warns naming the field + file so the leak is diagnosable, and re-posts. Healthy runs are byte-identical: the net runs only after a real DataCloneError, so there is zero overhead on the fast path. Skipped paths surface via the parsing processor alongside the skipped-language telemetry. The strip drops the same values the store path's JSON.stringify already silently removes, so store/no-store runs converge. Scope: PR-1 -- failure mode C, the deterministic POOL_SIZE=1 killer. The timeout/native-abort graceful-degradation cascade (failure modes A & B) is coupled to downstream-exclusion + a hard worker watchdog and is tracked as follow-up work. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): fail-closed clone-safety recovery + bound recursion depth (#2135 review) The clone-safety recovery path could re-arm the #2112 worker-death cascade it was built to prevent: in postResultCloneSafe the sanitizer call and the re-post sat outside the try/catch, and containsNonCloneable/stripNonCloneable recursed with a cycle guard but no depth bound. A throw inside the sanitizer (a RangeError from a deeply-nested record, reproduced at depth >=3000) escaped to the message handler's {type:'error'}, which under GITNEXUS_WORKER_POOL_SIZE=1 is the respawn-budget-exhaustion abort. Wrap the sanitizer + re-post in their own try/catch so any throw fails closed to a primitive-only {type:'error'} deliberately, and thread a MAX_CLONE_DEPTH bound through both scan/strip functions so an over-deep subtree is treated as non-cloneable (dropped/undefined) instead of overflowing the stack. The isStructuredCloneable catch-all is left broad on purpose — it bounds structuredClone's own internal recursion in the non-plain-object probe. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): harden clone-safety against throwing getters and detached buffers (#2135 review) Two sanitizer-defeat vectors let the re-post throw a DataCloneError again: - A throwing getter on a record: containsNonCloneable/stripNonCloneable read obj[key], so a getter that throws escaped the scan/strip pass. Read defensively — a throwing property read is treated as non-cloneable (scan returns true, strip drops the property). - A detached ArrayBuffer/TypedArray: both passed buffers/views through unconditionally, but structuredClone rejects a detached one, so the re-post threw. Route buffers/views through the authoritative isStructuredCloneable probe instead. No byteLength heuristic — a legitimately empty new Uint8Array(0) also has byteLength 0 yet clones fine, so a length check would false-positive. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): memoize stripped copies so DAG-aliased records aren't over-dropped (#2135 review) stripNonCloneable carried a shared `seen` WeakSet and returned the ORIGINAL (un-stripped) value on revisit. When a non-cloneable was reachable via two paths (a DAG), the second path spliced the original function-bearing object back into the output, so the rebuilt element failed the last-resort isStructuredCloneable guard and the whole record was dropped as "unsalvageable" — contradicting the "record kept, value stripped" contract. Replace the WeakSet with a Map<object, stripped-copy>: allocate the empty copy, memoize it before recursing into children (so cycles return the in-progress copy), and return the memoized copy on revisit. DAG-aliased subtrees now collapse to one shared stripped copy and are kept-and-stripped, not dropped. The array branch moves from .map() to allocate-then-push so its identity can be pre-inserted. Object Map/Set keys aren't identity-preserved across stripping — acceptable because parse-result Maps are primitive-keyed. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(parse): single-pass clone-safety scan preserving array identity (#2135 review) makeWorkerResultCloneSafe scanned each dirty array twice — a field-level whole-array containsNonCloneable probe, then a per-element pass — and always reassigned the field. Fold into one per-element pass that builds the output array lazily (copying the clean prefix only once the first dirty element appears) and reassigns the field only when something changed. A fully-clean array is now scanned once and keeps its referential identity; the clean prefix of a dirty array is copied by reference. Behavior is otherwise identical (failure-path-only code). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(parse): drop unused generic + pin clone-safe field names to keyof (#2135 review) makeWorkerResultCloneSafe carried a generic `<T extends Record<string,unknown>>` that was never load-bearing (it mutates in place and returns {skipped}), and the call site passed untyped string-literal option sets — so renaming `parsedFiles` or `skippedPaths` would silently disable the drop-whole / skip protection. Drop the generic (plain `Record<string,unknown>` param) and type the option sets at the call site as `Set<keyof ParseWorkerResult>`, so a field rename is now a compile error. The `as unknown as Record<string,unknown>` widening stays — it's the standard cast for a no-index-signature interface (TS rejects a single-step `as`); the function genuinely operates structurally on the result's arrays. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): keep the per-file reason in the clone-safety skip log (#2135 review) The processor's skipped-file warning logged only the paths, dropping the per-file reason the worker already attached — losing the distinction between a recoverable "stripped N value(s)" and a whole-record "dropped" entry. Format each entry as `path (reason)` so the aggregate line carries the diagnostic detail. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): deterministic findFilePath attribution for ParsedNode (#2135 review) findFilePath swept all child objects one level deep in Object.keys order, so a ParsedNode could be attributed to a sibling child's path-like key instead of its real path at properties.filePath. Check the known `properties` child first, then fall back to the generic sweep, so node attribution is deterministic. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): zero skippedPaths in the slim cache result (#2135 review) slimParseWorkerResultsForCache spread the worker result without clearing the clone-safety skippedPaths telemetry, so a sanitized result persisted its skip list into the on-disk parse-cache shard. Replay already ignores the field; zero it (like calls/assignments/parsedFiles) to keep shards lean and the intent explicit. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(parse): exercise real postResultCloneSafe wiring + tighten RED control (#2135 review) The integration GREEN worker re-implemented postResultCloneSafe inline, so the production wiring (the {type:'warning'} post + the skippedPaths append) had no coverage, and the RED control asserted a bare .rejects.toThrow() that any failure would satisfy. Extract postResultCloneSafe into a side-effect-free module (post-result.ts) — importing it from the parse-worker entry module would construct the parser, post ready, and attach the real handler — and have the GREEN test worker import and call the real one. Tighten the RED matcher to the actual abort contract (/circuit breaker|consecutive failures|respawn budget|could not be cloned/), which also documents that the raw poison result aborts via the pool's consecutive-failure circuit breaker under POOL_SIZE=1. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): recover the clone-safety net from any post failure, not only DataCloneError (#2135 review) The V8 structured-clone research surfaced the net's one real correctness hole: structuredClone invokes getters, and a getter that THROWS surfaces its own error (a RangeError, etc.) — NOT a DataCloneError (confirmed against a real MessageChannel). postResultCloneSafe gated recovery on isDataCloneError, so such a throw re-threw past the sanitizer and re-armed, under POOL_SIZE=1, the worker-death cascade the net exists to prevent. Attempt the sanitize + re-post recovery for ANY first-post failure (the sanitizer already reads properties defensively, so a throwing getter is dropped), falling closed to a primitive-only {type:'error'} only if the re-post still fails. Adds an integration case: a node with a throwing getter is recovered and delivered, not re-thrown. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(parse): name the exact offending key path in the clone-skip diagnostic (#2135 review) The clone-safety net's skip reason named only the array field + file ("stripped 1 value from nodes"), not the offending property key — which is precisely why the original #2112 leak stayed unpinned. Thread a dotted key path through stripNonCloneable (recording each stripped value's path: properties.toString, meta.data[3], …) and surface the first few in the reason ("from nodes: properties.toString"). Now a single log line — or the contract/strict checks — names the leaking property, so a residual runtime escape can be fixed at source. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(parse): clone contract — a representative ParseWorkerResult is structured-cloneable (#2135 review) Shape-regression guard: builds a representative ParseWorkerResult (typed as the real interface) and asserts isStructuredCloneable. Typing it as ParseWorkerResult makes adding a new boundary field a compile error here until the test is updated, and the runtime assert catches a field whose type regresses to a non-cloneable shape — independent of language input. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(parse): strict-mode clone gate (GITNEXUS_STRICT_CLONE) — fail loudly instead of silent sanitize (#2135 review) The runtime net's silent recovery in production is exactly what let the original #2112 leak stay unpinned. Add an opt-in strict mode (GITNEXUS_STRICT_CLONE=1, inherited by workers): on a clone failure, postResultCloneSafe THROWS with the exact offending key path instead of sanitizing + delivering, so a leak introduced by a future provider/extractor change fails loudly at its origin (CI/dev) rather than being quietly stripped. Off in production, where the net keeps the run alive. Adds a self-contained integration case (sets the flag, asserts the poison run rejects with the key path) and skips the synthetic-poison suite under a global strict run (its value there is running the REAL-extractor integration tests under strict). Wiring a strict CI lane (GITNEXUS_STRICT_CLONE=1 on a vitest integration step) is left to the maintainer — it needs a green full-suite verification and touches the protected workflow. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(server): don't ship pipelineResult across the analyze-worker IPC boundary (#2112) The forked analyze worker reports completion to the parent over child_process IPC, which uses Node's DEFAULT 'json' serialization (api.ts forks with no `serialization:` option). `AnalyzeResult.pipelineResult` is populated on every successful analysis and carries `pipelineResult.graph` — the live KnowledgeGraph closure object. Sending the raw result is wrong three ways: (1) the graph's nodes/relationships getters force-materialize the entire graph into two arrays and JSON-stringify them on every analyze, discarded immediately (a multi-hundred-MB no-op on a large repo — the #2112 scenario); (2) the graph's methods are own function properties that JSON drops silently, so a surviving graph is a husk whose forEachNode() throws far from the cause; (3) a BigInt/circular value anywhere in the payload makes process.send throw TypeError synchronously — caught and re-sent as {type:'error'}, mis-reporting a SUCCESSFUL analysis (DB already written) as a FAILURE. This is the #2112 failure family on the server path, and unlike the parse-worker result boundary it has no clone-safety net. The parent (api.ts) reads only result.repoName; pipelineResult's real consumers (CLI skill generation, cli/analyze.ts) call runFullAnalysis in-process and never cross this fork. So project the result down to an explicit JSON-safe allowlist of scalar fields. Typed as Omit<AnalyzeResult,'pipelineResult'> so a future non-serializable field added to AnalyzeResult fails to compile until handled here deliberately. Found by the #2112 cross-process serialization-boundary audit. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(ingestion): Cloneable<T> + assertCloneable() compile-time clone-boundary guard (#2143) The runtime clone-safety net is the production backstop; this is its compile-time complement. The worker result is plain data except a few `unknown`-typed sinks (a node's `properties` bag, the provider `extractTemplateConstraints` / `collectCaptureSideChannel` hook returns) — `unknown` lets a non-serializable value (a function, a leaked tree-sitter SyntaxNode, …) cross the structured-clone boundary with no compile-time guard. That is the structural hole #2112 leaked through. `Cloneable<T>` is a homomorphic recursive mapped type that maps a function or symbol member to `never`, so a struct carrying one is no longer assignable to its own `Cloneable<T>`. `assertCloneable(value)` is a runtime identity (zero cost) whose parameter is `T extends Cloneable<T> ? T : Cloneable<T>`, so a clone-unsafe argument fails to compile, naming the offending key. Because it is a homomorphic mapped type it preserves `interface` shapes and `readonly` modifiers and needs NO index signature on the payload types — this sidesteps the "closed interface is not assignable to a recursive index-signature type" wall that blocked the original value-typed-`Cloneable` attempt (the reason #2143 was deferred from PR #2135). The conditional parameter type avoids the `T extends Cloneable<T>` circular-constraint error. Tests: runtime identity contract, plus type-level @ts-expect-error assertions (enforced by tsconfig.test.json) that a function/symbol member is rejected and clean interface payloads are accepted. Applied to the real provider hooks in the next commit. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(ingestion): guard provider clone-boundary hooks with assertCloneable (#2143) Apply the compile-time guard to the provider hooks that feed the `unknown`-typed worker-result sinks, so a future non-serializable value in their payloads is a compile error at the source site rather than a runtime DataCloneError at the worker post: - C++ extractTemplateConstraints (CppConstraintPayload) - C++ collectCaptureSideChannel (CppCaptureSideChannel) - C collectCaptureSideChannel (CCaptureSideChannel) - Kotlin collectCaptureSideChannel (KotlinCaptureSideChannel) The C++ template-constraint adapter previously returned `unknown`; it now returns the concrete `CppConstraintPayload | undefined` and routes its payload through `assertCloneable`. The side-channel hooks are wrapped at their provider wiring sites. `assertCloneable` is a runtime identity, so behavior is unchanged (C static-linkage + C++ constraint suites stay green); the guarantee is the type-check — src tsc now proves every nested member of those real payload trees is structured-clone safe. Test: type-level assertions (enforced by tsconfig.test.json) that each concrete payload type is `Cloneable<T>`, INDEPENDENT of the provider wiring — so the regression is caught even if the assertCloneable wrapper is later removed. Proven non-vacuous (a function-bearing type fails the same assertion). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): scan an array's non-index own properties in the clone sanitizer (#2135 review) structuredClone serializes an array's NON-index own-enumerable properties (e.g. `arr.meta = fn`) and throws DataCloneError on a non-cloneable one. The clone sanitizer's array branches iterated numeric indices only, so such an array was waved through (containsNonCloneable returned false, makeWorkerResultCloneSafe left the field unrewritten with skipped:[]) — the re-post then threw, fell through to the fail-closed {type:'error'}, and re-armed the POOL_SIZE=1 cascade the net exists to prevent. Add isArrayIndexKey() and, in BOTH containsNonCloneable and stripNonCloneable array branches (kept in lockstep), scan/strip the non-index own-enumerable keys after the index loop. A cloneable non-index prop is carried onto the stripped copy; a non-cloneable one is stripped and recorded. Not reachable from current parse output (no extractor attaches non-index array props) — a defense-in-depth hole closed. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): contain a throw inside the clone sanitizer instead of escaping to fail-closed (#2135 review) findFilePath was documented "never throws" but read element properties unguarded in its generic sweep — a throwing getter at a non-path key (or a Proxy with a throwing ownKeys trap) threw out of makeWorkerResultCloneSafe, past postResultCloneSafe's recovery, to the fail-closed {type:'error'} that under POOL_SIZE=1 re-arms the cascade the net prevents. Likewise a Proxy with a throwing getPrototypeOf trap throws inside containsNonCloneable's instanceof checks. - findFilePath/pathFromChild now read via safeGet (try/catch) and guard Object.keys, honoring the "never throws" contract. - Each element's sanitize in makeWorkerResultCloneSafe is wrapped: a throw during scan/strip drops that one element (recorded as "sanitizer error") rather than sinking the whole result — so one pathological element can't fail-close the run. - Corrected the makeWorkerResultCloneSafe JSDoc ("ONLY after a DataCloneError" → after ANY post failure, matching the caller) and documented the deliberate failure-path double-traversal (the non-allocating pre-scan is what preserves clean-element referential identity). Tests: a throwing getter on a path-less element is stripped & delivered (not escaped); a Proxy structural-trap element is dropped, clean siblings survive. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(parse): add a final cloneable postcondition gate to the clone sanitizer (#2135 review) makeWorkerResultCloneSafe rewrote only ARRAY result fields, so a future non-array sink (a nested object / Map result field) carrying a non-cloneable value — or an array field whose own non-index property the element loop didn't reach — would survive the sanitizer and throw on the re-post. Add a final `if (!isStructuredCloneable(result))` gate that strips any remaining offending field in place, making "the returned result is structured-cloneable" a hard postcondition independent of future ParseWorkerResult shape. Failure-path-only and a no-op once the array loop already made the result clean (the per-field probe short-circuits every clean field, so it adds no work or skip entries then). Tests: a function on a non-array result field is stripped & the result becomes cloneable; the gate adds no skip entry when the array loop already cleaned up. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(parse): reject an `any`-typed member in the Cloneable<T> compile-time guard (#2135 review) `Cloneable<any>` previously resolved to `any` (not `never`), so a payload with an `any`-typed member — the most likely escape hatch, since `unknown` is already blocked — passed `assertCloneable` with no compile error. Add an `IsAny<T>` branch (the canonical `0 extends 1 & T` probe) as the FIRST arm so `any` resolves to `never`, matching how `unknown` is already rejected. It must precede the primitive arm: `any extends CloneablePrimitive` would otherwise resolve to `any` and re-admit it. The IsAny-first arm perturbs inference for a bare `undefined` literal argument (T infers as `unknown` → never); real consumers pass `X | undefined` unions (the provider hooks), which are unaffected (src tsc clean), so the runtime identity test now uses a `string | undefined` value — the realistic shape. Tests: an `any` member fails `assertCloneable` (@ts-expect-error, enforced by tsconfig.test.json) and `Cloneable<any>` resolves to `never` at the type level. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(server): type the analyze-worker IPC projection as a Pick allowlist, not Omit (#2135 review) `AnalyzeResultIpc = Omit<AnalyzeResult,'pipelineResult'>` kept every other field in the type — including optional ones like `isPrimaryBranch?` — so the type advertised a field the runtime allowlist never sends, and the doc-comment's "a future field fails to compile until handled here" only held for REQUIRED fields. Switch to `Pick<AnalyzeResult, …the six scalar fields…>`: the allowlist IS the type, so the projection return literal is exhaustive by construction (omitting a key is a compile error) and a new `AnalyzeResult` field is simply absent from the wire until deliberately added here. `isPrimaryBranch` is intentionally excluded (nothing consumes it server-side over this fork; the parent reads only `repoName`). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(parse): remove the now-dead isDataCloneError export (#2135 review) postResultCloneSafe recovers on ANY fast-path post failure and never inspects the error type (a throwing getter surfaces a RangeError, not a DataCloneError — gating on the type was the original net-gap bug). isDataCloneError has no production caller; it was only exercised by its own unit test. Remove the function and that test block. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(parse): use the exported SkippedPath type in parsing-processor (#2135 review) The clone-safety telemetry accumulator inlined `Array<{path,reason}>` — a structural duplicate of the exported `SkippedPath`. Import and use the canonical type so a future rename of its fields is a compile error here instead of a silent structural drift. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(parse): document the cloneable-return contract on the worker-boundary hooks (#2135 review) extractTemplateConstraints and collectCaptureSideChannel return `unknown` and feed values across the worker structured-clone boundary, but the hook contracts didn't state the cloneability requirement — a future language implementing them without care could leak a non-serializable value. Document that the return MUST be structured-clone-safe and should be wrapped with assertCloneable, so the guarantee is a compile error at the source (#2143). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(parse): assert the clone-skip telemetry surfaces in the GREEN integration case (#2135 review) The GREEN clone-safety integration test asserted only graph content (all files present), not that the skippedPaths / {type:'warning'} wiring its docstring claims to cover actually fired. Capture the production logger via _captureLogger and assert the sanitize telemetry names the offending file (poison.ts) AND the exact stripped key path (properties.toString) — proving the worker's skippedPaths append + the parsing-processor warning surfaced end to end. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(server): cover the IPC projection against a real KnowledgeGraph (#2135 review) The IPC projection tests used a hand-built hostile object. Add a case that puts a real createKnowledgeGraph (whose nodes/relationships getters would materialize the whole graph under JSON.stringify) in pipelineResult and asserts the projection drops it entirely — the serialized payload stays under 300 bytes (a materialized 50-node graph would be thousands), with the scalar fields intact. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(parse): cover the unsalvageable-drop branch and the skippedPaths merge union (#2135 review) Two untested clone-safety branches from the tri-review: - "dropped unsalvageable": a dirty element whose stripped copy is STILL not structured-cloneable must be dropped, not delivered (else the re-post throws). Add a deterministic test (a non-plain member with a stateful getter that the strip-time probe sees clean but that turns into a function on the post-strip verification) asserting the element is dropped and the run survives. - mergeResult skippedPaths union across sub-batches. mergeResult (and its appendAll helper) was module-private in the parse-worker ENTRY module, which a main-thread test can't import (it runs MessagePort setup). Extract it to a side-effect-free result-merge.ts (mirroring post-result.ts) and unit-test the union (including the `??=` target-init path), the skippedLanguages sum, and array append. parse-worker imports it back; verified the built worker still parses + merges via the real-worker integration path. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * style(parse): root-prettier format the clone-safety review-fix files (#2135 review) Clears the failing `quality / format` CI gate (root prettier, not the gitnexus-local config). Reformats the pre-existing #2143 wrapping lines in c-cpp.ts + kotlin.ts plus the clone-safety review-fix files touched in this PR-update (clone-safety.ts and the new/updated tests). Formatting-only — no behavior change; tsc, the type-level assertions (tsconfig.test.json), and the unit + integration suites stay green. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(parse): avoid js/trivial-conditional in the type-level clone assertions (#2135 review) CodeQL flagged the `expect(a && b && c).toBe(true)` lines in the type-level test assertions as js/trivial-conditional: after type erasure the operands are constant `true`, so the `&&` chain always evaluates the same. Replace the `&&` chain with array equality (`expect([...]).toEqual([true, ...])`) — no conditional, and the real assertions remain the `const x: …IsNever = true` / `: IsCloneable<…> = true` annotations (enforced by tsconfig.test.json, which fail to compile if a guard regresses). 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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fix: stop impact()/route_map under-reporting blast radius (#2129, #1858, #1589/#1852) (#2136)
* fix(query): stop impact()/context() under-reporting blast radius (#2129, #1858) Two read-side fixes to the "run impact before editing" safety workflow, both about the tools rendering "I could not give a single confident answer" as "no impact" — the most dangerous failure mode for a refactor-safety tool. #2129 — ambiguous resolution no longer hides a real caller behind a bare `impactedCount: 0`. When a bare name collides with several symbols, the resolver returns `ambiguous`; previously the payload carried a flat `impactedCount: 0`, so the real caller (which calls a *different* same-name node) was invisible unless the user already knew to disambiguate. The ambiguous branch now runs a bounded, summary-only BFS per candidate (capped at 6) and surfaces each candidate's true count plus the top-level `maxImpactedCount` / `maxRisk`, ranked most-impactful-first. `risk` stays `UNKNOWN` (ambiguity must not read as "safe"), `impactedCount` stays 0 (no single resolved symbol). The BFS and edge storage are unchanged — an empirical repro confirmed they are correct; the bug was purely in how the ambiguous case reported. Disambiguation by uid still returns the exact result. #1858 — impact()/context() now carry an additive `epistemic` field. When the queried symbol sits on an interface / indirection boundary (it implements or extends an interface, or is one) whose consumers bind via a DI container or dynamic dispatch, those callers are not traced to the concrete symbol, so the count is a lower bound. The result is annotated `epistemic: 'lower-bound'` with a human-readable `boundaries[]` note; a fully resolved leaf stays `epistemic: 'exact'`. Aligned to the surviving numeric confidence model (the 0.85 IMPACT_RELATION_CONFIDENCE heritage floor), not the long-deleted TIER_CONFIDENCE enum. Purely additive — no existing field or count changes. Tests: impact-ambiguous-blast-radius (per-candidate surfacing + uid disambiguation) and impact-epistemic-lower-bound (interface boundary → lower-bound, resolved leaf → exact, context parity). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * feat(routes): configurable fetch wrappers + faster consumer scan (#1589/#1852) Closes the residual gap behind the now-merged #1852 (which fixed #1589): the fetch-wrapper consumer scan only traced wrappers the parse phase auto-detected as calling the bare global `fetch()`. A wrapper built on axios / a custom client, or one named outside the built-in convention, was invisible — route_map silently returned `consumers: []` (the exact "named outside convention → silent zero" hole #1858 calls out as needing a backstop). - Configurable wrappers: `.gitnexusrc` gains a `fetchWrappers: [...]` list (validated as identifier/member names, de-duped, capped, regex-safe), threaded AnalyzeOptions → PipelineOptions → routes phase. Configured names are unioned with the auto-detected ones; configured names alone now trigger the scan even when nothing was auto-detected. - Perf (F3 from #1852's review): the cross-file scan built one RegExp per (file × wrapper) — O(files × wrappers). It now builds a single alternation regex per file (O(files)) and reuses file contents already read for handler extraction instead of re-reading them. Tests: configurable-fetch-wrapper (axios-based `doRequest` wrapper — invisible without config, traced with it) + .gitnexusrc `fetchWrappers` validation cases. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(review): harden the under-reporting fixes after adversarial review Addresses findings from a reviewer-swarm pass over the two prior commits: - CLI text false-safe (major): `formatImpactResult` (eval-server.ts) had no ambiguous branch, so `gitnexus impact <colliding-name>` printed "No dependencies found. This symbol appears isolated." for an ambiguous target — the exact false-safe #2129 exists to kill, defeating the JSON-layer fix at the text surface. Added an ambiguous branch (per-candidate blast radius + maxImpactedCount/maxRisk) and a lower-bound branch for both the zero-count and non-zero paths, mirroring the context formatter. Covered by new unit tests. - Group fan-out dead work (major): impactByUid now passes skipEpistemic:true — the group cross-impact fan-out consumes only byDepth, so computing the #1858 boundary per neighbor was wasted round-trips on the highest-volume path. - Ambiguous all-UNKNOWN risk (minor): if every per-candidate probe fails, maxRisk now reports 'UNKNOWN' instead of falling to the 'LOW' seed (which would read as "safe"). - Candidate-probe cost (minor): the per-candidate summary BFS now sets skipEnrichment:true, bypassing the process/module aggregation passes it does not use. - Epistemic latency (minor): computeEpistemicBoundary now runs concurrently with the impact BFS instead of as a trailing serial round-trip. - Wrapper over-match (minor): the consumer-scan regex uses a `(?<![.\w$])` lookbehind instead of `\b`, so a bare configured name like `get` matches the free call `get('/x')` but not a member access `client.get(` (and `apiFetch` no longer matches `myApiFetch`). - Boundary wording (nit): correct article ("a class" vs "an interface") and singular/plural ("1 implementation"). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(lint): drop unused describe import in new impact tests The withTestLbugDB harness wraps describe internally, so the explicit describe import was unused — unused-imports/no-unused-imports is an error (not a warning) in the root eslint config, failing quality/lint. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(query): flag partialProbe when an ambiguous candidate probe fails (#2129 review F1) The ambiguous-impact branch hoists maxRisk/maxImpactedCount so a colliding name can't read as "isolated". But if a per-candidate BFS throws (e.g. DB pool contention during the ≤6-way fan-out), it was recorded as risk:'UNKNOWN', impactedCount:0 and silently masked by any benign sibling success — maxRisk reduced to the benign tier and maxImpactedCount reflected only successful probes. Track probeFailed and surface partialProbe:true (additive, intentionally distinct from the traversal-interrupted `partial` flag); formatImpactResult prints a lower-bound warning. Covered by a formatter unit test (a natural in-harness probe throw is unreachable — _runImpactBFS is fully self-catching under summaryOnly+skipEpistemic+ skipEnrichment). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(query): report the full match count when ambiguous candidates are truncated (#2129 review F11) The ambiguous candidate list is capped at AMBIGUOUS_MAX_CANDIDATES (6), but the CLI headline read the truncated `candidates[]` length — so a name matching 9 symbols printed "6 symbols share this name" while the JSON message stated the true count. Add an additive `totalCandidates` field carrying the full match count, include a "showing N of M" clause in the message when truncated, and have formatImpactResult report the full count. Covered by formatter unit tests for the truncated and non-truncated cases. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(query): run context() epistemic probe concurrently with methodMetadata (#1858 review F2) impact() overlaps the #1858 boundary probe with its BFS, but _contextImpl awaited computeEpistemicBoundary serially after every other query. Start the probe right after `symKind` is known (the earliest point it can — symKind depends on the incoming/outgoing round-trips) so it runs concurrently with the methodMetadata fetch, and await it at result assembly. Output is unchanged (covered by the existing epistemic context() tests). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(query): flag a leaf interface as lower-bound in context() (#1858 review F3) context() passed `symKind` to computeEpistemicBoundary, but symKind collapses a single-resolved Interface to 'Class' (resolvedLabel is '' on the single-candidate path), so the `symType === 'Interface'` self-boundary branch never fired and a directly-queried leaf interface (implements nothing, but consumed) was under-reported as 'exact'. Pass an interface-preserving type (`resolvedLabel || sym.type || symKind`) instead — enrichCandidateLabels runs before the single-candidate early return and patches sym.type to 'Interface', mirroring impact()'s derivation. impact() was already unaffected. Covered by a new context()-on-a-leaf-interface test. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(query): hoist epistemic relation-type lists + add USES to the allowlist (#1858/#2129 review F4, F5) F4: promote computeEpistemicBoundary's function-local heritage/consumer relation-type lists to module-level readonly constants (EPISTEMIC_HERITAGE_RELATION_TYPES / EPISTEMIC_CONSUMER_RELATION_TYPES) next to VALID_RELATION_TYPES / IMPACT_RELATION_CONFIDENCE, so a future heritage edge type is visible to the probe. Kept as arrays (not Sets) because they bind as Cypher params. F5 (latent bug): USES is emitted (emit-references.ts) and already in the default impact relTypes + context() queries, but was missing from VALID_RELATION_TYPES — so impact({relationTypes:['USES']}) filtered to [] and silently ran the full default traversal. Add it (0.5 confidence fallback, matching FETCHES/WRAPS). Updates the security.test.ts allowlist assertions (size 15→16, USES now valid). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(query): document the _runImpactBFS enrichment skip-flag composition (#1858/#2129 review F6) The three skip-flags (skipPerSymbolEnrichment / skipEpistemic / skipEnrichment) suppress distinct sub-phases and compose implicitly. Add a JSDoc block at the opts type listing what each suppresses, the three real call patterns, and the key interaction (skipEnrichment makes skipPerSymbolEnrichment a no-op). Comment-only. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(cli): genericize the shared string-array validation messages (#1589/#1852 review F7) The shared `string-array` ValueKind hardcoded fetch-wrapper phrasing in three messages (non-array, identifier-shape, empty-list). Since `source` already names the config key, genericize all three so the shared normalizer carries no fetchWrappers coupling — a future string-array config key gets sensible errors. Test assertions updated to the new wording. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(query): type the ambiguous candidate summary + epistemicPromise (#1858/#2129 review F8) The ambiguous per-candidate summary was read through `any`, so a rename of _runImpactBFS's return fields would silently zero candidate counts. Name the read shape ({impactedCount, risk, summary?.direct}) at the narrowing site, and type epistemicPromise as the optional-epistemic union (the skip case's `{}` subtype) — keeping computeEpistemicBoundary's own return precise (epistemic required). Type-only; no runtime change. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(routes): trust validated fetchWrappers config, drop redundant re-filter (#1589/#1852 review F9) `ctx.options.fetchWrappers` is already trimmed/shape-validated/de-duped/capped in analyze-config.ts, so the routes-phase re-trim/re-typeof pre-pass was redundant. Pass it straight through; the single Set-construction filter remains to guard the auto-detected functionName values (which don't pass through analyze-config). No behavior change — covered by the existing fetch-wrapper route suites. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(routes): make the wrapper-call boundary Unicode-aware (#1852 review F10) The consumer-scan lookbehind used ASCII `\w`, so a configured bare wrapper name preceded by a non-ASCII identifier character (`caféget('/x')`) satisfied the boundary and produced a spurious FETCHES edge. Switch to the `u` flag with Unicode property classes (`(?<![.\p{L}\p{N}_$])`). Covered by a fixture consumer (`cafédoRequest('/api/things')`) asserting no spurious edge. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * perf(routes): count wrapper-scan line numbers incrementally (#1852 review F12) The wrapper consumer scan computed each match's line number via content.substring(0, match.index).split('\n').length — an O(matchIndex) allocation per match. Matches arrive in ascending index, so accumulate newlines with a running counter instead. 1-based line numbers are byte-identical (covered by the existing fetch-wrapper route suites). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(test): keep the #1858 epistemic probe from skewing the impact-pagination mock The impact-pagination mock counts every query containing `r.type IN` as a BFS depth level. Once the #1858 epistemic boundary probe was parallelized with the BFS (it fires `MATCH (x)-[r]->(iface) ... r.type IN $heritage` before the frontier loop), that query was miscounted as depth-1, shifting the real depths so multi-depth impactedCount read 50 instead of 200. Short-circuit the epistemic queries (uniquely aliased `iface`) to empty in both mock setups so only frontier queries count. Test-only; production is unaffected (the epistemic query is a separate real query there). 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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7eaeb0a0c4
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feat: multi-branch indexing and branch-scoped querying (#2106) (#2137)
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* feat(git): add getCurrentBranch + resolveRefToCommit helpers (#2106) * feat(storage): branch-scoped getStoragePaths + branchSlug + resolveBranchPlacement (#2106) * feat(analyze): branch-aware indexing — per-branch slot, no overwrite (#2106) * feat(registry): nest non-primary branches under one path entry (#2106) * feat(mcp): optional branch scope on query tools + list_repos branches (#2106) * feat(cli): --branch on analyze + query/context/impact/cypher/detect-changes (#2106) * feat(cli): branch-aware list/status + per-branch staleness meta (#2106) * fix(review): apply autofix feedback - guard analyze against --branch != checked-out branch (prevents writing one branch's working tree into another branch's index slot) - fix branch-handle pool reinit thrash (track observed indexedAt by lbugPath, since applyBranchScope returns fresh handles) - remove dead resolveRefToCommit helper (staleness uses HEAD vs branch meta) - RepoListing.branches -> Omit<BranchSummary,'stats'> for type cohesion - add tests: branchSlug traversal containment, --branch mismatch reject, callTool branch threading, legacy-entry branch routing, status detached/stale * fix(review): address tri-review findings (#2106) - P1 data-loss: a detached-HEAD re-analyze (CI's actions/checkout default) no longer strips the primary's meta.branch stamp; preserve it so a later branch analyze cannot claim & overwrite the flat/primary index. +cascade integration test - P2: capture validateBranchName's trimmed return for --branch so a whitespace-padded value no longer false-rejects on-branch or ghosts an index - F1: on a lost/rebuilt registry, a branch run reconstructs the primary top-level entry from the flat meta, not the feature branch's meta * fix(storage): only trust a non-empty-string flatMeta.branch (#2106 R5) * fix(analyze): warn when the default branch is not the primary index (#2106 R8) * fix(mcp): resolve --branch <primary> on a legacy unstamped flat index (#2106 R4) * feat(cli): gitnexus clean --branch to remove a single branch index (#2106 R7) * fix(mcp): evict orphaned branch pools on unregister/clean (#2106 R3) * fix(analyze): union per-branch cache keys so a branch switch keeps shards (#2106 R6) * fix(analyze): normalize the auto-detected branch label via sanitizeDetectedBranch (#2106 R1) * fix(cli): skip AGENTS.md base_ref refresh for a non-primary branch fast path (#2106 R2) * fix(storage): atomic writeRegistry + re-read-before-write to narrow the registry race (#2106 R9) * refactor(storage): extract branch primitives to branch-index.ts (#2106 R10) |
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36ca096e75
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feat(ingestion): Java Spring route annotation → Route node extraction (#2078)
* feat(ingestion): add Java Spring route annotation → Route node extraction
Previously, GitNexus only supported Route node generation for JS/TS
ecosystems (Express, Next.js, Fastify, etc.) and Python (FastAPI, Flask).
Java Spring's annotation-based routing (@RequestMapping, @GetMapping,
@PostMapping, etc.) was only supported at the group contract layer
(http-patterns/java.ts) for cross-repo matching, but NOT at the
ingestion layer for generating graph Route nodes.
This commit adds ingestion-layer support:
1. JAVA_QUERIES (tree-sitter-queries.ts):
- Added method-level annotation captures (@GetMapping, @PostMapping,
@PutMapping, @DeleteMapping, @PatchMapping) → @decorator captures
- Added class-level @RequestMapping → @decorator capture (prefix)
- Supports both positional ("/path") and named (path="/path",
value="/path") annotation argument forms
2. parse-worker.ts:
- Java class-level @RequestMapping is detected and stored as a prefix
(not pushed as a standalone Route)
- After per-file capture processing, the prefix is applied to all
method-level routes in the same file via the existing
ExtractedDecoratorRoute.prefix field
- The routes phase (normalizeExtractedRoutePath) handles the prefix
joining, producing final URLs like /api/users/list
3. Tests:
- Unit test (worker-backed): 4 cases covering prefix joining,
bare routes, class-level exclusion, multi-file isolation
- Integration test (full pipeline): 6 cases covering end-to-end
Route node + HANDLES_ROUTE edge generation
Closes the feature gap where `route_map`, `shape_check`, and
`api_impact` MCP tools returned empty results for Java Spring projects.
* chore(autofix): apply prettier + eslint fixes via /autofix command
* fix: address review findings — extract spring.ts module, fix PatchMapping, multi-class support
Addresses all P2 findings from tri-review:
1. **Architecture**: Extracted Spring route logic from parse-worker.ts into
a dedicated `route-extractors/spring.ts` module (matching the pattern
of `laravel.ts` and `fastapi-router-bindings.ts`). parse-worker now
has a single dispatch line — no language-specific logic inline.
2. **PatchMapping bug**: Added `'PatchMapping'` to `ROUTE_DECORATOR_NAMES`
(was silently dropped before).
3. **Multi-class bug**: The new `extractSpringRoutes` walks each class
declaration independently with its own prefix — no more single-scalar
`javaClassPrefix` last-wins issue.
4. **Test hygiene**: Unit tests now import `extractSpringRoutes` directly
(no dist build / worker pool dependency). Tests run in all tiers.
5. **Removed JAVA_QUERIES decorator patterns**: The Spring extractor does
its own AST walk, so the tree-sitter query captures for Java annotations
are no longer needed (avoids duplicate route emission).
Additional test coverage:
- Multi-class in one file with independent prefixes
- @PatchMapping support
- Named annotation args (path= and value=) on class-level @RequestMapping
* refactor: move Spring route extraction to LanguageProvider hook
Addresses the second review comment: instead of an inline
`if (language === SupportedLanguages.Java)` dispatch in parse-worker,
the Spring route extraction is now wired through a new optional
`extractDecoratorRoutes` hook on LanguageProviderConfig.
- Added `extractDecoratorRoutes` to LanguageProviderConfig interface
- Java provider registers `extractSpringRoutes` as its implementation
- parse-worker calls `provider.extractDecoratorRoutes?.()` generically
- Removed direct import of spring.ts from parse-worker
This keeps parse-worker fully language-agnostic — no language names
appear in the dispatch path for route extraction.
* refactor: rewrite spring.ts with tree-sitter captures, fix inline imports
Addresses all 4 inline review comments:
1. Rewrote spring.ts to use a single predicate-free Parser.Query
(same pattern as group-layer JAVA_ROUTE_ANNOTATION_PATTERNS).
Two-phase loop: first pass collects class prefixes by node.id,
second pass resolves method routes via findEnclosingClass.
No more manual DFS / recursion.
2-3. Moved inline import(...) type references in language-provider.ts
to proper top-level imports (Parser, ExtractedDecoratorRoute).
4. Covered by #1 — recursive helpers removed entirely.
Added 3 extra test cases: non-route named args filtering,
prefix isolation across mixed classes, line number accuracy.
* refactor: extract shared Spring route primitives + add parity test
Addresses review follow-up on #2078:
- Extract the primitives shared by the ingestion (route-extractors/spring.ts)
and group (http-patterns/java.ts) Spring extractors into a new
route-extractors/spring-shared.ts: METHOD_ANNOTATION_TO_HTTP,
findEnclosingClass, isRouteMemberKey, and a safe unquoteSpringLiteral.
Both extractors now import from it (group -> ingestion, the layer-correct
direction) so the shared semantics can't drift apart.
- Replace spring.ts's local unquote() with the safer unquoteSpringLiteral
(returns null for non-string nodes instead of assuming a quoted string).
- Add test/unit/spring-route-extractor-parity.test.ts: runs one shared Spring
fixture through both extractors and asserts they surface the same provider
method/path combinations.
The broader HttpRouteExtractor source-scan optimization is tracked in #2138.
---------
Co-authored-by: henry <zhangwei2017@unipus.cn>
Co-authored-by: github-actions[bot] <41898282+github-actions[bot]@users.noreply.github.com>
Co-authored-by: Gergő Magyar <gergomagyar@icloud.com>
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292f26ece3
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fix(hooks): silence MCP-owned-DB augment skip for strict hook runners (#1913) (#2134)
* fix(hooks): silence MCP-owned-DB augment skip for strict hook runners
The PreToolUse augment-skip path wrote `[GitNexus] augment skipped: MCP
server owns DB` to stderr unconditionally on a normal (non-error) skip.
Strict hook runners that validate hook output (e.g. Codex `PreToolUse`)
treat that as noisy / "invalid pre-tool-use JSON output".
Gate the diagnostic behind GITNEXUS_DEBUG via a shared `isDebugEnabled()`
helper, so normal skips are silent by default (empty stdout AND stderr,
exit 0) and the reason stays recoverable with `GITNEXUS_DEBUG=1`. Applied
consistently to all three hand-maintained hook copies (claude,
antigravity, claude-plugin).
Tests:
- Unit (claude CJS + plugin): assert default-silent and debug-on behavior
for the MCP-owned-DB skip and for the fail-closed (lsof ETIMEDOUT) skip
that routes through the same gated line; the owner-detection tests run
with GITNEXUS_DEBUG=1 so the skip discriminator stays observable.
- e2e (antigravity): the antigravity adapter shares the identical gated
skip but only runs from its install dir, so cover it through the install
pipeline with a faked DB-owner probe (strict empty-stdout/stderr +
debug-on). Promote the fake-probe helpers (createHookToolDir / hookEnv,
plus a module-private writeExecutable) into shared hook-test-helpers so
unit + e2e reuse them.
Fixes #1913
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(hooks): unify GITNEXUS_DEBUG gating in main() catch handlers
The main() catch-handler in all three hook copies still gated its crash
log on truthy `if (process.env.GITNEXUS_DEBUG)`, while the skip diagnostic
the #1913 fix added is gated on the strict `isDebugEnabled()` helper
(=== '1' || === 'true'). That split meant GITNEXUS_DEBUG=0 or =false
suppressed the skip line yet still enabled crash logging — two conflicting
contract signals in the same file.
Switch the three catch handlers to isDebugEnabled() so GITNEXUS_DEBUG has
one strict meaning everywhere: exactly '1' or 'true' enables all
diagnostics; everything else (incl. '0', 'false', empty, unset) is silent.
Add boundary tests asserting the MCP-owner skip stays silent with
GITNEXUS_DEBUG='0' and 'false' (CJS + Plugin), pinning the strict contract.
Refs #1913
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(hooks): gate antigravity stale-index hint stderr behind GITNEXUS_DEBUG
The antigravity AfterTool handler mirrored the stale-index hint to stderr
unconditionally on a normal (non-error) success path — the last ungated
stderr write of the class issue #1913 targets, and a divergence from the
claude hook, which never mirrors this hint to stderr.
Gate the stderr mirror behind isDebugEnabled(). The hint still reaches the
agent via additionalContext (stdout JSON) — parts.push(hint) stays
unconditional — so there is no functional loss; only the by-default
terminal mirror moves behind GITNEXUS_DEBUG=1. This knowingly changes the
#1730 terminal-mirror behavior in favor of strict-runner cleanliness and
parity with the claude adapter.
Split the e2e assertion into a default-silent test (hint in
additionalContext, absent from stderr) and a GITNEXUS_DEBUG=1 test (hint
mirrored to stderr).
Refs #1913
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* docs(hooks): document GITNEXUS_DEBUG=1 for hook diagnostics
GITNEXUS_DEBUG was documented only in the cursor integration README, so
the diagnostic escape hatch for the Claude Code / Antigravity hooks was
undiscoverable. Operators hitting a silent hook skip (MCP server owns the
DB, fail-closed probe timeout, or an already-current index) had no
documented way to surface the reason.
Add a Troubleshooting subsection explaining that the hooks stay silent on
normal skip paths for strict runners, that GITNEXUS_DEBUG=1 surfaces the
reason on stderr, and that only '1'/'true' enable diagnostics (stdout JSON
the agent consumes is unaffected).
Refs #1913
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* test(hooks): update setup-antigravity unit test for gated stale-index hint
U2 (
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e46651e42c
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fix(embeddings): create VECTOR index via conn.query, not the prepared path (#2114)
`gitnexus analyze` silently failed to create the LadybugDB VECTOR/HNSW index because `CALL CREATE_VECTOR_INDEX(...)` was run through the prepared `conn.prepare()` path, which rejects multi-statement procedures — degrading semantic search to exact-scan. Route index creation through `conn.query()` via a new adapter-owned `createVectorIndex` (mirrors `createFTSIndex`), make the previously-swallowed error visible (`{ err }` logging), add an in-process idempotency cache, and add real-`@ladybugdb/core` regression coverage.
Fixes #2114.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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4682a477d8
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feat(mcp): paginate list_repos to avoid client token truncation (#2119) (#2120)
* feat(mcp): paginate list_repos to avoid client token truncation (#2119) list_repos returned every indexed repository in one unpaginated array, which large/LLM MCP clients truncate by token limit — so agents with hundreds of indexed repos could not enumerate them all (the data transmits fully; the consuming client drops it). Add bounded limit/offset pagination to the list_repos tool: - result changes from a bare array to { repositories, pagination: { total, limit, offset, returned, hasMore, nextOffset } }; default page 50, max 200 (shared constants) - reject malformed limit/offset; clamp limit above the max - deterministic order (lower-cased name, then path) over one registry snapshot per call, so paging never skips or duplicates an entry - covers both stdio and remote /api/mcp (shared createMCPServer/callTool) The internal listRepos() method (5 callers), GET /api/repos, and the `gitnexus list` CLI are unchanged. The array->object tool-result shape is a deliberate contract change, documented in CHANGELOG. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(mcp): reject list_repos limit above the max instead of clamping (#2119) parseListReposPagination silently clamped limit>max to the maximum while throwing on every other out-of-bounds value (limit<1, offset<0, non-integer, NaN). A client that advanced offset by its requested limit (rather than pagination.nextOffset) then silently skipped repositories and saw hasMore:false — defeating the "never skips" guarantee. Reject an over-max limit too, so validation is symmetric and a caller never gets a smaller page than it asked for without a clear error. Updates the schema/description, the helper + ListReposPagination JSDoc, the guide note, and the two clamp tests. Resolves the cross-engine-corroborated P2 (Codex + adversarial lane) and the maintainability lane's clamp-vs-throw inconsistency from the PR #2120 review. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(mcp): name the list_repos return type and mark the parser @internal Extract the inline listRepos() element shape into an exported RepoListing interface and use it for both listRepos() and listReposPage().repositories, replacing the opaque Awaited<ReturnType<LocalBackend['listRepos']>> expression the maintainability review flagged. Tag parseListReposPagination @internal (it is exported only for unit testing). Pure type/JSDoc change; no behavior. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * refactor(eval-server): type formatListReposResult to the paginated shape Narrow formatListReposResult's parameter from `any` to { repositories: RepoListing[]; pagination?: ListReposPagination } and drop the dead bare-array branch — after #2119 callTool('list_repos') always returns the paginated object, so the Array.isArray shim was unreachable. Add a list_repos continuation hint to the eval-server's getNextStepHint (parity with the MCP server), and cover the previously-untested non-empty + hasMore:false formatter branch. Migrates the two bare-array formatter tests to the object shape. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(mcp): harden list_repos pagination coverage - Exercise the #2054 sibling-clone guarantee through the real callTool tool path (in the #2054 describe, which has temp-dir cleanup), proving siblings and remoteUrl survive listReposPage's sort+slice — not only listRepos(). - Assert total + limit on the middle-page test (a total miscalculation at a non-zero offset would otherwise slip past it). - Cover the benign boundaries: negative-zero offset (accepted as page 0) and a MAX_SAFE_INTEGER offset (empty page). - Replace the integration test's '\n\n---' split with a string-aware brace scan, so a repo path containing braces can never truncate the JSON parse. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs(skills): sync the list_repos pagination example to the guide mirrors The .claude and gitnexus-claude-plugin guide mirrors only carried the one-line table note; add the full "Paginating list_repos" section (shape + multi-page traversal example + notes) so all three guide copies are byte-consistent with the canonical gitnexus/skills/gitnexus-guide.md. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * chore: drop list_repos CHANGELOG entries from this PR Restore gitnexus/CHANGELOG.md to match main so this PR contributes no changelog change; the changelog is curated separately from feature PRs. 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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cef63dd044
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feat(install): toolchain-free tree-sitter via vendored prebuilds (#2113)
* feat(install): toolchain-free tree-sitter via vendored GitNexus-built prebuilds
Eliminate the C/C++-toolchain requirement at install for the at-risk grammars
(dart, proto, kotlin) by generating + vendoring native prebuilds, mirroring the
existing vendored tree-sitter-swift. The 10 grammars that already ship 6 upstream
prebuilds stay npm dependencies (toolchain-free AND dependency-review-tracked).
- .github/workflows/build-tree-sitter-prebuilds.yml: a registry-parameterized
workflow that builds {dart,proto,kotlin} x {linux,darwin,win32}-{x64,arm64}
prebuilds natively, validates each loads + parses on its arch, and opens a PR
vendoring them. A `guard` job gates the heavy matrix to run ONLY on dispatch
or a real grammar-version change — ordinary code PRs cost zero matrix minutes.
- dart/proto: prefer a committed prebuild; fall back to today's source build
when none matches (no behavior change until prebuilds are vendored).
- kotlin: vendor it (Swift parity) instead of compiling the third-party
optionalDependency from source at the user's install — supersedes #2110's
optionalDependency mechanism. The ~23 MB parser.c is NOT vendored (the
workflow builds from the published package); only node-types + bindings +
prebuilds are. Removed from optionalDependencies; lock regenerated; probe,
parser-loader note, README/.devcontainer docs, and the #2110 tests updated.
DO NOT MERGE until vendor/tree-sitter-kotlin/prebuilds/ is populated by the
build-tree-sitter-prebuilds workflow: until then Kotlin is unavailable (vendored
with no source-build fallback). dart/proto remain fully functional throughout.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* test(install): guard 6/6 N-API prebuild coverage for every grammar
Regression guard so a toolchain-less install can never silently lose a tree-sitter
language on a supported platform-arch:
- Vendored grammars (vendor/tree-sitter-*): every one MUST ship a loadable N-API
prebuild for all 6 tuples {linux,darwin,win32}-{x64,arm64}. Asserts the
napi_register_module_v1 entry symbol in each .node (cross-platform, no need to
run the binary). Currently RED for dart/proto/kotlin until the
build-tree-sitter-prebuilds workflow populates their prebuilds/ — this is the
must-fill-before-merge gate (swift already passes 6/6).
- npm-dependency grammars: asserts upstream ships 6/6 N-API too, catching a
future platform drop. tree-sitter-c is allow-listed at 4/6 (missing
linux-arm64/win32-arm64) pending #2116; the guard also fails if that gap is
silently closed (prompting allow-list removal).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(install): vendor tree-sitter-c at 0.21.4 with GitNexus-built prebuilds (#2116)
tree-sitter-c is the one grammar dependency upstream ships incomplete prebuilds
for (4/6 — no linux-arm64/win32-arm64), AND it is a REQUIRED grammar: its own
`install` (node-gyp-build) compiles from source when no prebuild matches and
exits non-zero, so on a toolchain-less ARM host `npm install gitnexus` HARD-FAILS
at the c step — during npm's dependency phase, before any GitNexus postinstall
runs (so a postinstall "supplement" can't help).
Fix: vendor c prebuild-only at the pinned 0.21.4 (Kotlin pattern), with all six
prebuilds GitNexus-cross-built, and drop it from `dependencies`:
- vendor/tree-sitter-c/ (bindings + node-types + manifest + prebuilds); build
probe scripts/build-tree-sitter-c.cjs; added to the build workflow registry
(kind 'npm' — built from c@0.21.4 source).
- materialize-vendor-grammars.cjs: c is REQUIRED, so it is always materialized,
even under GITNEXUS_SKIP_OPTIONAL_GRAMMARS (it needs no toolchain).
- Removed from package.json dependencies + lockfile (nothing else needs npm c —
tree-sitter-cpp's dep on c is dev-only and not installed). Preserves the #1242
ABI pin: vendoring 0.21.4 keeps the good ABI while closing the ARM gap.
- parser-loader note + the prebuild-coverage guard + a cli-commands assertion
updated; c moves from the npm-gap allow-list into the vendored 6/6 cohort.
Verified: tsc clean, 31 unit tests pass, c loads/parses; the guard is RED for
c/dart/proto/kotlin until the workflow populates prebuilds (the must-fill gate).
Closes the operational risk in #2116.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(ci): source-build fallback for vendored c/kotlin so CI is healthy pre-prebuilds
The vendored prebuild-only grammars (c, kotlin) had empty prebuilds/ until the
build-tree-sitter-prebuilds workflow runs, so they could not load in CI — and
C is hard-required by cross-platform tests (tree-sitter-languages/parsing on
ubuntu+macos+windows), which I cannot pre-build for macos/windows locally. The
robust fix is a source-build fallback that works on every CI runner (all have a
toolchain), mirroring dart/proto:
- Vendor the grammar source (binding.gyp + src/) for c and kotlin; their build
scripts now PREFER a committed prebuild (toolchain-free) and fall back to
`node-gyp rebuild` from the vendored source when no prebuild matches. Verified
both compile against the hoisted node-addon-api@^8 and the runtime loads.
- prebuild-coverage guard is now bootstrap-tolerant: a grammar that vendors its
source (binding.gyp) may have an incomplete prebuild set (the workflow fills
it); a prebuild-only grammar (swift) still must ship all six. Any present
prebuild must still be N-API. Guard goes green; it re-tightens per-grammar as
the workflow populates prebuilds.
- actionlint: silence a false-positive SC2016 (JS template literals inside the
single-quoted `node -e` validate block).
Note: kotlin's generated parser.c is large (~23 MB on disk; compresses heavily
in git). Once the workflow populates all six kotlin prebuilds, the source serves
only as the fallback and could be slimmed if desired.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(docker): re-materialize+rebuild vendored grammars after npm prune
`npm prune --omit=dev` in the gitnexus CLI image drops anything not in
package.json's dependency tree — including the VENDORED tree-sitter grammars
(materialized by postinstall, not declared deps) and their built bindings. The
`serve` image analyzes/parses repos at runtime, so re-run the grammar postinstall
after the prune (in the toolchain-equipped builder) to restore them. Load-bearing
for tree-sitter-c, a core REQUIRED grammar now vendored (#2116): as a former
dependency it survived prune; vendored, it would not. Also restores
swift/dart/proto/kotlin, which were silently pruned from the image before.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(grammars): unify tree-sitter-swift with the vendored-source build pipeline
Swift was the last grammar handled differently — it shipped only upstream
prebuilds, while c/dart/proto/kotlin vendor their grammar source and use a
prefer-prebuild -> source-build-fallback activation script. Vendor swift's
source so all five are handled identically (one uniform build path).
- vendor/tree-sitter-swift: add binding.gyp (win-hardened), bindings/node/
binding.cc, src/parser.c (ABI-14 default, ~18 MB), src/scanner.c, and
src/tree_sitter/ headers. The 6/6 prebuilds are retained. The legacy
parser_abi13.c alternate is intentionally not vendored.
- build-tree-sitter-swift.cjs: rewrite the prebuild probe into the dart-style
prefer-prebuild then source-build fallback (keeps the GITNEXUS_SKIP gate and
the never-exit-non-zero postinstall invariant).
- build-tree-sitter-prebuilds.yml: register swift (kind 'vendored'); add its
package.json to the version-gated pull_request paths and a validate snippet.
- prebuild-coverage guard auto-moves swift into the source-fallback cohort
(binding.gyp now present); refresh the stale "swift is prebuild-only" comments.
- tests: add build-tree-sitter-swift-probe.test.ts; fix the pre-existing
build-tree-sitter-kotlin-probe.test.ts breakage (it still asserted the old
probe strings after kotlin's dart-style conversion); assert swift's vendored
source in cli-commands.test.ts.
- docs: README / .devcontainer / kotlin vendor README — swift's prebuilds are
now GitNexus-cross-built from vendored source like the rest, not upstream-only.
Verified: swift source-builds against node-addon-api@8 -> N-API binary -> loads
against the pinned tree-sitter@0.21.1 (ABI 14) -> parses cleanly.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* feat(publish): gate a lean prebuilds-only npm tarball behind a coverage guard
Vendoring grammar source (parser.c) alongside the prebuilds means the npm
tarball now carries ~50 MB of generated source it almost never compiles (every
supported platform-arch has a prebuild). Prepare to drop it from the published
package once all prebuilds exist — safely.
- .npmignore: add a GATED, commented-out "lean publish" block that excludes the
source-build inputs (parser.c/scanner.c/tree_sitter/binding.gyp/binding.cc) but
keeps prebuilds/ + the runtime files. Uncommenting ships prebuilds-only.
- scripts/assert-publish-grammar-coverage.cjs: a prepack guard that refuses to
pack/publish if the source exclusion is active while any vendored grammar still
lacks 6/6 prebuilds (which would ship a grammar with no loadable binding). Wired
into `prepack` (runs on npm pack + publish, incl. the publish.yml dry-run) and
exposed as `npm run assert-publish-coverage`.
- test: pure-core decision cases + a real-repo publish-safety check that fails CI
if .npmignore is activated prematurely.
Net: the prebuilds already publish today (files: ["vendor"]); this makes the
future switch to a prebuilds-only tarball a one-line uncomment that can't ship a
dead grammar. The guard currently reports "source + prebuilds" (only swift has
6/6 prebuilds so far) and passes.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* refactor(grammars): consolidate the 5 build-tree-sitter-*.cjs into one
The per-grammar activation scripts (c/dart/proto/swift/kotlin) were ~95%
identical — same prefer-prebuild → source-build → never-fail flow, differing only
in name, target_name, required-vs-optional, and the display label in warnings.
- scripts/build-tree-sitter-grammars.cjs: one registry-driven script. Bare call
builds all (postinstall); `... <name>` builds only the named grammars (so the
probe test can isolate one). c is `required: true` (ignores the opt-out gate);
the rest honor GITNEXUS_SKIP_OPTIONAL_GRAMMARS. Per-grammar try/catch + a final
process.exit(0) preserve the postinstall never-exit-non-zero invariant.
- package.json: postinstall is now `materialize && build-tree-sitter-grammars.cjs`
(was five chained `build-tree-sitter-<name>.cjs` calls).
- tests: replace the two near-identical *-probe.test.ts files with one
parameterized build-tree-sitter-grammars-probe.test.ts that also covers the
required-vs-optional opt-out split and an unknown-grammar arg.
- update cli-commands.test.ts postinstall assertions + the vendor c/kotlin/swift
README + swift provenance to reference the consolidated script.
Behavior is preserved (warnings normalized to one consistent format). Removes 5
scripts + 1 test file; adds 1 script + 1 test.
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
* fix(ingestion): lazy-load tree-sitter-c to prevent module-load crash
tree-sitter-c is now vendored prebuild-only (#2116) with 0/6 committed
prebuilds, so on a toolchain-less or `--ignore-scripts` install C has no native
binding. Three modules loaded it via a hard top-level `import C from
'tree-sitter-c'`, which throws ERR_MODULE_NOT_FOUND at module-load — crashing
`analyze` before parser-loader's optional/severity:error degradation can run.
This is the #2091/#2093 bug class (previously fixed for swift/dart/kotlin); C was
left static because it used to be an always-present npm dependency.
- languages/c/query.ts: load via the lazy guarded getLanguageGrammar(C), mirroring
swift/query.ts; the main-thread isLanguageAvailable filter ensures the getters
are reached only when C is present.
- workers/parse-worker.ts: guarded `_require('tree-sitter-c')` + conditional
languageMap spread, like swift/dart/kotlin.
- group/extractors/include-extractor.ts: guarded `_require`; getLanguageForFile
returns null for .c/.h when absent, so C include-extraction degrades to a no-op
(C++ unaffected).
- extend the registry-import-closure regression test (#2091/#2093) to assert C
also loads lazily at registry static-import time.
* fix(ci): repin attest-build-provenance to the real v2.4.0 SHA
The workflow pinned actions/attest-build-provenance@bd77c077… commented
`# v2.4.0`, but v2.4.0 is e8998f94… (verified via the GitHub API); bd77c077…
is an untagged mid-stream commit, so the SLSA-attestation step ran unvetted
action code and the comment misrepresented what runs. Repin to the real
v2.4.0 commit and drop the `# PLACEHOLDER-PIN` markers on both this line and
the setup-python pin (a26af69b… is already the correct v5.6.0 — only its
comment was stale). Update the header NOTE accordingly.
* fix(ci): skip the prebuild-PR aggregate when release App secrets are absent
The aggregate job mints a GitHub App token as its first step; with
RELEASE_APP_ID/RELEASE_APP_PRIVATE_KEY unset it hard-failed AFTER a full
(up-to-6-runner) native build. Since the `secrets` context isn't available in
a job-level `if:`, the guard job now computes a `release_app` boolean output
(a step can read secrets) and emits an actionable `::notice::`; aggregate
gates on it and skips cleanly, while the build job's artifacts still upload
(run with open_pr=false for artifacts-only).
* chore(ci): drop package-lock.json from the prebuild paths filter; widen build timeout
`gitnexus/package-lock.json` changes on nearly every dependency PR, so it
fired the prebuild workflow's guard job on unrelated churn (the matrix stayed
correctly skipped — `gitnexus/package.json` already covers the transition-window
pin, so removing the lock only drops guard noise). Also bump the native build
job timeout 30 -> 45 min for headroom compiling the 23 MB kotlin / 18 MB swift
parser.c, especially under arm emulation.
* fix(ci): event-gate the aggregate open-PR condition explicitly
`inputs.open_pr` is null on pull_request events, and the prior
`inputs.open_pr != false` leg relied on GHA's direction-ambiguous null
coercion (Codex F4) to decide whether to open the prebuild PR. Gate
explicitly on the event: a non-fork pull_request that bumped a grammar
version opens the prebuild PR (the documented flow), and `open_pr` is only
consulted on workflow_dispatch — so a manual run with open_pr=false stays
artifacts-only and no event's behavior rests on coercion.
* fix(publish): validate the effective npm-pack contents in the coverage guard
The publish guard inferred "is source shipped?" from a single .npmignore toggle
line, which a partial/out-of-order edit could defeat (exclude binding.gyp but
leave parser.c → unbuildable yet "source-shipping"). It now inspects the
EFFECTIVE tarball via `npm pack --dry-run --ignore-scripts --json` (the
--ignore-scripts avoids re-entering this guard through prepack): a grammar
"ships source" only when EVERY on-disk source-build input (binding.gyp +
binding.cc + parser.c + scanner.c when present + a tree_sitter header) is
actually in the packed file list.
This also surfaced that the gated lean-publish .npmignore block was inert:
package.json's `files: ["vendor"]` allow-list overrides .npmignore for the
vendored subtree, so those exclusion lines never dropped anything. Replace the
dead toggle with documentation of the real mechanism (narrow the `files` field)
and note the guard enforces safety on the effective pack regardless of how the
slim is done.
* test(prebuild): hard-gate declared-fully-prebuilt grammars on 6/6 coverage
The strict 6/6 prebuild assertion was dormant whenever a grammar vendors source
(binding.gyp) — which is every grammar — so a dropped prebuild passed CI
silently. Add a FULLY_PREBUILT allowlist of grammars GitNexus has committed 6/6
for (today: swift); those must keep all six even with a source fallback, so
losing one now fails CI. Grammars graduate into the set as the
build-tree-sitter-prebuilds workflow lands their binaries. (The static-import
degradation smoke is covered by the registry-import-closure regression test
extended in the C lazy-load commit.)
* chore(deps): promote node-gyp-build/node-addon-api to regular dependencies
Every vendored grammar's index.js does `require("node-gyp-build")` at runtime
to load even a prebuilt .node, so node-gyp-build is runtime-load-critical (and
node-addon-api is needed for the source-build fallback). They were
optionalDependencies, surviving `--omit=optional` only via the required
tree-sitter's transitive edge — correct today but fragile. Promote both to
regular dependencies so the contract is explicit (optionalDependencies is now
empty and removed). Lock the contract with a cli-commands assertion.
* chore(vendor): add Windows cflags parity block to tree-sitter-c/binding.gyp
c's binding.gyp used an unconditional `cflags_c: ["-std=c11"]`, while
kotlin/swift gate MSVC flags behind an `OS=='win'` condition (/std:c11 /utf-8).
Inert today (no non-ASCII bytes in c's parser.c, and node-gyp ignores cflags_c
on MSVC anyway), but align the three so a future source-build fallback on
Windows behaves consistently.
* docs(agents): correct stale optional-grammar / postinstall notes
AGENTS.md still said postinstall "patches tree-sitter-swift, builds
tree-sitter-proto" and that only kotlin/swift are "optional". Update to the
vendored-uniform model: postinstall materializes the vendored grammars and
prefers a committed prebuild (source-build only when none matches); c is
required while dart/proto/swift/kotlin are optional + skippable via
GITNEXUS_SKIP_OPTIONAL_GRAMMARS=1, with non-fatal warnings only on a
toolchain-less host with no matching prebuild.
* fix(install): preserve the backup and warn loudly on a failed materialize rollback
If renameSync(partial, dest) failed AND the rollback renameSync(backup, dest)
also failed, the grammar was left unmaterialized (node_modules/<name> missing)
with only a generic "could not materialize" warning — the recoverable backup at
<dest>.materialize-bak was unmentioned. Emit a CRITICAL warning naming the
backup path and the recovery command on that double-failure, and document that
the fail-soft catch removes only the scratch `partial`, never the `backup`
(which may be the sole recoverable copy). Never-throw / exit-0 contract intact.
* fix(publish): make the coverage guard's npm-pack inspection script-safe
The prepack guard shelled out to `npm pack --dry-run --ignore-scripts --json`,
but the `--ignore-scripts` flag is not reliably honored by npm pack's
prepare/prepack lifecycle on the CI npm — so build.js ran, polluted the --json
stdout with `[build] …`, and the guard's JSON.parse threw. That broke every
`npm pack` (packaged-install-smoke on ubuntu+windows) and failed the guard's own
real-repo unit test (the only coverage-job failure). Force script-skipping via
the reliable `npm_config_ignore_scripts` env config (also removes the prepack
re-entry/recursion risk) and parse defensively from the JSON-array start.
* fix(publish): make the coverage guard deterministic — read `files`, not `npm pack`
The npm-pack-based guard timed out in CI: `npm pack`'s prepare/prepack lifecycle
is not skipped by `--ignore-scripts` (flag or env config) on the CI npm, so the
inner pack ran the full build (~20s+) — fine for the slow smoke job, but it blew
past vitest's 30s test timeout in the coverage job (and risked re-entering this
prepack guard).
Replace it with a deterministic, fast (~0.1s) check that needs no subprocess:
since `files: ["vendor"]` OVERRIDES `.npmignore` for the vendored subtree (so
`.npmignore` can never drop vendored source — verified), the ONLY lever that can
exclude source is narrowing the package.json `files` field. The guard now reads
`files` directly: a grammar "ships source" iff `files` includes the vendor
subtree AND the grammar carries a buildable source set on disk. A lean publish
that narrows `files` while a grammar lacks 6/6 prebuilds still fails the gate.
* feat(ci): vendored tree-sitter grammar update monitor
Adds a weekly (+ dispatchable) workflow that checks each vendored grammar against
its source-of-origin (npm for swift/kotlin, the GitHub default branch for
dart/proto; c is excluded — held at 0.21.4 for ABI safety) and opens a PR
re-vendoring any update that is ABI-COMPATIBLE with the pinned tree-sitter@0.21.1
(LANGUAGE_VERSION 13-14).
ABI awareness is the point: most upstreams have moved to ABI 15 (newer
tree-sitter), so a blind "bump to latest" would open PRs that can't build. The
monitor fetches the candidate source, reads its parser.c LANGUAGE_VERSION, and
only re-vendors 13/14 — incompatible updates are reported (notice + job summary),
never applied. (Confirmed live: dart/proto upstreams are ABI 15 today and are
correctly held; swift/kotlin are current.)
The re-vendor refreshes only the source-build inputs + runtime entrypoints,
preserving the GitNexus-hardened binding.gyp / README / prebuilds; the version
bump then triggers build-tree-sitter-prebuilds.yml, whose ABI-validation is the
final safety net so a subtly-wrong re-vendor can't silently ship. PR creation is
gated on the RELEASE_APP secret (skips with a notice if absent), mirroring the
build aggregate. Unit test locks the ABI gate; the script is import-safe.
* feat(ci): monitor tree-sitter-c too (report-only, ABI-pinned)
c was excluded from the update monitor, so an upstream c update went unnoticed.
Include it, but as report-only via a `hold`: c is ABI-pinned at 0.21.4
(#1242/#858) and must not auto-bump without a tree-sitter runtime upgrade, so an
available c update is detected + surfaced (notice + job summary) but never
auto-PR'd — even if it were ABI-13/14. `--apply c` refuses defensively. (Live:
upstream c is 0.24.1 / ABI 15 today, so c is doubly held — reported, not applied.)
* fix(ci): drop the shell in the grammar monitor's github fetch (CodeQL)
CodeQL flagged the GitHub-tarball fetch — it used `bash -c "gh api …/tarball/$ref
> src.tgz && tar xzf src.tgz"`, interpolating the API-derived ref into a shell
command (the shell-command-injection family: "this shell command depends on an
uncontrolled file name"). Replace it with a shell-free path: capture `gh api`'s
binary tarball as a Buffer via execFileSync, write it to a fixed file, and
extract with execFileSync('tar', …). No shell, no injection surface. Verified the
dart/proto fetch + ABI read still work.
---------
Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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1716bf7c1e
|
feat(cli): add gitnexus uninstall to reverse setup (#2060) (#2062)
* feat(cli): add `gitnexus uninstall` to reverse setup (#2060) `gitnexus uninstall` was documented in #168 but never implemented, so the CLI rejected it with "error: unknown command 'uninstall'" (#2060). Add an `uninstall` command that reverses `gitnexus setup` target-by-target: removes the GitNexus MCP server entries (Cursor, Claude Code, Antigravity, OpenCode, Codex), the installed skill directories, and the Claude Code / Antigravity hook entries plus their bundled hook scripts. Edits are surgical and idempotent — only gitnexus-owned keys/entries/dirs are touched, and JSONC comments/indentation are preserved. Defaults to a dry-run preview; `--force` applies. Per-repo indexes and the global npm package are left alone with printed hints, since both are destructive in ways setup never caused. Adds i18n entries (en + zh-CN), help wiring, README/CHANGELOG docs, and unit tests covering MCP/hook/skill/Codex-TOML removal, dry-run, corrupt-file safety, and the no-op case. * changelog changes * changelog changes * fix(cli): harden uninstall against data-loss edge cases (review #2062) Address review findings on the uninstall command: - Empty derived skill name no longer wipes the whole skills dir: a bare '.md' source file would make basename() return '', resolving to the skills dir itself. Skip empty names in derivation and reject empty/'.'/'..'/separator names in removeSkillsFrom. - Corrupt settings.json no longer orphans the hook: gate the hook-script dir removal on status !== 'corrupt' so we don't delete a script while a still-registered entry points at it (Claude + Antigravity blocks). - Hook removal is now element-granular: delete only the gitnexus command inside an entry's hooks[], removing the whole entry only when it becomes empty. Preserves a user command co-located in the same entry. - Fallback TOML stripper: also remove descendant sub-tables ([mcp_servers.gitnexus.env]), track multiline strings so a bracketed line inside a value isn't treated as a header, and stop reflowing unrelated blank lines. - Set process.exitCode=1 on partial failure; add a 10s timeout to 'codex mcp remove'. Tests expanded 7 -> 17: empty-skill guard, corrupt-settings hook preservation, shared-entry hook removal, OpenCode MCP keyPath, Antigravity MCP + AfterTool hooks, codex-remove success path, TOML sub-table + multiline-string cases, dry-run for hooks/skills, and the directory-layout skill branch. * refactor(cli): share setup/uninstall target map + harden TOML fallback (review #2062) Maintainer review follow-ups: - Extract editor target identities into editor-targets.ts (MCP paths/keyPaths, Codex TOML section, skill dirs, hook settings/events/needles/script dirs, shared detectIndentation). Both setup.ts and uninstall.ts consume it, so a target change updates both sides — killing the silent drift hazard. - Add a setup -> uninstall round-trip integration test that iterates getEditorTargets(): setup writes every target, uninstall removes all of them, and a co-located user MCP server + user hook survive. Drift tripwire in both directions. - Preview now prints the exact paths it would remove; command output + README state skills are matched by bundled gitnexus skill name. (Provenance marker deferred to a tracked follow-up.) Hardening of the hand-rolled Codex TOML fallback (found in code review): - Strip a section header that has a trailing inline comment (was matched as a header but failed the exact classify check -> section left behind while reported removed). - Preserve CRLF line endings instead of rewriting the whole file to LF. - Fix multiline-string scan: a line with an odd count of BOTH """ and ''' no longer mis-picks the delimiter and desyncs the scanner (left->right scan). - removeSkillsFrom guard also rejects absolute names. Regression tests added for each. Full setup/uninstall suite green. --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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288b96f3e5
|
fix: batch query enrichment, bake FTS extension into CLI image, add FTS memory repro (#2108)
* perf(query): batch per-symbol process/cohesion/content lookups (N+1 -> 2-3) Port of the local-backend query-batching from gitnexus-enterprise PR #222 into the OSS local MCP backend. The query tool traced each matched symbol to its processes + cohesion (+ content) with up to 3N sequential pool round-trips; batch them into 2-3 'WHERE n.id IN $nodeIds' queries keyed back to each symbol by a prepended 'n.id AS nodeId' column. Output is identical: the aggregation loop is unchanged, iterates merged in the same order, and reads pre-fetched maps instead of issuing a query per symbol. Adaptations over a blind cherry-pick (would otherwise change output): - per-nodeId first-row community pick replaces the per-symbol LIMIT 1, so each symbol keeps its own community (not one for the whole batch); - batched rows regrouped to the originating merged item by nodeId so the JS-side RRF item.score still drives process ranking; - positional fallbacks shift +1 (process row[1..6], cohesion [1]/[2], content [1]); CodeRelation{type:...} relation form kept; IN-list chunked at 100 like the impact path. Adds a regression test asserting per-node community/content association (func:login keeps comm:auth; func:validate inherits no community). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(docker): bake LadybugDB FTS extension into the CLI/serve image The container runs `serve` under the default `load-only` extension policy (the read pool pins {policy:'load-only'}), so a runtime LOAD EXTENSION fts never INSTALLs. Dockerfile.cli copied the extension installer but never ran it, so the runtime user's HOME had no FTS extension: keyword search silently degraded (no FTS indexes written, ranking falls back to vector-only with only a warning field). Same class of footgun fixed for the Hub image in gitnexus-enterprise PR #222. Run install-duckdb-extension.mjs as the `node` user with the runtime HOME so INSTALL fts materializes the extension under $HOME/.lbdb/extension where the runtime LOAD resolves it offline. Pin ENV HOME=/home/node because Docker does not derive HOME from USER — without it the build-install and runtime-load would resolve different paths. Verified locally: INSTALL lands in $HOME/.lbdb/extension/0.17.0 and a fresh offline load-only `LOAD EXTENSION fts` resolves it. Dockerfile.web is unaffected (static frontend, no @ladybugdb backend). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * test(lbug): FTS evict->reload RSS repro + inert pool RSS tracing Settles the gitnexus-enterprise PR #222 root-cause hypothesis for OSS: does re-running LOAD EXTENSION fts on every pool evict->reload strand the native FTS arena (unbounded RSS growth in long-lived MCP serve), or does db.close() reclaim it (bounded by MAX_POOL_SIZE)? Static read could not decide — the native lbugjs.node binary documents no close->extension-unload contract. Adds gitnexus/scripts/bench/fts-evict-reload-rss.mjs: a NATIVE mode that reproduces the exact native sequence doInitLbug()+closeOne() perform (open Database -> Connection -> LOAD EXTENSION fts -> QUERY_FTS_INDEX -> close) across K self-built FTS fixtures, and a --via-pool mode that drives the real compiled pool (initLbug/executeParameterized/closeLbug) against an existing analyzed repo. Plus a behavior-neutral GITNEXUS_POOL_RSS_TRACE=1 stderr trace on pool init/close (stdout reserved for MCP JSON-RPC; single env read when disabled). RESULT (native, 24 and 40 cycles x 6 fixtures, --expose-gc): PLATEAU. RSS warms up to ~400 MB then flattens (40-cycle: +36 MB over cycles 1-10, +3 MB over 30-40; decelerating), not the linear climb a per-reload arena leak would produce (240 reloads x stranded arena = multi-GB). db.close() reclaims the FTS arena. The unbounded-leak hypothesis is NOT reproduced for the OSS path: the pool's LRU eviction + close-on-evict BOUNDS the footprint, which is exactly the protection the enterprise Hub supervisor lacked (it opened bridge DBs in-process without eviction -> 15 GB). => plan U4 (worker/process isolation) is NOT justified by this evidence; U1 + U2 are the only OSS-shared changes. Caveat: small fixtures + awaited close; a --via-pool run against a large analyzed repo over a long session is the production-faithful follow-up (instrumentation is in place for it). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(review): apply ce-code-review autofix feedback (#222 migration) Adversarial review found the U3 bench PLATEAU->no-leak conclusion was over-claimed from a 600-row fixture: a size-proportional FTS-arena leak would be sub-threshold at that scale. Strengthen the bench and make its verdict honest: - scale the fixture (--rows, UNWIND batch insert), probe ALL 5 FTS indexes in --via-pool (not 2 of 5), add a --no-await-close variant (the pool fire-and-forget close shape), and replace the absolute-delta gate with a SLOPE-DECELERATION 3-way verdict (PLATEAU / CLIMB / INCONCLUSIVE) plus step-discontinuity detection. At production-representative scale the synthetic runs are noisy/INCONCLUSIVE (deceleration argues against an UNBOUNDED leak but does not prove bounded), so plan U4 stays GATED on a --via-pool run against a real large analyzed repo -- not closed. - Dockerfile.cli: source the scratch-DB size from ENV GITNEXUS_LBUG_MAX_DB_SIZE (single source of truth) and add a build-time verify-only LOAD gate that fails the build on a HOME/extension-dir mismatch instead of silently degrading runtime keyword search. - install-duckdb-extension.mjs: additive verify-only mode (LOAD-only in a fresh process) + robust size parse; back-compatible with the runtime positional-size caller (validated). - tests: wire func:validate into a second process (proc:beta-flow) so the batched STEP_IN_PROCESS row[1..6] positional shift is exercised by a genuine multi-process symbol, and assert process ranking. No blast radius (75 seed-consuming tests pass). - pool-adapter.ts: trim the traceRss narrated-code comment (DoD 2.3). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(bench): classify a sustained sub-floor RSS slope as INCONCLUSIVE, not PLATEAU Tri-review P2: the FTS evict->reload verdict short-circuited to PLATEAU whenever secondHalfSlope < SUSTAIN_FLOOR, BEFORE the deceleration check — so a sustained (non-decelerating) linear leak below 0.5 MB/cycle was labeled PLATEAU ("no leak"), the label that would wrongly close plan U4. Extract median/slopeMbPerCycle/classifyVerdict into a pure, side-effect-free fts-rss-verdict.mjs (zero imports) so it is unit-testable without loading the native addon or running the bench, and fix the classifier: - epsilon-first gate: a truly flat tail (< 0.1 MB/cycle) is PLATEAU regardless of decelRatio (guards against over-correcting a real negative into INCONCLUSIVE); - a sustained sub-floor positive slope (>= epsilon, < floor, decelRatio >= 0.6) is INCONCLUSIVE — a slow creep RSS cannot distinguish from noise at this scale, so the honest label is "not resolved", never a clean PLATEAU; - the noise floor now scales with the WORKING-SET growth (peak-baseline), not the pre-DB baseline RSS (which is interpreter/addon overhead, larger in --via-pool mode, and would inflate the floor and HIDE leaks). Reconcile the stale "per-row-relative delta floor" docstring; add floor + decelRatio to the MACHINE line. New fts-rss-verdict.test.ts pins all label boundaries (flat->PLATEAU, sustained-sub-floor->INCONCLUSIVE, decelerated->PLATEAU, sustained-linear->CLIMB, step->INCONCLUSIVE, working-set floor, no import side effects). U1 does NOT add detection power for sub-floor leaks (RSS cannot attribute that magnitude) — it stops the false PLATEAU and routes that regime to the --via-pool run. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * fix(query): signal partial/warning on a real enrichment failure (not benign missing-table) Tri-review P2: when a batched enrichment query (process/cohesion/content) threw, it was caught + logged and the chunk's symbols silently fell back to `definitions` with no signal — the caller could not tell "genuinely standalone" from "enrichment failed". Track an `enrichmentDegraded` flag in the three enrichment catch blocks and, at response build, compose a single `warning` (FTS-missing and/or the enrichment message, so neither overwrites the other) plus `partial: true`. Both fields are omitted on the clean path, so the success-path response shape is byte-identical. Crucially, the flag fires ONLY for a REAL failure (timeout / lock / native fault), NOT the benign "no Process/Community table" prepare error — a repo analyzed without processes/communities is a normal config, and firing `partial` on every such query would desensitize callers (isBenignMissingTableError gates it). New unit test test/unit/query-degraded-signal.test.ts (vi.mock pool-adapter, override hybrid search to feed one matched symbol, route STEP_IN_PROCESS -> throw): real failure -> warning+partial+symbol still returned; benign missing-table -> no signal; FTS-missing + enrichment failure -> both messages in one warning. Plus a success-path no-warning/no-partial assertion in the calltool integration test. 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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3a4247ec36
|
feat(cpp): resolve inheritance-lattice member lookup (#2077)
* feat(cpp): resolve inheritance-lattice member lookup * fix(cpp): harden inheritance-lattice lookup --------- Co-authored-by: Gergő Magyar <gergomagyar@icloud.com> |
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4de4d205dd
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fix(ingestion): lazy-load optional grammars so analyze never crashes when one is missing (#2091, #2093) (#2101) | ||
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f2c9e69792
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feat(ingestion): M0 — taint/PDG substrate (schema + seams + spikes) (#2080) (#2092) | ||
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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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3963c497dd
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fix(parse): correct worker-pool docs drift + surface worker-side stack on crash (#2068) (#2070) | ||
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f0c292f9e7
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perf(ingestion): prune inert local value symbols (#2065) | ||
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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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3b43eb8b47
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fix(go): capture multi-name declarations (#2032)
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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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a987c2c0e6
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test(cli): make cli-e2e read-only + eval-server tests robust under load (#2000)
The query/cypher/impact stdout tests and the eval-server tests assumed mini-repo
had already been indexed by an earlier analyze test. That analyze test silently
tolerates a subprocess timeout (`if (result.status === null) return`), so under
parallel load (cli-e2e runs in the default integration project) the repo went
unregistered and every dependent test failed confusingly with "No indexed
repositories found" / exit 1.
- beforeAll now indexes mini-repo once into the isolated suite registry (retried
a few times; re-analyze of an already-indexed repo is a cheap alreadyUpToDate
no-op), removing the implicit cross-test ordering dependency.
- The four dependent describes get { retry: 2 } (Vitest 4 second-arg options) so
a transient subprocess hiccup self-heals instead of failing the suite.
Genuine analyze/registration regressions are still caught loudly by the
dedicated analyze tests (which use isolated GITNEXUS_HOMEs). Full cli-e2e file:
34/34 pass locally.
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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f01d913eef
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fix(hooks): resolve gitnexus on PATH with a pure-Node scan, all-OS (#1938) (#1980) | ||
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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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